mirror of
https://github.com/lxsang/ant-http
synced 2024-11-17 17:08:20 +01:00
using async scheduler for the relayd
This commit is contained in:
parent
5443a1c8c0
commit
6b83f363f8
6
Makefile
6
Makefile
@ -16,7 +16,8 @@ LIBOBJS = libs/ini.o \
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libs/utils.o \
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libs/ws.o \
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libs/sha1.o \
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libs/list.o
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libs/list.o \
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libs/scheduler.o
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PLUGINSDEP = libs/plugin.o
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@ -30,6 +31,9 @@ httpd: lib $(SERVER_O)
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$(CC) $(CFLAGS) $(SERVER_O) -o $(BUILDIRD)/httpd httpd.c $(SERVERLIB)
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cp antd $(BUILDIRD)
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relay: lib $(SERVER_O)
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$(CC) $(CFLAGS) $(SERVER_O) -o $(BUILDIRD)/relay relay.c $(SERVERLIB)
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cp relayd $(BUILDIRD)
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lib: $(LIBOBJS)
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$(CC) $(CFLAGS) $(DB_LIB) $(SSL_LIB) -shared -o $(LIB_NAME).$(EXT) $(LIBOBJS)
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cp $(LIB_NAME).$(EXT) $(LIB_PATH$)/
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301
libs/scheduler.c
Normal file
301
libs/scheduler.c
Normal file
@ -0,0 +1,301 @@
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#include "scheduler.h"
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/*
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private data & methods
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*/
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static antd_scheduler_t scheduler;
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static void enqueue(antd_task_t* task)
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{
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// check if task is exist
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int prio = task->priority>N_PRIORITY-1?N_PRIORITY-1:task->priority;
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antd_task_queue_t q = scheduler.task_queue[prio];
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antd_task_item_t it = q;
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while(it && it->task->id != task->id && it->next != NULL)
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it = it->next;
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if(it && it->task->id == task->id)
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{
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LOG("Task %d exists, ignore it\n", task->id);
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return;
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}
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antd_task_item_t taski = (antd_task_item_t)malloc(sizeof *taski);
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taski->task = task;
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taski->next = NULL;
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if(!it) // first task
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{
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scheduler.task_queue[prio] = taski;
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}
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else
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{
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it->next = taski;
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}
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}
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static int working()
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{
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return scheduler.status;
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}
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static void stop()
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{
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pthread_mutex_lock(&scheduler.server_lock);
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scheduler.status = 0;
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pthread_mutex_unlock(&scheduler.server_lock);
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for (int i = 0; i < scheduler.n_workers; i++)
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pthread_join(scheduler.workers[i].pid, NULL);
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if(scheduler.workers) free(scheduler.workers);
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}
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static antd_task_item_t dequeue(int priority)
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{
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int prio = priority>N_PRIORITY-1?N_PRIORITY-1:priority;
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antd_task_item_t it = scheduler.task_queue[prio];
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if(it)
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{
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scheduler.task_queue[prio] = it->next;
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}
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return it;
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}
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static antd_task_item_t next_task()
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{
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antd_task_item_t it = NULL;
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pthread_mutex_lock(&scheduler.server_lock);
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for(int i = 0; i< N_PRIORITY; i++)
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{
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it = dequeue(i);
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if(it) break;
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}
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pthread_mutex_unlock(&scheduler.server_lock);
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return it;
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}
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static int available_workers()
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{
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int n = 0;
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pthread_mutex_lock(&scheduler.server_lock);
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for(int i=0; i < scheduler.n_workers; i++)
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if(scheduler.workers[i].status == 0) n++;
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pthread_mutex_unlock(&scheduler.server_lock);
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return n;
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}
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static void work(void* data)
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{
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antd_task_item_t it;
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antd_worker_t* worker = (antd_worker_t*)data;
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while(working())
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{
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pthread_mutex_lock(&scheduler.server_lock);
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worker->status = 0;
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pthread_mutex_unlock(&scheduler.server_lock);
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// fetch the next in queue
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it = next_task();
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if(!it) continue;
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//LOG("worker processing \n");
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pthread_mutex_lock(&scheduler.server_lock);
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worker->status = 1;
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pthread_mutex_unlock(&scheduler.server_lock);
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// execute the task
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antd_execute_task(it);
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}
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}
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static antd_callback_t* callback_of( void* (*callback)(void*) )
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{
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antd_callback_t* cb = NULL;
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if(callback)
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{
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cb = (antd_callback_t*)malloc(sizeof *cb);
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cb->handle = callback;
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cb->next = NULL;
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}
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return cb;
