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							438 lines
						
					
					
						
							8.6 KiB
						
					
					
				
			
		
		
	
	
							438 lines
						
					
					
						
							8.6 KiB
						
					
					
				#include <stdio.h>
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#include <stdlib.h>
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#include <stdbool.h>
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#include <assert.h>
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#include <string.h>
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#include <unistd.h>
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#include "common/efd.h"
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#include "buffering.h"
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void tbuffer_init(TBuffer *tb, int num_bufs, const char* name) {
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  assert(num_bufs >= 3);
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  memset(tb, 0, sizeof(TBuffer));
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  tb->reading = (bool*)calloc(num_bufs, sizeof(bool));
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  assert(tb->reading);
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  tb->pending_idx = -1;
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  tb->num_bufs = num_bufs;
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  tb->name = name;
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  pthread_mutex_init(&tb->lock, NULL);
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  pthread_cond_init(&tb->cv, NULL);
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  tb->efd = efd_init();
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  assert(tb->efd >= 0);
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}
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void tbuffer_init2(TBuffer *tb, int num_bufs, const char* name,
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                   void (*release_cb)(void* c, int idx),
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                   void* cb_cookie) {
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  tbuffer_init(tb, num_bufs, name);
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  tb->release_cb = release_cb;
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  tb->cb_cookie = cb_cookie;
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}
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int tbuffer_efd(TBuffer *tb) {
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  return tb->efd;
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}
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int tbuffer_select(TBuffer *tb) {
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  pthread_mutex_lock(&tb->lock);
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  int i;
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  for (i=0; i<tb->num_bufs; i++) {
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    if (!tb->reading[i] && i != tb->pending_idx) {
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      break;
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    }
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  }
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  assert(i < tb->num_bufs);
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  pthread_mutex_unlock(&tb->lock);
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  return i;
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}
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void tbuffer_dispatch(TBuffer *tb, int idx) {
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  pthread_mutex_lock(&tb->lock);
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  if (tb->pending_idx != -1) {
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    //printf("tbuffer (%s) dropped!\n", tb->name ? tb->name : "?");
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    if (tb->release_cb) {
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      tb->release_cb(tb->cb_cookie, tb->pending_idx);
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    }
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    tb->pending_idx = -1;
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  }
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  tb->pending_idx = idx;
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  efd_write(tb->efd);
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  pthread_cond_signal(&tb->cv);
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  pthread_mutex_unlock(&tb->lock);  
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}
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int tbuffer_acquire(TBuffer *tb) {
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  pthread_mutex_lock(&tb->lock);
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  if (tb->stopped) {
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    pthread_mutex_unlock(&tb->lock);
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    return -1;
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  }
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  while (tb->pending_idx == -1) {
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    pthread_cond_wait(&tb->cv, &tb->lock);
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    if (tb->stopped) {
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      pthread_mutex_unlock(&tb->lock);
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      return -1;
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    }
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  }
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  efd_clear(tb->efd);
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  int ret = tb->pending_idx;
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  assert(ret < tb->num_bufs);
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  tb->reading[ret] = true;
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  tb->pending_idx = -1;
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  pthread_mutex_unlock(&tb->lock);
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  return ret;
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}
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static void tbuffer_release_locked(TBuffer *tb, int idx) {
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  assert(idx < tb->num_bufs);
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  if (!tb->reading[idx]) {
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    printf("!! releasing tbuffer we aren't reading %d\n", idx);
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  }
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  if (tb->release_cb) {
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    tb->release_cb(tb->cb_cookie, idx);
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  }
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  tb->reading[idx] = false;
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}
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void tbuffer_release(TBuffer *tb, int idx) {
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  pthread_mutex_lock(&tb->lock);
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  tbuffer_release_locked(tb, idx);
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  pthread_mutex_unlock(&tb->lock);
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}
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void tbuffer_release_all(TBuffer *tb) {
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  pthread_mutex_lock(&tb->lock);
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  for (int i=0; i<tb->num_bufs; i++) {
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    if (tb->reading[i]) {
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      tbuffer_release_locked(tb, i);
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    }
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  }
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  pthread_mutex_unlock(&tb->lock);
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}
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void tbuffer_stop(TBuffer *tb) {
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  pthread_mutex_lock(&tb->lock);
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  tb->stopped = true;
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  efd_write(tb->efd);
