process.c 15 KB

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  1. /*
  2. * Copyright (C) 2002- 2004 Jeff Dike (jdike@addtoit.com)
  3. * Licensed under the GPL
  4. */
  5. #include <stdlib.h>
  6. #include <string.h>
  7. #include <unistd.h>
  8. #include <errno.h>
  9. #include <signal.h>
  10. #include <setjmp.h>
  11. #include <sched.h>
  12. #include "ptrace_user.h"
  13. #include <sys/wait.h>
  14. #include <sys/mman.h>
  15. #include <sys/user.h>
  16. #include <sys/time.h>
  17. #include <asm/unistd.h>
  18. #include <asm/types.h>
  19. #include "user.h"
  20. #include "sysdep/ptrace.h"
  21. #include "user_util.h"
  22. #include "kern_util.h"
  23. #include "skas.h"
  24. #include "stub-data.h"
  25. #include "mm_id.h"
  26. #include "sysdep/sigcontext.h"
  27. #include "sysdep/stub.h"
  28. #include "os.h"
  29. #include "proc_mm.h"
  30. #include "skas_ptrace.h"
  31. #include "chan_user.h"
  32. #include "registers.h"
  33. #include "mem.h"
  34. #include "uml-config.h"
  35. #include "process.h"
  36. #include "longjmp.h"
  37. int is_skas_winch(int pid, int fd, void *data)
  38. {
  39. if(pid != os_getpgrp())
  40. return(0);
  41. register_winch_irq(-1, fd, -1, data);
  42. return(1);
  43. }
  44. void wait_stub_done(int pid, int sig, char * fname)
  45. {
  46. int n, status, err;
  47. do {
  48. if ( sig != -1 ) {
  49. err = ptrace(PTRACE_CONT, pid, 0, sig);
  50. if(err)
  51. panic("%s : continue failed, errno = %d\n",
  52. fname, errno);
  53. }
  54. sig = 0;
  55. CATCH_EINTR(n = waitpid(pid, &status, WUNTRACED));
  56. } while((n >= 0) && WIFSTOPPED(status) &&
  57. ((WSTOPSIG(status) == SIGVTALRM) ||
  58. /* running UML inside a detached screen can cause
  59. * SIGWINCHes
  60. */
  61. (WSTOPSIG(status) == SIGWINCH)));
  62. if((n < 0) || !WIFSTOPPED(status) ||
  63. (WSTOPSIG(status) != SIGUSR1 && WSTOPSIG(status) != SIGTRAP)){
  64. unsigned long regs[HOST_FRAME_SIZE];
  65. if(ptrace(PTRACE_GETREGS, pid, 0, regs) < 0)
  66. printk("Failed to get registers from stub, "
  67. "errno = %d\n", errno);
  68. else {
  69. int i;
  70. printk("Stub registers -\n");
  71. for(i = 0; i < HOST_FRAME_SIZE; i++)
  72. printk("\t%d - %lx\n", i, regs[i]);
  73. }
  74. panic("%s : failed to wait for SIGUSR1/SIGTRAP, "
  75. "pid = %d, n = %d, errno = %d, status = 0x%x\n",
  76. fname, pid, n, errno, status);
  77. }
  78. }
  79. extern unsigned long current_stub_stack(void);
  80. void get_skas_faultinfo(int pid, struct faultinfo * fi)
  81. {
  82. int err;
  83. if(ptrace_faultinfo){
  84. err = ptrace(PTRACE_FAULTINFO, pid, 0, fi);
  85. if(err)
  86. panic("get_skas_faultinfo - PTRACE_FAULTINFO failed, "
  87. "errno = %d\n", errno);
  88. /* Special handling for i386, which has different structs */
  89. if (sizeof(struct ptrace_faultinfo) < sizeof(struct faultinfo))
  90. memset((char *)fi + sizeof(struct ptrace_faultinfo), 0,
  91. sizeof(struct faultinfo) -
  92. sizeof(struct ptrace_faultinfo));
  93. }
  94. else {
  95. wait_stub_done(pid, SIGSEGV, "get_skas_faultinfo");
  96. /* faultinfo is prepared by the stub-segv-handler at start of
  97. * the stub stack page. We just have to copy it.
