cpuswitch.S revision 1.13 1 1.13 thorpej /* $NetBSD: cpuswitch.S,v 1.13 2002/08/14 23:23:06 thorpej Exp $ */
2 1.1 chris
3 1.1 chris /*
4 1.1 chris * Copyright (c) 1994-1998 Mark Brinicombe.
5 1.1 chris * Copyright (c) 1994 Brini.
6 1.1 chris * All rights reserved.
7 1.1 chris *
8 1.1 chris * This code is derived from software written for Brini by Mark Brinicombe
9 1.1 chris *
10 1.1 chris * Redistribution and use in source and binary forms, with or without
11 1.1 chris * modification, are permitted provided that the following conditions
12 1.1 chris * are met:
13 1.1 chris * 1. Redistributions of source code must retain the above copyright
14 1.1 chris * notice, this list of conditions and the following disclaimer.
15 1.1 chris * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 chris * notice, this list of conditions and the following disclaimer in the
17 1.1 chris * documentation and/or other materials provided with the distribution.
18 1.1 chris * 3. All advertising materials mentioning features or use of this software
19 1.1 chris * must display the following acknowledgement:
20 1.1 chris * This product includes software developed by Brini.
21 1.1 chris * 4. The name of the company nor the name of the author may be used to
22 1.1 chris * endorse or promote products derived from this software without specific
23 1.1 chris * prior written permission.
24 1.1 chris *
25 1.1 chris * THIS SOFTWARE IS PROVIDED BY BRINI ``AS IS'' AND ANY EXPRESS OR IMPLIED
26 1.1 chris * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
27 1.1 chris * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
28 1.1 chris * IN NO EVENT SHALL BRINI OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT,
29 1.1 chris * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
30 1.1 chris * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
31 1.1 chris * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
32 1.1 chris * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
33 1.1 chris * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
34 1.1 chris * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
35 1.1 chris * SUCH DAMAGE.
36 1.1 chris *
37 1.1 chris * RiscBSD kernel project
38 1.1 chris *
39 1.1 chris * cpuswitch.S
40 1.1 chris *
41 1.1 chris * cpu switching functions
42 1.1 chris *
43 1.1 chris * Created : 15/10/94
44 1.1 chris */
45 1.1 chris
46 1.1 chris #include "opt_armfpe.h"
47 1.1 chris
48 1.1 chris #include "assym.h"
49 1.1 chris #include <machine/param.h>
50 1.1 chris #include <machine/cpu.h>
51 1.1 chris #include <machine/frame.h>
52 1.1 chris #include <machine/asm.h>
53 1.1 chris
54 1.1 chris #undef IRQdisable
55 1.1 chris #undef IRQenable
56 1.1 chris
57 1.1 chris /*
58 1.1 chris * New experimental definitions of IRQdisable and IRQenable
59 1.1 chris * These keep FIQ's enabled since FIQ's are special.
60 1.1 chris */
61 1.1 chris
62 1.1 chris #define IRQdisable \
63 1.13 thorpej mrs r14, cpsr ; \
64 1.1 chris orr r14, r14, #(I32_bit) ; \
65 1.13 thorpej msr cpsr_c, r14 ; \
66 1.1 chris
67 1.1 chris #define IRQenable \
68 1.13 thorpej mrs r14, cpsr ; \
69 1.1 chris bic r14, r14, #(I32_bit) ; \
70 1.13 thorpej msr cpsr_c, r14 ; \
71 1.1 chris
72 1.1 chris /*
73 1.1 chris * setrunqueue() and remrunqueue()
74 1.1 chris *
75 1.1 chris * Functions to add and remove a process for the run queue.
