C99 printf() -Werror fixes
git-svn-id: svn://svn.berlios.de/openocd/trunk@2325 b42882b7-edfa-0310-969c-e2dbd0fdcd60
This commit is contained in:
parent
f0bd9e1083
commit
afc3eb1dc1
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@ -934,8 +934,8 @@ int target_alloc_working_area(struct target_s *target, uint32_t size, working_ar
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/* only allocate multiples of 4 byte */
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if (size % 4)
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{
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LOG_ERROR("BUG: code tried to allocate unaligned number of bytes, padding");
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size = CEIL(size, 4);
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LOG_ERROR("BUG: code tried to allocate unaligned number of bytes (0x%08x), padding", ((unsigned)(size)));
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size = (size + 3) & (~3);
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}
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/* see if there's already a matching working area */
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@ -969,7 +969,8 @@ int target_alloc_working_area(struct target_s *target, uint32_t size, working_ar
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if (free_size < size)
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{
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LOG_WARNING("not enough working area available(requested %d, free %d)", size, free_size);
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LOG_WARNING("not enough working area available(requested %u, free %u)",
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(unsigned)(size), (unsigned)(free_size));
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return ERROR_TARGET_RESOURCE_NOT_AVAILABLE;
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}
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@ -1101,7 +1102,8 @@ int target_arch_state(struct target_s *target)
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int target_write_buffer(struct target_s *target, uint32_t address, uint32_t size, uint8_t *buffer)
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{
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int retval;
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LOG_DEBUG("writing buffer of %i byte at 0x%8.8x", size, address);
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LOG_DEBUG("writing buffer of %i byte at 0x%8.8x",
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(int)size, (unsigned)address);
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if (!target_was_examined(target))
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{
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@ -1116,7 +1118,9 @@ int target_write_buffer(struct target_s *target, uint32_t address, uint32_t size
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if ((address + size - 1) < address)
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{
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/* GDB can request this when e.g. PC is 0xfffffffc*/
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LOG_ERROR("address+size wrapped(0x%08x, 0x%08x)", address, size);
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LOG_ERROR("address+size wrapped(0x%08x, 0x%08x)",
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(unsigned)address,
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(unsigned)size);
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return ERROR_FAIL;
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}
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@ -1180,7 +1184,8 @@ int target_write_buffer(struct target_s *target, uint32_t address, uint32_t size
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int target_read_buffer(struct target_s *target, uint32_t address, uint32_t size, uint8_t *buffer)
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{
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int retval;
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LOG_DEBUG("reading buffer of %i byte at 0x%8.8x", size, address);
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LOG_DEBUG("reading buffer of %i byte at 0x%8.8x",
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(int)size, (unsigned)address);
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if (!target_was_examined(target))
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{
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@ -1195,7 +1200,9 @@ int target_read_buffer(struct target_s *target, uint32_t address, uint32_t size,
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if ((address + size - 1) < address)
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{
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/* GDB can request this when e.g. PC is 0xfffffffc*/
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LOG_ERROR("address+size wrapped(0x%08x, 0x%08x)", address, size);
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LOG_ERROR("address+size wrapped(0x%08" PRIx32 ", 0x%08" PRIx32 ")",
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address,
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size);
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return ERROR_FAIL;
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}
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@ -1261,7 +1268,7 @@ int target_checksum_memory(struct target_s *target, uint32_t address, uint32_t s
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buffer = malloc(size);
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if (buffer == NULL)
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{
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LOG_ERROR("error allocating buffer for section (%d bytes)", size);
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LOG_ERROR("error allocating buffer for section (%d bytes)", (int)size);
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return ERROR_INVALID_ARGUMENTS;
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}
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retval = target_read_buffer(target, address, size, buffer);
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@ -1319,12 +1326,15 @@ int target_read_u32(struct target_s *target, uint32_t address, uint32_t *value)
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if (retval == ERROR_OK)
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{
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*value = target_buffer_get_u32(target, value_buf);
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LOG_DEBUG("address: 0x%8.8x, value: 0x%8.8x", address, *value);
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LOG_DEBUG("address: 0x%8.8" PRIx32 ", value: 0x%8.8" PRIx32 "",
