blob: 17806e001e50c4dbf37fc8ff77b6754e4a5ffc3f [file] [log] [blame]
Arnd Bergmann8b3d6662005-11-15 15:53:52 -05001/* sched.c - SPU scheduler.
2 *
3 * Copyright (C) IBM 2005
4 * Author: Mark Nutter <mnutter@us.ibm.com>
5 *
Mark Nuttera68cf982006-10-04 17:26:12 +02006 * 2006-03-31 NUMA domains added.
Arnd Bergmann8b3d6662005-11-15 15:53:52 -05007 *
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License as published by
10 * the Free Software Foundation; either version 2, or (at your option)
11 * any later version.
12 *
13 * This program is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 * GNU General Public License for more details.
17 *
18 * You should have received a copy of the GNU General Public License
19 * along with this program; if not, write to the Free Software
20 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
21 */
22
Arnd Bergmann3b3d22c2005-12-05 22:52:24 -050023#undef DEBUG
24
Arnd Bergmann8b3d6662005-11-15 15:53:52 -050025#include <linux/module.h>
26#include <linux/errno.h>
27#include <linux/sched.h>
28#include <linux/kernel.h>
29#include <linux/mm.h>
30#include <linux/completion.h>
31#include <linux/vmalloc.h>
32#include <linux/smp.h>
Arnd Bergmann8b3d6662005-11-15 15:53:52 -050033#include <linux/stddef.h>
34#include <linux/unistd.h>
Mark Nuttera68cf982006-10-04 17:26:12 +020035#include <linux/numa.h>
36#include <linux/mutex.h>
Arnd Bergmann86767272006-10-04 17:26:21 +020037#include <linux/notifier.h>
Christoph Hellwig37901802007-06-29 10:57:51 +100038#include <linux/kthread.h>
Christoph Hellwig65de66f2007-06-29 10:58:02 +100039#include <linux/pid_namespace.h>
40#include <linux/proc_fs.h>
41#include <linux/seq_file.h>
Arnd Bergmann8b3d6662005-11-15 15:53:52 -050042
43#include <asm/io.h>
44#include <asm/mmu_context.h>
45#include <asm/spu.h>
46#include <asm/spu_csa.h>
Geoff Levanda91942a2006-06-19 20:33:30 +020047#include <asm/spu_priv1.h>
Arnd Bergmann8b3d6662005-11-15 15:53:52 -050048#include "spufs.h"
49
Arnd Bergmann8b3d6662005-11-15 15:53:52 -050050struct spu_prio_array {
Christoph Hellwig72cb3602007-02-13 21:54:28 +010051 DECLARE_BITMAP(bitmap, MAX_PRIO);
Christoph Hellwig079cdb62007-02-13 21:54:23 +010052 struct list_head runq[MAX_PRIO];
53 spinlock_t runq_lock;
Christoph Hellwig65de66f2007-06-29 10:58:02 +100054 int nr_waiting;
Arnd Bergmann8b3d6662005-11-15 15:53:52 -050055};
56
Christoph Hellwig65de66f2007-06-29 10:58:02 +100057static unsigned long spu_avenrun[3];
Mark Nuttera68cf982006-10-04 17:26:12 +020058static struct spu_prio_array *spu_prio;
Christoph Hellwig37901802007-06-29 10:57:51 +100059static struct task_struct *spusched_task;
60static struct timer_list spusched_timer;
Arnd Bergmann8b3d6662005-11-15 15:53:52 -050061
Christoph Hellwigfe443ef2007-06-29 10:57:52 +100062/*
63 * Priority of a normal, non-rt, non-niced'd process (aka nice level 0).
64 */
65#define NORMAL_PRIO 120
66
67/*
68 * Frequency of the spu scheduler tick. By default we do one SPU scheduler
69 * tick for every 10 CPU scheduler ticks.
70 */
71#define SPUSCHED_TICK (10)
72
73/*
74 * These are the 'tuning knobs' of the scheduler:
75 *
Jeremy Kerr60e24232007-06-29 10:57:53 +100076 * Minimum timeslice is 5 msecs (or 1 spu scheduler tick, whichever is
77 * larger), default timeslice is 100 msecs, maximum timeslice is 800 msecs.
Christoph Hellwigfe443ef2007-06-29 10:57:52 +100078 */
Jeremy Kerr60e24232007-06-29 10:57:53 +100079#define MIN_SPU_TIMESLICE max(5 * HZ / (1000 * SPUSCHED_TICK), 1)
80#define DEF_SPU_TIMESLICE (100 * HZ / (1000 * SPUSCHED_TICK))
Christoph Hellwigfe443ef2007-06-29 10:57:52 +100081
82#define MAX_USER_PRIO (MAX_PRIO - MAX_RT_PRIO)
83#define SCALE_PRIO(x, prio) \
84 max(x * (MAX_PRIO - prio) / (MAX_USER_PRIO / 2), MIN_SPU_TIMESLICE)
85
86/*
87 * scale user-nice values [ -20 ... 0 ... 19 ] to time slice values:
88 * [800ms ... 100ms ... 5ms]
89 *
90 * The higher a thread's priority, the bigger timeslices
91 * it gets during one round of execution. But even the lowest
92 * priority thread gets MIN_TIMESLICE worth of execution time.
93 */
94void spu_set_timeslice(struct spu_context *ctx)
95{
96 if (ctx->prio < NORMAL_PRIO)
97 ctx->time_slice = SCALE_PRIO(DEF_SPU_TIMESLICE * 4, ctx->prio);
98 else
99 ctx->time_slice = SCALE_PRIO(DEF_SPU_TIMESLICE, ctx->prio);
100}
101
Christoph Hellwig2cf2b3b2007-06-29 10:57:55 +1000102/*
103 * Update scheduling information from the owning thread.
104 */
105void __spu_update_sched_info(struct spu_context *ctx)
106{
107 /*
Christoph Hellwig476273a2007-06-29 10:58:01 +1000108 * 32-Bit assignment are atomic on powerpc, and we don't care about
109 * memory ordering here because retriving the controlling thread is
110 * per defintion racy.
111 */
112 ctx->tid = current->pid;
113
114 /*
Christoph Hellwig2cf2b3b2007-06-29 10:57:55 +1000115 * We do our own priority calculations, so we normally want
116 * ->static_prio to start with. Unfortunately thies field
117 * contains junk for threads with a realtime scheduling
118 * policy so we have to look at ->prio in this case.
119 */
120 if (rt_prio(current->prio))
121 ctx->prio = current->prio;
122 else
123 ctx->prio = current->static_prio;
124 ctx->policy = current->policy;
Christoph Hellwigea1ae592007-06-29 10:57:56 +1000125
126 /*
Christoph Hellwig486acd42007-07-20 21:39:54 +0200127 * A lot of places that don't hold list_mutex poke into
Christoph Hellwigea1ae592007-06-29 10:57:56 +1000128 * cpus_allowed, including grab_runnable_context which
129 * already holds the runq_lock. So abuse runq_lock
130 * to protect this field aswell.