76 1.1 chris */
77 1.1 chris
78 1.1 chris .text
79 1.1 chris
80 1.1 chris Lwhichqs:
81 1.1 chris .word _C_LABEL(sched_whichqs)
82 1.1 chris
83 1.1 chris Lqs:
84 1.1 chris .word _C_LABEL(sched_qs)
85 1.1 chris
86 1.1 chris /*
87 1.1 chris * On entry
88 1.1 chris * r0 = process
89 1.1 chris */
90 1.1 chris
91 1.1 chris ENTRY(setrunqueue)
92 1.1 chris /*
93 1.1 chris * Local register usage
94 1.1 chris * r0 = process
95 1.1 chris * r1 = queue
96 1.1 chris * r2 = &qs[queue] and temp
97 1.1 chris * r3 = temp
98 1.1 chris * r12 = whichqs
99 1.1 chris */
100 1.1 chris #ifdef DIAGNOSTIC
101 1.1 chris ldr r1, [r0, #(P_BACK)]
102 1.1 chris teq r1, #0x00000000
103 1.1 chris bne Lsetrunqueue_erg
104 1.1 chris
105 1.1 chris ldr r1, [r0, #(P_WCHAN)]
106 1.1 chris teq r1, #0x00000000
107 1.1 chris bne Lsetrunqueue_erg
108 1.1 chris #endif
109 1.1 chris
110 1.1 chris /* Get the priority of the queue */
111 1.1 chris ldrb r1, [r0, #(P_PRIORITY)]
112 1.1 chris
113 1.1 chris /* Indicate that there is a process on this queue */
114 1.1 chris ldr r12, Lwhichqs
115 1.12 chris mov r1, r1, lsr #2
116 1.1 chris ldr r2, [r12]
117 1.1 chris mov r3, #0x00000001
118 1.1 chris mov r3, r3, lsl r1
119 1.1 chris orr r2, r2, r3
120 1.1 chris str r2, [r12]
121 1.1 chris
122 1.1 chris /* Get the address of the queue */
123 1.1 chris ldr r2, Lqs
124 1.1 chris add r1, r2, r1, lsl # 3
125 1.1 chris
126 1.1 chris /* Hook the process in */
127 1.1 chris str r1, [r0, #(P_FORW)]
128 1.1 chris ldr r2, [r1, #(P_BACK)]
129 1.1 chris
130 1.1 chris str r0, [r1, #(P_BACK)]
131 1.1 chris #ifdef DIAGNOSTIC
132 1.1 chris teq r2, #0x00000000
133 1.1 chris beq Lsetrunqueue_erg
134 1.1 chris #endif
135 1.1 chris str r0, [r2, #(P_FORW)]
136 1.1 chris str r2, [r0, #(P_BACK)]
137 1.1 chris
138 1.1 chris mov pc, lr
139 1.1 chris
140 1.1 chris #ifdef DIAGNOSTIC
141 1.1 chris Lsetrunqueue_erg:
142 1.1 chris mov r2, r1
143 1.1 chris mov r1, r0
144 1.1 chris add r0, pc, #Ltext1 - . - 8
145 1.1 chris bl _C_LABEL(printf)
146 1.1 chris
147 1.1 chris ldr r2, Lqs
148 1.1 chris ldr r1, [r2]
149 1.1 chris add r0, pc, #Ltext2 - . - 8
150 1.1 chris b _C_LABEL(panic)
151 1.1 chris
152 1.1 chris Ltext1:
153 1.1 chris .asciz "setrunqueue : %08x %08x\n"
154 1.1 chris Ltext2:
155 1.1 chris .asciz "setrunqueue : [qs]=%08x qs=%08x\n"
156 1.1 chris .align 0
157 1.1 chris #endif
158 1.1 chris
159 1.1 chris /*
160 1.1 chris * On entry
161 1.1 chris * r0 = process
162 1.1 chris */
163 1.1 chris
164 1.1 chris ENTRY(remrunqueue)
165 1.1 chris /*
166 1.1 chris * Local register usage
167 1.1 chris * r0 = oldproc
168 1.1 chris * r1 = queue
169 1.1 chris * r2 = &qs[queue] and scratch
170 1.1 chris * r3 = scratch
171 1.1 chris * r12 = whichqs
172 1.1 chris */
173 1.1 chris
174 1.1 chris /* Get the priority of the queue */
175 1.1 chris ldrb r1, [r0, #(P_PRIORITY)]
176 1.1 chris mov r1, r1, lsr #2
177 1.1 chris
178 1.1 chris /* Unhook the process */
179 1.1 chris ldr r2, [r0, #(P_FORW)]
180 1.1 chris ldr r3, [r0, #(P_BACK)]
181 1.1 chris
182 1.1 chris str r3, [r2, #(P_BACK)]
183 1.1 chris str r2, [r3, #(P_FORW)]
184 1.1 chris
185 1.1 chris /* If the queue is now empty clear the queue not empty flag */
186 1.1 chris teq r2, r3
187 1.1 chris
188 1.1 chris /* This could be reworked to avoid the use of r4 */
189 1.1 chris ldreq r12, Lwhichqs
190 1.12 chris moveq r3, #0x00000001
191 1.1 chris ldreq r2, [r12]
192 1.1 chris moveq r3, r3, lsl r1
193 1.1 chris biceq r2, r2, r3
194 1.1 chris streq r2, [r12]
195 1.1 chris
196 1.1 chris /* Remove the back pointer for the process */
197 1.1 chris mov r1, #0x00000000
198 1.1 chris str r1, [r0, #(P_BACK)]
199 1.1 chris
200 1.1 chris mov pc, lr
201 1.1 chris
202 1.1 chris
203 1.1 chris /*
204 1.1 chris * cpuswitch()
205 1.1 chris *
206 1.1 chris * preforms a process context switch.
