1 /* 2 * linux/arch/arm/kernel/process.c 3 * 4 * Copyright (C) 1996-2000 Russell King - Converted to ARM. 5 * Original Copyright (C) 1995 Linus Torvalds 6 * 7 * This program is free software; you can redistribute it and/or modify 8 * it under the terms of the GNU General Public License version 2 as 9 * published by the Free Software Foundation. 10 */ 11 #include <stdarg.h> 12 13 #include <linux/export.h> 14 #include <linux/sched.h> 15 #include <linux/kernel.h> 16 #include <linux/mm.h> 17 #include <linux/stddef.h> 18 #include <linux/unistd.h> 19 #include <linux/user.h> 20 #include <linux/delay.h> 21 #include <linux/reboot.h> 22 #include <linux/interrupt.h> 23 #include <linux/kallsyms.h> 24 #include <linux/init.h> 25 #include <linux/cpu.h> 26 #include <linux/elfcore.h> 27 #include <linux/pm.h> 28 #include <linux/tick.h> 29 #include <linux/utsname.h> 30 #include <linux/uaccess.h> 31 #include <linux/random.h> 32 #include <linux/hw_breakpoint.h> 33 #include <linux/cpuidle.h> 34 35 #include <asm/cacheflush.h> 36 #include <asm/leds.h> 37 #include <asm/processor.h> 38 #include <asm/thread_notify.h> 39 #include <asm/stacktrace.h> 40 #include <asm/mach/time.h> 41 42 #ifdef CONFIG_CC_STACKPROTECTOR 43 #include <linux/stackprotector.h> 44 unsigned long __stack_chk_guard __read_mostly; 45 EXPORT_SYMBOL(__stack_chk_guard); 46 #endif 47 48 static const char *processor_modes[] = { 49 "USER_26", "FIQ_26" , "IRQ_26" , "SVC_26" , "UK4_26" , "UK5_26" , "UK6_26" , "UK7_26" , 50 "UK8_26" , "UK9_26" , "UK10_26", "UK11_26", "UK12_26", "UK13_26", "UK14_26", "UK15_26", 51 "USER_32", "FIQ_32" , "IRQ_32" , "SVC_32" , "UK4_32" , "UK5_32" , "UK6_32" , "ABT_32" , 52 "UK8_32" , "UK9_32" , "UK10_32", "UND_32" , "UK12_32", "UK13_32", "UK14_32", "SYS_32" 53 }; 54 55 static const char *isa_modes[] = { 56 "ARM" , "Thumb" , "Jazelle", "ThumbEE" 57 }; 58 59 extern void setup_mm_for_reboot(void); 60 61 static volatile int hlt_counter; 62 63 #include <mach/system.h> 64 65 void disable_hlt(void) 66 { 67 hlt_counter++; 68 } 69 70 EXPORT_SYMBOL(disable_hlt); 71 72 void enable_hlt(void) 73 { 74 hlt_counter--; 75 } 76 77 EXPORT_SYMBOL(enable_hlt); 78 79 static int __init nohlt_setup(char *__unused) 80 { 81 hlt_counter = 1; 82 return 1; 83 } 84 85 static int __init hlt_setup(char *__unused) 86 { 87 hlt_counter = 0; 88 return 1; 89 } 90 91 __setup("nohlt", nohlt_setup); 92 __setup("hlt", hlt_setup); 93 94 extern void call_with_stack(void (*fn)(void *), void *arg, void *sp); 95 typedef void (*phys_reset_t)(unsigned long); 96 97 /* 98 * A temporary stack to use for CPU reset. This is static so that we 99 * don't clobber it with the identity mapping. When running with this 100 * stack, any references to the current task *will not work* so you 101 * should really do as little as possible before jumping to your reset 102 * code. 103 */ 104 static u64 soft_restart_stack[16]; 105 106 static void __soft_restart(void *addr) 