irq.c 29 KB

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  1. /*
  2. * Derived from arch/i386/kernel/irq.c
  3. * Copyright (C) 1992 Linus Torvalds
  4. * Adapted from arch/i386 by Gary Thomas
  5. * Copyright (C) 1995-1996 Gary Thomas (gdt@linuxppc.org)
  6. * Updated and modified by Cort Dougan <cort@fsmlabs.com>
  7. * Copyright (C) 1996-2001 Cort Dougan
  8. * Adapted for Power Macintosh by Paul Mackerras
  9. * Copyright (C) 1996 Paul Mackerras (paulus@cs.anu.edu.au)
  10. *
  11. * This program is free software; you can redistribute it and/or
  12. * modify it under the terms of the GNU General Public License
  13. * as published by the Free Software Foundation; either version
  14. * 2 of the License, or (at your option) any later version.
  15. *
  16. * This file contains the code used by various IRQ handling routines:
  17. * asking for different IRQ's should be done through these routines
  18. * instead of just grabbing them. Thus setups with different IRQ numbers
  19. * shouldn't result in any weird surprises, and installing new handlers
  20. * should be easier.
  21. *
  22. * The MPC8xx has an interrupt mask in the SIU. If a bit is set, the
  23. * interrupt is _enabled_. As expected, IRQ0 is bit 0 in the 32-bit
  24. * mask register (of which only 16 are defined), hence the weird shifting
  25. * and complement of the cached_irq_mask. I want to be able to stuff
  26. * this right into the SIU SMASK register.
  27. * Many of the prep/chrp functions are conditional compiled on CONFIG_8xx
  28. * to reduce code space and undefined function references.
  29. */
  30. #undef DEBUG
  31. #include <linux/module.h>
  32. #include <linux/threads.h>
  33. #include <linux/kernel_stat.h>
  34. #include <linux/signal.h>
  35. #include <linux/sched.h>
  36. #include <linux/ptrace.h>
  37. #include <linux/ioport.h>
  38. #include <linux/interrupt.h>
  39. #include <linux/timex.h>
  40. #include <linux/init.h>
  41. #include <linux/slab.h>
  42. #include <linux/delay.h>
  43. #include <linux/irq.h>
  44. #include <linux/seq_file.h>
  45. #include <linux/cpumask.h>
  46. #include <linux/profile.h>
  47. #include <linux/bitops.h>
  48. #include <linux/list.h>
  49. #include <linux/radix-tree.h>
  50. #include <linux/mutex.h>
  51. #include <linux/bootmem.h>
  52. #include <linux/pci.h>
  53. #include <linux/debugfs.h>
  54. #include <linux/of.h>
  55. #include <linux/of_irq.h>
  56. #include <asm/uaccess.h>
  57. #include <asm/system.h>
  58. #include <asm/io.h>
  59. #include <asm/pgtable.h>
  60. #include <asm/irq.h>
  61. #include <asm/cache.h>
  62. #include <asm/prom.h>
  63. #include <asm/ptrace.h>
  64. #include <asm/machdep.h>
  65. #include <asm/udbg.h>
  66. #include <asm/dbell.h>
  67. #include <asm/smp.h>
  68. #ifdef CONFIG_PPC64
  69. #include <asm/paca.h>
  70. #include <asm/firmware.h>
  71. #include <asm/lv1call.h>
  72. #endif
  73. #define CREATE_TRACE_POINTS
  74. #include <asm/trace.h>
  75. DEFINE_PER_CPU_SHARED_ALIGNED(irq_cpustat_t, irq_stat);
  76. EXPORT_PER_CPU_SYMBOL(irq_stat);
  77. int __irq_offset_value;
  78. #ifdef CONFIG_PPC32
  79. EXPORT_SYMBOL(__irq_offset_value);
  80. atomic_t ppc_n_lost_interrupts;
  81. #ifdef CONFIG_TAU_INT
  82. extern int tau_initialized;
  83. extern int tau_interrupts(int);
  84. #endif
  85. #endif /* CONFIG_PPC32 */
  86. #ifdef CONFIG_PPC64
  87. #ifndef CONFIG_SPARSE_IRQ
  88. EXPORT_SYMBOL(irq_desc);
  89. #endif
  90. int distribute_irqs = 1;
  91. static inline notrace unsigned long get_hard_enabled(void)
  92. {
  93. unsigned long enabled;
  94. __asm__ __volatile__("lbz %0,%1(13)"
  95. : "=r" (enabled) : "i" (offsetof(struct paca_struct, hard_enabled)));
  96. return enabled;
  97. }
  98. static inline notrace void set_soft_enabled(unsigned long enable)
  99. {
  100. __asm__ __volatile__("stb %0,%1(13)"
  101. : : "r" (enable), "i" (offsetof(struct paca_struct, soft_enabled)));
  102. }
  103. notrace void arch_local_irq_restore(unsigned long en)
  104. {
  105. /*
  106. * get_paca()->soft_enabled = en;
  107. * Is it ever valid to use local_irq_restore(0) when soft_enabled is 1?
  108. * That was allowed before, and in such a case we do need to take care
  109. * that gcc will set soft_enabled directly via r13, not choose to use
  110. * an intermediate register, lest we're preempted to a different cpu.