207 1.1 chris * This function has several entry points
208 1.1 chris */
209 1.1 chris
210 1.1 chris Lcurproc:
211 1.1 chris .word _C_LABEL(curproc)
212 1.1 chris
213 1.1 chris Lcurpcb:
214 1.1 chris .word _C_LABEL(curpcb)
215 1.1 chris
216 1.1 chris Lwant_resched:
217 1.1 chris .word _C_LABEL(want_resched)
218 1.1 chris
219 1.1 chris Lcpufuncs:
220 1.1 chris .word _C_LABEL(cpufuncs)
221 1.1 chris
222 1.1 chris .data
223 1.1 chris .global _C_LABEL(curpcb)
224 1.1 chris _C_LABEL(curpcb):
225 1.1 chris .word 0x00000000
226 1.1 chris .text
227 1.1 chris
228 1.1 chris Lblock_userspace_access:
229 1.1 chris .word _C_LABEL(block_userspace_access)
230 1.1 chris
231 1.1 chris /*
232 1.1 chris * Idle loop, exercised while waiting for a process to wake up.
233 1.1 chris */
234 1.7 chris /* LINTSTUB: Ignore */
235 1.4 chris ASENTRY_NP(idle)
236 1.7 chris
237 1.7 chris #if defined(LOCKDEBUG)
238 1.7 chris bl _C_LABEL(sched_unlock_idle)
239 1.7 chris #endif
240 1.1 chris /* Enable interrupts */
241 1.1 chris IRQenable
242 1.1 chris
243 1.1 chris ldr r3, Lcpufuncs
244 1.1 chris mov r0, #0
245 1.1 chris add lr, pc, #Lidle_slept - . - 8
246 1.1 chris ldr pc, [r3, #CF_SLEEP]
247 1.1 chris
248 1.7 chris /* should also call the uvm pageidlezero stuff */
249 1.7 chris
250 1.1 chris Lidle_slept:
251 1.1 chris
252 1.1 chris /* Disable interrupts while we check for an active queue */
253 1.1 chris IRQdisable
254 1.7 chris #if defined(LOCKDEBUG)
255 1.7 chris bl _C_LABEL(sched_lock_idle)
256 1.7 chris #endif
257 1.1 chris ldr r7, Lwhichqs
258 1.1 chris ldr r3, [r7]
259 1.1 chris teq r3, #0x00000000
260 1.1 chris
261 1.7 chris beq _ASM_LABEL(idle)
262 1.7 chris b Lidle_ret
263 1.1 chris
264 1.1 chris /*
265 1.1 chris * Find a new process to run, save the current context and
266 1.1 chris * load the new context
267 1.1 chris */
268 1.1 chris
269 1.1 chris ENTRY(cpu_switch)
270 1.1 chris /*
271 1.1 chris * Local register usage. Some of these registers are out of date.
272 1.1 chris * r1 = oldproc
273 1.1 chris * r2 = spl level
274 1.1 chris * r3 = whichqs
275 1.1 chris * r4 = queue
276 1.1 chris * r5 = &qs[queue]
277 1.1 chris * r6 = newproc
278 1.1 chris * r7 = scratch
279 1.1 chris */
280 1.1 chris stmfd sp!, {r4-r7, lr}
281 1.1 chris
282 1.1 chris /*
283 1.1 chris * Get the current process and indicate that there is no longer
284 1.11 thorpej * a valid process (curproc = 0). Zero the current PCB pointer
285 1.11 thorpej * while we're at it.
