mirror of
https://github.com/Atmosphere-NX/Atmosphere
synced 2024-12-22 20:31:14 +00:00
fusee_cpp: implement exosphere load/configuration
This commit is contained in:
parent
1dd0297db3
commit
e0a41e9d33
8 changed files with 236 additions and 13 deletions
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@ -582,6 +582,10 @@ namespace ams::nxboot {
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}
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}
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u16 GetDisplayLcdVendor() {
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return g_lcd_vendor;
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}
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void ShowFatalError(const ams::impl::FatalErrorContext *f_ctx, const Result save_result) {
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/* If needed, initialize the display. */
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if (!IsDisplayInitialized()) {
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@ -26,6 +26,8 @@ namespace ams::nxboot {
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void InitializeDisplay();
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void FinalizeDisplay();
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u16 GetDisplayLcdVendor();
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void ShowDisplay();
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}
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@ -49,7 +49,7 @@ namespace ams::nxboot {
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file_size = std::min(IniFileSizeMax, file_size);
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/* Allocate memory for file. */
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char *buffer = static_cast<char *>(AllocateMemory(util::AlignUp(file_size + 1, 0x10)));
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char *buffer = static_cast<char *>(AllocateAligned(util::AlignUp(file_size + 1, 0x10), 0x10));
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buffer[file_size] = '\x00';
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/* Read file. */
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@ -64,6 +64,7 @@ namespace ams::nxboot {
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SectionName,
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Key,
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KvSpace,
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KvSpace2,
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Value,
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TrailingSpace,
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};
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@ -120,20 +121,33 @@ namespace ams::nxboot {
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} else if (c == '=') {
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buffer[i] = '\x00';
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val_start = buffer + i + 1;
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state = State::Value;
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state = State::KvSpace2;
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}
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break;
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case State::KvSpace:
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if (c == '=') {
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val_start = buffer + i + 1;
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state = State::Value;
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state = State::KvSpace2;
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} else if (!IsWhiteSpace(c)) {
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return ParseIniResult_InvalidFormat;
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}
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break;
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case State::KvSpace2:
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if (c == '\n') {
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buffer[i] = '\x00';
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auto *entry = AllocateObject<IniKeyValueEntry>();
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entry->key = key_start;
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entry->value = buffer + i;
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cur_sec->kv_list.push_back(*entry);
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state = State::Newline;
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} else if (!IsWhiteSpace(c)) {
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val_start = buffer + i;
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state = State::Value;
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}
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break;
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case State::Value:
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if (IsWhiteSpace(c) || c == '\n') {
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buffer[i] = '\x00';
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@ -26,6 +26,10 @@ namespace ams::nxboot {
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}
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void InitializeSecureMonitorMailbox() {
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std::memset(std::addressof(GetSecureMonitorParameters()), 0, sizeof(GetSecureMonitorParameters()));
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}
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void WaitSecureMonitorState(pkg1::SecureMonitorState state) {
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auto &secmon_params = GetSecureMonitorParameters();
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@ -18,6 +18,8 @@
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namespace ams::nxboot {
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void InitializeSecureMonitorMailbox();
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void WaitSecureMonitorState(pkg1::SecureMonitorState state);
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void SetBootloaderState(pkg1::BootloaderState state);
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@ -70,8 +70,8 @@ namespace ams::nxboot {
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u8 mariko_fatal[0x1C000]; /* 0x004000-0x020000 */
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u8 ovl_mtc_erista[0x14000]; /* 0x020000-0x034000 */
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u8 ovl_mtc_mariko[0x14000]; /* 0x034000-0x048000 */
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u8 exosphere[0x10000]; /* 0x048000-0x058000 */
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u8 mesosphere[0xA8000]; /* 0x058000-0x100000 */
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u8 exosphere[0xE000]; /* 0x048000-0x056000 */
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u8 mesosphere[0xAA000]; /* 0x056000-0x100000 */
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u8 kips[3_MB]; /* 0x100000-0x400000 */
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u8 splash_screen_fb[FrameBufferSize]; /* 0x400000-0x7C0000 */
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};
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@ -14,6 +14,7 @@
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <exosphere.hpp>
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#include <exosphere/secmon/secmon_monitor_context.hpp>
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#include "fusee_key_derivation.hpp"
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#include "fusee_secondary_archive.hpp"
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#include "fusee_setup_horizon.hpp"
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@ -91,6 +92,23 @@ namespace ams::nxboot {
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}
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}
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u32 ParseDecimalInteger(const char *s) {
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u32 x = 0;
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while (true) {
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const char c = *(s++);
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if (c == '\x00') {
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return x;
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} else {
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x *= 10;
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if ('0' <= c && c <= '9') {
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x += c - '0';
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}
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}
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}
