flash/stm32l4x: add support of STM32WB1x
[openocd.git] / src / flash / nor / tms470.c
index c5d74c30c63c9ffceb227ab0a6cddaddae76af06..37f0933966062c667a6c338da7d6020e786d4e0f 100644 (file)
@@ -39,7 +39,7 @@ struct tms470_flash_bank {
 
 };
 
-static const struct flash_sector TMS470R1A256_SECTORS[] = {
+static const struct flash_sector tms470r1a256_sectors[] = {
        {0x00000000, 0x00002000, -1, -1},
        {0x00002000, 0x00002000, -1, -1},
        {0x00004000, 0x00002000, -1, -1},
@@ -57,9 +57,9 @@ static const struct flash_sector TMS470R1A256_SECTORS[] = {
 };
 
 #define TMS470R1A256_NUM_SECTORS \
-       ARRAY_SIZE(TMS470R1A256_SECTORS)
+       ARRAY_SIZE(tms470r1a256_sectors)
 
-static const struct flash_sector TMS470R1A288_BANK0_SECTORS[] = {
+static const struct flash_sector tms470r1a288_bank0_sectors[] = {
        {0x00000000, 0x00002000, -1, -1},
        {0x00002000, 0x00002000, -1, -1},
        {0x00004000, 0x00002000, -1, -1},
@@ -67,9 +67,9 @@ static const struct flash_sector TMS470R1A288_BANK0_SECTORS[] = {
 };
 
 #define TMS470R1A288_BANK0_NUM_SECTORS \
-       ARRAY_SIZE(TMS470R1A288_BANK0_SECTORS)
+       ARRAY_SIZE(tms470r1a288_bank0_sectors)
 
-static const struct flash_sector TMS470R1A288_BANK1_SECTORS[] = {
+static const struct flash_sector tms470r1a288_bank1_sectors[] = {
        {0x00040000, 0x00010000, -1, -1},
        {0x00050000, 0x00010000, -1, -1},
        {0x00060000, 0x00010000, -1, -1},
@@ -77,9 +77,9 @@ static const struct flash_sector TMS470R1A288_BANK1_SECTORS[] = {
 };
 
 #define TMS470R1A288_BANK1_NUM_SECTORS \
-       ARRAY_SIZE(TMS470R1A288_BANK1_SECTORS)
+       ARRAY_SIZE(tms470r1a288_bank1_sectors)
 
-static const struct flash_sector TMS470R1A384_BANK0_SECTORS[] = {
+static const struct flash_sector tms470r1a384_bank0_sectors[] = {
        {0x00000000, 0x00002000, -1, -1},
        {0x00002000, 0x00002000, -1, -1},
        {0x00004000, 0x00004000, -1, -1},
@@ -93,9 +93,9 @@ static const struct flash_sector TMS470R1A384_BANK0_SECTORS[] = {
 };
 
 #define TMS470R1A384_BANK0_NUM_SECTORS \
-       ARRAY_SIZE(TMS470R1A384_BANK0_SECTORS)
+       ARRAY_SIZE(tms470r1a384_bank0_sectors)
 
-static const struct flash_sector TMS470R1A384_BANK1_SECTORS[] = {
+static const struct flash_sector tms470r1a384_bank1_sectors[] = {
        {0x00020000, 0x00008000, -1, -1},
        {0x00028000, 0x00008000, -1, -1},
        {0x00030000, 0x00008000, -1, -1},
@@ -103,9 +103,9 @@ static const struct flash_sector TMS470R1A384_BANK1_SECTORS[] = {
 };
 
 #define TMS470R1A384_BANK1_NUM_SECTORS \
-       ARRAY_SIZE(TMS470R1A384_BANK1_SECTORS)
+       ARRAY_SIZE(tms470r1a384_bank1_sectors)
 
-static const struct flash_sector TMS470R1A384_BANK2_SECTORS[] = {
+static const struct flash_sector tms470r1a384_bank2_sectors[] = {
        {0x00040000, 0x00008000, -1, -1},
        {0x00048000, 0x00008000, -1, -1},
        {0x00050000, 0x00008000, -1, -1},
@@ -113,7 +113,7 @@ static const struct flash_sector TMS470R1A384_BANK2_SECTORS[] = {
 };
 
 #define TMS470R1A384_BANK2_NUM_SECTORS \
-       ARRAY_SIZE(TMS470R1A384_BANK2_SECTORS)
+       ARRAY_SIZE(tms470r1a384_bank2_sectors)
 