  111. */
  112. set_soft_enabled(en);
  113. if (!en)
  114. return;
  115. #ifdef CONFIG_PPC_STD_MMU_64
  116. if (firmware_has_feature(FW_FEATURE_ISERIES)) {
  117. /*
  118. * Do we need to disable preemption here? Not really: in the
  119. * unlikely event that we're preempted to a different cpu in
  120. * between getting r13, loading its lppaca_ptr, and loading
  121. * its any_int, we might call iseries_handle_interrupts without
  122. * an interrupt pending on the new cpu, but that's no disaster,
  123. * is it? And the business of preempting us off the old cpu
  124. * would itself involve a local_irq_restore which handles the
  125. * interrupt to that cpu.
  126. *
  127. * But use "local_paca->lppaca_ptr" instead of "get_lppaca()"
  128. * to avoid any preemption checking added into get_paca().
  129. */
  130. if (local_paca->lppaca_ptr->int_dword.any_int)
  131. iseries_handle_interrupts();
  132. }
  133. #endif /* CONFIG_PPC_STD_MMU_64 */
  134. /*
  135. * if (get_paca()->hard_enabled) return;
  136. * But again we need to take care that gcc gets hard_enabled directly
  137. * via r13, not choose to use an intermediate register, lest we're
  138. * preempted to a different cpu in between the two instructions.
  139. */
  140. if (get_hard_enabled())
  141. return;
  142. #if defined(CONFIG_BOOKE) && defined(CONFIG_SMP)
  143. /* Check for pending doorbell interrupts and resend to ourself */
  144. doorbell_check_self();
  145. #endif
  146. /*
  147. * Need to hard-enable interrupts here. Since currently disabled,
  148. * no need to take further asm precautions against preemption; but
  149. * use local_paca instead of get_paca() to avoid preemption checking.
  150. */
  151. local_paca->hard_enabled = en;
  152. #ifndef CONFIG_BOOKE
  153. /* On server, re-trigger the decrementer if it went negative since
  154. * some processors only trigger on edge transitions of the sign bit.
  155. *
  156. * BookE has a level sensitive decrementer (latches in TSR) so we
  157. * don't need that
  158. */
  159. if ((int)mfspr(SPRN_DEC) < 0)
  160. mtspr(SPRN_DEC, 1);
  161. #endif /* CONFIG_BOOKE */
  162. /*
  163. * Force the delivery of pending soft-disabled interrupts on PS3.
  164. * Any HV call will have this side effect.
  165. */
  166. if (firmware_has_feature(FW_FEATURE_PS3_LV1)) {
  167. u64 tmp;
  168. lv1_get_version_info(&tmp);
  169. }
  170. __hard_irq_enable();
  171. }
  172. EXPORT_SYMBOL(arch_local_irq_restore);
  173. #endif /* CONFIG_PPC64 */
  174. static int show_other_interrupts(struct seq_file *p, int prec)
  175. {
  176. int j;
  177. #if defined(CONFIG_PPC32) && defined(CONFIG_TAU_INT)
  178. if (tau_initialized) {
  179. seq_printf(p, "%*s: ", prec, "TAU");
  180. for_each_online_cpu(j)
  181. seq_printf(p, "%10u ", tau_interrupts(j));
  182. seq_puts(p, " PowerPC Thermal Assist (cpu temp)\n");
  183. }
  184. #endif /* CONFIG_PPC32 && CONFIG_TAU_INT */
  185. seq_printf(p, "%*s: ", prec, "LOC");
  186. for_each_online_cpu(j)
  187. seq_printf(p, "%10u ", per_cpu(irq_stat, j).timer_irqs);
  188. seq_printf(p, " Local timer interrupts\n");
  189. seq_printf(p, "%*s: ", prec, "SPU");
  190. for_each_online_cpu(j)
  191. seq_printf(p, "%10u ", per_cpu(irq_stat, j).spurious_irqs);
  192. seq_printf(p, " Spurious interrupts\n");
  193. seq_printf(p, "%*s: ", prec, "CNT");
  194. for_each_online_cpu(j)
  195. seq_printf(p, "%10u ", per_cpu(irq_stat, j).pmu_irqs);
  196. seq_printf(p, " Performance monitoring interrupts\n");
  197. seq_printf(p, "%*s: ", prec, "MCE");
  198. for_each_online_cpu(j)
  199. seq_printf(p, "%10u ", per_cpu(irq_stat, j).mce_exceptions);
  200. seq_printf(p, " Machine check exceptions\n");
  201. return 0;
  202. }
  203. int show_interrupts(struct seq_file *p, void *v)
  204. {
  205. unsigned long flags, any_count = 0;
  206. int i = *(loff_t *) v, j, prec;
  207. struct irqaction *action;
  208. struct irq_desc *desc;
  209. if (i > nr_irqs)
  210. return 0;
  211. for (prec = 3, j = 1000; prec < 10 && j <= nr_irqs; ++prec)
  212. j *= 10;
  213. if (i == nr_irqs)
  214. return show_other_interrupts(p, prec);
  215. /* print header */
  216. if (i == 0) {
  217. seq_printf(p, "%*s", prec + 8, "");
  218. for_each_online_cpu(j)
  219. seq_printf(p, "CPU%-8d", j);
  220. seq_putc(p, '\n');
  221. }
  222. desc = irq_to_desc(i);
  223. if (!desc)
  224. return 0;
  225. raw_spin_lock_irqsave(&desc->lock, flags);
