ldr.cpp 24 KB

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  1. // Copyright 2018 yuzu emulator team
  2. // Licensed under GPLv2 or any later version
  3. // Refer to the license.txt file included.
  4. #include <memory>
  5. #include <fmt/format.h>
  6. #include <mbedtls/sha256.h>
  7. #include "common/alignment.h"
  8. #include "common/hex_util.h"
  9. #include "common/scope_exit.h"
  10. #include "core/hle/ipc_helpers.h"
  11. #include "core/hle/kernel/errors.h"
  12. #include "core/hle/kernel/memory/page_table.h"
  13. #include "core/hle/kernel/memory/system_control.h"
  14. #include "core/hle/kernel/process.h"
  15. #include "core/hle/service/ldr/ldr.h"
  16. #include "core/hle/service/service.h"
  17. #include "core/loader/nro.h"
  18. #include "core/memory.h"
  19. namespace Service::LDR {
  20. constexpr ResultCode ERROR_INSUFFICIENT_ADDRESS_SPACE{ErrorModule::RO, 2};
  21. constexpr ResultCode ERROR_INVALID_MEMORY_STATE{ErrorModule::Loader, 51};
  22. constexpr ResultCode ERROR_INVALID_NRO{ErrorModule::Loader, 52};
  23. constexpr ResultCode ERROR_INVALID_NRR{ErrorModule::Loader, 53};
  24. constexpr ResultCode ERROR_MISSING_NRR_HASH{ErrorModule::Loader, 54};
  25. constexpr ResultCode ERROR_MAXIMUM_NRO{ErrorModule::Loader, 55};
  26. constexpr ResultCode ERROR_MAXIMUM_NRR{ErrorModule::Loader, 56};
  27. constexpr ResultCode ERROR_ALREADY_LOADED{ErrorModule::Loader, 57};
  28. constexpr ResultCode ERROR_INVALID_ALIGNMENT{ErrorModule::Loader, 81};
  29. constexpr ResultCode ERROR_INVALID_SIZE{ErrorModule::Loader, 82};
  30. constexpr ResultCode ERROR_INVALID_NRO_ADDRESS{ErrorModule::Loader, 84};
  31. constexpr ResultCode ERROR_INVALID_NRR_ADDRESS{ErrorModule::Loader, 85};
  32. constexpr ResultCode ERROR_NOT_INITIALIZED{ErrorModule::Loader, 87};
  33. constexpr std::size_t MAXIMUM_LOADED_RO{0x40};
  34. constexpr std::size_t MAXIMUM_MAP_RETRIES{0x200};
  35. constexpr std::size_t TEXT_INDEX{0};
  36. constexpr std::size_t RO_INDEX{1};
  37. constexpr std::size_t DATA_INDEX{2};
  38. struct NRRCertification {
  39. u64_le application_id_mask;
  40. u64_le application_id_pattern;
  41. INSERT_PADDING_BYTES(0x10);
  42. std::array<u8, 0x100> public_key; // Also known as modulus
  43. std::array<u8, 0x100> signature;
  44. };
  45. static_assert(sizeof(NRRCertification) == 0x220, "NRRCertification has invalid size.");
  46. struct NRRHeader {
  47. u32_le magic;
  48. u32_le certification_signature_key_generation; // 9.0.0+
  49. INSERT_PADDING_WORDS(2);
  50. NRRCertification certification;
  51. std::array<u8, 0x100> signature;
  52. u64_le application_id;
  53. u32_le size;
  54. u8 nrr_kind; // 7.0.0+
  55. INSERT_PADDING_BYTES(3);
  56. u32_le hash_offset;
  57. u32_le hash_count;
  58. INSERT_PADDING_WORDS(2);
  59. };
  60. static_assert(sizeof(NRRHeader) == 0x350, "NRRHeader has invalid size.");
  61. struct SegmentHeader {
  62. u32_le memory_offset;
  63. u32_le memory_size;
  64. };
  65. static_assert(sizeof(SegmentHeader) == 0x8, "SegmentHeader has invalid size.");
