Emulator.cpp 20 KB

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  1. /*
  2. * Copyright (c) 2020, Andreas Kling <kling@serenityos.org>
  3. * All rights reserved.
  4. *
  5. * Redistribution and use in source and binary forms, with or without
  6. * modification, are permitted provided that the following conditions are met:
  7. *
  8. * 1. Redistributions of source code must retain the above copyright notice, this
  9. * list of conditions and the following disclaimer.
  10. *
  11. * 2. Redistributions in binary form must reproduce the above copyright notice,
  12. * this list of conditions and the following disclaimer in the documentation
  13. * and/or other materials provided with the distribution.
  14. *
  15. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
  16. * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  17. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
  18. * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
  19. * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
  20. * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
  21. * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
  22. * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
  23. * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
  24. * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  25. */
  26. #include "Emulator.h"
  27. #include "MmapRegion.h"
  28. #include "SharedBufferRegion.h"
  29. #include "SimpleRegion.h"
  30. #include "SoftCPU.h"
  31. #include <AK/LexicalPath.h>
  32. #include <AK/LogStream.h>
  33. #include <Kernel/API/Syscall.h>
  34. #include <fcntl.h>
  35. #include <serenity.h>
  36. #include <stdio.h>
  37. #include <string.h>
  38. #include <sys/mman.h>
  39. #include <sys/select.h>
  40. #include <sys/socket.h>
  41. #include <sys/stat.h>
  42. #include <sys/time.h>
  43. #include <unistd.h>
  44. #if defined(__GNUC__) && !defined(__clang__)
  45. # pragma GCC optimize("O3")
  46. #endif
  47. //#define DEBUG_SPAM
  48. namespace UserspaceEmulator {
  49. static constexpr u32 stack_location = 0x10000000;
  50. static constexpr size_t stack_size = 64 * KB;
  51. static Emulator* s_the;
  52. Emulator& Emulator::the()
  53. {
  54. ASSERT(s_the);
  55. return *s_the;
  56. }
  57. Emulator::Emulator(const Vector<String>& arguments, NonnullRefPtr<ELF::Loader> elf)
  58. : m_elf(move(elf))
  59. , m_cpu(*this)
  60. {
  61. m_malloc_tracer = make<MallocTracer>();
  62. ASSERT(!s_the);
  63. s_the = this;
  64. setup_stack(arguments);
  65. }
  66. void Emulator::setup_stack(const Vector<String>& arguments)
  67. {
  68. auto stack_region = make<SimpleRegion>(stack_location, stack_size);
  69. m_mmu.add_region(move(stack_region));
  70. m_cpu.set_esp(stack_location + stack_size);
  71. Vector<u32> argv_entries;
  72. for (auto& argument : arguments) {
  73. m_cpu.push_string(argument.characters());
  74. argv_entries.append(m_cpu.esp());
  75. }
  76. m_cpu.push32(0); // char** envp = { nullptr }
  77. u32 envp = m_cpu.esp();
  78. m_cpu.push32(0); // char** argv = { argv_entries..., nullptr }
  79. for (ssize_t i = argv_entries.size() - 1; i >= 0; --i)
  80. m_cpu.push32(argv_entries[i]);
  81. u32 argv = m_cpu.esp();
  82. m_cpu.push32(0); // (alignment)
  83. u32 argc = argv_entries.size();
  84. m_cpu.push32(envp);
  85. m_cpu.push32(argv);
