process_32.c 13 KB

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  1. /* linux/arch/sparc/kernel/process.c
  2. *
  3. * Copyright (C) 1995, 2008 David S. Miller (davem@davemloft.net)
  4. * Copyright (C) 1996 Eddie C. Dost (ecd@skynet.be)
  5. */
  6. /*
  7. * This file handles the architecture-dependent parts of process handling..
  8. */
  9. #include <stdarg.h>
  10. #include <linux/errno.h>
  11. #include <linux/module.h>
  12. #include <linux/sched.h>
  13. #include <linux/kernel.h>
  14. #include <linux/mm.h>
  15. #include <linux/stddef.h>
  16. #include <linux/ptrace.h>
  17. #include <linux/user.h>
  18. #include <linux/smp.h>
  19. #include <linux/reboot.h>
  20. #include <linux/delay.h>
  21. #include <linux/pm.h>
  22. #include <linux/init.h>
  23. #include <linux/slab.h>
  24. #include <asm/auxio.h>
  25. #include <asm/oplib.h>
  26. #include <asm/uaccess.h>
  27. #include <asm/page.h>
  28. #include <asm/pgalloc.h>
  29. #include <asm/pgtable.h>
  30. #include <asm/delay.h>
  31. #include <asm/processor.h>
  32. #include <asm/psr.h>
  33. #include <asm/elf.h>
  34. #include <asm/prom.h>
  35. #include <asm/unistd.h>
  36. #include <asm/setup.h>
  37. /*
  38. * Power management idle function
  39. * Set in pm platform drivers (apc.c and pmc.c)
  40. */
  41. void (*sparc_idle)(void);
  42. /*
  43. * Power-off handler instantiation for pm.h compliance
  44. * This is done via auxio, but could be used as a fallback
  45. * handler when auxio is not present-- unused for now...
  46. */
  47. void (*pm_power_off)(void) = machine_power_off;
  48. EXPORT_SYMBOL(pm_power_off);
  49. /*
  50. * sysctl - toggle power-off restriction for serial console
  51. * systems in machine_power_off()
  52. */
  53. int scons_pwroff = 1;
  54. extern void fpsave(unsigned long *, unsigned long *, void *, unsigned long *);
  55. struct task_struct *last_task_used_math = NULL;
  56. struct thread_info *current_set[NR_CPUS];
  57. /* Idle loop support. */
  58. void arch_cpu_idle(void)
  59. {
  60. if (sparc_idle)
  61. (*sparc_idle)();
  62. local_irq_enable();
  63. }
  64. /* XXX cli/sti -> local_irq_xxx here, check this works once SMP is fixed. */
  65. void machine_halt(void)
  66. {
  67. local_irq_enable();
  68. mdelay(8);
  69. local_irq_disable();
  70. prom_halt();
  71. panic("Halt failed!");
  72. }
  73. void machine_restart(char * cmd)
  74. {
  75. char *p;
  76. local_irq_enable();
  77. mdelay(8);
  78. local_irq_disable();
  79. p = strchr (reboot_command, '\n');
  80. if (p) *p = 0;
  81. if (cmd)
  82. prom_reboot(cmd);
  83. if (*reboot_command)
  84. prom_reboot(reboot_command);
  85. prom_feval ("reset");
  86. panic("Reboot failed!");