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  pthread_cond_signal(&tb->cv);
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  pthread_mutex_unlock(&tb->lock);
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}
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void pool_init(Pool *s, int num_bufs) {
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  assert(num_bufs > 3);
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  memset(s, 0, sizeof(*s));
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  s->num_bufs = num_bufs;
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  s->refcnt = (int*)calloc(num_bufs, sizeof(int));
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  s->ts = (int*)calloc(num_bufs, sizeof(int));
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  s->counter = 1;
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  pthread_mutex_init(&s->lock, NULL);
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}
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void pool_init2(Pool *s, int num_bufs,
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  void (*release_cb)(void* c, int idx), void* cb_cookie) {
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  pool_init(s, num_bufs);
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  s->cb_cookie = cb_cookie;
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  s->release_cb = release_cb;
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}
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void pool_acquire(Pool *s, int idx) {
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  pthread_mutex_lock(&s->lock);
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  assert(idx >= 0 && idx < s->num_bufs);
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  s->refcnt[idx]++;
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  pthread_mutex_unlock(&s->lock);
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}
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static void pool_release_locked(Pool *s, int idx) {
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  // printf("release %d refcnt %d\n", idx, s->refcnt[idx]);
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  assert(idx >= 0 && idx < s->num_bufs);
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  assert(s->refcnt[idx] > 0);
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  s->refcnt[idx]--;
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  // printf("release %d -> %d, %p\n", idx, s->refcnt[idx], s->release_cb);
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  if (s->refcnt[idx] == 0 && s->release_cb) {
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    // printf("call %p\b", s->release_cb);
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    s->release_cb(s->cb_cookie, idx);
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  }
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}
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void pool_release(Pool *s, int idx) {
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  pthread_mutex_lock(&s->lock);
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  pool_release_locked(s, idx);
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  pthread_mutex_unlock(&s->lock);
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}
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TBuffer* pool_get_tbuffer(Pool *s) {
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  pthread_mutex_lock(&s->lock);
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  assert(s->num_tbufs < POOL_MAX_TBUFS);
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  TBuffer* tbuf = &s->tbufs[s->num_tbufs];
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  s->num_tbufs++;
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  tbuffer_init2(tbuf, s->num_bufs,
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                "pool", (void (*)(void *, int))pool_release, s);
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  bool stopped = s->stopped;
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  pthread_mutex_unlock(&s->lock);
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  // Stop the tbuffer so we can return a valid object.
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  // We must stop here because the pool_stop may have already been called,
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  // in which case tbuffer_stop may never be called again.
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  if (stopped) {
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    tbuffer_stop(tbuf);
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  }
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  return tbuf;
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}
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PoolQueue* pool_get_queue(Pool *s) {
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  pthread_mutex_lock(&s->lock);
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  int i;
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  for (i = 0; i < POOL_MAX_QUEUES; i++) {
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    if (!s->queues[i].inited) {
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      break;
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    }
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  }
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  assert(i < POOL_MAX_QUEUES);
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  PoolQueue *c = &s->queues[i];
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  memset(c, 0, sizeof(*c));
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  c->pool = s;
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  c->inited = true;
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  c->efd = efd_init();
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  assert(c->efd >= 0);
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  c->num_bufs = s->num_bufs;
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  c->num = c->num_bufs+1;
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  c->idx = (int*)malloc(sizeof(int)*c->num);
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  memset(c->idx, -1, sizeof(int)*c->num);
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  pthread_mutex_init(&c->lock, NULL);
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  pthread_cond_init(&c->cv, NULL);
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  pthread_mutex_unlock(&s->lock);
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  return c;
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}
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void pool_release_queue(PoolQueue *c) {
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  Pool *s = c->pool;
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  pthread_mutex_lock(&s->lock);
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  pthread_mutex_lock(&c->lock);
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  for (int i=0; i<c->num; i++) {
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    if (c->idx[i] != -1) {
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      pool_release_locked(s, c->idx[i]);
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    }
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  }
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  close(c->efd);
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  free(c->idx);
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  c->inited = false;
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  pthread_mutex_unlock(&c->lock);
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  pthread_mutex_destroy(&c->lock);
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  pthread_cond_destroy(&c->cv);
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  pthread_mutex_unlock(&s->lock);
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}
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int pool_select(Pool *s) {
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  pthread_mutex_lock(&s->lock);
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  int i;
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  for (i=0; i<s->num_bufs; i++) {
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    if (s->refcnt[i] == 0) {
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      break;
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    }
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  }