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}
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static void free_callback(antd_callback_t* cb)
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{
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antd_callback_t* it = cb;
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antd_callback_t* curr;
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while(it)
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{
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curr = it;
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it = it->next;
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free(curr);
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}
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}
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static void enqueue_callback(antd_callback_t* cb, antd_callback_t* el)
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{
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antd_callback_t* it = cb;
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while(it && it->next != NULL)
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it = it->next;
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if(!it) return; // this should not happend
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it->next = el;
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}
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static void execute_callback(antd_task_t* task)
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{
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antd_callback_t* cb = task->callback;
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if(cb)
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{
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// call the first come call back
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task->handle = cb->handle;
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task->callback = task->callback->next;
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free(cb);
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antd_add_task(task);
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}
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else
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{
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free(task);
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}
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}
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/*
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Main API methods
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init the main scheduler
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*/
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void antd_scheduler_init(int n)
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{
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time_t t;
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srand((unsigned) time(&t));
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scheduler.n_workers = n;
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scheduler.status = 1;
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scheduler.workers = (antd_worker_t*)malloc(n*(sizeof(antd_worker_t)));
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if(!scheduler.workers)
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{
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LOG("Cannot allocate memory for worker\n");
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exit(-1);
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}
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for(int i = 0; i < N_PRIORITY; i++) scheduler.task_queue[i] = NULL;
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// create scheduler.workers
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for(int i = 0; i < scheduler.n_workers;i++)
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{
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scheduler.workers[i].status = 0;
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if (pthread_create(&scheduler.workers[i].pid , NULL,(void *(*)(void *))work, (void*)&scheduler.workers[i]) != 0)
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{
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scheduler.workers[i].status = -1;
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perror("pthread_create: cannot create worker\n");
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}
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}
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LOG("Antd scheduler initialized with %d worker\n", scheduler.n_workers);
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}
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void antd_task_lock()
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{
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pthread_mutex_lock(&scheduler.task_lock);
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}
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void antd_task_unlock()
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{
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pthread_mutex_unlock(&scheduler.task_lock);
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}
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/*
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destroy all pending task
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*/
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void antd_scheduler_destroy()
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{
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// free all the chains
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antd_task_item_t it, curr;
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for(int i=0; i < N_PRIORITY; i++)
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{
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it = scheduler.task_queue[i];
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while(it)
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{
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// first free the task
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if(it->task && it->task->callback) free_callback(it->task->callback);
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if(it->task) free(it->task);
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// then free the placeholder
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curr = it;
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it = it->next;
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free(curr);
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}
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}
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stop();
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}
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/*
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create a task
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*/
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antd_task_t* antd_create_task(void* (*handle)(void*), void *data, void* (*callback)(void*))
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{
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antd_task_t* task = (antd_task_t*)malloc(sizeof *task);
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task->stamp = (unsigned long)time(NULL);
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task->id = rand();
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task->data = data;
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task->handle = handle;
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task->callback = callback_of(callback);
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task->priority = NORMAL_PRIORITY;
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return task;
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}
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/*
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scheduling a task
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*/
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void antd_add_task(antd_task_t* task)
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{
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pthread_mutex_lock(&scheduler.server_lock);
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enqueue(task);
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pthread_mutex_unlock(&scheduler.server_lock);
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}
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void antd_execute_task(antd_task_item_t taski)
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{
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// execute the task
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void *ret = (*(taski->task->handle))(taski->task->data);
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// check the return data if it is a new task
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if(!ret)
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{
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// call the first callback
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execute_callback(taski->task);
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free(taski);
