STM32F1: Fix SD card persistent store API (#11090)
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@ -42,10 +42,12 @@
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namespace HAL {
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namespace HAL {
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namespace PersistentStore {
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namespace PersistentStore {
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// Store settings in the last two pages
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namespace {
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// Flash pages must be erased before writing, so keep track.
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// Store settings in the last two pages
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bool firstWrite = false;
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// Flash pages must be erased before writing, so keep track.
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uint32_t pageBase = EEPROM_START_ADDRESS;
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bool firstWrite = false;
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uint32_t pageBase = EEPROM_START_ADDRESS;
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}
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bool access_start() {
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bool access_start() {
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firstWrite = true;
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firstWrite = true;
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@ -64,9 +66,9 @@ bool write_data(int &pos, const uint8_t *value, uint16_t size, uint16_t *crc) {
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if (firstWrite) {
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if (firstWrite) {
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FLASH_Unlock();
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FLASH_Unlock();
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status = FLASH_ErasePage(EEPROM_PAGE0_BASE);
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status = FLASH_ErasePage(EEPROM_PAGE0_BASE);
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if (status != FLASH_COMPLETE) return false;
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if (status != FLASH_COMPLETE) return true;
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status = FLASH_ErasePage(EEPROM_PAGE1_BASE);
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status = FLASH_ErasePage(EEPROM_PAGE1_BASE);
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if (status != FLASH_COMPLETE) return false;
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if (status != FLASH_COMPLETE) return true;
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firstWrite = false;
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firstWrite = false;
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}
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}
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@ -76,7 +78,7 @@ bool write_data(int &pos, const uint8_t *value, uint16_t size, uint16_t *crc) {
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uint16_t* wordBuffer = (uint16_t *)value;
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uint16_t* wordBuffer = (uint16_t *)value;
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while (wordsToWrite) {
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while (wordsToWrite) {
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status = FLASH_ProgramHalfWord(pageBase + pos + (i * 2), wordBuffer[i]);
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status = FLASH_ProgramHalfWord(pageBase + pos + (i * 2), wordBuffer[i]);
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if (status != FLASH_COMPLETE) return false;
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if (status != FLASH_COMPLETE) return true;
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wordsToWrite--;
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wordsToWrite--;
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i++;
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i++;
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}
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}
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@ -85,15 +87,15 @@ bool write_data(int &pos, const uint8_t *value, uint16_t size, uint16_t *crc) {
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if (size & 1) {
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if (size & 1) {
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uint16_t temp = value[size - 1];
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uint16_t temp = value[size - 1];
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status = FLASH_ProgramHalfWord(pageBase + pos + i, temp);
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status = FLASH_ProgramHalfWord(pageBase + pos + i, temp);
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if (status != FLASH_COMPLETE) return false;
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if (status != FLASH_COMPLETE) return true;
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}
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}
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crc16(crc, value, size);
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crc16(crc, value, size);
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pos += ((size + 1) & ~1);
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pos += ((size + 1) & ~1);
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return true;
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return false;
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}
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}
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void read_data(int &pos, uint8_t* value, uint16_t size, uint16_t *crc, const bool writing/*=true*/) {
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bool read_data(int &pos, uint8_t* value, uint16_t size, uint16_t *crc, const bool writing/*=true*/) {
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for (uint16_t i = 0; i < size; i++) {
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for (uint16_t i = 0; i < size; i++) {
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byte* accessPoint = (byte*)(pageBase + pos + i);
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byte* accessPoint = (byte*)(pageBase + pos + i);
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uint8_t c = *accessPoint;
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uint8_t c = *accessPoint;
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@ -101,6 +103,7 @@ void read_data(int &pos, uint8_t* value, uint16_t size, uint16_t *crc, const boo
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crc16(crc, &c, 1);
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crc16(crc, &c, 1);
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}
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}
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pos += ((size + 1) & ~1);
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pos += ((size + 1) & ~1);
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return false;
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}
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}
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} // PersistentStore
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} // PersistentStore
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