  226. for_each_online_cpu(j)
  227. any_count |= kstat_irqs_cpu(i, j);
  228. action = desc->action;
  229. if (!action && !any_count)
  230. goto out;
  231. seq_printf(p, "%*d: ", prec, i);
  232. for_each_online_cpu(j)
  233. seq_printf(p, "%10u ", kstat_irqs_cpu(i, j));
  234. if (desc->chip)
  235. seq_printf(p, " %-16s", desc->chip->name);
  236. else
  237. seq_printf(p, " %-16s", "None");
  238. seq_printf(p, " %-8s", (desc->status & IRQ_LEVEL) ? "Level" : "Edge");
  239. if (action) {
  240. seq_printf(p, " %s", action->name);
  241. while ((action = action->next) != NULL)
  242. seq_printf(p, ", %s", action->name);
  243. }
  244. seq_putc(p, '\n');
  245. out:
  246. raw_spin_unlock_irqrestore(&desc->lock, flags);
  247. return 0;
  248. }
  249. /*
  250. * /proc/stat helpers
  251. */
  252. u64 arch_irq_stat_cpu(unsigned int cpu)
  253. {
  254. u64 sum = per_cpu(irq_stat, cpu).timer_irqs;
  255. sum += per_cpu(irq_stat, cpu).pmu_irqs;
  256. sum += per_cpu(irq_stat, cpu).mce_exceptions;
  257. sum += per_cpu(irq_stat, cpu).spurious_irqs;
  258. return sum;
  259. }
  260. #ifdef CONFIG_HOTPLUG_CPU
  261. void fixup_irqs(const struct cpumask *map)
  262. {
  263. struct irq_desc *desc;
  264. unsigned int irq;
  265. static int warned;
  266. cpumask_var_t mask;
  267. alloc_cpumask_var(&mask, GFP_KERNEL);
  268. for_each_irq(irq) {
  269. desc = irq_to_desc(irq);
  270. if (!desc)
  271. continue;
  272. if (desc->status & IRQ_PER_CPU)
  273. continue;
  274. cpumask_and(mask, desc->affinity, map);
  275. if (cpumask_any(mask) >= nr_cpu_ids) {
  276. printk("Breaking affinity for irq %i\n", irq);
  277. cpumask_copy(mask, map);
  278. }
  279. if (desc->chip->set_affinity)
  280. desc->chip->set_affinity(irq, mask);
  281. else if (desc->action && !(warned++))
  282. printk("Cannot set affinity for irq %i\n", irq);
  283. }
  284. free_cpumask_var(mask);
  285. local_irq_enable();
  286. mdelay(1);
  287. local_irq_disable();
  288. }
  289. #endif
  290. static inline void handle_one_irq(unsigned int irq)
  291. {
  292. struct thread_info *curtp, *irqtp;
  293. unsigned long saved_sp_limit;
  294. struct irq_desc *desc;
  295. /* Switch to the irq stack to handle this */
  296. curtp = current_thread_info();
  297. irqtp = hardirq_ctx[smp_processor_id()];
  298. if (curtp == irqtp) {
  299. /* We're already on the irq stack, just handle it */
  300. generic_handle_irq(irq);
  301. return;
  302. }
  303. desc = irq_to_desc(irq);
  304. saved_sp_limit = current->thread.ksp_limit;
  305. irqtp->task = curtp->task;
  306. irqtp->flags = 0;
  307. /* Copy the softirq bits in preempt_count so that the
  308. * softirq checks work in the hardirq context. */
  309. irqtp->preempt_count = (irqtp->preempt_count & ~SOFTIRQ_MASK) |
  310. (curtp->preempt_count & SOFTIRQ_MASK);
  311. current->thread.ksp_limit = (unsigned long)irqtp +
  312. _ALIGN_UP(sizeof(struct thread_info), 16);
  313. call_handle_irq(irq, desc, irqtp, desc->handle_irq);
  314. current->thread.ksp_limit = saved_sp_limit;
  315. irqtp->task = NULL;
  316. /* Set any flag that may have been set on the
  317. * alternate stack
  318. */
  319. if (irqtp->flags)
  320. set_bits(irqtp->flags, &curtp->flags);
  321. }
  322. static inline void check_stack_overflow(void)
  323. {
  324. #ifdef CONFIG_DEBUG_STACKOVERFLOW
  325. long sp;
  326. sp = __get_SP() & (THREAD_SIZE-1);
  327. /* check for stack overflow: is there less than 2KB free? */
  328. if (unlikely(sp < (sizeof(struct thread_info) + 2048))) {
  329. printk("do_IRQ: stack overflow: %ld\n",
  330. sp - sizeof(struct thread_info));
  331. dump_stack();
  332. }
  333. #endif
  334. }
  335. void do_IRQ(struct pt_regs *regs)
  336. {
  337. struct pt_regs *old_regs = set_irq_regs(regs);
  338. unsigned int irq;
  339. trace_irq_entry(regs);
  340. irq_enter();
  341. check_stack_overflow();
  342. irq = ppc_md.get_irq();
  343. if (irq != NO_IRQ && irq != NO_IRQ_IGNORE)
  344. handle_one_irq(irq);
  345. else if (irq != NO_IRQ_IGNORE)
  346. __get_cpu_var(irq_stat).spurious_irqs++;
  347. irq_exit();
  348. set_irq_regs(old_regs);
  349. #ifdef CONFIG_PPC_ISERIES
  350. if (firmware_has_feature(FW_FEATURE_ISERIES) &&
  351. get_lppaca()->int_dword.fields.decr_int) {
  352. get_lppaca()->int_dword.fields.decr_int = 0;
  353. /* Signal a fake decrementer interrupt */
  354. timer_interrupt(regs);
  355. }
  356. #endif
