vboot: move to region_devices
Now that vboot is using offsets for everything remove the pass through vboot_get_region() and use region_devices as first class citizens. Change-Id: I1a86f3725e5bce38e6ca31e9641b1a8f4ac50e96 Signed-off-by: Aaron Durbin <adurbin@chromium.org> Reviewed-on: http://review.coreboot.org/10225 Tested-by: build bot (Jenkins) Reviewed-by: Patrick Georgi <pgeorgi@google.com>
This commit is contained in:
parent
0424c95a6d
commit
4e50cdd979
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@ -19,8 +19,6 @@
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* TODO: Make this CAR-friendly in case we use it on x86 some day.
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*/
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#include <cbfs.h>
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#include <cbfs_core.h>
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#include <console/console.h>
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#include <spi_flash.h>
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#include <string.h>
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@ -32,7 +30,7 @@
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#define BLOB_SIZE VB2_NVDATA_SIZE
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/* FMAP descriptor of the NVRAM area */
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static struct region nvram_region;
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static struct region_device nvram_region;
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/* offset of the current nvdata in SPI flash */
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static int blob_offset = -1;
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@ -73,8 +71,8 @@ static int init_vbnv(void)
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int offset;
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int i;
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vboot_locate_region("RW_NVRAM", &nvram_region);
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if (region_sz(&nvram_region) < BLOB_SIZE) {
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if (vboot_named_region_device("RW_NVRAM", &nvram_region) ||
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region_device_sz(&nvram_region) < BLOB_SIZE) {
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printk(BIOS_ERR, "%s: failed to locate NVRAM\n", __func__);
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return 1;
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}
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@ -83,8 +81,8 @@ static int init_vbnv(void)
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for (i = 0; i < BLOB_SIZE; i++)
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empty_blob[i] = erase_value();
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offset = region_offset(&nvram_region);
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top_offset = offset + region_sz(&nvram_region) - BLOB_SIZE;
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offset = 0;
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top_offset = region_device_sz(&nvram_region) - BLOB_SIZE;
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/*
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* after the loop, offset is supposed to point the blob right before
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@ -92,8 +90,8 @@ static int init_vbnv(void)
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* empty blob, or the base of the region if the nvram has never been
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* used.
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*/
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for (i = offset; i <= top_offset; i += BLOB_SIZE) {
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if (vboot_get_region(i, BLOB_SIZE, buf) == NULL) {
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for (i = 0; i <= top_offset; i += BLOB_SIZE) {
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if (rdev_readat(&nvram_region, buf, i, BLOB_SIZE) < 0) {
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printk(BIOS_ERR, "failed to read nvdata\n");
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return 1;
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}
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@ -103,7 +101,7 @@ static int init_vbnv(void)
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}
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/* reread the nvdata and write it to the cache */
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if (vboot_get_region(offset, BLOB_SIZE, cache) == NULL) {
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if (rdev_readat(&nvram_region, cache, offset, BLOB_SIZE) < 0) {
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printk(BIOS_ERR, "failed to read nvdata\n");
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return 1;
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}
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@ -130,8 +128,8 @@ static int erase_nvram(void)
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if (vbnv_flash_probe())
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return 1;
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if (spi_flash->erase(spi_flash, region_offset(&nvram_region),
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region_sz(&nvram_region))) {
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if (spi_flash->erase(spi_flash, region_device_offset(&nvram_region),
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region_device_sz(&nvram_region))) {
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printk(BIOS_ERR, "failed to erase nvram\n");
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return 1;
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}
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@ -171,14 +169,16 @@ void save_vbnv(const uint8_t *vbnv_copy)
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if (new_offset > top_offset) {
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if (erase_nvram())
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return; /* error */
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new_offset = region_offset(&nvram_region);
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new_offset = 0;
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}
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break;
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}
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}
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if (!vbnv_flash_probe() &&
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!spi_flash->write(spi_flash, new_offset, BLOB_SIZE, vbnv_copy)) {
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!spi_flash->write(spi_flash,