107 { 108 phys_reset_t phys_reset; 109 110 /* Take out a flat memory mapping. */ 111 setup_mm_for_reboot(); 112 113 /* Clean and invalidate caches */ 114 flush_cache_all(); 115 116 /* Turn off caching */ 117 cpu_proc_fin(); 118 119 /* Push out any further dirty data, and ensure cache is empty */ 120 flush_cache_all(); 121 122 /* Switch to the identity mapping. */ 123 phys_reset = (phys_reset_t)(unsigned long)virt_to_phys(cpu_reset); 124 phys_reset((unsigned long)addr); 125 126 /* Should never get here. */ 127 BUG(); 128 } 129 130 void soft_restart(unsigned long addr) 131 { 132 u64 *stack = soft_restart_stack + ARRAY_SIZE(soft_restart_stack); 133 134 /* Disable interrupts first */ 135 local_irq_disable(); 136 local_fiq_disable(); 137 138 /* Disable the L2 if we're the last man standing. */ 139 if (num_online_cpus() == 1) 140 outer_disable(); 141 142 /* Change to the new stack and continue with the reset. */ 143 call_with_stack(__soft_restart, (void *)addr, (void *)stack); 144 145 /* Should never get here. */ 146 BUG(); 147 } 148 149 static void null_restart(char mode, const char *cmd) 150 { 151 } 152 153 /* 154 * Function pointers to optional machine specific functions 155 */ 156 void (*pm_power_off)(void); 157 EXPORT_SYMBOL(pm_power_off); 158 159 void (*arm_pm_restart)(char str, const char *cmd) = null_restart; 160 EXPORT_SYMBOL_GPL(arm_pm_restart); 161 162 static void do_nothing(void *unused) 163 { 164 } 165 166 /* 167 * cpu_idle_wait - Used to ensure that all the CPUs discard old value of 168 * pm_idle and update to new pm_idle value. Required while changing pm_idle 169 * handler on SMP systems. 170 * 171 * Caller must have changed pm_idle to the new value before the call. Old 172 * pm_idle value will not be used by any CPU after the return of this function. 173 */ 174 void cpu_idle_wait(void) 175 { 176 smp_mb(); 177 /* kick all the CPUs so that they exit out of pm_idle */ 178 smp_call_function(do_nothing, NULL, 1); 179 } 180 EXPORT_SYMBOL_GPL(cpu_idle_wait); 181 182 /* 183 * This is our default idle handler. We need to disable 184 * interrupts here to ensure we don't miss a wakeup call. 185 */ 186 static void default_idle(void) 187 { 188 if (!need_resched()) 189 arch_idle(); 190 local_irq_enable(); 191 } 192 193 void (*pm_idle)(void) = default_idle; 194 EXPORT_SYMBOL(pm_idle); 195 196 /* 197 * The idle thread, has rather strange semantics for calling pm_idle, 198 * but this is what x86 does and we need to do the same, so that 199 * things like cpuidle get called in the same way. The only difference 200 * is that we always respect 'hlt_counter' to prevent low power idle. 201 */ 202 void cpu_idle(void) 203 { 204 local_fiq_enable(); 205 206 /* endless idle loop with no priority at all */ 207 while (1) { 208 tick_nohz_idle_enter(); 209 rcu_idle_enter(); 210 leds_event(led_idle_start); 211 while (!need_resched()) { 212 #ifdef CONFIG_HOTPLUG_CPU 213 if (cpu_is_offline(smp_processor_id())) 214 cpu_die(); 215 #endif 216 217 local_irq_disable(); 218 #ifdef CONFIG_PL310_ERRATA_769419 219 wmb(); 220 #endif 221 if (hlt_counter) { 222 local_irq_enable(); 223 cpu_relax(); 224 } else { 225 stop_critical_timings(); 226 if (cpuidle_idle_call()) 227 pm_idle(); 228 start_critical_timings(); 229 /* 230 * This will eventually be removed - pm_idle 231 * functions should always return with IRQs 232 * enabled. 