  357. trace_irq_exit(regs);
  358. }
  359. void __init init_IRQ(void)
  360. {
  361. if (ppc_md.init_IRQ)
  362. ppc_md.init_IRQ();
  363. exc_lvl_ctx_init();
  364. irq_ctx_init();
  365. }
  366. #if defined(CONFIG_BOOKE) || defined(CONFIG_40x)
  367. struct thread_info *critirq_ctx[NR_CPUS] __read_mostly;
  368. struct thread_info *dbgirq_ctx[NR_CPUS] __read_mostly;
  369. struct thread_info *mcheckirq_ctx[NR_CPUS] __read_mostly;
  370. void exc_lvl_ctx_init(void)
  371. {
  372. struct thread_info *tp;
  373. int i, hw_cpu;
  374. for_each_possible_cpu(i) {
  375. hw_cpu = get_hard_smp_processor_id(i);
  376. memset((void *)critirq_ctx[hw_cpu], 0, THREAD_SIZE);
  377. tp = critirq_ctx[hw_cpu];
  378. tp->cpu = i;
  379. tp->preempt_count = 0;
  380. #ifdef CONFIG_BOOKE
  381. memset((void *)dbgirq_ctx[hw_cpu], 0, THREAD_SIZE);
  382. tp = dbgirq_ctx[hw_cpu];
  383. tp->cpu = i;
  384. tp->preempt_count = 0;
  385. memset((void *)mcheckirq_ctx[hw_cpu], 0, THREAD_SIZE);
  386. tp = mcheckirq_ctx[hw_cpu];
  387. tp->cpu = i;
  388. tp->preempt_count = HARDIRQ_OFFSET;
  389. #endif
  390. }
  391. }
  392. #endif
  393. struct thread_info *softirq_ctx[NR_CPUS] __read_mostly;
  394. struct thread_info *hardirq_ctx[NR_CPUS] __read_mostly;
  395. void irq_ctx_init(void)
  396. {
  397. struct thread_info *tp;
  398. int i;
  399. for_each_possible_cpu(i) {
  400. memset((void *)softirq_ctx[i], 0, THREAD_SIZE);
  401. tp = softirq_ctx[i];
  402. tp->cpu = i;
  403. tp->preempt_count = 0;
  404. memset((void *)hardirq_ctx[i], 0, THREAD_SIZE);
  405. tp = hardirq_ctx[i];
  406. tp->cpu = i;
  407. tp->preempt_count = HARDIRQ_OFFSET;
  408. }
  409. }
  410. static inline void do_softirq_onstack(void)
  411. {
  412. struct thread_info *curtp, *irqtp;
  413. unsigned long saved_sp_limit = current->thread.ksp_limit;
  414. curtp = current_thread_info();
  415. irqtp = softirq_ctx[smp_processor_id()];
  416. irqtp->task = curtp->task;
  417. current->thread.ksp_limit = (unsigned long)irqtp +
  418. _ALIGN_UP(sizeof(struct thread_info), 16);
  419. call_do_softirq(irqtp);
  420. current->thread.ksp_limit = saved_sp_limit;
  421. irqtp->task = NULL;
  422. }
  423. void do_softirq(void)
  424. {
  425. unsigned long flags;
  426. if (in_interrupt())
  427. return;
  428. local_irq_save(flags);
  429. if (local_softirq_pending())
  430. do_softirq_onstack();
  431. local_irq_restore(flags);
  432. }
  433. /*
  434. * IRQ controller and virtual interrupts
  435. */
  436. static LIST_HEAD(irq_hosts);
  437. static DEFINE_RAW_SPINLOCK(irq_big_lock);
  438. static unsigned int revmap_trees_allocated;
  439. static DEFINE_MUTEX(revmap_trees_mutex);
  440. struct irq_map_entry irq_map[NR_IRQS];
  441. static unsigned int irq_virq_count = NR_IRQS;
  442. static struct irq_host *irq_default_host;
  443. irq_hw_number_t virq_to_hw(unsigned int virq)
  444. {
  445. return irq_map[virq].hwirq;
  446. }
  447. EXPORT_SYMBOL_GPL(virq_to_hw);
  448. static int default_irq_host_match(struct irq_host *h, struct device_node *np)
  449. {
  450. return h->of_node != NULL && h->of_node == np;
  451. }
  452. struct irq_host *irq_alloc_host(struct device_node *of_node,
  453. unsigned int revmap_type,
  454. unsigned int revmap_arg,
  455. struct irq_host_ops *ops,
  456. irq_hw_number_t inval_irq)
  457. {
  458. struct irq_host *host;
  459. unsigned int size = sizeof(struct irq_host);
  460. unsigned int i;
  461. unsigned int *rmap;
  462. unsigned long flags;
  463. /* Allocate structure and revmap table if using linear mapping */
  464. if (revmap_type == IRQ_HOST_MAP_LINEAR)
  465. size += revmap_arg * sizeof(unsigned int);
  466. host = zalloc_maybe_bootmem(size, GFP_KERNEL);
  467. if (host == NULL)
  468. return NULL;
  469. /* Fill structure */
  470. host->revmap_type = revmap_type;
  471. host->inval_irq = inval_irq;
  472. host->ops = ops;
  473. host->of_node = of_node_get(of_node);
  474. if (host->ops->match == NULL)
  475. host->ops->match = default_irq_host_match;
  476. raw_spin_lock_irqsave(&irq_big_lock, flags);
  477. /* If it's a legacy controller, check for duplicates and
  478. * mark it as allocated (we use irq 0 host pointer for that
  479. */
  480. if (revmap_type == IRQ_HOST_MAP_LEGACY) {
  481. if (irq_map[0].host != NULL) {
  482. raw_spin_unlock_irqrestore(&irq_big_lock, flags);
  483. /* If we are early boot, we can't free the structure,
  484. * too bad...
