1 Commits

Author SHA1 Message Date
YuanHongbin 17cdc6b862 Initial commit 2026-06-21 15:16:39 +00:00
98 changed files with 61 additions and 76068 deletions
+61 -61
View File
@@ -1,64 +1,3 @@
# ---> uVision
# git ignore file for Keil µVision Project
# µVision 5 and µVision 4 Project screen layout file
*.uvguix.*
*.uvgui.*
# Listing Files
*.i
*.lst
*.m51
*.m66
*.map
# Object Files
*.axf
*.b[0-2][0-9]
*.b3[0-1]
*.bak
*.build_log.htm
*.crf
*.d
*.dep
*.elf
*.htm
*.iex
*.lnp
*.o
*.obj
*.sbr
# Firmware Files
*.bin
*.h86
*.hex
# Build Files
.bat
# Debugger Files
.ini
# JLink Files
JLinkLog.txt
# Other Files
# ---> VisualStudioCode
.vscode/*
!.vscode/settings.json
!.vscode/tasks.json
!.vscode/launch.json
!.vscode/extensions.json
!.vscode/*.code-snippets
# Local History for Visual Studio Code
.history/
# Built Visual Studio Code Extensions
*.vsix
# ---> IAR
# Compiled binaries
*.o
@@ -128,3 +67,64 @@ EWARM/**/Exe
# Autogenerated folder for debugger
EWARM/settings
# ---> uVision
# git ignore file for Keil µVision Project
# µVision 5 and µVision 4 Project screen layout file
*.uvguix.*
*.uvgui.*
# Listing Files
*.i
*.lst
*.m51
*.m66
*.map
# Object Files
*.axf
*.b[0-2][0-9]
*.b3[0-1]
*.bak
*.build_log.htm
*.crf
*.d
*.dep
*.elf
*.htm
*.iex
*.lnp
*.o
*.obj
*.sbr
# Firmware Files
*.bin
*.h86
*.hex
# Build Files
.bat
# Debugger Files
.ini
# JLink Files
JLinkLog.txt
# Other Files
# ---> VisualStudioCode
.vscode/*
!.vscode/settings.json
!.vscode/tasks.json
!.vscode/launch.json
!.vscode/extensions.json
!.vscode/*.code-snippets
# Local History for Visual Studio Code
.history/
# Built Visual Studio Code Extensions
*.vsix
-428
View File
@@ -1,428 +0,0 @@
{
"configurations": [
{
"name": "HC32L17X",
"includePath": [
"d:\\keilProject\\HC32L170\\projects\\Local\\HC32L170BootloaderGeneral\\mcu\\common",
"d:\\keilProject\\HC32L170\\projects\\Local\\HC32L170BootloaderGeneral\\source",
"d:\\keilProject\\HC32L170\\projects\\Local\\HC32L170BootloaderGeneral\\driver\\inc",
"d:\\keilProject\\HC32L170\\projects\\Local\\HC32L170BootloaderGeneral\\source\\inc",
"d:\\keilProject\\HC32L170\\projects\\Local\\HC32L170BootloaderGeneral\\Module\\LIS2HH12",
"d:\\keilProject\\HC32L170\\projects\\Local\\HC32L170BootloaderGeneral\\Module\\Debug",
"d:\\keilProject\\HC32L170\\projects\\Local\\HC32L170BootloaderGeneral\\Module\\GPS",
"d:\\keilProject\\HC32L170\\projects\\Local\\HC32L170BootloaderGeneral\\Module\\spl06",
"d:\\keilProject\\HC32L170\\projects\\Local\\HC32L170BootloaderGeneral\\Module\\CAT1",
"d:\\keilProject\\HC32L170\\projects\\Local\\HC32L170BootloaderGeneral\\Module\\WH-BLE106",
"D:\\keil5\\ARM\\ARMCLANG\\include",
"D:\\keil5\\ARM\\ARMCLANG\\include\\arm_linux",
"D:\\keil5\\ARM\\ARMCLANG\\include\\arm_linux_compat",
"D:\\keil5\\ARM\\ARMCLANG\\include\\libcxx",
"d:\\keilProject\\HC32L170\\projects\\Local\\HC32L170BootloaderGeneral\\MDK",
"d:\\keilProject\\HC32L170\\projects\\Local\\HC32L170BootloaderGeneral\\source\\Src",
"d:\\keilProject\\HC32L170\\projects\\Local\\HC32L170BootloaderGeneral\\source\\src",
"d:\\keilProject\\HC32L170\\projects\\Local\\HC32L170BootloaderGeneral\\driver\\src"
],
"defines": [
"__alignof__(x)=",
"__asm(x)=",
"__asm__(x)=",
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"__restrict=",
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"__inline=",
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"__attribute__(x)=",
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"__enable_fiq()=",
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"__schedule_barrier()=",
"__semihost(x,y)=0",
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"__builtin_bswap16(x)=0U",
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"__builtin_arm_ldrex(x)=0U",
"__builtin_arm_strex(x,y)=0U",
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"__builtin_arm_usat(x,y)=0U",
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"__builtin_arm_stlex(x,y)=0U",
"_ILP32=1",
"_USE_STATIC_INLINE=1",
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],
"intelliSenseMode": "${default}"
}
],
"version": 4
}
-2
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@@ -1,2 +0,0 @@
[info] Log at : 2026/4/2|16:51:37|GMT+0800
View File
-9
View File
@@ -1,9 +0,0 @@
<?xml version="1.0" encoding="utf-8"?>
<component_viewer schemaVersion="0.1" xmlns:xs="http://www.w3.org/2001/XMLSchema-instance" xs:noNamespaceSchemaLocation="Component_Viewer.xsd">
<component name="EventRecorderStub" version="1.0.0"/> <!--name and version of the component-->
<events>
</events>
</component_viewer>
-40
View File
@@ -1,40 +0,0 @@
[BREAKPOINTS]
ForceImpTypeAny = 0
ShowInfoWin = 1
EnableFlashBP = 2
BPDuringExecution = 0
[CFI]
CFISize = 0x00
CFIAddr = 0x00
[CPU]
MonModeVTableAddr = 0xFFFFFFFF
MonModeDebug = 0
MaxNumAPs = 0
LowPowerHandlingMode = 0
OverrideMemMap = 0
AllowSimulation = 1
ScriptFile=""
[FLASH]
EraseType = 0x00
CacheExcludeSize = 0x00
CacheExcludeAddr = 0x00
MinNumBytesFlashDL = 0
SkipProgOnCRCMatch = 1
VerifyDownload = 1
AllowCaching = 1
EnableFlashDL = 2
Override = 1
Device="CORTEX-M0+"
[GENERAL]
WorkRAMSize = 0x00
WorkRAMAddr = 0x00
RAMUsageLimit = 0x00
[SWO]
SWOLogFile=""
[MEM]
RdOverrideOrMask = 0x00
RdOverrideAndMask = 0xFFFFFFFF
RdOverrideAddr = 0xFFFFFFFF
WrOverrideOrMask = 0x00
WrOverrideAndMask = 0xFFFFFFFF
WrOverrideAddr = 0xFFFFFFFF
-21
View File
@@ -1,21 +0,0 @@
/*
* Auto generated Run-Time-Environment Configuration File
* *** Do not modify ! ***
*
* Project: 'hc32l17x'
* Target: 'HC32L17X'
*/
#ifndef RTE_COMPONENTS_H
#define RTE_COMPONENTS_H
/*
* Define the Device Header File:
*/
#define CMSIS_device_header "HC32L170JATA.h"
#endif /* RTE_COMPONENTS_H */
@@ -1,20 +0,0 @@
/*
* Auto generated Run-Time-Environment Component Configuration File
* *** Do not modify ! ***
*
* Project: 'ddl_template'
* Target: '{FEATURE}_Release'
*/
#ifndef RTE_COMPONENTS_H
#define RTE_COMPONENTS_H
/*
* Define the Device Header File:
*/
#define CMSIS_device_header "ARMCM0plus.h"
#endif /* RTE_COMPONENTS_H */
@@ -1,21 +0,0 @@
/*
* Auto generated Run-Time-Environment Configuration File
* *** Do not modify ! ***
*
* Project: 'hc32l17x'
* Target: 'template_Release'
*/
#ifndef RTE_COMPONENTS_H
#define RTE_COMPONENTS_H
/*
* Define the Device Header File:
*/
#define CMSIS_device_header "ARMCM0plus.h"
#endif /* RTE_COMPONENTS_H */
-448
View File
@@ -1,448 +0,0 @@
<?xml version="1.0" encoding="UTF-8" standalone="no" ?>
<ProjectOpt xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:noNamespaceSchemaLocation="project_optx.xsd">
<SchemaVersion>1.0</SchemaVersion>
<Header>### uVision Project, (C) Keil Software</Header>
<Extensions>
<cExt>*.c</cExt>
<aExt>*.s*; *.src; *.a*</aExt>
<oExt>*.obj; *.o</oExt>
<lExt>*.lib</lExt>
<tExt>*.txt; *.h; *.inc; *.md</tExt>
<pExt>*.plm</pExt>
<CppX>*.cpp; *.cc; *.cxx</CppX>
<nMigrate>0</nMigrate>
</Extensions>
<DaveTm>
<dwLowDateTime>0</dwLowDateTime>
<dwHighDateTime>0</dwHighDateTime>
</DaveTm>
<Target>
<TargetName>HC32L17X</TargetName>
<ToolsetNumber>0x4</ToolsetNumber>
<ToolsetName>ARM-ADS</ToolsetName>
<TargetOption>
<CLKADS>12000000</CLKADS>
<OPTTT>
<gFlags>1</gFlags>
<BeepAtEnd>1</BeepAtEnd>
<RunSim>0</RunSim>
<RunTarget>1</RunTarget>
<RunAbUc>0</RunAbUc>
</OPTTT>
<OPTHX>
<HexSelection>1</HexSelection>
<FlashByte>65535</FlashByte>
<HexRangeLowAddress>0</HexRangeLowAddress>
<HexRangeHighAddress>0</HexRangeHighAddress>
<HexOffset>0</HexOffset>
</OPTHX>
<OPTLEX>
<PageWidth>79</PageWidth>
<PageLength>66</PageLength>
<TabStop>8</TabStop>
<ListingPath>.\output\release\</ListingPath>
</OPTLEX>
<ListingPage>
<CreateCListing>1</CreateCListing>
<CreateAListing>1</CreateAListing>
<CreateLListing>1</CreateLListing>
<CreateIListing>0</CreateIListing>
<AsmCond>1</AsmCond>
<AsmSymb>1</AsmSymb>
<AsmXref>0</AsmXref>
<CCond>1</CCond>
<CCode>0</CCode>
<CListInc>0</CListInc>
<CSymb>0</CSymb>
<LinkerCodeListing>0</LinkerCodeListing>
</ListingPage>
<OPTXL>
<LMap>1</LMap>
<LComments>1</LComments>
<LGenerateSymbols>1</LGenerateSymbols>
<LLibSym>1</LLibSym>
<LLines>1</LLines>
<LLocSym>1</LLocSym>
<LPubSym>1</LPubSym>
<LXref>0</LXref>
<LExpSel>0</LExpSel>
</OPTXL>
<OPTFL>
<tvExp>1</tvExp>
<tvExpOptDlg>0</tvExpOptDlg>
<IsCurrentTarget>1</IsCurrentTarget>
</OPTFL>
<CpuCode>255</CpuCode>
<DebugOpt>
<uSim>0</uSim>
<uTrg>1</uTrg>
<sLdApp>1</sLdApp>
<sGomain>1</sGomain>
<sRbreak>1</sRbreak>
<sRwatch>1</sRwatch>
<sRmem>1</sRmem>
<sRfunc>1</sRfunc>
<sRbox>1</sRbox>
<tLdApp>1</tLdApp>
<tGomain>1</tGomain>
<tRbreak>1</tRbreak>
<tRwatch>1</tRwatch>
<tRmem>1</tRmem>
<tRfunc>0</tRfunc>
<tRbox>1</tRbox>
<tRtrace>1</tRtrace>
<sRSysVw>1</sRSysVw>
<tRSysVw>1</tRSysVw>
<sRunDeb>0</sRunDeb>
<sLrtime>0</sLrtime>
<bEvRecOn>1</bEvRecOn>
<bSchkAxf>0</bSchkAxf>
<bTchkAxf>0</bTchkAxf>
<nTsel>6</nTsel>
<sDll></sDll>
<sDllPa></sDllPa>
<sDlgDll></sDlgDll>
<sDlgPa></sDlgPa>
<sIfile></sIfile>
<tDll></tDll>
<tDllPa></tDllPa>
<tDlgDll></tDlgDll>
<tDlgPa></tDlgPa>
<tIfile></tIfile>
<pMon>Segger\JL2CM3.dll</pMon>
</DebugOpt>
<TargetDriverDllRegistry>
<SetRegEntry>
<Number>0</Number>
<Key>CMSIS_AGDI</Key>
<Name>-X"Any" -UAny -O206 -S0 -C0 -P00000000 -N00("ARM CoreSight SW-DP") -D00(0BC11477) -L00(0) -TO65554 -TC10000000 -TT10000000 -TP20 -TDS8007 -TDT0 -TDC1F -TIEFFFFFFFF -TIP8 -FO15 -FD20000000 -FC1000 -FN1 -FF0FlashHC32L17X_128K.FLM -FS00 -FL020000 -FP0($$Device:HC32L170JATA$Flash\FlashHC32L17X_128K.FLM)</Name>
</SetRegEntry>
<SetRegEntry>
<Number>0</Number>
<Key>UL2CM3</Key>
<Name>UL2CM3(-S0 -C0 -P0 ) -FN1 -FC1000 -FD20000000 -FF0FlashHC32L17X_128K -FL020000 -FS00 -FP0($$Device:HC32L170JATA$Flash\FlashHC32L17X_128K.FLM)</Name>
</SetRegEntry>
<SetRegEntry>
<Number>0</Number>
<Key>JL2CM3</Key>
<Name>-U4294967295 -O78 -S2 -ZTIFSpeedSel5000 -A0 -C0 -JU1 -JI127.0.0.1 -JP0 -RST0 -N00("ARM CoreSight SW-DP") -D00(0BC11477) -L00(0) -TO18 -TC10000000 -TP21 -TDS8027 -TDT0 -TDC1F -TIEFFFFFFFF -TIP8 -TB1 -TFE0 -FO31 -FD20000000 -FC1000 -FN1 -FF0FlashHC32L17X_128K.FLM -FS00 -FL020000 -FP0($$Device:HC32L170JATA$Flash\FlashHC32L17X_128K.FLM)</Name>
</SetRegEntry>
<SetRegEntry>
<Number>0</Number>
<Key>DLGUARM</Key>
<Name></Name>
</SetRegEntry>
<SetRegEntry>
<Number>0</Number>
<Key>ARMRTXEVENTFLAGS</Key>
<Name>-L70 -Z18 -C0 -M0 -T1</Name>
</SetRegEntry>
<SetRegEntry>
<Number>0</Number>
<Key>DLGTARM</Key>
<Name>(1010=-1,-1,-1,-1,0)(1007=-1,-1,-1,-1,0)(1008=-1,-1,-1,-1,0)(1009=-1,-1,-1,-1,0)</Name>
</SetRegEntry>
<SetRegEntry>
<Number>0</Number>
<Key>ARMDBGFLAGS</Key>
<Name></Name>
</SetRegEntry>
</TargetDriverDllRegistry>
<Breakpoint/>
<WatchWindow1>
<Ww>
<count>0</count>
<WinNumber>1</WinNumber>
<ItemText>SFBTC.ColletAltitude</ItemText>
</Ww>
<Ww>
<count>1</count>
<WinNumber>1</WinNumber>
<ItemText>BLE.AtCmd</ItemText>
</Ww>
<Ww>
<count>2</count>
<WinNumber>1</WinNumber>
<ItemText>BLE.RxBuff</ItemText>
</Ww>
<Ww>
<count>3</count>
<WinNumber>1</WinNumber>
<ItemText>BeaMac</ItemText>
</Ww>
<Ww>
<count>4</count>
<WinNumber>1</WinNumber>
<ItemText>BL.RxBuff</ItemText>
</Ww>
<Ww>
<count>5</count>
<WinNumber>1</WinNumber>
<ItemText>sData</ItemText>
</Ww>
<Ww>
<count>6</count>
<WinNumber>1</WinNumber>
<ItemText>BL.Status,0x0A</ItemText>
</Ww>
<Ww>
<count>7</count>
<WinNumber>1</WinNumber>
<ItemText>BL.Para</ItemText>
</Ww>
<Ww>
<count>8</count>
<WinNumber>1</WinNumber>
<ItemText>DevMac</ItemText>
</Ww>
</WatchWindow1>
<MemoryWindow1>
<Mm>
<WinNumber>1</WinNumber>
<SubType>0</SubType>
<ItemText>0x00002800</ItemText>
<AccSizeX>0</AccSizeX>
</Mm>
</MemoryWindow1>
<MemoryWindow2>
<Mm>
<WinNumber>2</WinNumber>
<SubType>2</SubType>
<ItemText>0x20000f35</ItemText>
<AccSizeX>0</AccSizeX>
</Mm>
</MemoryWindow2>
<Tracepoint>
<THDelay>0</THDelay>
</Tracepoint>
<DebugFlag>
<trace>0</trace>
<periodic>1</periodic>
<aLwin>0</aLwin>
<aCover>0</aCover>
<aSer1>0</aSer1>
<aSer2>0</aSer2>
<aPa>0</aPa>
<viewmode>1</viewmode>
<vrSel>0</vrSel>
<aSym>0</aSym>
<aTbox>0</aTbox>
<AscS1>0</AscS1>
<AscS2>0</AscS2>
<AscS3>0</AscS3>
<aSer3>0</aSer3>
<eProf>0</eProf>
<aLa>0</aLa>
<aPa1>0</aPa1>
<AscS4>0</AscS4>
<aSer4>0</aSer4>
<StkLoc>0</StkLoc>
<TrcWin>0</TrcWin>
<newCpu>0</newCpu>
<uProt>0</uProt>
</DebugFlag>
<LintExecutable></LintExecutable>
<LintConfigFile></LintConfigFile>
<bLintAuto>0</bLintAuto>
<bAutoGenD>0</bAutoGenD>
<LntExFlags>0</LntExFlags>
<pMisraName></pMisraName>
<pszMrule></pszMrule>
<pSingCmds></pSingCmds>
<pMultCmds></pMultCmds>
<pMisraNamep></pMisraNamep>
<pszMrulep></pszMrulep>
<pSingCmdsp></pSingCmdsp>
<pMultCmdsp></pMultCmdsp>
<DebugDescription>
<Enable>1</Enable>
<EnableFlashSeq>0</EnableFlashSeq>
<EnableLog>0</EnableLog>
<Protocol>2</Protocol>
<DbgClock>1000000</DbgClock>
</DebugDescription>
</TargetOption>
</Target>
<Group>
<GroupName>common</GroupName>
<tvExp>1</tvExp>
<tvExpOptDlg>0</tvExpOptDlg>
<cbSel>0</cbSel>
<RteFlg>0</RteFlg>
<File>
<GroupNumber>1</GroupNumber>
<FileNumber>1</FileNumber>
<FileType>2</FileType>
<tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg>
<bDave2>0</bDave2>
<PathWithFileName>.\startup_hc32l17x.s</PathWithFileName>
<FilenameWithoutPath>startup_hc32l17x.s</FilenameWithoutPath>
<RteFlg>0</RteFlg>
<bShared>0</bShared>
</File>
<File>
<GroupNumber>1</GroupNumber>
<FileNumber>2</FileNumber>
<FileType>1</FileType>
<tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg>
<bDave2>0</bDave2>
<PathWithFileName>..\mcu\common\system_hc32l17x.c</PathWithFileName>
<FilenameWithoutPath>system_hc32l17x.c</FilenameWithoutPath>
<RteFlg>0</RteFlg>
<bShared>0</bShared>
</File>
<File>
<GroupNumber>1</GroupNumber>
<FileNumber>3</FileNumber>
<FileType>1</FileType>
<tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg>
<bDave2>0</bDave2>
<PathWithFileName>..\mcu\common\interrupts_hc32l17x.c</PathWithFileName>
<FilenameWithoutPath>interrupts_hc32l17x.c</FilenameWithoutPath>
<RteFlg>0</RteFlg>
<bShared>0</bShared>
</File>
</Group>
<Group>
<GroupName>source</GroupName>
<tvExp>1</tvExp>
<tvExpOptDlg>0</tvExpOptDlg>
<cbSel>0</cbSel>
<RteFlg>0</RteFlg>
<File>
<GroupNumber>2</GroupNumber>
<FileNumber>4</FileNumber>
<FileType>1</FileType>
<tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg>
<bDave2>0</bDave2>
<PathWithFileName>..\source\Src\main.c</PathWithFileName>
<FilenameWithoutPath>main.c</FilenameWithoutPath>
<RteFlg>0</RteFlg>
<bShared>0</bShared>
</File>
<File>
<GroupNumber>2</GroupNumber>
<FileNumber>5</FileNumber>
<FileType>1</FileType>
<tvExp>1</tvExp>
<tvExpOptDlg>0</tvExpOptDlg>
<bDave2>0</bDave2>
<PathWithFileName>..\source\src\bsp.c</PathWithFileName>
<FilenameWithoutPath>bsp.c</FilenameWithoutPath>
<RteFlg>0</RteFlg>
<bShared>0</bShared>
</File>
</Group>
<Group>
<GroupName>driver</GroupName>
<tvExp>1</tvExp>
<tvExpOptDlg>0</tvExpOptDlg>
<cbSel>0</cbSel>
<RteFlg>0</RteFlg>
<File>
<GroupNumber>3</GroupNumber>
<FileNumber>6</FileNumber>
<FileType>1</FileType>
<tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg>
<bDave2>0</bDave2>
<PathWithFileName>..\driver\src\flash.c</PathWithFileName>
<FilenameWithoutPath>flash.c</FilenameWithoutPath>
<RteFlg>0</RteFlg>
<bShared>0</bShared>
</File>
<File>
<GroupNumber>3</GroupNumber>
<FileNumber>7</FileNumber>
<FileType>1</FileType>
<tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg>
<bDave2>0</bDave2>
<PathWithFileName>..\driver\src\gpio.c</PathWithFileName>
<FilenameWithoutPath>gpio.c</FilenameWithoutPath>
<RteFlg>0</RteFlg>
<bShared>0</bShared>
</File>
<File>
<GroupNumber>3</GroupNumber>
<FileNumber>8</FileNumber>
<FileType>1</FileType>
<tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg>
<bDave2>0</bDave2>
<PathWithFileName>..\driver\src\wdt.c</PathWithFileName>
<FilenameWithoutPath>wdt.c</FilenameWithoutPath>
<RteFlg>0</RteFlg>
<bShared>0</bShared>
</File>
<File>
<GroupNumber>3</GroupNumber>
<FileNumber>9</FileNumber>
<FileType>1</FileType>
<tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg>
<bDave2>0</bDave2>
<PathWithFileName>..\driver\src\ddl.c</PathWithFileName>
<FilenameWithoutPath>ddl.c</FilenameWithoutPath>
<RteFlg>0</RteFlg>
<bShared>0</bShared>
</File>
<File>
<GroupNumber>3</GroupNumber>
<FileNumber>10</FileNumber>
<FileType>1</FileType>
<tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg>
<bDave2>0</bDave2>
<PathWithFileName>..\driver\src\sysctrl.c</PathWithFileName>
<FilenameWithoutPath>sysctrl.c</FilenameWithoutPath>
<RteFlg>0</RteFlg>
<bShared>0</bShared>
</File>
<File>
<GroupNumber>3</GroupNumber>
<FileNumber>11</FileNumber>
<FileType>1</FileType>
<tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg>
<bDave2>0</bDave2>
<PathWithFileName>..\driver\src\bt.c</PathWithFileName>
<FilenameWithoutPath>bt.c</FilenameWithoutPath>
<RteFlg>0</RteFlg>
<bShared>0</bShared>
</File>
<File>
<GroupNumber>3</GroupNumber>
<FileNumber>12</FileNumber>
<FileType>1</FileType>
<tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg>
<bDave2>0</bDave2>
<PathWithFileName>..\driver\src\lpuart.c</PathWithFileName>
<FilenameWithoutPath>lpuart.c</FilenameWithoutPath>
<RteFlg>0</RteFlg>
<bShared>0</bShared>
</File>
</Group>
<Group>
<GroupName>::CMSIS</GroupName>
<tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg>
<cbSel>0</cbSel>
<RteFlg>1</RteFlg>
</Group>
</ProjectOpt>
-490
View File
@@ -1,490 +0,0 @@
<?xml version="1.0" encoding="UTF-8" standalone="no" ?>
<Project xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:noNamespaceSchemaLocation="project_projx.xsd">
<SchemaVersion>2.1</SchemaVersion>
<Header>### uVision Project, (C) Keil Software</Header>
<Targets>
<Target>
<TargetName>HC32L17X</TargetName>
<ToolsetNumber>0x4</ToolsetNumber>
<ToolsetName>ARM-ADS</ToolsetName>
<pArmCC>6160000::V6.16::ARMCLANG</pArmCC>
<pCCUsed>6160000::V6.16::ARMCLANG</pCCUsed>
<uAC6>1</uAC6>
<TargetOption>
<TargetCommonOption>
<Device>HC32L170JATA</Device>
<Vendor>HDSC</Vendor>
<PackID>HDSC.HC32L17X.1.0.1</PackID>
<PackURL>https://raw.githubusercontent.com/hdscmcu/pack/master/</PackURL>
<Cpu>IRAM(0x20000000,0x4000) IROM(0x00000000,0x20000) CPUTYPE("Cortex-M0+") CLOCK(12000000) ELITTLE</Cpu>
<FlashUtilSpec></FlashUtilSpec>
<StartupFile></StartupFile>
<FlashDriverDll>UL2CM3(-S0 -C0 -P0 -FD20000000 -FC1000 -FN1 -FF0FlashHC32L17X_128K -FS00 -FL020000 -FP0($$Device:HC32L170JATA$Flash\FlashHC32L17X_128K.FLM))</FlashDriverDll>
<DeviceId>0</DeviceId>
<RegisterFile>$$Device:HC32L170JATA$Device\Include\HC32L170JATA.h</RegisterFile>
<MemoryEnv></MemoryEnv>
<Cmp></Cmp>
<Asm></Asm>
<Linker></Linker>
<OHString></OHString>
<InfinionOptionDll></InfinionOptionDll>
<SLE66CMisc></SLE66CMisc>
<SLE66AMisc></SLE66AMisc>
<SLE66LinkerMisc></SLE66LinkerMisc>
<SFDFile>$$Device:HC32L170JATA$SVD\HC32L170JATA.sfr</SFDFile>
<bCustSvd>1</bCustSvd>
<UseEnv>0</UseEnv>
<BinPath></BinPath>
<IncludePath></IncludePath>
<LibPath></LibPath>
<RegisterFilePath></RegisterFilePath>
<DBRegisterFilePath></DBRegisterFilePath>
<TargetStatus>
<Error>0</Error>
<ExitCodeStop>0</ExitCodeStop>
<ButtonStop>0</ButtonStop>
<NotGenerated>0</NotGenerated>
<InvalidFlash>1</InvalidFlash>
</TargetStatus>
<OutputDirectory>.\output\</OutputDirectory>
<OutputName>hc32l17x</OutputName>
<CreateExecutable>1</CreateExecutable>
<CreateLib>0</CreateLib>
<CreateHexFile>1</CreateHexFile>
<DebugInformation>1</DebugInformation>
<BrowseInformation>1</BrowseInformation>
<ListingPath>.\output\release\</ListingPath>
<HexFormatSelection>1</HexFormatSelection>
<Merge32K>0</Merge32K>
<CreateBatchFile>0</CreateBatchFile>
<BeforeCompile>
<RunUserProg1>0</RunUserProg1>
<RunUserProg2>0</RunUserProg2>
<UserProg1Name></UserProg1Name>
<UserProg2Name></UserProg2Name>
<UserProg1Dos16Mode>0</UserProg1Dos16Mode>
<UserProg2Dos16Mode>0</UserProg2Dos16Mode>
<nStopU1X>0</nStopU1X>
<nStopU2X>0</nStopU2X>
</BeforeCompile>
<BeforeMake>
<RunUserProg1>0</RunUserProg1>
<RunUserProg2>0</RunUserProg2>
<UserProg1Name></UserProg1Name>
<UserProg2Name></UserProg2Name>
<UserProg1Dos16Mode>0</UserProg1Dos16Mode>
<UserProg2Dos16Mode>0</UserProg2Dos16Mode>
<nStopB1X>0</nStopB1X>
<nStopB2X>0</nStopB2X>
</BeforeMake>
<AfterMake>
<RunUserProg1>0</RunUserProg1>
<RunUserProg2>0</RunUserProg2>
<UserProg1Name>D:\Program Files (x86)\Keil_v5\ARM\ARMCC\bin\fromelf.exe --bin -o .\output\app.bin .\output\hc32l17x.axf</UserProg1Name>
<UserProg2Name>D:\Keil_v5\ARM\ARMCC\bin\fromelf.exe --bin -o .\output\app.bin .\output\hc32l17x.axf</UserProg2Name>
<UserProg1Dos16Mode>0</UserProg1Dos16Mode>
<UserProg2Dos16Mode>0</UserProg2Dos16Mode>
<nStopA1X>0</nStopA1X>
<nStopA2X>0</nStopA2X>
</AfterMake>
<SelectedForBatchBuild>0</SelectedForBatchBuild>
<SVCSIdString></SVCSIdString>
</TargetCommonOption>
<CommonProperty>
<UseCPPCompiler>0</UseCPPCompiler>
<RVCTCodeConst>0</RVCTCodeConst>
<RVCTZI>0</RVCTZI>
<RVCTOtherData>0</RVCTOtherData>
<ModuleSelection>0</ModuleSelection>
<IncludeInBuild>1</IncludeInBuild>
<AlwaysBuild>0</AlwaysBuild>
<GenerateAssemblyFile>0</GenerateAssemblyFile>
<AssembleAssemblyFile>0</AssembleAssemblyFile>
<PublicsOnly>0</PublicsOnly>
<StopOnExitCode>3</StopOnExitCode>
<CustomArgument></CustomArgument>
<IncludeLibraryModules></IncludeLibraryModules>
<ComprImg>1</ComprImg>
</CommonProperty>
<DllOption>
<SimDllName>SARMCM3.DLL</SimDllName>
<SimDllArguments> </SimDllArguments>
<SimDlgDll>DARMCM1.DLL</SimDlgDll>
<SimDlgDllArguments>-pCM0+</SimDlgDllArguments>
<TargetDllName>SARMCM3.DLL</TargetDllName>
<TargetDllArguments> </TargetDllArguments>
<TargetDlgDll>TARMCM1.DLL</TargetDlgDll>
<TargetDlgDllArguments>-pCM0+</TargetDlgDllArguments>
</DllOption>
<DebugOption>
<OPTHX>
<HexSelection>1</HexSelection>
<HexRangeLowAddress>0</HexRangeLowAddress>
<HexRangeHighAddress>0</HexRangeHighAddress>
<HexOffset>0</HexOffset>
<Oh166RecLen>16</Oh166RecLen>
</OPTHX>
</DebugOption>
<Utilities>
<Flash1>
<UseTargetDll>1</UseTargetDll>
<UseExternalTool>0</UseExternalTool>
<RunIndependent>0</RunIndependent>
<UpdateFlashBeforeDebugging>1</UpdateFlashBeforeDebugging>
<Capability>1</Capability>
<DriverSelection>4096</DriverSelection>
</Flash1>
<bUseTDR>1</bUseTDR>
<Flash2>BIN\UL2CM3.DLL</Flash2>
<Flash3>"" ()</Flash3>
<Flash4></Flash4>
<pFcarmOut></pFcarmOut>
<pFcarmGrp></pFcarmGrp>
<pFcArmRoot></pFcArmRoot>
<FcArmLst>0</FcArmLst>
</Utilities>
<TargetArmAds>
<ArmAdsMisc>
<GenerateListings>0</GenerateListings>
<asHll>1</asHll>
<asAsm>1</asAsm>
<asMacX>1</asMacX>
<asSyms>1</asSyms>
<asFals>1</asFals>
<asDbgD>1</asDbgD>
<asForm>1</asForm>
<ldLst>0</ldLst>
<ldmm>1</ldmm>
<ldXref>1</ldXref>
<BigEnd>0</BigEnd>
<AdsALst>0</AdsALst>
<AdsACrf>0</AdsACrf>
<AdsANop>0</AdsANop>
<AdsANot>0</AdsANot>
<AdsLLst>1</AdsLLst>
<AdsLmap>1</AdsLmap>
<AdsLcgr>0</AdsLcgr>
<AdsLsym>1</AdsLsym>
<AdsLszi>1</AdsLszi>
<AdsLtoi>1</AdsLtoi>
<AdsLsun>0</AdsLsun>
<AdsLven>0</AdsLven>
<AdsLsxf>0</AdsLsxf>
<RvctClst>0</RvctClst>
<GenPPlst>0</GenPPlst>
<AdsCpuType>"Cortex-M0+"</AdsCpuType>
<RvctDeviceName></RvctDeviceName>
<mOS>0</mOS>
<uocRom>0</uocRom>
<uocRam>0</uocRam>
<hadIROM>1</hadIROM>
<hadIRAM>1</hadIRAM>
<hadXRAM>0</hadXRAM>
<uocXRam>0</uocXRam>
<RvdsVP>0</RvdsVP>
<RvdsMve>0</RvdsMve>
<RvdsCdeCp>0</RvdsCdeCp>
<nBranchProt>0</nBranchProt>
<hadIRAM2>0</hadIRAM2>
<hadIROM2>0</hadIROM2>
<StupSel>8</StupSel>
<useUlib>1</useUlib>
<EndSel>0</EndSel>
<uLtcg>0</uLtcg>
<nSecure>0</nSecure>
<RoSelD>3</RoSelD>
<RwSelD>3</RwSelD>
<CodeSel>0</CodeSel>
<OptFeed>0</OptFeed>
<NoZi1>0</NoZi1>
<NoZi2>0</NoZi2>
<NoZi3>0</NoZi3>
<NoZi4>0</NoZi4>
<NoZi5>0</NoZi5>
<Ro1Chk>0</Ro1Chk>
<Ro2Chk>0</Ro2Chk>
<Ro3Chk>0</Ro3Chk>
<Ir1Chk>1</Ir1Chk>
<Ir2Chk>0</Ir2Chk>
<Ra1Chk>0</Ra1Chk>
<Ra2Chk>0</Ra2Chk>
<Ra3Chk>0</Ra3Chk>
<Im1Chk>1</Im1Chk>
<Im2Chk>0</Im2Chk>
<OnChipMemories>
<Ocm1>
<Type>0</Type>
<StartAddress>0x0</StartAddress>
<Size>0x0</Size>
</Ocm1>
<Ocm2>
<Type>0</Type>
<StartAddress>0x0</StartAddress>
<Size>0x0</Size>
</Ocm2>
<Ocm3>
<Type>0</Type>
<StartAddress>0x0</StartAddress>
<Size>0x0</Size>
</Ocm3>
<Ocm4>
<Type>0</Type>
<StartAddress>0x0</StartAddress>
<Size>0x0</Size>
</Ocm4>
<Ocm5>
<Type>0</Type>
<StartAddress>0x0</StartAddress>
<Size>0x0</Size>
</Ocm5>
<Ocm6>
<Type>0</Type>
<StartAddress>0x0</StartAddress>
<Size>0x0</Size>
</Ocm6>
<IRAM>
<Type>0</Type>
<StartAddress>0x20000000</StartAddress>
<Size>0x4000</Size>
</IRAM>
<IROM>
<Type>1</Type>
<StartAddress>0x0</StartAddress>
<Size>0x20000</Size>
</IROM>
<XRAM>
<Type>0</Type>
<StartAddress>0x0</StartAddress>
<Size>0x0</Size>
</XRAM>
<OCR_RVCT1>
<Type>1</Type>
<StartAddress>0x0</StartAddress>
<Size>0x0</Size>
</OCR_RVCT1>
<OCR_RVCT2>
<Type>1</Type>
<StartAddress>0x0</StartAddress>
<Size>0x0</Size>
</OCR_RVCT2>
<OCR_RVCT3>
<Type>1</Type>
<StartAddress>0x0</StartAddress>
<Size>0x0</Size>
</OCR_RVCT3>
<OCR_RVCT4>
<Type>1</Type>
<StartAddress>0x0</StartAddress>
<Size>0x20000</Size>
</OCR_RVCT4>
<OCR_RVCT5>
<Type>1</Type>
<StartAddress>0x0</StartAddress>
<Size>0x0</Size>
</OCR_RVCT5>
<OCR_RVCT6>
<Type>0</Type>
<StartAddress>0x0</StartAddress>
<Size>0x0</Size>
</OCR_RVCT6>
<OCR_RVCT7>
<Type>0</Type>
<StartAddress>0x0</StartAddress>
<Size>0x0</Size>
</OCR_RVCT7>
<OCR_RVCT8>
<Type>0</Type>
<StartAddress>0x0</StartAddress>
<Size>0x0</Size>
</OCR_RVCT8>
<OCR_RVCT9>
<Type>0</Type>
<StartAddress>0x20000000</StartAddress>
<Size>0x4000</Size>
</OCR_RVCT9>
<OCR_RVCT10>
<Type>0</Type>
<StartAddress>0x0</StartAddress>
<Size>0x0</Size>
</OCR_RVCT10>
</OnChipMemories>
<RvctStartVector></RvctStartVector>
</ArmAdsMisc>
<Cads>
<interw>1</interw>
<Optim>1</Optim>
<oTime>0</oTime>
<SplitLS>0</SplitLS>
<OneElfS>1</OneElfS>
<Strict>0</Strict>
<EnumInt>0</EnumInt>
<PlainCh>0</PlainCh>
<Ropi>0</Ropi>
<Rwpi>0</Rwpi>
<wLevel>4</wLevel>
<uThumb>0</uThumb>
<uSurpInc>0</uSurpInc>
<uC99>1</uC99>
<uGnu>0</uGnu>
<useXO>0</useXO>
<v6Lang>3</v6Lang>
<v6LangP>0</v6LangP>
<vShortEn>0</vShortEn>
<vShortWch>0</vShortWch>
<v6Lto>0</v6Lto>
<v6WtE>0</v6WtE>
<v6Rtti>0</v6Rtti>
<VariousControls>
<MiscControls></MiscControls>
<Define></Define>
<Undefine></Undefine>
<IncludePath>..\mcu\common;..\source;..\driver\inc;..\source\inc;..\Module\LIS2HH12;..\Module\Debug;..\Module\GPS;..\Module\spl06;..\Module\CAT1;..\Module\WH-BLE106</IncludePath>
</VariousControls>
</Cads>
<Aads>
<interw>1</interw>
<Ropi>0</Ropi>
<Rwpi>0</Rwpi>
<thumb>0</thumb>
<SplitLS>0</SplitLS>
<SwStkChk>0</SwStkChk>
<NoWarn>0</NoWarn>
<uSurpInc>0</uSurpInc>
<useXO>0</useXO>
<ClangAsOpt>4</ClangAsOpt>
<VariousControls>
<MiscControls></MiscControls>
<Define></Define>
<Undefine></Undefine>
<IncludePath></IncludePath>
</VariousControls>
</Aads>
<LDads>
<umfTarg>1</umfTarg>
<Ropi>0</Ropi>
<Rwpi>0</Rwpi>
<noStLib>0</noStLib>
<RepFail>1</RepFail>
<useFile>0</useFile>
<TextAddressRange>0x00000000</TextAddressRange>
<DataAddressRange>0x20000000</DataAddressRange>
<pXoBase></pXoBase>
<ScatterFile>template.sct</ScatterFile>
<IncludeLibs></IncludeLibs>
<IncludeLibsPath></IncludeLibsPath>
<Misc>--keep=*Handler</Misc>
<LinkerInputFile></LinkerInputFile>
<DisabledWarnings></DisabledWarnings>
</LDads>
</TargetArmAds>
</TargetOption>
<Groups>
<Group>
<GroupName>common</GroupName>
<Files>
<File>
<FileName>startup_hc32l17x.s</FileName>
<FileType>2</FileType>
<FilePath>.\startup_hc32l17x.s</FilePath>
</File>
<File>
<FileName>system_hc32l17x.c</FileName>
<FileType>1</FileType>
<FilePath>..\mcu\common\system_hc32l17x.c</FilePath>
</File>
<File>
<FileName>interrupts_hc32l17x.c</FileName>
<FileType>1</FileType>
<FilePath>..\mcu\common\interrupts_hc32l17x.c</FilePath>
</File>
</Files>
</Group>
<Group>
<GroupName>source</GroupName>
<Files>
<File>
<FileName>main.c</FileName>
<FileType>1</FileType>
<FilePath>..\source\Src\main.c</FilePath>
</File>
<File>
<FileName>bsp.c</FileName>
<FileType>1</FileType>
<FilePath>..\source\src\bsp.c</FilePath>
</File>
</Files>
</Group>
<Group>
<GroupName>driver</GroupName>
<Files>
<File>
<FileName>flash.c</FileName>
<FileType>1</FileType>
<FilePath>..\driver\src\flash.c</FilePath>
</File>
<File>
<FileName>gpio.c</FileName>
<FileType>1</FileType>
<FilePath>..\driver\src\gpio.c</FilePath>
</File>
<File>
<FileName>wdt.c</FileName>
<FileType>1</FileType>
<FilePath>..\driver\src\wdt.c</FilePath>
</File>
<File>
<FileName>ddl.c</FileName>
<FileType>1</FileType>
<FilePath>..\driver\src\ddl.c</FilePath>
</File>
<File>
<FileName>sysctrl.c</FileName>
<FileType>1</FileType>
<FilePath>..\driver\src\sysctrl.c</FilePath>
</File>
<File>
<FileName>bt.c</FileName>
<FileType>1</FileType>
<FilePath>..\driver\src\bt.c</FilePath>
</File>
<File>
<FileName>lpuart.c</FileName>
<FileType>1</FileType>
<FilePath>..\driver\src\lpuart.c</FilePath>
</File>
</Files>
</Group>
<Group>
<GroupName>::CMSIS</GroupName>
</Group>
</Groups>
</Target>
</Targets>
<RTE>
<apis/>
<components>
<component Cclass="CMSIS" Cgroup="CORE" Cvendor="ARM" Cversion="5.5.0" condition="ARMv6_7_8-M Device">
<package name="CMSIS" schemaVersion="1.3" url="http://www.keil.com/pack/" vendor="ARM" version="5.8.0"/>
<targetInfos>
<targetInfo name="HC32L17X"/>
</targetInfos>
</component>
</components>
<files/>
</RTE>
<LayerInfo>
<Layers>
<Layer>
<LayName>&lt;Project Info&gt;</LayName>
<LayTarg>0</LayTarg>
<LayPrjMark>1</LayPrjMark>
</Layer>
</Layers>
</LayerInfo>
</Project>
-16
View File
@@ -1,16 +0,0 @@
; *************************************************************
; *** Scatter-Loading Description File generated by uVision ***
; *************************************************************
LR_IROM1 0x00000000 0x00020000 { ; load region size_region
ER_IROM1 0x00000000 0x00020000 { ; load address = execution address
*.o (RESET, +First)
*(InRoot$$Sections)
.ANY (+RO)
.ANY (+XO)
}
RW_IRAM1 0x20000000 0x00004000 { ; RW data
.ANY (+RW +ZI)
}
}
-298
View File
@@ -1,298 +0,0 @@
;/******************************************************************************
;* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
;*
;* This software is owned and published by:
;* Huada Semiconductor Co.,Ltd ("HDSC").
;*
;* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
;* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
;*
;* This software contains source code for use with HDSC
;* components. This software is licensed by HDSC to be adapted only
;* for use in systems utilizing HDSC components. HDSC shall not be
;* responsible for misuse or illegal use of this software for devices not
;* supported herein. HDSC is providing this software "AS IS" and will
;* not be responsible for issues arising from incorrect user implementation
;* of the software.
;*
;* Disclaimer:
;* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
;* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
;* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
;* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
;* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
;* WARRANTY OF NONINFRINGEMENT.
;* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
;* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
;* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
;* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
;* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
;* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
;* SAVINGS OR PROFITS,
;* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
;* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
;* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
;* FROM, THE SOFTWARE.
;*
;* This software may be replicated in part or whole for the licensed use,
;* with the restriction that this Disclaimer and Copyright notice must be
;* included with each copy of this software, whether used in part or whole,
;* at all times.
;*/
;/*****************************************************************************/
;/*****************************************************************************/
;/* Startup for ARM */
;/* Version V1.0 */
;/* Date 2019-03-01 */
;/* Target-mcu {MCU_PN_H} */
;/*****************************************************************************/
; Stack Configuration
; Stack Size (in Bytes) <0x0-0xFFFFFFFF:8>
Stack_Size EQU 0x00001000
AREA STACK, NOINIT, READWRITE, ALIGN=3
Stack_Mem SPACE Stack_Size
__initial_sp
; Heap Configuration
; Heap Size (in Bytes) <0x0-0xFFFFFFFF:8>
Heap_Size EQU 0x00000400
AREA HEAP, NOINIT, READWRITE, ALIGN=3
__heap_base
Heap_Mem SPACE Heap_Size
__heap_limit
PRESERVE8
THUMB
; Vector Table Mapped to Address 0 at Reset
AREA RESET, DATA, READONLY
EXPORT __Vectors
EXPORT __Vectors_End
EXPORT __Vectors_Size
__Vectors
DCD __initial_sp ; Top of Stack
DCD Reset_Handler ; Reset
DCD NMI_Handler ; NMI
DCD HardFault_Handler ; Hard Fault
DCD 0 ; Reserved
DCD 0 ; Reserved
DCD 0 ; Reserved
DCD 0 ; Reserved
DCD 0 ; Reserved
DCD 0 ; Reserved
DCD 0 ; Reserved
DCD SVC_Handler ; SVCall
DCD 0 ; Reserved
DCD 0 ; Reserved
DCD PendSV_Handler ; PendSV
DCD SysTick_Handler ; SysTick
DCD PORTA_IRQHandler
DCD PORTB_IRQHandler
DCD PORTC_E_IRQHandler
DCD PORTD_F_IRQHandler
DCD DMAC_IRQHandler
DCD TIM3_IRQHandler
DCD UART0_2_IRQHandler
DCD UART1_3_IRQHandler
DCD LPUART0_IRQHandler
DCD LPUART1_IRQHandler
DCD SPI0_IRQHandler
DCD SPI1_IRQHandler
DCD I2C0_IRQHandler
DCD I2C1_IRQHandler
DCD TIM0_IRQHandler
DCD TIM1_IRQHandler
DCD TIM2_IRQHandler
DCD LPTIM0_1_IRQHandler
DCD TIM4_IRQHandler
DCD TIM5_IRQHandler
DCD TIM6_IRQHandler
DCD PCA_IRQHandler
DCD WDT_IRQHandler
DCD RTC_IRQHandler
DCD ADC_DAC_IRQHandler
DCD PCNT_IRQHandler
DCD VC0_IRQHandler
DCD VC1_2_IRQHandler
DCD LVD_IRQHandler
DCD LCD_IRQHandler
DCD FLASH_RAM_IRQHandler
DCD CLKTRIM_IRQHandler
__Vectors_End
__Vectors_Size EQU __Vectors_End - __Vectors
AREA |.text|, CODE, READONLY
; Reset Handler
Reset_Handler PROC
EXPORT Reset_Handler [WEAK]
IMPORT SystemInit
IMPORT __main
;reset NVIC if in rom debug
LDR R0, =0x20000000
LDR R2, =0x0
MOVS R1, #0 ; for warning,
ADD R1, PC,#0 ; for A1609W,
CMP R1, R0
BLS RAMCODE
; ram code base address.
ADD R2, R0,R2
RAMCODE
; reset Vector table address.
LDR R0, =0xE000ED08
STR R2, [R0]
LDR R0, =SystemInit
BLX R0
LDR R0, =__main
BX R0
ENDP
; Dummy Exception Handlers (infinite loops which can be modified)
NMI_Handler PROC
EXPORT NMI_Handler [WEAK]
B .
ENDP
HardFault_Handler\
PROC
EXPORT HardFault_Handler [WEAK]
B .
ENDP
SVC_Handler PROC
EXPORT SVC_Handler [WEAK]
B .
ENDP
PendSV_Handler PROC
EXPORT PendSV_Handler [WEAK]
B .
ENDP
SysTick_Handler PROC
EXPORT SysTick_Handler [WEAK]
B .
ENDP
Default_Handler PROC
EXPORT PORTA_IRQHandler [WEAK]
EXPORT PORTB_IRQHandler [WEAK]
EXPORT PORTC_E_IRQHandler [WEAK]
EXPORT PORTD_F_IRQHandler [WEAK]
EXPORT DMAC_IRQHandler [WEAK]
EXPORT TIM3_IRQHandler [WEAK]
EXPORT UART0_2_IRQHandler [WEAK]
EXPORT UART1_3_IRQHandler [WEAK]
EXPORT LPUART0_IRQHandler [WEAK]
EXPORT LPUART1_IRQHandler [WEAK]
EXPORT SPI0_IRQHandler [WEAK]
EXPORT SPI1_IRQHandler [WEAK]
EXPORT I2C0_IRQHandler [WEAK]
EXPORT I2C1_IRQHandler [WEAK]
EXPORT TIM0_IRQHandler [WEAK]
EXPORT TIM1_IRQHandler [WEAK]
EXPORT TIM2_IRQHandler [WEAK]
EXPORT LPTIM0_1_IRQHandler [WEAK]
EXPORT TIM4_IRQHandler [WEAK]
EXPORT TIM5_IRQHandler [WEAK]
EXPORT TIM6_IRQHandler [WEAK]
EXPORT PCA_IRQHandler [WEAK]
EXPORT WDT_IRQHandler [WEAK]
EXPORT RTC_IRQHandler [WEAK]
EXPORT ADC_DAC_IRQHandler [WEAK]
EXPORT PCNT_IRQHandler [WEAK]
EXPORT VC0_IRQHandler [WEAK]
EXPORT VC1_2_IRQHandler [WEAK]
EXPORT LVD_IRQHandler [WEAK]
EXPORT LCD_IRQHandler [WEAK]
EXPORT FLASH_RAM_IRQHandler [WEAK]
EXPORT CLKTRIM_IRQHandler [WEAK]
PORTA_IRQHandler
PORTB_IRQHandler
PORTC_E_IRQHandler
PORTD_F_IRQHandler
DMAC_IRQHandler
TIM3_IRQHandler
UART0_2_IRQHandler
UART1_3_IRQHandler
LPUART0_IRQHandler
LPUART1_IRQHandler
SPI0_IRQHandler
SPI1_IRQHandler
I2C0_IRQHandler
I2C1_IRQHandler
TIM0_IRQHandler
TIM1_IRQHandler
TIM2_IRQHandler
LPTIM0_1_IRQHandler
TIM4_IRQHandler
TIM5_IRQHandler
TIM6_IRQHandler
PCA_IRQHandler
WDT_IRQHandler
RTC_IRQHandler
ADC_DAC_IRQHandler
PCNT_IRQHandler
VC0_IRQHandler
VC1_2_IRQHandler
LVD_IRQHandler
LCD_IRQHandler
FLASH_RAM_IRQHandler
CLKTRIM_IRQHandler
B .
ENDP
ALIGN
; User Initial Stack & Heap
IF :DEF:__MICROLIB
EXPORT __initial_sp
EXPORT __heap_base
EXPORT __heap_limit
ELSE
IMPORT __use_two_region_memory
EXPORT __user_initial_stackheap
__user_initial_stackheap
LDR R0, = Heap_Mem
LDR R1, =(Stack_Mem + Stack_Size)
LDR R2, = (Heap_Mem + Heap_Size)
LDR R3, = Stack_Mem
BX LR
ALIGN
ENDIF
END
-1
View File
@@ -1,3 +1,2 @@
# HC32L170Bootloader
HC32L170传感器通用通讯协议升级boot
-470
View File
@@ -1,470 +0,0 @@
/******************************************************************************
* Copyright (C) 2017, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file adc.h
**
** Header file for AD Converter functions
** @link ADC Group Some description @endlink
**
** - 2017-06-28 Alex First Version
**
******************************************************************************/
#ifndef __ADC_H__
#define __ADC_H__
/******************************************************************************/
/* Include files */
/******************************************************************************/
#include "ddl.h"
/* C binding of definitions if building with C++ compiler */
#ifdef __cplusplus
extern "C"
{
#endif
/**
******************************************************************************
** \defgroup AdcGroup AD Converter (ADC)
**
******************************************************************************/
//@{
/******************************************************************************
* Global definitions
******************************************************************************/
#define ADC_SCAN_CH0_EN (0x1u) /*!< SCAN模式使用ADC CH0 */
#define ADC_SCAN_CH1_EN (0x1u<<1) /*!< SCAN模式使用ADC CH1 */
#define ADC_SCAN_CH2_EN (0x1u<<2) /*!< SCAN模式使用ADC CH2 */
#define ADC_SCAN_CH3_EN (0x1u<<3) /*!< SCAN模式使用ADC CH3 */
#define ADC_SCAN_CH4_EN (0x1u<<4) /*!< SCAN模式使用ADC CH4 */
#define ADC_SCAN_CH5_EN (0x1u<<5) /*!< SCAN模式使用ADC CH5 */
#define ADC_SCAN_CH6_EN (0x1u<<6) /*!< SCAN模式使用ADC CH6 */
#define ADC_SCAN_CH7_EN (0x1u<<7) /*!< SCAN模式使用ADC CH7 */
/******************************************************************************
** Global type definitions
*****************************************************************************/
/**
******************************************************************************
** \brief ADC转换模式
*****************************************************************************/
typedef enum en_adc_mode
{
AdcSglMode = 0u, /*!< 单输入通道单次转换模式 */
AdcScanMode = 1u, /*!< 多输入通道顺序/插队扫描转换模式*/
}en_adc_mode_t;
/**
******************************************************************************
** \brief ADC时钟分频选择
*****************************************************************************/
typedef enum en_adc_clk_sel
{
AdcMskClkDiv1 = 0u<<2, /*!< PCLK */
AdcMskClkDiv2 = 1u<<2, /*!< 1/2 PCLK */
AdcMskClkDiv4 = 2u<<2, /*!< 1/4 PCLK */
AdcMskClkDiv8 = 3u<<2, /*!< 1/8 PCLK */
} en_adc_clk_div_t;
/**
******************************************************************************
** \brief ADC参考电压
*****************************************************************************/
typedef enum en_adc_ref_vol_sel
{
AdcMskRefVolSelInBgr1p5 = 0u<<9, /*!<内部参考电压1.5V(SPS<=200kHz)*/
AdcMskRefVolSelInBgr2p5 = 1u<<9, /*!<内部参考电压2.5V(avdd>3V,SPS<=200kHz)*/
AdcMskRefVolSelExtern1 = 2u<<9, /*!<外部输入(max avdd) PB01*/
AdcMskRefVolSelAVDD = 3u<<9, /*!<AVDD*/
}en_adc_ref_vol_sel_t;
/**
******************************************************************************
** \brief ADC转换通道选择
*****************************************************************************/
typedef enum en_adc_samp_ch_sel
{
AdcExInputCH0 = 0u, /*!<使用PA00*/
AdcExInputCH1 = 1u, /*!<使用PA01*/
AdcExInputCH2 = 2u, /*!<使用PA02*/
AdcExInputCH3 = 3u, /*!<使用PA03*/
AdcExInputCH4 = 4u, /*!<使用PA04*/
AdcExInputCH5 = 5u, /*!<使用PA05*/
AdcExInputCH6 = 6u, /*!<使用PA06*/
AdcExInputCH7 = 7u, /*!<使用PA07*/
AdcExInputCH8 = 8u, /*!<使用PB00*/
AdcExInputCH9 = 9u, /*!<使用PB01*/
AdcExInputCH10 = 10u, /*!<使用PC00*/
AdcExInputCH11 = 11u, /*!<使用PC01*/
AdcExInputCH12 = 12u, /*!<使用PC02*/
AdcExInputCH13 = 13u, /*!<使用PC03*/
AdcExInputCH14 = 14u, /*!<使用PC04*/
AdcExInputCH15 = 15u, /*!<使用PC05*/
AdcExInputCH16 = 16u, /*!<使用PB02*/
AdcExInputCH17 = 17u, /*!<使用PB10*/
AdcExInputCH18 = 18u, /*!<使用PB11*/
AdcExInputCH19 = 19u, /*!<使用PB12*/
AdcExInputCH20 = 20u, /*!<使用PB13*/
AdcExInputCH21 = 21u, /*!<使用PB14*/
AdcExInputCH22 = 22u, /*!<使用PB15*/
AdcExInputCH23 = 23u, /*!<使用PE15*/
AdcExInputCH24 = 24u, /*!<使用PE14*/
AdcExInputCH25 = 25u, /*!<使用PE13*/
AdcDacInput = 26u, /*!<使用DAC输出(必须使用输入增益)*/
AdcAVccdiv3Input = 27u, /*!<使用1/3 AVCC(必须使用输入增益)*/
AdcAiTsInput = 28u, /*!<使用内置温度传感器BGR_TS(必须使用输入增益)*/
AdcVref1_2Input = 29u, /*!<使用内部基准1.2V(必须使用输入增益)*/
}en_adc_samp_ch_sel_t;
/**
******************************************************************************
** \brief ADC输入信号放大器控制
*****************************************************************************/
typedef enum en_adc_op_buf
{
AdcMskBufEnable = 1u<<11, /*!< 打开放大器BUF */
AdcMskBufDisable = 0u, /*!< 关闭放大器BUF */
} en_adc_op_buf_t;
/**
******************************************************************************
** \brief ADC采样周期选择
*****************************************************************************/
typedef enum en_adc_samp_cycle_sel
{
AdcMskSampCycle4Clk = 0u<<12, /*!<4个采样时钟*/
AdcMskSampCycle6Clk = 1u<<12, /*!<6个采样时钟*/
AdcMskSampCycle8Clk = 2u<<12, /*!<8个采样时钟*/
AdcMskSampCycle12Clk = 3u<<12, /*!<12个采样时钟*/
}en_adc_samp_cycle_sel_t;
/**
******************************************************************************
** \brief ADC内部参考电压使能控制
*****************************************************************************/
typedef enum en_adc_in_ref
{
AdcMskInRefEnable = 1u<<14, /*!< 内部参考电压使能 */
AdcMskInRefDisable = 0u, /*!< 内部参考电压关闭 */
}en_adc_in_ref_t;
/**
******************************************************************************
** \brief ADC周边模块反射源选择
*****************************************************************************/
typedef enum en_adc_trig_sel
{
AdcMskTrigTimer0 = 1u<<0, /*!<选择timer0中断源,自动触发ADC采样*/
AdcMskTrigTimer1 = 1u<<1, /*!<选择timer1中断源,自动触发ADC采样*/
AdcMskTrigTimer2 = 1u<<2, /*!<选择timer2中断源,自动触发ADC采样*/
AdcMskTrigTimer3 = 1u<<3, /*!<选择timer3中断源,自动触发ADC采样*/
AdcMskTrigTimer4 = 1u<<4, /*!<选择timer4中断源,自动触发ADC采样*/
AdcMskTrigTimer5 = 1u<<5, /*!<选择timer5中断源,自动触发ADC采样*/
AdcMskTrigTimer6 = 1u<<6, /*!<选择timer6中断源,自动触发ADC采样*/
AdcMskTrigUart0 = 1u<<7, /*!<选择uart0中断源,自动触发ADC采样*/
AdcMskTrigUart1 = 1u<<8, /*!<选择uart1中断源,自动触发ADC采样*/
AdcMskTrigLpuart0 = 1u<<9, /*!<选择lpuart0中断源,自动触发ADC采样*/
AdcMskTrigLpuart1 = 1u<<10, /*!<选择lpuart1中断源,自动触发ADC采样*/
AdcMskTrigVC0 = 1u<<11, /*!<选择VC0中断源,自动触发ADC采样*/
AdcMskTrigVC1 = 1u<<12, /*!<选择VC1中断源,自动触发ADC采样*/
AdcMskTrigRTC = 1u<<13, /*!<选择RTC中断源,自动触发ADC采样*/
AdcMskTrigPCA = 1u<<14, /*!<选择PCA中断源,自动触发ADC采样*/
AdcMskTrigSPI0 = 1u<<15, /*!<选择SPI0中断源,自动触发ADC采样*/
AdcMskTrigSPI1 = 1u<<16, /*!<选择SPI1中断源,自动触发ADC采样*/
AdcMskTrigDMA = 1u<<17, /*!<选择DMA中断源,自动触发ADC采样*/
AdcMskTrigPA03 = 1u<<18, /*!<选择PA03中断源,自动触发ADC采样*/
AdcMskTrigPB03 = 1u<<19, /*!<选择PB03中断源,自动触发ADC采样*/
AdcMskTrigPC03 = 1u<<20, /*!<选择PC03中断源,自动触发ADC采样*/
AdcMskTrigPD03 = 1u<<21, /*!<选择PD03中断源,自动触发ADC采样*/
AdcMskTrigPA07 = 1u<<22, /*!<选择PA07中断源,自动触发ADC采样*/
AdcMskTrigPB07 = 1u<<23, /*!<选择PB07中断源,自动触发ADC采样*/
AdcMskTrigPC07 = 1u<<24, /*!<选择PC07中断源,自动触发ADC采样*/
AdcMskTrigPD07 = 1u<<25, /*!<选择PD07中断源,自动触发ADC采样*/
AdcMskTrigPA11 = 1u<<26, /*!<选择PA11中断源,自动触发ADC采样*/
AdcMskTrigPB11 = 1u<<27, /*!<选择PB11中断源,自动触发ADC采样*/
AdcMskTrigPC11 = 1u<<28, /*!<选择PC11中断源,自动触发ADC采样*/
AdcMskTrigPA15 = 1u<<29, /*!<选择PA15中断源,自动触发ADC采样*/
AdcMskTrigPB15 = 1u<<30, /*!<选择PB15中断源,自动触发ADC采样*/
AdcMskTrigPC15 = 1u<<31, /*!<选择PC15中断源,自动触发ADC采样*/
}en_adc_trig_sel_t;
/**
******************************************************************************
** \brief ADC外部触发源寄存器选择
*****************************************************************************/
typedef enum en_adc_ext_trig_sel
{
AdcExtTrig0 = 0u, /*!<单次及顺序扫描转换 外部触发源选择寄存器*/
AdcExtTrig1 = 1u, /*!<插队扫描转换 外部触发源选择寄存器*/
}en_adc_ext_trig_sel_t;
/**
******************************************************************************
** \brief ADC顺序转换通道
*****************************************************************************/
typedef enum en_adc_sqr_chmux
{
AdcSQRCH0MUX = 0u, /*!<顺序扫描模式转换通道0*/
AdcSQRCH1MUX = 1u, /*!<顺序扫描模式转换通道1*/
AdcSQRCH2MUX = 2u, /*!<顺序扫描模式转换通道2*/
AdcSQRCH3MUX = 3u, /*!<顺序扫描模式转换通道3*/
AdcSQRCH4MUX = 4u, /*!<顺序扫描模式转换通道4*/
AdcSQRCH5MUX = 5u, /*!<顺序扫描模式转换通道5*/
AdcSQRCH6MUX = 6u, /*!<顺序扫描模式转换通道6*/
AdcSQRCH7MUX = 7u, /*!<顺序扫描模式转换通道7*/
AdcSQRCH8MUX = 8u, /*!<顺序扫描模式转换通道8*/
AdcSQRCH9MUX = 9u, /*!<顺序扫描模式转换通道9*/
AdcSQRCH10MUX = 10u, /*!<顺序扫描模式转换通道10*/
AdcSQRCH11MUX = 11u, /*!<顺序扫描模式转换通道11*/
AdcSQRCH12MUX = 12u, /*!<顺序扫描模式转换通道12*/
AdcSQRCH13MUX = 13u, /*!<顺序扫描模式转换通道13*/
AdcSQRCH14MUX = 14u, /*!<顺序扫描模式转换通道14*/
AdcSQRCH15MUX = 15u, /*!<顺序扫描模式转换通道15*/
}en_adc_sqr_chmux_t;
/**
******************************************************************************
** \brief ADC插队转换通道
*****************************************************************************/
typedef enum en_adc_jqr_chmux
{
AdcJQRCH0MUX = 0u, /*!<转换通道0*/
AdcJQRCH1MUX = 1u, /*!<转换通道1*/
AdcJQRCH2MUX = 2u, /*!<转换通道2*/
AdcJQRCH3MUX = 3u, /*!<转换通道3*/
}en_adc_jqr_chmux_t;
/**
******************************************************************************
** \brief ADC结果对齐方式
*****************************************************************************/
typedef enum en_adc_align
{
AdcAlignRight = 0u,
AdcAlignLeft = 1u,
}en_adc_align_t;
/**
******************************************************************************
** \brief ADC转换结果自动累加功能
*****************************************************************************/
typedef enum en_adc_result_acc
{
AdcResultAccEnable = 1u,
AdcResultAccDisable = 0u,
}en_adc_result_acc_t;
/**
******************************************************************************
** \brief ADC中断类型定义
*****************************************************************************/
typedef enum en_adc_irq_type
{
AdcMskIrqJqr = 1u<<5, /*!<ADC插队扫描转换完成*/
AdcMskIrqSqr = 1u<<4, /*!<ADC顺序扫描转换完成*/
AdcMskIrqReg = 1u<<3, /*!<ADC转换结果比较区间内*/
AdcMskIrqHt = 1u<<2, /*!<ADC转换结果高于HT*/
AdcMskIrqLt = 1u<<1, /*!<ADC转换结果低于LT*/
AdcMskIrqSgl = 1u<<0, /*!<ADC单次转换完成*/
}en_adc_irq_type_t;
/******************************************************************************
** Extern type definitions ('typedef')
******************************************************************************/
/**
******************************************************************************
** \brief ADC初始化配置结构体
*****************************************************************************/
typedef struct stc_adc_cfg
{
en_adc_mode_t enAdcMode; /*! ADC转换模式*/
en_adc_clk_div_t enAdcClkDiv; /*! ADC时钟选择*/
en_adc_samp_cycle_sel_t enAdcSampCycleSel; /*! ADC采样周期选择*/
en_adc_ref_vol_sel_t enAdcRefVolSel; /*! ADC参考电压选择*/
en_adc_op_buf_t enAdcOpBuf; /*! ADC输入信号放大器控制使能*/
en_adc_in_ref_t enInRef; /*! ADC内部参考电压使能*/
en_adc_align_t enAdcAlign; /*! ADC转换结果对齐控制*/
}stc_adc_cfg_t;
/**
******************************************************************************
** \brief ADC顺序扫描模式配置结构体
*****************************************************************************/
typedef struct stc_adc_sqr_cfg
{
uint8_t u8SqrCnt; /*! ADC顺序扫描转换次数*/
en_adc_result_acc_t enResultAcc; /*! ADC转换结果自动累加功能*/
boolean_t bSqrDmaTrig; /*! ADC顺序扫描转换完成DMA触发使能*/
}stc_adc_sqr_cfg_t;
/**
******************************************************************************
** \brief ADC插队扫描模式配置结构体
*****************************************************************************/
typedef struct stc_adc_jqr_cfg
{
uint8_t u8JqrCnt; /*! ADC顺序扫描转换次数*/
boolean_t bJqrDmaTrig; /*! ADC插队扫描转换完成DMA触发使能*/
}stc_adc_jqr_cfg_t;
/**
******************************************************************************
** \brief ADC比较功能配置结构体
*****************************************************************************/
typedef struct stc_adc_threshold_cfg
{
boolean_t bAdcRegCmp ; /*!ADC区间使能*/
boolean_t bAdcHtCmp ; /*!ADC上超出区间使能*/
boolean_t bAdcLtCmp ; /*!ADC下超出区间使能*/
uint32_t u32AdcHighThd; /*!ADC比较上阈值*/
uint32_t u32AdcLowThd; /*!ADC比较下阈值*/
en_adc_samp_ch_sel_t enSampChSel; /*!ADC采样通道选择*/
}stc_adc_threshold_cfg_t;
/******************************************************************************
* Global variable definitions ('extern')
******************************************************************************/
/******************************************************************************
* Global function prototypes (definition in C source)
******************************************************************************/
//ADC 初始化
en_result_t Adc_Init(stc_adc_cfg_t* pstcAdcCfg);
//ADC 中断使能
void Adc_EnableIrq(void);
//ADC 中断禁止
void Adc_DisableIrq(void);
//ADC 中断/采样完成状态获取
boolean_t Adc_GetIrqStatus(en_adc_irq_type_t enAdcIrq);
//ADC 中断/采样完成状态清除
void Adc_ClrIrqStatus(en_adc_irq_type_t enAdcIrq);
//ADC 使能
void Adc_Enable(void);
//ADC 禁止
void Adc_Disable(void);
//ADC 顺序扫描模式配置
en_result_t Adc_SqrModeCfg(stc_adc_sqr_cfg_t* pstcAdcSqrCfg);
//ADC 插队扫描模式配置
en_result_t Adc_JqrModeCfg(stc_adc_jqr_cfg_t* pstcAdcJqrCfg);
//ADC Sgl 单次转换模式通道选择配置
en_result_t Adc_CfgSglChannel( en_adc_samp_ch_sel_t enstcAdcSampCh);
//ADC SQR 顺序扫描转换模式通道选择配置
en_result_t Adc_CfgSqrChannel(en_adc_sqr_chmux_t enstcAdcSqrChMux, en_adc_samp_ch_sel_t enstcAdcSampCh);
//ADC JQR 插队扫描转换模式通道选择配置
en_result_t Adc_CfgJqrChannel(en_adc_jqr_chmux_t enstcAdcJqrChMux, en_adc_samp_ch_sel_t enstcAdcSampCh);
///<ADC 单次转换外部触发源配置
void Adc_SglExtTrigCfg(en_adc_trig_sel_t enAdcTrigSel, boolean_t bValue);
///<ADC 顺序扫描转换外部触发源配置
void Adc_SqrExtTrigCfg(en_adc_trig_sel_t enAdcTrigSel, boolean_t bValue);
///<ADC 插队扫描转换外部触发源配置
void Adc_JqrExtTrigCfg(en_adc_trig_sel_t enAdcTrigSel, boolean_t bValue);
//ADC 阈值比较功能配置
void Adc_ThresholdCfg(stc_adc_threshold_cfg_t* pstcAdcThrCfg);
//ADC 单次转换模式启动
void Adc_SGL_Start(void);
//ADC 单次转换模式停止
void Adc_SGL_Stop(void);
//ADC 单次转换模式一直转换模式启动
void Adc_SGL_Always_Start(void);
//ADC 单次转换模式一直转换模式停止
void Adc_SGL_Always_Stop(void);
//ADC 顺序扫描转换模式启动
void Adc_SQR_Start(void);
//ADC 顺序扫描转换模式停止
void Adc_SQR_Stop(void);
//ADC 插队扫描转换模式启动
void Adc_JQR_Start(void);
//ADC 插队扫描转换模式停止
void Adc_JQR_Stop(void);
//获取单次转换采样值
uint32_t Adc_GetSglResult(void);
//获取顺序扫描采样值
uint32_t Adc_GetSqrResult(en_adc_sqr_chmux_t enstcAdcSqrChMux);
//获取插队扫描采样值
uint32_t Adc_GetJqrResult(en_adc_jqr_chmux_t enstcAdcJqrChMux);
//获取累加采样值
uint32_t Adc_GetAccResult(void);
//clear ADC 累加寄存器结果清除
void Adc_ClrAccResult(void);
//@}
#ifdef __cplusplus
}
#endif
#endif /* __ADC_H__ */
/******************************************************************************/
/* EOF (not truncated) */
/******************************************************************************/
-878
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@@ -1,878 +0,0 @@
/*******************************************************************************
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file adt.h
**
** Headerfile for Advance Timer functions
** @link ADT Group Some description @endlink
**
** - 2018-04-19 Husj First Version
**
******************************************************************************/
#ifndef __ADT_H__
#define __ADT_H__
/******************************************************************************
* Include files
******************************************************************************/
#include "ddl.h"
/* C binding of definitions if building with C++ compiler */
#ifdef __cplusplus
extern "C"
{
#endif
/**
******************************************************************************
** \defgroup AdtGroup Advance Timer (ADT)
**
******************************************************************************/
//@{
/******************************************************************************
* Global type definitions
******************************************************************************/
/**
******************************************************************************
** \brief ADT CHx通道定义
*****************************************************************************/
typedef enum en_adt_CHxX_port
{
AdtCHxA = 0u, ///< CHx A通道
AdtCHxB = 1u, ///< CHx B通道
}en_adt_CHxX_port_t;
/**
******************************************************************************
** \brief ADT TRIG端口定义
*****************************************************************************/
typedef enum en_adt_trig_port
{
AdtTrigA = 0u, ///< TIMx 触发A端口
AdtTrigB = 1u, ///< TIMx 触发B端口
AdtTrigC = 2u, ///< TIMx 触发C端口
AdtTrigD = 3u, ///< TIMx 触发D端口
}en_adt_trig_port_t;
/**
******************************************************************************
** \brief ADT通用控制 - Z相输入屏蔽周期数
**
** \note
******************************************************************************/
typedef enum en_adt_gconr_zmsk
{
AdtZMaskDis = 0u, ///< Z相输入屏蔽功能无效
AdtZMask4Cyl = 1u, ///< 位置计数上溢后或下溢后的4个计数周期内的Z相输入被屏蔽
AdtZMask8Cyl = 2u, ///< 位置计数上溢后或下溢后的8个计数周期内的Z相输入被屏蔽
AdtZMask16Cyl = 3u, ///< 位置计数上溢后或下溢后的16个计数周期内的Z相输入被屏蔽
}en_adt_gconr_zmsk_t;
/**
******************************************************************************
** \brief ADT通用控制 - 计数时钟选择
**
** \note
******************************************************************************/
typedef enum en_adt_cnt_ckdiv
{
AdtClkPClk0 = 0u, ///< PCLK0
AdtClkPClk0Div2 = 1u, ///< PCLK0/2
AdtClkPClk0Div4 = 2u, ///< PCLK0/4
AdtClkPClk0Div8 = 3u, ///< PCLK0/8
AdtClkPClk0Div16 = 4u, ///< PCLK0/16
AdtClkPClk0Div64 = 5u, ///< PCLK0/64
AdtClkPClk0Div256 = 6u, ///< PCLK0/256
AdtClkPClk0Div1024 = 7u, ///< PCLK0/1024
}en_adt_cnt_ckdiv_t;
/**
******************************************************************************
** \brief ADT计数模式
**
** \note
******************************************************************************/
typedef enum en_adt_cnt_mode
{
AdtSawtoothMode = 0u, ///< 锯齿波模式
AdtTriangleModeA = 4u, ///< 三角波A模式
AdtTriangleModeB = 5u, ///< 三角波B模式
}en_adt_cnt_mode_t;
/**
******************************************************************************
** \brief ADT计数方向
**
** \note
******************************************************************************/
typedef enum en_adt_cnt_dir
{
AdtCntDown = 0u, ///< 递减计数
AdtCntUp = 1u, ///< 递加计数
}en_adt_cnt_dir_t;
/**
******************************************************************************
** \brief ADT通用比较基准
**
** \note
******************************************************************************/
typedef enum en_adt_compare
{
AdtCompareA = 0u, ///< 通用比较基准A
AdtCompareB = 1u, ///< 通用比较基准B
AdtCompareC = 2u, ///< 通用比较基准C
AdtCompareD = 3u, ///< 通用比较基准D
}en_adt_compare_t;
/**
******************************************************************************
** \brief ADT专用比较基准
**
** \note
******************************************************************************/
typedef enum en_adt_special_compare
{
AdtSpclCompA = 0u, ///< 专用比较基准A
AdtSpclCompB = 1u, ///< 专用比较基准B
}en_adt_special_compare_t;
/**
******************************************************************************
** \brief ADT端口控制 - TIMx输出状态控制
**
** \note
******************************************************************************/
typedef enum en_adt_pconr_disval
{
AdtTIMxDisValNorm = 0u, ///< 强制输出无效条件0~3中被选择的条件成立时,CHx端口正常输出
AdtTIMxDisValHiZ = 1u, ///< 强制输出无效条件0~3中被选择的条件成立时,CHx端口输出高阻态
AdtTIMxDisValLow = 2u, ///< 强制输出无效条件0~3中被选择的条件成立时,CHx端口输出低电平
AdtTIMxDisValHigh = 3u, ///< 强制输出无效条件0~3中被选择的条件成立时,CHx端口输出高电平
}en_adt_pconr_disval_t;
/**
******************************************************************************
** \brief ADT端口控制 - CHx强制输出无效条件选择
**
** \note
******************************************************************************/
typedef enum en_adt_pconr_dissel
{
AdtCHxDisSel0 = 0u, ///< 选择强制输出无效条件0
AdtCHxDisSel1 = 1u, ///< 选择强制输出无效条件1
AdtCHxDisSel2 = 2u, ///< 选择强制输出无效条件2
AdtCHxDisSel3 = 3u, ///< 选择强制输出无效条件3
}en_adt_pconr_dissel_t;
/**
******************************************************************************
** \brief ADT端口控制 - CHx周期值匹配时端口状态设定
**
** \note
******************************************************************************/
typedef enum en_adt_pconr_perc
{
AdtCHxPeriodLow = 0u, ///< 计数器计数值与周期值相等时,CHx端口输出保持为低电平
AdtCHxPeriodHigh = 1u, ///< 计数器计数值与周期值相等时,CHx端口输出设定为高电平
AdtCHxPeriodKeep = 2u, ///< 计数器计数值与周期值相等时,CHx端口输出设定为先前状态
AdtCHxPeriodInv = 3u, ///< 计数器计数值与周期值相等时,CHx端口输出设定为反转电平
}en_adt_pconr_perc_t;
/**
******************************************************************************
** \brief ADT端口控制 - CHx比较值匹配时端口状态设定
**
** \note
******************************************************************************/
typedef enum en_adt_pconr_cmpc
{
AdtCHxCompareLow = 0u, ///< 计数器计数值与GCMxR相等时,CHx端口输出保持为低电平
AdtCHxCompareHigh = 1u, ///< 计数器计数值与GCMxR相等时,CHx端口输出设定为高电平
AdtCHxCompareKeep = 2u, ///< 计数器计数值与GCMxR相等时,CHx端口输出设定为先前状态
AdtCHxCompareInv = 3u, ///< 计数器计数值与GCMxR相等时,CHx端口输出设定为反转电平
}en_adt_pconr_cmpc_t;
/**
******************************************************************************
** \brief ADT端口控制 - CHx端口输出
**
** \note
******************************************************************************/
typedef enum en_adt_pconr_port_out
{
AdtCHxPortOutLow = 0u, ///< CHx端口输出设定为低电平
AdtCHxPortOutHigh = 1u, ///< CHx端口输出设定为高电平
}en_adt_pconr_port_out_t;
/**
******************************************************************************
** \brief ADT端口控制 - CHx端口功能模式选择
**
** \note
******************************************************************************/
typedef enum en_adt_pconr_capc
{
AdtCHxCompareOutput = 0u, ///< CHx端口设定为比较输出功能
AdtCHxCompareInput = 1u, ///< CHx端口设定为捕获输入功能
}en_adt_pconr_capc_t;
/**
******************************************************************************
** \brief ADT端口控制 - CHx计数开始停止端口状态选择
**
** \note
******************************************************************************/
typedef enum en_adt_pconr_stastps
{
AdtCHxStateSelSS = 0u, ///< 计数开始或停止时,CHx端口输出由STACB、STPCB决定
AdtCHxStateSelKeep = 1u, ///< 计数开始或停止时,CHx端口输出设定为先前状态
}en_adt_pconr_stastps_t;
/**
******************************************************************************
** \brief ADT死区控制 - CHx死区分离设定
**
** \note
******************************************************************************/
typedef enum en_adt_dconr_sepa
{
AdtCHxDtSeperate = 0u, ///< DTUAR和DTDAR分别设定
AdtCHxDtEqual = 1u, ///< DTDAR的值和DTUAR的值自动相等
}en_adt_dconr_sepa_t;
/**
******************************************************************************
** \brief ADT滤波控制 - TRIx/TIMxIx端口滤波采样基准时钟选择
**
** \note
******************************************************************************/
typedef enum en_adt_fconr_nofick
{
AdtFltClkPclk0 = 0u, ///< PCLK0
AdtFltClkPclk0Div4 = 1u, ///< PCLK0/4
AdtFltClkPclk0Div16 = 2u, ///< PCLK0/16
AdtFltClkPclk0Div64 = 3u, ///< PCLK0/64
}en_adt_fconr_nofick_t;
/**
******************************************************************************
** \brief ADT有效周期 - TIMx有效周期选择
**
** \note
******************************************************************************/
typedef enum en_adt_vperr_pcnts
{
AdtPeriodCnts0 = 0u, ///< 有效周期选择功能无效
AdtPeriodCnts1 = 1u, ///< 每隔1个周期有效一次
AdtPeriodCnts2 = 2u, ///< 每隔2个周期有效一次
AdtPeriodCnts3 = 3u, ///< 每隔3个周期有效一次
AdtPeriodCnts4 = 4u, ///< 每隔4个周期有效一次
AdtPeriodCnts5 = 5u, ///< 每隔5个周期有效一次
AdtPeriodCnts6 = 6u, ///< 每隔6个周期有效一次
AdtPeriodCnts7 = 7u, ///< 每隔7个周期有效一次
}en_adt_vperr_pcnts_t;
/**
******************************************************************************
** \brief ADT有效周期 - 计数条件选择
**
** \note
******************************************************************************/
typedef enum en_adt_vperr_pcnte
{
AdtPeriodCnteDisable = 0u, ///< 有效周期选择功能无效
AdtPeriodCnteMin = 1u, ///< 锯齿波计数上、下溢点或三角波波谷做为计数条件
AdtPeriodCnteMax = 2u, ///< 锯齿波计数上、下溢点或三角波波峰做为计数条件
AdtPeriodCnteBoth = 3u, ///< 锯齿波计数上、下溢点或三角波波峰,波谷做为计数条件
}en_adt_vperr_pcnte_t;
/**
******************************************************************************
** \brief ADT端口触发控制 - 触发源选择
**
** \note
******************************************************************************/
typedef enum en_adt_ttrig_trigxs
{
AdtTrigxSelPA3 = 0u, ///< PA3
AdtTrigxSelPB3 = 1u, ///< PB3
AdtTrigxSelPC3 = 2u, ///< PC3
AdtTrigxSelPD3 = 3u, ///< PD3
AdtTrigxSelPA7 = 4u, ///< PA7
AdtTrigxSelPB7 = 5u, ///< PB7
