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signal.c 11 KB

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  1. /*
  2. * Emulation of Linux signals
  3. *
  4. * Copyright (c) 2003 Fabrice Bellard
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License as published by
  8. * the Free Software Foundation; either version 2 of the License, or
  9. * (at your option) any later version.
  10. *
  11. * This program is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  14. * GNU General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU General Public License
  17. * along with this program; if not, see <http://www.gnu.org/licenses/>.
  18. */
  19. #include "qemu/osdep.h"
  20. #include "qemu.h"
  21. #include "user-internals.h"
  22. #include "signal-common.h"
  23. #include "linux-user/trace.h"
  24. struct target_sigcontext {
  25. abi_ulong sc_mask;
  26. abi_ulong sc_usp;
  27. abi_ulong sc_d0;
  28. abi_ulong sc_d1;
  29. abi_ulong sc_a0;
  30. abi_ulong sc_a1;
  31. unsigned short sc_sr;
  32. abi_ulong sc_pc;
  33. };
  34. struct target_sigframe
  35. {
  36. abi_ulong pretcode;
  37. int sig;
  38. int code;
  39. abi_ulong psc;
  40. abi_ulong extramask[TARGET_NSIG_WORDS-1];
  41. struct target_sigcontext sc;
  42. };
  43. typedef int target_greg_t;
  44. #define TARGET_NGREG 18
  45. typedef target_greg_t target_gregset_t[TARGET_NGREG];
  46. typedef struct target_fpregset {
  47. int f_fpcntl[3];
  48. int f_fpregs[8*3];
  49. } target_fpregset_t;
  50. struct target_mcontext {
  51. int version;
  52. target_gregset_t gregs;
  53. target_fpregset_t fpregs;
  54. };
  55. #define TARGET_MCONTEXT_VERSION 2
  56. struct target_ucontext {
  57. abi_ulong tuc_flags;
  58. abi_ulong tuc_link;
  59. target_stack_t tuc_stack;
  60. struct target_mcontext tuc_mcontext;
  61. abi_long tuc_filler[80];
  62. target_sigset_t tuc_sigmask;
  63. };
  64. struct target_rt_sigframe
  65. {
  66. abi_ulong pretcode;
  67. int sig;
  68. abi_ulong pinfo;
  69. abi_ulong puc;
  70. struct target_siginfo info;
  71. struct target_ucontext uc;
  72. };
  73. static void setup_sigcontext(struct target_sigcontext *sc, CPUM68KState *env,
  74. abi_ulong mask)
  75. {
  76. uint32_t sr = (env->sr & 0xff00) | cpu_m68k_get_ccr(env);
  77. __put_user(mask, &sc->sc_mask);
  78. __put_user(env->aregs[7], &sc->sc_usp);
  79. __put_user(env->dregs[0], &sc->sc_d0);
  80. __put_user(env->dregs[1], &sc->sc_d1);
  81. __put_user(env->aregs[0], &sc->sc_a0);
  82. __put_user(env->aregs[1], &sc->sc_a1);
  83. __put_user(sr, &sc->sc_sr);
  84. __put_user(env->pc, &sc->sc_pc);
  85. }
  86. static void
  87. restore_sigcontext(CPUM68KState *env, struct target_sigcontext *sc)
  88. {
  89. int temp;
  90. __get_user(env->aregs[7], &sc->sc_usp);
  91. __get_user(env->dregs[0], &sc->sc_d0);
  92. __get_user(env->dregs[1], &sc->sc_d1);
  93. __get_user(env->aregs[0], &sc->sc_a0);
  94. __get_user(env->aregs[1], &sc->sc_a1);
  95. __get_user(env->pc, &sc->sc_pc);
  96. __get_user(temp, &sc->sc_sr);
  97. cpu_m68k_set_ccr(env, temp);
  98. }
  99. /*
  100. * Determine which stack to use..
