3 Commits

Author SHA1 Message Date
YuanHongbin f40c422684 feat(uart): 分离ETH与Cat1通讯,支持UART1/Cat1/Debug互斥切换
Breaking Changes:
- USART1(PA11/PA12)改为Cat1(115200)/Debug(500000)共享,SGM3157控制
- USART4(PB09/PC13)独家给ETH(115200),不再共享
- 新增EthTask独立状态机,与CatOneTask解耦运行
- 上电默认Comm=CATONE_COMM,dch=RS485_CH1

Details:
- feat: 新增EthTask.c/h,ETH状态机(8态)独立运行
- refactor: CatOneTask移除ETH代码,AT发送/接收走USART1
- feat: comm cat1/eth命令增加USART1占用互斥检查
- feat: dch dbg命令增加USART1占用互斥检查
- feat: rt_kprintf根据dch通道自动路由(USART1/RS485)
- feat: 新增eth on/off调试打印开关命令
- fix: 两个状态机按Comm模式判断休眠,避免误发AT
- fix: bsp.c修复IRQ回调函数名不匹配(BusFault隐患)
- fix: PB08(PortB Pin08)PORT_Init触发复位,改用外部上拉+POUTE单bit使能
- fix: DebugCmd命令表DEBUG_CMD_CNT与实际条目数不符(crash风险)
- chore: 删除InfTest死函数、重复include、无用宏声明、EthRev_Sem等冗余代码
- chore: 更正中文标点(!→! ,→,)
2026-07-22 12:36:01 +08:00
YuanHongbin d08ca726df chore: 源码编码GB2312统一转换为UTF-8
25个含有中文注释的.c/.h文件编码格式从GB2312转为UTF-8(无BOM)。中文字符从2字节编码变为3字节编码,注释内容保持不变。
2026-07-20 14:27:37 +08:00
YuanHongbin 26e48126c8 fix: 修复9项致命/严重Bug
C1 protocol.c: frame_len>64校验防溢出 C3 DebugCmd: 5处argc空指针检查 C4 DebugCmd: Rs485Cmd->CommUnitCmd溢出 C5 main: Debug_Thread线程指针检查 C7 Public: 注册循环变量遮蔽修正 C8 spiflash: memcmp越界读修正 H1 RS485Task: 通道号布尔判断修正 H2 DebugCmd: 边界检查&&->||
2026-07-14 18:52:51 +08:00
30 changed files with 1769 additions and 1671 deletions
+43 -64
View File
@@ -135,7 +135,7 @@
<SetRegEntry> <SetRegEntry>
<Number>0</Number> <Number>0</Number>
<Key>JL2CM3</Key> <Key>JL2CM3</Key>
<Name>-U4294967295 -O78 -S4 -ZTIFSpeedSel2000 -A0 -C0 -JU1 -JI127.0.0.1 -JP0 -RST0 -N00("ARM CoreSight SW-DP") -D00(2BA01477) -L00(0) -TO18 -TC10000000 -TP21 -TDS8027 -TDT0 -TDC1F -TIEFFFFFFFF -TIP8 -TB1 -TFE0 -FO15 -FD1FFF8000 -FC1000 -FN2 -FF0HC32F460_otp.FLM -FS03000C00 -FL03FC -FP0($$Device:HC32F460KETA$FlashARM\HC32F460_otp.FLM) -FF1HC32F460_512K.FLM -FS10 -FL180000 -FP1($$Device:HC32F460KETA$FlashARM\HC32F460_512K.FLM)</Name> <Name>-U12345678 -O78 -S4 -ZTIFSpeedSel2000 -A0 -C0 -JU1 -JI127.0.0.1 -JP0 -RST0 -N00("ARM CoreSight SW-DP") -D00(2BA01477) -L00(0) -TO18 -TC10000000 -TP21 -TDS8027 -TDT0 -TDC1F -TIEFFFFFFFF -TIP8 -TB1 -TFE0 -FO15 -FD1FFF8000 -FC1000 -FN2 -FF0HC32F460_otp.FLM -FS03000C00 -FL03FC -FP0($$Device:HC32F460KETA$FlashARM\HC32F460_otp.FLM) -FF1HC32F460_512K.FLM -FS10 -FL180000 -FP1($$Device:HC32F460KETA$FlashARM\HC32F460_512K.FLM)</Name>
</SetRegEntry> </SetRegEntry>
<SetRegEntry> <SetRegEntry>
<Number>0</Number> <Number>0</Number>
@@ -250,7 +250,7 @@
<DebugFlag> <DebugFlag>
<trace>0</trace> <trace>0</trace>
<periodic>1</periodic> <periodic>1</periodic>
<aLwin>1</aLwin> <aLwin>0</aLwin>
<aCover>0</aCover> <aCover>0</aCover>
<aSer1>0</aSer1> <aSer1>0</aSer1>
<aSer2>0</aSer2> <aSer2>0</aSer2>
@@ -410,7 +410,7 @@
<SetRegEntry> <SetRegEntry>
<Number>0</Number> <Number>0</Number>
<Key>JL2CM3</Key> <Key>JL2CM3</Key>
<Name>-U4294967295 -O78 -S4 -ZTIFSpeedSel2000 -A0 -C0 -JU1 -JI127.0.0.1 -JP0 -RST0 -N00("ARM CoreSight SW-DP") -D00(2BA01477) -L00(0) -TO18 -TC10000000 -TP21 -TDS8027 -TDT0 -TDC1F -TIEFFFFFFFF -TIP8 -TB1 -TFE0 -FO14 -FD1FFF8000 -FC1000 -FN2 -FF0HC32F460_otp.FLM -FS03000C00 -FL03FC -FP0($$Device:HC32F460KETA$FlashARM\HC32F460_otp.FLM) -FF1HC32F460_512K.FLM -FS10 -FL180000 -FP1($$Device:HC32F460KETA$FlashARM\HC32F460_512K.FLM)</Name> <Name>-U12345678 -O78 -S4 -ZTIFSpeedSel2000 -A0 -C0 -JU1 -JI127.0.0.1 -JP0 -RST0 -N00("ARM CoreSight SW-DP") -D00(2BA01477) -L00(0) -TO18 -TC10000000 -TP21 -TDS8027 -TDT0 -TDC1F -TIEFFFFFFFF -TIP8 -TB1 -TFE0 -FO14 -FD1FFF8000 -FC1000 -FN2 -FF0HC32F460_otp.FLM -FS03000C00 -FL03FC -FP0($$Device:HC32F460KETA$FlashARM\HC32F460_otp.FLM) -FF1HC32F460_512K.FLM -FS10 -FL180000 -FP1($$Device:HC32F460KETA$FlashARM\HC32F460_512K.FLM)</Name>
</SetRegEntry> </SetRegEntry>
<SetRegEntry> <SetRegEntry>
<Number>0</Number> <Number>0</Number>
@@ -428,40 +428,7 @@
<Name></Name> <Name></Name>
</SetRegEntry> </SetRegEntry>
</TargetDriverDllRegistry> </TargetDriverDllRegistry>
<Breakpoint> <Breakpoint/>
<Bp>
<Number>0</Number>
<Type>0</Type>
<LineNumber>1004</LineNumber>
<EnabledFlag>1</EnabledFlag>
<Address>0</Address>
<ByteObject>0</ByteObject>
<HtxType>0</HtxType>
<ManyObjects>0</ManyObjects>
<SizeOfObject>0</SizeOfObject>
<BreakByAccess>0</BreakByAccess>
<BreakIfRCount>0</BreakIfRCount>
<Filename>..\source\User\Src\Public.c</Filename>
<ExecCommand></ExecCommand>
<Expression></Expression>
</Bp>
<Bp>
<Number>1</Number>
<Type>0</Type>
<LineNumber>1006</LineNumber>
<EnabledFlag>1</EnabledFlag>
<Address>0</Address>
<ByteObject>0</ByteObject>
<HtxType>0</HtxType>
<ManyObjects>0</ManyObjects>
<SizeOfObject>0</SizeOfObject>
<BreakByAccess>0</BreakByAccess>
<BreakIfRCount>0</BreakIfRCount>
<Filename>..\source\User\Src\Public.c</Filename>
<ExecCommand></ExecCommand>
<Expression></Expression>
</Bp>
</Breakpoint>
<WatchWindow1> <WatchWindow1>
<Ww> <Ww>
<count>0</count> <count>0</count>
@@ -513,7 +480,7 @@
<DebugFlag> <DebugFlag>
<trace>0</trace> <trace>0</trace>
<periodic>1</periodic> <periodic>1</periodic>
<aLwin>1</aLwin> <aLwin>0</aLwin>
<aCover>0</aCover> <aCover>0</aCover>
<aSer1>0</aSer1> <aSer1>0</aSer1>
<aSer2>0</aSer2> <aSer2>0</aSer2>
@@ -729,6 +696,18 @@
<RteFlg>0</RteFlg> <RteFlg>0</RteFlg>
<bShared>0</bShared> <bShared>0</bShared>
</File> </File>
<File>
<GroupNumber>2</GroupNumber>
<FileNumber>14</FileNumber>
<FileType>1</FileType>
<tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg>
<bDave2>0</bDave2>
<PathWithFileName>..\source\User\Src\EthTask.c</PathWithFileName>
<FilenameWithoutPath>EthTask.c</FilenameWithoutPath>
<RteFlg>0</RteFlg>
<bShared>0</bShared>
</File>
</Group> </Group>
<Group> <Group>
@@ -739,7 +718,7 @@
<RteFlg>0</RteFlg> <RteFlg>0</RteFlg>
<File> <File>
<GroupNumber>3</GroupNumber> <GroupNumber>3</GroupNumber>
<FileNumber>14</FileNumber> <FileNumber>15</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -751,7 +730,7 @@
</File> </File>
<File> <File>
<GroupNumber>3</GroupNumber> <GroupNumber>3</GroupNumber>
<FileNumber>15</FileNumber> <FileNumber>16</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -763,7 +742,7 @@
</File> </File>
<File> <File>
<GroupNumber>3</GroupNumber> <GroupNumber>3</GroupNumber>
<FileNumber>16</FileNumber> <FileNumber>17</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -775,7 +754,7 @@
</File> </File>
<File> <File>
<GroupNumber>3</GroupNumber> <GroupNumber>3</GroupNumber>
<FileNumber>17</FileNumber> <FileNumber>18</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -787,7 +766,7 @@
</File> </File>
<File> <File>
<GroupNumber>3</GroupNumber> <GroupNumber>3</GroupNumber>
<FileNumber>18</FileNumber> <FileNumber>19</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -799,7 +778,7 @@
</File> </File>
<File> <File>
<GroupNumber>3</GroupNumber> <GroupNumber>3</GroupNumber>
<FileNumber>19</FileNumber> <FileNumber>20</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -811,7 +790,7 @@
</File> </File>
<File> <File>
<GroupNumber>3</GroupNumber> <GroupNumber>3</GroupNumber>
<FileNumber>20</FileNumber> <FileNumber>21</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -823,7 +802,7 @@
</File> </File>
<File> <File>
<GroupNumber>3</GroupNumber> <GroupNumber>3</GroupNumber>
<FileNumber>21</FileNumber> <FileNumber>22</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -835,7 +814,7 @@
</File> </File>
<File> <File>
<GroupNumber>3</GroupNumber> <GroupNumber>3</GroupNumber>
<FileNumber>22</FileNumber> <FileNumber>23</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -847,7 +826,7 @@
</File> </File>
<File> <File>
<GroupNumber>3</GroupNumber> <GroupNumber>3</GroupNumber>
<FileNumber>23</FileNumber> <FileNumber>24</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -859,7 +838,7 @@
</File> </File>
<File> <File>
<GroupNumber>3</GroupNumber> <GroupNumber>3</GroupNumber>
<FileNumber>24</FileNumber> <FileNumber>25</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -871,7 +850,7 @@
</File> </File>
<File> <File>
<GroupNumber>3</GroupNumber> <GroupNumber>3</GroupNumber>
<FileNumber>25</FileNumber> <FileNumber>26</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -883,7 +862,7 @@
</File> </File>
<File> <File>
<GroupNumber>3</GroupNumber> <GroupNumber>3</GroupNumber>
<FileNumber>26</FileNumber> <FileNumber>27</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -895,7 +874,7 @@
</File> </File>
<File> <File>
<GroupNumber>3</GroupNumber> <GroupNumber>3</GroupNumber>
<FileNumber>27</FileNumber> <FileNumber>28</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -907,7 +886,7 @@
</File> </File>
<File> <File>
<GroupNumber>3</GroupNumber> <GroupNumber>3</GroupNumber>
<FileNumber>28</FileNumber> <FileNumber>29</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -919,7 +898,7 @@
</File> </File>
<File> <File>
<GroupNumber>3</GroupNumber> <GroupNumber>3</GroupNumber>
<FileNumber>29</FileNumber> <FileNumber>30</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -931,7 +910,7 @@
</File> </File>
<File> <File>
<GroupNumber>3</GroupNumber> <GroupNumber>3</GroupNumber>
<FileNumber>30</FileNumber> <FileNumber>31</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -951,7 +930,7 @@
<RteFlg>0</RteFlg> <RteFlg>0</RteFlg>
<File> <File>
<GroupNumber>4</GroupNumber> <GroupNumber>4</GroupNumber>
<FileNumber>31</FileNumber> <FileNumber>32</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -971,7 +950,7 @@
<RteFlg>0</RteFlg> <RteFlg>0</RteFlg>
<File> <File>
<GroupNumber>5</GroupNumber> <GroupNumber>5</GroupNumber>
<FileNumber>32</FileNumber> <FileNumber>33</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -983,7 +962,7 @@
</File> </File>
<File> <File>
<GroupNumber>5</GroupNumber> <GroupNumber>5</GroupNumber>
<FileNumber>33</FileNumber> <FileNumber>34</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -1003,7 +982,7 @@
<RteFlg>0</RteFlg> <RteFlg>0</RteFlg>
<File> <File>
<GroupNumber>6</GroupNumber> <GroupNumber>6</GroupNumber>
<FileNumber>34</FileNumber> <FileNumber>35</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -1015,7 +994,7 @@
</File> </File>
<File> <File>
<GroupNumber>6</GroupNumber> <GroupNumber>6</GroupNumber>
<FileNumber>35</FileNumber> <FileNumber>36</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -1027,7 +1006,7 @@
</File> </File>
<File> <File>
<GroupNumber>6</GroupNumber> <GroupNumber>6</GroupNumber>
<FileNumber>36</FileNumber> <FileNumber>37</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -1039,7 +1018,7 @@
</File> </File>
<File> <File>
<GroupNumber>6</GroupNumber> <GroupNumber>6</GroupNumber>
<FileNumber>37</FileNumber> <FileNumber>38</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -1059,7 +1038,7 @@
<RteFlg>0</RteFlg> <RteFlg>0</RteFlg>
<File> <File>
<GroupNumber>7</GroupNumber> <GroupNumber>7</GroupNumber>
<FileNumber>38</FileNumber> <FileNumber>39</FileNumber>
<FileType>1</FileType> <FileType>1</FileType>
<tvExp>0</tvExp> <tvExp>0</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
@@ -1089,7 +1068,7 @@
<Group> <Group>
<GroupName>::RTOS</GroupName> <GroupName>::RTOS</GroupName>
<tvExp>0</tvExp> <tvExp>1</tvExp>
<tvExpOptDlg>0</tvExpOptDlg> <tvExpOptDlg>0</tvExpOptDlg>
<cbSel>0</cbSel> <cbSel>0</cbSel>
<RteFlg>1</RteFlg> <RteFlg>1</RteFlg>
+10
View File
@@ -493,6 +493,11 @@
<FileType>1</FileType> <FileType>1</FileType>
<FilePath>..\source\User\Src\utils.c</FilePath> <FilePath>..\source\User\Src\utils.c</FilePath>
</File> </File>
<File>
<FileName>EthTask.c</FileName>
<FileType>1</FileType>
<FilePath>..\source\User\Src\EthTask.c</FilePath>
</File>
</Files> </Files>
</Group> </Group>
<Group> <Group>
@@ -1419,6 +1424,11 @@
<FileType>1</FileType> <FileType>1</FileType>
<FilePath>..\source\User\Src\utils.c</FilePath> <FilePath>..\source\User\Src\utils.c</FilePath>
</File> </File>
<File>
<FileName>EthTask.c</FileName>
<FileType>1</FileType>
<FilePath>..\source\User\Src\EthTask.c</FilePath>
</File>
</Files> </Files>
</Group> </Group>
<Group> <Group>
+14 -3
View File
@@ -11,6 +11,9 @@
#include <rthw.h> #include <rthw.h>
#include <rtthread.h> #include <rtthread.h>
#include "bsp.h" #include "bsp.h"
#include "main.h"
extern GateWayPara_t GateWay;
#if defined(RT_USING_USER_MAIN) && defined(RT_USING_HEAP) #if defined(RT_USING_USER_MAIN) && defined(RT_USING_HEAP)
/* /*
@@ -73,16 +76,24 @@ void rt_hw_board_init(void)
static int uart_init(void) static int uart_init(void)
{ {
//#error "TODO 2: Enable the hardware uart and config baudrate." //#error "TODO 2: Enable the hardware uart and config baudrate."
DbgUart_Config(500000); DbgOrCat1Uart_Config(500000);
// RS485Ch1_Config(500000);
return 0; return 0;
} }
INIT_BOARD_EXPORT(uart_init); INIT_BOARD_EXPORT(uart_init);
void rt_hw_console_output(const char *str) void rt_hw_console_output(const char *str)
{ {
//#error "TODO 3: Output the string 'str' through the uart."
rt_enter_critical(); rt_enter_critical();
DebugUartSend((uint8_t *)str, strlen(str)); if(GateWay.ConfigPara.DebugChannel == DEBUG_CH_RS485_1) {
RS485Ch1UartSend((uint8_t *)str, strlen(str));
}
else if(GateWay.ConfigPara.DebugChannel == DEBUG_CH_RS485_2) {
RS485Ch2UartSend((uint8_t *)str, strlen(str));
}
else {
DebugOrCat1UartSend((uint8_t *)str, strlen(str));
}
rt_exit_critical(); rt_exit_critical();
} }
@@ -1,6 +1,7 @@
#include "main.h" #include "main.h"
#include "bsp.h" #include "bsp.h"
#include "CatOneTask.h" #include "CatOneTask.h"
#include "EthTask.h"
#include "RS485Task.h" #include "RS485Task.h"
#include "Public.h" #include "Public.h"
#include <stdlib.h> #include <stdlib.h>
@@ -9,7 +10,7 @@
#define DBG_RX_LEN_MAX 128 #define DBG_RX_LEN_MAX 128
//#define DBG_LOG(...) rt_kprintf(__VA_ARGS__) //#define DBG_LOG(...) rt_kprintf(__VA_ARGS__)
#define DEBUG_CMD_CNT 31 #define DEBUG_CMD_CNT 29
#define DEBUG_BUFF_SIZE_MAX 512 #define DEBUG_BUFF_SIZE_MAX 512
#define DEBUG_BUFSIZE 200 #define DEBUG_BUFSIZE 200
@@ -52,10 +53,10 @@ void vcom_Print(uint8_t sLen)
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: Debug_Printf * 函数名称: Debug_Printf
* 功能描述: RS485通道1任务函数 * 功能描述: RS485通道1任务函数
* 参 数: 任务参数入口 * 参 数: 任务参数入口
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void Debug_Printf(char *format, ...) void Debug_Printf(char *format, ...)
{ {
@@ -92,10 +93,10 @@ void Debug_Printf(char *format, ...)
va_end(args); va_end(args);
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: RS485Ch2_Thread_Entry * 函数名称: RS485Ch2_Thread_Entry
* 功能描述: RS485通道1任务函数 * 功能描述: RS485通道1任务函数
* 参 数: 任务参数入口 * 参 数: 任务参数入口
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void Debug_Thread_Entry(void *parameter) void Debug_Thread_Entry(void *parameter)
{ {
@@ -106,7 +107,7 @@ void Debug_Thread_Entry(void *parameter)
if(DebugRev_Sem == RT_NULL) { if(DebugRev_Sem == RT_NULL) {
rt_kprintf("DebugRev Sem Create Failed!\r\n"); rt_kprintf("DebugRev Sem Create Failed!\r\n");
} }
rt_kprintf("DebugRev Thread is running\r\n"); rt_kprintf("DebugRev Thread is running!\r\n");
while(1) { while(1) {
result = rt_sem_take(DebugRev_Sem, RT_WAITING_FOREVER); result = rt_sem_take(DebugRev_Sem, RT_WAITING_FOREVER);
@@ -119,13 +120,18 @@ void Debug_Thread_Entry(void *parameter)
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: RS485Ch2RxIrqCallback * 函数名称: DbgOrCat1RxIrqCallback
* 功能描述: RS485通道1中断处理回调函数 * 功能描述: 调试和Cat1中断处理回调函数
* 参 数: rData 接收到的数据 * 参 数: rData 接收到的数据
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void DbgRxIrqCallback(uint8_t rData) void DbgOrCat1RxIrqCallback(uint8_t rData)
{ {
if(GateWay->ConfigPara.Comm == CATONE_COMM) {
Cat1IrqCallback(rData);
return;
}
if(DebugRxTimeOut1mSCnt == 0) if(DebugRxTimeOut1mSCnt == 0)
DebugRxLen = 0; DebugRxLen = 0;
@@ -136,8 +142,13 @@ void DbgRxIrqCallback(uint8_t rData)
} }
void DebugRxOverhandler(void) void DebugOrCat1RxOverhandler(void)
{ {
if(GateWay->ConfigPara.Comm == CATONE_COMM) {
Cat1OverHandler();
return;
}
if(DebugRxTimeOut1mSCnt > 0) if(DebugRxTimeOut1mSCnt > 0)
DebugRxTimeOut1mSCnt--; DebugRxTimeOut1mSCnt--;
@@ -148,12 +159,12 @@ void DebugRxOverhandler(void)
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugAnalyze * 函数名称: DebugAnalyze
* 功能描述: 调试指令解析 * 功能描述: 调试指令解析
* 参 数: GateWay, 网关参数句柄 * 参 数: GateWay, 网关参数句柄
rData,输入数据 rData,输入数据
rLen, 输入数据长度 rLen, 输入数据长度
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void DebugAnalyze(GateWayPara GateWay, uint8_t *rData, uint16_t rLen) void DebugAnalyze(GateWayPara GateWay, uint8_t *rData, uint16_t rLen)
{ {
@@ -186,17 +197,17 @@ void DebugAnalyze(GateWayPara GateWay, uint8_t *rData, uint16_t rLen)
for(int i = 0; i < DEBUG_CMD_CNT; i++) { for(int i = 0; i < DEBUG_CMD_CNT; i++) {
if(strcmp(argv[0], DebugFun[i].DBGCmd) == 0) { if(strcmp(argv[0], DebugFun[i].DBGCmd) == 0) {
DebugFun[i].DBGExec(argc, argv); DebugFun[i].DBGExec(argc, argv);
break; // 添加break避免继续匹配 break; // 添加break避免继续匹配
} }
} }
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdMainOnOff * 函数名称: DebugCmdMainOnOff
* 功能描述: 主调试信息开关 * 功能描述: 主调试信息开关
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void DebugCmdMainOnOff(int argc, char *argv[]) void DebugCmdMainOnOff(int argc, char *argv[])
{ {
@@ -220,11 +231,11 @@ void DebugCmdMainOnOff(int argc, char *argv[])
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdCat1OnOff * 函数名称: DebugCmdCat1OnOff
* 功能描述: CAT1调试信息开关 * 功能描述: CAT1调试信息开关
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void DebugCmdCat1OnOff(int argc, char *argv[]) void DebugCmdCat1OnOff(int argc, char *argv[])
{ {
@@ -247,12 +258,33 @@ void DebugCmdCat1OnOff(int argc, char *argv[])
} }
} }
void DebugCmdEthOnOff(int argc, char *argv[])
{
DBG_LOG("\r\n");
if(argc < 2)
return;
if(strcmp(argv[1], "?") == 0) {
DBG_LOG("Debug Cmd: eth arg1\r\n");
DBG_LOG(" brief --> Turn the Eth_DBG on or off.\r\n");
DBG_LOG(" arg1 --> on/off\r\n\r\n");
return;
}
if(strcmp(argv[1], "on") == 0) {
ETHOnOff(true);
}
else if(strcmp(argv[1], "off") == 0) {
ETHOnOff(false);
}
}
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdCat1OnOff * 函数名称: DebugCmdCat1OnOff
* 功能描述: CAT1调试信息开关 * 功能描述: CAT1调试信息开关
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void DebugCmdRS485Ctrl(int argc, char *argv[]) void DebugCmdRS485Ctrl(int argc, char *argv[])
{ {
@@ -408,11 +440,11 @@ void DebugCmdRS485Ctrl(int argc, char *argv[])
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdDelCommUnit * 函数名称: DebugCmdDelCommUnit
* 功能描述: 删除已注册的通讯单元 * 功能描述: 删除已注册的通讯单元
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void DebugCmdDelCommUnit(int argc, char *argv[]) void DebugCmdDelCommUnit(int argc, char *argv[])
{ {
@@ -459,11 +491,11 @@ void DebugCmdDelCommUnit(int argc, char *argv[])
WritePara((uint8_t *)&GateWay->ConfigPara, sizeof(GWConfigPara_t)); WritePara((uint8_t *)&GateWay->ConfigPara, sizeof(GWConfigPara_t));
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdLsCommUnit * 函数名称: DebugCmdLsCommUnit
* 功能描述: 查看通讯单元信息 * 功能描述: 查看通讯单元信息
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void DebugCmdLsCommUnit(int argc, char *argv[]) void DebugCmdLsCommUnit(int argc, char *argv[])
{ {
@@ -525,11 +557,11 @@ void DebugCmdLsCommUnit(int argc, char *argv[])
} }
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdExclCommUnit * 函数名称: DebugCmdExclCommUnit
* 功能描述: 排除指定的通讯单元MAC * 功能描述: 排除指定的通讯单元MAC
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void DebugCmdExclCommUnit(int argc, char *argv[]) void DebugCmdExclCommUnit(int argc, char *argv[])
{ {
@@ -560,7 +592,7 @@ void DebugCmdExclCommUnit(int argc, char *argv[])
return; return;
} }
for(int i = 0; i < COMMUNIT_NUM_MAX; i++) {//寻找空位 for(int i = 0; i < COMMUNIT_NUM_MAX; i++) {//寻找空位
if(GateWay->ConfigPara.ExclCommUnit[i].ExclFlag == false){ if(GateWay->ConfigPara.ExclCommUnit[i].ExclFlag == false){
GateWay->ConfigPara.ExclCommUnit[i].ExclFlag = true; GateWay->ConfigPara.ExclCommUnit[i].ExclFlag = true;
memcpy(&GateWay->ConfigPara.ExclCommUnit[i].ExclMac, &mac[0], 6); memcpy(&GateWay->ConfigPara.ExclCommUnit[i].ExclMac, &mac[0], 6);
@@ -568,7 +600,7 @@ void DebugCmdExclCommUnit(int argc, char *argv[])
} }
} }
ret = CheckCommUnitReg(GateWay, mac);//删除注册信息 ret = CheckCommUnitReg(GateWay, mac);//删除注册信息
if(ret > -1) { if(ret > -1) {
GateWay->ConfigPara.CommUnitArray[ret].RegFlag = false; GateWay->ConfigPara.CommUnitArray[ret].RegFlag = false;
} }
@@ -577,11 +609,11 @@ void DebugCmdExclCommUnit(int argc, char *argv[])
WritePara((uint8_t *)&GateWay->ConfigPara, sizeof(GWConfigPara_t)); WritePara((uint8_t *)&GateWay->ConfigPara, sizeof(GWConfigPara_t));
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdDelExclCommUnit * 函数名称: DebugCmdDelExclCommUnit
* 功能描述: 删除指定的被排除的通信单元MAC * 功能描述: 删除指定的被排除的通信单元MAC
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void DebugCmdDelExclCommUnit(int argc, char *argv[]) void DebugCmdDelExclCommUnit(int argc, char *argv[])
{ {
@@ -628,11 +660,11 @@ void DebugCmdDelExclCommUnit(int argc, char *argv[])
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdLsExclCommUnit * 函数名称: DebugCmdLsExclCommUnit
* 功能描述: 查看被排除的通讯单元信息 * 功能描述: 查看被排除的通讯单元信息
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void DebugCmdLsExclCommUnit(int argc, char *argv[]) void DebugCmdLsExclCommUnit(int argc, char *argv[])
{ {
@@ -662,11 +694,11 @@ void DebugCmdLsExclCommUnit(int argc, char *argv[])
DBG_LOG("\r\n\r\n"); DBG_LOG("\r\n\r\n");
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdSetComm * 函数名称: DebugCmdSetComm
* 功能描述: 设置网关与服务通讯方式 * 功能描述: 设置网关与服务通讯方式
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void DebugCmdSetComm(int argc, char *argv[]) void DebugCmdSetComm(int argc, char *argv[])
{ {
@@ -682,9 +714,15 @@ void DebugCmdSetComm(int argc, char *argv[])
} }
if(strcmp(argv[1], "cat1") == 0) { if(strcmp(argv[1], "cat1") == 0) {
if(GateWay->ConfigPara.DebugChannel == DEBUG_CH_DBG) {
DBG_LOG("dch is dbg, USART1 occupied. Please switch dch to ch1/ch2 first.\r\n");
return;
}
GateWay->SvrRegFlag = false; GateWay->SvrRegFlag = false;
GateWay->ConfigPara.Comm = CATONE_COMM; GateWay->ConfigPara.Comm = CATONE_COMM;
ETHStop(); ETHStop();
ETH_OFF();
DbgOrCat1Uart_Config(115200);
