2016-06-11 13:10:49 +02:00
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/*
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* Copyright © 2016 Advanced Micro Devices, Inc.
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* All Rights Reserved.
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*
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* Permission is hereby granted, free of charge, to any person obtaining
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* a copy of this software and associated documentation files (the
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* "Software"), to deal in the Software without restriction, including
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* without limitation the rights to use, copy, modify, merge, publish,
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* distribute, sub license, and/or sell copies of the Software, and to
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* permit persons to whom the Software is furnished to do so, subject to
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* the following conditions:
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
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* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES
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* OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
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* NON-INFRINGEMENT. IN NO EVENT SHALL THE COPYRIGHT HOLDERS, AUTHORS
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* AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
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* ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
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* USE OR OTHER DEALINGS IN THE SOFTWARE.
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*
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* The above copyright notice and this permission notice (including the
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* next paragraph) shall be included in all copies or substantial portions
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* of the Software.
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*/
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#include "u_queue.h"
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2016-06-11 15:40:28 +02:00
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#include "u_memory.h"
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2016-06-12 13:36:39 +02:00
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#include "u_string.h"
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2016-06-11 17:51:22 +02:00
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#include "os/os_time.h"
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static void
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util_queue_fence_signal(struct util_queue_fence *fence)
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{
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pipe_mutex_lock(fence->mutex);
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fence->signalled = true;
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pipe_condvar_broadcast(fence->cond);
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pipe_mutex_unlock(fence->mutex);
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}
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void
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util_queue_job_wait(struct util_queue_fence *fence)
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{
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pipe_mutex_lock(fence->mutex);
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while (!fence->signalled)
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pipe_condvar_wait(fence->cond, fence->mutex);
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pipe_mutex_unlock(fence->mutex);
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}
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2016-06-11 13:10:49 +02:00
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2016-06-11 15:40:28 +02:00
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struct thread_input {
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struct util_queue *queue;
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int thread_index;
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};
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static PIPE_THREAD_ROUTINE(util_queue_thread_func, input)
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2016-06-11 13:10:49 +02:00
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{
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2016-06-11 15:40:28 +02:00
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struct util_queue *queue = ((struct thread_input*)input)->queue;
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int thread_index = ((struct thread_input*)input)->thread_index;
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FREE(input);
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2016-06-11 13:10:49 +02:00
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2016-06-12 13:36:39 +02:00
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if (queue->name) {
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char name[16];
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util_snprintf(name, sizeof(name), "%s:%i", queue->name, thread_index);
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pipe_thread_setname(name);
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}
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2016-06-11 13:10:49 +02:00
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while (1) {
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struct util_queue_job job;
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2016-06-17 01:33:12 +02:00
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pipe_mutex_lock(queue->lock);
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assert(queue->num_queued >= 0 && queue->num_queued <= queue->max_jobs);
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/* wait if the queue is empty */
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while (!queue->kill_threads && queue->num_queued == 0)
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pipe_condvar_wait(queue->has_queued_cond, queue->lock);
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if (queue->kill_threads) {
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pipe_mutex_unlock(queue->lock);
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2016-06-11 13:10:49 +02:00
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break;
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2016-06-17 01:33:12 +02:00
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}
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2016-06-11 13:10:49 +02:00
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2016-06-12 12:54:42 +02:00
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job = queue->jobs[queue->read_idx];
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2016-06-11 17:28:52 +02:00
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memset(&queue->jobs[queue->read_idx], 0, sizeof(struct util_queue_job));
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2016-06-12 12:54:42 +02:00
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queue->read_idx = (queue->read_idx + 1) % queue->max_jobs;
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2016-06-11 13:10:49 +02:00
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2016-06-17 01:33:12 +02:00
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queue->num_queued--;
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pipe_condvar_signal(queue->has_space_cond);
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pipe_mutex_unlock(queue->lock);