  101. */
  102. static inline abi_ulong
  103. get_sigframe(struct target_sigaction *ka, CPUM68KState *regs,
  104. size_t frame_size)
  105. {
  106. abi_ulong sp;
  107. sp = target_sigsp(get_sp_from_cpustate(regs), ka);
  108. return ((sp - frame_size) & -8UL);
  109. }
  110. void setup_frame(int sig, struct target_sigaction *ka,
  111. target_sigset_t *set, CPUM68KState *env)
  112. {
  113. struct target_sigframe *frame;
  114. abi_ulong frame_addr;
  115. abi_ulong sc_addr;
  116. int i;
  117. frame_addr = get_sigframe(ka, env, sizeof *frame);
  118. trace_user_setup_frame(env, frame_addr);
  119. if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 0)) {
  120. goto give_sigsegv;
  121. }
  122. __put_user(sig, &frame->sig);
  123. sc_addr = frame_addr + offsetof(struct target_sigframe, sc);
  124. __put_user(sc_addr, &frame->psc);
  125. setup_sigcontext(&frame->sc, env, set->sig[0]);
  126. for(i = 1; i < TARGET_NSIG_WORDS; i++) {
  127. __put_user(set->sig[i], &frame->extramask[i - 1]);
  128. }
  129. /* Set up to return from userspace. */
  130. __put_user(default_sigreturn, &frame->pretcode);
  131. env->aregs[7] = frame_addr;
  132. env->pc = ka->_sa_handler;
  133. unlock_user_struct(frame, frame_addr, 1);
  134. return;
  135. give_sigsegv:
  136. force_sigsegv(sig);
  137. }
  138. static inline void target_rt_save_fpu_state(struct target_ucontext *uc,
  139. CPUM68KState *env)
  140. {
  141. int i;
  142. target_fpregset_t *fpregs = &uc->tuc_mcontext.fpregs;
  143. __put_user(env->fpcr, &fpregs->f_fpcntl[0]);
  144. __put_user(env->fpsr, &fpregs->f_fpcntl[1]);
  145. /* fpiar is not emulated */
  146. for (i = 0; i < 8; i++) {
  147. uint32_t high = env->fregs[i].d.high << 16;
  148. __put_user(high, &fpregs->f_fpregs[i * 3]);
  149. __put_user(env->fregs[i].d.low,
  150. (uint64_t *)&fpregs->f_fpregs[i * 3 + 1]);
  151. }
  152. }
  153. static inline int target_rt_setup_ucontext(struct target_ucontext *uc,
  154. CPUM68KState *env)
  155. {
  156. target_greg_t *gregs = uc->tuc_mcontext.gregs;
  157. uint32_t sr = (env->sr & 0xff00) | cpu_m68k_get_ccr(env);
  158. __put_user(TARGET_MCONTEXT_VERSION, &uc->tuc_mcontext.version);
  159. __put_user(env->dregs[0], &gregs[0]);
  160. __put_user(env->dregs[1], &gregs[1]);
  161. __put_user(env->dregs[2], &gregs[2]);
  162. __put_user(env->dregs[3], &gregs[3]);
  163. __put_user(env->dregs[4], &gregs[4]);
  164. __put_user(env->dregs[5], &gregs[5]);
  165. __put_user(env->dregs[6], &gregs[6]);
  166. __put_user(env->dregs[7], &gregs[7]);
  167. __put_user(env->aregs[0], &gregs[8]);
  168. __put_user(env->aregs[1], &gregs[9]);
  169. __put_user(env->aregs[2], &gregs[10]);
  170. __put_user(env->aregs[3], &gregs[11]);
  171. __put_user(env->aregs[4], &gregs[12]);
  172. __put_user(env->aregs[5], &gregs[13]);
  173. __put_user(env->aregs[6], &gregs[14]);
  174. __put_user(env->aregs[7], &gregs[15]);
  175. __put_user(env->pc, &gregs[16]);
