1 // SPDX-License-Identifier: MIT
3 * Copyright © 2019 Intel Corporation
6 #include "gem/i915_gem_context.h"
7 #include "gem/i915_gem_pm.h"
10 #include "i915_globals.h"
12 #include "intel_context.h"
13 #include "intel_engine.h"
14 #include "intel_engine_pm.h"
15 #include "intel_ring.h"
17 static struct i915_global_context {
18 struct i915_global base;
19 struct kmem_cache *slab_ce;
22 static struct intel_context *intel_context_alloc(void)
24 return kmem_cache_zalloc(global.slab_ce, GFP_KERNEL);
27 static void rcu_context_free(struct rcu_head *rcu)
29 struct intel_context *ce = container_of(rcu, typeof(*ce), rcu);
31 kmem_cache_free(global.slab_ce, ce);
34 void intel_context_free(struct intel_context *ce)
36 call_rcu(&ce->rcu, rcu_context_free);
39 struct intel_context *
40 intel_context_create(struct intel_engine_cs *engine)
42 struct intel_context *ce;
44 ce = intel_context_alloc();
46 return ERR_PTR(-ENOMEM);
48 intel_context_init(ce, engine);
52 int intel_context_alloc_state(struct intel_context *ce)
56 if (mutex_lock_interruptible(&ce->pin_mutex))
59 if (!test_bit(CONTEXT_ALLOC_BIT, &ce->flags)) {
60 if (intel_context_is_banned(ce)) {
65 err = ce->ops->alloc(ce);
69 set_bit(CONTEXT_ALLOC_BIT, &ce->flags);
73 mutex_unlock(&ce->pin_mutex);
77 static int intel_context_active_acquire(struct intel_context *ce)
81 __i915_active_acquire(&ce->active);
83 if (intel_context_is_barrier(ce))
86 /* Preallocate tracking nodes */
87 err = i915_active_acquire_preallocate_barrier(&ce->active,
90 i915_active_release(&ce->active);
95 static void intel_context_active_release(struct intel_context *ce)
97 /* Nodes preallocated in intel_context_active() */
98 i915_active_acquire_barrier(&ce->active);
99 i915_active_release(&ce->active);
102 static int __context_pin_state(struct i915_vma *vma, struct i915_gem_ww_ctx *ww)
104 unsigned int bias = i915_ggtt_pin_bias(vma) | PIN_OFFSET_BIAS;
107 err = i915_ggtt_pin(vma, ww, 0, bias | PIN_HIGH);
111 err = i915_active_acquire(&vma->active);
116 * And mark it as a globally pinned object to let the shrinker know
117 * it cannot reclaim the object until we release it.
119 i915_vma_make_unshrinkable(vma);
120 vma->obj->mm.dirty = true;
129 static void __context_unpin_state(struct i915_vma *vma)
131 i915_vma_make_shrinkable(vma);
132 i915_active_release(&vma->active);
133 __i915_vma_unpin(vma);
136 static int __ring_active(struct intel_ring *ring,
137 struct i915_gem_ww_ctx *ww)
141 err = intel_ring_pin(ring, ww);
145 err = i915_active_acquire(&ring->vma->active);
152 intel_ring_unpin(ring);
156 static void __ring_retire(struct intel_ring *ring)
158 i915_active_release(&ring->vma->active);
159 intel_ring_unpin(ring);
162 static int intel_context_pre_pin(struct intel_context *ce,
163 struct i915_gem_ww_ctx *ww)
167 CE_TRACE(ce, "active\n");
169 err = __ring_active(ce->ring, ww);
173 err = intel_timeline_pin(ce->timeline, ww);
180 err = __context_pin_state(ce->state, ww);
188 intel_timeline_unpin(ce->timeline);
190 __ring_retire(ce->ring);
194 static void intel_context_post_unpin(struct intel_context *ce)
197 __context_unpin_state(ce->state);
199 intel_timeline_unpin(ce->timeline);
200 __ring_retire(ce->ring);
203 int __intel_context_do_pin_ww(struct intel_context *ce,
204 struct i915_gem_ww_ctx *ww)
206 bool handoff = false;
210 if (unlikely(!test_bit(CONTEXT_ALLOC_BIT, &ce->flags))) {
211 err = intel_context_alloc_state(ce);
217 * We always pin the context/ring/timeline here, to ensure a pin
218 * refcount for __intel_context_active(), which prevent a lock
219 * inversion of ce->pin_mutex vs dma_resv_lock().