AdtTrigxSelPC7 = 6u, ///< PC7
AdtTrigxSelPD7 = 7u, ///< PD7
AdtTrigxSelPA11 = 8u, ///< PA11
AdtTrigxSelPB11 = 9u, ///< PB11
AdtTrigxSelPC11 = 10u, ///< PC11
AdtTrigxSelPD1 = 11u, ///< PD1
AdtTrigxSelPA15 = 12u, ///< PA15
AdtTrigxSelPB15 = 13u, ///< PB15
AdtTrigxSelPC5 = 14u, ///< PC5
AdtTrigxSelPD5 = 15u, ///< PD5
}en_adt_ttrig_trigxs_t;
/**
******************************************************************************
** \brief ADT AOS触发控制 - AOSx触发源选择
**
** \note
******************************************************************************/
typedef enum en_adt_itrig_iaosxs
{
AdtAosxTrigSelTim0Int = 0u, ///< TIM0_INT
AdtAosxTrigSelTim1Int = 1u, ///< TIM1_INT
AdtAosxTrigSelTim2Int = 2u, ///< TIM2_INT
AdtAosxTrigSelLpTimInt = 3u, ///< LPTIMER_INT
AdtAosxTrigSelTim4Int = 4u, ///< TIM4_INT
AdtAosxTrigSelTim5Int = 5u, ///< TIM5_INT
AdtAosxTrigSelTim6Int = 6u, ///< TIM6_INT
AdtAosxTrigSelUart0Int = 7u, ///< UART0_INT
AdtAosxTrigSelUart1Int = 8u, ///< UART1_INT
AdtAosxTrigSelLpUartInt = 9u, ///< LPUART_INT
AdtAosxTrigSelVc0Int = 10u, ///< VC0_INT
AdtAosxTrigSelVc1Int = 11u, ///< VC1_INT
AdtAosxTrigSelRtcInt = 12u, ///< RTC_INT
AdtAosxTrigSelPcaInt = 13u, ///< PCA_INT
AdtAosxTrigSelSpiInt = 14u, ///< SPI_INT
AdtAosxTrigSelAdcInt = 15u, ///< ADC_INT
}en_adt_itrig_iaosxs_t;
/**
******************************************************************************
** \brief ADT硬件(启动/停止/清零/捕获)事件触发选择
**
** \note
******************************************************************************/
typedef enum en_adt_hw_trig
{
AdtHwTrigAos0 = 0u, ///< 从AOS来的事件触发0有效
AdtHwTrigAos1 = 1u, ///< 从AOS来的事件触发1有效
AdtHwTrigAos2 = 2u, ///< 从AOS来的事件触发2有效
AdtHwTrigAos3 = 3u, ///< 从AOS来的事件触发3有效
AdtHwTrigCHxARise = 4u, ///< CHxA端口上采样到上升沿
AdtHwTrigCHxAFall = 5u, ///< CHxA端口上采样到下降沿
AdtHwTrigCHxBRise = 6u, ///< CHxB端口上采样到上升沿
AdtHwTrigCHxBFall = 7u, ///< CHxB端口上采样到下降沿
AdtHwTrigTimTriARise = 8u, ///< TIMTRIA端口上采样到上升沿
AdtHwTrigTimTriAFall = 9u, ///< TIMTRIA端口上采样到下降沿
AdtHwTrigTimTriBRise = 10u, ///< TIMTRIB端口上采样到上升沿
AdtHwTrigTimTriBFall = 11u, ///< TIMTRIB端口上采样到下降沿
AdtHwTrigTimTriCRise = 12u, ///< TIMTRIC端口上采样到上升沿
AdtHwTrigTimTriCFall = 13u, ///< TIMTRIC端口上采样到下降沿
AdtHwTrigTimTriDRise = 14u, ///< TIMTRID端口上采样到上升沿
AdtHwTrigTimTriDFall = 15u, ///< TIMTRID端口上采样到下降沿
AdtHwTrigEnd = 16u,
}en_adt_hw_trig_t;
/**
******************************************************************************
** \brief ADT硬件(递加/递减)事件触发选择
**
** \note
******************************************************************************/
typedef enum en_adt_hw_cnt
{
AdtHwCntCHxALowCHxBRise = 0u, ///< CHxA端口为低电平时,CHxB端口上采样到上升沿
AdtHwCntCHxALowCHxBFall = 1u, ///< CHxA端口为低电平时,CHxB端口上采样到下降沿
AdtHwCntCHxAHighCHxBRise = 2u, ///< CHxA端口为高电平时,CHxB端口上采样到上升沿
AdtHwCntCHxAHighCHxBFall = 3u, ///< CHxA端口为高电平时,CHxB端口上采样到下降沿
AdtHwCntCHxBLowCHxARise = 4u, ///< CHxB端口为低电平时,CHxA端口上采样到上升沿
AdtHwCntCHxBLowCHxAFall = 5u, ///< CHxB端口为低电平时,CHxA端口上采样到下降沿
AdtHwCntCHxBHighChxARise = 6u, ///< CHxB端口为高电平时,CHxA端口上采样到上升沿
AdtHwCntCHxBHighCHxAFall = 7u, ///< CHxB端口为高电平时,CHxA端口上采样到下降沿
AdtHwCntTimTriARise = 8u, ///< TIMTRIA端口上采样到上升沿
AdtHwCntTimTriAFall = 9u, ///< TIMTRIA端口上采样到下降沿
AdtHwCntTimTriBRise = 10u, ///< TIMTRIB端口上采样到上升沿
AdtHwCntTimTriBFall = 11u, ///< TIMTRIB端口上采样到下降沿
AdtHwCntTimTriCRise = 12u, ///< TIMTRIC端口上采样到上升沿
AdtHwCntTimTriCFall = 13u, ///< TIMTRIC端口上采样到下降沿
AdtHwCntTimTriDRise = 14u, ///< TIMTRID端口上采样到上升沿
AdtHwCntTimTriDFall = 15u, ///< TIMTRID端口上采样到下降沿
AdtHwCntAos0 = 16u, ///< 从AOS来的事件触发0有效
AdtHwCntAos1 = 17u, ///< 从AOS来的事件触发1有效
AdtHwCntAos2 = 18u, ///< 从AOS来的事件触发2有效
AdtHwCntAos3 = 19u, ///< 从AOS来的事件触发3有效
AdtHwCntMax = 20u,
}en_adt_hw_cnt_t;
/**
******************************************************************************
** \brief ADT端口刹车极性控制
**
** \note
******************************************************************************/
typedef enum en_adt_ptbrk_polarity
{
AdtPtBrkHigh = 0u, ///< 端口刹车极性高电平有效
AdtPtBrkLow = 1u, ///< 端口刹车极性低电平有效
}en_adt_ptbrk_polarity_t;
/**
******************************************************************************
** \brief ADT PWM展频计数选择
**
** \note
******************************************************************************/
typedef enum en_adt_pwm_dither_type
{
AdtPwmDitherUnderFlow = 0u, ///< PWM展频计数下溢出
AdtPwmDitherOverFlow = 1u, ///< PWM展频计数上溢出
}en_adt_pwm_dither_type_t;
/**
******************************************************************************
** \brief ADT中断类型
**
** \note
******************************************************************************/
typedef enum en_adt_irq_type
{
AdtCMAIrq = 0u, ///< 计数匹配A(或捕获输入)中断
AdtCMBIrq = 1u, ///< 计数匹配B(或捕获输入)中断
AdtCMCIrq = 2u, ///< 计数匹配C中断
AdtCMDIrq = 3u, ///< 计数匹配D中断
AdtOVFIrq = 6u, ///< 上溢匹配中断
AdtUDFIrq = 7u, ///< 下溢匹配中断
AdtDTEIrq = 8u, ///< 死区时间错误中断
AdtSAMLIrq = 14u, ///< 同低中断
AdtSAMHIrq = 15u, ///< 同高中断
}en_adt_irq_type_t;
typedef enum en_adt_state_type
{
AdtCMAF = 0, ///< 计数匹配A标志
AdtCMBF = 1, ///< 计数匹配B标志
AdtCMCF = 2, ///< 计数匹配C标志
AdtCMDF = 3, ///< 计数匹配D标志
AdtOVFF = 6, ///< 上溢匹配标志
AdtUDFF = 7, ///< 下溢匹配标志
AdtDTEF = 8, ///< 死区时间错误标志
AdtCMSAUF = 9, ///< 向上计数专用比较基准值匹配A标志
AdtCMSADF = 10, ///< 向下计数专用比较基准值匹配B标志
AdtCMSBUF = 11, ///< 向上计数专用比较基准值匹配A标志
AdtCMSBDF = 12, ///< 向下计数专用比较基准值匹配B标志
AdtCntDir = 31, ///< 计数方向
}en_adt_state_type_t;
/**
******************************************************************************
** \brief ADT软件同步配置
** \note
******************************************************************************/
typedef struct stc_adt_sw_sync
{
boolean_t bAdTim4; ///< Timer 4
boolean_t bAdTim5; ///< Timer 5
boolean_t bAdTim6; ///< Timer 6
}stc_adt_sw_sync_t;
/**
******************************************************************************
** \brief ADT AOS触发配置
** \note
******************************************************************************/
typedef struct stc_adt_aos_trig_cfg
{
en_adt_itrig_iaosxs_t enAos0TrigSrc; ///< AOS0触发源选择
en_adt_itrig_iaosxs_t enAos1TrigSrc; ///< AOS1触发源选择
en_adt_itrig_iaosxs_t enAos2TrigSrc; ///< AOS2触发源选择
en_adt_itrig_iaosxs_t enAos3TrigSrc; ///< AOS3触发源选择
}stc_adt_aos_trig_cfg_t;
/**
******************************************************************************
** \brief ADT 中断触发配置
** \note
******************************************************************************/
typedef struct stc_adt_irq_trig_cfg
{
boolean_t bAdtSpecilMatchBTrigDmaEn; ///< 专用比较基准值匹配B使能触发DMA
boolean_t bAdtSpecilMatchATrigDmaEn; ///< 专用比较基准值匹配A使能触发DMA
boolean_t bAdtUnderFlowTrigDmaEn; ///< 下溢匹配使能触发DMA
boolean_t bAdtOverFlowTrigDmaEn; ///< 上溢匹配使能触发DMA
boolean_t bAdtCntMatchDTrigDmaEn; ///< 计数匹配D使能触发DMA
boolean_t bAdtCntMatchCTrigDmaEn; ///< 计数匹配C使能触发DMA
boolean_t bAdtCntMatchBTrigDmaEn; ///< 计数匹配B使能触发DMA
boolean_t bAdtCntMatchATrigDmaEn; ///< 计数匹配A使能触发DMA
boolean_t bAdtSpecilMatchBTrigEn; ///< 专用比较基准值匹配B使能触发ADC
boolean_t bAdtSpecilMatchATrigEn; ///< 专用比较基准值匹配A使能触发ADC
boolean_t bAdtUnderFlowTrigEn; ///< 下溢匹配使能触发ADC
boolean_t bAdtOverFlowTrigEn; ///< 上溢匹配使能触发ADC
boolean_t bAdtCntMatchDTrigEn; ///< 计数匹配D使能触发ADC
boolean_t bAdtCntMatchCTrigEn; ///< 计数匹配C使能触发ADC
boolean_t bAdtCntMatchBTrigEn; ///< 计数匹配B使能触发ADC
boolean_t bAdtCntMatchATrigEn; ///< 计数匹配A使能触发ADC
}stc_adt_irq_trig_cfg_t;
/**
******************************************************************************
** \brief ADT Trig端口配置
** \note
******************************************************************************/
typedef struct stc_adt_port_trig_cfg
{
en_adt_ttrig_trigxs_t enTrigSrc; ///< 触发源选择
boolean_t bFltEn; ///< 触发源捕获输入滤波使能
en_adt_fconr_nofick_t enFltClk; ///< 滤波采样基准时钟
}stc_adt_port_trig_cfg_t;
/**
******************************************************************************
** \brief ADT Z相输入屏蔽功能配置
** \note
******************************************************************************/
typedef struct stc_adt_zmask_cfg
{
en_adt_gconr_zmsk_t enZMaskCycle; ///< Z相输入屏蔽计数周期选择
boolean_t bFltPosCntMaksEn; ///< Z相输入时的屏蔽周期内,位置计数器的清零功能不屏蔽(FALSE)或屏蔽(TRUE)
boolean_t bFltRevCntMaksEn; ///< Z相输入时的屏蔽周期内,公转计数器的计数功能不屏蔽(FALSE)或屏蔽(TRUE)
}stc_adt_zmask_cfg_t;
/**
******************************************************************************
** \brief ADT TIMxX端口配置
** \note
******************************************************************************/
typedef struct stc_adt_TIMxX_port_cfg
{
en_adt_pconr_capc_t enCap; ///< 端口功能模式
boolean_t bOutEn; ///< 输出使能
en_adt_pconr_perc_t enPerc; ///< 周期值匹配时端口状态
en_adt_pconr_cmpc_t enCmpc; ///< 比较值匹配时端口状态
en_adt_pconr_stastps_t enStaStp; ///< 计数开始停止端口状态选择
en_adt_pconr_port_out_t enStaOut; ///< 计数开始端口输出状态
en_adt_pconr_port_out_t enStpOut; ///< 计数停止端口输出状态
en_adt_pconr_disval_t enDisVal; ///< 强制输出无效时输出状态控制
en_adt_pconr_dissel_t enDisSel; ///< 强制输出无效条件选择
boolean_t bFltEn; ///< 端口捕获输入滤波使能
en_adt_fconr_nofick_t enFltClk; ///< 端口滤波采样基准时钟
}stc_adt_CHxX_port_cfg_t;
/**
******************************************************************************
** \brief ADT刹车端口配置
** \note
******************************************************************************/
typedef struct stc_adt_break_port_cfg
{
boolean_t bPortEn; ///< 端口使能
en_adt_ptbrk_polarity_t enPol; ///< 极性选择
}stc_adt_break_port_cfg_t;
/**
******************************************************************************
** \brief ADT无效条件3配置
** \note
******************************************************************************/
typedef struct stc_adt_disable_3_cfg
{
stc_adt_break_port_cfg_t stcBrkPtCfg[16]; ///< 刹车端口配置
boolean_t bFltEn; ///< 刹车端口滤波使能
en_adt_fconr_nofick_t enFltClk; ///< 滤波采样基准时钟
}stc_adt_disable_3_cfg_t;
/**
******************************************************************************
** \brief ADT无效条件1配置
** \note
******************************************************************************/
typedef struct stc_adt_disable_1_cfg
{
boolean_t bTim6OutSH; ///< TIM6输出同高
boolean_t bTim5OutSH; ///< TIM5输出同高
boolean_t bTim4OutSH; ///< TIM4输出同高
boolean_t bTim6OutSL; ///< TIM6输出同低
boolean_t bTim5OutSL; ///< TIM5输出同低
boolean_t bTim4OutSL; ///< TIM4输出同低
}stc_adt_disable_1_cfg_t;
/**
******************************************************************************
** \brief ADT PWM展频计数配置
** \note
******************************************************************************/
typedef struct stc_adt_pwm_dither_cfg
{
en_adt_pwm_dither_type_t enAdtPDType; ///< PWM展频计数选择
boolean_t bTimxBPDEn; ///< PWM通道B展频使能
boolean_t bTimxAPDEn; ///< PWM通道A展频使能
}stc_adt_pwm_dither_cfg_t;
/**
******************************************************************************
** \brief ADT基本计数配置
** \note
******************************************************************************/
typedef struct stc_adt_basecnt_cfg
{
en_adt_cnt_mode_t enCntMode; ///< 计数模式
en_adt_cnt_dir_t enCntDir; ///< 计数方向
en_adt_cnt_ckdiv_t enCntClkDiv; ///< 计数时钟选择
}stc_adt_basecnt_cfg_t;
/**
******************************************************************************
** \brief ADT计数状态
** \note
******************************************************************************/
typedef struct stc_adt_cntstate_cfg
{
uint16_t u16Counter; ///< 当前计数器的计数值
boolean_t enCntDir; ///< 计数方向
uint8_t u8ValidPeriod; ///< 有效周期计数
boolean_t bCMSBDF; ///< 向下计数专用比较基准值匹配B标志
boolean_t bCMSBUF; ///< 向上计数专用比较基准值匹配A标志
boolean_t bCMSADF; ///< 向下计数专用比较基准值匹配B标志
boolean_t bCMSAUF; ///< 向上计数专用比较基准值匹配A标志
boolean_t bDTEF; ///< 死区时间错误标志
boolean_t bUDFF; ///< 下溢匹配标志
boolean_t bOVFF; ///< 上溢匹配标志
boolean_t bCMDF; ///< 计数匹配D标志
boolean_t bCMCF; ///< 计数匹配C标志
boolean_t bCMBF; ///< 计数匹配B标志
boolean_t bCMAF; ///< 计数匹配A标志
}stc_adt_cntstate_cfg_t;
/**
******************************************************************************
** \brief ADT有效计数周期
** \note
******************************************************************************/
typedef struct stc_adt_validper_cfg
{
en_adt_vperr_pcnts_t enValidCnt; ///< 有效周期选择
en_adt_vperr_pcnte_t enValidCdt; ///< 有效周期计数条件
boolean_t bPeriodD; ///< 通用信号有效周期选择D
boolean_t bPeriodC; ///< 通用信号有效周期选择C
boolean_t bPeriodB; ///< 通用信号有效周期选择B
boolean_t bPeriodA; ///< 通用信号有效周期选择A
}stc_adt_validper_cfg_t;
/******************************************************************************
* Global definitions
******************************************************************************/
/******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/******************************************************************************
* Global variable definitions ('extern')
******************************************************************************/
/******************************************************************************
* Global function prototypes (definition in C source)
******************************************************************************/
//配置硬件递加事件
en_result_t Adt_CfgHwCntUp(M0P_ADTIM_TypeDef *ADTx, en_adt_hw_cnt_t enAdtHwCntUp);
//清除硬件递加事件
en_result_t Adt_ClearHwCntUp(M0P_ADTIM_TypeDef *ADTx);
//配置硬件递减事件
en_result_t Adt_CfgHwCntDwn(M0P_ADTIM_TypeDef *ADTx, en_adt_hw_cnt_t enAdtHwCntDwn);
//清除硬件递减事件
en_result_t Adt_ClearHwCntDwn(M0P_ADTIM_TypeDef *ADTx);
//配置硬件启动事件
en_result_t Adt_CfgHwStart(M0P_ADTIM_TypeDef *ADTx, en_adt_hw_trig_t enAdtHwStart);
//清除硬件启动事件
en_result_t Adt_ClearHwStart(M0P_ADTIM_TypeDef *ADTx);
//使能硬件启动事件
en_result_t Adt_EnableHwStart(M0P_ADTIM_TypeDef *ADTx);
//禁止硬件启动事件
en_result_t Adt_DisableHwStart(M0P_ADTIM_TypeDef *ADTx);
//配置硬件停止事件
en_result_t Adt_CfgHwStop(M0P_ADTIM_TypeDef *ADTx, en_adt_hw_trig_t enAdtHwStop);
//清除硬件停止事件
en_result_t Adt_ClearHwStop(M0P_ADTIM_TypeDef *ADTx);
//使能硬件停止事件
en_result_t Adt_EnableHwStop(M0P_ADTIM_TypeDef *ADTx);
//禁止硬件停止事件
en_result_t Adt_DisableHwStop(M0P_ADTIM_TypeDef *ADTx);
//配置硬件清零事件
en_result_t Adt_CfgHwClear(M0P_ADTIM_TypeDef *ADTx, en_adt_hw_trig_t enAdtHwClear);
//清除硬件清零事件
en_result_t Adt_ClearHwClear(M0P_ADTIM_TypeDef *ADTx);
//使能硬件清零事件
en_result_t Adt_EnableHwClear(M0P_ADTIM_TypeDef *ADTx);
//禁止硬件清零事件
en_result_t Adt_DisableHwClear(M0P_ADTIM_TypeDef *ADTx);
//配置A通道硬件捕获事件
en_result_t Adt_CfgHwCaptureA(M0P_ADTIM_TypeDef *ADTx, en_adt_hw_trig_t enAdtHwCaptureA);
//清除A通道硬件捕获事件
en_result_t Adt_ClearHwCaptureA(M0P_ADTIM_TypeDef *ADTx);
//配置B通道硬件捕获事件
en_result_t Adt_CfgHwCaptureB(M0P_ADTIM_TypeDef *ADTx, en_adt_hw_trig_t enAdtHwCaptureB);
//清除B通道硬件捕获事件
en_result_t Adt_ClearHwCaptureB(M0P_ADTIM_TypeDef *ADTx);
//软件同步启动
en_result_t Adt_SwSyncStart(stc_adt_sw_sync_t* pstcAdtSwSyncStart);
//软件同步停止
en_result_t Adt_SwSyncStop(stc_adt_sw_sync_t* pstcAdtSwSyncStop);
//软件同步清零
en_result_t Adt_SwSyncClear(stc_adt_sw_sync_t* pstcAdtSwSyncClear);
//获取软件同步状态
en_result_t Adt_GetSwSyncState(stc_adt_sw_sync_t* pstcAdtSwSyncState);
//AOS触发配置
en_result_t Adt_AosTrigCfg(stc_adt_aos_trig_cfg_t* pstcAdtAosTrigCfg);
//中断触发配置
en_result_t Adt_IrqTrigCfg(M0P_ADTIM_TypeDef *ADTx,
stc_adt_irq_trig_cfg_t* pstcAdtIrqTrigCfg);
//端口触发配置
en_result_t Adt_PortTrigCfg(en_adt_trig_port_t enAdtTrigPort,
stc_adt_port_trig_cfg_t* pstcAdtPortTrigCfg);
//CHxX端口配置
en_result_t Adt_CHxXPortCfg(M0P_ADTIM_TypeDef *ADTx,
en_adt_CHxX_port_t enAdtCHxXPort,
stc_adt_CHxX_port_cfg_t* pstcAdtCHxXCfg);
//使能端口刹车
en_result_t Adt_EnableBrakePort(uint8_t port, stc_adt_break_port_cfg_t* pstcAdtBrkPtCfg);
//清除端口刹车
void Adt_ClearBrakePort(void);
//无效条件3配置(端口刹车)
en_result_t Adt_Disable3Cfg(stc_adt_disable_3_cfg_t* pstcAdtDisable3);
//软件刹车 Enable/Disable(仅适用于无效条件3使能的情况下)
en_result_t Adt_SwBrake(boolean_t bSwBrk);
//获取端口刹车标志
boolean_t Adt_GetPortBrakeFlag(void);
//清除端口刹车标志
void Adt_ClearPortBrakeFlag(void);
//无效条件1配置(同高同低刹车)
en_result_t Adt_Disable1Cfg(stc_adt_disable_1_cfg_t* pstcAdtDisable1);
//获取同高同低刹车标志
boolean_t Adt_GetSameBrakeFlag(void);
//清除同高同低刹车标志
void Adt_ClearSameBrakeFlag(void);
//PWM展频配置
en_result_t Adt_PwmDitherCfg(M0P_ADTIM_TypeDef *ADTx, stc_adt_pwm_dither_cfg_t* pstcAdtPwmDitherCfg);
//AdvTimer初始化
en_result_t Adt_Init(M0P_ADTIM_TypeDef *ADTx, stc_adt_basecnt_cfg_t* pstcAdtBaseCntCfg);
//AdvTimer去初始化
en_result_t Adt_DeInit(M0P_ADTIM_TypeDef *ADTx);
//AdvTimert启动
en_result_t Adt_StartCount(M0P_ADTIM_TypeDef *ADTx);
//AdvTimert停止
en_result_t Adt_StopCount(M0P_ADTIM_TypeDef *ADTx);
//设置计数值
en_result_t Adt_SetCount(M0P_ADTIM_TypeDef *ADTx, uint16_t u16Value);
//获取计数值
uint16_t Adt_GetCount(M0P_ADTIM_TypeDef *ADTx);
//清除计数值
en_result_t Adt_ClearCount(M0P_ADTIM_TypeDef *ADTx);
//获取有效周期计数值
uint8_t Adt_GetVperNum(M0P_ADTIM_TypeDef *ADTx);
//获取状态标志
boolean_t Adt_GetState(M0P_ADTIM_TypeDef *ADTx, en_adt_state_type_t enstate);
//配置计数周期
en_result_t Adt_SetPeriod(M0P_ADTIM_TypeDef *ADTx, uint16_t u16Period);
//配置计数周期缓冲
en_result_t Adt_SetPeriodBuf(M0P_ADTIM_TypeDef *ADTx, uint16_t u16PeriodBuf);
//清除计数周期缓冲
en_result_t Adt_ClearPeriodBuf(M0P_ADTIM_TypeDef *ADTx);
//配置有效计数周期
en_result_t Adt_SetValidPeriod(M0P_ADTIM_TypeDef *ADTx,
stc_adt_validper_cfg_t* pstcAdtValidPerCfg);
//配置比较输出计数基准值
en_result_t Adt_SetCompareValue(M0P_ADTIM_TypeDef *ADTx,
en_adt_compare_t enAdtCompare,
uint16_t u16Compare);
//配置通用比较值/捕获值的缓存传送
en_result_t Adt_EnableValueBuf(M0P_ADTIM_TypeDef *ADTx,
en_adt_CHxX_port_t enAdtCHxXPort,
boolean_t bCompareBufEn);
//清除比较输出计数值/捕获值缓存
en_result_t Adt_ClearValueBuf(M0P_ADTIM_TypeDef *ADTx,
en_adt_CHxX_port_t enAdtCHxXPort);
//获取捕获值
en_result_t Adt_GetCaptureValue(M0P_ADTIM_TypeDef *ADTx,
en_adt_CHxX_port_t enAdtCHxXPort,
uint16_t* pu16Capture);
//获取捕获缓存值
en_result_t Adt_GetCaptureBuf(M0P_ADTIM_TypeDef *ADTx,
en_adt_CHxX_port_t enAdtCHxXPort,
uint16_t* pu16CaptureBuf);
//设置死区时间上基准值
en_result_t Adt_SetDTUA(M0P_ADTIM_TypeDef *ADTx,
uint16_t u16Value);
//设置死区时间下基准值
en_result_t Adt_SetDTDA(M0P_ADTIM_TypeDef *ADTx,
uint16_t u16Value);
//配置死区时间功能
en_result_t Adt_CfgDT(M0P_ADTIM_TypeDef *ADTx,
boolean_t bDTEn,
boolean_t bEqual);
//配置中断
en_result_t Adt_CfgIrq(M0P_ADTIM_TypeDef *ADTx,
en_adt_irq_type_t enAdtIrq,
boolean_t bEn);
//获取中断标志
boolean_t Adt_GetIrqFlag(M0P_ADTIM_TypeDef *ADTx,
en_adt_irq_type_t enAdtIrq);
//清除中断标志
en_result_t Adt_ClearIrqFlag(M0P_ADTIM_TypeDef *ADTx,
en_adt_irq_type_t enAdtIrq);
//清除所有中断标志
en_result_t Adt_ClearAllIrqFlag(M0P_ADTIM_TypeDef *ADTx);
//Z相输入屏蔽设置
en_result_t Adt_CfgZMask(M0P_ADTIM_TypeDef *ADTx,
stc_adt_zmask_cfg_t* pstcAdtZMaskCfg);
//@} // ADT Group
#ifdef __cplusplus
}
#endif
#endif /* __ADT_H__ */
/******************************************************************************
* EOF (not truncated)
******************************************************************************/
-132
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@@ -1,132 +0,0 @@
/******************************************************************************
* Copyright (C) 2016, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file aes.h
**
** AES 数据结构及API声明.
**
** - 2016-05-04 LuX V1.0.
**
******************************************************************************/
#ifndef __AES_H__
#define __AES_H__
/******************************************************************************
* Include files
******************************************************************************/
#include "ddl.h"
/* C binding of definitions if building with C++ compiler */
#ifdef __cplusplus
extern "C"
{
#endif
/**
******************************************************************************
** \defgroup AESGroup AES
**
******************************************************************************/
//@{
/******************************************************************************
* Global type definitions
******************************************************************************/
/**
*******************************************************************************
** \brief AES密钥长度类型定义
** \note
******************************************************************************/
typedef enum en_aes_key_type
{
AesKey128 = 0u, ///< 128 bits
AesKey192 = 1u, ///< 192 bits
AesKey256 = 2u, ///< 256 bits
}en_aes_key_type_t;
/**
*******************************************************************************
** \brief AES配置结构体
** \note
******************************************************************************/
typedef struct
{
uint32_t* pu32Cipher; ///< AES 密文指针
uint32_t* pu32Plaintext; ///< AES 明文指针
uint32_t* pu32Key; ///< AES 密钥指针
en_aes_key_type_t enKeyLen; ///< AES 密钥长度类型
}stc_aes_cfg_t;
/******************************************************************************
* Global definitions
******************************************************************************/
/******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/******************************************************************************
* Global variable definitions ('extern')
******************************************************************************/
/******************************************************************************
* Global function prototypes (definition in C source)
******************************************************************************/
//AES 加密
en_result_t AES_Encrypt(stc_aes_cfg_t* pstcAesCfg);
//AES 解密
en_result_t AES_Decrypt(stc_aes_cfg_t* pstcAesCfg);
//@} // AES Group
#ifdef __cplusplus
}
#endif
#endif /* __AES_H__ */
/******************************************************************************
* EOF (not truncated)
******************************************************************************/
-109
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@@ -1,109 +0,0 @@
/******************************************************************************
* Copyright (C) 2018, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file bgr.h
**
** BGR 数据结构及API声明.
**
** - 2018-04-21 LuX V1.0.
**
******************************************************************************/
#ifndef __CRC_H__
#define __CRC_H__
/******************************************************************************
* Include files
******************************************************************************/
#include "ddl.h"
/* C binding of definitions if building with C++ compiler */
#ifdef __cplusplus
extern "C"
{
#endif
/**
******************************************************************************
** \defgroup BGR
**
******************************************************************************/
//@{
/******************************************************************************
* Global type definitions
******************************************************************************/
/******************************************************************************
* Global definitions
******************************************************************************/
/******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/******************************************************************************
* Global variable definitions ('extern')
******************************************************************************/
/******************************************************************************
* Global function prototypes (definition in C source)
******************************************************************************/
///<内部温度传感器使能/关闭
void Bgr_TempSensorEnable(void);
void Bgr_TempSensorDisable(void);
///<BGR使能/关闭
void Bgr_BgrEnable(void);
void Bgr_BgrDisable(void);
//@} // BGR Group
#ifdef __cplusplus
}
#endif
#endif /* __BGR_H__ */
/******************************************************************************
* EOF (not truncated)
******************************************************************************/
-771
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@@ -1,771 +0,0 @@
/*******************************************************************************
* Copyright (C) 2018, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file bt.h
**
** 基本定时器数据结构及API声明
** @link BT Group Some description @endlink
**
** History:
** - 2018-04-18 Husj First Version
**
*****************************************************************************/
#ifndef __BT_H__
#define __BT_H__
/*****************************************************************************
* Include files
*****************************************************************************/
#include "ddl.h"
#ifdef __cplusplus
extern "C"
{
#endif
/**
******************************************************************************
** \defgroup BtGroup Base Timer (BT)
**
******************************************************************************/
//@{
/******************************************************************************/
/* Global pre-processor symbols/macros ('#define') */
/******************************************************************************/
/******************************************************************************
* Global type definitions
******************************************************************************/
/**
******************************************************************************
** \brief 定时器选择数据类型重定义
*****************************************************************************/
typedef enum en_bt_unit
{
TIM0 = 0u, ///< Timer 0
TIM1 = 1u, ///< Timer 1
TIM2 = 2u, ///< Timer 2
}en_bt_unit_t;
/**
******************************************************************************
** \brief 工作模式选择数据类型重定义 (MODE)(模式0/1/23)
*****************************************************************************/
typedef enum en_bt_work_mode
{
BtWorkMode0 = 0u, ///< 定时器模式
BtWorkMode1 = 1u, ///< PWC模式
BtWorkMode2 = 2u, ///< 锯齿波模式
BtWorkMode3 = 3u, ///< 三角波模式
}en_bt_work_mode_t;
/**
******************************************************************************
** \brief 极性控制数据类型重定义 (GATE_P)(模式0)
*****************************************************************************/
typedef enum en_bt_m0_gatep
{
BtGatePositive = 0u, ///< 高电平有效
BtGateOpposite = 1u, ///< 低电平有效
}en_bt_m0_gatep_t;
/**
******************************************************************************
** \brief TIM 预除频选择 (PRS)(模式0/1/23)
*****************************************************************************/
typedef enum en_bt_cr_timclkdiv
{
BtPCLKDiv1 = 0u, ///< Div 1
BtPCLKDiv2 = 1u, ///< Div 2
BtPCLKDiv4 = 2u, ///< Div 4
BtPCLKDiv8 = 3u, ///< Div 8
BtPCLKDiv16 = 4u, ///< Div 16
BtPCLKDiv32 = 5u, ///< Div 32
BtPCLKDiv64 = 6u, ///< Div 64
BtPCLKDiv256 = 7u, ///< Div 256
}en_bt_cr_timclkdiv_t;
/**
******************************************************************************
** \brief 计数/定时器功能选择数据类型重定义 (CT)(模式0/1/23)
*****************************************************************************/
typedef enum en_bt_cr_ct
{
BtTimer = 0u, ///< 定时器功能,计数时钟为内部PCLK
BtCounter = 1u, ///< 计数器功能,计数时钟为外部ETR
}en_bt_cr_ct_t;
/**
******************************************************************************
** \brief 定时器工作模式数据类型重定义 (MD)(模式0)
*****************************************************************************/
typedef enum en_bt_m0cr_md
{
Bt32bitFreeMode = 0u, ///< 32位计数器/定时器
Bt16bitArrMode = 1u, ///< 自动重载16位计数器/定时器
}en_bt_m0cr_md_t;
/**
******************************************************************************
** \brief BT0/BT1/BT2中断类型数据类型重定义(模式0/1/23)
*****************************************************************************/
typedef enum en_bt_irq_type
{
BtUevIrq = 0u, ///< 溢出/事件更新中断
BtCA0Irq = 2u, ///< 捕获/比较中断A(仅模式1/23存在)
BtCB0Irq = 5u, ///< 捕获/比较中断B(仅模式23存在)
BtCA0E = 8u, ///< CH0A捕获数据丢失标志(仅模式23存在),不是中断
BtCB0E = 11u, ///< CH0B捕获数据丢失标志(仅模式23存在),不是中断
BtBkIrq = 14u, ///< 刹车中断(仅模式23存在)
BtTrigIrq = 15u, ///< 触发中断(仅模式23存在)
}en_bt_irq_type_t;
/**
******************************************************************************
** \brief 测量开始结束数据类型重定义 (Edg1stEdg2nd)(模式1)
*****************************************************************************/
typedef enum en_bt_m1cr_Edge
{
BtPwcRiseToRise = 0u, ///< 上升沿到上升沿(周期)
BtPwcFallToRise = 1u, ///< 下降沿到上升沿(低电平)
BtPwcRiseToFall = 2u, ///< 上升沿到下降沿(高电平)
BtPwcFallToFall = 3u, ///< 下降沿到下降沿(周期)
}en_bt_m1cr_Edge_t;
/**
******************************************************************************
** \brief PWC测量测试模式选择数据类型重定义 (Oneshot)(模式1)
*****************************************************************************/
typedef enum en_bt_m1cr_oneshot
{
BtPwcCycleDetect = 0u, ///< PWC循环测量
BtPwcOneShotDetect = 1u, ///< PWC单次测量
}en_bt_m1cr_oneshot_t;
/**
******************************************************************************
** \brief PWC IA0选择数据类型重定义 (IA0S)(模式1)
*****************************************************************************/
typedef enum en_bt_m1_mscr_ia0s
{
BtIA0Input = 0u, ///< IAO输入
BtXORInput = 1u, ///< IA0 ETR GATE XOR(TIM0/1/2)/IA0 IA1 IA2 XOR(TIM3)
}en_bt_m1_mscr_ia0s_t;
/**
******************************************************************************
** \brief PWC IB0选择数据类型重定义 (IA0S)(模式1)
*****************************************************************************/
typedef enum en_bt_m1_mscr_ib0s
{
BtIB0Input = 0u, ///< IBO输入
BtTsInput = 1u, ///< 内部触发TS选择信号
}en_bt_m1_mscr_ib0s_t;
/**
******************************************************************************
** \brief 输出极性、输入相位 数据类型重定义 (CCPA0/CCPB0/ETP/BKP)(模式1/23)
*****************************************************************************/
typedef enum en_bt_port_polarity
{
BtPortPositive = 0u, ///< 正常输入输出
BtPortOpposite = 1u, ///< 反向输入输出
}en_bt_port_polarity_t;
/**
******************************************************************************
** \brief 滤波选择数据类型重定义 (FLTET/FLTA0/FLAB0)(模式1/23)
*****************************************************************************/
typedef enum en_bt_flt
{
BtFltNone = 0u, ///< 无滤波
BtFltPCLKCnt3 = 4u, ///< PCLK 3个连续有效
BtFltPCLKDiv4Cnt3 = 5u, ///< PCLK/4 3个连续有效
BtFltPCLKDiv16Cnt3 = 6u, ///< PCLK/16 3个连续有效
BtFltPCLKDiv64Cnt3 = 7u, ///< PCLK/64 3个连续有效
}en_bt_flt_t;
/**
******************************************************************************
** \brief 通道比较控制 数据类型重定义 (OCMA/OCMB)(模式23)
*****************************************************************************/
typedef enum en_bt_m23_fltr_ocm
{
BtForceLow = 0u, ///< 强制为0
BtForceHigh = 1u, ///< 强制为1
BtCMPForceLow = 2u, ///< 比较匹配时强制为0
BtCMPForceHigh = 3u, ///< 比较匹配时强制为1
BtCMPInverse = 4u, ///< 比较匹配时翻转电平
BtCMPOnePrdHigh = 5u, ///< 比较匹配时输出一个计数周期的高电平
BtPWMMode1 = 6u, ///< 通道控制为PWM mode 1
BtPWMMode2 = 7u, ///< 通道控制为PWM mode 2
}en_bt_m23_fltr_ocm_t;
/**
******************************************************************************
** \brief 主从模式TS数据类型重定义 (TS)(模式1/23)
*****************************************************************************/
typedef enum en_bt_mscr_ts
{
BtTs0ETR = 0u, ///< ETR外部输入滤波后的相位选择信号
BtTs1TIM0TRGO = 1u, ///< Timer0的TRGO输出信号
BtTs2TIM1TRGO = 2u, ///< Timer1的TRGO输出信号
BtTs3TIM2TRGO = 3u, ///< Timer2的TRGO输出信号
BtTs4TIM3TRGO = 4u, ///< Timer3的TRGO输出信号
//BtTs5IA0ED = 5u, ///< 无效
BtTs6IAFP = 6u, ///< CH0A 外部输输入滤波后的相位选择信号
BtTs7IBFP = 7u, ///< CH0B 外部输输入滤波后的相位选择信
}en_bt_mscr_ts_t;
/**
******************************************************************************
** \brief PWM输出模式选择数据类型重定义 (COMP)(模式23)
*****************************************************************************/
typedef enum en_bt_m23cr_comp
{
BtIndependentPWM = 0u, ///< 独立PWM输出
BtComplementaryPWM = 1u, ///< 互补PWM输出
}en_bt_m23cr_comp_t;
/**
******************************************************************************
** \brief 计数方向选择数据类型重定义 (DIR)(模式23)
*****************************************************************************/
typedef enum en_bt_m23cr_dir
{
BtCntUp = 0u, ///< 向上计数
BtCntDown = 1u, ///< 向下计数
}en_bt_m23cr_dir_t;
/**
******************************************************************************
** \brief 计数方向选择数据类型重定义 (PWM2S)(模式23)
*****************************************************************************/
typedef enum en_bt_m23cr_pwm2s
{
BtDoublePointCmp = 0u, ///< 双点比较使能,使用CCRA,CCRB比较控制OCREFA输出
BtSinglePointCmp = 1u, ///< 单点比较使能,使用CCRA比较控制OCREFA输出
}en_bt_m23cr_pwm2s_t;
/**
******************************************************************************
** \brief GATE在PWM互补模式下捕获或比较功能 选择数据类型重定义 (CSG)(模式23)
*****************************************************************************/
typedef enum en_bt_m23cr_csg
{
BtPWMCompGateCmpOut = 0u, ///< 在PWM互补模式下,Gate作为比较输出
BtPWMCompGateCapIn = 1u, ///< 在PWM互补模式下,Gate作为捕获输入
}en_bt_m23cr_csg_t;
/**
******************************************************************************
** \brief 比较捕获寄存器 数据类型重定义 (CCR0A,CCR0B)(模式23)
*****************************************************************************/
typedef enum en_bt_m23_ccrx
{
BtCCR0A = 0u, ///< CCR0A比较捕获寄存器
BtCCR0B = 1u, ///< CCR0B比较捕获寄存器
}en_bt_m23_ccrx_t;
/**
******************************************************************************
** \brief OCREF清除源 选择数据类型重定义 (OCCS)(模式23)
*****************************************************************************/
typedef enum en_bt_m23ce_occs
{
BtOC_Ref_Clr = 0u, ///< 来自VC的OC_Ref_Clr
BtETRf = 1u, ///< 外部ETRf
}en_bt_m23ce_occs_t;
/**
******************************************************************************
** \brief 比较匹配中断模式 选择数据类型重定义 (CIS/CISB)(模式23)
*****************************************************************************/
typedef enum en_bt_m23_cisa_cisb
{
BtCmpIntNone = 0u, ///< 无比较匹配中断
BtCmpIntRise = 1u, ///< 比较匹配上升沿中断
BtCmpIntFall = 2u, ///< 比较匹配下降沿中断
BtCmpIntRiseFall = 3u, ///< 比较匹配上升沿下降沿中断
}en_bt_m23_cisa_cisb_t;
/**
******************************************************************************
** \brief BT端口控制 - 刹车时CHx输出状态控制(BKSA/BKSB)(模式23)
**
** \note
******************************************************************************/
typedef enum en_bt_m23_crch0_bks
{
BtCHxBksHiZ = 0u, ///< 刹车使能时,CHx端口输出高阻态
BtCHxBksNorm = 1u, ///< 刹车使能时,CHx端口正常输出
BtCHxBksLow = 2u, ///< 刹车使能时,CHx端口输出低电平
BtCHxBksHigh = 3u, ///< 刹车使能时,CHx端口输出高电平
}en_bt_m23_crch0_bks_t;
/**
******************************************************************************
** \brief BT端口控制 - CHx上升沿下降沿捕获(CRx/CFx)(模式23)
**
** \note
******************************************************************************/
typedef enum en_bt_m23_crch0_cfx_crx
{
BtCHxCapNone = 0u, ///< CHx通道捕获禁止
BtCHxCapRise = 1u, ///< CHx通道上升沿捕获使能
BtCHxCapFall = 2u, ///< CHx通道下降沿捕获使能
BtCHxCapFallRise = 3u, ///< CHx通道上升沿下降沿捕获都使能
}en_bt_m23_crch0_cfx_crx_t;
/**
******************************************************************************
** \brief BT端口控制 - CHx比较捕获模式(CSA/CSB)(模式23)
**
** \note
******************************************************************************/
typedef enum en_bt_m23_crch0_csa_csb
{
BtCHxCmpMode = 0u, ///< CHx通道设置为比较模式
BtCHxCapMode = 1u, ///< CHx通道设置为捕获模式
}en_bt_m23_crch0_csa_csb_t;
/**
******************************************************************************
** \brief 比较模式下 DMA比较触发选择 数据类型重定义 (CCDS)(模式23)
*****************************************************************************/
typedef enum en_bt_m23_mscr_ccds
{
BtCmpTrigDMA = 0u, ///< 比较匹配触发DMA
BtUEVTrigDMA = 1u, ///< 事件更新代替比较匹配触发DMA
}en_bt_m23_mscr_ccds_t;
/**
******************************************************************************
** \brief 主从模式选择 数据类型重定义 (MSM)(模式23)
*****************************************************************************/
typedef enum en_bt_m23_mscr_msm
{
BtSlaveMode = 0u, ///< 从模式
BtMasterMode = 1u, ///< 主模式
}en_bt_m23_mscr_msm_t;
/**
******************************************************************************
** \brief 触发主模式输出源 数据类型重定义 (MMS)(模式23)
*****************************************************************************/
typedef enum en_bt_m23_mscr_mms
{
BtMasterUG = 0u, ///< UG(软件更新)源
BtMasterCTEN = 1u, ///< CTEN源
BtMasterUEV = 2u, ///< UEV更新源
BtMasterCMPSO = 3u, ///< 比较匹配选择输出源
BtMasterOCA0Ref = 4u, ///< OCA0_Ref源
BtMasterOCB0Ref = 5u, ///< OCB0_Ref源
//BtMasterOCB0Ref = 6u,
//BtMasterOCB0Ref = 7u,
}en_bt_m23_mscr_mms_t;
/**
******************************************************************************
** \brief 触发从模式选择 数据类型重定义 (SMS)(模式23)
*****************************************************************************/
typedef enum en_bt_m23_mscr_sms
{
BtSlaveIClk = 0u, ///< 使用内部时钟
BtSlaveResetTIM = 1u, ///< 复位功能
BtSlaveTrigMode = 2u, ///< 触发模式
BtSlaveEClk = 3u, ///< 外部时钟模式
BtSlaveCodeCnt1 = 4u, ///< 正交编码计数模式1
BtSlaveCodeCnt2 = 5u, ///< 正交编码计数模式2
BtSlaveCodeCnt3 = 6u, ///< 正交编码计数模式3
BtSlaveGateCtrl = 7u, ///< 门控功能
}en_bt_m23_mscr_sms_t;
/**
******************************************************************************
** \brief 定时器运行控制数据类型重定义 (CTEN)
*****************************************************************************/
typedef enum en_bt_start
{
BtCTENDisable = 0u, ///< 停止
BtCTENEnable = 1u, ///< 运行
}en_bt_start_t;
/**
******************************************************************************
** \brief BaseTimer mode0 配置结构体定义(模式0)
*****************************************************************************/
typedef struct stc_bt_mode0_cfg
{
en_bt_work_mode_t enWorkMode; ///< 工作模式设置
en_bt_m0_gatep_t enGateP; ///< 门控极性控制
boolean_t bEnGate; ///< 门控使能
en_bt_cr_timclkdiv_t enPRS; ///< 预除频配置
boolean_t bEnTog; ///< 翻转输出使能
en_bt_cr_ct_t enCT; ///< 定时/计数功能选择
en_bt_m0cr_md_t enCntMode; ///< 计数模式配置
func_ptr_t pfnTim0Cb; ///< Timer0中断服务回调函数[void function(void)]
func_ptr_t pfnTim1Cb; ///< Timer1中断服务回调函数[void function(void)]
func_ptr_t pfnTim2Cb; ///< Timer2中断服务回调函数[void function(void)]
}stc_bt_mode0_cfg_t;
/**
******************************************************************************
** \brief BaseTimer mode1 配置结构体定义(模式1)
*****************************************************************************/
typedef struct stc_bt_mode1_cfg
{
en_bt_work_mode_t enWorkMode; ///< 工作模式设置
en_bt_cr_timclkdiv_t enPRS; ///< 预除频配置
en_bt_cr_ct_t enCT; ///< 定时/计数功能选择
en_bt_m1cr_oneshot_t enOneShot; ///< 单次测量/循环测量选择
func_ptr_t pfnTim0Cb; ///< Timer0中断服务回调函数[void function(void)]
func_ptr_t pfnTim1Cb; ///< Timer1中断服务回调函数[void function(void)]
func_ptr_t pfnTim2Cb; ///< Timer2中断服务回调函数[void function(void)]
}stc_bt_mode1_cfg_t;
/**
******************************************************************************
** \brief PWC输入配置结构体定义(模式1)
*****************************************************************************/
typedef struct stc_bt_pwc_input_cfg
{
en_bt_mscr_ts_t enTsSel; ///< 触发输入源选择
en_bt_m1_mscr_ia0s_t enIA0Sel; ///< CHA0输入选择
en_bt_m1_mscr_ib0s_t enIB0Sel; ///< CHB0输入选择
en_bt_port_polarity_t enETRPhase; ///< ETR相位选择
en_bt_flt_t enFltETR; ///< ETR滤波设置
en_bt_flt_t enFltIA0; ///< CHA0滤波设置
en_bt_flt_t enFltIB0; ///< CHB0滤波设置
}stc_bt_pwc_input_cfg_t;
/**
******************************************************************************
** \brief BaseTimer mode23 配置结构体定义(模式23)
*****************************************************************************/
typedef struct stc_bt_mode23_cfg
{
en_bt_work_mode_t enWorkMode; ///< 工作模式设置
en_bt_m23cr_dir_t enCntDir; ///< 计数方向
en_bt_cr_timclkdiv_t enPRS; ///< 时钟预除频配置
en_bt_cr_ct_t enCT; ///< 定时/计数功能选择
en_bt_m23cr_comp_t enPWMTypeSel; ///< PWM模式选择(独立/互补)
en_bt_m23cr_pwm2s_t enPWM2sSel; ///< OCREFA双点比较功能选择
boolean_t bOneShot; ///< 单次触发模式使能/禁止
boolean_t bURSSel; ///< 更新源选择
func_ptr_t pfnTim0Cb; ///< Timer0中断服务回调函数[void function(void)]
func_ptr_t pfnTim1Cb; ///< Timer1中断服务回调函数[void function(void)]
func_ptr_t pfnTim2Cb; ///< Timer2中断服务回调函数[void function(void)]
}stc_bt_mode23_cfg_t;
/**
******************************************************************************
** \brief GATE在PWM互补模式下捕获或比较功能 配置结构体定义(模式23)
*****************************************************************************/
typedef struct stc_bt_m23_gate_cfg
{
en_bt_m23cr_csg_t enGateFuncSel; ///< Gate比较、捕获功能选择
boolean_t bGateRiseCap; ///< GATE作为捕获功能时,上沿捕获有效控制
boolean_t bGateFallCap; ///< GATE作为捕获功能时,下沿捕获有效控制
}stc_bt_m23_gate_cfg_t;
/**
******************************************************************************
** \brief CHA/CHB通道比较控制 配置结构体定义(模式23)
*****************************************************************************/
typedef struct stc_bt_m23_compare_cfg
{
en_bt_m23_crch0_csa_csb_t enCh0ACmpCap; ///< CH0A比较/捕获功能选择
en_bt_m23_fltr_ocm_t enCH0ACmpCtrl; ///< CH0A通道比较控制
en_bt_port_polarity_t enCH0APolarity; ///< CH0A输出极性控制
boolean_t bCh0ACmpBufEn; ///< 比较A缓存功能 使能/禁止
en_bt_m23_cisa_cisb_t enCh0ACmpIntSel; ///< CHA比较匹配中断选择
en_bt_m23_crch0_csa_csb_t enCh0BCmpCap; ///< CH0B比较/捕获功能选择
en_bt_m23_fltr_ocm_t enCH0BCmpCtrl; ///< CH0B通道比较控制
en_bt_port_polarity_t enCH0BPolarity; ///< CH0B输出极性控制
boolean_t bCH0BCmpBufEn; ///< 比较B缓存功能 使能/禁止
en_bt_m23_cisa_cisb_t enCH0BCmpIntSel; ///< CHB0比较匹配中断选择
}stc_bt_m23_compare_cfg_t;
/**
******************************************************************************
** \brief CHA/CHB通道捕获控制 配置结构体定义(模式23)
*****************************************************************************/
typedef struct stc_bt_m23_input_cfg
{
en_bt_m23_crch0_csa_csb_t enCh0ACmpCap; ///< CH0A比较/捕获功能选择
en_bt_m23_crch0_cfx_crx_t enCH0ACapSel; ///< CH0A捕获边沿选择
en_bt_flt_t enCH0AInFlt; ///< CH0A通道捕获滤波控制
en_bt_port_polarity_t enCH0APolarity; ///< CH0A输入相位
en_bt_m23_crch0_csa_csb_t enCh0BCmpCap; ///< CH0B比较/捕获功能选择
en_bt_m23_crch0_cfx_crx_t enCH0BCapSel; ///< HC0B捕获边沿选择
en_bt_flt_t enCH0BInFlt; ///< CH0B通道捕获滤波控制
en_bt_port_polarity_t enCH0BPolarity; ///< CH0B输入相位
}stc_bt_m23_input_cfg_t;
/**
******************************************************************************
** \brief ETR输入相位滤波配置结构体定义(模式23)
*****************************************************************************/
typedef struct stc_bt_m23_etr_input_cfg
{
en_bt_port_polarity_t enETRPolarity; ///< ETR输入极性设置
en_bt_flt_t enETRFlt; ///< ETR滤波设置
}stc_bt_m23_etr_input_cfg_t;
/**
******************************************************************************
** \brief 刹车BK输入相位滤波配置结构体定义(模式23)
*****************************************************************************/
typedef struct stc_bt_m23_bk_input_cfg
{
boolean_t bEnBrake; ///< 刹车使能
boolean_t bEnVCBrake; ///< 使能VC0刹车
boolean_t bEnSafetyBk; ///< 使能safety刹车
boolean_t bEnBKSync; ///< TIM0/TIM1/TIM2刹车同步使能
en_bt_m23_crch0_bks_t enBkCH0AStat; ///< 刹车时CHA端口状态设置
en_bt_m23_crch0_bks_t enBkCH0BStat; ///< 刹车时CHB端口状态设置
en_bt_port_polarity_t enBrakePolarity; ///< 刹车BK输入极性设置
en_bt_flt_t enBrakeFlt; ///< 刹车BK滤波设置
}stc_bt_m23_bk_input_cfg_t;
/**
******************************************************************************
** \brief 死区功能配置结构体定义(模式23)
*****************************************************************************/
typedef struct stc_bt_m23_dt_cfg
{
boolean_t bEnDeadTime; ///< 刹车时CHA端口状态设置
uint8_t u8DeadTimeValue; ///< 刹车时CHA端口状态设置
}stc_bt_m23_dt_cfg_t;
/**
******************************************************************************
** \brief 触发ADC配置结构体定义(模式23)
*****************************************************************************/
typedef struct stc_bt_m23_adc_trig_cfg
{
boolean_t bEnTrigADC; ///< 触发ADC全局控制
boolean_t bEnUevTrigADC; ///< 事件更新触发ADC
boolean_t bEnCH0ACmpTrigADC; ///< CH0A比较匹配触发ADC
boolean_t bEnCH0BCmpTrigADC; ///< CH0B比较匹配触发ADC
}stc_bt_m23_adc_trig_cfg_t;
/**
******************************************************************************
** \brief DMA触发 配置结构体定义(模式23)
*****************************************************************************/
typedef struct stc_bt_m23_trig_dma_cfg
{
boolean_t bUevTrigDMA; ///< 更新 触发DMA使能
boolean_t bTITrigDMA; ///< Trig 触发DMA功能
boolean_t bCmpATrigDMA; ///< A捕获比较触发DMA使能
boolean_t bCmpBTrigDMA; ///< B捕获比较触发DMA使能
en_bt_m23_mscr_ccds_t enCmpUevTrigDMA; ///< 比较模式下DMA比较触发选择
}stc_bt_m23_trig_dma_cfg_t;
/**
******************************************************************************
** \brief 主从模式 配置结构体定义(模式23)
*****************************************************************************/
typedef struct stc_bt_m23_master_slave_cfg
{
en_bt_m23_mscr_msm_t enMasterSlaveSel; ///< 主从模式选择
en_bt_m23_mscr_mms_t enMasterSrc; ///< 主模式触发源选择
en_bt_m23_mscr_sms_t enSlaveModeSel; ///< 从模式选择
en_bt_mscr_ts_t enTsSel; ///< 触发输入源选择
}stc_bt_m23_master_slave_cfg_t;
/**
******************************************************************************
** \brief OCREF清除功能 配置结构体定义(模式23)
*****************************************************************************/
typedef struct stc_bt_m23_OCREF_Clr_cfg
{
en_bt_m23ce_occs_t enOCRefClrSrcSel; ///< OCREF清除源选择
boolean_t bVCClrEn; ///< 是否使能来自VC的OCREF_Clr
}stc_bt_m23_OCREF_Clr_cfg_t;
/******************************************************************************
* Global variable declarations ('extern', definition in C source)
*****************************************************************************/
/******************************************************************************
* Global function prototypes (definition in C source)
*****************************************************************************/
//中断相关函数
//中断标志获取
boolean_t Bt_GetIntFlag(en_bt_unit_t enUnit, en_bt_irq_type_t enBtIrq);
//中断标志清除
en_result_t Bt_ClearIntFlag(en_bt_unit_t enUnit, en_bt_irq_type_t enBtIrq);
//所有中断标志清除
en_result_t Bt_ClearAllIntFlag(en_bt_unit_t enUnit);
//模式0中断使能
en_result_t Bt_Mode0_EnableIrq(en_bt_unit_t enUnit);
//模式1中断使能
en_result_t Bt_Mode1_EnableIrq (en_bt_unit_t enUnit, en_bt_irq_type_t enBtIrq);
//模式2中断使能
en_result_t Bt_Mode23_EnableIrq (en_bt_unit_t enUnit, en_bt_irq_type_t enBtIrq);
//模式0中断禁止
en_result_t Bt_Mode0_DisableIrq(en_bt_unit_t enUnit);
//模式1中断禁止
en_result_t Bt_Mode1_DisableIrq (en_bt_unit_t enUnit, en_bt_irq_type_t enBtIrq);
//模式2中断禁止
en_result_t Bt_Mode23_DisableIrq (en_bt_unit_t enUnit, en_bt_irq_type_t enBtIrq);
//模式0初始化及相关功能操作
//timer配置及初始化
en_result_t Bt_Mode0_Init(en_bt_unit_t enUnit, stc_bt_mode0_cfg_t* pstcCfg);
//timer 启动/停止
en_result_t Bt_M0_Run(en_bt_unit_t enUnit);
en_result_t Bt_M0_Stop(en_bt_unit_t enUnit);
//重载值设置
en_result_t Bt_M0_ARRSet(en_bt_unit_t enUnit, uint16_t u16Data);
//16位计数值设置/获取
en_result_t Bt_M0_Cnt16Set(en_bt_unit_t enUnit, uint16_t u16Data);
uint16_t Bt_M0_Cnt16Get(en_bt_unit_t enUnit);
//32位计数值设置/获取
en_result_t Bt_M0_Cnt32Set(en_bt_unit_t enUnit, uint32_t u32Data);
uint32_t Bt_M0_Cnt32Get(en_bt_unit_t enUnit);
//翻转输出使能/禁止(低电平)设定
en_result_t Bt_M0_EnTOG_Output(en_bt_unit_t enUnit, boolean_t bEnTOG);
//端口输出使能/禁止设定
en_result_t Bt_M0_Enable_Output(en_bt_unit_t enUnit, boolean_t bEnOutput);
//模式1初始化及相关功能操作
//timer配置及初始化
en_result_t Bt_Mode1_Init(en_bt_unit_t enUnit, stc_bt_mode1_cfg_t* pstcCfg);
//PWC 输入配置
en_result_t Bt_M1_Input_Cfg(en_bt_unit_t enUnit, stc_bt_pwc_input_cfg_t* pstcCfg);
//PWC测量边沿起始结束选择
en_result_t Bt_M1_PWC_Edge_Sel(en_bt_unit_t enUnit,en_bt_m1cr_Edge_t enEdgeSel);
//timer 启动/停止
en_result_t Bt_M1_Run(en_bt_unit_t enUnit);
en_result_t Bt_M1_Stop(en_bt_unit_t enUnit);
//16位计数值设置/获取
en_result_t Bt_M1_Cnt16Set(en_bt_unit_t enUnit, uint16_t u16Data);
uint16_t Bt_M1_Cnt16Get(en_bt_unit_t enUnit);
//脉冲宽度测量结果数值获取
uint16_t Bt_M1_PWC_CapValueGet(en_bt_unit_t enUnit);
//模式23初始化及相关功能操作
//timer配置及初始化
en_result_t Bt_Mode23_Init(en_bt_unit_t enUnit, stc_bt_mode23_cfg_t* pstcCfg);
//timer 启动/停止
en_result_t Bt_M23_Run(en_bt_unit_t enUnit);
en_result_t Bt_M23_Stop(en_bt_unit_t enUnit);
//PWM输出使能
en_result_t Bt_M23_EnPWM_Output(en_bt_unit_t enUnit, boolean_t bEnOutput, boolean_t bEnAutoOutput);
//重载值设置
en_result_t Bt_M23_ARRSet(en_bt_unit_t enUnit, uint16_t u16Data, boolean_t bArrBufEn);
//16位计数值设置/获取
en_result_t Bt_M23_Cnt16Set(en_bt_unit_t enUnit, uint16_t u16Data);
uint16_t Bt_M23_Cnt16Get(en_bt_unit_t enUnit);
//比较捕获寄存器CCR0A/CCR0B设置/读取
en_result_t Bt_M23_CCR_Set(en_bt_unit_t enUnit, en_bt_m23_ccrx_t enCCRSel, uint16_t u16Data);
uint16_t Bt_M23_CCR_Get(en_bt_unit_t enUnit, en_bt_m23_ccrx_t enCCRSel);
//PWM互补输出模式下,GATE功能选择
en_result_t Bt_M23_GateFuncSel(en_bt_unit_t enUnit,stc_bt_m23_gate_cfg_t* pstcCfg);
//主从模式配置
en_result_t Bt_M23_MasterSlave_Set(en_bt_unit_t enUnit, stc_bt_m23_master_slave_cfg_t* pstcCfg);
//CH0A/CH0B比较通道控制
en_result_t Bt_M23_PortOutput_Cfg(en_bt_unit_t enUnit, stc_bt_m23_compare_cfg_t* pstcCfg);
//CH0A/CH0B输入控制
en_result_t Bt_M23_PortInput_Cfg(en_bt_unit_t enUnit, stc_bt_m23_input_cfg_t* pstcCfg);
//ERT输入控制
en_result_t Bt_M23_ETRInput_Cfg(en_bt_unit_t enUnit, stc_bt_m23_etr_input_cfg_t* pstcCfg);
//刹车BK输入控制
en_result_t Bt_M23_BrakeInput_Cfg(en_bt_unit_t enUnit, stc_bt_m23_bk_input_cfg_t* pstcCfg);
//触发ADC控制
en_result_t Bt_M23_TrigADC_Cfg(en_bt_unit_t enUnit, stc_bt_m23_adc_trig_cfg_t* pstcCfg);
//死区功能
en_result_t Bt_M23_DT_Cfg(en_bt_unit_t enUnit, stc_bt_m23_dt_cfg_t* pstcCfg);
//重复周期设置
en_result_t Bt_M23_SetValidPeriod(en_bt_unit_t enUnit, uint8_t u8ValidPeriod);
//OCREF清除功能
en_result_t Bt_M23_OCRefClr(en_bt_unit_t enUnit, stc_bt_m23_OCREF_Clr_cfg_t* pstcCfg);
//使能DMA传输
en_result_t Bt_M23_EnDMA(en_bt_unit_t enUnit, stc_bt_m23_trig_dma_cfg_t* pstcCfg);
//捕获比较A软件触发
en_result_t Bt_M23_EnSwTrigCapCmpA(en_bt_unit_t enUnit);
//捕获比较B软件触发
en_result_t Bt_M23_EnSwTrigCapCmpB(en_bt_unit_t enUnit);
//软件更新使能
en_result_t Bt_M23_EnSwUev(en_bt_unit_t enUnit);
//软件触发使能
en_result_t Bt_M23_EnSwTrig(en_bt_unit_t enUnit);
//软件刹车使能
en_result_t Bt_M23_EnSwBk(en_bt_unit_t enUnit);
//@} // BtGroup
#ifdef __cplusplus
#endif
#endif /* __BT_H__ */
/******************************************************************************
* EOF (not truncated)
*****************************************************************************/
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/******************************************************************************
* Copyright (C) 2016, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file crc.h
**
** CRC 数据结构及API声明.
**
** - 2016-05-04 LuX V1.0.
**
******************************************************************************/
#ifndef __CRC_H__
#define __CRC_H__
/******************************************************************************
* Include files
******************************************************************************/
#include "sysctrl.h"
/* C binding of definitions if building with C++ compiler */
#ifdef __cplusplus
extern "C"
{
#endif
/**
******************************************************************************
** \defgroup CrcGroup Cyclic Redundancy Check (CRC)
**
******************************************************************************/
//@{
/******************************************************************************
* Global type definitions
******************************************************************************/
/******************************************************************************
* Global definitions
******************************************************************************/
/******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/******************************************************************************
* Global variable definitions ('extern')
******************************************************************************/
/******************************************************************************
* Global function prototypes (definition in C source)
******************************************************************************/
//CRC16 编码值获取
uint16_t CRC16_Get8(uint8_t* pu8Data, uint32_t u32Len);
uint16_t CRC16_Get16(uint16_t* pu16Data, uint32_t u32Len);
uint16_t CRC16_Get32(uint32_t* pu32Data, uint32_t u32Len);
//CRC16 校验
en_result_t CRC16_Check8(uint8_t* pu8Data, uint32_t u32Len, uint16_t u16CRC);
en_result_t CRC16_Check16(uint16_t* pu16Data, uint32_t u32Len, uint16_t u16CRC);
en_result_t CRC16_Check32(uint32_t* pu32Data, uint32_t u32Len, uint16_t u16CRC);
//CRC32 编码值获取
uint32_t CRC32_Get8(uint8_t* pu8Data, uint32_t u32Len);
uint32_t CRC32_Get16(uint16_t* pu16Data, uint32_t u32Len);
uint32_t CRC32_Get32(uint32_t* pu32Data, uint32_t u32Len);
//CRC32 校验
en_result_t CRC32_Check8(uint8_t* pu8Data, uint32_t u32Len, uint32_t u32CRC);
en_result_t CRC32_Check16(uint16_t* pu16Data, uint32_t u32Len, uint32_t u32CRC);
en_result_t CRC32_Check32(uint32_t* pu32Data, uint32_t u32Len, uint32_t u32CRC);
//@} // CRC Group
#ifdef __cplusplus
}
#endif
#endif /* __CRC_H__ */
/******************************************************************************
* EOF (not truncated)
******************************************************************************/
-234
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/******************************************************************************
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file dac.h
**
** Header file for dac Converter functions
** @link DAC Group Some description @endlink
**
** - 2019-04-10 First Version
**
******************************************************************************/
#ifndef __DAC_H__
#define __DAC_H__
/******************************************************************************/
/* Include files */
/******************************************************************************/
#include "ddl.h"
/* C binding of definitions if building with C++ compiler */
#ifdef __cplusplus
extern "C"
{
#endif
/**
******************************************************************************
** \brief 使能或者禁止指令
******************************************************************************/
typedef enum
{
DacDisable = 0u, //禁止
DacEnable = 1u //使能
}en_en_state_t;
/**
******************************************************************************
** \brief 使能或者禁止DAC0通道输出缓冲器 DAC_CR0BOFF0
******************************************************************************/
typedef enum
{
DacBoffDisable = 1u,
DacBoffEnable = 0u
}en_dac_boff_t;
/**
******************************************************************************
** \brief 使能或者禁止DAC0通道触发使能 DAC_CR0: TEN0
******************************************************************************/
typedef enum
{
DacTenDisable = 0u,
DacTenEnable = 1u
}en_dac_ten_t;
/**
******************************************************************************
** \brief DAC0通道触发选择 DAC_CR0: TSEL0
******************************************************************************/
typedef enum
{
DacTim0Tradc = 0u, //TIM0_TRADC触发
DacTim1Tradc = 1u, //TIM1_TRADC触发
DacTim2Tradc = 2u, //TIM2_TRADC触发
DacTim3Tradc = 3u, //TIM3_TRADC触发
DacTim4Tradc = 4u, //TIM4_TRADC触发
DacTim5Tradc = 5u, //TIM5_TRADC触发
DacSwTriger = 6u, //软件触发
DacExPortTriger = 7u //外部端口触发
}en_dac_tsel_t;
/**
******************************************************************************
** \brief DAC0通道噪声/三角波生产使能或禁止 DAC_CR0: WAVE0
******************************************************************************/
typedef enum
{
DacWaveDisable = 0u, //禁止生产波
DacNoiseEnable = 1u, //使能生成噪声波
DacTrWaveEnable = 2u //使能生产三角波
}en_dac_wave_t;
/**
******************************************************************************
** \brief DACx通道掩码/振幅选择器 DAC_CR0: MAMP0 & MAMP1
******************************************************************************/
typedef enum
{
DacMemp01 = 0u,
DacMenp03 = 1u,
DacMenp07 = 2u,
DacMenp15 = 3u,
DacMenp31 = 4u,
DacMenp63 = 5u,
DacMenp127 = 6u,
DacMenp255 = 7u,
DacMenp511 = 8u,
DacMenp1023 = 9u,
DacMenp2047 = 10u,
DacMenp4095 = 11u
}en_dac_mamp_t;
/**
******************************************************************************
** \brief DACx通道DMA使能或禁止 DAC_CR0: DMAEN0 & DMAEN1
******************************************************************************/
/**
******************************************************************************
** \brief DACx通道DMA下溢中断使能或禁止 DAC_CR0: DMAUDRIE0 & DMAUDRIE1
******************************************************************************/
/**
******************************************************************************
** \brief DACx参考电压选择 DAC_CR0: SREF0 & SREF1
******************************************************************************/
typedef enum
{
DacVoltage1V5 = 0u, //内部1.5V
DacVoltage2V5 = 1u, //内部2.5V
DacVoltageExRef = 2u, //外部参考电压ExRef(PB01)
DacVoltageAvcc = 3u //AVCC电压
}en_dac_sref_t;
/**
******************************************************************************
** \brief DACx触发选择寄存器DAC_ETRS DAC_ETRS
******************************************************************************/
typedef enum
{
DacPortTrigPA9 = 0u, //触发端口为PA9
DacPortTrigPB9 = 1u, //触发端口为PB9
DacPortTrigPC9 = 2u, //触发端口为PC9
DacPortTrigPD9 = 3u, //触发端口为PD9
DacPortTrigPE9 = 4u, //触发端口为PE9
DacPortTrigPF9 = 5u //触发端口为PF9
}en_port_trig_t;
/**
******************************************************************************
** \brief 对齐方式
******************************************************************************/
typedef enum
{
DacRightAlign = 0u, //右对齐
DacLeftAlign = 1u //左对齐
}en_align_t;
/**
******************************************************************************
** \brief 数据位数
******************************************************************************/
typedef enum
{
DacBit8 = 0u, //8位
DacBit12 = 1u //12位
}en_bitno_t;
/**
******************************************************************************
** \brief 初始化配置结构体
******************************************************************************/
typedef struct
{
en_dac_boff_t boff_t;
en_dac_ten_t ten_t;
en_dac_tsel_t tsel_t;
en_dac_wave_t wave_t;
en_dac_mamp_t mamp_t;
en_dac_sref_t sref_t;
en_port_trig_t port_trig_t;
en_align_t align;
uint16_t dhr12;
uint8_t dhr8;
}stc_dac_cfg_t;
extern void Dac_DmaCmd(boolean_t NewState);
extern void Dac_DmaITCfg(boolean_t NewState);
extern boolean_t Dac_GetITStatus(void);
extern void Dac_Cmd(boolean_t NewState);
extern void Dac_SoftwareTriggerCmd(void);
extern void Dac_Init(stc_dac_cfg_t* DAC_InitStruct);
extern void Dac_SetChannelData(en_align_t DAC_Align, en_bitno_t DAC_Bit, uint16_t Data);
extern uint16_t Dac_GetDataOutputValue(void);
#ifdef __cplusplus
}
#endif
#endif //__DAC_H__
/******************************************************************************/
/* EOF (not truncated) */
/******************************************************************************/
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/*******************************************************************************
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file ddl.h
**
** DDL common define.
** @link SampleGroup Some description @endlink
**
** - 2019-10-17 1.1 Lux
**
******************************************************************************/
#ifndef __DDL_H__
#define __DDL_H__
/******************************************************************************/
/* Include files */
/******************************************************************************/
#include "base_types.h"
#include "board_stkhc32l17x.h"
#include "hc32l17x.h"
#include "system_hc32l17x.h"
#include "sysctrl.h"
#include "interrupts_hc32l17x.h"
/* C binding of definitions if building with C++ compiler */
#ifdef __cplusplus
extern "C"
{
#endif
/******************************************************************************/
/* Global pre-processor symbols/macros ('#define') */
/* Macro for initializing local structures to zero */
/******************************************************************************/
#define DDL_ZERO_STRUCT(x) ddl_memclr((uint8_t*)&(x), (uint32_t)(sizeof(x)))
#define DEC2BCD(x) ((((x)/10)<<4) + ((x)%10))
#define BCD2DEC(x) ((((x)>>4)*10) + ((x)&0x0F))
#define SET_BIT(REG, BIT) ((REG) |= (BIT))
#define CLEAR_BIT(REG, BIT) ((REG) &= ~(BIT))
#define READ_BIT(REG, BIT) ((REG) & (BIT))
#define CLEAR_REG(REG) ((REG) = (0x0))
#define WRITE_REG(REG, VAL) ((REG) = (VAL))
#define READ_REG(REG) ((REG))
#define MODIFY_REG(REG, CLEARMASK, SETMASK) WRITE_REG((REG), (((READ_REG(REG)) & (~(CLEARMASK))) | (SETMASK)))
/**
******************************************************************************
** Global Device Series List
******************************************************************************/
#define DDL_DEVICE_SERIES_HC32L17X (0u)
/**
******************************************************************************
** Global Device Package List
******************************************************************************/
// package definitions of HC device.
#define DDL_DEVICE_PACKAGE_HC_C (0x00u)
#define DDL_DEVICE_PACKAGE_HC_F (0x10u)
#define DDL_DEVICE_PACKAGE_HC_J (0x20u)
#define DDL_DEVICE_PACKAGE_HC_K (0x30u)
/******************************************************************************/
/* User Device Setting Include file */
/******************************************************************************/
#include "ddl_device.h" // MUST be included here!