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address,
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*value);
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}
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else
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{
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*value = 0x0;
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LOG_DEBUG("address: 0x%8.8x failed", address);
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LOG_DEBUG("address: 0x%8.8" PRIx32 " failed",
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address);
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}
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return retval;
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@ -1344,12 +1354,15 @@ int target_read_u16(struct target_s *target, uint32_t address, uint16_t *value)
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if (retval == ERROR_OK)
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{
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*value = target_buffer_get_u16(target, value_buf);
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LOG_DEBUG("address: 0x%8.8x, value: 0x%4.4x", address, *value);
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LOG_DEBUG("address: 0x%8.8" PRIx32 ", value: 0x%4.4x",
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address,
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*value);
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}
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else
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{
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*value = 0x0;
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LOG_DEBUG("address: 0x%8.8x failed", address);
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LOG_DEBUG("address: 0x%8.8" PRIx32 " failed",
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address);
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}
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return retval;
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@ -1366,12 +1379,15 @@ int target_read_u8(struct target_s *target, uint32_t address, uint8_t *value)
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if (retval == ERROR_OK)
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{
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LOG_DEBUG("address: 0x%8.8x, value: 0x%2.2x", address, *value);
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LOG_DEBUG("address: 0x%8.8" PRIx32 ", value: 0x%2.2x",
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address,
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*value);
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}
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else
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{
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*value = 0x0;
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LOG_DEBUG("address: 0x%8.8x failed", address);
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LOG_DEBUG("address: 0x%8.8" PRIx32 " failed",
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address);
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}
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return retval;
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@ -1387,7 +1403,9 @@ int target_write_u32(struct target_s *target, uint32_t address, uint32_t value)
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return ERROR_FAIL;
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}
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LOG_DEBUG("address: 0x%8.8x, value: 0x%8.8x", address, value);
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LOG_DEBUG("address: 0x%8.8" PRIx32 ", value: 0x%8.8" PRIx32 "",
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address,
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value);
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target_buffer_set_u32(target, value_buf, value);
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if ((retval = target_write_memory(target, address, 4, 1, value_buf)) != ERROR_OK)
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@ -1408,7 +1426,9 @@ int target_write_u16(struct target_s *target, uint32_t address, uint16_t value)
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return ERROR_FAIL;
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}
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LOG_DEBUG("address: 0x%8.8x, value: 0x%8.8x", address, value);
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LOG_DEBUG("address: 0x%8.8" PRIx32 ", value: 0x%8.8x",
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address,
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value);
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target_buffer_set_u16(target, value_buf, value);
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if ((retval = target_write_memory(target, address, 2, 1, value_buf)) != ERROR_OK)
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@ -1428,7 +1448,8 @@ int target_write_u8(struct target_s *target, uint32_t address, uint8_t value)
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return ERROR_FAIL;
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}
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LOG_DEBUG("address: 0x%8.8x, value: 0x%2.2x", address, value);
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LOG_DEBUG("address: 0x%8.8" PRIx32 ", value: 0x%2.2x",
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address, value);
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if ((retval = target_write_memory(target, address, 1, 1, &value)) != ERROR_OK)
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{
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@ -1713,7 +1734,13 @@ static int handle_reg_command(struct command_context_s *cmd_ctx, char *cmd, char
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for (i = 0; i < cache->num_regs; i++)
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{
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value = buf_to_str(cache->reg_list[i].value, cache->reg_list[i].size, 16);
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command_print(cmd_ctx, "(%i) %s (/%i): 0x%s (dirty: %i, valid: %i)", count++, cache->reg_list[i].name, cache->reg_list[i].size, value, cache->reg_list[i].dirty, cache->reg_list[i].valid);
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command_print(cmd_ctx, "(%i) %s (/%i): 0x%s (dirty: %i, valid: %i)",
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count++,
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cache->reg_list[i].name,
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(int)(cache->reg_list[i].size),
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value,