  87. }
  88. void machine_power_off(void)
  89. {
  90. if (auxio_power_register &&
  91. (strcmp(of_console_device->type, "serial") || scons_pwroff))
  92. *auxio_power_register |= AUXIO_POWER_OFF;
  93. machine_halt();
  94. }
  95. void show_regs(struct pt_regs *r)
  96. {
  97. struct reg_window32 *rw = (struct reg_window32 *) r->u_regs[14];
  98. printk("PSR: %08lx PC: %08lx NPC: %08lx Y: %08lx %s\n",
  99. r->psr, r->pc, r->npc, r->y, print_tainted());
  100. printk("PC: <%pS>\n", (void *) r->pc);
  101. printk("%%G: %08lx %08lx %08lx %08lx %08lx %08lx %08lx %08lx\n",
  102. r->u_regs[0], r->u_regs[1], r->u_regs[2], r->u_regs[3],
  103. r->u_regs[4], r->u_regs[5], r->u_regs[6], r->u_regs[7]);
  104. printk("%%O: %08lx %08lx %08lx %08lx %08lx %08lx %08lx %08lx\n",
  105. r->u_regs[8], r->u_regs[9], r->u_regs[10], r->u_regs[11],
  106. r->u_regs[12], r->u_regs[13], r->u_regs[14], r->u_regs[15]);
  107. printk("RPC: <%pS>\n", (void *) r->u_regs[15]);
  108. printk("%%L: %08lx %08lx %08lx %08lx %08lx %08lx %08lx %08lx\n",
  109. rw->locals[0], rw->locals[1], rw->locals[2], rw->locals[3],
  110. rw->locals[4], rw->locals[5], rw->locals[6], rw->locals[7]);
  111. printk("%%I: %08lx %08lx %08lx %08lx %08lx %08lx %08lx %08lx\n",
  112. rw->ins[0], rw->ins[1], rw->ins[2], rw->ins[3],
  113. rw->ins[4], rw->ins[5], rw->ins[6], rw->ins[7]);
  114. }
  115. /*
  116. * The show_stack is an external API which we do not use ourselves.
  117. * The oops is printed in die_if_kernel.
  118. */
  119. void show_stack(struct task_struct *tsk, unsigned long *_ksp)
  120. {
  121. unsigned long pc, fp;
  122. unsigned long task_base;
  123. struct reg_window32 *rw;
  124. int count = 0;
  125. if (!tsk)
  126. tsk = current;
  127. if (tsk == current && !_ksp)
  128. __asm__ __volatile__("mov %%fp, %0" : "=r" (_ksp));
  129. task_base = (unsigned long) task_stack_page(tsk);
  130. fp = (unsigned long) _ksp;
  131. do {
  132. /* Bogus frame pointer? */
  133. if (fp < (task_base + sizeof(struct thread_info)) ||
  134. fp >= (task_base + (PAGE_SIZE << 1)))
  135. break;
  136. rw = (struct reg_window32 *) fp;
  137. pc = rw->ins[7];
  138. printk("[%08lx : ", pc);
  139. printk("%pS ] ", (void *) pc);
  140. fp = rw->ins[6];
  141. } while (++count < 16);
  142. printk("\n");
  143. }
  144. void dump_stack(void)
  145. {
  146. show_stack(current, NULL);
  147. }
  148. EXPORT_SYMBOL(dump_stack);
  149. /*
  150. * Note: sparc64 has a pretty intricated thread_saved_pc, check it out.
  151. */
  152. unsigned long thread_saved_pc(struct task_struct *tsk)
  153. {
  154. return task_thread_info(tsk)->kpc;
  155. }
  156. /*
  157. * Free current thread data structures etc..