286 1.1 chris */
287 1.1 chris ldr r7, Lcurproc
288 1.11 thorpej ldr r6, Lcurpcb
289 1.1 chris mov r0, #0x00000000
290 1.11 thorpej ldr r1, [r7] /* r1 = curproc */
291 1.11 thorpej str r0, [r7] /* curproc = NULL */
292 1.11 thorpej str r0, [r6] /* curpcb = NULL */
293 1.1 chris
294 1.10 thorpej /* stash the old proc while we call functions */
295 1.10 thorpej mov r5, r1
296 1.1 chris
297 1.7 chris #if defined(LOCKDEBUG)
298 1.7 chris /* release the sched_lock before handling interrupts */
299 1.7 chris bl _C_LABEL(sched_unlock_idle)
300 1.7 chris #endif
301 1.7 chris
302 1.7 chris /* Lower the spl level to spl0 and get the current spl level. */
303 1.5 thorpej #ifdef __NEWINTR
304 1.5 thorpej mov r0, #(IPL_NONE)
305 1.5 thorpej bl _C_LABEL(_spllower)
306 1.5 thorpej #else /* ! __NEWINTR */
307 1.1 chris #ifdef spl0
308 1.1 chris mov r0, #(_SPL_0)
309 1.1 chris bl _C_LABEL(splx)
310 1.1 chris #else
311 1.1 chris bl _C_LABEL(spl0)
312 1.5 thorpej #endif /* spl0 */
313 1.5 thorpej #endif /* __NEWINTR */
314 1.1 chris
315 1.1 chris /* Push the old spl level onto the stack */
316 1.1 chris str r0, [sp, #-0x0004]!
317 1.1 chris
318 1.1 chris /* First phase : find a new process */
319 1.1 chris
320 1.7 chris /* rem: r5 = old proc */
321 1.7 chris
322 1.7 chris Lswitch_search:
323 1.1 chris IRQdisable
324 1.7 chris #if defined(LOCKDEBUG)
325 1.7 chris bl _C_LABEL(sched_lock_idle)
326 1.7 chris #endif
327 1.7 chris
328 1.1 chris /* Do we have any active queues */
329 1.1 chris ldr r7, Lwhichqs
330 1.1 chris ldr r3, [r7]
331 1.1 chris
332 1.1 chris /* If not we must idle until we do. */
333 1.1 chris teq r3, #0x00000000
334 1.4 chris beq _ASM_LABEL(idle)
335 1.7 chris Lidle_ret:
336 1.7 chris
337 1.10 thorpej /* put old proc back in r1 */
338 1.7 chris mov r1, r5
339 1.1 chris
340 1.1 chris /* rem: r1 = old proc */
341 1.1 chris /* rem: r3 = whichqs */
342 1.1 chris /* rem: interrupts are disabled */
343 1.1 chris
344 1.1 chris /*
345 1.1 chris * We have found an active queue. Currently we do not know which queue
346 1.1 chris * is active just that one of them is.
347 1.1 chris */
348 1.1 chris /* this is the ffs algorithm devised by d.seal and posted to
349 1.1 chris * comp.sys.arm on 16 Feb 1994.
350 1.1 chris */
351 1.1 chris rsb r5, r3, #0
352 1.1 chris ands r0, r3, r5
353 1.1 chris
354 1.1 chris adr r5, Lcpu_switch_ffs_table
355 1.1 chris
356 1.3 chris /* X = R0 */
357 1.3 chris orr r4, r0, r0, lsl #4 /* r4 = X * 0x11 */
358 1.3 chris orr r4, r4, r4, lsl #6 /* r4 = X * 0x451 */
359 1.3 chris rsb r4, r4, r4, lsl #16 /* r4 = X * 0x0450fbaf */
360 1.1 chris
361 1.1 chris /* used further down, saves SA stall */
362 1.1 chris ldr r6, Lqs
363 1.1 chris
364 1.3 chris /* now lookup in table indexed on top 6 bits of a4 */
365 1.1 chris ldrb r4, [ r5, r4, lsr #26 ]
366 1.1 chris
367 1.1 chris /* rem: r0 = bit mask of chosen queue (1 << r4) */
368 1.1 chris /* rem: r1 = old proc */
369 1.1 chris /* rem: r3 = whichqs */
370 1.1 chris /* rem: r4 = queue number */
371 1.1 chris /* rem: interrupts are disabled */
372 1.1 chris
373 1.1 chris /* Get the address of the queue (&qs[queue]) */
374 1.1 chris add r5, r6, r4, lsl #3
375 1.1 chris
376 1.1 chris /*
377 1.1 chris * Get the process from the queue and place the next process in
378 1.1 chris * the queue at the head. This basically unlinks the process at
379 1.1 chris * the head of the queue.
