blob: b407bc8ad9186f05fee0f657ffec48e7aab87efe [file] [log] [blame]
Bryan Wu1394f032007-05-06 14:50:22 -07001/*
Robin Getz96f10502009-09-24 14:11:24 +00002 * Blackfin architecture-dependent process handling
Bryan Wu1394f032007-05-06 14:50:22 -07003 *
Robin Getz96f10502009-09-24 14:11:24 +00004 * Copyright 2004-2009 Analog Devices Inc.
Bryan Wu1394f032007-05-06 14:50:22 -07005 *
Robin Getz96f10502009-09-24 14:11:24 +00006 * Licensed under the GPL-2 or later
Bryan Wu1394f032007-05-06 14:50:22 -07007 */
8
9#include <linux/module.h>
Bryan Wu1394f032007-05-06 14:50:22 -070010#include <linux/unistd.h>
11#include <linux/user.h>
Mike Frysinger1f83b8f2007-07-12 22:58:21 +080012#include <linux/uaccess.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090013#include <linux/slab.h>
Vitja Makarov8b5f79f2008-02-29 12:24:23 +080014#include <linux/sched.h>
15#include <linux/tick.h>
Bryan Wud31c5ab2007-08-10 13:00:42 -070016#include <linux/fs.h>
17#include <linux/err.h>
Bryan Wu1394f032007-05-06 14:50:22 -070018
19#include <asm/blackfin.h>
Bernd Schmidt7adfb582007-06-21 11:34:16 +080020#include <asm/fixed_code.h>
Graf Yangdbc895f2009-01-07 23:14:39 +080021#include <asm/mem_map.h>
Bryan Wu1394f032007-05-06 14:50:22 -070022
Bryan Wu1394f032007-05-06 14:50:22 -070023asmlinkage void ret_from_fork(void);
24
25/* Points to the SDRAM backup memory for the stack that is currently in
26 * L1 scratchpad memory.
27 */
28void *current_l1_stack_save;
29
30/* The number of tasks currently using a L1 stack area. The SRAM is
31 * allocated/deallocated whenever this changes from/to zero.
32 */
33int nr_l1stack_tasks;
34
35/* Start and length of the area in L1 scratchpad memory which we've allocated
36 * for process stacks.
37 */
38void *l1_stack_base;
39unsigned long l1_stack_len;
40
41/*
42 * Powermanagement idle function, if any..
43 */
44void (*pm_idle)(void) = NULL;
45EXPORT_SYMBOL(pm_idle);
46
47void (*pm_power_off)(void) = NULL;
48EXPORT_SYMBOL(pm_power_off);
49
50/*
Bryan Wu1394f032007-05-06 14:50:22 -070051 * The idle loop on BFIN
52 */
53#ifdef CONFIG_IDLE_L1
Vitja Makarov8b5f79f2008-02-29 12:24:23 +080054static void default_idle(void)__attribute__((l1_text));
Bryan Wu1394f032007-05-06 14:50:22 -070055void cpu_idle(void)__attribute__((l1_text));
56#endif
57
Vitja Makarov8b5f79f2008-02-29 12:24:23 +080058/*
59 * This is our default idle handler. We need to disable
60 * interrupts here to ensure we don't miss a wakeup call.
61 */
62static void default_idle(void)
Bryan Wu1394f032007-05-06 14:50:22 -070063{
Yi Li6a01f232009-01-07 23:14:39 +080064#ifdef CONFIG_IPIPE
65 ipipe_suspend_domain();
66#endif
David Howells3b139cd2010-10-07 14:08:52 +010067 hard_local_irq_disable();
Vitja Makarov8b5f79f2008-02-29 12:24:23 +080068 if (!need_resched())
69 idle_with_irq_disabled();
70
David Howells3b139cd2010-10-07 14:08:52 +010071 hard_local_irq_enable();
Bryan Wu1394f032007-05-06 14:50:22 -070072}
73
Bryan Wu1394f032007-05-06 14:50:22 -070074/*
Vitja Makarov8b5f79f2008-02-29 12:24:23 +080075 * The idle thread. We try to conserve power, while trying to keep
76 * overall latency low. The architecture specific idle is passed
77 * a value to indicate the level of "idleness" of the system.