  176. __put_user(sr, &gregs[17]);
  177. target_rt_save_fpu_state(uc, env);
  178. return 0;
  179. }
  180. static inline void target_rt_restore_fpu_state(CPUM68KState *env,
  181. struct target_ucontext *uc)
  182. {
  183. int i;
  184. target_fpregset_t *fpregs = &uc->tuc_mcontext.fpregs;
  185. uint32_t fpcr;
  186. __get_user(fpcr, &fpregs->f_fpcntl[0]);
  187. cpu_m68k_set_fpcr(env, fpcr);
  188. __get_user(env->fpsr, &fpregs->f_fpcntl[1]);
  189. /* fpiar is not emulated */
  190. for (i = 0; i < 8; i++) {
  191. uint32_t high;
  192. __get_user(high, &fpregs->f_fpregs[i * 3]);
  193. env->fregs[i].d.high = high >> 16;
  194. __get_user(env->fregs[i].d.low,
  195. (uint64_t *)&fpregs->f_fpregs[i * 3 + 1]);
  196. }
  197. }
  198. static inline int target_rt_restore_ucontext(CPUM68KState *env,
  199. struct target_ucontext *uc)
  200. {
  201. int temp;
  202. target_greg_t *gregs = uc->tuc_mcontext.gregs;
  203. __get_user(temp, &uc->tuc_mcontext.version);
  204. if (temp != TARGET_MCONTEXT_VERSION)
  205. goto badframe;
  206. /* restore passed registers */
  207. __get_user(env->dregs[0], &gregs[0]);
  208. __get_user(env->dregs[1], &gregs[1]);
  209. __get_user(env->dregs[2], &gregs[2]);
  210. __get_user(env->dregs[3], &gregs[3]);
  211. __get_user(env->dregs[4], &gregs[4]);
  212. __get_user(env->dregs[5], &gregs[5]);
  213. __get_user(env->dregs[6], &gregs[6]);
  214. __get_user(env->dregs[7], &gregs[7]);
  215. __get_user(env->aregs[0], &gregs[8]);
  216. __get_user(env->aregs[1], &gregs[9]);
  217. __get_user(env->aregs[2], &gregs[10]);
  218. __get_user(env->aregs[3], &gregs[11]);
  219. __get_user(env->aregs[4], &gregs[12]);
  220. __get_user(env->aregs[5], &gregs[13]);
  221. __get_user(env->aregs[6], &gregs[14]);
  222. __get_user(env->aregs[7], &gregs[15]);
  223. __get_user(env->pc, &gregs[16]);
  224. __get_user(temp, &gregs[17]);
  225. cpu_m68k_set_ccr(env, temp);
  226. target_rt_restore_fpu_state(env, uc);
  227. return 0;
  228. badframe:
  229. return 1;
  230. }
  231. void setup_rt_frame(int sig, struct target_sigaction *ka,
  232. target_siginfo_t *info,
  233. target_sigset_t *set, CPUM68KState *env)
  234. {
  235. struct target_rt_sigframe *frame;
  236. abi_ulong frame_addr;
  237. abi_ulong info_addr;
  238. abi_ulong uc_addr;
  239. int err = 0;
  240. int i;
  241. frame_addr = get_sigframe(ka, env, sizeof *frame);
  242. trace_user_setup_rt_frame(env, frame_addr);
  243. if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 0)) {
  244. goto give_sigsegv;
  245. }
  246. __put_user(sig, &frame->sig);
  247. info_addr = frame_addr + offsetof(struct target_rt_sigframe, info);
  248. __put_user(info_addr, &frame->pinfo);
  249. uc_addr = frame_addr + offsetof(struct target_rt_sigframe, uc);
  250. __put_user(uc_addr, &frame->puc);
  251. tswap_siginfo(&frame->info, info);
  252. /* Create the ucontext */
  253. __put_user(0, &frame->uc.tuc_flags);