/******************************************************************************/
/* Global type definitions ('typedef') */
/******************************************************************************/
/**
******************************************************************************
** \brief Level
**
** Specifies levels.
**
******************************************************************************/
typedef enum en_level
{
DdlLow = 0u, ///< Low level '0'
DdlHigh = 1u ///< High level '1'
} en_level_t;
/**
******************************************************************************
** \brief Generic Flag Code
**
** Specifies flags.
**
******************************************************************************/
typedef enum en_flag
{
DdlClr = 0u, ///< Flag clr '0'
DdlSet = 1u ///< Flag set '1'
} en_stat_flag_t, en_irq_flag_t;
/******************************************************************************/
/* Global variable declarations ('extern', definition in C source) */
/******************************************************************************/
/******************************************************************************/
/* Global function prototypes ('extern', definition in C source) */
/******************************************************************************/
/*******************************************************************************
* Global function prototypes
******************************************************************************/
extern void ddl_memclr(void* pu8Address, uint32_t u32Count);
uint32_t Log2(uint32_t u32Val);
/**
*******************************************************************************
** This hook is part of wait loops.
******************************************************************************/
void delay1ms(uint32_t u32Cnt);
void delay100us(uint32_t u32Cnt);
void delay10us(uint32_t u32Cnt);
void SetBit(uint32_t addr, uint32_t offset, boolean_t bFlag);
void ClrBit(uint32_t addr, uint32_t offset);
boolean_t GetBit(uint32_t addr, uint32_t offset);
#ifdef __cplusplus
}
#endif
#endif /* __DDL_H__ */
/******************************************************************************/
/* EOF (not truncated) */
/******************************************************************************/
-129
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/*******************************************************************************
* Copyright (C) 2018, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file debug.h
**
** Headerfile for DEBUG functions
** @link Debug Group Some description @endlink
**
** History:
** - 2018-04-15 Lux First Version
**
******************************************************************************/
#ifndef __DEBUG_H__
#define __DEBUG_H__
/*******************************************************************************
* Include files
******************************************************************************/
#include "ddl.h"
#ifdef __cplusplus
extern "C"
{
#endif
/**
******************************************************************************
** \defgroup DebugGroup (DEBUG)
**
******************************************************************************/
//@{
/**
*******************************************************************************
** function prototypes.
******************************************************************************/
/******************************************************************************
* Global type definitions
******************************************************************************/
/**
*******************************************************************************
** \brief 调试模式下各模块工作状态类型定义
** \note
******************************************************************************/
typedef enum en_debug_module_active
{
DebugMskTim0 = 0x0001u, ///< TIM0
DebugMskTim1 = 0x0002u, ///< TIM1
DebugMskTim2 = 0x0004u, ///< TIM2
DebugMskLpTim0 = 0x0008u, ///< LPTIM0
DebugMskTim4 = 0x0010u, ///< TIM4
DebugMskTim5 = 0x0020u, ///< TIM5
DebugMskTim6 = 0x0040u, ///< TIM6
DebugMskPca = 0x0080u, ///< PCA
DebugMskWdt = 0x0100u, ///< WDT
DebugMskRtc = 0x0200u, ///< RTC
DebugMskTim3 = 0x0800u, ///< TIM3
DebugMskLpTim1 = 0x1000u, ///< LPTIM1
}en_debug_module_active_t;
/*******************************************************************************
* Global definitions
******************************************************************************/
/******************************************************************************
* Global variable declarations ('extern', definition in C source)
******************************************************************************/
/******************************************************************************
* Global function prototypes (definition in C source)
******************************************************************************/
///< 在SWD调试模式下,使能模块计数功能
en_result_t Debug_ActiveEnable(en_debug_module_active_t enModule);
///< 在SWD调试模式下,暂停模块计数功能
en_result_t Debug_ActiveDisable(en_debug_module_active_t enModule);
//@} // Debug Group
#ifdef __cplusplus
#endif
#endif /* __DEBUG_H__ */
/*******************************************************************************
* EOF (not truncated)
******************************************************************************/
-356
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@@ -1,356 +0,0 @@
/*****************************************************************************
* Copyright (C) 2016, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file dma.h
**
** A detailed description is available at
** @link DmacGroup Dmac description @endlink
**
** - 2018-03-09 1.0 Hongjh First version for Device Driver Library of Dmac.
**
******************************************************************************/
#ifndef __DMAC_H__
#define __DMAC_H__
/*******************************************************************************
* Include files
******************************************************************************/
#include "ddl.h"
/* C binding of definitions if building with C++ compiler */
#ifdef __cplusplus
extern "C"
{
#endif
/**
*******************************************************************************
** \defgroup DmacGroup Direct Memory Access Control(DMAC)
**
******************************************************************************/
//@{
/*******************************************************************************
* Global type definitions ('typedef')
******************************************************************************/
/**
*******************************************************************************
** \brief DMA 通道
**
******************************************************************************/
typedef enum en_dma_channel
{
DmaCh0 = 0x00, ///< DMA 通道0
DmaCh1 = 0x04, ///< DMA 通道1
} en_dma_channel_t;
/**
*******************************************************************************
** \brief DMA 优先级
**
******************************************************************************/
typedef enum en_dma_priority
{
DmaMskPriorityFix = 0x00000000, ///< DMA 各通道优先级固定 (CH0>CH1)
DmaMskPriorityLoop = 0x10000000, ///< DMA 各通道优先级采用轮询方式
} en_dma_priority_t;
/**
*******************************************************************************
** \brief DMA 传输数据宽度
**
******************************************************************************/
typedef enum en_dma_transfer_width
{
DmaMsk8Bit = 0x00000000, ///< 8 bit 字节传输
DmaMsk16Bit = 0x04000000, ///< 16 bit 半字传输
DmaMsk32Bit = 0x08000000 ///< 32 bit 字传输
} en_dma_transfer_width_t;
/**
*******************************************************************************
** \brief DMA 传输模式:块(Block)传输或者突发(Burst)传输
**
******************************************************************************/
typedef enum en_dma_transfer_mode
{
DmaMskBlock = 0x00000000, ///< 块(Block)传输
DmaMskBurst = 0x10000000, ///< 突发(Burst)传输
} en_dma_transfer_mode_t;
/**
*******************************************************************************
** \brief DMA传输当前状态
**
******************************************************************************/
typedef enum en_dma_stat
{
DmaDefault = 0U, ///< 初始值
DmaAddOverflow = 1U, ///< 传输错误引起中止(地址溢出)
DmaHALT = 2U, ///< 传输停止请求引起中止(外设停止请求引起的停止或者EB/DE位引起的禁止传输)
DmaAccSCRErr = 3U, ///< 传输错误引起中止(传输源地址访问错误)
DmaAccDestErr = 4U, ///< 传输错误引起中止(传输目的地址访问错误)
DmaTransferComplete = 5U, ///< 成功传输完成
DmaTransferPause = 7U, ///< 传输暂停
} en_dma_stat_t;
/**
*******************************************************************************
** \brief DMA源地址控制模式:自增或固定
**
******************************************************************************/
typedef enum en_src_address_mode
{
DmaMskSrcAddrInc = 0x00000000, ///< 地址自增
DmaMskSrcAddrFix = 0x02000000, ///< 地址固定
} en_src_address_mode_t;
/**
*******************************************************************************
** \brief DMA目的地址控制模式:自增或固定
**
******************************************************************************/
typedef enum en_dst_address_mode
{
DmaMskDstAddrInc = 0x00000000, ///< 地址自增
DmaMskDstAddrFix = 0x01000000, ///< 地址固定
} en_dst_address_mode_t;
/**
*******************************************************************************
** \brief DMA CONFA:BC[3:0]和CONFA:TC[15:0]的重载功能
**
******************************************************************************/
typedef enum en_bc_tc_reload_mode
{
DmaMskBcTcReloadDisable = 0x00000000, ///< 禁止重载
DmaMskBcTcReloadEnable = 0x00800000, ///< 使能重载
} en_bc_tc_reload_mode_t;
/**
*******************************************************************************
** \brief DMA源地址重载功能:使能或禁止
**
******************************************************************************/
typedef enum en_src_address_reload_mode
{
DmaMskSrcAddrReloadDisable = 0x00000000, ///< 禁止DMA源地址重载
DmaMskSrcAddrReloadEnable = 0x00400000, ///< 使能DMA源地址重载
} en_src_address_reload_mode_t;
/**
*******************************************************************************
** \brief DMA目的地址重载功能:使能或禁止
**
******************************************************************************/
typedef enum en_dst_address_reload_mode
{
DmaMskDstAddrReloadDisable = 0x00000000, ///< 禁止DMA目的地址重载
DmaMskDstAddrReloadEnable = 0x00200000, ///< 使能DMA目的地址重载
} en_dst_address_reload_mode_t;
/**
*******************************************************************************
** \brief DMA 连续传输设置
**
******************************************************************************/
typedef enum en_dma_msk
{
DmaMskOneTransfer = 0x00000000, ///< 传输一次,DMAC传输完成时清除CONFA:ENS位
DmaMskContinuousTransfer = 0x00000001, ///< 连续传输,DMAC传输完成时不清除CONFA:ENS位
} en_dma_msk_t;
/**
*******************************************************************************
** \brief DMA 触发源选择
**
******************************************************************************/
typedef enum stc_dma_trig_sel
{
DmaSWTrig = 0U, ///< Select DMA software trig
DmaSPI0RXTrig = 64U, ///< Select DMA hardware trig 0
DmaSPI0TXTrig = 65U, ///< Select DMA hardware trig 1
DmaSPI1RXTrig = 66U, ///< Select DMA hardware trig 2
DmaSPI1TXTrig = 67U, ///< Select DMA hardware trig 3
DmaADCJQRTrig = 68U, ///< Select DMA hardware trig 4
DmaADCSQRTrig = 69U, ///< Select DMA hardware trig 5
DmaLCDTxTrig = 70U, ///< Select DMA hardware trig 6
DmaUart0RxTrig = 72U, ///< Select DMA hardware trig 8
DmaUart0TxTrig = 73U, ///< Select DMA hardware trig 9
DmaUart1RxTrig = 74U, ///< Select DMA hardware trig 10
DmaUart1TxTrig = 75U, ///< Select DMA hardware trig 11
DmaLpUart0RxTrig = 76U, ///< Select DMA hardware trig 12
DmaLpUart0TxTrig = 77U, ///< Select DMA hardware trig 13
DmaLpUart1RxTrig = 78U, ///< Select DMA hardware trig 14
DmaLpUart1TxTrig = 79U, ///< Select DMA hardware trig 15
DmaDAC0Trig = 80U, ///< Select DMA hardware trig 16
DmaDAC1Trig = 81U, ///< Select DMA hardware trig 17
DmaTIM0ATrig = 82U, ///< Select DMA hardware trig 18
DmaTIM0BTrig = 83U, ///< Select DMA hardware trig 19
DmaTIM1ATrig = 84U, ///< Select DMA hardware trig 20
DmaTIM1BTrig = 85U, ///< Select DMA hardware trig 21
DmaTIM2ATrig = 86U, ///< Select DMA hardware trig 22
DmaTIM2BTrig = 87U, ///< Select DMA hardware trig 23
DmaTIM3ATrig = 88U, ///< Select DMA hardware trig 24
DmaTIM3BTrig = 89U, ///< Select DMA hardware trig 25
DmaTIM4ATrig = 90U, ///< Select DMA hardware trig 26
DmaTIM4BTrig = 91U, ///< Select DMA hardware trig 27
DmaTIM5ATrig = 92U, ///< Select DMA hardware trig 28
DmaTIM5BTrig = 93U, ///< Select DMA hardware trig 29
DmaTIM6ATrig = 94U, ///< Select DMA hardware trig 30
DmaTIM6BTrig = 95U, ///< Select DMA hardware trig 31
DmaUart2RxTrig = 96U, ///< Select DMA hardware trig 32
DmaUart2TxTrig = 97U, ///< Select DMA hardware trig 33
DmaUart3RxTrig = 98U, ///< Select DMA hardware trig 34
DmaUart3TxTrig = 99U, ///< Select DMA hardware trig 35
}en_dma_trig_sel_t;
/**
*******************************************************************************
** \brief DMA通道初始化配置结构体
**
******************************************************************************/
typedef struct stc_dma_cfg
{
en_dma_transfer_mode_t enMode;
uint16_t u16BlockSize; ///< 块传输个数
uint16_t u16TransferCnt; ///< 传输块次数
en_dma_transfer_width_t enTransferWidth; ///< 传输数据字节宽度 具体参考枚举定义:en_dma_transfer_width_t
en_src_address_mode_t enSrcAddrMode; ///< DMA源地址控制模式:自增或固定
en_dst_address_mode_t enDstAddrMode; ///< DMA目的地址控制模式:自增或固定
en_src_address_reload_mode_t enSrcAddrReloadCtl; ///< 源地址重载 具体参考枚举定义:en_src_address_reload_mode_t
en_dst_address_reload_mode_t enDestAddrReloadCtl;///< 目的地址重载 具体参考枚举定义:en_dst_address_reload_mode_t
en_bc_tc_reload_mode_t enSrcBcTcReloadCtl; ///< Bc/Tc值重载功能 具体参考枚举定义:en_bc_tc_reload_mode_t
uint32_t u32SrcAddress; ///< 源地址>
uint32_t u32DstAddress; ///< 目的地址>
en_dma_msk_t enTransferMode; ///DMA 连续传输设置 具体参考枚举定义:en_dma_msk_t
en_dma_priority_t enPriority; ///DMA 优先级设定 具体参考枚举定义:en_dma_priority_t
en_dma_trig_sel_t enRequestNum; ///<DMA 触发源选择 具体参考枚举定义:en_dma_trig_sel_t
} stc_dma_cfg_t;
/*******************************************************************************
* Global pre-processor symbols/macros ('#define')
******************************************************************************/
/*******************************************************************************
* Global variable definitions ('extern')
******************************************************************************/
/*******************************************************************************
* Global function prototypes (definition in C source)
******************************************************************************/
///< 初始化DMAC通道
en_result_t Dma_InitChannel(en_dma_channel_t enCh, stc_dma_cfg_t* pstcCfg);
///< DMA模块使能函数,使能所有通道的操作,每个通道按照各自设置工作
void Dma_Enable(void);
///< DMA模块功能禁止函数,所有通道禁止工作.
void Dma_Disable(void);
///< 触发指定DMA通道软件传输功能.
void Dma_SwStart(en_dma_channel_t enCh);
///< 停止指定DMA通道软件传输功能.
void Dma_SwStop(en_dma_channel_t enCh);
///< 使能指定dma通道的(传输完成)中断.
void Dma_EnableChannelIrq(en_dma_channel_t enCh);
///< 禁用指定dma通道的(传输完成)中断.
void Dma_DisableChannelIrq(en_dma_channel_t enCh);
///< 使能指定dma通道的(传输错误)中断..
void Dma_EnableChannelErrIrq(en_dma_channel_t enCh);
///< 禁用指定dma通道的(传输错误)中断..
void Dma_DisableChannelErrIrq(en_dma_channel_t enCh);
///< 使能指定dma通道
void Dma_EnableChannel(en_dma_channel_t enCh);
///< 禁用指定dma通道
void Dma_DisableChannel(en_dma_channel_t enCh);
///< 设定指定通道的块(Block)尺寸
void Dma_SetBlockSize(en_dma_channel_t enCh, uint16_t u16BlkSize);
///< 设定指定通道块(Block)传输次数
void Dma_SetTransferCnt(en_dma_channel_t enCh, uint16_t u16TrnCnt);
///< 允许指定通道可连续传输,即DMAC在传输完成时不清除CONFA:ENS位.
void Dma_EnableContinusTranfer(en_dma_channel_t enCh);
///< 禁止指定通道连续传输,即DMAC在传输完成时清除.
void Dma_DisableContinusTranfer(en_dma_channel_t enCh);
///< 暂停所有dma通道.
void Dma_HaltTranfer(void);
///< 恢复(之前暂停的)所有dma通道.
void Dma_RecoverTranfer(void);
///< 暂停指定dma通道.
void Dma_PauseChannelTranfer(en_dma_channel_t enCh);
///< 恢复(之前暂定的)指定dma通道.
void Dma_RecoverChannelTranfer(en_dma_channel_t enCh);
///< 设定指定通道传输数据宽度.
void Dma_SetTransferWidth(en_dma_channel_t enCh, en_dma_transfer_width_t enWidth);
///< 设定dma通道优先级.
void Dma_SetChPriority(en_dma_priority_t enPrio);
///< 获取指定DMA通道的状态.
en_dma_stat_t Dma_GetStat(en_dma_channel_t enCh);
///< 清除指定DMA通道的状态值.
void Dma_ClrStat(en_dma_channel_t enCh);
///<设定指定通道源地址
void Dma_SetSourceAddress(en_dma_channel_t enCh, uint32_t u32Address);
///<设定指定通道目标地址.
void Dma_SetDestinationAddress(en_dma_channel_t enCh, uint32_t u32Address);
//@} // DmacGroup
#ifdef __cplusplus
}
#endif
#endif /* __DMAC_H__ */
/*******************************************************************************
* EOF (not truncated)
******************************************************************************/
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/*************************************************************************************
* Copyright (C) 2016, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file flash.h
**
** FLASH 数据结构及API声明.
**
** - 2017-05-02 LuX V1.0
**
******************************************************************************/
#ifndef __FLASH_H__
#define __FLASH_H__
/******************************************************************************/
/* Include files */
/******************************************************************************/
#include "ddl.h"
/* C binding of definitions if building with C++ compiler */
#ifdef __cplusplus
extern "C"
{
#endif
/**
******************************************************************************
** \defgroup FlashGroup Flash Controller (Flash)
**
**
******************************************************************************/
//@{
/******************************************************************************
* Global type definitions
******************************************************************************/
/**
******************************************************************************
** \brief Flash中断类型重定义
*****************************************************************************/
typedef enum en_flash_int_type
{
FlashPCInt = 0x01u, ///<擦写PC地址报警中断
FlashSlockInt = 0x02u, ///<擦写保护报警中断
} en_flash_int_type_t;
/**
******************************************************************************
** \brief Flash读等待周期类型重定义
*****************************************************************************/
typedef enum en_flash_waitcycle
{
FlashWaitCycle0 = 0u, ///< 读等待周期设置为0-即读周期为1(当HCLK小于等于24MHz时)
FlashWaitCycle1 = 1u, ///< 读等待周期设置为1-即读周期为2(当HCLK大于24MHz时必须至少为1)
FlashWaitCycle2 = 2u, ///< 读等待周期设置为2-即读周期为3(当HCK大于48MHz时必须至少为2)
} en_flash_waitcycle_t;
/**
******************************************************************************
** \brief Flash擦写保护范围重定义
*****************************************************************************/
typedef enum en_flash_lock
{
FlashLock0 = 0u, ///<LOCK0
FlashLock1 = 1u, ///<LOCK1
} en_flash_lock_t;
/**
******************************************************************************
** \brief Redefinition of FLASH register structure
******************************************************************************/
/******************************************************************************
* Global definitions
******************************************************************************/
/******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/******************************************************************************
* Global variable definitions ('extern')
******************************************************************************/
/******************************************************************************
* Global function prototypes (definition in C source)
******************************************************************************/
///<Flash 初始化配置(中断函数、编程时间参数及休眠模式配置)
en_result_t Flash_Init(uint8_t u8FreqCfg, boolean_t bDpstbEn);
///<Flash 页/全片擦除
en_result_t Flash_SectorErase(uint32_t u32SectorAddr);
en_result_t Flash_ChipErase(void);
///<Flash 字节/半字/字写
en_result_t Flash_WriteByte(uint32_t u32Addr, uint8_t u8Data);
en_result_t Flash_WriteHalfWord(uint32_t u32Addr, uint16_t u16Data);
en_result_t Flash_WriteWord(uint32_t u32Addr, uint32_t u32Data);
///<Flash 编程保护加锁/解锁
void Flash_LockAll(void);
void Flash_UnlockAll(void);
en_result_t Flash_LockSet(en_flash_lock_t enLock, uint32_t u32LockValue);
///<Flash 读等待周期设定
en_result_t Flash_WaitCycle(en_flash_waitcycle_t enWaitCycle);
///<中断相关函数
///<中断使能/禁止
en_result_t Flash_EnableIrq(en_flash_int_type_t enFlashIntType);
en_result_t Flash_DisableIrq(en_flash_int_type_t enFlashIntType);
///<中断标志获取
boolean_t Flash_GetIntFlag(en_flash_int_type_t enFlashIntType);
///<中断标志清除
en_result_t Flash_ClearIntFlag(en_flash_int_type_t enFlashIntType);
//@} // FlashGroup
#ifdef __cplusplus
}
#endif
#endif /* __FLASH_H__ */
/******************************************************************************/
/* EOF (not truncated) */
/******************************************************************************/
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-148
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/******************************************************************************
* Copyright (C) 2017, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/*****************************************************************************/
/** \file i2c.h
**
** Headerfile for I2C functions
**
**
** History:
** - 2018-03-1 CJ First Version
**
*****************************************************************************/
#ifndef __I2C_H__
#define __I2C_H__
#include "ddl.h"
/**
*******************************************************************************
** \defgroup I2cGroup Inter-Integrated Circuit (I2C)
**
**
******************************************************************************/
//@{
/******************************************************************************/
/* Global pre-processor symbols/macros ('#define') */
/******************************************************************************/
/******************************************************************************
* Global type definitions
******************************************************************************/
/**
******************************************************************************
** \brief I2C功能配置
*****************************************************************************/
typedef enum en_i2c_func
{
I2cModule_En = 6u, ///<I2C模块使能
I2cStart_En = 5u, ///<开始信号
I2cStop_En = 4u, ///<结束信号
I2cAck_En = 2u, ///<应答信号
I2cHlm_En = 0u, ///<高速使能
}en_i2c_func_t;
/**
******************************************************************************
** \brief I2C模式配置
*****************************************************************************/
typedef enum en_i2c_mode
{
I2cMasterMode = 0x40u, ///<I2C主机模式
I2cSlaveMode = 0x44u, ///<I2C从机模式
}en_i2c_mode_t;
/**
******************************************************************************
** \brief I2C初始化配置结构
*****************************************************************************/
typedef struct stc_i2c_cfg
{
uint32_t u32Pclk; ///<Pclk 设置(Hz)
uint32_t u32Baud; ///<I2C通信波特率(Hz)
en_i2c_mode_t enMode; ///<I2C主从模式配置
uint8_t u8SlaveAddr; ///<从机地址配置(如果需要)
boolean_t bGc; ///<广播地址使能(如果需要)
}stc_i2c_cfg_t;
/******************************************************************************
* Global variable declarations ('extern', definition in C source)
*****************************************************************************/
/******************************************************************************
* Global function prototypes (definition in C source)
*****************************************************************************/
//I2C初始化函数
en_result_t I2C_Init(M0P_I2C_TypeDef* I2Cx,stc_i2c_cfg_t *pstcI2CCfg);
//设置波特率配置寄存器
en_result_t I2C_SetBaud(M0P_I2C_TypeDef* I2Cx,uint8_t u8Tm);
//I2C功能设置函数
en_result_t I2C_SetFunc(M0P_I2C_TypeDef* I2Cx,en_i2c_func_t enFunc);
//I2C功能清除函数
en_result_t I2C_ClearFunc(M0P_I2C_TypeDef* I2Cx,en_i2c_func_t enFunc);
//获取中断标记SI
boolean_t I2C_GetIrq(M0P_I2C_TypeDef* I2Cx);
//清除中断标记SI
en_result_t I2C_ClearIrq(M0P_I2C_TypeDef* I2Cx);
//获取状态
uint8_t I2C_GetState(M0P_I2C_TypeDef* I2Cx);
//字节写函数
en_result_t I2C_WriteByte(M0P_I2C_TypeDef* I2Cx,uint8_t u8Data);
//字节读函数
uint8_t I2C_ReadByte(M0P_I2C_TypeDef* I2Cx);
//@} // I2cGroup
#ifdef __cplusplus
#endif
#endif /* __I2C_H__ */
/******************************************************************************
* EOF (not truncated)
*****************************************************************************/
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/******************************************************************************
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file lcd.h
**
** Header file for lcd Converter functions
** @link LCD Group Some description @endlink
**
** - 2019-04-02 First Version
**
******************************************************************************/
#ifndef __LCD_H__
#define __LCD_H__
/******************************************************************************/
/* Include files */
/******************************************************************************/
#include "ddl.h"
/******************************************************************************
** Global type definitions
*****************************************************************************/
/**
******************************************************************************
** \brief LCD bias源选择
*****************************************************************************/
typedef enum
{
LcdInResHighPower = 6,//内部电阻分压,大功耗模式
LcdInResLowPower = 4,//内部电阻分压,小功耗模式
LcdInResMidPower = 2,//内部电阻分压,中功耗模式
LcdExtCap = 1,//电容分压模式,需要外部电路配合
LcdExtRes = 0,//外部电阻模式,需要外部电路配合
}en_lcd_biassrc_t;
/**
******************************************************************************
** \brief LCD duty选择 LCD_CR0 Duty
*****************************************************************************/
typedef enum
{
LcdStatic = 0u, // 静态显示
LcdDuty2 = 1u, // 1/2duty
LcdDuty3 = 2u, // 1/3duty
LcdDuty4 = 3u, // 1/4duty
LcdDuty6 = 5u, // 1/6duty
LcdDuty8 = 7u, // 1/8duty
}en_lcd_duty_t;
/**
******************************************************************************
** \brief LCD bias配置位 LCD_CR0 Bias
*****************************************************************************/
typedef enum
{
LcdBias3 = 0u, // 1/3 BIAS
LcdBias2 = 1u, // 1/2 BIAS
}en_lcd_bias_t;
/**
******************************************************************************
** \brief LCD 电压泵时钟频率选择 LCD_CR0 CpClk
*****************************************************************************/
typedef enum
{
LcdClk2k = 0u, // 2k
LcdClk4k = 1u, // 4k
LcdClk8k = 2u, // 8k
LcdClk16k = 3u // 16k
}en_lcd_cpclk_t;
/**
******************************************************************************
** \brief LCD 扫描频率选择 LCD_CR0 LcdClk
*****************************************************************************/
typedef enum
{
LcdClk64hz = 0u, // 64hz
LcdClk128hz = 1u, // 128hz
LcdClk256hz = 2u, // 256hz
LcdClk512hz = 3u // 512hz
}en_lcd_scanclk_t;
/**
******************************************************************************
** \brief LCD 使能控制 LCD_CR0 EN
*****************************************************************************/
typedef enum
{
LcdEnable =1u, //LCD使能
LcdDisable =0u //LCD禁止
}en_lcd_en_t;
/**
******************************************************************************
** \brief LCD显示模式 LCD_CR1 Mode
*****************************************************************************/
typedef enum
{
LcdMode0 = 0,///<模式0
LcdMode1 = 1,///<模式1
}en_lcd_dispmode_t;
/**
******************************************************************************
** \brief LCD时钟源选择 LCD_CR1 ClkSrc
*****************************************************************************/
typedef enum
{
LcdXTL = 1,///<外部XTL
LcdRCL = 0,///<内部RCL
}en_lcd_clk_t;
/**
******************************************************************************
** \brief LCD CR1寄存器的使能位、标志位
*****************************************************************************/
typedef enum
{
LcdBlinkEn = 6u, //LCD闪屏配置位
LcdIe = 9u, //LCD 中断使能位
LcdDmaEn = 10u, //LCD DMA硬件触发使能位
}en_cr1_t;
/**
******************************************************************************
** \brief LCD显示SEG COM端口寄存器的配置
*****************************************************************************/
typedef struct
{
uint32_t u32Seg0_31; ///<SEG0-31配置
union{
uint32_t seg32_51_com0_8;
struct
{
uint32_t Seg32_35 :4;
uint32_t Seg36Com7 :1;
uint32_t Seg37Com6 :1;
uint32_t Seg38Com5 :1;
uint32_t Seg39Com4 :1;
uint32_t Seg40 :1;
uint32_t Seg41 :1;
uint32_t Seg42 :1;
uint32_t Seg43 :1;
uint32_t Mux :1;
uint32_t Seg44 :1;
uint32_t Seg45 :1;
uint32_t Seg46 :1;
uint32_t Seg47 :1;
uint32_t Seg48 :1;
uint32_t Seg49 :1;
uint32_t Seg50 :1;
uint32_t Seg51 :1;
uint32_t Com0_3 :4;
}segcom_bit;
}stc_seg32_51_com0_8_t;
}stc_lcd_segcom_t;
/**
******************************************************************************
** \brief LCD端口配置参数
*****************************************************************************/
typedef struct stc_lcd_segcompara
{
en_lcd_duty_t LcdDuty; ///<占空比
en_lcd_biassrc_t LcdBiasSrc; ///<时钟源
uint8_t u8MaxSeg; ///<最大SEG口
}stc_lcd_segcompara_t;
/**
******************************************************************************
** \brief I2C初始化配置结构
*****************************************************************************/
typedef struct
{
en_lcd_biassrc_t LcdBiasSrc; //偏置源选择
en_lcd_duty_t LcdDuty; //duty配置选择
en_lcd_bias_t LcdBias; //偏压选择
en_lcd_cpclk_t LcdCpClk; //电压泵时钟频率选择
en_lcd_scanclk_t LcdScanClk; //扫描频率选择
en_lcd_dispmode_t LcdMode; //显示模式选择
en_lcd_clk_t LcdClkSrc; //时钟源选择
en_lcd_en_t LcdEn; //LCD使能
}stc_lcd_cfg_t;
/*******************************************************************************
** \brief lcd相关函数声明
******************************************************************************/
extern boolean_t Lcd_GetItStatus(void);
extern void Lcd_ClearItPendingBit(void);
extern en_result_t Lcd_GetSegCom(stc_lcd_segcompara_t *pstcSegComPara,stc_lcd_segcom_t *pstcSegCom);
extern void Lcd_SetSegCom(stc_lcd_segcom_t *pstcSegCom);
extern void Lcd_Init(stc_lcd_cfg_t *pstcLcdCfg);
extern void Lcd_FullDisp(void);
extern void Lcd_ClearDisp(void);
extern en_result_t Lcd_WriteRam(uint8_t u8Row,uint32_t u32Data);
//@} // LCDGroup
#ifdef __cplusplus
#endif
#endif /* __LCD_H__ */
/******************************************************************************
* EOF (not truncated)
*****************************************************************************/
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/******************************************************************************
* Copyright (C) 2017, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/*****************************************************************************/
/** \file lpm.h
**
** Lpm 数据结构及API声明
**
**
** History:
** - 2017-06-06 Lux V1.0
**
*****************************************************************************/
#ifndef __LPM_H__
#define __LPM_H__
/*****************************************************************************
* Include files
*****************************************************************************/
#include "ddl.h"
#ifdef __cplusplus
extern "C"
{
#endif
/**
*******************************************************************************
** \defgroup LpmGroup Low Power Management (LPM)
**
**
******************************************************************************/
//@{
/******************************************************************************
** Global pre-processor symbols/macros ('#define')
******************************************************************************/
/******************************************************************************
* Global type definitions
******************************************************************************/
/******************************************************************************
* Global variable declarations ('extern', definition in C source)
*****************************************************************************/
/******************************************************************************
* Global function prototypes (definition in C source)
*****************************************************************************/
///<功能配置及操作函数
///<进入普通休眠模式
void Lpm_GotoSleep(boolean_t bOnExit);
///<进入深度休眠模式
void Lpm_GotoDeepSleep(boolean_t bOnExit);
//@} // LpmGroup
#ifdef __cplusplus
#endif
#endif /* __LPM_H__ */
/******************************************************************************
* EOF (not truncated)
*****************************************************************************/
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/******************************************************************************
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/*****************************************************************************/
/** \file lptim.h
**
**
**
**
** History:
** - 2019-04-09 First version
**
*****************************************************************************/
#ifndef __LPTIM_H__
#define __LPTIM_H__
/*****************************************************************************
* Include files
*****************************************************************************/
#include "ddl.h"
#ifdef __cplusplus
extern "C"
{
#endif
/**
*******************************************************************************
** \brief LPTIMx 预除频
** \note LPTIMx_CR PRS 在定时器运行时不可以更改该值
******************************************************************************/
typedef enum
{
LptimPrsDiv1 = 0, // 1分频
LptimPrsDiv2 = 1, // 2分频
LptimPrsDiv4 = 2, // 4分频
LptimPrsDiv8 = 3, // 8分频
LptimPrsDiv16 = 4, // 16分频
LptimPrsDiv32 = 5, // 32分频
LptimPrsDiv64 = 6, // 64分频
LptimPrsDiv256 = 7 // 256分频
}en_lptim_prs_t;
/**
*******************************************************************************
** \brief LPTIMx 时钟选择
** \note LPTIMx_CR TCK_SEL
******************************************************************************/
typedef enum
{
LptimPclk = 0,
LptimXtl = 2,
LptimRcl = 3
}en_lptim_tcksel_t;
/**
*******************************************************************************
** \brief LPTIMx GATE极性控制位
** \note LPTIMx_CR GATE_P
******************************************************************************/
typedef enum
{
LptimGatePLow = 0,
LptimGatePHigh = 1
}en_lptim_gatep_t;
/**
*******************************************************************************
** \brief LPTIMx 时钟选择
** \note LPTIMx_CR GATE
******************************************************************************/
typedef enum
{
LptimGateLow = 0,
LptimGateHigh = 1
}en_lptim_gate_t;
/**
*******************************************************************************
** \brief LPTIMx TOG输出使能位
** \note LPTIMx_CR TOG
******************************************************************************/
typedef enum
{
LptimTogEnLow = 0,
LptimTogEnHigh = 1
}en_lptim_togen_t;
/**
*******************************************************************************
** \brief LPTIMx CT计数器/定时器功能选择
** \note LPTIMx_CR CT
******************************************************************************/
typedef enum
{
LptimTimerFun = 0, //警示器功能,定时器使用TCK_SEL选择的时钟进行计数
LptimCntFun = 1 //计数器功能,计数器使用外部输入的下降沿进行计数,采样时钟使用TCK_SEL选择的时钟
}en_lptim_ct_t;
/**
*******************************************************************************
** \brief LPTIMx 定时器工作模式
** \note LPTIMx_CR MD
******************************************************************************/
typedef enum
{
LptimMode1 = 0, //模式1无重载16位计数器/定时器
LptimMode2 = 1 //模式2自动重载16位计数器/定时器
}en_lptim_md_t;
/**
*******************************************************************************
** \brief LPTIMx 初始化配置的结构体
** \note
******************************************************************************/
typedef struct
{
en_lptim_prs_t enPrs;
en_lptim_tcksel_t enTcksel;
en_lptim_gatep_t enGatep;
en_lptim_gate_t enGate;
en_lptim_togen_t enTogen;
en_lptim_ct_t enCt;
en_lptim_md_t enMd;
uint16_t u16Arr;
}stc_lptim_cfg_t;
/******************************************************************************
* Global variable declarations ('extern', definition in C source)
*****************************************************************************/
/******************************************************************************
* Global function prototypes (definition in C source)
*****************************************************************************/
extern void Lptim_ConfIt(M0P_LPTIMER_TypeDef* Lptimx, boolean_t NewStatus);
extern void Lptim_Cmd(M0P_LPTIMER_TypeDef* Lptimx, boolean_t NewStatus);
extern boolean_t Lptim_GetItStatus(M0P_LPTIMER_TypeDef* Lptimx);
extern void Lptim_ClrItStatus(M0P_LPTIMER_TypeDef* Lptimx);
extern en_result_t Lptim_Init(M0P_LPTIMER_TypeDef* Lptimx, stc_lptim_cfg_t* InitStruct);
#ifdef __cplusplus
#endif
#endif //__LPTIM_H__
/******************************************************************************
* EOF (not truncated)
*****************************************************************************/
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/******************************************************************************
* Copyright (C) 2017, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/*****************************************************************************/
/** \file lpuart.h
**
** Headerfile for LPUART functions
**
**
** History:
** - 2017-05-10 Cathy First Version
**
*****************************************************************************/
#ifndef __LPUART_H__
#define __LPUART_H__
/*****************************************************************************
* Include files
*****************************************************************************/
#include "ddl.h"
#ifdef __cplusplus
extern "C"
{
#endif
/**
******************************************************************************
** \defgroup LPUartGroup Universal Asynchronous Receiver/Transmitter (LPUART)
**
******************************************************************************/
//@{
/******************************************************************************/
/* Global pre-processor symbols/macros ('#define') */
/******************************************************************************/
/******************************************************************************
* Global type definitions
******************************************************************************/
/**
******************************************************************************
**\brief LPuart通道选择
******************************************************************************/
/**
******************************************************************************
** \brief lpuart 的sclk时钟源选择
******************************************************************************/
typedef enum en_lpuart_sclk_sel
{
LPUartMskPclk = 0u<<11, ///<pclk
LPUartMskXtl = 2u<<11, ///<外部低速晶振
LPUartMskRcl = 3u<<11, ///<内部低速晶振
} en_lpuart_sclksel_t;
/**
******************************************************************************
** \brief lpuart多机模式地址帧/数据帧或者奇偶校验
******************************************************************************/
typedef enum en_lpuart_mmdorck
{
LPUartDataOrAddr = 0u, ///<多机模式时,通过读写SBUF[8]决定帧为数据帧或地址帧
LPUartEven = 0x4u, ///<非多机模式偶校验
LPUartOdd = 0x8u, ///<非多机模式奇校验
}en_lpuart_mmdorck_t;
/**
******************************************************************************
** \brief lpuart多机模式及从机地址和地址掩码配置
******************************************************************************/
typedef struct stc_lpuart_multimode
{
uint8_t u8SlaveAddr; ///<从机地址
uint8_t u8SaddEn; ///<从及地址掩码
}stc_lpuart_multimode_t;
/**
******************************************************************************
** \brief lpuart 四种工作模式选择
******************************************************************************/
typedef enum en_lpuart_mode
{
LPUartMskMode0 = 0x00u, ///<模式0
LPUartMskMode1 = 0x40u, ///<模式1
LPUartMskMode2 = 0x80u, ///<模式2
LPUartMskMode3 = 0xc0u, ///<模式3
} en_lpuart_mode_t;
/**
******************************************************************************
** \brief lpuart stop长度选择
******************************************************************************/
typedef enum en_lpuart_stop
{
LPUart1bit = 0x0000u, ///<1位停止位
LPUart1_5bit = 0x4000u, ///<1.5位停止位
LPUart2bit = 0x8000u, ///<2位停止位
} en_lpuart_stop_t;
/**
******************************************************************************
** \brief lpuart 功能使能
******************************************************************************/
typedef enum en_lpuart_func
{
LPUartRenFunc = 4u, ///<0-TX; ///<1-非mode0模式代表RX&TX ,mode0模式代表RX;
LPUartDmaRxFunc = 16u, ///<DMA接收功能
LPUartDmaTxFunc = 17u, ///<DMA发送功能
LPUartRtsFunc = 18u, ///<硬件流RTS功能
LPUartCtsFunc = 19u, ///<硬件流CTS功能
LPUartHdFunc = 22u, ///<单线半双工功能
}en_lpuart_func_t;
/**
******************************************************************************
** \brief lpuart中断使能控制
******************************************************************************/
typedef enum en_lpuart_irq_sel
{
LPUartRxIrq = 0u, ///<接收中断使能
LPUartTxIrq = 1u, ///<发送中断使能
LPUartTxEIrq = 8u, ///<TX空中断使能
LPUartPEIrq = 13u, ///<奇偶校验中断使能
LPUartCtsIrq = 20u, ///<CTS信号翻转中断使能
LPUartFEIrq = 21u, ///<帧错误中断使能
}en_lpuart_irq_sel_t;
/**
******************************************************************************
** \brief lpuart 状态标志位
******************************************************************************/
typedef enum en_lpuart_status
{
LPUartRC = 0u, ///<接收数据完成标记
LPUartTC = 1u, ///<发送数据完成标记
LPUartFE = 2u, ///<帧错误标记
LPUartTxe = 3u, ///<TXbuff空标记
LPUartPE = 4u, ///<奇偶校验错误标记
LPUartCtsIf = 5u, ///<CTS中断标记
LPUartCts = 6u, ///<CTS信号标记
}en_lpuart_status_t;
/**
******************************************************************************
** \brief lpuart 通道采样分频配置
******************************************************************************/
typedef enum en_lpuart_clkdiv
{
LPUartMsk16Or32Div = 0u, ///<模式0无效,模式1/3为16分频,模式2为32分频
LPUartMsk8Or16Div = 0x200u, ///<模式0无效,模式1/3为8分频,模式2为16分频
LPUartMsk4Or8Div = 0x400u, ///<模式0无效,模式1/3为4分频,模式2为8分频
}en_lpuart_clkdiv_t;
/**
******************************************************************************
** \brief lpuart 通道Mode1和Mode3波特率计算参数
******************************************************************************/
typedef struct stc_lpuart_baud
{
en_lpuart_sclksel_t enSclkSel; ///<传输时钟源选择
en_lpuart_clkdiv_t enSclkDiv; ///<采样分频选择
uint32_t u32Sclk; ///<sclk
uint32_t u32Baud; ///< 波特率
} stc_lpuart_baud_t;
/**
******************************************************************************
** \lpuart 总体配置
******************************************************************************/
typedef struct stc_lpuart_cfg
{
en_lpuart_mode_t enRunMode; ///<四种模式配置
en_lpuart_mmdorck_t enMmdorCk; ///<校验模式
en_lpuart_stop_t enStopBit; ///<停止位长度
stc_lpuart_baud_t stcBaud; ///<Mode1/3波特率配置
} stc_lpuart_cfg_t;
// 总初始化处理
en_result_t LPUart_Init(M0P_LPUART_TypeDef* LPUARTx, stc_lpuart_cfg_t* pstcCfg);
// LPUART 单线模式使能/禁止
void LPUart_HdModeEnable(M0P_LPUART_TypeDef* LPUARTx);
void LPUart_HdModeDisable(M0P_LPUART_TypeDef* LPUARTx);
//TB8数据设置
void LPUart_SetTb8(M0P_LPUART_TypeDef* LPUARTx, boolean_t bTB8Value);
//数据寄存器bit8位获取
boolean_t LPUart_GetRb8(M0P_LPUART_TypeDef* LPUARTx);
//中断相关设置函数使能和禁止
en_result_t LPUart_EnableIrq(M0P_LPUART_TypeDef* LPUARTx, en_lpuart_irq_sel_t enIrqSel);
en_result_t LPUart_DisableIrq(M0P_LPUART_TypeDef* LPUARTx, en_lpuart_irq_sel_t enIrqSel);
//特殊功能使能和禁止
en_result_t LPUart_EnableFunc(M0P_LPUART_TypeDef* LPUARTx, en_lpuart_func_t enFunc);
en_result_t LPUart_DisableFunc(M0P_LPUART_TypeDef* LPUARTx, en_lpuart_func_t enFunc);
//状态位获取函数
boolean_t LPUart_GetStatus(M0P_LPUART_TypeDef* LPUARTx,en_lpuart_status_t enStatus);
//状态位的清除
en_result_t LPUart_ClrStatus(M0P_LPUART_TypeDef* LPUARTx,en_lpuart_status_t enStatus);
//整个状态寄存器获取
uint8_t LPUart_GetIsr(M0P_LPUART_TypeDef* LPUARTx);
//整个状态寄存器清除
en_result_t LPUart_ClrIsr(M0P_LPUART_TypeDef* LPUARTx);
//数据查询方式的发送
en_result_t LPUart_SendData(M0P_LPUART_TypeDef* LPUARTx, uint8_t u8Data);
//数据中断方式的发送
en_result_t LPUart_SendDataIt(M0P_LPUART_TypeDef* LPUARTx, uint8_t u8Data);
//数据接收
uint8_t LPUart_ReceiveData(M0P_LPUART_TypeDef* LPUARTx);
//LPUARTx通道号,enClk 时钟源选项
en_result_t LPUart_SelSclk(M0P_LPUART_TypeDef* LPUARTx, en_lpuart_sclksel_t enSclk);
//LPUART通道多主机模式配置
en_result_t LPUart_SetMultiMode(M0P_LPUART_TypeDef* LPUARTx, stc_lpuart_multimode_t* pstcMultiCfg);
//LPUART通道多主机模式从机地址配置函数
en_result_t LPUart_SetSaddr(M0P_LPUART_TypeDef* LPUARTx,uint8_t u8Addr);
//@} // LPUartGroup
#ifdef __cplusplus
#endif
#endif /* __UART_H__ */
/******************************************************************************
* EOF (not truncated)
*****************************************************************************/
-231
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/******************************************************************************
* Copyright (C) 2017, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file lvd.h
**
** Headerfile for Low Voltage Detector functions
**
** - 2017-06-28 Alex First Version
**
******************************************************************************/
#ifndef __LVD_H__
#define __LVD_H__
/******************************************************************************
* Include files
******************************************************************************/
#include "ddl.h"
/* C binding of definitions if building with C++ compiler */
#ifdef __cplusplus
extern "C"
{
#endif
/**
******************************************************************************
** \defgroup LvdGroup Low Voltage Detector (LVD)
**
******************************************************************************/
//@{
/******************************************************************************
* Global type definitions
******************************************************************************/
/**
******************************************************************************
** \brief LVD监测电压源选择
**
** \note
******************************************************************************/
typedef enum en_lvd_input_src
{
LvdInputSrcMskVCC = 0u<<2, ///< Vcc
LvdInputSrcMskPC13 = 1u<<2, ///< PC13
LvdInputSrcMskPB08 = 2u<<2, ///< PB08
LvdInputSrcMskPB07 = 3u<<2, ///< PB07
}en_lvd_input_src_t;
/**
******************************************************************************
** \brief LVD阈值电压选择
**
** \note
******************************************************************************/
typedef enum en_lvd_threshold
{
LvdMskTH1_8V = 0u<<4, ///< 1.8V
LvdMskTH1_9V = 1u<<4, ///< 1.9V
LvdMskTH2_0V = 2u<<4, ///< 2.0V
LvdMskTH2_1V = 3u<<4, ///< 2.1V
LvdMskTH2_2V = 4u<<4, ///< 2.2V
LvdMskTH2_3V = 5u<<4, ///< 2.3V
LvdMskTH2_4V = 6u<<4, ///< 2.4V
LvdMskTH2_5V = 7u<<4, ///< 2.5V
LvdMskTH2_6V = 8u<<4, ///< 2.6V
LvdMskTH2_7V = 9u<<4, ///< 2.7V
LvdMskTH2_8V = 10u<<4, ///< 2.8V
LvdMskTH2_9V = 11u<<4, ///< 2.9V
LvdMskTH3_0V = 12u<<4, ///< 3.0V
LvdMskTH3_1V = 13u<<4, ///< 3.1V
LvdMskTH3_2V = 14u<<4, ///< 3.2V
LvdMskTH3_3V = 15u<<4, ///< 3.3V
}en_lvd_threshold_t;
/**
******************************************************************************
** \brief LVD输出滤波时间
**
** \note
******************************************************************************/
typedef enum en_lvd_filter_time
{
LvdFilterMsk7us = 0u<<9, ///< 7us
LvdFilterMsk14us = 1u<<9, ///< 14us
LvdFilterMsk28us = 2u<<9, ///< 28us
LvdFilterMsk112us = 3u<<9, ///< 112us
LvdFilterMsk450us = 4u<<9, ///< 450us
LvdFilterMsk1_8ms = 5u<<9, ///< 1.8ms
LvdFilterMsk7_2ms = 6u<<9, ///< 7.3ms
LvdFilterMsk28_8ms = 7u<<9, ///< 28.8ms
}en_lvd_filter_time_t;
/**
******************************************************************************
** \brief LVD中断触发方式
**
** \note
******************************************************************************/
typedef enum en_lvd_irq_type
{
LvdIrqMskRiseFall = 3u<<12, ///< 上升/下降沿触发
LvdIrqMskHigh = 1u<<14, ///< 高电平触发
LvdIrqMskRise = 1u<<13, ///< 上升沿触发
LvdIrqMskFall = 1u<<12, ///< 下降沿触发
}en_lvd_irq_type_t;
/**
******************************************************************************
** \brief LVD触发动作选择
**
** \note
******************************************************************************/
typedef enum en_lvd_act
{
LvdActMskReset = 1u<<1, ///< 系统复位
LvdActMskInt = 0u, ///< NVIC中断
}en_lvd_act_t;
/**
******************************************************************************
** \brief LVD数字滤波使能配置
**
** \note
******************************************************************************/
typedef enum en_lvd_filter
{
LvdFilterMskEnable = 1u<<8, ///< 数字滤波使能
LvdFilterMskDisable = 0u, ///< 数字滤波禁止
}en_lvd_filter_t;
/**
******************************************************************************
** \brief LVD配置
** \note
******************************************************************************/
typedef struct stc_lvd_cfg
{
en_lvd_act_t enAct; ///< LVD触发动作
en_lvd_input_src_t enInputSrc; ///< LVD输入电压源
en_lvd_threshold_t enThreshold; ///< LVD监测电压
en_lvd_filter_t enFilter; ///< 是否使用输出滤波
en_lvd_filter_time_t enFilterTime; ///< 输出滤波时间
en_lvd_irq_type_t enIrqType; ///< 中断触发方式
}stc_lvd_cfg_t;
/******************************************************************************
* Global definitions
******************************************************************************/
/******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/******************************************************************************
* Global variable definitions ('extern')
******************************************************************************/
/******************************************************************************
* Global function prototypes (definition in C source)
******************************************************************************/
//irq enable/disable
void Lvd_EnableIrq(void);
void Lvd_DisableIrq(void);
// irq function
void Lvd_ClearIrq(void);
boolean_t Lvd_GetIrqStat(void);
// fliter function
boolean_t Lvd_GetFilterResult(void);
//init/deinit function
void Lvd_Init(stc_lvd_cfg_t *pstcCfg);
//LVD function enable/disable
void Lvd_Enable(void);
void Lvd_Disable(void);
//@} // LvdGroup
#ifdef __cplusplus
}
#endif
#endif /* __LVD_H__ */
/******************************************************************************
* EOF (not truncated)
******************************************************************************/
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/*******************************************************************************
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file OPA.h
**
** Headerfile for OPA functions
** @link OPA Group Some description @endlink
**
** History:
** - 2019-04-11 First Version
**
******************************************************************************/
#ifndef __OPA_H__
#define __OPA_H__
/*******************************************************************************
* Include files
******************************************************************************/
#include "ddl.h"
#ifdef __cplusplus
extern "C"
{
#endif
/**
******************************************************************************
** \defgroup OPAGroup (OPA)
**
******************************************************************************/
//@{
/**
*******************************************************************************
** function prototypes.
******************************************************************************/
typedef enum en_opa_oenx
{
OpaOen1 = 3u, //OUT1
OpaOen2 = 4u, //OUT2
OpaOen3 = 5u, //OUT3
OpaOen4 = 6u //OUT4
}en_opa_oenx_t;
typedef enum en_opa_clksrc // 自动校准脉冲宽度设置
{
OpaM1Pclk = 0u, // 1个PCLK周期
OpaM2Pclk = 1u, // 2个PCLK周期
OpaM4Pclk = 2u, // 4个PCLK周期
OpaM8Pclk = 3u, // 8个PCLK周期
OpaM16Pclk = 4u, // 16个PCLK周期
OpaM32Pclk = 5u, // 32个PCLK周期
OpaM64Pclk = 6u, // 64个PCLK周期
OpaM128Pclk = 7u, // 128个PCLK周期
OpaM256Pclk = 8u, // 256个PCLK周期
OpaM512Pclk = 9u, // 512个PCLK周期
OpaM1024Pclk = 10u, // 1024个PCLK周期
OpaM2048Pclk = 11u, // 2048个PCLK周期
OpaM4096Pclk = 12u // 4096个PCLK周期
}en_opa_clksrc_t;
typedef enum en_opa_set0ctrl
{
enClkSwSet = 3u, // 软件校准使能
enAzPulse = 2u, // 软件校准
enTrigger = 1u, // 软件触发自动教零
enAdctr = 1u // 使能ADC启动触发OPA自动校准功能
}en_opa_set0ctrl_t;
typedef struct
{
boolean_t bAzen; // 自动教零配置
boolean_t bClk_sw_set; // 自动教零选择
boolean_t bAz_pulse; // 软件校准设置
boolean_t bTrigger; // 软件触发校准设置
boolean_t bAdctr_en; // ADC启动触发OPA自动校准设置
en_opa_clksrc_t enClksrc; // 自动校准脉冲宽度设置
}stc_opa_zcfg_t;
/******************************************************************************
* Global variable declarations ('extern', definition in C source)
******************************************************************************/
/******************************************************************************
* Global function prototypes (definition in C source)
******************************************************************************/
//OPA 通道使能
extern void Opa_Cmd(boolean_t NewStatus);
extern void Opa_CmdBuf(boolean_t NewStatus);
//OPA零点校准配置
extern void Opa_SetZero(stc_opa_zcfg_t* InitZero);
//使能输出OUTX
extern void Opa_CmdOnex(en_opa_oenx_t onex, boolean_t NewState);
//配置校零相关的位
extern void Opa_ZeroBitCtrl(en_opa_set0ctrl_t CtrlBit, boolean_t NewState);
//@} // OPA Group
#ifdef __cplusplus
#endif
#endif /* __OPA_H__ */
/*******************************************************************************
* EOF (not truncated)
******************************************************************************/
-261
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/******************************************************************************
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/*****************************************************************************/
/** \file pca.h
**
** PCA(可编程计数阵列)数据结构及API声明
**
**
** History:
** - 2019-04-09 First version
**
*****************************************************************************/
#ifndef __PCA_H__
#define __PCA_H__
/*****************************************************************************
* Include files
*****************************************************************************/
#include "ddl.h"
#ifdef __cplusplus
extern "C"
{
#endif
/**
******************************************************************************
** \defgroup PcaGroup Programmable Counter Array (PCA)
**
******************************************************************************/
//@{
/******************************************************************************/
/* Global pre-processor symbols/macros ('#define') */
/******************************************************************************/
/******************************************************************************
* Global type definitions
******************************************************************************/
/**
*******************************************************************************
** \brief PCA 模块选择
** \note
******************************************************************************/
typedef enum
{
PcaModule0 = 0, // PCA_0
PcaModule1 = 1, // PCA_1
PcaModule2 = 2, // PCA_2
PcaModule3 = 3, // PCA_3
PcaModule4 = 4 // PCA_4
}en_pca_module_t;
/**
*******************************************************************************
** \brief PCA 中断标志位 中断清除位
** \note PCA_CCON中的CCF0-CCF4与CF; PCA_ICLR中的CCF0-CCF4与CF
******************************************************************************/
typedef enum
{
PcaCcf0 = 0,
PcaCcf1 = 1,
PcaCcf2 = 2,
PcaCcf3 = 3,
PcaCcf4 = 4,
PcaCf = 7
}en_pca_ccficlr_t;
/**
*******************************************************************************
** \brief PCA 时钟分频选择及时钟源选择
** \note PCA_CMOD CPS[2:0]
******************************************************************************/
typedef enum
{
PcaPclkdiv32 = 0, // PCLK/32
PcaPclkdiv16 = 1, // PCLK/16
PcaPclkdiv8 = 2, // PCLK/8
PcaPclkdiv4 = 3, // PCLK/4
PcaPclkdiv2 = 4, // PCLK/2
PcaTim0ovf = 5, // timer0 overflow
PcaTim1ovf = 6, // timer1 overflow
PcaEci = 7 // ECI外部时钟
}en_pca_clksrc_t;
/**
*******************************************************************************
** \brief PCA 允许比较器功能控制
** \note PCA_CCAPMx ECOM
******************************************************************************/
typedef enum
{
PcaEcomDisable = 0,
PcaEcomEnable = 1
}en_pca_ecom_t;
/**
*******************************************************************************
** \brief PCA 正沿捕获控制位
** \note PCA_CCAPMx CAPP
******************************************************************************/
typedef enum
{
PcaCappDisable = 0,
PcaCappEnable = 1
}en_pca_capp_t;
/**
*******************************************************************************
** \brief PCA 负沿捕获控制位
** \note PCA_CCAPMx CAPN
******************************************************************************/
typedef enum
{
PcaCapnDisable = 0,
PcaCapnEnable = 1
}en_pca_capn_t;
/**
*******************************************************************************
** \brief PCA 匹配控制位
** \note PCA_CCAPMx MAT
******************************************************************************/
typedef enum
{
PcaMatDisable = 0,
PcaMatEnable = 1
}en_pca_mat_t;
/**
*******************************************************************************
** \brief PCA 翻转控制位
** \note PCA_CCAPMx TOG
******************************************************************************/
typedef enum
{
PcaTogDisable = 0,
PcaTogEnable = 1
}en_pca_tog_t;
/**
*******************************************************************************
** \brief PCA PWM控制位
** \note PCA_CCAPMx PWM
******************************************************************************/
typedef enum
{
PcaPwm8bitDisable = 0,
PcaPwm8bitEnable = 1
}en_pca_pwm8bit_t;
/**
*******************************************************************************
** \brief PCA EPWM控制位
** \note PCA_EPWM EPWM
******************************************************************************/
typedef enum
{
PcaEpwmDisable = 0,
PcaEpwmEnable = 1
}en_pca_epwm_t;
/**
*******************************************************************************
** \brief PCA 初始化配置的结构体
** \note
******************************************************************************/
typedef struct
{
en_pca_clksrc_t pca_clksrc; // PCA_CMOD CPS[2:0]
boolean_t pca_cidl; // PCA_CMOD CIDL
en_pca_ecom_t pca_ecom; // PCA_CCAPMx ECOM
en_pca_capp_t pca_capp; // PCA_CCAPMx CAPP
en_pca_capn_t pca_capn; // PCA_CCAPMx CAPN
en_pca_mat_t pca_mat; // PCA_CCAPMx MAT
en_pca_tog_t pca_tog; // PCA_CCAPMx TOG
en_pca_pwm8bit_t pca_pwm; // PCA_CCAPMx PWM
en_pca_epwm_t pca_epwm; // PCA_EPWM
uint16_t pca_ccap; // PCA_CCAP
uint8_t pca_ccapl; // PCA_CCAPL PCA_CCAP的低字节
uint8_t pca_ccaph; // PCA_CCAPH PCA_CCAP的高字节
uint16_t pca_carr; // PCA_CARR
}stc_pcacfg_t;
/******************************************************************************
* Global variable declarations ('extern', definition in C source)
*****************************************************************************/
/******************************************************************************
* Global function prototypes (definition in C source)
*****************************************************************************/
extern boolean_t Pca_GetItStatus(en_pca_ccficlr_t It_Src);
extern void Pca_ClrItStatus(en_pca_ccficlr_t It_Src);
extern void Pca_StartPca(boolean_t NewStatus);
extern void Pca_SetCidl(boolean_t NewStatus);
extern void Pca_Set4Wdte(boolean_t NewStatus);
extern void Pca_ConfPcaIt(boolean_t NewStatus);
extern void Pca_ConfModulexIt(en_pca_module_t Modulex, boolean_t NewStatus);
extern void Pca_M0Init(stc_pcacfg_t* InitStruct);
extern void Pca_M1Init(stc_pcacfg_t* InitStruct);
extern void Pca_M2Init(stc_pcacfg_t* InitStruct);
extern void Pca_M3Init(stc_pcacfg_t* InitStruct);
extern void Pca_M4Init(stc_pcacfg_t* InitStruct);
extern uint16_t Pca_GetCnt(void);
extern void Pca_SetCnt(uint16_t cnt);
extern boolean_t Pca_GetOut(en_pca_module_t Modulex);
extern void Pca_SetCcap(en_pca_module_t Modulex, uint16_t Value);
extern uint16_t Pca_GetCcap(en_pca_module_t Modulex);
extern void Pca_SetCarr(uint16_t Value);
extern uint16_t Pca_GetCarr(void);
extern void Pca_SetCcapHL(en_pca_module_t Modulex, uint8_t ValueH, uint8_t ValueL);
extern void Pca_GetCcapHL(en_pca_module_t Modulex, uint8_t *ValueH, uint8_t *ValueL);
//@} // PcaGroup
#ifdef __cplusplus
#endif
#endif /* __PCA_H__ */
/******************************************************************************
* EOF (not truncated)
*****************************************************************************/
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/*******************************************************************************
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file pcnt.h
**
** Headerfile for PCNT functions
** @link PCNT Group Some description @endlink
**
** History:
** - 2019-04-08 First Version
**
******************************************************************************/
#ifndef __PCNT_H__
#define __PCNT_H__
/*******************************************************************************
* Include files
******************************************************************************/
#include "ddl.h"
#ifdef __cplusplus
extern "C"
{
#endif
/**
******************************************************************************
** \defgroup PCNTGroup (PCNT)
**
******************************************************************************/
//@{
/**
*******************************************************************************
** function prototypes.
******************************************************************************/
/**
*******************************************************************************
** \brief PCNT S0通道极性选择
** \note PCNT_CTRL S0P
******************************************************************************/
typedef enum
{
PcntS0PNoinvert = 0u, // S0通道极性不取反
PcntS0PInvert = 1u // S0通道极性取反
}en_pcnt_s0polar_t;
/**
*******************************************************************************
** \brief PCNT S1通道极性选择
** \note PCNT_CTRL S1P
******************************************************************************/
typedef enum
{
PcntS1PNoinvert = 0u, // S1通道极性不取反
PcntS1PInvert = 1u // S1通道极性取反
}en_pcnt_s1polar_t;
/**
*******************************************************************************
** \brief PCNT 计数方向选择
** \note PCNT_CTRL DIR
******************************************************************************/
typedef enum
{
PcntNDoubleDirAdd = 0u, // 加计数
PcntNDoubleDirSub = 1u // 减计数
}en_pcnt_dir_t;
/**
*******************************************************************************
** \brief PCNT 计数时钟选择
** \note PCNT_CTRL ClkSel
******************************************************************************/
typedef enum
{
PcntCLKPclk = 1u, // PCLK
PcntCLKXtl = 2u, // XTL
PcntCLKRcl = 3u // RCL
}en_pcnt_clksel_t;
/**
*******************************************************************************
** \brief PCNT 脉冲计数模式选择
** \note PCNT_CTRL Mode
******************************************************************************/
typedef enum
{
PcntSingleMode = 1u, // 单通道脉冲计数模式
PcntSpecialMode = 2u, // 双通道非正交脉冲计数模式
PcntDoubleMode = 3u // 双通道正交脉冲计数模式
}en_pcnt_mode_t;
/**
******************************************************************************
** \brief PCNT 状态
** \note PCNT_IFR & PCNT_ICR & PCNT_IEN
*****************************************************************************/
typedef enum
{
PcntS1E = 7, // S1通道脉冲解码错误
PcntS0E = 6, // S0通道脉冲解码错误
PcntBB = 5, // 脉冲解码错误
PcntFE = 4, // 采样周期脉冲解码错误
PcntDIR = 3, // 反向改变中断
PcntTO = 2, // 超时中断标识
PcntOV = 1, // 上溢中断标识
PcntUF = 0, // 下溢中断标识
}en_pcnt_itfce_t;
/**
******************************************************************************
** \brief PCNT 状态寄存器1 PCNT_SR1
** \note PCNT_SR1 : DIR
*****************************************************************************/
typedef enum
{
PcntDoubleDirAdd = 0, // 双通道正交脉冲加计数
PcntDoubleDirSub = 1 // 双通道正交脉冲加计数
}en_pcnt_sr1dir_t;
/**
******************************************************************************
** \brief PCNT 观测输出选择寄存器 PCNT_DBG
** \note PCNT_DBG: DBG
*****************************************************************************/
typedef enum
{
PcntDBGZero = 0, // 固定为0
PcntDBGSxA = 1, // 脉冲同步之后通过S0A/S1A输出
PcntDBGSxP = 2, // 脉冲极性选择之后通过S0P/S1P输出
PcntDBGSxPF = 3 // 脉冲滤波之后通过S0PF/S1PF输出
}en_pcnt_dbg_t;
typedef enum
{
PcntDirUp = 0, //加计数
PcntDirDown = 1 //减计数
}en_pent_dir_t;
/**
******************************************************************************
** \brief PCNT 整体配置结构体
*****************************************************************************/
typedef struct stc_pcnt_cfg
{
en_pcnt_s0polar_t Pcnt_S0Sel; // S0通道极性选择
en_pcnt_s1polar_t Pcnt_S1Sel; // S1通道极性选择
en_pcnt_clksel_t Pcnt_Clk; // 计数时钟选择
en_pcnt_mode_t Pcnt_Mode; // 脉冲计数模式选择
boolean_t Pcnt_FltEn; // 脉冲宽度滤波器使能控制 PCNT_FLT: EN
uint8_t Pcnt_DebTop; // 计数器阀值 PCNT_FLT: DebTop
uint16_t Pcnt_ClkDiv; // 滤波时钟分频系数 PCNT_FLT: ClkDiv
boolean_t Pcnt_TocrEn; // 超时功能使能控制位 PCNT_TOCR : EN
uint16_t Pcnt_TocrTh; // 超时阈值 PCNT_TOCR : TH
en_pcnt_dbg_t Pcnt_Dbg; // 观测输出选择寄存器 PCNT_DBG
en_pent_dir_t Pcnt_Dir;
}stc_pcnt_initstruct_t;
/******************************************************************************
* Global variable declarations ('extern', definition in C source)
******************************************************************************/
/******************************************************************************
* Global function prototypes (definition in C source)
******************************************************************************/
extern boolean_t Pcnt_Cmd(boolean_t NewState);
extern en_result_t Pcnt_SetB2T(uint16_t value);
extern en_result_t Pcnt_SetB2C(uint16_t value);
extern en_result_t Pcnt_SetT2C(void);
extern void Pcnt_Init(stc_pcnt_initstruct_t* InitStruct);
extern void Pcnt_ItCfg(en_pcnt_itfce_t IT_Src, boolean_t NewState);
extern boolean_t Pcnt_GetItStatus(en_pcnt_itfce_t IT_Src);
extern void Pcnt_ClrItStatus(en_pcnt_itfce_t IT_Src);
extern uint16_t Pcnt_GetCnt(void);
extern uint16_t Pcnt_GetTop(void);
extern uint16_t Pcnt_GetBuf(void);
extern void Pcnt_SetCnt(uint16_t value);
extern void Pcnt_SetBuf(uint16_t value);
extern void Pcnt_SetTop(uint16_t value);
//@} // PCNT Group
#ifdef __cplusplus
#endif
#endif /* __PCNT_H__ */
/*******************************************************************************
* EOF (not truncated)
******************************************************************************/
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/*************************************************************************************
* Copyright (C) 2016, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file ram.h
**
** RAM 数据结构及API声明.
**
** - 2019-04-02 LuX V1.0
**
******************************************************************************/
#ifndef __RAM_H__
#define __RAM_H__
/******************************************************************************/
/* Include files */
/******************************************************************************/
#include "ddl.h"
/* C binding of definitions if building with C++ compiler */
#ifdef __cplusplus
extern "C"
{
#endif
/**
******************************************************************************
** \defgroup RamGroup Ram Controller (Ram)
**
**
******************************************************************************/
//@{
/******************************************************************************
* Global type definitions
******************************************************************************/
/**
******************************************************************************
** \brief Redefinition of RAM register structure
******************************************************************************/
/******************************************************************************
* Global definitions
******************************************************************************/
/******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/******************************************************************************
* Global variable definitions ('extern')
******************************************************************************/
/******************************************************************************
* Global function prototypes (definition in C source)
******************************************************************************/
///<中断相关函数
///<中断使能/禁止
void Ram_EnableIrq(void);
void Ram_DisableIrq(void);
///<中断标志获取
boolean_t Ram_GetIntFlag(void);
///<中断标志清除
void Ram_ClearIntFlag(void);
///<奇偶校验出错地址获取
uint32_t Ram_ErrAddrGet(void);
//@} // RamGroup
#ifdef __cplusplus
}
#endif
#endif /* __RAM_H__ */
/******************************************************************************/
/* EOF (not truncated) */
/******************************************************************************/
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/******************************************************************************
* Copyright (C) 2018, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file reset.h
**
** Headerfile for reset functions
**
**
** History:
** - 2018-04-21 Lux First Version
**
******************************************************************************/
#ifndef __RESET_H__
#define __RESET_H__
/******************************************************************************
* Include files
******************************************************************************/
#include "ddl.h"
#ifdef __cplusplus
extern "C"
{
#endif
/**
******************************************************************************
** \defgroup ResetGroup Reset (RST)
**
******************************************************************************/
//@{
/**
*******************************************************************************
** function prototypes.
******************************************************************************/
/*******************************************************************************
* Global definitions
******************************************************************************/
/**
*******************************************************************************
** \brief 外设复位控制类型定义
** \note
******************************************************************************/
typedef enum en_sysctrl_peripheral0
{
ResetMskUart0 = 1u<<0u, ///< 串口0
ResetMskUart1 = 1u<<1u, ///< 串口1
ResetMskLpUart0 = 1u<<2u, ///< 低功耗串口0
ResetMskLpUart1 = 1u<<3u, ///< 低功耗串口1
ResetMskI2c0 = 1u<<4u, ///< I2C0
ResetMskI2c1 = 1u<<5u, ///< I2C1
ResetMskSpi0 = 1u<<6u, ///< SPI0
ResetMskSpi1 = 1u<<7u, ///< SPI1
ResetMskBaseTim = 1u<<8u, ///< 基础定时器TIM0/1/2
ResetMskLpTim0 = 1u<<9u, ///< 低功耗定时器0
ResetMskAdvTim = 1u<<10u, ///< 高级定时器TIM4/5/6
ResetMskTim3 = 1u<<11u, ///< 定时器3
ResetMskOpa = 1u<<13u, ///< OPA
ResetMskPca = 1u<<14u, ///< 可编程计数阵列
ResetMskAdcBgr = 1u<<16u, ///< ADC&BGR
ResetMskVcLvd = 1u<<17u, ///< VC和LVD
ResetMskRng = 1u<<18u, ///< RNG
ResetMskPcnt = 1u<<19u, ///< PCNT
ResetMskRtc = 1u<<20u, ///< RTC
ResetMskTrim = 1u<<21u, ///< 时钟校准
ResetMskLcd = 1u<<22u, ///< LCD
ResetMskTick = 1u<<24u, ///< 系统定时器
ResetMskSwd = 1u<<25u, ///< SWD
ResetMskCrc = 1u<<26u, ///< CRC
ResetMskAes = 1u<<27u, ///< AES
ResetMskGpio = 1u<<28u, ///< GPIO
ResetMskDma = 1u<<29u, ///< DMA
}en_reset_peripheral0_t;
typedef enum en_sysctrl_peripheral1
{
ResetMskDac = 1u<<3u, ///< DAC
ResetMskLpTim1 = 1u<<4u, ///< 低功耗定时器1
ResetMskUart2 = 1u<<8u, ///< UART2
ResetMskUart3 = 1u<<9u, ///< UART3
}en_reset_peripheral1_t;
/**
*******************************************************************************
** \brief 复位源(标识)显示
**
** \note
******************************************************************************/
typedef enum en_reset_flag
{
ResetFlagMskPor5V = 1u<<0u, ///< 5V启动复位
ResetFlagMskPor1_5V = 1u<<1u, ///< 1.5V启动复位
ResetFlagMskLvd = 1u<<2u, ///< 低电压检测复位
ResetFlagMskWdt = 1u<<3u, ///< 看门狗复位
ResetFlagMskPca = 1u<<4u, ///< PCA复位
ResetFlagMskLockup = 1u<<5u, ///< 系统异常复位
ResetFlagMskSysreq = 1u<<6u, ///< 软件复位
ResetFlagMskRstb = 1u<<7u, ///< RESET脚 复位
}en_reset_flag_t;
/*******************************************************************************
* Global variable declarations ('extern', definition in C source)
******************************************************************************/
/*******************************************************************************
* Global function prototypes (definition in C source)
******************************************************************************/
///< 获得复位源状态
boolean_t Reset_GetFlag(en_reset_flag_t enRstFlg);
///< 清除复位源状态
void Reset_ClearFlag(en_reset_flag_t enRstFlg);
void Reset_ClearFlagAll(void);
///< 外设模块复位
void Reset_RstPeripheralAll(void);
void Reset_RstPeripheral0(en_reset_peripheral0_t enPeri);
void Reset_RstPeripheral1(en_reset_peripheral1_t enPeri);
//@} // ResetGroup
#ifdef __cplusplus
#endif
#endif /* __RESET_H__ */
/*******************************************************************************
* EOF (not truncated)
******************************************************************************/
-248
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/******************************************************************************
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/*****************************************************************************/
/** \file rtc.h
**
** Headerfile for RTC functions
**
**
** History:
** - 2019-04-10 First Version
**
*****************************************************************************/
#ifndef __RTC_H__
#define __RTC_H__
/*****************************************************************************
* Include files
*****************************************************************************/
#include "ddl.h"
#ifdef __cplusplus
extern "C"
{
#endif
/**
******************************************************************************
** \defgroup RtcGroup Real Time Clock (RTC)
**
******************************************************************************/
//@{
/******************************************************************************/
/* Global pre-processor symbols/macros ('#define') */
/******************************************************************************/
/******************************************************************************
* Global type definitions
******************************************************************************/
/**
******************************************************************************
** \brief rtc周期中断的时间间隔 RTC_CR0 PRDS
*****************************************************************************/
typedef enum
{
RtcNone = 0u, //无周期中断
Rtc05S = 1u, //0.5S中断
Rtc1S = 2u, //1秒
Rtc1Min = 3u, //1分钟
Rtc1H = 4u, //1小时
Rtc1Day = 5u, //1天
Rtc1Mon = 6u //1月
}en_rtc_prds_t;
/**
******************************************************************************
** \brief rtc 12h制或24h制方式选择 RTC_CR0 AMPM
*****************************************************************************/
typedef enum
{
RtcAm = 0u, //12小时制
RtcPm = 1u //24小时制
}en_rtc_ampm_t;
/**
******************************************************************************
** \brief 普通精度与高精度1Hz输出 RTC_CR0 HZ1SEL
*****************************************************************************/
typedef enum
{
RtcHz1selGeneralPricision = 0u, //普通精度1Hz输出
RtcHz1selHighPricision = 1u //高精度1Hz输出
}en_rtc_hz1sel_t;
/**
******************************************************************************
** \brief 周期中断选择 RTC_CR0 PRDSEL
*****************************************************************************/
typedef enum
{
RtcPrds = 0u, //使用PRDS所设定的周期中断事件间隔
RtcPrdx = 1u //使用PRDX所设定的周期中断事件间隔
}en_rtc_prdsel_t;
/**
******************************************************************************
** \brief rtc的时钟选择 RTC_CR1 CKSEL
*****************************************************************************/
typedef enum
{
RtcClkXtl = 0u, //外部低速时钟XTL 32.768k
RtcClkRcl = 2u, //内部低速时钟RCL 32k
RtcClkXth128 = 4u, //外部晶振4M XTH/128
RtcClkXth256 = 5u, //外部晶振8M XTH/256
RtcClkXth512 = 6u, //外部晶振16M XTH/512
RtcClkXth1024 = 7u //外部晶振32M XTH/1024
}en_rtc_cksel_t;
/**
******************************************************************************
** \brief 时钟误差补偿使能或禁止 RTC_COMPEN EN
*****************************************************************************/
typedef enum
{
RtcCompenDisable = 0u,
RtcCompenEnable = 1u
}en_rtc_compen_t;
/**
******************************************************************************
** \brief 配置PRD中断使能及其周期类型
*****************************************************************************/
typedef struct
{
en_rtc_prdsel_t rtcPrdsel;
uint8_t rtcPrdx;
en_rtc_prds_t rtcPrds;
}stc_rtc_cyccfg_t;
/**
******************************************************************************
** \brief 闹钟源配置
*****************************************************************************/
typedef struct
{
uint8_t RtcAlarmSec; //闹钟秒钟
uint8_t RtcAlarmMinute; //闹钟分钟
uint8_t RtcAlarmHour; //闹钟小时
uint8_t RtcAlarmWeek; //闹钟周
}stc_rtc_alarmtime_t;
/**
******************************************************************************
** \brief 时间
*****************************************************************************/
/**
******************************************************************************
** \brief rtc时钟年、月、日、时、分、秒读写结构
*****************************************************************************/
typedef struct stc_rtc_time
{
uint8_t u8Second; //时间:秒
uint8_t u8Minute; //时间:分
uint8_t u8Hour; //时间:时
uint8_t u8DayOfWeek; //时间:周
uint8_t u8Day; //时间:日
uint8_t u8Month; //时间:月
uint8_t u8Year; //时间:年
} stc_rtc_time_t;
/**
******************************************************************************
** \brief 初始化RTC的结构体
*****************************************************************************/
typedef struct
{
en_rtc_ampm_t rtcAmpm; //小时的时制
stc_rtc_cyccfg_t rtcPrdsel; //确定PRDS或者PRDX所设定的周期中断时间间隔类型
en_rtc_cksel_t rtcClksrc; //实时时钟的时钟源
en_rtc_compen_t rtcCompen; //时钟误差补偿使能与禁止
uint16_t rtcCompValue; //使能补偿的情况下,补偿值取值范围为:0-255
stc_rtc_time_t rtcTime; //要写入时间寄存器的时间
}stc_rtc_initstruct_t;
/******************************************************************************
Global function prototypes (definition in C source)
*******************************************************************************/
//RTC计数器的使能或停止
extern void Rtc_Cmd(boolean_t NewState);
//RTC计数器启动等待函数
extern void Rtc_StartWait(void);
//RTC的1Hz输出的使能或停止
extern void Rtc_Hz1Cmd(en_rtc_hz1sel_t pricision, boolean_t NewState);
//设置周期中断的类型(PRDSEL)及其所选类型的时间(PRDS或PRDX)
extern en_result_t Rtc_SetCyc(stc_rtc_cyccfg_t* pstCyc);
//RTC闹钟中断的使能或停止
extern void Rtc_AlmIeCmd(boolean_t NewState);
//RTC闹钟的使能或停止
extern void Rtc_AlmEnCmd(boolean_t NewState);
//获取RTC闹钟中断状态位
extern boolean_t Rtc_GetAlmfItStatus(void);
//清除RTC闹钟中断状态位
extern void Rtc_ClearAlmfItStatus(void);
//清除RTC周期中断状态位
extern void Rtc_ClearPrdfItStatus(void);
//获取RTC周期中断状态位
extern boolean_t Rtc_GetPridItStatus(void);
//配置RTC的误差补偿寄存器
extern en_result_t Rtc_CompCfg(uint16_t CompVlue, en_rtc_compen_t NewStatus);
//RTC根据日期计算周数
extern en_result_t Check_BCD_Format(uint8_t u8data,uint8_t u8limit_min, uint8_t u8limit_max);
//RTC获取时间函数
extern en_result_t Rtc_ReadDateTime(stc_rtc_time_t* time);
//向RTC时间寄存器写入时间
extern en_result_t Rtc_SetTime(stc_rtc_time_t* time);
//RTC闹钟中断时间获取
extern void Rtc_GetAlarmTime(stc_rtc_alarmtime_t* pstcAlarmTime);
//RTC闹钟设置
extern en_result_t Rtc_SetAlarmTime(stc_rtc_alarmtime_t* pstcAlarmTime);
//初始化RTC
extern void Rtc_Init(stc_rtc_initstruct_t* Rtc_InitStruct);
#endif /* __RTC_H__ */
/******************************************************************************
* EOF (not truncated)
*****************************************************************************/
-212
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/******************************************************************************
* Copyright (C) 2017, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED , ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/*****************************************************************************/
/** \file spi.h
**
** Headerfile for SPI functions
**
**
** History:
** - 2017-05-17 1.0 Devi First Version
**
*****************************************************************************/
#ifndef __SPI_H__
#define __SPI_H__
/******************************************************************************
* Include files
*****************************************************************************/
#include "ddl.h"
/* C binding of definitions if building with C++ compiler */
#ifdef __cplusplus
extern "C"
{
#endif
//@{
/******************************************************************************
* Global type definitions
*****************************************************************************/
/**
******************************************************************************
** \brief SPI 功能通道选择设置
******************************************************************************/
/**
******************************************************************************
** \brief SPI 功能使能设置
******************************************************************************/
typedef enum en_spi_en
{
SpiMskEnable = 0x4u, ///< SPI模块使能
SpiMskDisable = 0u, ///< SPI模块禁止
}en_spi_en_t;
/**
******************************************************************************
** \brief SPI 模式配置
******************************************************************************/
typedef enum en_spi_mode
{
SpiMskMaster = 0x10u, ///<主机
SpiMskSlave = 0x00u, ///<从机
}en_spi_mode_t;
/**
******************************************************************************
** \brief SPI 时钟极性设置
******************************************************************************/
typedef enum en_spi_cpol
{
SpiMskcpollow = 0u, ///<极性为低
SpiMskcpolhigh = 0x08u, ///<极性为高
}en_spi_cpol_t;
/**
******************************************************************************
** \brief SPI 时钟相位设置
******************************************************************************/
typedef enum en_spi_cpha
{
SpiMskCphafirst = 0u, ///<第一边沿采样
SpiMskCphasecond = 0x4u, ///<第二边沿采样
}en_spi_cpha_t;
/**
******************************************************************************
** \brief SPI 时钟分频配置
*****************************************************************************/
typedef enum en_spi_clk_div
{
SpiClkMskDiv2 = 0x00u, ///<PCLK 2分频
SpiClkMskDiv4 = 0x01u, ///<PCLK 4分频
SpiClkMskDiv8 = 0x02u, ///<PCLK 8分频
SpiClkMskDiv16 = 0x03u, ///<PCLK 16分频
SpiClkMskDiv32 = 0x80u, ///<PCLK 32分频
SpiClkMskDiv64 = 0x81u, ///<PCLK 64分频
SpiClkMskDiv128 = 0x82u, ///<PCLK 128分频
}en_spi_clk_div_t;
/**
******************************************************************************
** \brief SPI 片选脚电平选择
*****************************************************************************/
typedef enum en_spi_cspin
{
SpiCsLow = 0u, ///<片选低电平
SpiCsHigh = 1u, ///<片选高电平
}en_spi_cspin_t;
/**
******************************************************************************
** \brief SPI 状态
*****************************************************************************/
typedef enum en_spi_status
{
SpiIf = 0x80u, ///<传输结束中断标志
SpiSserr = 0x20u, ///<从机模式错误标志
SpiMdf = 0x10u, ///<主机模式错误标志
SpiBusy = 0x08u, ///<SPI总线忙标志
SpiTxe = 0x04u, ///<发送缓冲器器空标志
SpiRxne = 0x02u, ///<接受缓冲器非空标志
}en_spi_status_t;
/**
******************************************************************************
** \brief SPI 功能开启函数
*****************************************************************************/
typedef enum en_spi_func
{
SpiMskRxNeIe = 0x40u, ///<接收缓冲器非空中断使能
SpiMskTxEIe = 0x20u, ///<发送缓冲器空中断使能
SpiMskDmaTxEn = 0x10u, ///<DMA硬件访问发送使能
SpiMskDmaRxEn = 0x08u, ///<DMA硬件访问接收使能
}en_spi_func_t;
/**
******************************************************************************
** \brief SPI 总体配置结构体
*****************************************************************************/
typedef struct stc_spi_cfg
{
en_spi_mode_t enSpiMode; ///< 主从模式选择
en_spi_clk_div_t enPclkDiv; ///< PCLK分频系数(波特率分频)
en_spi_cpol_t enCPOL; ///< 时钟极性选择
en_spi_cpha_t enCPHA; ///< 时钟相位选择
}stc_spi_cfg_t;
//SPI 状态获取
boolean_t Spi_GetStatus(M0P_SPI_TypeDef* SPIx,en_spi_status_t enStatus);
///<SPI 中断使能/禁止
en_result_t Spi_IrqEnable(M0P_SPI_TypeDef* SPIx);
en_result_t Spi_IrqDisable(M0P_SPI_TypeDef* SPIx);
//SPI 清除中断标记
en_result_t Spi_ClearStatus(M0P_SPI_TypeDef* SPIx);
//SPI初始化函数
en_result_t Spi_Init(M0P_SPI_TypeDef* SPIx,stc_spi_cfg_t* pstcSpiCfg);
//SPI 功能使能禁止函数
en_result_t Spi_FuncEnable(M0P_SPI_TypeDef* SPIx, en_spi_func_t enFunc);
en_result_t Spi_FuncDisable(M0P_SPI_TypeDef* SPIx, en_spi_func_t enFunc);
//SPI关闭函数
en_result_t Spi_DeInit(M0P_SPI_TypeDef* SPIx);
//SPI 配置主发送的电平
void Spi_SetCS(M0P_SPI_TypeDef* SPIx,boolean_t bFlag);
//SPI 数据字节数据收发
uint8_t Spi_RWByte(M0P_SPI_TypeDef* SPIx, uint8_t u8Data);
//SPI 数据发送
en_result_t Spi_SendData(M0P_SPI_TypeDef* SPIx, uint8_t u8Data);
void Spi_Slave_DummyWriteData(M0P_SPI_TypeDef* SPIx, uint8_t u8Data);
en_result_t Spi_SendBuf(M0P_SPI_TypeDef* SPIx, uint8_t* pu8Buf, uint32_t u32Len);
//SPI 数据接收
uint8_t Spi_ReceiveData(M0P_SPI_TypeDef* SPIx);
en_result_t Spi_ReceiveBuf(M0P_SPI_TypeDef* SPIx, uint8_t* pu8Buf, uint32_t u32Len);
//@} // Spi Group
#ifdef __cplusplus
}
#endif
#endif /* __SPI_H__ */
/******************************************************************************
* EOF (not truncated)
*****************************************************************************/
-456
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@@ -1,456 +0,0 @@
/*******************************************************************************
* Copyright (C) 2018, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file sysctrl.h
**
** Headerfile for SYSCTRL functions
** @link SYSCTRL Group Some description @endlink
**
** History:
** - 2018-04-15 Lux First Version
**
******************************************************************************/
#ifndef __SYSCTRL_H__
#define __SYSCTRL_H__
/*******************************************************************************
* Include files
******************************************************************************/
#include "ddl.h"
#ifdef __cplusplus
extern "C"