CAT1_ON(); CAT1_ON();
CatOneReset(); CatOneReset();
DBG_LOG("Set the communication method to Cat1.\r\n"); DBG_LOG("Set the communication method to Cat1.\r\n");
@@ -697,9 +735,11 @@ void DebugCmdSetComm(int argc, char *argv[])
CatOneStop(); CatOneStop();
rt_thread_delay(3000); rt_thread_delay(3000);
CAT1_PWR_KEY_SET(); CAT1_PWR_KEY_SET();
DBG_ON();
} }
GateWay->SvrRegFlag = false; GateWay->SvrRegFlag = false;
GateWay->ConfigPara.Comm = ETH_COMM; GateWay->ConfigPara.Comm = ETH_COMM;
DbgOrCat1Uart_Config(500000);
ETH_ON(); ETH_ON();
ETHReset(); ETHReset();
WritePara((uint8_t *)&GateWay->ConfigPara, sizeof(GWConfigPara_t)); WritePara((uint8_t *)&GateWay->ConfigPara, sizeof(GWConfigPara_t));
@@ -707,41 +747,11 @@ void DebugCmdSetComm(int argc, char *argv[])
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdSetCollTime * 函数名称: DebugCmdReadHisData
* 功能描述: 设置数据采集间隔 * 功能描述: 读取历史数据
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/
void DebugCmdSetCollTime(int argc, char *argv[])
{
DBG_LOG("\r\n");
if(argc < 2)
return;
if(strcmp(argv[1], "?") == 0) {
DBG_LOG("Debug Cmd: sct para\r\n");
DBG_LOG(" brief --> Set the data collection interval.\r\n");
DBG_LOG(" arg1 --> para: (10~3600),Set the range from 10 to 3600 seconds.\r\n\r\n");
return;
}
int time = atoi(argv[1]);
if(time < 10 && time > 7200) {
DBG_LOG("RS485 Cmd Para Error!\r\n");
return;
}
GateWay->ConfigPara.CommUnitReadInterval = time;
DBG_LOG("Set the collection time interval to %d seconds.\r\n", time);
WritePara((uint8_t *)&GateWay->ConfigPara, sizeof(GWConfigPara_t));
}
/*****************************************************************************************
* 函数名称: DebugCmdReadHisData
* 功能描述: 读取历史数据
* 参 数: argc, 输入参数数量
argv, 输入参数
* 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void DebugCmdReadHisData(int argc, char *argv[]) void DebugCmdReadHisData(int argc, char *argv[])
{ {
@@ -816,11 +826,11 @@ void DebugCmdReadHisData(int argc, char *argv[])
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdDelHisData * 函数名称: DebugCmdDelHisData
* 功能描述: 删除历史数据 * 功能描述: 删除历史数据
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void DebugCmdDelHisData(int argc, char *argv[]) void DebugCmdDelHisData(int argc, char *argv[])
{ {
@@ -836,11 +846,11 @@ void DebugCmdDelHisData(int argc, char *argv[])
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdGetHisInfo * 函数名称: DebugCmdGetHisInfo
* 功能描述: 获取历史数据信息 * 功能描述: 获取历史数据信息
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void DebugCmdGetHisInfo(int argc, char *argv[]) void DebugCmdGetHisInfo(int argc, char *argv[])
{ {
@@ -877,11 +887,11 @@ void DebugCmdGetHisInfo(int argc, char *argv[])
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdRestoreFactory * 函数名称: DebugCmdRestoreFactory
* 功能描述: 恢复出厂设置 * 功能描述: 恢复出厂设置
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void DebugCmdRestoreFactory(int argc, char *argv[]) void DebugCmdRestoreFactory(int argc, char *argv[])
{ {
@@ -907,11 +917,11 @@ void DebugCmdRestoreFactory(int argc, char *argv[])
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdUpload * 函数名称: DebugCmdUpload
* 功能描述: 上传当前网关状态 * 功能描述: 上传当前网关状态
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
static void DebugCmdUpload(int argc, char *argv[]) static void DebugCmdUpload(int argc, char *argv[])
{ {
@@ -946,11 +956,11 @@ static void DebugCmdUpload(int argc, char *argv[])
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdRegister * 函数名称: DebugCmdRegister
* 功能描述: 重新向上位机发起注册 * 功能描述: 重新向上位机发起注册
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
static void DebugCmdRegister(int argc, char *argv[]) static void DebugCmdRegister(int argc, char *argv[])
{ {
@@ -977,11 +987,11 @@ static void DebugCmdRegister(int argc, char *argv[])
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdRestoreFactory * 函数名称: DebugCmdRestoreFactory
* 功能描述: 恢复出厂设置 * 功能描述: 恢复出厂设置
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void DebugCmdReboot(int argc, char *argv[]) void DebugCmdReboot(int argc, char *argv[])
{ {
@@ -999,11 +1009,11 @@ void DebugCmdReboot(int argc, char *argv[])
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdSetSensorCollectTime * 函数名称: DebugCmdSetSensorCollectTime
* 功能描述: 设置采集时间 * 功能描述: 设置采集时间
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void DebugCmdSetCollectTime(int argc, char *argv[]) void DebugCmdSetCollectTime(int argc, char *argv[])
{ {
@@ -1024,7 +1034,7 @@ void DebugCmdSetCollectTime(int argc, char *argv[])
int IntervalTime = atoi(argv[2]); int IntervalTime = atoi(argv[2]);
if(IntervalTime < 10 && IntervalTime > 7200) { if(IntervalTime < 10 || IntervalTime > 7200) {
DBG_LOG("SCT Cmd Para Error!\r\n"); DBG_LOG("SCT Cmd Para Error!\r\n");
return; return;
} }
@@ -1065,11 +1075,11 @@ void DebugCmdSetCollectTime(int argc, char *argv[])
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdTimeSync * 函数名称: DebugCmdTimeSync
* 功能描述: 时间同步 * 功能描述: 时间同步
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void DebugCmdTimeSync(int argc, char *argv[]) void DebugCmdTimeSync(int argc, char *argv[])
{ {
@@ -1107,11 +1117,11 @@ void DebugCmdTimeSync(int argc, char *argv[])
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdTimeSync * 函数名称: DebugCmdTimeSync
* 功能描述: 查询内置通讯单元传感器 * 功能描述: 查询内置通讯单元传感器
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
extern SensorCommPara_t SComm1Para; extern SensorCommPara_t SComm1Para;
extern SensorCommPara_t SComm2Para; extern SensorCommPara_t SComm2Para;
@@ -1142,11 +1152,11 @@ void DebugCmdQuerySensor(int argc, char *argv[])
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdSelDebugChannel * 函数名称: DebugCmdSelDebugChannel
* 功能描述: 选择调试信息输出通道, * 功能描述: 选择调试信息输出通道,
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void DebugCmdSelDebugChannel(int argc, char *argv[]) void DebugCmdSelDebugChannel(int argc, char *argv[])
{ {
@@ -1166,7 +1176,12 @@ void DebugCmdSelDebugChannel(int argc, char *argv[])
} }
if(strcmp(argv[1], "dbg") == 0) { if(strcmp(argv[1], "dbg") == 0) {
if(GateWay->ConfigPara.Comm == CATONE_COMM) {
DBG_LOG("comm is cat1, USART1 occupied. Please switch comm to eth first.\r\n");
return;
}
DBG_LOG("Select Debug Channel is dbg\r\n"); DBG_LOG("Select Debug Channel is dbg\r\n");
DbgOrCat1Uart_Config(500000);
GateWay->ConfigPara.DebugChannel = DEBUG_CH_DBG; GateWay->ConfigPara.DebugChannel = DEBUG_CH_DBG;
WritePara((uint8_t *)&GateWay->ConfigPara, sizeof(GWConfigPara_t)); WritePara((uint8_t *)&GateWay->ConfigPara, sizeof(GWConfigPara_t));
} }
@@ -1198,11 +1213,11 @@ void DebugCmdSelDebugChannel(int argc, char *argv[])
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdSetLTENet * 函数名称: DebugCmdSetLTENet
* 功能描述: 设置Cat1/4G服务器的地址和端口 * 功能描述: 设置Cat1/4G服务器的地址和端口
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
static void DebugCmdSetLTENet(int argc, char *argv[]) static void DebugCmdSetLTENet(int argc, char *argv[])
{ {
@@ -1249,11 +1264,11 @@ static void DebugCmdSetLTENet(int argc, char *argv[])
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdSetMac * 函数名称: DebugCmdSetMac
* 功能描述: 设置MAC地址 * 功能描述: 设置MAC地址
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
static void DebugCmdSetMac(int argc, char *argv[]) static void DebugCmdSetMac(int argc, char *argv[])
{ {
@@ -1291,11 +1306,11 @@ static void DebugCmdSetMac(int argc, char *argv[])
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdGetPara * 函数名称: DebugCmdGetPara
* 功能描述: 查看参数 * 功能描述: 查看参数
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
static void DebugCmdGetPara(int argc, char *argv[]) static void DebugCmdGetPara(int argc, char *argv[])
{ {
@@ -1366,11 +1381,11 @@ static void DebugCmdGetPara(int argc, char *argv[])
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdCali * 函数名称: DebugCmdCali
* 功能描述: 校准传感器 * 功能描述: 校准传感器
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
static void DebugCmdCali(int argc, char *argv[]) static void DebugCmdCali(int argc, char *argv[])
{ {
@@ -1423,12 +1438,12 @@ static void DebugCmdCali(int argc, char *argv[])
} }
} }
for(int i = 0; i < COMMUNIT_NUM_MAX; i++)//参数遍历 for(int i = 0; i < COMMUNIT_NUM_MAX; i++)//参数遍历
{ {
if(GateWay->ConfigPara.CommUnitArray[i].RegFlag == true) if(GateWay->ConfigPara.CommUnitArray[i].RegFlag == true)
GateWay->ConfigPara.CommUnitArray[i].CailFlag = true;//校准置位,等待下次此MAC主设备上传数据时下发校准指令(低功耗) GateWay->ConfigPara.CommUnitArray[i].CailFlag = true;//校准置位,等待下次此MAC主设备上传数据时下发校准指令(低功耗)
} }
//Sx1276LoRaSendBuffer(CommUnitCmd, sizeof(CommUnitFrameHeader_t) + 2);//低功耗模式下不用下发 //Sx1276LoRaSendBuffer(CommUnitCmd, sizeof(CommUnitFrameHeader_t) + 2);//低功耗模式下不用下发
DBG_LOG("Calibrate all communication units.\r\n"); DBG_LOG("Calibrate all communication units.\r\n");
return; return;
@@ -1471,14 +1486,14 @@ static void DebugCmdCali(int argc, char *argv[])
CommUnitCmd[sizeof(CommUnitFrameHeader_t)] = crc16 & 0x00ff; CommUnitCmd[sizeof(CommUnitFrameHeader_t)] = crc16 & 0x00ff;
CommUnitCmd[sizeof(CommUnitFrameHeader_t) + 1] = (crc16 >> 8) & 0x00ff; CommUnitCmd[sizeof(CommUnitFrameHeader_t) + 1] = (crc16 >> 8) & 0x00ff;
if(mac[2] == 0x01) { //LORA通讯 if(mac[2] == 0x01) { //LORA通讯
if(GateWay->ConfigPara.CommUnitArray[ret].RegFlag == true) if(GateWay->ConfigPara.CommUnitArray[ret].RegFlag == true)
GateWay->ConfigPara.CommUnitArray[ret].CailFlag = true;//校准置位,等待下次此MAC主设备上传数据时下发校准指令(低功耗) GateWay->ConfigPara.CommUnitArray[ret].CailFlag = true;//校准置位,等待下次此MAC主设备上传数据时下发校准指令(低功耗)
DBG_LOG("Wait for the device to respond. Mac:%02X-%02X-%02X-%02X-%02X-%02X\r\n", DBG_LOG("Wait for the device to respond. Mac:%02X-%02X-%02X-%02X-%02X-%02X\r\n",
CUFrame->DevMac[0], CUFrame->DevMac[1], CUFrame->DevMac[2], CUFrame->DevMac[3], CUFrame->DevMac[4], CUFrame->DevMac[5]); CUFrame->DevMac[0], CUFrame->DevMac[1], CUFrame->DevMac[2], CUFrame->DevMac[3], CUFrame->DevMac[4], CUFrame->DevMac[5]);
//Sx1276LoRaSendBuffer(CommUnitCmd, sizeof(CommUnitFrameHeader_t) + 2); //Sx1276LoRaSendBuffer(CommUnitCmd, sizeof(CommUnitFrameHeader_t) + 2);
} }
else if(mac[2] == 0x02) { //RS485通讯 else if(mac[2] == 0x02) { //RS485通讯
if(GateWay->ConfigPara.Rs485Ch1.Enable == true && !GateWay->ConfigPara.Rs485Ch1.CommUnitEnable) { if(GateWay->ConfigPara.Rs485Ch1.Enable == true && !GateWay->ConfigPara.Rs485Ch1.CommUnitEnable) {
GateWay->ConfigPara.Rs485Ch1.RS485Send(Rs485Cmd, sizeof(CommUnitFrameHeader_t) + 2); GateWay->ConfigPara.Rs485Ch1.RS485Send(Rs485Cmd, sizeof(CommUnitFrameHeader_t) + 2);
DBG_LOG("Calibrate CommUnit: %s!\r\n", argv[1]); DBG_LOG("Calibrate CommUnit: %s!\r\n", argv[1]);
@@ -1493,11 +1508,11 @@ static void DebugCmdCali(int argc, char *argv[])
} }
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugLaserConfig * 函数名称: DebugLaserConfig
* 功能描述: 激光控制 * 功能描述: 激光控制
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
static void DebugLaserConfig(int argc, char *argv[]) static void DebugLaserConfig(int argc, char *argv[])
{ {
@@ -1588,12 +1603,12 @@ static void DebugLaserConfig(int argc, char *argv[])
CommUnitCmd[len++] = crc16 & 0x00ff; CommUnitCmd[len++] = crc16 & 0x00ff;
CommUnitCmd[len++] = (crc16 >> 8) & 0x00ff; CommUnitCmd[len++] = (crc16 >> 8) & 0x00ff;
if(mac[2] == 0x01) { //LORA通讯,低功耗模式不用主动下发 if(mac[2] == 0x01) { //LORA通讯,低功耗模式不用主动下发
if(GateWay->ConfigPara.CommUnitArray[ret].RegFlag == true) if(GateWay->ConfigPara.CommUnitArray[ret].RegFlag == true)
{ {
if(onoff == true) if(onoff == true)
{ {
GateWay->ConfigPara.CommUnitArray[ret].ContLaser = true;//控制置位,等待下次此MAC主设备上传数据时下发校准指令(低功耗) GateWay->ConfigPara.CommUnitArray[ret].ContLaser = true;//控制置位,等待下次此MAC主设备上传数据时下发校准指令(低功耗)
DBG_LOG("Wait for the device to respond. Mac:%02X-%02X-%02X-%02X-%02X-%02X\r\n", DBG_LOG("Wait for the device to respond. Mac:%02X-%02X-%02X-%02X-%02X-%02X\r\n",
CUFrame->DevMac[0], CUFrame->DevMac[1], CUFrame->DevMac[2], CUFrame->DevMac[3], CUFrame->DevMac[4], CUFrame->DevMac[5]); CUFrame->DevMac[0], CUFrame->DevMac[1], CUFrame->DevMac[2], CUFrame->DevMac[3], CUFrame->DevMac[4], CUFrame->DevMac[5]);
GateWay->ConfigPara.CommUnitArray[ret].LaserOnOff = onoff; GateWay->ConfigPara.CommUnitArray[ret].LaserOnOff = onoff;
@@ -1602,11 +1617,11 @@ static void DebugLaserConfig(int argc, char *argv[])
{ {
GateWay->ConfigPara.CommUnitArray[ret].ContLaser = false; GateWay->ConfigPara.CommUnitArray[ret].ContLaser = false;
GateWay->ConfigPara.CommUnitArray[ret].LaserOnOff = onoff; GateWay->ConfigPara.CommUnitArray[ret].LaserOnOff = onoff;
Sx1276LoRaSendBuffer(CommUnitCmd, len);//直接发 Sx1276LoRaSendBuffer(CommUnitCmd, len);//直接发
} }
} }
} }
else if(mac[2] == 0x02) { //RS485通讯 else if(mac[2] == 0x02) { //RS485通讯
if(GateWay->ConfigPara.Rs485Ch1.Enable == true && !GateWay->ConfigPara.Rs485Ch1.CommUnitEnable) { if(GateWay->ConfigPara.Rs485Ch1.Enable == true && !GateWay->ConfigPara.Rs485Ch1.CommUnitEnable) {
GateWay->ConfigPara.Rs485Ch1.RS485Send(Rs485Cmd, len); GateWay->ConfigPara.Rs485Ch1.RS485Send(Rs485Cmd, len);
DBG_LOG("Control RS485 laser CommUnit: %s!\r\n", argv[1]); DBG_LOG("Control RS485 laser CommUnit: %s!\r\n", argv[1]);
@@ -1622,19 +1637,19 @@ static void DebugLaserConfig(int argc, char *argv[])
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdLPConfig * 函数名称: DebugCmdLPConfig
* 功能描述: 低功耗参数配置 * 功能描述: 低功耗参数配置
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
static void DebugCmdLPConfig(int argc, char *argv[]) static void DebugCmdLPConfig(int argc, char *argv[])
{ {
DBG_LOG("\r\n"); DBG_LOG("\r\n");
uint16_t CollectInterval; //采集时间间隔 uint16_t CollectInterval; //采集时间间隔
uint16_t ReportInterval; //上报时间间隔 uint16_t ReportInterval; //上报时间间隔
uint8_t ERInterval; //紧急上报时间间隔 uint8_t ERInterval; //紧急上报时间间隔
uint8_t ERTime; //紧急上报时长 uint8_t ERTime; //紧急上报时长
if(strcmp(argv[1], "?") == 0) { if(strcmp(argv[1], "?") == 0) {
DBG_LOG("Debug Cmd: lpcfg arg1 arg2 arg3 arg4\r\n"); DBG_LOG("Debug Cmd: lpcfg arg1 arg2 arg3 arg4\r\n");
@@ -1688,11 +1703,11 @@ static void DebugCmdLPConfig(int argc, char *argv[])
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdLPConfig * 函数名称: DebugCmdLPConfig
* 功能描述: Lora参数配置 * 功能描述: Lora参数配置
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
static void DebugLoraConfig(int argc, char *argv[]) static void DebugLoraConfig(int argc, char *argv[])
{ {
@@ -1819,11 +1834,11 @@ static void DebugLoraConfig(int argc, char *argv[])
/***************************************************************************************** /*****************************************************************************************
* 函数名称: DebugCmdHelp * 函数名称: DebugCmdHelp
* 功能描述: 调试命令帮助信息 * 功能描述: 调试命令帮助信息
* 参 数: argc, 输入参数数量 * 参 数: argc, 输入参数数量
argv, 输入参数 argv, 输入参数
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void DebugCmdHelp(int argc, char *argv[]) void DebugCmdHelp(int argc, char *argv[])
{ {
@@ -1948,6 +1963,7 @@ const DBGFunType DebugFun[DEBUG_CMD_CNT] = {
"help", DebugCmdHelp, "help", DebugCmdHelp,
"main", DebugCmdMainOnOff, "main", DebugCmdMainOnOff,
"cat1", DebugCmdCat1OnOff, "cat1", DebugCmdCat1OnOff,
"eth", DebugCmdEthOnOff,
"rs485", DebugCmdRS485Ctrl, "rs485", DebugCmdRS485Ctrl,
"cudel", DebugCmdDelCommUnit, "cudel", DebugCmdDelCommUnit,
"culs", DebugCmdLsCommUnit, "culs", DebugCmdLsCommUnit,
@@ -2,6 +2,6 @@
#define __DEBUG_CMD_H #define __DEBUG_CMD_H
void Debug_Thread_Entry(void *parameter); void Debug_Thread_Entry(void *parameter);
void DebugRxOverhandler(void); void DebugOrCat1RxOverhandler(void);
void Debug_Printf(char *format, ...); void Debug_Printf(char *format, ...);
#endif #endif
@@ -102,7 +102,7 @@ typedef struct stc_sdmmc_resp_card_status
uint32_t ERASE_SEQ_ERR :1; ///< An error in the sequence of erase commands occurred. uint32_t ERASE_SEQ_ERR :1; ///< An error in the sequence of erase commands occurred.
uint32_t BLOCK_LEN_ERR :1; ///< The transferred block length is not allowed for this card, or the number of transferred bytes does not match the block length. uint32_t BLOCK_LEN_ERR :1; ///< The transferred block length is not allowed for this card, or the number of transferred bytes does not match the block length.
uint32_t ADDRESS_ERROR :1; ///< A misaligned address which did not match the block length was used in the command. uint32_t ADDRESS_ERROR :1; ///< A misaligned address which did not match the block length was used in the command.
uint32_t OUT_OF_RANGE :1; ///< The commands argument was out of the allowed range for this card. uint32_t OUT_OF_RANGE :1; ///< The command鈥檚 argument was out of the allowed range for this card.
} stc_sdmmc_resp_card_status_t; } stc_sdmmc_resp_card_status_t;
/******************************************************************************* /*******************************************************************************
@@ -314,7 +314,7 @@ void Sx1276LoRaInit(DataRevCallBack RxCallBack)
} }
else{ else{
SX1276LoRaSetNbTrigPeaks(3); SX1276LoRaSetNbTrigPeaks(3);
SX1276LoRaSetLowDatarateOptimize(false); //低数据速率设置 SX1276LoRaSetLowDatarateOptimize(false); //低数据速率设置
} }
LoRaPara.RegBuff.RegModemConfig2 = (LoRaPara.RegBuff.RegModemConfig2 & RFLR_MODEMCONFIG2_SF_MASK ) | LoRaPara.SpreadFactor; LoRaPara.RegBuff.RegModemConfig2 = (LoRaPara.RegBuff.RegModemConfig2 & RFLR_MODEMCONFIG2_SF_MASK ) | LoRaPara.SpreadFactor;
//PacketCrcOn //PacketCrcOn
@@ -463,8 +463,8 @@ void Sx1276LoRaWakeup(void)
} }
//////////////////////////////////////// ////////////////////////////////////////
//配置本层参数的函数 //配置本层参数的函数
//频道表 //频道表
const uint32_t gdwSx1276ChannelTbl[SX1276_CHANNEL_MAX]={ const uint32_t gdwSx1276ChannelTbl[SX1276_CHANNEL_MAX]={
FREQ_CENT-FREQ_DEV*8, FREQ_CENT-FREQ_DEV*7, FREQ_CENT-FREQ_DEV*6, FREQ_CENT-FREQ_DEV*5, FREQ_CENT-FREQ_DEV*8, FREQ_CENT-FREQ_DEV*7, FREQ_CENT-FREQ_DEV*6, FREQ_CENT-FREQ_DEV*5,
FREQ_CENT-FREQ_DEV*4, FREQ_CENT-FREQ_DEV*3, FREQ_CENT-FREQ_DEV*2, FREQ_CENT-FREQ_DEV*1, FREQ_CENT-FREQ_DEV*4, FREQ_CENT-FREQ_DEV*3, FREQ_CENT-FREQ_DEV*2, FREQ_CENT-FREQ_DEV*1,
@@ -638,7 +638,7 @@ typedef enum{
SX1276_IH_ON= (1) SX1276_IH_ON= (1)
}Sx1276ImplicitHeaderOnType; }Sx1276ImplicitHeaderOnType;
//可变速率 //可变速率
typedef struct _AutoSfType{ typedef struct _AutoSfType{
Sx1276SpreadFactorType Sf; Sx1276SpreadFactorType Sf;
uint8_t ucRssiMin, ucRssiMax; uint8_t ucRssiMin, ucRssiMax;
@@ -747,20 +747,20 @@ typedef struct {
//Down Link: //Down Link:
//CH0-47:500.3-509.7MHz //CH0-47:500.3-509.7MHz
#define USE_915MHZ 0//=1使用915 =0使用433 #define USE_915MHZ 0//=1使用915 =0使用433
#if (USE_915MHZ == 1) #if (USE_915MHZ == 1)
//中心频率,不定义则默认为449000000Hz //中心频率,不定义则默认为449000000Hz
#define FREQ_CENT 915000000ul #define FREQ_CENT 915000000ul
//860MHz-1GHz使用PA功放,不定义则默认不使用 //860MHz-1GHz使用PA功放,不定义则默认不使用
//SX127x不定义,HOPERF模块需要定义 //SX127x不定义,HOPERF模块需要定义
#define USE_LORA_860_PA #define USE_LORA_860_PA
#endif #endif
/* /*
中心频率配置:433100000ul + 200000*N 中心频率配置:433100000ul + 200000*N
*/ */
#define CH0 (433100000ul + 0) //测试频率 #define CH0 (433100000ul + 0) //测试频率
#define CH1 (433100000ul + 200000) #define CH1 (433100000ul + 200000)
#define CH2 (433100000ul + 400000) #define CH2 (433100000ul + 400000)
#define CH3 (433100000ul + 600000) #define CH3 (433100000ul + 600000)
+16 -56
View File
@@ -6,40 +6,23 @@
#define CAT_ONE_REV_TIMEOUT_MAX (10 * 60 * 1000) #define CAT_ONE_REV_TIMEOUT_MAX (10 * 60 * 1000)
#define CAT_ONE_REV_LEN_MAX 512 #define CAT_ONE_REV_LEN_MAX 512
#define CAT_ONE_POW_ON() CAT1_POW_ON()
#define CAT_ONE_POW_OFF() CAT1_POW_OFF()
#define CAT_ONE_LINKA_GET() CAT1_LINKA_GET()
#define CAT_ONE_LINKB_GET() CAT1_LINKB_GET()
#define CAT_ONE_DELAY_1MS(X)
// ETH状态机相关宏定义
#define ETH_RESET_DELAY_TIME_MAX (5 * 60 * 1000)
#define ETH_LINK_WAIT_TIME_MAX (10 * 1000)
#define ETH_REG_TIMEOUT_MAX (30 * 1000)
#define ETH_SEND_TIMEOUT_MAX (5 * 1000)
#define ETH_RECV_TIMEOUT_MAX (60 * 1000)
#define ETH_SEND_RETRY_MAX 3
#define ETH_FIRST_REG_DELAY (5 * 1000)
typedef enum { typedef enum {
CAT_ONE_AT_NULL, CAT_ONE_AT_NULL,
CAT_ONE_AT, //开机检测 CAT_ONE_AT, //开机检测
CAT_ONE_ATE0, //关回显 CAT_ONE_ATE0, //关回显
CAT_ONE_CPIN, //识卡 CAT_ONE_CPIN, //识卡
CAT_ONE_IMEI, CAT_ONE_IMEI,
CAT_ONE_LCCID, //读卡 CAT_ONE_LCCID, //读卡
CAT_ONE_CEREG, //查询注册状态 CAT_ONE_CEREG, //查询注册状态
CAT_ONE_CGPADDR, //查询IP地址 CAT_ONE_CGPADDR, //查询IP地址
CAT_ONE_CSQ, //查询信号强度 CAT_ONE_CSQ, //查询信号强度
CAT_ONE_LDNSGIP, //域名解析 CAT_ONE_LDNSGIP, //域名解析
CAT_ONE_LBS, //获取基站定位信息 CAT_ONE_LBS, //获取基站定位信息
CAT_ONE_LIPOPEN, //设置TCP服务器地址和端口 CAT_ONE_LIPOPEN, //设置TCP服务器地址和端口
CAT_ONE_LIPSEND, //发送数据 CAT_ONE_LIPSEND, //发送数据
CAT_ONE_LTPCLOSE, //断开连接 CAT_ONE_LTPCLOSE, //断开连接
CAT_ONE_LBSPARA, CAT_ONE_LBSPARA,
CAT_ONE_CCLK, //获取时间 CAT_ONE_CCLK, //获取时间
CAT_ONE_AT_CMD_END, CAT_ONE_AT_CMD_END,
}CatOneATCMD_m; }CatOneATCMD_m;
@@ -58,17 +41,6 @@ typedef enum {
CAT_ONE_CLOSE_TCP, CAT_ONE_CLOSE_TCP,
}CatOneStatus_m; }CatOneStatus_m;
typedef enum {
ETH_IDEL,
ETH_RESET,
ETH_WAIT_LINK,
ETH_REG_SVR,
ETH_WAIT_SEND,
ETH_SEND_DATA,
ETH_WAIT_RECV,
ETH_OFF,
}EthStatus_m;
typedef enum { typedef enum {
CAT_ONE_RET_NULL, CAT_ONE_RET_NULL,
CAT_ONE_RET_OK, CAT_ONE_RET_OK,
@@ -110,30 +82,18 @@ typedef struct {
GateWayPara GateWay; GateWayPara GateWay;
DataRevCallBack CatOneRevCallBack; DataRevCallBack CatOneRevCallBack;
// ETH状态机相关字段
EthStatus_m EthStatus;
uint32_t EthResetDelayCnt;
uint32_t EthLinkWaitCnt;
uint32_t EthRecvTimeoutCnt;
uint8_t EthSendRetryCnt;
bool EthFirstRegFlag;
}CatOne_t, *pCatOne_t; }CatOne_t, *pCatOne_t;
CatOneRetStatus_m CatOneSend(uint8_t *sData, uint16_t sLen);
void CatOneStart(void);
void CatOneStop(void); void CatOneStop(void);
void CatOneReset(void); void CatOneReset(void);
void ETHStop(void);
void ETHReset(void);
void Cat1DBGOnOff(bool OnOff); void Cat1DBGOnOff(bool OnOff);
void CatOneGetLocationInfo(int *Longitude, int *Latitude); void CatOneGetLocationInfo(int *Longitude, int *Latitude);
void CatOneGetIMEIAndSIM(char *Imei, char *Sim); void CatOneGetIMEIAndSIM(char *Imei, char *Sim);
bool CatOneGetStatus(void); bool CatOneGetStatus(void);
bool CatOneEthSendQueue(uint8_t *sData, uint16_t sLen); bool CatOneEthSendQueue(uint8_t *sData, uint16_t sLen);
void CatOneTriggerRegister(void); void CatOneTriggerRegister(void);
