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@@ -25,6 +25,7 @@
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#define EEPROM_ADDR(offset) (EEPROM_BASE_ADDR + (offset))
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#define EEPROM_PTR(offset) ((__IO uint8_t *)EEPROM_ADDR(offset))
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#define EEPROM_BYTE(location, offset) (*(EEPROM_PTR(((uint32_t)location) + ((uint32_t)offset))))
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+#define EEPROM_WORD(location) (*(__IO uint32_t *)EEPROM_PTR(location))
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#define BUFFER_BYTE(buffer, offset) (*(((uint8_t *)buffer) + offset))
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@@ -62,12 +63,16 @@ void eeprom_driver_erase(void) {
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STM32_L0_L1_EEPROM_Unlock();
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for (size_t offset = 0; offset < STM32_ONBOARD_EEPROM_SIZE; offset += sizeof(uint32_t)) {
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+#ifdef QMK_MCU_SERIES_STM32L0XX
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FLASH->PECR |= FLASH_PECR_ERASE | FLASH_PECR_DATA;
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+#endif
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- *(__IO uint32_t *)EEPROM_ADDR(offset) = (uint32_t)0;
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+ EEPROM_WORD(offset) = (uint32_t)0;
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STM32_L0_L1_EEPROM_WaitNotBusy();
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+#ifdef QMK_MCU_SERIES_STM32L0XX
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FLASH->PECR &= ~(FLASH_PECR_ERASE | FLASH_PECR_DATA);
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+#endif
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}
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STM32_L0_L1_EEPROM_Lock();
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@@ -86,17 +91,39 @@ void eeprom_read_block(void *buf, const void *addr, size_t len) {
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}
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void eeprom_write_block(const void *buf, void *addr, size_t len) {
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- STM32_L0_L1_EEPROM_Unlock();
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+ // use word-aligned write to overcome issues with writing null bytes
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+ uint32_t start_addr = (uint32_t)addr;
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+ if (start_addr >= (STM32_ONBOARD_EEPROM_SIZE)) {
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+ return;
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+ }
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+ uint32_t max_len = (STM32_ONBOARD_EEPROM_SIZE)-start_addr;
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+ if (len > max_len) {
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+ len = max_len;
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+ }
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+ uint32_t end_addr = start_addr + len;
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- for (size_t offset = 0; offset < len; ++offset) {
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- // Drop out if we've hit the limit of the EEPROM
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- if ((((uint32_t)addr) + offset) >= STM32_ONBOARD_EEPROM_SIZE) {
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- break;
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+ uint32_t aligned_start = start_addr & ~0x3;
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+ uint32_t aligned_end = (end_addr + 3) & ~0x3;
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+
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+ STM32_L0_L1_EEPROM_Unlock();
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+ for (uint32_t word_addr = aligned_start; word_addr < aligned_end; word_addr += 4) {
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+ uint32_t existing_word = EEPROM_WORD(word_addr);
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+ uint32_t new_word = existing_word;
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+
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+ // Update the relevant bytes in the word
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+ for (int i = 0; i < 4; i++) {
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+ uint32_t byte_addr = word_addr + i;
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+ if (byte_addr >= start_addr && byte_addr < end_addr) {
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+ uint8_t new_byte = BUFFER_BYTE(buf, byte_addr - start_addr);
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+ new_word = (new_word & ~(0xFFU << (i * 8))) | ((uint32_t)new_byte << (i * 8));
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+ }
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}
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- STM32_L0_L1_EEPROM_WaitNotBusy();
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- EEPROM_BYTE(addr, offset) = BUFFER_BYTE(buf, offset);
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+ // Only write if the word has changed
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+ if (new_word != existing_word) {
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+ STM32_L0_L1_EEPROM_WaitNotBusy();
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+ EEPROM_WORD(word_addr) = new_word;
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+ }
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}
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-
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STM32_L0_L1_EEPROM_Lock();
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}
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