  86. m_cpu.push32(argc);
  87. m_cpu.push32(0); // (alignment)
  88. }
  89. bool Emulator::load_elf()
  90. {
  91. m_elf->image().for_each_program_header([&](const ELF::Image::ProgramHeader& program_header) {
  92. if (program_header.type() == PT_LOAD) {
  93. auto region = make<SimpleRegion>(program_header.vaddr().get(), program_header.size_in_memory());
  94. memcpy(region->data(), program_header.raw_data(), program_header.size_in_image());
  95. mmu().add_region(move(region));
  96. return;
  97. }
  98. if (program_header.type() == PT_TLS) {
  99. auto tcb_region = make<SimpleRegion>(0x20000000, program_header.size_in_memory());
  100. memcpy(tcb_region->data(), program_header.raw_data(), program_header.size_in_image());
  101. auto tls_region = make<SimpleRegion>(0, 4);
  102. tls_region->write32(0, tcb_region->base() + 8);
  103. mmu().add_region(move(tcb_region));
  104. mmu().set_tls_region(move(tls_region));
  105. return;
  106. }
  107. });
  108. m_cpu.set_eip(m_elf->image().entry().get());
  109. return true;
  110. }
  111. class ELFSymbolProvider final : public X86::SymbolProvider {
  112. public:
  113. ELFSymbolProvider(ELF::Loader& loader)
  114. : m_loader(loader)
  115. {
  116. }
  117. virtual String symbolicate(FlatPtr address, u32* offset = nullptr) const
  118. {
  119. return m_loader.symbolicate(address, offset);
  120. }
  121. private:
  122. ELF::Loader& m_loader;
  123. };
  124. int Emulator::exec()
  125. {
  126. ELFSymbolProvider symbol_provider(*m_elf);
  127. bool trace = false;
  128. while (!m_shutdown) {
  129. u32 base_eip = 0;
  130. if (trace)
  131. base_eip = m_cpu.eip();
  132. auto insn = X86::Instruction::from_stream(m_cpu, true, true);
  133. if (trace)
  134. out() << (const void*)base_eip << " \033[33;1m" << insn.to_string(base_eip, &symbol_provider) << "\033[0m";
  135. (m_cpu.*insn.handler())(insn);
  136. if (trace)
  137. m_cpu.dump();
  138. }
  139. return m_exit_status;
  140. }
  141. bool Emulator::is_in_malloc_or_free() const
  142. {
  143. auto symbol = m_elf->symbolicate(m_cpu.eip());
  144. return symbol.starts_with("malloc") || symbol.starts_with("free");
  145. }
  146. static pid_t s_pid = getpid();
  147. void Emulator::dump_backtrace()
  148. {
  149. u32 offset = 0;
  150. String symbol = m_elf->symbolicate(m_cpu.eip(), &offset);
  151. dbgprintf("==%d== %#08x %s +%#x\n", s_pid, m_cpu.eip(), symbol.characters(), offset);
  152. u32 frame_ptr = m_cpu.ebp();
  153. while (frame_ptr) {
  154. u32 ret_ptr = m_mmu.read32({ 0x20, frame_ptr + 4 });
  155. if (!ret_ptr)
  156. return;
  157. symbol = m_elf->symbolicate(ret_ptr, &offset);
  158. if (!symbol.is_null())
  159. dbgprintf("==%d== %#08x %s +%#x\n", s_pid, ret_ptr, symbol.characters(), offset);
  160. frame_ptr = m_mmu.read32({ 0x20, frame_ptr });
  161. }
  162. }
  163. u32 Emulator::virt_syscall(u32 function, u32 arg1, u32 arg2, u32 arg3)
  164. {
  165. (void)arg2;
  166. (void)arg3;
  167. #ifdef DEBUG_SPAM
  168. dbgprintf("Syscall: %s (%x)\n", Syscall::to_string((Syscall::Function)function), function);
  169. #endif
  170. switch (function) {
  171. case SC_shbuf_create:
  172. return virt$shbuf_create(arg1, arg2);
  173. case SC_shbuf_allow_pid:
  174. return virt$shbuf_allow_pid(arg1, arg2);
  175. case SC_shbuf_allow_all:
  176. return virt$shbuf_allow_all(arg1);
  177. case SC_shbuf_get:
  178. return virt$shbuf_get(arg1, arg2);
  179. case SC_shbuf_release:
  180. return virt$shbuf_release(arg1);
  181. case SC_shbuf_seal:
  182. return virt$shbuf_seal(arg1);
  183. case SC_shbuf_set_volatile:
  184. return virt$shbuf_set_volatile(arg1, arg2);
  185. case SC_mmap:
  186. return virt$mmap(arg1);
  187. case SC_munmap:
  188. return virt$munmap(arg1, arg2);
  189. case SC_gettid:
  190. return virt$gettid();
  191. case SC_getpid:
  192. return virt$getpid();
  193. case SC_pledge:
  194. return virt$pledge(arg1);
  195. case SC_unveil:
  196. return virt$unveil(arg1);
  197. case SC_getuid:
  198. return virt$getuid();
  199. case SC_getgid:
  200. return virt$getgid();
  201. case SC_close:
  202. return virt$close(arg1);
  203. case SC_fstat:
  204. return virt$fstat(arg1, arg2);
  205. case SC_mkdir:
  206. return virt$mkdir(arg1, arg2, arg3);
  207. case SC_unlink:
  208. return virt$unlink(arg1, arg2);
  209. case SC_write:
  210. return virt$write(arg1, arg2, arg3);
  211. case SC_read:
  212. return virt$read(arg1, arg2, arg3);
  213. case SC_mprotect:
  214. return virt$mprotect(arg1, arg2, arg3);
  215. case SC_madvise:
  216. return virt$madvise(arg1, arg2, arg3);
  217. case SC_open:
  218. return virt$open(arg1);
  219. case SC_pipe:
  220. return virt$pipe(arg1, arg2);
  221. case SC_fcntl:
  222. return virt$fcntl(arg1, arg2, arg3);
  223. case SC_getgroups:
  224. return virt$getgroups(arg1, arg2);
  225. case SC_lseek:
  226. return virt$lseek(arg1, arg2, arg3);
  227. case SC_socket:
  228. return virt$socket(arg1, arg2, arg3);
  229. case SC_getsockopt:
  230. return virt$getsockopt(arg1);
  231. case SC_get_process_name:
  232. return virt$get_process_name(arg1, arg2);
  233. case SC_dbgputstr:
  234. return virt$dbgputstr(arg1, arg2);
  235. case SC_dbgputch:
  236. return virt$dbgputch(arg1);
  237. case SC_fchmod:
  238. return virt$fchmod(arg1, arg2);
  239. case SC_bind:
  240. return virt$bind(arg1, arg2, arg3);
  241. case SC_connect:
  242. return virt$connect(arg1, arg2, arg3);
  243. case SC_listen:
  244. return virt$listen(arg1, arg2);
  245. case SC_select:
  246. return virt$select(arg1);
  247. case SC_recvfrom:
  248. return virt$recvfrom(arg1);
  249. case SC_kill:
  250. return virt$kill(arg1, arg2);
  251. case SC_set_mmap_name:
  252. return virt$set_mmap_name(arg1);
  253. case SC_set_process_icon:
  254. return virt$set_process_icon(arg1);
  255. case SC_exit:
  256. virt$exit((int)arg1);
  257. return 0;
  258. case SC_gettimeofday:
  259. return virt$gettimeofday(arg1);
  260. case SC_clock_gettime:
  261. return virt$clock_gettime(arg1, arg2);
  262. default:
  263. warn() << "Unimplemented syscall: " << Syscall::to_string((Syscall::Function)function);
  264. dump_backtrace();
  265. TODO();
  266. }
  267. }
  268. int Emulator::virt$shbuf_create(int size, FlatPtr buffer)
  269. {
  270. u8* host_data = nullptr;
  271. int shbuf_id = syscall(SC_shbuf_create, size, &host_data);
  272. if (shbuf_id < 0)
  273. return shbuf_id;
  274. FlatPtr address = allocate_vm(size, PAGE_SIZE);
  275. auto region = SharedBufferRegion::create_with_shbuf_id(address, size, shbuf_id, host_data);
  276. m_mmu.add_region(move(region));
  277. m_mmu.copy_to_vm(buffer, &address, sizeof(address));
  278. return shbuf_id;
  279. }
  280. FlatPtr Emulator::virt$shbuf_get(int shbuf_id, FlatPtr size_ptr)