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cache->reg_list[i].dirty,
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cache->reg_list[i].valid);
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free(value);
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}
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cache = cache->next;
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@ -1776,7 +1803,7 @@ static int handle_reg_command(struct command_context_s *cmd_ctx, char *cmd, char
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arch_type->get(reg);
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}
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value = buf_to_str(reg->value, reg->size, 16);
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command_print(cmd_ctx, "%s (/%i): 0x%s", reg->name, reg->size, value);
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command_print(cmd_ctx, "%s (/%i): 0x%s", reg->name, (int)(reg->size), value);
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free(value);
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return ERROR_OK;
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}
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@ -1791,7 +1818,7 @@ static int handle_reg_command(struct command_context_s *cmd_ctx, char *cmd, char
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arch_type->set(reg, buf);
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value = buf_to_str(reg->value, reg->size, 16);
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command_print(cmd_ctx, "%s (/%i): 0x%s", reg->name, reg->size, value);
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command_print(cmd_ctx, "%s (/%i): 0x%s", reg->name, (int)(reg->size), value);
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free(value);
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free(buf);
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@ -2037,7 +2064,8 @@ static void handle_md_output(struct command_context_s *cmd_ctx,
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{
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output_len += snprintf(output + output_len,
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sizeof(output) - output_len,
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"0x%8.8x: ", address + (i*size));
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"0x%8.8x: ",
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(unsigned)(address + (i*size)));
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}
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uint32_t value=0;
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@ -2232,7 +2260,9 @@ static int handle_load_image_command(struct command_context_s *cmd_ctx, char *cm
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buffer = malloc(image.sections[i].size);
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if (buffer == NULL)
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{
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command_print(cmd_ctx, "error allocating buffer for section (%d bytes)", image.sections[i].size);
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command_print(cmd_ctx,
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"error allocating buffer for section (%d bytes)",
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(int)(image.sections[i].size));
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break;
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}
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@ -2268,7 +2298,9 @@ static int handle_load_image_command(struct command_context_s *cmd_ctx, char *cm
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break;
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}
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image_size += length;
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command_print(cmd_ctx, "%u byte written at address 0x%8.8x", length, image.sections[i].base_address+offset);
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command_print(cmd_ctx, "%u byte written at address 0x%8.8" PRIx32 "",
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(unsigned int)length,
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image.sections[i].base_address+offset);
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}
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free(buffer);
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@ -2282,7 +2314,9 @@ static int handle_load_image_command(struct command_context_s *cmd_ctx, char *cm
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if (retval==ERROR_OK)
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{
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command_print(cmd_ctx, "downloaded %u byte in %s", image_size, duration_text);
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command_print(cmd_ctx, "downloaded %u byte in %s",
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(unsigned int)image_size,
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duration_text);
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}
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free(duration_text);
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@ -2423,7 +2457,9 @@ static int handle_verify_image_command_internal(struct command_context_s *cmd_ct
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buffer = malloc(image.sections[i].size);
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if (buffer == NULL)
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{
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command_print(cmd_ctx, "error allocating buffer for section (%d bytes)", image.sections[i].size);
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command_print(cmd_ctx,
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"error allocating buffer for section (%d bytes)",
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(int)(image.sections[i].size));
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break;
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}
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if ((retval = image_read_section(&image, i, 0x0, image.sections[i].size, buffer, &buf_cnt)) != ERROR_OK)
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@ -2469,7 +2505,11 @@ static int handle_verify_image_command_internal(struct command_context_s *cmd_ct
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{
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if (data[t] != buffer[t])
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{
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command_print(cmd_ctx, "Verify operation failed address 0x%08x. Was 0x%02x instead of 0x%02x\n", t + image.sections[i].base_address, data[t], buffer[t]);
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command_print(cmd_ctx,