380 1.1 chris */
381 1.1 chris ldr r6, [r5, #(P_FORW)]
382 1.1 chris
383 1.1 chris /* rem: r6 = new process */
384 1.1 chris ldr r7, [r6, #(P_FORW)]
385 1.1 chris str r7, [r5, #(P_FORW)]
386 1.1 chris
387 1.1 chris /*
388 1.1 chris * Test to see if the queue is now empty. If the head of the queue
389 1.1 chris * points to the queue itself then there are no more processes in
390 1.1 chris * the queue. We can therefore clear the queue not empty flag held
391 1.1 chris * in r3.
392 1.1 chris */
393 1.1 chris
394 1.1 chris teq r5, r7
395 1.1 chris biceq r3, r3, r0
396 1.1 chris
397 1.1 chris /* rem: r0 = bit mask of chosen queue (1 << r4) - NOT NEEDED AN MORE */
398 1.1 chris
399 1.1 chris /* Fix the back pointer for the process now at the head of the queue. */
400 1.1 chris ldr r0, [r6, #(P_BACK)]
401 1.1 chris str r0, [r7, #(P_BACK)]
402 1.1 chris
403 1.1 chris /* Update the RAM copy of the queue not empty flags word. */
404 1.1 chris ldr r7, Lwhichqs
405 1.1 chris str r3, [r7]
406 1.1 chris
407 1.1 chris /* rem: r1 = old proc */
408 1.1 chris /* rem: r3 = whichqs - NOT NEEDED ANY MORE */
409 1.1 chris /* rem: r4 = queue number - NOT NEEDED ANY MORE */
410 1.1 chris /* rem: r6 = new process */
411 1.1 chris /* rem: interrupts are disabled */
412 1.1 chris
413 1.1 chris /* Clear the want_resched flag */
414 1.4 chris ldr r7, Lwant_resched
415 1.1 chris mov r0, #0x00000000
416 1.1 chris str r0, [r7]
417 1.1 chris
418 1.1 chris /*
419 1.1 chris * Clear the back pointer of the process we have removed from
420 1.1 chris * the head of the queue. The new process is isolated now.
421 1.1 chris */
422 1.1 chris str r0, [r6, #(P_BACK)]
423 1.1 chris
424 1.7 chris #if defined(LOCKDEBUG)
425 1.7 chris /*
426 1.7 chris * unlock the sched_lock, but leave interrupts off, for now.
427 1.7 chris */
428 1.7 chris mov r7, r1
429 1.7 chris bl _C_LABEL(sched_unlock_idle)
430 1.7 chris mov r1, r7
431 1.7 chris #endif
432 1.7 chris
433 1.1 chris /* p->p_cpu initialized in fork1() for single-processor */
434 1.1 chris
435 1.1 chris /* Process is now on a processor. */
436 1.1 chris mov r0, #SONPROC /* p->p_stat = SONPROC */
437 1.1 chris strb r0, [r6, #(P_STAT)]
438 1.1 chris
439 1.1 chris /* We have a new curproc now so make a note it */
440 1.1 chris ldr r7, Lcurproc
441 1.1 chris str r6, [r7]
442 1.1 chris
443 1.1 chris /* Hook in a new pcb */
444 1.1 chris ldr r7, Lcurpcb
445 1.1 chris ldr r0, [r6, #(P_ADDR)]
446 1.1 chris str r0, [r7]
447 1.1 chris
448 1.1 chris /* At this point we can allow IRQ's again. */
449 1.1 chris IRQenable
450 1.1 chris
451 1.1 chris /* rem: r1 = old proc */
452 1.1 chris /* rem: r6 = new process */
453 1.4 chris /* rem: interrupts are enabled */
454 1.1 chris
455 1.1 chris /*
456 1.1 chris * If the new process is the same as the process that called
457 1.1 chris * cpu_switch() then we do not need to save and restore any
458 1.1 chris * contexts. This means we can make a quick exit.
459 1.1 chris * The test is simple if curproc on entry (now in r1) is the
460 1.1 chris * same as the proc removed from the queue we can jump to the exit.
461 1.1 chris */
462 1.1 chris teq r1, r6
463 1.1 chris beq switch_return
464 1.1 chris
465 1.9 thorpej /* Remember the old process in r0 */
466 1.9 thorpej mov r0, r1
467 1.9 thorpej
468 1.1 chris /*
469 1.1 chris * If the curproc on entry to cpu_switch was zero then the
470 1.1 chris * process that called it was exiting. This means that we do
471 1.1 chris * not need to save the current context. Instead we can jump
472 1.1 chris * straight to restoring the context for the new process.