  281. {
  282. size_t host_size = 0;
  283. void* host_data = (void*)syscall(SC_shbuf_get, shbuf_id, &host_size);
  284. if (host_data == (void*)-1)
  285. return (FlatPtr)host_data;
  286. FlatPtr address = allocate_vm(host_size, PAGE_SIZE);
  287. auto region = SharedBufferRegion::create_with_shbuf_id(address, host_size, shbuf_id, (u8*)host_data);
  288. m_mmu.add_region(move(region));
  289. m_mmu.copy_to_vm(size_ptr, &host_size, sizeof(host_size));
  290. return address;
  291. }
  292. int Emulator::virt$shbuf_allow_pid(int shbuf_id, pid_t peer_pid)
  293. {
  294. auto* region = m_mmu.shbuf_region(shbuf_id);
  295. ASSERT(region);
  296. return region->allow_pid(peer_pid);
  297. }
  298. int Emulator::virt$shbuf_allow_all(int shbuf_id)
  299. {
  300. auto* region = m_mmu.shbuf_region(shbuf_id);
  301. ASSERT(region);
  302. return region->allow_all();
  303. }
  304. int Emulator::virt$shbuf_release(int shbuf_id)
  305. {
  306. auto* region = m_mmu.shbuf_region(shbuf_id);
  307. ASSERT(region);
  308. auto rc = region->release();
  309. m_mmu.remove_region(*region);
  310. return rc;
  311. }
  312. int Emulator::virt$shbuf_seal(int shbuf_id)
  313. {
  314. auto* region = m_mmu.shbuf_region(shbuf_id);
  315. ASSERT(region);
  316. return region->seal();
  317. }
  318. int Emulator::virt$shbuf_set_volatile(int shbuf_id, bool is_volatile)
  319. {
  320. auto* region = m_mmu.shbuf_region(shbuf_id);
  321. ASSERT(region);
  322. return region->set_volatile(is_volatile);
  323. }
  324. int Emulator::virt$fstat(int fd, FlatPtr statbuf)
  325. {
  326. struct stat local_statbuf;
  327. int rc = syscall(SC_fstat, fd, &local_statbuf);
  328. if (rc < 0)
  329. return rc;
  330. mmu().copy_to_vm(statbuf, &local_statbuf, sizeof(local_statbuf));
  331. return rc;
  332. }
  333. int Emulator::virt$close(int fd)
  334. {
  335. return syscall(SC_close, fd);
  336. }
  337. int Emulator::virt$mkdir(FlatPtr path, size_t path_length, mode_t mode)
  338. {
  339. auto buffer = mmu().copy_buffer_from_vm(path, path_length);
  340. return syscall(SC_mkdir, buffer.data(), buffer.size(), mode);
  341. }
  342. int Emulator::virt$unlink(FlatPtr path, size_t path_length)
  343. {
  344. auto buffer = mmu().copy_buffer_from_vm(path, path_length);
  345. return syscall(SC_unlink, buffer.data(), buffer.size());
  346. }
  347. int Emulator::virt$dbgputstr(FlatPtr characters, int length)
  348. {
  349. auto buffer = mmu().copy_buffer_from_vm(characters, length);
  350. dbgputstr((const char*)buffer.data(), buffer.size());
  351. return 0;
  352. }
  353. int Emulator::virt$fchmod(int fd, mode_t mode)
  354. {
  355. return syscall(SC_fchmod, fd, mode);
  356. }
  357. int Emulator::virt$bind(int sockfd, FlatPtr address, socklen_t address_length)
  358. {
  359. auto buffer = mmu().copy_buffer_from_vm(address, address_length);
  360. return syscall(SC_bind, sockfd, buffer.data(), buffer.size());
  361. }
  362. int Emulator::virt$connect(int sockfd, FlatPtr address, socklen_t address_size)
  363. {
  364. auto buffer = mmu().copy_buffer_from_vm(address, address_size);
  365. return syscall(SC_connect, sockfd, buffer.data(), buffer.size());
  366. }
  367. int Emulator::virt$dbgputch(char ch)
  368. {
  369. dbgputch(ch);
  370. return 0;
  371. }
  372. int Emulator::virt$listen(int fd, int backlog)