  98. */
  99. memcpy(fi, (void *)current_stub_stack(), sizeof(*fi));
  100. }
  101. }
  102. static void handle_segv(int pid, union uml_pt_regs * regs)
  103. {
  104. get_skas_faultinfo(pid, &regs->skas.faultinfo);
  105. segv(regs->skas.faultinfo, 0, 1, NULL);
  106. }
  107. /*To use the same value of using_sysemu as the caller, ask it that value (in local_using_sysemu)*/
  108. static void handle_trap(int pid, union uml_pt_regs *regs, int local_using_sysemu)
  109. {
  110. int err, status;
  111. /* Mark this as a syscall */
  112. UPT_SYSCALL_NR(regs) = PT_SYSCALL_NR(regs->skas.regs);
  113. if (!local_using_sysemu)
  114. {
  115. err = ptrace(PTRACE_POKEUSR, pid, PT_SYSCALL_NR_OFFSET,
  116. __NR_getpid);
  117. if(err < 0)
  118. panic("handle_trap - nullifying syscall failed errno = %d\n",
  119. errno);
  120. err = ptrace(PTRACE_SYSCALL, pid, 0, 0);
  121. if(err < 0)
  122. panic("handle_trap - continuing to end of syscall failed, "
  123. "errno = %d\n", errno);
  124. CATCH_EINTR(err = waitpid(pid, &status, WUNTRACED));
  125. if((err < 0) || !WIFSTOPPED(status) ||
  126. (WSTOPSIG(status) != SIGTRAP + 0x80))
  127. panic("handle_trap - failed to wait at end of syscall, "
  128. "errno = %d, status = %d\n", errno, status);
  129. }
  130. handle_syscall(regs);
  131. }
  132. extern int __syscall_stub_start;
  133. static int userspace_tramp(void *stack)
  134. {
  135. void *addr;
  136. ptrace(PTRACE_TRACEME, 0, 0, 0);
  137. init_new_thread_signals(1);
  138. enable_timer();
  139. if(!proc_mm){
  140. /* This has a pte, but it can't be mapped in with the usual
  141. * tlb_flush mechanism because this is part of that mechanism
  142. */
  143. int fd;
  144. __u64 offset;
  145. fd = phys_mapping(to_phys(&__syscall_stub_start), &offset);
  146. addr = mmap64((void *) UML_CONFIG_STUB_CODE, page_size(),
  147. PROT_EXEC, MAP_FIXED | MAP_PRIVATE, fd, offset);
  148. if(addr == MAP_FAILED){
  149. printk("mapping mmap stub failed, errno = %d\n",
  150. errno);
  151. exit(1);
  152. }
  153. if(stack != NULL){
  154. fd = phys_mapping(to_phys(stack), &offset);
  155. addr = mmap((void *) UML_CONFIG_STUB_DATA, page_size(),
  156. PROT_READ | PROT_WRITE,
  157. MAP_FIXED | MAP_SHARED, fd, offset);
  158. if(addr == MAP_FAILED){
  159. printk("mapping segfault stack failed, "
  160. "errno = %d\n", errno);
  161. exit(1);
  162. }
  163. }
  164. }
  165. if(!ptrace_faultinfo && (stack != NULL)){
  166. unsigned long v = UML_CONFIG_STUB_CODE +
  167. (unsigned long) stub_segv_handler -
  168. (unsigned long) &__syscall_stub_start;
  169. set_sigstack((void *) UML_CONFIG_STUB_DATA, page_size());
  170. set_handler(SIGSEGV, (void *) v, SA_ONSTACK,
  171. SIGIO, SIGWINCH, SIGALRM, SIGVTALRM,
  172. SIGUSR1, -1);
  173. }
  174. os_stop_process(os_getpid());
  175. return(0);
  176. }
  177. /* Each element set once, and only accessed by a single processor anyway */
  178. #undef NR_CPUS
  179. #define NR_CPUS 1
  180. int userspace_pid[NR_CPUS];
  181. int start_userspace(unsigned long stub_stack)
  182. {
  183. void *stack;
  184. unsigned long sp;
  185. int pid, status, n, flags;
  186. stack = mmap(NULL, PAGE_SIZE, PROT_READ | PROT_WRITE | PROT_EXEC,
  187. MAP_PRIVATE | MAP_ANONYMOUS, -1, 0);
  188. if(stack == MAP_FAILED)
  189. panic("start_userspace : mmap failed, errno = %d", errno);
  190. sp = (unsigned long) stack + PAGE_SIZE - sizeof(void *);
  191. flags = CLONE_FILES | SIGCHLD;
  192. if(proc_mm) flags |= CLONE_VM;
  193. pid = clone(userspace_tramp, (void *) sp, flags, (void *) stub_stack);
  194. if(pid < 0)
  195. panic("start_userspace : clone failed, errno = %d", errno);
  196. do {
  197. CATCH_EINTR(n = waitpid(pid, &status, WUNTRACED));
  198. if(n < 0)
  199. panic("start_userspace : wait failed, errno = %d",
  200. errno);
  201. } while(WIFSTOPPED(status) && (WSTOPSIG(status) == SIGVTALRM));
  202. if(!WIFSTOPPED(status) || (WSTOPSIG(status) != SIGSTOP))
