[PARISC] fix ENTRY() and ENDPROC() for 64bit-parisc
[deliverable/linux.git] / arch / parisc / kernel / syscall.S
CommitLineData
1da177e4
LT
1/*
2 * Linux/PA-RISC Project (http://www.parisc-linux.org/)
3 *
4 * System call entry code Copyright (c) Matthew Wilcox 1999 <willy@bofh.ai>
5 * Licensed under the GNU GPL.
6 * thanks to Philipp Rumpf, Mike Shaver and various others
7 * sorry about the wall, puffin..
8 */
9
0013a854 10#include <asm/asm-offsets.h>
1da177e4
LT
11#include <asm/unistd.h>
12#include <asm/errno.h>
13#include <asm/psw.h>
14#include <asm/thread_info.h>
15
16#include <asm/assembly.h>
17#include <asm/processor.h>
18
19 /* We fill the empty parts of the gateway page with
20 * something that will kill the kernel or a
21 * userspace application.
22 */
23#define KILL_INSN break 0,0
24
413059f2 25#ifdef CONFIG_64BIT
1da177e4
LT
26 .level 2.0w
27#else
28 .level 1.1
29#endif
30
1da177e4
LT
31 .text
32
33 .import syscall_exit,code
34 .import syscall_exit_rfi,code
35 .export linux_gateway_page
36
37 /* Linux gateway page is aliased to virtual page 0 in the kernel
38 * address space. Since it is a gateway page it cannot be
39 * dereferenced, so null pointers will still fault. We start
40 * the actual entry point at 0x100. We put break instructions
41 * at the beginning of the page to trap null indirect function
42 * pointers.
43 */
44
2fd83038 45 .align ASM_PAGE_SIZE
1da177e4
LT
46linux_gateway_page:
47
48 /* ADDRESS 0x00 to 0xb0 = 176 bytes / 4 bytes per insn = 44 insns */
49 .rept 44
50 KILL_INSN
51 .endr
52
53 /* ADDRESS 0xb0 to 0xb4, lws uses 1 insns for entry */
54 /* Light-weight-syscall entry must always be located at 0xb0 */
55 /* WARNING: Keep this number updated with table size changes */
56#define __NR_lws_entries (2)
57
58lws_entry:
59 /* Unconditional branch to lws_start, located on the
60 same gateway page */
61 b,n lws_start
62
63 /* Fill from 0xb4 to 0xe0 */
64 .rept 11
65 KILL_INSN
66 .endr
67
68 /* This function MUST be located at 0xe0 for glibc's threading
69 mechanism to work. DO NOT MOVE THIS CODE EVER! */
70set_thread_pointer:
71 gate .+8, %r0 /* increase privilege */
72 depi 3, 31, 2, %r31 /* Ensure we return into user mode. */
73 be 0(%sr7,%r31) /* return to user space */
74 mtctl %r26, %cr27 /* move arg0 to the control register */
75
76 /* Increase the chance of trapping if random jumps occur to this
77 address, fill from 0xf0 to 0x100 */
78 .rept 4
79 KILL_INSN
80 .endr
81
82/* This address must remain fixed at 0x100 for glibc's syscalls to work */
83 .align 256
84linux_gateway_entry:
85 gate .+8, %r0 /* become privileged */
86 mtsp %r0,%sr4 /* get kernel space into sr4 */
87 mtsp %r0,%sr5 /* get kernel space into sr5 */
88 mtsp %r0,%sr6 /* get kernel space into sr6 */
89 mfsp %sr7,%r1 /* save user sr7 */
90 mtsp %r1,%sr3 /* and store it in sr3 */
91
413059f2 92#ifdef CONFIG_64BIT
1da177e4
LT
93 /* for now we can *always* set the W bit on entry to the syscall
94 * since we don't support wide userland processes. We could
95 * also save the current SM other than in r0 and restore it on
96 * exit from the syscall, and also use that value to know
97 * whether to do narrow or wide syscalls. -PB
98 */
99 ssm PSW_SM_W, %r1
100 extrd,u %r1,PSW_W_BIT,1,%r1
101 /* sp must be aligned on 4, so deposit the W bit setting into
102 * the bottom of sp temporarily */
103 or,ev %r1,%r30,%r30
104 b,n 1f
105 /* The top halves of argument registers must be cleared on syscall
106 * entry from narrow executable.
