138 lines
4.7 KiB
C
138 lines
4.7 KiB
C
// Functions that operate on channels
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#include <ctype.h>
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#include <err.h>
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#include <gc.h>
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#include <math.h>
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#include <stdbool.h>
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#include <stdint.h>
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#include <stdlib.h>
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#include <pthread.h>
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#include <sys/param.h>
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#include "arrays.h"
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#include "metamethods.h"
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#include "integers.h"
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#include "siphash.h"
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#include "text.h"
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#include "types.h"
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#include "util.h"
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public Channel_t *Channel$new(Int_t max_size)
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{
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if (Int$compare_value(max_size, I_small(0)) <= 0)
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fail("Cannot create a channel with a size less than one: %ld", max_size);
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Channel_t *channel = new(Channel_t);
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channel->items = (Array_t){};
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channel->mutex = (pthread_mutex_t)PTHREAD_MUTEX_INITIALIZER;
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channel->cond = (pthread_cond_t)PTHREAD_COND_INITIALIZER;
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channel->max_size = Int_to_Int64(max_size, false);
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return channel;
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}
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public void Channel$give(Channel_t *channel, const void *item, bool front, int64_t padded_item_size)
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{
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(void)pthread_mutex_lock(&channel->mutex);
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while (channel->items.length >= channel->max_size)
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pthread_cond_wait(&channel->cond, &channel->mutex);
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Int_t index = front ? I_small(1) : I_small(0);
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Array$insert(&channel->items, item, index, padded_item_size);
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(void)pthread_mutex_unlock(&channel->mutex);
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(void)pthread_cond_signal(&channel->cond);
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}
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public void Channel$give_all(Channel_t *channel, Array_t to_give, bool front, int64_t padded_item_size)
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{
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if (to_give.length == 0) return;
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(void)pthread_mutex_lock(&channel->mutex);
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Int_t index = front ? I_small(1) : I_small(0);
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if (channel->items.length + to_give.length >= channel->max_size) {
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for (int64_t i = 0; i < to_give.length; i++) {
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while (channel->items.length >= channel->max_size)
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pthread_cond_wait(&channel->cond, &channel->mutex);
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Array$insert(&channel->items, to_give.data + i*to_give.stride, index, padded_item_size);
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}
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} else {
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Array$insert_all(&channel->items, to_give, index, padded_item_size);
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}
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(void)pthread_mutex_unlock(&channel->mutex);
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(void)pthread_cond_signal(&channel->cond);
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}
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public void Channel$get(Channel_t *channel, void *out, bool front, int64_t item_size, int64_t padded_item_size)
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{
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(void)pthread_mutex_lock(&channel->mutex);
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while (channel->items.length == 0)
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pthread_cond_wait(&channel->cond, &channel->mutex);
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memcpy(out, channel->items.data + channel->items.stride * (front ? 0 : channel->items.length-1), (size_t)(item_size));
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Int_t index = front ? I_small(1) : Int64_to_Int(channel->items.length);
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Array$remove_at(&channel->items, index, I_small(1), padded_item_size);
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(void)pthread_mutex_unlock(&channel->mutex);
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(void)pthread_cond_signal(&channel->cond);
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}
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public void Channel$peek(Channel_t *channel, void *out, bool front, int64_t item_size)
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{
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(void)pthread_mutex_lock(&channel->mutex);
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while (channel->items.length == 0)
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pthread_cond_wait(&channel->cond, &channel->mutex);
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int64_t index = front ? 0 : channel->items.length-1;
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memcpy(out, channel->items.data + channel->items.stride*index, (size_t)(item_size));
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(void)pthread_mutex_unlock(&channel->mutex);
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(void)pthread_cond_signal(&channel->cond);
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}
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public Array_t Channel$view(Channel_t *channel)
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{
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(void)pthread_mutex_lock(&channel->mutex);
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ARRAY_INCREF(channel->items);
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Array_t ret = channel->items;
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(void)pthread_mutex_unlock(&channel->mutex);
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return ret;
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}
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public void Channel$clear(Channel_t *channel)
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{
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(void)pthread_mutex_lock(&channel->mutex);
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Array$clear(&channel->items);
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(void)pthread_mutex_unlock(&channel->mutex);
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(void)pthread_cond_signal(&channel->cond);
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}
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PUREFUNC public uint64_t Channel$hash(Channel_t **channel, const TypeInfo_t *type)
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{
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(void)type;
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return siphash24((void*)*channel, sizeof(Channel_t*));
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}
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PUREFUNC public int32_t Channel$compare(Channel_t **x, Channel_t **y, const TypeInfo_t *type)
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{
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(void)type;
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return (*x > *y) - (*x < *y);
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}
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PUREFUNC public bool Channel$equal(Channel_t **x, Channel_t **y, const TypeInfo_t *type)
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{
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(void)type;
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return (*x == *y);
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}
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public Text_t Channel$as_text(Channel_t **channel, bool colorize, const TypeInfo_t *type)
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{
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const TypeInfo_t *item_type = type->ChannelInfo.item;
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if (!channel) {
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Text_t typename = generic_as_text(NULL, false, item_type);
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return Text$concat(colorize ? Text("\x1b[34;1m|:") : Text("|:"), typename, colorize ? Text("|\x1b[m") : Text("|"));
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}
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Text_t typename = generic_as_text(NULL, false, item_type);
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return Text$concat(
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colorize ? Text("\x1b[34;1m|:") : Text("|:"),
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typename,
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Text("|<"),
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Int64$hex((int64_t)(void*)*channel, I_small(0), true, true),
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colorize ? Text(">\x1b[m") : Text(">")
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);
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}
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// vim: ts=4 sw=0 et cino=L2,l1,(0,W4,m1,\:0
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