 /* ---------------------------------------------------------------------- */
 
@@ -173,10 +173,10 @@ static int tms470_read_part_info(struct flash_bank *bank)
                        bank->base = 0x00000000;
                        bank->size = 256 * 1024;
                        bank->num_sectors = TMS470R1A256_NUM_SECTORS;
-                       bank->sectors = malloc(sizeof(TMS470R1A256_SECTORS));
+                       bank->sectors = malloc(sizeof(tms470r1a256_sectors));
                        if (!bank->sectors)
                                return ERROR_FLASH_OPERATION_FAILED;
-                       (void)memcpy(bank->sectors, TMS470R1A256_SECTORS, sizeof(TMS470R1A256_SECTORS));
+                       (void)memcpy(bank->sectors, tms470r1a256_sectors, sizeof(tms470r1a256_sectors));
                        break;
 
                case 0x2b:
@@ -187,21 +187,21 @@ static int tms470_read_part_info(struct flash_bank *bank)
                                bank->base = 0x00000000;
                                bank->size = 32 * 1024;
                                bank->num_sectors = TMS470R1A288_BANK0_NUM_SECTORS;
-                               bank->sectors = malloc(sizeof(TMS470R1A288_BANK0_SECTORS));
+                               bank->sectors = malloc(sizeof(tms470r1a288_bank0_sectors));
                                if (!bank->sectors)
                                        return ERROR_FLASH_OPERATION_FAILED;
-                               (void)memcpy(bank->sectors, TMS470R1A288_BANK0_SECTORS,
-                                               sizeof(TMS470R1A288_BANK0_SECTORS));
+                               (void)memcpy(bank->sectors, tms470r1a288_bank0_sectors,
+                                               sizeof(tms470r1a288_bank0_sectors));
                        } else if ((bank->base >= 0x00040000) && (bank->base < 0x00080000)) {
                                tms470_info->ordinal = 1;
                                bank->base = 0x00040000;
                                bank->size = 256 * 1024;
                                bank->num_sectors = TMS470R1A288_BANK1_NUM_SECTORS;
-                               bank->sectors = malloc(sizeof(TMS470R1A288_BANK1_SECTORS));
+                               bank->sectors = malloc(sizeof(tms470r1a288_bank1_sectors));
                                if (!bank->sectors)
                                        return ERROR_FLASH_OPERATION_FAILED;
-                               (void)memcpy(bank->sectors, TMS470R1A288_BANK1_SECTORS,
-                                               sizeof(TMS470R1A288_BANK1_SECTORS));
+                               (void)memcpy(bank->sectors, tms470r1a288_bank1_sectors,
+                                               sizeof(tms470r1a288_bank1_sectors));
                        } else {
                                LOG_ERROR("No %s flash bank contains base address " TARGET_ADDR_FMT ".",
                                                part_name, bank->base);
@@ -217,31 +217,31 @@ static int tms470_read_part_info(struct flash_bank *bank)
                                bank->base = 0x00000000;
                                bank->size = 128 * 1024;
                                bank->num_sectors = TMS470R1A384_BANK0_NUM_SECTORS;
-                               bank->sectors = malloc(sizeof(TMS470R1A384_BANK0_SECTORS));
+                               bank->sectors = malloc(sizeof(tms470r1a384_bank0_sectors));
                                if (!bank->sectors)
                                        return ERROR_FLASH_OPERATION_FAILED;
-                               (void)memcpy(bank->sectors, TMS470R1A384_BANK0_SECTORS,
-                                               sizeof(TMS470R1A384_BANK0_SECTORS));
+                               (void)memcpy(bank->sectors, tms470r1a384_bank0_sectors,
+                                               sizeof(tms470r1a384_bank0_sectors));
                        } else if ((bank->base >= 0x00020000) && (bank->base < 0x00040000)) {
                                tms470_info->ordinal = 1;
                                bank->base = 0x00020000;
                                bank->size = 128 * 1024;
                                bank->num_sectors = TMS470R1A384_BANK1_NUM_SECTORS;
-                               bank->sectors = malloc(sizeof(TMS470R1A384_BANK1_SECTORS));
+                               bank->sectors = malloc(sizeof(tms470r1a384_bank1_sectors));
                                if (!bank->sectors)
                                        return ERROR_FLASH_OPERATION_FAILED;
-                               (void)memcpy(bank->sectors, TMS470R1A384_BANK1_SECTORS,
-                                               sizeof(TMS470R1A384_BANK1_SECTORS));
+                               (void)memcpy(bank->sectors, tms470r1a384_bank1_sectors,
+                                               sizeof(tms470r1a384_bank1_sectors));
                        } else if ((bank->base >= 0x00040000) && (bank->base < 0x00060000)) {
                                tms470_info->ordinal = 2;
                                bank->base = 0x00040000;
                                bank->size = 128 * 1024;
                                bank->num_sectors = TMS470R1A384_BANK2_NUM_SECTORS;
-                               bank->sectors = malloc(sizeof(TMS470R1A384_BANK2_SECTORS));
+                               bank->sectors = malloc(sizeof(tms470r1a384_bank2_sectors));
                                if (!bank->sectors)
                                        return ERROR_FLASH_OPERATION_FAILED;
-                               (void)memcpy(bank->sectors, TMS470R1A384_BANK2_SECTORS,
-                                               sizeof(TMS470R1A384_BANK2_SECTORS));
+                               (void)memcpy(bank->sectors, tms470r1a384_bank2_sectors,
+                                               sizeof(tms470r1a384_bank2_sectors));
                        } else {
                                LOG_ERROR("No %s flash bank contains base address " TARGET_ADDR_FMT ".",
                                                part_name, bank->base);
@@ -285,8 +285,8 @@ static int tms470_read_part_info(struct flash_bank *bank)
 