107 */
108 depdi 0, 31, 32, %r26
109 depdi 0, 31, 32, %r25
110 depdi 0, 31, 32, %r24
111 depdi 0, 31, 32, %r23
112 depdi 0, 31, 32, %r22
113 depdi 0, 31, 32, %r21
1141:
115#endif
116 mfctl %cr30,%r1
117 xor %r1,%r30,%r30 /* ye olde xor trick */
118 xor %r1,%r30,%r1
119 xor %r1,%r30,%r30
120
121 ldo THREAD_SZ_ALGN+FRAME_SIZE(%r30),%r30 /* set up kernel stack */
122
123 /* N.B.: It is critical that we don't set sr7 to 0 until r30
124 * contains a valid kernel stack pointer. It is also
125 * critical that we don't start using the kernel stack
126 * until after sr7 has been set to 0.
127 */
128
129 mtsp %r0,%sr7 /* get kernel space into sr7 */
130 STREGM %r1,FRAME_SIZE(%r30) /* save r1 (usp) here for now */
131 mfctl %cr30,%r1 /* get task ptr in %r1 */
132 LDREG TI_TASK(%r1),%r1
133
134 /* Save some registers for sigcontext and potential task
135 switch (see entry.S for the details of which ones are
136 saved/restored). TASK_PT_PSW is zeroed so we can see whether
137 a process is on a syscall or not. For an interrupt the real
138 PSW value is stored. This is needed for gdb and sys_ptrace. */
139 STREG %r0, TASK_PT_PSW(%r1)
140 STREG %r2, TASK_PT_GR2(%r1) /* preserve rp */
141 STREG %r19, TASK_PT_GR19(%r1)
142
143 LDREGM -FRAME_SIZE(%r30), %r2 /* get users sp back */
413059f2 144#ifdef CONFIG_64BIT
1da177e4
LT
145 extrd,u %r2,63,1,%r19 /* W hidden in bottom bit */
146#if 0
147 xor %r19,%r2,%r2 /* clear bottom bit */
148 depd,z %r19,1,1,%r19
149 std %r19,TASK_PT_PSW(%r1)
150#endif
151#endif
152 STREG %r2, TASK_PT_GR30(%r1) /* ... and save it */
153
aa0eecb0 154 STREG %r20, TASK_PT_GR20(%r1) /* Syscall number */
1da177e4
LT
155 STREG %r21, TASK_PT_GR21(%r1)
156 STREG %r22, TASK_PT_GR22(%r1)
157 STREG %r23, TASK_PT_GR23(%r1) /* 4th argument */
158 STREG %r24, TASK_PT_GR24(%r1) /* 3rd argument */
159 STREG %r25, TASK_PT_GR25(%r1) /* 2nd argument */
160 STREG %r26, TASK_PT_GR26(%r1) /* 1st argument */
161 STREG %r27, TASK_PT_GR27(%r1) /* user dp */
162 STREG %r28, TASK_PT_GR28(%r1) /* return value 0 */
163 STREG %r28, TASK_PT_ORIG_R28(%r1) /* return value 0 (saved for signals) */
164 STREG %r29, TASK_PT_GR29(%r1) /* return value 1 */
165 STREG %r31, TASK_PT_GR31(%r1) /* preserve syscall return ptr */
166
167 ldo TASK_PT_FR0(%r1), %r27 /* save fpregs from the kernel */
168 save_fp %r27 /* or potential task switch */
169
170 mfctl %cr11, %r27 /* i.e. SAR */
171 STREG %r27, TASK_PT_SAR(%r1)
172
173 loadgp
174
413059f2 175#ifdef CONFIG_64BIT
1da177e4
LT
176 ldo -16(%r30),%r29 /* Reference param save area */
