target/image: Use proper data types
While at it, fix some coding style issues. Change-Id: Id521394d89e0bf787a6f812701c2cc0fe7e4e63f Signed-off-by: Marc Schink <dev@zapb.de> Reviewed-on: http://openocd.zylin.com/5919 Tested-by: jenkins Reviewed-by: Antonio Borneo <borneo.antonio@gmail.com>
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@ -702,7 +702,7 @@ int flash_write_unlock(struct target *target, struct image *image,
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{
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int retval = ERROR_OK;
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int section;
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unsigned int section;
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uint32_t section_offset;
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struct flash_bank *c;
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int *padding;
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@ -727,8 +727,8 @@ int flash_write_unlock(struct target *target, struct image *image,
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* whereas an image can have sections out of order. */
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struct imagesection **sections = malloc(sizeof(struct imagesection *) *
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image->num_sections);
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int i;
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for (i = 0; i < image->num_sections; i++)
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for (unsigned int i = 0; i < image->num_sections; i++)
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sections[i] = &image->sections[i];
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qsort(sections, image->num_sections, sizeof(struct imagesection *),
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@ -738,7 +738,7 @@ int flash_write_unlock(struct target *target, struct image *image,
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while (section < image->num_sections) {
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uint32_t buffer_idx;
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uint8_t *buffer;
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int section_last;
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unsigned int section_last;
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target_addr_t run_address = sections[section]->base_address + section_offset;
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uint32_t run_size = sections[section]->size - section_offset;
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int pad_bytes = 0;
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@ -635,9 +635,9 @@ COMMAND_HANDLER(lpc2900_handle_write_custom_command)
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/* The image will always start at offset 0 */
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struct image image;
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image.base_address_set = 1;
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image.base_address_set = true;
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image.base_address = 0;
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image.start_address_set = 0;
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image.start_address_set = false;
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const char *filename = CMD_ARGV[1];
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const char *type = (CMD_ARGC >= 3) ? CMD_ARGV[2] : NULL;
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@ -441,14 +441,14 @@ COMMAND_HANDLER(handle_flash_write_image_command)
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duration_start(&bench);
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if (CMD_ARGC >= 2) {
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image.base_address_set = 1;
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image.base_address_set = true;
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COMMAND_PARSE_NUMBER(llong, CMD_ARGV[1], image.base_address);
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} else {
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image.base_address_set = 0;
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image.base_address_set = false;
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image.base_address = 0x0;
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}
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image.start_address_set = 0;
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image.start_address_set = false;
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retval = image_open(&image, CMD_ARGV[0], (CMD_ARGC == 3) ? CMD_ARGV[2] : NULL);
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if (retval != ERROR_OK)
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@ -393,7 +393,7 @@ static int ulink_load_firmware_and_renumerate(struct ulink **device,
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static int ulink_load_firmware(struct ulink *device, const char *filename)
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{
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struct image ulink_firmware_image;
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int ret, i;
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int ret;
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ret = ulink_cpu_reset(device, CPU_RESET);
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if (ret != ERROR_OK) {
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@ -402,7 +402,7 @@ static int ulink_load_firmware(struct ulink *device, const char *filename)
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}
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ulink_firmware_image.base_address = 0;
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ulink_firmware_image.base_address_set = 0;
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ulink_firmware_image.base_address_set = false;
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ret = image_open(&ulink_firmware_image, filename, "ihex");
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if (ret != ERROR_OK) {
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@ -411,7 +411,7 @@ static int ulink_load_firmware(struct ulink *device, const char *filename)
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}
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/* Download all sections in the image to ULINK */
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for (i = 0; i < ulink_firmware_image.num_sections; i++) {
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for (unsigned int i = 0; i < ulink_firmware_image.num_sections; i++) {
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ret = ulink_write_firmware_section(device, &ulink_firmware_image, i);
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if (ret != ERROR_OK)
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return ret;
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@ -134,7 +134,7 @@ static int load_usb_blaster_firmware(struct libusb_device_handle *libusb_dev,
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}
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ublast2_firmware_image.base_address = 0;
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ublast2_firmware_image.base_address_set = 0;
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ublast2_firmware_image.base_address_set = false;
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int ret = image_open(&ublast2_firmware_image, low->firmware_path, "ihex");
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if (ret != ERROR_OK) {
