Emulator.h 10 KB

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  1. /*
  2. * Copyright (c) 2020-2021, Andreas Kling <kling@serenityos.org>
  3. * Copyright (c) 2021, sin-ack <sin-ack@protonmail.com>
  4. *
  5. * SPDX-License-Identifier: BSD-2-Clause
  6. */
  7. #pragma once
  8. #include "MallocTracer.h"
  9. #include "RangeAllocator.h"
  10. #include "Report.h"
  11. #include "SoftCPU.h"
  12. #include "SoftMMU.h"
  13. #include <AK/FileStream.h>
  14. #include <AK/Types.h>
  15. #include <LibCore/MappedFile.h>
  16. #include <LibDebug/DebugInfo.h>
  17. #include <LibELF/AuxiliaryVector.h>
  18. #include <LibELF/Image.h>
  19. #include <LibLine/Editor.h>
  20. #include <LibX86/Instruction.h>
  21. #include <signal.h>
  22. #include <sys/types.h>
  23. namespace UserspaceEmulator {
  24. class MallocTracer;
  25. class Emulator {
  26. public:
  27. static Emulator& the();
  28. Emulator(String const& executable_path, Vector<StringView> const& arguments, Vector<String> const& environment);
  29. void set_profiling_details(bool should_dump_profile, size_t instruction_interval, OutputFileStream* profile_stream, NonnullOwnPtrVector<String>* profiler_strings, Vector<int>* profiler_string_id_map)
  30. {
  31. m_is_profiling = should_dump_profile;
  32. m_profile_instruction_interval = instruction_interval;
  33. m_profile_stream = profile_stream;
  34. m_profiler_strings = profiler_strings;
  35. m_profiler_string_id_map = profiler_string_id_map;
  36. }
  37. void set_in_region_of_interest(bool value)
  38. {
  39. m_is_in_region_of_interest = value;
  40. }
  41. OutputFileStream& profile_stream() { return *m_profile_stream; }
  42. NonnullOwnPtrVector<String>& profiler_strings() { return *m_profiler_strings; }
  43. Vector<int>& profiler_string_id_map() { return *m_profiler_string_id_map; }
  44. bool is_profiling() const { return m_is_profiling; }
  45. bool is_in_region_of_interest() const { return m_is_in_region_of_interest; }
  46. size_t profile_instruction_interval() const { return m_profile_instruction_interval; }
  47. bool is_memory_auditing_suppressed() const { return m_is_memory_auditing_suppressed; }
  48. bool load_elf();
  49. void dump_backtrace();
  50. void dump_backtrace(Vector<FlatPtr> const&);
  51. Vector<FlatPtr> raw_backtrace();
  52. int exec();
  53. void handle_repl();
  54. u32 virt_syscall(u32 function, u32 arg1, u32 arg2, u32 arg3);
  55. SoftMMU& mmu() { return m_mmu; }
  56. MallocTracer* malloc_tracer() { return m_malloc_tracer; }
  57. bool is_in_loader_code() const;
  58. bool is_in_libsystem() const;
  59. void pause()
  60. {
  61. m_steps_til_pause = 0;
  62. m_run_til_return = false;
  63. }
  64. ALWAYS_INLINE void return_callback(FlatPtr addr)
  65. {
  66. if (m_run_til_return) [[unlikely]] {
  67. if (addr == m_watched_addr)
  68. pause();
  69. }
  70. }
  71. ALWAYS_INLINE void call_callback(FlatPtr addr)
  72. {
  73. if (m_run_til_call) [[unlikely]] {
  74. if (addr == m_watched_addr)
  75. pause();
  76. }
  77. }
  78. void did_receive_signal(int signum) { m_pending_signals |= (1 << signum); }
  79. void did_receive_sigint(int)
  80. {
  81. if (m_steps_til_pause == 0)
  82. m_shutdown = true;
  83. else
  84. pause();
  85. }
  86. struct SymbolInfo {
  87. String lib_name;
  88. String symbol;
  89. Optional<Debug::DebugInfo::SourcePosition> source_position;
  90. };
  91. Optional<SymbolInfo> symbol_at(FlatPtr address);
  92. void dump_regions() const;
  93. private:
  94. const String m_executable_path;
  95. const Vector<StringView> m_arguments;
  96. const Vector<String> m_environment;
  97. SoftMMU m_mmu;
  98. SoftCPU m_cpu;
  99. OwnPtr<MallocTracer> m_malloc_tracer;
