ESP32-Mesh-OTA/components/mesh_ota/mesh_ota.c

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#include "mesh_ota.h"
/*
* 999.999.999
* Return true if remote version is newer (higher) than local version
*/
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bool bNewerVersion(const char* pu8Local, const char* pu8Remote) {
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char u8LocalTmp[12];
char u8RemoteTmp[12];
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char* pu8saveptrLocal;
char* pu8saveptrRemote;
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strcpy(u8LocalTmp, pu8Local);
strcpy(u8RemoteTmp, pu8Remote);
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char* pu8TokenLocal = strtok_r(u8LocalTmp, ".", &pu8saveptrLocal);
char* pu8TokenRemote = strtok_r(u8RemoteTmp, ".", &pu8saveptrRemote) ;
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bool bReturn = false;
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uint8_t u8Index = 0;
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while( (u8Index <= 2) && (bReturn == false)) {
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u8Index++;
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if(atoi(pu8TokenLocal) < atoi(pu8TokenRemote))
{
bReturn = true;
}
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pu8TokenLocal = strtok_r(NULL, ".", &pu8saveptrLocal);
pu8TokenRemote = strtok_r(NULL, ".", &pu8saveptrRemote) ;
}
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return bReturn;
}
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esp_err_t errFindImageStart(const char* pu8Data, uint32_t* pu32DataLenght, uint32_t* pu32StartOffset)
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{
/*
Offset value
0 = E9
48 = first digit of version number
*/
esp_err_t errReturn = ESP_OK;
bool bImageStartOffsetFound = false;
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*pu32StartOffset = 0U;
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uint32_t u32DataIndex = 0;
uint32_t u32FirstDotOffset = 0;
uint32_t u32SecondDotOffset = 0;
uint8_t u8FirstDotIndex = 0;
uint8_t u8SecondDotIndex = 0;
while((u32DataIndex < *pu32DataLenght) && (bImageStartOffsetFound == false))
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{
//search for magic byte
if(pu8Data[u32DataIndex] == 0xe9)
{
//magic byte found
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printf("\n magic byte found: %i\n", u32DataIndex);
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while ((u8FirstDotIndex < 3) && (u32FirstDotOffset == 0))
{
//search first dot in version number
if((u32DataIndex+49+u8FirstDotIndex) < *pu32DataLenght)
{
if((pu8Data[(u32DataIndex+49+u8FirstDotIndex)] == 0x2e))
{
//first do found
u32FirstDotOffset = (u32DataIndex+49+u8FirstDotIndex);
//printf("First dot offset: %i\n", u32FirstDotOffset);
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}
}
u8FirstDotIndex++;
}
while ((u8SecondDotIndex < 3) && (u32SecondDotOffset == 0) && (u32FirstDotOffset != 0))
{
//search first dot in version number
if((u32FirstDotOffset+(u8SecondDotIndex+2)) < *pu32DataLenght)
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{
if((pu8Data[(u32FirstDotOffset+(u8SecondDotIndex+2))] == 0x2e))
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{
//second do found
u32SecondDotOffset = (u32FirstDotOffset+(u8SecondDotIndex+2));
//printf("Second dot offset: %i\n", u32SecondDotOffset);
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}
}
u8SecondDotIndex++;
}
if((u32FirstDotOffset != 0) && (u32SecondDotOffset != 0))
{
//image start found based on magic byte and version number systax
*pu32StartOffset = u32DataIndex; //store image start offset
bImageStartOffsetFound = true;
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}
else
{
// this is propably not the magic byte --> reset
u32FirstDotOffset = 0;
u32SecondDotOffset = 0;
u8FirstDotIndex = 0;
u8SecondDotIndex = 0;
}
}
u32DataIndex++;
//putchar(pu8Data[i]);
//printf("%x ", pu8Data[u32DataIndex]);
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}
if(bImageStartOffsetFound == false)
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{
errReturn = ESP_ERR_NOT_FOUND;
}
return errReturn;
}
esp_err_t errExtractVersionNumber(const char* pu8Data, uint32_t* pu32DataLenght, char* pc8RemoteVersionNumber)
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{
strcpy(pc8RemoteVersionNumber, "999.999.999"); //init value
uint32_t u32StartOffset;
esp_err_t err = errFindImageStart(pu8Data, pu32DataLenght, &u32StartOffset);
if(err == ESP_OK)
{
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printf("\nImage start found: %i\n", u32StartOffset);
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strncpy(pc8RemoteVersionNumber, pu8Data+(u32StartOffset+48), 11);
pc8RemoteVersionNumber[12] = '\0';
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printf("remote version number %s\n\n", pc8RemoteVersionNumber);
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}
return err;
}