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}
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else
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{
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antd_task_t* rtask = (antd_task_t*) ret;
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if(taski->task->callback)
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{
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if(rtask->callback)
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{
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enqueue_callback(rtask->callback, taski->task->callback);
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}
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else
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{
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rtask->callback = taski->task->callback;
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}
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}
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if(!rtask->handle)
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{
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// call the first callback
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execute_callback(rtask);
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free(taski->task);
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free(taski);
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}
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else
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{
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antd_add_task(rtask);
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free(taski->task);
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free(taski);
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}
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}
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}
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int antd_scheduler_busy()
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{
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int ret = 0;
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if(available_workers() != scheduler.n_workers) return 1;
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pthread_mutex_lock(&scheduler.server_lock);
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for(int i = 0; i < N_PRIORITY; i++)
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if(scheduler.task_queue[i] != NULL)
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{
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ret = 1;
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break;
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}
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pthread_mutex_unlock(&scheduler.server_lock);
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return ret;
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}
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int antd_scheduler_status()
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{
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return scheduler.status;
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}
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97
libs/scheduler.h
Normal file
97
libs/scheduler.h
Normal file
@ -0,0 +1,97 @@
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#ifndef ANT_SCHEDULER
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#define ANT_SCHEDULER
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#include "utils.h"
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#include <pthread.h>
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// thread pool of workers
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#define N_PRIORITY 10
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#define NORMAL_PRIORITY ((int)((N_PRIORITY - 1) / 2))
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#define LOW_PRIORITY (N_PRIORITY - 1)
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#define HIGH_PRIORITY 0
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// callback definition
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typedef struct __callback_t{
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void* (*handle)(void*);
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struct __callback_t * next;
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} antd_callback_t;
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// task definition
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typedef struct {
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/*
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creation time of a task
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*/
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unsigned long stamp;
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/*
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unique id
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*/
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int id;
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/*
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priority from 0 to 9
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higher value is lower priority
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*/
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uint8_t priority;
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/*
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the callback
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*/
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void* (*handle)(void*);
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antd_callback_t* callback;
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/*
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user data if any
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*/
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void * data;
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} antd_task_t;
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typedef struct {
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pthread_t pid;
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uint8_t status; // -1 quit, 0 available, 1 busy
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} antd_worker_t;
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typedef struct __task_item_t{
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antd_task_t* task;
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struct __task_item_t* next;
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}* antd_task_item_t;
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typedef antd_task_item_t antd_task_queue_t;
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typedef struct {
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pthread_mutex_t server_lock;
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pthread_mutex_t task_lock;
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antd_task_queue_t task_queue[N_PRIORITY];
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uint8_t status; // 0 stop, 1 working
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antd_worker_t* workers;
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int n_workers;
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} antd_scheduler_t;
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/*
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init the main scheduler
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*/
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void antd_scheduler_init();
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/*
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destroy all pending task
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*/
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void antd_scheduler_destroy();
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/*
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create a task
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*/
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antd_task_t* antd_create_task(void* (*handle)(void*), void *data, void* (*callback)(void*));
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/*
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scheduling a task
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*/
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void antd_add_task(antd_task_t*);
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void antd_task_lock();
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void antd_task_unlock();
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/*
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Execute a task
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*/
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int antd_scheduler_status();
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/*
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execute and free a task a task
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*/
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void antd_execute_task(antd_task_item_t);
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int antd_scheduler_busy();
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#endif
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@ -58,6 +58,9 @@ THE SOFTWARE.