  66. struct NROHeader {
  67. // Switchbrew calls this "Start" (0x10)
  68. INSERT_PADDING_WORDS(1);
  69. u32_le mod_offset;
  70. INSERT_PADDING_WORDS(2);
  71. // Switchbrew calls this "Header" (0x70)
  72. u32_le magic;
  73. u32_le version;
  74. u32_le nro_size;
  75. u32_le flags;
  76. // .text, .ro, .data
  77. std::array<SegmentHeader, 3> segment_headers;
  78. u32_le bss_size;
  79. INSERT_PADDING_WORDS(1);
  80. std::array<u8, 0x20> build_id;
  81. u32_le dso_handle_offset;
  82. INSERT_PADDING_WORDS(1);
  83. // .apiInfo, .dynstr, .dynsym
  84. std::array<SegmentHeader, 3> segment_headers_2;
  85. };
  86. static_assert(sizeof(NROHeader) == 0x80, "NROHeader has invalid size.");
  87. using SHA256Hash = std::array<u8, 0x20>;
  88. struct NROInfo {
  89. SHA256Hash hash{};
  90. VAddr nro_address{};
  91. std::size_t nro_size{};
  92. VAddr bss_address{};
  93. std::size_t bss_size{};
  94. std::size_t text_size{};
  95. std::size_t ro_size{};
  96. std::size_t data_size{};
  97. VAddr src_addr{};
  98. };
  99. static_assert(sizeof(NROInfo) == 0x60, "NROInfo has invalid size.");
  100. class DebugMonitor final : public ServiceFramework<DebugMonitor> {
  101. public:
  102. explicit DebugMonitor() : ServiceFramework{"ldr:dmnt"} {
  103. // clang-format off
  104. static const FunctionInfo functions[] = {
  105. {0, nullptr, "AddProcessToDebugLaunchQueue"},
  106. {1, nullptr, "ClearDebugLaunchQueue"},
  107. {2, nullptr, "GetNsoInfos"},
  108. };
  109. // clang-format on
  110. RegisterHandlers(functions);
  111. }
  112. };
  113. class ProcessManager final : public ServiceFramework<ProcessManager> {
  114. public:
  115. explicit ProcessManager() : ServiceFramework{"ldr:pm"} {
  116. // clang-format off
  117. static const FunctionInfo functions[] = {
  118. {0, nullptr, "CreateProcess"},
  119. {1, nullptr, "GetProgramInfo"},
  120. {2, nullptr, "RegisterTitle"},
  121. {3, nullptr, "UnregisterTitle"},
  122. {4, nullptr, "SetEnabledProgramVerification"},
  123. };
  124. // clang-format on
  125. RegisterHandlers(functions);
  126. }
  127. };
  128. class Shell final : public ServiceFramework<Shell> {
  129. public:
  130. explicit Shell() : ServiceFramework{"ldr:shel"} {
  131. // clang-format off
  132. static const FunctionInfo functions[] = {
  133. {0, nullptr, "AddProcessToLaunchQueue"},
  134. {1, nullptr, "ClearLaunchQueue"},
  135. };
  136. // clang-format on
  137. RegisterHandlers(functions);
  138. }
  139. };
  140. class RelocatableObject final : public ServiceFramework<RelocatableObject> {
  141. public:
  142. explicit RelocatableObject(Core::System& system) : ServiceFramework{"ldr:ro"}, system(system) {
  143. // clang-format off
  144. static const FunctionInfo functions[] = {
  145. {0, &RelocatableObject::LoadNro, "LoadNro"},
  146. {1, &RelocatableObject::UnloadNro, "UnloadNro"},
  147. {2, &RelocatableObject::LoadNrr, "LoadNrr"},
  148. {3, nullptr, "UnloadNrr"},
  149. {4, &RelocatableObject::Initialize, "Initialize"},