void ETHTriggerRegister(void); void CatOne_Thread_Entry(void *parameter);
void CatOne_Eth_Thread_Entry(void *parameter); void Cat1IrqCallback(uint8_t rData);
void EthRxOverhandler(void); void Cat1OverHandler(void);
void CatReadImeiOrSim(char *Imei, char *Sim); void CatReadImeiOrSim(char *Imei, char *Sim);
#endif #endif
+47
View File
@@ -0,0 +1,47 @@
#ifndef __ETH_TASK_H
#define __ETH_TASK_H
#include "main.h"
#include "Public.h"
#define ETH_RX_LEN_MAX 512
#define ETH_RESET_DELAY_TIME_MAX (5 * 60 * 1000)
#define ETH_LINK_WAIT_TIME_MAX (10 * 1000)
#define ETH_RECV_TIMEOUT_MAX (60 * 1000)
#define ETH_SEND_RETRY_MAX 3
#define ETH_FIRST_REG_DELAY (5 * 1000)
typedef enum {
ETH_IDEL,
ETH_RESET,
ETH_WAIT_LINK,
ETH_REG_SVR,
ETH_WAIT_SEND,
ETH_SEND_DATA,
ETH_WAIT_RECV,
ETH_OFF,
} EthStatus_m;
typedef struct {
EthStatus_m Status;
uint32_t ResetDelayCnt;
uint32_t LinkWaitCnt;
uint32_t RecvTimeoutCnt;
uint8_t SendRetryCnt;
bool FirstRegFlag;
GateWayPara GateWay;
uint8_t TxBuff[ETH_RX_LEN_MAX];
uint16_t TxLen;
uint8_t Payload[ETH_RX_LEN_MAX];
char SendASCII[ETH_RX_LEN_MAX * 2];
} EthTask_t;
void Eth_Thread_Entry(void *parameter);
void EthIrqCallbackHandler(uint8_t rData);
void EthOverHandler(void);
void ETHStop(void);
void ETHReset(void);
void ETHTriggerRegister(void);
#endif
+114 -114
View File
@@ -3,7 +3,7 @@
#include "bsp.h" #include "bsp.h"
#define LORA_LOWPOWER //LORA低功耗设备,采用主动上报方式 #define LORA_LOWPOWER //LORA低功耗设备,采用主动上报方式
#define SENSOR_DATA_LEN_MAX 50 #define SENSOR_DATA_LEN_MAX 50
#define SENSOR_NUM_MAX 16 #define SENSOR_NUM_MAX 16
@@ -12,8 +12,8 @@
#define REGISTER_INTERVAL_MAX (2 * 60) #define REGISTER_INTERVAL_MAX (2 * 60)
#define COMMUNIT_READ_SENSOR_INTERVAL_MAX (1 * 60) #define COMMUNIT_READ_SENSOR_INTERVAL_MAX (1 * 60)
#define LORA_ERR_RESET_DLY_MAX (10 * 60) //LORA接收超时复位延时,单位秒 #define LORA_ERR_RESET_DLY_MAX (10 * 60) //LORA接收超时复位延时,单位秒
#define CAT1_ERR_RESET_DLY_MAX (60 * 60) //CAT1接收超时复位延时,单位秒 #define CAT1_ERR_RESET_DLY_MAX (60 * 60) //CAT1接收超时复位延时,单位秒
typedef struct GateWay_t GateWayPara_t, *GateWayPara; typedef struct GateWay_t GateWayPara_t, *GateWayPara;
@@ -55,8 +55,8 @@ typedef enum {
COMM_UNIT_CMD_READ, COMM_UNIT_CMD_READ,
COMM_UNIT_CMD_SET_SENSOR_COLL_TIME = 5, COMM_UNIT_CMD_SET_SENSOR_COLL_TIME = 5,
COMM_UNIT_CMD_TIME_SYNC, COMM_UNIT_CMD_TIME_SYNC,
COMM_UNIT_CMD_CONT_LASER = 8,//激光独有指令 COMM_UNIT_CMD_CONT_LASER = 8,//激光独有指令
COMM_UNIT_CMD_GET_SIGNAL, //0x09 查询Lora信号质量 COMM_UNIT_CMD_GET_SIGNAL, //0x09 查询Lora信号质量
COMM_UNIT_CMD_END, COMM_UNIT_CMD_END,
}CommUnitCmd_m; }CommUnitCmd_m;
@@ -71,41 +71,41 @@ typedef enum {
NET_COMM_CMD_ADD_UNIT, NET_COMM_CMD_ADD_UNIT,
NET_COMM_CMD_LP_DEV_CONFIG, NET_COMM_CMD_LP_DEV_CONFIG,
NET_COMM_CMD_ALARM, NET_COMM_CMD_ALARM,
NET_COMM_CMD_CONT_LASER,//激光独有指令 NET_COMM_CMD_CONT_LASER,//激光独有指令
NET_COMM_CMD_END, NET_COMM_CMD_END,
}NetCommCmd_m; }NetCommCmd_m;
typedef enum { typedef enum {
SENSOR_TYPE_NULL, //0x0000 空设备 SENSOR_TYPE_NULL, //0x0000 空设备
FORCE_6D, //0x0001 六维应力 FORCE_6D, //0x0001 六维应力
OSMOTIC_PRESSURE, //0x0002 渗透压 OSMOTIC_PRESSURE, //0x0002 渗透压
ELASTIC_WAVEGUIDE, //0x0003 弹性波导 ELASTIC_WAVEGUIDE, //0x0003 弹性波导
DIELECTRIC_MASS, //0x0004 介电质普 DIELECTRIC_MASS, //0x0004 介电质普
VIBRATE_SENSOR, //0x0005 微振动传感器 VIBRATE_SENSOR, //0x0005 微振动传感器
CONT_DEFOR_3D, //0x0006 三维连续变形 CONT_DEFOR_3D, //0x0006 三维连续变形
COMM_UNIT, //0x0007 通讯单元 COMM_UNIT, //0x0007 通讯单元
FORCE_3D, //0x0008 三维应力 FORCE_3D, //0x0008 三维应力
LASER_TRACING, //0x0009 激光示踪 LASER_TRACING, //0x0009 激光示踪
WATER_LEVEL, //0x000A 水位计 WATER_LEVEL, //0x000A 水位计
_0x000B, //0x000B 保留 _0x000B, //0x000B 保留
_0x000C, //0x000C 保留 _0x000C, //0x000C 保留
MULTI_PARAMETER_FUSION, //0x000D 多参数融合 MULTI_PARAMETER_FUSION, //0x000D 多参数融合
CRACK_DETECTION, //0x000E 裂缝仪 CRACK_DETECTION, //0x000E 裂缝仪
_0x000F, //0x000F 保留 _0x000F, //0x000F 保留
ATTITUDE_MONITOR, //0x0010 姿态检测 ATTITUDE_MONITOR, //0x0010 姿态检测
LASER_DISPLACE, //0x0011 激光位移 LASER_DISPLACE, //0x0011 激光位移
REBAR_STRESS, //0x0012 钢筋应力 REBAR_STRESS, //0x0012 钢筋应力
ANCHOR_ROD_STRESS, //0x0013 锚杆轴力 ANCHOR_ROD_STRESS, //0x0013 锚杆轴力
SURFACE_STRESS, //0x0014 表面应力 SURFACE_STRESS, //0x0014 表面应力
PRESSURE, //0x0015 压力 PRESSURE, //0x0015 压力
MICROWAVE_DISPLACE, //0x0016 微波位移 MICROWAVE_DISPLACE, //0x0016 微波位移
DISPLACEMENT = 0x0020, //0x0020 位移监测传感器 DISPLACEMENT = 0x0020, //0x0020 位移监测传感器
}SensorType_m; }SensorType_m;
typedef struct {//主设备固定包头 typedef struct {//主设备固定包头
uint8_t BatLevel; //电池电量 uint8_t BatLevel; //电池电量
int8_t RSSI; //信号强度 int8_t RSSI; //信号强度
int8_t Nsr; //信噪比 int8_t Nsr; //信噪比
}__attribute__ ((packed))MasterDev_T,*MasterDevDp; }__attribute__ ((packed))MasterDev_T,*MasterDevDp;
typedef struct { typedef struct {
@@ -122,19 +122,19 @@ typedef struct {
typedef struct { typedef struct {
MasterDev_T MasterDev; MasterDev_T MasterDev;
int16_t PitchAngle; //俯仰角偏斜 (范围±900)单位0.1° int16_t PitchAngle; //俯仰角偏斜 (范围±900)单位0.1°
int16_t RollAngle; //横滚角偏斜 (范围±900)单位0.1° int16_t RollAngle; //横滚角偏斜 (范围±900)单位0.1°
int16_t YawAngle; //偏航角偏斜 (范围0~3600)单位0.1° int16_t YawAngle; //偏航角偏斜 (范围0~3600)单位0.1°
}__attribute__((packed))LaserTracingType_T; }__attribute__((packed))LaserTracingType_T;
typedef struct {//0x0020 位移计 typedef struct {//0x0020 位移计
MasterDev_T MasterDev; MasterDev_T MasterDev;
int16_t PitchAngle; //俯仰角偏斜(范围±900)单位0.1° int16_t PitchAngle; //俯仰角偏斜(范围±900)单位0.1°
int16_t RollAngle; //横滚角偏斜(范围±900)单位0.1° int16_t RollAngle; //横滚角偏斜(范围±900)单位0.1°
int16_t YawAngle; //偏航角偏斜(范围0~3600)单位0.1° int16_t YawAngle; //偏航角偏斜(范围0~3600)单位0.1°
float Temp; //温度 float Temp; //温度
float Altitude; //海拔()单位cm float Altitude; //海拔()单位cm
int16_t Distance; //1轴应力值转位移(范围±300,单位0.1mm) int16_t Distance; //1轴应力值转位移(范围±300,单位0.1mm)
}__attribute__ ((packed))Displacement_T,*DisplacementDp; }__attribute__ ((packed))Displacement_T,*DisplacementDp;
typedef struct { typedef struct {
@@ -142,11 +142,11 @@ typedef struct {
}__attribute__((packed))LaserDistanceSensorType_t; }__attribute__((packed))LaserDistanceSensorType_t;
typedef struct { typedef struct {
uint8_t CommDevAddr[6]; //通讯单元地址 uint8_t CommDevAddr[6]; //通讯单元地址
uint16_t CollectInterval; //采集时间间隔 uint16_t CollectInterval; //采集时间间隔
uint16_t ReportInterval; //上报时间间隔 uint16_t ReportInterval; //上报时间间隔
uint8_t ERInterval; //紧急上报时间间隔 uint8_t ERInterval; //紧急上报时间间隔
uint8_t ERTime; //紧急上报时长 uint8_t ERTime; //紧急上报时长
}__attribute__((packed))SvrDownLPDevConfigPara_t; }__attribute__((packed))SvrDownLPDevConfigPara_t;
typedef struct { typedef struct {
@@ -155,47 +155,47 @@ typedef struct {
uint8_t AlarmPara; uint8_t AlarmPara;
}__attribute__((packed))GateWayAlarmType_t; }__attribute__((packed))GateWayAlarmType_t;
#define LW_DEV_COLLECT_INTERVAL_MAX 300//默认300秒 #define LW_DEV_COLLECT_INTERVAL_MAX 300//默认300秒
#define LW_DEV_REPORT_INTERVAL_MAX 20//20分钟 #define LW_DEV_REPORT_INTERVAL_MAX 20//20分钟
#define LW_DEV_ER_INTERVAL_MAX 2//2分钟 #define LW_DEV_ER_INTERVAL_MAX 2//2分钟
#define LW_DEV_ER_TIME_MAX 20//20分钟 #define LW_DEV_ER_TIME_MAX 20//20分钟
typedef struct { typedef struct {
uint16_t CollectInterval; //采集时间间隔 uint16_t CollectInterval; //采集时间间隔
uint16_t ReportInterval; //上报时间间隔 uint16_t ReportInterval; //上报时间间隔
uint8_t ERInterval; //紧急上报时间间隔 uint8_t ERInterval; //紧急上报时间间隔
uint8_t ERTime; //紧急上报时长 uint8_t ERTime; //紧急上报时长
uint32_t TimeStamp; //时间戳 uint32_t TimeStamp; //时间戳
}__attribute__((packed))LPDevConfigPara_t; }__attribute__((packed))LPDevConfigPara_t;
typedef struct { typedef struct {
bool RegFlag; bool RegFlag;
bool RevNewDataFlag; bool RevNewDataFlag;
bool CommStatus; //通讯状态,1-在线,0-离线 bool CommStatus; //通讯状态,1-在线,0-离线
bool CailFlag; //校准标志(低功耗) bool CailFlag; //校准标志(低功耗)
bool TimeSyncFlag; //时间同步标志(低功耗) bool TimeSyncFlag; //时间同步标志(低功耗)
bool ContLaser; //激光控制标志(低功耗) bool ContLaser; //激光控制标志(低功耗)
bool LaserOnOff; //激光状态(低功耗) bool LaserOnOff; //激光状态(低功耗)
uint32_t CommErrCnt; uint32_t CommErrCnt;
uint8_t MasterMac[6]; uint8_t MasterMac[6];
uint8_t Mac[SENSOR_NUM_MAX][6];//第一位是主设备,后面全是子设备 uint8_t Mac[SENSOR_NUM_MAX][6];//第一位是主设备,后面全是子设备
uint8_t BatLevel; uint8_t BatLevel;
int8_t RSSI; //信号强度 int8_t RSSI; //信号强度
int8_t Nsr; //信噪比 int8_t Nsr; //信噪比
uint16_t CUType; uint16_t CUType;
uint8_t SensorN; uint8_t SensorN;
uint16_t SensorType[SENSOR_NUM_MAX]; uint16_t SensorType[SENSOR_NUM_MAX];
//低功耗设备配置信息 //低功耗设备配置信息
bool ConfigFlag; //配置标志,为1表示有新配置,应答低功耗设备时需要附带发送 bool ConfigFlag; //配置标志,为1表示有新配置,应答低功耗设备时需要附带发送
uint16_t CollectInterval; //采集时间间隔 uint16_t CollectInterval; //采集时间间隔
uint16_t ReportInterval; //上报时间间隔 uint16_t ReportInterval; //上报时间间隔
uint8_t ERInterval; //紧急上报时间间隔 uint8_t ERInterval; //紧急上报时间间隔
uint8_t ERTime; //紧急上报时长 uint8_t ERTime; //紧急上报时长
}__attribute__((packed))CommUnitPara_t, *CommUnitPara; }__attribute__((packed))CommUnitPara_t, *CommUnitPara;
typedef struct { typedef struct {
bool ExclFlag; bool ExclFlag;
uint8_t ExclMac[6];//需要排除的通讯单元MAC uint8_t ExclMac[6];//需要排除的通讯单元MAC
}__attribute__((packed))ExclCommUnit_t, *ExclCommUnit; }__attribute__((packed))ExclCommUnit_t, *ExclCommUnit;
typedef struct { typedef struct {
@@ -207,10 +207,10 @@ typedef struct {
}__attribute__((packed))CommUnit_t, *CommUnit; }__attribute__((packed))CommUnit_t, *CommUnit;
typedef struct { typedef struct {
bool Enable; //串口使能 bool Enable; //串口使能
bool CommUnitEnable; //通讯单元使能,开启(使用内部通讯单元功能,直接和传感器通讯),关闭(直接和RS485类型的通讯单元通讯) bool CommUnitEnable; //通讯单元使能,开启(使用内部通讯单元功能,直接和传感器通讯),关闭(直接和RS485类型的通讯单元通讯)
bool QuerySensorFlag; //查询传感器标志 bool QuerySensorFlag; //查询传感器标志
bool UpgradeEnable;//升级功能使能 bool UpgradeEnable;//升级功能使能
uint8_t Power; uint8_t Power;
uint32_t BaudRate; uint32_t BaudRate;
SendData RS485Send; SendData RS485Send;
@@ -252,56 +252,56 @@ typedef struct {
}LoraPara_t, *pLoraPara; }LoraPara_t, *pLoraPara;
typedef struct { typedef struct {
uint8_t DestAddr[4]; //目的服务器地址 uint8_t DestAddr[4]; //目的服务器地址
uint16_t DestPort; //目的服务器端口 uint16_t DestPort; //目的服务器端口
uint8_t LocalAddr[4]; //本地客户端地址(预留) uint8_t LocalAddr[4]; //本地客户端地址(预留)
uint16_t LocalPort; //本地客户端端口(预留) uint16_t LocalPort; //本地客户端端口(预留)
}LTENetPara_t, *pLTENetPara; }LTENetPara_t, *pLTENetPara;
typedef struct { typedef struct {
uint8_t IpMode; //IP模式:DHCP/静态 uint8_t IpMode; //IP模式:DHCP/静态
uint8_t IpAddr[4]; //本地IP地址 uint8_t IpAddr[4]; //本地IP地址
uint16_t IpPort; //本地端口 uint16_t IpPort; //本地端口
uint8_t WorkMode; //工作模式 uint8_t WorkMode; //工作模式
uint8_t SubnetMask[4]; //子网掩码 uint8_t SubnetMask[4]; //子网掩码
uint8_t Gateway[4]; //网关 uint8_t Gateway[4]; //网关
uint8_t DestIp[4]; //目的IP地址 uint8_t DestIp[4]; //目的IP地址
uint16_t DestPort; //目的端口 uint16_t DestPort; //目的端口
}EthNetPara_t, *pEthNetPara; }EthNetPara_t, *pEthNetPara;
typedef struct { typedef struct {
uint32_t SavFlag; //存储标志 uint32_t SavFlag; //存储标志
CommType_m Comm; //网关通讯方式 CommType_m Comm; //网关通讯方式
uint8_t GwMac[6]; //网关mac uint8_t GwMac[6]; //网关mac
LTENetPara_t LTENet; //Cat1/4G服务器参数 LTENetPara_t LTENet; //Cat1/4G服务器参数
EthNetPara_t EthNet; //以太网网络参数 EthNetPara_t EthNet; //以太网网络参数
uint32_t CommUnitReadInterval; //通讯单元读取时间间隔,单位S uint32_t CommUnitReadInterval; //通讯单元读取时间间隔,单位S
CommUnitPara_t CommUnitArray[COMMUNIT_NUM_MAX]; //注册的通讯单元信息 CommUnitPara_t CommUnitArray[COMMUNIT_NUM_MAX]; //注册的通讯单元信息
ExclCommUnit_t ExclCommUnit[COMMUNIT_NUM_MAX]; //排除的通讯单元信息 ExclCommUnit_t ExclCommUnit[COMMUNIT_NUM_MAX]; //排除的通讯单元信息
RS485Para_t Rs485Ch1; //RS485通道1配置 RS485Para_t Rs485Ch1; //RS485通道1配置
RS485Para_t Rs485Ch2; //RS485通道2配置 RS485Para_t Rs485Ch2; //RS485通道2配置
uint8_t DebugChannel; //调试通道 uint8_t DebugChannel; //调试通道
LoraPara_t Lora; //Lora配置 LoraPara_t Lora; //Lora配置
bool OutageFlag; //断电报警标志 bool OutageFlag; //断电报警标志
uint16_t crc16; uint16_t crc16;
}__attribute__((packed))GWConfigPara_t, *GWConfigPara; }__attribute__((packed))GWConfigPara_t, *GWConfigPara;
struct GateWay_t{ struct GateWay_t{
bool TimeSyncFlag; //时间同步标志 bool TimeSyncFlag; //时间同步标志
bool SvrRegFlag; //服务器注册标志 bool SvrRegFlag; //服务器注册标志
uint8_t SvrMac[6]; //服务器mac uint8_t SvrMac[6]; //服务器mac
GWConfigPara_t ConfigPara; //配置参数 GWConfigPara_t ConfigPara; //配置参数
CommUnitData_t CUDataArray[COMMUNIT_NUM_MAX]; CommUnitData_t CUDataArray[COMMUNIT_NUM_MAX];
uint8_t Battery; //电池电量 uint8_t Battery; //电池电量
uint16_t UploadInterval; //上传间隔 uint16_t UploadInterval; //上传间隔
uint32_t HistoryNum; //历史数据数量 uint32_t HistoryNum; //历史数据数量
DataRevCallBack SvrRevCallBack; //接收到服务器回调 DataRevCallBack SvrRevCallBack; //接收到服务器回调
DataRevResCallBack CommUnitRevCallBack; //通讯单元接收回调 DataRevResCallBack CommUnitRevCallBack; //通讯单元接收回调
rt_mq_t NetSendData_MQ; //网络发送数据队列,第一个字节用于存储消息长度, 第二字节存储命令字,后为数据 rt_mq_t NetSendData_MQ; //网络发送数据队列,第一个字节用于存储消息长度, 第二字节存储命令字,后为数据
rt_mq_t LoraRev_MQ; //Lora接收消息队列,第一个字节用于存储消息长度,后为数据 rt_mq_t LoraRev_MQ; //Lora接收消息队列,第一个字节用于存储消息长度,后为数据
rt_mutex_t UartRevMutex; rt_mutex_t UartRevMutex;
uint8_t BatteryReadDlyCnt; //读取电压延时,单位秒,防止4G发送拉低电池电压,造成断电误报 uint8_t BatteryReadDlyCnt; //读取电压延时,单位秒,防止4G发送拉低电池电压,造成断电误报
}; };
int Cat1EthRevCallBack(GateWayPara GateWay, uint8_t *rData, uint16_t rLen); int Cat1EthRevCallBack(GateWayPara GateWay, uint8_t *rData, uint16_t rLen);
+1 -1
View File
@@ -36,7 +36,7 @@ typedef enum {
RS485_SENSOR_CMD_END, RS485_SENSOR_CMD_END,
}RS485SensorCmd_m; }RS485SensorCmd_m;
//´«¸ÐÆ÷Êý¾Ý·¢ËͽṹÌå //传感器数据发送结构体
typedef struct { typedef struct {
bool SendFlag; bool SendFlag;
uint8_t SensorCnt; uint8_t SensorCnt;
+80 -75
View File
@@ -30,7 +30,7 @@
//#define BOOT_PARA_ADDRESS (FLASH_SIZE - FLASH_SECTOR_SIZE) //#define BOOT_PARA_ADDRESS (FLASH_SIZE - FLASH_SECTOR_SIZE)
//#define BOOT_PARA_SIZE (FLASH_SECTOR_SIZE) //#define BOOT_PARA_SIZE (FLASH_SECTOR_SIZE)
/* flash rom map 存储分区*/ /* flash rom map 存储分区*/
//boot 16k //boot 16k
#define FLASH_BASE ((uint32_t)0x00000000) #define FLASH_BASE ((uint32_t)0x00000000)
#define FLASH_SECTOR_SIZE 0x2000ul #define FLASH_SECTOR_SIZE 0x2000ul
@@ -63,36 +63,62 @@
#define RTC_IRQn Int001_IRQn #define RTC_IRQn Int001_IRQn
#define LORA_DIO0_IRQn Int005_IRQn
#define DBGUART_IRQn Int006_IRQn
#define DBGUART_EI_IRQn Int007_IRQn
#define RS485CH1_UART_IRQn Int008_IRQn
#define RS485CH1_UART_EI_IRQn Int009_IRQn
#define RS485CH2_UART_IRQn Int010_IRQn
#define RS485CH2_UART_EI_IRQn Int011_IRQn
#define ETH_OR_CAT1_UART_IRQn Int012_IRQn
#define ETH_OR_CAT1_UART_EI_IRQn Int013_IRQn
#define DBG_RXPIN_IRQn Int002_IRQn #define DBG_RXPIN_IRQn Int002_IRQn
#define LORA_DIO0_IRQn Int005_IRQn
//DEBUG #define DBG_OR_CAT1_UART_IRQn Int006_IRQn
#define DBG_USART_CH (M4_USART1) #define DBG_OR_CAT1_UART_EI_IRQn Int007_IRQn
#define DBG_USART_RX_PORT (PortA)
#define DBG_USART_RX_PIN (Pin11) #define ETH_UART_IRQn Int008_IRQn
#define DBG_USART_TX_PORT (PortA) #define ETH_UART_EI_IRQn Int009_IRQn
#define DBG_USART_TX_PIN (Pin12)
#define DBG_USART_RX_FUNC (Func_Usart1_Rx) #define RS485CH1_UART_IRQn Int010_IRQn
#define DBG_USART_TX_FUNC (Func_Usart1_Tx) #define RS485CH1_UART_EI_IRQn Int011_IRQn
#define DBG_USART_RI_NUM (INT_USART1_RI)
#define DBG_USART_EI_NUM (INT_USART1_EI) #define RS485CH2_UART_IRQn Int012_IRQn
#define DBG_USART_TI_NUM (INT_USART1_TI) #define RS485CH2_UART_EI_IRQn Int013_IRQn
#define DBG_USART_TCI_NUM (INT_USART1_TCI)
#define DBG_FCG1_PERIPH (PWC_FCG1_PERIPH_USART1)
//DEBUG or CAT1
#define DBG_OR_CAT1_USART_CH (M4_USART1)
#define DBG_OR_CAT1_USART_RX_PORT (PortA)
#define DBG_OR_CAT1_USART_RX_PIN (Pin11)
#define DBG_OR_CAT1_USART_TX_PORT (PortA)
#define DBG_OR_CAT1_USART_TX_PIN (Pin12)
#define DBG_OR_CAT1_USART_RX_FUNC (Func_Usart1_Rx)
#define DBG_OR_CAT1_USART_TX_FUNC (Func_Usart1_Tx)
#define DBG_OR_CAT1_USART_RI_NUM (INT_USART1_RI)
#define DBG_OR_CAT1_USART_EI_NUM (INT_USART1_EI)
#define DBG_OR_CAT1_USART_TI_NUM (INT_USART1_TI)
#define DBG_OR_CAT1_USART_TCI_NUM (INT_USART1_TCI)
#define DBG_OR_CAT1_FCG1_PERIPH (PWC_FCG1_PERIPH_USART1)
#define DBG_OR_CAT1_CTRL_PORT (PortB)
#define DBG_OR_CAT1_CTRL_PIN (Pin08)
#if (HARDWARE_VERSION == 12)
#define DBG_ON() PORT_SetBits(DBG_OR_CAT1_CTRL_PORT, DBG_OR_CAT1_CTRL_PIN)
#define CAT1_ON() PORT_ResetBits(DBG_OR_CAT1_CTRL_PORT, DBG_OR_CAT1_CTRL_PIN)
#elif (HARDWARE_VERSION >= 13)
#define DBG_ON() PORT_ResetBits(DBG_OR_CAT1_CTRL_PORT, DBG_OR_CAT1_CTRL_PIN)
#define CAT1_ON() PORT_SetBits(DBG_OR_CAT1_CTRL_PORT, DBG_OR_CAT1_CTRL_PIN)
#endif
#define CAT1_PWR_KEY_PORT (PortA)
#define CAT1_PWR_KEY_PIN (Pin03)
#define CAT1_PWR_KEY_CLR() PORT_SetBits(CAT1_PWR_KEY_PORT, CAT1_PWR_KEY_PIN)
#define CAT1_PWR_KEY_SET() PORT_ResetBits(CAT1_PWR_KEY_PORT, CAT1_PWR_KEY_PIN)
#define CAT1_RESET_PORT (PortA)
#define CAT1_RESET_PIN (Pin00)
#define CAT1_RESET_CLR() PORT_SetBits(CAT1_RESET_PORT, CAT1_RESET_PIN)
#define CAT1_RESET_SET() PORT_ResetBits(CAT1_RESET_PORT, CAT1_RESET_PIN)
#define CAT1_WAKEUP_PORT (PortA)
#define CAT1_WAKEUP_PIN (Pin02)
#define CAT1_WAKEUP_CLR() PORT_SetBits(CAT1_WAKEUP_PORT, CAT1_WAKEUP_PIN)
#define CAT1_WAKEUP_SET() PORT_ResetBits(CAT1_WAKEUP_PORT, CAT1_WAKEUP_PIN)
//RS485 Ch1 //RS485 Ch1
#define RS485_CH1_USART_CH (M4_USART2) #define RS485_CH1_USART_CH (M4_USART2)
@@ -152,45 +178,22 @@
//#define RS485_CH2_VOL_5V() PORT_SetBits(RS485_CH2_VOL_CTRL_PORT, RS485_CH2_VOL_CTRL_PIN) //#define RS485_CH2_VOL_5V() PORT_SetBits(RS485_CH2_VOL_CTRL_PORT, RS485_CH2_VOL_CTRL_PIN)
//#define RS485_CH2_VOL_12V() PORT_ResetBits(RS485_CH2_VOL_CTRL_PORT, RS485_CH2_VOL_CTRL_PIN) //#define RS485_CH2_VOL_12V() PORT_ResetBits(RS485_CH2_VOL_CTRL_PORT, RS485_CH2_VOL_CTRL_PIN)
//ETH OR CAT1 //ETH
#define ETH_OR_CAT1_USART_CH (M4_USART4) #define ETH_USART_CH (M4_USART4)
#define ETH_OR_CAT1_USART_RX_PORT (PortB) #define ETH_USART_RX_PORT (PortB)
#define ETH_OR_CAT1_USART_RX_PIN (Pin09) #define ETH_USART_RX_PIN (Pin09)
#define ETH_OR_CAT1_USART_TX_PORT (PortC) #define ETH_USART_TX_PORT (PortC)
#define ETH_OR_CAT1_USART_TX_PIN (Pin13) #define ETH_USART_TX_PIN (Pin13)
#define ETH_OR_CAT1_USART_RX_FUNC (Func_Usart4_Rx) #define ETH_USART_RX_FUNC (Func_Usart4_Rx)
#define ETH_OR_CAT1_USART_TX_FUNC (Func_Usart4_Tx) #define ETH_USART_TX_FUNC (Func_Usart4_Tx)
#define ETH_OR_CAT1_USART_RI_NUM (INT_USART4_RI) #define ETH_USART_RI_NUM (INT_USART4_RI)
#define ETH_OR_CAT1_USART_EI_NUM (INT_USART4_EI) #define ETH_USART_EI_NUM (INT_USART4_EI)
#define ETH_OR_CAT1_USART_TI_NUM (INT_USART4_TI) #define ETH_USART_TI_NUM (INT_USART4_TI)
#define ETH_OR_CAT1_USART_TCI_NUM (INT_USART4_TCI) #define ETH_USART_TCI_NUM (INT_USART4_TCI)
#define ETH_OR_CAT1_FCG1_PERIPH (PWC_FCG1_PERIPH_USART4) #define ETH_FCG1_PERIPH (PWC_FCG1_PERIPH_USART4)
#define ETH_OR_CAT1_CTRL_PORT (PortB) #define ETH_ON() ETH_RESET_SET()
#define ETH_OR_CAT1_CTRL_PIN (Pin08) #define ETH_OFF() ETH_RESET_CLR()
#if (HARDWARE_VERSION == 12)
#define ETH_ON() PORT_SetBits(ETH_OR_CAT1_CTRL_PORT, ETH_OR_CAT1_CTRL_PIN)
#define CAT1_ON() PORT_ResetBits(ETH_OR_CAT1_CTRL_PORT, ETH_OR_CAT1_CTRL_PIN)
#elif (HARDWARE_VERSION >= 13)
#define ETH_ON() PORT_ResetBits(ETH_OR_CAT1_CTRL_PORT, ETH_OR_CAT1_CTRL_PIN)
#define CAT1_ON() PORT_SetBits(ETH_OR_CAT1_CTRL_PORT, ETH_OR_CAT1_CTRL_PIN)
#endif
//#define ETH_OR_CAT1_TX_CTRL_PORT (PortH)
//#define ETH_OR_CAT1_TX_CTRL_PIN (Pin02)
//#define ETH_ON() { PORT_SetBits(ETH_OR_CAT1_CTRL_PORT, ETH_OR_CAT1_CTRL_PIN); PORT_SetBits(ETH_OR_CAT1_TX_CTRL_PORT, ETH_OR_CAT1_TX_CTRL_PIN); }
//#define CAT1_ON() { PORT_ResetBits(ETH_OR_CAT1_CTRL_PORT, ETH_OR_CAT1_CTRL_PIN); PORT_ResetBits(ETH_OR_CAT1_TX_CTRL_PORT, ETH_OR_CAT1_TX_CTRL_PIN);}
#define CAT1_PWR_KEY_PORT (PortA)
#define CAT1_PWR_KEY_PIN (Pin03)
#define CAT1_PWR_KEY_CLR() PORT_SetBits(CAT1_PWR_KEY_PORT, CAT1_PWR_KEY_PIN)
#define CAT1_PWR_KEY_SET() PORT_ResetBits(CAT1_PWR_KEY_PORT, CAT1_PWR_KEY_PIN)
#define CAT1_RESET_PORT (PortA)
#define CAT1_RESET_PIN (Pin00)
#define CAT1_RESET_CLR() PORT_SetBits(CAT1_RESET_PORT, CAT1_RESET_PIN)
#define CAT1_RESET_SET() PORT_ResetBits(CAT1_RESET_PORT, CAT1_RESET_PIN)
#define ETH_RESET_PORT (PortB) #define ETH_RESET_PORT (PortB)
#define ETH_RESET_PIN (Pin05) #define ETH_RESET_PIN (Pin05)
@@ -337,7 +340,7 @@ bool SDCardWriteBlocks(uint32_t u32BlkStartAddr, uint32_t u32BlkEndAddr, uint8_t
#define BAT_COLL_ADC_CH (ADC1_CH1) #define BAT_COLL_ADC_CH (ADC1_CH1)
//帧头结构体 //帧头结构体
typedef struct { typedef struct {
uint8_t Header; uint8_t Header;
uint8_t SlvAddr; uint8_t SlvAddr;
@@ -345,20 +348,20 @@ typedef struct {
uint8_t PayloadLen; uint8_t PayloadLen;
}update_protocol_hd_t; }update_protocol_hd_t;
//主机下发升级请求载荷结构体 //主机下发升级请求载荷结构体
typedef struct { typedef struct {
uint16_t PackageNum; uint16_t PackageNum;
uint32_t AppSize; uint32_t AppSize;
uint32_t AppCrc32; uint32_t AppCrc32;
}__attribute__ ((packed))update_protocol_req_t; }__attribute__ ((packed))update_protocol_req_t;
//从机请求下发结构体 //从机请求下发结构体
typedef struct { typedef struct {
uint16_t PackageIndex; uint16_t PackageIndex;
uint32_t PackageNum; uint32_t PackageNum;
}__attribute__ ((packed))update_protocol_get_t; }__attribute__ ((packed))update_protocol_get_t;
//主机应答下发数据结构体 //主机应答下发数据结构体
typedef struct { typedef struct {
uint16_t PackageIndex; uint16_t PackageIndex;
uint16_t PackageNum; uint16_t PackageNum;
@@ -377,9 +380,10 @@ typedef struct {
void BSP_Init(void); void BSP_Init(void);
void DbgUart_Config(uint32_t BaudRate); void DbgOrCat1Uart_Config(uint32_t BaudRate);
void DebugUartSend(uint8_t *sData, uint16_t sLen); void DebugOrCat1UartSend(uint8_t *sData, uint16_t sLen);
void DbgRxIrqCallback(uint8_t rData); void DbgOrCat1RxIrqCallback(uint8_t rData);
void Cat1RxIrqCallback(uint8_t rData);
void RS485Ch1_Config(uint32_t BaudRate); void RS485Ch1_Config(uint32_t BaudRate);
void RS485Ch1UartSend(uint8_t *sData, uint16_t sLen); void RS485Ch1UartSend(uint8_t *sData, uint16_t sLen);
@@ -389,8 +393,9 @@ void RS485Ch2_Config(uint32_t BaudRate);
void RS485Ch2UartSend(uint8_t *sData, uint16_t sLen); void RS485Ch2UartSend(uint8_t *sData, uint16_t sLen);
void RS485Ch2RxIrqCallback(uint8_t rData); void RS485Ch2RxIrqCallback(uint8_t rData);
void EthOrCat1UartSend(uint8_t *sData, uint16_t sLen); void Eth_Config(uint32_t BaudRate);
void EthOrCat1RxIrqCallback(uint8_t rData); void EthUartSend(uint8_t *sData, uint16_t sLen);
void EthIrqCallbackHandler(uint8_t rData);
void LoraTxRxIrqCallback(void); void LoraTxRxIrqCallback(void);
+1 -1
View File
@@ -4,7 +4,7 @@