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@ -162,7 +162,7 @@ static int load_usb_blaster_firmware(struct libusb_device_handle *libusb_dev,
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100);
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/* Download all sections in the image to ULINK */
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for (int i = 0; i < ublast2_firmware_image.num_sections; i++) {
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for (unsigned int i = 0; i < ublast2_firmware_image.num_sections; i++) {
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ret = ublast2_write_firmware_section(libusb_dev,
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&ublast2_firmware_image, i);
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if (ret != ERROR_OK) {
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@ -650,7 +650,6 @@ static struct etm_capture_driver *etm_capture_drivers[] = {
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static int etm_read_instruction(struct etm_context *ctx, struct arm_instruction *instruction)
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{
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int i;
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int section = -1;
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size_t size_read;
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uint32_t opcode;
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@ -660,7 +659,7 @@ static int etm_read_instruction(struct etm_context *ctx, struct arm_instruction
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return ERROR_TRACE_IMAGE_UNAVAILABLE;
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/* search for the section the current instruction belongs to */
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for (i = 0; i < ctx->image->num_sections; i++) {
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for (unsigned int i = 0; i < ctx->image->num_sections; i++) {
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if ((ctx->image->sections[i].base_address <= ctx->current_pc) &&
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(ctx->image->sections[i].base_address + ctx->image->sections[i].size >
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ctx->current_pc)) {
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@ -1683,15 +1682,15 @@ COMMAND_HANDLER(handle_etm_image_command)
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}
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etm_ctx->image = malloc(sizeof(struct image));
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etm_ctx->image->base_address_set = 0;
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etm_ctx->image->start_address_set = 0;
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etm_ctx->image->base_address_set = false;
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etm_ctx->image->start_address_set = false;
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/* a base address isn't always necessary, default to 0x0 (i.e. don't relocate) */
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if (CMD_ARGC >= 2) {
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etm_ctx->image->base_address_set = 1;
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etm_ctx->image->base_address_set = true;
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COMMAND_PARSE_NUMBER(llong, CMD_ARGV[1], etm_ctx->image->base_address);
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} else
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etm_ctx->image->base_address_set = 0;
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etm_ctx->image->base_address_set = false;
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if (image_open(etm_ctx->image, CMD_ARGV[0],
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(CMD_ARGC >= 3) ? CMD_ARGV[2] : NULL) != ERROR_OK) {
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@ -124,7 +124,6 @@ static int image_ihex_buffer_complete_inner(struct image *image,
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uint32_t full_address;
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uint32_t cooked_bytes;
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bool end_rec = false;
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int i;
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/* we can't determine the number of sections that we'll have to create ahead of time,
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* so we locally hold them until parsing is finished */
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@ -207,7 +206,7 @@ static int image_ihex_buffer_complete_inner(struct image *image,
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/* copy section information */
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image->sections = malloc(sizeof(struct imagesection) * image->num_sections);
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for (i = 0; i < image->num_sections; i++) {
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for (unsigned int i = 0; i < image->num_sections; i++) {
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image->sections[i].private = section[i].private;
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image->sections[i].base_address = section[i].base_address;
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image->sections[i].size = section[i].size;
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@ -294,7 +293,7 @@ static int image_ihex_buffer_complete_inner(struct image *image,
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cal_checksum += (uint8_t)start_address;
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bytes_read += 8;
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image->start_address_set = 1;
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image->start_address_set = true;
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image->start_address = be_to_h_u32((uint8_t *)&start_address);
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} else {
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LOG_ERROR("unhandled IHEX record type: %i", (int)record_type);
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@ -471,7 +470,7 @@ static int image_elf_read_headers(struct image *image)
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}
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}
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image->start_address_set = 1;
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image->start_address_set = true;
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image->start_address = field32(elf, elf->header->e_entry);
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return ERROR_OK;
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@ -529,7 +528,6 @@ static int image_mot_buffer_complete_inner(struct image *image,
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uint32_t full_address;
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uint32_t cooked_bytes;
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bool end_rec = false;
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int i;
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/* we can't determine the number of sections that we'll have to create ahead of time,
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* so we locally hold them until parsing is finished */
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@ -658,7 +656,7 @@ static int image_mot_buffer_complete_inner(struct image *image,
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/* copy section information */
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image->sections = malloc(sizeof(struct imagesection) * image->num_sections);