{
#endif
/**
******************************************************************************
** \defgroup SysCtrlGroup (SYSCTRL)
**
******************************************************************************/
//@{
/**
*******************************************************************************
** function prototypes.
******************************************************************************/
/******************************************************************************
* Global type definitions
******************************************************************************/
/**
*******************************************************************************
** \brief 系统时钟输入源类型定义
** \note
******************************************************************************/
typedef enum en_sysctrl_clk_source
{
SysctrlClkRCH = 0u, ///< 内部高速时钟
SysctrlClkXTH = 1u, ///< 外部高速时钟
SysctrlClkRCL = 2u, ///< 内部低速时钟
SysctrlClkXTL = 3u, ///< 外部低速时钟
SysctrlClkPLL = 4u, ///< PLL时钟
}en_sysctrl_clk_source_t;
/**
*******************************************************************************
** \brief RCH频率值枚举类型定义
******************************************************************************/
typedef enum en_sysctrl_rch_freq
{
SysctrlRchFreq4MHz = 4u, ///< 4MHz
SysctrlRchFreq8MHz = 3u, ///< 8MHz
SysctrlRchFreq16MHz = 2u, ///< 16MHz
SysctrlRchFreq22_12MHz = 1u, ///< 22.12MHz
SysctrlRchFreq24MHz = 0u, ///< 24MHz
}en_sysctrl_rch_freq_t;
/**
*******************************************************************************
** \brief XTAL驱动能力类型定义
******************************************************************************/
typedef enum en_sysctrl_xtal_driver
{
SysctrlXtalDriver0 = 0u, ///< 最弱驱动能力
SysctrlXtalDriver1 = 1u, ///< 弱驱动能力
SysctrlXtalDriver2 = 2u, ///< 一般驱动能力
SysctrlXtalDriver3 = 3u, ///< 最强驱动能力
}en_sysctrl_xtal_driver_t;
/**
*******************************************************************************
** \brief XTH频率值范围选择类型定义
******************************************************************************/
typedef enum en_sysctrl_xth_freq
{
SysctrlXthFreq4_8MHz = 0u, ///< 4~8MHz
SysctrlXthFreq8_16MHz = 1u, ///< 8~16MHz
SysctrlXthFreq16_24MHz = 2u, ///< 16~24MHz
SysctrlXthFreq24_32MHz = 3u, ///< 24~32MHz
}en_sysctrl_xth_freq_t;
/**
*******************************************************************************
** \brief XTH时钟稳定周期数类型定义
******************************************************************************/
typedef enum en_sysctrl_xth_cycle
{
SysctrlXthStableCycle256 = 0u, ///< 256 个周期数
SysctrlXthStableCycle1024 = 1u, ///< 1024 个周期数
SysctrlXthStableCycle4096 = 2u, ///< 4096 个周期数
SysctrlXthStableCycle16384 = 3u, ///< 16384 个周期数
}en_sysctrl_xth_cycle_t;
/**
*******************************************************************************
** \brief RCL频率值枚举类型定义
******************************************************************************/
typedef enum en_sysctrl_rcl_freq
{
SysctrlRclFreq32768 = 0x11u, ///< 32.768KHz
SysctrlRclFreq38400 = 0x10u, ///< 38.4KHz
}en_sysctrl_rcl_freq_t;
/**
*******************************************************************************
** \brief RCL时钟稳定周期数类型定义
******************************************************************************/
typedef enum en_sysctrl_rcl_cycle
{
SysctrlRclStableCycle4 = 0u, ///< 4 个周期数
SysctrlRclStableCycle16 = 1u, ///< 16 个周期数
SysctrlRclStableCycle64 = 2u, ///< 64 个周期数
SysctrlRclStableCycle256 = 3u, ///< 256 个周期数
}en_sysctrl_rcl_cycle_t;
/**
*******************************************************************************
** \brief XTL时钟稳定周期数类型定义
******************************************************************************/
typedef enum en_sysctrl_xtl_cycle
{
SysctrlXtlStableCycle256 = 0u, ///< 256 个周期数
SysctrlXtlStableCycle1024 = 1u, ///< 1024 个周期数
SysctrlXtlStableCycle4096 = 2u, ///< 4096 个周期数
SysctrlXtlStableCycle16384 = 3u, ///< 16384 个周期数
}en_sysctrl_xtl_cycle_t;
/**
*******************************************************************************
** \brief XTL晶体振幅枚举类型定义
******************************************************************************/
typedef enum en_sysctrl_xtl_amp
{
SysctrlXtlAmp0 = 0u, ///< 最小振幅
SysctrlXtlAmp1 = 1u, ///< 小振幅
SysctrlXtlAmp2 = 2u, ///< 一般振幅
SysctrlXtlAmp3 = 3u, ///< 最大振幅
}en_sysctrl_xtl_amp_t;
/**
*******************************************************************************
** \brief PLL时钟稳定周期数类型定义
******************************************************************************/
typedef enum en_sysctrl_pll_cycle
{
SysctrlPllStableCycle128 = 0u, ///< 128个周期数
SysctrlPllStableCycle256 = 1u, ///< 256个周期数
SysctrlPllStableCycle512 = 2u, ///< 512个周期数
SysctrlPllStableCycle1024 = 3u, ///< 1024个周期数
SysctrlPllStableCycle2048 = 4u, ///< 2048个周期数
SysctrlPllStableCycle4096 = 5u, ///< 4096个周期数
SysctrlPllStableCycle8192 = 6u, ///< 8192个周期数
SysctrlPllStableCycle16384 = 7u, ///< 16384个周期数
}en_sysctrl_pll_cycle_t;
/**
*******************************************************************************
** \brief PLL输入频率范围类型定义
******************************************************************************/
typedef enum en_sysctrl_pll_infreq
{
SysctrlPllInFreq4_6MHz = 0u, ///< 4~16MHz
SysctrlPllInFreq6_12MHz = 1u, ///< 6~12MHz
SysctrlPllInFreq12_20MHz = 2u, ///< 12~20MHz
SysctrlPllInFreq20_24MHz = 3u, ///< 20~24MHz
}en_sysctrl_pll_infreq_t;
/**
*******************************************************************************
** \brief PLL输出频率范围类型定义
******************************************************************************/
typedef enum en_sysctrl_pll_outfreq
{
SysctrlPllOutFreq8_12MHz = 0u, ///< 8~12MHz
SysctrlPllOutFreq12_18MHz = 1u, ///< 12~18MHz
SysctrlPllOutFreq18_24MHz = 2u, ///< 18~24MHz
SysctrlPllOutFreq24_36MHz = 3u, ///< 24~36MHz
SysctrlPllOutFreq36_48MHz = 4u, ///< 36~48MHz
}en_sysctrl_pll_outfreq_t;
/**
*******************************************************************************
** \brief PLL输入时钟源类型定义
******************************************************************************/
typedef enum en_sysctrl_pll_clksource
{
SysctrlPllXthXtal = 0u, ///< XTH晶振输入的时钟
SysctrlPllXthIn = 2u, ///< XTH从端口输入的时钟
SysctrlPllRch = 3u, ///< RCH时钟
}en_sysctrl_pll_clksource_t;
/**
*******************************************************************************
** \brief PLL输入时钟源类型定义
******************************************************************************/
typedef enum en_sysctrl_pll_mul
{
SysctrlPllMul2 = 2u, ///< 2倍频
SysctrlPllMul3 = 3u, ///< 3倍频
SysctrlPllMul4 = 4u, ///< 4倍频
SysctrlPllMul5 = 5u, ///< 5倍频
SysctrlPllMul6 = 6u, ///< 6倍频
SysctrlPllMul7 = 7u, ///< 7倍频
SysctrlPllMul8 = 8u, ///< 8倍频
SysctrlPllMul9 = 9u, ///< 9倍频
SysctrlPllMul10 = 10u, ///< 10倍频
SysctrlPllMul11 = 11u, ///< 11倍频
SysctrlPllMul12 = 12u, ///< 12倍频
}en_sysctrl_pll_mul_t;
/**
*******************************************************************************
** \brief HCLK时钟分频系数类型定义
******************************************************************************/
typedef enum en_sysctrl_hclk_div
{
SysctrlHclkDiv1 = 0u, ///< SystemClk
SysctrlHclkDiv2 = 1u, ///< SystemClk/2
SysctrlHclkDiv4 = 2u, ///< SystemClk/4
SysctrlHclkDiv8 = 3u, ///< SystemClk/8
SysctrlHclkDiv16 = 4u, ///< SystemClk/16
SysctrlHclkDiv32 = 5u, ///< SystemClk/32
SysctrlHclkDiv64 = 6u, ///< SystemClk/64
SysctrlHclkDiv128 = 7u, ///< SystemClk/128
}en_sysctrl_hclk_div_t;
/**
*******************************************************************************
** \brief PCLK分频系数
******************************************************************************/
typedef enum en_sysctrl_pclk_div
{
SysctrlPclkDiv1 = 0u, ///< HCLK
SysctrlPclkDiv2 = 1u, ///< HCLK/2
SysctrlPclkDiv4 = 2u, ///< HCLK/4
SysctrlPclkDiv8 = 3u, ///< HCLK/8
}en_sysctrl_pclk_div_t;
/**
*******************************************************************************
** \brief RTC高速时钟补偿时钟频率数据类型定义
******************************************************************************/
typedef enum en_sysctrl_rtc_adjust
{
SysctrlRTC4MHz = 0u, ///< 4MHz
SysctrlRTC6MHz = 1u, ///< 6MHz
SysctrlRTC8MHz = 2u, ///< 8MHz
SysctrlRTC12MHz = 3u, ///< 12MHz
SysctrlRTC16MHz = 4u, ///< 16MHz
SysctrlRTC20MHz = 5u, ///< 20MHz
SysctrlRTC24MHz = 6u, ///< 24MHz
SysctrlRTC32MHz = 7u, ///< 32MHz
}en_sysctrl_rtc_adjust_t;
/**
*******************************************************************************
** \brief 系统控制模块其他功能数据类型定义
******************************************************************************/
typedef enum en_sysctrl_func
{
SysctrlEXTHEn = 1u, ///< 使能外部高速时钟从输入引脚输入
SysctrlEXTLEn = 2u, ///< 使能外部低速速时钟从输入引脚输入
SysctrlXTLAlwaysOnEn = 3u, ///< 使能后XTL_EN只可置位
SysctrlClkFuncRTCLpmEn = 5u, ///< 使能RTC低功耗模式
SysctrlCMLockUpEn = 6u, ///< 使能后CPU执行无效指令会复位MCU
SysctrlSWDUseIOEn = 8u, ///< SWD端口设为IO功能
}en_sysctrl_func_t;
/**
*******************************************************************************
** \brief 外设时钟门控开关类型枚举
******************************************************************************/
typedef enum en_sysctrl_peripheral_gate
{
SysctrlPeripheralUart0 = 0u, ///< 串口0
SysctrlPeripheralUart1 = 1u, ///< 串口1
SysctrlPeripheralLpUart0 = 2u, ///< 低功耗串口0
SysctrlPeripheralLpUart1 = 3u, ///< 低功耗串口1
SysctrlPeripheralI2c0 = 4u, ///< I2C0
SysctrlPeripheralI2c1 = 5u, ///< I2C1
SysctrlPeripheralSpi0 = 6u, ///< SPI0
SysctrlPeripheralSpi1 = 7u, ///< SPI1
SysctrlPeripheralBaseTim = 8u, ///< 基础定时器TIM0/1/2
SysctrlPeripheralLpTim0 = 9u, ///< 低功耗定时器0
SysctrlPeripheralAdvTim = 10u, ///< 高级定时器TIM4/5/6
SysctrlPeripheralTim3 = 11u, ///< 定时器3
SysctrlPeripheralOpa = 13u, ///< OPA
SysctrlPeripheralPca = 14u, ///< 可编程计数阵列
SysctrlPeripheralWdt = 15u, ///< 看门狗
SysctrlPeripheralAdcBgr = 16u, ///< ADC&BGR
SysctrlPeripheralVcLvd = 17u, ///< VC和LVD
SysctrlPeripheralRng = 18u, ///< RNG
SysctrlPeripheralPcnt = 19u, ///< PCNT
SysctrlPeripheralRtc = 20u, ///< RTC
SysctrlPeripheralTrim = 21u, ///< 时钟校准
SysctrlPeripheralLcd = 22u, ///< LCD
SysctrlPeripheralTick = 24u, ///< 系统定时器
SysctrlPeripheralSwd = 25u, ///< SWD
SysctrlPeripheralCrc = 26u, ///< CRC
SysctrlPeripheralAes = 27u, ///< AES
SysctrlPeripheralGpio = 28u, ///< GPIO
SysctrlPeripheralDma = 29u, ///< DMA
SysctrlPeripheralFlash = 31u, ///< Flash
SysctrlPeripheralDac = 35u, ///< DAC
SysctrlPeripheralLpTim1 = 36u, ///< 低功耗定时器1
SysctrlPeripheralUart2 = 40u, ///< UART2
SysctrlPeripheralUart3 = 41u, ///< UART3
}en_sysctrl_peripheral_gate_t;
/**
*******************************************************************************
** \brief 时钟初始化配置结构体定义
******************************************************************************/
typedef struct
{
en_sysctrl_clk_source_t enClkSrc; ///< 时钟源选择
en_sysctrl_hclk_div_t enHClkDiv; ///< HCLK分频系数
en_sysctrl_pclk_div_t enPClkDiv; ///< PCLK分频系数
}stc_sysctrl_clk_cfg_t;
/**
*******************************************************************************
** \brief 时钟初始化配置结构体定义
******************************************************************************/
typedef struct
{
en_sysctrl_pll_infreq_t enInFreq; ///< PLL输入时钟频率范围选择
en_sysctrl_pll_outfreq_t enOutFreq; ///< PLL输出时钟频率范围选择
en_sysctrl_pll_clksource_t enPllClkSrc; ///< PLL输入时钟源选择
en_sysctrl_pll_mul_t enPllMul; ///< PLL倍频系数选择
}stc_sysctrl_pll_cfg_t;
/******************************************************************************
* Global variable declarations ('extern', definition in C source)
******************************************************************************/
/******************************************************************************
* Global function prototypes (definition in C source)
******************************************************************************/
///< 系统时钟初始化API:用于上电后,系统工作之前对主频及外设时钟进行初始化;
///< 注意1:使用该初始化函数前需要根据系统,必须优先设置目标内部时钟源的TRIM值或外部时钟源的频率范围,
///< 注意2:XTH、XTL的频率范围设定,需要根据外部晶振决定,
///< 注意3:本驱动默认宏定义:SYSTEM_XTH=32MHz,SYSTEM_XTL=32768Hz,如使用其它外部晶振,必须修改这两个宏定义的值。
en_result_t Sysctrl_ClkInit(stc_sysctrl_clk_cfg_t *pstcCfg);
///< 系统时钟去初始化API:恢复为上电默认状态->PCLK=HCLK=SystemClk=RCH4MHz
en_result_t Sysctrl_ClkDeInit(void);
///< 系统时钟模块的基本功能设置
///< 注意:使能需要使用的时钟源之前,必须优先设置目标内部时钟源的TRIM值或外部时钟源的频率范围
en_result_t Sysctrl_ClkSourceEnable(en_sysctrl_clk_source_t enSource, boolean_t bFlag);
///<外部晶振驱动配置:系统初始化Sysctrl_ClkInit()之后,可根据需要配置外部晶振的驱动能力,时钟初始化Sysctrl_ClkInit()默认为最大值;
en_result_t Sysctrl_XTHDriverCfg(en_sysctrl_xtal_driver_t enDriver);
en_result_t Sysctrl_XTLDriverCfg(en_sysctrl_xtl_amp_t enAmp, en_sysctrl_xtal_driver_t enDriver);
///<时钟稳定周期设置:系统初始化Sysctrl_ClkInit()之后,可根据需要配置时钟开启后的稳定之间,默认为最大值;
en_result_t Sysctrl_SetXTHStableTime(en_sysctrl_xth_cycle_t enCycle);
en_result_t Sysctrl_SetRCLStableTime(en_sysctrl_rcl_cycle_t enCycle);
en_result_t Sysctrl_SetXTLStableTime(en_sysctrl_xtl_cycle_t enCycle);
en_result_t Sysctrl_SetPLLStableTime(en_sysctrl_pll_cycle_t enCycle);
///<系统时钟源切换并更新系统时钟:如果需要在系统时钟初始化Sysctrl_ClkInit()之后切换主频时钟源,则使用该函数;
///< 时钟切换前后,必须根据目标频率值设置Flash读等待周期,可配置插入周期为0、1、2,
///< 注意!!!:当HCLK大于24MHz时,FLASH等待周期插入必须至少为1,否则程序运行可能产生未知错误
en_result_t Sysctrl_SysClkSwitch(en_sysctrl_clk_source_t enSource);
///< 时钟源频率设定:根据系统情况,单独设置不同时钟源的频率值;
///< 时钟频率设置前,必须根据目标频率值设置Flash读等待周期,可配置插入周期为0、1、2,
///< 其中XTL的时钟由外部晶振决定,无需设置。
en_result_t Sysctrl_SetRCHTrim(en_sysctrl_rch_freq_t enRCHFreq);
en_result_t Sysctrl_SetRCLTrim(en_sysctrl_rcl_freq_t enRCLFreq);
en_result_t Sysctrl_SetXTHFreq(en_sysctrl_xth_freq_t enXTHFreq);
en_result_t Sysctrl_SetPLLFreq(stc_sysctrl_pll_cfg_t *pstcPLLCfg);
///< 时钟分频设置:根据系统情况,单独设置HCLK、PCLK的分配值;
en_result_t Sysctrl_SetHCLKDiv(en_sysctrl_hclk_div_t enHCLKDiv);
en_result_t Sysctrl_SetPCLKDiv(en_sysctrl_pclk_div_t enPCLKDiv);
///< 时钟频率获取:根据系统需要,获取当前HCLK及PCLK的频率值
uint32_t Sysctrl_GetHClkFreq(void);
uint32_t Sysctrl_GetPClkFreq(void);
///< 外设门控开关/状态获取:用于控制外设模块的使能,使用该模块的功能之前,必须使能该模块的门控时钟;
en_result_t Sysctrl_SetPeripheralGate(en_sysctrl_peripheral_gate_t enPeripheral, boolean_t bFlag);
boolean_t Sysctrl_GetPeripheralGate(en_sysctrl_peripheral_gate_t enPeripheral);
///< 系统功能配置:用于设置其他系统相关特殊功能;
en_result_t Sysctrl_SetFunc(en_sysctrl_func_t enFunc, boolean_t bFlag);
///< RTC高速时钟补偿:用于设置RTC高速时钟下的频率补偿
en_result_t Sysctrl_SetRTCAdjustClkFreq(en_sysctrl_rtc_adjust_t enRtcAdj);
//@} // Sysctrl Group
#ifdef __cplusplus
#endif
#endif /* __SYSCTRL_H__ */
/*******************************************************************************
* EOF (not truncated)
******************************************************************************/
-781
View File
@@ -1,781 +0,0 @@
/*******************************************************************************
* Copyright (C) 2018, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file timer3.h
**
** 基本定时器数据结构及API声明
** @link Timer3 Group Some description @endlink
**
** History:
** - 2019-04-18 Husj First Version
**
*****************************************************************************/
#ifndef __TIMER3_H__
#define __TIMER3_H__
/*****************************************************************************
* Include files
*****************************************************************************/
#include "ddl.h"
#ifdef __cplusplus
extern "C"
{
#endif
/**
******************************************************************************
** \defgroup Tim3Group Timer3 (TIM3)
**
******************************************************************************/
//@{
/******************************************************************************/
/* Global pre-processor symbols/macros ('#define') */
/******************************************************************************/
/******************************************************************************
* Global type definitions
******************************************************************************/
/**
******************************************************************************
** \brief Timer3 通道定义
*****************************************************************************/
typedef enum en_tim3_channel
{
Tim3CH0 = 0u, ///< Timer3通道0
Tim3CH1 = 1u, ///< Timer3通道1
Tim3CH2 = 2u, ///< Timer3通道2
}en_tim3_channel_t;
/**
******************************************************************************
** \brief 工作模式选择数据类型重定义 (MODE)(模式0/1/23)
*****************************************************************************/
typedef enum en_tim3_work_mode
{
Tim3WorkMode0 = 0u, ///< 定时器模式
Tim3WorkMode1 = 1u, ///< PWC模式
Tim3WorkMode2 = 2u, ///< 锯齿波模式
Tim3WorkMode3 = 3u, ///< 三角波模式
}en_tim3_work_mode_t;
/**
******************************************************************************
** \brief 极性控制数据类型重定义 (GATE_P)(模式0)
*****************************************************************************/
typedef enum en_tim3_m0cr_gatep
{
Tim3GatePositive = 0u, ///< 高电平有效
Tim3GateOpposite = 1u, ///< 低电平有效
}en_tim3_m0cr_gatep_t;
/**
******************************************************************************
** \brief TIM3 预除频选择 (PRS)(模式0/1/23)
*****************************************************************************/
typedef enum en_tim3_cr_timclkdiv
{
Tim3PCLKDiv1 = 0u, ///< Div 1
Tim3PCLKDiv2 = 1u, ///< Div 2
Tim3PCLKDiv4 = 2u, ///< Div 4
Tim3PCLKDiv8 = 3u, ///< Div 8
Tim3PCLKDiv16 = 4u, ///< Div 16
Tim3PCLKDiv32 = 5u, ///< Div 32
Tim3PCLKDiv64 = 6u, ///< Div 64
Tim3PCLKDiv256 = 7u, ///< Div 256
}en_tim3_cr_timclkdiv_t;
/**
******************************************************************************
** \brief 计数/定时器功能选择数据类型重定义 (CT)(模式0/1/23)
*****************************************************************************/
typedef enum en_tim3_cr_ct
{
Tim3Timer = 0u, ///< 定时器功能,计数时钟为内部PCLK
Tim3Counter = 1u, ///< 计数器功能,计数时钟为外部ETR
}en_tim3_cr_ct_t;
/**
******************************************************************************
** \brief 定时器工作模式数据类型重定义 (MD)(模式0)
*****************************************************************************/
typedef enum en_tim3_m0cr_md
{
Tim332bitFreeMode = 0u, ///< 32位计数器/定时器
Tim316bitArrMode = 1u, ///< 自动重装载16位计数器/定时器
}en_tim3_m0cr_md_t;
/**
******************************************************************************
** \brief TIM3中断类型数据类型重定义(模式0/1/23)
*****************************************************************************/
typedef enum en_tim3_irq_type
{
Tim3UevIrq = 0u, ///< 溢出/事件更新中断
Tim3CA0Irq = 2u, ///< CH0A捕获/比较中断(仅模式1/23存在)
Tim3CA1Irq = 3u, ///< CH1A捕获/比较中断(仅模式23存在)
Tim3CA2Irq = 4u, ///< CH2A捕获/比较中断(仅模式23存在)
Tim3CB0Irq = 5u, ///< CH0B捕获/比较中断(仅模式23存在)
Tim3CB1Irq = 6u, ///< CH1B捕获/比较中断(仅模式23存在)
Tim3CB2Irq = 7u, ///< CH2B捕获/比较中断(仅模式23存在)
Tim3CA0E = 8u, ///< CH0A捕获数据丢失标志(仅模式23存在)(不是中断)
Tim3CA1E = 9u, ///< CH1A捕获数据丢失标志(仅模式23存在)(不是中断)
Tim3CA2E = 10u, ///< CH2A捕获数据丢失标志(仅模式23存在)(不是中断)
Tim3CB0E = 11u, ///< CH0B捕获数据丢失标志(仅模式23存在)(不是中断)
Tim3CB1E = 12u, ///< CH1B捕获数据丢失标志(仅模式23存在)(不是中断)
Tim3CB2E = 13u, ///< CH2B捕获数据丢失标志(仅模式23存在)(不是中断)
Tim3BkIrq = 14u, ///< 刹车中断(仅模式23存在)
Tim3TrigIrq = 15u, ///< 触发中断(仅模式23存在)
}en_tim3_irq_type_t;
/**
******************************************************************************
** \brief 测量开始结束数据类型重定义 (Edg1stEdg2nd)(模式1)
*****************************************************************************/
typedef enum en_tim3_m1cr_Edge
{
Tim3PwcRiseToRise = 0u, ///< 上升沿到上升沿(周期)
Tim3PwcFallToRise = 1u, ///< 下降沿到上升沿(低电平)
Tim3PwcRiseToFall = 2u, ///< 上升沿到下降沿(高电平)
Tim3PwcFallToFall = 3u, ///< 下降沿到下降沿(周期)
}en_tim3_m1cr_Edge_t;
/**
******************************************************************************
** \brief PWC测量测试模式选择数据类型重定义 (Oneshot)(模式1)
*****************************************************************************/
typedef enum en_tim3_m1cr_oneshot
{
Tim3PwcCycleDetect = 0u, ///< PWC循环测量
Tim3PwcOneShotDetect = 1u, ///< PWC单次测量
}en_tim3_m1cr_oneshot_t;
/**
******************************************************************************
** \brief PWC IA0选择数据类型重定义 (IA0S)(模式1)
*****************************************************************************/
typedef enum en_tim3_m1_mscr_ia0s
{
Tim3IA0Input = 0u, ///< IAO输入
Tim3XORInput = 1u, ///< IA0 ETR GATE XOR(TIM0/1/2)/IA0 IA1 IA2 XOR(TIM3)
}en_tim3_m1_mscr_ia0s_t;
/**
******************************************************************************
** \brief PWC IB0选择数据类型重定义 (IA0S)(模式1)
*****************************************************************************/
typedef enum en_tim3_m1_mscr_ib0s
{
Tim3IB0Input = 0u, ///< IBO输入
Tim3TsInput = 1u, ///< 内部触发TS选择信号
}en_tim3_m1_mscr_ib0s_t;
/**
******************************************************************************
** \brief 输出极性、输入相位 数据类型重定义 (CCPA0/CCPB0/ETP/BKP)(模式1/23)
*****************************************************************************/
typedef enum en_tim3_port_polarity
{
Tim3PortPositive = 0u, ///< 正常输入输出
Tim3PortOpposite = 1u, ///< 反向输入输出
}en_tim3_port_polarity_t;
/**
******************************************************************************
** \brief 滤波选择数据类型重定义 (FLTET/FLTA0/FLAB0)(模式1/23)
*****************************************************************************/
typedef enum en_tim3_flt
{
Tim3FltNone = 0u, ///< 无滤波
Tim3FltPCLKCnt3 = 4u, ///< PCLK 3个连续有效
Tim3FltPCLKDiv4Cnt3 = 5u, ///< PCLK/4 3个连续有效
Tim3FltPCLKDiv16Cnt3 = 6u, ///< PCLK/16 3个连续有效
Tim3FltPCLKDiv64Cnt3 = 7u, ///< PCLK/64 3个连续有效
}en_tim3_flt_t;
/**
******************************************************************************
** \brief 通道比较控制 数据类型重定义 (OCMA/OCMB)(模式23)
*****************************************************************************/
typedef enum en_tim3_m23_fltr_ocm
{
Tim3ForceLow = 0u, ///< 强制为0
Tim3ForceHigh = 1u, ///< 强制为1
Tim3CMPForceLow = 2u, ///< 比较匹配时强制为0
Tim3CMPForceHigh = 3u, ///< 比较匹配时强制为1
Tim3CMPInverse = 4u, ///< 比较匹配时翻转电平
Tim3CMPOnePrdHigh = 5u, ///< 比较匹配时输出一个计数周期的高电平
Tim3PWMMode1 = 6u, ///< 通道控制为PWM mode 1
Tim3PWMMode2 = 7u, ///< 通道控制为PWM mode 2
}en_tim3_m23_fltr_ocm_t;
/**
******************************************************************************
** \brief 主从模式TS数据类型重定义 (TS)(模式1/23)
*****************************************************************************/
typedef enum en_tim3_mscr_ts
{
Tim3Ts0ETR = 0u, ///< ETR外部输入滤波后的相位选择信号
Tim3Ts1TIM0TRGO = 1u, ///< Timer0的TRGO输出信号
Tim3Ts2TIM1TRGO = 2u, ///< Timer1的TRGO输出信号
Tim3Ts3TIM2TRGO = 3u, ///< Timer2的TRGO输出信号
Tim3Ts4TIM3TRGO = 4u, ///< Timer3的TRGO输出信号
//Tim3Ts5IA0ED = 5u, ///< 无效
Tim3Ts6IAFP = 6u, ///< CH0A 外部输输入滤波后的相位选择信号
Tim3Ts7IBFP = 7u, ///< CH0B 外部输输入滤波后的相位选择信
}en_tim3_mscr_ts_t;
/**
******************************************************************************
** \brief PWM输出模式选择数据类型重定义 (COMP)(模式23)
*****************************************************************************/
typedef enum en_tim3_m23cr_comp
{
Tim3IndependentPWM = 0u, ///< 独立PWM输出
Tim3ComplementaryPWM = 1u, ///< 互补PWM输出
}en_tim3_m23cr_comp_t;
/**
******************************************************************************
** \brief 计数方向选择数据类型重定义 (DIR)(模式23)
*****************************************************************************/
typedef enum en_tim3_m23cr_dir
{
Tim3CntUp = 0u, ///< 向上计数
Tim3CntDown = 1u, ///< 向下计数
}en_tim3_m23cr_dir_t;
/**
******************************************************************************
** \brief 计数方向选择数据类型重定义 (PWM2S)(模式23)
*****************************************************************************/
typedef enum en_tim3_m23cr_pwm2s
{
Tim3DoublePointCmp = 0u, ///< 双点比较使能,使用CCRA,CCRB比较控制OCREFA输出
Tim3SinglePointCmp = 1u, ///< 单点比较使能,使用CCRA比较控制OCREFA输出
}en_tim3_m23cr_pwm2s_t;
/**
******************************************************************************
** \brief GATE在PWM互补模式下捕获或比较功能 选择数据类型重定义 (CSG)(模式23)
*****************************************************************************/
typedef enum en_tim3_m23cr_csg
{
Tim3PWMCompGateCmpOut = 0u, ///< 在PWM互补模式下,Gate作为比较输出
Tim3PWMCompGateCapIn = 1u, ///< 在PWM互补模式下,Gate作为捕获输入
}en_tim3_m23cr_csg_t;
/**
******************************************************************************
** \brief 比较捕获寄存器 数据类型重定义 (CCR0A,CCR0B)(模式23)
*****************************************************************************/
typedef enum en_tim3_m23_ccrx
{
Tim3CCR0A = 0u, ///< CCR0A比较捕获寄存器
Tim3CCR0B = 1u, ///< CCR0B比较捕获寄存器
Tim3CCR1A = 2u, ///< CCR1A比较捕获寄存器
Tim3CCR1B = 3u, ///< CCR1B比较捕获寄存器
Tim3CCR2A = 4u, ///< CCR2A比较捕获寄存器
Tim3CCR2B = 5u, ///< CCR2B比较捕获寄存器
}en_tim3_m23_ccrx_t;
/**
******************************************************************************
** \brief OCREF清除源 选择数据类型重定义 (OCCS)(模式23)
*****************************************************************************/
typedef enum en_tim3_m23ce_occs
{
Tim3OC_Ref_Clr = 0u, ///< 来自VC的OC_Ref_Clr
Tim3ETRf = 1u, ///< 外部ETRf
}en_tim3_m23ce_occs_t;
/**
******************************************************************************
** \brief 比较匹配中断模式 选择数据类型重定义 (CIS/CISB)(模式23)
*****************************************************************************/
typedef enum en_tim3_m23_cisa_cisb
{
Tim3CmpIntNone = 0u, ///< 无比较匹配中断
Tim3CmpIntRise = 1u, ///< 比较匹配上升沿中断
Tim3CmpIntFall = 2u, ///< 比较匹配下降沿中断
Tim3CmpIntRiseFall = 3u, ///< 比较匹配上升沿下降沿中断
}en_tim3_m23_cisa_cisb_t;
/**
******************************************************************************
** \brief TIM3端口控制 - 刹车时CHx输出状态控制(BKSA/BKSB)(模式23)
**
** \note
******************************************************************************/
typedef enum en_tim3_m23_crchx_bks
{
Tim3CHxBksHiZ = 0u, ///< 刹车使能时,CHx端口输出高阻态
Tim3CHxBksNorm = 1u, ///< 刹车使能时,CHx端口正常输出
Tim3CHxBksLow = 2u, ///< 刹车使能时,CHx端口输出低电平
Tim3CHxBksHigh = 3u, ///< 刹车使能时,CHx端口输出高电平
}en_tim3_m23_crchx_bks_t;
/**
******************************************************************************
** \brief TIM3端口控制 - CHx上升沿下降沿捕获(CRx/CFx)(模式23)
**
** \note
******************************************************************************/
typedef enum en_tim3_m23_crch0_cfx_crx
{
Tim3CHxCapNone = 0u, ///< CHx通道捕获禁止
Tim3CHxCapRise = 1u, ///< CHx通道上升沿捕获使能
Tim3CHxCapFall = 2u, ///< CHx通道下降沿捕获使能
Tim3CHxCapFallRise = 3u, ///< CHx通道上升沿下降沿捕获都使能
}en_tim3_m23_crch0_cfx_crx_t;
/**
******************************************************************************
** \brief TIM3端口控制 - CHx比较捕获模式(CSA/CSB)(模式23)
**
** \note
******************************************************************************/
typedef enum en_tim3_m23_crch0_csa_csb
{
Tim3CHxCmpMode = 0u, ///< CHx通道设置为比较模式
Tim3CHxCapMode = 1u, ///< CHx通道设置为捕获模式
}en_tim3_m23_crch0_csa_csb_t;
/**
******************************************************************************
** \brief 比较模式下 DMA比较触发选择 数据类型重定义 (CCDS)(模式23)
*****************************************************************************/
typedef enum en_tim3_m23_mscr_ccds
{
Tim3CmpTrigDMA = 0u, ///< 比较匹配触发DMA
Tim3UEVTrigDMA = 1u, ///< 事件更新代替比较匹配触发DMA
}en_tim3_m23_mscr_ccds_t;
/**
******************************************************************************
** \brief 主从模式选择 数据类型重定义 (MSM)(模式23)
*****************************************************************************/
typedef enum en_tim3_m23_mscr_msm
{
Tim3SlaveMode = 0u, ///< 从模式
Tim3MasterMode = 1u, ///< 主模式
}en_tim3_m23_mscr_msm_t;
/**
******************************************************************************
** \brief 触发主模式输出源 数据类型重定义 (MMS)(模式23)
*****************************************************************************/
typedef enum en_tim3_m23_mscr_mms
{
Tim3MasterUG = 0u, ///< UG(软件更新)源
Tim3MasterCTEN = 1u, ///< CTEN源
Tim3MasterUEV = 2u, ///< UEV更新源
Tim3MasterCMPSO = 3u, ///< 比较匹配选择输出源
Tim3MasterOCA0Ref = 4u, ///< OCA0_Ref源
Tim3MasterOCB0Ref = 5u, ///< OCB0_Ref源
//Tim3MasterOCB0Ref = 6u,
//Tim3MasterOCB0Ref = 7u,
}en_tim3_m23_mscr_mms_t;
/**
******************************************************************************
** \brief 触发从模式选择 数据类型重定义 (SMS)(模式23)
*****************************************************************************/
typedef enum en_tim3_m23_mscr_sms
{
Tim3SlaveIClk = 0u, ///< 使用内部时钟
Tim3SlaveResetTIM = 1u, ///< 复位功能
Tim3SlaveTrigMode = 2u, ///< 触发模式
Tim3SlaveEClk = 3u, ///< 外部时钟模式
Tim3SlaveCodeCnt1 = 4u, ///< 正交编码计数模式1
Tim3SlaveCodeCnt2 = 5u, ///< 正交编码计数模式2
Tim3SlaveCodeCnt3 = 6u, ///< 正交编码计数模式3
Tim3SlaveGateCtrl = 7u, ///< 门控功能
}en_tim3_m23_mscr_sms_t;
/**
******************************************************************************
** \brief 定时器运行控制数据类型重定义 (CTEN)
*****************************************************************************/
typedef enum en_tim3_start
{
Tim3CTENDisable = 0u, ///< 停止
Tim3CTENEnable = 1u, ///< 运行
}en_tim3_start_t;
/**
******************************************************************************
** \brief TIM3 mode0 配置结构体定义(模式0)
*****************************************************************************/
typedef struct stc_tim3_mode0_cfg
{
en_tim3_work_mode_t enWorkMode; ///< 工作模式设置
en_tim3_m0cr_gatep_t enGateP; ///< 门控极性控制
boolean_t bEnGate; ///< 门控使能
en_tim3_cr_timclkdiv_t enPRS; ///< 预除频配置
boolean_t bEnTog; ///< 翻转输出使能
en_tim3_cr_ct_t enCT; ///< 定时/计数功能选择
en_tim3_m0cr_md_t enCntMode; ///< 计数模式配置
}stc_tim3_mode0_cfg_t;
/**
******************************************************************************
** \brief TIM3 mode1 配置结构体定义(模式1)
*****************************************************************************/
typedef struct stc_tim3_mode1_cfg
{
en_tim3_work_mode_t enWorkMode; ///< 工作模式设置
en_tim3_cr_timclkdiv_t enPRS; ///< 预除频配置
en_tim3_cr_ct_t enCT; ///< 定时/计数功能选择
en_tim3_m1cr_oneshot_t enOneShot; ///< 单次测量/循环测量选择
}stc_tim3_mode1_cfg_t;
/**
******************************************************************************
** \brief PWC输入配置结构体定义(模式1)
*****************************************************************************/
typedef struct stc_tim3_pwc_input_cfg
{
en_tim3_mscr_ts_t enTsSel; ///< 触发输入源选择
en_tim3_m1_mscr_ia0s_t enIA0Sel; ///< CHA0输入选择
en_tim3_m1_mscr_ib0s_t enIB0Sel; ///< CHB0输入选择
en_tim3_port_polarity_t enETRPhase; ///< ETR相位选择
en_tim3_flt_t enFltETR; ///< ETR滤波设置
en_tim3_flt_t enFltIA0; ///< CHA0滤波设置
en_tim3_flt_t enFltIB0; ///< CHB0滤波设置
}stc_tim3_pwc_input_cfg_t;
/**
******************************************************************************
** \brief TIM3 mode23 配置结构体定义(模式23)
*****************************************************************************/
typedef struct stc_tim3_mode23_cfg
{
en_tim3_work_mode_t enWorkMode; ///< 工作模式设置
en_tim3_m23cr_dir_t enCntDir; ///< 计数方向
en_tim3_cr_timclkdiv_t enPRS; ///< 时钟预除频配置
en_tim3_cr_ct_t enCT; ///< 定时/计数功能选择
en_tim3_m23cr_comp_t enPWMTypeSel; ///< PWM模式选择(独立/互补)
en_tim3_m23cr_pwm2s_t enPWM2sSel; ///< OCREFA双点比较功能选择
boolean_t bOneShot; ///< 单次触发模式使能/禁止
boolean_t bURSSel; ///< 更新源选择
}stc_tim3_mode23_cfg_t;
/**
******************************************************************************
** \brief GATE在PWM互补模式下捕获或比较功能 配置结构体定义(模式23)
*****************************************************************************/
typedef struct stc_tim3_m23_gate_cfg
{
en_tim3_m23cr_csg_t enGateFuncSel; ///< Gate比较、捕获功能选择
boolean_t bGateRiseCap; ///< GATE作为捕获功能时,上沿捕获有效控制
boolean_t bGateFallCap; ///< GATE作为捕获功能时,下沿捕获有效控制
}stc_tim3_m23_gate_cfg_t;
/**
******************************************************************************
** \brief CHA/CHB通道比较控制 配置结构体定义(模式23)
*****************************************************************************/
typedef struct stc_tim3_m23_compare_cfg
{
en_tim3_m23_crch0_csa_csb_t enCHxACmpCap; ///< CH0A比较/捕获功能选择
en_tim3_m23_fltr_ocm_t enCHxACmpCtrl; ///< CH0A通道比较控制
en_tim3_port_polarity_t enCHxAPolarity; ///< CH0A输出极性控制
boolean_t bCHxACmpBufEn; ///< 比较A缓存功能 使能/禁止
en_tim3_m23_cisa_cisb_t enCHxACmpIntSel; ///< CHA比较匹配中断选择
en_tim3_m23_crch0_csa_csb_t enCHxBCmpCap; ///< CH0B比较/捕获功能选择
en_tim3_m23_fltr_ocm_t enCHxBCmpCtrl; ///< CH0B通道比较控制
en_tim3_port_polarity_t enCHxBPolarity; ///< CH0B输出极性控制
boolean_t bCHxBCmpBufEn; ///< 比较B缓存功能 使能/禁止
en_tim3_m23_cisa_cisb_t enCHxBCmpIntSel; ///< CHB0比较匹配中断选择
}stc_tim3_m23_compare_cfg_t;
/**
******************************************************************************
** \brief CHA/CHB通道捕获控制 配置结构体定义(模式23)
*****************************************************************************/
typedef struct stc_tim3_m23_input_cfg
{
en_tim3_m23_crch0_csa_csb_t enCHxACmpCap; ///< CH0A比较/捕获功能选择
en_tim3_m23_crch0_cfx_crx_t enCHxACapSel; ///< CH0A捕获边沿选择
en_tim3_flt_t enCHxAInFlt; ///< CH0A通道捕获滤波控制
en_tim3_port_polarity_t enCHxAPolarity; ///< CH0A输入相位
en_tim3_m23_crch0_csa_csb_t enCHxBCmpCap; ///< CH0A比较/捕获功能选择
en_tim3_m23_crch0_cfx_crx_t enCHxBCapSel; ///< CH0B捕获边沿选择
en_tim3_flt_t enCHxBInFlt; ///< CH0B通道捕获滤波控制
en_tim3_port_polarity_t enCHxBPolarity; ///< CH0B输入相位
}stc_tim3_m23_input_cfg_t;
/**
******************************************************************************
** \brief ETR输入相位滤波配置结构体定义(模式23)
*****************************************************************************/
typedef struct stc_tim3_m23_etr_input_cfg
{
en_tim3_port_polarity_t enETRPolarity; ///< ETR输入极性设置
en_tim3_flt_t enETRFlt; ///< ETR滤波设置
}stc_tim3_m23_etr_input_cfg_t;
/**
******************************************************************************
** \brief 刹车BK输入相位滤波配置结构体定义(模式23)
*****************************************************************************/
typedef struct stc_tim3_m23_bk_input_cfg
{
boolean_t bEnBrake; ///< 刹车使能
boolean_t bEnVCBrake; ///< 使能VC刹车
boolean_t bEnSafetyBk; ///< 使能safety刹车
boolean_t bEnBKSync; ///< TIM0/TIM1/TIM2刹车同步使能
en_tim3_m23_crchx_bks_t enBkCH0AStat; ///< 刹车时CHA端口状态设置
en_tim3_m23_crchx_bks_t enBkCH0BStat; ///< 刹车时CHB端口状态设置
en_tim3_m23_crchx_bks_t enBkCH1AStat; ///< 刹车时CHA端口状态设置
en_tim3_m23_crchx_bks_t enBkCH1BStat; ///< 刹车时CHB端口状态设置
en_tim3_m23_crchx_bks_t enBkCH2AStat; ///< 刹车时CHA端口状态设置
en_tim3_m23_crchx_bks_t enBkCH2BStat; ///< 刹车时CHB端口状态设置
en_tim3_port_polarity_t enBrakePolarity; ///< 刹车BK输入极性设置
en_tim3_flt_t enBrakeFlt; ///< 刹车BK滤波设置
}stc_tim3_m23_bk_input_cfg_t;
/**
******************************************************************************
** \brief 死区功能配置结构体定义(模式23)
*****************************************************************************/
typedef struct stc_tim3_m23_dt_cfg
{
boolean_t bEnDeadTime; ///< 刹车时CHA端口状态设置
uint8_t u8DeadTimeValue; ///< 刹车时CHA端口状态设置
}stc_tim3_m23_dt_cfg_t;
/**
******************************************************************************
** \brief 触发ADC配置结构体定义(模式23)
*****************************************************************************/
typedef struct stc_tim3_m23_adc_trig_cfg
{
boolean_t bEnTrigADC; ///< 触发ADC全局控制
boolean_t bEnUevTrigADC; ///< 事件更新触发ADC
boolean_t bEnCH0ACmpTrigADC; ///< CH0A比较匹配触发ADC
boolean_t bEnCH0BCmpTrigADC; ///< CH0B比较匹配触发ADC
boolean_t bEnCH1ACmpTrigADC; ///< CH0A比较匹配触发ADC
boolean_t bEnCH1BCmpTrigADC; ///< CH0B比较匹配触发ADC
boolean_t bEnCH2ACmpTrigADC; ///< CH0A比较匹配触发ADC
boolean_t bEnCH2BCmpTrigADC; ///< CH0B比较匹配触发ADC
}stc_tim3_m23_adc_trig_cfg_t;
/**
******************************************************************************
** \brief DMA触发 配置结构体定义(模式23)
*****************************************************************************/
typedef struct stc_tim3_m23_trig_dma_cfg
{
boolean_t bUevTrigDMA; ///< 更新 触发DMA使能
boolean_t bTITrigDMA; ///< Trig 触发DMA功能
boolean_t bCmpA0TrigDMA; ///< CH0A捕获比较触发DMA使能
boolean_t bCmpB0TrigDMA; ///< CH0B捕获比较触发DMA使能
boolean_t bCmpA1TrigDMA; ///< CH1A捕获比较触发DMA使能
boolean_t bCmpB1TrigDMA; ///< CH1B捕获比较触发DMA使能
boolean_t bCmpA2TrigDMA; ///< CH2A捕获比较触发DMA使能
boolean_t bCmpB2TrigDMA; ///< CH2B捕获比较触发DMA使能
en_tim3_m23_mscr_ccds_t enCmpUevTrigDMA; ///< 比较模式下DMA比较触发选择
}stc_tim3_m23_trig_dma_cfg_t;
/**
******************************************************************************
** \brief 主从模式 配置结构体定义(模式23)
*****************************************************************************/
typedef struct stc_tim3_m23_master_slave_cfg
{
en_tim3_m23_mscr_msm_t enMasterSlaveSel; ///< 主从模式选择
en_tim3_m23_mscr_mms_t enMasterSrc; ///< 主模式触发源选择
en_tim3_m23_mscr_sms_t enSlaveModeSel; ///< 从模式选择
en_tim3_mscr_ts_t enTsSel; ///< 触发输入源选择
}stc_tim3_m23_master_slave_cfg_t;
/**
******************************************************************************
** \brief OCREF清除功能 配置结构体定义(模式23)
*****************************************************************************/
typedef struct stc_tim3_m23_OCREF_Clr_cfg
{
en_tim3_m23ce_occs_t enOCRefClrSrcSel; ///< OCREF清除源选择
boolean_t bVCClrEn; ///< 是否使能来自VC的OCREF_Clr
}stc_tim3_m23_OCREF_Clr_cfg_t;
/******************************************************************************
* Global variable declarations ('extern', definition in C source)
*****************************************************************************/
/******************************************************************************
* Global function prototypes (definition in C source)
*****************************************************************************/
//中断相关函数
//中断标志获取
boolean_t Tim3_GetIntFlag(en_tim3_irq_type_t enTim3Irq);
//中断标志清除
en_result_t Tim3_ClearIntFlag(en_tim3_irq_type_t enTim3Irq);
//所有中断标志清除
en_result_t Tim3_ClearAllIntFlag(void);
//模式0中断使能
en_result_t Tim3_Mode0_EnableIrq(void);
//模式1中断使能
en_result_t Tim3_Mode1_EnableIrq (en_tim3_irq_type_t enTim3Irq);
//模式2中断使能
en_result_t Tim3_Mode23_EnableIrq (en_tim3_irq_type_t enTim3Irq);
//模式0中断禁止
en_result_t Tim3_Mode0_DisableIrq(void);
//模式1中断禁止
en_result_t Tim3_Mode1_DisableIrq (en_tim3_irq_type_t enTim3Irq);
//模式2中断禁止
en_result_t Tim3_Mode23_DisableIrq (en_tim3_irq_type_t enTim3Irq);
//模式0初始化及相关功能操作
//timer配置及初始化
en_result_t Tim3_Mode0_Init(stc_tim3_mode0_cfg_t* pstcCfg);
//timer 启动/停止
en_result_t Tim3_M0_Run(void);
en_result_t Tim3_M0_Stop(void);
//重载值设置
en_result_t Tim3_M0_ARRSet(uint16_t u16Data);
//16位计数值设置/获取
en_result_t Tim3_M0_Cnt16Set(uint16_t u16Data);
uint16_t Tim3_M0_Cnt16Get(void);
//32位计数值设置/获取
en_result_t Tim3_M0_Cnt32Set(uint32_t u32Data);
uint32_t Tim3_M0_Cnt32Get(void);
//端口输出使能/禁止设定
en_result_t Tim3_M0_Enable_Output(boolean_t bEnOutput);
//翻转使能/禁止(低电平)设定
en_result_t Tim3_M0_EnTOG(boolean_t bEnTOG);
//模式1初始化及相关功能操作
//timer配置及初始化
en_result_t Tim3_Mode1_Init(stc_tim3_mode1_cfg_t* pstcCfg);
//PWC 输入配置
en_result_t Tim3_M1_Input_Cfg(stc_tim3_pwc_input_cfg_t* pstcCfg);
//PWC测量边沿起始结束选择
en_result_t Tim3_M1_PWC_Edge_Sel(en_tim3_m1cr_Edge_t enEdgeSel);
//timer 启动/停止
en_result_t Tim3_M1_Run(void);
en_result_t Tim3_M1_Stop(void);
//16位计数值设置/获取
en_result_t Tim3_M1_Cnt16Set(uint16_t u16Data);
uint16_t Tim3_M1_Cnt16Get(void);
//脉冲宽度测量结果数值获取
uint16_t Tim3_M1_PWC_CapValueGet(void);
//模式23初始化及相关功能操作
//timer配置及初始化
en_result_t Tim3_Mode23_Init(stc_tim3_mode23_cfg_t* pstcCfg);
//timer 启动/停止
en_result_t Tim3_M23_Run(void);
en_result_t Tim3_M23_Stop(void);
//PWM输出使能
en_result_t Tim3_M23_EnPWM_Output(boolean_t bEnOutput, boolean_t bEnAutoOutput);
//重载值设置
en_result_t Tim3_M23_ARRSet(uint16_t u16Data, boolean_t bArrBufEn);
//16位计数值设置/获取
en_result_t Tim3_M23_Cnt16Set(uint16_t u16Data);
uint16_t Tim3_M23_Cnt16Get(void);
//比较捕获寄存器CCR0A/CCR0B设置/读取
en_result_t Tim3_M23_CCR_Set(en_tim3_m23_ccrx_t enCCRSel, uint16_t u16Data);
uint16_t Tim3_M23_CCR_Get(en_tim3_m23_ccrx_t enCCRSel);
//PWM互补输出模式下,GATE功能选择
en_result_t Tim3_M23_GateFuncSel(stc_tim3_m23_gate_cfg_t* pstcCfg);
//主从模式配置
en_result_t Tim3_M23_MasterSlave_Set(stc_tim3_m23_master_slave_cfg_t* pstcCfg);
//CH0A/CH0B比较通道控制
en_result_t Tim3_M23_PortOutput_Cfg(en_tim3_channel_t enTim3Chx, stc_tim3_m23_compare_cfg_t* pstcCfg);
//CH0A/CH0B输入控制
en_result_t Tim3_M23_PortInput_Cfg(en_tim3_channel_t enTim3Chx, stc_tim3_m23_input_cfg_t* pstcCfg);
//ERT输入控制
en_result_t Tim3_M23_ETRInput_Cfg(stc_tim3_m23_etr_input_cfg_t* pstcCfg);
//刹车BK输入控制
en_result_t Tim3_M23_BrakeInput_Cfg(stc_tim3_m23_bk_input_cfg_t* pstcBkCfg);
//触发ADC控制
en_result_t Tim3_M23_TrigADC_Cfg(stc_tim3_m23_adc_trig_cfg_t* pstcCfg);
//死区功能
en_result_t Tim3_M23_DT_Cfg(stc_tim3_m23_dt_cfg_t* pstcCfg);
//重复周期设置
en_result_t Tim3_M23_SetValidPeriod(uint8_t u8ValidPeriod);
//OCREF清除功能
en_result_t Tim3_M23_OCRefClr(stc_tim3_m23_OCREF_Clr_cfg_t* pstcCfg);
//使能DMA传输
en_result_t Tim3_M23_EnDMA(stc_tim3_m23_trig_dma_cfg_t* pstcCfg);
//捕获比较A软件触发
en_result_t Tim3_M23_EnSwTrigCapCmpA(en_tim3_channel_t enTim3Chx);
//捕获比较B软件触发
en_result_t Tim3_M23_EnSwTrigCapCmpB(en_tim3_channel_t enTim3Chx);
//软件更新使能
en_result_t Tim3_M23_EnSwUev(void);
//软件触发使能
en_result_t Tim3_M23_EnSwTrig(void);
//软件刹车使能
en_result_t Tim3_M23_EnSwBk(void);
//@} // Tim3Group
#ifdef __cplusplus
#endif
#endif /* __BT_H__ */
/******************************************************************************
* EOF (not truncated)
*****************************************************************************/
-184
View File
@@ -1,184 +0,0 @@
/******************************************************************************
* Copyright (C) 2018, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/*****************************************************************************/
/** \file trim.h
**
** TRIM 数据结构及API声明
**
**
** History:
** - 2018-04-21 Lux V1.0
**
*****************************************************************************/
#ifndef __TRIM_H__
#define __TRIM_H__
/*****************************************************************************
* Include files
*****************************************************************************/
#include "ddl.h"
#ifdef __cplusplus
extern "C"
{
#endif
/**
******************************************************************************
** \defgroup TrimGroup Clock Trimming (TRIM)
**
******************************************************************************/
//@{
/******************************************************************************
** Global pre-processor symbols/macros ('#define')
******************************************************************************/
/******************************************************************************
* Global type definitions
******************************************************************************/
/**
******************************************************************************
** \brief 监测模式使能枚举重定义 (MON_EN)
*****************************************************************************/
typedef enum en_trim_monitor
{
TrimMonDisable = 0u, ///< 禁止
TrimMonEnable = 0x40u, ///< 使能
}en_trim_monitor_t;
/**
******************************************************************************
** \brief 待校准/监测时钟选择枚举重定义 (CALCLK_SEL)
*****************************************************************************/
typedef enum en_trim_calclksel
{
TrimCalMskRCH = 0x000u, ///< RCH
TrimCalMskXTH = 0x010u, ///< XTH
TrimCalMskRCL = 0x020u, ///< RCL
TrimCalMskXTL = 0x030u, ///< XTL
TrimCalMskPLL = 0x100u, ///< PLL
}en_trim_calclksel_t;
/**
******************************************************************************
** \brief 参考时钟选择枚举重定义 (REFCLK_SEL)
*****************************************************************************/
typedef enum en_trim_refclksel
{
TrimRefMskRCH = 0x0u, ///< RCH
TrimRefMskXTH = 0x2u, ///< XTH
TrimRefMskRCL = 0x4u, ///< RCL
TrimRefMskXTL = 0x6u, ///< XTL
TrimRefMskIRC10K = 0x8u, ///< IRC10K
TrimRefMskExtClk = 0xau, ///< 外部输入时钟
}en_trim_refclksel_t;
/**
******************************************************************************
** \brief 中断标志类型枚举重定义
*****************************************************************************/
typedef enum en_trim_inttype
{
TrimStop = 0x01u, ///< 参考计数器停止标志
TrimCalCntOf = 0x02u, ///< 校准计数器溢出标志
TrimXTLFault = 0x04u, ///< XTL 失效标志
TrimXTHFault = 0x08u, ///< XTH 失效标志
TrimPLLFault = 0x10u, ///< PLL 失效标志
}en_trim_inttype_t;
/**
******************************************************************************
** \brief TRIM 配置结构体定义
*****************************************************************************/
typedef struct stc_trim_cfg
{
en_trim_monitor_t enMON; ///< 监测模式使能
en_trim_calclksel_t enCALCLK; ///< 校准时钟选择
uint32_t u32CalCon; ///< 校准计数器溢出值配置
en_trim_refclksel_t enREFCLK; ///< 参考时钟选择
uint32_t u32RefCon; ///< 参考计数器初值配置
}stc_trim_cfg_t;
/******************************************************************************
* Global variable declarations ('extern', definition in C source)
*****************************************************************************/
/******************************************************************************
* Global function prototypes (definition in C source)
*****************************************************************************/
///<<功能配置及操作函数
///<Trim 配置及初始化
en_result_t Trim_Init(stc_trim_cfg_t* pstcCfg);
///<校准/监测启动/停止
void Trim_Run(void);
void Trim_Stop(void);
///<参考计数器计数值获取
uint32_t Trim_RefCntGet(void);
///<校准计数器计数值获取
uint32_t Trim_CalCntGet(void);
///<中断操作相关函数
///中断使能/禁止
void Trim_EnableIrq(void);
void Trim_DisableIrq(void);
///<中断标志获取
boolean_t Trim_GetIntFlag(en_trim_inttype_t enIntType);
///<中断标志清除
en_result_t Trim_ClearIntFlag(en_trim_inttype_t enIntType);
//@} // TrimGroup
#ifdef __cplusplus
#endif
#endif /* __TRIM_H__ */
/******************************************************************************
* EOF (not truncated)
*****************************************************************************/
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/*******************************************************************************
* Copyright (C) 2018, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file trng.h
**
** Headerfile for RNG functions
** @link RNG Group Some description @endlink
**
** History:
** - 2018-04-15 Lux First Version
**
******************************************************************************/
#ifndef __TRNG_H__
#define __TRNG_H__
/*******************************************************************************
* Include files
******************************************************************************/
#include "ddl.h"
#ifdef __cplusplus
extern "C"
{
#endif
/**
******************************************************************************
** \defgroup TrngGroup (TRNG)
**
******************************************************************************/
//@{
/**
*******************************************************************************
** function prototypes.
******************************************************************************/
/*******************************************************************************
* Global definitions
******************************************************************************/
/******************************************************************************
* Global variable declarations ('extern', definition in C source)
******************************************************************************/
/******************************************************************************
* Global function prototypes (definition in C source)
******************************************************************************/
///< 随机数初始化(上电第一次生成随机数)
en_result_t Trng_Init(void);
///< 生成随机数(非上电第一次生成随机数)
en_result_t Trng_Generate(void);
///< 获取64bits随机数(执行随机数初始化或生成随机数函数后可使用该函数获取随机数值)
uint32_t Trng_GetData0(void);
uint32_t Trng_GetData1(void);
//@} // Trng Group
#ifdef __cplusplus
#endif
#endif /* __TRNG_H__ */
/*******************************************************************************
* EOF (not truncated)
******************************************************************************/
-250
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/******************************************************************************
* Copyright (C) 2017, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/*****************************************************************************/
/** \file uart.h
**
** Headerfile for UART functions
**
**
** History:
** - 2017-05-10 Cathy First Version
**
*****************************************************************************/
#ifndef __UART_H__
#define __UART_H__
/*****************************************************************************
* Include files
*****************************************************************************/
#include "ddl.h"
#ifdef __cplusplus
extern "C"
{
#endif
/**
******************************************************************************
** \defgroup UartGroup Universal Asynchronous Receiver/Transmitter (UART)
**
******************************************************************************/
//@{
/******************************************************************************/
/* Global pre-processor symbols/macros ('#define') */
/******************************************************************************/
/******************************************************************************
* Global type definitions
******************************************************************************/
/**
******************************************************************************
**\brief uart通道选择
******************************************************************************/
/**
******************************************************************************
** \brief uart多机模式地址帧/数据帧或者奇偶校验
******************************************************************************/
typedef enum en_uart_mmdorck
{
UartMskDataOrAddr = 0u, ///<多机模式时,通过读写SBUF[8]决定帧为数据帧或地址帧
UartMskEven = 0x4u, ///<非多机模式偶校验
UartMskOdd = 0x8u, ///<非多机模式奇校验
}en_uart_mmdorck_t;
/**
******************************************************************************
** \brief uart多机模式及从机地址和地址掩码配置
******************************************************************************/
typedef struct stc_uart_multimode
{
uint8_t u8SlaveAddr; ///<从机地址
uint8_t u8SaddEn; ///<从及地址掩码
}stc_uart_multimode_t;
/**
******************************************************************************
** \brief uart 四种工作模式选择
******************************************************************************/
typedef enum en_uart_mode
{
UartMskMode0 = 0x00u, ///<模式0
UartMskMode1 = 0x40u, ///<模式1
UartMskMode2 = 0x80u, ///<模式2
UartMskMode3 = 0xc0u, ///<模式3
} en_uart_mode_t;
/**
******************************************************************************
** \brief uart stop长度选择
******************************************************************************/
typedef enum en_uart_stop
{
UartMsk1bit = 0x0000u, ///<1位停止位
UartMsk1_5bit = 0x4000u, ///<1.5位停止位
UartMsk2bit = 0x8000u, ///<2位停止位
} en_uart_stop_t;
/**
******************************************************************************
** \brief uart 功能使能
******************************************************************************/
typedef enum en_uart_func
{
UartRenFunc = 4u, ///<0-TX; ///<1-非mode0模式代表RX&TX ,mode0模式代表RX;
UartDmaRxFunc = 16u, ///<DMA接收功能
UartDmaTxFunc = 17u, ///<DMA发送功能
UartRtsFunc = 18u, ///<硬件流RTS功能
UartCtsFunc = 19u, ///<硬件流CTS功能
UartHdFunc = 22u, ///<单线半双工功能
}en_uart_func_t;
/**
******************************************************************************
** \brief uart中断使能控制
******************************************************************************/
typedef enum en_uart_irq_sel
{
UartRxIrq = 0u, ///<接收中断使能
UartTxIrq = 1u, ///<发送中断使能
UartTxEIrq = 8u, ///<TX空中断使能
UartPEIrq = 13u, ///<奇偶校验中断使能
UartCtsIrq = 20u, ///<CTS信号翻转中断使能
UartFEIrq = 21u, ///<帧错误中断使能
}en_uart_irq_sel_t;
/**
******************************************************************************
** \brief uart 状态标志位
******************************************************************************/
typedef enum en_uart_status
{
UartRC = 0u, ///<接收数据完成标记
UartTC = 1u, ///<发送数据完成标记
UartFE = 2u, ///<帧错误标记
UartTxe = 3u, ///<TXbuff空标记
UartPE = 4u, ///<奇偶校验错误标记
UartCtsIf = 5u, ///<CTS中断标记
UartCts = 6u, ///<CTS信号标记
}en_uart_status_t;
/**
******************************************************************************
** \brief uart 通道采样分频配置
******************************************************************************/
typedef enum en_uart_clkdiv
{
UartMsk16Or32Div = 0u, ///<模式0无效,模式1/3为16分频,模式2为32分频
UartMsk8Or16Div = 0x200u, ///<模式0无效,模式1/3为8分频,模式2为16分频
}en_uart_clkdiv_t;
/**
******************************************************************************
** \brief uart 通道Mode1和Mode3波特率计算参数
******************************************************************************/
typedef struct stc_uart_baud
{
en_uart_clkdiv_t enClkDiv; ///<采样分频
uint32_t u32Pclk; ///<pclk
uint32_t u32Baud; ///<波特率
} stc_uart_baud_t;
/**
******************************************************************************
** \uart 总体配置
******************************************************************************/
typedef struct stc_uart_cfg
{
en_uart_mode_t enRunMode; ///<四种模式配置
en_uart_mmdorck_t enMmdorCk; ///<校验模式
en_uart_stop_t enStopBit; ///<停止位长度
stc_uart_baud_t stcBaud; ///<Mode1/3波特率配置
} stc_uart_cfg_t;
//UART初始化
en_result_t Uart_Init(M0P_UART_TypeDef* UARTx, stc_uart_cfg_t* pstcCfg);
///< UART 单线模式使能/禁止
void Uart_HdModeEnable(M0P_UART_TypeDef* UARTx);
void Uart_HdModeDisable(M0P_UART_TypeDef* UARTx);
//UART模块多机模式设置函数
en_result_t Uart_SetMultiMode(M0P_UART_TypeDef* UARTx,stc_uart_multimode_t* pstcMultiCfg);
//TB8数据设置
void Uart_SetTb8(M0P_UART_TypeDef* UARTx, boolean_t bTB8Value);
//RB8数据获取
boolean_t Uart_GetRb8(M0P_UART_TypeDef* UARTx);
//中断相关设置函数
en_result_t Uart_EnableIrq(M0P_UART_TypeDef* UARTx, en_uart_irq_sel_t enIrqSel);
en_result_t Uart_DisableIrq(M0P_UART_TypeDef* UARTx, en_uart_irq_sel_t enIrqSel);
//功能使能和禁止
en_result_t Uart_EnableFunc(M0P_UART_TypeDef* UARTx, en_uart_func_t enFunc);
en_result_t Uart_DisableFunc(M0P_UART_TypeDef* UARTx, en_uart_func_t enFunc);
//状态位的获取和清除
uint8_t Uart_GetIsr(M0P_UART_TypeDef* UARTx);
boolean_t Uart_GetStatus(M0P_UART_TypeDef* UARTx,en_uart_status_t enStatus);
en_result_t Uart_ClrIsr(M0P_UART_TypeDef* UARTx);
en_result_t Uart_ClrStatus(M0P_UART_TypeDef* UARTx,en_uart_status_t enStatus);
//数据收发操作
///< 数据查询模式发送
en_result_t Uart_SendDataPoll(M0P_UART_TypeDef* UARTx, uint8_t u8Data);
///< 数据中断模式发送
en_result_t Uart_SendDataIt(M0P_UART_TypeDef* UARTx, uint8_t u8Data);
uint8_t Uart_ReceiveData(M0P_UART_TypeDef* UARTx);
//@} // UartGroup
#ifdef __cplusplus
#endif
#endif /* __UART_H__ */
/******************************************************************************
* EOF (not truncated)
*****************************************************************************/
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/******************************************************************************
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file vc.h
**
** Headerfile for Voltage Comparator functions
** @link VC Group Some description @endlink
**
** - 2019-04-10 First Version
**
******************************************************************************/
#ifndef __VC_H__
#define __VC_H__
/******************************************************************************
* Include files
******************************************************************************/
#include "ddl.h"
/* C binding of definitions if building with C++ compiler */
#ifdef __cplusplus
extern "C"
{
#endif
/**
******************************************************************************
** \defgroup VcGroup Voltage Comparator (VC)
**
******************************************************************************/
//@{
/******************************************************************************
* Global type definitions
******************************************************************************/
/**
******************************************************************************
** \brief VC通道
*****************************************************************************/
typedef enum
{
VcChannel0 = 0u, // 通道0
VcChannel1 = 1u, // 通道1
VcChannel2 = 2u // 通道2
}en_vc_channel_t;
/**
******************************************************************************
** \brief VC迟滞 VC_CR VCx_HYS_SEL(x=0、1、2)
*****************************************************************************/
typedef enum
{
VcDelayoff = 0u, // 迟滞关闭
VcDelay10mv = 1u, // 迟滞10mv
VcDelay20mv = 2u, // 迟滞20mv
VcDelay30mv = 3u, // 迟滞30mv
}en_vc_cmp_delay_t;
/**
******************************************************************************
** \brief VC偏置电流 VC_CR VCx_BIAS_SEL(x=0、1、2)
*****************************************************************************/
typedef enum
{
VcBias300na = 0u, // 偏置电流300nA
VcBias1200na = 1u, // 偏置电流1.2uA
VcBias10ua = 2u, // 偏置电流10uA
VcBias20ua = 3u, // 偏置电流20uA
}en_vc_bias_current_t;
/**
******************************************************************************
** \brief VC输出滤波时间 VCx_CR debounce_time(x=0、1、2)
*****************************************************************************/
typedef enum
{
VcFilter7us = 0u, // 输出滤波时间7us
VcFilter14us = 1u, // 输出滤波时间14us
VcFilter28us = 2u, // 输出滤波时间28us
VcFilter112us = 3u, // 输出滤波时间112us
VcFilter450us = 4u, // 输出滤波时间450us
VcFilter1800us = 5u, // 输出滤波时间1.8ms
VcFilter7200us = 6u, // 输出滤波时间7.2ms
VcFilter28800us = 7u, // 输出滤波时间28.8ms
}en_vc_resp_filter_t;
/**
******************************************************************************
** \brief VC P端输入
*****************************************************************************/
typedef enum
{
//VC0 //VC1 //VC2
VcInPCh0 = 0u, // 输入通道0 PC0 输入通道0 PA0 输入通道0 PA5
VcInPCh1 = 1u, // 输入通道1 PC1 输入通道1 PA1 输入通道1 PB1
VcInPCh2 = 2u, // 输入通道2 PC2 输入通道2 PA2 输入通道2 PE9
VcInPCh3 = 3u, // 输入通道3 PC3 输入通道3 PA3 输入通道3 PE10
VcInPCh4 = 4u, // 输入通道4 PA0 输入通道4 PA4 输入通道4 PE11
VcInPCh5 = 5u, // 输入通道5 PA1 输入通道5 PA5 输入通道5 PE13
VcInPCh6 = 6u, // 输入通道6 PA2 输入通道6 PB1 输入通道6 PE14
VcInPCh7 = 7u, // 输入通道7 PA3 输入通道7 PB2 输入通道7 PE15
VcInPCh8 = 8u, // 输入通道7 PA4 输入通道8 PB10 输入通道8 PB11
VcInPCh9 = 9u, // 输入通道7 PA5 输入通道9 PB12 输入通道9 PB14
VcInPCh10 = 10u, // 输入通道7 PA6 输入通道10 PB13 输入通道10 PD9
VcInPCh11 = 11u, // 输入通道7 PA7 输入通道11 PB14 输入通道11 PD10
VcInPCh12 = 12u, // 输入通道7 PB4 输入通道12 PB4 输入通道12 PD11
VcInPCh13 = 13u, // 输入通道7 PB5 输入通道13 DAC0 输入通道13 PC7
VcInPCh14 = 14u, // 输入通道7 PB6 输入通道14 PB6 输入通道14 DAC0
VcInPCh15 = 15u, // 输入通道7 DAC0 输入通道15 PB7 输入通道15 DAC0
}en_vc_input_p_src_t;
/**
******************************************************************************
** \brief VC N端输入
*****************************************************************************/
typedef enum
{
//VC0 //VC1 //VC2
VcInNCh0 = 0u, // 输入通道0 PA0 输入通道0 PC0 输入通道0 PA5
VcInNCh1 = 1u, // 输入通道1 PA1 输入通道1 PC1 输入通道1 PB1
VcInNCh2 = 2u, // 输入通道2 PA2 输入通道2 PC2 输入通道2 PE11
VcInNCh3 = 3u, // 输入通道3 PA3 输入通道3 PC3 输入通道3 PE15
VcInNCh4 = 4u, // 输入通道4 PA4 输入通道4 PA0 输入通道4 PB11
VcInNCh5 = 5u, // 输入通道5 PA5 输入通道5 PA1 输入通道5 PB14
VcInNCh6 = 6u, // 输入通道6 PA6 输入通道6 PB0 输入通道6 PD10
VcInNCh7 = 7u, // 输入通道7 PA7 输入通道7 PB1 输入通道7 PD11
VcInNCh8 = 8u, // 输入通道8 PC4 输入通道8 PB2 输入通道8 PC7
VcInNCh9 = 9u, // 输入通道9 PC5 输入通道9 PB3 输入通道9 DAC0
VcInNCh10 = 10u, // 输入通道10 DAC0 输入通道10 DAC1 输入通道10 DAC0
ResDivOut = 11u, // 电阻分压 电阻分压 NA
AiTs = 12u, // 内部温度传感器输出电压 内部温度传感器输出电压 内部温度传感器输出电压
AiBg1p2 = 13u, // 内部基准1.2V 内部基准1.2V 内部基准1.2V
AiAdcVref = 14u, // ADC参考电压VREF ADC参考电压VREF ADC参考电压VREF
AiLdo = 15u, // LDO输出电压 LDO输出电压 LDO输出电压
}en_vc_input_n_src_t;
/**
******************************************************************************
** \brief VC中断触发方式
*****************************************************************************/
typedef enum en_vc_irq_sel
{
VcIrqNone = 0u, ///< 无中断
VcIrqRise = 1u, ///< 上升沿触发
VcIrqFall = 2u, ///< 下降沿触发
VcIrqHigh = 3u, ///< 高电平触发
}en_vc_irq_sel_t;
/**
******************************************************************************
** \brief VC状态 VC_IFR
*****************************************************************************/
typedef enum en_vc_stat
{
Vc0_Intf = 0u, // VC0中断标志
Vc1_Intf = 1u, // VC1中断标志
Vc0_Filter = 2u, // VC0 Filter 后的状态
Vc1_Filter = 3u, // VC1 Filter 后的状态
Vc2_Intf = 4u, // VC2中断标志
Vc2_Filter = 5u // VC2 Filter 后的状态
}en_vc_ifr_t;
/**
******************************************************************************
** \brief VC输出配置 VCx_OUT_CFG(x=0、1、2)
** \note 对于VC0CHX = CHA;对于VC1 VC2CHX = CHB
*****************************************************************************/
typedef enum en_vc_output_cfg
{
VcOutInvTimer = 0u, // 结果输出反向到各Timer0,1,2,3 REFCLR
VcOutTIM0RCLR = 1u, // 结果输出到TIM0 REFCLR使能控制
VcOutTIM1RCLR = 2u, // 结果输出到TIM1 REFCLR使能控制
VcOutTIM2RCLR = 3u, // 结果输出到TIM2 REFCLR使能控制
VcOutTIM3RCLR = 4u, // 结果输出到TIM3 REFCLR使能控制
VcOutTIMBK = 5u, // 结果输出到Timer0,1,2,3刹车控制
VcOutInvTIM4 = 9u, // 结果输出到Timer4反向使能
VcOutTIM4 = 10u, // 结果输出到Timer4捕获输入CHX使能
VcOutInvTIM5 = 11u, // 结果输出到Timer5反向使能
VcOutTIM5 = 12u, // 结果输出到Timer5捕获输入CHX使能
VcOutInvTIM6 = 13u, // 结果输出到Timer6反向使能
VcOutTIM6 = 14u, // 结果输出到Timer6捕获输入CHX使能
VcOutBrake = 15u, // 结果作为Advanced Timer刹车控制
VcOutDisable = 16u // 结果输出除能
}en_vc_output_cfg_t;
/**
******************************************************************************
** \brief VC DIV参考电压Vref选择 VC_CR VC_REF2P5_SEL
*****************************************************************************/
typedef enum en_vc_div_vref
{
VcDivVrefAvcc = 0u, ///< AVCC
VcDivVrefAdc = 1u, ///< ADC_CR0 SREF选择参考电压
}en_vc_div_vref_t;
/**
******************************************************************************
** \brief VC模块配置 VC_CR VC_REF2P5_SEL VC_DIV_EN VC_DIV
*****************************************************************************/
typedef struct stc_vc_dac_cfg
{
boolean_t bDivEn; // VC_CR: VC_DIV_EN
uint8_t u8DivVal; // VC_CR: VC_DIV 范围:0-63
en_vc_div_vref_t enDivVref; // VC_CR: VC_REF2P5_SEL
}stc_vc_dac_cfg_t;
/**
******************************************************************************
** \brief VC通道配置
*****************************************************************************/
typedef struct stc_vc_channel_cfg
{
en_vc_channel_t enVcChannel; // VC通道选择
en_vc_cmp_delay_t enVcCmpDly; // VC迟滞
en_vc_bias_current_t enVcBiasCurrent; // VC功耗选择
en_vc_resp_filter_t enVcFilterTime; // 输出滤波时间
en_vc_input_p_src_t enVcInPin_P; // P端输入
en_vc_input_n_src_t enVcInPin_N; // N端输入
en_vc_output_cfg_t enVcOutCfg; // 输出配置
boolean_t bFlten; // 滤波输出使能
}stc_vc_channel_cfg_t;
/******************************************************************************
* Global definitions
******************************************************************************/
/******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/******************************************************************************
* Global variable definitions ('extern')
******************************************************************************/
/******************************************************************************
* Global function prototypes (definition in C source)
******************************************************************************/
extern void Vc_CfgItType(en_vc_channel_t Channelx, en_vc_irq_sel_t ItType);
extern void Vc_ItCfg(en_vc_channel_t Channelx, boolean_t NewStatus);
extern boolean_t Vc_GetItStatus(en_vc_ifr_t Result);
extern void Vc_ClearItStatus(en_vc_ifr_t NewStatus);
extern en_result_t Vc_DacInit(stc_vc_dac_cfg_t *pstcDacCfg);
extern void Vc_Init(stc_vc_channel_cfg_t *pstcChannelCfg);
extern void Vc_Cmd(en_vc_channel_t enChannel, boolean_t NewStatus);
#ifdef __cplusplus
}
#endif
#endif /* __VC_H__ */
/******************************************************************************
* EOF (not truncated)
******************************************************************************/
-135
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@@ -1,135 +0,0 @@
/******************************************************************************
* Copyright (C) 2017, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/*****************************************************************************/
/** \file wdt.h
**
** Headerfile for WDT functions
**
**
** History:
** - 2017-05-10 Cathy First Version
**
*****************************************************************************/
#ifndef __WDT_H__
#define __WDT_H__
#include "ddl.h"
/**
******************************************************************************
** \defgroup WdtGroup Watchdog Timer (WDT)
**
******************************************************************************/
//@{
/******************************************************************************/
/* Global pre-processor symbols/macros ('#define') */
/******************************************************************************/
/******************************************************************************
* Global type definitions
******************************************************************************/
/**
******************************************************************************
** \brief wdt溢出后复位或中断配置
*****************************************************************************/
typedef enum en_wdt_func
{
WdtResetEn = 0, ///<复位使能
WdtIntEn = 1, ///<中断使能
}en_wdt_func_t;
/**
******************************************************************************
** \brief wdt当前运行时间配置数据类型定义
*****************************************************************************/
typedef enum en_wdt_time
{
WdtT1ms6 = 0u, ///<1.6ms
WdtT3ms2 = 1u, ///<3.2ms
WdtT6ms4 = 2u, ///<6.4ms
WdtT13ms = 3u, ///<13ms
WdtT26ms = 4u, ///<26ms
WdtT51ms = 5u, ///<51ms
WdtT102ms = 6u, ///<102ms
WdtT205ms = 7u, ///<205ms
WdtT500ms = 8u, ///<500ms
WdtT820ms = 9u, ///<820ms
WdtT1s64 = 10u, ///<1.64s
WdtT3s28 = 11u, ///<3.28s
WdtT6s55 = 12u, ///<6.55s
WdtT13s1 = 13u, ///<13.1s
WdtT26s2 = 14u, ///<26.2s
WdtT52s4 = 15u, ///<52.4s
}en_wdt_time_t;
//wdt初始化
en_result_t Wdt_Init(en_wdt_func_t enFunc, en_wdt_time_t enTime);
//wdt开始和停止
void Wdt_Start(void);
//喂狗处理
void Wdt_Feed(void);
//喂狗处理
void Wdt_IrqClr(void);
//wdt溢出时间设置
void Wdt_WriteWdtLoad(uint8_t u8LoadValue);
///< 当前计数时间获取
uint8_t Wdt_ReadWdtValue(void);
//< 中断状态获取
boolean_t Wdt_GetIrqStatus(void);
///< 运行状态获取
boolean_t Wdt_ReadwdtStatus(void);
//@} // WdtGroup
#ifdef __cplusplus
#endif
#endif /* __WDT_H__ */
-649
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@@ -1,649 +0,0 @@
/******************************************************************************
* Copyright (C) 2017, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file adc.c