  150. {10, nullptr, "LoadNrrEx"},
  151. };
  152. // clang-format on
  153. RegisterHandlers(functions);
  154. }
  155. void LoadNrr(Kernel::HLERequestContext& ctx) {
  156. struct Parameters {
  157. u64_le process_id;
  158. u64_le nrr_address;
  159. u64_le nrr_size;
  160. };
  161. IPC::RequestParser rp{ctx};
  162. const auto [process_id, nrr_address, nrr_size] = rp.PopRaw<Parameters>();
  163. LOG_DEBUG(Service_LDR,
  164. "called with process_id={:016X}, nrr_address={:016X}, nrr_size={:016X}",
  165. process_id, nrr_address, nrr_size);
  166. if (!initialized) {
  167. LOG_ERROR(Service_LDR, "LDR:RO not initialized before use!");
  168. IPC::ResponseBuilder rb{ctx, 2};
  169. rb.Push(ERROR_NOT_INITIALIZED);
  170. return;
  171. }
  172. if (nrr.size() >= MAXIMUM_LOADED_RO) {
  173. LOG_ERROR(Service_LDR, "Loading new NRR would exceed the maximum number of loaded NRRs "
  174. "(0x40)! Failing...");
  175. IPC::ResponseBuilder rb{ctx, 2};
  176. rb.Push(ERROR_MAXIMUM_NRR);
  177. return;
  178. }
  179. // NRR Address does not fall on 0x1000 byte boundary
  180. if (!Common::Is4KBAligned(nrr_address)) {
  181. LOG_ERROR(Service_LDR, "NRR Address has invalid alignment (actual {:016X})!",
  182. nrr_address);
  183. IPC::ResponseBuilder rb{ctx, 2};
  184. rb.Push(ERROR_INVALID_ALIGNMENT);
  185. return;
  186. }
  187. // NRR Size is zero or causes overflow
  188. if (nrr_address + nrr_size <= nrr_address || nrr_size == 0 ||
  189. !Common::Is4KBAligned(nrr_size)) {
  190. LOG_ERROR(Service_LDR, "NRR Size is invalid! (nrr_address={:016X}, nrr_size={:016X})",
  191. nrr_address, nrr_size);
  192. IPC::ResponseBuilder rb{ctx, 2};
  193. rb.Push(ERROR_INVALID_SIZE);
  194. return;
  195. }
  196. // Read NRR data from memory
  197. std::vector<u8> nrr_data(nrr_size);
  198. system.Memory().ReadBlock(nrr_address, nrr_data.data(), nrr_size);
  199. NRRHeader header;
  200. std::memcpy(&header, nrr_data.data(), sizeof(NRRHeader));
  201. if (header.magic != Common::MakeMagic('N', 'R', 'R', '0')) {
  202. LOG_ERROR(Service_LDR, "NRR did not have magic 'NRR0' (actual {:08X})!", header.magic);
  203. IPC::ResponseBuilder rb{ctx, 2};
  204. rb.Push(ERROR_INVALID_NRR);
  205. return;
  206. }
  207. if (header.size != nrr_size) {
  208. LOG_ERROR(Service_LDR,
  209. "NRR header reported size did not match LoadNrr parameter size! "
  210. "(header_size={:016X}, loadnrr_size={:016X})",
  211. header.size, nrr_size);
  212. IPC::ResponseBuilder rb{ctx, 2};
  213. rb.Push(ERROR_INVALID_SIZE);
  214. return;
  215. }
  216. if (system.CurrentProcess()->GetTitleID() != header.application_id) {
  217. LOG_ERROR(Service_LDR,
  218. "Attempting to load NRR with title ID other than current process. (actual "
  219. "{:016X})!",
  220. header.application_id);
  221. IPC::ResponseBuilder rb{ctx, 2};
  222. rb.Push(ERROR_INVALID_NRR);
  223. return;
  224. }
  225. std::vector<SHA256Hash> hashes;
  226. // Copy all hashes in the NRR (specified by hash count/hash offset) into vector.