  485. * this will be fixed once slab is made available early
  486. * instead of the current cruft
  487. */
  488. if (mem_init_done) {
  489. of_node_put(host->of_node);
  490. kfree(host);
  491. }
  492. return NULL;
  493. }
  494. irq_map[0].host = host;
  495. }
  496. list_add(&host->link, &irq_hosts);
  497. raw_spin_unlock_irqrestore(&irq_big_lock, flags);
  498. /* Additional setups per revmap type */
  499. switch(revmap_type) {
  500. case IRQ_HOST_MAP_LEGACY:
  501. /* 0 is always the invalid number for legacy */
  502. host->inval_irq = 0;
  503. /* setup us as the host for all legacy interrupts */
  504. for (i = 1; i < NUM_ISA_INTERRUPTS; i++) {
  505. irq_map[i].hwirq = i;
  506. smp_wmb();
  507. irq_map[i].host = host;
  508. smp_wmb();
  509. /* Clear norequest flags */
  510. irq_to_desc(i)->status &= ~IRQ_NOREQUEST;
  511. /* Legacy flags are left to default at this point,
  512. * one can then use irq_create_mapping() to
  513. * explicitly change them
  514. */
  515. ops->map(host, i, i);
  516. }
  517. break;
  518. case IRQ_HOST_MAP_LINEAR:
  519. rmap = (unsigned int *)(host + 1);
  520. for (i = 0; i < revmap_arg; i++)
  521. rmap[i] = NO_IRQ;
  522. host->revmap_data.linear.size = revmap_arg;
  523. smp_wmb();
  524. host->revmap_data.linear.revmap = rmap;
  525. break;
  526. default:
  527. break;
  528. }
  529. pr_debug("irq: Allocated host of type %d @0x%p\n", revmap_type, host);
  530. return host;
  531. }
  532. struct irq_host *irq_find_host(struct device_node *node)
  533. {
  534. struct irq_host *h, *found = NULL;
  535. unsigned long flags;
  536. /* We might want to match the legacy controller last since
  537. * it might potentially be set to match all interrupts in
  538. * the absence of a device node. This isn't a problem so far
  539. * yet though...
  540. */
  541. raw_spin_lock_irqsave(&irq_big_lock, flags);
  542. list_for_each_entry(h, &irq_hosts, link)
  543. if (h->ops->match(h, node)) {
  544. found = h;
  545. break;
  546. }
  547. raw_spin_unlock_irqrestore(&irq_big_lock, flags);
  548. return found;
  549. }
  550. EXPORT_SYMBOL_GPL(irq_find_host);
  551. void irq_set_default_host(struct irq_host *host)
  552. {
  553. pr_debug("irq: Default host set to @0x%p\n", host);
  554. irq_default_host = host;
  555. }
  556. void irq_set_virq_count(unsigned int count)
  557. {
  558. pr_debug("irq: Trying to set virq count to %d\n", count);
  559. BUG_ON(count < NUM_ISA_INTERRUPTS);
  560. if (count < NR_IRQS)
  561. irq_virq_count = count;
  562. }
  563. static int irq_setup_virq(struct irq_host *host, unsigned int virq,
  564. irq_hw_number_t hwirq)
  565. {
  566. struct irq_desc *desc;
  567. desc = irq_to_desc_alloc_node(virq, 0);
  568. if (!desc) {
  569. pr_debug("irq: -> allocating desc failed\n");
  570. goto error;
  571. }
  572. /* Clear IRQ_NOREQUEST flag */
  573. desc->status &= ~IRQ_NOREQUEST;
  574. /* map it */
  575. smp_wmb();
  576. irq_map[virq].hwirq = hwirq;
  577. smp_mb();
  578. if (host->ops->map(host, virq, hwirq)) {
  579. pr_debug("irq: -> mapping failed, freeing\n");
  580. goto error;
  581. }
  582. return 0;
  583. error:
  584. irq_free_virt(virq, 1);
  585. return -1;
  586. }
  587. unsigned int irq_create_direct_mapping(struct irq_host *host)
  588. {
  589. unsigned int virq;
  590. if (host == NULL)
  591. host = irq_default_host;
  592. BUG_ON(host == NULL);
  593. WARN_ON(host->revmap_type != IRQ_HOST_MAP_NOMAP);
  594. virq = irq_alloc_virt(host, 1, 0);
  595. if (virq == NO_IRQ) {
  596. pr_debug("irq: create_direct virq allocation failed\n");
  597. return NO_IRQ;
  598. }
  599. pr_debug("irq: create_direct obtained virq %d\n", virq);
  600. if (irq_setup_virq(host, virq, virq))
  601. return NO_IRQ;
  602. return virq;
  603. }
  604. unsigned int irq_create_mapping(struct irq_host *host,