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2016-06-11 13:10:49 +02:00
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if (job.job) {
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2016-06-11 17:28:52 +02:00
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job.execute(job.job, thread_index);
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2016-06-11 17:51:22 +02:00
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util_queue_fence_signal(job.fence);
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2016-07-13 12:17:05 -04:00
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if (job.cleanup)
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job.cleanup(job.job, thread_index);
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2016-06-11 13:10:49 +02:00
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}
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}
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/* signal remaining jobs before terminating */
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pipe_mutex_lock(queue->lock);
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2016-06-12 12:54:42 +02:00
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while (queue->jobs[queue->read_idx].job) {
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2016-06-11 17:51:22 +02:00
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util_queue_fence_signal(queue->jobs[queue->read_idx].fence);
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2016-06-12 12:54:42 +02:00
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queue->jobs[queue->read_idx].job = NULL;
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queue->read_idx = (queue->read_idx + 1) % queue->max_jobs;
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2016-06-11 13:10:49 +02:00
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}
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pipe_mutex_unlock(queue->lock);
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return 0;
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}
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2016-06-12 12:54:42 +02:00
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bool
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2016-06-11 13:10:49 +02:00
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util_queue_init(struct util_queue *queue,
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2016-06-12 13:36:39 +02:00
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const char *name,
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2016-06-12 12:54:42 +02:00
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unsigned max_jobs,
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2016-06-11 17:28:52 +02:00
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unsigned num_threads)
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2016-06-11 13:10:49 +02:00
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{
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2016-06-11 15:40:28 +02:00
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unsigned i;
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2016-06-11 13:10:49 +02:00
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memset(queue, 0, sizeof(*queue));
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2016-06-12 13:36:39 +02:00
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queue->name = name;
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2016-06-11 15:40:28 +02:00
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queue->num_threads = num_threads;
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2016-06-12 12:54:42 +02:00
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queue->max_jobs = max_jobs;
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queue->jobs = (struct util_queue_job*)
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CALLOC(max_jobs, sizeof(struct util_queue_job));
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if (!queue->jobs)
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goto fail;
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2016-06-11 13:10:49 +02:00
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pipe_mutex_init(queue->lock);
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2016-06-17 01:33:12 +02:00
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queue->num_queued = 0;
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pipe_condvar_init(queue->has_queued_cond);
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pipe_condvar_init(queue->has_space_cond);
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2016-06-12 12:54:42 +02:00
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2016-06-11 15:40:28 +02:00
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queue->threads = (pipe_thread*)CALLOC(num_threads, sizeof(pipe_thread));
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if (!queue->threads)
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2016-06-12 12:54:42 +02:00
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goto fail;
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2016-06-11 15:40:28 +02:00
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/* start threads */
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for (i = 0; i < num_threads; i++) {
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struct thread_input *input = MALLOC_STRUCT(thread_input);
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input->queue = queue;
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input->thread_index = i;
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queue->threads[i] = pipe_thread_create(util_queue_thread_func, input);
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if (!queue->threads[i]) {
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FREE(input);
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if (i == 0) {
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/* no threads created, fail */
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goto fail;
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} else {
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/* at least one thread created, so use it */
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queue->num_threads = i+1;
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break;
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}
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}
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}
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2016-06-12 12:54:42 +02:00
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return true;
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fail:
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2016-06-11 15:40:28 +02:00
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FREE(queue->threads);
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2016-06-12 12:54:42 +02:00
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if (queue->jobs) {
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2016-06-17 01:33:12 +02:00
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pipe_condvar_destroy(queue->has_space_cond);
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pipe_condvar_destroy(queue->has_queued_cond);
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2016-06-12 12:54:42 +02:00
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pipe_mutex_destroy(queue->lock);
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FREE(queue->jobs);
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}
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/* also util_queue_is_initialized can be used to check for success */
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memset(queue, 0, sizeof(*queue));
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return false;
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2016-06-11 13:10:49 +02:00
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}
