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layout: Introduce flashrom_layout_new()
It initializes an empty layout. Currently the maximum number of entries has to be specified, which will vanish once we use dynamic allocation per entry. We replace the two special cases `single_layout` and `ich_layout` with dynamically allocated layouts. As a result, we have to take care to release the `default_layout` in a flashctx once we are done with it. Change-Id: I2ae7246493ff592e631cce924777925c7825e398 Signed-off-by: Nico Huber <nico.h@gmx.de> Reviewed-on: https://review.coreboot.org/c/flashrom/+/33543 Tested-by: build bot (Jenkins) <no-reply@coreboot.org> Reviewed-by: Edward O'Callaghan <quasisec@chromium.org> Reviewed-by: Angel Pons <th3fanbus@gmail.com>
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@ -854,8 +854,10 @@ out_release:
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out_shutdown:
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programmer_shutdown();
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out:
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for (i = 0; i < chipcount; i++)
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for (i = 0; i < chipcount; i++) {
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flashrom_layout_release(flashes[i].default_layout);
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free(flashes[i].chip);
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}
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layout_cleanup(&include_args);
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free(filename);
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2
flash.h
2
flash.h
@ -265,7 +265,7 @@ struct flashrom_flashctx {
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chipaddr virtual_registers;
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struct registered_master *mst;
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const struct flashrom_layout *layout;
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struct single_layout fallback_layout;
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struct flashrom_layout *default_layout;
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struct {
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bool force;
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bool force_boardmismatch;
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13
flashrom.c
13
flashrom.c
@ -822,15 +822,12 @@ notfound:
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if (!flash->chip)
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return -1;
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/* Fill fallback layout covering the whole chip. */
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struct single_layout *const fallback = &flash->fallback_layout;
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fallback->base.entries = &fallback->entry;
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fallback->base.capacity = 1;
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fallback->base.num_entries = 0;
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if (flashrom_layout_add_region(&fallback->base,
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/* Fill default layout covering the whole chip. */
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if (flashrom_layout_new(&flash->default_layout, 1) ||
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flashrom_layout_add_region(flash->default_layout,
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0, flash->chip->total_size * 1024 - 1, "complete flash") ||
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flashrom_layout_include_region(&fallback->base, "complete flash"))
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return -1;
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flashrom_layout_include_region(flash->default_layout, "complete flash"))
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return -1;
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tmp = flashbuses_to_text(flash->chip->bustype);
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msg_cinfo("%s %s flash chip \"%s\" (%d kB, %s) ", force ? "Assuming" : "Found",
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@ -1261,7 +1261,9 @@ int read_ich_descriptors_via_fdo(enum ich_chipset cs, void *spibar, struct ich_d
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* 1 if the descriptor couldn't be parsed,
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* 2 when out of memory.
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*/
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int layout_from_ich_descriptors(struct ich_layout *const layout, const void *const dump, const size_t len)
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int layout_from_ich_descriptors(
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struct flashrom_layout **const layout,
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const void *const dump, const size_t len)
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{
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static const char *const regions[] = {
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"fd", "bios", "me", "gbe", "pd", "reg5", "bios2", "reg7", "ec", "reg9", "ie",
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@ -1277,10 +1279,8 @@ int layout_from_ich_descriptors(struct ich_layout *const layout, const void *con
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return 1;
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}
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memset(layout, 0x00, sizeof(*layout));
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layout->base.entries = layout->entries;
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layout->base.capacity = ARRAY_SIZE(layout->entries);
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layout->base.num_entries = 0;
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if (flashrom_layout_new(layout, ARRAY_SIZE(regions)))
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return 2;
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ssize_t i;
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const ssize_t nr = MIN(ich_number_of_regions(cs, &desc.content), (ssize_t)ARRAY_SIZE(regions));
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@ -1289,8 +1289,11 @@ int layout_from_ich_descriptors(struct ich_layout *const layout, const void *con
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const chipoff_t limit = ICH_FREG_LIMIT(desc.region.FLREGs[i]);
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if (limit <= base)
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continue;
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if (flashrom_layout_add_region(&layout->base, base, limit, regions[i]))
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if (flashrom_layout_add_region(*layout, base, limit, regions[i])) {
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flashrom_layout_release(*layout);
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*layout = NULL;
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return 2;
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}
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}
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return 0;
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}
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@ -564,11 +564,6 @@ struct ich_descriptors {
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struct ich_desc_upper_map upper;
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};
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struct ich_layout {
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struct flashrom_layout base;
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struct romentry entries[MAX_NUM_FLREGS];
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};
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ssize_t ich_number_of_regions(enum ich_chipset cs, const struct ich_desc_content *content);
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ssize_t ich_number_of_masters(enum ich_chipset cs, const struct ich_desc_content *content);
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@ -587,6 +582,6 @@ int read_ich_descriptors_from_dump(const uint32_t *dump, size_t len, enum ich_ch
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int read_ich_descriptors_via_fdo(enum ich_chipset cs, void *spibar, struct ich_descriptors *desc);
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int getFCBA_component_density(enum ich_chipset cs, const struct ich_descriptors *desc, uint8_t idx);
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int layout_from_ich_descriptors(struct ich_layout *, const void *dump, size_t len);
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int layout_from_ich_descriptors(struct flashrom_layout **, const void *dump, size_t len);
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#endif /* __ICH_DESCRIPTORS_H__ */
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28
layout.c
28
layout.c
@ -38,7 +38,7 @@ const struct flashrom_layout *get_layout(const struct flashrom_flashctx *const f
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if (flashctx->layout && flashctx->layout->num_entries)
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return flashctx->layout;
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else
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return &flashctx->fallback_layout.base;
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return flashctx->default_layout;
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}
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static struct romentry *mutable_layout_next(
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@ -383,6 +383,32 @@ const struct romentry *layout_next(
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* @{
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*/
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/**
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* @brief Create a new, empty layout.