  605. irq_hw_number_t hwirq)
  606. {
  607. unsigned int virq, hint;
  608. pr_debug("irq: irq_create_mapping(0x%p, 0x%lx)\n", host, hwirq);
  609. /* Look for default host if nececssary */
  610. if (host == NULL)
  611. host = irq_default_host;
  612. if (host == NULL) {
  613. printk(KERN_WARNING "irq_create_mapping called for"
  614. " NULL host, hwirq=%lx\n", hwirq);
  615. WARN_ON(1);
  616. return NO_IRQ;
  617. }
  618. pr_debug("irq: -> using host @%p\n", host);
  619. /* Check if mapping already exist, if it does, call
  620. * host->ops->map() to update the flags
  621. */
  622. virq = irq_find_mapping(host, hwirq);
  623. if (virq != NO_IRQ) {
  624. if (host->ops->remap)
  625. host->ops->remap(host, virq, hwirq);
  626. pr_debug("irq: -> existing mapping on virq %d\n", virq);
  627. return virq;
  628. }
  629. /* Get a virtual interrupt number */
  630. if (host->revmap_type == IRQ_HOST_MAP_LEGACY) {
  631. /* Handle legacy */
  632. virq = (unsigned int)hwirq;
  633. if (virq == 0 || virq >= NUM_ISA_INTERRUPTS)
  634. return NO_IRQ;
  635. return virq;
  636. } else {
  637. /* Allocate a virtual interrupt number */
  638. hint = hwirq % irq_virq_count;
  639. virq = irq_alloc_virt(host, 1, hint);
  640. if (virq == NO_IRQ) {
  641. pr_debug("irq: -> virq allocation failed\n");
  642. return NO_IRQ;
  643. }
  644. }
  645. if (irq_setup_virq(host, virq, hwirq))
  646. return NO_IRQ;
  647. printk(KERN_DEBUG "irq: irq %lu on host %s mapped to virtual irq %u\n",
  648. hwirq, host->of_node ? host->of_node->full_name : "null", virq);
  649. return virq;
  650. }
  651. EXPORT_SYMBOL_GPL(irq_create_mapping);
  652. unsigned int irq_create_of_mapping(struct device_node *controller,
  653. const u32 *intspec, unsigned int intsize)
  654. {
  655. struct irq_host *host;
  656. irq_hw_number_t hwirq;
  657. unsigned int type = IRQ_TYPE_NONE;
  658. unsigned int virq;
  659. if (controller == NULL)
  660. host = irq_default_host;
  661. else
  662. host = irq_find_host(controller);
  663. if (host == NULL) {
  664. printk(KERN_WARNING "irq: no irq host found for %s !\n",
  665. controller->full_name);
  666. return NO_IRQ;
  667. }
  668. /* If host has no translation, then we assume interrupt line */
  669. if (host->ops->xlate == NULL)
  670. hwirq = intspec[0];
  671. else {
  672. if (host->ops->xlate(host, controller, intspec, intsize,
  673. &hwirq, &type))
  674. return NO_IRQ;
  675. }
  676. /* Create mapping */
  677. virq = irq_create_mapping(host, hwirq);
  678. if (virq == NO_IRQ)
  679. return virq;
  680. /* Set type if specified and different than the current one */
  681. if (type != IRQ_TYPE_NONE &&
  682. type != (irq_to_desc(virq)->status & IRQF_TRIGGER_MASK))
  683. set_irq_type(virq, type);
  684. return virq;
  685. }
  686. EXPORT_SYMBOL_GPL(irq_create_of_mapping);
  687. void irq_dispose_mapping(unsigned int virq)
  688. {
  689. struct irq_host *host;
  690. irq_hw_number_t hwirq;
  691. if (virq == NO_IRQ)
  692. return;
  693. host = irq_map[virq].host;
  694. WARN_ON (host == NULL);
  695. if (host == NULL)
  696. return;
  697. /* Never unmap legacy interrupts */
  698. if (host->revmap_type == IRQ_HOST_MAP_LEGACY)
  699. return;
  700. /* remove chip and handler */
  701. set_irq_chip_and_handler(virq, NULL, NULL);
  702. /* Make sure it's completed */
  703. synchronize_irq(virq);
  704. /* Tell the PIC about it */
  705. if (host->ops->unmap)
  706. host->ops->unmap(host, virq);
  707. smp_mb();
  708. /* Clear reverse map */
  709. hwirq = irq_map[virq].hwirq;
  710. switch(host->revmap_type) {
  711. case IRQ_HOST_MAP_LINEAR:
  712. if (hwirq < host->revmap_data.linear.size)
  713. host->revmap_data.linear.revmap[hwirq] = NO_IRQ;
  714. break;
  715. case IRQ_HOST_MAP_TREE:
  716. /*
  717. * Check if radix tree allocated yet, if not then nothing to
  718. * remove.