177 copy %r19,%r2 /* W bit back to r2 */
178#else
179 /* no need to save these on stack in wide mode because the first 8
180 * args are passed in registers */
181 stw %r22, -52(%r30) /* 5th argument */
182 stw %r21, -56(%r30) /* 6th argument */
183#endif
184
185 /* Are we being ptraced? */
186 mfctl %cr30, %r1
187 LDREG TI_TASK(%r1),%r1
188 LDREG TASK_PTRACE(%r1), %r1
189 bb,<,n %r1,31,.Ltracesys
190
191 /* Note! We cannot use the syscall table that is mapped
192 nearby since the gateway page is mapped execute-only. */
193
413059f2 194#ifdef CONFIG_64BIT
1da177e4
LT
195 ldil L%sys_call_table, %r1
196 or,= %r2,%r2,%r2
197 addil L%(sys_call_table64-sys_call_table), %r1
198 ldo R%sys_call_table(%r1), %r19
199 or,= %r2,%r2,%r2
200 ldo R%sys_call_table64(%r1), %r19
201#else
202 ldil L%sys_call_table, %r1
203 ldo R%sys_call_table(%r1), %r19
204#endif
205 comiclr,>>= __NR_Linux_syscalls, %r20, %r0
206 b,n .Lsyscall_nosys
207
208 LDREGX %r20(%r19), %r19
209
210 /* If this is a sys_rt_sigreturn call, and the signal was received
211 * when not in_syscall, then we want to return via syscall_exit_rfi,
212 * not syscall_exit. Signal no. in r20, in_syscall in r25 (see
213 * trampoline code in signal.c).
214 */
215 ldi __NR_rt_sigreturn,%r2
216 comb,= %r2,%r20,.Lrt_sigreturn
217.Lin_syscall:
218 ldil L%syscall_exit,%r2
219 be 0(%sr7,%r19)
220 ldo R%syscall_exit(%r2),%r2
221.Lrt_sigreturn:
222 comib,<> 0,%r25,.Lin_syscall
223 ldil L%syscall_exit_rfi,%r2
224 be 0(%sr7,%r19)
225 ldo R%syscall_exit_rfi(%r2),%r2
226
227 /* Note! Because we are not running where we were linked, any
228 calls to functions external to this file must be indirect. To
229 be safe, we apply the opposite rule to functions within this
230 file, with local labels given to them to ensure correctness. */
231
232.Lsyscall_nosys:
233syscall_nosys:
234 ldil L%syscall_exit,%r1
235 be R%syscall_exit(%sr7,%r1)
236 ldo -ENOSYS(%r0),%r28 /* set errno */
237
238
239/* Warning! This trace code is a virtual duplicate of the code above so be
240 * sure to maintain both! */
241.Ltracesys:
242tracesys:
243 /* Need to save more registers so the debugger can see where we
244 * are. This saves only the lower 8 bits of PSW, so that the C
245 * bit is still clear on syscalls, and the D bit is set if this
246 * full register save path has been executed. We check the D
247 * bit on syscall_return_rfi to determine which registers to
248 * restore. An interrupt results in a full PSW saved with the
249 * C bit set, a non-straced syscall entry results in C and D clear
250 * in the saved PSW.