  373. {
  374. return syscall(SC_listen, fd, backlog);
  375. }
  376. int Emulator::virt$kill(pid_t pid, int signal)
  377. {
  378. return syscall(SC_kill, pid, signal);
  379. }
  380. int Emulator::virt$set_process_icon(int shbuf_id)
  381. {
  382. return syscall(SC_set_process_icon, shbuf_id);
  383. }
  384. int Emulator::virt$gettimeofday(FlatPtr timeval)
  385. {
  386. struct timeval host_timeval;
  387. int rc = syscall(SC_gettimeofday, &host_timeval);
  388. if (rc < 0)
  389. return rc;
  390. mmu().copy_to_vm(timeval, &host_timeval, sizeof(host_timeval));
  391. return rc;
  392. }
  393. int Emulator::virt$clock_gettime(int clockid, FlatPtr timespec)
  394. {
  395. struct timespec host_timespec;
  396. int rc = syscall(SC_clock_gettime, clockid, &host_timespec);
  397. if (rc < 0)
  398. return rc;
  399. mmu().copy_to_vm(timespec, &host_timespec, sizeof(host_timespec));
  400. return rc;
  401. }
  402. int Emulator::virt$set_mmap_name(FlatPtr)
  403. {
  404. // FIXME: Implement.
  405. return 0;
  406. }
  407. int Emulator::virt$get_process_name(FlatPtr buffer, int size)
  408. {
  409. if (size < 9)
  410. return -ENAMETOOLONG;
  411. mmu().copy_to_vm(buffer, "EMULATED", 9);
  412. return 0;
  413. }
  414. int Emulator::virt$lseek(int fd, off_t offset, int whence)
  415. {
  416. return syscall(SC_lseek, fd, offset, whence);
  417. }
  418. int Emulator::virt$socket(int domain, int type, int protocol)
  419. {
  420. return syscall(SC_socket, domain, type, protocol);
  421. }
  422. int Emulator::virt$recvfrom(FlatPtr params_addr)
  423. {
  424. Syscall::SC_recvfrom_params params;
  425. mmu().copy_from_vm(&params, params_addr, sizeof(params));
  426. auto buffer = ByteBuffer::create_uninitialized(params.buffer.size);
  427. sockaddr_un address;
  428. if (params.addr)
  429. mmu().copy_from_vm(&address, (FlatPtr)params.addr, sizeof(address));
  430. socklen_t address_length = 0;
  431. if (params.addr_length)
  432. mmu().copy_from_vm(&address_length, (FlatPtr)address_length, sizeof(address_length));
  433. int rc = recvfrom(params.sockfd, buffer.data(), buffer.size(), params.flags, params.addr ? (struct sockaddr*)&address : nullptr, params.addr_length ? &address_length : nullptr);
  434. if (rc < 0)
  435. return -errno;
  436. mmu().copy_to_vm((FlatPtr)params.buffer.data, buffer.data(), buffer.size());
  437. if (params.addr)
  438. mmu().copy_to_vm((FlatPtr)params.addr, &address, address_length);
  439. if (params.addr_length)
  440. mmu().copy_to_vm((FlatPtr)params.addr_length, &address_length, sizeof(address_length));
  441. return rc;
  442. }
  443. int Emulator::virt$select(FlatPtr params_addr)
  444. {
  445. Syscall::SC_select_params params;
  446. mmu().copy_from_vm(&params, params_addr, sizeof(params));
  447. fd_set readfds;
  448. fd_set writefds;
  449. fd_set exceptfds;
  450. struct timespec timeout;
  451. u32 sigmask;
  452. if (params.readfds)
  453. mmu().copy_from_vm(&readfds, (FlatPtr)params.readfds, sizeof(readfds));
  454. if (params.writefds)
  455. mmu().copy_from_vm(&writefds, (FlatPtr)params.writefds, sizeof(writefds));
  456. if (params.exceptfds)
  457. mmu().copy_from_vm(&exceptfds, (FlatPtr)params.exceptfds, sizeof(exceptfds));
  458. if (params.timeout)
  459. mmu().copy_from_vm(&timeout, (FlatPtr)params.timeout, sizeof(timeout));
