process.c 6.6 KB

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  1. /*
  2. * Architecture-dependent parts of process handling.
  3. *
  4. * Copyright (C) 2013 Altera Corporation
  5. * Copyright (C) 2010 Tobias Klauser <tklauser@distanz.ch>
  6. * Copyright (C) 2009 Wind River Systems Inc
  7. * Implemented by fredrik.markstrom@gmail.com and ivarholmqvist@gmail.com
  8. * Copyright (C) 2004 Microtronix Datacom Ltd
  9. *
  10. * This file is subject to the terms and conditions of the GNU General Public
  11. * License. See the file "COPYING" in the main directory of this archive
  12. * for more details.
  13. */
  14. #include <linux/export.h>
  15. #include <linux/sched.h>
  16. #include <linux/tick.h>
  17. #include <linux/uaccess.h>
  18. #include <asm/unistd.h>
  19. #include <asm/traps.h>
  20. #include <asm/cpuinfo.h>
  21. asmlinkage void ret_from_fork(void);
  22. asmlinkage void ret_from_kernel_thread(void);
  23. void (*pm_power_off)(void) = NULL;
  24. EXPORT_SYMBOL(pm_power_off);
  25. void arch_cpu_idle(void)
  26. {
  27. local_irq_enable();
  28. }
  29. /*
  30. * The development boards have no way to pull a board reset. Just jump to the
  31. * cpu reset address and let the boot loader or the code in head.S take care of
  32. * resetting peripherals.
  33. */
  34. void machine_restart(char *__unused)
  35. {
  36. pr_notice("Machine restart (%08x)...\n", cpuinfo.reset_addr);
  37. local_irq_disable();
  38. __asm__ __volatile__ (
  39. "jmp %0\n\t"
  40. :
  41. : "r" (cpuinfo.reset_addr)
  42. : "r4");
  43. }
  44. void machine_halt(void)
  45. {
  46. pr_notice("Machine halt...\n");
  47. local_irq_disable();
  48. for (;;)
  49. ;
  50. }
  51. /*
  52. * There is no way to power off the development boards. So just spin for now. If
  53. * we ever have a way of resetting a board using a GPIO we should add that here.
  54. */
  55. void machine_power_off(void)
  56. {
  57. pr_notice("Machine power off...\n");
  58. local_irq_disable();
  59. for (;;)
  60. ;
  61. }
  62. void show_regs(struct pt_regs *regs)
  63. {
  64. pr_notice("\n");
  65. show_regs_print_info(KERN_DEFAULT);
  66. pr_notice("r1: %08lx r2: %08lx r3: %08lx r4: %08lx\n",
  67. regs->r1, regs->r2, regs->r3, regs->r4);
  68. pr_notice("r5: %08lx r6: %08lx r7: %08lx r8: %08lx\n",
  69. regs->r5, regs->r6, regs->r7, regs->r8);
  70. pr_notice("r9: %08lx r10: %08lx r11: %08lx r12: %08lx\n",
  71. regs->r9, regs->r10, regs->r11, regs->r12);
  72. pr_notice("r13: %08lx r14: %08lx r15: %08lx\n",
  73. regs->r13, regs->r14, regs->r15);
  74. pr_notice("ra: %08lx fp: %08lx sp: %08lx gp: %08lx\n",
  75. regs->ra, regs->fp, regs->sp, regs->gp);
  76. pr_notice("ea: %08lx estatus: %08lx\n",
  77. regs->ea, regs->estatus);
  78. }
  79. void flush_thread(void)
  80. {
  81. set_fs(USER_DS);
  82. }
  83. int copy_thread(unsigned long clone_flags,
  84. unsigned long usp, unsigned long arg, struct task_struct *p)
  85. {
  86. struct pt_regs *childregs = task_pt_regs(p);
  87. struct pt_regs *regs;
  88. struct switch_stack *stack;
  89. struct switch_stack *childstack =
  90. ((struct switch_stack *)childregs) - 1;
  91. if (unlikely(p->flags & PF_KTHREAD)) {
  92. memset(childstack, 0,
  93. sizeof(struct switch_stack) + sizeof(struct pt_regs));
  94. childstack->r16 = usp; /* fn */
  95. childstack->r17 = arg;
  96. childstack->ra = (unsigned long) ret_from_kernel_thread;
  97. childregs->estatus = STATUS_PIE;
  98. childregs->sp = (unsigned long) childstack;
  99. p->thread.ksp = (unsigned long) childstack;
  100. p->thread.kregs = childregs;
  101. return 0;
  102. }
  103. regs = current_pt_regs();
  104. *childregs = *regs;
  105. childregs->r2 = 0; /* Set the return value for the child. */
  106. childregs->r7 = 0;
  107. stack = ((struct switch_stack *) regs) - 1;
  108. *childstack = *stack;
  109. childstack->ra = (unsigned long)ret_from_fork;
  110. p->thread.kregs = childregs;
  111. p->thread.ksp = (unsigned long) childstack;
  112. if (usp)
  113. childregs->sp = usp;
  114. /* Initialize tls register. */
  115. if (clone_flags & CLONE_SETTLS)
  116. childstack->r23 = regs->r8;
  117. return 0;
  118. }
  119. /*
  120. * Generic dumping code. Used for panic and debug.
