shim_thread.h 7.8 KB

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  1. /* -*- mode:c; c-file-style:"k&r"; c-basic-offset: 4; tab-width:4; indent-tabs-mode:nil; mode:auto-fill; fill-column:78; -*- */
  2. /* vim: set ts=4 sw=4 et tw=78 fo=cqt wm=0: */
  3. #ifndef _SHIM_THREAD_H_
  4. #define _SHIM_THREAD_H_
  5. #include <shim_defs.h>
  6. #include <shim_internal.h>
  7. #include <shim_tls.h>
  8. #include <shim_utils.h>
  9. #include <shim_signal.h>
  10. #include <shim_handle.h>
  11. #include <shim_vma.h>
  12. #include <pal.h>
  13. #include <linux_list.h>
  14. struct shim_handle;
  15. struct shim_fd_map;
  16. struct shim_dentry;
  17. struct shim_signal_handle;
  18. struct shim_signal_log;
  19. struct shim_thread {
  20. /* thread identifiers */
  21. IDTYPE vmid;
  22. IDTYPE pgid, ppid, tgid, tid;
  23. bool in_vm;
  24. LEASETYPE tid_lease;
  25. /* credentials */
  26. IDTYPE uid, gid, euid, egid;
  27. /* thread pal handle */
  28. PAL_HANDLE pal_handle;
  29. /* parent handle */
  30. struct shim_thread * parent;
  31. /* thread leader */
  32. struct shim_thread * leader;
  33. /* dummy thread */
  34. struct shim_thread * dummy;
  35. /* child handles */
  36. struct list_head children;
  37. /* nodes in child handles */
  38. struct list_head siblings;
  39. /* nodes in global handles */
  40. struct list_head list;
  41. struct shim_handle_map * handle_map;
  42. /* child tid */
  43. int * set_child_tid, * clear_child_tid;
  44. /* signal handling */
  45. sigset_t signal_mask;
  46. struct shim_signal_handle signal_handles[NUM_SIGS];
  47. struct shim_atomic has_signal;
  48. struct shim_signal_log signal_logs[NUM_SIGS];
  49. /* futex robust list */
  50. void * robust_list;
  51. PAL_HANDLE scheduler_event;
  52. PAL_HANDLE exit_event;
  53. int exit_code;
  54. bool is_alive;
  55. PAL_HANDLE child_exit_event;
  56. struct list_head exited_children;
  57. /* file system */
  58. struct shim_dentry * root, * cwd;
  59. mode_t umask;
  60. /* executable */
  61. struct shim_handle * exec;
  62. void * stack, * stack_top, * stack_red;
  63. void * tcb;
  64. void * frameptr;
  65. REFTYPE ref_count;
  66. LOCKTYPE lock;
  67. };
  68. struct shim_simple_thread {
  69. /* VMID and PIDs */
  70. IDTYPE vmid;
  71. IDTYPE pgid, tgid, tid;
  72. /* exit event and status */
  73. PAL_HANDLE exit_event;
  74. int exit_code;
  75. bool is_alive;
  76. /* nodes in global handles */
  77. struct list_head list;
  78. REFTYPE ref_count;
  79. LOCKTYPE lock;
  80. };
  81. int init_thread (void);
  82. #define SHIM_THREAD_SELF() \
  83. ({ struct shim_thread * __self; \
  84. asm ("movq %%fs:%c1,%q0" : "=r" (__self) \
  85. : "i" (offsetof(__libc_tcb_t, shim_tcb.tp))); \
  86. __self; })
  87. #define SAVE_SHIM_THREAD_SELF(__self) \
  88. ({ asm ("movq %q0,%%fs:%c1" : : "r" (__self), \
  89. "i" (offsetof(__libc_tcb_t, shim_tcb.tp))); \
  90. __self; })
  91. void get_thread (struct shim_thread * thread);
  92. void put_thread (struct shim_thread * thread);
  93. void get_simple_thread (struct shim_simple_thread * thread);
  94. void put_simple_thread (struct shim_simple_thread * thread);
  95. void allocate_tls (void * tcb_location, struct shim_thread * thread);
  96. void populate_tls (void * tcb_location);
  97. void debug_setprefix (shim_tcb_t * tcb);
  98. static inline
  99. __attribute__((always_inline))
  100. void debug_setbuf (shim_tcb_t * tcb, bool on_stack)
  101. {
  102. if (!debug_handle)
  103. return;
  104. tcb->debug_buf = on_stack ? __alloca(sizeof(struct debug_buf)) :
  105. malloc(sizeof(struct debug_buf));
  106. debug_setprefix(tcb);
  107. }
  108. static inline
  109. __attribute__((always_inline))
  110. struct shim_thread * get_cur_thread (void)
  111. {
  112. return SHIM_THREAD_SELF();
  113. }
  114. static inline
  115. __attribute__((always_inline))
  116. void set_cur_thread (struct shim_thread * thread)
  117. {
  118. shim_tcb_t * tcb = SHIM_GET_TLS();
  119. IDTYPE tid = 0;
  120. #ifndef container_of
  121. # define container_of(ptr, type, member) ({ \
  122. const typeof( ((type *)0)->member ) *__mptr = (ptr); \
  123. (type *)( (char *)__mptr - offsetof(type,member) );})
  124. #endif
  125. if (tcb->tp)
  126. put_thread(tcb->tp);