#include "Public.h" #include "Public.h"
#include "DebugCmd.h" #include "DebugCmd.h"
#define MAC_ADDR_TYPE 0//0为测试服务器 #define MAC_ADDR_TYPE 0//0为测试服务器
extern bool MainDispEn; extern bool MainDispEn;
#define MAIN_DBG_LOG(...) { if(MainDispEn) Debug_Printf(__VA_ARGS__);} #define MAIN_DBG_LOG(...) { if(MainDispEn) Debug_Printf(__VA_ARGS__);}
+3 -3
View File
@@ -8,10 +8,10 @@
#define PROTOCOL_HEAD (0x527A) #define PROTOCOL_HEAD (0x527A)
#define PROTOCOL_FRAME_HEAD_SIZE (7) // 最小帧长:头(2) + 地址(2) + 命令(1) + 长度(2) + CRC(2) #define PROTOCOL_FRAME_HEAD_SIZE (7) // 最小帧长:头(2) + 地址(2) + 命令(1) + 长度(2) + CRC(2)
#define PROTOCOL_FRAME_MIN_SIZE (9) // 最小帧长:头(2) + 地址(2) + 命令(1) + 长度(2) + CRC(2) #define PROTOCOL_FRAME_MIN_SIZE (9) // 最小帧长:头(2) + 地址(2) + 命令(1) + 长度(2) + CRC(2)
// 错误码定义 // 错误码定义
typedef enum { typedef enum {
PROTOCOL_SUCCESS = 0, PROTOCOL_SUCCESS = 0,
PROTOCOL_ERR_INVALID_PARAM, PROTOCOL_ERR_INVALID_PARAM,
+7 -7
View File
@@ -1,5 +1,5 @@
/****************************************************************************** /******************************************************************************
* @brief 环形缓冲区管理(参考linux/kfifo) * @brief 环形缓冲区管理(参考linux/kfifo)
* *
* Copyright (c) 2016~2020, <morro_luo@163.com> * Copyright (c) 2016~2020, <morro_luo@163.com>
* *
@@ -7,7 +7,7 @@
* *
* Change Logs: * Change Logs:
* Date Author Notes * Date Author Notes
* 2016-05-30 Morro 初版完成 * 2016-05-30 Morro 初版完成
******************************************************************************/ ******************************************************************************/
#ifndef _RING_BUF_H_ #ifndef _RING_BUF_H_
@@ -19,12 +19,12 @@
extern "C" { extern "C" {
#endif #endif
/*环形缓冲区管理器*/ /*环形缓冲区管理器*/
typedef struct { typedef struct {
unsigned char *buf; /*环形缓冲区 */ unsigned char *buf; /*环形缓冲区 */
unsigned int size; /*环形缓冲区 */ unsigned int size; /*环形缓冲区 */
unsigned int front; /*头指针 */ unsigned int front; /*头指针 */
unsigned int rear; /*尾指针 */ unsigned int rear; /*尾指针 */
}ring_buf_t; }ring_buf_t;
bool ring_buf_init(ring_buf_t *r,unsigned char *buf,unsigned int size); bool ring_buf_init(ring_buf_t *r,unsigned char *buf,unsigned int size);
+6 -6
View File
@@ -42,20 +42,20 @@ uint32_t SpiFlashReadId(void);
//#if (LORA_MODULE == WH_LR36_L) //#if (LORA_MODULE == WH_LR36_L)
//#define LOG_SAV_SIZE 78 //#define LOG_SAV_SIZE 78
//#define LOG_SAV_NUM_SECTOR 52 //每扇区存储数量 //#define LOG_SAV_NUM_SECTOR 52 //每扇区存储数量
//#else //#else
//#define LOG_SAV_SIZE 78 //150 //#define LOG_SAV_SIZE 78 //150
//#define LOG_SAV_NUM_SECTOR 52 //27 //每扇区存储数量 //#define LOG_SAV_NUM_SECTOR 52 //27 //每扇区存储数量
//#endif //#endif
#define LOG_SAV_SIZE_MAX 256 #define LOG_SAV_SIZE_MAX 256
#define LOG_SAV_NUM_MAX ((SPIFLASH_SECTOR_NUM - LOG_SAV_START_SECTOR) * LOG_SAV_NUM_SECTOR) #define LOG_SAV_NUM_MAX ((SPIFLASH_SECTOR_NUM - LOG_SAV_START_SECTOR) * LOG_SAV_NUM_SECTOR)
typedef struct { typedef struct {
uint32_t LogSavFlag; //日志存储标志 uint32_t LogSavFlag; //日志存储标志
uint32_t LogIdx; //日志序号 uint32_t LogIdx; //日志序号
uint32_t LogEndAddr; //日志结束地址 uint32_t LogEndAddr; //日志结束地址
uint32_t TimeStamp; //存储时间 uint32_t TimeStamp; //存储时间
}LogHeader_t, *LogHeader; }LogHeader_t, *LogHeader;
void SavMMC5983Calib(uint8_t *wData, uint32_t wLen); void SavMMC5983Calib(uint8_t *wData, uint32_t wLen);
+60 -310
View File
@@ -4,71 +4,45 @@
static rt_sem_t CatOneRev_Sem = RT_NULL; static rt_sem_t CatOneRev_Sem = RT_NULL;
static rt_sem_t CatOneIRQ_Sem = RT_NULL; static rt_sem_t CatOneIRQ_Sem = RT_NULL;
static rt_sem_t EthIRQ_Sem = RT_NULL;
static rt_thread_t Cat1Rev_Thread = RT_NULL; static rt_thread_t Cat1Rev_Thread = RT_NULL;
static uint8_t CAT1DispEn = false; static uint8_t CAT1DispEn = false;
static CatOne_t CatOne; static CatOne_t CatOne;
static char CatOneEthRxBuff[CAT_ONE_REV_LEN_MAX]; static char CatOneRxBuff[CAT_ONE_REV_LEN_MAX];
static uint16_t CatOneEthRxLen; static uint16_t CatOneRxLen;
static uint8_t CatOneEthTxBuff[CAT_ONE_REV_LEN_MAX]; static uint8_t CatOneTxBuff[CAT_ONE_REV_LEN_MAX];
static uint16_t CatOneEthTxLen; static uint16_t CatOneTxLen;
static uint8_t Payload[CAT_ONE_REV_LEN_MAX]; static uint8_t Payload[CAT_ONE_REV_LEN_MAX];
static char CommUnitSendASCII[CAT_ONE_REV_LEN_MAX * 2]; static char CommUnitSendASCII[CAT_ONE_REV_LEN_MAX * 2];
static uint8_t EthRevTimeOutCnt; static uint8_t Cat1RevTimeOutCnt;
static uint16_t CatSendErrCnt = 0; static uint16_t CatSendErrCnt = 0;
// ETH状态机相关变量已移至 CatOne_t 结构体中
#define CAT1_DBG_LOG(...) { if(CAT1DispEn) Debug_Printf(__VA_ARGS__);} #define CAT1_DBG_LOG(...) { if(CAT1DispEn) Debug_Printf(__VA_ARGS__);}
//#define CAT1_DBG_ARRAY(ARRAY, SIZE) { if(CAT1DispEn) {DBG_ARRAY(ARRAY,SIZE)}}
#define CATONE_RESET_DELAY_TIME_MAX (5 * 60 * 1000) #define CATONE_RESET_DELAY_TIME_MAX (5 * 60 * 1000)
//const char *CatOneATCmdStr[16] = {
// "NULL",
// "AT\r\n", //开机检测
// "ATE0\r\n", //关回显
// "AT+CPIN?\r\n", //识卡
//// "AT+CIMI\r\n", //IMEI
// "AT+CGSN=1\r\n",
// "AT+LCCID\r\n", //读卡号
// "AT+CEREG?\r\n", //查询注册状态
// "AT+CGPADDR=1\r\n", //查询IP地址
// "AT+CSQ\r\n", //查询信号强度
// "AT+LDNSGIP=gxjt.cui635.cn\r\n",
// "AT+LBS=0\r\n", //获取基站定位信息
// "AT+LIPOPEN=", //设置TCP服务器地址和端口,AT+LIPOPEN="TCP","114.55.52.96",6803
// "AT+LIPSEND=", //发送数据, AT+LIPSEND=0,1,20,"31313131313131323232323232"
// "AT+LIPCLOSE=0\r\n",//断开连接
// "AT+LBSPARA=http://locator-aep.xiot.senthink.com:80/locator/v0.1/locate,B84E427D95B1DF4A3F49B18DDF714C72\r\n",
// "AT+CCLK?\r\n", //获取时间
//};
const char *CatOneATCmdStr[16] = { const char *CatOneATCmdStr[16] = {
"NULL", "NULL",
"AT\r\n", //开机检测 "AT\r\n", //开机检测
"ATE0\r\n", //关回显 "ATE0\r\n", //关回显
"AT+CPIN?\r\n", //识卡 "AT+CPIN?\r\n", //识卡
// "AT+CIMI\r\n", //IMEI
"AT+CGSN=1\r\n", "AT+CGSN=1\r\n",
"AT+QCCID\r\n", //读卡号 "AT+QCCID\r\n", //读卡号
"AT+CEREG?\r\n", //查询注册状态 "AT+CEREG?\r\n", //查询注册状态
"AT+CGPADDR=1\r\n", //查询IP地址 "AT+CGPADDR=1\r\n", //查询IP地址
"AT+CSQ\r\n", //查询信号强度 "AT+CSQ\r\n", //查询信号强度
"AT+LDNSGIP=gxjt.cui635.cn\r\n", "AT+LDNSGIP=gxjt.cui635.cn\r\n",
"AT+QLBS\r\n", //获取基站定位信息 "AT+QLBS\r\n", //获取基站定位信息
"AT+QIOPEN=", //设置TCP服务器地址和端口AT+LIPOPEN="TCP","114.55.52.96",6803 "AT+QIOPEN=", //设置TCP服务器地址和端口
"AT+QISEND=", //发送数据, AT+LIPSEND=0,1,20,"31313131313131323232323232" "AT+QISEND=", //发送数据
"AT+QICLOSE=0\r\n",//断开连接 "AT+QICLOSE=0\r\n", //断开连接
"AT+QLBSCFG=\"server\",http://locator-aep.xiot.senthink.com:80/locator/v0.1/locate\r\n", "AT+QLBSCFG=\"server\",http://locator-aep.xiot.senthink.com:80/locator/v0.1/locate\r\n",
"AT+QLBSCFG=\"token\",45B516D3078467E84DD2CFBF3532A4CB\r\n", "AT+QLBSCFG=\"token\",45B516D3078467E84DD2CFBF3532A4CB\r\n",
"AT+CCLK?\r\n", //获取时间 "AT+CCLK?\r\n", //获取时间
}; };
void Cat1DBGOnOff(bool OnOff) void Cat1DBGOnOff(bool OnOff)
@@ -84,50 +58,20 @@ const CatOneATCMD_m CatOneModeSetCmdArray[] = {
CAT_ONE_AT_NULL, CAT_ONE_AT_NULL,
CAT_ONE_AT, CAT_ONE_AT,
CAT_ONE_ATE0, CAT_ONE_ATE0,
//CAT_ONE_LBSPARA,
CAT_ONE_LCCID, CAT_ONE_LCCID,
CAT_ONE_IMEI, CAT_ONE_IMEI,
CAT_ONE_CPIN, CAT_ONE_CPIN,
CAT_ONE_CEREG, CAT_ONE_CEREG,
CAT_ONE_CSQ, CAT_ONE_CSQ,
//CAT_ONE_LDNSGIP,
//CAT_ONE_LBS,
CAT_ONE_CCLK, CAT_ONE_CCLK,
CAT_ONE_AT_CMD_END CAT_ONE_AT_CMD_END
}; };
//CatOneRetStatus_m CatOneSend(uint8_t *sData, uint16_t sLen)
//{
// rt_err_t result;
//
// if(CatOne.Cat1Status != CAT_ONE_IDEL && CatOne.Cat1Status != CAT_ONE_WAIT_SEND)
// return CAT_ONE_RET_ERR;
//
// //CatOne.Cat1Status = CAT_ONE_RESET;
// result = rt_mq_send(CatOneRev_MQ, sData, sLen);
// if(result != RT_EOK) {
// CAT1_DBG_LOG("CatOne MQ Send ERR...\r\n");
// return CAT_ONE_RET_ERR;
// }
// CAT1_DBG_LOG("CatOne Send Message: \r\n", sData);
// return CAT_ONE_RET_OK;
//}
void CatOneStop(void) void CatOneStop(void)
{ {
CatOne.Cat1Status = CAT_ONE_OFF; CatOne.Cat1Status = CAT_ONE_OFF;
} }
void ETHStop(void)
{
CatOne.EthStatus = ETH_OFF;
}
void ETHReset(void)
{
CatOne.EthStatus = ETH_RESET;
}
void CatOneGetLocationInfo(int *Longitude, int *Latitude) void CatOneGetLocationInfo(int *Longitude, int *Latitude)
{ {
if(CatOne.LBSFlag) { if(CatOne.LBSFlag) {
@@ -146,7 +90,6 @@ void CatOneGetIMEIAndSIM(char *Imei, char *Sim)
memcpy(Sim, CatOne.SIM, 20); memcpy(Sim, CatOne.SIM, 20);
} }
//返回true-busy, false-Idle
bool CatOneGetStatus(void) bool CatOneGetStatus(void)
{ {
if(CatOne.Cat1Status == CAT_ONE_IDEL) if(CatOne.Cat1Status == CAT_ONE_IDEL)
@@ -229,10 +172,6 @@ void CatOneAtCmdAnalyze(char *RxBuff)
else { else {
memset(CatOne.IMEI, 0, 15); memset(CatOne.IMEI, 0, 15);
} }
// ret = sscanf(p, "+CGSN: \"%s\"\r\n", CatOne.IMEI);
// if(ret != 1) {
// memset(CatOne.IMEI, 0, 15);
// }
CatOne.IMEI[15] = 0; CatOne.IMEI[15] = 0;
break; break;
@@ -354,8 +293,7 @@ void CatOneAtCmdAnalyze(char *RxBuff)
else { else {
return; return;
} }
//CatOne.Cat1Status = CAT_ONE_CLOSE_TCP; rt_sem_release(CatOneRev_Sem);
rt_sem_release(CatOneRev_Sem);//接收任务
return; return;
} }
default: default:
@@ -377,8 +315,8 @@ void CatOneAtCmdSend(CatOneATCMD_m Cmd, uint32_t Dly, CatOneStatus_m NextStatus)
{ {
CatOne.AtCmd = Cmd; CatOne.AtCmd = Cmd;
if(CatOne.AtCmd == CAT_ONE_LIPSEND) { if(CatOne.AtCmd == CAT_ONE_LIPSEND) {
HexToAscii(CatOneEthTxBuff, CommUnitSendASCII, CatOneEthTxLen); HexToAscii(CatOneTxBuff, CommUnitSendASCII, CatOneTxLen);
sprintf(CatOne.CatOneSendBuff,"AT+LIPSEND=0,1,%d,\"%s\"\r\n",CatOneEthTxLen * 2, CommUnitSendASCII); sprintf(CatOne.CatOneSendBuff,"AT+LIPSEND=0,1,%d,\"%s\"\r\n",CatOneTxLen * 2, CommUnitSendASCII);
CatOne.GateWay->BatteryReadDlyCnt = 30; CatOne.GateWay->BatteryReadDlyCnt = 30;
} }
else if(CatOne.AtCmd == CAT_ONE_LIPOPEN) { else if(CatOne.AtCmd == CAT_ONE_LIPOPEN) {
@@ -393,14 +331,14 @@ void CatOneAtCmdSend(CatOneATCMD_m Cmd, uint32_t Dly, CatOneStatus_m NextStatus)
strcpy(CatOne.CatOneSendBuff, CatOneATCmdStr[CatOne.AtCmd]); strcpy(CatOne.CatOneSendBuff, CatOneATCmdStr[CatOne.AtCmd]);
} }
CAT1_DBG_LOG(CatOne.CatOneSendBuff); CAT1_DBG_LOG(CatOne.CatOneSendBuff);
EthRevTimeOutCnt = 0; Cat1RevTimeOutCnt = 0;
EthOrCat1UartSend((uint8_t *)CatOne.CatOneSendBuff, strlen(CatOne.CatOneSendBuff)); DebugOrCat1UartSend((uint8_t *)CatOne.CatOneSendBuff, strlen(CatOne.CatOneSendBuff));
CatOne.CatOne1mSDelayCnt = Dly; CatOne.CatOne1mSDelayCnt = Dly;
CatOne.Cat1Status = CAT_ONE_WAIT_REV; CatOne.Cat1Status = CAT_ONE_WAIT_REV;
CatOne.NextStatus = NextStatus; CatOne.NextStatus = NextStatus;
} }
int GateWayRegister(uint8_t *TxBuff) static int GateWayRegister(uint8_t *TxBuff)
{ {
uint16_t UnitCommCnt = 0; uint16_t UnitCommCnt = 0;
uint8_t *p = &TxBuff[0]; uint8_t *p = &TxBuff[0];
@@ -459,7 +397,7 @@ void CatOneLoopHandler(void)
CatOneAtCmdSend(CatOne.AtCmd, 2000, CatOne.NextStatus); CatOneAtCmdSend(CatOne.AtCmd, 2000, CatOne.NextStatus);
CAT1_DBG_LOG("Cat1 Ret TimeOut, ReSend(%d)...\r\n", CatOne.AtCmdResendCnt); CAT1_DBG_LOG("Cat1 Ret TimeOut, ReSend(%d)...\r\n", CatOne.AtCmdResendCnt);
} }
else { //3次错误,关机 else {
CAT1_DBG_LOG("Cat1 error, Close!\r\n"); CAT1_DBG_LOG("Cat1 error, Close!\r\n");
if(CatOne.AtCmd == CAT_ONE_LIPSEND) if(CatOne.AtCmd == CAT_ONE_LIPSEND)
CatOne.Cat1Status = CAT_ONE_CLOSE_TCP; CatOne.Cat1Status = CAT_ONE_CLOSE_TCP;
@@ -499,9 +437,9 @@ void CatOneLoopHandler(void)
} }
break; break;
case CAT_ONE_REG_SVR: //注册服务器 case CAT_ONE_REG_SVR:
ret = GateWayRegister(CatOneEthTxBuff); ret = GateWayRegister(CatOneTxBuff);
rt_mq_send(CatOne.GateWay->NetSendData_MQ, CatOneEthTxBuff, ret); rt_mq_send(CatOne.GateWay->NetSendData_MQ, CatOneTxBuff, ret);
CatOne.Cat1Status = CAT_ONE_WAIT_SEND; CatOne.Cat1Status = CAT_ONE_WAIT_SEND;
break; break;
@@ -509,11 +447,11 @@ void CatOneLoopHandler(void)
result = rt_mq_recv(CatOne.GateWay->NetSendData_MQ, Payload, CAT_ONE_REV_LEN_MAX, 1000); result = rt_mq_recv(CatOne.GateWay->NetSendData_MQ, Payload, CAT_ONE_REV_LEN_MAX, 1000);
if(result == RT_EOK) { if(result == RT_EOK) {
CatSendErrCnt = 0; CatSendErrCnt = 0;
CatOneEthTxLen = NetCommOrgData(CatOne.GateWay, Payload, CatOneEthTxBuff); CatOneTxLen = NetCommOrgData(CatOne.GateWay, Payload, CatOneTxBuff);
CatOne.Cat1Status = CAT_ONE_SEND_DATA; CatOne.Cat1Status = CAT_ONE_SEND_DATA;
} }
else { else {
if(CatOne.Cat1Status == CAT_ONE_RESET || CatOne.Cat1Status == CAT_ONE_OFF) //外部命令执行,状态改变 if(CatOne.Cat1Status == CAT_ONE_RESET || CatOne.Cat1Status == CAT_ONE_OFF)
return; return;
if(!CatOne.TcpConnFlag) { if(!CatOne.TcpConnFlag) {
CatOne.Cat1Status = CAT_ONE_OFF; CatOne.Cat1Status = CAT_ONE_OFF;
@@ -554,7 +492,7 @@ void CatOneLoopHandler(void)
else { else {
Cat1RevErrCnt = 0; Cat1RevErrCnt = 0;
} }
if(CatOne.GateWay->SvrRegFlag == false) //设备没注册,关闭4G,等待下一次重新注册 if(CatOne.GateWay->SvrRegFlag == false)
CatOne.Cat1Status = CAT_ONE_OFF; CatOne.Cat1Status = CAT_ONE_OFF;
else else
CatOne.Cat1Status = CAT_ONE_WAIT_SEND; CatOne.Cat1Status = CAT_ONE_WAIT_SEND;
@@ -566,7 +504,6 @@ void CatOneLoopHandler(void)
break; break;
case CAT_ONE_OFF: case CAT_ONE_OFF:
//CAT1_POW_OFF();
CAT1_RESET_SET(); CAT1_RESET_SET();
CAT1_PWR_KEY_CLR(); CAT1_PWR_KEY_CLR();
rt_thread_delay(3000); rt_thread_delay(3000);
@@ -576,15 +513,16 @@ void CatOneLoopHandler(void)
CAT1_DBG_LOG("Cat1 Power Off!\r\n"); CAT1_DBG_LOG("Cat1 Power Off!\r\n");
CatOne.Cat1Status = CAT_ONE_IDEL; CatOne.Cat1Status = CAT_ONE_IDEL;
CatOne.ResetDelayCnt = CATONE_RESET_DELAY_TIME_MAX; CatOne.ResetDelayCnt = CATONE_RESET_DELAY_TIME_MAX;
DBG_ON();
break; break;
case CAT_ONE_RESET: case CAT_ONE_RESET:
CatSendErrCnt = 0; CatSendErrCnt = 0;
CatOne.GateWay->SvrRegFlag = false; CatOne.GateWay->SvrRegFlag = false;
CAT1_DBG_LOG("Cat1 Reset!\r\n"); CAT1_DBG_LOG("Cat1 Reset!\r\n");
CAT1_ON();
CAT1_RESET_CLR(); CAT1_RESET_CLR();
CAT1_PWR_KEY_SET(); CAT1_PWR_KEY_SET();
//CAT1_POW_ON();
rt_thread_delay(50); rt_thread_delay(50);
CAT1_RESET_SET(); CAT1_RESET_SET();
CAT1_PWR_KEY_CLR(); CAT1_PWR_KEY_CLR();
@@ -598,156 +536,6 @@ void CatOneLoopHandler(void)
} }
} }
void EthLoopHandler(void)
{
rt_err_t result;
switch(CatOne.EthStatus) {
case ETH_IDEL:
rt_thread_delay(1);
if(CatOne.EthResetDelayCnt > 0) {
CatOne.EthResetDelayCnt--;
}
else {
CatOne.EthStatus = ETH_RESET;
}
break;
case ETH_RESET:
CAT1_DBG_LOG("ETH Reset!\r\n");
ETH_RESET_CLR();
rt_thread_delay(10);
ETH_RESET_SET();
rt_thread_delay(2000); // 延长复位后稳定时间到2秒
CatOne.EthStatus = ETH_WAIT_LINK;
CatOne.EthLinkWaitCnt = 0;
CatOne.EthFirstRegFlag = true; // 重置首次注册标志
break;
case ETH_WAIT_LINK:
if(CatOne.EthLinkWaitCnt == 0) {
/* 首次进入等待链路状态,等待模块完全启动 */
CAT1_DBG_LOG("ETH Waiting for module ready...\r\n");
rt_thread_delay(2000);
}
if(ETH_LINK_GET() == Reset) {
CAT1_DBG_LOG("ETH Link OK!\r\n");
if(CatOne.GateWay->SvrRegFlag == false) {
CatOne.EthStatus = ETH_REG_SVR;
}
else {
CatOne.EthStatus = ETH_WAIT_SEND;
}
}
else {
CatOne.EthLinkWaitCnt++;
if(CatOne.EthLinkWaitCnt >= ETH_LINK_WAIT_TIME_MAX) {
CAT1_DBG_LOG("ETH Link Timeout, Reset!\r\n");
CatOne.EthStatus = ETH_OFF;
}
rt_thread_delay(1);
}
break;
case ETH_REG_SVR:
{
// 首次注册时添加延迟,等待系统稳定
if(CatOne.EthFirstRegFlag) {
CAT1_DBG_LOG("ETH First Register, waiting for system stable...\r\n");
rt_thread_delay(ETH_FIRST_REG_DELAY);
CatOne.EthFirstRegFlag = false;
}
uint8_t ret = GateWayRegister(CatOneEthTxBuff);
rt_mq_send(CatOne.GateWay->NetSendData_MQ, CatOneEthTxBuff, ret);
CAT1_DBG_LOG("ETH Register Server...\r\n");
CatOne.EthStatus = ETH_WAIT_SEND;
CatOne.EthSendRetryCnt = 0; // 重置重试计数器
}
break;
case ETH_WAIT_SEND:
result = rt_mq_recv(CatOne.GateWay->NetSendData_MQ, Payload, CAT_ONE_REV_LEN_MAX, 100);
if(result == RT_EOK) {
CatOneEthTxLen = NetCommOrgData(CatOne.GateWay, Payload, CatOneEthTxBuff);
CatOne.EthStatus = ETH_SEND_DATA;
}
else {
if(CatOne.EthStatus == ETH_RESET || CatOne.EthStatus == ETH_OFF)
return;
if(ETH_LINK_GET() != Reset) {
CAT1_DBG_LOG("ETH Link Lost!\r\n");
CatOne.EthStatus = ETH_OFF;
}
else {
rt_thread_delay(1);
}
}
break;
case ETH_SEND_DATA:
HexToAscii(CatOneEthTxBuff, CommUnitSendASCII, CatOneEthTxLen);
EthRevTimeOutCnt = 0;
EthOrCat1UartSend((uint8_t *)CommUnitSendASCII, CatOneEthTxLen * 2);
CommUnitSendASCII[CatOneEthTxLen * 2] = 0;
CAT1_DBG_LOG("Eth Send: %s\r\n", CommUnitSendASCII);
CatOne.EthStatus = ETH_WAIT_RECV;
CatOne.EthRecvTimeoutCnt = 0;
CatOne.EthSendRetryCnt = 0;
break;
case ETH_WAIT_RECV:
rt_thread_delay(1);
CatOne.EthRecvTimeoutCnt++;
if(CatOne.EthRecvTimeoutCnt >= ETH_RECV_TIMEOUT_MAX) {
CAT1_DBG_LOG("ETH Recv Timeout!\r\n");
CatOne.EthSendRetryCnt++;
if(CatOne.EthSendRetryCnt >= ETH_SEND_RETRY_MAX) {
CAT1_DBG_LOG("ETH Send Retry Max, Reset!\r\n");
CatOne.EthStatus = ETH_OFF;
}
else {
if(CatOne.GateWay->SvrRegFlag == false) {
CatOne.EthStatus = ETH_REG_SVR;
}
else {
CatOne.EthStatus = ETH_WAIT_SEND;
}
}
}
if(ETH_LINK_GET() != Reset) {
CAT1_DBG_LOG("ETH Link Lost During Wait!\r\n");
CatOne.EthStatus = ETH_OFF;
}
if(CatOne.GateWay->SvrRegFlag == true) {
CAT1_DBG_LOG("ETH Register Success!\r\n");
CatOne.EthStatus = ETH_WAIT_SEND;
CatOne.EthRecvTimeoutCnt = 0;
CatOne.EthSendRetryCnt = 0;
}
break;
case ETH_OFF:
CAT1_DBG_LOG("ETH Power Off!\r\n");
CatOne.GateWay->SvrRegFlag = false;
//ETH_RESET_CLR();
//rt_thread_delay(3000);
//ETH_RESET_SET();
CatOne.EthStatus = ETH_IDEL;
CatOne.EthResetDelayCnt = ETH_RESET_DELAY_TIME_MAX;
break;
default:
CatOne.EthStatus = ETH_RESET;
break;
}
}
bool CatOneEthSendQueue(uint8_t *sData, uint16_t sLen) bool CatOneEthSendQueue(uint8_t *sData, uint16_t sLen)
{ {
if(CatOne.GateWay->SvrRegFlag == false) if(CatOne.GateWay->SvrRegFlag == false)
@@ -764,70 +552,44 @@ static void CatOneInit(GateWayPara GateWay)
CatOne.CatOneRevCallBack = GateWay->SvrRevCallBack; CatOne.CatOneRevCallBack = GateWay->SvrRevCallBack;
} }
void CatOneEthRev_Thread_Entry(void *parameter) void CatOneRev_Thread_Entry(void *parameter)
{ {
rt_err_t result; rt_err_t result;
char RxBuffTemp[CAT_ONE_REV_LEN_MAX]; char RxBuffTemp[CAT_ONE_REV_LEN_MAX];
uint8_t HexData[CAT_ONE_REV_LEN_MAX / 2];
GateWayPara GateWay = (GateWayPara)parameter; GateWayPara GateWay = (GateWayPara)parameter;
rt_kprintf("CatOneTthRev Thread is running!\r\n"); rt_kprintf("CatOneRev Thread is running!\r\n");
while(1) { while(1) {
if(GateWay->ConfigPara.Comm == CATONE_COMM) {
result = rt_sem_take(CatOneIRQ_Sem, 500); result = rt_sem_take(CatOneIRQ_Sem, 500);
if(result == RT_EOK) { if(result == RT_EOK) {
memcpy(RxBuffTemp, CatOneEthRxBuff, CatOneEthRxLen); memcpy(RxBuffTemp, CatOneRxBuff, CatOneRxLen);
RxBuffTemp[CatOneEthRxLen] = 0; RxBuffTemp[CatOneRxLen] = 0;
CatOneAtCmdAnalyze(RxBuffTemp); CatOneAtCmdAnalyze(RxBuffTemp);
memset(CatOneEthRxBuff, 0x00, CAT_ONE_REV_LEN_MAX); memset(CatOneRxBuff, 0x00, CAT_ONE_REV_LEN_MAX);
CatOneEthRxLen = 0; CatOneRxLen = 0;
}
//CatOneEthRxLen = 0;
}
else if(GateWay->ConfigPara.Comm == ETH_COMM) {
result = rt_sem_take(EthIRQ_Sem, 500);
if(result == RT_EOK) {
memcpy(RxBuffTemp, CatOneEthRxBuff, CatOneEthRxLen);
RxBuffTemp[CatOneEthRxLen] = 0;
CAT1_DBG_LOG("Eth Rev: %s\r\n",RxBuffTemp);
memset(HexData, 0x00, CatOneEthRxLen / 2);
uint8_t ret = AsciiToHex(RxBuffTemp, HexData, CatOneEthRxLen);
if(ret > 0)
GateWay->SvrRevCallBack(GateWay, HexData, ret);
memset(CatOneEthRxBuff, 0x00, CAT_ONE_REV_LEN_MAX);
CatOneEthRxLen = 0;
}
//CatOneEthRxLen = 0;
} }
} }
} }
void CatOne_Eth_Thread_Entry(void *parameter) void CatOne_Thread_Entry(void *parameter)
{ {
GateWayPara GateWay = (GateWayPara)parameter; GateWayPara GateWay = (GateWayPara)parameter;
CatOneRev_Sem = rt_sem_create("cat1r_sem", 0, RT_IPC_FLAG_FIFO); CatOneRev_Sem = rt_sem_create("cat1r_sem", 0, RT_IPC_FLAG_FIFO);
if(CatOneRev_Sem == RT_NULL) { if(CatOneRev_Sem == RT_NULL) {
rt_kprintf("CatOne Sem Create Failed!\r\n"); rt_kprintf("CatOneRev Sem Create Failed!\r\n");
} }
EthIRQ_Sem = rt_sem_create("eth_sem", 0, RT_IPC_FLAG_FIFO); CatOneIRQ_Sem = rt_sem_create("cat1i_sem", 0, RT_IPC_FLAG_FIFO);
if(EthIRQ_Sem == RT_NULL) {
rt_kprintf("Eth Sem Create Failed!\r\n");
}
CatOneIRQ_Sem = rt_sem_create("cat1_sem", 0, RT_IPC_FLAG_FIFO);
if(CatOneIRQ_Sem == RT_NULL) { if(CatOneIRQ_Sem == RT_NULL) {
rt_kprintf("CatOneIRQ Sem Create Failed!\r\n"); rt_kprintf("CatOneIRQ Sem Create Failed!\r\n");
} }
CatOneInit(GateWay); CatOneInit(GateWay);
ETH_RESET_CLR();
rt_thread_delay(10); Cat1Rev_Thread = rt_thread_create("Cat1Rev", CatOneRev_Thread_Entry, parameter, 3000, 3, 20);
ETH_RESET_SET();
Cat1Rev_Thread = rt_thread_create("Cat1Rev", CatOneEthRev_Thread_Entry, parameter, 3000, 3, 20);
if (Cat1Rev_Thread != RT_NULL) { if (Cat1Rev_Thread != RT_NULL) {
rt_thread_startup(Cat1Rev_Thread); rt_thread_startup(Cat1Rev_Thread);
} }
@@ -835,44 +597,37 @@ void CatOne_Eth_Thread_Entry(void *parameter)
rt_kprintf("CatOneRev Thread Create Failed! Exit...\r\n"); rt_kprintf("CatOneRev Thread Create Failed! Exit...\r\n");
return; return;
} }
rt_kprintf("CatOne Thread is running\r\n"); rt_kprintf("CatOne Thread is running!\r\n");
while(1) { while(1) {
//rt_mutex_take(GateWay->UartRevMutex, RT_WAITING_FOREVER); if(GateWay->ConfigPara.Comm != CATONE_COMM) {
if(GateWay->ConfigPara.Comm == CATONE_COMM) rt_thread_delay(100);
continue;
}
CatOneLoopHandler(); CatOneLoopHandler();
else if(GateWay->ConfigPara.Comm == ETH_COMM)
EthLoopHandler();
else
rt_thread_delay(1);
//rt_mutex_release(GateWay->UartRevMutex);
} }
} }
void Cat1IrqCallback(uint8_t rData)
void EthOrCat1RxIrqCallback(uint8_t rData)
{ {
if(EthRevTimeOutCnt == 0) if(Cat1RevTimeOutCnt == 0)
CatOneEthRxLen = 0; CatOneRxLen = 0;
if(CatOneEthRxLen < CAT_ONE_REV_LEN_MAX) { if(CatOneRxLen < CAT_ONE_REV_LEN_MAX) {
CatOneEthRxBuff[CatOneEthRxLen++] = rData; CatOneRxBuff[CatOneRxLen++] = rData;
} }
EthRevTimeOutCnt = 3; Cat1RevTimeOutCnt = 3;
} }
void EthRxOverhandler(void) void Cat1OverHandler(void)
{ {
if(EthRevTimeOutCnt > 0) if(Cat1RevTimeOutCnt > 0)
EthRevTimeOutCnt--; Cat1RevTimeOutCnt--;
if(CatOneEthRxLen > 5 && EthRevTimeOutCnt == 0) { if(CatOneRxLen > 5 && Cat1RevTimeOutCnt == 0) {
EthRevTimeOutCnt = 20; Cat1RevTimeOutCnt = 20;
if(CatOne.GateWay->ConfigPara.Comm == CATONE_COMM)
rt_sem_release(CatOneIRQ_Sem); rt_sem_release(CatOneIRQ_Sem);
else
rt_sem_release(EthIRQ_Sem);
} }
} }
@@ -890,12 +645,7 @@ void CatReadImeiOrSim(char *Imei, char *Sim)
void CatOneTriggerRegister(void) void CatOneTriggerRegister(void)
{ {