  227. for (std::size_t i = header.hash_offset;
  228. i < (header.hash_offset + (header.hash_count * sizeof(SHA256Hash))); i += 8) {
  229. SHA256Hash hash;
  230. std::memcpy(hash.data(), nrr_data.data() + i, sizeof(SHA256Hash));
  231. hashes.emplace_back(hash);
  232. }
  233. nrr.insert_or_assign(nrr_address, std::move(hashes));
  234. IPC::ResponseBuilder rb{ctx, 2};
  235. rb.Push(RESULT_SUCCESS);
  236. }
  237. bool ValidateRegionForMap(Kernel::Memory::PageTable& page_table, VAddr start,
  238. std::size_t size) const {
  239. constexpr std::size_t padding_size{4 * Kernel::Memory::PageSize};
  240. const auto start_info{page_table.QueryInfo(start - 1)};
  241. if (start_info.state != Kernel::Memory::MemoryState::Free) {
  242. return {};
  243. }
  244. if (start_info.GetAddress() > (start - padding_size)) {
  245. return {};
  246. }
  247. const auto end_info{page_table.QueryInfo(start + size)};
  248. if (end_info.state != Kernel::Memory::MemoryState::Free) {
  249. return {};
  250. }
  251. return (start + size + padding_size) <= (end_info.GetAddress() + end_info.GetSize());
  252. }
  253. VAddr GetRandomMapRegion(const Kernel::Memory::PageTable& page_table, std::size_t size) const {
  254. VAddr addr{};
  255. const std::size_t end_pages{(page_table.GetAliasCodeRegionSize() - size) >>
  256. Kernel::Memory::PageBits};
  257. do {
  258. addr = page_table.GetAliasCodeRegionStart() +
  259. (Kernel::Memory::SystemControl::GenerateRandomRange(0, end_pages)
  260. << Kernel::Memory::PageBits);
  261. } while (!page_table.IsInsideAddressSpace(addr, size) ||
  262. page_table.IsInsideHeapRegion(addr, size) ||
  263. page_table.IsInsideAliasRegion(addr, size));
  264. return addr;
  265. }
  266. ResultVal<VAddr> MapProcessCodeMemory(Kernel::Process* process, VAddr baseAddress,
  267. u64 size) const {
  268. for (std::size_t retry = 0; retry < MAXIMUM_MAP_RETRIES; retry++) {
  269. auto& page_table{process->PageTable()};
  270. const VAddr addr{GetRandomMapRegion(page_table, size)};
  271. const ResultCode result{page_table.MapProcessCodeMemory(addr, baseAddress, size)};
  272. if (result == Kernel::ERR_INVALID_ADDRESS_STATE) {
  273. continue;
  274. }
  275. CASCADE_CODE(result);
  276. if (ValidateRegionForMap(page_table, addr, size)) {
  277. return MakeResult<VAddr>(addr);
  278. }
  279. }
  280. return ERROR_INSUFFICIENT_ADDRESS_SPACE;
  281. }
  282. ResultVal<VAddr> MapNro(Kernel::Process* process, VAddr nro_addr, std::size_t nro_size,
  283. VAddr bss_addr, std::size_t bss_size, std::size_t size) const {
  284. for (std::size_t retry = 0; retry < MAXIMUM_MAP_RETRIES; retry++) {
  285. auto& page_table{process->PageTable()};
  286. VAddr addr{};
  287. CASCADE_RESULT(addr, MapProcessCodeMemory(process, nro_addr, nro_size));
  288. if (bss_size) {
  289. auto block_guard = detail::ScopeExit([&] {
  290. page_table.UnmapProcessCodeMemory(addr + nro_size, bss_addr, bss_size);
  291. page_table.UnmapProcessCodeMemory(addr, nro_addr, nro_size);
  292. });
  293. const ResultCode result{
  294. page_table.MapProcessCodeMemory(addr + nro_size, bss_addr, bss_size)};
  295. if (result == Kernel::ERR_INVALID_ADDRESS_STATE) {
  296. continue;
  297. }
  298. if (result.IsError()) {
  299. return result;
  300. }
  301. block_guard.Cancel();
  302. }
  303. if (ValidateRegionForMap(page_table, addr, size)) {
  304. return MakeResult<VAddr>(addr);
  305. }
  306. }
  307. return ERROR_INSUFFICIENT_ADDRESS_SPACE;