131 */
132 spin_lock(&spu_prio->runq_lock);
133 ctx->cpus_allowed = current->cpus_allowed;
134 spin_unlock(&spu_prio->runq_lock);
Christoph Hellwig2cf2b3b2007-06-29 10:57:55 +1000135}
136
137void spu_update_sched_info(struct spu_context *ctx)
138{
139 int node = ctx->spu->node;
140
Christoph Hellwig486acd42007-07-20 21:39:54 +0200141 mutex_lock(&cbe_spu_info[node].list_mutex);
Christoph Hellwig2cf2b3b2007-06-29 10:57:55 +1000142 __spu_update_sched_info(ctx);
Christoph Hellwig486acd42007-07-20 21:39:54 +0200143 mutex_unlock(&cbe_spu_info[node].list_mutex);
Christoph Hellwig2cf2b3b2007-06-29 10:57:55 +1000144}
145
Christoph Hellwigea1ae592007-06-29 10:57:56 +1000146static int __node_allowed(struct spu_context *ctx, int node)
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500147{
Christoph Hellwigea1ae592007-06-29 10:57:56 +1000148 if (nr_cpus_node(node)) {
149 cpumask_t mask = node_to_cpumask(node);
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500150
Christoph Hellwigea1ae592007-06-29 10:57:56 +1000151 if (cpus_intersects(mask, ctx->cpus_allowed))
152 return 1;
153 }
154
155 return 0;
156}
157
158static int node_allowed(struct spu_context *ctx, int node)
159{
160 int rval;
161
162 spin_lock(&spu_prio->runq_lock);
163 rval = __node_allowed(ctx, node);
164 spin_unlock(&spu_prio->runq_lock);
165
166 return rval;
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500167}
168
Arnd Bergmann86767272006-10-04 17:26:21 +0200169static BLOCKING_NOTIFIER_HEAD(spu_switch_notifier);
170
Bob Nelson36aaccc2007-07-20 21:39:52 +0200171void spu_switch_notify(struct spu *spu, struct spu_context *ctx)
Arnd Bergmann86767272006-10-04 17:26:21 +0200172{
173 blocking_notifier_call_chain(&spu_switch_notifier,
174 ctx ? ctx->object_id : 0, spu);
175}
176
Bob Nelson36aaccc2007-07-20 21:39:52 +0200177static void notify_spus_active(void)
178{
179 int node;
180
181 /*
182 * Wake up the active spu_contexts.
183 *
184 * When the awakened processes see their "notify_active" flag is set,
185 * they will call spu_switch_notify();
186 */
187 for_each_online_node(node) {
188 struct spu *spu;
Christoph Hellwig486acd42007-07-20 21:39:54 +0200189
190 mutex_lock(&cbe_spu_info[node].list_mutex);
191 list_for_each_entry(spu, &cbe_spu_info[node].spus, cbe_list) {
192 if (spu->alloc_state != SPU_FREE) {
193 struct spu_context *ctx = spu->ctx;
194 set_bit(SPU_SCHED_NOTIFY_ACTIVE,
195 &ctx->sched_flags);
196 mb();
197 wake_up_all(&ctx->stop_wq);
198 }
Bob Nelson36aaccc2007-07-20 21:39:52 +0200199 }
Christoph Hellwig486acd42007-07-20 21:39:54 +0200200 mutex_unlock(&cbe_spu_info[node].list_mutex);
Bob Nelson36aaccc2007-07-20 21:39:52 +0200201 }
202}
203
Arnd Bergmann86767272006-10-04 17:26:21 +0200204int spu_switch_event_register(struct notifier_block * n)
205{
Bob Nelson36aaccc2007-07-20 21:39:52 +0200206 int ret;
207 ret = blocking_notifier_chain_register(&spu_switch_notifier, n);
208 if (!ret)
209 notify_spus_active();
210 return ret;
Arnd Bergmann86767272006-10-04 17:26:21 +0200211}
Bob Nelson36aaccc2007-07-20 21:39:52 +0200212EXPORT_SYMBOL_GPL(spu_switch_event_register);
Arnd Bergmann86767272006-10-04 17:26:21 +0200213
214int spu_switch_event_unregister(struct notifier_block * n)
215{
216 return blocking_notifier_chain_unregister(&spu_switch_notifier, n);
217}
Bob Nelson36aaccc2007-07-20 21:39:52 +0200218EXPORT_SYMBOL_GPL(spu_switch_event_unregister);
Arnd Bergmann86767272006-10-04 17:26:21 +0200219
Christoph Hellwig202557d2007-02-13 21:36:49 +0100220/**
221 * spu_bind_context - bind spu context to physical spu
222 * @spu: physical spu to bind to
223 * @ctx: context to bind
224 */
225static void spu_bind_context(struct spu *spu, struct spu_context *ctx)
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500226{
Mark Nuttera68cf982006-10-04 17:26:12 +0200227 pr_debug("%s: pid=%d SPU=%d NODE=%d\n", __FUNCTION__, current->pid,
228 spu->number, spu->node);
Andre Detsch27ec41d2007-07-20 21:39:33 +0200229 spuctx_switch_state(ctx, SPU_UTIL_SYSTEM);
Christoph Hellwige9f8a0b2007-06-29 10:58:03 +1000230
Arnd Bergmannaa6d5b22007-07-20 21:39:44 +0200231 if (ctx->flags & SPU_CREATE_NOSCHED)
232 atomic_inc(&cbe_spu_info[spu->node].reserved_spus);
233
Christoph Hellwige9f8a0b2007-06-29 10:58:03 +1000234 ctx->stats.slb_flt_base = spu->stats.slb_flt;
235 ctx->stats.class2_intr_base = spu->stats.class2_intr;
236
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500237 spu->ctx = ctx;
238 spu->flags = 0;
239 ctx->spu = spu;
240 ctx->ops = &spu_hw_ops;
241 spu->pid = current->pid;
Bob Nelson14748552007-07-20 21:39:53 +0200242 spu->tgid = current->tgid;
Benjamin Herrenschmidt94b2a432007-03-10 00:05:37 +0100243 spu_associate_mm(spu, ctx->owner);
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500244 spu->ibox_callback = spufs_ibox_callback;
245 spu->wbox_callback = spufs_wbox_callback;
Arnd Bergmann51104592005-12-05 22:52:25 -0500246 spu->stop_callback = spufs_stop_callback;
Arnd Bergmanna33a7d72006-03-23 00:00:11 +0100247 spu->mfc_callback = spufs_mfc_callback;
Arnd Bergmann9add11d2006-10-04 17:26:14 +0200248 spu->dma_callback = spufs_dma_callback;
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500249 mb();
Arnd Bergmann51104592005-12-05 22:52:25 -0500250 spu_unmap_mappings(ctx);
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500251 spu_restore(&ctx->csa, spu);
Arnd Bergmann2a911f02005-12-05 22:52:26 -0500252 spu->timestamp = jiffies;
Mark Nuttera68cf982006-10-04 17:26:12 +0200253 spu_cpu_affinity_set(spu, raw_smp_processor_id());
Arnd Bergmann86767272006-10-04 17:26:21 +0200254 spu_switch_notify(spu, ctx);
Christoph Hellwig81998ba2007-02-13 21:36:48 +0100255 ctx->state = SPU_STATE_RUNNABLE;
Andre Detsch27ec41d2007-07-20 21:39:33 +0200256
257 spuctx_switch_state(ctx, SPU_UTIL_IDLE_LOADED);
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500258}
259
Arnd Bergmannc5fc8d22007-07-20 21:39:48 +0200260/*
Christoph Hellwig486acd42007-07-20 21:39:54 +0200261 * Must be used with the list_mutex held.