222 err = i915_gem_object_lock(ce->timeline->hwsp_ggtt->obj, ww);
223 if (!err && ce->ring->vma->obj)
224 err = i915_gem_object_lock(ce->ring->vma->obj, ww);
225 if (!err && ce->state)
226 err = i915_gem_object_lock(ce->state->obj, ww);
228 err = intel_context_pre_pin(ce, ww);
232 err = i915_active_acquire(&ce->active);
236 err = ce->ops->pre_pin(ce, ww, &vaddr);
240 err = mutex_lock_interruptible(&ce->pin_mutex);
244 if (unlikely(intel_context_is_closed(ce))) {
249 if (likely(!atomic_add_unless(&ce->pin_count, 1, 0))) {
250 err = intel_context_active_acquire(ce);
254 err = ce->ops->pin(ce, vaddr);
256 intel_context_active_release(ce);
260 CE_TRACE(ce, "pin ring:{start:%08x, head:%04x, tail:%04x}\n",
261 i915_ggtt_offset(ce->ring->vma),
262 ce->ring->head, ce->ring->tail);
265 smp_mb__before_atomic(); /* flush pin before it is visible */
266 atomic_inc(&ce->pin_count);
269 GEM_BUG_ON(!intel_context_is_pinned(ce)); /* no overflow! */
272 mutex_unlock(&ce->pin_mutex);
275 ce->ops->post_unpin(ce);
277 i915_active_release(&ce->active);
279 intel_context_post_unpin(ce);
282 * Unlock the hwsp_ggtt object since it's shared.
283 * In principle we can unlock all the global state locked above
284 * since it's pinned and doesn't need fencing, and will
285 * thus remain resident until it is explicitly unpinned.
287 i915_gem_ww_unlock_single(ce->timeline->hwsp_ggtt->obj);
292 int __intel_context_do_pin(struct intel_context *ce)
294 struct i915_gem_ww_ctx ww;
297 i915_gem_ww_ctx_init(&ww, true);
299 err = __intel_context_do_pin_ww(ce, &ww);
300 if (err == -EDEADLK) {
301 err = i915_gem_ww_ctx_backoff(&ww);
305 i915_gem_ww_ctx_fini(&ww);
309 void intel_context_unpin(struct intel_context *ce)
311 if (!atomic_dec_and_test(&ce->pin_count))
314 CE_TRACE(ce, "unpin\n");
316 ce->ops->post_unpin(ce);
319 * Once released, we may asynchronously drop the active reference.