  100. void setup_stack(Vector<ELF::AuxiliaryValue>);
  101. Vector<ELF::AuxiliaryValue> generate_auxiliary_vector(FlatPtr load_base, FlatPtr entry_eip, String const& executable_path, int executable_fd) const;
  102. void register_signal_handlers();
  103. void setup_signal_trampoline();
  104. void emit_profile_sample(AK::OutputStream&);
  105. void emit_profile_event(AK::OutputStream&, StringView event_name, String const& contents);
  106. int virt$accept4(FlatPtr);
  107. int virt$access(FlatPtr, size_t, int);
  108. u32 virt$allocate_tls(FlatPtr, size_t);
  109. int virt$anon_create(size_t, int);
  110. int virt$beep();
  111. int virt$bind(int sockfd, FlatPtr address, socklen_t address_length);
  112. int virt$chdir(FlatPtr, size_t);
  113. int virt$chmod(FlatPtr, size_t, mode_t);
  114. int virt$chown(FlatPtr);
  115. int virt$clock_gettime(int, FlatPtr);
  116. int virt$clock_nanosleep(FlatPtr);
  117. int virt$clock_settime(uint32_t clock_id, FlatPtr user_ts);
  118. int virt$close(int);
  119. int virt$connect(int sockfd, FlatPtr address, socklen_t address_size);
  120. int virt$create_inode_watcher(unsigned);
  121. int virt$dbgputstr(FlatPtr characters, int length);
  122. int virt$disown(pid_t);
  123. int virt$dup2(int, int);
  124. int virt$emuctl(FlatPtr, FlatPtr, FlatPtr);
  125. int virt$execve(FlatPtr);
  126. void virt$exit(int);
  127. int virt$fchmod(int, mode_t);
  128. int virt$fchown(int, uid_t, gid_t);
  129. u32 virt$fcntl(int fd, int, u32);
  130. int virt$fork();
  131. int virt$fstat(int, FlatPtr);
  132. int virt$ftruncate(int fd, FlatPtr length_addr);
  133. int virt$futex(FlatPtr);
  134. int virt$get_dir_entries(int fd, FlatPtr buffer, ssize_t);
  135. int virt$get_process_name(FlatPtr buffer, int size);
  136. int virt$get_stack_bounds(FlatPtr, FlatPtr);
  137. int virt$getcwd(FlatPtr buffer, size_t buffer_size);
  138. gid_t virt$getegid();
  139. uid_t virt$geteuid();
  140. gid_t virt$getgid();
  141. int virt$getgroups(ssize_t count, FlatPtr);
  142. int virt$gethostname(FlatPtr, ssize_t);
  143. int virt$getpeername(FlatPtr);
  144. int virt$getpgid(pid_t);
  145. int virt$getpgrp();
  146. u32 virt$getpid();
  147. ssize_t virt$getrandom(FlatPtr buffer, size_t buffer_size, unsigned int flags);
  148. int virt$getsid(pid_t);
  149. int virt$getsockname(FlatPtr);
  150. int virt$getsockopt(FlatPtr);
  151. u32 virt$gettid();
  152. uid_t virt$getuid();
  153. int virt$inode_watcher_add_watch(FlatPtr);
  154. int virt$inode_watcher_remove_watch(int, int);
  155. int virt$ioctl(int fd, unsigned, FlatPtr);
  156. int virt$kill(pid_t, int);
  157. int virt$killpg(int pgrp, int sig);
  158. int virt$listen(int, int);
  159. int virt$lseek(int fd, FlatPtr offset_addr, int whence);
  160. u32 virt$madvise(FlatPtr, size_t, int);
  161. int virt$mkdir(FlatPtr path, size_t path_length, mode_t mode);
  162. u32 virt$mmap(u32);
  163. u32 virt$mount(u32);
  164. u32 virt$mprotect(FlatPtr, size_t, int);
  165. FlatPtr virt$mremap(FlatPtr);
  166. int virt$msyscall(FlatPtr);
  167. u32 virt$munmap(FlatPtr address, size_t size);
  168. u32 virt$open(u32);
  169. FlatPtr virt$perf_event(int type, FlatPtr arg1, FlatPtr arg2);
  170. FlatPtr virt$perf_register_string(FlatPtr, size_t);
  171. int virt$pipe(FlatPtr pipefd, int flags);
  172. u32 virt$pledge(u32);
  173. int virt$poll(FlatPtr);
  174. int virt$profiling_disable(pid_t);
  175. int virt$profiling_enable(pid_t);
  176. int virt$ptsname(int fd, FlatPtr buffer, size_t buffer_size);
  177. int virt$purge(int mode);
  178. u32 virt$read(int, FlatPtr, ssize_t);
  179. int virt$readlink(FlatPtr);
  180. int virt$realpath(FlatPtr);