Arnd Bergmannc5fc8d22007-07-20 21:39:48 +0200262 */
263static inline int sched_spu(struct spu *spu)
264{
Christoph Hellwig486acd42007-07-20 21:39:54 +0200265 BUG_ON(!mutex_is_locked(&cbe_spu_info[spu->node].list_mutex));
266
Arnd Bergmannc5fc8d22007-07-20 21:39:48 +0200267 return (!spu->ctx || !(spu->ctx->flags & SPU_CREATE_NOSCHED));
268}
269
270static void aff_merge_remaining_ctxs(struct spu_gang *gang)
271{
272 struct spu_context *ctx;
273
274 list_for_each_entry(ctx, &gang->aff_list_head, aff_list) {
275 if (list_empty(&ctx->aff_list))
276 list_add(&ctx->aff_list, &gang->aff_list_head);
277 }
278 gang->aff_flags |= AFF_MERGED;
279}
280
281static void aff_set_offsets(struct spu_gang *gang)
282{
283 struct spu_context *ctx;
284 int offset;
285
286 offset = -1;
287 list_for_each_entry_reverse(ctx, &gang->aff_ref_ctx->aff_list,
288 aff_list) {
289 if (&ctx->aff_list == &gang->aff_list_head)
290 break;
291 ctx->aff_offset = offset--;
292 }
293
294 offset = 0;
295 list_for_each_entry(ctx, gang->aff_ref_ctx->aff_list.prev, aff_list) {
296 if (&ctx->aff_list == &gang->aff_list_head)
297 break;
298 ctx->aff_offset = offset++;
299 }
300
301 gang->aff_flags |= AFF_OFFSETS_SET;
302}
303
304static struct spu *aff_ref_location(struct spu_context *ctx, int mem_aff,
305 int group_size, int lowest_offset)
306{
307 struct spu *spu;
308 int node, n;
309
310 /*
311 * TODO: A better algorithm could be used to find a good spu to be
312 * used as reference location for the ctxs chain.
313 */
314 node = cpu_to_node(raw_smp_processor_id());
315 for (n = 0; n < MAX_NUMNODES; n++, node++) {
316 node = (node < MAX_NUMNODES) ? node : 0;
317 if (!node_allowed(ctx, node))
318 continue;
Christoph Hellwig486acd42007-07-20 21:39:54 +0200319 mutex_lock(&cbe_spu_info[node].list_mutex);
Arnd Bergmannc5fc8d22007-07-20 21:39:48 +0200320 list_for_each_entry(spu, &cbe_spu_info[node].spus, cbe_list) {
321 if ((!mem_aff || spu->has_mem_affinity) &&
Christoph Hellwig486acd42007-07-20 21:39:54 +0200322 sched_spu(spu)) {
323 mutex_unlock(&cbe_spu_info[node].list_mutex);
Arnd Bergmannc5fc8d22007-07-20 21:39:48 +0200324 return spu;
Christoph Hellwig486acd42007-07-20 21:39:54 +0200325 }
Arnd Bergmannc5fc8d22007-07-20 21:39:48 +0200326 }
Christoph Hellwig486acd42007-07-20 21:39:54 +0200327 mutex_unlock(&cbe_spu_info[node].list_mutex);
Arnd Bergmannc5fc8d22007-07-20 21:39:48 +0200328 }
329 return NULL;
330}
331
332static void aff_set_ref_point_location(struct spu_gang *gang)
333{
334 int mem_aff, gs, lowest_offset;
335 struct spu_context *ctx;
336 struct spu *tmp;
337
338 mem_aff = gang->aff_ref_ctx->flags & SPU_CREATE_AFFINITY_MEM;
339 lowest_offset = 0;
340 gs = 0;
341
342 list_for_each_entry(tmp, &gang->aff_list_head, aff_list)
343 gs++;
344
345 list_for_each_entry_reverse(ctx, &gang->aff_ref_ctx->aff_list,
346 aff_list) {
347 if (&ctx->aff_list == &gang->aff_list_head)
348 break;
349 lowest_offset = ctx->aff_offset;
350 }
351
Andre Detsch683e3ab2007-07-31 09:48:11 +1000352 gang->aff_ref_spu = aff_ref_location(gang->aff_ref_ctx, mem_aff, gs,
353 lowest_offset);
Arnd Bergmannc5fc8d22007-07-20 21:39:48 +0200354}
355
Christoph Hellwig486acd42007-07-20 21:39:54 +0200356static struct spu *ctx_location(struct spu *ref, int offset, int node)
Arnd Bergmannc5fc8d22007-07-20 21:39:48 +0200357{
358 struct spu *spu;
359
360 spu = NULL;
361 if (offset >= 0) {
362 list_for_each_entry(spu, ref->aff_list.prev, aff_list) {
Christoph Hellwig486acd42007-07-20 21:39:54 +0200363 BUG_ON(spu->node != node);
Arnd Bergmannc5fc8d22007-07-20 21:39:48 +0200364 if (offset == 0)
365 break;
366 if (sched_spu(spu))
367 offset--;
368 }
369 } else {
370 list_for_each_entry_reverse(spu, ref->aff_list.next, aff_list) {
Christoph Hellwig486acd42007-07-20 21:39:54 +0200371 BUG_ON(spu->node != node);
Arnd Bergmannc5fc8d22007-07-20 21:39:48 +0200372 if (offset == 0)
373 break;
374 if (sched_spu(spu))
375 offset++;
376 }
377 }
Christoph Hellwig486acd42007-07-20 21:39:54 +0200378
Arnd Bergmannc5fc8d22007-07-20 21:39:48 +0200379 return spu;
380}
381
382/*
383 * affinity_check is called each time a context is going to be scheduled.
384 * It returns the spu ptr on which the context must run.