  460. if (params.sigmask)
  461. mmu().copy_from_vm(&sigmask, (FlatPtr)params.sigmask, sizeof(sigmask));
  462. int rc = pselect(params.nfds, &readfds, &writefds, &exceptfds, params.timeout ? &timeout : nullptr, params.sigmask ? &sigmask : nullptr);
  463. if (rc < 0)
  464. return -errno;
  465. if (params.readfds)
  466. mmu().copy_to_vm((FlatPtr)params.readfds, &readfds, sizeof(readfds));
  467. if (params.writefds)
  468. mmu().copy_to_vm((FlatPtr)params.writefds, &writefds, sizeof(writefds));
  469. if (params.exceptfds)
  470. mmu().copy_to_vm((FlatPtr)params.exceptfds, &exceptfds, sizeof(exceptfds));
  471. if (params.timeout)
  472. mmu().copy_to_vm((FlatPtr)params.timeout, &timeout, sizeof(timeout));
  473. return rc;
  474. }
  475. int Emulator::virt$getsockopt(FlatPtr params_addr)
  476. {
  477. Syscall::SC_getsockopt_params params;
  478. mmu().copy_from_vm(&params, params_addr, sizeof(params));
  479. if (params.option == SO_PEERCRED) {
  480. struct ucred creds = {};
  481. socklen_t creds_size = sizeof(creds);
  482. int rc = getsockopt(params.sockfd, params.level, SO_PEERCRED, &creds, &creds_size);
  483. if (rc < 0)
  484. return -errno;
  485. // FIXME: Check params.value_size
  486. mmu().copy_to_vm((FlatPtr)params.value, &creds, sizeof(creds));
  487. return rc;
  488. }
  489. TODO();
  490. }
  491. int Emulator::virt$getgroups(ssize_t count, FlatPtr groups)
  492. {
  493. if (!count)
  494. return syscall(SC_getgroups, 0, nullptr);
  495. auto buffer = ByteBuffer::create_uninitialized(count * sizeof(gid_t));
  496. int rc = syscall(SC_getgroups, count, buffer.data());
  497. if (rc < 0)
  498. return rc;
  499. mmu().copy_to_vm(groups, buffer.data(), buffer.size());
  500. return 0;
  501. }
  502. u32 Emulator::virt$fcntl(int fd, int cmd, u32 arg)
  503. {
  504. switch (cmd) {
  505. case F_DUPFD:
  506. case F_GETFD:
  507. case F_SETFD:
  508. case F_GETFL:
  509. case F_SETFL:
  510. case F_ISTTY:
  511. break;
  512. default:
  513. TODO();
  514. }
  515. return syscall(SC_fcntl, fd, cmd, arg);
  516. }
  517. u32 Emulator::virt$open(u32 params_addr)
  518. {
  519. Syscall::SC_open_params params;
  520. mmu().copy_from_vm(&params, params_addr, sizeof(params));
  521. auto path = mmu().copy_buffer_from_vm((FlatPtr)params.path.characters, params.path.length);
  522. int fd = openat_with_path_length(params.dirfd, (const char*)path.data(), path.size(), params.options, params.mode);
  523. if (fd < 0)
  524. return -errno;
  525. return fd;
  526. }
  527. int Emulator::virt$pipe(FlatPtr vm_pipefd, int flags)
  528. {
  529. int pipefd[2];
  530. int rc = syscall(SC_pipe, pipefd, flags);
  531. if (rc < 0)
  532. return rc;
  533. mmu().copy_to_vm(vm_pipefd, pipefd, sizeof(pipefd));
  534. return rc;
  535. }
  536. u32 Emulator::virt$munmap(FlatPtr address, u32 size)
  537. {
  538. auto* region = mmu().find_region({ 0x20, address });
  539. ASSERT(region);
  540. if (region->size() != round_up_to_power_of_two(size, PAGE_SIZE))
  541. TODO();
  542. mmu().remove_region(*region);
  543. return 0;
  544. }
  545. FlatPtr Emulator::allocate_vm(size_t size, size_t alignment)
  546. {
  547. // FIXME: Write a proper VM allocator
  548. static FlatPtr next_address = 0x30000000;
  549. FlatPtr final_address;
  550. if (alignment) {
  551. // FIXME: What if alignment is not a power of 2?