  719. */
  720. smp_rmb();
  721. if (revmap_trees_allocated < 1)
  722. break;
  723. mutex_lock(&revmap_trees_mutex);
  724. radix_tree_delete(&host->revmap_data.tree, hwirq);
  725. mutex_unlock(&revmap_trees_mutex);
  726. break;
  727. }
  728. /* Destroy map */
  729. smp_mb();
  730. irq_map[virq].hwirq = host->inval_irq;
  731. /* Set some flags */
  732. irq_to_desc(virq)->status |= IRQ_NOREQUEST;
  733. /* Free it */
  734. irq_free_virt(virq, 1);
  735. }
  736. EXPORT_SYMBOL_GPL(irq_dispose_mapping);
  737. unsigned int irq_find_mapping(struct irq_host *host,
  738. irq_hw_number_t hwirq)
  739. {
  740. unsigned int i;
  741. unsigned int hint = hwirq % irq_virq_count;
  742. /* Look for default host if nececssary */
  743. if (host == NULL)
  744. host = irq_default_host;
  745. if (host == NULL)
  746. return NO_IRQ;
  747. /* legacy -> bail early */
  748. if (host->revmap_type == IRQ_HOST_MAP_LEGACY)
  749. return hwirq;
  750. /* Slow path does a linear search of the map */
  751. if (hint < NUM_ISA_INTERRUPTS)
  752. hint = NUM_ISA_INTERRUPTS;
  753. i = hint;
  754. do {
  755. if (irq_map[i].host == host &&
  756. irq_map[i].hwirq == hwirq)
  757. return i;
  758. i++;
  759. if (i >= irq_virq_count)
  760. i = NUM_ISA_INTERRUPTS;
  761. } while(i != hint);
  762. return NO_IRQ;
  763. }
  764. EXPORT_SYMBOL_GPL(irq_find_mapping);
  765. unsigned int irq_radix_revmap_lookup(struct irq_host *host,
  766. irq_hw_number_t hwirq)
  767. {
  768. struct irq_map_entry *ptr;
  769. unsigned int virq;
  770. WARN_ON(host->revmap_type != IRQ_HOST_MAP_TREE);
  771. /*
  772. * Check if the radix tree exists and has bee initialized.
  773. * If not, we fallback to slow mode
  774. */
  775. if (revmap_trees_allocated < 2)
  776. return irq_find_mapping(host, hwirq);
  777. /* Now try to resolve */
  778. /*
  779. * No rcu_read_lock(ing) needed, the ptr returned can't go under us
  780. * as it's referencing an entry in the static irq_map table.
  781. */
  782. ptr = radix_tree_lookup(&host->revmap_data.tree, hwirq);
  783. /*
  784. * If found in radix tree, then fine.
  785. * Else fallback to linear lookup - this should not happen in practice
  786. * as it means that we failed to insert the node in the radix tree.
  787. */
  788. if (ptr)
  789. virq = ptr - irq_map;
  790. else
  791. virq = irq_find_mapping(host, hwirq);
  792. return virq;
  793. }
  794. void irq_radix_revmap_insert(struct irq_host *host, unsigned int virq,
  795. irq_hw_number_t hwirq)
  796. {
  797. WARN_ON(host->revmap_type != IRQ_HOST_MAP_TREE);
  798. /*
  799. * Check if the radix tree exists yet.
  800. * If not, then the irq will be inserted into the tree when it gets
  801. * initialized.
  802. */
  803. smp_rmb();
  804. if (revmap_trees_allocated < 1)
  805. return;
  806. if (virq != NO_IRQ) {
  807. mutex_lock(&revmap_trees_mutex);
  808. radix_tree_insert(&host->revmap_data.tree, hwirq,
  809. &irq_map[virq]);
  810. mutex_unlock(&revmap_trees_mutex);
  811. }
  812. }
  813. unsigned int irq_linear_revmap(struct irq_host *host,
  814. irq_hw_number_t hwirq)
  815. {
  816. unsigned int *revmap;
  817. WARN_ON(host->revmap_type != IRQ_HOST_MAP_LINEAR);
  818. /* Check revmap bounds */
  819. if (unlikely(hwirq >= host->revmap_data.linear.size))
  820. return irq_find_mapping(host, hwirq);
  821. /* Check if revmap was allocated */
  822. revmap = host->revmap_data.linear.revmap;
  823. if (unlikely(revmap == NULL))
  824. return irq_find_mapping(host, hwirq);
  825. /* Fill up revmap with slow path if no mapping found */
  826. if (unlikely(revmap[hwirq] == NO_IRQ))
  827. revmap[hwirq] = irq_find_mapping(host, hwirq);
  828. return revmap[hwirq];
  829. }
  830. unsigned int irq_alloc_virt(struct irq_host *host,
  831. unsigned int count,
  832. unsigned int hint)
  833. {
  834. unsigned long flags;
  835. unsigned int i, j, found = NO_IRQ;
  836. if (count == 0 || count > (irq_virq_count - NUM_ISA_INTERRUPTS))
  837. return NO_IRQ;
  838. raw_spin_lock_irqsave(&irq_big_lock, flags);
  839. /* Use hint for 1 interrupt if any */
  840. if (count == 1 && hint >= NUM_ISA_INTERRUPTS &&
  841. hint < irq_virq_count && irq_map[hint].host == NULL) {
  842. found = hint;
  843. goto hint_found;
  844. }
  845. /* Look for count consecutive numbers in the allocatable
  846. * (non-legacy) space
  847. */
  848. for (i = NUM_ISA_INTERRUPTS, j = 0; i < irq_virq_count; i++) {
  849. if (irq_map[i].host != NULL)
  850. j = 0;
  851. else
  852. j++;
  853. if (j == count) {
  854. found = i - count + 1;
  855. break;
  856. }
  857. }
  858. if (found == NO_IRQ) {