ETHStop(); CatOneStop();
CAT1_ON(); CAT1_ON();
CatOneReset(); CatOneReset();
} }
void ETHTriggerRegister(void)
{
CatOne.EthStatus = ETH_REG_SVR;
}
+9 -9
View File
@@ -1,6 +1,6 @@
#include "encryption.h" #include "encryption.h"
//从机加密表 //从机加密表
const unsigned char EPT_Table[32][6] = { const unsigned char EPT_Table[32][6] = {
{1, 6, 4, 2, 3, 5}, {2, 4, 6, 3, 5, 1}, {3, 5, 6, 2, 1, 4}, {5, 3, 2, 1, 4, 6}, {1, 6, 4, 2, 3, 5}, {2, 4, 6, 3, 5, 1}, {3, 5, 6, 2, 1, 4}, {5, 3, 2, 1, 4, 6},
{4, 2, 3, 1, 5, 6}, {6, 3, 5, 1, 4, 2}, {3, 5, 2, 6, 4, 1}, {2, 5, 4, 3, 1, 6}, {4, 2, 3, 1, 5, 6}, {6, 3, 5, 1, 4, 2}, {3, 5, 2, 6, 4, 1}, {2, 5, 4, 3, 1, 6},
@@ -12,7 +12,7 @@ const unsigned char EPT_Table[32][6] = {
{3, 6, 5, 4, 2, 1}, {1, 2, 6, 3, 5, 4}, {4, 6, 5, 3, 2, 1}, {5, 3, 4, 2, 6, 1} {3, 6, 5, 4, 2, 1}, {1, 2, 6, 3, 5, 4}, {4, 6, 5, 3, 2, 1}, {5, 3, 4, 2, 6, 1}
}; };
//从机解密表: //从机解密表:
const unsigned char DPT_Table[32][5] ={ const unsigned char DPT_Table[32][5] ={
{1, 4, 2, 3, 5}, {2, 4, 3, 5, 1}, {3, 5, 2, 1, 4}, {5, 3, 2, 1, 4}, {1, 4, 2, 3, 5}, {2, 4, 3, 5, 1}, {3, 5, 2, 1, 4}, {5, 3, 2, 1, 4},
{4, 2, 3, 1, 5}, {3, 5, 1, 4, 2}, {3, 5, 2, 4, 1}, {2, 5, 4, 3, 1}, {4, 2, 3, 1, 5}, {3, 5, 1, 4, 2}, {3, 5, 2, 4, 1}, {2, 5, 4, 3, 1},
@@ -24,7 +24,7 @@ const unsigned char DPT_Table[32][5] ={
{3, 5, 4, 2, 1}, {1, 2, 3, 5, 4}, {4, 5, 3, 2, 1}, {5, 3, 4, 2, 1} {3, 5, 4, 2, 1}, {1, 2, 3, 5, 4}, {4, 5, 3, 2, 1}, {5, 3, 4, 2, 1}
}; };
//数据位加密表: //数据位加密表:
const unsigned char EPT_D[32] = { const unsigned char EPT_D[32] = {
0x23, 0x4c, 0x92, 0x38, 0x52, 0xa4, 0x9a, 0x61, 0x23, 0x4c, 0x92, 0x38, 0x52, 0xa4, 0x9a, 0x61,
0x86, 0xc8, 0x70, 0x16, 0x32, 0x58, 0x62, 0x83, 0x86, 0xc8, 0x70, 0x16, 0x32, 0x58, 0x62, 0x83,
@@ -33,11 +33,11 @@ const unsigned char EPT_D[32] = {
}; };
/****************************************************************/ /****************************************************************/
/* 加密函数 */ /* 加密函数 */
/* */ /* */
/*函数入口: *data,未加密的普通协议数据 */ /*函数入口: *data,未加密的普通协议数据 */
/* */ /* */
/*函数出口: *EPT_data,生成的加密协议 */ /*函数出口: *EPT_data,生成的加密协议 */
/****************************************************************/ /****************************************************************/
void Encrypt_Code(unsigned char *data, unsigned char *EPT_data) { void Encrypt_Code(unsigned char *data, unsigned char *EPT_data) {
unsigned char Edata[6]; unsigned char Edata[6];
@@ -60,11 +60,11 @@ void Encrypt_Code(unsigned char *data, unsigned char *EPT_data) {
} }
/****************************************************************/ /****************************************************************/
/* 解密函数 */ /* 解密函数 */
/* */ /* */
/*函数入口: *EPT_data,需要解密的加密协议 */ /*函数入口: *EPT_data,需要解密的加密协议 */
/* */ /* */
/*函数出口: *DPT_data,生成的普通协议 */ /*函数出口: *DPT_data,生成的普通协议 */
/****************************************************************/ /****************************************************************/
void Decrypt_Code(unsigned char *EPT_data,unsigned char *DPT_data) { void Decrypt_Code(unsigned char *EPT_data,unsigned char *DPT_data) {
unsigned char data[5]; unsigned char data[5];
+311
View File
@@ -0,0 +1,311 @@
#include "EthTask.h"
#include "Public.h"
#include "DebugCmd.h"
static rt_sem_t EthIRQ_Sem = RT_NULL;
static rt_thread_t EthRev_Thread = RT_NULL;
static EthTask_t Eth;
static char EthRxBuff[ETH_RX_LEN_MAX];
static uint16_t EthRxLen;
static uint8_t EthRevTimeOutCnt;
static uint8_t Payload[ETH_RX_LEN_MAX];
static char CommUnitSendASCII[ETH_RX_LEN_MAX * 2];
static bool EthDispEn = false;
#define ETH_DBG_LOG(...) { if(EthDispEn) Debug_Printf(__VA_ARGS__);}
void ETHOnOff(bool OnOff)
{
EthDispEn = OnOff;
if(OnOff)
Debug_Printf("\r\nEth Display Enable!\r\n\r\n");
else
Debug_Printf("\r\nEth Display Disable!\r\n\r\n");
}
void ETHStop(void)
{
Eth.Status = ETH_OFF;
}
void ETHReset(void)
{
Eth.Status = ETH_RESET;
}
void ETHTriggerRegister(void)
{
Eth.Status = ETH_REG_SVR;
}
static int GateWayRegister(uint8_t *TxBuff)
{
uint16_t UnitCommCnt = 0;
uint8_t *p = &TxBuff[0];
uint16_t len = 5;
if(Eth.GateWay->ConfigPara.Rs485Ch1.CommUnitEnable == true && Eth.GateWay->ConfigPara.Rs485Ch1.Enable == true) {
UnitCommCnt++;
memcpy(&p[len], Eth.GateWay->ConfigPara.Rs485Ch1.CUPara.Para.Mac[0], 6);
len += 6;
}
if(Eth.GateWay->ConfigPara.Rs485Ch2.CommUnitEnable == true && Eth.GateWay->ConfigPara.Rs485Ch2.Enable == true) {
UnitCommCnt++;
memcpy(&p[len], Eth.GateWay->ConfigPara.Rs485Ch2.CUPara.Para.Mac[0], 6);
len += 6;
}
for(int i = 0; i < COMMUNIT_NUM_MAX; i++) {
if(Eth.GateWay->ConfigPara.CommUnitArray[i].RegFlag == true) {
for(int j = 0; j < Eth.GateWay->ConfigPara.CommUnitArray[i].SensorN; j++)
{
memcpy(&p[len], Eth.GateWay->ConfigPara.CommUnitArray[i].Mac[j], 6);
len += 6;
UnitCommCnt++;
}
}
}
TxBuff[0] = (len - 3) & 0x00ff;
TxBuff[1] = ((len - 3) >> 8) & 0x00ff;
TxBuff[2] = NET_COMM_CMD_REG;
TxBuff[3] = UnitCommCnt & 0x00ff;
TxBuff[4] = (UnitCommCnt >> 8) & 0x00ff;
return len;
}
void EthLoopHandler(void)
{
rt_err_t result;
switch(Eth.Status) {
case ETH_IDEL:
rt_thread_delay(1);
if(Eth.ResetDelayCnt > 0) {
Eth.ResetDelayCnt--;
}
else {
Eth.Status = ETH_RESET;
}
break;
case ETH_RESET:
ETH_DBG_LOG("ETH Reset!\r\n");
ETH_RESET_CLR();
rt_thread_delay(10);
ETH_RESET_SET();
rt_thread_delay(2000);
Eth.Status = ETH_WAIT_LINK;
Eth.LinkWaitCnt = 0;
Eth.FirstRegFlag = true;
break;
case ETH_WAIT_LINK:
if(Eth.LinkWaitCnt == 0) {
ETH_DBG_LOG("ETH Waiting for module ready...\r\n");
rt_thread_delay(2000);
}
if(ETH_LINK_GET() == Reset) {
ETH_DBG_LOG("ETH Link OK!\r\n");
if(Eth.GateWay->SvrRegFlag == false) {
Eth.Status = ETH_REG_SVR;
}
else {
Eth.Status = ETH_WAIT_SEND;
}
}
else {
Eth.LinkWaitCnt++;
if(Eth.LinkWaitCnt >= ETH_LINK_WAIT_TIME_MAX) {
ETH_DBG_LOG("ETH Link Timeout, Reset!\r\n");
Eth.Status = ETH_OFF;
}
rt_thread_delay(1);
}
break;
case ETH_REG_SVR:
{
if(Eth.FirstRegFlag) {
ETH_DBG_LOG("ETH First Register, waiting for system stable...\r\n");
rt_thread_delay(ETH_FIRST_REG_DELAY);
Eth.FirstRegFlag = false;
}
uint8_t ret = GateWayRegister(Eth.TxBuff);
rt_mq_send(Eth.GateWay->NetSendData_MQ, Eth.TxBuff, ret);
ETH_DBG_LOG("ETH Register Server...\r\n");
Eth.Status = ETH_WAIT_SEND;
Eth.SendRetryCnt = 0;
}
break;
case ETH_WAIT_SEND:
result = rt_mq_recv(Eth.GateWay->NetSendData_MQ, Payload, ETH_RX_LEN_MAX, 100);
if(result == RT_EOK) {
Eth.TxLen = NetCommOrgData(Eth.GateWay, Payload, Eth.TxBuff);
Eth.Status = ETH_SEND_DATA;
}
else {
if(Eth.Status == ETH_RESET || Eth.Status == ETH_OFF)
return;
if(ETH_LINK_GET() != Reset) {
ETH_DBG_LOG("ETH Link Lost!\r\n");
Eth.Status = ETH_OFF;
}
else {
rt_thread_delay(1);
}
}
break;
case ETH_SEND_DATA:
HexToAscii(Eth.TxBuff, CommUnitSendASCII, Eth.TxLen);
EthRevTimeOutCnt = 0;
EthUartSend((uint8_t *)CommUnitSendASCII, Eth.TxLen * 2);
CommUnitSendASCII[Eth.TxLen * 2] = 0;
ETH_DBG_LOG("Eth Send: %s\r\n", CommUnitSendASCII);
Eth.Status = ETH_WAIT_RECV;
Eth.RecvTimeoutCnt = 0;
Eth.SendRetryCnt = 0;
break;
case ETH_WAIT_RECV:
rt_thread_delay(1);
Eth.RecvTimeoutCnt++;
if(Eth.RecvTimeoutCnt >= ETH_RECV_TIMEOUT_MAX) {
ETH_DBG_LOG("ETH Recv Timeout!\r\n");
Eth.SendRetryCnt++;
if(Eth.SendRetryCnt >= ETH_SEND_RETRY_MAX) {
ETH_DBG_LOG("ETH Send Retry Max, Reset!\r\n");
Eth.Status = ETH_OFF;
}
else {
if(Eth.GateWay->SvrRegFlag == false) {
Eth.Status = ETH_REG_SVR;
}
else {
Eth.Status = ETH_WAIT_SEND;
}
}
}
if(ETH_LINK_GET() != Reset) {
ETH_DBG_LOG("ETH Link Lost During Wait!\r\n");
Eth.Status = ETH_OFF;
}
if(Eth.GateWay->SvrRegFlag == true) {
ETH_DBG_LOG("ETH Register Success!\r\n");
Eth.Status = ETH_WAIT_SEND;
Eth.RecvTimeoutCnt = 0;
Eth.SendRetryCnt = 0;
}
break;
case ETH_OFF:
ETH_DBG_LOG("ETH Power Off!\r\n");
Eth.GateWay->SvrRegFlag = false;
Eth.Status = ETH_IDEL;
Eth.ResetDelayCnt = ETH_RESET_DELAY_TIME_MAX;
break;
default:
Eth.Status = ETH_RESET;
break;
}
}
static void EthInit(GateWayPara GateWay)
{
memset(&Eth, 0x00, sizeof(EthTask_t));
Eth.Status = ETH_RESET;
Eth.GateWay = GateWay;
}
void EthIrqCallbackHandler(uint8_t rData)
{
if(EthRevTimeOutCnt == 0)
EthRxLen = 0;
if(EthRxLen < ETH_RX_LEN_MAX) {
EthRxBuff[EthRxLen++] = rData;
}
EthRevTimeOutCnt = 3;
}
void EthOverHandler(void)
{
if(EthRevTimeOutCnt > 0)
EthRevTimeOutCnt--;
if(EthRxLen > 5 && EthRevTimeOutCnt == 0) {
EthRevTimeOutCnt = 20;
rt_sem_release(EthIRQ_Sem);
}
}
static void EthRev_Thread_Entry(void *parameter)
{
rt_err_t result;
char RxBuffTemp[ETH_RX_LEN_MAX];
uint8_t HexData[ETH_RX_LEN_MAX / 2];
GateWayPara GateWay = (GateWayPara)parameter;
rt_kprintf("EthRev Thread is running!\r\n");
while(1) {
result = rt_sem_take(EthIRQ_Sem, 500);
if(result == RT_EOK) {
memcpy(RxBuffTemp, EthRxBuff, EthRxLen);
RxBuffTemp[EthRxLen] = 0;
ETH_DBG_LOG("Eth Rev: %s\r\n", RxBuffTemp);
memset(HexData, 0x00, EthRxLen / 2);
uint8_t ret = AsciiToHex(RxBuffTemp, HexData, EthRxLen);
if(ret > 0)
GateWay->SvrRevCallBack(GateWay, HexData, ret);
memset(EthRxBuff, 0x00, ETH_RX_LEN_MAX);
EthRxLen = 0;
}
}
}
void Eth_Thread_Entry(void *parameter)
{
GateWayPara GateWay = (GateWayPara)parameter;
EthIRQ_Sem = rt_sem_create("ethi_sem", 0, RT_IPC_FLAG_FIFO);
if(EthIRQ_Sem == RT_NULL) {
rt_kprintf("EthIRQ Sem Create Failed!\r\n");
}
EthInit(GateWay);
ETH_RESET_CLR();
rt_thread_delay(10);
ETH_RESET_SET();
EthRev_Thread = rt_thread_create("EthRev", EthRev_Thread_Entry, parameter, 3000, 3, 20);
if (EthRev_Thread != RT_NULL) {
rt_thread_startup(EthRev_Thread);
}
else {
rt_kprintf("EthRev Thread Create Failed! Exit...\r\n");
return;
}
rt_kprintf("Eth Thread is running!\r\n");
while(1) {
if(GateWay->ConfigPara.Comm != ETH_COMM) {
rt_thread_delay(100);
continue;
}
EthLoopHandler();
}
}
+12 -12
View File
@@ -3,7 +3,7 @@
#include "CatOneTask.h" #include "CatOneTask.h"
#include "DebugCmd.h" #include "DebugCmd.h"
#define UC_OFFLINE_TIME_INTERVAL_MAX (2 * 60 * 60)//离线判断最大时间间隔,单位秒 #define UC_OFFLINE_TIME_INTERVAL_MAX (2 * 60 * 60)//离线判断最大时间间隔,单位秒
static rt_sem_t LoraDioIRQ_Sem = RT_NULL; static rt_sem_t LoraDioIRQ_Sem = RT_NULL;
static rt_thread_t LoraIRQ_Thread = RT_NULL; static rt_thread_t LoraIRQ_Thread = RT_NULL;
@@ -14,7 +14,7 @@ void LoraSend(uint8_t* pucBuff, uint8_t ucLen)
Sx1276LoRaSendBuffer(pucBuff, ucLen); Sx1276LoRaSendBuffer(pucBuff, ucLen);
} }
//Lora接收消息统一放到消息队列,由接收任务处理 //Lora接收消息统一放到消息队列,由接收任务处理
int LoraRevCallBack(GateWayPara GateWay, uint8_t *rData, uint16_t rLen) int LoraRevCallBack(GateWayPara GateWay, uint8_t *rData, uint16_t rLen)
{ {
uint8_t *sData; uint8_t *sData;
@@ -41,7 +41,7 @@ void LoraIRQ_Thread_Entry(void *parameter)
rt_err_t result; rt_err_t result;
static uint16_t LoraErrCnt = 0; static uint16_t LoraErrCnt = 0;
Debug_Printf("LoraRev Thread is running\r\n"); Debug_Printf("LoraRev Thread is running!\r\n");
while(1) { while(1) {
if(GateWay->ConfigPara.Lora.OnOff == false) { if(GateWay->ConfigPara.Lora.OnOff == false) {
rt_thread_delay(100); rt_thread_delay(100);
@@ -55,9 +55,9 @@ void LoraIRQ_Thread_Entry(void *parameter)
} }
else { else {
LoraErrCnt++; LoraErrCnt++;
if(LoraErrCnt > LORA_ERR_RESET_DLY_MAX) { //15分钟内没有收到lora数据重启lora模块 if(LoraErrCnt > LORA_ERR_RESET_DLY_MAX) { //15分钟内没有收到lora数据重启lora模块
LoraErrCnt = 0; LoraErrCnt = 0;
Debug_Printf("Lora Reset\r\n"); Debug_Printf("Lora Reset!\r\n");
Sx1276LoRaInit(LoraRevCallBack); Sx1276LoRaInit(LoraRevCallBack);
} }
} }
@@ -97,7 +97,7 @@ void Lora_Thread_Entry(void *parameter)
rt_thread_startup(LoraIRQ_Thread); rt_thread_startup(LoraIRQ_Thread);
Sx1276LoRaInit(LoraRevCallBack); Sx1276LoRaInit(LoraRevCallBack);
Debug_Printf("Lora Thread is running\r\n"); Debug_Printf("Lora Thread is running!\r\n");
#ifdef LORA_LOWPOWER #ifdef LORA_LOWPOWER
while(1) { while(1) {
if(GateWay->ConfigPara.Lora.OnOff == false) { if(GateWay->ConfigPara.Lora.OnOff == false) {
@@ -108,10 +108,10 @@ void Lora_Thread_Entry(void *parameter)
result = rt_mq_recv(GateWay->LoraRev_MQ, Payload, 256, 1000); result = rt_mq_recv(GateWay->LoraRev_MQ, Payload, 256, 1000);
if(result == RT_EOK) { if(result == RT_EOK) {
int ret = GateWay->CommUnitRevCallBack(GateWay, &Payload[1], Payload[0], LoRaSendBuffer); int ret = GateWay->CommUnitRevCallBack(GateWay, &Payload[1], Payload[0], LoRaSendBuffer);
if(ret == 0xff) //注册信息 if(ret == 0xff) //注册信息
continue; continue;
} }
else { //离线判断 else { //离线判断
for(int i = 0; i < COMMUNIT_NUM_MAX; i++) { for(int i = 0; i < COMMUNIT_NUM_MAX; i++) {
if(GateWay->ConfigPara.CommUnitArray[i].RegFlag == true) { if(GateWay->ConfigPara.CommUnitArray[i].RegFlag == true) {
if(GateWay->ConfigPara.CommUnitArray[i].CommErrCnt < UC_OFFLINE_TIME_INTERVAL_MAX) { if(GateWay->ConfigPara.CommUnitArray[i].CommErrCnt < UC_OFFLINE_TIME_INTERVAL_MAX) {
@@ -131,7 +131,7 @@ void Lora_Thread_Entry(void *parameter)
GateWay->ConfigPara.CommUnitArray[i].Mac[0][3], GateWay->ConfigPara.CommUnitArray[i].Mac[0][3],
GateWay->ConfigPara.CommUnitArray[i].Mac[0][4], GateWay->ConfigPara.CommUnitArray[i].Mac[0][4],
GateWay->ConfigPara.CommUnitArray[i].Mac[0][5]); GateWay->ConfigPara.CommUnitArray[i].Mac[0][5]);
CatOneEthSendQueue(MegData, 10); //发送离线消息 CatOneEthSendQueue(MegData, 10); //发送离线消息
} }
} }
} }
@@ -171,7 +171,7 @@ void Lora_Thread_Entry(void *parameter)
result = rt_mq_recv(GateWay->LoraRev_MQ, Payload, 256, 1000); result = rt_mq_recv(GateWay->LoraRev_MQ, Payload, 256, 1000);
if(result == RT_EOK) { if(result == RT_EOK) {
int ret = GateWay->CommUnitRevCallBack(GateWay, &Payload[1], Payload[0], Sx1276LoRaSendBuffer); int ret = GateWay->CommUnitRevCallBack(GateWay, &Payload[1], Payload[0], Sx1276LoRaSendBuffer);
if(ret == 0xff) //注册信息 if(ret == 0xff) //注册信息
continue; continue;
if(UnitCommSendFlag && GateWay->ConfigPara.CommUnitArray[SendUnitCommIdx].RevNewDataFlag) { if(UnitCommSendFlag && GateWay->ConfigPara.CommUnitArray[SendUnitCommIdx].RevNewDataFlag) {
@@ -179,7 +179,7 @@ void Lora_Thread_Entry(void *parameter)
SendUnitCommIdx++; SendUnitCommIdx++;
} }
} }
else if(UnitCommSendFlag) { //离线判断 else if(UnitCommSendFlag) { //离线判断
GateWay->ConfigPara.CommUnitArray[SendUnitCommIdx].CommErrCnt++; GateWay->ConfigPara.CommUnitArray[SendUnitCommIdx].CommErrCnt++;
if(GateWay->ConfigPara.CommUnitArray[SendUnitCommIdx].CommErrCnt == 10) { if(GateWay->ConfigPara.CommUnitArray[SendUnitCommIdx].CommErrCnt == 10) {
GateWay->ConfigPara.CommUnitArray[SendUnitCommIdx].CommErrCnt = 0; GateWay->ConfigPara.CommUnitArray[SendUnitCommIdx].CommErrCnt = 0;
@@ -190,7 +190,7 @@ void Lora_Thread_Entry(void *parameter)
MegData[2] = COMM_UNIT_CMD_READ; MegData[2] = COMM_UNIT_CMD_READ;
memcpy(&MegData[3], GateWay->ConfigPara.CommUnitArray[SendUnitCommIdx].Mac[0], 6); memcpy(&MegData[3], GateWay->ConfigPara.CommUnitArray[SendUnitCommIdx].Mac[0], 6);
MegData[9] = GateWay->ConfigPara.CommUnitArray[SendUnitCommIdx].CommStatus; MegData[9] = GateWay->ConfigPara.CommUnitArray[SendUnitCommIdx].CommStatus;
CatOneEthSendQueue(MegData, 10); //发送离线消息 CatOneEthSendQueue(MegData, 10); //发送离线消息
} }
} }
UnitCommSendFlag = false; UnitCommSendFlag = false;
+149 -149
View File
@@ -7,50 +7,50 @@
#include <stdlib.h> #include <stdlib.h>
#include "sx127x.h" #include "sx127x.h"
//传感器对应的数据长度 //传感器对应的数据长度
const uint8_t SensorTypeDataLen[] = { const uint8_t SensorTypeDataLen[] = {
0, //0x0000-保留 0, //0x0000-保留
30, //0x0001-应力场检测单元 30, //0x0001-应力场检测单元
12, //0x0002-渗透压检测单元 12, //0x0002-渗透压检测单元
14, //0x0003-弹性波导检测单元 14, //0x0003-弹性波导检测单元
10, //0x0004-介电质普检测单元 10, //0x0004-介电质普检测单元
6, //0x0005-微振动 6, //0x0005-微振动
6, //0x0006-三维连续变形检测单元 6, //0x0006-三维连续变形检测单元
3, //0x0007-通讯单元 3, //0x0007-通讯单元
18, //0x0008-三维应力检测单元 18, //0x0008-三维应力检测单元
9, //0x0009-激光示踪(主设备) 9, //0x0009-激光示踪(主设备)
12, //0x000A-水位计 12, //0x000A-水位计
0, //0x000B-保留 0, //0x000B-保留
0, //0x000C-保留 0, //0x000C-保留
14, //0x000D-二维应力场检测单元 14, //0x000D-二维应力场检测单元
9, //0x000E-裂缝检测单元 9, //0x000E-裂缝检测单元
0, //0x000F-预留 0, //0x000F-预留
8, //0x0010-姿态检测单元 8, //0x0010-姿态检测单元
4, //0x0011-激光位移检测单元 4, //0x0011-激光位移检测单元
4, //0x0012-表面应力传感器 4, //0x0012-表面应力传感器
4, //0x0013-压力传感器 4, //0x0013-压力传感器
4, //0x0014-微波测距传感器 4, //0x0014-微波测距传感器
0, //0x0015-表贴式结冰传感器 0, //0x0015-表贴式结冰传感器
0, //0x0016-埋入式结冰传感器 0, //0x0016-埋入式结冰传感器
4, //0x0017-单通道钢筋应力传感器 4, //0x0017-单通道钢筋应力传感器
4, //0x0018-单通道锚杆轴力传感器 4, //0x0018-单通道锚杆轴力传感器
32, //0x0019-8通道钢筋拉压力传感器 32, //0x0019-8通道钢筋拉压力传感器
32, //0x001A-8通道锚杆轴力传感器 32, //0x001A-8通道锚杆轴力传感器
0, //0x001B-16通道钢筋应力传感器 0, //0x001B-16通道钢筋应力传感器
0, //0x001C-16通道锚杆轴力传感器 0, //0x001C-16通道锚杆轴力传感器
0, //0x001D-爆炸冲击传感器 0, //0x001D-爆炸冲击传感器
0, //0x001E-随行支架传感器 0, //0x001E-随行支架传感器
0, //0x001F-冻融循环传感器 0, //0x001F-冻融循环传感器
19, //0x0020-位移计 19, //0x0020-位移计
}; };
/***************************************************************************************** /*****************************************************************************************
* 函数名称: CRC_Modbus * 函数名称: CRC_Modbus
* 功能描述: CRC16计算函数 * 功能描述: CRC16计算函数
* 参 数: wBase, 多项式 * 参 数: wBase, 多项式
Para,校验数据入口 Para,校验数据入口
Data, 校验数据长度入口 Data, 校验数据长度入口
* 返 回 值: crc16校验值 * 返 回 值: crc16校验值
*****************************************************************************************/ *****************************************************************************************/
uint16_t CRC_Modbus(uint16_t wBase, __IO uint8_t *para, uint16_t length) uint16_t CRC_Modbus(uint16_t wBase, __IO uint8_t *para, uint16_t length)
{ {
@@ -73,12 +73,12 @@ uint16_t CRC_Modbus(uint16_t wBase, __IO uint8_t *para, uint16_t length)
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: HexToAscii * 函数名称: HexToAscii
* 功能描述: HEX转换为ASCII字符串函数 * 功能描述: HEX转换为ASCII字符串函数
* 参 数: HexData, 16进制数据入口 * 参 数: HexData, 16进制数据入口
ASCData,转换后的ASCII数据 ASCData,转换后的ASCII数据
sLen, 需要转的16进制数据长度 sLen, 需要转的16进制数据长度
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void HexToAscii(uint8_t *HexData, char *ASCData, uint8_t sLen) void HexToAscii(uint8_t *HexData, char *ASCData, uint8_t sLen)
{ {
@@ -105,12 +105,12 @@ void HexToAscii(uint8_t *HexData, char *ASCData, uint8_t sLen)
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: AsciiToHex * 函数名称: AsciiToHex
* 功能描述: AscII字符串转换为16进制数组 * 功能描述: AscII字符串转换为16进制数组
* 参 数: ASCData, AscII字符串入口 * 参 数: ASCData, AscII字符串入口
HexData,转换后的数据 HexData,转换后的数据
sLen, 需要转的字符串长度 sLen, 需要转的字符串长度
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
uint8_t AsciiToHex(char *ASCData, uint8_t *HexData, uint8_t sLen) uint8_t AsciiToHex(char *ASCData, uint8_t *HexData, uint8_t sLen)
{ {
@@ -142,11 +142,11 @@ uint8_t AsciiToHex(char *ASCData, uint8_t *HexData, uint8_t sLen)
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: ReadHistoryData * 函数名称: ReadHistoryData
* 功能描述: 读取历史数据 * 功能描述: 读取历史数据
* 参 数: rData,输入数据 * 参 数: rData,输入数据
rLen, 输入数据长度 rLen, 输入数据长度
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
int ReadHistoryData(LogHeader LogH, uint8_t **Data, int Idx) int ReadHistoryData(LogHeader LogH, uint8_t **Data, int Idx)
{ {
@@ -154,11 +154,11 @@ int ReadHistoryData(LogHeader LogH, uint8_t **Data, int Idx)
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: NetCommOrgData * 函数名称: NetCommOrgData
* 功能描述: 上报数据组织 * 功能描述: 上报数据组织
* 参 数: MegData, 消息队列数据 * 参 数: MegData, 消息队列数据
OutData, 输出数据出口 OutData, 输出数据出口
* 返 回 值: 数据长度 * 返 回 值: 数据长度
*****************************************************************************************/ *****************************************************************************************/
int NetCommOrgData(GateWayPara GateWay, uint8_t *MegData, uint8_t *OutData) int NetCommOrgData(GateWayPara GateWay, uint8_t *MegData, uint8_t *OutData)
{ {
@@ -197,11 +197,11 @@ int NetCommOrgData(GateWayPara GateWay, uint8_t *MegData, uint8_t *OutData)
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: CheckCommUnitReg * 函数名称: CheckCommUnitReg
* 功能描述: 检查设备是否注册 * 功能描述: 检查设备是否注册
* 参 数: GateWay,网关句柄 * 参 数: GateWay,网关句柄
CommUnitMac, 待检查的设备MAC CommUnitMac, 待检查的设备MAC
* 返 回 值: 已注册返回非0,没注册返回-1 * 返 回 值: 已注册返回非0,没注册返回-1
*****************************************************************************************/ *****************************************************************************************/
int CheckCommUnitReg(GateWayPara GateWay, uint8_t *CommUnitMac) int CheckCommUnitReg(GateWayPara GateWay, uint8_t *CommUnitMac)
{ {
@@ -214,15 +214,15 @@ int CheckCommUnitReg(GateWayPara GateWay, uint8_t *CommUnitMac)
return -1; return -1;
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: CheckCommUnitExcl * 函数名称: CheckCommUnitExcl
* 功能描述: 检查设备是否排除 * 功能描述: 检查设备是否排除
* 参 数: GateWay,网关句柄 * 参 数: GateWay,网关句柄
CommUnitMac, 待检查的设备MAC CommUnitMac, 待检查的设备MAC
* 返 回 值: 已排除返回非0,没排除返回-1 * 返 回 值: 已排除返回非0,没排除返回-1
*****************************************************************************************/ *****************************************************************************************/
int CheckCommUnitExcl(GateWayPara GateWay, uint8_t *CommUnitMac) int CheckCommUnitExcl(GateWayPara GateWay, uint8_t *CommUnitMac)
{ {
for(int i = 0; i < COMMUNIT_NUM_MAX; i++) {//判断是否被排除 for(int i = 0; i < COMMUNIT_NUM_MAX; i++) {//判断是否被排除
if(memcmp(GateWay->ConfigPara.ExclCommUnit[i].ExclMac, CommUnitMac, 6) == 0) { if(memcmp(GateWay->ConfigPara.ExclCommUnit[i].ExclMac, CommUnitMac, 6) == 0) {
if(GateWay->ConfigPara.ExclCommUnit[i].ExclFlag == true) if(GateWay->ConfigPara.ExclCommUnit[i].ExclFlag == true)
return i; return i;
@@ -231,14 +231,14 @@ int CheckCommUnitExcl(GateWayPara GateWay, uint8_t *CommUnitMac)
return -1; return -1;
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: CommUnitSendCmd * 函数名称: CommUnitSendCmd
* 功能描述: 网关下发通讯单元指令函数 * 功能描述: 网关下发通讯单元指令函数
* 参 数: GateWay, 网关句柄 * 参 数: GateWay, 网关句柄
CommUnitMac,通讯单元MAC地址 CommUnitMac,通讯单元MAC地址
Cmd, 命令字 Cmd, 命令字
Payload, 下发数据 Payload, 下发数据
PayloadLen 下发数据长度 PayloadLen 下发数据长度
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void CommUnitCmdSend(GateWayPara GateWay, uint8_t *CommUnitMac, CommUnitCmd_m Cmd, uint8_t *Payload, uint16_t PayloadLen, SendData Send) void CommUnitCmdSend(GateWayPara GateWay, uint8_t *CommUnitMac, CommUnitCmd_m Cmd, uint8_t *Payload, uint16_t PayloadLen, SendData Send)
{ {
@@ -279,12 +279,12 @@ void CommUnitCmdSend(GateWayPara GateWay, uint8_t *CommUnitMac, CommUnitCmd_m Cm