385 */
Christoph Hellwig486acd42007-07-20 21:39:54 +0200386static int has_affinity(struct spu_context *ctx)
Arnd Bergmannc5fc8d22007-07-20 21:39:48 +0200387{
Christoph Hellwig486acd42007-07-20 21:39:54 +0200388 struct spu_gang *gang = ctx->gang;
Arnd Bergmannc5fc8d22007-07-20 21:39:48 +0200389
390 if (list_empty(&ctx->aff_list))
Christoph Hellwig486acd42007-07-20 21:39:54 +0200391 return 0;
392
Arnd Bergmannc5fc8d22007-07-20 21:39:48 +0200393 if (!gang->aff_ref_spu) {
394 if (!(gang->aff_flags & AFF_MERGED))
395 aff_merge_remaining_ctxs(gang);
396 if (!(gang->aff_flags & AFF_OFFSETS_SET))
397 aff_set_offsets(gang);
398 aff_set_ref_point_location(gang);
399 }
Christoph Hellwig486acd42007-07-20 21:39:54 +0200400
401 return gang->aff_ref_spu != NULL;
Arnd Bergmannc5fc8d22007-07-20 21:39:48 +0200402}
403
Christoph Hellwig202557d2007-02-13 21:36:49 +0100404/**
405 * spu_unbind_context - unbind spu context from physical spu
406 * @spu: physical spu to unbind from
407 * @ctx: context to unbind
Christoph Hellwig202557d2007-02-13 21:36:49 +0100408 */
Christoph Hellwig678b2ff2007-02-13 21:54:25 +0100409static void spu_unbind_context(struct spu *spu, struct spu_context *ctx)
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500410{
Mark Nuttera68cf982006-10-04 17:26:12 +0200411 pr_debug("%s: unbind pid=%d SPU=%d NODE=%d\n", __FUNCTION__,
412 spu->pid, spu->number, spu->node);
Andre Detsch27ec41d2007-07-20 21:39:33 +0200413 spuctx_switch_state(ctx, SPU_UTIL_SYSTEM);
Christoph Hellwigfe2f8962007-06-29 10:58:07 +1000414
Arnd Bergmannaa6d5b22007-07-20 21:39:44 +0200415 if (spu->ctx->flags & SPU_CREATE_NOSCHED)
416 atomic_dec(&cbe_spu_info[spu->node].reserved_spus);
Andre Detsch36ddbb12007-09-19 14:38:12 +1000417
418 if (ctx->gang){
419 mutex_lock(&ctx->gang->aff_mutex);
420 if (has_affinity(ctx)) {
421 if (atomic_dec_and_test(&ctx->gang->aff_sched_count))
422 ctx->gang->aff_ref_spu = NULL;
423 }
424 mutex_unlock(&ctx->gang->aff_mutex);
425 }
426
Arnd Bergmann86767272006-10-04 17:26:21 +0200427 spu_switch_notify(spu, NULL);
Arnd Bergmann51104592005-12-05 22:52:25 -0500428 spu_unmap_mappings(ctx);
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500429 spu_save(&ctx->csa, spu);
Arnd Bergmann2a911f02005-12-05 22:52:26 -0500430 spu->timestamp = jiffies;
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500431 ctx->state = SPU_STATE_SAVED;
432 spu->ibox_callback = NULL;
433 spu->wbox_callback = NULL;
Arnd Bergmann51104592005-12-05 22:52:25 -0500434 spu->stop_callback = NULL;
Arnd Bergmanna33a7d72006-03-23 00:00:11 +0100435 spu->mfc_callback = NULL;
Arnd Bergmann9add11d2006-10-04 17:26:14 +0200436 spu->dma_callback = NULL;
Benjamin Herrenschmidt94b2a432007-03-10 00:05:37 +0100437 spu_associate_mm(spu, NULL);
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500438 spu->pid = 0;
Bob Nelson14748552007-07-20 21:39:53 +0200439 spu->tgid = 0;
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500440 ctx->ops = &spu_backing_ops;
Arnd Bergmann2a911f02005-12-05 22:52:26 -0500441 spu->flags = 0;
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500442 spu->ctx = NULL;
Christoph Hellwige9f8a0b2007-06-29 10:58:03 +1000443
444 ctx->stats.slb_flt +=
445 (spu->stats.slb_flt - ctx->stats.slb_flt_base);
446 ctx->stats.class2_intr +=
447 (spu->stats.class2_intr - ctx->stats.class2_intr_base);
Andre Detsch27ec41d2007-07-20 21:39:33 +0200448
449 /* This maps the underlying spu state to idle */
450 spuctx_switch_state(ctx, SPU_UTIL_IDLE_LOADED);
451 ctx->spu = NULL;
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500452}
453
Christoph Hellwig079cdb62007-02-13 21:54:23 +0100454/**
455 * spu_add_to_rq - add a context to the runqueue
456 * @ctx: context to add
457 */
Luke Browning4e0f4ed2007-04-23 21:08:13 +0200458static void __spu_add_to_rq(struct spu_context *ctx)
Arnd Bergmann2a911f02005-12-05 22:52:26 -0500459{
Christoph Hellwig27449972007-06-29 10:58:06 +1000460 /*
461 * Unfortunately this code path can be called from multiple threads
462 * on behalf of a single context due to the way the problem state
463 * mmap support works.
464 *
465 * Fortunately we need to wake up all these threads at the same time
466 * and can simply skip the runqueue addition for every but the first
467 * thread getting into this codepath.
468 *
469 * It's still quite hacky, and long-term we should proxy all other
470 * threads through the owner thread so that spu_run is in control
471 * of all the scheduling activity for a given context.
