source: mainline/kernel/arch/ia32/src/smp/apic.c@ 0f17bff

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since 0f17bff was 0f17bff, checked in by Jakub Jermar <jakub@…>, 9 years ago

Replace magic numbers with macros

  • Property mode set to 100644
File size: 15.5 KB
Line 
1/*
2 * Copyright (c) 2001-2004 Jakub Jermar
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 *
9 * - Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 * - Redistributions in binary form must reproduce the above copyright
12 * notice, this list of conditions and the following disclaimer in the
13 * documentation and/or other materials provided with the distribution.
14 * - The name of the author may not be used to endorse or promote products
15 * derived from this software without specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 */
28
29/** @addtogroup ia32
30 * @{
31 */
32/** @file
33 */
34
35#include <typedefs.h>
36#include <arch/smp/apic.h>
37#include <arch/smp/ap.h>
38#include <arch/smp/mps.h>
39#include <arch/boot/boot.h>
40#include <mm/page.h>
41#include <time/delay.h>
42#include <interrupt.h>
43#include <arch/interrupt.h>
44#include <log.h>
45#include <arch/asm.h>
46#include <arch.h>
47#include <ddi/irq.h>
48#include <ddi/device.h>
49
50#ifdef CONFIG_SMP
51
52/*
53 * Advanced Programmable Interrupt Controller for SMP systems.
54 * Tested on:
55 * Bochs 2.0.2 - Bochs 2.2.6 with 2-8 CPUs
56 * Simics 2.0.28 - Simics 2.2.19 2-15 CPUs
57 * VMware Workstation 5.5 with 2 CPUs
58 * QEMU 0.8.0 with 2-15 CPUs
59 * ASUS P/I-P65UP5 + ASUS C-P55T2D REV. 1.41 with 2x 200Mhz Pentium CPUs
60 * ASUS PCH-DL with 2x 3000Mhz Pentium 4 Xeon (HT) CPUs
61 * MSI K7D Master-L with 2x 2100MHz Athlon MP CPUs
62 *
63 */
64
65/*
66 * These variables either stay configured as initilalized, or are changed by
67 * the MP configuration code.
68 *
69 * Pay special attention to the volatile keyword. Without it, gcc -O2 would
70 * optimize the code too much and accesses to l_apic and io_apic, that must
71 * always be 32-bit, would use byte oriented instructions.
72 *
73 */
74volatile uint32_t *l_apic = (uint32_t *) L_APIC_BASE;
75volatile uint32_t *io_apic = (uint32_t *) IO_APIC_BASE;
76
77uint32_t apic_id_mask = 0;
78uint8_t bsp_l_apic = 0;
79
80static irq_t l_apic_timer_irq;
81
82static int apic_poll_errors(void);
83
84#ifdef LAPIC_VERBOSE
85static const char *delmod_str[] = {
86 "Fixed",
87 "Lowest Priority",
88 "SMI",
89 "Reserved",
90 "NMI",
91 "INIT",
92 "STARTUP",
93 "ExtInt"
94};
95
96static const char *destmod_str[] = {
97 "Physical",
98 "Logical"
99};
100
101static const char *trigmod_str[] = {
102 "Edge",
103 "Level"
104};
105
106static const char *mask_str[] = {
107 "Unmasked",
108 "Masked"
109};
110
111static const char *delivs_str[] = {
112 "Idle",
113 "Send Pending"
114};
115
116static const char *tm_mode_str[] = {
117 "One-shot",
118 "Periodic"
119};
120
121static const char *intpol_str[] = {
122 "Polarity High",
123 "Polarity Low"
124};
125#endif /* LAPIC_VERBOSE */
126
127/** APIC spurious interrupt handler.
128 *
129 * @param n Interrupt vector.
130 * @param istate Interrupted state.
131 *
132 */
133static void apic_spurious(unsigned int n __attribute__((unused)),
134 istate_t *istate __attribute__((unused)))
135{
136#ifdef CONFIG_DEBUG
137 log(LF_ARCH, LVL_DEBUG, "cpu%u: APIC spurious interrupt", CPU->id);
138#endif
139}
140
141static irq_ownership_t l_apic_timer_claim(irq_t *irq)
142{
143 return IRQ_ACCEPT;
144}
145
146static void l_apic_timer_irq_handler(irq_t *irq)
147{
148 /*
149 * Holding a spinlock could prevent clock() from preempting
150 * the current thread. In this case, we don't need to hold the
151 * irq->lock so we just unlock it and then lock it again.