473 1.1 chris */
474 1.9 thorpej teq r0, #0x00000000
475 1.1 chris beq switch_exited
476 1.1 chris
477 1.9 thorpej /* rem: r0 = old proc */
478 1.1 chris /* rem: r6 = new process */
479 1.4 chris /* rem: interrupts are enabled */
480 1.1 chris
481 1.1 chris /* Stage two : Save old context */
482 1.1 chris
483 1.1 chris /* Get the user structure for the old process. */
484 1.9 thorpej ldr r1, [r0, #(P_ADDR)]
485 1.1 chris
486 1.1 chris /* Save all the registers in the old process's pcb */
487 1.1 chris add r7, r1, #(PCB_R8)
488 1.1 chris stmia r7, {r8-r13}
489 1.1 chris
490 1.1 chris /*
491 1.1 chris * This can be optimised... We know we want to go from SVC32
492 1.1 chris * mode to UND32 mode
493 1.1 chris */
494 1.13 thorpej mrs r3, cpsr
495 1.1 chris bic r2, r3, #(PSR_MODE)
496 1.1 chris orr r2, r2, #(PSR_UND32_MODE | I32_bit)
497 1.13 thorpej msr cpsr_c, r2
498 1.1 chris
499 1.1 chris str sp, [r1, #(PCB_UND_SP)]
500 1.1 chris
501 1.13 thorpej msr cpsr_c, r3 /* Restore the old mode */
502 1.1 chris
503 1.1 chris /* rem: r0 = old proc */
504 1.4 chris /* rem: r1 = old pcb */
505 1.1 chris /* rem: r6 = new process */
506 1.4 chris /* rem: interrupts are enabled */
507 1.1 chris
508 1.1 chris /* What else needs to be saved Only FPA stuff when that is supported */
509 1.1 chris
510 1.9 thorpej /* r1 now free! */
511 1.9 thorpej
512 1.1 chris /* Third phase : restore saved context */
513 1.1 chris
514 1.9 thorpej /* rem: r0 = old proc */
515 1.9 thorpej /* rem: r6 = new process */
516 1.9 thorpej /* rem: interrupts are enabled */
517 1.9 thorpej
518 1.9 thorpej /*
519 1.9 thorpej * Don't allow user space access between the purge and the switch.
520 1.9 thorpej */
521 1.1 chris ldr r3, Lblock_userspace_access
522 1.9 thorpej mov r1, #0x00000001
523 1.9 thorpej mov r2, #0x00000000
524 1.9 thorpej str r1, [r3]
525 1.1 chris
526 1.1 chris stmfd sp!, {r0-r3}
527 1.9 thorpej ldr r1, Lcpufuncs
528 1.1 chris add lr, pc, #Lcs_cache_purged - . - 8
529 1.9 thorpej ldr pc, [r1, #CF_IDCACHE_WBINV_ALL]
530 1.1 chris
531 1.1 chris Lcs_cache_purged:
532 1.1 chris ldmfd sp!, {r0-r3}
533 1.1 chris
534 1.9 thorpej Lcs_cache_purge_skipped:
535 1.1 chris /* At this point we need to kill IRQ's again. */
536 1.1 chris IRQdisable
537 1.1 chris
538 1.9 thorpej /*
539 1.9 thorpej * Interrupts are disabled so we can allow user space accesses again
540 1.1 chris * as none will occur until interrupts are re-enabled after the
541 1.1 chris * switch.