 /* ---------------------------------------------------------------------- */
 
-static uint32_t keysSet;
-static uint32_t flashKeys[4];
+static uint32_t keys_set;
+static uint32_t flash_keys[4];
 
 COMMAND_HANDLER(tms470_handle_flash_keyset_command)
 {
@@ -296,9 +296,9 @@ COMMAND_HANDLER(tms470_handle_flash_keyset_command)
                int i;
 
                for (i = 0; i < 4; i++) {
-                       int start = (0 == strncmp(CMD_ARGV[i], "0x", 2)) ? 2 : 0;
+                       int start = (strncmp(CMD_ARGV[i], "0x", 2) == 0) ? 2 : 0;
 
-                       if (1 != sscanf(&CMD_ARGV[i][start], "%" SCNx32 "", &flashKeys[i])) {
+                       if (sscanf(&CMD_ARGV[i][start], "%" SCNx32 "", &flash_keys[i]) != 1) {
                                command_print(CMD, "could not process flash key %s",
                                        CMD_ARGV[i]);
                                LOG_ERROR("could not process flash key %s", CMD_ARGV[i]);
@@ -306,56 +306,56 @@ COMMAND_HANDLER(tms470_handle_flash_keyset_command)
                        }
                }
 
-               keysSet = 1;
+               keys_set = 1;
        } else if (CMD_ARGC != 0) {
                command_print(CMD, "tms470 flash_keyset <key0> <key1> <key2> <key3>");
                return ERROR_COMMAND_SYNTAX_ERROR;
        }
 
-       if (keysSet) {
+       if (keys_set) {
                command_print(CMD,
                        "using flash keys 0x%08" PRIx32 ", 0x%08" PRIx32 ", 0x%08" PRIx32 ", 0x%08" PRIx32 "",
-                       flashKeys[0],
-                       flashKeys[1],
-                       flashKeys[2],
-                       flashKeys[3]);
+                       flash_keys[0],
+                       flash_keys[1],
+                       flash_keys[2],
+                       flash_keys[3]);
        } else
                command_print(CMD, "flash keys not set");
 
        return ERROR_OK;
 }
 
-static const uint32_t FLASH_KEYS_ALL_ONES[] = { 0xFFFFFFFF, 0xFFFFFFFF,
+static const uint32_t flash_keys_all_ones[] = { 0xFFFFFFFF, 0xFFFFFFFF,
                0xFFFFFFFF, 0xFFFFFFFF,};
 
-static const uint32_t FLASH_KEYS_ALL_ZEROS[] = { 0x00000000, 0x00000000,
+static const uint32_t flash_keys_all_zeros[] = { 0x00000000, 0x00000000,
                0x00000000, 0x00000000,};
 
-static const uint32_t FLASH_KEYS_MIX1[] = { 0xf0fff0ff, 0xf0fff0ff,
+static const uint32_t flash_keys_mix1[] = { 0xf0fff0ff, 0xf0fff0ff,
                0xf0fff0ff, 0xf0fff0ff};
 
-static const uint32_t FLASH_KEYS_MIX2[] = { 0x0000ffff, 0x0000ffff,
+static const uint32_t flash_keys_mix2[] = { 0x0000ffff, 0x0000ffff,
                0x0000ffff, 0x0000ffff};
 
 /* ---------------------------------------------------------------------- */
 
-static int oscMHz = 12;
+static int osc_mhz = 12;
 
 COMMAND_HANDLER(tms470_handle_osc_megahertz_command)
 {
        if (CMD_ARGC > 1)
                return ERROR_COMMAND_SYNTAX_ERROR;
        else if (CMD_ARGC == 1)
-               sscanf(CMD_ARGV[0], "%d", &oscMHz);
+               sscanf(CMD_ARGV[0], "%d", &osc_mhz);
 
-       if (oscMHz <= 0) {
+       if (osc_mhz <= 0) {
                LOG_ERROR("osc_megahertz must be positive and non-zero!");
                command_print(CMD, "osc_megahertz must be positive and non-zero!");
-               oscMHz = 12;
+               osc_mhz = 12;
                return ERROR_COMMAND_SYNTAX_ERROR;
        }
 