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"Verify operation failed address 0x%08x. Was 0x%02x instead of 0x%02x\n",
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(unsigned)(t + image.sections[i].base_address),
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data[t],
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buffer[t]);
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free(data);
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free(buffer);
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retval=ERROR_FAIL;
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@ -2486,7 +2526,9 @@ static int handle_verify_image_command_internal(struct command_context_s *cmd_ct
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}
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} else
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{
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command_print(cmd_ctx, "address 0x%08x length 0x%08x", image.sections[i].base_address, buf_cnt);
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command_print(cmd_ctx, "address 0x%08" PRIx32 " length 0x%08" PRIx32 "",
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image.sections[i].base_address,
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buf_cnt);
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}
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free(buffer);
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@ -2502,7 +2544,9 @@ done:
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if (retval==ERROR_OK)
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{
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command_print(cmd_ctx, "verified %u bytes in %s", image_size, duration_text);
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command_print(cmd_ctx, "verified %u bytes in %s",
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(unsigned int)image_size,
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duration_text);
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}
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free(duration_text);
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@ -2531,15 +2575,17 @@ static int handle_bp_command_list(struct command_context_s *cmd_ctx)
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{
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char* buf = buf_to_str(breakpoint->orig_instr,
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breakpoint->length, 16);
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command_print(cmd_ctx, "0x%8.8x, 0x%x, %i, 0x%s",
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breakpoint->address, breakpoint->length,
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command_print(cmd_ctx, "0x%8.8" PRIx32 ", 0x%x, %i, 0x%s",
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breakpoint->address,
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breakpoint->length,
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breakpoint->set, buf);
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free(buf);
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}
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else
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{
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command_print(cmd_ctx, "0x%8.8x, 0x%x, %i",
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breakpoint->address, breakpoint->length, breakpoint->set);
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command_print(cmd_ctx, "0x%8.8" PRIx32 ", 0x%x, %i",
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breakpoint->address,
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breakpoint->length, breakpoint->set);
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}
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breakpoint = breakpoint->next;
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@ -2553,7 +2599,7 @@ static int handle_bp_command_set(struct command_context_s *cmd_ctx,
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target_t *target = get_current_target(cmd_ctx);
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int retval = breakpoint_add(target, addr, length, hw);
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if (ERROR_OK == retval)
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command_print(cmd_ctx, "breakpoint set at 0x%8.8x", addr);
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command_print(cmd_ctx, "breakpoint set at 0x%8.8" PRIx32 "", addr);
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else
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LOG_ERROR("Failure setting breakpoint");
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return retval;
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@ -2619,7 +2665,13 @@ static int handle_wp_command(struct command_context_s *cmd_ctx, char *cmd, char
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while (watchpoint)
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{
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command_print(cmd_ctx, "address: 0x%8.8x, len: 0x%8.8x, r/w/a: %i, value: 0x%8.8x, mask: 0x%8.8x", watchpoint->address, watchpoint->length, watchpoint->rw, watchpoint->value, watchpoint->mask);
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command_print(cmd_ctx,
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"address: 0x%8.8" PRIx32 ", len: 0x%8.8x, r/w/a: %i, value: 0x%8.8" PRIx32 ", mask: 0x%8.8" PRIx32 "",
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watchpoint->address,
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watchpoint->length,
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(int)(watchpoint->rw),
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watchpoint->value,
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watchpoint->mask);
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watchpoint = watchpoint->next;
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}
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return ERROR_OK;
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@ -2721,7 +2773,7 @@ static int handle_virt2phys_command(command_context_t *cmd_ctx,
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target_t *target = get_current_target(cmd_ctx);
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retval = target->type->virt2phys(target, va, &pa);
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if (retval == ERROR_OK)
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command_print(cmd_ctx, "Physical address 0x%08x", pa);
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command_print(cmd_ctx, "Physical address 0x%08" PRIx32 "", pa);
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return retval;
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}