**
** ADC driver API.
**
** - 2017-06-28 Alex First Version
**
******************************************************************************/
/******************************************************************************
* Include files
******************************************************************************/
#include "adc.h"
/**
******************************************************************************
** \addtogroup AdcGroup
******************************************************************************/
//@{
/******************************************************************************
* Local pre-processor symbols/macros ('#define')
******************************************************************************/
/******************************************************************************
* Global variable definitions (declared in header file with 'extern')
******************************************************************************/
/******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/******************************************************************************
* Local function prototypes ('static')
******************************************************************************/
/******************************************************************************
* Local variable definitions ('static')
******************************************************************************/
/*****************************************************************************
* Function implementation - global ('extern') and local ('static')
*****************************************************************************/
/**
* \brief
* 获取ADC中断状态
*
* \param [in] enAdcIrq ADC中断类型 @ref en_adc_irq_type_t
*
* \retval 中断标志
*/
boolean_t Adc_GetIrqStatus(en_adc_irq_type_t enAdcIrq)
{
if(M0P_ADC->IFR&enAdcIrq)
{
return TRUE;
}
else
{
return FALSE;
}
}
/**
* \brief
* 获取ADC中断状态
*
* \param [in] enAdcIrq ADC中断类型 @ref en_adc_irq_type_t
*
* \retval Null
*/
void Adc_ClrIrqStatus(en_adc_irq_type_t enAdcIrq)
{
M0P_ADC->ICR &= ~(uint32_t)enAdcIrq;
}
/**
* \brief
* ADC中断使能
*
* \param 无
*
* \retval 无
*/
void Adc_EnableIrq(void)
{
M0P_ADC->CR0_f.IE = 1u;
}
/**
* \brief
* ADC中断禁止
*
* \param 无
*
* \retval 无
*/
void Adc_DisableIrq(void)
{
M0P_ADC->CR0_f.IE = 0u;
}
/**
* \brief
* ADC初始化
*
* \param [in] pstcAdcCfg ADC配置指针
*
* \retval en_result_t Ok: 配置成功
* \retval en_result_t ErrorInvalidParameter: 无效参数
*/
en_result_t Adc_Init(stc_adc_cfg_t* pstcAdcCfg)
{
if (NULL == pstcAdcCfg)
{
return ErrorInvalidParameter;
}
M0P_ADC->CR0 = 0x1u; ///< ADC 使能
delay10us(2);
M0P_ADC->CR0 |= (uint32_t)pstcAdcCfg->enAdcClkDiv |
(uint32_t)pstcAdcCfg->enAdcRefVolSel |
(uint32_t)pstcAdcCfg->enAdcOpBuf |
(uint32_t)pstcAdcCfg->enAdcSampCycleSel |
(uint32_t)pstcAdcCfg->enInRef;
M0P_ADC->CR1_f.MODE = pstcAdcCfg->enAdcMode;
M0P_ADC->CR1_f.ALIGN = pstcAdcCfg->enAdcAlign;
return Ok;
}
/**
* \brief
* ADC单次转换外部中断触发源配置
*
* \param [in] enAdcTrigSel 触发源
*
* \retval en_result_t Null
*/
void Adc_SglExtTrigCfg(en_adc_trig_sel_t enAdcTrigSel, boolean_t bValue)
{
if(TRUE == bValue)
{
M0P_ADC->EXTTRIGGER0 |= (uint32_t)enAdcTrigSel;
}
else
{
M0P_ADC->EXTTRIGGER0 &= ~(uint32_t)enAdcTrigSel;
}
}
/**
* \brief
* ADC顺序扫描转换外部中断触发源配置
*
* \param [in] enAdcTrigSel 触发源
* \param [in] TRUE or FALSE
*
* \retval en_result_t Null
*/
void Adc_SqrExtTrigCfg(en_adc_trig_sel_t enAdcTrigSel, boolean_t bValue)
{
if(TRUE == bValue)
{
M0P_ADC->EXTTRIGGER0 |= (uint32_t)enAdcTrigSel;
}
else
{
M0P_ADC->EXTTRIGGER0 &= ~(uint32_t)enAdcTrigSel;
}
}
/**
* \brief
* ADC插队扫描转换外部中断触发源配置
*
* \param [in] enAdcTrigSel 触发源
* \param [in] TRUE or FALSE
*
* \retval en_result_t Null
*/
void Adc_JqrExtTrigCfg(en_adc_trig_sel_t enAdcTrigSel, boolean_t bValue)
{
if(TRUE == bValue)
{
M0P_ADC->EXTTRIGGER1 |= (uint32_t)enAdcTrigSel;
}
else
{
M0P_ADC->EXTTRIGGER1 &= ~(uint32_t)enAdcTrigSel;
}
}
/**
* \brief
* ADC 单次转换开始
*
* \param 无
*
* \retval 无
*/
void Adc_SGL_Start(void)
{
M0P_ADC->SGLSTART = 1u;
}
/**
* \brief
* ADC 单次转换停止
*
* \param 无
*
* \retval 无
*/
void Adc_SGL_Stop(void)
{
M0P_ADC->SGLSTART = 0u;
}
/**
* \brief
* ADC 单次转换一直转换开始
*
* \param 无
*
* \retval 无
*/
void Adc_SGL_Always_Start(void)
{
M0P_ADC->ALLSTART = 1u;
}
/**
* \brief
* ADC 单次转换一直转换停止
*
* \param 无
*
* \retval 无
*/
void Adc_SGL_Always_Stop(void)
{
M0P_ADC->ALLSTART = 0u;
}
/**
* \brief
* ADC 顺序扫描转换开始
*
* \param 无
*
* \retval 无
*/
void Adc_SQR_Start(void)
{
M0P_ADC->SQRSTART = 1u;
}
/**
* \brief
* ADC 顺序扫描转换停止
*
* \param 无
*
* \retval 无
*/
void Adc_SQR_Stop(void)
{
M0P_ADC->SQRSTART = 0u;
}
/**
* \brief
* ADC 插队扫描转换开始
*
* \param 无
*
* \retval 无
*/
void Adc_JQR_Start(void)
{
M0P_ADC->JQRSTART = 1u;
}
/**
* \brief
* ADC 插队扫描转换停止
*
* \param 无
*
* \retval 无
*/
void Adc_JQR_Stop(void)
{
M0P_ADC->JQRSTART = 0u;
}
/**
* \brief
* ADC使能
*
* \param 无
*
* \retval 无
*/
void Adc_Enable(void)
{
M0P_ADC->CR0_f.EN = 1u;
}
/**
* \brief
* ADC除能
*
* \param 无
*
* \retval 无
*/
void Adc_Disable(void)
{
M0P_ADC->CR0_f.EN = 0u;
}
/**
* \brief
* 配置顺序扫描转换模式
*
* \param [in] pstcAdcCfg ADC配置指针
* \param [in] pstcAdcNormCfg 连续转换模式配置指针
*
* \retval en_result_t Ok: 配置成功
* \retval en_result_t ErrorInvalidParameter: 无效参数
*/
en_result_t Adc_SqrModeCfg(stc_adc_sqr_cfg_t* pstcAdcSqrCfg)
{
if ((NULL == pstcAdcSqrCfg) || (pstcAdcSqrCfg->u8SqrCnt > 16))
{
return ErrorInvalidParameter;
}
M0P_ADC->CR1_f.RACCCLR = 0; //ADC转换结果累加寄存器(ADC_ResultAcc)清零
M0P_ADC->CR1_f.RACCEN = pstcAdcSqrCfg->enResultAcc;
M0P_ADC->CR1_f.DMASQR = pstcAdcSqrCfg->bSqrDmaTrig;
M0P_ADC->SQR2_f.CNT = pstcAdcSqrCfg->u8SqrCnt - 1;
return Ok;
}
/**
* \brief
* 配置插队扫描转换模式
*
* \param [in] pstcAdcCfg ADC配置指针
* \param [in] pstcAdcNormCfg 扫描转换模式配置指针
*
* \retval en_result_t Ok: 配置成功
* \retval en_result_t ErrorInvalidParameter: 无效参数
*/
en_result_t Adc_JqrModeCfg(stc_adc_jqr_cfg_t* pstcAdcJqrCfg)
{
if ((NULL == pstcAdcJqrCfg) || (pstcAdcJqrCfg->u8JqrCnt > 4))
{
return ErrorInvalidParameter;
}
M0P_ADC->CR1_f.DMASQR = pstcAdcJqrCfg->bJqrDmaTrig;
M0P_ADC->JQR_f.CNT = pstcAdcJqrCfg->u8JqrCnt - 1;
return Ok;
}
/**
* \brief
* 配置单次转换通道
*
* \param [in]enstcAdcSampCh 转换通道
*
* \retval en_result_t Ok: 成功
* \retval en_result_t ErrorInvalidParameter: 无效参数
*/
en_result_t Adc_CfgSglChannel( en_adc_samp_ch_sel_t enstcAdcSampCh)
{
M0P_ADC->CR0_f.SGLMUX = enstcAdcSampCh;
return Ok;
}
/**
* \brief
* 配置顺序扫描转换通道
*
* \param [in]enstcAdcSqrChMux 顺序扫描转换通道顺序
* \param [in]enstcAdcSampCh 转换通道
*
* \retval en_result_t Ok: 成功
* \retval en_result_t ErrorInvalidParameter: 无效参数
*/
en_result_t Adc_CfgSqrChannel(en_adc_sqr_chmux_t enstcAdcSqrChMux, en_adc_samp_ch_sel_t enstcAdcSampCh)
{
en_result_t enResult = Ok;
switch(enstcAdcSqrChMux)
{
case AdcSQRCH0MUX:
M0P_ADC->SQR0_f.CH0MUX = enstcAdcSampCh;
break;
case AdcSQRCH1MUX:
M0P_ADC->SQR0_f.CH1MUX = enstcAdcSampCh;
break;
case AdcSQRCH2MUX:
M0P_ADC->SQR0_f.CH2MUX = enstcAdcSampCh;
break;
case AdcSQRCH3MUX:
M0P_ADC->SQR0_f.CH3MUX = enstcAdcSampCh;
break;
case AdcSQRCH4MUX:
M0P_ADC->SQR0_f.CH4MUX = enstcAdcSampCh;
break;
case AdcSQRCH5MUX:
M0P_ADC->SQR0_f.CH5MUX = enstcAdcSampCh;
break;
case AdcSQRCH6MUX:
M0P_ADC->SQR1_f.CH6MUX = enstcAdcSampCh;
break;
case AdcSQRCH7MUX:
M0P_ADC->SQR1_f.CH7MUX = enstcAdcSampCh;
break;
case AdcSQRCH8MUX:
M0P_ADC->SQR1_f.CH8MUX = enstcAdcSampCh;
break;
case AdcSQRCH9MUX:
M0P_ADC->SQR1_f.CH9MUX = enstcAdcSampCh;
break;
case AdcSQRCH10MUX:
M0P_ADC->SQR1_f.CH10MUX = enstcAdcSampCh;
break;
case AdcSQRCH11MUX:
M0P_ADC->SQR1_f.CH11MUX = enstcAdcSampCh;
break;
case AdcSQRCH12MUX:
M0P_ADC->SQR2_f.CH12MUX = enstcAdcSampCh;
break;
case AdcSQRCH13MUX:
M0P_ADC->SQR2_f.CH13MUX = enstcAdcSampCh;
break;
case AdcSQRCH14MUX:
M0P_ADC->SQR2_f.CH14MUX = enstcAdcSampCh;
break;
case AdcSQRCH15MUX:
M0P_ADC->SQR2_f.CH15MUX = enstcAdcSampCh;
break;
default:
enResult = ErrorInvalidParameter;
break;
}
return enResult;
}
/**
* \brief
* 配置插队扫描转换通道
*
* \param [in]enstcAdcSqrChMux 插队扫描转换通道顺序
* \param [in]enstcAdcSampCh 转换通道
*
* \retval en_result_t Ok: 成功
* \retval en_result_t ErrorInvalidParameter: 无效参数
*/
en_result_t Adc_CfgJqrChannel(en_adc_jqr_chmux_t enstcAdcJqrChMux, en_adc_samp_ch_sel_t enstcAdcSampCh)
{
en_result_t enResult = Ok;
switch(enstcAdcJqrChMux)
{
case AdcJQRCH0MUX:
M0P_ADC->JQR_f.CH0MUX = enstcAdcSampCh;
break;
case AdcJQRCH1MUX:
M0P_ADC->JQR_f.CH1MUX = enstcAdcSampCh;
break;
case AdcJQRCH2MUX:
M0P_ADC->JQR_f.CH2MUX = enstcAdcSampCh;
break;
case AdcJQRCH3MUX:
M0P_ADC->JQR_f.CH3MUX = enstcAdcSampCh;
break;
default:
enResult = ErrorInvalidParameter;
break;
}
return enResult;
}
/**
* \brief
* 获取采样值
*
*
* \retval en_result_t 采样值
*/
uint32_t Adc_GetSglResult(void)
{
return M0P_ADC->RESULT;
}
/**
* \brief
* 获取采样值
*
* \param [in] enstcAdcSqrChMux 顺序扫描通道序号 @ref en_adc_sqr_chmux_t
*
* \retval en_result_t 采样值
*/
uint32_t Adc_GetSqrResult(en_adc_sqr_chmux_t enstcAdcSqrChMux)
{
volatile uint32_t *BaseSqrResultAddress = &(M0P_ADC->SQRRESULT0);
return *(BaseSqrResultAddress + enstcAdcSqrChMux);
}
/**
* \brief
* 获取插队扫描采样值
*
* \param [in] enstcAdcJqrChMux 插队扫描通道序号@ref en_adc_jqr_chmux_t
*
* \retval en_result_t 采样值
*/
uint32_t Adc_GetJqrResult(en_adc_jqr_chmux_t enstcAdcJqrChMux)
{
volatile uint32_t *BaseJqrResultAddress = &(M0P_ADC->JQRRESULT0);
return *(BaseJqrResultAddress + enstcAdcJqrChMux);
}
/**
* \brief
* 获取累加采样值
*
*
* \retval en_result_t 累加采样结果
*/
uint32_t Adc_GetAccResult(void)
{
return M0P_ADC->RESULTACC;
}
/**
* \brief
* 清零累加采样值
*
* \param 无
*
* \retval 无
*/
void Adc_ClrAccResult(void)
{
M0P_ADC->CR1_f.RACCCLR = 0u;
}
/**
* \brief
* ADC比较使能(比较中断)
*
* \param [in] pstcAdcIrqCfg ADC比较配置 @ref stc_adc_threshold_cfg_t
*
* \retval 无
*/
void Adc_ThresholdCfg(stc_adc_threshold_cfg_t* pstcAdcThrCfg)
{
M0P_ADC->HT = pstcAdcThrCfg->u32AdcHighThd;
M0P_ADC->LT = pstcAdcThrCfg->u32AdcLowThd;
M0P_ADC->CR1_f.THCH = pstcAdcThrCfg->enSampChSel;
M0P_ADC->CR1_f.REGCMP = pstcAdcThrCfg->bAdcRegCmp;
M0P_ADC->CR1_f.HTCMP = pstcAdcThrCfg->bAdcHtCmp;
M0P_ADC->CR1_f.LTCMP = pstcAdcThrCfg->bAdcLtCmp;
}
//@} // AdcGroup
/******************************************************************************
* EOF (not truncated)
******************************************************************************/
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-206
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/******************************************************************************
*Copyright(C)2017, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/** \file aes.c
**
** Common API of AES.
** @link AesGroup Some description @endlink
**
** - 2019-04-16
**
******************************************************************************/
/*******************************************************************************
* Include files
******************************************************************************/
#include "aes.h"
/**
*******************************************************************************
** \addtogroup AesGroup
******************************************************************************/
//@{
/*******************************************************************************
* Local pre-processor symbols/macros ('#define')
******************************************************************************/
/*******************************************************************************
* Global variable definitions (declared in header file with 'extern')
******************************************************************************/
/*******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/*******************************************************************************
* Local variable definitions ('static')
******************************************************************************/
/*******************************************************************************
* Local function prototypes ('static')
******************************************************************************/
/*******************************************************************************
* Function implementation - global ('extern') and local ('static')
******************************************************************************/
/**
* \brief
* AES 加密
*
* \param [in] pstcAesCfg AES 配置结构体 @ref stc_aes_cfg_t
*
* \retval en_result_t Ok: 配置成功
* \retval en_result_t ErrorInvalidParameter: 无效参数
*/
en_result_t AES_Encrypt(stc_aes_cfg_t* pstcAesCfg)
{
if (NULL == pstcAesCfg)
{
return ErrorInvalidParameter;
}
M0P_AES->CR_f.KEYSIZE = pstcAesCfg->enKeyLen;
//Key cfg
M0P_AES->KEY0 = pstcAesCfg->pu32Key[0];
M0P_AES->KEY1 = pstcAesCfg->pu32Key[1];
M0P_AES->KEY2 = pstcAesCfg->pu32Key[2];
M0P_AES->KEY3 = pstcAesCfg->pu32Key[3];
if(AesKey192 == pstcAesCfg->enKeyLen)
{
M0P_AES->KEY4 = pstcAesCfg->pu32Key[4];
M0P_AES->KEY5 = pstcAesCfg->pu32Key[5];
}
if(AesKey256 == pstcAesCfg->enKeyLen)
{
M0P_AES->KEY4 = pstcAesCfg->pu32Key[4];
M0P_AES->KEY5 = pstcAesCfg->pu32Key[5];
M0P_AES->KEY6 = pstcAesCfg->pu32Key[6];
M0P_AES->KEY7 = pstcAesCfg->pu32Key[7];
}
//Data cfg
M0P_AES->DATA0 = pstcAesCfg->pu32Plaintext[0];
M0P_AES->DATA1 = pstcAesCfg->pu32Plaintext[1];
M0P_AES->DATA2 = pstcAesCfg->pu32Plaintext[2];
M0P_AES->DATA3 = pstcAesCfg->pu32Plaintext[3];
M0P_AES->CR_f.MODE = 0;//Encry
M0P_AES->CR_f.START = 1;
while(M0P_AES->CR_f.START == 1)
{
;
}
pstcAesCfg->pu32Cipher[0] = M0P_AES->DATA0;
pstcAesCfg->pu32Cipher[1] = M0P_AES->DATA1;
pstcAesCfg->pu32Cipher[2] = M0P_AES->DATA2;
pstcAesCfg->pu32Cipher[3] = M0P_AES->DATA3;
return Ok;
}
/**
* \brief
* AES 解密
*
* \param [in] pstcAesCfg AES 配置结构体 @ref stc_aes_cfg_t
*
* \retval en_result_t Ok: 配置成功
* \retval en_result_t ErrorInvalidParameter: 无效参数
*/
en_result_t AES_Decrypt(stc_aes_cfg_t* pstcAesCfg)
{
if (NULL == pstcAesCfg)
{
return ErrorInvalidParameter;
}
M0P_AES->CR_f.KEYSIZE = pstcAesCfg->enKeyLen;
//Key cfg
M0P_AES->KEY0 = pstcAesCfg->pu32Key[0];
M0P_AES->KEY1 = pstcAesCfg->pu32Key[1];
M0P_AES->KEY2 = pstcAesCfg->pu32Key[2];
M0P_AES->KEY3 = pstcAesCfg->pu32Key[3];
if(AesKey192 == pstcAesCfg->enKeyLen)
{
M0P_AES->KEY4 = pstcAesCfg->pu32Key[4];
M0P_AES->KEY5 = pstcAesCfg->pu32Key[5];
}
if(AesKey256 == pstcAesCfg->enKeyLen)
{
M0P_AES->KEY4 = pstcAesCfg->pu32Key[4];
M0P_AES->KEY5 = pstcAesCfg->pu32Key[5];
M0P_AES->KEY6 = pstcAesCfg->pu32Key[6];
M0P_AES->KEY7 = pstcAesCfg->pu32Key[7];
}
//Data cfg
M0P_AES->DATA0 = pstcAesCfg->pu32Cipher[0];
M0P_AES->DATA1 = pstcAesCfg->pu32Cipher[1];
M0P_AES->DATA2 = pstcAesCfg->pu32Cipher[2];
M0P_AES->DATA3 = pstcAesCfg->pu32Cipher[3];
M0P_AES->CR_f.MODE = 1;//UnEncry
M0P_AES->CR_f.START = 1;
while(M0P_AES->CR_f.START == 1)
{
;
}
pstcAesCfg->pu32Plaintext[0] = M0P_AES->DATA0;
pstcAesCfg->pu32Plaintext[1] = M0P_AES->DATA1;
pstcAesCfg->pu32Plaintext[2] = M0P_AES->DATA2;
pstcAesCfg->pu32Plaintext[3] = M0P_AES->DATA3;
return Ok;
}
//@} // AesGroup
/*******************************************************************************
* EOF (not truncated)
******************************************************************************/
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/******************************************************************************
*Copyright(C)2018, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/** \file bgr.c
**
** Common API of bgr.
** @link flashGroup Some description @endlink
**
** - 2018-05-08
**
******************************************************************************/
/*******************************************************************************
* Include files
******************************************************************************/
#include "bgr.h"
/**
*******************************************************************************
** \addtogroup FlashGroup
******************************************************************************/
//@{
/*******************************************************************************
* Local pre-processor symbols/macros ('#define')
******************************************************************************/
/*******************************************************************************
* Global variable definitions (declared in header file with 'extern')
******************************************************************************/
/*******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/*******************************************************************************
* Local variable definitions ('static')
******************************************************************************/
/*******************************************************************************
* Local function prototypes ('static')
******************************************************************************/
/*******************************************************************************
* Function implementation - global ('extern') and local ('static')
******************************************************************************/
/**
*****************************************************************************
** \brief BGR 使能
**
**
** \retval Null
*****************************************************************************/
void Bgr_BgrEnable(void)
{
M0P_BGR->CR |= 0x1u;
delay10us(2);
}
/**
*****************************************************************************
** \brief BGR 禁止
**
**
** \retval Null
*****************************************************************************/
void Bgr_BgrDisable(void)
{
M0P_BGR->CR &= 0x2u;
}
/**
*****************************************************************************
** \brief BGR 温度传感器使能(需要先开启BGR)
**
**
** \retval Null
*****************************************************************************/
void Bgr_TempSensorEnable(void)
{
M0P_BGR->CR |= 0x2u;
delay10us(2);
}
/**
*****************************************************************************
** \brief BGR 温度传感器禁止
**
**
** \retval Null
*****************************************************************************/
void Bgr_TempSensorDisable(void)
{
M0P_BGR->CR &= 0x1u;
}
//@} // BgrGroup
/*******************************************************************************
* EOF (not truncated)
******************************************************************************/
-1381
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-438
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/******************************************************************************
*Copyright(C)2017, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/** \file crc.c
**
** Common API of crc.
** @link crcGroup Some description @endlink
**
** - 2017-05-16
**
******************************************************************************/
/*******************************************************************************
* Include files
******************************************************************************/
#include "crc.h"
/**
*******************************************************************************
** \addtogroup CrcGroup
******************************************************************************/
//@{
/*******************************************************************************
* Local pre-processor symbols/macros ('#define')
******************************************************************************/
/*******************************************************************************
* Global variable definitions (declared in header file with 'extern')
******************************************************************************/
/*******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/*******************************************************************************
* Local variable definitions ('static')
******************************************************************************/
/*******************************************************************************
* Local function prototypes ('static')
******************************************************************************/
/*******************************************************************************
* Function implementation - global ('extern') and local ('static')
******************************************************************************/
/**
*****************************************************************************
** \brief CRC16 编码(字节填充方式)
**
** 该函数主要用于生成CRC16编码.
**
** \param [in] pu8Data 待编码数据指针(字节方式输入)
** \param [in] u32Len 待编码数据长度(字节数)
**
** \retval CRC16 CRC16编码值.
*****************************************************************************/
uint16_t CRC16_Get8(uint8_t* pu8Data, uint32_t u32Len)
{
uint32_t u32Index = 0;
M0P_CRC->CR_f.CR = 0;
M0P_CRC->RESULT = 0xFFFF;
for(u32Index = 0;u32Index<u32Len;u32Index++)
{
*((volatile uint8_t*)(&(M0P_CRC->DATA))) = pu8Data[u32Index];
}
return (M0P_CRC->RESULT_f.RESULT);
}
/**
*****************************************************************************
** \brief CRC16 编码(半字填充方式)
**
** 该函数主要用于生成CRC16编码.
**
** \param [in] pu16Data 待编码数据指针(半字方式输入)
** \param [in] u32Len 待编码数据长度(半字数)
**
** \retval CRC16 CRC16编码值.
*****************************************************************************/
uint16_t CRC16_Get16(uint16_t* pu16Data, uint32_t u32Len)
{
uint32_t u32Index = 0;
M0P_CRC->CR_f.CR = 0;
M0P_CRC->RESULT_f.RESULT = 0xFFFF;
for (u32Index=0; u32Index<u32Len; u32Index++)
{
*((volatile uint16_t*)(&(M0P_CRC->DATA))) = pu16Data[u32Index];
}
return (M0P_CRC->RESULT_f.RESULT);
}
/**
*****************************************************************************
** \brief CRC16 编码(字填充方式)
**
** 该函数主要用于生成CRC16编码.
**
** \param [in] pu32Data 待编码数据指针(字方式输入)
** \param [in] u32Len 待编码数据长度(字数)
**
** \retval CRC16 CRC16编码值.
*****************************************************************************/
uint16_t CRC16_Get32(uint32_t* pu32Data, uint32_t u32Len)
{
uint32_t u32Index = 0;
M0P_CRC->CR_f.CR = 0;
M0P_CRC->RESULT_f.RESULT = 0xFFFF;
for (u32Index=0; u32Index<u32Len; u32Index++)
{
M0P_CRC->DATA_f.DATA = pu32Data[u32Index];
}
return (M0P_CRC->RESULT_f.RESULT);
}
/**
*****************************************************************************
** \brief CRC16 校验(字节填充方式)
**
** 该函数主要用于对数据及CRC16值进行校验.
**
** \param [in] pu8Data 待校验数据指针(字节方式输入)
** \param [in] u32Len 待校验数据长度(字节数)
** \param [in] u16CRC 待校验CRC16值
**
** \retval Ok CRC校验正确
** \retval Error CRC校验错误
*****************************************************************************/
en_result_t CRC16_Check8(uint8_t* pu8Data, uint32_t u32Len, uint16_t u16CRC)
{
en_result_t enResult = Ok;
uint32_t u32Index = 0;
M0P_CRC->CR_f.CR = 0;
M0P_CRC->RESULT_f.RESULT = 0xFFFF;
for (u32Index=0; u32Index<u32Len; u32Index++)
{
*((volatile uint8_t*)(&(M0P_CRC->DATA))) = pu8Data[u32Index];
}
*((volatile uint8_t*)(&(M0P_CRC->DATA))) = (uint8_t)((((uint32_t)u16CRC)>>0)&0xFF);
*((volatile uint8_t*)(&(M0P_CRC->DATA))) = (uint8_t)(((uint32_t)u16CRC>>8)&0xFF);
enResult = M0P_CRC->CR_f.FLAG ? Ok : Error;
return (enResult);
}
/**
*****************************************************************************
** \brief CRC16 校验(半字填充方式)
**
** 该函数主要用于对数据及CRC16值进行校验.
**
** \param [in] pu16Data 待校验数据指针(半字方式输入)
** \param [in] u32Len 待校验数据长度(半字数)
** \param [in] u16CRC 待校验CRC16值
**
** \retval Ok CRC校验正确
** \retval Error CRC校验错误
*****************************************************************************/
en_result_t CRC16_Check16(uint16_t* pu16Data, uint32_t u32Len, uint16_t u16CRC)
{
en_result_t enResult = Ok;
uint32_t u32Index = 0;
M0P_CRC->CR_f.CR = 0;
M0P_CRC->RESULT_f.RESULT = 0xFFFF;
for (u32Index=0; u32Index<u32Len; u32Index++)
{
*((volatile uint16_t*)(&(M0P_CRC->DATA))) = pu16Data[u32Index];
}
*((volatile uint16_t*)(&(M0P_CRC->DATA))) = u16CRC;
enResult = M0P_CRC->CR_f.FLAG ? Ok : Error;
return (enResult);
}
/**
*****************************************************************************
** \brief CRC16 校验(字填充方式)
**
** 该函数主要用于对数据及CRC16值进行校验.
**
** \param [in] pu32Data 待校验数据指针(字方式输入)
** \param [in] u32Len 待校验数据长度(字数)
** \param [in] u16CRC 待校验CRC16值
**
** \retval Ok CRC校验正确
** \retval Error CRC校验错误
*****************************************************************************/
en_result_t CRC16_Check32(uint32_t* pu32Data, uint32_t u32Len, uint16_t u16CRC)
{
en_result_t enResult = Ok;
uint32_t u32Index = 0;
M0P_CRC->CR_f.CR = 0;
M0P_CRC->RESULT_f.RESULT = 0xFFFFFFFFu;
for (u32Index=0; u32Index<u32Len; u32Index++)
{
*((volatile uint32_t*)(&(M0P_CRC->DATA))) = pu32Data[u32Index];
}
*((volatile uint16_t*)(&(M0P_CRC->DATA))) = ((uint16_t)u16CRC);
enResult = M0P_CRC->CR_f.FLAG ? Ok : Error;
return (enResult);
}
/**
*****************************************************************************
** \brief CRC16 编码(字节填充方式)
**
** 该函数主要用于生成CRC16编码.
**
** \param [in] pu8Data 待编码数据指针(字节方式输入)
** \param [in] u32Len 待编码数据长度(字节数)
**
** \retval CRC16 CRC16编码值.
*****************************************************************************/
uint32_t CRC32_Get8(uint8_t* pu8Data, uint32_t u32Len)
{
uint32_t u32Index = 0;
M0P_CRC->CR_f.CR = 1;
M0P_CRC->RESULT = 0xFFFFFFFFu;
for(u32Index = 0;u32Index<u32Len;u32Index++)
{
*((volatile uint8_t*)(&(M0P_CRC->DATA))) = pu8Data[u32Index];
}
return (M0P_CRC->RESULT_f.RESULT);
}
/**
*****************************************************************************
** \brief CRC16 编码(半字填充方式)
**
** 该函数主要用于生成CRC16编码.
**
** \param [in] pu16Data 待编码数据指针(半字方式输入)
** \param [in] u32Len 待编码数据长度(半字数)
**
** \retval CRC16 CRC16编码值.
*****************************************************************************/
uint32_t CRC32_Get16(uint16_t* pu16Data, uint32_t u32Len)
{
uint32_t u32Index = 0;
M0P_CRC->CR_f.CR = 1;
M0P_CRC->RESULT_f.RESULT = 0xFFFFFFFFu;
for (u32Index=0; u32Index<u32Len; u32Index++)
{
*((volatile uint16_t*)(&(M0P_CRC->DATA))) = pu16Data[u32Index];
}
return (M0P_CRC->RESULT_f.RESULT);
}
/**
*****************************************************************************
** \brief CRC16 编码(字填充方式)
**
** 该函数主要用于生成CRC16编码.
**
** \param [in] pu32Data 待编码数据指针(字方式输入)
** \param [in] u32Len 待编码数据长度(字数)
**
** \retval CRC16 CRC16编码值.
*****************************************************************************/
uint32_t CRC32_Get32(uint32_t* pu32Data, uint32_t u32Len)
{
uint32_t u32Index = 0;
M0P_CRC->CR_f.CR = 1;
M0P_CRC->RESULT_f.RESULT = 0xFFFFFFFFu;
for (u32Index=0; u32Index<u32Len; u32Index++)
{
M0P_CRC->DATA_f.DATA = pu32Data[u32Index];
}
return (M0P_CRC->RESULT_f.RESULT);
}
/**
*****************************************************************************
** \brief CRC16 校验(字节填充方式)
**
** 该函数主要用于对数据及CRC16值进行校验.
**
** \param [in] pu8Data 待校验数据指针(字节方式输入)
** \param [in] u32Len 待校验数据长度(字节数)
** \param [in] u16CRC 待校验CRC16值
**
** \retval Ok CRC校验正确
** \retval Error CRC校验错误
*****************************************************************************/
en_result_t CRC32_Check8(uint8_t* pu8Data, uint32_t u32Len, uint32_t u32CRC)
{
en_result_t enResult = Ok;
uint32_t u32Index = 0;
M0P_CRC->CR_f.CR = 1;
M0P_CRC->RESULT_f.RESULT = 0xFFFFFFFFu;
for (u32Index=0; u32Index<u32Len; u32Index++)
{
*((volatile uint8_t*)(&(M0P_CRC->DATA))) = pu8Data[u32Index];
}
*((volatile uint8_t*)(&(M0P_CRC->DATA))) = (uint8_t)((u32CRC>>0)&0xFF);
*((volatile uint8_t*)(&(M0P_CRC->DATA))) = (uint8_t)((u32CRC>>8)&0xFF);
*((volatile uint8_t*)(&(M0P_CRC->DATA))) = (uint8_t)((u32CRC>>16)&0xFF);
*((volatile uint8_t*)(&(M0P_CRC->DATA))) = (uint8_t)((u32CRC>>24)&0xFF);
enResult = M0P_CRC->CR_f.FLAG ? Ok : Error;
return (enResult);
}
/**
*****************************************************************************
** \brief CRC16 校验(半字填充方式)
**
** 该函数主要用于对数据及CRC16值进行校验.
**
** \param [in] pu16Data 待校验数据指针(半字方式输入)
** \param [in] u32Len 待校验数据长度(半字数)
** \param [in] u16CRC 待校验CRC16值
**
** \retval Ok CRC校验正确
** \retval Error CRC校验错误
*****************************************************************************/
en_result_t CRC32_Check16(uint16_t* pu16Data, uint32_t u32Len, uint32_t u32CRC)
{
en_result_t enResult = Ok;
uint32_t u32Index = 0;
M0P_CRC->CR_f.CR = 1;
M0P_CRC->RESULT_f.RESULT = 0xFFFFFFFFu;
for (u32Index=0; u32Index<u32Len; u32Index++)
{
*((volatile uint16_t*)(&(M0P_CRC->DATA))) = pu16Data[u32Index];
}
*((volatile uint16_t*)(&(M0P_CRC->DATA))) = (uint16_t)((u32CRC>>0)&0xFFFF);
*((volatile uint16_t*)(&(M0P_CRC->DATA))) = (uint16_t)((u32CRC>>16)&0xFFFF);
enResult = M0P_CRC->CR_f.FLAG ? Ok : Error;
return (enResult);
}
/**
*****************************************************************************
** \brief CRC16 校验(字填充方式)
**
** 该函数主要用于对数据及CRC16值进行校验.
**
** \param [in] pu32Data 待校验数据指针(字方式输入)
** \param [in] u32Len 待校验数据长度(字数)
** \param [in] u16CRC 待校验CRC16值
**
** \retval Ok CRC校验正确
** \retval Error CRC校验错误
*****************************************************************************/
en_result_t CRC32_Check32(uint32_t* pu32Data, uint32_t u32Len, uint32_t u32CRC)
{
en_result_t enResult = Ok;
uint32_t u32Index = 0;
M0P_CRC->CR_f.CR = 1;
M0P_CRC->RESULT_f.RESULT = 0xFFFFFFFFu;
for (u32Index=0; u32Index<u32Len; u32Index++)
{
*((volatile uint32_t*)(&(M0P_CRC->DATA))) = pu32Data[u32Index];
}
*((volatile uint32_t*)(&(M0P_CRC->DATA))) = u32CRC;
enResult = M0P_CRC->CR_f.FLAG ? Ok : Error;
return (enResult);
}
//@} // CrcGroup
/*******************************************************************************
* EOF (not truncated)
******************************************************************************/
-253
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@@ -1,253 +0,0 @@
/******************************************************************************
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file dac.c
**
** dac driver API.
**
** - 2019-04-10 First Version
**
******************************************************************************/
/******************************************************************************
* Include files
******************************************************************************/
#include "dac.h"
/**
******************************************************************************
** \addtogroup AdcGroup
******************************************************************************/
//@{
/******************************************************************************
* Local pre-processor symbols/macros ('#define')
******************************************************************************/
/******************************************************************************
* Global variable definitions (declared in header file with 'extern')
******************************************************************************/
/******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/******************************************************************************
* Local function prototypes ('static')
******************************************************************************/
/******************************************************************************
* Local variable definitions ('static')
******************************************************************************/
/*****************************************************************************
* Function implementation - global ('extern') and local ('static')
*****************************************************************************/
/**
******************************************************************************
** \brief 使能相关通道的DMA DMA_CR0中的DMAEN0
**
** @param NewState : TRUE 或者 FALSE
** \retval 无
**
******************************************************************************/
void Dac_DmaCmd(boolean_t NewState)
{
SetBit((uint32_t)(&(M0P_DAC->CR0)), 12, NewState);
}
/**
******************************************************************************
** \brief 配置DAC的DMA下溢中断, DMA_CR0中的DMAUDRIE0
**
** @param NewState : TRUE 或者 FALSE
** \retval 无
**
******************************************************************************/
void Dac_DmaITCfg(boolean_t NewState)
{
SetBit((uint32_t)(&(M0P_DAC->CR0)), 13, NewState);
}
/**
******************************************************************************
** \brief 获取DAC的DMA下溢中断标志位状态, DMA_SR中的DMAUDR0
**
** @param 无
** \retval TRUE 或 FALSE
**
******************************************************************************/
boolean_t Dac_GetITStatus(void)
{
return GetBit((uint32_t)(&(M0P_DAC->SR)), 13);
}
/**
******************************************************************************
** \brief 配置DAC的使能与禁止, DMA_CR0中的EN0
**
** @param NewState : TRUE 或者 FALSE
** \retval 无
**
******************************************************************************/
void Dac_Cmd(boolean_t NewState)
{
SetBit((uint32_t)(&(M0P_DAC->CR0)), 0, NewState);
}
/**
******************************************************************************
** \brief 软件触发寄存器,触发DAC转换 DMA_SWTRIGR中的SWTRIG0
**
** @param 无
** \retval 无
**
******************************************************************************/
void Dac_SoftwareTriggerCmd(void)
{
SetBit((uint32_t)(&(M0P_DAC->SWTRIGR)), 0, 1);
}
/**
******************************************************************************
** \brief 初始化DAC0
**
** @param DAC_InitStruct : 用于初始化DAC0的结构体
** \retval 无
**
******************************************************************************/
void Dac_Init(stc_dac_cfg_t* DAC_InitStruct)
{
M0P_DAC->CR0_f.BOFF0 = DAC_InitStruct->boff_t;
M0P_DAC->CR0_f.TEN0 = DAC_InitStruct->ten_t;
M0P_DAC->CR0_f.TSEL0 = DAC_InitStruct->tsel_t;
M0P_DAC->CR0_f.WAVE0 = DAC_InitStruct->wave_t;
M0P_DAC->CR0_f.MAMP0 = DAC_InitStruct->mamp_t;
M0P_DAC->CR0_f.SREF0 = DAC_InitStruct->sref_t;
if(DAC_InitStruct->align == DacLeftAlign)
{
M0P_DAC->DHR12L0_f.DHR0 = DAC_InitStruct->dhr12;
}
else if(DAC_InitStruct->align == DacRightAlign)
{
M0P_DAC->DHR12R0_f.DHR0 = DAC_InitStruct->dhr12;
}
else
{
M0P_DAC->DHR8R0_f.DHR0 = DAC_InitStruct->dhr8;
}
}
/**
******************************************************************************
** \brief 向DAC0的数据保持寄存器写数据
**
** @param DAC_Channel: Dac_0
** @param DAC_Align : Right_Align 与Left_Align
** @param DAC_Bit : Bit8 与Bit12
** @param Data : 所要发送的数据
** \retval 无
**
******************************************************************************/
void Dac_SetChannelData(en_align_t DAC_Align, en_bitno_t DAC_Bit, uint16_t Data)
{
if(DAC_Align == DacRightAlign)
{
if(DAC_Bit == DacBit8)
{
M0P_DAC->DHR8R0_f.DHR0 = (uint8_t)Data;
}
else if(DAC_Bit == DacBit12)
{
M0P_DAC->DHR12R0_f.DHR0 = Data;
}
else
{
return;
}
}
else if(DAC_Align == DacLeftAlign)
{
if(DAC_Bit == DacBit8)
{
return;
}
else if(DAC_Bit == DacBit12)
{
M0P_DAC->DHR12L0_f.DHR0 = Data;
}
else
{
return;
}
}
else
{
return;
}
}
/**
******************************************************************************
** \brief 获取DAC数据输出寄存器DAC_DOR0
**
** @param 无
** \retval DAC_DOR0的值
**
******************************************************************************/
uint16_t Dac_GetDataOutputValue(void)
{
uint16_t tmp;
tmp = M0P_DAC->DOR0_f.DOR0;
return tmp&0x0fff;
}
/******************************************************************************
* EOF (not truncated)
******************************************************************************/
-250
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/*******************************************************************************
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file ddl.c
**
** Common API of DDL.
** @link ddlGroup Some description @endlink
**
** - 2019-03-03
**
******************************************************************************/
/******************************************************************************/
/* Include files */
/******************************************************************************/
#include "ddl.h"
/**
******************************************************************************
** \addtogroup DDL Common Functions
******************************************************************************/
//@{
/******************************************************************************/
/* Local pre-processor symbols/macros ('#define') */
/******************************************************************************/
/******************************************************************************/
/* Global variable definitions (declared in header file with 'extern') */
/******************************************************************************/
/******************************************************************************/
/* Local type definitions ('typedef') */
/******************************************************************************/
/******************************************************************************/
/* Local variable definitions ('static') */
/******************************************************************************/
/******************************************************************************/
/* Local function prototypes ('static') */
/******************************************************************************/
/******************************************************************************/
/* Function implementation - global ('extern') and local ('static') */
/******************************************************************************/
#ifndef __DEBUG
#define __DEBUG
//#define __CC_ARM
#endif
uint32_t Log2(uint32_t u32Val)
{
uint32_t u32V1 = 0;
if(0u == u32Val)
{
return 0;
}
while(u32Val > 1u)
{
u32V1++;
u32Val /=2;
}
return u32V1;
}
/**
*******************************************************************************
** \brief Memory clear function for DDL_ZERO_STRUCT()
******************************************************************************/
void ddl_memclr(void *pu8Address, uint32_t u32Count)
{
uint8_t *pu8Addr = (uint8_t *)pu8Address;
if(NULL == pu8Addr)
{
return;
}
while (u32Count--)
{
*pu8Addr++ = 0;
}
}
/**
* \brief delay1ms
* delay approximately 1ms.
* \param [in] u32Cnt
* \retval void
*/
void delay1ms(uint32_t u32Cnt)
{
uint32_t u32end;
SysTick->LOAD = 0xFFFFFF;
SysTick->VAL = 0;
SysTick->CTRL = SysTick_CTRL_ENABLE_Msk | SysTick_CTRL_CLKSOURCE_Msk;
while(u32Cnt-- > 0)
{
SysTick->VAL = 0;
u32end = 0x1000000 - SystemCoreClock/1000;
while(SysTick->VAL > u32end)
{
;
}
}
SysTick->CTRL = (SysTick->CTRL & (~SysTick_CTRL_ENABLE_Msk));
}
/**
* \brief delay100us
* delay approximately 100us.
* \param [in] u32Cnt
* \retval void
*/
void delay100us(uint32_t u32Cnt)
{
uint32_t u32end;
SysTick->LOAD = 0xFFFFFF;
SysTick->VAL = 0;
SysTick->CTRL = SysTick_CTRL_ENABLE_Msk | SysTick_CTRL_CLKSOURCE_Msk;
while(u32Cnt-- > 0)
{
SysTick->VAL = 0;
u32end = 0x1000000 - SystemCoreClock/10000;
while(SysTick->VAL > u32end)
{
;
}
}
SysTick->CTRL = (SysTick->CTRL & (~SysTick_CTRL_ENABLE_Msk));
}
/**
* \brief delay10us
* delay approximately 10us.
* \param [in] u32Cnt
* \retval void
*/
void delay10us(uint32_t u32Cnt)
{
uint32_t u32end;
SysTick->LOAD = 0xFFFFFF;
SysTick->VAL = 0;
SysTick->CTRL = SysTick_CTRL_ENABLE_Msk | SysTick_CTRL_CLKSOURCE_Msk;
while(u32Cnt-- > 0)
{
SysTick->VAL = 0;
u32end = 0x1000000 - SystemCoreClock/100000;
while(SysTick->VAL > u32end)
{
;
}
}
SysTick->CTRL = (SysTick->CTRL & (~SysTick_CTRL_ENABLE_Msk));
}
/**
* \brief set register bit
*
* \param [in] addr
* \param [in] offset
* \retval void
*/
void SetBit(uint32_t addr, uint32_t offset, boolean_t bFlag)
{
if(TRUE == bFlag)
{
*((volatile uint32_t *)(addr)) |= ((1UL)<<(offset));
}
else
{
*((volatile uint32_t *)(addr)) &= (~(1UL<<(offset)));
}
}
/**
* \brief get register bit
*
* \param [in] addr
* \param [in] offset
* \retval void
*/
boolean_t GetBit(uint32_t addr, uint32_t offset)
{
return ((((*((volatile uint32_t *)(addr))) >> (offset)) & 1u) > 0) ? TRUE : FALSE;
}
//@} // DDL Functions
/******************************************************************************
* EOF (not truncated)
******************************************************************************/
-119
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@@ -1,119 +0,0 @@
/******************************************************************************
*Copyright(C)2018, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/** \file debug.c
**
** Common API of debug.
** @link flashGroup Some description @endlink
**
** - 2018-05-08
**
******************************************************************************/
/*******************************************************************************
* Include files
******************************************************************************/
#include "debug.h"
/**
*******************************************************************************
** \addtogroup FlashGroup
******************************************************************************/
//@{
/*******************************************************************************
* Local pre-processor symbols/macros ('#define')
******************************************************************************/
/*******************************************************************************
* Global variable definitions (declared in header file with 'extern')
******************************************************************************/
/*******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/*******************************************************************************
* Local variable definitions ('static')
******************************************************************************/
/*******************************************************************************
* Local function prototypes ('static')
******************************************************************************/
/*******************************************************************************
* Function implementation - global ('extern') and local ('static')
******************************************************************************/
/**
*****************************************************************************
** \brief 调试模式下模块功能计数使能
**
**
** \retval TRUE or FALSE
*****************************************************************************/
en_result_t Debug_ActiveEnable(en_debug_module_active_t enModule)
{
M0P_DEBUG_ACTIVE->DEBUG_ACTIVE &= ~(uint32_t)enModule;
return Ok;
}
/**
*****************************************************************************
** \brief 调试模式下模块功能计数暂停
**
**
** \retval TRUE or FALSE
*****************************************************************************/
en_result_t Debug_ActiveDisable(en_debug_module_active_t enModule)
{
M0P_DEBUG_ACTIVE->DEBUG_ACTIVE |= (uint32_t)enModule;
return Ok;
}
//@} // BgrGroup
/*******************************************************************************
* EOF (not truncated)
******************************************************************************/
-624
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@@ -1,624 +0,0 @@
/******************************************************************************
* Copyright (C) 2016, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file dmac.c
**
** A detailed description is available at
** @link DmacGroup Dmac description @endlink
**
** - 2018-03-09 1.0 Hongjh First version for Device Driver Library of Dmac.
**
******************************************************************************/
/*******************************************************************************
* Include files
******************************************************************************/
#include "dmac.h"
/**
*******************************************************************************
** \addtogroup DmacGroup
******************************************************************************/
//@{
/*******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/*******************************************************************************
* Local pre-processor symbols/macros ('#define')
******************************************************************************/
/******************************************************************************/
/* DMA */
/******************************************************************************/
/************** Bits definition for DMA_CONFBx(x=0~1) register *************/
#define DMA_TRANSFER_WIDTH_Pos (26U) /*!< DMAC_CONFBx: ERR_IE Position */
#define DMA_TRANSFER_WIDTH_Msk (0x03U << DMA_TRANSFER_WIDTH_Pos) /*!< DMAC_CONFBx: ERR_IE Mask 0x0C000000 */
/************** Bits definition for DMA_CONFBx(x=0~1) register *************/
#define DMA_ERR_IE_Pos (20U) /*!< DMAC_CONFBx: ERR_IE Position */
#define DMA_ERR_IE_Msk (0x01U << DMA_ERR_IE_Pos) /*!< DMAC_CONFBx: ERR_IE Mask 0x00000010 */
/************** Bits definition for DMA_CONFBx(x=0~1) register *************/
#define DMA_FIS_IE_Pos (19U) /*!< DMAC_CONFBx: FIS_IE Position */
#define DMA_FIS_IE_Msk (0x01U << DMA_FIS_IE_Pos) /*!< DMAC_CONFBx: FIS_IE Mask 0x00000010 */
/************** Bits definition for DMA_CONFBx(x=0~1) register *************/
#define DMA_STAT_Pos (16U) /*!< DMAC_CONFBx: STAT Position */
#define DMA_STAT_Msk (0x07U << DMA_STAT_Pos) /*!< DMAC_CONFBx: STAT Mask 0x00070000 */
/************** Bits definition for DMA_CONFBx(x=0~1) register *************/
#define DMA_TRANSFER_RELOAD_Pos (0U) /*!< DMAC_CONFBx: MSK Position */
#define DMA_TRANSFER_RELOAD_Msk (0x01U << DMA_TRANSFER_RELOAD_Pos) /*!< DMAC_CONFBx: MSK Mask 0x00000010 */
/************** Bits definition for DMA_CONFAx(x=0~1) register *************/
#define DMA_CH_ENABLE_Pos (31U) /*!< DMAC_CONFAx: ENS Position */
#define DMA_CH_ENABLE_Msk (0x01U << DMA_CH_ENABLE_Pos) /*!< DMAC_CONFAx: ENS Mask 0x80000000 */
/************** Bits definition for DMA_CONFAx(x=0~1) register *************/
#define DMA_CH_PAUSE_Pos (30U) /*!< DMAC_CONFAx: PAS Position */
#define DMA_CH_PAUSE_Msk (0x01U << DMA_CH_PAUSE_Pos) /*!< DMAC_CONFAx: PAS Mask 0x40000000 */
/************** Bits definition for DMA_CONFAx(x=0~1) register *************/
#define DMA_SOFTWARE_START_Pos (29U) /*!< DMAC_CONFAx: ENS Position */
#define DMA_SOFTWARE_START_Msk (0x01U << DMA_SOFTWARE_START_Pos) /*!< DMAC_CONFAx: ENS Mask 0x20000000 */
/************** Bits definition for DMA_CONFAx(x=0~1) register *************/
#define DMA_TRI_SEL_Pos (22U) /*!< DMAC_CONFAx: TRISEL Position */
#define DMA_TRI_SEL_Msk (0x7FU << DMA_TRI_SEL_Pos) /*!< DMAC_CONFAx: TRISEL Mask 0x1FC00000 */
/************** Bits definition for DMA_CONFAx(x=0~1) register *************/
#define DMA_BC_SEL_Pos (16U) /*!< DMAC_CONFAx: TRISEL Position */
#define DMA_BC_SEL_Msk (0x0FU << DMA_BC_SEL_Pos) /*!< DMAC_CONFAx: TRISEL Mask 0x000F0000 */
/************** Bits definition for DMA_CONFAx(x=0~1) register *************/
#define DMA_TC_SEL_Pos (0U) /*!< DMAC_CONFAx: TRISEL Position */
#define DMA_TC_SEL_Msk (0xFFFFU << DMA_TC_SEL_Pos) /*!< DMAC_CONFAx: TRISEL Mask 0x0000FFFF */
/************** Bits definition for DMA_CONF register *************/
#define DMA_ENABLE_Pos (31U) /*!< DMAC_CONF: TRISEL Position */
#define DMA_ENABLE_Msk (0x01U << DMA_ENABLE_Pos) /*!< DMAC_CONF: TRISEL Mask 0x80000000 */
/************** Bits definition for DMA_CONF register *************/
#define DMA_PRIORITY_Pos (28U) /*!< DMAC_CONF: TRISEL Position */
#define DMA_PRIORITY_Msk (0x01U << DMA_PRIORITY_Pos) /*!< DMAC_CONF: TRISEL Mask 0x10000000 */
/*! Dmac通道参数有效性检查. */
#define IS_VALID_CH(x) \
( (DmaCh0 == (x)) || \
(DmaCh1 == (x)))
/*! DMA 传输数据宽度,参数有效性检查. */
#define IS_VALID_TRN_WIDTH(x) \
( (DmaMsk8Bit == (x)) || \
(DmaMsk16Bit == (x)) || \
(DmaMsk32Bit == (x)))
/*! DMA源地址控制模式,参数有效性检查. */
#define IS_VALID_SRC_ADDR_MODE(x) \
( (DmaMskSrcAddrFix == (x)) || \
(DmaMskSrcAddrInc == (x)))
/*! DMA目的地址控制模式,参数有效性检查. */
#define IS_VALID_DST_ADDR_MODE(x) \
( (DmaMskDstAddrFix == (x)) || \
(DmaMskDstAddrInc == (x)))
/*! DMA 优先级, 参数有效性检查. */
#define IS_VALID_PRIO_MODE(x) \
( (DmaMskPriorityFix == (x)) || \
(DmaMskPriorityLoop == (x)))
/*! DMA 传输模式,参数有效性检查. */
#define IS_VALID_TRANSFER_MODE(x) \
( (DmaMskOneTransfer == (x)) || \
(DmaMskContinuousTransfer == (x)))
/*! 块传输大小,参数有效性检查. */
#define IS_VALID_BLKSIZE(x) ((!((x) & ~(DMA_BC_SEL_Msk >> DMA_BC_SEL_Pos)))&&((x)>0))
/*! 块传输次数,参数有效性检查. */
#define IS_VALID_TRNCNT(x) (!((x) & ~(DMA_TC_SEL_Msk >> DMA_TC_SEL_Pos)))
/*******************************************************************************
* Global variable definitions (declared in header file with 'extern')
******************************************************************************/
/*******************************************************************************
* Local function prototypes ('static')
******************************************************************************/
/*******************************************************************************
* Local variable definitions ('static')
******************************************************************************/
/*******************************************************************************
* Function implementation - global ('extern') and local ('static')
******************************************************************************/
/**
*******************************************************************************
** \brief 初始化DMAC通道
**
** \param [in] enCh 指定通道.
** \param [in] pstcCfg DMAC通道初始化配置结构体指针.
**
** \retval Ok 初始化成功.
** \retval ErrorInvalidParameter pstcCfg是空指针.
**
** \note None
**
******************************************************************************/
en_result_t Dma_InitChannel(en_dma_channel_t enCh, stc_dma_cfg_t* pstcCfg)
{
ASSERT(IS_VALID_CH(enCh));
ASSERT(NULL != pstcCfg);
ASSERT(IS_VALID_BLKSIZE(pstcCfg->u16BlockSize));
ASSERT(IS_VALID_TRNCNT(pstcCfg->u16TransferCnt));
ASSERT(IS_VALID_TRN_WIDTH(pstcCfg->enTransferWidth));
ASSERT(IS_VALID_SRC_ADDR_MODE(pstcCfg->enSrcAddrMode));
ASSERT(IS_VALID_DST_ADDR_MODE(pstcCfg->enDstAddrMode));
ASSERT(IS_VALID_PRIO_MODE(pstcCfg->enPriority));
ASSERT(IS_VALID_TRANSFER_MODE(pstcCfg->enTransferMode));
/* 检查通道值有效性和pstcCfg是否空指针 */
if (NULL == pstcCfg)
{
return ErrorInvalidParameter;
}
*(&M0P_DMAC->CONFB0+enCh) = 0;
*(&M0P_DMAC->CONFB0+enCh) = (uint32_t)pstcCfg->enMode |
(uint32_t)pstcCfg->enTransferWidth |
(uint32_t)pstcCfg->enSrcAddrMode |
(uint32_t)pstcCfg->enDstAddrMode |
(uint32_t)pstcCfg->enSrcAddrReloadCtl |
(uint32_t)pstcCfg->enDestAddrReloadCtl|
(uint32_t)pstcCfg->enSrcBcTcReloadCtl |
(uint32_t)pstcCfg->enTransferMode;
/*首先把TRI_SEL[6:0] BC[3:0] TC[15:0]这些位清零,然后再赋值*/
*(&M0P_DMAC->CONFA0+enCh) &= ((uint32_t)~(DMA_TRI_SEL_Msk | DMA_BC_SEL_Msk | DMA_TC_SEL_Msk));
*(&M0P_DMAC->CONFA0+enCh) |= (uint32_t)(pstcCfg->u16TransferCnt - 1) |
((uint32_t)(pstcCfg->u16BlockSize - 1)<<16)|
(uint32_t)(pstcCfg->enRequestNum<<22);
M0P_DMAC->CONF |= (uint32_t)(pstcCfg->enPriority);
*(&M0P_DMAC->SRCADR0+enCh) = (uint32_t)(pstcCfg->u32SrcAddress);
*(&M0P_DMAC->DSTADR0+enCh) = (uint32_t)(pstcCfg->u32DstAddress);
return Ok;
}
/**
*******************************************************************************
** \brief DMA模块使能函数,使能所有通道的操作,每个通道按照各自设置工作.
**
** \param None
**
** \retval None
**
** \note None
**
******************************************************************************/
void Dma_Enable(void)
{
M0P_DMAC->CONF |= DMA_ENABLE_Msk;
}
/**
*******************************************************************************
** \brief DMA模块功能禁止函数,所有通道禁止工作.
**
** \param None
**
** \retval None
**
** \note None
**
******************************************************************************/
void Dma_Disable(void)
{
M0P_DMAC->CONF &= (~DMA_ENABLE_Msk);
}
/**
*******************************************************************************
** \brief 触发指定DMA通道软件传输功能.
**
** \param [输入] enCh 指定dma通道.
**
** \retval None
**
** \note None
**
******************************************************************************/
void Dma_SwStart(en_dma_channel_t enCh)
{
*(&M0P_DMAC->CONFA0+enCh) |= DMA_SOFTWARE_START_Msk;
}
/**
*******************************************************************************
** \brief 停止指定DMA通道软件传输功能.
**
** \param [输入] enCh 指定dma通道.
**
** \retval None
**
** \note None
**
******************************************************************************/
void Dma_SwStop(en_dma_channel_t enCh)
{
*(&M0P_DMAC->CONFA0+enCh) &= (~DMA_SOFTWARE_START_Msk);
}
/**
*******************************************************************************
** \brief 使能指定dma通道的(传输完成)中断.
**
** \param [输入] enCh 指定dma通道.
**
** \retval None
**
** \note None
**
******************************************************************************/
void Dma_EnableChannelIrq(en_dma_channel_t enCh)
{
*(&M0P_DMAC->CONFB0+enCh) |= DMA_FIS_IE_Msk;
}
/**
*******************************************************************************
** \brief 禁用指定dma通道的(传输完成)中断.
**
** \param [输入] enCh 指定dma通道.
**
** \retval None
**
** \note None
**
******************************************************************************/
void Dma_DisableChannelIrq(en_dma_channel_t enCh)
{
*(&M0P_DMAC->CONFB0+enCh) &= (~DMA_FIS_IE_Msk);
}
/**
*******************************************************************************
** \brief 使能指定dma通道的(传输错误)中断..
**
** \param [输入] enCh 指定dma通道.
**
** \retval None
**
** \note None
**
******************************************************************************/
void Dma_EnableChannelErrIrq(en_dma_channel_t enCh)
{
*(&M0P_DMAC->CONFB0+enCh) |= DMA_ERR_IE_Msk;
}
/**
*******************************************************************************
** \brief 禁用指定dma通道的(传输错误)中断..
**
** \param [输入] enCh 指定dma通道.
**
** \retval None
**
** \note None
**
******************************************************************************/
void Dma_DisableChannelErrIrq(en_dma_channel_t enCh)
{
*(&M0P_DMAC->CONFB0+enCh) &= (~DMA_ERR_IE_Msk);
}
/**
*******************************************************************************
** \brief 使能指定dma通道
**
** \param [输入] enCh 指定dma通道.
**
** \retval None
**
** \note None
**
******************************************************************************/
void Dma_EnableChannel(en_dma_channel_t enCh)
{
*(&M0P_DMAC->CONFA0+enCh) |= DMA_CH_ENABLE_Msk;
}
/**
*******************************************************************************
** \brief 禁用指定dma通道
**
** \param [输入] enCh 指定dma通道.
**
** \retval None
**
** \note None
**
******************************************************************************/
void Dma_DisableChannel(en_dma_channel_t enCh)
{
*(&M0P_DMAC->CONFA0+enCh) &= (~DMA_CH_ENABLE_Msk);
}
/**
*******************************************************************************
** \brief 设定指定通道的块(Block)尺寸
**
** \param [输入] enCh 指定通道
** \param [输入] u16BlkSize 块(Block)尺寸.
**
** \retval None
**
** \note None
**
******************************************************************************/
void Dma_SetBlockSize(en_dma_channel_t enCh, uint16_t u16BlkSize)
{
volatile uint32_t *pReg = (&M0P_DMAC->CONFA0+enCh);
*pReg = ((*pReg) & ((uint32_t)~DMA_BC_SEL_Msk)) | ((((uint32_t)u16BlkSize-1)&0x0f)<<DMA_BC_SEL_Pos);
}
/**
*******************************************************************************
** \brief 设定指定通道块(Block)传输次数
**
** \param [in] enCh 指定通道.
** \param [in] u16TrnCnt 块(Block)传输次数.
**
** \retval None
**
** \note None
**
******************************************************************************/
void Dma_SetTransferCnt(en_dma_channel_t enCh, uint16_t u16TrnCnt)
{
volatile uint32_t *pReg = (&M0P_DMAC->CONFA0+enCh);
*pReg = ((*pReg)&((uint32_t)~DMA_TC_SEL_Msk))|(((uint32_t)(u16TrnCnt-1)<<DMA_TC_SEL_Pos));
}
/**
*******************************************************************************
** \brief 允许指定通道可连续传输,即DMAC在传输完成时不清除CONFA:ENS位.
**
** \param [in] enCh 指定通道.
**
** \retval None
**
** \note None
**
******************************************************************************/
void Dma_EnableContinusTranfer(en_dma_channel_t enCh)
{
*(&M0P_DMAC->CONFB0+enCh) |= DMA_TRANSFER_RELOAD_Msk;
}
/**
*******************************************************************************
** \brief 禁止指定通道连续传输,即DMAC在传输完成时清除.
**
** \param [输入] enCh 指定通道.
**
** \retval None
**
** \note None
**
******************************************************************************/
void Dma_DisableContinusTranfer(en_dma_channel_t enCh)
{
*(&M0P_DMAC->CONFB0+enCh) &= (~DMA_TRANSFER_RELOAD_Msk);
}
/**
*******************************************************************************
** \brief 暂停所有dma通道.
**
** \param None
**
** \retval None.
**
** \note None
**
******************************************************************************/
void Dma_HaltTranfer(void)
{
M0P_DMAC->CONF_f.HALT = 0x1;
}
/**
*******************************************************************************
** \brief 恢复(之前暂停的)所有dma通道.
**
** \param None
**
** \retval None
**
** \note None
**
******************************************************************************/
void Dma_RecoverTranfer(void)
{
M0P_DMAC->CONF_f.HALT = 0x0;
}
/**
*******************************************************************************
** \brief 暂停指定dma通道.
**
** \param [输入] enCh 指定通道.
**
** \retval void
**
** \note None
**
******************************************************************************/
void Dma_PauseChannelTranfer(en_dma_channel_t enCh)
{
*(&M0P_DMAC->CONFA0+enCh) |= DMA_CH_PAUSE_Msk;
}
/**
*******************************************************************************
** \brief 恢复(之前暂定的)指定dma通道.
**
** \param [输入] enCh 指定通道.
**
** \retval None
**
** \note None
**
******************************************************************************/
void Dma_RecoverChannelTranfer(en_dma_channel_t enCh)
{
*(&M0P_DMAC->CONFA0+enCh) &= (~DMA_CH_PAUSE_Msk);
}
/**
*******************************************************************************
** \brief 设定指定通道传输数据宽度.
**
** \param [输入] enCh 指定dma通道.
** \param [输入] enWidth 指定数据宽度.
**
** \retval None
**
** \note None
**
******************************************************************************/
void Dma_SetTransferWidth(en_dma_channel_t enCh, en_dma_transfer_width_t enWidth)
{
volatile uint32_t *pReg = (&M0P_DMAC->CONFA0+enCh);
*pReg = ((*pReg)&((uint32_t)~DMA_TRANSFER_WIDTH_Msk))|((uint32_t)enWidth);
}
/**
*******************************************************************************
** \brief 设定dma通道优先级.
**
** \param [输入] enPrio 通道优先级设定参数.
**
** \retval None
**
** \note None
**
******************************************************************************/
void Dma_SetChPriority(en_dma_priority_t enPrio)
{
M0P_DMAC->CONF = ((M0P_DMAC->CONF)&((uint32_t)~DMA_PRIORITY_Msk))|((uint32_t)enPrio);
}
/**
*******************************************************************************
** \brief 获取指定DMA通道的状态.
**
** \param [输入] enCh 指定dma通道.
**
** \retval en_dma_stat_t DMA传输当前状态
**
** \note None
**
******************************************************************************/
en_dma_stat_t Dma_GetStat(en_dma_channel_t enCh)
{
return (en_dma_stat_t)((*(&M0P_DMAC->CONFB0+enCh)&(DMA_STAT_Msk))>>DMA_STAT_Pos);
}
/**
*******************************************************************************
** \brief 清除指定DMA通道的状态值.
**
** \param [输入] enCh 指定dma通道.
**
** \retval None
**
** \note None
**
******************************************************************************/
void Dma_ClrStat(en_dma_channel_t enCh)
{
*(&M0P_DMAC->CONFB0+enCh) &= (~DMA_STAT_Msk);
}
/**
*******************************************************************************
** \brief 设定指定通道源地址
**
** \param [输入] enCh 指定dma通道.
** \param [输入] u32Address 传输源地址.
**
** \retval None
**
** \note None
**
******************************************************************************/
void Dma_SetSourceAddress(en_dma_channel_t enCh, uint32_t u32Address)
{
*(&M0P_DMAC->SRCADR0+enCh) = u32Address;
}
/**
*******************************************************************************
** \brief 设定指定通道目标地址.
**
** \param [输入] enCh 指定dma通道.
** \param [输入] u32Address 传输目标地址.
**
** \retval None
**
** \note None
**
******************************************************************************/
void Dma_SetDestinationAddress(en_dma_channel_t enCh, uint32_t u32Address)
{
*(&M0P_DMAC->DSTADR0+enCh) = u32Address;
}
//@} // DmacGroup
/*******************************************************************************
* EOF (not truncated)
******************************************************************************/
-696
View File
@@ -1,696 +0,0 @@
/******************************************************************************
*Copyright(C)2018, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/** \file flash.c
**
** Common API of flash.
** @link flashGroup Some description @endlink
**
** - 2018-05-08
**
******************************************************************************/
/*******************************************************************************
* Include files
******************************************************************************/
#include "flash.h"
/**
*******************************************************************************
** \addtogroup FlashGroup
******************************************************************************/
//@{
/*******************************************************************************
* Local pre-processor symbols/macros ('#define')
******************************************************************************/
#define FLASH_END_ADDR (0x0001FFFFu)
#define FLASH_BYPASS() M0P_FLASH->BYPASS = 0x5A5A;\
M0P_FLASH->BYPASS = 0xA5A5;
#define FLASH_IE_TRUE (0x03)
#define FLASH_IE_FALSE (0x00)
#define FLASH_TIMEOUT_INIT (0xFFFFFFu)
#define FLASH_TIMEOUT_PGM (0xFFFFFFu)
#define FLASH_TIMEOUT_ERASE (0xFFFFFFu)
#define FLASH_LOCK_ALL (0u)
#define FLASH_UNLOCK_ALL (0xFFFFFFFFu)
/*******************************************************************************
* Global variable definitions (declared in header file with 'extern')
******************************************************************************/
/*******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/**
******************************************************************************
** \brief FLASH OP
**
** Flash 操作控制数据类型重定义
******************************************************************************/
typedef enum en_flash_op
{
Read = 0u, ///<读配置值
Program = 1u, ///<编程配置值
SectorErase = 2u, ///<扇区擦除配置值
ChipErase = 3u, ///<全片擦除配置值
} en_flash_op_t;
/**
******************************************************************************
** \brief FLASH 编程时间参数配置
**
** FLASH编程时间参数配置数组定义 (4MHz)
******************************************************************************/
const uint32_t pu32PcgTimer4M[] = {
0x20u, //Tnvs
0x17u, //Tpgs
0x1Bu, //Tprog
0x4650u, //Tserase
0x222E0u, //Tmerase
0x18u, //Tprcv
0xF0u, //Tsrcv
0x3E8u //Tmrcv
};
/*******************************************************************************
* Local variable definitions ('static')
******************************************************************************/
/*******************************************************************************
* Local function prototypes ('static')
******************************************************************************/
/*******************************************************************************
* Function implementation - global ('extern') and local ('static')
******************************************************************************/
/**
*****************************************************************************
** \brief Flash中断标志获取
**
**
** \param [in] enFlashIntType Flash中断类型
**
** \retval TRUE or FALSE
*****************************************************************************/
boolean_t Flash_GetIntFlag(en_flash_int_type_t enFlashIntType)
{
boolean_t bRetVal = FALSE;
if(M0P_FLASH->IFR & enFlashIntType)
{
bRetVal = TRUE;
}
return bRetVal;
}
/**
*****************************************************************************
** \brief Flash中断标志清除
**
**
** \param [in] enFlashIntType Flash中断类型
**
** \retval Ok or Error
*****************************************************************************/
en_result_t Flash_ClearIntFlag(en_flash_int_type_t enFlashIntType)
{
en_result_t enResult = Error;
M0P_FLASH->ICLR &= ~(uint32_t)enFlashIntType;
enResult = Ok;
return enResult;
}
/**
*****************************************************************************
** \brief Flash中断使能
**
**
** \param [in] enFlashIntType Flash中断类型
**
** \retval Ok or Error
*****************************************************************************/
en_result_t Flash_EnableIrq (en_flash_int_type_t enFlashIntType)
{
en_result_t enResult = Error;
FLASH_BYPASS();
M0P_FLASH->CR_f.IE |= enFlashIntType;
enResult = Ok;
return enResult;
}
/**
*****************************************************************************
** \brief Flash中断禁止
**
**
** \param [in] enFlashIntType Flash中断类型
**
** \retval Ok or Error
*****************************************************************************/
en_result_t Flash_DisableIrq(en_flash_int_type_t enFlashIntType)
{
en_result_t enResult = Error;
FLASH_BYPASS();
M0P_FLASH->CR_f.IE &= ~(uint32_t)enFlashIntType;
enResult = Ok;
return enResult;
}
/**
*****************************************************************************
** \brief FLASH 初始化函数——中断服务程序、编程时间配置及低功耗模式
**
** 该函数用于配置中断服务函数、低功耗模式、根据系统时钟配置FLASH编程时间相关寄存器.
**
** \param [in] u8FreqCfg FLASH编程时钟频率配置(根据HCLK的频率选择配置值):
** 1 - 4MHz;
** 2 - 8MHz;
** 4 - 16MHz;
** 6 - 24MHz;
** 8 - 32MHz;
** 12 - 48MHz;
** other - 无效值
** \param [in] bDpstbEn TRUE - 当系统进入DeepSleep模式,FLASH进入低功耗模式;
** FALSE - 当系统进入DeepSleep模式,FLASH不进入低功耗模式;
**
** \retval Ok 操作成功.
** \retval ErrorInvalidParameter 参数无效.
** \retval ErrorUninitialized 初始化失败。
*****************************************************************************/
en_result_t Flash_Init(uint8_t u8FreqCfg, boolean_t bDpstbEn)
{
uint32_t u32Index = 0;
volatile uint32_t u32TimeOut = FLASH_TIMEOUT_INIT;
en_result_t enResult = Ok;
uint32_t u32PrgTimer[8] = {0};
volatile uint32_t *pu32PrgTimerReg = (volatile uint32_t*)M0P_FLASH;
if ((1 != u8FreqCfg) && (2 != u8FreqCfg) &&
(4 != u8FreqCfg) && (6 != u8FreqCfg) &&
(8 != u8FreqCfg) && (12 != u8FreqCfg))
{
enResult = ErrorInvalidParameter;
return (enResult);
}
M0P_FLASH->CR_f.DPSTB_EN = bDpstbEn;
//flash时间参数配置值计算
for(u32Index=0; u32Index<8; u32Index++)
{
u32PrgTimer[u32Index] = u8FreqCfg * pu32PcgTimer4M[u32Index];
}
//flash时间参数寄存器配置
for(u32Index=0; u32Index<8; u32Index++)
{
u32TimeOut = FLASH_TIMEOUT_INIT;
while(pu32PrgTimerReg[u32Index] != u32PrgTimer[u32Index])
{
if(u32TimeOut--)
{
FLASH_BYPASS();
pu32PrgTimerReg[u32Index] = u32PrgTimer[u32Index];
}
else
{
return ErrorUninitialized;
}
}
}
return (enResult);
}
/**
*****************************************************************************
** \brief FLASH 字节写
**
** 用于向FLASH写入1字节数据.
**
** \param [in] u32Addr Flash地址
** \param [in] u8Data 1字节数据
**
** \retval Ok 写入成功.
** \retval ErrorInvalidParameter FLASH地址无效
** \retval ErrorTimeout 操作超时
*****************************************************************************/
en_result_t Flash_WriteByte(uint32_t u32Addr, uint8_t u8Data)
{
en_result_t enResult = Ok;
volatile uint32_t u32TimeOut = FLASH_TIMEOUT_PGM;
if (FLASH_END_ADDR < u32Addr)
{
enResult = ErrorInvalidParameter;
return (enResult);
}
//busy?
u32TimeOut = FLASH_TIMEOUT_PGM;
while (TRUE == M0P_FLASH->CR_f.BUSY)
{
if(0 == u32TimeOut--)
{
return ErrorTimeout;
}
}
//set OP
u32TimeOut = FLASH_TIMEOUT_PGM;
while(Program != M0P_FLASH->CR_f.OP)
{
if(u32TimeOut--)
{
FLASH_BYPASS();
M0P_FLASH->CR_f.OP = Program;
}
else
{
return ErrorTimeout;
}
}
//Flash 解锁
Flash_UnlockAll();
//write data
*((volatile uint8_t*)u32Addr) = u8Data;
//busy?
