mirror of
https://github.com/Atmosphere-NX/Atmosphere
synced 2024-12-22 20:31:14 +00:00
fusee: Add automatic firmware version detection.
This commit is contained in:
parent
c40bb9b317
commit
8edec43be2
2 changed files with 72 additions and 39 deletions
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@ -43,18 +43,36 @@ static int exosphere_ini_handler(void *user, const char *section, const char *na
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return 1;
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return 1;
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}
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}
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static void nxboot_configure_exosphere(void) {
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static uint32_t nxboot_get_target_firmware(const void *package1loader) {
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const package1loader_header_t *package1loader_header = (const package1loader_header_t *)package1loader;
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switch (package1loader_header->version) {
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case 0x01: /* 1.0.0 */
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return EXOSPHERE_TARGET_FIRMWARE_100;
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case 0x02: /* 2.0.0 - 2.3.0 */
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return EXOSPHERE_TARGET_FIRMWARE_200;
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case 0x04: /* 3.0.0 and 3.0.1 - 3.0.2 */
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return EXOSPHERE_TARGET_FIRMWARE_300;
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case 0x07: /* 4.0.0 - 4.1.0 */
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return EXOSPHERE_TARGET_FIRMWARE_400;
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case 0x0B: /* 5.0.0 - 5.1.0 */
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return EXOSPHERE_TARGET_FIRMWARE_500;
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default:
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return 0;
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}
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}
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static void nxboot_configure_exosphere(uint32_t target_firmware) {
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exosphere_config_t exo_cfg = {0};
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exosphere_config_t exo_cfg = {0};
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exo_cfg.magic = MAGIC_EXOSPHERE_BOOTCONFIG;
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exo_cfg.magic = MAGIC_EXOSPHERE_BOOTCONFIG;
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exo_cfg.target_firmware = EXOSPHERE_TARGET_FIRMWARE_MAX;
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exo_cfg.target_firmware = target_firmware;
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if (ini_parse_string(get_loader_ctx()->bct0, exosphere_ini_handler, &exo_cfg) < 0) {
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if (ini_parse_string(get_loader_ctx()->bct0, exosphere_ini_handler, &exo_cfg) < 0) {
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fatal_error("Failed to parse BCT.ini!\n");
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fatal_error("[NXBOOT]: Failed to parse BCT.ini!\n");
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}
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}
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if (exo_cfg.target_firmware < EXOSPHERE_TARGET_FIRMWARE_MIN || exo_cfg.target_firmware > EXOSPHERE_TARGET_FIRMWARE_MAX) {
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if ((exo_cfg.target_firmware < EXOSPHERE_TARGET_FIRMWARE_MIN) || (exo_cfg.target_firmware > EXOSPHERE_TARGET_FIRMWARE_MAX)) {
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fatal_error("Invalid Exosphere target firmware!\n");
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fatal_error("[NXBOOT]: Invalid Exosphere target firmware!\n");
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}
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}
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*(MAILBOX_EXOSPHERE_CONFIGURATION) = exo_cfg;
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*(MAILBOX_EXOSPHERE_CONFIGURATION) = exo_cfg;
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@ -82,21 +100,23 @@ void nxboot_main(void) {
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FILE *boot0, *pk2file;
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FILE *boot0, *pk2file;
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void *exosphere_memaddr;
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void *exosphere_memaddr;
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/* Allocate memory for reading Package2. */
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package2 = memalign(4096, PACKAGE2_SIZE_MAX);
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package2 = memalign(4096, PACKAGE2_SIZE_MAX);
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if (package2 == NULL) {
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if (package2 == NULL) {
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fatal_error("Out of memory!\n");
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fatal_error("[NXBOOT]: Out of memory!\n");
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}
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}
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/* Read Package2 from a file, otherwise from its partition(s). */
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/* Read Package2 from a file, otherwise from its partition(s). */
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printf("[NXBOOT]: Reading package2...\n");
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if (loader_ctx->package2_path[0] != '\0') {
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if (loader_ctx->package2_path[0] != '\0') {
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pk2file = fopen(loader_ctx->package2_path, "rb");
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pk2file = fopen(loader_ctx->package2_path, "rb");
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if (pk2file == NULL) {
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if (pk2file == NULL) {
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fatal_error("Failed to open Package2 from %s: %s!\n", loader_ctx->package2_path, strerror(errno));
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fatal_error("[NXBOOT]: Failed to open Package2 from %s: %s!\n", loader_ctx->package2_path, strerror(errno));
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}