  121. */
  122. void dump(struct pt_regs *fp)
  123. {
  124. unsigned long *sp;
  125. unsigned char *tp;
  126. int i;
  127. pr_emerg("\nCURRENT PROCESS:\n\n");
  128. pr_emerg("COMM=%s PID=%d\n", current->comm, current->pid);
  129. if (current->mm) {
  130. pr_emerg("TEXT=%08x-%08x DATA=%08x-%08x BSS=%08x-%08x\n",
  131. (int) current->mm->start_code,
  132. (int) current->mm->end_code,
  133. (int) current->mm->start_data,
  134. (int) current->mm->end_data,
  135. (int) current->mm->end_data,
  136. (int) current->mm->brk);
  137. pr_emerg("USER-STACK=%08x KERNEL-STACK=%08x\n\n",
  138. (int) current->mm->start_stack,
  139. (int)(((unsigned long) current) + THREAD_SIZE));
  140. }
  141. pr_emerg("PC: %08lx\n", fp->ea);
  142. pr_emerg("SR: %08lx SP: %08lx\n",
  143. (long) fp->estatus, (long) fp);
  144. pr_emerg("r1: %08lx r2: %08lx r3: %08lx\n",
  145. fp->r1, fp->r2, fp->r3);
  146. pr_emerg("r4: %08lx r5: %08lx r6: %08lx r7: %08lx\n",
  147. fp->r4, fp->r5, fp->r6, fp->r7);
  148. pr_emerg("r8: %08lx r9: %08lx r10: %08lx r11: %08lx\n",
  149. fp->r8, fp->r9, fp->r10, fp->r11);
  150. pr_emerg("r12: %08lx r13: %08lx r14: %08lx r15: %08lx\n",
  151. fp->r12, fp->r13, fp->r14, fp->r15);
  152. pr_emerg("or2: %08lx ra: %08lx fp: %08lx sp: %08lx\n",
  153. fp->orig_r2, fp->ra, fp->fp, fp->sp);
  154. pr_emerg("\nUSP: %08x TRAPFRAME: %08x\n",
  155. (unsigned int) fp->sp, (unsigned int) fp);
  156. pr_emerg("\nCODE:");
  157. tp = ((unsigned char *) fp->ea) - 0x20;
  158. for (sp = (unsigned long *) tp, i = 0; (i < 0x40); i += 4) {
  159. if ((i % 0x10) == 0)
  160. pr_emerg("\n%08x: ", (int) (tp + i));
  161. pr_emerg("%08x ", (int) *sp++);
  162. }
  163. pr_emerg("\n");
  164. pr_emerg("\nKERNEL STACK:");
  165. tp = ((unsigned char *) fp) - 0x40;
  166. for (sp = (unsigned long *) tp, i = 0; (i < 0xc0); i += 4) {
  167. if ((i % 0x10) == 0)
  168. pr_emerg("\n%08x: ", (int) (tp + i));
  169. pr_emerg("%08x ", (int) *sp++);
  170. }
  171. pr_emerg("\n");
  172. pr_emerg("\n");
  173. pr_emerg("\nUSER STACK:");
  174. tp = (unsigned char *) (fp->sp - 0x10);
  175. for (sp = (unsigned long *) tp, i = 0; (i < 0x80); i += 4) {
  176. if ((i % 0x10) == 0)
  177. pr_emerg("\n%08x: ", (int) (tp + i));
  178. pr_emerg("%08x ", (int) *sp++);
  179. }
  180. pr_emerg("\n\n");
  181. }
  182. unsigned long get_wchan(struct task_struct *p)
  183. {
  184. unsigned long fp, pc;
  185. unsigned long stack_page;
  186. int count = 0;
  187. if (!p || p == current || p->state == TASK_RUNNING)
  188. return 0;
  189. stack_page = (unsigned long)p;
  190. fp = ((struct switch_stack *)p->thread.ksp)->fp; /* ;dgt2 */
  191. do {
  192. if (fp < stack_page+sizeof(struct task_struct) ||
  193. fp >= 8184+stack_page) /* ;dgt2;tmp */
  194. return 0;
  195. pc = ((unsigned long *)fp)[1];
  196. if (!in_sched_functions(pc))
  197. return pc;
  198. fp = *(unsigned long *) fp;
  199. } while (count++ < 16); /* ;dgt2;tmp */
  200. return 0;
  201. }
  202. /*
  203. * Do necessary setup to start up a newly executed thread.
  204. * Will startup in user mode (status_extension = 0).
  205. */
  206. void start_thread(struct pt_regs *regs, unsigned long pc, unsigned long sp)
  207. {
  208. memset((void *) regs, 0, sizeof(struct pt_regs));
  209. regs->estatus = ESTATUS_EPIE | ESTATUS_EU;
  210. regs->ea = pc;
  211. regs->sp = sp;
  212. }
  213. #include <linux/elfcore.h>
  214. /* Fill in the FPU structure for a core dump. */
  215. int dump_fpu(struct pt_regs *regs, elf_fpregset_t *r)
  216. {
  217. return 0; /* Nios2 has no FPU and thus no FPU registers */
  218. }