Bryan Wu1394f032007-05-06 14:50:22 -070078 */
79void cpu_idle(void)
80{
81 /* endless idle loop with no priority at all */
82 while (1) {
Vitja Makarov8b5f79f2008-02-29 12:24:23 +080083 void (*idle)(void) = pm_idle;
84
85#ifdef CONFIG_HOTPLUG_CPU
86 if (cpu_is_offline(smp_processor_id()))
87 cpu_die();
88#endif
89 if (!idle)
90 idle = default_idle;
Thomas Gleixnerb8f8c3c2008-07-18 17:27:28 +020091 tick_nohz_stop_sched_tick(1);
Vitja Makarov8b5f79f2008-02-29 12:24:23 +080092 while (!need_resched())
93 idle();
94 tick_nohz_restart_sched_tick();
Bryan Wu1394f032007-05-06 14:50:22 -070095 preempt_enable_no_resched();
96 schedule();
97 preempt_disable();
98 }
99}
100
Bryan Wu1394f032007-05-06 14:50:22 -0700101/*
102 * This gets run with P1 containing the
103 * function to call, and R1 containing
104 * the "args". Note P0 is clobbered on the way here.
105 */
106void kernel_thread_helper(void);
107__asm__(".section .text\n"
108 ".align 4\n"
109 "_kernel_thread_helper:\n\t"
110 "\tsp += -12;\n\t"
111 "\tr0 = r1;\n\t" "\tcall (p1);\n\t" "\tcall _do_exit;\n" ".previous");
112
113/*
114 * Create a kernel thread.
115 */
116pid_t kernel_thread(int (*fn) (void *), void *arg, unsigned long flags)
117{
118 struct pt_regs regs;
119
120 memset(&regs, 0, sizeof(regs));
121
122 regs.r1 = (unsigned long)arg;
123 regs.p1 = (unsigned long)fn;
124 regs.pc = (unsigned long)kernel_thread_helper;
125 regs.orig_p0 = -1;
126 /* Set bit 2 to tell ret_from_fork we should be returning to kernel
127 mode. */
128 regs.ipend = 0x8002;
129 __asm__ __volatile__("%0 = syscfg;":"=da"(regs.syscfg):);
130 return do_fork(flags | CLONE_VM | CLONE_UNTRACED, 0, &regs, 0, NULL,
131 NULL);
132}
Mike Frysingerfe8015c2008-10-28 11:07:15 +0800133EXPORT_SYMBOL(kernel_thread);
Bryan Wu1394f032007-05-06 14:50:22 -0700134
Mike Frysingerd5ce5282009-06-13 11:32:34 -0400135/*
136 * Do necessary setup to start up a newly executed thread.
137 *
138 * pass the data segment into user programs if it exists,
139 * it can't hurt anything as far as I can tell
140 */
141void start_thread(struct pt_regs *regs, unsigned long new_ip, unsigned long new_sp)
142{
143 set_fs(USER_DS);
144 regs->pc = new_ip;
145 if (current->mm)
146 regs->p5 = current->mm->start_data;
Graf Yangaa235312009-09-21 11:51:31 +0000147#ifndef CONFIG_SMP
Mike Frysingerd5ce5282009-06-13 11:32:34 -0400148 task_thread_info(current)->l1_task_info.stack_start =
149 (void *)current->mm->context.stack_start;
150 task_thread_info(current)->l1_task_info.lowest_sp = (void *)new_sp;
151 memcpy(L1_SCRATCH_TASK_INFO, &task_thread_info(current)->l1_task_info,
152 sizeof(*L1_SCRATCH_TASK_INFO));
153#endif
154 wrusp(new_sp);
155}
156EXPORT_SYMBOL_GPL(start_thread);
157
Bryan Wu1394f032007-05-06 14:50:22 -0700158void flush_thread(void)
159{
160}
161
162asmlinkage int bfin_vfork(struct pt_regs *regs)
163{
164 return do_fork(CLONE_VFORK | CLONE_VM | SIGCHLD, rdusp(), regs, 0, NULL,
165 NULL);
166}
167
168asmlinkage int bfin_clone(struct pt_regs *regs)
169{
170 unsigned long clone_flags;
171 unsigned long newsp;
172
Graf Yang8f658732008-11-18 17:48:22 +0800173#ifdef __ARCH_SYNC_CORE_DCACHE