251 */
252 ldo -THREAD_SZ_ALGN-FRAME_SIZE(%r30),%r1 /* get task ptr */
253 LDREG TI_TASK(%r1), %r1
254 ssm 0,%r2
255 STREG %r2,TASK_PT_PSW(%r1) /* Lower 8 bits only!! */
256 mfsp %sr0,%r2
257 STREG %r2,TASK_PT_SR0(%r1)
258 mfsp %sr1,%r2
259 STREG %r2,TASK_PT_SR1(%r1)
260 mfsp %sr2,%r2
261 STREG %r2,TASK_PT_SR2(%r1)
262 mfsp %sr3,%r2
263 STREG %r2,TASK_PT_SR3(%r1)
264 STREG %r2,TASK_PT_SR4(%r1)
265 STREG %r2,TASK_PT_SR5(%r1)
266 STREG %r2,TASK_PT_SR6(%r1)
267 STREG %r2,TASK_PT_SR7(%r1)
268 STREG %r2,TASK_PT_IASQ0(%r1)
269 STREG %r2,TASK_PT_IASQ1(%r1)
270 LDREG TASK_PT_GR31(%r1),%r2
271 STREG %r2,TASK_PT_IAOQ0(%r1)
272 ldo 4(%r2),%r2
273 STREG %r2,TASK_PT_IAOQ1(%r1)
274 ldo TASK_REGS(%r1),%r2
275 /* reg_save %r2 */
276 STREG %r3,PT_GR3(%r2)
277 STREG %r4,PT_GR4(%r2)
278 STREG %r5,PT_GR5(%r2)
279 STREG %r6,PT_GR6(%r2)
280 STREG %r7,PT_GR7(%r2)
281 STREG %r8,PT_GR8(%r2)
282 STREG %r9,PT_GR9(%r2)
283 STREG %r10,PT_GR10(%r2)
284 STREG %r11,PT_GR11(%r2)
285 STREG %r12,PT_GR12(%r2)
286 STREG %r13,PT_GR13(%r2)
287 STREG %r14,PT_GR14(%r2)
288 STREG %r15,PT_GR15(%r2)
289 STREG %r16,PT_GR16(%r2)
290 STREG %r17,PT_GR17(%r2)
291 STREG %r18,PT_GR18(%r2)
292 /* Finished saving things for the debugger */
293
294 ldil L%syscall_trace,%r1
295 ldil L%tracesys_next,%r2
296 be R%syscall_trace(%sr7,%r1)
297 ldo R%tracesys_next(%r2),%r2
298
299tracesys_next:
300 ldil L%sys_call_table,%r1
301 ldo R%sys_call_table(%r1), %r19
302
303 ldo -THREAD_SZ_ALGN-FRAME_SIZE(%r30),%r1 /* get task ptr */
304 LDREG TI_TASK(%r1), %r1
305 LDREG TASK_PT_GR20(%r1), %r20
306 LDREG TASK_PT_GR26(%r1), %r26 /* Restore the users args */
307 LDREG TASK_PT_GR25(%r1), %r25
308 LDREG TASK_PT_GR24(%r1), %r24
309 LDREG TASK_PT_GR23(%r1), %r23
413059f2 310#ifdef CONFIG_64BIT
1da177e4
LT
311 LDREG TASK_PT_GR22(%r1), %r22
312 LDREG TASK_PT_GR21(%r1), %r21
313 ldo -16(%r30),%r29 /* Reference param save area */
314#endif
315
316 comiclr,>>= __NR_Linux_syscalls, %r20, %r0
317 b,n .Lsyscall_nosys
318
319 LDREGX %r20(%r19), %r19
320
321 /* If this is a sys_rt_sigreturn call, and the signal was received
322 * when not in_syscall, then we want to return via syscall_exit_rfi,
323 * not syscall_exit. Signal no. in r20, in_syscall in r25 (see
324 * trampoline code in signal.c).
325 */
326 ldi __NR_rt_sigreturn,%r2
327 comb,= %r2,%r20,.Ltrace_rt_sigreturn
328.Ltrace_in_syscall:
329 ldil L%tracesys_exit,%r2
330 be 0(%sr7,%r19)
331 ldo R%tracesys_exit(%r2),%r2
332
333 /* Do *not* call this function on the gateway page, because it
334 makes a direct call to syscall_trace. */
335
336tracesys_exit:
337 ldo -THREAD_SZ_ALGN-FRAME_SIZE(%r30),%r1 /* get task ptr */
338 LDREG TI_TASK(%r1), %r1
413059f2 339#ifdef CONFIG_64BIT
1da177e4
LT
340 ldo -16(%r30),%r29 /* Reference param save area */
341#endif
342 bl syscall_trace, %r2
343 STREG %r28,TASK_PT_GR28(%r1) /* save return value now */
344 ldo -THREAD_SZ_ALGN-FRAME_SIZE(%r30),%r1 /* get task ptr */
345 LDREG TI_TASK(%r1), %r1
346 LDREG TASK_PT_GR28(%r1), %r28 /* Restore return val. */
347
348 ldil L%syscall_exit,%r1
349 be,n R%syscall_exit(%sr7,%r1)
350
351.Ltrace_rt_sigreturn:
352 comib,<> 0,%r25,.Ltrace_in_syscall
353 ldil L%tracesys_sigexit,%r2
354 be 0(%sr7,%r19)
355 ldo R%tracesys_sigexit(%r2),%r2
356
357tracesys_sigexit:
358 ldo -THREAD_SZ_ALGN-FRAME_SIZE(%r30),%r1 /* get task ptr */
359 LDREG 0(%r1), %r1
413059f2 360#ifdef CONFIG_64BIT
1da177e4
LT
361 ldo -16(%r30),%r29 /* Reference param save area */
362#endif
363 bl syscall_trace, %r2
364 nop
365
366 ldil L%syscall_exit_rfi,%r1
367 be,n R%syscall_exit_rfi(%sr7,%r1)
368
369
370 /*********************************************************
371 Light-weight-syscall code
372
373 r20 - lws number
374 r26,r25,r24,r23,r22 - Input registers
375 r28 - Function return register
376 r21 - Error code.