152 */
153 irq_spinlock_unlock(&irq->lock, false);
154 clock();
155 irq_spinlock_lock(&irq->lock, false);
156}
157
158/** Get Local APIC ID.
159 *
160 * @return Local APIC ID.
161 *
162 */
163static uint8_t l_apic_id(void)
164{
165 l_apic_id_t idreg;
166
167 idreg.value = l_apic[L_APIC_ID];
168 return idreg.apic_id;
169}
170
171/** Initialize APIC on BSP. */
172void apic_init(void)
173{
174 exc_register(VECTOR_APIC_SPUR, "apic_spurious", false,
175 (iroutine_t) apic_spurious);
176
177 enable_irqs_function = io_apic_enable_irqs;
178 disable_irqs_function = io_apic_disable_irqs;
179 eoi_function = l_apic_eoi;
180 irqs_info = "apic";
181
182 /*
183 * Configure interrupt routing.
184 * IRQ 0 remains masked as the time signal is generated by l_apic's themselves.
185 * Other interrupts will be forwarded to the lowest priority CPU.
186 */
187 io_apic_disable_irqs(0xffffU);
188
189 irq_initialize(&l_apic_timer_irq);
190 l_apic_timer_irq.preack = true;
191 l_apic_timer_irq.devno = device_assign_devno();
192 l_apic_timer_irq.inr = IRQ_CLK;
193 l_apic_timer_irq.claim = l_apic_timer_claim;
194 l_apic_timer_irq.handler = l_apic_timer_irq_handler;
195 irq_register(&l_apic_timer_irq);
196
197 uint8_t i;
198 for (i = 0; i < IRQ_COUNT; i++) {
199 int pin;
200
201 if ((pin = smp_irq_to_pin(i)) != -1)
202 io_apic_change_ioredtbl((uint8_t) pin, DEST_ALL, (uint8_t) (IVT_IRQBASE + i), LOPRI);
203 }
204
205 /*
206 * Ensure that io_apic has unique ID.
207 */
208 io_apic_id_t idreg;
209
210 idreg.value = io_apic_read(IOAPICID);
211 if ((1 << idreg.apic_id) & apic_id_mask) { /* See if IO APIC ID is used already */
212 for (i = 0; i < APIC_ID_COUNT; i++) {
213 if (!((1 << i) & apic_id_mask)) {
214 idreg.apic_id = i;
215 io_apic_write(IOAPICID, idreg.value);
216 break;
217 }
218 }
219 }
220
221 /*
222 * Configure the BSP's lapic.
223 */
224 l_apic_init();
225 l_apic_debug();
226
227 bsp_l_apic = l_apic_id();
228}
229
230/** Poll for APIC errors.
231 *
232 * Examine Error Status Register and report all errors found.
233 *
234 * @return 0 on error, 1 on success.
235 *
236 */
237int apic_poll_errors(void)
238{
239 esr_t esr;
240
241 esr.value = l_apic[ESR];
242
243 if (esr.err_bitmap) {
244 log_begin(LF_ARCH, LVL_ERROR);
245 log_printf("APIC errors detected:");
246 if (esr.send_checksum_error)
247 log_printf("\nSend Checksum Error");
248 if (esr.receive_checksum_error)
249 log_printf("\nReceive Checksum Error");
250 if (esr.send_accept_error)
251 log_printf("\nSend Accept Error");
252 if (esr.receive_accept_error)
253 log_printf("\nReceive Accept Error");
254 if (esr.send_illegal_vector)
255 log_printf("\nSend Illegal Vector");
256 if (esr.received_illegal_vector)
257 log_printf("\nReceived Illegal Vector");
258 if (esr.illegal_register_address)
259 log_printf("\nIllegal Register Address");
260 log_end();
261 }
262
263 return !esr.err_bitmap;
264}
265
266/* Waits for the destination cpu to accept the previous ipi. */
267static void l_apic_wait_for_delivery(void)
268{
269 icr_t icr;
270
271 do {
272 icr.lo = l_apic[ICRlo];
273 } while (icr.delivs != DELIVS_IDLE);
274}
275
276/** Send one CPU an IPI vector.
277 *
278 * @param apicid Physical APIC ID of the destination CPU.
279 * @param vector Interrupt vector to be sent.
280 *
281 * @return 0 on failure, 1 on success.