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#else
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#define LOG(a,...) do{}while(0)
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#endif
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// add this to the utils
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#define UNUSED(x) (void)(x)
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#define BUFFLEN 1024
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#define HASHSIZE 1024
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#define DHASHSIZE 50
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123
relay.c
Normal file
123
relay.c
Normal file
@ -0,0 +1,123 @@
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#include "http_server.h"
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#include "libs/scheduler.h"
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/*
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this node is a relay from the http
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to https
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*/
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#define MATCH(s, n) strcmp(section, s) == 0 && strcmp(name, n) == 0
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int server_sock = -1;
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void stop_serve(int dummy) {
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UNUSED(dummy);
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antd_scheduler_destroy();
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close(server_sock);
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}
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/*
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HTTP/1.1 301 Moved Permanently
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Location: http://www.example.org/
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Content-Type: text/html
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Content-Length: 174
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*/
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void* antd_redirect(void* user_data)
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{
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void** data = (void**)user_data;
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void* client = data[0];
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char* host = (char*)data[1];
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__t(client,"%s", "HTTP/1.1 301 Moved Permanently");
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__t(client, "Location: https://%s", host);
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__t(client, "%s", "Content-Type: text/html");
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__t(client, "");
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__t(client, "This page has moved to https://%s", host);
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free(host);
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free(user_data);
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return antd_create_task(NULL,client, NULL);
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}
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void* antd_free_client(void* client)
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{
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antd_client_t * source = (antd_client_t *) client;
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if(source->ip) free(source->ip);
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close(source->sock);
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free(client);
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return NULL;
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}
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void* antd_get_host(void * client)
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{
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char buff[1024];
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char* line, *token;
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char* host = NULL;
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while((read_buf(client,buff,sizeof(buff))) && strcmp("\r\n",buff))
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{
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line = buff;
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trim(line, '\n');
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trim(line, '\r');
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token = strsep(&line, ":");
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trim(token,' ');
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trim(line,' ');
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if(token && strcasecmp(token,"Host")==0)
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if(line)
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{
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host = strdup(line);
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break;
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}
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}
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if(!host) host = strdup("lxsang.me");
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void** data = (void**)malloc(2*(sizeof *data));
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data[0] = client;
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data[1] = (void*)host;
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LOG("Host is %s\n", host);
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return antd_create_task(antd_redirect,data, NULL);
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}
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int main(int argc, char* argv[])
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{
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UNUSED(argc);
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UNUSED(argv);
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// load the config first
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unsigned port = 80;
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int client_sock = -1;
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struct sockaddr_in client_name;
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socklen_t client_name_len = sizeof(client_name);
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// ignore the broken PIPE error when writing
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//or reading to/from a closed socked connection
|
||||
signal(SIGPIPE, SIG_IGN);
|
||||
signal(SIGABRT, SIG_IGN);
|
||||
signal(SIGINT, stop_serve);
|
||||
server_sock = startup(&port);
|
||||
// 1 worker is
|
||||
antd_scheduler_init(1);
|
||||
LOG("httpd running on port %d\n", port);
|
||||
|
||||
while (antd_scheduler_status())
|
||||
{
|
||||
client_sock = accept(server_sock,(struct sockaddr *)&client_name,&client_name_len);
|
||||
if (client_sock == -1)
|
||||
{
|
||||
perror("Cannot accept client request\n");
|
||||
continue;
|
||||
}
|
||||
antd_client_t* client = (antd_client_t*)malloc(sizeof(antd_client_t));
|
||||
// set timeout to socket
|
||||
struct timeval timeout;
|
||||
timeout.tv_sec = 0;
|
||||
timeout.tv_usec = 500;
|
||||
|
||||
if (setsockopt (client_sock, SOL_SOCKET, SO_RCVTIMEO, (char *)&timeout,sizeof(timeout)) < 0)
|
||||
perror("setsockopt failed\n");
|
||||
|
||||
if (setsockopt (client_sock, SOL_SOCKET, SO_SNDTIMEO, (char *)&timeout,sizeof(timeout)) < 0)
|
||||
perror("setsockopt failed\n");
|
||||
|
||||
/*
|
||||
get the remote IP
|
||||
*/
|
||||
client->ip = NULL;
|
||||
if (client_name.sin_family == AF_INET)
|
||||
client->ip = strdup(inet_ntoa(client_name.sin_addr));
|
||||
client->sock = client_sock;
|
||||
//accept_request(&client);
|
||||
antd_add_task(antd_create_task(antd_get_host,(void*)client, antd_free_client ));
|
||||
}
|
||||
|
||||
return(0);
|
||||
}
|
Loading…
Reference in New Issue
Block a user