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}
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bool IsDirectoryExist(const char *path) {
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fs::DirectoryEntryType entry_type;
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bool archive;
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@ -505,7 +523,7 @@ namespace ams::nxboot {
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/* Allocate memory. */
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warmboot_src_size = static_cast<size_t>(size);
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void *tmp = AllocateMemory(warmboot_src_size);
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void *tmp = AllocateAligned(warmboot_src_size, 0x10);
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/* Read the file. */
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if (R_FAILED(fs::ReadFile(file, 0, tmp, warmboot_src_size))) {
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@ -542,6 +560,184 @@ namespace ams::nxboot {
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}
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}
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void ConfigureExosphere(fuse::SocType soc_type, ams::TargetFirmware target_firmware, bool emummc_enabled) {
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/* Get monitor configuration. */
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auto &storage_ctx = *secmon::MemoryRegionPhysicalDramMonitorConfiguration.GetPointer<secmon::SecureMonitorStorageConfiguration>();
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std::memset(std::addressof(storage_ctx), 0, sizeof(storage_ctx));
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/* Set magic. */
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storage_ctx.magic = secmon::SecureMonitorStorageConfiguration::Magic;
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/* Set some defaults. */
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storage_ctx.target_firmware = target_firmware;
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storage_ctx.lcd_vendor = GetDisplayLcdVendor();
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storage_ctx.emummc_cfg = g_emummc_cfg;
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storage_ctx.flags[0] = secmon::SecureMonitorConfigurationFlag_Default;
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storage_ctx.flags[1] = secmon::SecureMonitorConfigurationFlag_None;
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storage_ctx.log_port = uart::Port_ReservedDebug;
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storage_ctx.log_baud_rate = 115200;
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/* Parse fields from exosphere.ini */
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{
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IniSectionList sections;
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if (ParseIniSafe(sections, "sdmc:/exosphere.ini")) {
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for (const auto §ion : sections) {
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/* We only care about the [exosphere] section. */
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if (std::strcmp(section.name, "exosphere")) {
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continue;
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}
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/* Handle individual fields. */
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for (const auto &entry : section.kv_list) {
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if (std::strcmp(entry.key, "debugmode") == 0) {
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if (entry.value[0] == '1') {
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storage_ctx.flags[0] |= secmon::SecureMonitorConfigurationFlag_IsDevelopmentFunctionEnabledForKernel;
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} else {
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storage_ctx.flags[0] &= ~secmon::SecureMonitorConfigurationFlag_IsDevelopmentFunctionEnabledForKernel;
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}
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} else if (std::strcmp(entry.key, "debugmode_user") == 0) {
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if (entry.value[0] == '1') {
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storage_ctx.flags[0] |= secmon::SecureMonitorConfigurationFlag_IsDevelopmentFunctionEnabledForUser;
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} else {
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storage_ctx.flags[0] &= ~secmon::SecureMonitorConfigurationFlag_IsDevelopmentFunctionEnabledForUser;
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}
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} else if (std::strcmp(entry.key, "disable_user_exception_handlers") == 0) {
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if (entry.value[0] == '1') {
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storage_ctx.flags[0] |= secmon::SecureMonitorConfigurationFlag_DisableUserModeExceptionHandlers;
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} else {
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storage_ctx.flags[0] &= ~secmon::SecureMonitorConfigurationFlag_DisableUserModeExceptionHandlers;
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}
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} else if (std::strcmp(entry.key, "enable_user_pmu_access") == 0) {
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if (entry.value[0] == '1') {
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storage_ctx.flags[0] |= secmon::SecureMonitorConfigurationFlag_EnableUserModePerformanceCounterAccess;
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} else {
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storage_ctx.flags[0] &= ~secmon::SecureMonitorConfigurationFlag_EnableUserModePerformanceCounterAccess;
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}
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} else if (std::strcmp(entry.key, "blank_prodinfo_sysmmc") == 0) {
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if (entry.value[0] == '1' && !emummc_enabled) {
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storage_ctx.flags[0] |= secmon::SecureMonitorConfigurationFlag_ShouldUseBlankCalibrationBinary;
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} else {
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storage_ctx.flags[0] &= ~secmon::SecureMonitorConfigurationFlag_ShouldUseBlankCalibrationBinary;
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}
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} else if (std::strcmp(entry.key, "blank_prodinfo_emummc") == 0) {
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if (entry.value[0] == '1' && emummc_enabled) {
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storage_ctx.flags[0] |= secmon::SecureMonitorConfigurationFlag_ShouldUseBlankCalibrationBinary;
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} else {
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storage_ctx.flags[0] &= ~secmon::SecureMonitorConfigurationFlag_ShouldUseBlankCalibrationBinary;
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}
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} else if (std::strcmp(entry.key, "allow_writing_to_cal_sysmmc") == 0) {
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if (entry.value[0] == '1') {
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storage_ctx.flags[0] |= secmon::SecureMonitorConfigurationFlag_AllowWritingToCalibrationBinarySysmmc;
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} else {
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storage_ctx.flags[0] &= ~secmon::SecureMonitorConfigurationFlag_AllowWritingToCalibrationBinarySysmmc;
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}
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} else if (std::strcmp(entry.key, "log_port") == 0) {
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const u32 log_port = ParseDecimalInteger(entry.value);
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if (0 <= log_port && log_port < 4) {
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storage_ctx.log_port = log_port;
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}
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} else if (std::strcmp(entry.key, "log_baud_rate") == 0) {
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storage_ctx.log_baud_rate = ParseDecimalInteger(entry.value);
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} else if (std::strcmp(entry.key, "log_inverted") == 0) {
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if (entry.value[0] == 1) {
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storage_ctx.log_flags |= uart::Flag_Inverted;