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  if (i >= s->num_bufs) {
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    // overwrite the oldest
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    // still being using in a queue or tbuffer :/
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    int min_k = 0;
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    int min_ts = s->ts[0];
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    for (int k=1; k<s->num_bufs; k++) {
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      if (s->ts[k] < min_ts) {
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        min_ts = s->ts[k];
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        min_k = k;
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      }
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    }
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    i = min_k;
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    printf("pool is full! evicted %d\n", min_k);
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    // might be really bad if the user is doing pointery stuff
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    if (s->release_cb) {
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      s->release_cb(s->cb_cookie, min_k);
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    }
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  }
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  s->refcnt[i]++;
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  s->ts[i] = s->counter;
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  s->counter++;
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  pthread_mutex_unlock(&s->lock);
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  return i;
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}
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void pool_push(Pool *s, int idx) {
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  pthread_mutex_lock(&s->lock);
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  // printf("push %d head %d tail %d\n", idx, s->head, s->tail);
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  assert(idx >= 0 && idx < s->num_bufs);
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  s->ts[idx] = s->counter;
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  s->counter++;
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  assert(s->refcnt[idx] > 0);
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  s->refcnt[idx]--; //push is a implcit release
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  int num_tbufs = s->num_tbufs;
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  s->refcnt[idx] += num_tbufs;
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  // dispatch pool queues
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  for (int i=0; i<POOL_MAX_QUEUES; i++) {
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    PoolQueue *c = &s->queues[i];
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    if (!c->inited) continue;
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    pthread_mutex_lock(&c->lock);
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    if (((c->head+1) % c->num) == c->tail) {
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      // queue is full. skip for now
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      pthread_mutex_unlock(&c->lock);
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      continue;
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    }
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    s->refcnt[idx]++;
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    c->idx[c->head] = idx;
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    c->head = (c->head+1) % c->num;
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    assert(c->head != c->tail);
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    pthread_mutex_unlock(&c->lock);
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    efd_write(c->efd);
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    pthread_cond_signal(&c->cv);
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  }
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  pthread_mutex_unlock(&s->lock);
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  for (int i=0; i<num_tbufs; i++) {
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    tbuffer_dispatch(&s->tbufs[i], idx);
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  }
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}
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int poolq_pop(PoolQueue *c) {
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  pthread_mutex_lock(&c->lock);
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  if (c->stopped) {
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    pthread_mutex_unlock(&c->lock);
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    return -1;
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  }
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  while (c->head == c->tail) {
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    pthread_cond_wait(&c->cv, &c->lock);
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    if (c->stopped) {
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      pthread_mutex_unlock(&c->lock);
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      return -1;
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    }
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  }
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  // printf("pop head %d tail %d\n", s->head, s->tail);
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  assert(c->head != c->tail);
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  int r = c->idx[c->tail];
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  c->idx[c->tail] = -1;
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  c->tail = (c->tail+1) % c->num;
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  // queue event is level triggered
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  if (c->head == c->tail) {
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    efd_clear(c->efd);
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  }
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  // printf("pop %d head %d tail %d\n", r, s->head, s->tail);
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  assert(r >= 0 && r < c->num_bufs);
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  pthread_mutex_unlock(&c->lock);
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  return r;
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}
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int poolq_efd(PoolQueue *c) {
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  return c->efd;
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}
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void poolq_release(PoolQueue *c, int idx) {
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  pool_release(c->pool, idx);
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}
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void pool_stop(Pool *s) {
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  for (int i=0; i<s->num_tbufs; i++) {
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    tbuffer_stop(&s->tbufs[i]);
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  }
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  pthread_mutex_lock(&s->lock);
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  s->stopped = true;
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  for (int i=0; i<POOL_MAX_QUEUES; i++) {
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    PoolQueue *c = &s->queues[i];
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    if (!c->inited) continue;
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    pthread_mutex_lock(&c->lock);
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    c->stopped = true;
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    pthread_mutex_unlock(&c->lock);
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    efd_write(c->efd);
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    pthread_cond_signal(&c->cv);
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  }
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  pthread_mutex_unlock(&s->lock);
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}
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