  181. int virt$recvfd(int, int);
  182. int virt$recvmsg(int sockfd, FlatPtr msg_addr, int flags);
  183. int virt$rename(FlatPtr address);
  184. int virt$rmdir(FlatPtr path, size_t path_length);
  185. int virt$sched_getparam(pid_t, FlatPtr);
  186. int virt$sched_setparam(int, FlatPtr);
  187. int virt$sendfd(int, int);
  188. int virt$sendmsg(int sockfd, FlatPtr msg_addr, int flags);
  189. int virt$set_coredump_metadata(FlatPtr address);
  190. int virt$set_mmap_name(FlatPtr);
  191. int virt$set_process_name(FlatPtr buffer, int size);
  192. int virt$set_thread_name(pid_t, FlatPtr, size_t);
  193. int virt$setgid(gid_t);
  194. int virt$setgroups(ssize_t count, FlatPtr);
  195. int virt$setpgid(pid_t pid, pid_t pgid);
  196. pid_t virt$setsid();
  197. int virt$setsockopt(FlatPtr);
  198. int virt$setuid(uid_t);
  199. int virt$shutdown(int sockfd, int how);
  200. int virt$sigaction(int, FlatPtr, FlatPtr);
  201. int virt$sigreturn();
  202. int virt$socket(int, int, int);
  203. int virt$stat(FlatPtr);
  204. int virt$symlink(FlatPtr address);
  205. void virt$sync();
  206. u32 virt$sysconf(u32 name);
  207. int virt$ttyname(int fd, FlatPtr buffer, size_t buffer_size);
  208. mode_t virt$umask(mode_t);
  209. int virt$uname(FlatPtr params_addr);
  210. int virt$unlink(FlatPtr path, size_t path_length);
  211. u32 virt$unveil(u32);
  212. int virt$waitid(FlatPtr);
  213. u32 virt$write(int, FlatPtr, ssize_t);
  214. void dispatch_one_pending_signal();
  215. MmapRegion const* find_text_region(FlatPtr address);
  216. MmapRegion const* load_library_from_address(FlatPtr address);
  217. MmapRegion const* first_region_for_object(StringView name);
  218. String create_backtrace_line(FlatPtr address);
  219. String create_instruction_line(FlatPtr address, X86::Instruction const& insn);
  220. bool m_shutdown { false };
  221. int m_exit_status { 0 };
  222. i64 m_steps_til_pause { -1 };
  223. bool m_run_til_return { false };
  224. bool m_run_til_call { false };
  225. FlatPtr m_watched_addr { 0 };
  226. RefPtr<Line::Editor> m_editor;
  227. FlatPtr m_libsystem_start { 0 };
  228. FlatPtr m_libsystem_end { 0 };
  229. sigset_t m_pending_signals { 0 };
  230. sigset_t m_signal_mask { 0 };
  231. struct SignalHandlerInfo {
  232. FlatPtr handler { 0 };
  233. sigset_t mask { 0 };
  234. int flags { 0 };
  235. };
  236. SignalHandlerInfo m_signal_handler[NSIG];
  237. FlatPtr m_signal_trampoline { 0 };
  238. Optional<FlatPtr> m_loader_text_base;
  239. Optional<size_t> m_loader_text_size;
  240. struct CachedELF {
  241. NonnullRefPtr<Core::MappedFile> mapped_file;
  242. NonnullOwnPtr<Debug::DebugInfo> debug_info;
  243. NonnullOwnPtr<ELF::Image> image;
  244. };
  245. HashMap<String, CachedELF> m_dynamic_library_cache;
  246. RangeAllocator m_range_allocator;
  247. OutputFileStream* m_profile_stream { nullptr };
  248. Vector<int>* m_profiler_string_id_map { nullptr };
  249. NonnullOwnPtrVector<String>* m_profiler_strings { nullptr };
  250. bool m_is_profiling { false };
  251. size_t m_profile_instruction_interval { 0 };
  252. bool m_is_in_region_of_interest { false };
  253. bool m_is_memory_auditing_suppressed { false };
  254. };
  255. ALWAYS_INLINE bool Emulator::is_in_libsystem() const
  256. {
  257. return m_cpu.base_eip() >= m_libsystem_start && m_cpu.base_eip() < m_libsystem_end;
  258. }
  259. ALWAYS_INLINE bool Emulator::is_in_loader_code() const
  260. {
  261. if (!m_loader_text_base.has_value() || !m_loader_text_size.has_value())
  262. return false;
  263. return (m_cpu.base_eip() >= m_loader_text_base.value() && m_cpu.base_eip() < m_loader_text_base.value() + m_loader_text_size.value());
  264. }
  265. }