  203. panic("start_userspace : expected SIGSTOP, got status = %d",
  204. status);
  205. if (ptrace(PTRACE_OLDSETOPTIONS, pid, NULL, (void *)PTRACE_O_TRACESYSGOOD) < 0)
  206. panic("start_userspace : PTRACE_OLDSETOPTIONS failed, errno=%d\n",
  207. errno);
  208. if(munmap(stack, PAGE_SIZE) < 0)
  209. panic("start_userspace : munmap failed, errno = %d\n", errno);
  210. return(pid);
  211. }
  212. void userspace(union uml_pt_regs *regs)
  213. {
  214. int err, status, op, pid = userspace_pid[0];
  215. int local_using_sysemu; /*To prevent races if using_sysemu changes under us.*/
  216. while(1){
  217. restore_registers(pid, regs);
  218. /* Now we set local_using_sysemu to be used for one loop */
  219. local_using_sysemu = get_using_sysemu();
  220. op = SELECT_PTRACE_OPERATION(local_using_sysemu, singlestepping(NULL));
  221. err = ptrace(op, pid, 0, 0);
  222. if(err)
  223. panic("userspace - could not resume userspace process, "
  224. "pid=%d, ptrace operation = %d, errno = %d\n",
  225. op, errno);
  226. CATCH_EINTR(err = waitpid(pid, &status, WUNTRACED));
  227. if(err < 0)
  228. panic("userspace - waitpid failed, errno = %d\n",
  229. errno);
  230. regs->skas.is_user = 1;
  231. save_registers(pid, regs);
  232. UPT_SYSCALL_NR(regs) = -1; /* Assume: It's not a syscall */
  233. if(WIFSTOPPED(status)){
  234. switch(WSTOPSIG(status)){
  235. case SIGSEGV:
  236. if(PTRACE_FULL_FAULTINFO || !ptrace_faultinfo)
  237. user_signal(SIGSEGV, regs, pid);
  238. else handle_segv(pid, regs);
  239. break;
  240. case SIGTRAP + 0x80:
  241. handle_trap(pid, regs, local_using_sysemu);
  242. break;
  243. case SIGTRAP:
  244. relay_signal(SIGTRAP, regs);
  245. break;
  246. case SIGIO:
  247. case SIGVTALRM:
  248. case SIGILL:
  249. case SIGBUS:
  250. case SIGFPE:
  251. case SIGWINCH:
  252. user_signal(WSTOPSIG(status), regs, pid);
  253. break;
  254. default:
  255. printk("userspace - child stopped with signal "
  256. "%d\n", WSTOPSIG(status));
  257. }
  258. pid = userspace_pid[0];
  259. interrupt_end();
  260. /* Avoid -ERESTARTSYS handling in host */
  261. if(PT_SYSCALL_NR_OFFSET != PT_SYSCALL_RET_OFFSET)
  262. PT_SYSCALL_NR(regs->skas.regs) = -1;
  263. }
  264. }
  265. }
  266. #define INIT_JMP_NEW_THREAD 0
  267. #define INIT_JMP_REMOVE_SIGSTACK 1
  268. #define INIT_JMP_CALLBACK 2
  269. #define INIT_JMP_HALT 3
  270. #define INIT_JMP_REBOOT 4
  271. int copy_context_skas0(unsigned long new_stack, int pid)
  272. {
  273. int err;
  274. unsigned long regs[MAX_REG_NR];
  275. unsigned long current_stack = current_stub_stack();
  276. struct stub_data *data = (struct stub_data *) current_stack;
  277. struct stub_data *child_data = (struct stub_data *) new_stack;
  278. __u64 new_offset;
  279. int new_fd = phys_mapping(to_phys((void *)new_stack), &new_offset);
  280. /* prepare offset and fd of child's stack as argument for parent's
  281. * and child's mmap2 calls
  282. */
  283. *data = ((struct stub_data) { .offset = MMAP_OFFSET(new_offset),
  284. .fd = new_fd,
  285. .timer = ((struct itimerval)
  286. { { 0, 1000000 / hz() },
  287. { 0, 1000000 / hz() }})});
  288. get_safe_registers(regs);
  289. /* Set parent's instruction pointer to start of clone-stub */
  290. regs[REGS_IP_INDEX] = UML_CONFIG_STUB_CODE +
  291. (unsigned long) stub_clone_handler -
  292. (unsigned long) &__syscall_stub_start;
  293. regs[REGS_SP_INDEX] = UML_CONFIG_STUB_DATA + PAGE_SIZE -
  294. sizeof(void *);
  295. #ifdef __SIGNAL_FRAMESIZE
  296. regs[REGS_SP_INDEX] -= __SIGNAL_FRAMESIZE;
  297. #endif
  298. err = ptrace_setregs(pid, regs);
  299. if(err < 0)
  300. panic("copy_context_skas0 : PTRACE_SETREGS failed, "
  301. "pid = %d, errno = %d\n", pid, errno);
  302. /* set a well known return code for detection of child write failure */
  303. child_data->err = 12345678;
  304. /* Wait, until parent has finished its work: read child's pid from
  305. * parent's stack, and check, if bad result.
