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@ -36,10 +36,10 @@
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#ifndef E2END
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#define E2END 0xFFF // 4KB
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#endif
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#define HAL_STM32F1_EEPROM_SIZE (E2END + 1)
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#define HAL_EEPROM_SIZE (E2END + 1)
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#define _ALIGN(x) __attribute__ ((aligned(x))) // SDIO uint32_t* compat.
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static char _ALIGN(4) HAL_eeprom_data[HAL_STM32F1_EEPROM_SIZE];
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static char _ALIGN(4) HAL_eeprom_data[HAL_EEPROM_SIZE];
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#if ENABLED(SDSUPPORT)
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@ -54,9 +54,9 @@ static char _ALIGN(4) HAL_eeprom_data[HAL_STM32F1_EEPROM_SIZE];
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if (!file.open(&root, EEPROM_FILENAME, O_RDONLY))
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return false;
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int bytes_read = file.read(HAL_eeprom_data, HAL_STM32F1_EEPROM_SIZE);
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int bytes_read = file.read(HAL_eeprom_data, HAL_EEPROM_SIZE);
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if (bytes_read < 0) return false;
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for (; bytes_read < HAL_STM32F1_EEPROM_SIZE; bytes_read++)
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for (; bytes_read < HAL_EEPROM_SIZE; bytes_read++)
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HAL_eeprom_data[bytes_read] = 0xFF;
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file.close();
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return true;
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@ -68,10 +68,10 @@ static char _ALIGN(4) HAL_eeprom_data[HAL_STM32F1_EEPROM_SIZE];
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SdFile file, root = card.getroot();
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int bytes_written = 0;
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if (file.open(&root, EEPROM_FILENAME, O_CREAT | O_WRITE | O_TRUNC)) {
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bytes_written = file.write(HAL_eeprom_data, HAL_STM32F1_EEPROM_SIZE);
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bytes_written = file.write(HAL_eeprom_data, HAL_EEPROM_SIZE);
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file.close();
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}
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return (bytes_written == HAL_STM32F1_EEPROM_SIZE);
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return (bytes_written == HAL_EEPROM_SIZE);
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}
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#else // !SDSUPPORT
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@ -98,7 +98,7 @@ bool PersistentStore::read_data(int &pos, uint8_t* value, const size_t size, uin
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return false;
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}
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size_t PersistentStore::capacity() { return HAL_STM32F1_EEPROM_SIZE; }
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size_t PersistentStore::capacity() { return HAL_EEPROM_SIZE; }
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#endif // EEPROM_SETTINGS
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