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@ -3057,7 +3109,9 @@ static int target_mem2array(Jim_Interp *interp, target_t *target, int argc, Jim_
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} else {
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char buf[100];
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Jim_SetResult(interp, Jim_NewEmptyStringObj(interp));
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sprintf(buf, "mem2array address: 0x%08x is not aligned for %d byte reads", addr, width);
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sprintf(buf, "mem2array address: 0x%08" PRIx32 " is not aligned for %" PRId32 " byte reads",
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addr,
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width);
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Jim_AppendStrings(interp, Jim_GetResult(interp), buf , NULL);
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return JIM_ERR;
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}
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@ -3079,7 +3133,10 @@ static int target_mem2array(Jim_Interp *interp, target_t *target, int argc, Jim_
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retval = target_read_memory( target, addr, width, count, buffer );
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if (retval != ERROR_OK) {
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/* BOO !*/
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LOG_ERROR("mem2array: Read @ 0x%08x, w=%d, cnt=%d, failed", addr, width, count);
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LOG_ERROR("mem2array: Read @ 0x%08x, w=%d, cnt=%d, failed",
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(unsigned int)addr,
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(int)width,
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(int)count);
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Jim_SetResult(interp, Jim_NewEmptyStringObj(interp));
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Jim_AppendStrings(interp, Jim_GetResult(interp), "mem2array: cannot read memory", NULL);
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e = JIM_ERR;
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@ -3239,7 +3296,9 @@ static int target_array2mem(Jim_Interp *interp, target_t *target, int argc, Jim_
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} else {
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char buf[100];
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Jim_SetResult(interp, Jim_NewEmptyStringObj(interp));
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sprintf(buf, "array2mem address: 0x%08x is not aligned for %d byte reads", addr, width);
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sprintf(buf, "array2mem address: 0x%08x is not aligned for %d byte reads",
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(unsigned int)addr,
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(int)width);
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Jim_AppendStrings(interp, Jim_GetResult(interp), buf , NULL);
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return JIM_ERR;
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}
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@ -3278,7 +3337,10 @@ static int target_array2mem(Jim_Interp *interp, target_t *target, int argc, Jim_
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retval = target_write_memory(target, addr, width, count, buffer);
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if (retval != ERROR_OK) {
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/* BOO !*/
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LOG_ERROR("array2mem: Write @ 0x%08x, w=%d, cnt=%d, failed", addr, width, count);
|
||||
LOG_ERROR("array2mem: Write @ 0x%08x, w=%d, cnt=%d, failed",
|
||||
(unsigned int)addr,
|
||||
(int)width,
|
||||
(int)count);
|
||||
Jim_SetResult(interp, Jim_NewEmptyStringObj(interp));
|
||||
Jim_AppendStrings(interp, Jim_GetResult(interp), "array2mem: cannot read memory", NULL);
|
||||
e = JIM_ERR;
|
||||
|
@ -3296,8 +3358,8 @@ void target_all_handle_event( enum target_event e )
|
|||
target_t *target;
|
||||
|
||||
LOG_DEBUG( "**all*targets: event: %d, %s",
|
||||
e,
|
||||
Jim_Nvp_value2name_simple( nvp_target_event, e )->name );
|
||||
(int)e,
|
||||
Jim_Nvp_value2name_simple( nvp_target_event, e )->name );
|
||||
|
||||
target = all_targets;
|
||||
while (target){
|
||||
|
@ -4379,7 +4441,8 @@ static int handle_fast_load_image_command(struct command_context_s *cmd_ctx, cha
|
|||
buffer = malloc(image.sections[i].size);
|
||||
if (buffer == NULL)
|
||||
{
|
||||
command_print(cmd_ctx, "error allocating buffer for section (%d bytes)", image.sections[i].size);
|
||||
command_print(cmd_ctx, "error allocating buffer for section (%d bytes)",
|
||||
(int)(image.sections[i].size));
|
||||
break;
|
||||
}
|
||||
|
||||
|
@ -4421,7 +4484,9 @@ static int handle_fast_load_image_command(struct command_context_s *cmd_ctx, cha
|
|||
fastload[i].length=length;
|
||||
|
||||
image_size += length;
|
||||
command_print(cmd_ctx, "%u byte written at address 0x%8.8x", length, image.sections[i].base_address+offset);
|
||||
command_print(cmd_ctx, "%u byte written at address 0x%8.8x",
|
||||
(unsigned int)length,
|
||||
((unsigned int)(image.sections[i].base_address+offset)));
|
||||
}
|
||||
|
||||
free(buffer);
|
||||
|
@ -4430,7 +4495,7 @@ static int handle_fast_load_image_command(struct command_context_s *cmd_ctx, cha
|
|||
duration_stop_measure(&duration, &duration_text);
|
||||
if (retval==ERROR_OK)
|
||||
{
|
||||
command_print(cmd_ctx, "Loaded %u bytes in %s", image_size, duration_text);
|
||||
command_print(cmd_ctx, "Loaded %u bytes in %s", (unsigned int)image_size, duration_text);
|
||||
command_print(cmd_ctx, "NB!!! image has not been loaded to target, issue a subsequent 'fast_load' to do so.");
|
||||
}
|
||||
free(duration_text);
|
||||
|
@ -4461,7 +4526,9 @@ static int handle_fast_load_command(struct command_context_s *cmd_ctx, char *cmd
|
|||
for (i=0; i<fastload_num;i++)
|
||||
{
|
||||
target_t *target = get_current_target(cmd_ctx);
|
||||
command_print(cmd_ctx, "Write to 0x%08x, length 0x%08x", fastload[i].address, fastload[i].length);
|
||||
command_print(cmd_ctx, "Write to 0x%08x, length 0x%08x",
|
||||
(unsigned int)(fastload[i].address),
|
||||
(unsigned int)(fastload[i].length));
|
||||
if (retval==ERROR_OK)
|
||||
{
|
||||
retval = target_write_buffer(target, fastload[i].address, fastload[i].length, fastload[i].data);
|
||||
|
@ -4472,3 +4539,11 @@ static int handle_fast_load_command(struct command_context_s *cmd_ctx, char *cmd
|
|||
command_print(cmd_ctx, "Loaded image %f kBytes/s", (float)(size/1024.0)/((float)(after-ms)/1000.0));
|
||||
return retval;
|
||||
}
|
||||
|
||||
|
||||
/*
|
||||
* Local Variables:
|
||||
* c-basic-offset: 4
|
||||
* tab-width: 4
|
||||
* End:
|
||||
*/
|
||||
|
|
Loading…
Reference in New Issue