282 */
283int l_apic_send_custom_ipi(uint8_t apicid, uint8_t vector)
284{
285 icr_t icr;
286
287 /* Wait for a destination cpu to accept our previous ipi. */
288 l_apic_wait_for_delivery();
289
290 icr.lo = l_apic[ICRlo];
291 icr.hi = l_apic[ICRhi];
292
293 icr.delmod = DELMOD_FIXED;
294 icr.destmod = DESTMOD_PHYS;
295 icr.level = LEVEL_ASSERT;
296 icr.shorthand = SHORTHAND_NONE;
297 icr.trigger_mode = TRIGMOD_LEVEL;
298 icr.vector = vector;
299 icr.dest = apicid;
300
301 /* Send the IPI by writing to l_apic[ICRlo]. */
302 l_apic[ICRhi] = icr.hi;
303 l_apic[ICRlo] = icr.lo;
304
305 return apic_poll_errors();
306}
307
308/** Send all CPUs excluding CPU IPI vector.
309 *
310 * @param vector Interrupt vector to be sent.
311 *
312 * @return 0 on failure, 1 on success.
313 *
314 */
315int l_apic_broadcast_custom_ipi(uint8_t vector)
316{
317 icr_t icr;
318
319 /* Wait for a destination cpu to accept our previous ipi. */
320 l_apic_wait_for_delivery();
321
322 icr.lo = l_apic[ICRlo];
323 icr.delmod = DELMOD_FIXED;
324 icr.destmod = DESTMOD_LOGIC;
325 icr.level = LEVEL_ASSERT;
326 icr.shorthand = SHORTHAND_ALL_EXCL;
327 icr.trigger_mode = TRIGMOD_LEVEL;
328 icr.vector = vector;
329
330 l_apic[ICRlo] = icr.lo;
331
332 return apic_poll_errors();
333}
334
335/** Universal Start-up Algorithm for bringing up the AP processors.
336 *
337 * @param apicid APIC ID of the processor to be brought up.
338 *
339 * @return 0 on failure, 1 on success.
340 *
341 */
342int l_apic_send_init_ipi(uint8_t apicid)
343{
344 /*
345 * Read the ICR register in and zero all non-reserved fields.
346 */
347 icr_t icr;
348
349 icr.lo = l_apic[ICRlo];
350 icr.hi = l_apic[ICRhi];
351
352 icr.delmod = DELMOD_INIT;
353 icr.destmod = DESTMOD_PHYS;
354 icr.level = LEVEL_ASSERT;
355 icr.trigger_mode = TRIGMOD_LEVEL;
356 icr.shorthand = SHORTHAND_NONE;
357 icr.vector = 0;
358 icr.dest = apicid;
359
360 l_apic[ICRhi] = icr.hi;
361 l_apic[ICRlo] = icr.lo;
362
363 /*
364 * According to MP Specification, 20us should be enough to
365 * deliver the IPI.
366 */
367 delay(20);
368
369 if (!apic_poll_errors())
370 return 0;
371
372 l_apic_wait_for_delivery();
373
374 icr.lo = l_apic[ICRlo];
375 icr.delmod = DELMOD_INIT;
376 icr.destmod = DESTMOD_PHYS;
377 icr.level = LEVEL_DEASSERT;
378 icr.shorthand = SHORTHAND_NONE;
379 icr.trigger_mode = TRIGMOD_LEVEL;
380 icr.vector = 0;
381 l_apic[ICRlo] = icr.lo;
382
383 /*
384 * Wait 10ms as MP Specification specifies.
385 */
386 delay(10000);
387
388 if (!is_82489DX_apic(l_apic[LAVR])) {
389 /*
390 * If this is not 82489DX-based l_apic we must send two STARTUP IPI's.
