efm32: fix FTBFS on ARM due to alignment issues
The following warnings prevent OpenOCD from building: efm32.c: In function 'efm32x_read_lock_data': efm32.c:373:8: error: cast increases required alignment of target type [-Werror=cast-align] efm32.c:386:9: error: cast increases required alignment of target type [-Werror=cast-align] efm32.c:394:9: error: cast increases required alignment of target type [-Werror=cast-align] efm32.c:402:9: error: cast increases required alignment of target type [-Werror=cast-align] efm32.c: In function 'efm32x_get_page_lock': efm32.c:430:17: error: cast increases required alignment of target type [-Werror=cast-align] efm32.c: In function 'efm32x_set_page_lock': efm32.c:441:19: error: cast increases required alignment of target type [-Werror=cast-align] cc1: all warnings being treated as errors This patch is compile-tested only. Change-Id: Ia3a8f342e0f5e30c8ea4de9435c5c7a80bc100e3 Signed-off-by: Paul Fertser <fercerpav@gmail.com> Reviewed-on: http://openocd.zylin.com/1370 Tested-by: jenkins Reviewed-by: Andreas Fritiofson <andreas.fritiofson@gmail.com>
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@ -85,7 +85,7 @@
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struct efm32x_flash_bank {
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int probed;
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uint8_t lb_page[LOCKBITS_PAGE_SZ];
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uint32_t lb_page[LOCKBITS_PAGE_SZ/4];
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};
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struct efm32_info {
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@ -370,7 +370,7 @@ static int efm32x_read_lock_data(struct flash_bank *bank)
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data_size = bank->num_sectors / 8; /* number of data bytes */
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data_size /= 4; /* ...and data dwords */
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ptr = (uint32_t *)efm32x_info->lb_page;
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ptr = efm32x_info->lb_page;
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for (i = 0; i < data_size; i++, ptr++) {
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ret = target_read_u32(target, EFM32_MSC_LOCK_BITS+i*4, ptr);
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@ -383,7 +383,7 @@ static int efm32x_read_lock_data(struct flash_bank *bank)
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/* also, read ULW, DLW and MLW */
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/* ULW, word 126 */
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ptr = ((uint32_t *)efm32x_info->lb_page) + 126;
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ptr = efm32x_info->lb_page + 126;
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ret = target_read_u32(target, EFM32_MSC_LOCK_BITS+126*4, ptr);
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if (ERROR_OK != ret) {
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LOG_ERROR("Failed to read ULW");
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@ -391,7 +391,7 @@ static int efm32x_read_lock_data(struct flash_bank *bank)
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}
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/* DLW, word 127 */
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ptr = ((uint32_t *)efm32x_info->lb_page) + 127;
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ptr = efm32x_info->lb_page + 127;
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ret = target_read_u32(target, EFM32_MSC_LOCK_BITS+127*4, ptr);
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if (ERROR_OK != ret) {
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LOG_ERROR("Failed to read DLW");
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@ -399,7 +399,7 @@ static int efm32x_read_lock_data(struct flash_bank *bank)
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}
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/* MLW, word 125, present in GG and LG */
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ptr = ((uint32_t *)efm32x_info->lb_page) + 125;
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ptr = efm32x_info->lb_page + 125;
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ret = target_read_u32(target, EFM32_MSC_LOCK_BITS+125*4, ptr);
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if (ERROR_OK != ret) {
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LOG_ERROR("Failed to read MLW");
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@ -420,14 +420,14 @@ static int efm32x_write_lock_data(struct flash_bank *bank)
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return ret;
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}
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return efm32x_write(bank, efm32x_info->lb_page, EFM32_MSC_LOCK_BITS,
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return efm32x_write(bank, (uint8_t *)efm32x_info->lb_page, EFM32_MSC_LOCK_BITS,
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LOCKBITS_PAGE_SZ);
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}
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static int efm32x_get_page_lock(struct flash_bank *bank, size_t page)
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{
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struct efm32x_flash_bank *efm32x_info = bank->driver_priv;
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uint32_t dw = ((uint32_t *)efm32x_info->lb_page)[page >> 5];
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uint32_t dw = efm32x_info->lb_page[page >> 5];
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uint32_t mask = 0;
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mask = 1 << (page & 0x1f);
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@ -438,7 +438,7 @@ static int efm32x_get_page_lock(struct flash_bank *bank, size_t page)
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static int efm32x_set_page_lock(struct flash_bank *bank, size_t page, int set)
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{
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struct efm32x_flash_bank *efm32x_info = bank->driver_priv;
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uint32_t *dw = &((uint32_t *)efm32x_info->lb_page)[page >> 5];
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uint32_t *dw = &efm32x_info->lb_page[page >> 5];
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uint32_t mask = 0;
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mask = 1 << (page & 0x1f);
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