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*
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* @param layout Pointer to returned layout reference.
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* @param count Number of layout entries to allocate.
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*
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* @return 0 on success,
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* 1 if out of memory.
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*/
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int flashrom_layout_new(struct flashrom_layout **const layout, const unsigned int count)
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{
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*layout = malloc(sizeof(**layout) + count * sizeof(struct romentry));
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if (!*layout) {
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msg_gerr("Error creating layout: %s\n", strerror(errno));
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return 1;
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}
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const struct flashrom_layout tmp = {
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.entries = (void *)((char *)*layout + sizeof(**layout)),
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.capacity = count,
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.num_entries = 0,
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};
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**layout = tmp;
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return 0;
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}
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/**
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* @brief Add another region to an existing layout.
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*
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5
layout.h
5
layout.h
@ -52,11 +52,6 @@ struct flashrom_layout {
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size_t num_entries;
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};
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struct single_layout {
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struct flashrom_layout base;
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struct romentry entry;
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};
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struct layout_include_args {
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char *name;
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char *file;
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@ -330,13 +330,14 @@ int flashrom_flash_probe(struct flashrom_flashctx **const flashctx,
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ret = 0;
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/* We found one chip, now check that there is no second match. */
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if (probe_flash(®istered_masters[i], flash_idx + 1, &second_flashctx, 0) != -1) {
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flashrom_layout_release(second_flashctx.default_layout);
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ret = 3;
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break;
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}
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}
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}
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if (ret) {
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free(*flashctx);
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flashrom_flash_release(*flashctx);
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*flashctx = NULL;
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}
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return ret;
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@ -360,6 +361,7 @@ size_t flashrom_flash_getsize(const struct flashrom_flashctx *const flashctx)
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*/
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void flashrom_flash_release(struct flashrom_flashctx *const flashctx)
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{
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flashrom_layout_release(flashctx->default_layout);
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free(flashctx);
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}
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@ -435,16 +437,10 @@ int flashrom_layout_read_from_ifd(struct flashrom_layout **const layout, struct
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#ifndef __FLASHROM_LITTLE_ENDIAN__
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return 6;
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#else
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struct ich_layout dump_layout;
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struct flashrom_layout *dump_layout, *chip_layout;
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int ret = 1;
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void *const desc = malloc(0x1000);
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struct ich_layout *const chip_layout = malloc(sizeof(*chip_layout));
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if (!desc || !chip_layout) {
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msg_gerr("Out of memory!\n");
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goto _free_ret;
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}
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if (prepare_flash_access(flashctx, true, false, false, false))
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goto _free_ret;
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@ -457,7 +453,7 @@ int flashrom_layout_read_from_ifd(struct flashrom_layout **const layout, struct
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}
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msg_cinfo("done.\n");
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if (layout_from_ich_descriptors(chip_layout, desc, 0x1000)) {
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if (layout_from_ich_descriptors(&chip_layout, desc, 0x1000)) {
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msg_cerr("Couldn't parse the descriptor!\n");
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ret = 3;
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goto _finalize_ret;
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@ -470,12 +466,13 @@ int flashrom_layout_read_from_ifd(struct flashrom_layout **const layout, struct
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goto _finalize_ret;
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}
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const struct romentry *chip_entry = layout_next(&chip_layout->base, NULL);
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const struct romentry *dump_entry = layout_next(&dump_layout.base, NULL);
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const struct romentry *chip_entry = layout_next(chip_layout, NULL);
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const struct romentry *dump_entry = layout_next(dump_layout, NULL);
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while (chip_entry && dump_entry && !memcmp(chip_entry, dump_entry, sizeof(*chip_entry))) {
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chip_entry = layout_next(&chip_layout->base, chip_entry);
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dump_entry = layout_next(&dump_layout.base, dump_entry);
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chip_entry = layout_next(chip_layout, chip_entry);
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dump_entry = layout_next(dump_layout, dump_entry);
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}
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flashrom_layout_release(dump_layout);
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if (chip_entry || dump_entry) {
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msg_cerr("Descriptors don't match!\n");
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ret = 5;
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@ -490,7 +487,7 @@ _finalize_ret:
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finalize_flash_access(flashctx);
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_free_ret:
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if (ret)
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free(chip_layout);
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flashrom_layout_release(chip_layout);
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free(desc);
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return ret;
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#endif
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@ -106,6 +106,7 @@ int flashrom_image_write(struct flashrom_flashctx *, void *buffer, size_t buffer
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int flashrom_image_verify(struct flashrom_flashctx *, const void *buffer, size_t buffer_len);
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struct flashrom_layout;
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int flashrom_layout_new(struct flashrom_layout **, unsigned int count);
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int flashrom_layout_read_from_ifd(struct flashrom_layout **, struct flashrom_flashctx *, const void *dump, size_t len);
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int flashrom_layout_read_fmap_from_rom(struct flashrom_layout **,
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struct flashrom_flashctx *, off_t offset, size_t length);
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