  552. final_address = round_up_to_power_of_two(next_address, alignment);
  553. } else {
  554. final_address = next_address;
  555. }
  556. next_address = final_address + size;
  557. return final_address;
  558. }
  559. u32 Emulator::virt$mmap(u32 params_addr)
  560. {
  561. Syscall::SC_mmap_params params;
  562. mmu().copy_from_vm(&params, params_addr, sizeof(params));
  563. ASSERT(params.addr == 0);
  564. u32 final_size = round_up_to_power_of_two(params.size, PAGE_SIZE);
  565. u32 final_address = allocate_vm(final_size, params.alignment);
  566. if (params.flags & MAP_ANONYMOUS)
  567. mmu().add_region(MmapRegion::create_anonymous(final_address, final_size, params.prot));
  568. else
  569. mmu().add_region(MmapRegion::create_file_backed(final_address, final_size, params.prot, params.flags, params.fd, params.offset));
  570. return final_address;
  571. }
  572. u32 Emulator::virt$gettid()
  573. {
  574. return gettid();
  575. }
  576. u32 Emulator::virt$getpid()
  577. {
  578. return getpid();
  579. }
  580. u32 Emulator::virt$pledge(u32)
  581. {
  582. return 0;
  583. }
  584. u32 Emulator::virt$unveil(u32)
  585. {
  586. return 0;
  587. }
  588. u32 Emulator::virt$mprotect(FlatPtr, size_t, int)
  589. {
  590. return 0;
  591. }
  592. u32 Emulator::virt$madvise(FlatPtr, size_t, int)
  593. {
  594. return 0;
  595. }
  596. uid_t Emulator::virt$getuid()
  597. {
  598. return getuid();
  599. }
  600. gid_t Emulator::virt$getgid()
  601. {
  602. return getgid();
  603. }
  604. u32 Emulator::virt$write(int fd, FlatPtr data, ssize_t size)
  605. {
  606. if (size < 0)
  607. return -EINVAL;
  608. auto buffer = mmu().copy_buffer_from_vm(data, size);
  609. return syscall(SC_write, fd, buffer.data(), buffer.size());
  610. }
  611. u32 Emulator::virt$read(int fd, FlatPtr buffer, ssize_t size)
  612. {
  613. if (size < 0)
  614. return -EINVAL;
  615. auto local_buffer = ByteBuffer::create_uninitialized(size);
  616. int nread = syscall(SC_read, fd, local_buffer.data(), local_buffer.size());
  617. if (nread < 0) {
  618. if (nread == -EPERM) {
  619. dump_backtrace();
  620. TODO();
  621. }
  622. return nread;
  623. }
  624. mmu().copy_to_vm(buffer, local_buffer.data(), local_buffer.size());
  625. return nread;
  626. }
  627. void Emulator::virt$exit(int status)
  628. {
  629. dbg() << "exit(" << status << "), shutting down!";
  630. m_exit_status = status;
  631. m_shutdown = true;
  632. }
  633. }