  158. */
  159. void exit_thread(void)
  160. {
  161. #ifndef CONFIG_SMP
  162. if(last_task_used_math == current) {
  163. #else
  164. if (test_thread_flag(TIF_USEDFPU)) {
  165. #endif
  166. /* Keep process from leaving FPU in a bogon state. */
  167. put_psr(get_psr() | PSR_EF);
  168. fpsave(&current->thread.float_regs[0], &current->thread.fsr,
  169. &current->thread.fpqueue[0], &current->thread.fpqdepth);
  170. #ifndef CONFIG_SMP
  171. last_task_used_math = NULL;
  172. #else
  173. clear_thread_flag(TIF_USEDFPU);
  174. #endif
  175. }
  176. }
  177. void flush_thread(void)
  178. {
  179. current_thread_info()->w_saved = 0;
  180. #ifndef CONFIG_SMP
  181. if(last_task_used_math == current) {
  182. #else
  183. if (test_thread_flag(TIF_USEDFPU)) {
  184. #endif
  185. /* Clean the fpu. */
  186. put_psr(get_psr() | PSR_EF);
  187. fpsave(&current->thread.float_regs[0], &current->thread.fsr,
  188. &current->thread.fpqueue[0], &current->thread.fpqdepth);
  189. #ifndef CONFIG_SMP
  190. last_task_used_math = NULL;
  191. #else
  192. clear_thread_flag(TIF_USEDFPU);
  193. #endif
  194. }
  195. /* This task is no longer a kernel thread. */
  196. if (current->thread.flags & SPARC_FLAG_KTHREAD) {
  197. current->thread.flags &= ~SPARC_FLAG_KTHREAD;
  198. /* We must fixup kregs as well. */
  199. /* XXX This was not fixed for ti for a while, worked. Unused? */
  200. current->thread.kregs = (struct pt_regs *)
  201. (task_stack_page(current) + (THREAD_SIZE - TRACEREG_SZ));
  202. }
  203. }
  204. static inline struct sparc_stackf __user *
  205. clone_stackframe(struct sparc_stackf __user *dst,
  206. struct sparc_stackf __user *src)
  207. {
  208. unsigned long size, fp;
  209. struct sparc_stackf *tmp;
  210. struct sparc_stackf __user *sp;
  211. if (get_user(tmp, &src->fp))
  212. return NULL;
  213. fp = (unsigned long) tmp;
  214. size = (fp - ((unsigned long) src));
  215. fp = (unsigned long) dst;
  216. sp = (struct sparc_stackf __user *)(fp - size);
  217. /* do_fork() grabs the parent semaphore, we must release it
  218. * temporarily so we can build the child clone stack frame
  219. * without deadlocking.
  220. */
  221. if (__copy_user(sp, src, size))
  222. sp = NULL;
  223. else if (put_user(fp, &sp->fp))
  224. sp = NULL;
  225. return sp;
  226. }
  227. asmlinkage int sparc_do_fork(unsigned long clone_flags,
  228. unsigned long stack_start,
  229. struct pt_regs *regs,
  230. unsigned long stack_size)
  231. {
  232. unsigned long parent_tid_ptr, child_tid_ptr;
  233. unsigned long orig_i1 = regs->u_regs[UREG_I1];
  234. long ret;
  235. parent_tid_ptr = regs->u_regs[UREG_I2];
  236. child_tid_ptr = regs->u_regs[UREG_I4];
  237. ret = do_fork(clone_flags, stack_start, stack_size,
  238. (int __user *) parent_tid_ptr,
  239. (int __user *) child_tid_ptr);
  240. /* If we get an error and potentially restart the system
  241. * call, we're screwed because copy_thread() clobbered
  242. * the parent's %o1. So detect that case and restore it
  243. * here.
  244. */
  245. if ((unsigned long)ret >= -ERESTART_RESTARTBLOCK)
  246. regs->u_regs[UREG_I1] = orig_i1;
  247. return ret;
  248. }
  249. /* Copy a Sparc thread. The fork() return value conventions
  250. * under SunOS are nothing short of bletcherous:
  251. * Parent --> %o0 == childs pid, %o1 == 0
  252. * Child --> %o0 == parents pid, %o1 == 1
  253. *
  254. * NOTE: We have a separate fork kpsr/kwim because
  255. * the parent could change these values between
  256. * sys_fork invocation and when we reach here
  257. * if the parent should sleep while trying to
  258. * allocate the task_struct and kernel stack in
  259. * do_fork().
  260. * XXX See comment above sys_vfork in sparc64. todo.