233 */ 234 WARN_ON(irqs_disabled()); 235 local_irq_enable(); 236 } 237 } 238 leds_event(led_idle_end); 239 rcu_idle_exit(); 240 tick_nohz_idle_exit(); 241 schedule_preempt_disabled(); 242 } 243 } 244 245 static char reboot_mode = 'h'; 246 247 int __init reboot_setup(char *str) 248 { 249 reboot_mode = str[0]; 250 return 1; 251 } 252 253 __setup("reboot=", reboot_setup); 254 255 void machine_shutdown(void) 256 { 257 #ifdef CONFIG_SMP 258 smp_send_stop(); 259 #endif 260 } 261 262 void machine_halt(void) 263 { 264 machine_shutdown(); 265 while (1); 266 } 267 268 void machine_power_off(void) 269 { 270 machine_shutdown(); 271 if (pm_power_off) 272 pm_power_off(); 273 } 274 275 void machine_restart(char *cmd) 276 { 277 machine_shutdown(); 278 279 arm_pm_restart(reboot_mode, cmd); 280 281 /* Give a grace period for failure to restart of 1s */ 282 mdelay(1000); 283 284 /* Whoops - the platform was unable to reboot. Tell the user! */ 285 printk("Reboot failed -- System halted\n"); 286 while (1); 287 } 288 289 void __show_regs(struct pt_regs *regs) 290 { 291 unsigned long flags; 292 char buf[64]; 293 294 printk("CPU: %d %s (%s %.*s)\n", 295 raw_smp_processor_id(), print_tainted(), 296 init_utsname()->release, 297 (int)strcspn(init_utsname()->version, " "), 298 init_utsname()->version); 299 print_symbol("PC is at %s\n", instruction_pointer(regs)); 300 print_symbol("LR is at %s\n", regs->ARM_lr); 301 printk("pc : [<%08lx>] lr : [<%08lx>] psr: %08lx\n" 302 "sp : %08lx ip : %08lx fp : %08lx\n", 303 regs->ARM_pc, regs->ARM_lr, regs->ARM_cpsr, 304 regs->ARM_sp, regs->ARM_ip, regs->ARM_fp); 305 printk("r10: %08lx r9 : %08lx r8 : %08lx\n", 306 regs->ARM_r10, regs->ARM_r9, 307 regs->ARM_r8); 308 printk("r7 : %08lx r6 : %08lx r5 : %08lx r4 : %08lx\n", 309 regs->ARM_r7, regs->ARM_r6, 310 regs->ARM_r5, regs->ARM_r4); 311 printk("r3 : %08lx r2 : %08lx r1 : %08lx r0 : %08lx\n", 312 regs->ARM_r3, regs->ARM_r2, 313 regs->ARM_r1, regs->ARM_r0); 314 315 flags = regs->ARM_cpsr; 316 buf[0] = flags & PSR_N_BIT ? 'N' : 'n'; 317 buf[1] = flags & PSR_Z_BIT ? 'Z' : 'z'; 318 buf[2] = flags & PSR_C_BIT ? 'C' : 'c'; 319 buf[3] = flags & PSR_V_BIT ? 