  308. }
  309. ResultCode LoadNro(Kernel::Process* process, const NROHeader& nro_header, VAddr nro_addr,
  310. VAddr start) const {
  311. const VAddr text_start{start + nro_header.segment_headers[TEXT_INDEX].memory_offset};
  312. const VAddr ro_start{start + nro_header.segment_headers[RO_INDEX].memory_offset};
  313. const VAddr data_start{start + nro_header.segment_headers[DATA_INDEX].memory_offset};
  314. const VAddr bss_start{data_start + nro_header.segment_headers[DATA_INDEX].memory_size};
  315. const VAddr bss_end_addr{
  316. Common::AlignUp(bss_start + nro_header.bss_size, Kernel::Memory::PageSize)};
  317. auto CopyCode{[&](VAddr src_addr, VAddr dst_addr, u64 size) {
  318. std::vector<u8> source_data(size);
  319. system.Memory().ReadBlock(src_addr, source_data.data(), source_data.size());
  320. system.Memory().WriteBlock(dst_addr, source_data.data(), source_data.size());
  321. }};
  322. CopyCode(nro_addr + nro_header.segment_headers[TEXT_INDEX].memory_offset, text_start,
  323. nro_header.segment_headers[TEXT_INDEX].memory_size);
  324. CopyCode(nro_addr + nro_header.segment_headers[RO_INDEX].memory_offset, ro_start,
  325. nro_header.segment_headers[RO_INDEX].memory_size);
  326. CopyCode(nro_addr + nro_header.segment_headers[DATA_INDEX].memory_offset, data_start,
  327. nro_header.segment_headers[DATA_INDEX].memory_size);
  328. CASCADE_CODE(process->PageTable().SetCodeMemoryPermission(
  329. text_start, ro_start - text_start, Kernel::Memory::MemoryPermission::ReadAndExecute));
  330. CASCADE_CODE(process->PageTable().SetCodeMemoryPermission(
  331. ro_start, data_start - ro_start, Kernel::Memory::MemoryPermission::Read));
  332. return process->PageTable().SetCodeMemoryPermission(
  333. data_start, bss_end_addr - data_start, Kernel::Memory::MemoryPermission::ReadAndWrite);
  334. }
  335. void LoadNro(Kernel::HLERequestContext& ctx) {
  336. struct Parameters {
  337. u64_le process_id;
  338. u64_le image_address;
  339. u64_le image_size;
  340. u64_le bss_address;
  341. u64_le bss_size;
  342. };
  343. IPC::RequestParser rp{ctx};
  344. const auto [process_id, nro_address, nro_size, bss_address, bss_size] =
  345. rp.PopRaw<Parameters>();
  346. LOG_DEBUG(Service_LDR,
  347. "called with pid={:016X}, nro_addr={:016X}, nro_size={:016X}, bss_addr={:016X}, "
  348. "bss_size={:016X}",
  349. process_id, nro_address, nro_size, bss_address, bss_size);
  350. if (!initialized) {
  351. LOG_ERROR(Service_LDR, "LDR:RO not initialized before use!");
  352. IPC::ResponseBuilder rb{ctx, 2};
  353. rb.Push(ERROR_NOT_INITIALIZED);
  354. return;
  355. }
  356. if (nro.size() >= MAXIMUM_LOADED_RO) {
  357. LOG_ERROR(Service_LDR, "Loading new NRO would exceed the maximum number of loaded NROs "
  358. "(0x40)! Failing...");
  359. IPC::ResponseBuilder rb{ctx, 2};
  360. rb.Push(ERROR_MAXIMUM_NRO);
  361. return;
  362. }
  363. // NRO Address does not fall on 0x1000 byte boundary
  364. if (!Common::Is4KBAligned(nro_address)) {
  365. LOG_ERROR(Service_LDR, "NRO Address has invalid alignment (actual {:016X})!",
  366. nro_address);
  367. IPC::ResponseBuilder rb{ctx, 2};
  368. rb.Push(ERROR_INVALID_ALIGNMENT);
  369. return;
  370. }
  371. // NRO Size or BSS Size is zero or causes overflow
  372. const auto nro_size_valid =
  373. nro_size != 0 && nro_address + nro_size > nro_address && Common::Is4KBAligned(nro_size);
  374. const auto bss_size_valid = nro_size + bss_size >= nro_size &&