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region_device_offset(&nvram_region) + new_offset,
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BLOB_SIZE, vbnv_copy)) {
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/* write was successful. safely move pointer forward */
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blob_offset = new_offset;
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memcpy(cache, vbnv_copy, BLOB_SIZE);
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@ -46,18 +46,22 @@ struct vb2_working_data * const vboot_get_working_data(void);
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size_t vb2_working_data_size(void);
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void *vboot_get_work_buffer(struct vb2_working_data *wd);
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static inline void vb2_get_selected_region(struct vb2_working_data *wd,
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struct region *region)
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/* Returns 0 on success. < 0 on failure. */
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static inline int vb2_get_selected_region(struct vb2_working_data *wd,
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struct region_device *rdev)
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{
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region->offset = wd->selected_region_offset;
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region->size = wd->selected_region_size;
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struct region reg = {
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.offset = wd->selected_region_offset,
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.size = wd->selected_region_size,
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};
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return vboot_region_device(®, rdev);
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}
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static inline void vb2_set_selected_region(struct vb2_working_data *wd,
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struct region *region)
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struct region_device *rdev)
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{
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wd->selected_region_offset = region_offset(region);
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wd->selected_region_size = region_sz(region);
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wd->selected_region_offset = region_device_offset(rdev);
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wd->selected_region_size = region_device_sz(rdev);
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}
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static inline int vboot_is_slot_selected(struct vb2_working_data *wd)
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@ -127,8 +127,9 @@ void vboot_fill_handoff(void)
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int i;
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struct vboot_handoff *vh;
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struct vb2_shared_data *sd;
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struct region fw_main;
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struct region_device fw_main;
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struct vboot_components *fw_info;
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size_t metadata_sz;
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struct vb2_working_data *wd = vboot_get_working_data();
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sd = vboot_get_work_buffer(wd);
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@ -151,15 +152,23 @@ void vboot_fill_handoff(void)
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if (vboot_is_readonly_path(wd))
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return;
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vb2_get_selected_region(wd, &fw_main);
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fw_info = vboot_locate_components(&fw_main);
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if (vb2_get_selected_region(wd, &fw_main))
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die("No component metadata.\n");
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metadata_sz = sizeof(*fw_info);
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metadata_sz += MAX_PARSED_FW_COMPONENTS * sizeof(fw_info->entries[0]);
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fw_info = rdev_mmap(&fw_main, 0, metadata_sz);
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if (fw_info == NULL)
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die("failed to locate firmware components\n");
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/* these offset & size are used to load a rw boot loader */
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for (i = 0; i < fw_info->num_components; i++) {
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vh->components[i].address =
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region_offset(&fw_main) + fw_info->entries[i].offset;
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vh->components[i].address = region_device_offset(&fw_main);
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vh->components[i].address += fw_info->entries[i].offset;
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vh->components[i].size = fw_info->entries[i].size;
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}
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rdev_munmap(&fw_main, fw_info);
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}
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@ -25,6 +25,7 @@
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#include <rules.h>
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#include <string.h>
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#include "misc.h"
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#include "../vboot_handoff.h"
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#include "../symbols.h"
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/* The stage loading code is compiled and entered from multiple stages. The
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@ -121,10 +122,11 @@ static int vboot_loader_active(struct prog *prog)
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if (IS_ENABLED(CONFIG_MULTIPLE_CBFS_INSTANCES) &&
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run_verification) {
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/* RW A or B */
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struct region fw_main;
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struct region_device fw_main;