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: CommUintOrgData * 函数名称: CommUintOrgData
* 功能描述: 上传传感器数据函数 * 功能描述: 上传传感器数据函数
* 参 数: CUPara, 通讯单元参数 * 参 数: CUPara, 通讯单元参数
CUData, 通讯单元数据 CUData, 通讯单元数据
sData, 数据入口 sData, 数据入口
* 返 回 值: 数据长度 * 返 回 值: 数据长度
*****************************************************************************************/ *****************************************************************************************/
int CommUintOrgData(GateWayPara GateWay, CommUnitPara CUPara, CommUnitData CUData, uint8_t *sData) int CommUintOrgData(GateWayPara GateWay, CommUnitPara CUPara, CommUnitData CUData, uint8_t *sData)
{ {
@@ -468,11 +468,11 @@ void DebugDisplaySensorData(int SensorIdx, uint16_t SensorType, uint8_t *SensorD
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: CommUnitAnalyze * 函数名称: CommUnitAnalyze
* 功能描述: 通讯单元数据解析,使用于LORA和RS485通讯 * 功能描述: 通讯单元数据解析,使用于LORA和RS485通讯
* 参 数: rData,输入数据 * 参 数: rData,输入数据
rLen, 输入数据长度 rLen, 输入数据长度
* 返 回 值: 返回接收到的通讯单元序号,错误返回-1 * 返 回 值: 返回接收到的通讯单元序号,错误返回-1
*****************************************************************************************/ *****************************************************************************************/
int CommUnitAnalyze(GateWayPara GateWay, uint8_t *rData, uint16_t rLen, SendData Response) int CommUnitAnalyze(GateWayPara GateWay, uint8_t *rData, uint16_t rLen, SendData Response)
{ {
@@ -500,12 +500,12 @@ int CommUnitAnalyze(GateWayPara GateWay, uint8_t *rData, uint16_t rLen, SendData
if((CUHeader->Cmd != COMM_UNIT_CMD_REG && CUHeader->Cmd != COMM_UNIT_CMD_GET_SIGNAL) && (memcmp(GateWay->ConfigPara.GwMac, CUHeader->GWMac, 6) != 0)) if((CUHeader->Cmd != COMM_UNIT_CMD_REG && CUHeader->Cmd != COMM_UNIT_CMD_GET_SIGNAL) && (memcmp(GateWay->ConfigPara.GwMac, CUHeader->GWMac, 6) != 0))
return -1; return -1;
CommUnitIdx = CheckCommUnitReg(GateWay, CUHeader->DevMac);//判断是否是已注册的设备 CommUnitIdx = CheckCommUnitReg(GateWay, CUHeader->DevMac);//判断是否是已注册的设备
if(CommUnitIdx < 0) { if(CommUnitIdx < 0) {
if(CUHeader->Cmd != COMM_UNIT_CMD_REG && CUHeader->Cmd != COMM_UNIT_CMD_GET_SIGNAL){//判断是否是注册请求 if(CUHeader->Cmd != COMM_UNIT_CMD_REG && CUHeader->Cmd != COMM_UNIT_CMD_GET_SIGNAL){//判断是否是注册请求
return -1; return -1;
} }
ExclCommUnit = CheckCommUnitExcl(GateWay, CUHeader->DevMac);//判断是否是被排除的设备 ExclCommUnit = CheckCommUnitExcl(GateWay, CUHeader->DevMac);//判断是否是被排除的设备
if(ExclCommUnit > -1) { if(ExclCommUnit > -1) {
return -1; return -1;
} }
@@ -520,7 +520,7 @@ int CommUnitAnalyze(GateWayPara GateWay, uint8_t *rData, uint16_t rLen, SendData
// if(CUHeader->PayloadLen < 2) // if(CUHeader->PayloadLen < 2)
// return -1; // return -1;
if(CommUnitIdx >= 0) { //设备存在 if(CommUnitIdx >= 0) { //设备存在
MAIN_DBG_LOG("\r\nCommUnit has already been registered! Mac:%02X-%02X-%02X-%02X-%02X-%02X\r\n", MAIN_DBG_LOG("\r\nCommUnit has already been registered! Mac:%02X-%02X-%02X-%02X-%02X-%02X\r\n",
CUHeader->DevMac[0], CUHeader->DevMac[1], CUHeader->DevMac[2], CUHeader->DevMac[3], CUHeader->DevMac[4], CUHeader->DevMac[5]); CUHeader->DevMac[0], CUHeader->DevMac[1], CUHeader->DevMac[2], CUHeader->DevMac[3], CUHeader->DevMac[4], CUHeader->DevMac[5]);
uint8_t ret = 1; uint8_t ret = 1;
@@ -544,7 +544,7 @@ int CommUnitAnalyze(GateWayPara GateWay, uint8_t *rData, uint16_t rLen, SendData
GateWay->ConfigPara.CommUnitArray[i].ContLaser = false; GateWay->ConfigPara.CommUnitArray[i].ContLaser = false;
GateWay->ConfigPara.CommUnitArray[i].LaserOnOff = false; GateWay->ConfigPara.CommUnitArray[i].LaserOnOff = false;
GateWay->ConfigPara.CommUnitArray[i].CUType = DEV_TYPE_EXT_COMMUNIT;//外置通讯单元 GateWay->ConfigPara.CommUnitArray[i].CUType = DEV_TYPE_EXT_COMMUNIT;//外置通讯单元
MAIN_DBG_LOG("\r\nCommUnit register succeed!\r\n"); MAIN_DBG_LOG("\r\nCommUnit register succeed!\r\n");
memcpy(GateWay->ConfigPara.CommUnitArray[i].MasterMac, &PayLoad[1], 6); memcpy(GateWay->ConfigPara.CommUnitArray[i].MasterMac, &PayLoad[1], 6);
@@ -570,7 +570,7 @@ int CommUnitAnalyze(GateWayPara GateWay, uint8_t *rData, uint16_t rLen, SendData
uint8_t ret = 1; uint8_t ret = 1;
CommUnitCmdSend(GateWay, CUHeader->DevMac, COMM_UNIT_CMD_REG, &ret, 1, Response); CommUnitCmdSend(GateWay, CUHeader->DevMac, COMM_UNIT_CMD_REG, &ret, 1, Response);
if(GateWay->SvrRegFlag) { //网关已注册,向服务发送新设备添加指令 if(GateWay->SvrRegFlag) { //网关已注册,向服务发送新设备添加指令
PayLoadLen = (GateWay->ConfigPara.CommUnitArray[i].SensorN * 6) + 2; PayLoadLen = (GateWay->ConfigPara.CommUnitArray[i].SensorN * 6) + 2;
MegData = rt_malloc(PayLoadLen + 3); MegData = rt_malloc(PayLoadLen + 3);
MegData[0] = PayLoadLen & 0x00ff;; MegData[0] = PayLoadLen & 0x00ff;;
@@ -578,9 +578,9 @@ int CommUnitAnalyze(GateWayPara GateWay, uint8_t *rData, uint16_t rLen, SendData
MegData[2] = NET_COMM_CMD_ADD_UNIT; MegData[2] = NET_COMM_CMD_ADD_UNIT;
MegData[3] = (GateWay->ConfigPara.CommUnitArray[i].SensorN) & 0x00ff;; MegData[3] = (GateWay->ConfigPara.CommUnitArray[i].SensorN) & 0x00ff;;
MegData[4] = (GateWay->ConfigPara.CommUnitArray[i].SensorN >> 8) & 0x00ff; MegData[4] = (GateWay->ConfigPara.CommUnitArray[i].SensorN >> 8) & 0x00ff;
for(uint8_t i = 0; i < GateWay->ConfigPara.CommUnitArray[i].SensorN; i++) for(uint8_t k = 0; k < GateWay->ConfigPara.CommUnitArray[i].SensorN; k++)
{ {
memcpy(&MegData[5], GateWay->ConfigPara.CommUnitArray[i].Mac[i], 6); memcpy(&MegData[5], GateWay->ConfigPara.CommUnitArray[i].Mac[k], 6);
} }
CatOneEthSendQueue(MegData, PayLoadLen+5); CatOneEthSendQueue(MegData, PayLoadLen+5);
rt_free(MegData); rt_free(MegData);
@@ -618,7 +618,7 @@ int CommUnitAnalyze(GateWayPara GateWay, uint8_t *rData, uint16_t rLen, SendData
else if(GateWay->ConfigPara.CommUnitArray[CommUnitIdx].ContLaser == true) else if(GateWay->ConfigPara.CommUnitArray[CommUnitIdx].ContLaser == true)
{ {
if(GateWay->ConfigPara.CommUnitArray[CommUnitIdx].LaserOnOff == true) if(GateWay->ConfigPara.CommUnitArray[CommUnitIdx].LaserOnOff == true)
{//打开激光 {//打开激光
CommUnitCmdSend(GateWay, CUHeader->DevMac, COMM_UNIT_CMD_CONT_LASER, (uint8_t *)&GateWay->ConfigPara.CommUnitArray[CommUnitIdx].LaserOnOff, 1, Response); CommUnitCmdSend(GateWay, CUHeader->DevMac, COMM_UNIT_CMD_CONT_LASER, (uint8_t *)&GateWay->ConfigPara.CommUnitArray[CommUnitIdx].LaserOnOff, 1, Response);
} }
MAIN_DBG_LOG("Issue laser control commands.\r\n"); MAIN_DBG_LOG("Issue laser control commands.\r\n");
@@ -653,7 +653,7 @@ int CommUnitAnalyze(GateWayPara GateWay, uint8_t *rData, uint16_t rLen, SendData
// int16_t Rssi; // int16_t Rssi;
// int8_t Snr; // int8_t Snr;
// SX1276LoCalcRssiSnr(&Rssi, &Snr); // SX1276LoCalcRssiSnr(&Rssi, &Snr);
MAIN_DBG_LOG("\r\nCUMac:%02X-%02X-%02X-%02X-%02X-%02X, Bat: %d%, SN: %dRssi:%d, Snr:%d\r\n", MAIN_DBG_LOG("\r\nCUMac:%02X-%02X-%02X-%02X-%02X-%02X, Bat: %d%, SN: %d, Rssi:%d, Snr:%d\r\n",
CUHeader->DevMac[0], CUHeader->DevMac[1], CUHeader->DevMac[2], CUHeader->DevMac[3], CUHeader->DevMac[4], CUHeader->DevMac[5], CUHeader->DevMac[0], CUHeader->DevMac[1], CUHeader->DevMac[2], CUHeader->DevMac[3], CUHeader->DevMac[4], CUHeader->DevMac[5],
GateWay->ConfigPara.CommUnitArray[CommUnitIdx].BatLevel, GateWay->ConfigPara.CommUnitArray[CommUnitIdx].BatLevel,
GateWay->ConfigPara.CommUnitArray[CommUnitIdx].SensorN, GateWay->ConfigPara.CommUnitArray[CommUnitIdx].SensorN,
@@ -661,7 +661,7 @@ int CommUnitAnalyze(GateWayPara GateWay, uint8_t *rData, uint16_t rLen, SendData
GateWay->ConfigPara.CommUnitArray[CommUnitIdx].Nsr); GateWay->ConfigPara.CommUnitArray[CommUnitIdx].Nsr);
for(int i = 0; i < GateWay->ConfigPara.CommUnitArray[CommUnitIdx].SensorN; i++) { for(int i = 0; i < GateWay->ConfigPara.CommUnitArray[CommUnitIdx].SensorN; i++) {
memcpy(GateWay->CUDataArray[CommUnitIdx].Data[i], &PayLoad[0], SensorTypeDataLen[GateWay->ConfigPara.CommUnitArray[CommUnitIdx].SensorType[i]]); memcpy(GateWay->CUDataArray[CommUnitIdx].Data[i], &PayLoad[0], SensorTypeDataLen[GateWay->ConfigPara.CommUnitArray[CommUnitIdx].SensorType[i]]);
//显示传感器数据 //显示传感器数据
DebugDisplaySensorData(i, GateWay->ConfigPara.CommUnitArray[CommUnitIdx].SensorType[i], GateWay->CUDataArray[CommUnitIdx].Data[i]); DebugDisplaySensorData(i, GateWay->ConfigPara.CommUnitArray[CommUnitIdx].SensorType[i], GateWay->CUDataArray[CommUnitIdx].Data[i]);
len += SensorTypeDataLen[GateWay->ConfigPara.CommUnitArray[CommUnitIdx].SensorType[i]]; len += SensorTypeDataLen[GateWay->ConfigPara.CommUnitArray[CommUnitIdx].SensorType[i]];
} }
@@ -701,7 +701,7 @@ int CommUnitAnalyze(GateWayPara GateWay, uint8_t *rData, uint16_t rLen, SendData
else if(GateWay->ConfigPara.CommUnitArray[CommUnitIdx].ContLaser == true) else if(GateWay->ConfigPara.CommUnitArray[CommUnitIdx].ContLaser == true)
{ {
if(GateWay->ConfigPara.CommUnitArray[CommUnitIdx].LaserOnOff == true) if(GateWay->ConfigPara.CommUnitArray[CommUnitIdx].LaserOnOff == true)
{//打开激光 {//打开激光
CommUnitCmdSend(GateWay, CUHeader->DevMac, COMM_UNIT_CMD_CONT_LASER, (uint8_t *)&GateWay->ConfigPara.CommUnitArray[CommUnitIdx].LaserOnOff, 1, Response); CommUnitCmdSend(GateWay, CUHeader->DevMac, COMM_UNIT_CMD_CONT_LASER, (uint8_t *)&GateWay->ConfigPara.CommUnitArray[CommUnitIdx].LaserOnOff, 1, Response);
} }
MAIN_DBG_LOG("Issue laser control commands.\r\n"); MAIN_DBG_LOG("Issue laser control commands.\r\n");
@@ -753,7 +753,7 @@ int CommUnitAnalyze(GateWayPara GateWay, uint8_t *rData, uint16_t rLen, SendData
else if(GateWay->ConfigPara.CommUnitArray[CommUnitIdx].ContLaser == true) else if(GateWay->ConfigPara.CommUnitArray[CommUnitIdx].ContLaser == true)
{ {
if(GateWay->ConfigPara.CommUnitArray[CommUnitIdx].LaserOnOff == true) if(GateWay->ConfigPara.CommUnitArray[CommUnitIdx].LaserOnOff == true)
{//打开激光 {//打开激光
CommUnitCmdSend(GateWay, CUHeader->DevMac, COMM_UNIT_CMD_CONT_LASER, (uint8_t *)&GateWay->ConfigPara.CommUnitArray[CommUnitIdx].LaserOnOff, 1, Response); CommUnitCmdSend(GateWay, CUHeader->DevMac, COMM_UNIT_CMD_CONT_LASER, (uint8_t *)&GateWay->ConfigPara.CommUnitArray[CommUnitIdx].LaserOnOff, 1, Response);
} }
MAIN_DBG_LOG("Issue laser control commands.\r\n"); MAIN_DBG_LOG("Issue laser control commands.\r\n");
@@ -773,7 +773,7 @@ int CommUnitAnalyze(GateWayPara GateWay, uint8_t *rData, uint16_t rLen, SendData
case COMM_UNIT_CMD_CONT_LASER:{ case COMM_UNIT_CMD_CONT_LASER:{
if(PayLoad[0] == 0) { if(PayLoad[0] == 0) {
//应答服务器 //应答服务器
MegData = rt_malloc(10); MegData = rt_malloc(10);
MegData[0] = 7; MegData[0] = 7;
MegData[1] = 0; MegData[1] = 0;
@@ -792,7 +792,7 @@ int CommUnitAnalyze(GateWayPara GateWay, uint8_t *rData, uint16_t rLen, SendData
CUHeader->DevMac[0], CUHeader->DevMac[1], CUHeader->DevMac[2], CUHeader->DevMac[3], CUHeader->DevMac[4], CUHeader->DevMac[5]); CUHeader->DevMac[0], CUHeader->DevMac[1], CUHeader->DevMac[2], CUHeader->DevMac[3], CUHeader->DevMac[4], CUHeader->DevMac[5]);
} }
else if(PayLoad[0] == 1){ else if(PayLoad[0] == 1){
//应答服务器 //应答服务器
MegData = rt_malloc(10); MegData = rt_malloc(10);
MegData[0] = 7; MegData[0] = 7;
MegData[1] = 0; MegData[1] = 0;
@@ -825,7 +825,7 @@ int CommUnitAnalyze(GateWayPara GateWay, uint8_t *rData, uint16_t rLen, SendData
else if(GateWay->ConfigPara.CommUnitArray[CommUnitIdx].ContLaser == true) else if(GateWay->ConfigPara.CommUnitArray[CommUnitIdx].ContLaser == true)
{ {
if(GateWay->ConfigPara.CommUnitArray[CommUnitIdx].LaserOnOff == true) if(GateWay->ConfigPara.CommUnitArray[CommUnitIdx].LaserOnOff == true)
{//打开激光 {//打开激光
CommUnitCmdSend(GateWay, CUHeader->DevMac, COMM_UNIT_CMD_CONT_LASER, (uint8_t *)&GateWay->ConfigPara.CommUnitArray[CommUnitIdx].LaserOnOff, 1, Response); CommUnitCmdSend(GateWay, CUHeader->DevMac, COMM_UNIT_CMD_CONT_LASER, (uint8_t *)&GateWay->ConfigPara.CommUnitArray[CommUnitIdx].LaserOnOff, 1, Response);
} }
MAIN_DBG_LOG("Issue laser control commands.\r\n"); MAIN_DBG_LOG("Issue laser control commands.\r\n");
@@ -863,11 +863,11 @@ int CommUnitAnalyze(GateWayPara GateWay, uint8_t *rData, uint16_t rLen, SendData
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: Cat1RevCallBack * 函数名称: Cat1RevCallBack
* 功能描述: 4G接收回调函数 * 功能描述: 4G接收回调函数
* 参 数: rData,数据输入接口 * 参 数: rData,数据输入接口
rLen, 数据长度输入接口 rLen, 数据长度输入接口
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
int Cat1EthRevCallBack(GateWayPara GateWay, uint8_t *rData, uint16_t rLen) int Cat1EthRevCallBack(GateWayPara GateWay, uint8_t *rData, uint16_t rLen)
{ {
@@ -909,7 +909,7 @@ int Cat1EthRevCallBack(GateWayPara GateWay, uint8_t *rData, uint16_t rLen)
memcpy(&CommUintMac[0], Data, 6); memcpy(&CommUintMac[0], Data, 6);
if(GateWay->ConfigPara.Rs485Ch1.Enable == true) { //内部通讯单元处理 if(GateWay->ConfigPara.Rs485Ch1.Enable == true) { //内部通讯单元处理
if(GateWay->ConfigPara.Rs485Ch1.CommUnitEnable == true) if(GateWay->ConfigPara.Rs485Ch1.CommUnitEnable == true)
CommUnitCmdSend(GateWay, CommUintMac, COMM_UNIT_CMD_TIME_SYNC, (uint8_t *)&NCHeader->Timestamp, 4, GateWay->ConfigPara.Rs485Ch1.RS485Send); CommUnitCmdSend(GateWay, CommUintMac, COMM_UNIT_CMD_TIME_SYNC, (uint8_t *)&NCHeader->Timestamp, 4, GateWay->ConfigPara.Rs485Ch1.RS485Send);
else else
@@ -921,18 +921,18 @@ int Cat1EthRevCallBack(GateWayPara GateWay, uint8_t *rData, uint16_t rLen)
else else
RS485CmdSend(GateWay, 2, &SCPara); RS485CmdSend(GateWay, 2, &SCPara);
} }
for(int i = 0; i < COMMUNIT_NUM_MAX; i++)//参数遍历 for(int i = 0; i < COMMUNIT_NUM_MAX; i++)//参数遍历
{ {
if(GateWay->ConfigPara.CommUnitArray[i].RegFlag == true) if(GateWay->ConfigPara.CommUnitArray[i].RegFlag == true)
GateWay->ConfigPara.CommUnitArray[i].TimeSyncFlag = true;//校时置位,等待下次此MAC主设备上传数据时下发校准指令(低功耗) GateWay->ConfigPara.CommUnitArray[i].TimeSyncFlag = true;//校时置位,等待下次此MAC主设备上传数据时下发校准指令(低功耗)
} }
//校准其他通讯网关 //校准其他通讯网关
//CommUnitCmdSend(GateWay, CommUintMac, COMM_UNIT_CMD_TIME_SYNC, &rData[14], 4, Sx1276LoRaSendBuffer); //CommUnitCmdSend(GateWay, CommUintMac, COMM_UNIT_CMD_TIME_SYNC, &rData[14], 4, Sx1276LoRaSendBuffer);
} }
switch(NCHeader->Cmd) { switch(NCHeader->Cmd) {
case NET_COMM_CMD_REG:{ case NET_COMM_CMD_REG:{
if(*Data == 1) { //注册成功 if(*Data == 1) { //注册成功
GateWay->SvrRegFlag = true; GateWay->SvrRegFlag = true;
//memcpy(GateWay->SvrMac, NCHeader->SvrMac, 6); //memcpy(GateWay->SvrMac, NCHeader->SvrMac, 6);
memset(GateWay->SvrMac, 0x00, 6); memset(GateWay->SvrMac, 0x00, 6);
@@ -947,7 +947,7 @@ int Cat1EthRevCallBack(GateWayPara GateWay, uint8_t *rData, uint16_t rLen)
break;} break;}
case NET_COMM_CMD_CAIL:{ case NET_COMM_CMD_CAIL:{
//应答服务器 //应答服务器
MegData = rt_malloc(4); MegData = rt_malloc(4);
MegData[0] = 1; MegData[0] = 1;
MegData[1] = 0; MegData[1] = 0;
@@ -956,16 +956,16 @@ int Cat1EthRevCallBack(GateWayPara GateWay, uint8_t *rData, uint16_t rLen)
sLen = 4; sLen = 4;
CatOneEthSendQueue(MegData, sLen); CatOneEthSendQueue(MegData, sLen);
rt_free(MegData); rt_free(MegData);
//开始校准 //开始校准
memcpy(&CommUintMac[0], Data, 6); memcpy(&CommUintMac[0], Data, 6);
if(memcmp(CommUintMac, Data, 6) == 0) { //校准所有传感器 if(memcmp(CommUintMac, Data, 6) == 0) { //校准所有传感器
SensorCommPara_t SCPara; SensorCommPara_t SCPara;
SCPara.Cmd = RS485_SENSOR_CMD_CAIL; SCPara.Cmd = RS485_SENSOR_CMD_CAIL;
SCPara.SensorAddr = 0x00; SCPara.SensorAddr = 0x00;
//SCPara.SensorType = 0x00; //SCPara.SensorType = 0x00;
SCPara.CmdParaLen = 0; SCPara.CmdParaLen = 0;
SCPara.CmdPara = NULL; SCPara.CmdPara = NULL;
if(GateWay->ConfigPara.Rs485Ch1.Enable == true) { //内部通讯单元处理 if(GateWay->ConfigPara.Rs485Ch1.Enable == true) { //内部通讯单元处理
if(GateWay->ConfigPara.Rs485Ch1.CommUnitEnable == true) if(GateWay->ConfigPara.Rs485Ch1.CommUnitEnable == true)
RS485CmdSend(GateWay, 1, &SCPara); RS485CmdSend(GateWay, 1, &SCPara);
else else
@@ -978,12 +978,12 @@ int Cat1EthRevCallBack(GateWayPara GateWay, uint8_t *rData, uint16_t rLen)
CommUnitCmdSend(GateWay, CommUintMac, COMM_UNIT_CMD_CAIL, NULL, 0, GateWay->ConfigPara.Rs485Ch2.RS485Send); CommUnitCmdSend(GateWay, CommUintMac, COMM_UNIT_CMD_CAIL, NULL, 0, GateWay->ConfigPara.Rs485Ch2.RS485Send);
} }
for(int i = 0; i < COMMUNIT_NUM_MAX; i++)//参数遍历 for(int i = 0; i < COMMUNIT_NUM_MAX; i++)//参数遍历
{ {
if(GateWay->ConfigPara.CommUnitArray[i].RegFlag == true) if(GateWay->ConfigPara.CommUnitArray[i].RegFlag == true)
GateWay->ConfigPara.CommUnitArray[i].CailFlag = true;//校准置位,等待下次此MAC主设备上传数据时下发校准指令(低功耗) GateWay->ConfigPara.CommUnitArray[i].CailFlag = true;//校准置位,等待下次此MAC主设备上传数据时下发校准指令(低功耗)
} }
//校准其他通讯网关 //校准其他通讯网关
//CommUnitCmdSend(GateWay, CommUintMac, COMM_UNIT_CMD_CAIL, NULL, 0, Sx1276LoRaSendBuffer); //CommUnitCmdSend(GateWay, CommUintMac, COMM_UNIT_CMD_CAIL, NULL, 0, Sx1276LoRaSendBuffer);
MAIN_DBG_LOG("Calibrate all device.\r\n"); MAIN_DBG_LOG("Calibrate all device.\r\n");
} }
@@ -993,15 +993,15 @@ int Cat1EthRevCallBack(GateWayPara GateWay, uint8_t *rData, uint16_t rLen)
return -1; return -1;
if(GateWay->ConfigPara.CommUnitArray[ret].CUType != DEV_TYPE_EXT_COMMUNIT) if(GateWay->ConfigPara.CommUnitArray[ret].CUType != DEV_TYPE_EXT_COMMUNIT)
return -1; return -1;
if((GateWay->ConfigPara.CommUnitArray[ret].Mac[0][3] / 0x80) != 1) {//判断是否为通讯单元(主设备) if((GateWay->ConfigPara.CommUnitArray[ret].Mac[0][3] / 0x80) != 1) {//判断是否为通讯单元(主设备)
if(GateWay->ConfigPara.CommUnitArray[ret].Mac[0][2] == 1)//判断通讯类型 if(GateWay->ConfigPara.CommUnitArray[ret].Mac[0][2] == 1)//判断通讯类型
{ {
GateWay->ConfigPara.CommUnitArray[ret].CailFlag = true;//校准置位,等待下次此MAC主设备上传数据时下发校准指令(低功耗) GateWay->ConfigPara.CommUnitArray[ret].CailFlag = true;//校准置位,等待下次此MAC主设备上传数据时下发校准指令(低功耗)
//CommUnitCmdSend(GateWay, CommUintMac, COMM_UNIT_CMD_CAIL, NULL, 0, Sx1276LoRaSendBuffer);//查询模式 //CommUnitCmdSend(GateWay, CommUintMac, COMM_UNIT_CMD_CAIL, NULL, 0, Sx1276LoRaSendBuffer);//查询模式
MAIN_DBG_LOG("Calibrate Mac:%02X-%02X-%02X-%02X-%02X-%02X\r\n", MAIN_DBG_LOG("Calibrate Mac:%02X-%02X-%02X-%02X-%02X-%02X\r\n",
CommUintMac[0], CommUintMac[1], CommUintMac[2], CommUintMac[3], CommUintMac[4], CommUintMac[5]); CommUintMac[0], CommUintMac[1], CommUintMac[2], CommUintMac[3], CommUintMac[4], CommUintMac[5]);
} }
else if(GateWay->ConfigPara.CommUnitArray[ret].Mac[0][2] == 2)//判断通讯类型 else if(GateWay->ConfigPara.CommUnitArray[ret].Mac[0][2] == 2)//判断通讯类型
{ {
if(GateWay->ConfigPara.Rs485Ch1.Enable == true && !GateWay->ConfigPara.Rs485Ch1.CommUnitEnable) if(GateWay->ConfigPara.Rs485Ch1.Enable == true && !GateWay->ConfigPara.Rs485Ch1.CommUnitEnable)
{ {
@@ -1024,7 +1024,7 @@ int Cat1EthRevCallBack(GateWayPara GateWay, uint8_t *rData, uint16_t rLen)
MegData = rt_malloc(512); MegData = rt_malloc(512);
uint16_t SensorCnt = 0; uint16_t SensorCnt = 0;
sLen = 5; sLen = 5;
if(GateWay->ConfigPara.Rs485Ch1.Enable == true) { //内部通讯单元处理 if(GateWay->ConfigPara.Rs485Ch1.Enable == true) { //内部通讯单元处理
if(GateWay->ConfigPara.Rs485Ch1.CommUnitEnable == true) { if(GateWay->ConfigPara.Rs485Ch1.CommUnitEnable == true) {
SensorCnt++; SensorCnt++;
memcpy(&MegData[sLen], GateWay->ConfigPara.Rs485Ch1.CUPara.Para.Mac[0], 6); memcpy(&MegData[sLen], GateWay->ConfigPara.Rs485Ch1.CUPara.Para.Mac[0], 6);
@@ -1055,9 +1055,9 @@ int Cat1EthRevCallBack(GateWayPara GateWay, uint8_t *rData, uint16_t rLen)
MegData[sLen++] = (GateWay->HistoryNum >> 8) & 0x00ff; MegData[sLen++] = (GateWay->HistoryNum >> 8) & 0x00ff;
MegData[sLen++] = (GateWay->HistoryNum >> 16) & 0x00ff; MegData[sLen++] = (GateWay->HistoryNum >> 16) & 0x00ff;
MegData[sLen++] = (GateWay->HistoryNum >> 24) & 0x00ff; MegData[sLen++] = (GateWay->HistoryNum >> 24) & 0x00ff;
MegData[0] = (sLen - 3) & 0x00ff;//数据体长度 MegData[0] = (sLen - 3) & 0x00ff;//数据体长度
MegData[1] = ((sLen - 3) >> 8) & 0x00ff;//数据体长度 MegData[1] = ((sLen - 3) >> 8) & 0x00ff;//数据体长度
MegData[2] = NET_COMM_CMD_READ_GW_INFO;//指令 MegData[2] = NET_COMM_CMD_READ_GW_INFO;//指令
MegData[3] = SensorCnt&0xFF; MegData[3] = SensorCnt&0xFF;
MegData[4] = (SensorCnt >> 8)&0xFF; MegData[4] = (SensorCnt >> 8)&0xFF;
CatOneEthSendQueue(MegData, sLen); CatOneEthSendQueue(MegData, sLen);
@@ -1066,7 +1066,7 @@ int Cat1EthRevCallBack(GateWayPara GateWay, uint8_t *rData, uint16_t rLen)
} }
case NET_COMM_CMD_GW_PARA_CONFIG:{ case NET_COMM_CMD_GW_PARA_CONFIG:{
//应答服务器 //应答服务器
MegData = rt_malloc(4); MegData = rt_malloc(4);
MegData[0] = 1; MegData[0] = 1;
MegData[1] = 0; MegData[1] = 0;
@@ -1116,7 +1116,7 @@ int Cat1EthRevCallBack(GateWayPara GateWay, uint8_t *rData, uint16_t rLen)
break; break;
case NET_COMM_CMD_ADD_UNIT:{ case NET_COMM_CMD_ADD_UNIT:{
if(*Data == 1) { //录入成功 if(*Data == 1) { //录入成功
MAIN_DBG_LOG("Adding CommUnit succeeded...\r\n"); MAIN_DBG_LOG("Adding CommUnit succeeded...\r\n");
} }
else { else {
@@ -1125,7 +1125,7 @@ int Cat1EthRevCallBack(GateWayPara GateWay, uint8_t *rData, uint16_t rLen)
break;} break;}
case NET_COMM_CMD_LP_DEV_CONFIG: { case NET_COMM_CMD_LP_DEV_CONFIG: {
//开始配置 //开始配置
SvrDownLPDevConfigPara_t *LPDevConfig; SvrDownLPDevConfigPara_t *LPDevConfig;
LPDevConfig = (SvrDownLPDevConfigPara_t *)Data; LPDevConfig = (SvrDownLPDevConfigPara_t *)Data;
int ret = memcmp(CommUintMac, LPDevConfig->CommDevAddr, 6); int ret = memcmp(CommUintMac, LPDevConfig->CommDevAddr, 6);
@@ -1156,7 +1156,7 @@ int Cat1EthRevCallBack(GateWayPara GateWay, uint8_t *rData, uint16_t rLen)
MAIN_DBG_LOG("Main equipment parameter configuration. Mac:%02X-%02X-%02X-%02X-%02X-%02X\r\n", MAIN_DBG_LOG("Main equipment parameter configuration. Mac:%02X-%02X-%02X-%02X-%02X-%02X\r\n",
CommUintMac[0], CommUintMac[1], CommUintMac[2], CommUintMac[3], CommUintMac[4], CommUintMac[5]); CommUintMac[0], CommUintMac[1], CommUintMac[2], CommUintMac[3], CommUintMac[4], CommUintMac[5]);
} }
//应答服务器 //应答服务器
MegData = rt_malloc(4); MegData = rt_malloc(4);
MegData[0] = 1; MegData[0] = 1;
MegData[1] = 0; MegData[1] = 0;
@@ -1174,32 +1174,32 @@ int Cat1EthRevCallBack(GateWayPara GateWay, uint8_t *rData, uint16_t rLen)
return -1; return -1;
if(GateWay->ConfigPara.CommUnitArray[ret].CUType != DEV_TYPE_EXT_COMMUNIT) if(GateWay->ConfigPara.CommUnitArray[ret].CUType != DEV_TYPE_EXT_COMMUNIT)
return -1; return -1;
if((GateWay->ConfigPara.CommUnitArray[ret].Mac[0][3] / 0x80) != 1) {//判断是否为通讯单元(主设备) if((GateWay->ConfigPara.CommUnitArray[ret].Mac[0][3] / 0x80) != 1) {//判断是否为通讯单元(主设备)