  375. (bss_size == 0 || bss_address + bss_size > bss_address);
  376. if (!nro_size_valid || !bss_size_valid) {
  377. LOG_ERROR(Service_LDR,
  378. "NRO Size or BSS Size is invalid! (nro_address={:016X}, nro_size={:016X}, "
  379. "bss_address={:016X}, bss_size={:016X})",
  380. nro_address, nro_size, bss_address, bss_size);
  381. IPC::ResponseBuilder rb{ctx, 2};
  382. rb.Push(ERROR_INVALID_SIZE);
  383. return;
  384. }
  385. // Read NRO data from memory
  386. std::vector<u8> nro_data(nro_size);
  387. system.Memory().ReadBlock(nro_address, nro_data.data(), nro_size);
  388. SHA256Hash hash{};
  389. mbedtls_sha256_ret(nro_data.data(), nro_data.size(), hash.data(), 0);
  390. // NRO Hash is already loaded
  391. if (std::any_of(nro.begin(), nro.end(), [&hash](const std::pair<VAddr, NROInfo>& info) {
  392. return info.second.hash == hash;
  393. })) {
  394. LOG_ERROR(Service_LDR, "NRO is already loaded!");
  395. IPC::ResponseBuilder rb{ctx, 2};
  396. rb.Push(ERROR_ALREADY_LOADED);
  397. return;
  398. }
  399. // NRO Hash is not in any loaded NRR
  400. if (!IsValidNROHash(hash)) {
  401. LOG_ERROR(Service_LDR,
  402. "NRO hash is not present in any currently loaded NRRs (hash={})!",
  403. Common::HexToString(hash));
  404. IPC::ResponseBuilder rb{ctx, 2};
  405. rb.Push(ERROR_MISSING_NRR_HASH);
  406. return;
  407. }
  408. // Load and validate the NRO header
  409. NROHeader header{};
  410. std::memcpy(&header, nro_data.data(), sizeof(NROHeader));
  411. if (!IsValidNRO(header, nro_size, bss_size)) {
  412. LOG_ERROR(Service_LDR, "NRO was invalid!");
  413. IPC::ResponseBuilder rb{ctx, 2};
  414. rb.Push(ERROR_INVALID_NRO);
  415. return;
  416. }
  417. // Map memory for the NRO
  418. const auto map_result{MapNro(system.CurrentProcess(), nro_address, nro_size, bss_address,
  419. bss_size, nro_size + bss_size)};
  420. if (map_result.Failed()) {
  421. IPC::ResponseBuilder rb{ctx, 2};
  422. rb.Push(map_result.Code());
  423. }
  424. // Load the NRO into the mapped memory
  425. if (const auto result{LoadNro(system.CurrentProcess(), header, nro_address, *map_result)};
  426. result.IsError()) {
  427. IPC::ResponseBuilder rb{ctx, 2};
  428. rb.Push(map_result.Code());
  429. }
  430. // Track the loaded NRO
  431. nro.insert_or_assign(*map_result,
  432. NROInfo{hash, *map_result, nro_size, bss_address, bss_size,
  433. header.segment_headers[TEXT_INDEX].memory_size,
  434. header.segment_headers[RO_INDEX].memory_size,
  435. header.segment_headers[DATA_INDEX].memory_size, nro_address});
  436. // Invalidate JIT caches for the newly mapped process code
  437. system.InvalidateCpuInstructionCaches();
  438. IPC::ResponseBuilder rb{ctx, 4};
  439. rb.Push(RESULT_SUCCESS);
  440. rb.Push(*map_result);
  441. }
  442. ResultCode UnmapNro(const NROInfo& info) {
  443. // Each region must be unmapped separately to validate memory state
  444. auto& page_table{system.CurrentProcess()->PageTable()};
  445. CASCADE_CODE(page_table.UnmapProcessCodeMemory(info.nro_address + info.text_size +
  446. info.ro_size + info.data_size,
  447. info.bss_address, info.bss_size));
  448. CASCADE_CODE(page_table.UnmapProcessCodeMemory(
  449. info.nro_address + info.text_size + info.ro_size,
  450. info.src_addr + info.text_size + info.ro_size, info.data_size));
  451. CASCADE_CODE(page_table.UnmapProcessCodeMemory(
  452. info.nro_address + info.text_size, info.src_addr + info.text_size, info.ro_size));