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}
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} else {
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} else {
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pk2file = fopen("bcpkg21:/", "rb");
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pk2file = fopen("bcpkg21:/", "rb");
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if (pk2file == NULL || fseek(pk2file, 0x4000, SEEK_SET) != 0) {
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if (pk2file == NULL || fseek(pk2file, 0x4000, SEEK_SET) != 0) {
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printf("Failed to open Package2 from eMMC: %s!\n", strerror(errno));
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printf("[NXBOOT]: Failed to open Package2 from eMMC: %s!\n", strerror(errno));
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fclose(pk2file);
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fclose(pk2file);
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generic_panic();
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generic_panic();
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}
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}
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@ -104,28 +124,22 @@ void nxboot_main(void) {
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setvbuf(pk2file, NULL, _IONBF, 0); /* Workaround. */
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setvbuf(pk2file, NULL, _IONBF, 0); /* Workaround. */
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if (fread(package2, sizeof(package2_header_t), 1, pk2file) < 1) {
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if (fread(package2, sizeof(package2_header_t), 1, pk2file) < 1) {
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fatal_error("Failed to read Package2!\n");
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fatal_error("[NXBOOT]: Failed to read Package2!\n");
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}
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}
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package2_size = package2_meta_get_size(&package2->metadata);
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package2_size = package2_meta_get_size(&package2->metadata);
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if (package2_size > PACKAGE2_SIZE_MAX || package2_size <= sizeof(package2_header_t)) {
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if (package2_size > PACKAGE2_SIZE_MAX || package2_size <= sizeof(package2_header_t)) {
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fatal_error("Package2 is too big or too small!\n");
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fatal_error("[NXBOOT]: Package2 is too big or too small!\n");
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}
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}
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if (fread(package2->data, package2_size - sizeof(package2_header_t), 1, pk2file) < 1) {
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if (fread(package2->data, package2_size - sizeof(package2_header_t), 1, pk2file) < 1) {
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fatal_error("Failed to read Package2!\n");
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fatal_error("[NXBOOT]: Failed to read Package2!\n");
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}
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}
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fclose(pk2file);
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fclose(pk2file);
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printf("Read package2!\n");
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/* Setup boot configuration for Exosphère. */
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/* Read and parse boot0. */
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nxboot_configure_exosphere();
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printf("[NXBOOT]: Reading boot0...\n");
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printf("Reading boot0...\n");
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boot0 = fopen("boot0:/", "rb");
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boot0 = fopen("boot0:/", "rb");
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if (boot0 == NULL || package1_read_and_parse_boot0(&package1loader, &package1loader_size, g_keyblobs, &available_revision, boot0) == -1) {
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if (boot0 == NULL || package1_read_and_parse_boot0(&package1loader, &package1loader_size, g_keyblobs, &available_revision, boot0) == -1) {
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fatal_error("Couldn't parse boot0: %s!\n", strerror(errno));
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fatal_error("[NXBOOT]: Couldn't parse boot0: %s!\n", strerror(errno));
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}
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}
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fclose(boot0);
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fclose(boot0);
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@ -133,22 +147,22 @@ void nxboot_main(void) {
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if (loader_ctx->tsecfw_path[0] != '\0') {
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if (loader_ctx->tsecfw_path[0] != '\0') {
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tsec_fw_size = get_file_size(loader_ctx->tsecfw_path);
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tsec_fw_size = get_file_size(loader_ctx->tsecfw_path);
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if (tsec_fw_size != 0 && tsec_fw_size != 0xF00) {
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if (tsec_fw_size != 0 && tsec_fw_size != 0xF00) {
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fatal_error("TSEC firmware from %s has a wrong size!\n", loader_ctx->tsecfw_path);
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fatal_error("[NXBOOT]: TSEC firmware from %s has a wrong size!\n", loader_ctx->tsecfw_path);
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} else if (tsec_fw_size == 0) {
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} else if (tsec_fw_size == 0) {
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fatal_error("Could not read the TSEC firmware from %s!\n", loader_ctx->tsecfw_path);
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fatal_error("[NXBOOT]: Could not read the TSEC firmware from %s!\n", loader_ctx->tsecfw_path);
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}
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}
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tsec_fw = memalign(0x100, tsec_fw_size);