if(GateWay->ConfigPara.CommUnitArray[ret].Mac[0][2] == 1)//判断通讯类型 if(GateWay->ConfigPara.CommUnitArray[ret].Mac[0][2] == 1)//判断通讯类型
{ {
GateWay->ConfigPara.CommUnitArray[ret].LaserOnOff = Data[6];//服务器下发打开或者关闭激光 GateWay->ConfigPara.CommUnitArray[ret].LaserOnOff = Data[6];//服务器下发打开或者关闭激光
if(GateWay->ConfigPara.CommUnitArray[ret].LaserOnOff == true) if(GateWay->ConfigPara.CommUnitArray[ret].LaserOnOff == true)
{ {
GateWay->ConfigPara.CommUnitArray[ret].ContLaser = true;//控制激光,等待下次此MAC主设备上传数据时下发打开激光指令(低功耗) GateWay->ConfigPara.CommUnitArray[ret].ContLaser = true;//控制激光,等待下次此MAC主设备上传数据时下发打开激光指令(低功耗)
MAIN_DBG_LOG("Waiting for the laser response. Mac:%02X-%02X-%02X-%02X-%02X-%02X\r\n", MAIN_DBG_LOG("Waiting for the laser response. Mac:%02X-%02X-%02X-%02X-%02X-%02X\r\n",
CommUintMac[0], CommUintMac[1], CommUintMac[2], CommUintMac[3], CommUintMac[4], CommUintMac[5]); CommUintMac[0], CommUintMac[1], CommUintMac[2], CommUintMac[3], CommUintMac[4], CommUintMac[5]);
} }
else if(GateWay->ConfigPara.CommUnitArray[ret].LaserOnOff == false) else if(GateWay->ConfigPara.CommUnitArray[ret].LaserOnOff == false)
{//直接发送 {//直接发送
MAIN_DBG_LOG("Waiting for the laser response. Mac:%02X-%02X-%02X-%02X-%02X-%02X\r\n", MAIN_DBG_LOG("Waiting for the laser response. Mac:%02X-%02X-%02X-%02X-%02X-%02X\r\n",
CommUintMac[0], CommUintMac[1], CommUintMac[2], CommUintMac[3], CommUintMac[4], CommUintMac[5]); CommUintMac[0], CommUintMac[1], CommUintMac[2], CommUintMac[3], CommUintMac[4], CommUintMac[5]);
GateWay->ConfigPara.CommUnitArray[ret].ContLaser = false; GateWay->ConfigPara.CommUnitArray[ret].ContLaser = false;
CommUnitCmdSend(GateWay, CommUintMac, COMM_UNIT_CMD_CONT_LASER, (uint8_t *)&GateWay->ConfigPara.CommUnitArray[ret].LaserOnOff, 1, Sx1276LoRaSendBuffer);//查询模式 CommUnitCmdSend(GateWay, CommUintMac, COMM_UNIT_CMD_CONT_LASER, (uint8_t *)&GateWay->ConfigPara.CommUnitArray[ret].LaserOnOff, 1, Sx1276LoRaSendBuffer);//查询模式
} }
} }
else if(GateWay->ConfigPara.CommUnitArray[ret].Mac[0][2] == 2)//判断通讯类型 else if(GateWay->ConfigPara.CommUnitArray[ret].Mac[0][2] == 2)//判断通讯类型
{ {
if(GateWay->ConfigPara.Rs485Ch1.Enable == true && !GateWay->ConfigPara.Rs485Ch1.CommUnitEnable) if(GateWay->ConfigPara.Rs485Ch1.Enable == true && !GateWay->ConfigPara.Rs485Ch1.CommUnitEnable)
{ {
GateWay->ConfigPara.CommUnitArray[ret].LaserOnOff = Data[6];//服务器下发打开或者关闭激光 GateWay->ConfigPara.CommUnitArray[ret].LaserOnOff = Data[6];//服务器下发打开或者关闭激光
if(GateWay->ConfigPara.CommUnitArray[ret].LaserOnOff == true) if(GateWay->ConfigPara.CommUnitArray[ret].LaserOnOff == true)
{ {
GateWay->ConfigPara.CommUnitArray[ret].ContLaser = true;//控制激光,等待下次此MAC主设备上传数据时下发打开激光指令(低功耗) GateWay->ConfigPara.CommUnitArray[ret].ContLaser = true;//控制激光,等待下次此MAC主设备上传数据时下发打开激光指令(低功耗)
} }
else if(GateWay->ConfigPara.CommUnitArray[ret].LaserOnOff == false) else if(GateWay->ConfigPara.CommUnitArray[ret].LaserOnOff == false)
{ {
@@ -1208,10 +1208,10 @@ int Cat1EthRevCallBack(GateWayPara GateWay, uint8_t *rData, uint16_t rLen)
} }
else if(GateWay->ConfigPara.Rs485Ch2.Enable == true && !GateWay->ConfigPara.Rs485Ch2.CommUnitEnable) else if(GateWay->ConfigPara.Rs485Ch2.Enable == true && !GateWay->ConfigPara.Rs485Ch2.CommUnitEnable)
{ {
GateWay->ConfigPara.CommUnitArray[ret].LaserOnOff = Data[6];//服务器下发打开或者关闭激光 GateWay->ConfigPara.CommUnitArray[ret].LaserOnOff = Data[6];//服务器下发打开或者关闭激光
if(GateWay->ConfigPara.CommUnitArray[ret].LaserOnOff == true) if(GateWay->ConfigPara.CommUnitArray[ret].LaserOnOff == true)
{ {
GateWay->ConfigPara.CommUnitArray[ret].ContLaser = true;//控制激光,等待下次此MAC主设备上传数据时下发打开激光指令(低功耗) GateWay->ConfigPara.CommUnitArray[ret].ContLaser = true;//控制激光,等待下次此MAC主设备上传数据时下发打开激光指令(低功耗)
} }
else if(GateWay->ConfigPara.CommUnitArray[ret].LaserOnOff == false) else if(GateWay->ConfigPara.CommUnitArray[ret].LaserOnOff == false)
{ {
+59 -59
View File
@@ -17,13 +17,13 @@ SensorCommPara_t SComm2Para;
const uint8_t RS485SensorCmdPayLoadLen[RS485_SENSOR_CMD_END] = {0, 0, 0, 1, 0}; const uint8_t RS485SensorCmdPayLoadLen[RS485_SENSOR_CMD_END] = {0, 0, 0, 1, 0};
/***************************************************************************************** /*****************************************************************************************
* 函数名称: SavSensorData * 函数名称: SavSensorData
* 功能描述: 记录传感器数据 * 功能描述: 记录传感器数据
* 参 数: SensorIdx, 传感器序号 * 参 数: SensorIdx, 传感器序号
Para,传感器结构指针 Para,传感器结构指针
Data, 传感器数据 Data, 传感器数据
Len, 传感器数据长度 Len, 传感器数据长度
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
static void SavSensorData(uint8_t SensorIdx, CommUnitData CUData, uint8_t *Data, uint8_t Len) static void SavSensorData(uint8_t SensorIdx, CommUnitData CUData, uint8_t *Data, uint8_t Len)
{ {
@@ -36,13 +36,13 @@ static void SavSensorData(uint8_t SensorIdx, CommUnitData CUData, uint8_t *Data,
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: RS485Analyze * 函数名称: RS485Analyze
* 功能描述: 485数据解析 * 功能描述: 485数据解析
* 参 数: SCPara, 传感器发送参数 * 参 数: SCPara, 传感器发送参数
Para, 传感器结构指针 Para, 传感器结构指针
rData, 传感器数据入口 rData, 传感器数据入口
rLen, 传感器数据长度 rLen, 传感器数据长度
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void RS485Analyze(GateWayPara GateWay, SensorCommPara SCPara, CommUnit Para, uint8_t *rData, uint8_t rLen) void RS485Analyze(GateWayPara GateWay, SensorCommPara SCPara, CommUnit Para, uint8_t *rData, uint8_t rLen)
{ {
@@ -121,13 +121,13 @@ static void update_on_start(uint8_t* frame, int len, uint8_t* pload, int size)
cfg.PackageNum = pReq->PackageNum; cfg.PackageNum = pReq->PackageNum;
cfg.AppSize = pReq->AppSize; cfg.AppSize = pReq->AppSize;
/** /**
操作FALSH ,写升级参数 操作FALSH ,写升级参数
**/ **/
dev_boot_write_param(cfg); dev_boot_write_param(cfg);
update_send_cmd(0x01, 1, pReq->PackageNum); update_send_cmd(0x01, 1, pReq->PackageNum);
//重启进入BOOT //重启进入BOOT
NVIC_SystemReset(); NVIC_SystemReset();
} }
@@ -179,10 +179,10 @@ static int update_process(void* frame, int len)
/***************************************************************************************** /*****************************************************************************************
* 函数名称: RS485SensorCmdSend * 函数名称: RS485SensorCmdSend
* 功能描述: 下发传感器指令函数 * 功能描述: 下发传感器指令函数
* 参 数: Para,通讯参数入口 * 参 数: Para,通讯参数入口
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
static void RS485SensorCmdSend(GateWayPara GateWay, SensorCommPara SensorComm) static void RS485SensorCmdSend(GateWayPara GateWay, SensorCommPara SensorComm)
{ {
@@ -217,17 +217,17 @@ static void RS485SensorCmdSend(GateWayPara GateWay, SensorCommPara SensorComm)
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: RS485SensorCmdSend * 函数名称: RS485SensorCmdSend
* 功能描述: 下发传感器指令函数 * 功能描述: 下发传感器指令函数
* 参 数: CommUintAddr 通讯单元地址 * 参 数: CommUintAddr 通讯单元地址
Para,通讯参数入口 Para,通讯参数入口
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void RS485CmdSend(GateWayPara GateWay, uint8_t CommUintAddr, SensorCommPara SensorComm) void RS485CmdSend(GateWayPara GateWay, uint8_t CommUintAddr, SensorCommPara SensorComm)
{ {
SensorCommPara SC; SensorCommPara SC;
if(CommUintAddr) if(CommUintAddr == 1)
SC = &SComm1Para; SC = &SComm1Para;
else else
SC = &SComm2Para; SC = &SComm2Para;
@@ -243,12 +243,12 @@ void RS485CmdSend(GateWayPara GateWay, uint8_t CommUintAddr, SensorCommPara Sens
/***************************************************************************************** /*****************************************************************************************
* 函数名称: RS485LoopHandler * 函数名称: RS485LoopHandler
* 功能描述: RS485循环处理函数 * 功能描述: RS485循环处理函数
* 参 数: GateWay, 网关参数句柄 * 参 数: GateWay, 网关参数句柄
RS485Ch, RS485通道句柄 RS485Ch, RS485通道句柄
SCPara RS485通讯句柄 SCPara RS485通讯句柄
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
static uint8_t CommUintData[512]; static uint8_t CommUintData[512];
int test = 0; int test = 0;
@@ -266,8 +266,8 @@ void RS485LoopHandler(GateWayPara GateWay, RS485Para RS485Ch, SensorCommPara SCP
return; return;
} }
if(RS485Ch->CommUnitEnable == true) { //使用内置通讯单元 if(RS485Ch->CommUnitEnable == true) { //使用内置通讯单元
if(RS485Ch->QuerySensorFlag == true) { //开机查找传感器 if(RS485Ch->QuerySensorFlag == true) { //开机查找传感器
if(SCPara->SensorCnt < SENSOR_NUM_MAX) { if(SCPara->SensorCnt < SENSOR_NUM_MAX) {
rt_thread_delay(50); rt_thread_delay(50);
SCPara->Cmd = RS485_SENSOR_CMD_QUERY; SCPara->Cmd = RS485_SENSOR_CMD_QUERY;
@@ -328,7 +328,7 @@ void RS485LoopHandler(GateWayPara GateWay, RS485Para RS485Ch, SensorCommPara SCP
} }
} }
} }
else { //读取外置通讯单元 else { //读取外置通讯单元
if(SCPara->RS485CommUnitReadTimeDelay >= (GateWay->ConfigPara.CommUnitReadInterval * 5) && SCPara->SendFlag == false) { if(SCPara->RS485CommUnitReadTimeDelay >= (GateWay->ConfigPara.CommUnitReadInterval * 5) && SCPara->SendFlag == false) {
if(SCPara->SendUnitCommIdx < COMMUNIT_NUM_MAX) { if(SCPara->SendUnitCommIdx < COMMUNIT_NUM_MAX) {
if(GateWay->ConfigPara.CommUnitArray[SCPara->SendUnitCommIdx].RegFlag && if(GateWay->ConfigPara.CommUnitArray[SCPara->SendUnitCommIdx].RegFlag &&
@@ -365,10 +365,10 @@ void RS485LoopHandler(GateWayPara GateWay, RS485Para RS485Ch, SensorCommPara SCP
RxLenTemp = SCPara->RS485RxLen; RxLenTemp = SCPara->RS485RxLen;
// memset(SCPara->RS485RxBuff, 0x00, RS485_RX_BUFF_LEN_MAX); // memset(SCPara->RS485RxBuff, 0x00, RS485_RX_BUFF_LEN_MAX);
SCPara->RS485RxLen = 0; SCPara->RS485RxLen = 0;
if(RxBuffTemp[0] == 0x7A && RS485Ch->UpgradeEnable == true) { //升级 if(RxBuffTemp[0] == 0x7A && RS485Ch->UpgradeEnable == true) { //升级
update_process(RxBuffTemp,RxLenTemp); update_process(RxBuffTemp,RxLenTemp);
} }
else if(RxBuffTemp[0] == 0x7A && RS485Ch->CommUnitEnable == true) { //内置通讯单元数据解析 else if(RxBuffTemp[0] == 0x7A && RS485Ch->CommUnitEnable == true) { //内置通讯单元数据解析
if(SCPara->SendFlag == false) { if(SCPara->SendFlag == false) {
SCPara->RS485RxLen = 0; SCPara->RS485RxLen = 0;
return; return;
@@ -376,12 +376,12 @@ void RS485LoopHandler(GateWayPara GateWay, RS485Para RS485Ch, SensorCommPara SCP
RS485Analyze(GateWay, SCPara, &RS485Ch->CUData, RxBuffTemp, RxLenTemp); RS485Analyze(GateWay, SCPara, &RS485Ch->CUData, RxBuffTemp, RxLenTemp);
//rt_mutex_release(GateWay->UartRevMutex); //rt_mutex_release(GateWay->UartRevMutex);
} }
else if(RxBuffTemp[0] == 0x7B && RS485Ch->CommUnitEnable == false){ //读取外部通讯单元数据解析 else if(RxBuffTemp[0] == 0x7B && RS485Ch->CommUnitEnable == false){ //读取外部通讯单元数据解析
if(SCPara == &SComm1Para) if(SCPara == &SComm1Para)
ret = GateWay->CommUnitRevCallBack(GateWay, RxBuffTemp, RxLenTemp, GateWay->ConfigPara.Rs485Ch1.RS485Send); ret = GateWay->CommUnitRevCallBack(GateWay, RxBuffTemp, RxLenTemp, GateWay->ConfigPara.Rs485Ch1.RS485Send);
else else
ret = GateWay->CommUnitRevCallBack(GateWay, RxBuffTemp, RxLenTemp, GateWay->ConfigPara.Rs485Ch2.RS485Send); ret = GateWay->CommUnitRevCallBack(GateWay, RxBuffTemp, RxLenTemp, GateWay->ConfigPara.Rs485Ch2.RS485Send);
if(ret == 0xff) { //注册信息 if(ret == 0xff) { //注册信息
SCPara->RS485RxLen = 0; SCPara->RS485RxLen = 0;
return; return;
} }
@@ -393,7 +393,7 @@ void RS485LoopHandler(GateWayPara GateWay, RS485Para RS485Ch, SensorCommPara SCP
return; return;
} }
} }
else { //调试命令解析 else { //调试命令解析
DebugAnalyze(GateWay, RxBuffTemp, RxLenTemp); DebugAnalyze(GateWay, RxBuffTemp, RxLenTemp);
} }
SCPara->RS485RxLen = 0; SCPara->RS485RxLen = 0;
@@ -426,7 +426,7 @@ void RS485LoopHandler(GateWayPara GateWay, RS485Para RS485Ch, SensorCommPara SCP
MegData[2] = COMM_UNIT_CMD_READ; MegData[2] = COMM_UNIT_CMD_READ;
memcpy(&MegData[3], GateWay->ConfigPara.CommUnitArray[SCPara->SendUnitCommIdx].Mac[0], 6); memcpy(&MegData[3], GateWay->ConfigPara.CommUnitArray[SCPara->SendUnitCommIdx].Mac[0], 6);
MegData[9] = GateWay->ConfigPara.CommUnitArray[SCPara->SendUnitCommIdx].CommStatus; MegData[9] = GateWay->ConfigPara.CommUnitArray[SCPara->SendUnitCommIdx].CommStatus;
CatOneEthSendQueue(MegData, 10); //发送离线消息 CatOneEthSendQueue(MegData, 10); //发送离线消息
} }
} }
SCPara->SendUnitCommIdx++; SCPara->SendUnitCommIdx++;
@@ -436,10 +436,10 @@ void RS485LoopHandler(GateWayPara GateWay, RS485Para RS485Ch, SensorCommPara SCP
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: RS485Ch1_Thread_Entry * 函数名称: RS485Ch1_Thread_Entry
* 功能描述: RS485通道1任务函数 * 功能描述: RS485通道1任务函数
* 参 数: 任务参数入口 * 参 数: 任务参数入口
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void RS485Ch1_Thread_Entry(void *parameter) void RS485Ch1_Thread_Entry(void *parameter)
{ {
@@ -469,7 +469,7 @@ void RS485Ch1_Thread_Entry(void *parameter)
if(SCPara->RS485Rev_Sem == RT_NULL) { if(SCPara->RS485Rev_Sem == RT_NULL) {
Debug_Printf("RS485Ch1Rev Sem Create Failed!\r\n"); Debug_Printf("RS485Ch1Rev Sem Create Failed!\r\n");
} }
Debug_Printf("RS485Ch1Rev Thread is running\r\n"); Debug_Printf("RS485Ch1Rev Thread is running\r\n");
rt_thread_delay(3000); rt_thread_delay(3000);
SCPara->InitOverFlag = true; SCPara->InitOverFlag = true;
@@ -483,10 +483,10 @@ void RS485Ch1_Thread_Entry(void *parameter)
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: RS485Ch1RxIrqCallback * 函数名称: RS485Ch1RxIrqCallback
* 功能描述: RS485通道1中断处理回调函数 * 功能描述: RS485通道1中断处理回调函数
* 参 数: rData 接收到的数据 * 参 数: rData 接收到的数据
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void RS485Ch1RxIrqCallback(uint8_t rData) void RS485Ch1RxIrqCallback(uint8_t rData)
{ {
@@ -500,10 +500,10 @@ void RS485Ch1RxIrqCallback(uint8_t rData)
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: RS485Ch2_Thread_Entry * 函数名称: RS485Ch2_Thread_Entry
* 功能描述: RS485通道1任务函数 * 功能描述: RS485通道1任务函数
* 参 数: 任务参数入口 * 参 数: 任务参数入口
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void RS485Ch2_Thread_Entry(void *parameter) void RS485Ch2_Thread_Entry(void *parameter)
{ {
@@ -533,7 +533,7 @@ void RS485Ch2_Thread_Entry(void *parameter)
if(SCPara->RS485Rev_Sem == RT_NULL) { if(SCPara->RS485Rev_Sem == RT_NULL) {
Debug_Printf("RS485Ch2Rev Sem Create Failed!\r\n"); Debug_Printf("RS485Ch2Rev Sem Create Failed!\r\n");
} }
Debug_Printf("RS485Ch2Rev Thread is running\r\n"); Debug_Printf("RS485Ch2Rev Thread is running\r\n");
rt_thread_delay(3000); rt_thread_delay(3000);
SCPara->InitOverFlag = true; SCPara->InitOverFlag = true;
while(1) { while(1) {
@@ -543,10 +543,10 @@ void RS485Ch2_Thread_Entry(void *parameter)
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: RS485Ch2RxIrqCallback * 函数名称: RS485Ch2RxIrqCallback
* 功能描述: RS485通道1中断处理回调函数 * 功能描述: RS485通道1中断处理回调函数
* 参 数: rData 接收到的数据 * 参 数: rData 接收到的数据
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void RS485Ch2RxIrqCallback(uint8_t rData) void RS485Ch2RxIrqCallback(uint8_t rData)
{ {
+7 -7
View File
@@ -1,5 +1,5 @@
/* /*
数据通信任务 数据通信任务
*/ */
#include "bsp.h" #include "bsp.h"
@@ -31,7 +31,7 @@ static void rs485_rx_cb(uint8_t data)
} }
/** /**
返回值:成功:len,失败: 0 返回值:成功:len,失败: 0
***/ ***/
static int recive_frame(void) static int recive_frame(void)
{ {
@@ -76,7 +76,7 @@ static void update_on_start(uint8_t* frame, int len, uint8_t* pload, int size)
update_send_cmd(0x01, 1, pReq->PackageNum); update_send_cmd(0x01, 1, pReq->PackageNum);
//重启进入BOOT //重启进入BOOT
NVIC_SystemReset(); NVIC_SystemReset();
} }
@@ -144,7 +144,7 @@ static void comm_process(uint8_t* frame, int len)
uint8_t frame_data[64] = {0}; uint8_t frame_data[64] = {0};
uint16_t frame_data_len = 0; uint16_t frame_data_len = 0;
/***数据解码***/ /***数据解码***/
int err = -1; int err = -1;
err= protocol_unpack_frame(frame, len, &slave_addr, &frame_cmd, frame_data, &frame_data_len); err= protocol_unpack_frame(frame, len, &slave_addr, &frame_cmd, frame_data, &frame_data_len);
@@ -152,7 +152,7 @@ static void comm_process(uint8_t* frame, int len)
if (err != PROTOCOL_SUCCESS) if (err != PROTOCOL_SUCCESS)
return ; return ;
//TODO:获取本机地址 //TODO:获取本机地址
uint8_t local_addr = 0; uint8_t local_addr = 0;
dev_cfg_get_devid(&local_addr); dev_cfg_get_devid(&local_addr);
@@ -209,7 +209,7 @@ static void comm_process(uint8_t* frame, int len)
memcpy( &tp_data,&tp_info.tp_datas,sizeof(tp_data)); memcpy( &tp_data,&tp_info.tp_datas,sizeof(tp_data));
//兼容旧协议,没有用到的通道,填充无效数据 //兼容旧协议,没有用到的通道,填充无效数据
for(int i=0; i <8-TP_SENSOR_NUM; i++){ for(int i=0; i <8-TP_SENSOR_NUM; i++){
tp_data.channels[i+TP_SENSOR_NUM].status =1; tp_data.channels[i+TP_SENSOR_NUM].status =1;
@@ -244,7 +244,7 @@ static void comm_process(uint8_t* frame, int len)
app_collect_ad_get(&ad_data); app_collect_ad_get(&ad_data);
//兼容旧协议,没有用到的通道,填充无效数据 //兼容旧协议,没有用到的通道,填充无效数据
for(int i=0; i <8-YB_SENSOR_NUM; i++){ for(int i=0; i <8-YB_SENSOR_NUM; i++){
ad_data.channels[i+5].status =1; ad_data.channels[i+5].status =1;
File diff suppressed because it is too large Load Diff
+38 -59
View File
@@ -2,14 +2,14 @@
#include <math.h> #include <math.h>
#include "main.h" #include "main.h"
#include "CatOneTask.h" #include "CatOneTask.h"
#include "EthTask.h"
#include "LoraTask.h" #include "LoraTask.h"
#include "CatOneTask.h"
#include "RS485Task.h" #include "RS485Task.h"
#include "DebugCmd.h" #include "DebugCmd.h"
#include "spiflash.h" #include "spiflash.h"
//雅下: 81-00-00-06-00-01 //雅下: 81-00-00-06-00-01
// 81-00-00-06-00-02 // 81-00-00-06-00-02
// 81-00-00-06-00-03 // 81-00-00-06-00-03
// 81-00-00-06-00-04 // 81-00-00-06-00-04
@@ -34,7 +34,8 @@ static const uint8_t GateWayMac_BL10[6] = {0x81, 0x00, 0x00, 0x06, 0x00, 0x0A};
bool MainDispEn = true; bool MainDispEn = true;
static rt_thread_t Lora_Thread = RT_NULL; static rt_thread_t Lora_Thread = RT_NULL;
static rt_thread_t Cat1Eth_Thread = RT_NULL; static rt_thread_t Cat1_Thread = RT_NULL;
static rt_thread_t Eth_Thread = RT_NULL;
static rt_thread_t RS485Ch1_Thread = RT_NULL; static rt_thread_t RS485Ch1_Thread = RT_NULL;
static rt_thread_t RS485Ch2_Thread = RT_NULL; static rt_thread_t RS485Ch2_Thread = RT_NULL;
static rt_thread_t Debug_Thread = RT_NULL; static rt_thread_t Debug_Thread = RT_NULL;
@@ -60,10 +61,10 @@ int toPercentage(int voltage)
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: MainDBGOnOff * 函数名称: MainDBGOnOff
* 功能描述: 主调试信息开关函数 * 功能描述: 主调试信息开关函数
* 参 数: OnOff,开关 * 参 数: OnOff,开关
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
void MainDBGOnOff(bool OnOff) void MainDBGOnOff(bool OnOff)
{ {
@@ -92,35 +93,6 @@ void SDCardTest(void)
} }
#endif #endif
void InfTest(void)
{
uint8_t sData[10] = {0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07, 0x08, 0x09, 0x0A};
RS485_CH1_RX();
RS485_CH1_POW_ON();
rt_thread_delay(100);
RS485_CH1_POW_OFF();
RS485_CH2_POW_ON();
rt_thread_delay(100);
RS485_CH2_POW_OFF();
POWER_LED_OFF();
POWER_LED_ON();
LORA_RX_LED_SET();
LORA_RX_LED_CLR();
RS485_CH1_TX();
RS485_CH2_RX();
RS485Ch1_Config(500000);
RS485Ch2_Config(500000);
RS485Ch1UartSend(sData, 10);
rt_thread_delay(100);
RS485_CH2_TX();
RS485_CH1_RX();
RS485Ch2UartSend(sData, 10);
rt_thread_delay(100);
// SDCardTest();
}
void GateWayInit(void) void GateWayInit(void)
{ {
@@ -143,7 +115,7 @@ void GateWayInit(void)
memset((uint8_t *)&GateWay.ConfigPara, 0x00, sizeof(GWConfigPara_t)); memset((uint8_t *)&GateWay.ConfigPara, 0x00, sizeof(GWConfigPara_t));
GateWay.ConfigPara.SavFlag = LOG_SAV_FLAG; GateWay.ConfigPara.SavFlag = LOG_SAV_FLAG;
GateWay.ConfigPara.Comm = CATONE_COMM; GateWay.ConfigPara.Comm = CATONE_COMM;
#if MAC_ADDR_TYPE == 0//测试服务器 #if MAC_ADDR_TYPE == 0//测试服务器
GateWay.ConfigPara.LTENet.DestAddr[0] = 39; GateWay.ConfigPara.LTENet.DestAddr[0] = 39;
GateWay.ConfigPara.LTENet.DestAddr[1] = 106; GateWay.ConfigPara.LTENet.DestAddr[1] = 106;
GateWay.ConfigPara.LTENet.DestAddr[2] = 103; GateWay.ConfigPara.LTENet.DestAddr[2] = 103;
@@ -157,7 +129,7 @@ void GateWayInit(void)
GateWay.ConfigPara.LTENet.DestPort = 12111; GateWay.ConfigPara.LTENet.DestPort = 12111;
#endif #endif
GateWay.ConfigPara.CommUnitReadInterval = COMMUNIT_READ_SENSOR_INTERVAL_MAX;//非低功耗设备 GateWay.ConfigPara.CommUnitReadInterval = COMMUNIT_READ_SENSOR_INTERVAL_MAX;//非低功耗设备
memset(GateWay.ConfigPara.CommUnitArray, 0x00, sizeof(CommUnitData_t) * COMMUNIT_NUM_MAX); memset(GateWay.ConfigPara.CommUnitArray, 0x00, sizeof(CommUnitData_t) * COMMUNIT_NUM_MAX);
GateWay.ConfigPara.Rs485Ch1.Enable = true; GateWay.ConfigPara.Rs485Ch1.Enable = true;
GateWay.ConfigPara.Rs485Ch1.CommUnitEnable = false; GateWay.ConfigPara.Rs485Ch1.CommUnitEnable = false;
@@ -186,8 +158,7 @@ void GateWayInit(void)
#if MAC_ADDR_TYPE == 0 #if MAC_ADDR_TYPE == 0
memcpy(GateWay.ConfigPara.GwMac, GateWayMac_Test, 6); memcpy(GateWay.ConfigPara.GwMac, GateWayMac_Test, 6);
// GateWay.ConfigPara.DebugChannel = DEBUG_CH_RS485_1; GateWay.ConfigPara.DebugChannel = DEBUG_CH_RS485_1;
GateWay.ConfigPara.DebugChannel = DEBUG_CH_DBG;
#elif MAC_ADDR_TYPE == 1 #elif MAC_ADDR_TYPE == 1
memcpy(GateWay.ConfigPara.GwMac, GateWayMac_BL1, 6); memcpy(GateWay.ConfigPara.GwMac, GateWayMac_BL1, 6);
GateWay.ConfigPara.DebugChannel = DEBUG_CH_RS485_1; GateWay.ConfigPara.DebugChannel = DEBUG_CH_RS485_1;
@@ -318,9 +289,11 @@ void GateWayInit(void)
else else
rt_kprintf("History Num: 0\r\n"); rt_kprintf("History Num: 0\r\n");
if(GateWay.ConfigPara.Comm == CATONE_COMM) { if(GateWay.ConfigPara.Comm == CATONE_COMM) {
DbgOrCat1Uart_Config(115200);
CAT1_ON(); CAT1_ON();
} }
else { else {
DBG_ON();
ETH_ON(); ETH_ON();
rt_thread_delay(1000); rt_thread_delay(1000);
ETHReset(); ETHReset();
@@ -340,16 +313,16 @@ void OutageUpdate(uint8_t AlarmType, bool AlarmState, uint8_t Batt)
Alarm->AlarmType = AlarmType; Alarm->AlarmType = AlarmType;
Alarm->AlarmState = AlarmState; Alarm->AlarmState = AlarmState;
Alarm->AlarmPara = Batt; Alarm->AlarmPara = Batt;
CatOneEthSendQueue(MegData, 6); //发送报警信息 CatOneEthSendQueue(MegData, 6); //发送报警信息
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: main * 函数名称: main
* 功能描述: 主函数 * 功能描述: 主函数
* 参 数: 无 * 参 数: 无
* 返 回 值: 运行错误返回-1 * 返 回 值: 运行错误返回-1
*****************************************************************************************/ *****************************************************************************************/
static uint8_t LastBattery = 0xff; //上一次电池电压 static uint8_t LastBattery = 0xff; //上一次电池电压
int main(void) int main(void)
{ {
uint16_t OneSecondDlyCnt = 0; uint16_t OneSecondDlyCnt = 0;
@@ -413,14 +386,20 @@ int main(void)
return -1; return -1;