  306. */
  307. wait_stub_done(pid, 0, "copy_context_skas0");
  308. pid = data->err;
  309. if(pid < 0)
  310. panic("copy_context_skas0 - stub-parent reports error %d\n",
  311. pid);
  312. /* Wait, until child has finished too: read child's result from
  313. * child's stack and check it.
  314. */
  315. wait_stub_done(pid, -1, "copy_context_skas0");
  316. if (child_data->err != UML_CONFIG_STUB_DATA)
  317. panic("copy_context_skas0 - stub-child reports error %d\n",
  318. child_data->err);
  319. if (ptrace(PTRACE_OLDSETOPTIONS, pid, NULL,
  320. (void *)PTRACE_O_TRACESYSGOOD) < 0)
  321. panic("copy_context_skas0 : PTRACE_OLDSETOPTIONS failed, "
  322. "errno = %d\n", errno);
  323. return pid;
  324. }
  325. /*
  326. * This is used only, if stub pages are needed, while proc_mm is
  327. * availabl. Opening /proc/mm creates a new mm_context, which lacks
  328. * the stub-pages. Thus, we map them using /proc/mm-fd
  329. */
  330. void map_stub_pages(int fd, unsigned long code,
  331. unsigned long data, unsigned long stack)
  332. {
  333. struct proc_mm_op mmop;
  334. int n;
  335. __u64 code_offset;
  336. int code_fd = phys_mapping(to_phys((void *) &__syscall_stub_start),
  337. &code_offset);
  338. mmop = ((struct proc_mm_op) { .op = MM_MMAP,
  339. .u =
  340. { .mmap =
  341. { .addr = code,
  342. .len = PAGE_SIZE,
  343. .prot = PROT_EXEC,
  344. .flags = MAP_FIXED | MAP_PRIVATE,
  345. .fd = code_fd,
  346. .offset = code_offset
  347. } } });
  348. n = os_write_file(fd, &mmop, sizeof(mmop));
  349. if(n != sizeof(mmop))
  350. panic("map_stub_pages : /proc/mm map for code failed, "
  351. "err = %d\n", -n);
  352. if ( stack ) {
  353. __u64 map_offset;
  354. int map_fd = phys_mapping(to_phys((void *)stack), &map_offset);
  355. mmop = ((struct proc_mm_op)
  356. { .op = MM_MMAP,
  357. .u =
  358. { .mmap =
  359. { .addr = data,
  360. .len = PAGE_SIZE,
  361. .prot = PROT_READ | PROT_WRITE,
  362. .flags = MAP_FIXED | MAP_SHARED,
  363. .fd = map_fd,
  364. .offset = map_offset
  365. } } });
  366. n = os_write_file(fd, &mmop, sizeof(mmop));
  367. if(n != sizeof(mmop))
  368. panic("map_stub_pages : /proc/mm map for data failed, "
  369. "err = %d\n", -n);
  370. }
  371. }
  372. void new_thread(void *stack, void **switch_buf_ptr, void **fork_buf_ptr,
  373. void (*handler)(int))
  374. {
  375. unsigned long flags;
  376. sigjmp_buf switch_buf, fork_buf;
  377. int enable;
  378. *switch_buf_ptr = &switch_buf;
  379. *fork_buf_ptr = &fork_buf;
  380. /* Somewhat subtle - siglongjmp restores the signal mask before doing
  381. * the longjmp. This means that when jumping from one stack to another
  382. * when the target stack has interrupts enabled, an interrupt may occur
  383. * on the source stack. This is bad when starting up a process because
  384. * it's not supposed to get timer ticks until it has been scheduled.