  261. */
  262. extern void ret_from_fork(void);
  263. extern void ret_from_kernel_thread(void);
  264. int copy_thread(unsigned long clone_flags, unsigned long sp,
  265. unsigned long arg, struct task_struct *p)
  266. {
  267. struct thread_info *ti = task_thread_info(p);
  268. struct pt_regs *childregs, *regs = current_pt_regs();
  269. char *new_stack;
  270. #ifndef CONFIG_SMP
  271. if(last_task_used_math == current) {
  272. #else
  273. if (test_thread_flag(TIF_USEDFPU)) {
  274. #endif
  275. put_psr(get_psr() | PSR_EF);
  276. fpsave(&p->thread.float_regs[0], &p->thread.fsr,
  277. &p->thread.fpqueue[0], &p->thread.fpqdepth);
  278. }
  279. /*
  280. * p->thread_info new_stack childregs stack bottom
  281. * ! ! ! !
  282. * V V (stk.fr.) V (pt_regs) V
  283. * +----- - - - - - ------+===========+=============+
  284. */
  285. new_stack = task_stack_page(p) + THREAD_SIZE;
  286. new_stack -= STACKFRAME_SZ + TRACEREG_SZ;
  287. childregs = (struct pt_regs *) (new_stack + STACKFRAME_SZ);
  288. /*
  289. * A new process must start with interrupts closed in 2.5,
  290. * because this is how Mingo's scheduler works (see schedule_tail
  291. * and finish_arch_switch). If we do not do it, a timer interrupt hits
  292. * before we unlock, attempts to re-take the rq->lock, and then we die.
  293. * Thus, kpsr|=PSR_PIL.
  294. */
  295. ti->ksp = (unsigned long) new_stack;
  296. p->thread.kregs = childregs;
  297. if (unlikely(p->flags & PF_KTHREAD)) {
  298. extern int nwindows;
  299. unsigned long psr;
  300. memset(new_stack, 0, STACKFRAME_SZ + TRACEREG_SZ);
  301. p->thread.flags |= SPARC_FLAG_KTHREAD;
  302. p->thread.current_ds = KERNEL_DS;
  303. ti->kpc = (((unsigned long) ret_from_kernel_thread) - 0x8);
  304. childregs->u_regs[UREG_G1] = sp; /* function */
  305. childregs->u_regs[UREG_G2] = arg;
  306. psr = childregs->psr = get_psr();
  307. ti->kpsr = psr | PSR_PIL;
  308. ti->kwim = 1 << (((psr & PSR_CWP) + 1) % nwindows);
  309. return 0;
  310. }
  311. memcpy(new_stack, (char *)regs - STACKFRAME_SZ, STACKFRAME_SZ + TRACEREG_SZ);
  312. childregs->u_regs[UREG_FP] = sp;
  313. p->thread.flags &= ~SPARC_FLAG_KTHREAD;
  314. p->thread.current_ds = USER_DS;
  315. ti->kpc = (((unsigned long) ret_from_fork) - 0x8);
  316. ti->kpsr = current->thread.fork_kpsr | PSR_PIL;
  317. ti->kwim = current->thread.fork_kwim;
  318. if (sp != regs->u_regs[UREG_FP]) {
  319. struct sparc_stackf __user *childstack;
  320. struct sparc_stackf __user *parentstack;
  321. /*
  322. * This is a clone() call with supplied user stack.
  323. * Set some valid stack frames to give to the child.