  254. __put_user(0, &frame->uc.tuc_link);
  255. target_save_altstack(&frame->uc.tuc_stack, env);
  256. err |= target_rt_setup_ucontext(&frame->uc, env);
  257. if (err)
  258. goto give_sigsegv;
  259. for(i = 0; i < TARGET_NSIG_WORDS; i++) {
  260. __put_user(set->sig[i], &frame->uc.tuc_sigmask.sig[i]);
  261. }
  262. /* Set up to return from userspace. */
  263. __put_user(default_rt_sigreturn, &frame->pretcode);
  264. env->aregs[7] = frame_addr;
  265. env->pc = ka->_sa_handler;
  266. unlock_user_struct(frame, frame_addr, 1);
  267. return;
  268. give_sigsegv:
  269. unlock_user_struct(frame, frame_addr, 1);
  270. force_sigsegv(sig);
  271. }
  272. long do_sigreturn(CPUM68KState *env)
  273. {
  274. struct target_sigframe *frame;
  275. abi_ulong frame_addr = env->aregs[7] - 4;
  276. target_sigset_t target_set;
  277. sigset_t set;
  278. int i;
  279. trace_user_do_sigreturn(env, frame_addr);
  280. if (!lock_user_struct(VERIFY_READ, frame, frame_addr, 1))
  281. goto badframe;
  282. /* set blocked signals */
  283. __get_user(target_set.sig[0], &frame->sc.sc_mask);
  284. for(i = 1; i < TARGET_NSIG_WORDS; i++) {
  285. __get_user(target_set.sig[i], &frame->extramask[i - 1]);
  286. }
  287. target_to_host_sigset_internal(&set, &target_set);
  288. set_sigmask(&set);
  289. /* restore registers */
  290. restore_sigcontext(env, &frame->sc);
  291. unlock_user_struct(frame, frame_addr, 0);
  292. return -QEMU_ESIGRETURN;
  293. badframe:
  294. force_sig(TARGET_SIGSEGV);
  295. return -QEMU_ESIGRETURN;
  296. }
  297. long do_rt_sigreturn(CPUM68KState *env)
  298. {
  299. struct target_rt_sigframe *frame;
  300. abi_ulong frame_addr = env->aregs[7] - 4;
  301. sigset_t set;
  302. trace_user_do_rt_sigreturn(env, frame_addr);
  303. if (!lock_user_struct(VERIFY_READ, frame, frame_addr, 1))
  304. goto badframe;
  305. target_to_host_sigset(&set, &frame->uc.tuc_sigmask);
  306. set_sigmask(&set);
  307. /* restore registers */
  308. if (target_rt_restore_ucontext(env, &frame->uc))
  309. goto badframe;
  310. target_restore_altstack(&frame->uc.tuc_stack, env);
  311. unlock_user_struct(frame, frame_addr, 0);
  312. return -QEMU_ESIGRETURN;
  313. badframe:
  314. unlock_user_struct(frame, frame_addr, 0);
  315. force_sig(TARGET_SIGSEGV);
  316. return -QEMU_ESIGRETURN;
  317. }
  318. void setup_sigtramp(abi_ulong sigtramp_page)
  319. {
  320. void *tramp = lock_user(VERIFY_WRITE, sigtramp_page, 4 + 6, 0);
  321. assert(tramp != NULL);
  322. default_sigreturn = sigtramp_page;
  323. /* moveq #,d0; trap #0 */
  324. __put_user(0x70004e40 + (TARGET_NR_sigreturn << 16), (uint32_t *)tramp);
  325. default_rt_sigreturn = sigtramp_page + 4;
  326. /* moveq #,d0; notb d0; trap #0 */
  327. __put_user(0x70004600 + ((TARGET_NR_rt_sigreturn ^ 0xff) << 16),
  328. (uint32_t *)(tramp + 4));
  329. __put_user(0x4e40, (uint16_t *)(tramp + 8));
  330. unlock_user(tramp, sigtramp_page, 4 + 6);
  331. }