391 */
392 unsigned int i;
393 for (i = 0; i < 2; i++) {
394 icr.lo = l_apic[ICRlo];
395 icr.vector = (uint8_t) (((uintptr_t) ap_boot) >> 12); /* calculate the reset vector */
396 icr.delmod = DELMOD_STARTUP;
397 icr.destmod = DESTMOD_PHYS;
398 icr.level = LEVEL_ASSERT;
399 icr.shorthand = SHORTHAND_NONE;
400 icr.trigger_mode = TRIGMOD_LEVEL;
401 l_apic[ICRlo] = icr.lo;
402 delay(200);
403 }
404 }
405
406 return apic_poll_errors();
407}
408
409/** Initialize Local APIC. */
410void l_apic_init(void)
411{
412 /* Initialize LVT Error register. */
413 lvt_error_t error;
414
415 error.value = l_apic[LVT_Err];
416 error.masked = true;
417 l_apic[LVT_Err] = error.value;
418
419 /* Initialize LVT LINT0 register. */
420 lvt_lint_t lint;
421
422 lint.value = l_apic[LVT_LINT0];
423 lint.masked = true;
424 l_apic[LVT_LINT0] = lint.value;
425
426 /* Initialize LVT LINT1 register. */
427 lint.value = l_apic[LVT_LINT1];
428 lint.masked = true;
429 l_apic[LVT_LINT1] = lint.value;
430
431 /* Task Priority Register initialization. */
432 tpr_t tpr;
433
434 tpr.value = l_apic[TPR];
435 tpr.pri_sc = 0;
436 tpr.pri = 0;
437 l_apic[TPR] = tpr.value;
438
439 /* Spurious-Interrupt Vector Register initialization. */
440 svr_t svr;
441
442 svr.value = l_apic[SVR];
443 svr.vector = VECTOR_APIC_SPUR;
444 svr.lapic_enabled = true;
445 svr.focus_checking = true;
446 l_apic[SVR] = svr.value;
447
448 if (CPU->arch.family >= 6)
449 enable_l_apic_in_msr();
450
451 /* Interrupt Command Register initialization. */
452 icr_t icr;
453
454 icr.lo = l_apic[ICRlo];
455 icr.delmod = DELMOD_INIT;
456 icr.destmod = DESTMOD_PHYS;
457 icr.level = LEVEL_DEASSERT;
458 icr.shorthand = SHORTHAND_ALL_INCL;
459 icr.trigger_mode = TRIGMOD_LEVEL;
460 l_apic[ICRlo] = icr.lo;
461
462 /* Timer Divide Configuration Register initialization. */
463 tdcr_t tdcr;
464
465 tdcr.value = l_apic[TDCR];
466 tdcr.div_value = DIVIDE_1;
467 l_apic[TDCR] = tdcr.value;
468
469 /* Program local timer. */
470 lvt_tm_t tm;
471
472 tm.value = l_apic[LVT_Tm];
473 tm.vector = VECTOR_CLK;
474 tm.mode = TIMER_PERIODIC;
475 tm.masked = false;
476 l_apic[LVT_Tm] = tm.value;
477
478 /*
479 * Measure and configure the timer to generate timer
480 * interrupt with period 1s/HZ seconds.
481 */
482 uint32_t t1 = l_apic[CCRT];
483 l_apic[ICRT] = 0xffffffff;
484
485 while (l_apic[CCRT] == t1);
486
487 t1 = l_apic[CCRT];
488 delay(1000000 / HZ);
489 uint32_t t2 = l_apic[CCRT];
490
491 l_apic[ICRT] = t1 - t2;
492
493 /* Program Logical Destination Register. */
494 ASSERT(CPU->id < 8);
495 ldr_t ldr;
496
497 ldr.value = l_apic[LDR];
498 ldr.id = (uint8_t) (1 << CPU->id);
499 l_apic[LDR] = ldr.value;
500
501 /* Program Destination Format Register for Flat mode. */
502 dfr_t dfr;
503
504 dfr.value = l_apic[DFR];
505 dfr.model = MODEL_FLAT;
506 l_apic[DFR] = dfr.value;
507}
508
509/** Local APIC End of Interrupt. */
510void l_apic_eoi(void)
511{
512 l_apic[EOI] = 0;
513}
514
515/** Dump content of Local APIC registers. */
516void l_apic_debug(void)
517{
518#ifdef LAPIC_VERBOSE
519 log_begin(LF_ARCH, LVL_DEBUG);
520 log_printf("LVT on cpu%u, LAPIC ID: %" PRIu8 "\n",
521 CPU->id, l_apic_id());
522
523 lvt_tm_t tm;
524 tm.value = l_apic[LVT_Tm];
525 log_printf("LVT Tm: vector=%" PRIu8 ", %s, %s, %s\n",
526 tm.vector, delivs_str[tm.delivs], mask_str[tm.masked],
527 tm_mode_str[tm.mode]);
528
529 lvt_lint_t lint;
530 lint.value = l_apic[LVT_LINT0];
531 log_printf("LVT LINT0: vector=%" PRIu8 ", %s, %s, %s, irr=%u, %s, %s\n",
532 tm.vector, delmod_str[lint.delmod], delivs_str[lint.delivs],
533 intpol_str[lint.intpol], lint.irr, trigmod_str[lint.trigger_mode],
534 mask_str[lint.masked]);
535
536 lint.value = l_apic[LVT_LINT1];
537 log_printf("LVT LINT1: vector=%" PRIu8 ", %s, %s, %s, irr=%u, %s, %s\n",
538 tm.vector, delmod_str[lint.delmod], delivs_str[lint.delivs],
539 intpol_str[lint.intpol], lint.irr, trigmod_str[lint.trigger_mode],
540 mask_str[lint.masked]);
541
542 lvt_error_t error;
543 error.value = l_apic[LVT_Err];
544 log_printf("LVT Err: vector=%" PRIu8 ", %s, %s\n", error.vector,
545 delivs_str[error.delivs], mask_str[error.masked]);
546 log_end();
547#endif
548}
549
550/** Read from IO APIC register.