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}
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}
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}
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}
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}
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}
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/* Parse usb setting from system_settings.ini */
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{
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IniSectionList sections;
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if (ParseIniSafe(sections, "sdmc:/atmosphere/config/system_settings.ini")) {
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for (const auto §ion : sections) {
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/* We only care about the [usb] section. */
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if (std::strcmp(section.name, "usb")) {
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continue;
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}
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/* Handle individual fields. */
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for (const auto &entry : section.kv_list) {
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if (std::strcmp(entry.key, "usb30_force_enabled") == 0) {
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if (std::strcmp(entry.value, "u8!0x1") == 0) {
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storage_ctx.flags[0] |= secmon::SecureMonitorConfigurationFlag_ForceEnableUsb30;
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}
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}
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}
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}
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}
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}
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/* Copy exosphere. */
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void *exosphere_dst = reinterpret_cast<void *>(0x40030000);
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bool use_sd_exo = false;
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{
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/* Try to use an sd card file, if present. */
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fs::FileHandle exo_file;
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if (R_SUCCEEDED(fs::OpenFile(std::addressof(exo_file), "sdmc:/atmosphere/exosphere.bin", fs::OpenMode_Read))) {
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ON_SCOPE_EXIT { fs::CloseFile(exo_file); };
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/* Note that we're using sd_exo. */
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use_sd_exo = true;
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Result result;
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/* Get the size. */
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s64 size;
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if (R_FAILED((result = fs::GetFileSize(std::addressof(size), exo_file))) || size > sizeof(GetSecondaryArchive().exosphere)) {
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ShowFatalError("Invalid SD exosphere size: 0x%08" PRIx32 ", %" PRIx64 "!\n", result.GetValue(), static_cast<u64>(size));
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}
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/* Read the file. */
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if (R_FAILED((result = fs::ReadFile(exo_file, 0, exosphere_dst, size)))) {
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ShowFatalError("Failed to read SD exosphere: 0x%08" PRIx32 "!\n", result.GetValue());
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}
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}
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}
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if (!use_sd_exo) {
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std::memcpy(exosphere_dst, GetSecondaryArchive().exosphere, sizeof(GetSecondaryArchive().exosphere));
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}
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/* Copy mariko fatal. */
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if (soc_type == fuse::SocType_Mariko) {
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u8 *mariko_fatal_dst = secmon::MemoryRegionPhysicalMarikoProgramImage.GetPointer<u8>();
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bool use_sd_mariko_fatal = false;
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{
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/* Try to use an sd card file, if present. */
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fs::FileHandle mariko_program_file;
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if (R_SUCCEEDED(fs::OpenFile(std::addressof(mariko_program_file), "sdmc:/atmosphere/mariko_fatal.bin", fs::OpenMode_Read))) {
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ON_SCOPE_EXIT { fs::CloseFile(mariko_program_file); };
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/* Note that we're using sd_exo. */
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use_sd_exo = true;
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Result result;
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/* Get the size. */
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s64 size;
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if (R_FAILED((result = fs::GetFileSize(std::addressof(size), mariko_program_file))) || size > sizeof(GetSecondaryArchive().mariko_fatal)) {
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ShowFatalError("Invalid SD exosphere size: 0x%08" PRIx32 ", %" PRIx64 "!\n", result.GetValue(), static_cast<u64>(size));
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}
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/* Read the file. */
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if (R_FAILED((result = fs::ReadFile(mariko_program_file, 0, mariko_fatal_dst, size)))) {
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ShowFatalError("Failed to read SD exosphere: 0x%08" PRIx32 "!\n", result.GetValue());
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}
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/* Clear the remainder. */
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std::memset(mariko_fatal_dst + size, 0, sizeof(GetSecondaryArchive().mariko_fatal) - size);
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}
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}
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if (!use_sd_mariko_fatal) {
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std::memcpy(mariko_fatal_dst, GetSecondaryArchive().mariko_fatal, sizeof(GetSecondaryArchive().mariko_fatal));
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}
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}
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}
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}
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void SetupAndStartHorizon() {
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@ -571,7 +767,8 @@ namespace ams::nxboot {
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/* Setup warmboot firmware. */
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LoadWarmbootFirmware(soc_type, target_firmware, package1);
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/* TODO: Setup exosphere. */
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/* Setup exosphere. */
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ConfigureExosphere(soc_type, target_firmware, emummc_enabled);
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/* TODO: Start CPU. */
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/* NOTE: Security Engine unusable past this point. */
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@ -47,9 +47,9 @@ def main(argc, argv):
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# Write Mariko MTC
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f.write(get_overlay(data, 2))
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# TODO: Write exosphere
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f.write('\xCC'*0x10000)
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f.write('\xCC'*0xE000)
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# TODO: Write mesosphere
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f.write('\xCC'*0xA8000)
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f.write('\xCC'*0xAA000)
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# TODO: Write kips
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f.write('\xCC'*0x300000)
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# Write Splash Screen
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