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void
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util_queue_destroy(struct util_queue *queue)
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{
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2016-06-11 15:40:28 +02:00
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unsigned i;
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/* Signal all threads to terminate. */
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2016-06-17 01:33:12 +02:00
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pipe_mutex_lock(queue->lock);
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2016-06-11 15:40:28 +02:00
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queue->kill_threads = 1;
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2016-06-17 01:33:12 +02:00
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pipe_condvar_broadcast(queue->has_queued_cond);
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pipe_mutex_unlock(queue->lock);
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2016-06-11 15:40:28 +02:00
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for (i = 0; i < queue->num_threads; i++)
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pipe_thread_wait(queue->threads[i]);
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2016-06-17 01:33:12 +02:00
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pipe_condvar_destroy(queue->has_space_cond);
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pipe_condvar_destroy(queue->has_queued_cond);
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2016-06-11 13:10:49 +02:00
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pipe_mutex_destroy(queue->lock);
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2016-06-12 12:54:42 +02:00
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FREE(queue->jobs);
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2016-06-11 15:40:28 +02:00
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FREE(queue->threads);
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2016-06-11 13:10:49 +02:00
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}
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void
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util_queue_fence_init(struct util_queue_fence *fence)
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{
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2016-06-11 17:51:22 +02:00
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memset(fence, 0, sizeof(*fence));
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pipe_mutex_init(fence->mutex);
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pipe_condvar_init(fence->cond);
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fence->signalled = true;
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2016-06-11 13:10:49 +02:00
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}
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void
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util_queue_fence_destroy(struct util_queue_fence *fence)
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{
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2016-07-09 19:44:13 +02:00
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assert(fence->signalled);
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2016-06-11 17:51:22 +02:00
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pipe_condvar_destroy(fence->cond);
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pipe_mutex_destroy(fence->mutex);
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2016-06-11 13:10:49 +02:00
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}
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void
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util_queue_add_job(struct util_queue *queue,
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void *job,
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2016-06-11 17:28:52 +02:00
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struct util_queue_fence *fence,
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2016-07-13 12:17:05 -04:00
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util_queue_execute_func execute,
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util_queue_execute_func cleanup)
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2016-06-11 13:10:49 +02:00
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{
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2016-06-12 12:54:42 +02:00
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struct util_queue_job *ptr;
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2016-06-11 17:51:22 +02:00
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assert(fence->signalled);
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fence->signalled = false;
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2016-06-11 13:10:49 +02:00
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2016-06-17 01:33:12 +02:00
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pipe_mutex_lock(queue->lock);
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assert(queue->num_queued >= 0 && queue->num_queued <= queue->max_jobs);
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2016-06-11 13:10:49 +02:00
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/* if the queue is full, wait until there is space */
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2016-06-17 01:33:12 +02:00
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while (queue->num_queued == queue->max_jobs)
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pipe_condvar_wait(queue->has_space_cond, queue->lock);
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2016-06-11 13:10:49 +02:00
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2016-06-12 12:54:42 +02:00
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ptr = &queue->jobs[queue->write_idx];
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assert(ptr->job == NULL);
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ptr->job = job;
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ptr->fence = fence;
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2016-06-11 17:28:52 +02:00
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ptr->execute = execute;
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2016-07-13 12:17:05 -04:00
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ptr->cleanup = cleanup;
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2016-06-12 12:54:42 +02:00
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queue->write_idx = (queue->write_idx + 1) % queue->max_jobs;
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2016-06-17 01:33:12 +02:00
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queue->num_queued++;
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pipe_condvar_signal(queue->has_queued_cond);
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2016-06-11 13:10:49 +02:00
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pipe_mutex_unlock(queue->lock);
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}
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2017-02-11 20:51:41 +01:00
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int64_t
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util_queue_get_thread_time_nano(struct util_queue *queue, unsigned thread_index)
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{
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/* Allow some flexibility by not raising an error. */
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if (thread_index >= queue->num_threads)
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return 0;
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return pipe_thread_get_time_nano(queue->threads[thread_index]);
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}
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