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tsec_fw = memalign(0x100, tsec_fw_size);
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if (tsec_fw == NULL) {
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if (tsec_fw == NULL) {
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fatal_error("Out of memory!\n");
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fatal_error("[NXBOOT]: Out of memory!\n");
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}
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}
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if (read_from_file(tsec_fw, tsec_fw_size, loader_ctx->tsecfw_path) != tsec_fw_size) {
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if (read_from_file(tsec_fw, tsec_fw_size, loader_ctx->tsecfw_path) != tsec_fw_size) {
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fatal_error("Could not read the TSEC firmware from %s!\n", loader_ctx->tsecfw_path);
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fatal_error("[NXBOOT]: Could not read the TSEC firmware from %s!\n", loader_ctx->tsecfw_path);
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}
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}
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} else {
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} else {
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tsec_fw_size = package1_get_tsec_fw(&tsec_fw, package1loader, package1loader_size);
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tsec_fw_size = package1_get_tsec_fw(&tsec_fw, package1loader, package1loader_size);
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if (tsec_fw_size == 0) {
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if (tsec_fw_size == 0) {
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fatal_error("Failed to read the TSEC firmware from Package1loader!\n");
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fatal_error("[NXBOOT]: Failed to read the TSEC firmware from Package1loader!\n");
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}
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}
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}
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}
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@ -156,24 +170,34 @@ void nxboot_main(void) {
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/* TODO: Initialize Boot Reason. */
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/* TODO: Initialize Boot Reason. */
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/* Find the system's target firmware. */
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uint32_t target_firmware = nxboot_get_target_firmware(package1loader);
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if (!target_firmware)
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fatal_error("[NXBOOT]: Failed to detect target firmware!\n");
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else
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printf("[NXBOOT]: Detected target firmware %ld!\n", target_firmware);
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/* Setup boot configuration for Exosphère. */
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nxboot_configure_exosphere(target_firmware);
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/* Derive keydata. */
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/* Derive keydata. */
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if (derive_nx_keydata(MAILBOX_EXOSPHERE_CONFIGURATION->target_firmware, g_keyblobs, available_revision, tsec_fw, tsec_fw_size) != 0) {
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if (derive_nx_keydata(MAILBOX_EXOSPHERE_CONFIGURATION->target_firmware, g_keyblobs, available_revision, tsec_fw, tsec_fw_size) != 0) {
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fatal_error("Key derivation failed!\n");
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fatal_error("[NXBOOT]: Key derivation failed!\n");
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}
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}
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/* Read the warmboot firmware from a file, otherwise from PK1. */
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/* Read the warmboot firmware from a file, otherwise from PK1. */
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if (loader_ctx->warmboot_path[0] != '\0') {
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if (loader_ctx->warmboot_path[0] != '\0') {
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warmboot_fw_size = get_file_size(loader_ctx->warmboot_path);
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warmboot_fw_size = get_file_size(loader_ctx->warmboot_path);
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if (warmboot_fw_size == 0) {
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if (warmboot_fw_size == 0) {
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fatal_error("Could not read the warmboot firmware from %s!\n", loader_ctx->warmboot_path);
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fatal_error("[NXBOOT]: Could not read the warmboot firmware from %s!\n", loader_ctx->warmboot_path);
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}
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}
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warmboot_fw = malloc(warmboot_fw_size);
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warmboot_fw = malloc(warmboot_fw_size);
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if (warmboot_fw == NULL) {
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if (warmboot_fw == NULL) {
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fatal_error("Out of memory!\n");
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fatal_error("[NXBOOT]: Out of memory!\n");
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}
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}
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if (read_from_file(warmboot_fw, warmboot_fw_size, loader_ctx->warmboot_path) != warmboot_fw_size) {
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if (read_from_file(warmboot_fw, warmboot_fw_size, loader_ctx->warmboot_path) != warmboot_fw_size) {
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fatal_error("Could not read the warmboot firmware from %s!\n", loader_ctx->warmboot_path);
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fatal_error("[NXBOOT]: Could not read the warmboot firmware from %s!\n", loader_ctx->warmboot_path);
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}
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}
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} else {