472 */
473 if (list_empty(&ctx->rq)) {
474 list_add_tail(&ctx->rq, &spu_prio->runq[ctx->prio]);
475 set_bit(ctx->prio, spu_prio->bitmap);
476 if (!spu_prio->nr_waiting++)
477 __mod_timer(&spusched_timer, jiffies + SPUSCHED_TICK);
478 }
Mark Nuttera68cf982006-10-04 17:26:12 +0200479}
Arnd Bergmann2a911f02005-12-05 22:52:26 -0500480
Luke Browning4e0f4ed2007-04-23 21:08:13 +0200481static void __spu_del_from_rq(struct spu_context *ctx)
Christoph Hellwiga475c2f2007-04-23 21:08:11 +0200482{
Luke Browning4e0f4ed2007-04-23 21:08:13 +0200483 int prio = ctx->prio;
484
Christoph Hellwig65de66f2007-06-29 10:58:02 +1000485 if (!list_empty(&ctx->rq)) {
Christoph Hellwigc77239b2007-06-29 10:58:05 +1000486 if (!--spu_prio->nr_waiting)
487 del_timer(&spusched_timer);
Christoph Hellwiga475c2f2007-04-23 21:08:11 +0200488 list_del_init(&ctx->rq);
Christoph Hellwigc77239b2007-06-29 10:58:05 +1000489
490 if (list_empty(&spu_prio->runq[prio]))
491 clear_bit(prio, spu_prio->bitmap);
Christoph Hellwig65de66f2007-06-29 10:58:02 +1000492 }
Mark Nuttera68cf982006-10-04 17:26:12 +0200493}
494
Christoph Hellwig079cdb62007-02-13 21:54:23 +0100495static void spu_prio_wait(struct spu_context *ctx)
496{
Mark Nuttera68cf982006-10-04 17:26:12 +0200497 DEFINE_WAIT(wait);
498
Luke Browning4e0f4ed2007-04-23 21:08:13 +0200499 spin_lock(&spu_prio->runq_lock);
Christoph Hellwig079cdb62007-02-13 21:54:23 +0100500 prepare_to_wait_exclusive(&ctx->stop_wq, &wait, TASK_INTERRUPTIBLE);
Mark Nuttera68cf982006-10-04 17:26:12 +0200501 if (!signal_pending(current)) {
Luke Browning4e0f4ed2007-04-23 21:08:13 +0200502 __spu_add_to_rq(ctx);
503 spin_unlock(&spu_prio->runq_lock);
Christoph Hellwig650f8b02007-02-13 21:36:50 +0100504 mutex_unlock(&ctx->state_mutex);
Mark Nuttera68cf982006-10-04 17:26:12 +0200505 schedule();
Christoph Hellwig650f8b02007-02-13 21:36:50 +0100506 mutex_lock(&ctx->state_mutex);
Luke Browning4e0f4ed2007-04-23 21:08:13 +0200507 spin_lock(&spu_prio->runq_lock);
508 __spu_del_from_rq(ctx);
Arnd Bergmann2a911f02005-12-05 22:52:26 -0500509 }
Luke Browning4e0f4ed2007-04-23 21:08:13 +0200510 spin_unlock(&spu_prio->runq_lock);
Christoph Hellwig079cdb62007-02-13 21:54:23 +0100511 __set_current_state(TASK_RUNNING);
512 remove_wait_queue(&ctx->stop_wq, &wait);
Arnd Bergmann2a911f02005-12-05 22:52:26 -0500513}
514
Christoph Hellwig079cdb62007-02-13 21:54:23 +0100515static struct spu *spu_get_idle(struct spu_context *ctx)
Mark Nuttera68cf982006-10-04 17:26:12 +0200516{
Andre Detsch36ddbb12007-09-19 14:38:12 +1000517 struct spu *spu, *aff_ref_spu;
Christoph Hellwig486acd42007-07-20 21:39:54 +0200518 int node, n;
Mark Nuttera68cf982006-10-04 17:26:12 +0200519
Andre Detsch36ddbb12007-09-19 14:38:12 +1000520 if (ctx->gang) {
521 mutex_lock(&ctx->gang->aff_mutex);
522 if (has_affinity(ctx)) {
523 aff_ref_spu = ctx->gang->aff_ref_spu;
524 atomic_inc(&ctx->gang->aff_sched_count);
525 mutex_unlock(&ctx->gang->aff_mutex);
526 node = aff_ref_spu->node;
Arnd Bergmanncbc23d32007-07-20 21:39:49 +0200527
Andre Detsch36ddbb12007-09-19 14:38:12 +1000528 mutex_lock(&cbe_spu_info[node].list_mutex);
529 spu = ctx_location(aff_ref_spu, ctx->aff_offset, node);
530 if (spu && spu->alloc_state == SPU_FREE)
531 goto found;
532 mutex_unlock(&cbe_spu_info[node].list_mutex);
533
534 mutex_lock(&ctx->gang->aff_mutex);
535 if (atomic_dec_and_test(&ctx->gang->aff_sched_count))
536 ctx->gang->aff_ref_spu = NULL;
537 mutex_unlock(&ctx->gang->aff_mutex);
538
539 return NULL;
540 }
541 mutex_unlock(&ctx->gang->aff_mutex);
Christoph Hellwig486acd42007-07-20 21:39:54 +0200542 }
Christoph Hellwig486acd42007-07-20 21:39:54 +0200543 node = cpu_to_node(raw_smp_processor_id());
Mark Nuttera68cf982006-10-04 17:26:12 +0200544 for (n = 0; n < MAX_NUMNODES; n++, node++) {
545 node = (node < MAX_NUMNODES) ? node : 0;
Christoph Hellwigea1ae592007-06-29 10:57:56 +1000546 if (!node_allowed(ctx, node))
Mark Nuttera68cf982006-10-04 17:26:12 +0200547 continue;
Christoph Hellwig486acd42007-07-20 21:39:54 +0200548
549 mutex_lock(&cbe_spu_info[node].list_mutex);
550 list_for_each_entry(spu, &cbe_spu_info[node].spus, cbe_list) {
551 if (spu->alloc_state == SPU_FREE)
552 goto found;
553 }
554 mutex_unlock(&cbe_spu_info[node].list_mutex);
Mark Nuttera68cf982006-10-04 17:26:12 +0200555 }
Christoph Hellwig486acd42007-07-20 21:39:54 +0200556
557 return NULL;
558
559 found:
560 spu->alloc_state = SPU_USED;
561 mutex_unlock(&cbe_spu_info[node].list_mutex);
562 pr_debug("Got SPU %d %d\n", spu->number, spu->node);
563 spu_init_channels(spu);
Mark Nuttera68cf982006-10-04 17:26:12 +0200564 return spu;
565}
566
Christoph Hellwig079cdb62007-02-13 21:54:23 +0100567/**
Christoph Hellwig52f04fc2007-02-13 21:54:27 +0100568 * find_victim - find a lower priority context to preempt
569 * @ctx: canidate context for running
570 *
571 * Returns the freed physical spu to run the new context on.
572 */
573static struct spu *find_victim(struct spu_context *ctx)
574{
575 struct spu_context *victim = NULL;
576 struct spu *spu;
577 int node, n;
578
579 /*
580 * Look for a possible preemption candidate on the local node first.
581 * If there is no candidate look at the other nodes. This isn't
582 * exactly fair, but so far the whole spu schedule tries to keep
583 * a strong node affinity. We might want to fine-tune this in
584 * the future.
585 */
586 restart:
587 node = cpu_to_node(raw_smp_processor_id());
588 for (n = 0; n < MAX_NUMNODES; n++, node++) {
589 node = (node < MAX_NUMNODES) ? node : 0;
Christoph Hellwigea1ae592007-06-29 10:57:56 +1000590 if (!node_allowed(ctx, node))
Christoph Hellwig52f04fc2007-02-13 21:54:27 +0100591 continue;
592
Christoph Hellwig486acd42007-07-20 21:39:54 +0200593 mutex_lock(&cbe_spu_info[node].list_mutex);
594 list_for_each_entry(spu, &cbe_spu_info[node].spus, cbe_list) {
Christoph Hellwig52f04fc2007-02-13 21:54:27 +0100595 struct spu_context *tmp = spu->ctx;
596
Christoph Hellwigfe443ef2007-06-29 10:57:52 +1000597 if (tmp->prio > ctx->prio &&
598 (!victim || tmp->prio > victim->prio))
Christoph Hellwig52f04fc2007-02-13 21:54:27 +0100599 victim = spu->ctx;
600 }
Christoph Hellwig486acd42007-07-20 21:39:54 +0200601 mutex_unlock(&cbe_spu_info[node].list_mutex);
Christoph Hellwig52f04fc2007-02-13 21:54:27 +0100602
603 if (victim) {
604 /*
605 * This nests ctx->state_mutex, but we always lock
606 * higher priority contexts before lower priority
607 * ones, so this is safe until we introduce
608 * priority inheritance schemes.