377
378 Scracth: Any of the above that aren't being
379 currently used, including r1.
380
381 Return pointer: r31 (Not usable)
382
383 Error codes returned by entry path:
384
385 ENOSYS - r20 was an invalid LWS number.
386
387 *********************************************************/
388lws_start:
389 /* Gate and ensure we return to userspace */
390 gate .+8, %r0
391 depi 3, 31, 2, %r31 /* Ensure we return to userspace */
392
413059f2 393#ifdef CONFIG_64BIT
1da177e4
LT
394 /* FIXME: If we are a 64-bit kernel just
395 * turn this on unconditionally.
396 */
397 ssm PSW_SM_W, %r1
398 extrd,u %r1,PSW_W_BIT,1,%r1
399 /* sp must be aligned on 4, so deposit the W bit setting into
400 * the bottom of sp temporarily */
401 or,ev %r1,%r30,%r30
402
403 /* Clip LWS number to a 32-bit value always */
404 depdi 0, 31, 32, %r20
405#endif
406
407 /* Is the lws entry number valid? */
408 comiclr,>>= __NR_lws_entries, %r20, %r0
409 b,n lws_exit_nosys
410
411 /* WARNING: Trashing sr2 and sr3 */
412 mfsp %sr7,%r1 /* get userspace into sr3 */
413 mtsp %r1,%sr3
414 mtsp %r0,%sr2 /* get kernel space into sr2 */
415
416 /* Load table start */
417 ldil L%lws_table, %r1
418 ldo R%lws_table(%r1), %r28 /* Scratch use of r28 */
419 LDREGX %r20(%sr2,r28), %r21 /* Scratch use of r21 */
420
421 /* Jump to lws, lws table pointers already relocated */
422 be,n 0(%sr2,%r21)
423
424lws_exit_nosys:
425 ldo -ENOSYS(%r0),%r21 /* set errno */
426 /* Fall through: Return to userspace */
427
428lws_exit:
413059f2 429#ifdef CONFIG_64BIT
1da177e4
LT
430 /* decide whether to reset the wide mode bit
431 *
432 * For a syscall, the W bit is stored in the lowest bit
433 * of sp. Extract it and reset W if it is zero */
434 extrd,u,*<> %r30,63,1,%r1
435 rsm PSW_SM_W, %r0
436 /* now reset the lowest bit of sp if it was set */
437 xor %r30,%r1,%r30
438#endif
439 be,n 0(%sr3, %r31)
440
441
442
443 /***************************************************
444 Implementing CAS as an atomic operation:
445
446 %r26 - Address to examine
447 %r25 - Old value to check (old)
448 %r24 - New value to set (new)
449 %r28 - Return prev through this register.