542 1.1 chris */
543 1.1 chris str r2, [r3]
544 1.1 chris
545 1.1 chris /* Get the user structure for the new process in r1 */
546 1.1 chris ldr r1, [r6, #(P_ADDR)]
547 1.1 chris
548 1.1 chris /* Get the pagedir physical address for the process. */
549 1.1 chris ldr r0, [r1, #(PCB_PAGEDIR)]
550 1.1 chris
551 1.1 chris /* Switch the memory to the new process */
552 1.1 chris ldr r3, Lcpufuncs
553 1.1 chris add lr, pc, #Lcs_context_switched - . - 8
554 1.1 chris ldr pc, [r3, #CF_CONTEXT_SWITCH]
555 1.1 chris
556 1.1 chris Lcs_context_switched:
557 1.1 chris /*
558 1.1 chris * This can be optimised... We know we want to go from SVC32
559 1.1 chris * mode to UND32 mode
560 1.1 chris */
561 1.13 thorpej mrs r3, cpsr
562 1.1 chris bic r2, r3, #(PSR_MODE)
563 1.1 chris orr r2, r2, #(PSR_UND32_MODE)
564 1.13 thorpej msr cpsr_c, r2
565 1.1 chris
566 1.1 chris ldr sp, [r1, #(PCB_UND_SP)]
567 1.1 chris
568 1.13 thorpej msr cpsr_c, r3 /* Restore the old mode */
569 1.1 chris
570 1.1 chris /* Restore all the save registers */
571 1.1 chris add r7, r1, #PCB_R8
572 1.1 chris ldmia r7, {r8-r13}
573 1.1 chris
574 1.1 chris #ifdef ARMFPE
575 1.1 chris add r0, r1, #(USER_SIZE) & 0x00ff
576 1.1 chris add r0, r0, #(USER_SIZE) & 0xff00
577 1.1 chris bl _C_LABEL(arm_fpe_core_changecontext)
578 1.1 chris #endif
579 1.1 chris
580 1.1 chris /* We can enable interrupts again */
581 1.1 chris IRQenable
582 1.1 chris
583 1.1 chris switch_return:
584 1.1 chris
585 1.1 chris /* Get the spl level from the stack and update the current spl level */
586 1.1 chris ldr r0, [sp], #0x0004
587 1.1 chris bl _C_LABEL(splx)
588 1.1 chris
589 1.1 chris /* cpu_switch returns the proc it switched to. */
590 1.1 chris mov r0, r6
591 1.1 chris
592 1.1 chris /*
593 1.1 chris * Pull the registers that got pushed when either savectx() or
594 1.1 chris * cpu_switch() was called and return.
595 1.1 chris */
596 1.1 chris ldmfd sp!, {r4-r7, pc}
597 1.1 chris
598 1.9 thorpej switch_exited:
599 1.9 thorpej /*
600 1.9 thorpej * We skip the cache purge because switch_exit() already did
601 1.9 thorpej * it. Load up registers the way Lcs_cache_purge_skipped
602 1.9 thorpej * expects. Userspace access already blocked in switch_exit().
603 1.9 thorpej */
604 1.9 thorpej ldr r3, Lblock_userspace_access
605 1.9 thorpej mov r2, #0x00000000
606 1.9 thorpej b Lcs_cache_purge_skipped
607 1.9 thorpej
608 1.1 chris Lproc0:
609 1.1 chris .word _C_LABEL(proc0)
610 1.1 chris
611 1.1 chris Lkernel_map:
612 1.1 chris .word _C_LABEL(kernel_map)
613 1.1 chris
614 1.7 chris /*
615 1.8 thorpej * void switch_exit(struct proc *p, struct proc *p0);
616 1.7 chris * Switch to proc0's saved context and deallocate the address space and kernel
617 1.7 chris * stack for p. Then jump into cpu_switch(), as if we were in proc0 all along.
618 1.7 chris */
619 1.1 chris
620 1.8 thorpej /* LINTSTUB: Func: void switch_exit(struct proc *p, struct proc *p0) */
621 1.1 chris ENTRY(switch_exit)
622 1.1 chris /*
623 1.1 chris * r0 = proc
624 1.1 chris * r1 = proc0
625 1.1 chris */
626 1.1 chris
627 1.1 chris mov r3, r0
628 1.1 chris
629 1.1 chris /* In case we fault */
630 1.4 chris ldr r0, Lcurproc
631 1.1 chris mov r2, #0x00000000
632 1.1 chris str r2, [r0]
633 1.1 chris
634 1.1 chris /* ldr r0, Lcurpcb
635 1.1 chris str r2, [r0]*/
636 1.9 thorpej
637 1.9 thorpej /*
638 1.9 thorpej * Don't allow user space access between the purge and the switch.