u32TimeOut = FLASH_TIMEOUT_PGM;
while (TRUE == M0P_FLASH->CR_f.BUSY)
{
if(0 == u32TimeOut--)
{
return ErrorTimeout;
}
}
//Flash 加锁
Flash_LockAll();
return (enResult);
}
/**
*****************************************************************************
** \brief FLASH 半字写
**
** 用于向FLASH写入半字(2字节)数据.
**
** \param [in] u32Addr Flash地址
** \param [in] u16Data 半字(2字节)数据
**
** \retval Ok 写入成功.
** \retval ErrorInvalidParameter FLASH地址无效
** \retval ErrorTimeout 操作超时
*****************************************************************************/
en_result_t Flash_WriteHalfWord(uint32_t u32Addr, uint16_t u16Data)
{
en_result_t enResult = Ok;
volatile uint32_t u32TimeOut = FLASH_TIMEOUT_PGM;
if (FLASH_END_ADDR < u32Addr)
{
enResult = ErrorInvalidParameter;
return (enResult);
}
//busy?
u32TimeOut = FLASH_TIMEOUT_PGM;
while (TRUE == M0P_FLASH->CR_f.BUSY)
{
if(0 == u32TimeOut--)
{
return ErrorTimeout;
}
}
//set OP
u32TimeOut = FLASH_TIMEOUT_PGM;
while(Program != M0P_FLASH->CR_f.OP)
{
if(u32TimeOut--)
{
FLASH_BYPASS();
M0P_FLASH->CR_f.OP = Program;
}
else
{
return ErrorTimeout;
}
}
//Flash 解锁
Flash_UnlockAll();
//write data
*((volatile uint16_t*)u32Addr) = u16Data;
//busy?
u32TimeOut = FLASH_TIMEOUT_PGM;
while (TRUE == M0P_FLASH->CR_f.BUSY)
{
if(0 == u32TimeOut--)
{
return ErrorTimeout;
}
}
//Flash 加锁
Flash_LockAll();
return (enResult);
}
/**
*****************************************************************************
** \brief FLASH 字写
**
** 用于向FLASH写入1个字的数据.
**
** \param [in] u32Addr Flash地址
** \param [in] u32Data 1个字数据
**
** \retval Ok 写入成功.
** \retval ErrorInvalidParameter FLASH地址无效
** \retval ErrorTimeout 操作超时
*****************************************************************************/
en_result_t Flash_WriteWord(uint32_t u32Addr, uint32_t u32Data)
{
en_result_t enResult = Ok;
volatile uint32_t u32TimeOut = FLASH_TIMEOUT_PGM;
if (FLASH_END_ADDR < u32Addr)
{
enResult = ErrorInvalidParameter;
return (enResult);
}
//busy?
u32TimeOut = FLASH_TIMEOUT_PGM;
while (TRUE == M0P_FLASH->CR_f.BUSY)
{
if(0 == u32TimeOut--)
{
return ErrorTimeout;
}
}
//Flash 解锁
Flash_UnlockAll();
//set OP
u32TimeOut = FLASH_TIMEOUT_PGM;
while(Program != M0P_FLASH->CR_f.OP)
{
if(u32TimeOut--)
{
FLASH_BYPASS();
M0P_FLASH->CR_f.OP = Program;
}
else
{
return ErrorTimeout;
}
}
//write data
*((volatile uint32_t*)u32Addr) = u32Data;
//busy?
u32TimeOut = FLASH_TIMEOUT_PGM;
while (TRUE == M0P_FLASH->CR_f.BUSY)
{
if(0 == u32TimeOut--)
{
return ErrorTimeout;
}
}
//Flash 加锁
Flash_LockAll();
return (enResult);
}
/**
*****************************************************************************
** \brief FLASH 扇区擦除
**
** FLASH 扇区擦除.
**
** \param [in] u32SectorAddr 所擦除扇区内的地址
**
** \retval Ok 擦除成功.
** \retval ErrorInvalidParameter FLASH地址无效
** \retval ErrorTimeout 操作超时
*****************************************************************************/
en_result_t Flash_SectorErase(uint32_t u32SectorAddr)
{
en_result_t enResult = Ok;
volatile uint32_t u32TimeOut = FLASH_TIMEOUT_ERASE;
if (FLASH_END_ADDR < u32SectorAddr)
{
enResult = ErrorInvalidParameter;
return (enResult);
}
//busy?
u32TimeOut = FLASH_TIMEOUT_ERASE;
while (TRUE == M0P_FLASH->CR_f.BUSY)
{
if(0 == u32TimeOut--)
{
return ErrorTimeout;
}
}
//Flash 解锁
Flash_UnlockAll();
//set OP
u32TimeOut = FLASH_TIMEOUT_ERASE;
while(SectorErase != M0P_FLASH->CR_f.OP)
{
if(u32TimeOut--)
{
FLASH_BYPASS();
M0P_FLASH->CR_f.OP = SectorErase;
}
else
{
return ErrorTimeout;
}
}
//write data
*((volatile uint8_t*)u32SectorAddr) = 0;
//busy?
u32TimeOut = FLASH_TIMEOUT_ERASE;
while (TRUE == M0P_FLASH->CR_f.BUSY)
{
if(0 == u32TimeOut--)
{
return ErrorTimeout;
}
}
//Flash 加锁
Flash_LockAll();
return (enResult);
}
/**
*****************************************************************************
** \brief FLASH 全片擦除(该函数仅限RAM中运行!!!)
**
** FLASH 全片擦除.
**
**
** \retval Ok 擦除成功.
** \retval ErrorTimeout 操作超时
**
*****************************************************************************/
en_result_t Flash_ChipErase(void)
{
en_result_t enResult = Ok;
volatile uint32_t u32TimeOut = FLASH_TIMEOUT_ERASE;
//busy?
u32TimeOut = FLASH_TIMEOUT_ERASE;
while (TRUE == M0P_FLASH->CR_f.BUSY)
{
if(0 == u32TimeOut--)
{
return ErrorTimeout;
}
}
//set OP
u32TimeOut = FLASH_TIMEOUT_ERASE;
while(ChipErase != M0P_FLASH->CR_f.OP)
{
if(u32TimeOut--)
{
FLASH_BYPASS();
M0P_FLASH->CR_f.OP = ChipErase;
}
else
{
return ErrorTimeout;
}
}
//Flash 解锁
Flash_UnlockAll();
//write data
*((volatile uint8_t*)0) = 0;
//busy?
u32TimeOut = FLASH_TIMEOUT_ERASE;
while (TRUE == M0P_FLASH->CR_f.BUSY)
{
if(0 == u32TimeOut--)
{
return ErrorTimeout;
}
}
//Flash 加锁
Flash_LockAll();
return (enResult);
}
/**
*****************************************************************************
** \brief FLASH 编程保护加锁
**
**
** \retval Null
*****************************************************************************/
void Flash_LockAll(void)
{
FLASH_BYPASS();
M0P_FLASH->SLOCK0 = FLASH_LOCK_ALL;
FLASH_BYPASS();
M0P_FLASH->SLOCK1 = FLASH_LOCK_ALL;
}
/**
*****************************************************************************
** \brief FLASH 编程保护解锁
**
**
** \retval Null
*****************************************************************************/
void Flash_UnlockAll(void)
{
FLASH_BYPASS();
M0P_FLASH->SLOCK0 = FLASH_UNLOCK_ALL;
FLASH_BYPASS();
M0P_FLASH->SLOCK1 = FLASH_UNLOCK_ALL;
}
/**
*****************************************************************************
** \brief FLASH 读等待周期设置
**
** \param [in] enWaitCycle 插入FLASH读等待周期数枚举类型
**
** \retval Ok 解锁成功
** \retval ErrorInvalidParameter 参数错误
*****************************************************************************/
en_result_t Flash_WaitCycle(en_flash_waitcycle_t enWaitCycle)
{
en_result_t enResult = Ok;
FLASH_BYPASS();
M0P_FLASH->CR_f.WAIT = enWaitCycle;
return enResult;
}
/**
*****************************************************************************
** \brief FLASH LOCK 设置
**
** \param [in] enLock @ref en_flash_lock_t
** \param [in] u32LockValue 32bits,对应bit=0:加锁,对应Sector不允许擦写;对应bit=1:解锁。
** \note 加解锁范围Sector[enLock*128 + i*4, enLock*128 + i*4+3]
** (i表示u32LockValue的bit位置,0~31)
** 例如:enLock = FlashLock1, u32LockValue = 0x00000002,
** 则加解锁范围为:[Sector128,Sector131]
** \retval Ok 解锁成功
** \retval ErrorInvalidParameter 参数错误
*****************************************************************************/
en_result_t Flash_LockSet(en_flash_lock_t enLock, uint32_t u32LockValue)
{
FLASH_BYPASS();
*((&M0P_FLASH->SLOCK0) + enLock) = u32LockValue;
return Ok;
}
//@} // FlashGroup
/*******************************************************************************
* EOF (not truncated)
******************************************************************************/
-582
View File
@@ -1,582 +0,0 @@
/******************************************************************************
* Copyright (C) 2018, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file Gpio.c
**
** GPIO driver API.
** @link Driver Group Some description @endlink
**
** - 2018-04-22 1.0 Lux First version
**
******************************************************************************/
/*******************************************************************************
* Include files
******************************************************************************/
#include "gpio.h"
/**
*******************************************************************************
** \addtogroup GpioGroup
******************************************************************************/
//@{
/*******************************************************************************
* Local pre-processor symbols/macros ('#define')
******************************************************************************/
#define IS_VALID_PIN(port,pin) ( )
/*******************************************************************************
* Global variable definitions (declared in header file with 'extern') *
******************************************************************************/
/*******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/*******************************************************************************
* Local function prototypes ('static')
******************************************************************************/
/*******************************************************************************
* Local variable definitions ('static')
******************************************************************************/
/*******************************************************************************
* Function implementation - global ('extern') and local ('static')
******************************************************************************/
/**
*******************************************************************************
** \brief GPIO 初始化
**
** \param [in] enPort IO Port口
** \param [in] enPin IO Pin脚
** \param [in] pstcGpioCfg IO 配置结构体指针
**
** \retval Ok 设置成功
** 其他值 设置失败
******************************************************************************/
en_result_t Gpio_Init(en_gpio_port_t enPort, en_gpio_pin_t enPin, stc_gpio_cfg_t *pstcGpioCfg)
{
//配置为默认值,GPIO功能
SetBit((uint32_t)&M0P_GPIO->PAADS + enPort, enPin, FALSE);
*((uint32_t*)(((uint32_t)(&(M0P_GPIO->PA00_SEL)) + enPort) + (((uint32_t)enPin)<<2))) = GpioAf0;
//默认输出值配置
SetBit(((uint32_t)&M0P_GPIO->PAOUT + enPort), enPin, pstcGpioCfg->bOutputVal);
//方向配置
SetBit(((uint32_t)&M0P_GPIO->PADIR + enPort), enPin, (boolean_t)(pstcGpioCfg->enDir));
//驱动能力配置
SetBit(((uint32_t)&M0P_GPIO->PADR + enPort), enPin, (boolean_t)(pstcGpioCfg->enDrv));
//上拉/下拉配置
SetBit(((uint32_t)&M0P_GPIO->PAPU + enPort), enPin, (boolean_t)(pstcGpioCfg->enPu));
SetBit(((uint32_t)&M0P_GPIO->PAPD + enPort), enPin, (boolean_t)(pstcGpioCfg->enPd));
//开漏输出功能
SetBit(((uint32_t)&M0P_GPIO->PAOD + enPort), enPin, (boolean_t)(pstcGpioCfg->enOD));
M0P_GPIO->CTRL2_f.AHB_SEL = pstcGpioCfg->enCtrlMode;
return Ok;
}
/**
*******************************************************************************
** \brief GPIO IO输入值获取
**
** \param [in] enPort IO Port口
** \param [in] enPin IO Pin脚
**
** \retval boolean_t IO电平高低
******************************************************************************/
boolean_t Gpio_GetInputIO(en_gpio_port_t enPort, en_gpio_pin_t enPin)
{
return GetBit(((uint32_t)&M0P_GPIO->PAIN + enPort), enPin);
}
/**
*******************************************************************************
** \brief GPIO IO Port输入数据获取
**
** \param [in] enPort IO Port
**
** \retval boolean_t IO Port数据
******************************************************************************/
uint16_t Gpio_GetInputData(en_gpio_port_t enPort)
{
return (uint16_t)(*((uint32_t *)((uint32_t)&M0P_GPIO->PAIN + enPort)));
}
/**
*******************************************************************************
** \brief GPIO IO输出值写入
**
** \param [in] enPort IO Port口
** \param [in] enPin IO Pin脚
** \param [out] bVal 输出值
**
** \retval en_result_t Ok 设置成功
** 其他值 设置失败
******************************************************************************/
en_result_t Gpio_WriteOutputIO(en_gpio_port_t enPort, en_gpio_pin_t enPin, boolean_t bVal)
{
SetBit(((uint32_t)&M0P_GPIO->PAOUT + enPort), enPin, bVal);
return Ok;
}
/**
*******************************************************************************
** \brief GPIO IO输出值获取
**
** \param [in] enPort IO Port口
** \param [in] enPin IO Pin脚
**
** \retval boolean_t IO电平高低
******************************************************************************/
boolean_t Gpio_ReadOutputIO(en_gpio_port_t enPort, en_gpio_pin_t enPin)
{
return GetBit(((uint32_t)&M0P_GPIO->PAOUT + enPort), enPin);
}
/**
*******************************************************************************
** \brief GPIO IO Port设置,可同时设置一组Port中的多个PIN
**
** \param [in] enPort IO Port
** \param [in] u16ValMsk 该Port的16个PIN掩码值,将需要设置的PIN对应的bit写1有效
**
** \retval boolean_t IO Port数据
******************************************************************************/
en_result_t Gpio_SetPort(en_gpio_port_t enPort, uint16_t u16ValMsk)
{
*((uint16_t*)(((uint32_t)&(M0P_GPIO->PABSET)) + enPort)) = u16ValMsk;
return Ok;
}
/**
*******************************************************************************
** \brief GPIO IO设置
**
** \param [in] enPort IO Port口
** \param [in] enPin IO Pin脚
**
** \retval en_result_t Ok 设置成功
** 其他值 设置失败
******************************************************************************/
en_result_t Gpio_SetIO(en_gpio_port_t enPort, en_gpio_pin_t enPin)
{
SetBit(((uint32_t)&M0P_GPIO->PABSET + enPort), enPin, TRUE);
return Ok;
}
/**
*******************************************************************************
** \brief GPIO IO Port清零,可同时清零一组Port中的多个PIN
**
** \param [in] enPort IO Port
** \param [in] u16ValMsk 该Port的16个PIN掩码值,将需要清零的PIN对应的bit写1有效
**
** \retval boolean_t IO Port数据
******************************************************************************/
en_result_t Gpio_ClrPort(en_gpio_port_t enPort, uint16_t u16ValMsk)
{
*((uint16_t*)(((uint32_t)&(M0P_GPIO->PABCLR)) + enPort)) = u16ValMsk;
return Ok;
}
/**
*******************************************************************************
** \brief GPIO IO清零
**
** \param [in] enPort IO Port口
** \param [in] enPin IO Pin脚
**
** \retval en_result_t Ok 设置成功
** 其他值 设置失败
******************************************************************************/
en_result_t Gpio_ClrIO(en_gpio_port_t enPort, en_gpio_pin_t enPin)
{
SetBit(((uint32_t)&M0P_GPIO->PABCLR + enPort), enPin, TRUE);
return Ok;
}
/**
*******************************************************************************
** \brief GPIO IO Port置位/清零,可同时置位/清零一组Port中的多个PIN
**
** \param [in] enPort IO Port
** \param [in] u32ValMsk 高16bits表示该Port的16个PIN置位掩码值,
** 低16bits表示该Port的16个PIN清零掩码值,
** 将需要设置的PIN对应的bit写1,同一个PIN的掩码同时为1,则该PIN清零。
**
** \retval en_result_t Ok 设置成功
** 其他值 设置失败
******************************************************************************/
en_result_t Gpio_SetClrPort(en_gpio_port_t enPort, uint32_t u32ValMsk)
{
*((uint32_t*)(((uint32_t)&(M0P_GPIO->PABSETCLR)) + enPort)) = u32ValMsk;
return Ok;
}
/**
*******************************************************************************
** \brief GPIO IO配置为模拟功能模式
**
** \param [in] enPort IO Port口
** \param [in] enPin IO Pin脚
**
** \retval Ok 设置成功
** 其他值 设置失败
******************************************************************************/
en_result_t Gpio_SetAnalogMode(en_gpio_port_t enPort, en_gpio_pin_t enPin)
{
SetBit((uint32_t)&M0P_GPIO->PAADS + enPort, enPin, TRUE);
return Ok;
}
/**
*******************************************************************************
** \brief GPIO IO复用功能设置
**
** \param [in] enPort IO Port口
** \param [in] enPin IO Pin脚
** \param [in] enAf 复用功能枚举类型选择
** \retval Ok 设置成功
** 其他值 设置失败
******************************************************************************/
en_result_t Gpio_SetAfMode(en_gpio_port_t enPort, en_gpio_pin_t enPin, en_gpio_af_t enAf)
{
*((uint32_t*)(((uint32_t)(&(M0P_GPIO->PA00_SEL)) + enPort) + (((uint32_t)enPin)<<2))) = enAf;
return Ok;
}
/**
*******************************************************************************
** \brief GPIO IO复用功能设置
**
** \param [in] PinMux 复用功能宏定义
** \retval Null
**
******************************************************************************/
void Gpio_SetAfMode_Lite(GpioPinMux PinMux)
{
*((uint32_t*)(((uint32_t)(&(M0P_GPIO->PA00_SEL)) + ((PinMux>>16u)&0xFFFFu)) + (((uint32_t)((PinMux>>8u)&0xFFu))<<2))) = (uint32_t)(PinMux&0x7u);
}
/**
*******************************************************************************
** \brief GPIO IO中断使能
**
** \param [in] enPort IO Port口
** \param [in] enPin IO Pin脚
** \param [in] enType 中断使能类型
**
** \retval Ok 设置成功
******************************************************************************/
en_result_t Gpio_EnableIrq(en_gpio_port_t enPort, en_gpio_pin_t enPin, en_gpio_irqtype_t enType)
{
uint32_t u32PieAddr;
u32PieAddr = ((uint32_t)((&M0P_GPIO->PAHIE) + enType)) + enPort;
SetBit(u32PieAddr, enPin, TRUE);
return Ok;
}
/**
*******************************************************************************
** \brief GPIO IO中断关闭
**
** \param [in] enPort IO Port口
** \param [in] enPin IO Pin脚
** \param [in] enType 中断使能类型
**
** \retval Ok 设置成功
******************************************************************************/
en_result_t Gpio_DisableIrq(en_gpio_port_t enPort, en_gpio_pin_t enPin, en_gpio_irqtype_t enType)
{
uint32_t u32PieAddr;
u32PieAddr = ((uint32_t)((&M0P_GPIO->PAHIE) + enType)) + enPort;
SetBit(u32PieAddr, enPin, FALSE);
return Ok;
}
/**
*******************************************************************************
** \brief GPIO 获得IO中断状态
**
** \param [in] u8Port IO Port口
** \param [in] u8Pin IO Pin脚
**
** \retval IO中断状态开关
******************************************************************************/
boolean_t Gpio_GetIrqStatus(en_gpio_port_t enPort, en_gpio_pin_t enPin)
{
return GetBit((uint32_t)&M0P_GPIO->PA_STAT + enPort, enPin);
}
/**
*******************************************************************************
** \brief GPIO 清除IO中断状态
**
** \param [in] u8Port IO Port口
** \param [in] u8Pin IO Pin脚
**
** \retval Ok 设置成功
******************************************************************************/
en_result_t Gpio_ClearIrq(en_gpio_port_t enPort, en_gpio_pin_t enPin)
{
SetBit((uint32_t)&M0P_GPIO->PA_ICLR + enPort, enPin, FALSE);
return Ok;
}
/**
*******************************************************************************
** \brief GPIO 端口辅助功能配置——中断模式配置
**
** \param [in] enIrqMode 端口中断模式(深度休眠是否响应中断)
**
** \retval Ok 设置成功
******************************************************************************/
en_result_t Gpio_SfIrqModeCfg(en_gpio_sf_irqmode_t enIrqMode)
{
M0P_GPIO->CTRL0_f.IESEL = enIrqMode;
return Ok;
}
/**
*******************************************************************************
** \brief GPIO 端口辅助功能配置——IR输出极性配置
**
** \param [in] enIrPolMode IR输出极性配置枚举
**
** \retval Ok 设置成功
******************************************************************************/
en_result_t Gpio_SfIrPolCfg(en_gpio_sf_irpol_t enIrPolMode)
{
M0P_GPIO->CTRL1_f.IR_POL = enIrPolMode;
return Ok;
}
/**
*******************************************************************************
** \brief GPIO 端口辅助功能配置——HCLK输出配置
**
** \param [in] enGate HCLK输出使能
** \param [in] enDiv 输出分频枚举值
**
** \retval Ok 设置成功
******************************************************************************/
en_result_t Gpio_SfHClkOutputCfg(en_gpio_sf_hclkout_g_t enGate, en_gpio_sf_hclkout_div_t enDiv)
{
M0P_GPIO->CTRL1_f.HCLK_EN = enGate;
M0P_GPIO->CTRL1_f.HCLK_SEL = enDiv;
return Ok;
}
/**
*******************************************************************************
** \brief GPIO 端口辅助功能配置——PCLK输出配置
**
** \param [in] enGate PCLK输出使能
** \param [in] enDiv 输出分频枚举值
**
** \retval Ok 设置成功
******************************************************************************/
en_result_t Gpio_SfPClkOutputCfg(en_gpio_sf_pclkout_g_t enGate, en_gpio_sf_pclkout_div_t enDiv)
{
M0P_GPIO->CTRL1_f.PCLK_EN = enGate;
M0P_GPIO->CTRL1_f.PCLK_SEL = enDiv;
return Ok;
}
/**
*******************************************************************************
** \brief GPIO 端口辅助功能配置——外部时钟输入来源配置
**
** \param [in] enExtClk 外部时钟信号来源选择枚举
**
** \retval Ok 设置成功
******************************************************************************/
en_result_t Gpio_SfExtClkCfg(en_gpio_sf_ssn_extclk_t enExtClk)
{
M0P_GPIO->CTRL1_f.EXT_CLK_SEL = enExtClk;
return Ok;
}
/**
*******************************************************************************
** \brief GPIO 端口辅助功能配置——SSN 通道信号来源配置
**
** \param [in] enSpi SSN SPI通道选择枚举
** \param [in] enSsn SSN 信号来源选择枚举
**
** \retval Ok 设置成功
******************************************************************************/
en_result_t Gpio_SfSsnCfg(en_gpio_sf_ssnspi_t enSpi, en_gpio_sf_ssn_extclk_t enSsn)
{
//SPI0
if(enSpi == GpioSpi0)
{
M0P_GPIO->CTRL1_f.SSN0_SEL = enSsn;
}
//SPI1
if(enSpi == GpioSpi1)
{
M0P_GPIO->CTRL2_f.SSN1_SEL = enSsn;
}
return Ok;
}
/**
*******************************************************************************
** \brief GPIO 端口辅助功能配置——Timer 门控输入配置
**
** \param [in] enTimG Timer类型选择枚举
** \param [in] enSf Timer互联功能选择枚举
**
** \retval Ok 设置成功
******************************************************************************/
en_result_t Gpio_SfTimGCfg(en_gpio_sf_tim_g_t enTimG, en_gpio_sf_t enSf)
{
if(enTimG&0x20u)
{
enTimG &= ~0x20u;
M0P_GPIO->PCAS &= (uint32_t)(~(0x07U<<enTimG));
M0P_GPIO->PCAS |= (uint32_t)(enSf<<enTimG);
}
else
{
M0P_GPIO->TIMGS &= (uint32_t)(~(0x07U<<enTimG));
M0P_GPIO->TIMGS |= (uint32_t)(enSf<<enTimG);
}
return Ok;
}
/**
*******************************************************************************
** \brief GPIO 端口辅助功能配置——Timer ETR选择配置
**
** \param [in] enTimE Timer类型选择枚举
** \param [in] enSf Timer互联功能选择枚举
**
** \retval Ok 设置成功
******************************************************************************/
en_result_t Gpio_SfTimECfg(en_gpio_sf_tim_e_t enTimE, en_gpio_sf_t enSf)
{
if(enTimE&0x20u)
{
enTimE &= ~0x20u;
M0P_GPIO->PCAS &= (uint32_t)(~(0x07U<<enTimE));
M0P_GPIO->PCAS |= (uint32_t)(enSf<<enTimE);
}
else
{
M0P_GPIO->TIMES &= (uint32_t)(~(0x07U<<enTimE));
M0P_GPIO->TIMES |= (uint32_t)(enSf<<enTimE);
}
return Ok;
}
/**
*******************************************************************************
** \brief GPIO 端口辅助功能配置——Timer 捕获输入选择配置
**
** \param [in] enTimC Timer类型选择枚举
** \param [in] enSf Timer互联功能选择枚举
**
** \retval Ok 设置成功
******************************************************************************/
en_result_t Gpio_SfTimCCfg(en_gpio_sf_tim_c_t enTimC, en_gpio_sf_t enSf)
{
M0P_GPIO->TIMCPS &= (uint32_t)(~(0x07u<<enTimC));
M0P_GPIO->TIMCPS |= (uint32_t)(enSf<<enTimC);
return Ok;
}
/**
*******************************************************************************
** \brief GPIO 端口辅助功能配置——PCA 捕获输入选择配置
**
** \param [in] enPca PCA类型选择枚举
** \param [in] enSf PCA互联功能选择枚举
**
** \retval Ok 设置成功
******************************************************************************/
en_result_t Gpio_SfPcaCfg(en_gpio_sf_pca_t enPca, en_gpio_sf_t enSf)
{
M0P_GPIO->PCAS &= (uint32_t)(~(0x07u<<enPca));
M0P_GPIO->PCAS |= (uint32_t)(enSf<<enPca);
return Ok;
}
//@} // GpioGroup
/*******************************************************************************
* EOF (not truncated)
******************************************************************************/
-267
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@@ -1,267 +0,0 @@
/*************************************************************************************
* Copyright (C) 2017, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file I2C.c
**
** WDT function driver API.
** @link SampleGroup Some description @endlink
**
** - 2018-03-13 1.0 CJ First version for Device Driver Library of Module.
**
******************************************************************************/
/******************************************************************************/
/* Include files */
/******************************************************************************/
#include "i2c.h"
/**
*******************************************************************************
** \addtogroup I2cGroup
******************************************************************************/
//@{
/******************************************************************************/
/* Local function prototypes ('static') */
/******************************************************************************/
/**
******************************************************************************
** \brief I2C设置波特率配置寄存器
**
** \param [in] u8Tm 波特率配置值
**
** \retval enRet 成功或失败
**
******************************************************************************/
en_result_t I2C_SetBaud(M0P_I2C_TypeDef* I2Cx, uint8_t u8Tm)
{
en_result_t enRet = Error;
I2Cx->TM = u8Tm;
enRet = Ok;
return enRet;
}
/**
******************************************************************************
** \brief I2C功能设置相关函数
**
** \param [in] enFunc功能参数
**
** \retval enRet 成功或失败
**
******************************************************************************/
en_result_t I2C_SetFunc(M0P_I2C_TypeDef* I2Cx, en_i2c_func_t enFunc)
{
en_result_t enRet = Error;
SetBit((uint32_t)&I2Cx->CR, enFunc, TRUE);
enRet = Ok;
return enRet;
}
/**
******************************************************************************
** \brief I2C功能清除相关函数
**
** \param [in] enFunc功能参数
**
** \retval enRet 成功或失败
**
******************************************************************************/
en_result_t I2C_ClearFunc(M0P_I2C_TypeDef* I2Cx, en_i2c_func_t enFunc)
{
en_result_t enRet = Error;
SetBit((uint32_t)&I2Cx->CR, enFunc, FALSE);
enRet = Ok;
return enRet;
}
/**
******************************************************************************
** \brief I2C获取中断标记函数
**
** \param 无
**
** \retval bIrq中断标记
**
******************************************************************************/
boolean_t I2C_GetIrq(M0P_I2C_TypeDef* I2Cx)
{
if(I2Cx->CR&0x8)
{
return TRUE;
}
else
{
return FALSE;
}
}
/**
******************************************************************************
** \brief I2C清除中断标记函数
**
** \param 无
**
** \retval bIrq中断标记
**
******************************************************************************/
en_result_t I2C_ClearIrq(M0P_I2C_TypeDef* I2Cx)
{
en_result_t enRet = Error;
I2Cx->CR &= ~0x8u;
enRet = Ok;
return enRet;
}
/**
******************************************************************************
** \brief I2C获取相关状态
**
** \param 无
**
** \retval I2C状态
**
******************************************************************************/
uint8_t I2C_GetState(M0P_I2C_TypeDef* I2Cx)
{
uint8_t u8State = 0;
u8State = I2Cx->STAT;
return u8State;
}
/**
******************************************************************************
** \brief 字节数据写函数
**
** \param u8Data写数据
**
** \retval 写数据是否成功
**
******************************************************************************/
en_result_t I2C_WriteByte(M0P_I2C_TypeDef* I2Cx, uint8_t u8Data)
{
en_result_t enRet = Error;
I2Cx->DATA = u8Data;
enRet = Ok;
return enRet;
}
/**
******************************************************************************
** \brief 字节数据读函数
**
** \param 无
**
** \retval 读取数据
**
******************************************************************************/
uint8_t I2C_ReadByte(M0P_I2C_TypeDef* I2Cx)
{
uint8_t u8Data = 0;
u8Data = I2Cx->DATA;
return u8Data;
}
/**
******************************************************************************
** \brief I2C模块初始化
**
** \param pstcI2CCfg初始化配置结构体
**
** \retval 初始化是否成功
**
******************************************************************************/
en_result_t I2C_Init(M0P_I2C_TypeDef* I2Cx, stc_i2c_cfg_t *pstcI2CCfg)
{
en_result_t enRet = Error;
uint8_t u8Tm;
if(M0P_I2C0 == I2Cx)
{
M0P_RESET->PERI_RESET0 &= ~(uint32_t)0x10u;
M0P_RESET->PERI_RESET0 |= (uint32_t)0x10u;
}
else
{
M0P_RESET->PERI_RESET0 &= ~(uint32_t)0x20u;
M0P_RESET->PERI_RESET0 |= (uint32_t)0x20u;
}
I2Cx->CR = 0;
I2Cx->CR = pstcI2CCfg->enMode;
if((pstcI2CCfg->u32Baud<<4) > pstcI2CCfg->u32Pclk)
{
return Error;
}
if(I2cMasterMode == pstcI2CCfg->enMode)
{
I2Cx->TMRUN = TRUE;
///< Fsck = Fpclk/8*(Tm+1)
u8Tm = ((pstcI2CCfg->u32Pclk / pstcI2CCfg->u32Baud) >> 3) - 1;
if(9 > u8Tm)
{
I2C_SetFunc(I2Cx,I2cHlm_En);
}
enRet = I2C_SetBaud(I2Cx, u8Tm);
}
else
{
I2Cx->TMRUN = FALSE;
pstcI2CCfg->u8SlaveAddr = (uint8_t)(((uint32_t)pstcI2CCfg->u8SlaveAddr<<1)|(pstcI2CCfg->bGc));
I2Cx->ADDR = pstcI2CCfg->u8SlaveAddr;
}
return enRet;
}
//@} // I2cGroup
-289
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@@ -1,289 +0,0 @@
/******************************************************************************
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file lcd.c
**
** lcd driver API.
**
** - 2019-04-02 First Version
**
******************************************************************************/
/******************************************************************************
* Include files
******************************************************************************/
#include "lcd.h"
/**
******************************************************************************
** \addtogroup AdcGroup
******************************************************************************/
//@{
/******************************************************************************
* Local pre-processor symbols/macros ('#define')
******************************************************************************/
/******************************************************************************
* Global variable definitions (declared in header file with 'extern')
******************************************************************************/
/******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/******************************************************************************
* Local function prototypes ('static')
******************************************************************************/
/******************************************************************************
* Local variable definitions ('static')
******************************************************************************/
/*****************************************************************************
* Function implementation - global ('extern') and local ('static')
*****************************************************************************/
/**
******************************************************************************
** \brief 获取LCD中断标志位INTF
**
** @param 无
** \retval 无
**
******************************************************************************/
boolean_t Lcd_GetItStatus(void)
{
return (((M0P_LCD->CR1)>>11)&0x01)? TRUE : FALSE;
}
/**
******************************************************************************
** \brief 清除中断标志位INTF
**
** @param 无
** \retval 无
**
******************************************************************************/
void Lcd_ClearItPendingBit(void)
{
SetBit((uint32_t)(&(M0P_LCD->INTCLR)), 10, 0);
}
/**
******************************************************************************
** \brief 根据LCD显示模式获取端口配置
**
** \param pstcSegComPara:显示方式, stcSegCom获取端口参数
**
** \retval enRet 成功或失败
**
******************************************************************************/
en_result_t Lcd_GetSegCom(stc_lcd_segcompara_t *pstcSegComPara,stc_lcd_segcom_t *pstcSegCom)
{
en_result_t enRet = Error;
pstcSegCom->stc_seg32_51_com0_8_t.seg32_51_com0_8 = 0xffffffffu;
pstcSegCom->u32Seg0_31 = 0xffffffffu;
if(pstcSegComPara->u8MaxSeg>51)
{
return ErrorInvalidParameter;
}
switch(pstcSegComPara->LcdBiasSrc)
{
case LcdInResHighPower:
case LcdInResLowPower:
case LcdInResMidPower:
pstcSegCom->stc_seg32_51_com0_8_t.segcom_bit.Mux = 1;
break;
case LcdExtCap:
case LcdExtRes:
pstcSegCom->stc_seg32_51_com0_8_t.segcom_bit.Mux = 0;
pstcSegCom->stc_seg32_51_com0_8_t.segcom_bit.Seg32_35 = 0;
break;
default:
return ErrorInvalidParameter;
}
switch(pstcSegComPara->LcdDuty)
{
case LcdStatic:
pstcSegCom->stc_seg32_51_com0_8_t.segcom_bit.Com0_3 = (~1u)&0x0fu;
break;
case LcdDuty2:
pstcSegCom->stc_seg32_51_com0_8_t.segcom_bit.Com0_3 = (~3u)&0x0fu;
break;
case LcdDuty3:
pstcSegCom->stc_seg32_51_com0_8_t.segcom_bit.Com0_3 = (~7u)&0x0fu;
break;
case LcdDuty4:
pstcSegCom->stc_seg32_51_com0_8_t.segcom_bit.Com0_3 = (~15u)&0x0fu;
break;
case LcdDuty6:
pstcSegCom->stc_seg32_51_com0_8_t.segcom_bit.Com0_3 = 0;
pstcSegCom->stc_seg32_51_com0_8_t.segcom_bit.Seg39Com4 = 0;
pstcSegCom->stc_seg32_51_com0_8_t.segcom_bit.Seg38Com5 = 0;
pstcSegCom->stc_seg32_51_com0_8_t.segcom_bit.Seg37Com6 = 1;
pstcSegCom->stc_seg32_51_com0_8_t.segcom_bit.Seg36Com7 = 1;
break;
case LcdDuty8:
pstcSegCom->stc_seg32_51_com0_8_t.segcom_bit.Com0_3 = 0;
pstcSegCom->stc_seg32_51_com0_8_t.segcom_bit.Seg39Com4 = 0;
pstcSegCom->stc_seg32_51_com0_8_t.segcom_bit.Seg38Com5 = 0;
pstcSegCom->stc_seg32_51_com0_8_t.segcom_bit.Seg37Com6 = 0;
pstcSegCom->stc_seg32_51_com0_8_t.segcom_bit.Seg36Com7 = 0;
break;
default:
return ErrorInvalidParameter;
}
enRet = Ok;
return enRet;
}
/**
******************************************************************************
** \brief LCD COMSEG端口配置,使用该函数之前需要先使能相应的Seg
**
** \param [in] pstcSegCom端口配置结构体
**
** \retval enRet 成功或失败
**
******************************************************************************/
void Lcd_SetSegCom(stc_lcd_segcom_t *pstcSegCom)
{
M0P_LCD->POEN0 = pstcSegCom->u32Seg0_31;
M0P_LCD->POEN1 = pstcSegCom->stc_seg32_51_com0_8_t.seg32_51_com0_8;
}
/**
******************************************************************************
** \brief LCD模块初始化函数
**
** \param stcLcdCfg配置初始化结构体
**
** \retval 无
**
******************************************************************************/
void Lcd_Init(stc_lcd_cfg_t *pstcLcdCfg)
{
M0P_LCD->CR0_f.BSEL = pstcLcdCfg->LcdBiasSrc;
M0P_LCD->CR0_f.DUTY = pstcLcdCfg->LcdDuty;
M0P_LCD->CR0_f.BIAS = pstcLcdCfg->LcdBias;
M0P_LCD->CR0_f.CPCLK = pstcLcdCfg->LcdCpClk;
M0P_LCD->CR0_f.LCDCLK = pstcLcdCfg->LcdScanClk;
M0P_LCD->CR1_f.MODE = pstcLcdCfg->LcdMode;
M0P_LCD->CR1_f.CLKSRC = pstcLcdCfg->LcdClkSrc;
M0P_LCD->CR0_f.EN = pstcLcdCfg->LcdEn;
}
/**
******************************************************************************
** \brief 液晶全显
**
** \param 无
**
** \retval 无
**
******************************************************************************/
void Lcd_FullDisp(void)
{
uint8_t tmp;
volatile uint32_t *ram = NULL;
ram = &M0P_LCD->RAM0;
for(tmp=0;tmp<16;tmp++)
{
*ram = 0xffffffffu;
ram++;
}
}
/**
******************************************************************************
** \brief 清屏
**
** \param 无
**
** \retval 无
**
******************************************************************************/
void Lcd_ClearDisp(void)
{
uint8_t tmp;
volatile uint32_t *ram = NULL;
ram = &M0P_LCD->RAM0;
for(tmp=0;tmp<16;tmp++)
{
*ram = 0;
ram++;
}
}
/**
******************************************************************************
** \brief LCD RAM 0-f寄存器设置函数
**
** \param u8Row RAM地址索引,范围:0-15u8Data写入寄存器数值
**
** \retval enRet 成功或失败
**
******************************************************************************/
en_result_t Lcd_WriteRam(uint8_t u8Row,uint32_t u32Data)
{
en_result_t enRet = Error;
volatile uint32_t *ram = NULL;
ram = (volatile uint32_t*)&M0P_LCD->RAM0;
if (u8Row > 15)
{
enRet = ErrorInvalidParameter;
return enRet;
}
ram += u8Row;
*ram = u32Data;
enRet = Ok;
return enRet;
}
/******************************************************************************
* EOF (not truncated)
******************************************************************************/
-122
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@@ -1,122 +0,0 @@
/******************************************************************************
*Copyright(C)2017, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/** \file lpm.c
**
** Common API of lpm.
** @link LpmGroup Some description @endlink
**
** - 2017-06-06
**
******************************************************************************/
/*******************************************************************************
* Include files
******************************************************************************/
#include "lpm.h"
/**
*******************************************************************************
** \addtogroup LpmGroup
******************************************************************************/
//@{
/*******************************************************************************
* Local pre-processor symbols/macros ('#define')
******************************************************************************/
/*******************************************************************************
* Global variable definitions (declared in header file with 'extern')
******************************************************************************/
/*******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/*******************************************************************************
* Local variable definitions ('static')
******************************************************************************/
/*******************************************************************************
* Local function prototypes ('static')
******************************************************************************/
/*******************************************************************************
* Function implementation - global ('extern') and local ('static')
******************************************************************************/
/**
*****************************************************************************
** \brief 进入深度睡眠模式
**
** \input bOnExit - TRUE:当退出异常处理后,自动再次进入休眠;
** FALSE:唤醒后不再自动进入休眠
**
** \retval NULL
*****************************************************************************/
void Lpm_GotoDeepSleep(boolean_t bOnExit)
{
SCB->SCR |= SCB_SCR_SLEEPDEEP_Msk;
SCB->SCR |= 1u<<bOnExit;
__WFI();
}
/**
*****************************************************************************
** \brief 进入普通睡眠模式
**
** \input bOnExit - TRUE:当退出异常处理后,自动再次进入休眠;
** FALSE:唤醒后不再自动进入休眠
**
** \retval NULL
*****************************************************************************/
void Lpm_GotoSleep(boolean_t bOnExit)
{
SCB->SCR &= ~SCB_SCR_SLEEPDEEP_Msk;
SCB->SCR |= 1u<<bOnExit;
__WFI();
}
//@} // LpmGroup
/*******************************************************************************
* EOF (not truncated)
******************************************************************************/
-171
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@@ -1,171 +0,0 @@
/******************************************************************************
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file lptim.c
**
** lptim driver API.
** @link pcnt Group Some description @endlink
**
** - 2019-04-09 First Version
**
******************************************************************************/
/******************************************************************************
* Include files
******************************************************************************/
#include "lptim.h"
/**
******************************************************************************
** \addtogroup PCNTGroup
******************************************************************************/
//@{
/******************************************************************************
* Local pre-processor symbols/macros ('#define')
******************************************************************************/
/******************************************************************************
* Global variable definitions (declared in header file with 'extern')
******************************************************************************/
/******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/******************************************************************************
* Local function prototypes ('static')
******************************************************************************/
/******************************************************************************
* Local variable definitions ('static')
******************************************************************************/
/**
******************************************************************************
** \brief 定时器LPTIMx中断使能控制
** @param Lptimx : LPTIM0 或LPTIM1
** @param NewStatus : TRUE 或 FALSE
** \retval 无
**
******************************************************************************/
void Lptim_ConfIt(M0P_LPTIMER_TypeDef* Lptimx, boolean_t NewStatus)
{
SetBit((uint32_t)(&(Lptimx->CR)), 10, NewStatus);
}
/**
******************************************************************************
** \brief 定时器LPTIMx的启动/停止控制
** @param Lptimx : LPTIM0 或LPTIM1
** @param NewStatus : TRUE 或 FALSE
** \retval 无
**
******************************************************************************/
void Lptim_Cmd(M0P_LPTIMER_TypeDef* Lptimx, boolean_t NewStatus)
{
SetBit((uint32_t)(&(Lptimx->CR)), 0, NewStatus);
}
/**
******************************************************************************
** \brief 定时器LPTIMx的中断标志位获取
** @param Lptimx : LPTIM0 或LPTIM1
** \retval TRUE 或 FALSE
**
******************************************************************************/
boolean_t Lptim_GetItStatus(M0P_LPTIMER_TypeDef* Lptimx)
{
return GetBit((uint32_t)(&(Lptimx->IFR)), 0);
}
/**
******************************************************************************
** \brief 定时器LPTIMx的中断标志位清除
** @param Lptimx : LPTIM0 或LPTIM1
** \retval 无
**
******************************************************************************/
void Lptim_ClrItStatus(M0P_LPTIMER_TypeDef* Lptimx)
{
SetBit((uint32_t)(&(Lptimx->ICLR)), 0, 0);
}
/**
******************************************************************************
** \brief 定时器LPTIMx的初始化配置
** @param Lptimx : LPTIM0 或LPTIM1
** @param InitStruct : 初始化LPTIMx的结构体
** \retval en_result_t类型数据
**
******************************************************************************/
en_result_t Lptim_Init(M0P_LPTIMER_TypeDef* Lptimx, stc_lptim_cfg_t* InitStruct)
{
uint16_t u16TimeOut;
u16TimeOut = 1000;
Lptimx->CR_f.PRS = InitStruct->enPrs;
Lptimx->CR_f.TCK_SEL = InitStruct->enTcksel;
Lptimx->CR_f.GATE_P = InitStruct->enGatep;
Lptimx->CR_f.GATE = InitStruct->enGate;
Lptimx->CR_f.TOG_EN = InitStruct->enTogen;
Lptimx->CR_f.CT = InitStruct->enCt;
Lptimx->CR_f.MD = InitStruct->enMd;
while(u16TimeOut--)
{
if(Lptimx->CR_f.WT_FLAG)
{
break;
}
}
if(u16TimeOut == 0)
{
return ErrorTimeout;
}
Lptimx->ARR_f.ARR = InitStruct->u16Arr;
return Ok;
}
/******************************************************************************
* EOF (not truncated)
******************************************************************************/
-409
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@@ -1,409 +0,0 @@
/*************************************************************************************
* Copyright (C) 2017, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file lpuart.c
**
** LPUART function driver API.
** @link SampleGroup Some description @endlink
**
** - 2017-05-17 1.0 CJ First version for Device Driver Library of Module.
**
******************************************************************************/
/******************************************************************************/
/* Include files */
/******************************************************************************/
#include "lpuart.h"
/**
******************************************************************************
** \addtogroup LPUartGroup
******************************************************************************/
//@{
/******************************************************************************/
/* Local pre-processor symbols/macros ('#define') */
/******************************************************************************/
/******************************************************************************/
/* Local function prototypes ('static') */
/******************************************************************************/
/******************************************************************************/
/* Local variable definitions ('static') */
/******************************************************************************/
/**
******************************************************************************
** \brief LPUART通信中断使能函数设置
**
** \param [in] LPUARTx通道号,enIrqSel发送or接收中断使能
**
** \retval OK配置成功
**\retval ErrorInvalidParameter配置失败
******************************************************************************/
en_result_t LPUart_EnableIrq(M0P_LPUART_TypeDef* LPUARTx, en_lpuart_irq_sel_t enIrqSel)
{
SetBit((uint32_t)(&(LPUARTx->SCON)), enIrqSel, TRUE);
return Ok;
}
/**
******************************************************************************
** \brief LPUART通信中断禁止函数设置
**
** \param [in] LPUARTx通道号,enIrqSel发送or接收中断禁止
**
** \retval OK配置成功
**\retval ErrorInvalidParameter配置失败
******************************************************************************/
en_result_t LPUart_DisableIrq(M0P_LPUART_TypeDef* LPUARTx, en_lpuart_irq_sel_t enIrqSel)
{
SetBit((uint32_t)(&(LPUARTx->SCON)), enIrqSel, FALSE);
return Ok;
}
/**
******************************************************************************
** \brief lpuart通信时钟源选择
**
** \param [in] LPUARTx通道号,enClk 时钟源选项
**
** \retval Ok 设置成功
**\retval ErrorInvalidParameter设置失败
******************************************************************************/
en_result_t LPUart_SelSclk(M0P_LPUART_TypeDef* LPUARTx, en_lpuart_sclksel_t enSclk)
{
ASSERT(IS_VALID_CLK(enSclk));
LPUARTx->SCON_f.SCLKSEL = enSclk;
return Ok;
}
/**
******************************************************************************
** \brief LPUART通道多主机模式配置
**
** \param [in] LPUARTx通道号,stcMultiCfg多主机模式结构
**
** \retval OK配置成功
**\retval ErrorInvalidParameter配置失败
******************************************************************************/
en_result_t LPUart_SetMultiMode(M0P_LPUART_TypeDef* LPUARTx, stc_lpuart_multimode_t* pstcMultiCfg)
{
if(NULL != pstcMultiCfg)
{
LPUARTx->SCON_f.ADRDET = TRUE;
LPUARTx->SADDR = pstcMultiCfg->u8SlaveAddr;
LPUARTx->SADEN = pstcMultiCfg->u8SaddEn;
}
else
{
return ErrorInvalidParameter;
}
return Ok;
}
/**
******************************************************************************
** \brief LPUART单线半双工模式使能
**
** \param [in] LPUARTx 通道号
**
** \retval Null
******************************************************************************/
void LPUart_HdModeEnable(M0P_LPUART_TypeDef* LPUARTx)
{
LPUARTx->SCON_f.HDSEL = TRUE;
}
/**
******************************************************************************
** \brief LPUART单线半双工模式关闭
**
** \param [in] LPUARTx 通道号
**
** \retval Null
******************************************************************************/
void LPUart_HdModeDisable(M0P_LPUART_TypeDef* LPUARTx)
{
LPUARTx->SCON_f.HDSEL = FALSE;
}
/**
******************************************************************************
** \brief LPUART通道多机模式发送数据/地址帧配置TB8
**
** \param [in] LPUARTx 通道号
** \param [in] TRUE-TB8为地址帧标志;FALSE-TB8为数据帧标志;
**
** \retval Null
******************************************************************************/
void LPUart_SetTb8(M0P_LPUART_TypeDef* LPUARTx, boolean_t bTB8Value)
{
LPUARTx->SCON_f.B8CONT = bTB8Value;
}
/**
******************************************************************************
** \brief 获取RB8数值
**
** \param [in] LPUARTx 通道号
**
** \retval RB8
**\retval ErrorInvalidParameter配置失败
******************************************************************************/
boolean_t LPUart_GetRb8(M0P_LPUART_TypeDef* LPUARTx)
{
return (LPUARTx->SBUF_f.DATA8);
}
/**
******************************************************************************
** \brief LPUART通道多主机模式从机地址配置函数
**
** \param [in] LPUARTx 通道号,addr地址
**
** \retval OK配置成功
**\retval ErrorInvalidParameter配置失败
******************************************************************************/
en_result_t LPUart_SetSaddr(M0P_LPUART_TypeDef* LPUARTx,uint8_t u8Addr)
{
LPUARTx->SADDR = u8Addr;
return Ok;
}
/**
******************************************************************************
** \brief LPUART通道发送或接收等功能使能设置
**
** \param [in] u8Idx通道号,enFunc功能
**
** \retval OK配置成功
**\retval ErrorInvalidParameter配置失败
******************************************************************************/
en_result_t LPUart_EnableFunc(M0P_LPUART_TypeDef* LPUARTx, en_lpuart_func_t enFunc)
{
SetBit((uint32_t)(&(LPUARTx->SCON)), enFunc, TRUE);
return Ok;
}
/**
******************************************************************************
** \brief LPUART通道发送或接收等功能禁止设置
**
** \param [in] u8Idx通道号,enFunc功能
**
** \retval OK配置成功
**\retval ErrorInvalidParameter配置失败
******************************************************************************/
en_result_t LPUart_DisableFunc(M0P_LPUART_TypeDef* LPUARTx, en_lpuart_func_t enFunc)
{
SetBit((uint32_t)(&(LPUARTx->SCON)), enFunc, FALSE);
return Ok;
}
/**
******************************************************************************
** \brief LPUART通道通信状态获取
**
** \param [in] u8Idx通道号
**
** \retval 状态值
******************************************************************************/
uint8_t LPUart_GetIsr(M0P_LPUART_TypeDef* LPUARTx)
{
return (LPUARTx->ISR);
}
/**
******************************************************************************
** \brief LPUART通道通信状态获取
**
** \param [in] u8Idx通道号,enStatus获取哪个状态
**
** \retval 状态值
**\retval ErrorInvalidParameter获取失败
******************************************************************************/
boolean_t LPUart_GetStatus(M0P_LPUART_TypeDef* LPUARTx,en_lpuart_status_t enStatus)
{
boolean_t bStatus = FALSE;
ASSERT(IS_VALID_STATUS(enStatus));
bStatus = GetBit((uint32_t)(&(LPUARTx->ISR)), enStatus);
return bStatus;
}
/**
******************************************************************************
** \brief LPUART通道通信状态全部清除
**
** \param [in] u8Idx通道号
**
** \retval OK
******************************************************************************/
en_result_t LPUart_ClrIsr(M0P_LPUART_TypeDef* LPUARTx)
{
LPUARTx->ICR = 0u;
return Ok;
}
/**
******************************************************************************
** \brief LPUART通道通信状态清除
**
** \param [in] u8Idx通道号,enStatus清除哪个状态
**
** \retval 状态值
**\retval ErrorInvalidParameter清除失败
******************************************************************************/
en_result_t LPUart_ClrStatus(M0P_LPUART_TypeDef* LPUARTx,en_lpuart_status_t enStatus)
{
ASSERT(IS_VALID_STATUS(enStatus));
SetBit((uint32_t)(&(LPUARTx->ICR)), enStatus, FALSE);
return Ok;
}
/**
******************************************************************************
** \brief LPUART通道发送数据函数,查询方式调用此函数,中断方式发送不适用
**
** \param [in] u8Idx通道号,Data发送数据
**
** \retval Ok发送成功
**\retval ErrorInvalidParameter发送失败
******************************************************************************/
en_result_t LPUart_SendData(M0P_LPUART_TypeDef* LPUARTx, uint8_t u8Data)
{
while(FALSE == LPUart_GetStatus(LPUARTx,LPUartTxe))
{}
LPUARTx->SBUF_f.DATA = u8Data;
while(FALSE == LPUart_GetStatus(LPUARTx,LPUartTC))
{}
LPUart_ClrStatus(LPUARTx,LPUartTC);
return Ok;
}
/**
******************************************************************************
** \brief LPUART通道发送数据函数,中断方式调用此函数
**
** \param [in] u8Idx通道号,Data发送数据
**
** \retval Ok发送成功
**\retval ErrorInvalidParameter发送失败
******************************************************************************/
en_result_t LPUart_SendDataIt(M0P_LPUART_TypeDef* LPUARTx, uint8_t u8Data)
{
LPUARTx->SBUF_f.DATA = u8Data;
return Ok;
}
/**
******************************************************************************
** \brief LPUART通道接收数据函数
**
** \param [in] u8Idx通道号
**
** \retval 接收数据
**\retval ErrorInvalidParameter接收失败
******************************************************************************/
uint8_t LPUart_ReceiveData(M0P_LPUART_TypeDef* LPUARTx)
{
return (LPUARTx->SBUF_f.DATA);
}
/**
******************************************************************************
** \brief LPUART通道初始化函数
**
** \param [in] u8Idx通道号,pstcCfg初始化结构体 @ref stc_lpuart_cfg_t
**
** \retval OK配置成功
**\retval ErrorInvalidParameter配置失败
******************************************************************************/
en_result_t LPUart_Init(M0P_LPUART_TypeDef* LPUARTx,stc_lpuart_cfg_t* pstcCfg)
{
en_result_t enRet = Error;
const uint32_t u32Over[3] = {0x4, 0x3, 0x2};
uint16_t u16OverShift;
float32_t f32Scnt=0;
if(NULL == pstcCfg)
{
return ErrorInvalidParameter;
}
LPUARTx->SCON = 0;
LPUARTx->SCON = (uint32_t)pstcCfg->enStopBit |
(uint32_t)pstcCfg->enMmdorCk |
(uint32_t)pstcCfg->stcBaud.enSclkDiv |
(uint32_t)pstcCfg->stcBaud.enSclkSel |
(uint32_t)pstcCfg->enRunMode;
if((LPUartMskMode1 == pstcCfg->enRunMode) || (LPUartMskMode3 == pstcCfg->enRunMode))
{
u16OverShift = u32Over[pstcCfg->stcBaud.enSclkDiv/LPUartMsk8Or16Div];
f32Scnt = (float32_t)(pstcCfg->stcBaud.u32Sclk)/(float32_t)(pstcCfg->stcBaud.u32Baud<<u16OverShift);
LPUARTx->SCNT = (uint16_t)(float32_t)(f32Scnt + 0.5f);
LPUart_EnableFunc(LPUARTx,LPUartRenFunc); ///<使能收发
}
enRet = Ok;
return enRet;
}
//@} // LPUartGroup
-216
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@@ -1,216 +0,0 @@
/******************************************************************************
* Copyright (C) 2017, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file lvd.c
**
** Low Voltage Detect driver API.
** @link Lvd Group Some description @endlink
**
** - 2017-06-28 Alex First Version
**
******************************************************************************/
/******************************************************************************
* Include files
******************************************************************************/
#include "lvd.h"
/**
******************************************************************************
** \addtogroup LvdGroup
******************************************************************************/
//@{
/******************************************************************************
* Local pre-processor symbols/macros ('#define')
******************************************************************************/
#define IS_VALID_INPUT(x) ( (x) <= LvdInputPB07 )
#define IS_VALID_THRESHOLD(x) ( (x) <= LvdTH3p3V )
#define IS_VALID_FILTER(x) ( (x) <= LvdFilter29ms )
#define IS_VALID_IRQTYPE(x) ( (x) <= LvdIrqFall )
/******************************************************************************
* Global variable definitions (declared in header file with 'extern') *
******************************************************************************/
/******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/******************************************************************************
* Local function prototypes ('static')
******************************************************************************/
// static void LvdEnableNvic(void);
// static void LvdDisableNvic(void);
// static en_result_t LvdEnable(en_lvd_type_t enType, boolean_t bFlag);
/******************************************************************************
* Local variable definitions ('static')
******************************************************************************/
/*****************************************************************************
* Function implementation - global ('extern') and local ('static')
*****************************************************************************/
/**
* \brief
* 使能LVD中断
*
* \param [in] enType LVD中断类型
*
* \retval en_result_t Ok: 设置成功
* \retval en_result_t ErrorInvalidParameter: 无效类型
*/
void Lvd_EnableIrq(void)
{
M0P_LVD->CR_f.IE = TRUE;
}
/**
* \brief
* 除能LVD中断
*
* \param 无
*
* \retval 无
*/
void Lvd_DisableIrq(void)
{
M0P_LVD->CR_f.IE = FALSE;
}
/**
* \brief
* LVD初始化
*
* \param [in] pstcCfg LVD配置指针
*
* \retval 无
*/
void Lvd_Init(stc_lvd_cfg_t *pstcCfg)
{
M0P_LVD->CR = 0;
M0P_LVD->CR = (uint32_t)pstcCfg->enAct |
(uint32_t)pstcCfg->enFilter |
(uint32_t)pstcCfg->enFilterTime |
(uint32_t)pstcCfg->enInputSrc |
(uint32_t)pstcCfg->enIrqType |
(uint32_t)pstcCfg->enThreshold;
}
/**
* \brief
* 使能LVD
*
* \param 无
*
* \retval 无
*
*/
void Lvd_Enable(void)
{
M0P_LVD->CR_f.LVDEN = 1u;
}
/**
* \brief
* 除能LVD
*
* \param 无
*
* \retval 无
*/
void Lvd_Disable(void)
{
M0P_LVD->CR_f.LVDEN = 0u;
}
/**
* \brief
* 获取LVD中断标志
*
* \param 无
*
* \retval boolean_t 中断标志
*/
boolean_t Lvd_GetIrqStat(void)
{
return M0P_LVD->IFR_f.INTF;
}
/**
* \brief
* 清除LVD中断标志
*
* \param 无
*
* \retval 无
*/
void Lvd_ClearIrq(void)
{
M0P_LVD->IFR_f.INTF = 0u;
}
/**
* \brief
* 获取Filter结果
*
* \param 无
*
* \retval boolean_t Fliter结果
*/
boolean_t Lvd_GetFilterResult(void)
{
return (boolean_t)M0P_LVD->IFR_f.FILTER;
}
//@} // LvdGroup
/******************************************************************************
* EOF (not truncated)
******************************************************************************/
-153
View File
@@ -1,153 +0,0 @@
/******************************************************************************
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file opa.c
**
** opa driver API.
** @link opa Group Some description @endlink
**
** - 2019-04-11 First Version
**
******************************************************************************/
/******************************************************************************
* Include files
******************************************************************************/
#include "opa.h"
/**
******************************************************************************
** \addtogroup OPAGroup
******************************************************************************/
//@{
/******************************************************************************
* Local pre-processor symbols/macros ('#define')
******************************************************************************/
/******************************************************************************
* Global variable definitions (declared in header file with 'extern')
******************************************************************************/
/******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/******************************************************************************
* Local function prototypes ('static')
******************************************************************************/
/******************************************************************************
* Local variable definitions ('static')
******************************************************************************/
/*****************************************************************************
* Function implementation - global ('extern') and local ('static')
*****************************************************************************/
/**
******************************************************************************
** \brief OPA 通道使能
**
** \param NewStatus : TRUE FALSE
** \retval 无
**
******************************************************************************/
void Opa_Cmd(boolean_t NewStatus)
{
SetBit((uint32_t)(&(M0P_OPA->CR0)), 0, NewStatus);
}
void Opa_CmdBuf(boolean_t NewStatus)
{
SetBit((uint32_t)(&(M0P_OPA->CR0)), 2, NewStatus);
}
/**
******************************************************************************
** \brief OPA零点校准配置
**
** \param InitZero :
** \retval 无
**
******************************************************************************/
void Opa_SetZero(stc_opa_zcfg_t* InitZero)
{
M0P_OPA->CR0_f.AZEN = InitZero->bAzen;
M0P_OPA->CR1_f.CLK_SW_SET = InitZero->bClk_sw_set;
M0P_OPA->CR1_f.AZ_PULSE = InitZero->bAz_pulse;
M0P_OPA->CR1_f.TRIGGER = InitZero->bTrigger;
M0P_OPA->CR1_f.ADCTR_EN = InitZero->bAdctr_en;
}
/**
******************************************************************************
** \brief 使能输出OUTX
**
** \param onex : en_opa_oenx_t定义的元素
** \retval 无
**
******************************************************************************/
void Opa_CmdOnex(en_opa_oenx_t onex, boolean_t NewState)
{
SetBit((uint32_t)(&(M0P_OPA->CR0)), onex, NewState); //使能OP3输出X使能
}
/**
******************************************************************************
** \brief 配置校零相关的位
**
** \param CtrlBit : en_opa_set0ctrl_t定义的元素
** \param NewState: TRUE 或 FALSE
** \retval 无
**
******************************************************************************/
void Opa_ZeroBitCtrl(en_opa_set0ctrl_t CtrlBit, boolean_t NewState)
{
SetBit((uint32_t)(&(M0P_OPA->CR1)), CtrlBit, NewState);
}
/******************************************************************************
* EOF (not truncated)
******************************************************************************/
-555
View File
@@ -1,555 +0,0 @@
/******************************************************************************
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file pca.c
**
** pca driver API.
** @link pcnt Group Some description @endlink
**
** - 2019-04-09 First Version
**
******************************************************************************/
/******************************************************************************
* Include files
******************************************************************************/
#include "pca.h"
/**
******************************************************************************
** \addtogroup PCNTGroup
******************************************************************************/
//@{
/******************************************************************************
* Local pre-processor symbols/macros ('#define')
******************************************************************************/
/******************************************************************************
* Global variable definitions (declared in header file with 'extern')
******************************************************************************/
/******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/******************************************************************************
* Local function prototypes ('static')
******************************************************************************/
/******************************************************************************
* Local variable definitions ('static')
******************************************************************************/
/**
******************************************************************************
** \brief 获取中断源的标志位
** @param IT_Src : 中断源标志位
** \retval FALSE 或TRUE
**
******************************************************************************/
boolean_t Pca_GetItStatus(en_pca_ccficlr_t It_Src)
{
return (((M0P_PCA->CCON)>>It_Src) & 1) > 0? TRUE : FALSE;
}
/**
******************************************************************************
** \brief 清除中断源的标志位
** @param IT_Src : 中断源标志位
** \retval 无
**
******************************************************************************/
void Pca_ClrItStatus(en_pca_ccficlr_t It_Src)
{
M0P_PCA->ICLR &= ~(uint32_t)(1<<It_Src);
}
/**
******************************************************************************
** \brief PCA 计数器运行控制 PCA_CCON CR控制位
** @param NewStatus : TRUE 或 FALSE
** \retval 无
**
******************************************************************************/
void Pca_StartPca(boolean_t NewStatus)
{
SetBit((uint32_t)(&(M0P_PCA->CCON)), 6, NewStatus);
}
/**
******************************************************************************
** \brief PCA 空闲模式IDLE下,PCA是否停止工作设置
** @param NewStatus : TRUE 或 FALSE
** \retval 无
**
******************************************************************************/
void Pca_SetCidl(boolean_t NewStatus)
{
SetBit((uint32_t)(&(M0P_PCA->CMOD)), 7, NewStatus);
}
/**
******************************************************************************
** \brief PCA 模块4的看门狗使能控制
** @param NewStatus : TRUE 或 FALSE
** \retval 无
**
******************************************************************************/
void Pca_Set4Wdte(boolean_t NewStatus)
{
SetBit((uint32_t)(&(M0P_PCA->CMOD)), 6, NewStatus);
}
/**
******************************************************************************
** \brief PCA 计数器中断控制PCA_CMOD中CFIE,对应的控制中断位PCA_CCON中的CF与PCA_ICLR中的CF
** @param NewStatus : TRUE 或 FALSE
** \retval 无
**
******************************************************************************/
void Pca_ConfPcaIt(boolean_t NewStatus)
{
SetBit((uint32_t)(&(M0P_PCA->CMOD)), 0, NewStatus);
}
/**
******************************************************************************
** \brief PCA 比较捕获中断使能控制 PCA_CCAPMx的CCIE
** @param Modulex : pca_module0~4
** @param NewStatus : TRUE 或 FALSE
** \retval 无
**
******************************************************************************/
void Pca_ConfModulexIt(en_pca_module_t Modulex, boolean_t NewStatus)
{
switch(Modulex)
{
case PcaModule0:
SetBit((uint32_t)(&(M0P_PCA->CCAPM0)), 0, NewStatus);
break;
case PcaModule1:
SetBit((uint32_t)(&(M0P_PCA->CCAPM1)), 0, NewStatus);
break;
case PcaModule2:
SetBit((uint32_t)(&(M0P_PCA->CCAPM2)), 0, NewStatus);
break;
case PcaModule3:
SetBit((uint32_t)(&(M0P_PCA->CCAPM3)), 0, NewStatus);
break;
case PcaModule4:
SetBit((uint32_t)(&(M0P_PCA->CCAPM4)), 0, NewStatus);
break;
default:
break;
}
}
/**
******************************************************************************
** \brief PCA 模块0的初始化
** @param InitStruct : PCA初始化配置的结构体
** \retval 无
**
******************************************************************************/
void Pca_M0Init(stc_pcacfg_t* InitStruct)
{
M0P_PCA->CMOD_f.CPS = InitStruct->pca_clksrc;
M0P_PCA->CMOD_f.CIDL = InitStruct->pca_cidl;
M0P_PCA->CCAPM0_f.ECOM = InitStruct->pca_ecom;
M0P_PCA->CCAPM0_f.CAPP = InitStruct->pca_capp;
M0P_PCA->CCAPM0_f.CAPN = InitStruct->pca_capn;
M0P_PCA->CCAPM0_f.MAT = InitStruct->pca_mat;
M0P_PCA->CCAPM0_f.TOG = InitStruct->pca_tog;
M0P_PCA->CCAPM0_f.PWM = InitStruct->pca_pwm;
M0P_PCA->EPWM_f.EPWM = InitStruct->pca_epwm;
if(InitStruct->pca_pwm == PcaPwm8bitEnable)
{
M0P_PCA->CCAP0L_f.CCAP0 = InitStruct->pca_ccapl;
M0P_PCA->CCAP0H_f.CCAP0 = InitStruct->pca_ccaph;
}
else
{
M0P_PCA->CCAP0_f.CCAP0 = InitStruct->pca_ccap;
}
M0P_PCA->CARR_f.CARR = InitStruct->pca_carr;
}
/**
******************************************************************************
** \brief PCA 模块1的初始化
** @param InitStruct : PCA初始化配置的结构体
** \retval 无
**
******************************************************************************/
void Pca_M1Init(stc_pcacfg_t* InitStruct)
{
M0P_PCA->CMOD_f.CPS = InitStruct->pca_clksrc;
M0P_PCA->CMOD_f.CIDL = InitStruct->pca_cidl;
M0P_PCA->CCAPM1_f.ECOM = InitStruct->pca_ecom;
M0P_PCA->CCAPM1_f.CAPP = InitStruct->pca_capp;
M0P_PCA->CCAPM1_f.CAPN = InitStruct->pca_capn;
M0P_PCA->CCAPM1_f.MAT = InitStruct->pca_mat;
M0P_PCA->CCAPM1_f.TOG = InitStruct->pca_tog;
M0P_PCA->CCAPM1_f.PWM = InitStruct->pca_pwm;
M0P_PCA->EPWM_f.EPWM = InitStruct->pca_epwm;
if(InitStruct->pca_pwm == PcaPwm8bitEnable)
{
M0P_PCA->CCAP1L_f.CCAP1 = InitStruct->pca_ccapl;
M0P_PCA->CCAP1H_f.CCAP1 = InitStruct->pca_ccaph;
}
else
{
M0P_PCA->CCAP1_f.CCAP1 = InitStruct->pca_ccap;
}
M0P_PCA->CARR_f.CARR = InitStruct->pca_carr;
}
/**
******************************************************************************
** \brief PCA 模块2的初始化
** @param InitStruct : PCA初始化配置的结构体
** \retval 无
**
******************************************************************************/
void Pca_M2Init(stc_pcacfg_t* InitStruct)
{
M0P_PCA->CMOD_f.CPS = InitStruct->pca_clksrc;
M0P_PCA->CMOD_f.CIDL = InitStruct->pca_cidl;
M0P_PCA->CCAPM2_f.ECOM = InitStruct->pca_ecom;
M0P_PCA->CCAPM2_f.CAPP = InitStruct->pca_capp;
M0P_PCA->CCAPM2_f.CAPN = InitStruct->pca_capn;
M0P_PCA->CCAPM2_f.MAT = InitStruct->pca_mat;
M0P_PCA->CCAPM2_f.TOG = InitStruct->pca_tog;
M0P_PCA->CCAPM2_f.PWM = InitStruct->pca_pwm;
M0P_PCA->EPWM_f.EPWM = InitStruct->pca_epwm;
if(InitStruct->pca_pwm == PcaPwm8bitEnable)
{
M0P_PCA->CCAP2L_f.CCAP2 = InitStruct->pca_ccapl;
M0P_PCA->CCAP2H_f.CCAP2 = InitStruct->pca_ccaph;
}
else
{
M0P_PCA->CCAP2_f.CCAP2 = InitStruct->pca_ccap;
}
M0P_PCA->CARR_f.CARR = InitStruct->pca_carr;
}
/**
******************************************************************************
** \brief PCA 模块3的初始化
** @param InitStruct : PCA初始化配置的结构体
** \retval 无
**
******************************************************************************/
void Pca_M3Init(stc_pcacfg_t* InitStruct)
{
M0P_PCA->CMOD_f.CPS = InitStruct->pca_clksrc;
M0P_PCA->CMOD_f.CIDL = InitStruct->pca_cidl;
M0P_PCA->CCAPM3_f.ECOM = InitStruct->pca_ecom;
M0P_PCA->CCAPM3_f.CAPP = InitStruct->pca_capp;
M0P_PCA->CCAPM3_f.CAPN = InitStruct->pca_capn;
M0P_PCA->CCAPM3_f.MAT = InitStruct->pca_mat;
M0P_PCA->CCAPM3_f.TOG = InitStruct->pca_tog;
M0P_PCA->CCAPM3_f.PWM = InitStruct->pca_pwm;
M0P_PCA->EPWM_f.EPWM = InitStruct->pca_epwm;
if(InitStruct->pca_pwm == PcaPwm8bitEnable)
{
M0P_PCA->CCAP3L_f.CCAP3 = InitStruct->pca_ccapl;
M0P_PCA->CCAP3H_f.CCAP3 = InitStruct->pca_ccaph;
}
else
{
M0P_PCA->CCAP3_f.CCAP3 = InitStruct->pca_ccap;
}
M0P_PCA->CARR_f.CARR = InitStruct->pca_carr;
}
/**
******************************************************************************
** \brief PCA 模块4的初始化
** @param InitStruct : PCA初始化配置的结构体
** \retval 无
**
******************************************************************************/
void Pca_M4Init(stc_pcacfg_t* InitStruct)
{
M0P_PCA->CMOD_f.CPS = InitStruct->pca_clksrc;
M0P_PCA->CMOD_f.CIDL = InitStruct->pca_cidl;
M0P_PCA->CCAPM4_f.ECOM = InitStruct->pca_ecom;
M0P_PCA->CCAPM4_f.CAPP = InitStruct->pca_capp;
M0P_PCA->CCAPM4_f.CAPN = InitStruct->pca_capn;
M0P_PCA->CCAPM4_f.MAT = InitStruct->pca_mat;
M0P_PCA->CCAPM4_f.TOG = InitStruct->pca_tog;
M0P_PCA->CCAPM4_f.PWM = InitStruct->pca_pwm;
M0P_PCA->EPWM_f.EPWM = InitStruct->pca_epwm;
if(InitStruct->pca_pwm == PcaPwm8bitEnable)
{
M0P_PCA->CCAP4L_f.CCAP4 = InitStruct->pca_ccapl;
M0P_PCA->CCAP4H_f.CCAP4 = InitStruct->pca_ccaph;
}
else
{
M0P_PCA->CCAP4_f.CCAP4 = InitStruct->pca_ccap;
}
M0P_PCA->CARR_f.CARR = InitStruct->pca_carr;
}
/**
******************************************************************************
** \brief PCA 读取CNT寄存器的数值
** @param 无
** \retval CNT的低半字值
**
******************************************************************************/
uint16_t Pca_GetCnt(void)
{
return (uint16_t)(M0P_PCA->CNT);
}
/**
******************************************************************************
** \brief PCA 向CNT寄存器写入数值
** @param cnt : 所要写入的数值
** \retval 无
**
******************************************************************************/
void Pca_SetCnt(uint16_t cnt)
{
if(GetBit((uint32_t)(&(M0P_PCA->CCON)), 6)==TRUE)
{
Pca_StartPca(FALSE);
M0P_PCA->CNT_f.CNT = cnt;
Pca_StartPca(TRUE);
}
else
{
M0P_PCA->CNT_f.CNT = cnt;
}
}
/**
******************************************************************************
** \brief PCA 返回指定通道比较高速输出标志寄存器的值
** @param Modulex : 通道号x=0、1、2、3、4
** \retval TRUE 或 FALSE
**
******************************************************************************/
boolean_t Pca_GetOut(en_pca_module_t Modulex)
{
return GetBit((uint32_t)(&(M0P_PCA->CCAPO)), Modulex);
}
/**
******************************************************************************
** \brief PCA 设置比较捕获16位寄存器CCAPx数值
** @param Modulex : 通道号x=0、1、2、3、4
** @param Value: 所要设置的值
** \retval 无
**
******************************************************************************/
void Pca_SetCcap(en_pca_module_t Modulex, uint16_t Value)
{
switch(Modulex)
{
case 0:
M0P_PCA->CCAP0_f.CCAP0 = Value;
break;
case 1:
M0P_PCA->CCAP1_f.CCAP1 = Value;
break;
case 2:
M0P_PCA->CCAP2_f.CCAP2 = Value;
break;
case 3:
M0P_PCA->CCAP3_f.CCAP3 = Value;
break;
case 4:
M0P_PCA->CCAP4_f.CCAP4 = Value;
break;
default:
break;
}
}
/**
******************************************************************************
** \brief PCA 读取比较捕获16位寄存器CCAPx数值
** @param Modulex : 通道号x=0、1、2、3、4
** \retval CCAPx的值,x=0、1、2、3、4
**
******************************************************************************/
uint16_t Pca_GetCcap(en_pca_module_t Modulex)
{
uint16_t tmp;
switch(Modulex)
{
case 0:
tmp = M0P_PCA->CCAP0_f.CCAP0;
break;
case 1:
tmp = M0P_PCA->CCAP1_f.CCAP1;
break;
case 2:
tmp = M0P_PCA->CCAP2_f.CCAP2;
break;
case 3:
tmp = M0P_PCA->CCAP3_f.CCAP3;
break;
case 4:
tmp = M0P_PCA->CCAP4_f.CCAP4;
break;
default:
break;
}
return tmp;
}
/**
******************************************************************************
** \brief PCA 设置自动重装载寄存器数值
** @param 无
** \retval 无
**
******************************************************************************/
void Pca_SetCarr(uint16_t Value)
{
M0P_PCA->CARR_f.CARR = Value;
}
/**
******************************************************************************
** \brief PCA 获取自动重装载寄存器数值
** @param 无
** \retval 无
**
******************************************************************************/
uint16_t Pca_GetCarr(void)
{
return M0P_PCA->CARR_f.CARR;
}
/**
******************************************************************************
** \brief PCA 设置比较捕获寄存器的高8位和低8位
** @param Modulex : 通道号x=0、1、2、3、4
** @param ValueH : 要写入高8位的数值
** @param ValueL : 要写入低8位的数值
** \retval 无
**
******************************************************************************/
void Pca_SetCcapHL(en_pca_module_t Modulex, uint8_t ValueH, uint8_t ValueL)
{
switch(Modulex)
{
case 0:
M0P_PCA->CCAP0H_f.CCAP0 = ValueH;
M0P_PCA->CCAP0L_f.CCAP0 = ValueL;
break;
case 1:
M0P_PCA->CCAP1H_f.CCAP1 = ValueH;
M0P_PCA->CCAP1L_f.CCAP1 = ValueL;
break;
case 2:
M0P_PCA->CCAP2H_f.CCAP2 = ValueH;
M0P_PCA->CCAP2L_f.CCAP2 = ValueL;
break;
case 3:
M0P_PCA->CCAP3H_f.CCAP3 = ValueH;
M0P_PCA->CCAP3L_f.CCAP3 = ValueL;
break;
case 4:
M0P_PCA->CCAP4H_f.CCAP4 = ValueH;
M0P_PCA->CCAP4L_f.CCAP4 = ValueL;
break;
default:
break;
}
}
/**
******************************************************************************
** \brief PCA 读取比较捕获寄存器的高8位和低8位
** @param Modulex : 通道号x=0、1、2、3、4
** @param ValueH : CCAPx高8位的数值
** @param ValueL : CCAPx低8位的数值
** \retval 无
**
******************************************************************************/
void Pca_GetCcapHL(en_pca_module_t Modulex, uint8_t *ValueH, uint8_t *ValueL)
{
switch(Modulex)
{
case 0:
*ValueH = M0P_PCA->CCAP0H_f.CCAP0;
*ValueL = M0P_PCA->CCAP0L_f.CCAP0;
break;
case 1:
*ValueH = M0P_PCA->CCAP1H_f.CCAP1;
*ValueL = M0P_PCA->CCAP1L_f.CCAP1;
break;
case 2:
*ValueH = M0P_PCA->CCAP2H_f.CCAP2;
*ValueL = M0P_PCA->CCAP2L_f.CCAP2;
break;
case 3:
*ValueH = M0P_PCA->CCAP3H_f.CCAP3;
*ValueL = M0P_PCA->CCAP3L_f.CCAP3;
break;
case 4:
*ValueH = M0P_PCA->CCAP4H_f.CCAP4;
*ValueL = M0P_PCA->CCAP4L_f.CCAP4;
break;
default:
break;
}
}
/******************************************************************************
* EOF (not truncated)