-       command_print(CMD, "osc_megahertz=%d", oscMHz);
+       command_print(CMD, "osc_megahertz=%d", osc_mhz);
 
        return ERROR_OK;
 }
@@ -437,7 +437,7 @@ static int tms470_try_flash_keys(struct target *target, const uint32_t *key_set)
                        target_write_u32(target, 0xFFE89C0C, key_set[i]);
                }
 
-               if (ERROR_OK == tms470_check_flash_unlocked(target)) {
+               if (tms470_check_flash_unlocked(target) == ERROR_OK) {
                        /*
                         * There seems to be a side-effect of reading the FMPKEY
                         * register in that it re-enables the protection.  So we
@@ -471,19 +471,19 @@ static int tms470_unlock_flash(struct flash_bank *bank)
        const uint32_t *p_key_sets[5];
        unsigned i, key_set_count;
 
-       if (keysSet) {
+       if (keys_set) {
                key_set_count = 5;
-               p_key_sets[0] = flashKeys;
-               p_key_sets[1] = FLASH_KEYS_ALL_ONES;
-               p_key_sets[2] = FLASH_KEYS_ALL_ZEROS;
-               p_key_sets[3] = FLASH_KEYS_MIX1;
-               p_key_sets[4] = FLASH_KEYS_MIX2;
+               p_key_sets[0] = flash_keys;
+               p_key_sets[1] = flash_keys_all_ones;
+               p_key_sets[2] = flash_keys_all_zeros;
+               p_key_sets[3] = flash_keys_mix1;
+               p_key_sets[4] = flash_keys_mix2;
        } else {
                key_set_count = 4;
-               p_key_sets[0] = FLASH_KEYS_ALL_ONES;
-               p_key_sets[1] = FLASH_KEYS_ALL_ZEROS;
-               p_key_sets[2] = FLASH_KEYS_MIX1;
-               p_key_sets[3] = FLASH_KEYS_MIX2;
+               p_key_sets[0] = flash_keys_all_ones;
+               p_key_sets[1] = flash_keys_all_zeros;
+               p_key_sets[2] = flash_keys_mix1;
+               p_key_sets[3] = flash_keys_mix2;
        }
 
        for (i = 0; i < key_set_count; i++) {
@@ -573,7 +573,7 @@ static int tms470_flash_initialize_internal_state_machine(struct flash_bank *ban
         * the plldis global.
         */
        target_read_u32(target, 0xFFFFFFDC, &glbctrl);
-       sysclk = (plldis ? 1 : (glbctrl & 0x08) ? 4 : 8) * oscMHz / (1 + (glbctrl & 7));
+       sysclk = (plldis ? 1 : (glbctrl & 0x08) ? 4 : 8) * osc_mhz / (1 + (glbctrl & 7));
        delay = (sysclk > 10) ? (sysclk + 1) / 2 : 5;
        target_write_u32(target, 0xFFE8A018, (delay << 4) | (delay << 8));
        LOG_DEBUG("set fmpsetup = 0x%04" PRIx32 "", (delay << 4) | (delay << 8));
@@ -685,7 +685,7 @@ static int tms470_erase_sector(struct flash_bank *bank, int sector)
 {
        uint32_t glbctrl, orig_fmregopt, fmbsea, fmbseb, fmmstat;
        struct target *target = bank->target;
-       uint32_t flashAddr = bank->base + bank->sectors[sector].offset;
+       uint32_t flash_addr = bank->base + bank->sectors[sector].offset;
        int result = ERROR_OK;
 
        /*
@@ -722,12 +722,12 @@ static int tms470_erase_sector(struct flash_bank *bank, int sector)
        /*
         * clear status register, sent erase command, kickoff erase
         */
-       target_write_u16(target, flashAddr, 0x0040);
-       LOG_DEBUG("write *(uint16_t *)0x%08" PRIx32 "=0x0040", flashAddr);
-       target_write_u16(target, flashAddr, 0x0020);
-       LOG_DEBUG("write *(uint16_t *)0x%08" PRIx32 "=0x0020", flashAddr);
-       target_write_u16(target, flashAddr, 0xffff);
-       LOG_DEBUG("write *(uint16_t *)0x%08" PRIx32 "=0xffff", flashAddr);
+       target_write_u16(target, flash_addr, 0x0040);
+       LOG_DEBUG("write *(uint16_t *)0x%08" PRIx32 "=0x0040", flash_addr);
+       target_write_u16(target, flash_addr, 0x0020);
+       LOG_DEBUG("write *(uint16_t *)0x%08" PRIx32 "=0x0020", flash_addr);
+       target_write_u16(target, flash_addr, 0xffff);
+       LOG_DEBUG("write *(uint16_t *)0x%08" PRIx32 "=0xffff", flash_addr);
 
        /*
         * Monitor FMMSTAT, busy until clear, then check and other flags for

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