174 if (current->rt.nr_cpus_allowed == num_possible_cpus()) {
175 current->cpus_allowed = cpumask_of_cpu(smp_processor_id());
176 current->rt.nr_cpus_allowed = 1;
177 }
178#endif
179
Bryan Wu1394f032007-05-06 14:50:22 -0700180 /* syscall2 puts clone_flags in r0 and usp in r1 */
181 clone_flags = regs->r0;
182 newsp = regs->r1;
183 if (!newsp)
184 newsp = rdusp();
185 else
186 newsp -= 12;
187 return do_fork(clone_flags, newsp, regs, 0, NULL, NULL);
188}
189
190int
Alexey Dobriyan6f2c55b2009-04-02 16:56:59 -0700191copy_thread(unsigned long clone_flags,
Bryan Wu1394f032007-05-06 14:50:22 -0700192 unsigned long usp, unsigned long topstk,
193 struct task_struct *p, struct pt_regs *regs)
194{
195 struct pt_regs *childregs;
196
197 childregs = (struct pt_regs *) (task_stack_page(p) + THREAD_SIZE) - 1;
198 *childregs = *regs;
199 childregs->r0 = 0;
200
201 p->thread.usp = usp;
202 p->thread.ksp = (unsigned long)childregs;
203 p->thread.pc = (unsigned long)ret_from_fork;
204
205 return 0;
206}
207
208/*
Bryan Wu1394f032007-05-06 14:50:22 -0700209 * sys_execve() executes a new program.
210 */
David Howellsd7627462010-08-17 23:52:56 +0100211asmlinkage int sys_execve(const char __user *name,
212 const char __user *const __user *argv,
213 const char __user *const __user *envp)
Bryan Wu1394f032007-05-06 14:50:22 -0700214{
215 int error;
216 char *filename;
217 struct pt_regs *regs = (struct pt_regs *)((&name) + 6);
218
Bryan Wu1394f032007-05-06 14:50:22 -0700219 filename = getname(name);
220 error = PTR_ERR(filename);
221 if (IS_ERR(filename))
John Kacur25708a52009-10-12 22:44:40 +0200222 return error;
Bryan Wu1394f032007-05-06 14:50:22 -0700223 error = do_execve(filename, argv, envp, regs);
224 putname(filename);
Bryan Wu1394f032007-05-06 14:50:22 -0700225 return error;
226}
227
228unsigned long get_wchan(struct task_struct *p)
229{
230 unsigned long fp, pc;
231 unsigned long stack_page;
232 int count = 0;
233 if (!p || p == current || p->state == TASK_RUNNING)
234 return 0;
235
236 stack_page = (unsigned long)p;
237 fp = p->thread.usp;
238 do {
239 if (fp < stack_page + sizeof(struct thread_info) ||
240 fp >= 8184 + stack_page)
241 return 0;
242 pc = ((unsigned long *)fp)[1];
243 if (!in_sched_functions(pc))
244 return pc;
245 fp = *(unsigned long *)fp;
246 }
247 while (count++ < 16);
248 return 0;
249}
250
Bernd Schmidt7adfb582007-06-21 11:34:16 +0800251void finish_atomic_sections (struct pt_regs *regs)
252{
Bernd Schmidt19d6d7d2008-05-07 11:41:26 +0800253 int __user *up0 = (int __user *)regs->p0;
Mike Frysinger0ddeeca2008-03-07 02:37:41 +0800254
Bernd Schmidt7adfb582007-06-21 11:34:16 +0800255 switch (regs->pc) {
Mike Frysinger2f5a0862009-11-19 19:15:26 +0000256 default:
257 /* not in middle of an atomic step, so resume like normal */
258 return;
259
Bernd Schmidt7adfb582007-06-21 11:34:16 +0800260 case ATOMIC_XCHG32 + 2:
Mike Frysinger0ddeeca2008-03-07 02:37:41 +0800261 put_user(regs->r1, up0);
Bernd Schmidt7adfb582007-06-21 11:34:16 +0800262 break;
263
264 case ATOMIC_CAS32 + 2:
265 case ATOMIC_CAS32 + 4:
266 if (regs->r0 == regs->r1)
Mike Frysinger92649492009-08-17 19:05:07 +0000267 case ATOMIC_CAS32 + 6:
Mike Frysinger0ddeeca2008-03-07 02:37:41 +0800268 put_user(regs->r2, up0);
Bernd Schmidt7adfb582007-06-21 11:34:16 +0800269 break;
Bernd Schmidt7adfb582007-06-21 11:34:16 +0800270
271 case ATOMIC_ADD32 + 2:
272 regs->r0 = regs->r1 + regs->r0;
273 /* fall through */
274 case ATOMIC_ADD32 + 4:
Mike Frysinger0ddeeca2008-03-07 02:37:41 +0800275 put_user(regs->r0, up0);
Bernd Schmidt7adfb582007-06-21 11:34:16 +0800276 break;
277
278 case ATOMIC_SUB32 + 2:
279 regs->r0 = regs->r1 - regs->r0;
280 /* fall through */
281 case ATOMIC_SUB32 + 4:
Mike Frysinger0ddeeca2008-03-07 02:37:41 +0800282 put_user(regs->r0, up0);
Bernd Schmidt7adfb582007-06-21 11:34:16 +0800283 break;
284
285 case ATOMIC_IOR32 + 2:
286 regs->r0 = regs->r1 | regs->r0;
287 /* fall through */
288 case ATOMIC_IOR32 + 4:
Mike Frysinger0ddeeca2008-03-07 02:37:41 +0800289 put_user(regs->r0, up0);
Bernd Schmidt7adfb582007-06-21 11:34:16 +0800290 break;
291
292 case ATOMIC_AND32 + 2:
293 regs->r0 = regs->r1 & regs->r0;
294 /* fall through */
295 case ATOMIC_AND32 + 4:
Mike Frysinger0ddeeca2008-03-07 02:37:41 +0800296 put_user(regs->r0, up0);
Bernd Schmidt7adfb582007-06-21 11:34:16 +0800297 break;
298
299 case ATOMIC_XOR32 + 2:
300 regs->r0 = regs->r1 ^ regs->r0;
301 /* fall through */
302 case ATOMIC_XOR32 + 4:
Mike Frysinger0ddeeca2008-03-07 02:37:41 +0800303 put_user(regs->r0, up0);
Bernd Schmidt7adfb582007-06-21 11:34:16 +0800304 break;
305 }
Mike Frysinger2f5a0862009-11-19 19:15:26 +0000306
307 /*
308 * We've finished the atomic section, and the only thing left for
309 * userspace is to do a RTS, so we might as well handle that too
310 * since we need to update the PC anyways.
311 */
312 regs->pc = regs->rets;
Bernd Schmidt7adfb582007-06-21 11:34:16 +0800313}
314
Mike Frysingere56e03b2009-06-07 16:31:52 -0400315static inline
316int in_mem(unsigned long addr, unsigned long size,
317 unsigned long start, unsigned long end)
318{
319 return addr >= start && addr + size <= end;
320}
321static inline
322int in_mem_const_off(unsigned long addr, unsigned long size, unsigned long off,
323 unsigned long const_addr, unsigned long const_size)
324{
325 return const_size &&
326 in_mem(addr, size, const_addr + off, const_addr + const_size);
327}
328static inline
329int in_mem_const(unsigned long addr, unsigned long size,
330 unsigned long const_addr, unsigned long const_size)
331{
Mike Frysingerfb4b5d32009-06-29 14:20:10 -0400332 return in_mem_const_off(addr, size, 0, const_addr, const_size);
Mike Frysingere56e03b2009-06-07 16:31:52 -0400333}
Bernd Schmidt13048f82009-09-23 16:47:16 +0000334#define ASYNC_ENABLED(bnum, bctlnum) \
Mike Frysingere56e03b2009-06-07 16:31:52 -0400335({ \
Bernd Schmidt13048f82009-09-23 16:47:16 +0000336 (bfin_read_EBIU_AMGCTL() & 0xe) < ((bnum + 1) << 1) ? 0 : \
337 bfin_read_EBIU_AMBCTL##bctlnum() & B##bnum##RDYEN ? 0 : \
338 1; \
Mike Frysingere56e03b2009-06-07 16:31:52 -0400339})
Bernd Schmidt13048f82009-09-23 16:47:16 +0000340/*
341 * We can't read EBIU banks that aren't enabled or we end up hanging
342 * on the access to the async space. Make sure we validate accesses
343 * that cross async banks too.