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} else {
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uint8_t ctr[16];
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uint8_t ctr[16];
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@ -187,7 +211,7 @@ void nxboot_main(void) {
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}
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}
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if (warmboot_fw_size == 0) {
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if (warmboot_fw_size == 0) {
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fatal_error("Could not read the warmboot firmware from Package1!\n");
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fatal_error("[NXBOOT]: Could not read the warmboot firmware from Package1!\n");
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}
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}
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}
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}
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@ -198,7 +222,7 @@ void nxboot_main(void) {
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warmboot_memaddr = (void *)0x4003B000;
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warmboot_memaddr = (void *)0x4003B000;
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}
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}
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printf("Copying warmboot firmware...\n");
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printf("[NXBOOT]: Copying warmboot firmware...\n");
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/* Copy the warmboot firmware and set the address in PMC if necessary. */
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/* Copy the warmboot firmware and set the address in PMC if necessary. */
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if (warmboot_fw && (warmboot_fw_size > 0)) {
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if (warmboot_fw && (warmboot_fw_size > 0)) {
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@ -207,7 +231,7 @@ void nxboot_main(void) {
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pmc->scratch1 = (uint32_t)warmboot_memaddr;
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pmc->scratch1 = (uint32_t)warmboot_memaddr;
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}
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}
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printf("Rebuilding package2...\n");
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printf("[NXBOOT]: Rebuilding package2...\n");
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/* Patch package2, adding Thermosphère + custom KIPs. */
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/* Patch package2, adding Thermosphère + custom KIPs. */
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package2_rebuild_and_copy(package2, MAILBOX_EXOSPHERE_CONFIGURATION->target_firmware);
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package2_rebuild_and_copy(package2, MAILBOX_EXOSPHERE_CONFIGURATION->target_firmware);
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@ -291,7 +315,7 @@ void nxboot_main(void) {
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MAILBOX_NX_BOOTLOADER_SETUP_STATE = NX_BOOTLOADER_STATE_LOADED_PACKAGE2_4X;
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MAILBOX_NX_BOOTLOADER_SETUP_STATE = NX_BOOTLOADER_STATE_LOADED_PACKAGE2_4X;
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}
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}
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printf("Powering on the CCPLEX...\n");
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printf("[NXBOOT]: Powering on the CCPLEX...\n");
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/* Display splash screen. */
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/* Display splash screen. */
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display_splash_screen_bmp(loader_ctx->custom_splash_path);
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display_splash_screen_bmp(loader_ctx->custom_splash_path);
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@ -299,8 +323,7 @@ void nxboot_main(void) {
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/* Turn off the backlight. */
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/* Turn off the backlight. */
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display_backlight(false);
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display_backlight(false);
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/* Terminate the display if necessary. */
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/* Terminate the display. */
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if (MAILBOX_EXOSPHERE_CONFIGURATION->target_firmware < EXOSPHERE_TARGET_FIRMWARE_400)
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display_end();
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display_end();
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/* Boot CPU0. */
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/* Boot CPU0. */
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@ -6,7 +6,17 @@
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#define PACKAGE1LOADER_SIZE_MAX 0x40000
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#define PACKAGE1LOADER_SIZE_MAX 0x40000
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typedef struct package1_header_t {
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typedef struct {
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uint32_t package1loader_hash;
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uint32_t secmon_hash;
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uint32_t nx_bootloader_hash;
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uint32_t _0xC;
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char build_timestamp[0x0E];
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uint8_t _0x1E;
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uint8_t version;
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} package1loader_header_t;
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typedef struct {
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char magic[4];
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char magic[4];
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uint32_t warmboot_size;
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uint32_t warmboot_size;
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uint32_t warmboot_offset;
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uint32_t warmboot_offset;
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