  385. * So, we disable interrupts around the sigsetjmp to ensure that
  386. * they can't happen until we get back here where they are safe.
  387. */
  388. flags = get_signals();
  389. block_signals();
  390. if(UML_SIGSETJMP(&fork_buf, enable) == 0)
  391. new_thread_proc(stack, handler);
  392. remove_sigstack();
  393. set_signals(flags);
  394. }
  395. void thread_wait(void *sw, void *fb)
  396. {
  397. sigjmp_buf buf, **switch_buf = sw, *fork_buf;
  398. int enable;
  399. *switch_buf = &buf;
  400. fork_buf = fb;
  401. if(UML_SIGSETJMP(&buf, enable) == 0)
  402. siglongjmp(*fork_buf, INIT_JMP_REMOVE_SIGSTACK);
  403. }
  404. void switch_threads(void *me, void *next)
  405. {
  406. sigjmp_buf my_buf, **me_ptr = me, *next_buf = next;
  407. int enable;
  408. *me_ptr = &my_buf;
  409. if(UML_SIGSETJMP(&my_buf, enable) == 0)
  410. UML_SIGLONGJMP(next_buf, 1);
  411. }
  412. static sigjmp_buf initial_jmpbuf;
  413. /* XXX Make these percpu */
  414. static void (*cb_proc)(void *arg);
  415. static void *cb_arg;
  416. static sigjmp_buf *cb_back;
  417. int start_idle_thread(void *stack, void *switch_buf_ptr, void **fork_buf_ptr)
  418. {
  419. sigjmp_buf **switch_buf = switch_buf_ptr;
  420. int n, enable;
  421. set_handler(SIGWINCH, (__sighandler_t) sig_handler,
  422. SA_ONSTACK | SA_RESTART, SIGUSR1, SIGIO, SIGALRM,
  423. SIGVTALRM, -1);
  424. *fork_buf_ptr = &initial_jmpbuf;
  425. n = UML_SIGSETJMP(&initial_jmpbuf, enable);
  426. switch(n){
  427. case INIT_JMP_NEW_THREAD:
  428. new_thread_proc((void *) stack, new_thread_handler);
  429. break;
  430. case INIT_JMP_REMOVE_SIGSTACK:
  431. remove_sigstack();
  432. break;
  433. case INIT_JMP_CALLBACK:
  434. (*cb_proc)(cb_arg);
  435. UML_SIGLONGJMP(cb_back, 1);
  436. break;
  437. case INIT_JMP_HALT:
  438. kmalloc_ok = 0;
  439. return(0);
  440. case INIT_JMP_REBOOT:
  441. kmalloc_ok = 0;
  442. return(1);
  443. default:
  444. panic("Bad sigsetjmp return in start_idle_thread - %d\n", n);
  445. }
  446. UML_SIGLONGJMP(*switch_buf, 1);
  447. }
  448. void initial_thread_cb_skas(void (*proc)(void *), void *arg)
  449. {
  450. sigjmp_buf here;
  451. int enable;
  452. cb_proc = proc;
  453. cb_arg = arg;
  454. cb_back = &here;
  455. block_signals();
  456. if(UML_SIGSETJMP(&here, enable) == 0)
  457. UML_SIGLONGJMP(&initial_jmpbuf, INIT_JMP_CALLBACK);
  458. unblock_signals();
  459. cb_proc = NULL;
  460. cb_arg = NULL;
  461. cb_back = NULL;
  462. }
  463. void halt_skas(void)
  464. {
  465. block_signals();
  466. UML_SIGLONGJMP(&initial_jmpbuf, INIT_JMP_HALT);
  467. }
  468. void reboot_skas(void)
  469. {
  470. block_signals();
  471. UML_SIGLONGJMP(&initial_jmpbuf, INIT_JMP_REBOOT);
  472. }
  473. void switch_mm_skas(struct mm_id *mm_idp)
  474. {
  475. int err;
  476. #warning need cpu pid in switch_mm_skas
  477. if(proc_mm){
  478. err = ptrace(PTRACE_SWITCH_MM, userspace_pid[0], 0,
  479. mm_idp->u.mm_fd);
  480. if(err)
  481. panic("switch_mm_skas - PTRACE_SWITCH_MM failed, "
  482. "errno = %d\n", errno);
  483. }
  484. else userspace_pid[0] = mm_idp->u.pid;
  485. }