344 * 0 - found, but unusable
345 * 1 - found & usable
346 * 2 - not found
347 */
348static
349int in_async(unsigned long addr, unsigned long size)
350{
351 if (addr >= ASYNC_BANK0_BASE && addr < ASYNC_BANK0_BASE + ASYNC_BANK0_SIZE) {
352 if (!ASYNC_ENABLED(0, 0))
353 return 0;
354 if (addr + size <= ASYNC_BANK0_BASE + ASYNC_BANK0_SIZE)
355 return 1;
356 size -= ASYNC_BANK0_BASE + ASYNC_BANK0_SIZE - addr;
357 addr = ASYNC_BANK0_BASE + ASYNC_BANK0_SIZE;
358 }
359 if (addr >= ASYNC_BANK1_BASE && addr < ASYNC_BANK1_BASE + ASYNC_BANK1_SIZE) {
360 if (!ASYNC_ENABLED(1, 0))
361 return 0;
362 if (addr + size <= ASYNC_BANK1_BASE + ASYNC_BANK1_SIZE)
363 return 1;
364 size -= ASYNC_BANK1_BASE + ASYNC_BANK1_SIZE - addr;
365 addr = ASYNC_BANK1_BASE + ASYNC_BANK1_SIZE;
366 }
367 if (addr >= ASYNC_BANK2_BASE && addr < ASYNC_BANK2_BASE + ASYNC_BANK2_SIZE) {
368 if (!ASYNC_ENABLED(2, 1))
369 return 0;
370 if (addr + size <= ASYNC_BANK2_BASE + ASYNC_BANK2_SIZE)
371 return 1;
372 size -= ASYNC_BANK2_BASE + ASYNC_BANK2_SIZE - addr;
373 addr = ASYNC_BANK2_BASE + ASYNC_BANK2_SIZE;
374 }
375 if (addr >= ASYNC_BANK3_BASE && addr < ASYNC_BANK3_BASE + ASYNC_BANK3_SIZE) {
376 if (ASYNC_ENABLED(3, 1))
377 return 0;
378 if (addr + size <= ASYNC_BANK3_BASE + ASYNC_BANK3_SIZE)
379 return 1;
380 return 0;
381 }
382
383 /* not within async bounds */
384 return 2;
385}
Mike Frysingere56e03b2009-06-07 16:31:52 -0400386
387int bfin_mem_access_type(unsigned long addr, unsigned long size)
388{
389 int cpu = raw_smp_processor_id();
390
391 /* Check that things do not wrap around */
392 if (addr > ULONG_MAX - size)
393 return -EFAULT;
394
395 if (in_mem(addr, size, FIXED_CODE_START, physical_mem_end))
396 return BFIN_MEM_ACCESS_CORE;
397
398 if (in_mem_const(addr, size, L1_CODE_START, L1_CODE_LENGTH))
399 return cpu == 0 ? BFIN_MEM_ACCESS_ITEST : BFIN_MEM_ACCESS_IDMA;
400 if (in_mem_const(addr, size, L1_SCRATCH_START, L1_SCRATCH_LENGTH))
401 return cpu == 0 ? BFIN_MEM_ACCESS_CORE_ONLY : -EFAULT;
402 if (in_mem_const(addr, size, L1_DATA_A_START, L1_DATA_A_LENGTH))
403 return cpu == 0 ? BFIN_MEM_ACCESS_CORE : BFIN_MEM_ACCESS_IDMA;
404 if (in_mem_const(addr, size, L1_DATA_B_START, L1_DATA_B_LENGTH))
405 return cpu == 0 ? BFIN_MEM_ACCESS_CORE : BFIN_MEM_ACCESS_IDMA;
406#ifdef COREB_L1_CODE_START
Mike Frysingerfb4b5d32009-06-29 14:20:10 -0400407 if (in_mem_const(addr, size, COREB_L1_CODE_START, COREB_L1_CODE_LENGTH))
Mike Frysingere56e03b2009-06-07 16:31:52 -0400408 return cpu == 1 ? BFIN_MEM_ACCESS_ITEST : BFIN_MEM_ACCESS_IDMA;