639 1.9 thorpej */
640 1.9 thorpej ldr r0, Lblock_userspace_access
641 1.9 thorpej mov r2, #0x00000001
642 1.9 thorpej str r2, [r0]
643 1.1 chris
644 1.1 chris /* Switch to proc0 context */
645 1.1 chris
646 1.1 chris stmfd sp!, {r0-r3}
647 1.1 chris
648 1.1 chris ldr r0, Lcpufuncs
649 1.1 chris add lr, pc, #Lse_cache_purged - . - 8
650 1.6 thorpej ldr pc, [r0, #CF_IDCACHE_WBINV_ALL]
651 1.1 chris
652 1.1 chris Lse_cache_purged:
653 1.1 chris ldmfd sp!, {r0-r3}
654 1.1 chris
655 1.1 chris IRQdisable
656 1.1 chris
657 1.1 chris ldr r2, [r1, #(P_ADDR)]
658 1.1 chris ldr r0, [r2, #(PCB_PAGEDIR)]
659 1.1 chris
660 1.1 chris /* Switch the memory to the new process */
661 1.1 chris ldr r4, Lcpufuncs
662 1.1 chris add lr, pc, #Lse_context_switched - . - 8
663 1.1 chris ldr pc, [r4, #CF_CONTEXT_SWITCH]
664 1.1 chris
665 1.1 chris Lse_context_switched:
666 1.1 chris /* Restore all the save registers */
667 1.1 chris add r7, r2, #PCB_R8
668 1.1 chris ldmia r7, {r8-r13}
669 1.1 chris
670 1.1 chris /* This is not really needed ! */
671 1.1 chris /* Yes it is for the su and fu routines */
672 1.1 chris ldr r0, Lcurpcb
673 1.1 chris str r2, [r0]
674 1.1 chris
675 1.1 chris IRQenable
676 1.1 chris
677 1.1 chris /* str r3, [sp, #-0x0004]!*/
678 1.1 chris
679 1.1 chris /*
680 1.1 chris * Schedule the vmspace and stack to be freed.
681 1.1 chris */
682 1.1 chris mov r0, r3 /* exit2(p) */
683 1.1 chris bl _C_LABEL(exit2)
684 1.1 chris
685 1.1 chris /* Paranoia */
686 1.4 chris ldr r1, Lcurproc
687 1.1 chris mov r0, #0x00000000
688 1.1 chris str r0, [r1]
689 1.1 chris
690 1.8 thorpej mov r5, #0x00000000 /* r5 = old proc = NULL */
691 1.7 chris b Lswitch_search
692 1.1 chris
693 1.7 chris /* LINTSTUB: Func: void savectx(struct pcb *pcb) */
694 1.1 chris ENTRY(savectx)
695 1.1 chris /*
696 1.1 chris * r0 = pcb
697 1.1 chris */
698 1.1 chris
699 1.1 chris /* Push registers.*/
700 1.1 chris stmfd sp!, {r4-r7, lr}
701 1.1 chris
702 1.1 chris /* Store all the registers in the process's pcb */
703 1.1 chris add r2, r0, #(PCB_R8)
704 1.1 chris stmia r2, {r8-r13}
705 1.1 chris
706 1.1 chris /* Pull the regs of the stack */
707 1.1 chris ldmfd sp!, {r4-r7, pc}
708 1.1 chris
709 1.1 chris ENTRY(proc_trampoline)
710 1.1 chris add lr, pc, #(trampoline_return - . - 8)
711 1.1 chris mov r0, r5
712 1.1 chris mov r1, sp
713 1.1 chris mov pc, r4
714 1.1 chris
715 1.1 chris trampoline_return:
716 1.1 chris /* Kill irq's */
717 1.13 thorpej mrs r0, cpsr
718 1.1 chris orr r0, r0, #(I32_bit)
719 1.13 thorpej msr cpsr_c, r0
720 1.1 chris
721 1.1 chris PULLFRAME
722 1.1 chris
723 1.1 chris movs pc, lr /* Exit */
724 1.1 chris
725 1.2 matt .type Lcpu_switch_ffs_table, _ASM_TYPE_OBJECT;
726 1.1 chris Lcpu_switch_ffs_table:
727 1.1 chris /* same as ffs table but all nums are -1 from that */
728 1.1 chris /* 0 1 2 3 4 5 6 7 */
729 1.1 chris .byte 0, 0, 1, 12, 2, 6, 0, 13 /* 0- 7 */
730 1.1 chris .byte 3, 0, 7, 0, 0, 0, 0, 14 /* 8-15 */
731 1.1 chris .byte 10, 4, 0, 0, 8, 0, 0, 25 /* 16-23 */
732 1.1 chris .byte 0, 0, 0, 0, 0, 21, 27, 15 /* 24-31 */
733 1.1 chris .byte 31, 11, 5, 0, 0, 0, 0, 0 /* 32-39 */
734 1.1 chris .byte 9, 0, 0, 24, 0, 0, 20, 26 /* 40-47 */
735 1.1 chris .byte 30, 0, 0, 0, 0, 23, 0, 19 /* 48-55 */
736 1.1 chris .byte 29, 0, 22, 18, 28, 17, 16, 0 /* 56-63 */
737 1.1 chris
738 1.1 chris /* End of cpuswitch.S */
739