  127. tcb->tp = thread;
  128. if (thread) {
  129. thread->tcb = container_of(tcb, __libc_tcb_t, shim_tcb);
  130. tid = thread->tid;
  131. }
  132. if (tcb->tid != tid) {
  133. tcb->tid = tid;
  134. debug_setprefix(tcb);
  135. }
  136. }
  137. static inline void thread_setwait (struct shim_thread ** queue,
  138. struct shim_thread * thread)
  139. {
  140. if (!thread)
  141. thread = get_cur_thread();
  142. get_thread(thread);
  143. DkEventClear(thread->scheduler_event);
  144. *queue = thread;
  145. }
  146. static inline void thread_sleep (void)
  147. {
  148. struct shim_thread * cur_thread = get_cur_thread();
  149. if (!cur_thread)
  150. return;
  151. PAL_HANDLE event = cur_thread->scheduler_event;
  152. if (!event)
  153. return;
  154. DkObjectsWaitAny(1, &event, NO_TIMEOUT);
  155. }
  156. static inline void thread_wakeup (struct shim_thread * thread)
  157. {
  158. DkEventSet(thread->scheduler_event);
  159. }
  160. extern LOCKTYPE thread_list_lock;
  161. struct shim_thread * __lookup_thread (IDTYPE tid);
  162. struct shim_thread * lookup_thread (IDTYPE tid);
  163. struct shim_simple_thread * __lookup_simple_thread (IDTYPE tid);
  164. struct shim_simple_thread * lookup_simple_thread (IDTYPE tid);
  165. void set_as_child (struct shim_thread * parent, struct shim_thread * child);
  166. /* creating and revoking thread objects */
  167. struct shim_thread * get_new_thread (IDTYPE new_tid);
  168. struct shim_thread * get_new_internal_thread (void);
  169. struct shim_simple_thread * get_new_simple_thread (void);
  170. /* thread list utilities */
  171. void add_thread (struct shim_thread * thread);
  172. void del_thread (struct shim_thread * thread);
  173. void add_simple_thread (struct shim_simple_thread * thread);
  174. void del_simple_thread (struct shim_simple_thread * thread);
  175. int check_last_thread (struct shim_thread * self);
  176. void switch_dummy_thread (struct shim_thread * thread);
  177. int walk_thread_list (int (*callback) (struct shim_thread *, void *, bool *),
  178. void * arg, bool may_write);
  179. int walk_simple_thread_list (int (*callback) (struct shim_simple_thread *,
  180. void *, bool *),
  181. void * arg, bool may_write);
  182. /* reference counting of handle maps */
  183. void get_handle_map (struct shim_handle_map * map);
  184. void put_handle_map (struct shim_handle_map * map);
  185. /* retriving handle mapping */
  186. static inline __attribute__((always_inline))
  187. struct shim_handle_map * get_cur_handle_map (struct shim_thread * thread)
  188. {
  189. if (!thread)
  190. thread = get_cur_thread();
  191. return thread ? thread->handle_map : NULL;
  192. }
  193. static inline __attribute__((always_inline))
  194. void set_handle_map (struct shim_thread * thread,
  195. struct shim_handle_map * map)
  196. {
  197. get_handle_map(map);
  198. if (!thread)
  199. thread = get_cur_thread();
  200. if (thread->handle_map)
  201. put_handle_map(thread->handle_map);
  202. thread->handle_map = map;
  203. }
  204. /* shim exit callback */
  205. int thread_exit (struct shim_thread * self, bool send_ipc);
  206. int try_process_exit (int error_code);
  207. void * allocate_stack (size_t size, size_t protect_size, bool user);
  208. int populate_user_stack (void * stack, size_t stack_size,
  209. int nauxv, elf_auxv_t ** auxpp,
  210. const char *** argvp, const char *** envpp);
  211. static inline __attribute__((always_inline))
  212. bool check_stack_size (struct shim_thread * cur_thread, int size)
  213. {
  214. if (!cur_thread)
  215. cur_thread = get_cur_thread();
  216. void * rsp;
  217. asm volatile ("movq %%rsp, %0" : "=r"(rsp) :: "memory");
  218. if (rsp <= cur_thread->stack_top && rsp > cur_thread->stack)
  219. return size < rsp - cur_thread->stack;
  220. return false;
  221. }
  222. static inline __attribute__((always_inline))
  223. bool check_on_stack (struct shim_thread * cur_thread, void * mem)
  224. {
  225. if (!cur_thread)
  226. cur_thread = get_cur_thread();
  227. return (mem <= cur_thread->stack_top && mem > cur_thread->stack);
  228. }
  229. int init_stack (const char ** argv, const char ** envp, const char *** argpp,
  230. int nauxv, elf_auxv_t ** auxpp);
  231. #endif /* _SHIM_THREAD_H_ */