409 if (in_mem_const(addr, size, COREB_L1_SCRATCH_START, L1_SCRATCH_LENGTH))
410 return cpu == 1 ? BFIN_MEM_ACCESS_CORE_ONLY : -EFAULT;
Mike Frysingerfb4b5d32009-06-29 14:20:10 -0400411 if (in_mem_const(addr, size, COREB_L1_DATA_A_START, COREB_L1_DATA_A_LENGTH))
Mike Frysingere56e03b2009-06-07 16:31:52 -0400412 return cpu == 1 ? BFIN_MEM_ACCESS_CORE : BFIN_MEM_ACCESS_IDMA;
Mike Frysingerfb4b5d32009-06-29 14:20:10 -0400413 if (in_mem_const(addr, size, COREB_L1_DATA_B_START, COREB_L1_DATA_B_LENGTH))
Mike Frysingere56e03b2009-06-07 16:31:52 -0400414 return cpu == 1 ? BFIN_MEM_ACCESS_CORE : BFIN_MEM_ACCESS_IDMA;
415#endif
416 if (in_mem_const(addr, size, L2_START, L2_LENGTH))
417 return BFIN_MEM_ACCESS_CORE;
418
419 if (addr >= SYSMMR_BASE)
420 return BFIN_MEM_ACCESS_CORE_ONLY;
421
Bernd Schmidt13048f82009-09-23 16:47:16 +0000422 switch (in_async(addr, size)) {
423 case 0: return -EFAULT;
424 case 1: return BFIN_MEM_ACCESS_CORE;
425 case 2: /* fall through */;
426 }
Mike Frysingere56e03b2009-06-07 16:31:52 -0400427
428 if (in_mem_const(addr, size, BOOT_ROM_START, BOOT_ROM_LENGTH))
429 return BFIN_MEM_ACCESS_CORE;
430 if (in_mem_const(addr, size, L1_ROM_START, L1_ROM_LENGTH))
431 return BFIN_MEM_ACCESS_DMA;
432
433 return -EFAULT;
434}
435
Bryan Wu1394f032007-05-06 14:50:22 -0700436#if defined(CONFIG_ACCESS_CHECK)
Mike Frysingera43b7392009-06-04 19:24:31 +0000437#ifdef CONFIG_ACCESS_OK_L1
438__attribute__((l1_text))
439#endif
Robin Getzb03b08b2007-12-23 22:57:01 +0800440/* Return 1 if access to memory range is OK, 0 otherwise */
Bryan Wu1394f032007-05-06 14:50:22 -0700441int _access_ok(unsigned long addr, unsigned long size)
442{
Bernd Schmidt13048f82009-09-23 16:47:16 +0000443 int aret;
444
Bernd Schmidtbc41bb12007-10-10 17:54:19 +0800445 if (size == 0)
446 return 1;
Mike Frysingere56e03b2009-06-07 16:31:52 -0400447 /* Check that things do not wrap around */
448 if (addr > ULONG_MAX - size)
Bryan Wu1394f032007-05-06 14:50:22 -0700449 return 0;
Mike Frysinger1f83b8f2007-07-12 22:58:21 +0800450 if (segment_eq(get_fs(), KERNEL_DS))
Bryan Wu1394f032007-05-06 14:50:22 -0700451 return 1;
452#ifdef CONFIG_MTD_UCLINUX
Mike Frysingere56e03b2009-06-07 16:31:52 -0400453 if (1)
454#else
455 if (0)
456#endif
457 {
458 if (in_mem(addr, size, memory_start, memory_end))
459 return 1;
460 if (in_mem(addr, size, memory_mtd_end, physical_mem_end))
461 return 1;
462# ifndef CONFIG_ROMFS_ON_MTD
463 if (0)
464# endif
465 /* For XIP, allow user space to use pointers within the ROMFS. */