320 * As that may be the only reference keeping the context alive,
321 * take an extra now so that it is not freed before we finish
324 intel_context_get(ce);
325 intel_context_active_release(ce);
326 intel_context_put(ce);
329 static void __intel_context_retire(struct i915_active *active)
331 struct intel_context *ce = container_of(active, typeof(*ce), active);
333 CE_TRACE(ce, "retire runtime: { total:%lluns, avg:%lluns }\n",
334 intel_context_get_total_runtime_ns(ce),
335 intel_context_get_avg_runtime_ns(ce));
337 set_bit(CONTEXT_VALID_BIT, &ce->flags);
338 intel_context_post_unpin(ce);
339 intel_context_put(ce);
342 static int __intel_context_active(struct i915_active *active)
344 struct intel_context *ce = container_of(active, typeof(*ce), active);
346 intel_context_get(ce);
348 /* everything should already be activated by intel_context_pre_pin() */
349 GEM_WARN_ON(!i915_active_acquire_if_busy(&ce->ring->vma->active));
350 __intel_ring_pin(ce->ring);
352 __intel_timeline_pin(ce->timeline);
355 GEM_WARN_ON(!i915_active_acquire_if_busy(&ce->state->active));
356 __i915_vma_pin(ce->state);
357 i915_vma_make_unshrinkable(ce->state);
364 intel_context_init(struct intel_context *ce, struct intel_engine_cs *engine)
366 GEM_BUG_ON(!engine->cops);
367 GEM_BUG_ON(!engine->gt->vm);
372 ce->ops = engine->cops;
373 ce->sseu = engine->sseu;
374 ce->ring = __intel_context_ring_size(SZ_4K);
376 ewma_runtime_init(&ce->runtime.avg);
378 ce->vm = i915_vm_get(engine->gt->vm);
380 /* NB ce->signal_link/lock is used under RCU */
381 spin_lock_init(&ce->signal_lock);
382 INIT_LIST_HEAD(&ce->signals);
384 mutex_init(&ce->pin_mutex);
386 i915_active_init(&ce->active,
387 __intel_context_active, __intel_context_retire, 0);
390 void intel_context_fini(struct intel_context *ce)
393 intel_timeline_put(ce->timeline);
396 mutex_destroy(&ce->pin_mutex);
397 i915_active_fini(&ce->active);
400 static void i915_global_context_shrink(void)
402 kmem_cache_shrink(global.slab_ce);
405 static void i915_global_context_exit(void)
407 kmem_cache_destroy(global.slab_ce);
410 static struct i915_global_context global = { {
411 .shrink = i915_global_context_shrink,
412 .exit = i915_global_context_exit,
415 int __init i915_global_context_init(void)
417 global.slab_ce = KMEM_CACHE(intel_context, SLAB_HWCACHE_ALIGN);
421 i915_global_register(&global.base);
425 void intel_context_enter_engine(struct intel_context *ce)
427 intel_engine_pm_get(ce->engine);
428 intel_timeline_enter(ce->timeline);
431 void intel_context_exit_engine(struct intel_context *ce)
433 intel_timeline_exit(ce->timeline);
434 intel_engine_pm_put(ce->engine);
437 int intel_context_prepare_remote_request(struct intel_context *ce,
438 struct i915_request *rq)
440 struct intel_timeline *tl = ce->timeline;
443 /* Only suitable for use in remotely modifying this context */
444 GEM_BUG_ON(rq->context == ce);
446 if (rcu_access_pointer(rq->timeline) != tl) { /* timeline sharing! */
447 /* Queue this switch after current activity by this context. */
448 err = i915_active_fence_set(&tl->last_request, rq);
454 * Guarantee context image and the timeline remains pinned until the
455 * modifying request is retired by setting the ce activity tracker.
457 * But we only need to take one pin on the account of it. Or in other
458 * words transfer the pinned ce object to tracked active request.
460 GEM_BUG_ON(i915_active_is_idle(&ce->active));
461 return i915_active_add_request(&ce->active, rq);
464 struct i915_request *intel_context_create_request(struct intel_context *ce)
466 struct i915_gem_ww_ctx ww;
467 struct i915_request *rq;
470 i915_gem_ww_ctx_init(&ww, true);
472 err = intel_context_pin_ww(ce, &ww);
474 rq = i915_request_create(ce);
475 intel_context_unpin(ce);
476 } else if (err == -EDEADLK) {
477 err = i915_gem_ww_ctx_backoff(&ww);
485 i915_gem_ww_ctx_fini(&ww);
491 * timeline->mutex should be the inner lock, but is used as outer lock.
492 * Hack around this to shut up lockdep in selftests..
494 lockdep_unpin_lock(&ce->timeline->mutex, rq->cookie);
495 mutex_release(&ce->timeline->mutex.dep_map, _RET_IP_);
496 mutex_acquire(&ce->timeline->mutex.dep_map, SINGLE_DEPTH_NESTING, 0, _RET_IP_);
497 rq->cookie = lockdep_pin_lock(&ce->timeline->mutex);
502 #if IS_ENABLED(CONFIG_DRM_I915_SELFTEST)
503 #include "selftest_context.c"