609 */
610 if (!mutex_trylock(&victim->state_mutex)) {
611 victim = NULL;
612 goto restart;
613 }
614
615 spu = victim->spu;
616 if (!spu) {
617 /*
618 * This race can happen because we've dropped
619 * the active list mutex. No a problem, just
620 * restart the search.
621 */
622 mutex_unlock(&victim->state_mutex);
623 victim = NULL;
624 goto restart;
625 }
Christoph Hellwig486acd42007-07-20 21:39:54 +0200626
627 mutex_lock(&cbe_spu_info[node].list_mutex);
628 cbe_spu_info[node].nr_active--;
629 mutex_unlock(&cbe_spu_info[node].list_mutex);
630
Christoph Hellwig52f04fc2007-02-13 21:54:27 +0100631 spu_unbind_context(spu, victim);
Christoph Hellwige9f8a0b2007-06-29 10:58:03 +1000632 victim->stats.invol_ctx_switch++;
Christoph Hellwigfe2f8962007-06-29 10:58:07 +1000633 spu->stats.invol_ctx_switch++;
Christoph Hellwig52f04fc2007-02-13 21:54:27 +0100634 mutex_unlock(&victim->state_mutex);
Christoph Hellwige097b512007-04-23 21:08:09 +0200635 /*
636 * We need to break out of the wait loop in spu_run
637 * manually to ensure this context gets put on the
638 * runqueue again ASAP.
639 */
640 wake_up(&victim->stop_wq);
Christoph Hellwig52f04fc2007-02-13 21:54:27 +0100641 return spu;
642 }
643 }
644
645 return NULL;
646}
647
648/**
Christoph Hellwig079cdb62007-02-13 21:54:23 +0100649 * spu_activate - find a free spu for a context and execute it
650 * @ctx: spu context to schedule
651 * @flags: flags (currently ignored)
652 *
Christoph Hellwig08873092007-04-23 21:08:06 +0200653 * Tries to find a free spu to run @ctx. If no free spu is available
Christoph Hellwig079cdb62007-02-13 21:54:23 +0100654 * add the context to the runqueue so it gets woken up once an spu
655 * is available.
656 */
Christoph Hellwig26bec672007-02-13 21:54:24 +0100657int spu_activate(struct spu_context *ctx, unsigned long flags)
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500658{
Christoph Hellwig079cdb62007-02-13 21:54:23 +0100659 do {
660 struct spu *spu;
661
Christoph Hellwig27449972007-06-29 10:58:06 +1000662 /*
663 * If there are multiple threads waiting for a single context
664 * only one actually binds the context while the others will
665 * only be able to acquire the state_mutex once the context
666 * already is in runnable state.
667 */
668 if (ctx->spu)
669 return 0;
670
Christoph Hellwig079cdb62007-02-13 21:54:23 +0100671 spu = spu_get_idle(ctx);
Christoph Hellwig52f04fc2007-02-13 21:54:27 +0100672 /*
673 * If this is a realtime thread we try to get it running by
674 * preempting a lower priority thread.
675 */
Christoph Hellwigfe443ef2007-06-29 10:57:52 +1000676 if (!spu && rt_prio(ctx->prio))
Christoph Hellwig52f04fc2007-02-13 21:54:27 +0100677 spu = find_victim(ctx);
Christoph Hellwig079cdb62007-02-13 21:54:23 +0100678 if (spu) {
Christoph Hellwig486acd42007-07-20 21:39:54 +0200679 int node = spu->node;
680
681 mutex_lock(&cbe_spu_info[node].list_mutex);
Christoph Hellwig202557d2007-02-13 21:36:49 +0100682 spu_bind_context(spu, ctx);
Christoph Hellwig486acd42007-07-20 21:39:54 +0200683 cbe_spu_info[node].nr_active++;
684 mutex_unlock(&cbe_spu_info[node].list_mutex);
Christoph Hellwig079cdb62007-02-13 21:54:23 +0100685 return 0;
Mark Nuttera68cf982006-10-04 17:26:12 +0200686 }
Christoph Hellwig079cdb62007-02-13 21:54:23 +0100687
Christoph Hellwig50b520d2007-03-10 00:05:36 +0100688 spu_prio_wait(ctx);
Christoph Hellwig079cdb62007-02-13 21:54:23 +0100689 } while (!signal_pending(current));
690
691 return -ERESTARTSYS;
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500692}
693
Christoph Hellwig678b2ff2007-02-13 21:54:25 +0100694/**
Christoph Hellwigbb5db292007-06-04 23:26:51 +1000695 * grab_runnable_context - try to find a runnable context
696 *
697 * Remove the highest priority context on the runqueue and return it
698 * to the caller. Returns %NULL if no runnable context was found.
699 */
Christoph Hellwigea1ae592007-06-29 10:57:56 +1000700static struct spu_context *grab_runnable_context(int prio, int node)
Christoph Hellwigbb5db292007-06-04 23:26:51 +1000701{
Christoph Hellwigea1ae592007-06-29 10:57:56 +1000702 struct spu_context *ctx;
Christoph Hellwigbb5db292007-06-04 23:26:51 +1000703 int best;
704
705 spin_lock(&spu_prio->runq_lock);
Masato Noguchi7e90b742007-07-20 21:39:43 +0200706 best = find_first_bit(spu_prio->bitmap, prio);
Christoph Hellwigea1ae592007-06-29 10:57:56 +1000707 while (best < prio) {
Christoph Hellwigbb5db292007-06-04 23:26:51 +1000708 struct list_head *rq = &spu_prio->runq[best];
709
Christoph Hellwigea1ae592007-06-29 10:57:56 +1000710 list_for_each_entry(ctx, rq, rq) {
711 /* XXX(hch): check for affinity here aswell */
712 if (__node_allowed(ctx, node)) {
713 __spu_del_from_rq(ctx);
714 goto found;
715 }
716 }
717 best++;
Christoph Hellwigbb5db292007-06-04 23:26:51 +1000718 }
Christoph Hellwigea1ae592007-06-29 10:57:56 +1000719 ctx = NULL;
720 found:
Christoph Hellwigbb5db292007-06-04 23:26:51 +1000721 spin_unlock(&spu_prio->runq_lock);
Christoph Hellwigbb5db292007-06-04 23:26:51 +1000722 return ctx;
723}
724
725static int __spu_deactivate(struct spu_context *ctx, int force, int max_prio)
726{
727 struct spu *spu = ctx->spu;
728 struct spu_context *new = NULL;
729
730 if (spu) {
Christoph Hellwigea1ae592007-06-29 10:57:56 +1000731 new = grab_runnable_context(max_prio, spu->node);
Christoph Hellwigbb5db292007-06-04 23:26:51 +1000732 if (new || force) {
Christoph Hellwig486acd42007-07-20 21:39:54 +0200733 int node = spu->node;
734
735 mutex_lock(&cbe_spu_info[node].list_mutex);
Christoph Hellwigbb5db292007-06-04 23:26:51 +1000736 spu_unbind_context(spu, ctx);
Christoph Hellwig486acd42007-07-20 21:39:54 +0200737 spu->alloc_state = SPU_FREE;
738 cbe_spu_info[node].nr_active--;
739 mutex_unlock(&cbe_spu_info[node].list_mutex);
740
Christoph Hellwige9f8a0b2007-06-29 10:58:03 +1000741 ctx->stats.vol_ctx_switch++;
Christoph Hellwigfe2f8962007-06-29 10:58:07 +1000742 spu->stats.vol_ctx_switch++;
Christoph Hellwig486acd42007-07-20 21:39:54 +0200743
Christoph Hellwigbb5db292007-06-04 23:26:51 +1000744 if (new)
745 wake_up(&new->stop_wq);
746 }
747
748 }
749
750 return new != NULL;
751}
752
753/**
Christoph Hellwig678b2ff2007-02-13 21:54:25 +0100754 * spu_deactivate - unbind a context from it's physical spu
755 * @ctx: spu context to unbind
756 *
757 * Unbind @ctx from the physical spu it is running on and schedule
758 * the highest priority context to run on the freed physical spu.