  859. raw_spin_unlock_irqrestore(&irq_big_lock, flags);
  860. return NO_IRQ;
  861. }
  862. hint_found:
  863. for (i = found; i < (found + count); i++) {
  864. irq_map[i].hwirq = host->inval_irq;
  865. smp_wmb();
  866. irq_map[i].host = host;
  867. }
  868. raw_spin_unlock_irqrestore(&irq_big_lock, flags);
  869. return found;
  870. }
  871. void irq_free_virt(unsigned int virq, unsigned int count)
  872. {
  873. unsigned long flags;
  874. unsigned int i;
  875. WARN_ON (virq < NUM_ISA_INTERRUPTS);
  876. WARN_ON (count == 0 || (virq + count) > irq_virq_count);
  877. raw_spin_lock_irqsave(&irq_big_lock, flags);
  878. for (i = virq; i < (virq + count); i++) {
  879. struct irq_host *host;
  880. if (i < NUM_ISA_INTERRUPTS ||
  881. (virq + count) > irq_virq_count)
  882. continue;
  883. host = irq_map[i].host;
  884. irq_map[i].hwirq = host->inval_irq;
  885. smp_wmb();
  886. irq_map[i].host = NULL;
  887. }
  888. raw_spin_unlock_irqrestore(&irq_big_lock, flags);
  889. }
  890. int arch_early_irq_init(void)
  891. {
  892. struct irq_desc *desc;
  893. int i;
  894. for (i = 0; i < NR_IRQS; i++) {
  895. desc = irq_to_desc(i);
  896. if (desc)
  897. desc->status |= IRQ_NOREQUEST;
  898. }
  899. return 0;
  900. }
  901. int arch_init_chip_data(struct irq_desc *desc, int node)
  902. {
  903. desc->status |= IRQ_NOREQUEST;
  904. return 0;
  905. }
  906. /* We need to create the radix trees late */
  907. static int irq_late_init(void)
  908. {
  909. struct irq_host *h;
  910. unsigned int i;
  911. /*
  912. * No mutual exclusion with respect to accessors of the tree is needed
  913. * here as the synchronization is done via the state variable
  914. * revmap_trees_allocated.
  915. */
  916. list_for_each_entry(h, &irq_hosts, link) {
  917. if (h->revmap_type == IRQ_HOST_MAP_TREE)
  918. INIT_RADIX_TREE(&h->revmap_data.tree, GFP_KERNEL);
  919. }
  920. /*
  921. * Make sure the radix trees inits are visible before setting
  922. * the flag
  923. */
  924. smp_wmb();
  925. revmap_trees_allocated = 1;
  926. /*
  927. * Insert the reverse mapping for those interrupts already present
  928. * in irq_map[].
  929. */
  930. mutex_lock(&revmap_trees_mutex);
  931. for (i = 0; i < irq_virq_count; i++) {
  932. if (irq_map[i].host &&
  933. (irq_map[i].host->revmap_type == IRQ_HOST_MAP_TREE))
  934. radix_tree_insert(&irq_map[i].host->revmap_data.tree,
  935. irq_map[i].hwirq, &irq_map[i]);
  936. }
  937. mutex_unlock(&revmap_trees_mutex);
  938. /*
  939. * Make sure the radix trees insertions are visible before setting
  940. * the flag
  941. */
  942. smp_wmb();
  943. revmap_trees_allocated = 2;
  944. return 0;
  945. }
  946. arch_initcall(irq_late_init);
  947. #ifdef CONFIG_VIRQ_DEBUG
  948. static int virq_debug_show(struct seq_file *m, void *private)
  949. {
  950. unsigned long flags;
  951. struct irq_desc *desc;
  952. const char *p;
  953. static const char none[] = "none";
  954. int i;
  955. seq_printf(m, "%-5s %-7s %-15s %s\n", "virq", "hwirq",
  956. "chip name", "host name");
  957. for (i = 1; i < nr_irqs; i++) {
  958. desc = irq_to_desc(i);
  959. if (!desc)
  960. continue;
  961. raw_spin_lock_irqsave(&desc->lock, flags);
  962. if (desc->action && desc->action->handler) {
  963. seq_printf(m, "%5d ", i);
  964. seq_printf(m, "0x%05lx ", virq_to_hw(i));
  965. if (desc->chip && desc->chip->name)
  966. p = desc->chip->name;
  967. else
  968. p = none;
  969. seq_printf(m, "%-15s ", p);
  970. if (irq_map[i].host && irq_map[i].host->of_node)
  971. p = irq_map[i].host->of_node->full_name;
  972. else
  973. p = none;
  974. seq_printf(m, "%s\n", p);
  975. }
  976. raw_spin_unlock_irqrestore(&desc->lock, flags);
  977. }
  978. return 0;
  979. }
  980. static int virq_debug_open(struct inode *inode, struct file *file)
  981. {
  982. return single_open(file, virq_debug_show, inode->i_private);
  983. }
  984. static const struct file_operations virq_debug_fops = {
  985. .open = virq_debug_open,
  986. .read = seq_read,
  987. .llseek = seq_lseek,
  988. .release = single_release,
  989. };
  990. static int __init irq_debugfs_init(void)
  991. {
  992. if (debugfs_create_file("virq_mapping", S_IRUGO, powerpc_debugfs_root,
  993. NULL, &virq_debug_fops) == NULL)
  994. return -ENOMEM;
  995. return 0;
  996. }
  997. __initcall(irq_debugfs_init);
  998. #endif /* CONFIG_VIRQ_DEBUG */
  999. #ifdef CONFIG_PPC64
  1000. static int __init setup_noirqdistrib(char *str)
  1001. {
  1002. distribute_irqs = 0;
  1003. return 1;
  1004. }
  1005. __setup("noirqdistrib", setup_noirqdistrib);
  1006. #endif /* CONFIG_PPC64 */