- add support for newer high density stm32 parts
git-svn-id: svn://svn.berlios.de/openocd/trunk@674 b42882b7-edfa-0310-969c-e2dbd0fdcd60__archive__
parent
e6f42eaeb6
commit
155c3d763c
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@ -277,25 +277,27 @@ int stm32x_write_options(struct flash_bank_s *bank)
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return ERROR_OK;
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}
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int stm32x_protect_check(struct flash_bank_s *bank)
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{
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target_t *target = bank->target;
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stm32x_flash_bank_t *stm32x_info = bank->driver_priv;
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u32 protection;
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int i, s;
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int num_bits;
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if (target->state != TARGET_HALTED)
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{
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return ERROR_TARGET_NOT_HALTED;
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}
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/* each bit refers to a 4bank protection */
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/* medium density - each bit refers to a 4bank protection
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* high density - each bit refers to a 2bank protection */
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target_read_u32(target, STM32_FLASH_WRPR, &protection);
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/* each protection bit is for 4 1K pages */
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num_bits = (bank->num_sectors / 4);
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/* medium density - each protection bit is for 4 * 1K pages
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* high density - each protection bit is for 2 * 2K pages */
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num_bits = (bank->num_sectors / stm32x_info->ppage_size);
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for (i = 0; i < num_bits; i++)
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{
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@ -304,8 +306,8 @@ int stm32x_protect_check(struct flash_bank_s *bank)
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if( protection & (1 << i))
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set = 0;
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for (s = 0; s < 4; s++)
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bank->sectors[(i * 4) + s].is_protected = set;
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for (s = 0; s < stm32x_info->ppage_size; s++)
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bank->sectors[(i * stm32x_info->ppage_size) + s].is_protected = set;
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}
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return ERROR_OK;
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@ -363,13 +365,14 @@ int stm32x_protect(struct flash_bank_s *bank, int set, int first, int last)
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return ERROR_TARGET_NOT_HALTED;
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}
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if ((first && (first % 4)) || ((last + 1) && (last + 1) % 4))
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if ((first && (first % stm32x_info->ppage_size)) || ((last + 1) && (last + 1) % stm32x_info->ppage_size))
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{
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LOG_WARNING("sector start/end incorrect - stm32 has 4K sector protection");
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LOG_WARNING("sector start/end incorrect - stm32 has %dK sector protection", stm32x_info->ppage_size);
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return ERROR_FLASH_SECTOR_INVALID;
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}
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/* each bit refers to a 4bank protection */
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/* medium density - each bit refers to a 4bank protection
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* high density - each bit refers to a 2bank protection */
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target_read_u32(target, STM32_FLASH_WRPR, &protection);
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prot_reg[0] = (u16)protection;
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@ -379,8 +382,8 @@ int stm32x_protect(struct flash_bank_s *bank, int set, int first, int last)
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for (i = first; i <= last; i++)
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{
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reg = (i / 4) / 8;
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bit = (i / 4) - (reg * 8);
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reg = (i / stm32x_info->ppage_size) / 8;
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bit = (i / stm32x_info->ppage_size) - (reg * 8);
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if( set )
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prot_reg[reg] &= ~(1 << bit);
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@ -606,8 +609,9 @@ int stm32x_probe(struct flash_bank_s *bank)
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target_t *target = bank->target;
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stm32x_flash_bank_t *stm32x_info = bank->driver_priv;
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int i;
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u16 num_sectors;
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u16 num_pages;
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u32 device_id;
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int page_size;
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if (bank->target->state != TARGET_HALTED)
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{
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@ -620,18 +624,33 @@ int stm32x_probe(struct flash_bank_s *bank)
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target_read_u32(target, 0xE0042000, &device_id);
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LOG_INFO( "device id = 0x%08x", device_id );
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if (!(device_id & 0x410))
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{
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LOG_WARNING( "Cannot identify target as a STM32 family." );
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return ERROR_FLASH_OPERATION_FAILED;
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}
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switch (device_id & 0x7ff)
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{
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case 0x410:
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/* medium density - we have 1k pages
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* 4 pages for a protection area */
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page_size = 1024;
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stm32x_info->ppage_size = 4;
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break;
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case 0x414:
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/* high density - we have 2k pages
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* 2 pages for a protection area */
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page_size = 2048;
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stm32x_info->ppage_size = 2;
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break;
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default:
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LOG_WARNING( "Cannot identify target as a STM32 family." );
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return ERROR_FLASH_OPERATION_FAILED;
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}
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/* get flash size from target */
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if (target_read_u16(target, 0x1FFFF7E0, &num_sectors) != ERROR_OK)
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if (target_read_u16(target, 0x1FFFF7E0, &num_pages) != ERROR_OK)
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{
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/* failed reading flash size, default to 128k */
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LOG_WARNING( "STM32 flash size failed, probe inaccurate - assuming 128k flash" );
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num_sectors = 128;
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num_pages = 128;
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}
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/* check for early silicon rev A */
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@ -639,20 +658,23 @@ int stm32x_probe(struct flash_bank_s *bank)
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{
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/* number of sectors incorrect on revA */
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LOG_WARNING( "STM32 Rev A Silicon detected, probe inaccurate - assuming 128k flash" );
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num_sectors = 128;
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num_pages = 128;
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}
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LOG_INFO( "flash size = %dkbytes", num_sectors );
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LOG_INFO( "flash size = %dkbytes", num_pages );
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/* calculate numbers of pages */
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num_pages /= (page_size - 1024);
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bank->base = 0x08000000;
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bank->size = num_sectors * 1024;
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bank->num_sectors = num_sectors;
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bank->sectors = malloc(sizeof(flash_sector_t) * num_sectors);
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bank->size = (num_pages * page_size);
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bank->num_sectors = num_pages;
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bank->sectors = malloc(sizeof(flash_sector_t) * num_pages);
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for (i = 0; i < num_sectors; i++)
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for (i = 0; i < num_pages; i++)
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{
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bank->sectors[i].offset = i * 1024;
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bank->sectors[i].size = 1024;
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bank->sectors[i].offset = i * page_size;
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bank->sectors[i].size = page_size;
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bank->sectors[i].is_erased = -1;
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bank->sectors[i].is_protected = 1;
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}
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@ -34,6 +34,7 @@ typedef struct stm32x_flash_bank_s
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{
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stm32x_options_t option_bytes;
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working_area_t *write_algorithm;
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int ppage_size;
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int probed;
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} stm32x_flash_bank_t;
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