759 */
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500760void spu_deactivate(struct spu_context *ctx)
761{
Christoph Hellwigbb5db292007-06-04 23:26:51 +1000762 __spu_deactivate(ctx, 1, MAX_PRIO);
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500763}
764
Christoph Hellwigae7b4c52007-02-13 21:54:26 +0100765/**
Bob Nelson14748552007-07-20 21:39:53 +0200766 * spu_yield - yield a physical spu if others are waiting
Christoph Hellwigae7b4c52007-02-13 21:54:26 +0100767 * @ctx: spu context to yield
768 *
769 * Check if there is a higher priority context waiting and if yes
770 * unbind @ctx from the physical spu and schedule the highest
771 * priority context to run on the freed physical spu instead.
772 */
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500773void spu_yield(struct spu_context *ctx)
774{
Christoph Hellwige5c0b9e2007-06-05 11:25:59 +1000775 if (!(ctx->flags & SPU_CREATE_NOSCHED)) {
776 mutex_lock(&ctx->state_mutex);
Andre Detsch27ec41d2007-07-20 21:39:33 +0200777 __spu_deactivate(ctx, 0, MAX_PRIO);
Christoph Hellwige5c0b9e2007-06-05 11:25:59 +1000778 mutex_unlock(&ctx->state_mutex);
779 }
Christoph Hellwigbb5db292007-06-04 23:26:51 +1000780}
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500781
Christoph Hellwig486acd42007-07-20 21:39:54 +0200782static noinline void spusched_tick(struct spu_context *ctx)
Christoph Hellwigbb5db292007-06-04 23:26:51 +1000783{
Christoph Hellwigdf09cf32007-06-29 10:57:58 +1000784 if (ctx->flags & SPU_CREATE_NOSCHED)
785 return;
786 if (ctx->policy == SCHED_FIFO)
787 return;
788
789 if (--ctx->time_slice)
Christoph Hellwigbb5db292007-06-04 23:26:51 +1000790 return;
791
Christoph Hellwig37901802007-06-29 10:57:51 +1000792 /*
Christoph Hellwig486acd42007-07-20 21:39:54 +0200793 * Unfortunately list_mutex ranks outside of state_mutex, so
Christoph Hellwig37901802007-06-29 10:57:51 +1000794 * we have to trylock here. If we fail give the context another
795 * tick and try again.
796 */
797 if (mutex_trylock(&ctx->state_mutex)) {
Jeremy Kerr70225432007-06-29 10:58:00 +1000798 struct spu *spu = ctx->spu;
Christoph Hellwigea1ae592007-06-29 10:57:56 +1000799 struct spu_context *new;
800
801 new = grab_runnable_context(ctx->prio + 1, spu->node);
Christoph Hellwig37901802007-06-29 10:57:51 +1000802 if (new) {
Christoph Hellwig37901802007-06-29 10:57:51 +1000803 spu_unbind_context(spu, ctx);
Christoph Hellwige9f8a0b2007-06-29 10:58:03 +1000804 ctx->stats.invol_ctx_switch++;
Christoph Hellwigfe2f8962007-06-29 10:58:07 +1000805 spu->stats.invol_ctx_switch++;
Christoph Hellwig486acd42007-07-20 21:39:54 +0200806 spu->alloc_state = SPU_FREE;
807 cbe_spu_info[spu->node].nr_active--;
Christoph Hellwig37901802007-06-29 10:57:51 +1000808 wake_up(&new->stop_wq);
809 /*
810 * We need to break out of the wait loop in
811 * spu_run manually to ensure this context
812 * gets put on the runqueue again ASAP.
813 */
814 wake_up(&ctx->stop_wq);
815 }
Christoph Hellwigfe443ef2007-06-29 10:57:52 +1000816 spu_set_timeslice(ctx);
Christoph Hellwig37901802007-06-29 10:57:51 +1000817 mutex_unlock(&ctx->state_mutex);
Christoph Hellwigbb5db292007-06-04 23:26:51 +1000818 } else {
Christoph Hellwig37901802007-06-29 10:57:51 +1000819 ctx->time_slice++;
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500820 }
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500821}
822
Christoph Hellwig65de66f2007-06-29 10:58:02 +1000823/**
824 * count_active_contexts - count nr of active tasks
825 *
826 * Return the number of tasks currently running or waiting to run.
827 *
Christoph Hellwig486acd42007-07-20 21:39:54 +0200828 * Note that we don't take runq_lock / list_mutex here. Reading
Christoph Hellwig65de66f2007-06-29 10:58:02 +1000829 * a single 32bit value is atomic on powerpc, and we don't care
830 * about memory ordering issues here.
831 */
832static unsigned long count_active_contexts(void)
833{
834 int nr_active = 0, node;
835
836 for (node = 0; node < MAX_NUMNODES; node++)
Christoph Hellwig486acd42007-07-20 21:39:54 +0200837 nr_active += cbe_spu_info[node].nr_active;
Christoph Hellwig65de66f2007-06-29 10:58:02 +1000838 nr_active += spu_prio->nr_waiting;
839
840 return nr_active;
841}
842
843/**
844 * spu_calc_load - given tick count, update the avenrun load estimates.
845 * @tick: tick count
846 *
847 * No locking against reading these values from userspace, as for
848 * the CPU loadavg code.