******************************************************************************/
-316
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@@ -1,316 +0,0 @@
/******************************************************************************
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file pcnt.c
**
** pcnt driver API.
** @link pcnt Group Some description @endlink
**
** - 2019-04-08 First Version
**
******************************************************************************/
/******************************************************************************
* Include files
******************************************************************************/
#include "pcnt.h"
/**
******************************************************************************
** \addtogroup PCNTGroup
******************************************************************************/
//@{
/******************************************************************************
* Local pre-processor symbols/macros ('#define')
******************************************************************************/
/******************************************************************************
* Global variable definitions (declared in header file with 'extern')
******************************************************************************/
/******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/******************************************************************************
* Local function prototypes ('static')
******************************************************************************/
/******************************************************************************
* Local variable definitions ('static')
******************************************************************************/
/**
******************************************************************************
** \brief PCNT的启动和停止控制
** @param NewState : Run_Enable 或者 Run_Disable
** @param NewState : FALSE或者TRUE
** \retval 无
**
******************************************************************************/
boolean_t Pcnt_Cmd(boolean_t NewState)
{
SetBit((uint32_t)(&(M0P_PCNT->RUN)), 0, NewState);
return GetBit((uint32_t)(&(M0P_PCNT->RUN)), 0);
}
/**
******************************************************************************
** \brief 将BUF中的值同步到CNT
** @param value : 要同步到TOP的数值
** \retval ok 或 ErrorTimeout
**
******************************************************************************/
en_result_t Pcnt_SetB2T(uint16_t value)
{
uint16_t u16TimeOut;
u16TimeOut = 1000;
M0P_PCNT->BUF = value;
M0P_PCNT->CMD_f.B2T = 1;
while(u16TimeOut--)
{
if(M0P_PCNT->SR2_f.B2T == FALSE)
{
break;
}
}
if(u16TimeOut == 0)
{
return ErrorTimeout;
}
return Ok;
}
/**
******************************************************************************
** \brief 将BUF中的值同步到CNT
** @param value : 要同步到CNT的数值
** \retval ok 或 ErrorTimeout
**
******************************************************************************/
en_result_t Pcnt_SetB2C(uint16_t value)
{
uint16_t u16TimeOut;
u16TimeOut = 1000;
M0P_PCNT->BUF = value;
M0P_PCNT->CMD_f.B2C = 1;
while(u16TimeOut--)
{
if(M0P_PCNT->SR2_f.B2C == FALSE)
{
break;
}
}
if(u16TimeOut == 0)
{
return ErrorTimeout;
}
return Ok;
}
/**
******************************************************************************
** \brief 将TOP中的值同步到CNT
** @param value : 要同步到CNT的数值
** \retval ok 或 ErrorTimeout
**
******************************************************************************/
en_result_t Pcnt_SetT2C(void)
{
uint16_t u16TimeOut;
u16TimeOut = 1000;
M0P_PCNT->CMD_f.T2C = 1;
while(u16TimeOut--)
{
if(M0P_PCNT->SR2_f.T2C == FALSE)
{
break;
}
}
if(u16TimeOut == 0)
{
return ErrorTimeout;
}
return Ok;
}
/**
******************************************************************************
** \brief 赋值BUF
** @param value : 要赋值给BUF的数值
** \retval 无
**
******************************************************************************/
void Pcnt_SetBuf(uint16_t value)
{
M0P_PCNT->TOP_f.TOP = value;
}
/**
******************************************************************************
** \brief 初始化
** @param start : 要同步到TOP的数值
** @param end : 要同步到CNT的数值
** \retval ok 或 ErrorTimeout
**
******************************************************************************/
void Pcnt_Init(stc_pcnt_initstruct_t* InitStruct)
{
M0P_PCNT->CTRL_f.S1P = InitStruct->Pcnt_S1Sel;
M0P_PCNT->CTRL_f.S0P = InitStruct->Pcnt_S0Sel;
M0P_PCNT->CTRL_f.CLKSEL = InitStruct->Pcnt_Clk;
M0P_PCNT->CTRL_f.MODE = InitStruct->Pcnt_Mode;
if(InitStruct->Pcnt_Mode == PcntDoubleMode)//如果是双通道正交脉冲计数模式
{
M0P_PCNT->SR1_f.DIR = InitStruct->Pcnt_Dir;
}
else
{
M0P_PCNT->CTRL_f.DIR = InitStruct->Pcnt_Dir;
}
M0P_PCNT->FLT_f.EN = InitStruct->Pcnt_FltEn;
M0P_PCNT->FLT_f.DEBTOP = InitStruct->Pcnt_DebTop;
M0P_PCNT->FLT_f.CLKDIV = InitStruct->Pcnt_ClkDiv;
M0P_PCNT->TOCR_f.EN = InitStruct->Pcnt_TocrEn;
M0P_PCNT->TOCR_f.TH = InitStruct->Pcnt_TocrTh;
M0P_PCNT->DBG_f.DBG = InitStruct->Pcnt_Dbg;
}
/**
******************************************************************************
** \brief 配置中断源的使能
** @param IT_Src : 中断源再PCNT_IEN内部的位位置
** @param NewState : FALSE 或TRUE
** \retval 无
**
******************************************************************************/
void Pcnt_ItCfg(en_pcnt_itfce_t IT_Src, boolean_t NewState)
{
if(NewState == TRUE)
{
M0P_PCNT->IEN |= (uint32_t)(1<<IT_Src);
}
else if(NewState == FALSE)
{
M0P_PCNT->IEN &= ~(uint32_t)(1<<IT_Src);
}
else
{
;
}
}
/**
******************************************************************************
** \brief 获取中断源的标志位
** @param IT_Src : 中断源标志位
** \retval FALSE 或TRUE
**
******************************************************************************/
boolean_t Pcnt_GetItStatus(en_pcnt_itfce_t IT_Src)
{
return ((M0P_PCNT->IFR >> IT_Src) & 1u) > 0 ? TRUE : FALSE;
}
/**
******************************************************************************
** \brief 清除中断源的标志位
** @param IT_Src : 中断源标志位
** \retval 无
**
******************************************************************************/
void Pcnt_ClrItStatus(en_pcnt_itfce_t IT_Src)
{
M0P_PCNT->ICR &= ~(uint32_t)(1<<(uint32_t)IT_Src);
}
/**
******************************************************************************
** \brief 获取PCNT_CNT寄存器的数值
** @param 无
** \retval PCNT_CNT数值
**
******************************************************************************/
uint16_t Pcnt_GetCnt(void)
{
return (uint16_t)(M0P_PCNT->CNT);
}
/**
******************************************************************************
** \brief 获取PCNT_TOP寄存器的数值
** @param 无
** \retval PCNT_TOP数值
**
******************************************************************************/
uint16_t Pcnt_GetTop(void)
{
return (uint16_t)(M0P_PCNT->TOP);
}
/**
******************************************************************************
** \brief 获取PCNT_BUF寄存器的数值
** @param 无
** \retval PCNT_BUF数值
**
******************************************************************************/
uint16_t Pcnt_GetBuf(void)
{
return (uint16_t)(M0P_PCNT->BUF);
}
//@} // Group
/******************************************************************************
* EOF (not truncated)
******************************************************************************/
-156
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@@ -1,156 +0,0 @@
/******************************************************************************
*Copyright(C)2018, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/** \file ram.c
**
** Common API of ram.
** @link RamGroup Some description @endlink
**
** - 2018-05-08
**
******************************************************************************/
/*******************************************************************************
* Include files
******************************************************************************/
#include "ram.h"
/**
*******************************************************************************
** \addtogroup ramGroup
******************************************************************************/
//@{
/*******************************************************************************
* Local pre-processor symbols/macros ('#define')
******************************************************************************/
/*******************************************************************************
* Global variable definitions (declared in header file with 'extern')
******************************************************************************/
/*******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/*******************************************************************************
* Local variable definitions ('static')
******************************************************************************/
/*******************************************************************************
* Local function prototypes ('static')
******************************************************************************/
/*******************************************************************************
* Function implementation - global ('extern') and local ('static')
******************************************************************************/
/**
*****************************************************************************
** \brief Ram奇偶校验出错地址获取
**
**
** \retval ERROR ADDRESS
*****************************************************************************/
uint32_t Ram_ErrAddrGet(void)
{
return M0P_RAM->ERRADDR;
}
/**
*****************************************************************************
** \brief Ram中断标志获取
**
**
** \retval TRUE or FALSE
*****************************************************************************/
boolean_t Ram_GetIntFlag(void)
{
if(M0P_RAM->IFR & 0x1)
{
return TRUE;
}
else
{
return FALSE;
}
}
/**
*****************************************************************************
** \brief Ram中断标志清除
**
**
** \retval Null
*****************************************************************************/
void Ram_ClearIntFlag(void)
{
M0P_RAM->ICLR = 0u;
}
/**
*****************************************************************************
** \brief Ram中断使能
**
** \retval Null
*****************************************************************************/
void Ram_EnableIrq (void)
{
M0P_RAM->CR |= 0x2u;
}
/**
*****************************************************************************
** \brief ram中断禁止
**
** \retval Null
*****************************************************************************/
void Ram_DisableIrq(void)
{
M0P_RAM->CR &= 0x1;
}
//@} // RamGroup
/*******************************************************************************
* EOF (not truncated)
******************************************************************************/
-184
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@@ -1,184 +0,0 @@
/******************************************************************************
*Copyright(C)2017, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/** \file reset.c
**
** Common API of reset.
** @link resetGroup Some description @endlink
**
** - 2017-05-04
**
******************************************************************************/
/*******************************************************************************
* Include files
******************************************************************************/
#include "reset.h"
/**
*******************************************************************************
** \addtogroup ResetGroup
******************************************************************************/
//@{
/*******************************************************************************
* Local pre-processor symbols/macros ('#define')
******************************************************************************/
/*******************************************************************************
* Global variable definitions (declared in header file with 'extern')
******************************************************************************/
/*******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/*******************************************************************************
* Local variable definitions ('static')
******************************************************************************/
/*******************************************************************************
* Local function prototypes ('static')
******************************************************************************/
/*******************************************************************************
* Function implementation - global ('extern') and local ('static')
******************************************************************************/
/**
*******************************************************************************
** \brief 获取复位源类型.
**
** \param [out] enRstFlg @ref en_reset_flag_t
**
** \retval TRUE or FALSE
******************************************************************************/
boolean_t Reset_GetFlag(en_reset_flag_t enRstFlg)
{
if(M0P_RESET->RESET_FLAG&enRstFlg)
{
return TRUE;
}
else
{
return FALSE;
}
}
/**
*******************************************************************************
** \brief 清除复位源类型.
**
** \param [in] pstcFlag @ref en_reset_flag_t
**
** \retval Null
******************************************************************************/
void Reset_ClearFlag(en_reset_flag_t enRstFlg)
{
M0P_RESET->RESET_FLAG &= ~(uint32_t)enRstFlg;
}
/**
*******************************************************************************
** \brief 清除所有复位源类型.
**
** \param Null
**
** \retval Null
******************************************************************************/
void Reset_ClearFlagAll(void)
{
M0P_RESET->RESET_FLAG = 0;
}
/**
*******************************************************************************
** \brief 所有模块进行一次复位.
**
**
** \retval Null
******************************************************************************/
void Reset_RstPeripheralAll(void)
{
M0P_RESET->PERI_RESET0 = 0u;
M0P_RESET->PERI_RESET0 = 0xFFFFFFFFu;
M0P_RESET->PERI_RESET1 = 0u;
M0P_RESET->PERI_RESET1 = 0xFFFFFFFFu;
}
/**
*******************************************************************************
** \brief 对外设源0模块进行一次复位.
**
** \param [in] enPeri @ref en_reset_peripheral0_t
**
** \retval Null
******************************************************************************/
void Reset_RstPeripheral0(en_reset_peripheral0_t enPeri)
{
M0P_RESET->PERI_RESET0 &= ~(uint32_t)enPeri;
M0P_RESET->PERI_RESET0 |= (uint32_t)enPeri;
}
/**
*******************************************************************************
** \brief 对外设源1模块进行一次复位.
**
** \param [in] enPeri @ref en_reset_peripheral1_t
**
** \retval Null
******************************************************************************/
void Reset_RstPeripheral1(en_reset_peripheral1_t enPeri)
{
M0P_RESET->PERI_RESET1 &= ~(uint32_t)enPeri;
M0P_RESET->PERI_RESET1 |= (uint32_t)enPeri;
}
//@} // ResetGroup
/*******************************************************************************
* EOF (not truncated)
******************************************************************************/
-520
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@@ -1,520 +0,0 @@
/*************************************************************************************
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file rtc.c
**
** RTC function driver API.
** @link SampleGroup Some description @endlink
**
** - 2019-04-10 First version
**
******************************************************************************/
/******************************************************************************/
/* Include files */
/******************************************************************************/
#include "rtc.h"
/**
******************************************************************************
** \addtogroup RtcGroup
******************************************************************************/
//@{
/******************************************************************************/
/* Local pre-processor symbols/macros ('#define') */
/******************************************************************************/
/******************************************************************************/
/* Local function prototypes ('const') */
/******************************************************************************/
const uint8_t Leap_Month_Base[] = {3,6,0,3,5,1,3,6,2,4,0,2};
const uint8_t NonLeap_Month_Base[] = {4,0,0,3,5,1,3,6,2,4,0,2};
const uint8_t Cnst_Month_Tbl[12]={0x31,0x28,0x31,0x30,0x31,0x30,0x31,0x31,0x30,0x31,0x30,0x31};
/******************************************************************************/
/* Local function prototypes ('static') */
/******************************************************************************/
/******************************************************************************/
/* Local variable prototypes ('static') */
/******************************************************************************/
/*****************************************************************************
* Function implementation - global ('extern') and local ('static')
*****************************************************************************/
/**
******************************************************************************
** \brief RTC计数器的使能或停止
**
** @param NewState : TRUE 或 FALSE
** \retval 无
**
******************************************************************************/
void Rtc_Cmd(boolean_t NewState)
{
SetBit((uint32_t)(&(M0P_RTC->CR0)), 7, NewState);
}
/**
******************************************************************************
** \brief RTC计数器启动等待函数,如启动RTC计数器后立即进入低功耗模式,
** 进入低功耗模式之前需执行此函数,以确保RTC已启动完成
**
** @param NewState : TRUE 或 FALSE
** \retval 无
**
******************************************************************************/
void Rtc_StartWait(void)
{
M0P_RTC->CR1_f.WAIT = 1;
while (M0P_RTC->CR1_f.WAITF != 1) //等待直到WAITF=1
{
;
}
M0P_RTC->CR1_f.WAIT = 0;
while (M0P_RTC->CR1_f.WAITF != 0) //等待直到WAITF=0
{
;
}
}
/**
******************************************************************************
** \brief RTC的1Hz输出的使能或停止
** @param pricision : RtcHz1selGeneralPricision 或 RtcHz1selHighPricision
** @param NewState : Hz1o_Disable 或 HZ1o_Enable
** \retval 无
**
******************************************************************************/
void Rtc_Hz1Cmd(en_rtc_hz1sel_t pricision, boolean_t NewState)
{
SetBit((uint32_t)(&(M0P_RTC->CR0)), 6, pricision); //设置普通精度或者高精度1Hz输出
SetBit((uint32_t)(&(M0P_RTC->CR0)), 5, NewState); //设置1Hz输出使能或禁止
}
/**
******************************************************************************
** \brief 设置周期中断的类型(PRDSEL)及其所选类型的时间(PRDS或PRDX)
**
** @param pstCyc: 根据结构体的定义设置PRDSEL、PRDS与PRDX
** \retval Ok、Error 或 ErrorInvalidParameter
**
******************************************************************************/
en_result_t Rtc_SetCyc(stc_rtc_cyccfg_t* pstCyc)
{
en_result_t enRet = Error;
M0P_RTC->CR0_f.PRDSEL = pstCyc->rtcPrdsel;
if(pstCyc->rtcPrdsel == RtcPrds)
{
M0P_RTC->CR0_f.PRDS = pstCyc->rtcPrds;
}
else if(pstCyc->rtcPrdsel == RtcPrdx)
{
if(pstCyc->rtcPrdx>=64)
{
enRet = ErrorInvalidParameter;
return enRet;
}
M0P_RTC->CR0_f.PRDX = pstCyc->rtcPrdx;
}
else
{
;
}
enRet = Ok;
return enRet;
}
/**
******************************************************************************
** \brief RTC闹钟中断的使能或停止
**
** @param NewState : TRUE 或 FALSE
** \retval 无
**
******************************************************************************/
void Rtc_AlmIeCmd(boolean_t NewState)
{
SetBit((uint32_t)(&(M0P_RTC->CR1)), 3, 0); //清除周期中断标志位
SetBit((uint32_t)(&(M0P_RTC->CR1)), 4, 0); //清除周期中断标志位
SetBit((uint32_t)(&(M0P_RTC->CR1)), 6, NewState);
}
/**
******************************************************************************
** \brief RTC闹钟的使能或停止
**
** @param NewState : Almen_Disable 或 Almen_Enable
** \retval 无
**
******************************************************************************/
void Rtc_AlmEnCmd(boolean_t NewState)
{
SetBit((uint32_t)(&(M0P_RTC->CR1)), 7, NewState);
}
/**
******************************************************************************
** \brief 获取RTC闹钟中断状态位
**
** @param 无
** \retval TRUE 或 FALSE
**
******************************************************************************/
boolean_t Rtc_GetAlmfItStatus(void)
{
return GetBit((uint32_t)(&(M0P_RTC->CR1)), 4);
}
/**
******************************************************************************
** \brief 清除RTC闹钟中断状态位
**
** @param 无
** \retval 无
**
******************************************************************************/
void Rtc_ClearAlmfItStatus(void)
{
SetBit((uint32_t)(&(M0P_RTC->CR1)), 4, 0);
}
/**
******************************************************************************
** \brief 清除RTC周期中断状态位
**
** @param 无
** \retval 无
**
******************************************************************************/
void Rtc_ClearPrdfItStatus(void)
{
SetBit((uint32_t)(&(M0P_RTC->CR1)), 3, 0);
}
/**
******************************************************************************
** \brief 获取RTC周期中断状态位
**
** @param 无
** \retval TRUE 或 FALSE
**
******************************************************************************/
boolean_t Rtc_GetPridItStatus(void)
{
return GetBit((uint32_t)(&(M0P_RTC->CR1)), 3);
}
/**
******************************************************************************
** \brief 配置RTC的误差补偿寄存器
**
** @param CompValue:数值的范围为:32-256
** @param NewStatus: RtcCompenDisable 或 RtcAmCompenEnable
** \retval Ok ErrorInvalidParameter
**
******************************************************************************/
en_result_t Rtc_CompCfg(uint16_t CompVlue, en_rtc_compen_t NewStatus)
{
en_result_t enRet = Error;
if(CompVlue<=256)
{
M0P_RTC->COMPEN_f.EN = NewStatus;
M0P_RTC->COMPEN_f.CR = CompVlue;
}
else
{
enRet = ErrorInvalidParameter;
}
return enRet;
}
/**
******************************************************************************
** \brief RTC根据日期计算周数
**
** \param pu8buf时间数据
** \param u8limit_min最小值
** \param u8limit_max最大值
**
** \retval Error 错误,Ok校验正确
**
******************************************************************************/
en_result_t Check_BCD_Format(uint8_t u8data,uint8_t u8limit_min, uint8_t u8limit_max)
{
if (((u8data & 0x0F) > 0x09) || ((u8data & 0xF0) > 0x90)
||(u8data > u8limit_max) || (u8data < u8limit_min))
{
return Error;
}
return Ok;
}
/**
******************************************************************************
** \brief RTC 平、闰年检测
**
** \param u8year:年十进制低两位:0-99
**
** \retval 1:闰年 0:平年
**
******************************************************************************/
uint8_t Rtc_CheckLeapYear(uint8_t u8year)
{
uint16_t tmp;
tmp=2000+u8year;
if((((tmp % 4)==0) && ((tmp % 100) !=0))|| ((tmp % 400) ==0))
{
return 1;
}
else
{
return 0;
}
}
/**
******************************************************************************
** \brief RTC根据年获取二月的天数
**
** \param [in] u8month月份,u8year年份
**
** \retval u8day天数:28或29
**
******************************************************************************/
uint8_t Get_Month2_Day( uint8_t u8year)
{
uint8_t u8day = 0;
u8day = 28;
if(Rtc_CheckLeapYear(u8year) == 1)
{
u8day++;
}
return u8day;
}
/**
******************************************************************************
** \brief RTC获取时间函数
**
** \param time: 用于存放读取自时间寄存器的时间数据,格式为BCD码格式
**
** \retval Ok 获取正常
** \retval ErrorTimeout 时间溢出错误
******************************************************************************/
en_result_t Rtc_ReadDateTime(stc_rtc_time_t* time)
{
uint32_t u32TimeOut;
ASSERT(NULL != pstcTimeDate);
u32TimeOut = 1000;
if(1 == M0P_RTC->CR0_f.START)
{
M0P_RTC->CR1_f.WAIT = 1;
while(u32TimeOut--)
{
if(M0P_RTC->CR1_f.WAITF)
{
break;
}
}
if(u32TimeOut==0)
{
return ErrorTimeout;
}
}
time->u8Second = M0P_RTC->SEC;
time->u8Minute = M0P_RTC->MIN;
if(1 == M0P_RTC->CR0_f.AMPM)
{
time->u8Hour = M0P_RTC->HOUR;
}
else
{
time->u8Hour = M0P_RTC->HOUR&0x1f;
}
time->u8Day = M0P_RTC->DAY;
time->u8DayOfWeek = M0P_RTC->WEEK;
time->u8Month = M0P_RTC->MON;
time->u8Year = M0P_RTC->YEAR;
M0P_RTC->CR1_f.WAIT = 0;
if(1 == M0P_RTC->CR0_f.START)
{
while(M0P_RTC->CR1_f.WAITF)
{}
}
return Ok;
}
/**
******************************************************************************
** \brief 向RTC时间寄存器写入时间
**
** \param time: 存放时间的结构体,各个时间均为BCD码格式
**
** \retval ErrorTimeout 或 Ok
**
******************************************************************************/
en_result_t Rtc_SetTime(stc_rtc_time_t* time)
{
en_result_t enRet = Ok;
uint16_t u16TimeOut;
u16TimeOut = 1000;
if(M0P_RTC->CR0_f.START == 1)
{
M0P_RTC->CR1_f.WAIT = 1;
while(--u16TimeOut)
{
if(M0P_RTC->CR1_f.WAITF)
{
break;
}
}
if(u16TimeOut==0)
{
return ErrorTimeout;
}
}
M0P_RTC->SEC = time->u8Second;
M0P_RTC->MIN = time->u8Minute;
M0P_RTC->HOUR = time->u8Hour;
M0P_RTC->DAY = time->u8Day;
M0P_RTC->MON = time->u8Month;
M0P_RTC->YEAR = time->u8Year;
M0P_RTC->WEEK = time->u8DayOfWeek;
M0P_RTC->CR1_f.WAIT = 0;
if(M0P_RTC->CR0_f.START == 1)
{
while(M0P_RTC->CR1_f.WAITF)
{}
}
enRet = Ok;
return enRet;
}
/**
******************************************************************************
** \brief RTC闹钟中断时间获取
**
** \param pstcAlarmTime:存放闹钟时间寄存器数据:秒 分 时 周
**
** \retval 无
**
******************************************************************************/
void Rtc_GetAlarmTime(stc_rtc_alarmtime_t* pstcAlarmTime)
{
pstcAlarmTime->RtcAlarmSec = M0P_RTC->ALMSEC;
pstcAlarmTime->RtcAlarmMinute = M0P_RTC->ALMMIN;
pstcAlarmTime->RtcAlarmHour = M0P_RTC->ALMHOUR;
pstcAlarmTime->RtcAlarmWeek = M0P_RTC->ALMWEEK;
}
/**
******************************************************************************
** \brief RTC闹钟设置
**
** \param [in] pstcAlarmTime闹钟时间:秒 分 时 周
**
** \retval Ok 设置正常
**
******************************************************************************/
en_result_t Rtc_SetAlarmTime(stc_rtc_alarmtime_t* pstcAlarmTime)
{
en_result_t enRet = Ok;
// ASSERT(NULL != pstcAlarmTime);
Rtc_AlmEnCmd(FALSE); //闹钟禁止以后再设置闹钟时间
enRet = Check_BCD_Format(pstcAlarmTime->RtcAlarmSec,0x00,0x59);
if(M0P_RTC->CR0_f.AMPM == RtcAm)
{
enRet = Check_BCD_Format(pstcAlarmTime->RtcAlarmHour,0x00,0x12);
}
else
{
enRet = Check_BCD_Format(pstcAlarmTime->RtcAlarmHour,0x00,0x24);
}
if(enRet != Ok)
{
return enRet;
}
enRet = Check_BCD_Format(pstcAlarmTime->RtcAlarmMinute,0x00,0x59);
if(enRet != Ok)
{
return enRet;
}
if(enRet != Ok)
{
return enRet;
}
M0P_RTC->ALMSEC = pstcAlarmTime->RtcAlarmSec & 0x7f;
M0P_RTC->ALMMIN = pstcAlarmTime->RtcAlarmMinute & 0x7f;
M0P_RTC->ALMHOUR = pstcAlarmTime->RtcAlarmHour & 0x3f;
M0P_RTC->ALMWEEK = pstcAlarmTime->RtcAlarmWeek;
Rtc_AlmEnCmd(TRUE); //闹钟许可
enRet = Ok;
return enRet;
}
/**
******************************************************************************
** \brief 初始化RTC
**
** @param Rtc_InitStruct 存放stc_rtc_initstruct_t类型的结构体
** \retval 无
**
******************************************************************************/
void Rtc_Init(stc_rtc_initstruct_t* Rtc_InitStruct)
{
Rtc_Cmd(FALSE);
M0P_RTC->CR0_f.AMPM = Rtc_InitStruct->rtcAmpm; //实时时钟小时的时制
Rtc_SetCyc(&Rtc_InitStruct->rtcPrdsel); //设置周期中断的类型(PRDSEL)及其所选类型的时间(PRDS或PRDX)
M0P_RTC->CR1_f.CKSEL = Rtc_InitStruct->rtcClksrc; //实时时钟RTC的时钟源
Rtc_CompCfg(Rtc_InitStruct->rtcCompValue, Rtc_InitStruct->rtcCompen); //配置时钟误差补偿寄存器
Rtc_SetTime(&Rtc_InitStruct->rtcTime); //设置初始时钟
}
-363
View File
@@ -1,363 +0,0 @@
/******************************************************************************
* Copyright (C) 2016, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with eaenCh copy of this software, whether used in part or whole,
* at all times.
*/
/*****************************************************************************/
/** \file spi.c
**
** SPI driver API.
** @link Driver Group Some description @endlink
**
** - 2018-05-17 1.0 Devi First version for Device Driver Library of
** Module.
**
*****************************************************************************/
/******************************************************************************
* Include files
*****************************************************************************/
#include "spi.h"
/**
******************************************************************************
** \addtogroup SpiGroup
*****************************************************************************/
//@{
/******************************************************************************
* Local pre-processor symbols/macros ('#define')
*****************************************************************************/
#define IS_VALID_STAT(x) ( SpiIf == (x)||\
SpiSserr == (x)||\
SpiBusy == (x)||\
SpiMdf == (x)||\
SpiTxe == (x)||\
SpiRxne == (x))
/******************************************************************************/
/* Local function prototypes ('static') */
/******************************************************************************/
/******************************************************************************/
/* Local variable prototypes ('static') */
/******************************************************************************/
/**
******************************************************************************
** \brief SPI 请求状态获取
**
** \param [in]SPIx 通道, enStatus 获取请求
**
** \retval 请求状态
**
******************************************************************************/
boolean_t Spi_GetStatus(M0P_SPI_TypeDef* SPIx, en_spi_status_t enStatus)
{
ASSERT(IS_VALID_STAT(enStatus));
if(SPIx->STAT&enStatus)
{
return TRUE;
}
else
{
return FALSE;
}
}
/**
******************************************************************************
** \brief SPI中断清除
**
** \param [in]SPIx 通道选择
**
** \retval 请求状态
**
******************************************************************************/
en_result_t Spi_ClearStatus(M0P_SPI_TypeDef* SPIx)
{
SPIx->ICLR = 0;
return Ok;
}
/**
******************************************************************************
** \brief SPI 中断使能函数
**
** \param [in] SPIx 通道
**
** \retval Ok成功
**
******************************************************************************/
en_result_t Spi_IrqEnable(M0P_SPI_TypeDef* SPIx)
{
SPIx->CR2 |= 0x4u;
return Ok;
}
/**
******************************************************************************
** \brief SPI 中断禁止函数
**
** \param [in] enCh通道
**
** \retval Ok成功
**
******************************************************************************/
en_result_t Spi_IrqDisable(M0P_SPI_TypeDef* SPIx)
{
SPIx->CR2 &= ~0x4u;
return Ok;
}
/**
******************************************************************************
** \brief SPI 功能使能函数
**
** \param [in] SPIx 通道,enFunc功能
**
** \retval Ok初始化成功
**
******************************************************************************/
en_result_t Spi_FuncEnable(M0P_SPI_TypeDef* SPIx, en_spi_func_t enFunc)
{
SPIx->CR2 |= enFunc;
return Ok;
}
/**
******************************************************************************
** \brief SPI 功能禁止函数
**
** \param [in] SPIx 通道,enFunc功能
**
** \retval Ok初始化成功
**
******************************************************************************/
en_result_t Spi_FuncDisable(M0P_SPI_TypeDef* SPIx, en_spi_func_t enFunc)
{
SPIx->CR2 &= ~(uint32_t)enFunc;
return Ok;
}
/**
******************************************************************************
** \brief SPI 总体初始化函数
**
** \param [in] SPIx 通道
** \param [in] pstcSpiCfg 初始化结构体
**
** \retval Ok初始化成功
** \retval ErrorInvalidParameter 初始化错误
******************************************************************************/
en_result_t Spi_Init(M0P_SPI_TypeDef* SPIx, stc_spi_cfg_t *pstcSpiCfg)
{
ASSERT(NULL != pstcSpiCfg);
SPIx->CR = 0;
SPIx->SSN = TRUE;
SPIx->CR = (uint32_t)pstcSpiCfg->enSpiMode |
(uint32_t)pstcSpiCfg->enPclkDiv |
(uint32_t)pstcSpiCfg->enCPOL |
(uint32_t)pstcSpiCfg->enCPHA |
(uint32_t)0x40;
SPIx->STAT = 0x00;
return Ok;
}
/**
******************************************************************************
** \brief SPI 配置主发送的电平
**
** \param [in] SPIx 通道选择,bFlag高低电平
**
** \retval 无
**
******************************************************************************/
void Spi_SetCS(M0P_SPI_TypeDef* SPIx, boolean_t bFlag)
{
SPIx->SSN = bFlag;
}
/**
******************************************************************************
** \brief SPI 发送一字节函数
**
** \param [in] SPIx 通道选择,u8Data发送字节
**
** \retval Ok发送成功
**
******************************************************************************/
en_result_t Spi_SendData(M0P_SPI_TypeDef* SPIx, uint8_t u8Data)
{
SPIx->DATA = u8Data;
return Ok;
}
/**
******************************************************************************
** \brief SPI 读/写一字节函数
**
** \param [in] SPIx 通道选择
** \param [in] u8Data 发送一字节数据
**
** \retval 接收一字节数据
**
******************************************************************************/
uint8_t Spi_RWByte(M0P_SPI_TypeDef* SPIx, uint8_t u8Data)
{
uint16_t Dly = 0xffff;
while(FALSE == SPIx->STAT_f.TXE) {
Dly--;
if(Dly == 0)
break;
}
Dly = 0xffff;
SPIx->DATA = u8Data;
while(FALSE == SPIx->STAT_f.RXNE) {
Dly--;
if(Dly == 0)
break;
}
return SPIx->DATA;
}
/**
******************************************************************************
** \brief SPI 从机预准备第一字节数据
**
** \param [in] SPIx 通道选择
** \param [in] u8Data 预准备第一字节数据
**
** \retval None
**
******************************************************************************/
void Spi_Slave_DummyWriteData(M0P_SPI_TypeDef* SPIx, uint8_t u8Data)
{
while(FALSE == SPIx->STAT_f.TXE){;}
SPIx->DATA = u8Data;
}
/**
******************************************************************************
** \brief SPI 连续发送多字节函数
**
** \param [in] SPIx 通道选择
** \param [in] pu8Buf 发送数据指针
**
** \retval Ok发送成功
**
******************************************************************************/
en_result_t Spi_SendBuf(M0P_SPI_TypeDef* SPIx, uint8_t* pu8Buf, uint32_t u32Len)
{
uint32_t u32Index=0;
for(u32Index=0; u32Index<u32Len; u32Index++)
{
while(FALSE == SPIx->STAT_f.TXE){;}
SPIx->DATA = pu8Buf[u32Index];
while(FALSE == SPIx->STAT_f.RXNE){;}
pu8Buf[u32Index] = SPIx->DATA;
}
while(FALSE == SPIx->STAT_f.TXE){;}
while(TRUE == SPIx->STAT_f.BUSY){;}
return Ok;
}
/**
******************************************************************************
** \brief SPI 接收一字节函数
**
** \param [in] SPIx接收通道
**
** \retval 接收一字节数据
**
******************************************************************************/
uint8_t Spi_ReceiveData(M0P_SPI_TypeDef* SPIx)
{
return SPIx->DATA;
}
/**
******************************************************************************
** \brief SPI 连续接收多字节函数
**
** \param [in] SPIx 通道选择
** \param [in] pu8Buf 发送数据指针
**
** \retval Ok发送成功
**
******************************************************************************/
en_result_t Spi_ReceiveBuf(M0P_SPI_TypeDef* SPIx, uint8_t* pu8Buf, uint32_t u32Len)
{
uint32_t u32Index=0;
for(u32Index=0; u32Index<u32Len; u32Index++)
{
while(FALSE == SPIx->STAT_f.TXE){;}
SPIx->DATA = 0x00;
while(FALSE == SPIx->STAT_f.RXNE){;}
pu8Buf[u32Index] = SPIx->DATA;
}
while(TRUE == SPIx->STAT_f.BUSY){;}
return Ok;
}
//@} // SpiGroup
/******************************************************************************
* EOF (not truncated)
*****************************************************************************/
-746
View File
@@ -1,746 +0,0 @@
/******************************************************************************
*Copyright(C)2018, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/** \file sysctrl.c
**
** Common API of sysctrl.
** @link SysctrlGroup Some description @endlink
**
** - 2018-04-22 Lux
**
******************************************************************************/
/*******************************************************************************
* Include files
******************************************************************************/
#include "sysctrl.h"
/**
*******************************************************************************
** \addtogroup SysctrlGroup
******************************************************************************/
//@{
/*******************************************************************************
* Local pre-processor symbols/macros ('#define')
******************************************************************************/
#define CLK_TIMEOUT (1000000u)
#define IS_VALID_SRC(x) ( ClkRCH == (x)||\
ClkXTH == (x)||\
ClkRCL == (x)||\
ClkXTL == (x) )
#define IS_VALID_FUNC(x) ( ClkFuncWkupRCH == (x)||\
ClkFuncXTHEn == (x)||\
ClkFuncXTLEn == (x)||\
ClkFuncXTLAWSON == (x)||\
ClkFuncFaultEn == (x)||\
ClkFuncRtcLPWEn == (x)||\
ClkFuncLockUpEn == (x)||\
ClkFuncRstPinIOEn == (x)||\
ClkFuncSwdPinIOEn == (x) )
#define RC_TRIM_BASE_ADDR ((volatile uint16_t*) (0x00100C00ul))
#define RCH_CR_TRIM_24M_VAL (*((volatile uint16_t*) (0x00100C00ul)))
#define RCH_CR_TRIM_22_12M_VAL (*((volatile uint16_t*) (0x00100C02ul)))
#define RCH_CR_TRIM_16M_VAL (*((volatile uint16_t*) (0x00100C04ul)))
#define RCH_CR_TRIM_8M_VAL (*((volatile uint16_t*) (0x00100C06ul)))
#define RCH_CR_TRIM_4M_VAL (*((volatile uint16_t*) (0x00100C08ul)))
#define RCL_CR_TRIM_38400_VAL (*((volatile uint16_t*) (0x00100C20ul)))
#define RCL_CR_TRIM_32768_VAL (*((volatile uint16_t*) (0x00100C22ul)))
/*******************************************************************************
* Global variable definitions (declared in header file with 'extern')
******************************************************************************/
extern uint32_t SystemCoreClock;
/*******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/*******************************************************************************
* Local variable definitions ('static')
******************************************************************************/
/*******************************************************************************
* Local function prototypes ('static')
******************************************************************************/
/*******************************************************************************
* Function implementation - global ('extern') and local ('static')
******************************************************************************/
/**
*******************************************************************************
** \brief SYSCTRL0\SYSCTRL1寄存器操作解锁
**
** \retval None
******************************************************************************/
static void _SysctrlUnlock(void)
{
M0P_SYSCTRL->SYSCTRL2 = 0x5A5A;
M0P_SYSCTRL->SYSCTRL2 = 0xA5A5;
}
/**
*******************************************************************************
** \brief 系统时钟源使能
** \param [in] enSource 目标时钟源
** \param [in] bFlag 使能1-开/0-关
** \retval Ok 设定成功
** 其他 设定失败
******************************************************************************/
en_result_t Sysctrl_ClkSourceEnable(en_sysctrl_clk_source_t enSource, boolean_t bFlag)
{
en_result_t enRet = Ok;
uint32_t u32Temp;
_SysctrlUnlock();
bFlag = !!bFlag;
u32Temp = M0P_SYSCTRL->PERI_CLKEN0;
switch (enSource)
{
case SysctrlClkRCH:
M0P_SYSCTRL->SYSCTRL0_f.RCH_EN = bFlag;
while(bFlag && (1 != M0P_SYSCTRL->RCH_CR_f.STABLE))
{
;
}
break;
case SysctrlClkXTH:
M0P_SYSCTRL->PERI_CLKEN0_f.GPIO = TRUE;
M0P_GPIO->PFADS |= 3u;
M0P_SYSCTRL->SYSCTRL0_f.XTH_EN = bFlag;
while(bFlag && (1 != M0P_SYSCTRL->XTH_CR_f.STABLE))
{
;
}
break;
case SysctrlClkRCL:
M0P_SYSCTRL->SYSCTRL0_f.RCL_EN = bFlag;
while(bFlag && (1 != M0P_SYSCTRL->RCL_CR_f.STABLE))
{
;
}
break;
case SysctrlClkXTL:
M0P_SYSCTRL->PERI_CLKEN0_f.GPIO = TRUE;
M0P_GPIO->PCADS |= 0xC000;
M0P_SYSCTRL->SYSCTRL0_f.XTL_EN = bFlag;
while(bFlag && (1 != M0P_SYSCTRL->XTL_CR_f.STABLE))
{
;
}
break;
case SysctrlClkPLL:
M0P_SYSCTRL->PERI_CLKEN0_f.ADC = TRUE;
M0P_BGR->CR_f.BGR_EN = TRUE;
delay10us(20);
M0P_SYSCTRL->SYSCTRL0_f.PLL_EN = bFlag;
while(bFlag && (1 != M0P_SYSCTRL->PLL_CR_f.STABLE))
{
;
}
break;
default:
enRet = ErrorInvalidParameter;
break;
}
M0P_SYSCTRL->PERI_CLKEN0 = u32Temp;
return enRet;
}
/**
*******************************************************************************
** \brief 外部高速晶振驱动配置
** \param [in] enFreq 外部高速晶振频率范围选择
** \param [in] enDriver 外部高速晶振驱动能力选择
** \retval Ok 设定成功
** 其他 设定失败
******************************************************************************/
en_result_t Sysctrl_XTHDriverCfg(en_sysctrl_xtal_driver_t enDriver)
{
en_result_t enRet = Ok;
M0P_SYSCTRL->XTH_CR_f.DRIVER = enDriver;
return enRet;
}
/**
*******************************************************************************
** \brief 外部低速晶振驱动配置
** \param [in] enFreq 外部低速晶振频率范围选择
** \param [in] enDriver 外部低速晶振驱动能力选择
** \retval Ok 设定成功
** 其他 设定失败
******************************************************************************/
en_result_t Sysctrl_XTLDriverCfg(en_sysctrl_xtl_amp_t enAmp, en_sysctrl_xtal_driver_t enDriver)
{
en_result_t enRet = Ok;
M0P_SYSCTRL->XTL_CR_f.AMP_SEL = enAmp;
M0P_SYSCTRL->XTL_CR_f.DRIVER = enDriver;
return enRet;
}
/**
*******************************************************************************
** \brief 外部高速时钟稳定周期配置
** \param [in] enCycle 外部高速时钟稳定周期设置
** \retval Ok 设定成功
** 其他 设定失败
******************************************************************************/
en_result_t Sysctrl_SetXTHStableTime(en_sysctrl_xth_cycle_t enCycle)
{
en_result_t enRet = Ok;
M0P_SYSCTRL->XTH_CR_f.STARTUP = enCycle;
return enRet;
}
/**
*******************************************************************************
** \brief 内部低速时钟稳定周期配置
** \param [in] enCycle 内部低速时钟稳定周期设置
** \retval Ok 设定成功
** 其他 设定失败
******************************************************************************/
en_result_t Sysctrl_SetRCLStableTime(en_sysctrl_rcl_cycle_t enCycle)
{
en_result_t enRet = Ok;
M0P_SYSCTRL->RCL_CR_f.STARTUP = enCycle;
return enRet;
}
/**
*******************************************************************************
** \brief 外部低速时钟稳定周期配置
** \param [in] enCycle 外部低速时钟稳定周期设置
** \retval Ok 设定成功
** 其他 设定失败
******************************************************************************/
en_result_t Sysctrl_SetXTLStableTime(en_sysctrl_xtl_cycle_t enCycle)
{
en_result_t enRet = Ok;
M0P_SYSCTRL->XTL_CR_f.STARTUP = enCycle;
return enRet;
}
/**
*******************************************************************************
** \brief PLL稳定周期配置
** \param [in] enCycle PLL稳定周期设置
** \retval Ok 设定成功
** 其他 设定失败
******************************************************************************/
en_result_t Sysctrl_SetPLLStableTime(en_sysctrl_pll_cycle_t enCycle)
{
en_result_t enRet = Ok;
M0P_SYSCTRL->PLL_CR_f.STARTUP = enCycle;
return enRet;
}
/**
*******************************************************************************
** \brief 时钟源切换,该函数执行后会开启新时钟源
** \note 选择时钟源之前,需根据需要配置目标时钟源的频率/驱动参数/使能时钟源等
** \param [in] enSource 新时钟源
**
** \retval Ok 设定成功
** 其他 设定失败
******************************************************************************/
en_result_t Sysctrl_SysClkSwitch(en_sysctrl_clk_source_t enSource)
{
en_result_t enRet = Ok;
en_sysctrl_clk_source_t ClkNew = enSource;
_SysctrlUnlock();
M0P_SYSCTRL->SYSCTRL0_f.CLKSW = ClkNew;
//更新Core时钟(HCLK
SystemCoreClockUpdate();
return enRet;
}
/**
*******************************************************************************
** \brief 获得系统时钟(HCLK)频率值
** \retval uint32_t HCLK频率值
**
******************************************************************************/
uint32_t Sysctrl_GetHClkFreq(void)
{
uint32_t u32Val = 0;
const uint32_t u32hcr_tbl[] = { 4000000, 8000000, 16000000, 22120000, 24000000};
const uint16_t u32lcr_tbl[] = { 32768, 38400};
en_sysctrl_clk_source_t enSrc;
uint16_t u16Trim[5] = {0};
u16Trim[4] = RCH_CR_TRIM_24M_VAL;
u16Trim[3] = RCH_CR_TRIM_22_12M_VAL;
u16Trim[2] = RCH_CR_TRIM_16M_VAL;
u16Trim[1] = RCH_CR_TRIM_8M_VAL;
u16Trim[0] = RCL_CR_TRIM_38400_VAL;
//获取当前系统时钟
enSrc = (en_sysctrl_clk_source_t)(M0P_SYSCTRL->SYSCTRL0_f.CLKSW);
switch (enSrc)
{
case SysctrlClkRCH:
{
if((M0P_SYSCTRL->RCH_CR_f.TRIM) == (u16Trim[4]))
{
u32Val = u32hcr_tbl[4];
}
else if((M0P_SYSCTRL->RCH_CR_f.TRIM) == (u16Trim[3]))
{
u32Val = u32hcr_tbl[3];
}
else if((M0P_SYSCTRL->RCH_CR_f.TRIM) == (u16Trim[2]))
{
u32Val = u32hcr_tbl[2];
}
else if((M0P_SYSCTRL->RCH_CR_f.TRIM) == (u16Trim[1]))
{
u32Val = u32hcr_tbl[1];
}
else
{
u32Val = u32hcr_tbl[0];
}
}
break;
case SysctrlClkXTH:
u32Val = SYSTEM_XTH;
break;
case SysctrlClkRCL:
{
if(u16Trim[0] == (M0P_SYSCTRL->RCL_CR_f.TRIM))
{
u32Val = u32lcr_tbl[1];
}
else
{
u32Val = u32lcr_tbl[0];
}
}
break;
case SysctrlClkXTL:
u32Val = SYSTEM_XTL;
break;
case SysctrlClkPLL:
{
if (SysctrlPllRch == M0P_SYSCTRL->PLL_CR_f.REFSEL)
{
if(u16Trim[4] == M0P_SYSCTRL->RCH_CR_f.TRIM)
{
u32Val = u32hcr_tbl[4];
}
else if(u16Trim[3] == M0P_SYSCTRL->RCH_CR_f.TRIM)
{
u32Val = u32hcr_tbl[3];
}
else if(u16Trim[2] == M0P_SYSCTRL->RCH_CR_f.TRIM)
{
u32Val = u32hcr_tbl[2];
}
else if(u16Trim[1] == M0P_SYSCTRL->RCH_CR_f.TRIM)
{
u32Val = u32hcr_tbl[1];
}
else
{
u32Val = u32hcr_tbl[0];
}
}
else
{
u32Val = SYSTEM_XTH;
}
u32Val = (u32Val * M0P_SYSCTRL->PLL_CR_f.DIVN);
}
break;
default:
u32Val = 0u;
break;
}
u32Val = (u32Val >> M0P_SYSCTRL->SYSCTRL0_f.HCLK_PRS);
return u32Val;
}
/**
*******************************************************************************
** \brief 获得外设时钟(PCLK)频率值
** \retval uint32_t PCLK频率值(Hz)
**
******************************************************************************/
uint32_t Sysctrl_GetPClkFreq(void)
{
uint32_t u32Val = 0;
u32Val = Sysctrl_GetHClkFreq();
u32Val = (u32Val >> (M0P_SYSCTRL->SYSCTRL0_f.PCLK_PRS));
return u32Val;
}
/**
*******************************************************************************
** \brief 时钟初始化函数
** \param [in] pstcCfg 初始化配置参数
** \retval Ok 设定成功
** 其他 设定失败
******************************************************************************/
en_result_t Sysctrl_ClkInit(stc_sysctrl_clk_cfg_t *pstcCfg)
{
en_result_t enRet = Ok;
//系统时钟参数配置
switch(pstcCfg->enClkSrc)
{
case SysctrlClkRCH:
break;
case SysctrlClkXTH:
Sysctrl_XTHDriverCfg(SysctrlXtalDriver3);
Sysctrl_SetXTHStableTime(SysctrlXthStableCycle16384);
break;
case SysctrlClkRCL:
Sysctrl_SetRCLStableTime(SysctrlRclStableCycle256);
break;
case SysctrlClkXTL:
Sysctrl_XTLDriverCfg(SysctrlXtlAmp3, SysctrlXtalDriver3);
Sysctrl_SetXTLStableTime(SysctrlXtlStableCycle16384);
break;
case SysctrlClkPLL:
Sysctrl_SetPLLStableTime(SysctrlPllStableCycle16384);
break;
default:
enRet = ErrorInvalidParameter;
break;
}
//时钟源使能
Sysctrl_ClkSourceEnable(pstcCfg->enClkSrc, TRUE);
//时钟源切换
Sysctrl_SysClkSwitch(pstcCfg->enClkSrc);
//时钟分频设置
Sysctrl_SetHCLKDiv(pstcCfg->enHClkDiv);
Sysctrl_SetPCLKDiv(pstcCfg->enPClkDiv);
return enRet;
}
/**
*******************************************************************************
** \brief 时钟去初始化函数
** \param [in]
** \retval Ok 设定成功
** 其他 设定失败
******************************************************************************/
en_result_t Sysctrl_ClkDeInit(void)
{
en_result_t enRet = Ok;
//配置RCH为内部4Hz
Sysctrl_SetRCHTrim(SysctrlRchFreq4MHz);
//时钟源使能
Sysctrl_ClkSourceEnable(SysctrlClkRCH, TRUE);
//时钟源切换
Sysctrl_SysClkSwitch(SysctrlClkRCH);
//其它时钟源使能关闭
Sysctrl_ClkSourceEnable(SysctrlClkXTH, FALSE);
Sysctrl_ClkSourceEnable(SysctrlClkRCL, FALSE);
Sysctrl_ClkSourceEnable(SysctrlClkXTL, FALSE);
Sysctrl_ClkSourceEnable(SysctrlClkPLL, FALSE);
//时钟分频设置
Sysctrl_SetHCLKDiv(SysctrlHclkDiv1);
Sysctrl_SetPCLKDiv(SysctrlPclkDiv1);
return enRet;
}
/**
*******************************************************************************
** \brief 内部高速时钟频率TRIM值加载
** \param [in] enRCHFreq 设定的RCH目标频率值
** \retval Ok 设定成功
** 其他 设定失败或时钟未稳定
******************************************************************************/
en_result_t Sysctrl_SetRCHTrim(en_sysctrl_rch_freq_t enRCHFreq)
{
//加载RCH Trim值
M0P_SYSCTRL->RCH_CR_f.TRIM = *(RC_TRIM_BASE_ADDR + enRCHFreq);
return Ok;
}
/**
*******************************************************************************
** \brief 外部高速时钟频率范围设定
** \param [in] enXTHFreq 设定的频率值
** \retval Ok 设定成功
** 其他 设定失败或时钟未稳定
******************************************************************************/
en_result_t Sysctrl_SetXTHFreq(en_sysctrl_xth_freq_t enXTHFreq)
{
en_result_t enRet = Ok;
M0P_SYSCTRL->XTH_CR_f.XTH_FSEL = enXTHFreq;
return enRet;
}
/**
*******************************************************************************
** \brief PLL时钟配置
** \param [in] pstcPLLCfg PLL配置结构体指针
** \retval Ok 设定成功
** 其他 设定失败或参数值不匹配
******************************************************************************/
en_result_t Sysctrl_SetPLLFreq(stc_sysctrl_pll_cfg_t *pstcPLLCfg)
{
en_result_t enRet = Ok;
uint16_t u16Trim[5] = {0};
u16Trim[4] = RCH_CR_TRIM_24M_VAL;
u16Trim[3] = RCH_CR_TRIM_22_12M_VAL;
u16Trim[2] = RCH_CR_TRIM_16M_VAL;
u16Trim[1] = RCH_CR_TRIM_8M_VAL;
////PLL最高时钟不能超过48MHz
//RCH作为PLL输入
if (SysctrlPllRch == pstcPLLCfg->enPllClkSrc)
{
if( ((u16Trim[4] == M0P_SYSCTRL->RCH_CR_f.TRIM) && (pstcPLLCfg->enPllMul > 2)) ||
((u16Trim[3] == M0P_SYSCTRL->RCH_CR_f.TRIM) && (pstcPLLCfg->enPllMul > 2)) ||
((u16Trim[2] == M0P_SYSCTRL->RCH_CR_f.TRIM) && (pstcPLLCfg->enPllMul > 3)) ||
((u16Trim[1] == M0P_SYSCTRL->RCH_CR_f.TRIM) && (pstcPLLCfg->enPllMul > 6)))
{
return ErrorInvalidMode;
}
}
else //XTH作为PLL输入
{
if ((SYSTEM_XTH * pstcPLLCfg->enPllMul) > 48*1000*1000)
{
return ErrorInvalidMode;
}
}
M0P_SYSCTRL->PLL_CR_f.FRSEL = pstcPLLCfg->enInFreq;
M0P_SYSCTRL->PLL_CR_f.FOSC = pstcPLLCfg->enOutFreq;
M0P_SYSCTRL->PLL_CR_f.DIVN = pstcPLLCfg->enPllMul;
M0P_SYSCTRL->PLL_CR_f.REFSEL = pstcPLLCfg->enPllClkSrc;
return enRet;
}
/**
*******************************************************************************
** \brief 内部低速时钟频率TRIM值加载
** \param [in] enRCLFreq 设定的RCL目标频率值
** \retval Ok 设定成功
** 其他 设定失败
******************************************************************************/
en_result_t Sysctrl_SetRCLTrim(en_sysctrl_rcl_freq_t enRCLFreq)
{
M0P_SYSCTRL->RCL_CR_f.TRIM = *(RC_TRIM_BASE_ADDR + enRCLFreq);
return Ok;
}
/**
*******************************************************************************
** \brief 系统时钟(HCLK)分频设定
** \param [in] enHCLKDiv 分频设定值
** \retval Ok 设定成功
** 其他 设定失败
******************************************************************************/
en_result_t Sysctrl_SetHCLKDiv(en_sysctrl_hclk_div_t enHCLKDiv)
{
_SysctrlUnlock();
M0P_SYSCTRL->SYSCTRL0_f.HCLK_PRS = enHCLKDiv;
return Ok;
}
/**
*******************************************************************************
** \brief 外设时钟(PCLK)分频设定
** \param [in] enPCLKDiv 分频设定值
** \retval Ok 设定成功
** 其他 设定失败
******************************************************************************/
en_result_t Sysctrl_SetPCLKDiv(en_sysctrl_pclk_div_t enPCLKDiv)
{
_SysctrlUnlock();
M0P_SYSCTRL->SYSCTRL0_f.PCLK_PRS = enPCLKDiv;
return Ok;
}
///<< for Sysctrl_SetPeripheralGate() & Sysctrl_GetPeripheralGate()
static volatile boolean_t bDacPeriBac = FALSE;
/**
*******************************************************************************
** \brief 设置外设时钟门控开关
** \param [in] enPeripheral 目标外设
** \param [in] bFlag 使能开关
** \retval Ok 设定成功
** 其他 设定失败
******************************************************************************/
en_result_t Sysctrl_SetPeripheralGate(en_sysctrl_peripheral_gate_t enPeripheral, boolean_t bFlag)
{
if(enPeripheral&0x20u)
{
enPeripheral &= ~0x20u;
SetBit((uint32_t)(&(M0P_SYSCTRL->PERI_CLKEN1)), enPeripheral, bFlag);
if((SysctrlPeripheralDac & ~0x20u) == enPeripheral)
{
bDacPeriBac = bFlag;
}
else
{
SetBit((uint32_t)(&(M0P_SYSCTRL->PERI_CLKEN1)), (SysctrlPeripheralDac & ~0x20u), bDacPeriBac);
}
}
else
{
SetBit((uint32_t)(&(M0P_SYSCTRL->PERI_CLKEN0)), enPeripheral, bFlag);
}
return Ok;
}
/**
*******************************************************************************
** \brief 获得外设时钟门控开关状态
** \param [in] enPeripheral 目标外设
** \retval TRUE 开
** FALSE 关
******************************************************************************/
boolean_t Sysctrl_GetPeripheralGate(en_sysctrl_peripheral_gate_t enPeripheral)
{
if(enPeripheral&0x20u)
{
if(SysctrlPeripheralDac == enPeripheral)
{
return bDacPeriBac;
}
else
{
enPeripheral &= ~0x20u;
return GetBit((uint32_t)(&(M0P_SYSCTRL->PERI_CLKEN1)), enPeripheral);
}
}
else
{
return GetBit((uint32_t)(&(M0P_SYSCTRL->PERI_CLKEN0)), enPeripheral);
}
}
/**
*******************************************************************************
** \brief 系统功能设定
** \param [in] enFunc 系统功能枚举类型
** \param [in] bFlag 1-开/0-关
** \retval Ok 设定成功
** 其他 设定失败
******************************************************************************/
en_result_t Sysctrl_SetFunc(en_sysctrl_func_t enFunc, boolean_t bFlag)
{
_SysctrlUnlock();
SetBit((uint32_t)(&(M0P_SYSCTRL->SYSCTRL1)), enFunc, bFlag);
return Ok;
}
/**
*******************************************************************************
** \brief 设定RTC校准时钟频率
** \param [in] enRtcAdj 校准频率值
** \retval Ok 设定成功
** 其他 设定失败
******************************************************************************/
en_result_t Sysctrl_SetRTCAdjustClkFreq(en_sysctrl_rtc_adjust_t enRtcAdj)
{
_SysctrlUnlock();
M0P_SYSCTRL->SYSCTRL1_f.RTC_FREQ_ADJUST = enRtcAdj;
return Ok;
}
//@} // SysctrlGroup
/*******************************************************************************
* EOF (not truncated)
******************************************************************************/
-1368
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/******************************************************************************
*Copyright(C)2017, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/** \file trim.c
**
** Common API of trim.
** @link trimGroup Some description @endlink
**
** - 2017-05-16
**
******************************************************************************/
/*******************************************************************************
* Include files
******************************************************************************/
#include "trim.h"
/**
*******************************************************************************
** \addtogroup TrimGroup
******************************************************************************/
//@{
/*******************************************************************************
* Local pre-processor symbols/macros ('#define')
******************************************************************************/
/*******************************************************************************
* Global variable definitions (declared in header file with 'extern')
******************************************************************************/
#define IS_VALID_TRIMINT(x) (TrimStop == (x) ||\
TrimCalCntOf == (x) ||\
TrimXTLFault == (x) ||\
TrimXTHFault == (x) ||\
TrimPLLFault == (x))
/*******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/*******************************************************************************
* Local variable definitions ('static')
******************************************************************************/
/*******************************************************************************
* Local function prototypes ('static')
******************************************************************************/
/*******************************************************************************
* Function implementation - global ('extern') and local ('static')
******************************************************************************/
/**
*****************************************************************************
** \brief Trim中断标志获取
**
**
** \param [in] enIntType 中断类型(RefStop、CalCntOf、XTAL32KFault、XTAL32MFault
**
** \retval TRUE or FALSE
*****************************************************************************/
boolean_t Trim_GetIntFlag(en_trim_inttype_t enIntType)
{
ASSERT(IS_VALID_TRIMINT(enIntType));
if(M0P_CLK_TRIM->IFR&enIntType)
{
return TRUE;
}
else
{
return FALSE;
}
}
/**
*****************************************************************************
** \brief Trim中断标志清除
**
**
** \param [in] enIntType 中断类型(RefStop、CalCntOf、XTAL32KFault、XTAL32MFault
**
** \retval Ok or Error
*****************************************************************************/
en_result_t Trim_ClearIntFlag(en_trim_inttype_t enIntType)
{
en_result_t enResult = Error;
ASSERT(IS_VALID_TRIMINT(enIntType));
M0P_CLK_TRIM->ICLR &= ~(uint32_t)enIntType;
return enResult;
}
/**
*****************************************************************************
** \brief Trim中断使能
**
**
**
** \retval Null
*****************************************************************************/
void Trim_EnableIrq (void)
{
M0P_CLK_TRIM->CR_f.IE = TRUE;
}
/**
*****************************************************************************
** \brief Trim中断禁止
**
**
**
**
** \retval Ok or Error
*****************************************************************************/
void Trim_DisableIrq(void)
{
M0P_CLK_TRIM->CR_f.IE = FALSE;
}
/**
*****************************************************************************
** \brief Trim初始化配置
**
**
** \param [in] pstcCfg Trim配置结构体指针
**
** \retval Ok or Error
*****************************************************************************/
en_result_t Trim_Init(stc_trim_cfg_t* pstcCfg)
{
en_result_t enResult = Error;
M0P_CLK_TRIM->CR = 0;
M0P_CLK_TRIM->CR = (uint32_t)pstcCfg->enCALCLK |
(uint32_t)pstcCfg->enREFCLK |
(uint32_t)pstcCfg->enMON;
M0P_CLK_TRIM->REFCON = pstcCfg->u32RefCon;
M0P_CLK_TRIM->CALCON = pstcCfg->u32CalCon;
enResult = Ok;
return enResult;
}
/**
*****************************************************************************
** \brief Trim校准/监测启动运行
**
**
**
** \retval Null
*****************************************************************************/
void Trim_Run(void)
{
M0P_CLK_TRIM->CR_f.TRIM_START = TRUE;
}
/**
*****************************************************************************
** \brief Trim校准/监测停止
**
**
**
**
** \retval Null
*****************************************************************************/
void Trim_Stop(void)
{
M0P_CLK_TRIM->CR_f.TRIM_START = FALSE;
}
/**
*****************************************************************************
** \brief Trim参考计数器计数值获取
**
**
** \retval u32Data 参考计数器计数值
*****************************************************************************/
uint32_t Trim_RefCntGet(void)
{
return (uint32_t)M0P_CLK_TRIM->REFCNT;
}
/**
*****************************************************************************
** \brief Trim校准计数器计数值获取
**
**
**
**
** \retval u32Data 校准计数器计数值
*****************************************************************************/
uint32_t Trim_CalCntGet(void)
{
return (uint32_t)M0P_CLK_TRIM->CALCNT;
}
//@} // TrimGroup
/*******************************************************************************
* EOF (not truncated)
******************************************************************************/
-191
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@@ -1,191 +0,0 @@
/******************************************************************************
*Copyright(C)2018, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/** \file rng.c
**
** Common API of rng.
** @link flashGroup Some description @endlink
**
** - 2018-05-08
**
******************************************************************************/
/*******************************************************************************
* Include files
******************************************************************************/
#include "trng.h"
/**
*******************************************************************************
** \addtogroup FlashGroup
******************************************************************************/
//@{
/*******************************************************************************
* Local pre-processor symbols/macros ('#define')
******************************************************************************/
/*******************************************************************************
* Global variable definitions (declared in header file with 'extern')
******************************************************************************/
/*******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/*******************************************************************************
* Local variable definitions ('static')
******************************************************************************/
/*******************************************************************************
* Local function prototypes ('static')
******************************************************************************/
/*******************************************************************************
* Function implementation - global ('extern') and local ('static')
******************************************************************************/
/**
*****************************************************************************
** \brief 随机数初始化(上电第一次生成随机数)
**
**
** \retval TRUE or FALSE
*****************************************************************************/
en_result_t Trng_Init(void)
{
//==>>生成64bits随机数(上电第一次)
M0P_TRNG->CR_f.RNGCIR_EN = 1;
//模式配置0
M0P_TRNG->MODE_f.LOAD = 1;
M0P_TRNG->MODE_f.FDBK = 1;
M0P_TRNG->MODE_f.CNT = 6;
//生成随机数0
M0P_TRNG->CR_f.RNG_RUN = 1;
while(M0P_TRNG->CR_f.RNG_RUN)
{
;
}
//模式配置1
M0P_TRNG->MODE_f.LOAD = 0;
M0P_TRNG->MODE_f.FDBK = 0;
M0P_TRNG->MODE_f.CNT = 4;
//生成随机数1
M0P_TRNG->CR_f.RNG_RUN = 1;
while(M0P_TRNG->CR_f.RNG_RUN)
{
;
}
//关闭随机源电路,节省功耗
M0P_TRNG->CR_f.RNGCIR_EN = 0;
return Ok;
}
/**
*****************************************************************************
** \brief 生成随机数(非上电第一次生成随机数)
**
**
** \retval TRUE or FALSE
*****************************************************************************/
en_result_t Trng_Generate(void)
{
//==>>生成64bits随机数(非上电第一次生成)
M0P_TRNG->CR_f.RNGCIR_EN = 1;
//模式配置0
M0P_TRNG->MODE_f.LOAD = 0;
M0P_TRNG->MODE_f.FDBK = 1;
M0P_TRNG->MODE_f.CNT = 6;
//生成随机数0
M0P_TRNG->CR_f.RNG_RUN = 1;
while(M0P_TRNG->CR_f.RNG_RUN)
{
;
}
//模式配置1
M0P_TRNG->MODE_f.FDBK = 0;
M0P_TRNG->MODE_f.CNT = 4;
M0P_TRNG->MODE_f.CNT = 4;
//生成随机数1
M0P_TRNG->CR_f.RNG_RUN = 1;
while(M0P_TRNG->CR_f.RNG_RUN)
{
;
}
//关闭随机源电路,节省功耗
M0P_TRNG->CR_f.RNGCIR_EN = 0;
return Ok;
}
/**
*****************************************************************************
** \brief 随机数获取
**
** \retval data0
*****************************************************************************/
uint32_t Trng_GetData0(void)
{
return M0P_TRNG->DATA0;
}
/**
*****************************************************************************
** \brief 随机数获取
**
** \retval data1
*****************************************************************************/
uint32_t Trng_GetData1(void)
{
return M0P_TRNG->DATA1;
}
//@} // TrngGroup
/*******************************************************************************
* EOF (not truncated)
******************************************************************************/
-383
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@@ -1,383 +0,0 @@
/*************************************************************************************
* Copyright (C) 2017, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file uart.c
**
** UART function driver API.
** @link SampleGroup Some description @endlink
**
** - 2017-05-17 1.0 CJ First version for Device Driver Library of Module.
**
******************************************************************************/
/******************************************************************************/
/* Include files */
/******************************************************************************/
#include "uart.h"
/**
******************************************************************************
** \addtogroup UartGroup
******************************************************************************/
//@{
/******************************************************************************/
/* Local pre-processor symbols/macros ('#define') */
/******************************************************************************/
/******************************************************************************/
/* Local function prototypes ('static') */
/******************************************************************************/
/******************************************************************************/
/* Local variable definitions ('static') */
/******************************************************************************/
/**
******************************************************************************
** \brief UART通信中断使能函数设置
**
** \param [in] UARTx通道号,enIrqSel发送or接收中断使能
**
** \retval OK配置成功
** \retval ErrorInvalidParameter配置失败
******************************************************************************/
en_result_t Uart_EnableIrq(M0P_UART_TypeDef* UARTx, en_uart_irq_sel_t enIrqSel)
{
SetBit((uint32_t)(&(UARTx->SCON)), enIrqSel, TRUE);
return Ok;
}
/**
******************************************************************************
** \brief UART通信中断禁止函数设置
**
** \param [in] UARTx通道号,enIrqSel发送or接收中断禁止
**
** \retval OK配置成功
** \retval ErrorInvalidParameter配置失败
******************************************************************************/
en_result_t Uart_DisableIrq(M0P_UART_TypeDef* UARTx, en_uart_irq_sel_t enIrqSel)
{
SetBit((uint32_t)(&(UARTx->SCON)), enIrqSel, FALSE);
return Ok;
}
/**
******************************************************************************
** \brief UART通道多主机模式配置
**
** \param [in] UARTx通道号,stcMultiCfg多主机模式结构
**
** \retval OK配置成功
** \retval ErrorInvalidParameter配置失败
******************************************************************************/
en_result_t Uart_SetMultiMode(M0P_UART_TypeDef* UARTx, stc_uart_multimode_t* pstcMultiCfg)
{
if(NULL != pstcMultiCfg)
{
UARTx->SCON_f.ADRDET = TRUE;
UARTx->SADDR = pstcMultiCfg->u8SlaveAddr;
UARTx->SADEN = pstcMultiCfg->u8SaddEn;
}
else
{
return ErrorInvalidParameter;
}
return Ok;
}
/**
******************************************************************************
** \brief UART单线半双工模式使能
**
** \param [in] UARTx 通道号
**
** \retval Null
******************************************************************************/
void Uart_HdModeEnable(M0P_UART_TypeDef* UARTx)
{
UARTx->SCON_f.HDSEL = TRUE;
}
/**
******************************************************************************
** \brief UART单线半双工模式关闭
**
** \param [in] UARTx 通道号
**
** \retval Null
******************************************************************************/
void Uart_HdModeDisable(M0P_UART_TypeDef* UARTx)
{
UARTx->SCON_f.HDSEL = FALSE;
}
/**
******************************************************************************
** \brief UART通道多机模式发送数据/地址帧配置TB8
**
** \param [in] UARTx 通道号
** \param [in] TRUE-TB8为地址帧标志;FALSE-TB8为数据帧标志;
**
** \retval Null
******************************************************************************/
void Uart_SetTb8(M0P_UART_TypeDef* UARTx, boolean_t bTB8Value)
{
UARTx->SCON_f.B8CONT = bTB8Value;
}
/**
******************************************************************************
** \brief 获取RB8数值
**
** \param [in] UARTx通道号
**
** \retval RB8
******************************************************************************/
boolean_t Uart_GetRb8(M0P_UART_TypeDef* UARTx)
{
return (UARTx->SBUF_f.DATA8);
}
/**
******************************************************************************
** \brief UART通道多主机模式从机地址配置函数
**
** \param [in] UARTx通道号,addr地址
**
** \retval OK配置成功
** \retval ErrorInvalidParameter配置失败
******************************************************************************/
en_result_t Uart_SetSaddr(M0P_UART_TypeDef* UARTx,uint8_t u8Addr)
{
UARTx->SADDR = u8Addr;
return Ok;
}
/**
******************************************************************************
** \brief UART通道发送或接收等功能使能设置
**
** \param [in] UARTx通道号,enFunc功能
**
** \retval OK配置成功
** \retval ErrorInvalidParameter配置失败
******************************************************************************/
en_result_t Uart_EnableFunc(M0P_UART_TypeDef* UARTx, en_uart_func_t enFunc)
{
SetBit((uint32_t)(&(UARTx->SCON)), enFunc, TRUE);
return Ok;
}
/**
******************************************************************************
** \brief UART通道发送或接收等功能禁止设置
**
** \param [in] UARTx通道号,enFunc功能
**
** \retval OK配置成功
** \retval ErrorInvalidParameter配置失败
******************************************************************************/
en_result_t Uart_DisableFunc(M0P_UART_TypeDef* UARTx, en_uart_func_t enFunc)
{
SetBit((uint32_t)(&(UARTx->SCON)), enFunc, FALSE);
return Ok;
}
/**
******************************************************************************
** \brief UART通道通信状态获取
**
** \param [in] UARTx通道号
**
** \retval 状态值
******************************************************************************/
uint8_t Uart_GetIsr(M0P_UART_TypeDef* UARTx)
{
return (UARTx->ISR);
}
/**
******************************************************************************
** \brief UART通道通信状态获取
**
** \param [in] UARTx通道号,enStatus获取哪个状态
**
** \retval 状态值
******************************************************************************/
boolean_t Uart_GetStatus(M0P_UART_TypeDef* UARTx, en_uart_status_t enStatus)
{
boolean_t bStatus = FALSE;
ASSERT(IS_VALID_STATUS(enStatus));
bStatus = GetBit((uint32_t)(&(UARTx->ISR)), enStatus);
return bStatus;
}
/**
******************************************************************************
** \brief UART通道通信状态清除
**
** \param [in] UARTx通道号
**
** \retval OK
** \retval ErrorInvalidParameter清除失败
******************************************************************************/
en_result_t Uart_ClrIsr(M0P_UART_TypeDef* UARTx)
{
UARTx->ICR = 0u;
return Ok;
}
/**
******************************************************************************
** \brief UART通道通信状态清除
**
** \param [in] UARTx通道号,enStatus清除哪个状态
**
** \retval OK
** \retval ErrorInvalidParameter清除失败
******************************************************************************/
en_result_t Uart_ClrStatus(M0P_UART_TypeDef* UARTx,en_uart_status_t enStatus)
{
ASSERT(IS_VALID_STATUS(enStatus));
SetBit((uint32_t)(&(UARTx->ICR)), enStatus, FALSE);
return Ok;
}
/**
******************************************************************************
** \brief UART通道发送数据函数,查询方式调用此函数,中断方式发送不适用
**
** \param [in] UARTx通道号,Data发送数据
**
** \retval Ok发送成功
** \retval ErrorInvalidParameter发送失败
******************************************************************************/
en_result_t Uart_SendDataPoll(M0P_UART_TypeDef* UARTx, uint8_t u8Data)
{
while(FALSE == Uart_GetStatus(UARTx,UartTxe))
{}
UARTx->SBUF_f.DATA = u8Data;
while(FALSE == Uart_GetStatus(UARTx,UartTC))
{}
Uart_ClrStatus(UARTx,UartTC);
return Ok;
}
/**
******************************************************************************
** \brief UART通道发送数据函数,中断方式调用此函数
**
** \param [in] UARTx通道号,Data发送数据
**
** \retval Ok发送成功
** \retval ErrorInvalidParameter发送失败
******************************************************************************/
en_result_t Uart_SendDataIt(M0P_UART_TypeDef* UARTx, uint8_t u8Data)
{
UARTx->SBUF_f.DATA = u8Data;
return Ok;
}
/**
******************************************************************************
** \brief UART通道接收数据函数
**
** \param [in] UARTx通道号
**
** \retval 接收数据
******************************************************************************/
uint8_t Uart_ReceiveData(M0P_UART_TypeDef* UARTx)
{
return (UARTx->SBUF_f.DATA);
}
/**
******************************************************************************
** \brief UART通道初始化函数
**
** \param [in] UARTx通道号,pstcCfg初始化结构体 @ref stc_uart_cfg_t
**
** \retval OK配置成功
** \retval ErrorInvalidParameter配置失败
******************************************************************************/
en_result_t Uart_Init(M0P_UART_TypeDef* UARTx, stc_uart_cfg_t* pstcCfg)
{
en_result_t enRet = Error;
uint32_t u32Over[2] = {0x4, 0x3};
uint16_t u16OverShift;
float32_t f32Scnt=0;
if(NULL == pstcCfg)
{
return ErrorInvalidParameter;
}
UARTx->SCON = 0;
UARTx->SCON = (uint32_t)pstcCfg->enStopBit |
(uint32_t)pstcCfg->enMmdorCk |
(uint32_t)pstcCfg->stcBaud.enClkDiv |
(uint32_t)pstcCfg->enRunMode;
if((UartMskMode1 == pstcCfg->enRunMode) || (UartMskMode3 == pstcCfg->enRunMode))
{
u16OverShift = u32Over[pstcCfg->stcBaud.enClkDiv/UartMsk8Or16Div];
f32Scnt = (float32_t)(pstcCfg->stcBaud.u32Pclk)/(float32_t)(pstcCfg->stcBaud.u32Baud<<u16OverShift);
UARTx->SCNT = (uint16_t)(float32_t)(f32Scnt + 0.5f);
Uart_EnableFunc(UARTx,UartRenFunc); ///<使能收发
}
enRet = Ok;
return enRet;
}
//@} // UartGroup
-298
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@@ -1,298 +0,0 @@
/******************************************************************************
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file vc.c
**
** voltage comparator driver API.
** @link VC Group Some description @endlink
**
** - 2019-04-10 First Version
**
******************************************************************************/
/******************************************************************************
* Include files
******************************************************************************/
#include "vc.h"
/**
******************************************************************************
** \addtogroup VcGroup
******************************************************************************/
//@{
/******************************************************************************
* Local pre-processor symbols/macros ('#define')
******************************************************************************/
/******************************************************************************
* Global variable definitions (declared in header file with 'extern')
******************************************************************************/
/******************************************************************************
* Local type definitions ('typedef')
******************************************************************************/
/******************************************************************************
* Local function prototypes ('static')
******************************************************************************/
/******************************************************************************
* Local variable definitions ('static')
******************************************************************************/
/*****************************************************************************
* Function implementation - global ('extern') and local ('static')
*****************************************************************************/
/**
******************************************************************************
** \brief 配置VC中断触发方式
**
** @param Channelx : VcChannelx x=0、1、2
** @param enSel : VcIrqRise、VcIrqFall、VcIrqHigh
** \retval 无
**
******************************************************************************/
void Vc_CfgItType(en_vc_channel_t Channelx, en_vc_irq_sel_t ItType)
{
stc_vc_vc0_cr_field_t *stcVcnCr;
switch(Channelx)
{
case VcChannel0:
stcVcnCr = (stc_vc_vc0_cr_field_t*)&M0P_VC->VC0_CR_f;
break;
case VcChannel1:
stcVcnCr = (stc_vc_vc0_cr_field_t*)&M0P_VC->VC1_CR_f;
break;
case VcChannel2:
stcVcnCr = (stc_vc_vc0_cr_field_t*)&M0P_VC->VC2_CR_f;
break;
default:
break;
}
switch (ItType)
{
case VcIrqNone:
stcVcnCr->RISING = 0u;
stcVcnCr->FALLING = 0u;
stcVcnCr->LEVEL = 0u;
break;
case VcIrqRise:
stcVcnCr->RISING = 1u;
break;
case VcIrqFall:
stcVcnCr->FALLING = 1u;
break;
case VcIrqHigh:
stcVcnCr->LEVEL = 1u;
break;
default:
break;
}
}
/**
******************************************************************************
** \brief VC 中断使能与禁止
**
** @param Channelx : VcChannelx x=0、1、2
** @param NewStatus : TRUE 或 FALSE
** \retval 无
**
******************************************************************************/
void Vc_ItCfg(en_vc_channel_t Channelx, boolean_t NewStatus)
{
switch(Channelx)
{
case VcChannel0:
SetBit((uint32_t)(&(M0P_VC->VC0_CR)), 15, NewStatus);
break;
case VcChannel1:
SetBit((uint32_t)(&(M0P_VC->VC1_CR)), 15, NewStatus);
break;
case VcChannel2:
SetBit((uint32_t)(&(M0P_VC->VC2_CR)), 15, NewStatus);
break;
default:
break;
}
}
/**
******************************************************************************
** \brief VC 比较结果获取,包含中断标志位和滤波结果
**
** @param Result : 所要读取的结果
** \retval TRUE 或 FALSE
**
******************************************************************************/
boolean_t Vc_GetItStatus(en_vc_ifr_t Result)
{
boolean_t bFlag;
bFlag = GetBit((uint32_t)(&(M0P_VC->IFR)), Result);
return bFlag;
}
/**
******************************************************************************
** \brief VC 清除中断标志位
**
** @param NewStatus : Vc0_Intf、Vc1_Intf、Vc2_Intf
** \retval 无
**
******************************************************************************/
void Vc_ClearItStatus(en_vc_ifr_t NewStatus)
{
SetBit((uint32_t)(&(M0P_VC->IFR)), NewStatus, 0);
}
/**
******************************************************************************
** \brief VC 配置DAC相关的内容 VC_CR中 VC_REF2P5_SEL VC_DIV_EN VC_DIV
**
** @param pstcDacCfg :
** \retval Ok 或 ErrorInvalidParameter
**
******************************************************************************/
en_result_t Vc_DacInit(stc_vc_dac_cfg_t *pstcDacCfg)
{
if (NULL == pstcDacCfg)
{
return ErrorInvalidParameter;
}
M0P_VC->CR_f.DIV_EN = pstcDacCfg->bDivEn;
M0P_VC->CR_f.REF2P5_SEL = pstcDacCfg->enDivVref;
if (pstcDacCfg->u8DivVal < 0x40)
{
M0P_VC->CR_f.DIV = pstcDacCfg->u8DivVal;
}
else
{
return ErrorInvalidParameter;
}
return Ok;
}
/**
******************************************************************************
** \brief VC通道初始化
**
** @param pstcDacCfg :
** \retval 无
**
******************************************************************************/
void Vc_Init(stc_vc_channel_cfg_t *pstcChannelCfg)
{
if (VcChannel0 == pstcChannelCfg->enVcChannel)
{
M0P_VC->CR_f.VC0_HYS_SEL = pstcChannelCfg->enVcCmpDly;
M0P_VC->CR_f.VC0_BIAS_SEL = pstcChannelCfg->enVcBiasCurrent;
M0P_VC->VC0_CR_f.DEBOUNCE_TIME = pstcChannelCfg->enVcFilterTime;
M0P_VC->VC0_CR_f.P_SEL = pstcChannelCfg->enVcInPin_P;
M0P_VC->VC0_CR_f.N_SEL = pstcChannelCfg->enVcInPin_N;
M0P_VC->VC0_CR_f.FLTEN = pstcChannelCfg->bFlten;
M0P_VC->VC0_OUT_CFG = 1<<pstcChannelCfg->enVcOutCfg;
}
else if (VcChannel1 == pstcChannelCfg->enVcChannel)
{
M0P_VC->CR_f.VC1_HYS_SEL = pstcChannelCfg->enVcCmpDly;
M0P_VC->CR_f.VC1_BIAS_SEL = pstcChannelCfg->enVcBiasCurrent;
M0P_VC->VC1_CR_f.DEBOUNCE_TIME = pstcChannelCfg->enVcFilterTime;
M0P_VC->VC1_CR_f.P_SEL = pstcChannelCfg->enVcInPin_P;
M0P_VC->VC1_CR_f.N_SEL = pstcChannelCfg->enVcInPin_N;
M0P_VC->VC1_CR_f.FLTEN = pstcChannelCfg->bFlten;
M0P_VC->VC1_OUT_CFG = 1<<pstcChannelCfg->enVcOutCfg;
}
else if(VcChannel2 == pstcChannelCfg->enVcChannel)
{
M0P_VC->CR_f.VC2_HYS_SEL = pstcChannelCfg->enVcCmpDly;
M0P_VC->CR_f.VC2_BIAS_SEL = pstcChannelCfg->enVcBiasCurrent;
M0P_VC->VC2_CR_f.DEBOUNCE_TIME = pstcChannelCfg->enVcFilterTime;
M0P_VC->VC2_CR_f.P_SEL = pstcChannelCfg->enVcInPin_P;
M0P_VC->VC2_CR_f.N_SEL = pstcChannelCfg->enVcInPin_N;
M0P_VC->VC2_CR_f.FLTEN = pstcChannelCfg->bFlten;
M0P_VC->VC2_OUT_CFG = 1<<pstcChannelCfg->enVcOutCfg;
}
else
{
;
}
}
/**
******************************************************************************
** \brief VC 通道使能
**
** \param enChannel : 通道号VcChannel0 VcChannel1 VcChannel2
** \param NewStatus : TRUE FALSE
** \retval NewStatus : TRUE FALSE
**
******************************************************************************/
void Vc_Cmd(en_vc_channel_t enChannel, boolean_t NewStatus)
{
switch(enChannel)
{
case VcChannel0:
SetBit((uint32_t)(&(M0P_VC->VC0_CR)), 16, NewStatus);
break;
case VcChannel1:
SetBit((uint32_t)(&(M0P_VC->VC1_CR)), 16, NewStatus);
break;
case VcChannel2:
SetBit((uint32_t)(&(M0P_VC->VC2_CR)), 16, NewStatus);
break;
default:
break;
}
}
//@} // VcGroup
/******************************************************************************
* EOF (not truncated)
******************************************************************************/
-203
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@@ -1,203 +0,0 @@
/*************************************************************************************
* Copyright (C) 2017, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file wdt.c
**
** WDT function driver API.
** @link WdtGroup Some description @endlink
**
** - 2017-05-17 1.0 CJ First version for Device Driver Library of Module.
**
******************************************************************************/
/******************************************************************************/
/* Include files */
/******************************************************************************/
#include "wdt.h"
/**
******************************************************************************
** \defgroup WdtGroup
**
******************************************************************************/
//@{
/******************************************************************************/
/* Local function prototypes ('static') */
/******************************************************************************/
/**
******************************************************************************
** \brief WDT溢出时间设置函数
**
** \param [in] u8LoadValue 溢出时间
**
** \retval 无
**
******************************************************************************/
void Wdt_WriteWdtLoad(uint8_t u8LoadValue)
{
M0P_WDT->CON_f.WOV = u8LoadValue;
}
/**
******************************************************************************
** \brief WDT初始化函数
**
** \param [in] enFunc @ref en_wdt_func_t
** \param [in] enTime @ref en_wdt_time_t
**
** \retval Ok
**
******************************************************************************/
en_result_t Wdt_Init(en_wdt_func_t enFunc, en_wdt_time_t enTime)
{
en_result_t enRet = Error;
Wdt_WriteWdtLoad(enTime);
M0P_WDT->CON_f.WINT_EN = enFunc;
enRet = Ok;
return enRet;
}
/**
******************************************************************************
** \brief WDT复位及启动函数
**
** \param [in] 无
**
** \retval 无
**
******************************************************************************/
void Wdt_Start(void)
{
M0P_WDT->RST = 0x1E;
M0P_WDT->RST = 0xE1;
}
/**
******************************************************************************
** \brief WDT喂狗
**
** \param [in] 无
**
** \retval Ok
**
******************************************************************************/
void Wdt_Feed(void)
{
M0P_WDT->RST = 0x1E;
M0P_WDT->RST = 0xE1;
}
/**
******************************************************************************
** \brief WDT中断标志清除
**
** \param [in] 无
**
** \retval Ok
**
******************************************************************************/
void Wdt_IrqClr(void)
{
M0P_WDT->RST = 0x1E;
M0P_WDT->RST = 0xE1;
}
/**
******************************************************************************
** \brief WDT读取当前计数值函数
**
** \param [in] 无
**
** \retval 计数值
**
******************************************************************************/
uint8_t Wdt_ReadWdtValue(void)
{
uint8_t u8Count;
u8Count = M0P_WDT->CON_f.WCNTL;
return u8Count;
}
/**
******************************************************************************
** \brief WDT读取当前运行状态
**
** \param [in] 无
**
** \retval 状态值
**
******************************************************************************/
boolean_t Wdt_ReadwdtStatus(void)
{
if(M0P_WDT->CON&0x10u)
{
return TRUE;
}
else
{
return FALSE;
}
}
/**
*******************************************************************************
** \brief WDT 中断状态标记获取
**
**
** \retval 中断状态
******************************************************************************/
boolean_t Wdt_GetIrqStatus(void)
{
if(M0P_WDT->CON&0x80u)
{
return TRUE;
}
else
{
return FALSE;
}
}
//@} // WdtGroup
-37132
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@@ -1,10 +0,0 @@
<?xml version="1.0" encoding="iso-8859-1"?>
<flash_device>
<exe>$PROJ_DIR$\config\flashloader\FlashHC32L17X.out</exe>
<page>1</page>
<block>256 0x200</block>
<flash_base>0x00000000</flash_base>
<macro>$PROJ_DIR$\config\flashloader\FlashHC32L17X.mac</macro>
<aggregate>0</aggregate>
</flash_device>
@@ -1,23 +0,0 @@
setup()
{
__message "----- setup hardware for Flashloader -----\n";
/*Wait*/
__delay(5);
__emulatorSpeed(0);
/*Vectors at RAM*/
__writeMemory32(0x20000000, 0xE000ED08, "Memory");
}
execUserPreload()
{
__message "----- execUserPreload -----\n";
setup();
}
execUserFlashInit() // Called by debugger before loading flash loader in RAM.