450 %r21 - Kernel error code
451
452 If debugging is DISabled:
453
454 %r21 has the following meanings:
455
456 EAGAIN - CAS is busy, ldcw failed, try again.
457 EFAULT - Read or write failed.
458
459 If debugging is enabled:
460
461 EDEADLOCK - CAS called recursively.
462 EAGAIN && r28 == 1 - CAS is busy. Lock contended.
463 EAGAIN && r28 == 2 - CAS is busy. ldcw failed.
464 EFAULT - Read or write failed.
465
466 Scratch: r20, r28, r1
467
468 ****************************************************/
469
470 /* Do not enable LWS debugging */
471#define ENABLE_LWS_DEBUG 0
472
473 /* ELF64 Process entry path */
474lws_compare_and_swap64:
413059f2 475#ifdef CONFIG_64BIT
1da177e4
LT
476 b,n lws_compare_and_swap
477#else
478 /* If we are not a 64-bit kernel, then we don't
479 * implement having 64-bit input registers
480 */
481 b,n lws_exit_nosys
482#endif
483
484 /* ELF32 Process entry path */
485lws_compare_and_swap32:
413059f2 486#ifdef CONFIG_64BIT
1da177e4
LT
487 /* Clip all the input registers */
488 depdi 0, 31, 32, %r26
489 depdi 0, 31, 32, %r25
490 depdi 0, 31, 32, %r24
491#endif
492
493lws_compare_and_swap:
494#ifdef CONFIG_SMP
495 /* Load start of lock table */
496 ldil L%lws_lock_start, %r20
497 ldo R%lws_lock_start(%r20), %r28
498
499 /* Extract four bits from r26 and hash lock (Bits 4-7) */
500 extru %r26, 27, 4, %r20
501
502 /* Find lock to use, the hash is either one of 0 to
503 15, multiplied by 16 (keep it 16-byte aligned)
504 and add to the lock table offset. */
505 shlw %r20, 4, %r20
506 add %r20, %r28, %r20
507
508# ifdef ENABLE_LWS_DEBUG
509 /*
510 DEBUG, check for deadlock!
511 If the thread register values are the same
512 then we were the one that locked it last and
513 this is a recurisve call that will deadlock.
514 We *must* giveup this call and fail.
515 */
516 ldw 4(%sr2,%r20), %r28 /* Load thread register */
aa0eecb0 517 /* WARNING: If cr27 cycles to the same value we have problems */
1da177e4
LT
518 mfctl %cr27, %r21 /* Get current thread register */
519 cmpb,<>,n %r21, %r28, cas_lock /* Called recursive? */
520 b lws_exit /* Return error! */
521 ldo -EDEADLOCK(%r0), %r21
522cas_lock:
523 cmpb,=,n %r0, %r28, cas_nocontend /* Is nobody using it? */
524 ldo 1(%r0), %r28 /* 1st case */
525 b lws_exit /* Contended... */
526 ldo -EAGAIN(%r0), %r21 /* Spin in userspace */
527cas_nocontend:
528# endif
529/* ENABLE_LWS_DEBUG */
530
64f49532 531 LDCW 0(%sr2,%r20), %r28 /* Try to acquire the lock */
1da177e4
LT
532 cmpb,<>,n %r0, %r28, cas_action /* Did we get it? */
533cas_wouldblock:
534 ldo 2(%r0), %r28 /* 2nd case */
535 b lws_exit /* Contended... */
536 ldo -EAGAIN(%r0), %r21 /* Spin in userspace */
537#endif
538/* CONFIG_SMP */
539
540 /*
541 prev = *addr;
542 if ( prev == old )
543 *addr = new;
544 return prev;
545 */
546
547 /* NOTES:
548 This all works becuse intr_do_signal
549 and schedule both check the return iasq
550 and see that we are on the kernel page
551 so this process is never scheduled off
552 or is ever sent any signal of any sort,
553 thus it is wholly atomic from usrspaces
554 perspective
555 */
556cas_action:
557#if defined CONFIG_SMP && defined ENABLE_LWS_DEBUG
558 /* DEBUG */
559 mfctl %cr27, %r1
560 stw %r1, 4(%sr2,%r20)
561#endif
562 /* The load and store could fail */
5631: ldw 0(%sr3,%r26), %r28
564 sub,<> %r28, %r25, %r0
5652: stw %r24, 0(%sr3,%r26)
566#ifdef CONFIG_SMP
567 /* Free lock */
568 stw %r20, 0(%sr2,%r20)
569# ifdef ENABLE_LWS_DEBUG
570 /* Clear thread register indicator */
571 stw %r0, 4(%sr2,%r20)
572# endif
573#endif
574 /* Return to userspace, set no error */
575 b lws_exit
576 copy %r0, %r21
577
5783:
579 /* Error occured on load or store */
580#ifdef CONFIG_SMP
581 /* Free lock */
582 stw %r20, 0(%sr2,%r20)
583# ifdef ENABLE_LWS_DEBUG
584 stw %r0, 4(%sr2,%r20)
585# endif
586#endif
587 b lws_exit
588 ldo -EFAULT(%r0),%r21 /* set errno */
589 nop
590 nop
591 nop
592 nop
593
594 /* Two exception table entries, one for the load,
595 the other for the store. Either return -EFAULT.