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vb2_get_selected_region(wd, &fw_main);
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cbfs_set_header_offset(region_offset(&fw_main));
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if (vb2_get_selected_region(wd, &fw_main))
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die("failed to reference selected region\n");
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cbfs_set_header_offset(region_device_offset(&fw_main));
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}
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return 1;
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}
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@ -132,25 +134,35 @@ static int vboot_loader_active(struct prog *prog)
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return 0;
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}
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static int vboot_fw_region(int fw_index, struct region *fw_main,
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struct vboot_components *fw_info,
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struct region *fc)
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static int vboot_fw_region(int fw_index, const struct region_device *fw_main,
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struct region_device *fw)
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{
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size_t fw_main_end;
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size_t fc_end;
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struct vboot_components *fw_info;
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size_t metadata_sz;
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size_t offset;
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size_t size;
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if (fw_index >= fw_info->num_components) {
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printk(BIOS_INFO, "invalid stage index: %d\n", fw_index);
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metadata_sz = sizeof(*fw_info);
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metadata_sz += MAX_PARSED_FW_COMPONENTS * sizeof(fw_info->entries[0]);
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fw_info = rdev_mmap(fw_main, 0, metadata_sz);
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if (fw_info == NULL) {
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printk(BIOS_INFO, "No component metadata.\n");
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return -1;
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}
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fc->offset = region_offset(fw_main) + fw_info->entries[fw_index].offset;
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fc->size = fw_info->entries[fw_index].size;
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if (fw_index >= fw_info->num_components) {
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printk(BIOS_INFO, "invalid stage index: %d\n", fw_index);
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rdev_munmap(fw_main, fw_info);
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return -1;
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}
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fw_main_end = region_offset(fw_main) + region_sz(fw_main);
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fc_end = region_offset(fc) + region_sz(fc);
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offset = fw_info->entries[fw_index].offset;
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size = fw_info->entries[fw_index].size;
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rdev_munmap(fw_main, fw_info);
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if (region_sz(fc) == 0 || fc_end > fw_main_end) {
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if (rdev_chain(fw, fw_main, offset, size)) {
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printk(BIOS_INFO, "invalid stage address or size\n");
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return -1;
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}
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@ -163,8 +175,7 @@ static int vboot_fw_region(int fw_index, struct region *fw_main,
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static int vboot_prepare(struct prog *prog)
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{
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struct vb2_working_data *wd;
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struct region fw_main;
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struct vboot_components *fw_info;
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struct region_device fw_main;
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/* Code size optimization. We'd never actually get called under the
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* followin cirumstances because verstage was loaded and ran -- never
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@ -198,29 +209,26 @@ static int vboot_prepare(struct prog *prog)
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}
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wd = vboot_get_working_data();
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vb2_get_selected_region(wd, &fw_main);
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fw_info = vboot_locate_components(&fw_main);
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if (fw_info == NULL)
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die("failed to locate firmware components\n");
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if (vb2_get_selected_region(wd, &fw_main))
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die("failed to reference selected region\n");
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/* Load payload in ramstage. */
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if (ENV_RAMSTAGE) {
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struct region payload;
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struct region_device payload;
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void *payload_ptr;
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if (vboot_fw_region(CONFIG_VBOOT_BOOT_LOADER_INDEX,
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&fw_main, fw_info, &payload))
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&fw_main, &payload))
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die("Couldn't load payload.");
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payload_ptr = vboot_get_region(region_offset(&payload),
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region_sz(&payload), NULL);
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payload_ptr = rdev_mmap_full(&payload);