551 *
552 * @param address IO APIC register address.
553 *
554 * @return Content of the addressed IO APIC register.
555 *
556 */
557uint32_t io_apic_read(uint8_t address)
558{
559 io_regsel_t regsel;
560
561 regsel.value = io_apic[IOREGSEL];
562 regsel.reg_addr = address;
563 io_apic[IOREGSEL] = regsel.value;
564 return io_apic[IOWIN];
565}
566
567/** Write to IO APIC register.
568 *
569 * @param address IO APIC register address.
570 * @param val Content to be written to the addressed IO APIC register.
571 *
572 */
573void io_apic_write(uint8_t address, uint32_t val)
574{
575 io_regsel_t regsel;
576
577 regsel.value = io_apic[IOREGSEL];
578 regsel.reg_addr = address;
579 io_apic[IOREGSEL] = regsel.value;
580 io_apic[IOWIN] = val;
581}
582
583/** Change some attributes of one item in I/O Redirection Table.
584 *
585 * @param pin IO APIC pin number.
586 * @param dest Interrupt destination address.
587 * @param vec Interrupt vector to trigger.
588 * @param flags Flags.
589 *
590 */
591void io_apic_change_ioredtbl(uint8_t pin, uint8_t dest, uint8_t vec,
592 unsigned int flags)
593{
594 unsigned int dlvr;
595
596 if (flags & LOPRI)
597 dlvr = DELMOD_LOWPRI;
598 else
599 dlvr = DELMOD_FIXED;
600
601 io_redirection_reg_t reg;
602 reg.lo = io_apic_read((uint8_t) (IOREDTBL + pin * 2));
603 reg.hi = io_apic_read((uint8_t) (IOREDTBL + pin * 2 + 1));
604
605 reg.dest = dest;
606 reg.destmod = DESTMOD_LOGIC;
607 reg.trigger_mode = TRIGMOD_EDGE;
608 reg.intpol = POLARITY_HIGH;
609 reg.delmod = dlvr;
610 reg.intvec = vec;
611
612 io_apic_write((uint8_t) (IOREDTBL + pin * 2), reg.lo);
613 io_apic_write((uint8_t) (IOREDTBL + pin * 2 + 1), reg.hi);
614}
615
616/** Mask IRQs in IO APIC.
617 *
618 * @param irqmask Bitmask of IRQs to be masked (0 = do not mask, 1 = mask).
619 *
620 */
621void io_apic_disable_irqs(uint16_t irqmask)
622{
623 unsigned int i;
624 for (i = 0; i < 16; i++) {
625 if (irqmask & (1 << i)) {
626 /*
627 * Mask the signal input in IO APIC if there is a
628 * mapping for the respective IRQ number.
629 */
630 int pin = smp_irq_to_pin(i);
631 if (pin != -1) {
632 io_redirection_reg_t reg;
633
634 reg.lo = io_apic_read((uint8_t) (IOREDTBL + pin * 2));
635 reg.masked = true;
636 io_apic_write((uint8_t) (IOREDTBL + pin * 2), reg.lo);
637 }
638
639 }
640 }
641}
642
643/** Unmask IRQs in IO APIC.
644 *
645 * @param irqmask Bitmask of IRQs to be unmasked (0 = do not unmask, 1 = unmask).
646 *
647 */
648void io_apic_enable_irqs(uint16_t irqmask)
649{
650 unsigned int i;
651 for (i = 0; i < 16; i++) {
652 if (irqmask & (1 << i)) {
653 /*
654 * Unmask the signal input in IO APIC if there is a
655 * mapping for the respective IRQ number.
656 */
657 int pin = smp_irq_to_pin(i);
658 if (pin != -1) {
659 io_redirection_reg_t reg;
660
661 reg.lo = io_apic_read((uint8_t) (IOREDTBL + pin * 2));
662 reg.masked = false;
663 io_apic_write((uint8_t) (IOREDTBL + pin * 2), reg.lo);
664 }
665
666 }
667 }
668}
669
670#endif /* CONFIG_SMP */
671
672/** @}
673 */
Note: See TracBrowser for help on using the repository browser.