596 Each of the entries must be relocated. */
597 .section __ex_table,"aw"
413059f2 598#ifdef CONFIG_64BIT
1da177e4
LT
599 /* Pad the address calculation */
600 .word 0,(2b - linux_gateway_page)
601 .word 0,(3b - linux_gateway_page)
602#else
603 .word (2b - linux_gateway_page)
604 .word (3b - linux_gateway_page)
605#endif
606 .previous
607
608 .section __ex_table,"aw"
413059f2 609#ifdef CONFIG_64BIT
1da177e4
LT
610 /* Pad the address calculation */
611 .word 0,(1b - linux_gateway_page)
612 .word 0,(3b - linux_gateway_page)
613#else
614 .word (1b - linux_gateway_page)
615 .word (3b - linux_gateway_page)
616#endif
617 .previous
618
619end_compare_and_swap:
620
621 /* Make sure nothing else is placed on this page */
2fd83038 622 .align ASM_PAGE_SIZE
1da177e4
LT
623 .export end_linux_gateway_page
624end_linux_gateway_page:
625
626 /* Relocate symbols assuming linux_gateway_page is mapped
627 to virtual address 0x0 */
413059f2 628#ifdef CONFIG_64BIT
1da177e4
LT
629 /* FIXME: The code will always be on the gateay page
630 and thus it will be on the first 4k, the
631 assembler seems to think that the final
632 subtraction result is only a word in
633 length, so we pad the value.
634 */
635#define LWS_ENTRY(_name_) .word 0,(lws_##_name_ - linux_gateway_page)
636#else
637#define LWS_ENTRY(_name_) .word (lws_##_name_ - linux_gateway_page)
638#endif
639
1bcdd854
HD
640 .section .rodata,"a"
641
2fd83038 642 .align ASM_PAGE_SIZE
1da177e4
LT
643 /* Light-weight-syscall table */
644 /* Start of lws table. */
645 .export lws_table
646.Llws_table:
647lws_table:
648 LWS_ENTRY(compare_and_swap32) /* 0 - ELF32 Atomic compare and swap */
649 LWS_ENTRY(compare_and_swap64) /* 1 - ELF64 Atomic compare and swap */
650 /* End of lws table */
651
2fd83038 652 .align ASM_PAGE_SIZE
1da177e4
LT
653 .export sys_call_table
654.Lsys_call_table:
655sys_call_table:
656#include "syscall_table.S"
657
413059f2 658#ifdef CONFIG_64BIT
2fd83038 659 .align ASM_PAGE_SIZE
1da177e4
LT
660 .export sys_call_table64
661.Lsys_call_table64:
662sys_call_table64:
663#define SYSCALL_TABLE_64BIT
664#include "syscall_table.S"
665#endif
666
667#ifdef CONFIG_SMP
668 /*
669 All light-weight-syscall atomic operations
670 will use this set of locks
671 */
672 .section .data
673 .align 4096
674 .export lws_lock_start
675.Llws_lock_start:
676lws_lock_start:
677 /* lws locks */
678 .align 16
679 .rept 16
680 /* Keep locks aligned at 16-bytes */
681 .word 1
682 .word 0
683 .word 0
684 .word 0
685 .endr
686 .previous
687#endif
688/* CONFIG_SMP for lws_lock_start */
689
690.end
691
692
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