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for (i = 0; i < image->num_sections; i++) {
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for (unsigned int i = 0; i < image->num_sections; i++) {
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image->sections[i].private = section[i].private;
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image->sections[i].base_address = section[i].base_address;
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image->sections[i].size = section[i].size;
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@ -821,21 +819,20 @@ int image_open(struct image *image, const char *url, const char *type_string)
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}
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} else if (image->type == IMAGE_BUILDER) {
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image->num_sections = 0;
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image->base_address_set = 0;
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image->base_address_set = false;
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image->sections = NULL;
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image->type_private = NULL;
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}
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if (image->base_address_set) {
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/* relocate */
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int section;
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for (section = 0; section < image->num_sections; section++)
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for (unsigned int section = 0; section < image->num_sections; section++)
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image->sections[section].base_address += image->base_address;
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/* we're done relocating. The two statements below are mainly
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* for documentation purposes: stop anyone from empirically
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* thinking they should use these values henceforth. */
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image->base_address = 0;
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image->base_address_set = 0;
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image->base_address_set = false;
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}
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return retval;
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@ -1009,9 +1006,7 @@ void image_close(struct image *image)
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free(image_mot->buffer);
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image_mot->buffer = NULL;
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} else if (image->type == IMAGE_BUILDER) {
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int i;
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for (i = 0; i < image->num_sections; i++) {
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for (unsigned int i = 0; i < image->num_sections; i++) {
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free(image->sections[i].private);
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image->sections[i].private = NULL;
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}
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@ -55,11 +55,11 @@ struct imagesection {
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struct image {
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enum image_type type; /* image type (plain, ihex, ...) */
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void *type_private; /* type private data */
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int num_sections; /* number of sections contained in the image */
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unsigned int num_sections; /* number of sections contained in the image */
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struct imagesection *sections; /* array of sections */
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int base_address_set; /* whether the image has a base address set (for relocation purposes) */
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bool base_address_set; /* whether the image has a base address set (for relocation purposes) */
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long long base_address; /* base address, if one is set */
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int start_address_set; /* whether the image has a start address (entry point) associated */
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bool start_address_set; /* whether the image has a start address (entry point) associated */
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uint32_t start_address; /* start address, if one is set */
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};
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@ -3404,11 +3404,11 @@ static COMMAND_HELPER(parse_load_image_command_CMD_ARGV, struct image *image,
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target_addr_t addr;
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COMMAND_PARSE_ADDRESS(CMD_ARGV[1], addr);
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image->base_address = addr;
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image->base_address_set = 1;
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image->base_address_set = true;
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} else
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image->base_address_set = 0;
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image->base_address_set = false;
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image->start_address_set = 0;
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image->start_address_set = false;
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if (CMD_ARGC >= 4)
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COMMAND_PARSE_ADDRESS(CMD_ARGV[3], *min_address);
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@ -3431,7 +3431,6 @@ COMMAND_HANDLER(handle_load_image_command)
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uint32_t image_size;
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target_addr_t min_address = 0;
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target_addr_t max_address = -1;
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int i;
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struct image image;
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int retval = CALL_COMMAND_HANDLER(parse_load_image_command_CMD_ARGV,
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@ -3449,7 +3448,7 @@ COMMAND_HANDLER(handle_load_image_command)
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image_size = 0x0;
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retval = ERROR_OK;
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for (i = 0; i < image.num_sections; i++) {
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for (unsigned int i = 0; i < image.num_sections; i++) {
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buffer = malloc(image.sections[i].size);
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if (buffer == NULL) {
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command_print(CMD,
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@ -3582,7 +3581,6 @@ static COMMAND_HELPER(handle_verify_image_command_internal, enum verify_mode ver
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uint8_t *buffer;
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size_t buf_cnt;