Debug_Thread = rt_thread_create("DebugUart", Debug_Thread_Entry, &GateWay, 2048, 3, 20); Debug_Thread = rt_thread_create("DebugUart", Debug_Thread_Entry, &GateWay, 2048, 3, 20);
if (RS485Ch2_Thread != RT_NULL) if (Debug_Thread != RT_NULL)
rt_thread_startup(Debug_Thread); rt_thread_startup(Debug_Thread);
else else
return -1; return -1;
Cat1Eth_Thread = rt_thread_create("Cat1Eth", CatOne_Eth_Thread_Entry, &GateWay, 4096, 3, 20); Cat1_Thread = rt_thread_create("Cat1", CatOne_Thread_Entry, &GateWay, 4096, 3, 20);
if (Cat1Eth_Thread != RT_NULL) if (Cat1_Thread != RT_NULL)
rt_thread_startup(Cat1Eth_Thread); rt_thread_startup(Cat1_Thread);
else
return -1;
Eth_Thread = rt_thread_create("Eth", Eth_Thread_Entry, &GateWay, 4096, 3, 20);
if (Eth_Thread != RT_NULL)
rt_thread_startup(Eth_Thread);
else else
return -1; return -1;
@@ -437,9 +416,9 @@ int main(void)
POWER_LED_OFF(); POWER_LED_OFF();
} }
} }
EthRxOverhandler(); EthOverHandler();
RS485RxOverhandler(); RS485RxOverhandler();
DebugRxOverhandler(); DebugOrCat1RxOverhandler();
if(OneSecondDlyCnt % 200 == 0) { if(OneSecondDlyCnt % 200 == 0) {
FeedDog(); FeedDog();
LORA_RX_TOGGLE(); LORA_RX_TOGGLE();
@@ -456,15 +435,15 @@ int main(void)
uint16_t ADValue = GetADCBuffPoint(); uint16_t ADValue = GetADCBuffPoint();
//V = (AD * 3.3 / 4096) * (R1+R2) / R1; R1 = 200, R2 = 120 //V = (AD * 3.3 / 4096) * (R1+R2) / R1; R1 = 200, R2 = 120
//计算出常数为0.0021484375,扩大1000倍 //计算出常数为0.0021484375,扩大1000倍
float Voltage = ADValue * 2.1484375; float Voltage = ADValue * 2.1484375;
GateWay.Battery = toPercentage(Voltage); GateWay.Battery = toPercentage(Voltage);
//上电判断电量 //上电判断电量
if(LastBattery == 0xff) { if(LastBattery == 0xff) {
LastBattery = GateWay.Battery; LastBattery = GateWay.Battery;
if(GateWay.ConfigPara.OutageFlag == true) { //有报警 if(GateWay.ConfigPara.OutageFlag == true) { //有报警
AlarmType = 1; AlarmType = 1;
} }
else { else {
@@ -474,7 +453,7 @@ int main(void)
BatteryUpdateDlyCnt = 10; BatteryUpdateDlyCnt = 10;
} }
else { else {
if(GateWay.ConfigPara.OutageFlag == false) { //没有告警,判断电池电压是否降低 if(GateWay.ConfigPara.OutageFlag == false) { //没有告警,判断电池电压是否降低
if(GateWay.Battery <= LastBattery) { if(GateWay.Battery <= LastBattery) {
if(LastBattery <= 5) { if(LastBattery <= 5) {
GateWay.ConfigPara.OutageFlag = true; GateWay.ConfigPara.OutageFlag = true;
@@ -495,7 +474,7 @@ int main(void)
BatteryUpdateDlyCnt = 20 * 60; BatteryUpdateDlyCnt = 20 * 60;
} }
} }
else { //充电,更新上一次电池电压 else { //充电,更新上一次电池电压
LastBattery = GateWay.Battery; LastBattery = GateWay.Battery;
} }
} }
@@ -522,14 +501,14 @@ int main(void)
AlarmType = 0; AlarmType = 0;
} }
} }
else { //电池继续放电,更新上一次电池电压 else { //电池继续放电,更新上一次电池电压
LastBattery = GateWay.Battery; LastBattery = GateWay.Battery;
} }
} }
} }
BatteryUpdateDlyCnt--; BatteryUpdateDlyCnt--;
if(BatteryUpdateDlyCnt == 0) { if(BatteryUpdateDlyCnt == 0) {
if(GateWay.ConfigPara.OutageFlag) { //有报警 if(GateWay.ConfigPara.OutageFlag) { //有报警
BatteryUpdateDlyCnt = 20 * 60; BatteryUpdateDlyCnt = 20 * 60;
} }
else { else {
+15 -11
View File
@@ -11,7 +11,7 @@ int protocol_pack_frame(
uint16_t *packed_len) uint16_t *packed_len)
{ {
// 构建基础帧头 // 构建基础帧头
buffer[0] = PROTOCOL_HEAD & 0xFF; buffer[0] = PROTOCOL_HEAD & 0xFF;
buffer[1] = (PROTOCOL_HEAD >> 8) & 0xFF; buffer[1] = (PROTOCOL_HEAD >> 8) & 0xFF;
@@ -23,21 +23,21 @@ int protocol_pack_frame(
buffer[5] = payload_len & 0xFF; buffer[5] = payload_len & 0xFF;
buffer[6] = (payload_len >> 8) & 0xFF; buffer[6] = (payload_len >> 8) & 0xFF;
// 复制有效载荷(保持小端格式) // 复制有效载荷(保持小端格式)
if (payload_len > 0 && payload != NULL) { if (payload_len > 0 && payload != NULL) {
memcpy(buffer + PROTOCOL_FRAME_HEAD_SIZE , payload, payload_len); memcpy(buffer + PROTOCOL_FRAME_HEAD_SIZE , payload, payload_len);
} }
// 设置实际长度 // 设置实际长度
int fram_len = PROTOCOL_FRAME_MIN_SIZE + payload_len; int fram_len = PROTOCOL_FRAME_MIN_SIZE + payload_len;
// 计算CRC(覆盖地址、命令、长度和有效载荷) // 计算CRC(覆盖地址、命令、长度和有效载荷)
uint16_t crc = 0xFFFF; uint16_t crc = 0xFFFF;
crc = modbus_crc16(buffer,fram_len -2); crc = modbus_crc16(buffer,fram_len -2);
// 写入CRC(保持小端格式) // 写入CRC(保持小端格式)
buffer[fram_len-2] = (uint8_t)(crc & 0xFF); buffer[fram_len-2] = (uint8_t)(crc & 0xFF);
buffer[fram_len-1] = (uint8_t)(crc >> 8); buffer[fram_len-1] = (uint8_t)(crc >> 8);
@@ -56,15 +56,19 @@ int protocol_unpack_frame(
uint8_t *payload, uint8_t *payload,
uint16_t *payload_len uint16_t *payload_len
) { ) {
// 参数校验 // 参数校验
if (frame == NULL || slave_addr == NULL || command == NULL || payload_len == NULL) { if (frame == NULL || slave_addr == NULL || command == NULL || payload_len == NULL) {
return PROTOCOL_ERR_INVALID_PARAM; return PROTOCOL_ERR_INVALID_PARAM;
} }
if (frame_len > 64) {
return PROTOCOL_ERR_BUFFER_OVERFLOW;
}
if (frame_len < PROTOCOL_FRAME_MIN_SIZE) { if (frame_len < PROTOCOL_FRAME_MIN_SIZE) {
return PROTOCOL_ERR_INVALID_PARAM; return PROTOCOL_ERR_INVALID_PARAM;
} }
// 帧头校验 // 帧头校验
uint16_t header = (frame[0] | frame[1] <<8); uint16_t header = (frame[0] | frame[1] <<8);
if (header != PROTOCOL_HEAD) { if (header != PROTOCOL_HEAD) {
@@ -72,7 +76,7 @@ int protocol_unpack_frame(
return PROTOCOL_ERR_INVALID_PARAM; return PROTOCOL_ERR_INVALID_PARAM;
} }
// 基础字段解析 // 基础字段解析
*slave_addr = (frame[2] | frame[3] << 8); *slave_addr = (frame[2] | frame[3] << 8);
@@ -81,7 +85,7 @@ int protocol_unpack_frame(
*payload_len = (frame[5] | frame[6] << 8); *payload_len = (frame[5] | frame[6] << 8);
// 数据完整性校验 // 数据完整性校验
if (*payload_len > (frame_len - PROTOCOL_FRAME_MIN_SIZE)) { if (*payload_len > (frame_len - PROTOCOL_FRAME_MIN_SIZE)) {
return PROTOCOL_ERR_BUFFER_OVERFLOW; return PROTOCOL_ERR_BUFFER_OVERFLOW;
@@ -93,7 +97,7 @@ int protocol_unpack_frame(
calc_crc = modbus_crc16((uint8_t *)frame, frame_size -2 ); calc_crc = modbus_crc16((uint8_t *)frame, frame_size -2 );
// 校验CRC(保持小端格式) // 校验CRC(保持小端格式)
union{ union{
uint16_t value; uint16_t value;
@@ -111,7 +115,7 @@ int protocol_unpack_frame(
return PROTOCOL_ERR_CRC; return PROTOCOL_ERR_CRC;
} }
// 复制有效载荷(保持小端格式) // 复制有效载荷(保持小端格式)
if (*payload_len > 0 && payload != NULL) { if (*payload_len > 0 && payload != NULL) {
memcpy(payload, frame + PROTOCOL_FRAME_HEAD_SIZE, *payload_len); memcpy(payload, frame + PROTOCOL_FRAME_HEAD_SIZE, *payload_len);
} }
+18 -18
View File
@@ -1,5 +1,5 @@
/****************************************************************************** /******************************************************************************
* @brief 环形缓冲区管理(参考linux/kfifo) * @brief 环形缓冲区管理(参考linux/kfifo)
* *
* Copyright (c) 2016~2020, <morro_luo@163.com> * Copyright (c) 2016~2020, <morro_luo@163.com>
* *
@@ -7,7 +7,7 @@
* *
* Change Logs: * Change Logs:
* Date Author Notes * Date Author Notes
* 2016-05-30 Morro 初版完成 * 2016-05-30 Morro 初版完成
******************************************************************************/ ******************************************************************************/
#include "ringbuffer.h" #include "ringbuffer.h"
#include <string.h> #include <string.h>
@@ -16,10 +16,10 @@
#define min(a,b) ( (a) < (b) )? (a):(b) #define min(a,b) ( (a) < (b) )? (a):(b)
/* /*
*@brief 构造一个空环形缓冲区 *@brief 构造一个空环形缓冲区
*@param[in] r - 环形缓冲区管理器 *@param[in] r - 环形缓冲区管理器
*@param[in] buf - 数据缓冲区 *@param[in] buf - 数据缓冲区
*@param[in] len - buf长度(必须是2的N次幂) *@param[in] len - buf长度(必须是2的N次幂)
*@retval bool *@retval bool
*/ */
bool ring_buf_init(ring_buf_t *r,unsigned char *buf, unsigned int len) bool ring_buf_init(ring_buf_t *r,unsigned char *buf, unsigned int len)
@@ -31,8 +31,8 @@ bool ring_buf_init(ring_buf_t *r,unsigned char *buf, unsigned int len)
} }
/* /*
*@brief 清空环形缓冲区 *@brief 清空环形缓冲区
*@param[in] r - 待清空的环形缓冲区 *@param[in] r - 待清空的环形缓冲区
*@retval none *@retval none
*/ */
void ring_buf_clr(ring_buf_t *r) void ring_buf_clr(ring_buf_t *r)
@@ -41,8 +41,8 @@ void ring_buf_clr(ring_buf_t *r)
} }
/* /*
*@brief 获取环形缓冲区数据长度 *@brief 获取环形缓冲区数据长度
*@retval 环形缓冲区中有效字节数 *@retval 环形缓冲区中有效字节数
*/ */
int ring_buf_len(ring_buf_t *r) int ring_buf_len(ring_buf_t *r)
{ {
@@ -50,10 +50,10 @@ int ring_buf_len(ring_buf_t *r)
} }
/* /*
*@brief 将指定长度的数据放到环形缓冲区中 *@brief 将指定长度的数据放到环形缓冲区中
*@param[in] buf - 数据缓冲区 *@param[in] buf - 数据缓冲区
* len - 缓冲区长度 * len - 缓冲区长度
*@retval 实际放到中的数据 *@retval 实际放到中的数据
*/ */
int ring_buf_put(ring_buf_t *r,unsigned char *buf,unsigned int len) int ring_buf_put(ring_buf_t *r,unsigned char *buf,unsigned int len)
{ {
@@ -70,10 +70,10 @@ int ring_buf_put(ring_buf_t *r,unsigned char *buf,unsigned int len)
} }
/* /*
*@brief 从环形缓冲区中读取指定长度的数据 *@brief 从环形缓冲区中读取指定长度的数据
*@param[in] len - 读取长度 *@param[in] len - 读取长度
*@param[out] buf - 输出数据缓冲区 *@param[out] buf - 输出数据缓冲区
*@retval 实际读取长度 *@retval 实际读取长度
*/ */
int ring_buf_get(ring_buf_t *r,unsigned char *buf,unsigned int len) int ring_buf_get(ring_buf_t *r,unsigned char *buf,unsigned int len)
{ {
+52 -52
View File
@@ -39,7 +39,7 @@ static void SpiFlashWaitForWriteEnd(void)
SpiFlashSetNss(); SpiFlashSetNss();
} }
//扇区擦除 //扇区擦除
void SpiFlashEraseSector(uint32_t SectorAddr) void SpiFlashEraseSector(uint32_t SectorAddr)
{ {
#ifdef FLASH_TEST #ifdef FLASH_TEST
@@ -57,7 +57,7 @@ void SpiFlashEraseSector(uint32_t SectorAddr)
#endif #endif
} }
//整片擦除 //整片擦除
void SpiFlashEraseChip(void) void SpiFlashEraseChip(void)
{ {
SpiFlashWriteEnable(); SpiFlashWriteEnable();
@@ -67,7 +67,7 @@ void SpiFlashEraseChip(void)
SpiFlashWaitForWriteEnd(); SpiFlashWaitForWriteEnd();
} }
//写数据 //写数据
void SpiFlashWriteData(uint8_t* wData, uint32_t wAddr, uint16_t wLen) void SpiFlashWriteData(uint8_t* wData, uint32_t wAddr, uint16_t wLen)
{ {
#ifdef FLASH_TEST #ifdef FLASH_TEST
@@ -89,15 +89,15 @@ void SpiFlashWriteData(uint8_t* wData, uint32_t wAddr, uint16_t wLen)
void SpiFlashWriteAnyLengthData(uint8_t* wData, uint32_t wAddr, uint16_t wLen) void SpiFlashWriteAnyLengthData(uint8_t* wData, uint32_t wAddr, uint16_t wLen)
{ {
uint16_t PageCnt; //需要写入页数 uint16_t PageCnt; //需要写入页数
uint16_t FirstPageWriteSize; //在起始地址不为页起始地址的情况下,先写入当前页剩余空间 uint16_t FirstPageWriteSize; //在起始地址不为页起始地址的情况下,先写入当前页剩余空间
uint16_t LastPageWriteSize; //最后一页写入长度 uint16_t LastPageWriteSize; //最后一页写入长度
uint32_t AddrOffset = 0; uint32_t AddrOffset = 0;
uint32_t WriteAddr; uint32_t WriteAddr;
LogHeader LogH; LogHeader LogH;
WriteAddr = wAddr; WriteAddr = wAddr;
//写入的长度超出最大空间,从起始开始写起 //写入的长度超出最大空间,从起始开始写起
if((WriteAddr + wLen) > SPIFLASH_SIZE) { if((WriteAddr + wLen) > SPIFLASH_SIZE) {
LogH = (LogHeader)wData; LogH = (LogHeader)wData;
WriteAddr = LOG_SAV_START_SECTOR * SPIFLASH_SECTORSIZE; WriteAddr = LOG_SAV_START_SECTOR * SPIFLASH_SECTORSIZE;
@@ -106,21 +106,21 @@ void SpiFlashWriteAnyLengthData(uint8_t* wData, uint32_t wAddr, uint16_t wLen)
uint16_t FirstPageRemainSpace = SPIFLASH_PAGESIZE - (WriteAddr % SPIFLASH_PAGESIZE); uint16_t FirstPageRemainSpace = SPIFLASH_PAGESIZE - (WriteAddr % SPIFLASH_PAGESIZE);
// //判断是否跨扇区,跨扇区需要先擦除下一扇区 // //判断是否跨扇区,跨扇区需要先擦除下一扇区
CheckDelSecter(wAddr, wLen); CheckDelSecter(wAddr, wLen);
if(wLen < FirstPageRemainSpace) { if(wLen < FirstPageRemainSpace) {
FirstPageWriteSize = wLen; //计算首页写入长度 FirstPageWriteSize = wLen; //计算首页写入长度
PageCnt = 0; PageCnt = 0;
LastPageWriteSize = 0; LastPageWriteSize = 0;
} }
else { else {
// FirstPageWriteSize = FirstPageRemainSpace % SPIFLASH_PAGESIZE; // FirstPageWriteSize = FirstPageRemainSpace % SPIFLASH_PAGESIZE;
// PageCnt = (wLen - (FirstPageWriteSize % SPIFLASH_PAGESIZE)) / SPIFLASH_PAGESIZE; //计算需要写入多少整页 // PageCnt = (wLen - (FirstPageWriteSize % SPIFLASH_PAGESIZE)) / SPIFLASH_PAGESIZE; //计算需要写入多少整页
// LastPageWriteSize = (wLen - (FirstPageWriteSize % SPIFLASH_PAGESIZE)) % SPIFLASH_PAGESIZE; //计算剩余需要写入的长度 // LastPageWriteSize = (wLen - (FirstPageWriteSize % SPIFLASH_PAGESIZE)) % SPIFLASH_PAGESIZE; //计算剩余需要写入的长度
FirstPageWriteSize = FirstPageRemainSpace; FirstPageWriteSize = FirstPageRemainSpace;
PageCnt = (wLen - FirstPageWriteSize) / SPIFLASH_PAGESIZE; //计算需要写入多少整页 PageCnt = (wLen - FirstPageWriteSize) / SPIFLASH_PAGESIZE; //计算需要写入多少整页
LastPageWriteSize = (wLen - FirstPageWriteSize) % SPIFLASH_PAGESIZE; //计算剩余需要写入的长度 LastPageWriteSize = (wLen - FirstPageWriteSize) % SPIFLASH_PAGESIZE; //计算剩余需要写入的长度
} }
if(FirstPageWriteSize > 0) { if(FirstPageWriteSize > 0) {
@@ -170,17 +170,17 @@ uint32_t SpiFlashReadId(void)
typedef struct { typedef struct {
uint16_t Flag; uint16_t Flag;
uint16_t LoopSavFlag; //循环存储标志 uint16_t LoopSavFlag; //循环存储标志
uint32_t LogCnt; //日志最大数量 uint32_t LogCnt; //日志最大数量
uint32_t FirstLogStartAddr; //第一个数据的起始地址 uint32_t FirstLogStartAddr; //第一个数据的起始地址
uint32_t LastLogEndAddr; //最后一个数据的结束地址 uint32_t LastLogEndAddr; //最后一个数据的结束地址
}LogNumSav_t; }LogNumSav_t;
static LogNumSav_t LogNumArray[256]; static LogNumSav_t LogNumArray[256];
static __IO uint32_t gLogCnt = 0; static __IO uint32_t gLogCnt = 0;
static __IO uint32_t FirstLogStartAddr = 0; //第一个日志起始地址 static __IO uint32_t FirstLogStartAddr = 0; //第一个日志起始地址
static __IO uint32_t LastLogEndAddr = 0; //最后一个日志结束地址 static __IO uint32_t LastLogEndAddr = 0; //最后一个日志结束地址
static __IO uint16_t LoopSavFlag = 0; //循环存储标志 static __IO uint16_t LoopSavFlag = 0; //循环存储标志
static uint16_t LogNumIdx; static uint16_t LogNumIdx;
uint16_t ReadLoopSavFlag(void) uint16_t ReadLoopSavFlag(void)
@@ -235,7 +235,7 @@ void LogInit(void)
break; break;
} }
} }
if(LogNumIdx == 0xffff) { //256条记录满,读最后一条记录 if(LogNumIdx == 0xffff) { //256条记录满,读最后一条记录
LogNumIdx = 0; LogNumIdx = 0;
SetLogNum(LogNumArray[255].LogCnt); SetLogNum(LogNumArray[255].LogCnt);
SetLoopSavFlag(LogNumArray[255].LoopSavFlag); SetLoopSavFlag(LogNumArray[255].LoopSavFlag);
@@ -243,7 +243,7 @@ void LogInit(void)
SetLastLogEndAddr(LogNumArray[255].LastLogEndAddr); SetLastLogEndAddr(LogNumArray[255].LastLogEndAddr);
return; return;
} }
if(LogNumIdx == 0) { //没有记录 if(LogNumIdx == 0) { //没有记录
LogNumIdx = 0; LogNumIdx = 0;
SetLogNum(0); SetLogNum(0);
SetLoopSavFlag(0); SetLoopSavFlag(0);
@@ -286,17 +286,17 @@ void SavLogNum(uint32_t LogNum)
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: CheckDelSecter * 函数名称: CheckDelSecter
* 功能描述: 检查需要删除的扇区,跨扇区删除下一扇区,如果到了删除最后一个扇区,循环到起始扇区 * 功能描述: 检查需要删除的扇区,跨扇区删除下一扇区,如果到了删除最后一个扇区,循环到起始扇区
* 参 数: wAddr, 写入地址 * 参 数: wAddr, 写入地址
wLen, 写入长度 wLen, 写入长度
* 返 回 值: 返回写入起始地址 * 返 回 值: 返回写入起始地址
*****************************************************************************************/ *****************************************************************************************/
uint8_t LogBuff[LOG_SAV_SIZE_MAX]; uint8_t LogBuff[LOG_SAV_SIZE_MAX];
const uint8_t SavFlag[4] ={0xAA, 0x55, 0x55, 0xAA}; const uint8_t SavFlag[4] ={0xAA, 0x55, 0x55, 0xAA};
void CheckDelSecter(uint32_t wAddr, uint16_t wLen) void CheckDelSecter(uint32_t wAddr, uint16_t wLen)
{ {
uint32_t DelOffsetAddr, FindFirstLogAddr; //存储起始地址 uint32_t DelOffsetAddr, FindFirstLogAddr; //存储起始地址
uint32_t DelSectorNum = 0; uint32_t DelSectorNum = 0;
uint32_t SurplusSpace = SPIFLASH_SECTORSIZE - (wAddr % SPIFLASH_SECTORSIZE); uint32_t SurplusSpace = SPIFLASH_SECTORSIZE - (wAddr % SPIFLASH_SECTORSIZE);
@@ -308,7 +308,7 @@ void CheckDelSecter(uint32_t wAddr, uint16_t wLen)
FindFirstLogAddr = DelOffsetAddr + SPIFLASH_SECTORSIZE; FindFirstLogAddr = DelOffsetAddr + SPIFLASH_SECTORSIZE;
} }
else { else {
if(wLen < SurplusSpace) { //长度没有超过扇区剩余容量 if(wLen < SurplusSpace) { //长度没有超过扇区剩余容量
SetLastLogEndAddr(wAddr + wLen); SetLastLogEndAddr(wAddr + wLen);
return; return;
} }
@@ -332,7 +332,7 @@ void CheckDelSecter(uint32_t wAddr, uint16_t wLen)
while(1) { while(1) {
SpiFlashReadAnyLengthData(LogBuff, ReadAddr, LOG_SAV_SIZE_MAX); SpiFlashReadAnyLengthData(LogBuff, ReadAddr, LOG_SAV_SIZE_MAX);
int i; int i;
for(i = 0; i < LOG_SAV_SIZE_MAX; i++) { for(i = 0; i <= LOG_SAV_SIZE_MAX - 4; i++) {
if(memcmp(&LogBuff[i], SavFlag, 4) == 0) { if(memcmp(&LogBuff[i], SavFlag, 4) == 0) {
SetFirstLogStartAddr(ReadAddr + i); SetFirstLogStartAddr(ReadAddr + i);
return;; return;;
@@ -340,7 +340,7 @@ void CheckDelSecter(uint32_t wAddr, uint16_t wLen)
} }
if(i == LOG_SAV_SIZE_MAX) { if(i == LOG_SAV_SIZE_MAX) {
ReadAddr += LOG_SAV_SIZE_MAX; ReadAddr += LOG_SAV_SIZE_MAX;
if(ReadAddr >= SPIFLASH_SIZE) { //找不到下一条数据,重置flash if(ReadAddr >= SPIFLASH_SIZE) { //找不到下一条数据,重置flash
Debug_Printf("Add LOG Error, Next Data No Find!\r\n"); Debug_Printf("Add LOG Error, Next Data No Find!\r\n");
SetLogNum(0); SetLogNum(0);
SetLoopSavFlag(0); SetLoopSavFlag(0);
@@ -381,7 +381,7 @@ void AddLog(uint8_t *wData, uint32_t wLen)
LogH->TimeStamp = TimeTs(); LogH->TimeStamp = TimeTs();
memcpy(&LogBuffTemp[sizeof(LogHeader_t)], wData, wLen); memcpy(&LogBuffTemp[sizeof(LogHeader_t)], wData, wLen);
//判断是否跨扇区,跨扇区需要先擦除下一扇区 //判断是否跨扇区,跨扇区需要先擦除下一扇区
CheckDelSecter(LLEndAddr, LogSize); CheckDelSecter(LLEndAddr, LogSize);
if(LogH->LogEndAddr > SPIFLASH_SIZE) { if(LogH->LogEndAddr > SPIFLASH_SIZE) {
LLEndAddr = LOG_SAV_START_SECTOR * SPIFLASH_SECTORSIZE; LLEndAddr = LOG_SAV_START_SECTOR * SPIFLASH_SECTORSIZE;
@@ -395,13 +395,13 @@ void AddLog(uint8_t *wData, uint32_t wLen)
/***************************************************************************************** /*****************************************************************************************
* 函数名称: ReadLog * 函数名称: ReadLog
* 功能描述: 读取日志 * 功能描述: 读取日志
* 参 数: Header, 上一包日志头信息,连续读取时传入上一包数据信息,缩短日志遍历时间, * 参 数: Header, 上一包日志头信息,连续读取时传入上一包数据信息,缩短日志遍历时间,
Header->LogEndAddr为0读取第一包数据,LogIdx数据无效 Header->LogEndAddr为0读取第一包数据,LogIdx数据无效
rData, 日志出口,需要释放 rData, 日志出口,需要释放
LogIdx, 读取的日志的序号,为0读取Header->LogEndAddr对应日志 LogIdx, 读取的日志的序号,为0读取Header->LogEndAddr对应日志
* 返 回 值: 返回数据长度 * 返 回 值: 返回数据长度
*****************************************************************************************/ *****************************************************************************************/
int ReadLog(LogHeader Header, uint8_t **rData, uint32_t LogIdx) int ReadLog(LogHeader Header, uint8_t **rData, uint32_t LogIdx)
{ {
@@ -426,7 +426,7 @@ int ReadLog(LogHeader Header, uint8_t **rData, uint32_t LogIdx)
while(1) { while(1) {
SpiFlashReadAnyLengthData((uint8_t *)Header, FSAddr, sizeof(LogHeader_t)); SpiFlashReadAnyLengthData((uint8_t *)Header, FSAddr, sizeof(LogHeader_t));
if(Header->LogSavFlag != LOG_SAV_FLAG) { if(Header->LogSavFlag != LOG_SAV_FLAG) {
if((SPIFLASH_SIZE - FSAddr) < LOG_SAV_SIZE_MAX) { //判断是否到片尾 if((SPIFLASH_SIZE - FSAddr) < LOG_SAV_SIZE_MAX) { //判断是否到片尾
FSAddr = LOG_SAV_START_SECTOR * SPIFLASH_SECTOR_NUM; FSAddr = LOG_SAV_START_SECTOR * SPIFLASH_SECTOR_NUM;
continue; continue;
} }
@@ -461,15 +461,15 @@ int ReadLog(LogHeader Header, uint8_t **rData, uint32_t LogIdx)
/***************************************************************************************** /*****************************************************************************************
* 函数名称: ReadPara * 函数名称: ReadPara
* 功能描述: 读取参数 * 功能描述: 读取参数
* 参 数: Para, 网关参数 * 参 数: Para, 网关参数
ParaLen, 参数长度 ParaLen, 参数长度
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
int ReadPara(uint8_t *Para, uint32_t ParaLen) int ReadPara(uint8_t *Para, uint32_t ParaLen)
{ {
SpiFlashReadAnyLengthData(Para, GATEWEY_PARA_SAV_ADDR, ParaLen); //读取片尾数据 SpiFlashReadAnyLengthData(Para, GATEWEY_PARA_SAV_ADDR, ParaLen); //读取片尾数据
uint16_t Check = CRC_Modbus(0xA001, Para, ParaLen - 2); uint16_t Check = CRC_Modbus(0xA001, Para, ParaLen - 2);
GWConfigPara CfgPara = (GWConfigPara)Para; GWConfigPara CfgPara = (GWConfigPara)Para;
if(CfgPara->crc16 != Check) if(CfgPara->crc16 != Check)
@@ -478,11 +478,11 @@ int ReadPara(uint8_t *Para, uint32_t ParaLen)
} }
/***************************************************************************************** /*****************************************************************************************
* 函数名称: WritePara * 函数名称: WritePara
* 功能描述: 写入参数 * 功能描述: 写入参数
* 参 数: Para, 网关参数 * 参 数: Para, 网关参数
ParaLen, 参数长度 ParaLen, 参数长度
* 返 回 值: 无 * 返 回 值: 无
*****************************************************************************************/ *****************************************************************************************/
int WritePara(uint8_t *Para, uint32_t ParaLen) int WritePara(uint8_t *Para, uint32_t ParaLen)
{ {
@@ -491,7 +491,7 @@ int WritePara(uint8_t *Para, uint32_t ParaLen)
uint16_t Check = CRC_Modbus(0xA001, Para, ParaLen - 2); uint16_t Check = CRC_Modbus(0xA001, Para, ParaLen - 2);
GWConfigPara CfgPara = (GWConfigPara)Para; GWConfigPara CfgPara = (GWConfigPara)Para;
CfgPara->crc16 = Check; CfgPara->crc16 = Check;
SpiFlashWriteAnyLengthData(Para, GATEWEY_PARA_SAV_ADDR, ParaLen); //读取片尾数据 SpiFlashWriteAnyLengthData(Para, GATEWEY_PARA_SAV_ADDR, ParaLen); //读取片尾数据
return 0; return 0;
} }
+8 -8
View File
@@ -1,16 +1,16 @@
#include "utils.h" #include "utils.h"
/* /*
(x^16 + x^15 + x^2 + 1 ?(x^16 + x^15 + x^2 + 1?
*/ */
uint16_t modbus_crc16(uint8_t* data, int length) uint16_t modbus_crc16(uint8_t* data, int length)
{ {
uint16_t crc = 0xFFFF; // 初始值FFFF uint16_t crc = 0xFFFF; // 鍒濆鍊糉FFF
uint16_t polynomial = 0x8005; // 多项式8005 uint16_t polynomial = 0x8005; // 澶氶」寮?005
for (int i = 0; i < length; i++) { for (int i = 0; i < length; i++) {
// 输入反转(REFIN):对每个字节进行位反转 // 杈撳叆鍙嶈浆(REFIN)锛氬姣忎釜瀛楄妭杩涜浣嶅弽杞?
uint8_t byte = data[i]; uint8_t byte = data[i];
uint8_t reversed_byte = 0; uint8_t reversed_byte = 0;
@@ -19,10 +19,10 @@ uint16_t modbus_crc16(uint8_t* data, int length)
byte >>= 1; byte >>= 1;
} }
crc ^= (reversed_byte << 8); // 与高字节异或 crc ^= (reversed_byte << 8); // 涓庨珮瀛楄妭寮傛垨
for (int j = 0; j < 8; j++) { for (int j = 0; j < 8; j++) {
if (crc & 0x8000) { // 检查最高位 if (crc & 0x8000) { // 妫€鏌ユ渶楂樹綅
crc = (crc << 1) ^ polynomial; crc = (crc << 1) ^ polynomial;
} else { } else {
crc <<= 1; crc <<= 1;
@@ -30,7 +30,7 @@ uint16_t modbus_crc16(uint8_t* data, int length)
} }
} }
// 输出反转(REFOUT):对16位CRC结果进行位反转 // 杈撳嚭鍙嶈浆(REFOUT)锛氬16浣岰RC缁撴灉杩涜浣嶅弽杞?
uint16_t reversed_crc = 0; uint16_t reversed_crc = 0;
for (int i = 0; i < 16; i++) { for (int i = 0; i < 16; i++) {
@@ -38,6 +38,6 @@ uint16_t modbus_crc16(uint8_t* data, int length)
crc >>= 1; crc >>= 1;
} }
// 结果异或值(XOROUT)0000(实际不变) // 缁撴灉寮傛垨鍊?XOROUT)锛?000锛堝疄闄呬笉鍙橈級
return reversed_crc ^ 0x0000; return reversed_crc ^ 0x0000;
} }