{
__message "----- execUserFlashInit -----\n";
setup();
}
@@ -1,8 +0,0 @@
<?xml version="1.0" encoding="iso-8859-1"?>
<flash_board>
<pass>
<loader>$PROJ_DIR$\config\flashloader\FlashHC32L17X.flash</loader>
<range>CODE 0x00000000 0x0001FFFF</range>
</pass>
</flash_board>
-29
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@@ -1,29 +0,0 @@
/*###ICF### Section handled by ICF editor, don't touch! ****/
/*-Editor annotation file-*/
/* IcfEditorFile="$TOOLKIT_DIR$\config\ide\IcfEditor\cortex_v1_0.xml" */
/*-Specials-*/
define symbol __ICFEDIT_intvec_start__ = 0x20000000;
/*-Memory Regions-*/
define symbol __ICFEDIT_region_ROM_start__ = 0x20000000;
define symbol __ICFEDIT_region_ROM_end__ = 0x20001FFF;
define symbol __ICFEDIT_region_RAM_start__ = 0x20002000;
define symbol __ICFEDIT_region_RAM_end__ = 0x20003FFF;
/*-Sizes-*/
define symbol __ICFEDIT_size_cstack__ = 0x200;
define symbol __ICFEDIT_size_heap__ = 0x200;
/**** End of ICF editor section. ###ICF###*/
define memory mem with size = 4G;
define region ROM_region = mem:[from __ICFEDIT_region_ROM_start__ to __ICFEDIT_region_ROM_end__];
define region RAM_region = mem:[from __ICFEDIT_region_RAM_start__ to __ICFEDIT_region_RAM_end__];
define block CSTACK with alignment = 8, size = __ICFEDIT_size_cstack__ { };
define block HEAP with alignment = 8, size = __ICFEDIT_size_heap__ { };
initialize by copy { readwrite };
do not initialize { section .noinit };
place at address mem:__ICFEDIT_intvec_start__ { readonly section .intvec };
place in ROM_region { readonly };
place in RAM_region { readwrite, block CSTACK, block HEAP };
-8
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@@ -1,8 +0,0 @@
execUserReset()
{
__message("Executing __hwReset");
__hwReset(0);
__message("__hwReset done");
__hwResetWithStrategy(0, 2);
}
Binary file not shown.
Binary file not shown.
-147
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@@ -1,147 +0,0 @@
/******************************************************************************
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file base_types.h
**
** base type common define.
** @link SampleGroup Some description @endlink
**
** - 2019-03-01 1.0 Lux First version.
**
******************************************************************************/
#ifndef __BASE_TYPES_H__
#define __BASE_TYPES_H__
/*****************************************************************************/
/* Include files */
/*****************************************************************************/
#include <stdio.h>
#include <string.h>
#include <stddef.h>
#include <stdint.h>
#include <assert.h>
/*****************************************************************************/
/* Global pre-processor symbols/macros ('#define') */
/*****************************************************************************/
#ifndef TRUE
/** Value is true (boolean_t type) */
#define TRUE ((boolean_t) 1u)
#endif
#ifndef FALSE
/** Value is false (boolean_t type) */
#define FALSE ((boolean_t) 0u)
#endif
/** Returns the minimum value out of two values */
#define MINIMUM( X, Y ) ((X) < (Y) ? (X) : (Y))
/** Returns the maximum value out of two values */
#define MAXIMUM( X, Y ) ((X) > (Y) ? (X) : (Y))
/** Returns the dimension of an array */
#define ARRAY_SZ( X ) (sizeof(X) / sizeof((X)[0]))
#ifdef __DEBUG_ASSERT
#define ASSERT(x) do{ assert((x)> 0u) ; }while(0);
#else
#define ASSERT(x) {}
#endif
/******************************************************************************
* Global type definitions
******************************************************************************/
/** logical datatype (only values are TRUE and FALSE) */
typedef uint8_t boolean_t;
/** single precision floating point number (4 byte) */
typedef float float32_t;
/** double precision floating point number (8 byte) */
typedef double float64_t;
/** ASCII character for string generation (8 bit) */
typedef char char_t;
/** function pointer type to void/void function */
typedef void (*func_ptr_t)(void);
/** function pointer type to void/uint8_t function */
typedef void (*func_ptr_arg1_t)(uint8_t u8Param);
/** generic error codes */
typedef enum en_result
{
Ok = 0u, ///< No error
Error = 1u, ///< Non-specific error code
ErrorAddressAlignment = 2u, ///< Address alignment does not match
ErrorAccessRights = 3u, ///< Wrong mode (e.g. user/system) mode is set
ErrorInvalidParameter = 4u, ///< Provided parameter is not valid
ErrorOperationInProgress = 5u, ///< A conflicting or requested operation is still in progress
ErrorInvalidMode = 6u, ///< Operation not allowed in current mode
ErrorUninitialized = 7u, ///< Module (or part of it) was not initialized properly
ErrorBufferFull = 8u, ///< Circular buffer can not be written because the buffer is full
ErrorTimeout = 9u, ///< Time Out error occurred (e.g. I2C arbitration lost, Flash time-out, etc.)
ErrorNotReady = 10u, ///< A requested final state is not reached
OperationInProgress = 11u ///< Indicator for operation in progress
} en_result_t;
/*****************************************************************************/
/* Global variable declarations ('extern', definition in C source) */
/*****************************************************************************/
/*****************************************************************************/
/* Global function prototypes ('extern', definition in C source) */
/*****************************************************************************/
#endif /* __BASE_TYPES_H__ */
/******************************************************************************/
/* EOF (not truncated) */
/******************************************************************************/
-130
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@@ -1,130 +0,0 @@
/******************************************************************************
* Copyright (C) 2017, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file stkhc32l17x.h
**
** stk board common define.
** @link SampleGroup Some description @endlink
**
** - 2018-03-09 1.0 Lux First version.
**
******************************************************************************/
#ifndef __BOARD_STKHC32L17X_H__
#define __BOARD_STKHC32L17X_H__
///< STK GPIO DEFINE
///< USER KEY
#define STK_USER_PORT GpioPortA
#define STK_USER_PIN GpioPin7
///< LED
#define STK_LED_PORT GpioPortD
#define STK_LED_PIN GpioPin14
///< XTH
#define SYSTEM_XTH (8*1000*1000u) ///< 32MHz
#define STK_XTHI_PORT GpioPortF
#define STK_XTHI_PIN GpioPin0
#define STK_XTHO_PORT GpioPortF
#define STK_XTHO_PIN GpioPin1
///< XTL
#define SYSTEM_XTL (32768u) ///< 32768Hz
#define STK_XTLI_PORT GpioPortC
#define STK_XTLI_PIN GpioPin14
#define STK_XTLO_PORT GpioPortC
#define STK_XTLO_PIN GpioPin15
///< LCD
#define STK_LCD_COM0_PORT GpioPortA
#define STK_LCD_COM0_PIN GpioPin9
#define STK_LCD_COM1_PORT GpioPortA
#define STK_LCD_COM1_PIN GpioPin10
#define STK_LCD_COM2_PORT GpioPortA
#define STK_LCD_COM2_PIN GpioPin11
#define STK_LCD_COM3_PORT GpioPortA
#define STK_LCD_COM3_PIN GpioPin12
#define STK_LCD_SEG0_PORT GpioPortA
#define STK_LCD_SEG0_PIN GpioPin8
#define STK_LCD_SEG1_PORT GpioPortC
#define STK_LCD_SEG1_PIN GpioPin9
#define STK_LCD_SEG2_PORT GpioPortC
#define STK_LCD_SEG2_PIN GpioPin8
#define STK_LCD_SEG3_PORT GpioPortC
#define STK_LCD_SEG3_PIN GpioPin7
#define STK_LCD_SEG4_PORT GpioPortC
#define STK_LCD_SEG4_PIN GpioPin6
#define STK_LCD_SEG5_PORT GpioPortB
#define STK_LCD_SEG5_PIN GpioPin15
#define STK_LCD_SEG6_PORT GpioPortB
#define STK_LCD_SEG6_PIN GpioPin14
#define STK_LCD_SEG7_PORT GpioPortB
#define STK_LCD_SEG7_PIN GpioPin13
///< I2C EEPROM
#define EVB_I2C0_EEPROM_SCL_PORT GpioPortB
#define EVB_I2C0_EEPROM_SCL_PIN GpioPin6
#define EVB_I2C0_EEPROM_SDA_PORT GpioPortB
#define EVB_I2C0_EEPROM_SDA_PIN GpioPin7
///< SPI0
#define STK_SPI0_CS_PORT GpioPortE
#define STK_SPI0_CS_PIN GpioPin12
#define STK_SPI0_SCK_PORT GpioPortE
#define STK_SPI0_SCK_PIN GpioPin13
#define STK_SPI0_MISO_PORT GpioPortE
#define STK_SPI0_MISO_PIN GpioPin14
#define STK_SPI0_MOSI_PORT GpioPortE
#define STK_SPI0_MOSI_PIN GpioPin15
///< SPI1
#define STK_SPI1_CS_PORT GpioPortB
#define STK_SPI1_CS_PIN GpioPin12
#define STK_SPI1_SCK_PORT GpioPortB
#define STK_SPI1_SCK_PIN GpioPin13
#define STK_SPI1_MISO_PORT GpioPortB
#define STK_SPI1_MISO_PIN GpioPin14
#define STK_SPI1_MOSI_PORT GpioPortB
#define STK_SPI1_MOSI_PIN GpioPin15
#endif
-10833
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File diff suppressed because it is too large Load Diff
-610
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@@ -1,610 +0,0 @@
/******************************************************************************
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file interrupts_hc32l136.c
**
** Interrupt management
** @link Driver Group Some description @endlink
**
** - 2018-04-15 1.0 Lux First version.
**
**
******************************************************************************/
/*******************************************************************************
* Include files
******************************************************************************/
#include "ddl.h"
#include "interrupts_hc32l17x.h"
/*******************************************************************************
* IRQ WEAK DEFINE
******************************************************************************/
__WEAK void SysTick_IRQHandler(void);
__WEAK void PortA_IRQHandler(void);
__WEAK void PortB_IRQHandler(void);
__WEAK void PortC_IRQHandler(void);
__WEAK void PortD_IRQHandler(void);
__WEAK void PortE_IRQHandler(void);
__WEAK void PortF_IRQHandler(void);
__WEAK void Dmac_IRQHandler(void);
__WEAK void Tim3_IRQHandler(void);
__WEAK void Uart0_IRQHandler(void);
__WEAK void Uart1_IRQHandler(void);
__WEAK void Uart2_IRQHandler(void);
__WEAK void Uart3_IRQHandler(void);
__WEAK void LpUart0_IRQHandler(void);
__WEAK void LpUart1_IRQHandler(void);
__WEAK void Spi0_IRQHandler(void);
__WEAK void Spi1_IRQHandler(void);
__WEAK void I2c0_IRQHandler(void);
__WEAK void I2c1_IRQHandler(void);
__WEAK void Tim0_IRQHandler(void);
__WEAK void Tim1_IRQHandler(void);
__WEAK void Tim2_IRQHandler(void);
__WEAK void LpTim0_IRQHandler(void);
__WEAK void LpTim1_IRQHandler(void);
__WEAK void Tim4_IRQHandler(void);
__WEAK void Tim5_IRQHandler(void);
__WEAK void Tim6_IRQHandler(void);
__WEAK void Pca_IRQHandler(void);
__WEAK void Wdt_IRQHandler(void);
__WEAK void Rtc_IRQHandler(void);
__WEAK void Adc_IRQHandler(void);
__WEAK void Dac_IRQHandler(void);
__WEAK void Pcnt_IRQHandler(void);
__WEAK void Vc0_IRQHandler(void);
__WEAK void Vc1_IRQHandler(void);
__WEAK void Vc2_IRQHandler(void);
__WEAK void Lvd_IRQHandler(void);
__WEAK void Lcd_IRQHandler(void);
__WEAK void Flash_IRQHandler(void);
__WEAK void Ram_IRQHandler(void);
__WEAK void ClkTrim_IRQHandler(void);
/**
*******************************************************************************
** \brief NVIC 中断使能
**
** \param [in] enIrq 中断号枚举类型
** \param [in] enLevel 中断优先级枚举类型
** \param [in] bEn 中断开关
** \retval Ok 设置成功
** 其他值 设置失败
******************************************************************************/
void EnableNvic(IRQn_Type enIrq, en_irq_level_t enLevel, boolean_t bEn)
{
NVIC_ClearPendingIRQ(enIrq);
NVIC_SetPriority(enIrq, enLevel);
if (TRUE == bEn)
{
NVIC_EnableIRQ(enIrq);
}
else
{
NVIC_DisableIRQ(enIrq);
}
}
/**
*******************************************************************************
** \brief NVIC hardware fault 中断实现
**
**
** \retval
******************************************************************************/
void HardFault_Handler(void)
{
volatile int a = 0;
while( 0 == a)
{
;
}
}
/**
*******************************************************************************
** \brief NVIC SysTick 中断实现
**
** \retval
******************************************************************************/
void SysTick_Handler(void)
{
SysTick_IRQHandler();
}
/**
*******************************************************************************
** \brief GPIO PortA 中断处理函数
**
** \retval
******************************************************************************/
void PORTA_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_PORTA)
PortA_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief GPIO PortB 中断处理函数
**
** \retval
******************************************************************************/
void PORTB_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_PORTB)
PortB_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief GPIO PortC/E 中断处理函数
**
** \retval
******************************************************************************/
void PORTC_E_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_PORTC)
PortC_IRQHandler();
#endif
#if (INT_CALLBACK_ON == INT_CALLBACK_PORTE)
PortE_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief GPIO PortD/F 中断处理函数
**
** \retval
******************************************************************************/
void PORTD_F_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_PORTD)
PortD_IRQHandler();
#endif
#if (INT_CALLBACK_ON == INT_CALLBACK_PORTF)
PortF_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief DMAC 中断处理函数
**
** \retval
******************************************************************************/
void DMAC_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_DMAC)
Dmac_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief TIM3 中断处理函数
**
** \retval
******************************************************************************/
void TIM3_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_TIM3)
Tim3_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief UART0/2 中断处理函数
**
** \retval
******************************************************************************/
void UART0_2_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_UART0)
Uart0_IRQHandler();
#endif
#if (INT_CALLBACK_ON == INT_CALLBACK_UART2)
Uart2_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief UART1/3 中断处理函数
**
** \retval
******************************************************************************/
void UART1_3_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_UART1)
Uart1_IRQHandler();
#endif
#if (INT_CALLBACK_ON == INT_CALLBACK_UART3)
Uart3_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief LPUART0 低功耗串口0 中断处理函数
**
** \retval
******************************************************************************/
void LPUART0_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_LPUART0)
LpUart0_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief LPUART1 低功耗串口1 中断处理函数
**
** \retval
******************************************************************************/
void LPUART1_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_LPUART1)
LpUart1_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief SPI0 中断处理函数
**
** \retval
******************************************************************************/
void SPI0_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_SPI0)
Spi0_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief SPI1 中断处理函数
**
** \retval
******************************************************************************/
void SPI1_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_SPI1)
Spi1_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief I2C0 中断处理函数
**
** \retval
******************************************************************************/
void I2C0_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_I2C0)
I2c0_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief I2C1 中断处理函数
**
** \retval
******************************************************************************/
void I2C1_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_I2C1)
I2c1_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief TIM0 中断处理函数
**
** \retval
******************************************************************************/
void TIM0_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_TIM0)
Tim0_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief TIM1 中断处理函数
**
** \retval
******************************************************************************/
void TIM1_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_TIM1)
Tim1_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief TIM2 中断处理函数
**
** \retval
******************************************************************************/
void TIM2_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_TIM2)
Tim2_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief LPTIM0/1 低功耗时钟 中断处理函数
**
** \retval
******************************************************************************/
void LPTIM0_1_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_LPTIM0)
LpTim0_IRQHandler();
#endif
#if (INT_CALLBACK_ON == INT_CALLBACK_LPTIM1)
LpTim1_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief TIM4 中断处理函数
**
** \retval
******************************************************************************/
void TIM4_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_TIM4)
Tim4_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief TIM5 中断处理函数
**
** \retval
******************************************************************************/
void TIM5_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_TIM5)
Tim5_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief TIM6 中断处理函数
**
** \retval
******************************************************************************/
void TIM6_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_TIM6)
Tim6_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief PCA 中断处理函数
**
** \retval
******************************************************************************/
void PCA_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_PCA)
Pca_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief WDT 中断处理函数
**
** \retval
******************************************************************************/
void WDT_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_WDT)
Wdt_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief RTC 中断处理函数
**
** \retval
******************************************************************************/
void RTC_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_RTC)
Rtc_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief ADC/DAC 中断处理函数
**
** \retval
******************************************************************************/
void ADC_DAC_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_ADC)
Adc_IRQHandler();
#endif
#if (INT_CALLBACK_ON == INT_CALLBACK_DAC)
Dac_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief PCNT 中断处理函数
**
** \retval
******************************************************************************/
void PCNT_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_PCNT)
Pcnt_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief VC0 中断处理函数
**
** \retval
******************************************************************************/
void VC0_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_VC0)
Vc0_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief VC1/2 中断处理函数
**
** \retval
******************************************************************************/
void VC1_2_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_VC1)
Vc1_IRQHandler();
#endif
#if (INT_CALLBACK_ON == INT_CALLBACK_VC2)
Vc2_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief LVD 中断处理函数
**
** \retval
******************************************************************************/
void LVD_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_LVD)
Lvd_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief LCD 中断处理函数
**
** \retval
******************************************************************************/
void LCD_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_LCD)
Lcd_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief FLASH/RAM 中断处理函数
**
** \retval
******************************************************************************/
void FLASH_RAM_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_FLASH)
Flash_IRQHandler();
#endif
#if (INT_CALLBACK_ON == INT_CALLBACK_RAM)
Ram_IRQHandler();
#endif
}
/**
*******************************************************************************
** \brief CLKTRIM 中断处理函数
**
** \retval
******************************************************************************/
void CLKTRIM_IRQHandler(void)
{
#if (INT_CALLBACK_ON == INT_CALLBACK_CLKTRIM)
ClkTrim_IRQHandler();
#endif
}
/******************************************************************************/
/* EOF (not truncated) */
/******************************************************************************/
-150
View File
@@ -1,150 +0,0 @@
/*******************************************************************************
* Copyright (C) 2018, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file interrupts_hc32l17x.h
**
** Interrupt common define.
** @link IRQGroup Some description @endlink
**
** - 2019-03-01 1.0 Lux First version.
**
******************************************************************************/
#ifndef __INTERRUPTS_HC32L17X_H__
#define __INTERRUPTS_HC32L17X_H__
/******************************************************************************/
/* Include files */
/******************************************************************************/
#include "ddl.h"
/* C binding of definitions if building with C++ compiler */
#ifdef __cplusplus
extern "C"
{
#endif
/******************************************************************************/
/* Global pre-processor symbols/macros ('#define') */
/******************************************************************************/
#define DDL_IRQ_LEVEL_DEFAULT 3u
//<<此选项会打开interrupt_hc32xxx.c中的中断回调函数,用户如果需要实现中断服务函数,
//<<可在源码文件中定义该文件中用"__WEAK"声明的同名中断服务函数即可。
#define INT_CALLBACK_ON 1u //<<(默认值)
//<<此选项会关闭interrupt_hc32xxx.c中的中断回调函数,此时用户可在该文件中自行定义中断服务函数的实现。
#define INT_CALLBACK_OFF 0u
/******************************************************************************
* Global type definitions
******************************************************************************/
#define INT_CALLBACK_PORTA INT_CALLBACK_ON
#define INT_CALLBACK_PORTB INT_CALLBACK_ON
#define INT_CALLBACK_PORTC INT_CALLBACK_ON
#define INT_CALLBACK_PORTD INT_CALLBACK_ON
#define INT_CALLBACK_PORTE INT_CALLBACK_OFF
#define INT_CALLBACK_PORTF INT_CALLBACK_OFF
#define INT_CALLBACK_DMAC INT_CALLBACK_ON
#define INT_CALLBACK_TIM3 INT_CALLBACK_ON
#define INT_CALLBACK_UART0 INT_CALLBACK_ON
#define INT_CALLBACK_UART1 INT_CALLBACK_ON
#define INT_CALLBACK_UART2 INT_CALLBACK_ON
#define INT_CALLBACK_UART3 INT_CALLBACK_ON
#define INT_CALLBACK_LPUART0 INT_CALLBACK_ON
#define INT_CALLBACK_LPUART1 INT_CALLBACK_ON
#define INT_CALLBACK_SPI0 INT_CALLBACK_ON
#define INT_CALLBACK_SPI1 INT_CALLBACK_ON
#define INT_CALLBACK_I2C0 INT_CALLBACK_ON
#define INT_CALLBACK_I2C1 INT_CALLBACK_ON
#define INT_CALLBACK_TIM0 INT_CALLBACK_ON
#define INT_CALLBACK_TIM1 INT_CALLBACK_ON
#define INT_CALLBACK_TIM2 INT_CALLBACK_ON
#define INT_CALLBACK_LPTIM0 INT_CALLBACK_ON
#define INT_CALLBACK_LPTIM1 INT_CALLBACK_ON
#define INT_CALLBACK_TIM4 INT_CALLBACK_ON
#define INT_CALLBACK_TIM5 INT_CALLBACK_ON
#define INT_CALLBACK_TIM6 INT_CALLBACK_ON
#define INT_CALLBACK_PCA INT_CALLBACK_ON
#define INT_CALLBACK_WDT INT_CALLBACK_ON
#define INT_CALLBACK_RTC INT_CALLBACK_ON
#define INT_CALLBACK_ADC INT_CALLBACK_ON
#define INT_CALLBACK_DAC INT_CALLBACK_ON
#define INT_CALLBACK_PCNT INT_CALLBACK_ON
#define INT_CALLBACK_VC0 INT_CALLBACK_ON
#define INT_CALLBACK_VC1 INT_CALLBACK_ON
#define INT_CALLBACK_VC2 INT_CALLBACK_ON
#define INT_CALLBACK_LVD INT_CALLBACK_ON
#define INT_CALLBACK_LCD INT_CALLBACK_ON
#define INT_CALLBACK_FLASH INT_CALLBACK_ON
#define INT_CALLBACK_RAM INT_CALLBACK_ON
#define INT_CALLBACK_CLKTRIM INT_CALLBACK_ON
/**
*******************************************************************************
** \brief 中断优先级数据类型定义
** \note
******************************************************************************/
typedef enum en_irq_level
{
IrqLevel0 = 0u, ///< 优先级0
IrqLevel1 = 1u, ///< 优先级1
IrqLevel2 = 2u, ///< 优先级2
IrqLevel3 = 3u, ///< 优先级3
} en_irq_level_t;
/******************************************************************************
* Global function prototypes (definition in C source)
******************************************************************************/
///< 系统中断使能开关
extern void EnableNvic(IRQn_Type enIrq, en_irq_level_t enLevel, boolean_t bEn);
#ifdef __cplusplus
}
#endif
#endif /* __INTERRUPTS_HC32L17X_H__ */
/******************************************************************************
* EOF (not truncated)
******************************************************************************/
-212
View File
@@ -1,212 +0,0 @@
/*******************************************************************************
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file system_hc32l136.c
**
** System clock initialization.
** @link SampleGroup Some description @endlink
**
** - 2019-03-01 1.0 Lux First version.
**
******************************************************************************/
/******************************************************************************/
/* Include files */
/******************************************************************************/
#include "base_types.h"
#include "hc32l17x.h"
#include "system_hc32l17x.h"
#include "sysctrl.h"
/**
******************************************************************************
** System Clock Frequency (Core Clock) Variable according CMSIS
******************************************************************************/
uint32_t SystemCoreClock = 4000000;
//add clock source.
void SystemCoreClockUpdate (void) // Update SystemCoreClock variable
{
SystemCoreClock = Sysctrl_GetHClkFreq();
}
/**
******************************************************************************
** \brief 对MCU未引出IO端口进行默认配置.
**
** \param none
** \return none
******************************************************************************/
static void _InitHidePin(void)
{
uint32_t tmpReg = M0P_SYSCTRL->PERI_CLKEN0;
M0P_SYSCTRL->PERI_CLKEN0_f.GPIO = 1;
#if defined(HC32L17xPxxx) //100PIN MCU
M0P_GPIO->PFADS &= 0xFF4F; ///< PF04/PF05/PF07配置为数字端口
M0P_GPIO->PFDIR |= 0x00B0; ///< PF04/PF05/PF07配置为端口输入
M0P_GPIO->PFPU |= 0x00B0; ///< PF04/PF05/PF07配置为上拉
#elif defined(HC32L17xMxxx) //80PIN MCU
M0P_GPIO->PDADS &= 0x0F1F; ///< PD05~07/PD12~15配置为数字端口
M0P_GPIO->PEADS &= 0x783C; ///< PE00/PE01/PE06~10/PE15配置为数字端口
M0P_GPIO->PFADS &= 0xF9F3; ///< PF02/PF03/PF09/PF10配置为数字端口
M0P_GPIO->PDDIR |= 0xF0E0; ///< PD05~07/PD12~15配置为端口输入
M0P_GPIO->PEDIR |= 0x87C3; ///< PE00/PE01/PE06~10/PE15配置为端口输入
M0P_GPIO->PFDIR |= 0x060C; ///< PF02/PF03/PF09/PF10配置为数字端口
M0P_GPIO->PDPU |= 0xF0E0; ///< PD05~07/PD12~15配置为上拉
M0P_GPIO->PEPU |= 0x87C3; ///< PE00/PE01/PE06~10/PE15配置为上拉
M0P_GPIO->PFPU |= 0x060C; ///< PF02/PF03/PF09/PF10配置为数字端口
#elif defined(HC32L17xKxxx) //64PIN MCU
M0P_GPIO->PDADS &= 0x0004; ///< PD00/PD01/PD03~15配置为数字端口
M0P_GPIO->PEADS &= 0x0000; ///< PE00~15配置为数字端口
M0P_GPIO->PFADS &= 0xF9F3; ///< PF02/PF03/PF09/PF10配置为数字端口
M0P_GPIO->PDDIR |= 0xFFFB; ///< PD00/PD01/PD03~15配置为端口输入
M0P_GPIO->PEDIR |= 0xFFFF; ///< PE00~15配置为端口输入
M0P_GPIO->PFDIR |= 0x060C; ///< PF02/PF03/PF09/PF10配置为数字端口
M0P_GPIO->PDPU |= 0xFFFB; ///< PD00/PD01/PD03~15配置为上拉
M0P_GPIO->PEPU |= 0xFFFF; ///< PE00~15配置为上拉
M0P_GPIO->PFPU |= 0x060C; ///< PF02/PF03/PF09/PF10配置为数字端口
#elif defined(HC32L17xJxxx) //48PIN MCU
M0P_GPIO->PCADS &= 0xE000; ///< PC00~12配置为数字端口
M0P_GPIO->PDADS &= 0x0000; ///< PD00~15配置为数字端口
M0P_GPIO->PEADS &= 0x0000; ///< PE00~15配置为数字端口
M0P_GPIO->PFADS &= 0xF9C3; ///< PF02~05/PF09/PF10配置为数字端口
M0P_GPIO->PCDIR |= 0x1FFF; ///< PC00~12配置为端口输入
M0P_GPIO->PDDIR |= 0xFFFF; ///< PD00~15配置为端口输入
M0P_GPIO->PEDIR |= 0xFFFF; ///< PE00~15配置为端口输入
M0P_GPIO->PFDIR |= 0x063C; ///< PF02~05/PF09/PF10配置为数字端口
M0P_GPIO->PCPU |= 0x1FFF; ///< PC00~12配置为上拉
M0P_GPIO->PDPU |= 0xFFFF; ///< PD00~15配置为上拉
M0P_GPIO->PEPU |= 0xFFFF; ///< PE00~15配置为上拉
M0P_GPIO->PFPU |= 0x063C; ///< PF02~05/PF09/PF10配置为数字端口
#elif defined(HC32L17xFxxx) //32PIN MCU
M0P_GPIO->PAADS &= 0xFFF4; ///< PA00/PA01/PA03配置为数字端口
M0P_GPIO->PBADS &= 0x08FB; ///< PB02/PB08~10/PB12~15配置为数字端口
M0P_GPIO->PCADS &= 0xC000; ///< PC00~13配置为数字端口
M0P_GPIO->PDADS &= 0x0000; ///< PD00~15配置为数字端口
M0P_GPIO->PEADS &= 0x0000; ///< PE00~15配置为数字端口
M0P_GPIO->PFADS &= 0xF903; ///< PF02~07/PF09/PF10配置为数字端口
M0P_GPIO->PADIR |= 0x000B; ///< PA00/PA01/PA03配置为端口输入
M0P_GPIO->PBDIR |= 0xF704; ///< PB02/PB08~10/PB12~15配置为端口输入
M0P_GPIO->PCDIR |= 0x3FFF; ///< PC00~13配置为端口输入
M0P_GPIO->PDDIR |= 0xFFFF; ///< PD00~15配置为端口输入
M0P_GPIO->PEDIR |= 0xFFFF; ///< PE00~15配置为端口输入
M0P_GPIO->PFDIR |= 0x06FC; ///< PF02~07/PF09/PF10配置为数字端口
M0P_GPIO->PAPU |= 0x000B; ///< PA00/PA01/PA03配置为上拉
M0P_GPIO->PBPU |= 0xF704; ///< PB02/PB08~10/PB12~15配置为上拉
M0P_GPIO->PCPU |= 0x3FFF; ///< PC00~13配置为上拉
M0P_GPIO->PDPU |= 0xFFFF; ///< PD00~15配置为上拉
M0P_GPIO->PEPU |= 0xFFFF; ///< PE00~15配置为上拉
M0P_GPIO->PFPU |= 0x06FC; ///< PF02~07/PF09/PF10配置为数字端口
#endif
M0P_SYSCTRL->PERI_CLKEN0 = tmpReg;
}
/**
******************************************************************************
** \brief Setup the microcontroller system. Initialize the System and update
** the SystemCoreClock variable.
**
** \param none
** \return none
******************************************************************************/
void SystemInit(void)
{
M0P_SYSCTRL->RCL_CR_f.TRIM = (*((volatile uint16_t*) (0x00100C22ul)));
M0P_SYSCTRL->RCH_CR_f.TRIM = (*((volatile uint16_t*) (0x00100C08ul)));
SystemCoreClockUpdate();
_InitHidePin();
}
#if defined (__CC_ARM)
extern int32_t $Super$$main(void);
/* re-define main function */
int $Sub$$main(void)
{
SystemInit();
$Super$$main();
return 0;
}
#elif defined (__ARMCC_VERSION) && (__ARMCC_VERSION >= 6010050)
extern int32_t $Super$$main(void);
/* re-define main function */
int $Sub$$main(void)
{
SystemInit();
$Super$$main();
return 0;
}
#elif defined(__ICCARM__)
extern int32_t main(void);
/* __low_level_init will auto called by IAR cstartup */
extern void __iar_data_init3(void);
int __low_level_init(void)
{
// call IAR table copy function.
__iar_data_init3();
SystemInit();
main();
return 0;
}
#endif
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/*******************************************************************************
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file system_hc32l17x.h
**
** A detailed description is available at
** @link SampleGroup Some description @endlink
**
** - 2019-03-01 1.0 Lux First version.
**
******************************************************************************/
#ifndef __SYSTEM_HC32L17X_H__
#define __SYSTEM_HC32L17X_H__
/******************************************************************************/
/* Include files */
/******************************************************************************/
#include <stdint.h>
#ifdef __cplusplus
extern "C" {
#endif
/******************************************************************************/
/* Global pre-processor symbols/macros ('define') */
/******************************************************************************/
#define HWWD_DISABLE (1)
/**
******************************************************************************
** \brief Clock Setup macro definition
**
** - 0: CLOCK_SETTING_NONE - User provides own clock setting in application
** - 1: CLOCK_SETTING_CMSIS -
******************************************************************************/
#define CLOCK_SETTING_NONE 0u
#define CLOCK_SETTING_CMSIS 1u
//#define HC32L17xPxxx //100PIN
//#define HC32L17xMxxx //80PIN
//#define HC32L17xKxxx //64PIN
//#define HC32L17xJxxx //48PIN
#define HC32L17xFxxx //32PIN
/******************************************************************************/
/* */
/* START OF USER SETTINGS HERE */
/* =========================== */
/* */
/* All lines with '<<<' can be set by user. */
/* */
/******************************************************************************/
/******************************************************************************/
/* Global function prototypes ('extern', definition in C source) */
/******************************************************************************/
extern uint32_t SystemCoreClock; // System Clock Frequency (Core Clock)
extern void SystemInit (void); // Initialize the system
extern void SystemCoreClockUpdate (void); // Update SystemCoreClock variable
#ifdef __cplusplus
}
#endif
#endif /* __SYSTEM_HC32L17X _H__ */
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/*******************************************************************************
* Copyright (C) 2018, Huada Semiconductor Co.,Ltd All rights reserved.
*
* This software is owned and published by:
* Huada Semiconductor Co.,Ltd ("HDSC").
*
* BY DOWNLOADING, INSTALLING OR USING THIS SOFTWARE, YOU AGREE TO BE BOUND
* BY ALL THE TERMS AND CONDITIONS OF THIS AGREEMENT.
*
* This software contains source code for use with HDSC
* components. This software is licensed by HDSC to be adapted only
* for use in systems utilizing HDSC components. HDSC shall not be
* responsible for misuse or illegal use of this software for devices not
* supported herein. HDSC is providing this software "AS IS" and will
* not be responsible for issues arising from incorrect user implementation
* of the software.
*
* Disclaimer:
* HDSC MAKES NO WARRANTY, EXPRESS OR IMPLIED, ARISING BY LAW OR OTHERWISE,
* REGARDING THE SOFTWARE (INCLUDING ANY ACOOMPANYING WRITTEN MATERIALS),
* ITS PERFORMANCE OR SUITABILITY FOR YOUR INTENDED USE, INCLUDING,
* WITHOUT LIMITATION, THE IMPLIED WARRANTY OF MERCHANTABILITY, THE IMPLIED
* WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE OR USE, AND THE IMPLIED
* WARRANTY OF NONINFRINGEMENT.
* HDSC SHALL HAVE NO LIABILITY (WHETHER IN CONTRACT, WARRANTY, TORT,
* NEGLIGENCE OR OTHERWISE) FOR ANY DAMAGES WHATSOEVER (INCLUDING, WITHOUT
* LIMITATION, DAMAGES FOR LOSS OF BUSINESS PROFITS, BUSINESS INTERRUPTION,
* LOSS OF BUSINESS INFORMATION, OR OTHER PECUNIARY LOSS) ARISING FROM USE OR
* INABILITY TO USE THE SOFTWARE, INCLUDING, WITHOUT LIMITATION, ANY DIRECT,
* INDIRECT, INCIDENTAL, SPECIAL OR CONSEQUENTIAL DAMAGES OR LOSS OF DATA,
* SAVINGS OR PROFITS,
* EVEN IF Disclaimer HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES.
* YOU ASSUME ALL RESPONSIBILITIES FOR SELECTION OF THE SOFTWARE TO ACHIEVE YOUR
* INTENDED RESULTS, AND FOR THE INSTALLATION OF, USE OF, AND RESULTS OBTAINED
* FROM, THE SOFTWARE.
*
* This software may be replicated in part or whole for the licensed use,
* with the restriction that this Disclaimer and Copyright notice must be
* included with each copy of this software, whether used in part or whole,
* at all times.
*/
/******************************************************************************/
/** \file ddl_device.h
**
** Device define
** @link SampleGroup Some description @endlink
**
** - 2018-04-15
**
*****************************************************************************/
#ifndef __DDL_DEVICE_H__
#define __DDL_DEVICE_H__
/**
*******************************************************************************
** \brief Global device series definition
**
** \note
******************************************************************************/
#define DDL_MCU_SERIES DDL_DEVICE_SERIES_HC32L17X
/**
*******************************************************************************
** \brief Global package definition
**
** \note This definition is used for device package settings
******************************************************************************/
#define DDL_MCU_PACKAGE DDL_DEVICE_PACKAGE_HC_K
#endif /* __DDL_DEVICE_H__ */
/*******************************************************************************
* EOF (not truncated)
******************************************************************************/
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#ifndef _BSP_H
#define _BSP_H
#include <stdint.h>
#include <stdbool.h>
#include "gpio.h"
/*设备类型*/
#define FORCE_6D 0x0001 //0x0001 六维应力
#define OSMOTIC_PRESSURE 0x0002 //0x0002 渗透压
#define ELASTIC_WAVEGUIDE 0x0003 //0x0003 弹性波导
#define DIELECTRIC_MASS 0x0004 //0x0004 介电质普
#define _0x0005 0x0005 //0x0005 保留
#define CONT_DEFOR_3D 0x0006 //0x0006 三维连续变形
#define COMM_UNIT 0x0007 //0x0007 通讯单元
#define FORCE_3D 0x0008 //0x0008 三维应力
#define LASER_TRACING 0x0009 //0x0009 激光示踪
#define _0x000A 0x000A //0x000A 保留
#define _0x000B 0x000B //0x000B 保留
#define _0x000C 0x000C //0x000C 保留
#define MULTI_PARAMETER_FUSION 0x000D //0x000D 多参数融合
#define CRACK_DETECTION 0x000E //0x000E 裂缝仪
#define _0x000F 0x000F //0x000F 保留
#define ATTITUDE_MONITOR 0x0010 //0x0010 姿态检测
#define LASER_DISPLACE 0x0011 //0x0011 激光位移
#define REBAR_STRESS 0x0012 //0x0012 钢筋应力
#define ANCHOR_ROD_STRESS 0x0013 //0x0013 锚杆轴力
#define SURFACE_STRESS 0x0014 //0x0014 表面应力
#define PRESSURE 0x0015 //0x0015 压力
#define MICROWAVE_DISPLACE 0x0016 //0x0016 微波测距
/*通讯方式*/
typedef enum {
LORA = 0x01, //0x01 LORA通讯
RS485 = 0x02, //0x02 RS485通讯
RS232 = 0x03, //0x03 RS232通讯
CAN = 0x04, //0x04 CAN通讯
_4G = 0x05, //0x05 _4G通讯
BLE = 0x06, //0x06 BLE通讯
WIFI = 0x07, //0x07 WIFI通讯
}COMM_WAY_M;
/*设备标志*/
typedef enum {
MASTER = 0x000000, //0x000000 主设备
SUBSET = 0x800000, //0x800000 子设备
}DEVICE_SIGN_M;
/*Lora频率:433100000ul + 200000*N */
typedef enum {
CH0 = (433100000ul + 0), //测试频率
CH1 = (433100000ul + 200000),
CH2 = (433100000ul + 400000),
CH3 = (433100000ul + 600000),
CH4 = (433100000ul + 800000),
CH5 = (433100000ul + 1000000),
CH6 = (433100000ul + 1200000),
CH7 = (433100000ul + 1400000),
CH8 = (433100000ul + 1600000),
CH9 = (433100000ul + 1800000),
CH10 = (433100000ul + 2000000),
}LORA_FREQ_M;
/*设备类型选择*/
#define DEVICE_TYPE LASER_TRACING
/*通讯方式选择*/
#define COMM_WAY LORA
/*设备标志选择*/
#define DEVICE_SIGN MASTER
/*设备地址编号设置*/
#define ADD_NUMBER (0x000023 + DEVICE_SIGN) //数字部分对应唯一地址编号
/*Lora频率配置*/
#define LORA_FREQ CH1
#if(DEVICE_TYPE == LASER_TRACING)
#define LP_UART_CH 0
#define LPUART (M0P_LPUART0)
#define LPUART_IRQN (LPUART0_IRQn)
#define LPUART_PERIPHERAL_CLK (SysctrlPeripheralLpUart0)
#define LPUART_TX_AF GpioAf4
#define LPUART_TX_PORT GpioPortB
#define LPUART_TX_PIN GpioPin10
#define LPUART_RX_AF GpioAf3
#define LPUART_RX_PORT GpioPortB
#define LPUART_RX_PIN GpioPin11
#define RS485_CTRL_PORT GpioPortB
#define RS485_CTRL_PIN GpioPin1
#define RS485_CTRL_RX() Gpio_ClrIO(RS485_CTRL_PORT, RS485_CTRL_PIN)
#define RS485_CTRL_TX() Gpio_SetIO(RS485_CTRL_PORT, RS485_CTRL_PIN)
#endif
#if(DEVICE_TYPE == FORCE_6D)
#define LP_UART_CH 0
#define LPUART (M0P_LPUART0)
#define LPUART_IRQN (LPUART0_IRQn)
#define LPUART_PERIPHERAL_CLK (SysctrlPeripheralLpUart0)
#define LPUART_TX_AF GpioAf3
#define LPUART_TX_PORT GpioPortB
#define LPUART_TX_PIN GpioPin0
#define LPUART_RX_AF GpioAf3
#define LPUART_RX_PORT GpioPortB
#define LPUART_RX_PIN GpioPin11
#define RS485_CTRL_PORT GpioPortB
#define RS485_CTRL_PIN GpioPin1
#define RS485_CTRL_RX() Gpio_ClrIO(RS485_CTRL_PORT, RS485_CTRL_PIN)
#define RS485_CTRL_TX() Gpio_SetIO(RS485_CTRL_PORT, RS485_CTRL_PIN)
#endif
#if(DEVICE_TYPE == OSMOTIC_PRESSURE)
#define LP_UART_CH 0
#define LPUART (M0P_LPUART0)
#define LPUART_IRQN (LPUART0_IRQn)
#define LPUART_PERIPHERAL_CLK (SysctrlPeripheralLpUart0)
#define LPUART_TX_AF GpioAf3
#define LPUART_TX_PORT GpioPortB
#define LPUART_TX_PIN GpioPin0
#define LPUART_RX_AF GpioAf3
#define LPUART_RX_PORT GpioPortB
#define LPUART_RX_PIN GpioPin11
#define RS485_CTRL_PORT GpioPortB
#define RS485_CTRL_PIN GpioPin1
#define RS485_CTRL_RX() Gpio_ClrIO(RS485_CTRL_PORT, RS485_CTRL_PIN)
#define RS485_CTRL_TX() Gpio_SetIO(RS485_CTRL_PORT, RS485_CTRL_PIN)
#endif
#if(DEVICE_TYPE == CONT_DEFOR_3D)
#define LP_UART_CH 0
#define LPUART (M0P_LPUART0)
#define LPUART_IRQN (LPUART0_IRQn)
#define LPUART_PERIPHERAL_CLK (SysctrlPeripheralLpUart0)
#define LPUART_TX_AF GpioAf3
#define LPUART_TX_PORT GpioPortB
#define LPUART_TX_PIN GpioPin0
#define LPUART_RX_AF GpioAf3
#define LPUART_RX_PORT GpioPortB
#define LPUART_RX_PIN GpioPin11
#define RS485_CTRL_PORT GpioPortB
#define RS485_CTRL_PIN GpioPin1
#define RS485_CTRL_RX() Gpio_ClrIO(RS485_CTRL_PORT, RS485_CTRL_PIN)
#define RS485_CTRL_TX() Gpio_SetIO(RS485_CTRL_PORT, RS485_CTRL_PIN)
#endif
#if(DEVICE_TYPE == COMM_UNIT)
#define LP_UART_CH 0
#define LPUART (M0P_LPUART0)
#define LPUART_IRQN (LPUART0_IRQn)
#define LPUART_PERIPHERAL_CLK (SysctrlPeripheralLpUart0)
#define LPUART_TX_AF GpioAf4
#define LPUART_TX_PORT GpioPortB
#define LPUART_TX_PIN GpioPin10
#define LPUART_RX_AF GpioAf3
#define LPUART_RX_PORT GpioPortB
#define LPUART_RX_PIN GpioPin11
#define RS485_CTRL_PORT GpioPortB
#define RS485_CTRL_PIN GpioPin2
#define RS485_CTRL_RX() Gpio_ClrIO(RS485_CTRL_PORT, RS485_CTRL_PIN)
#define RS485_CTRL_TX() Gpio_SetIO(RS485_CTRL_PORT, RS485_CTRL_PIN)
#endif
#if(DEVICE_TYPE == FORCE_3D)
#define LP_UART_CH 0
#define LPUART (M0P_LPUART0)
#define LPUART_IRQN (LPUART0_IRQn)
#define LPUART_PERIPHERAL_CLK (SysctrlPeripheralLpUart0)
#define LPUART_TX_AF GpioAf3
#define LPUART_TX_PORT GpioPortB
#define LPUART_TX_PIN GpioPin0
#define LPUART_RX_AF GpioAf3
#define LPUART_RX_PORT GpioPortB
#define LPUART_RX_PIN GpioPin11
#define RS485_CTRL_PORT GpioPortB
#define RS485_CTRL_PIN GpioPin1
#define RS485_CTRL_RX() Gpio_ClrIO(RS485_CTRL_PORT, RS485_CTRL_PIN)
#define RS485_CTRL_TX() Gpio_SetIO(RS485_CTRL_PORT, RS485_CTRL_PIN)
#endif
#if(DEVICE_TYPE == CRACK_DETECTION)
#define LP_UART_CH 0
#define LPUART (M0P_LPUART0)
#define LPUART_IRQN (LPUART0_IRQn)
#define LPUART_PERIPHERAL_CLK (SysctrlPeripheralLpUart0)
#define LPUART_TX_AF GpioAf4
#define LPUART_TX_PORT GpioPortB
#define LPUART_TX_PIN GpioPin10
#define LPUART_RX_AF GpioAf3
#define LPUART_RX_PORT GpioPortB
#define LPUART_RX_PIN GpioPin11
#define RS485_CTRL_PORT GpioPortB
#define RS485_CTRL_PIN GpioPin2
#define RS485_CTRL_RX() Gpio_ClrIO(RS485_CTRL_PORT, RS485_CTRL_PIN)
#define RS485_CTRL_TX() Gpio_SetIO(RS485_CTRL_PORT, RS485_CTRL_PIN)
#endif
#define FLASH_SECTOR_SIZE 0x200ul
#define FLASH_BASE ((uint32_t)0x00000000)
#define FLASH_SIZE (230u * FLASH_SECTOR_SIZE)
#define SRAM_BASE ((uint32_t)0x20000000)
#define RAM_SIZE 0x4000ul
#define BOOT_SIZE (20 * FLASH_SECTOR_SIZE)
#define APP_ADDRESS (0x2A00)//(FLASH_BASE + BOOT_SIZE)
#define BOOT_PARA_ADDRESS (0x0001FC00)
#define BOOT_PARA_SIZE (FLASH_SECTOR_SIZE)
#define DEBUG 1
#define USE_LOWPOWER 0
#define USE_WDT 1
//#define WAKEUP_TIME_ARR (65536 - (30 * 150)) //65536 - time * 38400Hz / 256分频
#define SYSCLK_RCH 0
#define SYSCLK_XTH 1
#define SYSCLK_PLL 2
#define SYSCLK SYSCLK_RCH
typedef struct {
uint32_t AppFlag;
uint32_t UpdateFlag;
uint32_t PackageCnt;
uint32_t AppSize;
uint32_t Crc32Check;
uint32_t FirstRunFlag;//第一次运行
uint8_t DevMac[6];//设备MAC
uint32_t LoraFreq;//Lora频率
}BootPara_t, *BootPara;
typedef void (*ReadPara)(BootPara_t rPara);
typedef void (*SavPara)(BootPara_t wPara);
typedef void (*UartSend)(uint8_t *sData, int sLen);
typedef void (*DataRevCallBack)(uint8_t *rData, uint8_t rLen);
void BspInit(void);
void DBGUartSendByte(uint8_t sData);
void DBGUartSend(uint8_t *sData, int sLen);
void ReadBootPara(BootPara rData);
void WriteBootPara(BootPara wData);
void EraseFlash(void);
uint32_t GetSysTick(void);
void delay_ms(uint32_t ms);
void Delay(uint8_t time);
void FeedDog(void);
void SystemReset(void);
#endif
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#ifndef __MAIN_H
#define __MAIN_H
#include "bsp.h"
#include "UartDebug.h"
#define CRC16_BASE 0xA001
#define APP_START_FLAG 0x55AA5A5A
#define APP_UPDATE_FLAG 0xA5A5AA55
typedef enum {
UPDATE_CMD_NULL,
UPDATE_CMD_SLAVE_RES, //从机应答主机下发
UPDATE_CMD_SLAVE_REQ_DATA, //从机请求主机下发数据
UPDATE_CMD_MASTER_REQ = 0x81, //主机请求升级
UPDATE_CMD_MASTRE_RES_DATA, //主机发送数据
}UpdateCmd_m;
//帧头结构体
typedef struct {
uint8_t Header;
uint8_t DevMac[6];
uint8_t Cmd;
uint8_t PayloadLen;
}__attribute__ ((packed))FrameHeader_t, *FrameH;
//主机下发升级请求载荷结构体
typedef struct {
uint16_t PackageNum;
uint32_t AppSize;
uint32_t AppCrc32;
}__attribute__ ((packed))UpDataRequset_t, *UDReq;
//从机请求下发结构体
typedef struct {
uint16_t PackageIndex;
uint32_t PackageNum;
}__attribute__ ((packed))GetDataRequest_t, *GDReq;
//主机应答下发数据结构体
typedef struct {
uint16_t PackageIndex;
uint16_t PackageNum;
uint8_t DataLen;
}__attribute__ ((packed))DownResponse_t, *DownRes;
typedef enum {
BL_IDLE,
BL_ERASE_FLASH,
BL_GET_DATA,
BL_WAIT_REV,
BL_GET_DATA_TIMEOUT,
BL_START_APP,
BL_RESET
}BootStatus_m;
typedef struct {
BootPara_t Para;
BootStatus_m Status;
uint32_t AppPackageCnt;
uint32_t AppPackageIdx;
uint32_t RevErrCnt;
uint32_t FeedDogDlyCnt;
uint32_t BootLoader1mSDlyCnt;
bool RxFlag;
uint32_t UartRevTimeOutCnt;
uint8_t RxBuff[260];
uint16_t RxLen;
uint16_t UpDateFlag;
}BootLoader_t;
#endif
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#include "sysctrl.h"
#include "gpio.h"
#include "flash.h"
#include "bsp.h"
#include "lpuart.h"
#include "bt.h"
#include "wdt.h"
extern void DebugUartIRQ(uint8_t Data);
extern void BleIRQHandler(uint8_t rData);
extern void SysTick_CallBack(void);
extern void KeyIRQHandler(void);
static __IO uint32_t SysTickCnt = 0;
static __IO bool LpUart0_Tx_Flag;
#define WAKEUP_TIME_ARR 1000
#define USE_RCL_TRIM 0
#define DBG_LOG(...)
#if (SYSCLK == SYSCLK_RCH)
static void SystemClkInit(en_sysctrl_rch_freq_t enRchFreq)
{
///< RCH时钟不同频率的切换,需要先将时钟切换到RCL
Sysctrl_SetRCLTrim(SysctrlRclFreq32768);
Sysctrl_SetRCLStableTime(SysctrlRclStableCycle64);
Sysctrl_ClkSourceEnable(SysctrlClkRCL, TRUE);
Sysctrl_SysClkSwitch(SysctrlClkRCL);
///< 加载目标频率的RCH的TRIM值
Sysctrl_SetRCHTrim(enRchFreq);
///< 使能RCH
Sysctrl_ClkSourceEnable(SysctrlClkRCH, TRUE);
///< 时钟切换到RCH
Sysctrl_SysClkSwitch(SysctrlClkRCH);
///< HCLK不超过24M:此处设置FLASH读等待周期为0 cycle
Flash_WaitCycle(FlashWaitCycle0);
}
#elif (SYSCLK == SYSCLK_XTH)
static void SystemClkInit(en_sysctrl_xth_freq_t enXthFreq)
{
///<======================== 切换至XTH32MHz ==============================
///< 当使用的时钟源HCLK大于24M:设置FLASH 读等待周期为1 cycle(默认值也为1 cycle)
if(SysctrlXthFreq24_32MHz == enXthFreq)
{
Flash_WaitCycle(FlashWaitCycle1);
}
///< 切换时钟前(根据外部高速晶振)设置XTH频率范围,配置晶振参数,使能目标时钟,此处为SYSTEM_XTH = 32MHz
Sysctrl_SetXTHFreq(enXthFreq);
Sysctrl_XTHDriverCfg(SysctrlXtalDriver3);
Sysctrl_SetXTHStableTime(SysctrlXthStableCycle16384);
Sysctrl_ClkSourceEnable(SysctrlClkXTH, TRUE);
delay1ms(10);
Sysctrl_SysClkSwitch(SysctrlClkXTH);
if(SysctrlXthFreq24_32MHz != enXthFreq)
{
Flash_WaitCycle(FlashWaitCycle0);
}
//M0P_SYSCTRL->SYSCTRL0_f.WAKEUP_BYRCH = 0; //唤醒保持原时钟
}
#elif (SYSCLK == SYSCLK_PLL)
///<请注意根据外部晶振配置宏——[SYSTEM_XTH],如果使用PLLXTH必须小于24MHz
static void SystemClkInit(void)
{
stc_sysctrl_pll_cfg_t stcPLLCfg;
///< 切换时钟前(根据外部高速晶振)设置XTH频率范围,配置晶振参数,使能目标时钟,此处为SYSTEM_XTH = 32MHz
// Sysctrl_SetXTHFreq(SysctrlXthFreq4_8MHz);
// Sysctrl_XTHDriverCfg(SysctrlXtalDriver3);
// Sysctrl_SetXTHStableTime(SysctrlXthStableCycle16384);
// Sysctrl_ClkSourceEnable(SysctrlClkXTH, TRUE);
Sysctrl_SetRCHTrim(SysctrlRchFreq8MHz);
Sysctrl_ClkSourceEnable(SysctrlClkRCH, TRUE);
delay1ms(10);
stcPLLCfg.enInFreq = SysctrlPllInFreq6_12MHz; //XTH 8MHz
stcPLLCfg.enOutFreq = SysctrlPllOutFreq36_48MHz; //PLL 输出
stcPLLCfg.enPllClkSrc = SysctrlPllRch; //输入时钟源选择RCH
stcPLLCfg.enPllMul = SysctrlPllMul6; //8MHz x 6 = 48MHz
Sysctrl_SetPLLFreq(&stcPLLCfg);
///< 当使用的时钟源HCLK大于24M:设置FLASH 读等待周期为1 cycle(默认值也为1 cycle)
Flash_WaitCycle(FlashWaitCycle1);
///< 使能PLL
Sysctrl_ClkSourceEnable(SysctrlClkPLL, TRUE);
///< 时钟切换到PLL
Sysctrl_SysClkSwitch(SysctrlClkPLL);
}
#endif
static void SystemRCLInit(void)
{
Sysctrl_SetRCLTrim(SysctrlRclFreq38400); ///< 配置RCL时钟为32kHz
Sysctrl_SetRCLStableTime(SysctrlRclStableCycle256);
Sysctrl_ClkSourceEnable(SysctrlClkRCL, TRUE); ///< 使能RCL时钟
}
static void LPUartInit(void)
{
stc_gpio_cfg_t stcGpioCfg;
stc_lpuart_cfg_t stcCfg;
DDL_ZERO_STRUCT(stcGpioCfg);
Sysctrl_SetPeripheralGate(SysctrlPeripheralGpio,TRUE);
///<TX
stcGpioCfg.enDir = GpioDirOut;
Gpio_Init(LPUART_TX_PORT, LPUART_TX_PIN, &stcGpioCfg);
Gpio_SetAfMode(LPUART_TX_PORT, LPUART_TX_PIN, LPUART_TX_AF); //配置PA00为LPUART1_TX
//<RX
stcGpioCfg.enDir = GpioDirIn;
Gpio_Init(LPUART_RX_PORT, LPUART_RX_PIN,&stcGpioCfg);
Gpio_SetAfMode(LPUART_RX_PORT, LPUART_RX_PIN, LPUART_RX_AF); //配置PA01为LPUART1_RX
DDL_ZERO_STRUCT(stcCfg);
Sysctrl_SetPeripheralGate(LPUART_PERIPHERAL_CLK,TRUE);
///<LPUART 初始化
stcCfg.enStopBit = LPUart1bit; ///<1停止位
stcCfg.enMmdorCk = LPUartEven; ///<偶校验
stcCfg.stcBaud.enSclkSel = LPUartMskRcl; ///<传输时钟源
stcCfg.stcBaud.u32Sclk = 38400; ///<PCLK获取
stcCfg.stcBaud.enSclkDiv = LPUartMsk4Or8Div; ///<采样分频
stcCfg.stcBaud.u32Baud = 9600; ///<波特率
stcCfg.enRunMode = LPUartMskMode1; ///<工作模式
LPUart_Init(LPUART, &stcCfg);
///<LPUART 中断使能
LPUart_ClrStatus(LPUART,LPUartRC); ///<清接收中断请求
LPUart_ClrStatus(LPUART,LPUartTC); ///<清发送中断请求
LPUart_EnableIrq(LPUART,LPUartTxIrq); ///<使能发送中断
LPUart_EnableIrq(LPUART,LPUartRxIrq); ///<使能接收中断
EnableNvic(LPUART_IRQN,IrqLevel3,TRUE); ///<系统中断使能
}
void DBGUartSend(uint8_t *sData, int sLen)
{
uint16_t dlyCnt = 0xffff;
RS485_CTRL_TX();
delay_ms(1);
for(int i = 0; i < sLen; i++) {
LpUart0_Tx_Flag = false;
dlyCnt = 0xffff;
LPUart_SendDataIt(LPUART, sData[i]);
while(dlyCnt > 0) {
dlyCnt--;
if(LpUart0_Tx_Flag)
break;
}
}
RS485_CTRL_RX();
}
#if(LP_UART_CH == 0)
void LpUart0_IRQHandler(void)
{
if(LPUart_GetStatus(LPUART, LPUartTC)) {
LPUart_ClrStatus(LPUART, LPUartTC); ///<清发送中断请求
LpUart0_Tx_Flag = true;
}
if(LPUart_GetStatus(LPUART, LPUartRC)) { ///接收数据
LPUart_ClrStatus(LPUART, LPUartRC); ///<清接收中断请求
uint8_t u8RxData = LPUart_ReceiveData(LPUART); ///读取数据
DebugUartIRQ(u8RxData);
}
}
#else
void LpUart1_IRQHandler(void)
{
if(LPUart_GetStatus(LPUART, LPUartTC)) {
LPUart_ClrStatus(LPUART, LPUartTC); ///<清发送中断请求
LpUart0_Tx_Flag = true;
}
if(LPUart_GetStatus(LPUART, LPUartRC)) { ///接收数据
LPUart_ClrStatus(LPUART, LPUartRC); ///<清接收中断请求
uint8_t u8RxData = LPUart_ReceiveData(LPUART); ///读取数据
DebugUartIRQ(u8RxData);
}
}
#endif
static void GPIOInit(void)
{
stc_gpio_cfg_t GpioInitStruct;
DDL_ZERO_STRUCT(GpioInitStruct);
Sysctrl_SetPeripheralGate(SysctrlPeripheralGpio,TRUE);
GpioInitStruct.enDir = GpioDirOut; ///< 端口方向配置->输入
GpioInitStruct.enDrv = GpioDrvH; ///< 端口驱动能力配置->高驱动能力
GpioInitStruct.enPu = GpioPuDisable; ///< 端口上下拉配置->无
GpioInitStruct.enPd = GpioPdDisable;
GpioInitStruct.enOD = GpioOdDisable; ///< 端口开漏输出配置->开漏输出关闭
GpioInitStruct.enCtrlMode = GpioAHB; ///< 端口输入/输出值寄存器总线控制模式配置->AHB
GpioInitStruct.bOutputVal = false;
Gpio_Init(RS485_CTRL_PORT, RS485_CTRL_PIN, &GpioInitStruct);
RS485_CTRL_RX();
}
static void WdtInit(void)
{
#if (USE_WDT == 1)
///< 开启WDT外设时钟
Sysctrl_SetPeripheralGate(SysctrlPeripheralWdt,TRUE);
///< WDT 初始化
Wdt_Init(WdtResetEn, WdtT52s4);
Wdt_Start();
#endif
}
static void FlashWrite(uint32_t *wData, uint8_t wLen)
{
while(Ok != Flash_SectorErase(BOOT_PARA_ADDRESS));
for(int i = 0; i < wLen / 4; i++) {
Flash_WriteWord(BOOT_PARA_ADDRESS + i * 4, wData[i]);
}
}
static void FlashRead(uint32_t *rData, uint8_t rLen)
{
uint32_t u32Addr = BOOT_PARA_ADDRESS;
for(int i = 0; i < rLen / 4; i++) {
rData[i] = *((volatile uint32_t*)(u32Addr + i * 4));
}
}
void FeedDog(void)
{
#if (USE_WDT == 1)
Wdt_Feed();
#endif
}
uint32_t GetSysTick(void)
{
return SysTickCnt;
}
void Delay(uint8_t time)
{
while(time > 0) {
time --;
}
}
void delay_ms(uint32_t mS)
{
volatile uint32_t cTick, mTick;
cTick = GetSysTick();
while(1){
mTick = GetSysTick();
if(mTick - cTick >= mS)
break;
}
}
void SystemReset(void)
{
NVIC_SystemReset();
}
void BspInit(void)
{
//SystemClkInit(SysctrlXthFreq4_8MHz);
SystemClkInit(SysctrlRchFreq16MHz);
SystemCoreClockUpdate();
SysTick_Config(SystemCoreClock/1000);
SystemRCLInit();
GPIOInit();
LPUartInit();
while(Ok != Flash_Init(4, TRUE));
WdtInit();
}
void SysTick_IRQHandler(void)
{
SysTickCnt++;
SysTick_CallBack();
}
void ReadBootPara(BootPara rData)
{
FlashRead((uint32_t *)rData, sizeof(BootPara_t));
}
void WriteBootPara(BootPara wData)
{
FlashWrite((uint32_t *)wData, sizeof(BootPara_t));
}
void EraseFlash(void)
{
for(int Addr = APP_ADDRESS; Addr < FLASH_SIZE; Addr += FLASH_SECTOR_SIZE) {
Flash_SectorErase(Addr);
}
}
-338
View File
@@ -1,338 +0,0 @@
/******************************************************************************
* Include files
******************************************************************************/
#include <stdlib.h>
#include "main.h"
//#include "lis2hh12_app.h"
#include "flash.h"
//设备唯一编码,固定在0x00002800位置
const uint8_t DevMac[6] __attribute__((section(".ARM.__at_0x00002800"))) = {DEVICE_TYPE & 0xFF, (DEVICE_TYPE >> 8) & 0xFF, COMM_WAY, (ADD_NUMBER >> 16) & 0xFF, (ADD_NUMBER >> 8) & 0xFF, ADD_NUMBER & 0xFF};
//const uint8_t DevMac[6] __attribute__((at(DEV_MAC_ADDRESS)))= {0x19, 0x00, 0x02, 0x00, 0x00, 0x01};
uint32_t pdwCrc32Tbl[256];
void InitCrc32Table(uint32_t* Crc32Tbl)
{
for (int wCnt = 0; wCnt!= 256; wCnt++){
uint32_t dwCrc = wCnt;
for (int ucCnt = 0; ucCnt != 8; ucCnt++){
if (dwCrc & 1){
dwCrc = (dwCrc >> 1) ^ 0xEDB88320;
}
else{
dwCrc >>= 1;
}
}
Crc32Tbl[wCnt] = dwCrc;
}
}
uint32_t GetCrc32(int dwLen)
{
uint32_t Data;
uint32_t dwCrc32Data = 0xFFFFFFFF;
for (int dwCnt = 0; dwCnt!= dwLen; ++dwCnt){
Data = *((volatile uint8_t*)(APP_ADDRESS + dwCnt));
uint32_t dwTbl = (dwCrc32Data ^ Data) & 0xFF;
dwCrc32Data = ((dwCrc32Data >> 8) & 0xFFFFFF) ^ pdwCrc32Tbl[dwTbl];
}
return ~dwCrc32Data;
}
uint16_t CRC_Modbus(uint16_t wBase, __IO uint8_t *para, uint16_t length)
{
uint16_t crc = 0xffff;
uint16_t index,i;
for(index = 0 ; index < length;index++) {
crc ^= para[index];
for(i = 0; i < 8; i++) {
if(crc & 1) {
crc >>= 1;
crc ^= wBase;
}
else
crc >>= 1;
}
}
return crc;
}
uint32_t JumpAddress;
func_ptr_t JumpToApplication;
BootLoader_t BL;
static void BootLoader1mSRoutine(void)
{
if(BL.BootLoader1mSDlyCnt)
BL.BootLoader1mSDlyCnt--;
if(BL.UartRevTimeOutCnt > 0)
BL.UartRevTimeOutCnt--;
BL.FeedDogDlyCnt++;
}
void FeedDogHandler(void)
{
if(BL.FeedDogDlyCnt >= 200) {
FeedDog();
BL.FeedDogDlyCnt = 0;
}
}
void AppWriteFlash(uint32_t AddrOffset, uint8_t *wData, int wLen)
{
for(int i = 0; i < wLen; i++) {
Flash_WriteByte(APP_ADDRESS + AddrOffset + i, wData[i]);
}
}
static bool JumpToApp(uint32_t AppAddr)
{
uint32_t u32StackTop = *((__IO uint32_t *)AppAddr);
if ((u32StackTop > SRAM_BASE) && (u32StackTop <= (SRAM_BASE + RAM_SIZE))) {
JumpAddress = *(__IO uint32_t *)(AppAddr + 4);
JumpToApplication = (func_ptr_t)JumpAddress;
__set_MSP(*(__IO uint32_t *)AppAddr);
JumpToApplication();
}
return Error;
}
void SendGetCmd(uint8_t Cmd, uint16_t PayLoad)
{
uint8_t sData[20], sLen;
uint16_t crc16;
FrameH Frame = (FrameH)sData;
Frame->Header = 0x7d;
memcpy(Frame->DevMac, DevMac, 6);
Frame->Cmd = Cmd & 0x7F;
if(Frame->Cmd == UPDATE_CMD_SLAVE_RES) {
Frame->PayloadLen = 1;
sData[sizeof(FrameHeader_t)] = PayLoad;
}
else if(Frame->Cmd == UPDATE_CMD_SLAVE_REQ_DATA) {
Frame->PayloadLen = 4;
GDReq GDData = (GDReq)&sData[sizeof(FrameHeader_t)];
GDData->PackageIndex = PayLoad;
GDData->PackageNum = BL.AppPackageCnt;
}
sLen = sizeof(FrameHeader_t) + Frame->PayloadLen;
crc16 = CRC_Modbus(CRC16_BASE, sData, sLen);
sData[sLen++] = crc16;
sData[sLen++] = (crc16 >> 8) & 0x00ff;
DBGUartSend(sData, sLen);
}
bool AnalyzeData(uint8_t *rData, uint16_t rLen)
{
uint16_t crc16, check;
check = CRC_Modbus(CRC16_BASE, rData, rLen - 2);
crc16 = (rData[rLen - 1] << 8) | rData[rLen - 2];
if(check != crc16) {
return false;
}
FrameH Frame = (FrameH)rData;
int ret = memcmp(Frame->DevMac, DevMac, 6);
if(ret != 0)
return false;
if(Frame->Cmd == UPDATE_CMD_MASTER_REQ) {
UDReq UpData = (UDReq)&rData[sizeof(FrameHeader_t)];
BL.Para.AppFlag = 0;
BL.Para.UpdateFlag = APP_UPDATE_FLAG;
BL.Para.Crc32Check = UpData->AppCrc32;
BL.Para.PackageCnt = UpData->PackageNum;
BL.Para.AppSize = UpData->AppSize;
WriteBootPara(&BL.Para);
BL.BootLoader1mSDlyCnt = 20;
BL.Status = BL_RESET;
SendGetCmd(UPDATE_CMD_SLAVE_RES, 1);
}
else if(Frame->Cmd == UPDATE_CMD_MASTRE_RES_DATA) {
if(BL.UpDateFlag == false)
return false;
DownRes DownData = (DownRes)&rData[sizeof(FrameHeader_t)];
if(BL.AppPackageIdx != DownData->PackageIndex) {
return false;
}
AppWriteFlash(BL.AppPackageIdx * 200, &BL.RxBuff[sizeof(FrameHeader_t) + sizeof(DownResponse_t)], DownData->DataLen);
BL.AppPackageIdx++;
BL.RevErrCnt = 0;
if(BL.AppPackageIdx < BL.AppPackageCnt) {
BL.Status = BL_GET_DATA;
BL.BootLoader1mSDlyCnt = 5;
}
else {
uint32_t crc32 = GetCrc32(BL.Para.AppSize);
if(crc32 == BL.Para.Crc32Check) {
BL.Status = BL_START_APP;
BL.Para.AppFlag = 0; //升级成功首次启动时,把APP启动标志清除,由APP置位,下次启动便按标志启动
BL.Para.UpdateFlag = 0;
WriteBootPara(&BL.Para);
}
}
}
else
return false;
return true;
}
void BootLoaderLoopHandler(void)
{
if(BL.RxFlag) {
BL.RxFlag = false;
AnalyzeData(BL.RxBuff, BL.RxLen);
}
switch(BL.Status) {
case BL_IDLE:
break;
case BL_RESET:
if(BL.BootLoader1mSDlyCnt > 0) {
break;
}
SystemReset();
break;
case BL_START_APP:
JumpToApp(APP_ADDRESS);
break;
case BL_ERASE_FLASH:
FeedDog();
EraseFlash();
FeedDog();
BL.Status = BL_GET_DATA;
BL.BootLoader1mSDlyCnt = 200;
BL.AppPackageCnt = BL.Para.PackageCnt;
BL.RevErrCnt = 0;
BL.UpDateFlag = true;
break;
case BL_GET_DATA:
if(BL.BootLoader1mSDlyCnt > 0)
break;
SendGetCmd(UPDATE_CMD_MASTRE_RES_DATA, BL.AppPackageIdx);
BL.Status = BL_WAIT_REV;
BL.BootLoader1mSDlyCnt = 500;
break;
case BL_WAIT_REV:
if(BL.BootLoader1mSDlyCnt == 0) {
BL.Status = BL_GET_DATA_TIMEOUT;
}
break;
case BL_GET_DATA_TIMEOUT:
BL.RevErrCnt++;
if(BL.RevErrCnt < 3) {
BL.Status = BL_GET_DATA;
}
else {
BL.Status = BL_IDLE;
BL.Para.AppFlag = 0;
BL.RevErrCnt = 0;
BL.Para.UpdateFlag = 0;
WriteBootPara(&BL.Para);
BL.UpDateFlag = false;
}
break;
}
}
int32_t main(void)
{
BspInit();
InitCrc32Table(pdwCrc32Tbl);
ReadBootPara(&BL.Para);
if((BL.Para.DevMac[0] | (BL.Para.DevMac[1] << 8)) != DEVICE_TYPE){ //设备类型错误,清除升级参数
if(BL.Para.FirstRunFlag == 0xFFFFFFFF) {
BL.Status = BL_START_APP;
}
else {
BL.Status = BL_IDLE;
}
BL.Para.AppFlag = 0;
BL.Para.UpdateFlag = 0;
BL.Para.FirstRunFlag = 0;
memcpy(&BL.Para.DevMac, &DevMac[0], 6);
BL.Para.LoraFreq = LORA_FREQ;
WriteBootPara(&BL.Para);
}
else if(BL.Para.AppFlag == APP_START_FLAG) {
BL.Status = BL_START_APP;
}
else if(BL.Para.UpdateFlag == APP_UPDATE_FLAG) {
BL.Status = BL_ERASE_FLASH;
}
while (1) {
FeedDogHandler();
BootLoaderLoopHandler();
}
}
/*******************************************************************************
* 中断服务函数
******************************************************************************/
void SysTick_CallBack(void)
{
BootLoader1mSRoutine();
}
void DebugUartIRQ(uint8_t RxData)
{
static uint16_t rLen = 0;
static uint8_t rBuff[300];
static bool Header = false;
static uint16_t PayLen = 0;
if(BL.UartRevTimeOutCnt == 0) {
Header = false;
rLen = 0;
PayLen = 0;
}
BL.UartRevTimeOutCnt = 3;
if(Header == false && (RxData == 0x7d)) {
Header = true;
rLen = 0;
PayLen = 0;
rBuff[rLen++] = RxData;
}
else {
rBuff[rLen++] = RxData;
if(rLen == 9) {
PayLen = RxData;
if(PayLen > 256) {
Header = false;
return;
}
}
else if(rLen == sizeof(FrameHeader_t) + PayLen + 2) {
BL.RxLen = rLen;
memcpy(BL.RxBuff, rBuff, BL.RxLen);
BL.RxFlag = true;
Header = false;
}
}
}
//void KeyIRQHandler(void)
//{
//
//}