'V' : 'v'; 320 buf[4] = '\0'; 321 322 printk("Flags: %s IRQs o%s FIQs o%s Mode %s ISA %s Segment %s\n", 323 buf, interrupts_enabled(regs) ? "n" : "ff", 324 fast_interrupts_enabled(regs) ? "n" : "ff", 325 processor_modes[processor_mode(regs)], 326 isa_modes[isa_mode(regs)], 327 get_fs() == get_ds() ? "kernel" : "user"); 328 #ifdef CONFIG_CPU_CP15 329 { 330 unsigned int ctrl; 331 332 buf[0] = '\0'; 333 #ifdef CONFIG_CPU_CP15_MMU 334 { 335 unsigned int transbase, dac; 336 asm("mrc p15, 0, %0, c2, c0\n\t" 337 "mrc p15, 0, %1, c3, c0\n" 338 : "=r" (transbase), "=r" (dac)); 339 snprintf(buf, sizeof(buf), " Table: %08x DAC: %08x", 340 transbase, dac); 341 } 342 #endif 343 asm("mrc p15, 0, %0, c1, c0\n" : "=r" (ctrl)); 344 345 printk("Control: %08x%s\n", ctrl, buf); 346 } 347 #endif 348 } 349 350 void show_regs(struct pt_regs * regs) 351 { 352 printk("\n"); 353 printk("Pid: %d, comm: %20s\n", task_pid_nr(current), current->comm); 354 __show_regs(regs); 355 dump_stack(); 356 } 357 358 ATOMIC_NOTIFIER_HEAD(thread_notify_head); 359 360 EXPORT_SYMBOL_GPL(thread_notify_head); 361 362 /* 363 * Free current thread data structures etc.. 364 */ 365 void exit_thread(void) 366 { 367 thread_notify(THREAD_NOTIFY_EXIT, current_thread_info()); 368 } 369 370 void flush_thread(void) 371 { 372 struct thread_info *thread = current_thread_info(); 373 struct task_struct *tsk = current; 374 375 flush_ptrace_hw_breakpoint(tsk); 376 377 memset(thread->used_cp, 0, sizeof(thread->used_cp)); 378 memset(&tsk->thread.debug, 0, sizeof(struct debug_info)); 379 memset(&thread->fpstate, 0, sizeof(union fp_state)); 380 381 thread_notify(THREAD_NOTIFY_FLUSH, thread); 382 } 383 384 void release_thread(struct task_struct *dead_task) 385 { 386 } 387 388 asmlinkage void ret_from_fork(void) __asm__("ret_from_fork"); 389 390 int 391 copy_thread(unsigned long clone_flags, unsigned long stack_start, 392 unsigned long stk_sz, struct task_struct *p, struct pt_regs *regs) 393 { 394 struct thread_info *thread = task_thread_info(p); 395 struct pt_regs *childregs = task_pt_regs(p); 396 397 *childregs = *regs; 398 childregs->ARM_r0 = 0; 399 childregs->ARM_sp = stack_start; 400 401 memset(&thread->cpu_context, 0, sizeof(struct cpu_context_save)); 402 thread->cpu_context.sp = (unsigned long)childregs; 403 thread->cpu_context.pc = (unsigned long)ret_from_fork; 404 405 clear_ptrace_hw_breakpoint(p); 406 407 if (clone_flags & CLONE_SETTLS) 408 thread->tp_value = regs->ARM_r3; 409 410 thread_notify(THREAD_NOTIFY_COPY, thread); 411 412 return 0; 413 } 414 415 /* 416 * Fill in the task's elfregs structure for a core dump. 417 */ 418 int dump_task_regs(struct task_struct *t, elf_gregset_t *elfregs) 419 { 420 elf_core_copy_regs(elfregs, task_pt_regs(t)); 421 return 1; 422 } 423 424 /* 425 * fill in the fpe structure for a core dump... 426 */ 427 int dump_fpu (struct pt_regs *regs, struct user_fp *fp) 428 { 429 struct thread_info *thread = current_thread_info(); 430 int used_math = thread->used_cp[1] | thread->used_cp[2]; 431 432 if (used_math) 433 memcpy(fp, &thread->fpstate.soft, sizeof (*fp)); 434 435 return used_math != 0; 436 } 437 EXPORT_SYMBOL(dump_fpu); 438 439 /* 440 * Shuffle the argument into the correct register before calling the 441 * thread function. r4 is the thread argument, r5 is the pointer to 442 * the thread function, and r6 points to the exit function. 