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if (payload_ptr == NULL)
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die("Couldn't load payload.");
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prog_set_area(prog, payload_ptr, region_sz(&payload));
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prog_set_area(prog, payload_ptr, region_device_sz(&payload));
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} else {
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struct region stage;
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struct region_device stage;
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int stage_index = 0;
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if (prog->type == PROG_ROMSTAGE)
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@ -230,7 +238,7 @@ static int vboot_prepare(struct prog *prog)
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else
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die("Invalid program type for vboot.");
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if (vboot_fw_region(stage_index, &fw_main, fw_info, &stage))
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if (vboot_fw_region(stage_index, &fw_main, &stage))
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die("Vboot stage load failed.");
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if (ENV_ROMSTAGE && IS_ENABLED(CONFIG_RELOCATABLE_RAMSTAGE)) {
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@ -240,8 +248,7 @@ static int vboot_prepare(struct prog *prog)
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.prog = prog,
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};
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stage_ptr = vboot_get_region(region_offset(&stage),
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region_sz(&stage), NULL);
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stage_ptr = rdev_mmap_full(&stage);
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if (stage_ptr == NULL)
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die("Vboot couldn't load stage.");
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@ -249,7 +256,7 @@ static int vboot_prepare(struct prog *prog)
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if (rmodule_stage_load(&rmod_ram, stage_ptr))
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die("Vboot couldn't load stage");
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} else {
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size_t offset = region_offset(&stage);
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size_t offset = region_device_offset(&stage);
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if (cbfs_load_prog_stage_by_offset(CBFS_DEFAULT_MEDIA,
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prog, offset))
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@ -67,27 +67,28 @@ int vb2ex_read_resource(struct vb2_context *ctx,
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void *buf,
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uint32_t size)
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{
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struct region region;
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struct region_device rdev;
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const char *name;
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switch (index) {
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case VB2_RES_GBB:
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vboot_locate_region("GBB", ®ion);
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name = "GBB";
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break;
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case VB2_RES_FW_VBLOCK:
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if (is_slot_a(ctx))
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vboot_locate_region("VBLOCK_A", ®ion);
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name = "VBLOCK_A";
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else
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vboot_locate_region("VBLOCK_B", ®ion);
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name = "VBLOCK_B";
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break;
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default:
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return VB2_ERROR_EX_READ_RESOURCE_INDEX;
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}
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if (offset + size > region_sz(®ion))
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if (vboot_named_region_device(name, &rdev))
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return VB2_ERROR_EX_READ_RESOURCE_SIZE;
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if (vboot_get_region(region_offset(®ion) + offset, size, buf) == NULL)
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return VB2_ERROR_UNKNOWN;
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if (rdev_readat(&rdev, buf, offset, size) != size)
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return VB2_ERROR_EX_READ_RESOURCE_SIZE;
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return VB2_SUCCESS;
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}
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@ -114,7 +115,7 @@ int vb2ex_hwcrypto_digest_finalize(uint8_t *digest, uint32_t digest_size)
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return VB2_ERROR_UNKNOWN;
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}
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static int hash_body(struct vb2_context *ctx, struct region *fw_main)
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static int hash_body(struct vb2_context *ctx, struct region_device *fw_main)
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{
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uint64_t load_ts;
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uint32_t expected_size;
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@ -132,8 +133,8 @@ static int hash_body(struct vb2_context *ctx, struct region *fw_main)
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load_ts = timestamp_get();
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timestamp_add(TS_START_HASH_BODY, load_ts);
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expected_size = region_sz(fw_main);
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offset = region_offset(fw_main);
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expected_size = region_device_sz(fw_main);
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offset = 0;
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/* Start the body hash */
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rv = vb2api_init_hash(ctx, VB2_HASH_TAG_FW_BODY, &expected_size);