466 if (in_mem(addr, size, memory_mtd_start, memory_mtd_end))
467 return 1;
468 } else {
469 if (in_mem(addr, size, memory_start, physical_mem_end))
470 return 1;
471 }
472
473 if (in_mem(addr, size, (unsigned long)__init_begin, (unsigned long)__init_end))
Bryan Wu1394f032007-05-06 14:50:22 -0700474 return 1;
Bernd Schmidtd5adb022008-04-24 03:06:15 +0800475
Mike Frysingere56e03b2009-06-07 16:31:52 -0400476 if (in_mem_const(addr, size, L1_CODE_START, L1_CODE_LENGTH))
477 return 1;
478 if (in_mem_const_off(addr, size, _etext_l1 - _stext_l1, L1_CODE_START, L1_CODE_LENGTH))
479 return 1;
480 if (in_mem_const_off(addr, size, _ebss_l1 - _sdata_l1, L1_DATA_A_START, L1_DATA_A_LENGTH))
481 return 1;
482 if (in_mem_const_off(addr, size, _ebss_b_l1 - _sdata_b_l1, L1_DATA_B_START, L1_DATA_B_LENGTH))
483 return 1;
484#ifdef COREB_L1_CODE_START
Mike Frysingerfb4b5d32009-06-29 14:20:10 -0400485 if (in_mem_const(addr, size, COREB_L1_CODE_START, COREB_L1_CODE_LENGTH))
Mike Frysingere56e03b2009-06-07 16:31:52 -0400486 return 1;
487 if (in_mem_const(addr, size, COREB_L1_SCRATCH_START, L1_SCRATCH_LENGTH))
488 return 1;
Mike Frysingerfb4b5d32009-06-29 14:20:10 -0400489 if (in_mem_const(addr, size, COREB_L1_DATA_A_START, COREB_L1_DATA_A_LENGTH))
Mike Frysingere56e03b2009-06-07 16:31:52 -0400490 return 1;
Mike Frysingerfb4b5d32009-06-29 14:20:10 -0400491 if (in_mem_const(addr, size, COREB_L1_DATA_B_START, COREB_L1_DATA_B_LENGTH))
Bernd Schmidtd5adb022008-04-24 03:06:15 +0800492 return 1;
493#endif
Bernd Schmidt13048f82009-09-23 16:47:16 +0000494
Barry Song41c3e332010-06-29 08:43:38 +0000495#ifndef CONFIG_EXCEPTION_L1_SCRATCH
496 if (in_mem_const(addr, size, (unsigned long)l1_stack_base, l1_stack_len))
497 return 1;
498#endif
499
Bernd Schmidt13048f82009-09-23 16:47:16 +0000500 aret = in_async(addr, size);
501 if (aret < 2)
502 return aret;
503
Mike Frysingere56e03b2009-06-07 16:31:52 -0400504 if (in_mem_const_off(addr, size, _ebss_l2 - _stext_l2, L2_START, L2_LENGTH))
Bryan Wu1394f032007-05-06 14:50:22 -0700505 return 1;
Mike Frysingere56e03b2009-06-07 16:31:52 -0400506
507 if (in_mem_const(addr, size, BOOT_ROM_START, BOOT_ROM_LENGTH))
Bryan Wu1394f032007-05-06 14:50:22 -0700508 return 1;
Mike Frysingere56e03b2009-06-07 16:31:52 -0400509 if (in_mem_const(addr, size, L1_ROM_START, L1_ROM_LENGTH))
Bryan Wu1394f032007-05-06 14:50:22 -0700510 return 1;
Mike Frysingere56e03b2009-06-07 16:31:52 -0400511
Bryan Wu1394f032007-05-06 14:50:22 -0700512 return 0;
513}
514EXPORT_SYMBOL(_access_ok);
515#endif /* CONFIG_ACCESS_CHECK */