443 */ 444 extern void kernel_thread_helper(void); 445 asm( ".pushsection .text\n" 446 " .align\n" 447 " .type kernel_thread_helper, #function\n" 448 "kernel_thread_helper:\n" 449 #ifdef CONFIG_TRACE_IRQFLAGS 450 " bl trace_hardirqs_on\n" 451 #endif 452 " msr cpsr_c, r7\n" 453 " mov r0, r4\n" 454 " mov lr, r6\n" 455 " mov pc, r5\n" 456 " .size kernel_thread_helper, . - kernel_thread_helper\n" 457 " .popsection"); 458 459 #ifdef CONFIG_ARM_UNWIND 460 extern void kernel_thread_exit(long code); 461 asm( ".pushsection .text\n" 462 " .align\n" 463 " .type kernel_thread_exit, #function\n" 464 "kernel_thread_exit:\n" 465 " .fnstart\n" 466 " .cantunwind\n" 467 " bl do_exit\n" 468 " nop\n" 469 " .fnend\n" 470 " .size kernel_thread_exit, . - kernel_thread_exit\n" 471 " .popsection"); 472 #else 473 #define kernel_thread_exit do_exit 474 #endif 475 476 /* 477 * Create a kernel thread. 478 */ 479 pid_t kernel_thread(int (*fn)(void *), void *arg, unsigned long flags) 480 { 481 struct pt_regs regs; 482 483 memset(®s, 0, sizeof(regs)); 484 485 regs.ARM_r4 = (unsigned long)arg; 486 regs.ARM_r5 = (unsigned long)fn; 487 regs.ARM_r6 = (unsigned long)kernel_thread_exit; 488 regs.ARM_r7 = SVC_MODE | PSR_ENDSTATE | PSR_ISETSTATE; 489 regs.ARM_pc = (unsigned long)kernel_thread_helper; 490 regs.ARM_cpsr = regs.ARM_r7 | PSR_I_BIT; 491 492 return do_fork(flags|CLONE_VM|CLONE_UNTRACED, 0, ®s, 0, NULL, NULL); 493 } 494 EXPORT_SYMBOL(kernel_thread); 495 496 unsigned long get_wchan(struct task_struct *p) 497 { 498 struct stackframe frame; 499 int count = 0; 500 if (!p || p == current || p->state == TASK_RUNNING) 501 return 0; 502 503 frame.fp = thread_saved_fp(p); 504 frame.sp = thread_saved_sp(p); 505 frame.lr = 0; /* recovered from the stack */ 506 frame.pc = thread_saved_pc(p); 507 do { 508 int ret = unwind_frame(&frame); 509 if (ret < 0) 510 return 0; 511 if (!in_sched_functions(frame.pc)) 512 return frame.pc; 513 } while (count ++ < 16); 514 return 0; 515 } 516 517 unsigned long arch_randomize_brk(struct mm_struct *mm) 518 { 519 unsigned long range_end = mm->brk + 0x02000000; 520 return randomize_range(mm->brk, range_end, 0) ? : mm->brk; 521 } 522 523 #ifdef CONFIG_MMU 524 /* 525 * The vectors page is always readable from user space for the 526 * atomic helpers and the signal restart code. Let's declare a mapping 527 * for it so it is visible through ptrace and /proc/<pid>/mem. 528 */ 529 530 int vectors_user_mapping(void) 531 { 532 struct mm_struct *mm = current->mm; 533 return install_special_mapping(mm, 0xffff0000, PAGE_SIZE, 534 VM_READ | VM_EXEC | 535 VM_MAYREAD | VM_MAYEXEC | 536 VM_ALWAYSDUMP | VM_RESERVED, 537 NULL); 538 } 539 540 const char *arch_vma_name(struct vm_area_struct *vma) 541 { 542 return (vma->vm_start == 0xffff0000) ? "[vectors]" : NULL; 543 } 544 #endif 545