  453. CASCADE_CODE(
  454. page_table.UnmapProcessCodeMemory(info.nro_address, info.src_addr, info.text_size));
  455. return RESULT_SUCCESS;
  456. }
  457. void UnloadNro(Kernel::HLERequestContext& ctx) {
  458. if (!initialized) {
  459. LOG_ERROR(Service_LDR, "LDR:RO not initialized before use!");
  460. IPC::ResponseBuilder rb{ctx, 2};
  461. rb.Push(ERROR_NOT_INITIALIZED);
  462. return;
  463. }
  464. struct Parameters {
  465. u64_le process_id;
  466. u64_le nro_address;
  467. };
  468. IPC::RequestParser rp{ctx};
  469. const auto [process_id, nro_address] = rp.PopRaw<Parameters>();
  470. LOG_DEBUG(Service_LDR, "called with process_id={:016X}, nro_address=0x{:016X}", process_id,
  471. nro_address);
  472. if (!Common::Is4KBAligned(nro_address)) {
  473. LOG_ERROR(Service_LDR, "NRO address has invalid alignment (nro_address=0x{:016X})",
  474. nro_address);
  475. IPC::ResponseBuilder rb{ctx, 2};
  476. rb.Push(ERROR_INVALID_ALIGNMENT);
  477. return;
  478. }
  479. const auto iter = nro.find(nro_address);
  480. if (iter == nro.end()) {
  481. LOG_ERROR(Service_LDR,
  482. "The NRO attempting to be unmapped was not mapped or has an invalid address "
  483. "(nro_address=0x{:016X})!",
  484. nro_address);
  485. IPC::ResponseBuilder rb{ctx, 2};
  486. rb.Push(ERROR_INVALID_NRO_ADDRESS);
  487. return;
  488. }
  489. const auto result{UnmapNro(iter->second)};
  490. system.InvalidateCpuInstructionCaches();
  491. nro.erase(iter);
  492. IPC::ResponseBuilder rb{ctx, 2};
  493. rb.Push(result);
  494. }
  495. void Initialize(Kernel::HLERequestContext& ctx) {
  496. LOG_WARNING(Service_LDR, "(STUBBED) called");
  497. initialized = true;
  498. IPC::ResponseBuilder rb{ctx, 2};
  499. rb.Push(RESULT_SUCCESS);
  500. }
  501. private:
  502. bool initialized{};
  503. std::map<VAddr, NROInfo> nro;
  504. std::map<VAddr, std::vector<SHA256Hash>> nrr;
  505. bool IsValidNROHash(const SHA256Hash& hash) const {
  506. return std::any_of(nrr.begin(), nrr.end(), [&hash](const auto& p) {
  507. return std::find(p.second.begin(), p.second.end(), hash) != p.second.end();
  508. });
  509. }
  510. static bool IsValidNRO(const NROHeader& header, u64 nro_size, u64 bss_size) {
  511. return header.magic == Common::MakeMagic('N', 'R', 'O', '0') &&
  512. header.nro_size == nro_size && header.bss_size == bss_size &&
  513. header.segment_headers[RO_INDEX].memory_offset ==
  514. header.segment_headers[TEXT_INDEX].memory_offset +
  515. header.segment_headers[TEXT_INDEX].memory_size &&
  516. header.segment_headers[DATA_INDEX].memory_offset ==
  517. header.segment_headers[RO_INDEX].memory_offset +
  518. header.segment_headers[RO_INDEX].memory_size &&
  519. nro_size == header.segment_headers[DATA_INDEX].memory_offset +
  520. header.segment_headers[DATA_INDEX].memory_size &&
  521. Common::Is4KBAligned(header.segment_headers[TEXT_INDEX].memory_size) &&
  522. Common::Is4KBAligned(header.segment_headers[RO_INDEX].memory_size) &&
  523. Common::Is4KBAligned(header.segment_headers[DATA_INDEX].memory_size);
  524. }
  525. Core::System& system;
  526. };
  527. void InstallInterfaces(SM::ServiceManager& sm, Core::System& system) {
  528. std::make_shared<DebugMonitor>()->InstallAsService(sm);
  529. std::make_shared<ProcessManager>()->InstallAsService(sm);
  530. std::make_shared<Shell>()->InstallAsService(sm);
  531. std::make_shared<RelocatableObject>(system)->InstallAsService(sm);
  532. }
  533. } // namespace Service::LDR