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uint32_t image_size;
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int i;
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int retval;
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uint32_t checksum = 0;
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uint32_t mem_checksum = 0;
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@ -3606,13 +3604,13 @@ static COMMAND_HELPER(handle_verify_image_command_internal, enum verify_mode ver
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target_addr_t addr;
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COMMAND_PARSE_ADDRESS(CMD_ARGV[1], addr);
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image.base_address = addr;
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image.base_address_set = 1;
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image.base_address_set = true;
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} else {
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image.base_address_set = 0;
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image.base_address_set = false;
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image.base_address = 0x0;
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}
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image.start_address_set = 0;
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image.start_address_set = false;
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retval = image_open(&image, CMD_ARGV[0], (CMD_ARGC == 3) ? CMD_ARGV[2] : NULL);
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if (retval != ERROR_OK)
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@ -3621,12 +3619,12 @@ static COMMAND_HELPER(handle_verify_image_command_internal, enum verify_mode ver
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image_size = 0x0;
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int diffs = 0;
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retval = ERROR_OK;
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for (i = 0; i < image.num_sections; i++) {
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for (unsigned int i = 0; i < image.num_sections; i++) {
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buffer = malloc(image.sections[i].size);
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if (buffer == NULL) {
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command_print(CMD,
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"error allocating buffer for section (%d bytes)",
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(int)(image.sections[i].size));
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"error allocating buffer for section (%" PRIu32 " bytes)",
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image.sections[i].size);
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break;
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}
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retval = image_read_section(&image, i, 0x0, image.sections[i].size, buffer, &buf_cnt);
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@ -5871,7 +5869,6 @@ COMMAND_HANDLER(handle_fast_load_image_command)
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uint32_t image_size;
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target_addr_t min_address = 0;
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target_addr_t max_address = -1;
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int i;
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struct image image;
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@ -5897,7 +5894,7 @@ COMMAND_HANDLER(handle_fast_load_image_command)
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return ERROR_FAIL;
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}
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memset(fastload, 0, sizeof(struct FastLoad)*image.num_sections);
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for (i = 0; i < image.num_sections; i++) {
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for (unsigned int i = 0; i < image.num_sections; i++) {
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buffer = malloc(image.sections[i].size);
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if (buffer == NULL) {
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command_print(CMD, "error allocating buffer for section (%d bytes)",
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@ -2582,7 +2582,6 @@ static int xscale_read_instruction(struct target *target, uint32_t pc,
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struct arm_instruction *instruction)
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{
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struct xscale_common *const xscale = target_to_xscale(target);
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int i;
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int section = -1;
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size_t size_read;
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uint32_t opcode;
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@ -2592,7 +2591,7 @@ static int xscale_read_instruction(struct target *target, uint32_t pc,
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return ERROR_TRACE_IMAGE_UNAVAILABLE;
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/* search for the section the current instruction belongs to */
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for (i = 0; i < xscale->trace.image->num_sections; i++) {
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for (unsigned int i = 0; i < xscale->trace.image->num_sections; i++) {
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if ((xscale->trace.image->sections[i].base_address <= pc) &&
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(xscale->trace.image->sections[i].base_address +
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xscale->trace.image->sections[i].size > pc)) {
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@ -3428,15 +3427,15 @@ COMMAND_HANDLER(xscale_handle_trace_image_command)
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}
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xscale->trace.image = malloc(sizeof(struct image));
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xscale->trace.image->base_address_set = 0;
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xscale->trace.image->start_address_set = 0;
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xscale->trace.image->base_address_set = false;
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xscale->trace.image->start_address_set = false;
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/* a base address isn't always necessary, default to 0x0 (i.e. don't relocate) */
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if (CMD_ARGC >= 2) {
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xscale->trace.image->base_address_set = 1;
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xscale->trace.image->base_address_set = true;
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COMMAND_PARSE_NUMBER(llong, CMD_ARGV[1], xscale->trace.image->base_address);
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} else
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xscale->trace.image->base_address_set = 0;
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xscale->trace.image->base_address_set = false;
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if (image_open(xscale->trace.image, CMD_ARGV[0],
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(CMD_ARGC >= 3) ? CMD_ARGV[2] : NULL) != ERROR_OK) {
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