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@ -143,17 +144,15 @@ static int hash_body(struct vb2_context *ctx, struct region *fw_main)
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/* Extend over the body */
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while (expected_size) {
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uint64_t temp_ts;
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void *b;
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if (block_size > expected_size)
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block_size = expected_size;
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temp_ts = timestamp_get();
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b = vboot_get_region(offset, block_size, block);
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if (b == NULL)
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if (rdev_readat(fw_main, block, offset, block_size) < 0)
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return VB2_ERROR_UNKNOWN;
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load_ts += timestamp_get() - temp_ts;
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rv = vb2api_extend_hash(ctx, b, block_size);
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rv = vb2api_extend_hash(ctx, block, block_size);
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if (rv)
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return rv;
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@ -174,17 +173,17 @@ static int hash_body(struct vb2_context *ctx, struct region *fw_main)
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return VB2_SUCCESS;
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}
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static int locate_firmware(struct vb2_context *ctx, struct region *fw_main)
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static int locate_firmware(struct vb2_context *ctx,
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struct region_device *fw_main)
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{
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const char *name;
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if (is_slot_a(ctx))
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vboot_locate_region("FW_MAIN_A", fw_main);
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name = "FW_MAIN_A";
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else
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vboot_locate_region("FW_MAIN_B", fw_main);
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name = "FW_MAIN_B";
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if (region_sz(fw_main) == 0)
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return 1;
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return 0;
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return vboot_named_region_device(name, fw_main);
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}
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/**
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@ -219,7 +218,7 @@ static uint32_t extend_pcrs(struct vb2_context *ctx)
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void verstage_main(void)
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{
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struct vb2_context ctx;
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struct region fw_main;
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struct region_device fw_main;
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struct vb2_working_data *wd = vboot_get_working_data();
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int rv;
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timestamp_add_now(TS_START_VBOOT);
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@ -31,34 +31,14 @@
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#include "vboot_common.h"
|
||||
#include "vboot_handoff.h"
|
||||
|
||||
void vboot_locate_region(const char *name, struct region *region)
|
||||
int vboot_named_region_device(const char *name, struct region_device *rdev)
|
||||
{
|
||||
if (fmap_locate_area(name, region))
|
||||
region->size = 0;
|
||||
return fmap_locate_area_as_rdev(name, rdev);
|
||||
}
|
||||
|
||||
void *vboot_get_region(size_t offset, size_t size, void *dest)
|
||||
int vboot_region_device(const struct region *reg, struct region_device *rdev)
|
||||
{
|
||||
const struct region_device *boot_dev;
|
||||
struct region_device rdev;
|
||||
|
||||
boot_device_init();
|
||||
boot_dev = boot_device_ro();
|
||||
|
||||
if (boot_dev == NULL)
|
||||
return NULL;
|
||||
|
||||
if (rdev_chain(&rdev, boot_dev, offset, size))
|
||||
return NULL;
|
||||
|
||||
/* Each call will leak a mapping. */
|
||||
if (dest == NULL)
|
||||
return rdev_mmap_full(&rdev);
|
||||
|
||||
if (rdev_readat(&rdev, dest, 0, size) != size)
|
||||
return NULL;
|
||||
|
||||
return dest;
|
||||
return boot_device_ro_subregion(reg, rdev);
|
||||
}
|
||||
|
||||
int vboot_get_handoff_info(void **addr, uint32_t *size)
|
||||
|
@ -75,23 +55,6 @@ int vboot_get_handoff_info(void **addr, uint32_t *size)
|
|||
return 0;
|
||||
}
|
||||
|
||||
/* This will leak a mapping of a fw region */
|
||||
struct vboot_components *vboot_locate_components(struct region *region)
|
||||
{
|
||||
size_t req_size;
|
||||
struct vboot_components *vbc;
|
||||
|
||||
req_size = sizeof(*vbc);
|
||||
req_size += sizeof(struct vboot_component_entry) *
|
||||
MAX_PARSED_FW_COMPONENTS;
|
||||
|
||||
vbc = vboot_get_region(region_offset(region), req_size, NULL);
|
||||
if (vbc && vbc->num_components > MAX_PARSED_FW_COMPONENTS)
|
||||
vbc = NULL;
|
||||
|
||||
return vbc;
|
||||
}
|
||||
|
||||
void vboot_reboot(void)
|
||||
{
|
||||
if (IS_ENABLED(CONFIG_CONSOLE_CBMEM_DUMP_TO_UART))
|
||||
|
|
|
@ -36,16 +36,8 @@ struct vboot_components {
|
|||
struct vboot_component_entry entries[0];
|
||||
} __attribute__((packed));
|
||||
|
||||
void vboot_locate_region(const char *name, struct region *region);
|
||||
|
||||
struct vboot_components *vboot_locate_components(struct region *region);
|
||||
|
||||
/*
|
||||
* This is a dual purpose routine. If dest is non-NULL the region at
|
||||
* offset_addr will be read into the area pointed to by dest. If dest
|
||||
* is NULL,the region will be mapped to a memory location. NULL is
|
||||
* returned on error else the location of the requested region.
|
||||
*/
|
||||
void *vboot_get_region(size_t offset, size_t size, void *dest);
|
||||
/* The following functions return 0 on success, < 0 on error. */
|
||||
int vboot_named_region_device(const char *name, struct region_device *rdev);
|
||||
int vboot_region_device(const struct region *reg, struct region_device *rdev);
|
||||
|
||||
#endif /* VBOOT_COMMON_H */
|
||||
|
|
Loading…
Reference in New Issue