  324. */
  325. childstack = (struct sparc_stackf __user *)
  326. (sp & ~0xfUL);
  327. parentstack = (struct sparc_stackf __user *)
  328. regs->u_regs[UREG_FP];
  329. #if 0
  330. printk("clone: parent stack:\n");
  331. show_stackframe(parentstack);
  332. #endif
  333. childstack = clone_stackframe(childstack, parentstack);
  334. if (!childstack)
  335. return -EFAULT;
  336. #if 0
  337. printk("clone: child stack:\n");
  338. show_stackframe(childstack);
  339. #endif
  340. childregs->u_regs[UREG_FP] = (unsigned long)childstack;
  341. }
  342. #ifdef CONFIG_SMP
  343. /* FPU must be disabled on SMP. */
  344. childregs->psr &= ~PSR_EF;
  345. clear_tsk_thread_flag(p, TIF_USEDFPU);
  346. #endif
  347. /* Set the return value for the child. */
  348. childregs->u_regs[UREG_I0] = current->pid;
  349. childregs->u_regs[UREG_I1] = 1;
  350. /* Set the return value for the parent. */
  351. regs->u_regs[UREG_I1] = 0;
  352. if (clone_flags & CLONE_SETTLS)
  353. childregs->u_regs[UREG_G7] = regs->u_regs[UREG_I3];
  354. return 0;
  355. }
  356. /*
  357. * fill in the fpu structure for a core dump.
  358. */
  359. int dump_fpu (struct pt_regs * regs, elf_fpregset_t * fpregs)
  360. {
  361. if (used_math()) {
  362. memset(fpregs, 0, sizeof(*fpregs));
  363. fpregs->pr_q_entrysize = 8;
  364. return 1;
  365. }
  366. #ifdef CONFIG_SMP
  367. if (test_thread_flag(TIF_USEDFPU)) {
  368. put_psr(get_psr() | PSR_EF);
  369. fpsave(&current->thread.float_regs[0], &current->thread.fsr,
  370. &current->thread.fpqueue[0], &current->thread.fpqdepth);
  371. if (regs != NULL) {
  372. regs->psr &= ~(PSR_EF);
  373. clear_thread_flag(TIF_USEDFPU);
  374. }
  375. }
  376. #else
  377. if (current == last_task_used_math) {
  378. put_psr(get_psr() | PSR_EF);
  379. fpsave(&current->thread.float_regs[0], &current->thread.fsr,
  380. &current->thread.fpqueue[0], &current->thread.fpqdepth);
  381. if (regs != NULL) {
  382. regs->psr &= ~(PSR_EF);
  383. last_task_used_math = NULL;
  384. }
  385. }
  386. #endif
  387. memcpy(&fpregs->pr_fr.pr_regs[0],
  388. &current->thread.float_regs[0],
  389. (sizeof(unsigned long) * 32));
  390. fpregs->pr_fsr = current->thread.fsr;
  391. fpregs->pr_qcnt = current->thread.fpqdepth;
  392. fpregs->pr_q_entrysize = 8;
  393. fpregs->pr_en = 1;
  394. if(fpregs->pr_qcnt != 0) {
  395. memcpy(&fpregs->pr_q[0],
  396. &current->thread.fpqueue[0],
  397. sizeof(struct fpq) * fpregs->pr_qcnt);
  398. }
  399. /* Zero out the rest. */
  400. memset(&fpregs->pr_q[fpregs->pr_qcnt], 0,
  401. sizeof(struct fpq) * (32 - fpregs->pr_qcnt));
  402. return 1;
  403. }
  404. unsigned long get_wchan(struct task_struct *task)
  405. {
  406. unsigned long pc, fp, bias = 0;
  407. unsigned long task_base = (unsigned long) task;
  408. unsigned long ret = 0;
  409. struct reg_window32 *rw;
  410. int count = 0;
  411. if (!task || task == current ||
  412. task->state == TASK_RUNNING)
  413. goto out;
  414. fp = task_thread_info(task)->ksp + bias;
  415. do {
  416. /* Bogus frame pointer? */
  417. if (fp < (task_base + sizeof(struct thread_info)) ||
  418. fp >= (task_base + (2 * PAGE_SIZE)))
  419. break;
  420. rw = (struct reg_window32 *) fp;
  421. pc = rw->ins[7];
  422. if (!in_sched_functions(pc)) {
  423. ret = pc;
  424. goto out;
  425. }
  426. fp = rw->ins[6] + bias;
  427. } while (++count < 16);
  428. out:
  429. return ret;
  430. }