849 */
850static void spu_calc_load(unsigned long ticks)
851{
852 unsigned long active_tasks; /* fixed-point */
853 static int count = LOAD_FREQ;
854
855 count -= ticks;
856
857 if (unlikely(count < 0)) {
858 active_tasks = count_active_contexts() * FIXED_1;
859 do {
860 CALC_LOAD(spu_avenrun[0], EXP_1, active_tasks);
861 CALC_LOAD(spu_avenrun[1], EXP_5, active_tasks);
862 CALC_LOAD(spu_avenrun[2], EXP_15, active_tasks);
863 count += LOAD_FREQ;
864 } while (count < 0);
865 }
866}
867
Christoph Hellwig37901802007-06-29 10:57:51 +1000868static void spusched_wake(unsigned long data)
869{
870 mod_timer(&spusched_timer, jiffies + SPUSCHED_TICK);
871 wake_up_process(spusched_task);
Christoph Hellwig65de66f2007-06-29 10:58:02 +1000872 spu_calc_load(SPUSCHED_TICK);
Christoph Hellwig37901802007-06-29 10:57:51 +1000873}
874
875static int spusched_thread(void *unused)
876{
Christoph Hellwig486acd42007-07-20 21:39:54 +0200877 struct spu *spu;
Christoph Hellwig37901802007-06-29 10:57:51 +1000878 int node;
879
Christoph Hellwig37901802007-06-29 10:57:51 +1000880 while (!kthread_should_stop()) {
881 set_current_state(TASK_INTERRUPTIBLE);
882 schedule();
883 for (node = 0; node < MAX_NUMNODES; node++) {
Christoph Hellwig486acd42007-07-20 21:39:54 +0200884 mutex_lock(&cbe_spu_info[node].list_mutex);
885 list_for_each_entry(spu, &cbe_spu_info[node].spus, cbe_list)
886 if (spu->ctx)
887 spusched_tick(spu->ctx);
888 mutex_unlock(&cbe_spu_info[node].list_mutex);
Christoph Hellwig37901802007-06-29 10:57:51 +1000889 }
890 }
891
Christoph Hellwig37901802007-06-29 10:57:51 +1000892 return 0;
893}
894
Christoph Hellwig65de66f2007-06-29 10:58:02 +1000895#define LOAD_INT(x) ((x) >> FSHIFT)
896#define LOAD_FRAC(x) LOAD_INT(((x) & (FIXED_1-1)) * 100)
897
898static int show_spu_loadavg(struct seq_file *s, void *private)
899{
900 int a, b, c;
901
902 a = spu_avenrun[0] + (FIXED_1/200);
903 b = spu_avenrun[1] + (FIXED_1/200);
904 c = spu_avenrun[2] + (FIXED_1/200);
905
906 /*
907 * Note that last_pid doesn't really make much sense for the
908 * SPU loadavg (it even seems very odd on the CPU side..),
909 * but we include it here to have a 100% compatible interface.
910 */
911 seq_printf(s, "%d.%02d %d.%02d %d.%02d %ld/%d %d\n",
912 LOAD_INT(a), LOAD_FRAC(a),
913 LOAD_INT(b), LOAD_FRAC(b),
914 LOAD_INT(c), LOAD_FRAC(c),
915 count_active_contexts(),
916 atomic_read(&nr_spu_contexts),
917 current->nsproxy->pid_ns->last_pid);
918 return 0;
919}
920
921static int spu_loadavg_open(struct inode *inode, struct file *file)
922{
923 return single_open(file, show_spu_loadavg, NULL);
924}
925
926static const struct file_operations spu_loadavg_fops = {
927 .open = spu_loadavg_open,
928 .read = seq_read,
929 .llseek = seq_lseek,
930 .release = single_release,
931};
932
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500933int __init spu_sched_init(void)
934{
Christoph Hellwig65de66f2007-06-29 10:58:02 +1000935 struct proc_dir_entry *entry;
936 int err = -ENOMEM, i;
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500937
Mark Nuttera68cf982006-10-04 17:26:12 +0200938 spu_prio = kzalloc(sizeof(struct spu_prio_array), GFP_KERNEL);
Christoph Hellwig37901802007-06-29 10:57:51 +1000939 if (!spu_prio)
Christoph Hellwig65de66f2007-06-29 10:58:02 +1000940 goto out;
Christoph Hellwig37901802007-06-29 10:57:51 +1000941
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500942 for (i = 0; i < MAX_PRIO; i++) {
Christoph Hellwig079cdb62007-02-13 21:54:23 +0100943 INIT_LIST_HEAD(&spu_prio->runq[i]);
Mark Nuttera68cf982006-10-04 17:26:12 +0200944 __clear_bit(i, spu_prio->bitmap);
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500945 }
Christoph Hellwig079cdb62007-02-13 21:54:23 +0100946 spin_lock_init(&spu_prio->runq_lock);
Christoph Hellwig37901802007-06-29 10:57:51 +1000947
Christoph Hellwigc77239b2007-06-29 10:58:05 +1000948 setup_timer(&spusched_timer, spusched_wake, 0);
949
Christoph Hellwig37901802007-06-29 10:57:51 +1000950 spusched_task = kthread_run(spusched_thread, NULL, "spusched");
951 if (IS_ERR(spusched_task)) {
Christoph Hellwig65de66f2007-06-29 10:58:02 +1000952 err = PTR_ERR(spusched_task);
953 goto out_free_spu_prio;
Christoph Hellwig37901802007-06-29 10:57:51 +1000954 }
Jeremy Kerrf3f59be2007-06-29 10:57:54 +1000955
Christoph Hellwig65de66f2007-06-29 10:58:02 +1000956 entry = create_proc_entry("spu_loadavg", 0, NULL);
957 if (!entry)
958 goto out_stop_kthread;
959 entry->proc_fops = &spu_loadavg_fops;
960
Jeremy Kerrf3f59be2007-06-29 10:57:54 +1000961 pr_debug("spusched: tick: %d, min ticks: %d, default ticks: %d\n",
962 SPUSCHED_TICK, MIN_SPU_TIMESLICE, DEF_SPU_TIMESLICE);
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500963 return 0;
Christoph Hellwig37901802007-06-29 10:57:51 +1000964
Christoph Hellwig65de66f2007-06-29 10:58:02 +1000965 out_stop_kthread:
966 kthread_stop(spusched_task);
967 out_free_spu_prio:
968 kfree(spu_prio);
969 out:
970 return err;
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500971}
972
Sebastian Siewiord1450312007-07-20 21:39:29 +0200973void spu_sched_exit(void)
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500974{
Christoph Hellwig486acd42007-07-20 21:39:54 +0200975 struct spu *spu;
Mark Nuttera68cf982006-10-04 17:26:12 +0200976 int node;
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500977
Christoph Hellwig65de66f2007-06-29 10:58:02 +1000978 remove_proc_entry("spu_loadavg", NULL);
979
Christoph Hellwigc77239b2007-06-29 10:58:05 +1000980 del_timer_sync(&spusched_timer);
Christoph Hellwig37901802007-06-29 10:57:51 +1000981 kthread_stop(spusched_task);
982
Mark Nuttera68cf982006-10-04 17:26:12 +0200983 for (node = 0; node < MAX_NUMNODES; node++) {
Christoph Hellwig486acd42007-07-20 21:39:54 +0200984 mutex_lock(&cbe_spu_info[node].list_mutex);
985 list_for_each_entry(spu, &cbe_spu_info[node].spus, cbe_list)
986 if (spu->alloc_state != SPU_FREE)
987 spu->alloc_state = SPU_FREE;
988 mutex_unlock(&cbe_spu_info[node].list_mutex);
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500989 }
Mark Nuttera68cf982006-10-04 17:26:12 +0200990 kfree(spu_prio);
Arnd Bergmann8b3d6662005-11-15 15:53:52 -0500991}