nmux: Fixed some bugs and added a lot of debug info
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parent
3941ce49e7
commit
47084804da
4 changed files with 35 additions and 10 deletions
27
nmux.cpp
27
nmux.cpp
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@ -169,22 +169,26 @@ int main(int argc, char* argv[])
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// waiting on this condition. They will be woken up with pthread_cond_broadcast() if new
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// waiting on this condition. They will be woken up with pthread_cond_broadcast() if new
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// data arrives.
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// data arrives.
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pthread_cond_t* wait_condition = new pthread_cond_t;
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pthread_cond_t* wait_condition = new pthread_cond_t;
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if(!pthread_cond_init(wait_condition, NULL))
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if(pthread_cond_init(wait_condition, NULL))
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print_exit(MSG_START "(main thread) pthread_cond_init failed"); //cond_attrs is ignored by Linux
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print_exit(MSG_START "(main thread) pthread_cond_init failed"); //cond_attrs is ignored by Linux
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for(;;)
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for(;;)
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{
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{
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fprintf(stderr, "mainfor: selecting...");
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//Let's wait until there is any new data to read, or any new connection!
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//Let's wait until there is any new data to read, or any new connection!
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select(highfd, &select_fds, NULL, NULL, NULL);
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select(highfd, &select_fds, NULL, NULL, NULL);
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fprintf(stderr, "selected.\n");
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//Is there a new client connection?
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//Is there a new client connection?
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if( (new_socket = accept(listen_socket, (struct sockaddr*)&addr_cli, &addr_cli_len)) != -1)
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if( (new_socket = accept(listen_socket, (struct sockaddr*)&addr_cli, &addr_cli_len)) != -1)
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{
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{
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fprintf(stderr, "mainfor: accepted.\n");
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//Close all finished clients
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//Close all finished clients
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for(int i=0;i<clients.size();i++)
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for(int i=0;i<clients.size();i++)
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{
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{
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if(clients[i]->status == CS_THREAD_FINISHED)
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if(clients[i]->status == CS_THREAD_FINISHED)
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{
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{
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fprintf(stderr, "mainfor: client removed: %d\n", i);
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client_erase(clients[i]);
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client_erase(clients[i]);
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clients.erase(clients.begin()+i);
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clients.erase(clients.begin()+i);
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}
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}
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@ -193,7 +197,7 @@ int main(int argc, char* argv[])
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//We're the parent, let's create a new client and initialize it
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//We're the parent, let's create a new client and initialize it
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client_t* new_client = new client_t;
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client_t* new_client = new client_t;
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new_client->error = 0;
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new_client->error = 0;
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memcpy(&new_client->addr, &addr_cli, sizeof(new_client->addr));
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memcpy(&new_client->addr, &addr_cli, sizeof(struct sockaddr_in));
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new_client->socket = new_socket;
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new_client->socket = new_socket;
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new_client->status = CS_CREATED;
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new_client->status = CS_CREATED;
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new_client->tsmthread = pool->register_thread();
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new_client->tsmthread = pool->register_thread();
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@ -201,7 +205,7 @@ int main(int argc, char* argv[])
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pthread_mutex_init(&new_client->wait_mutex, NULL);
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pthread_mutex_init(&new_client->wait_mutex, NULL);
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new_client->wait_condition = wait_condition;
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new_client->wait_condition = wait_condition;
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new_client->sleeping = 0;
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new_client->sleeping = 0;
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if(pthread_create(&new_client->thread, NULL, client_thread , (void*)&new_client)<0)
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if(pthread_create(&new_client->thread, NULL, client_thread , (void*)&new_client)==0)
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{
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{
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clients.push_back(new_client);
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clients.push_back(new_client);
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fprintf(stderr, MSG_START "(main thread) pthread_create() done, clients now: %d\n", clients.size());
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fprintf(stderr, MSG_START "(main thread) pthread_create() done, clients now: %d\n", clients.size());
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@ -209,6 +213,9 @@ int main(int argc, char* argv[])
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else
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else
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{
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{
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fprintf(stderr, MSG_START "(main thread) pthread_create() failed.\n");
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fprintf(stderr, MSG_START "(main thread) pthread_create() failed.\n");
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pool->remove_thread(new_client->tsmthread);
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pthread_mutex_destroy(&new_client->wait_mutex);
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delete new_client;
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}
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}
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}
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}
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@ -223,6 +230,7 @@ int main(int argc, char* argv[])
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index_in_current_write_buffer = 0;
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index_in_current_write_buffer = 0;
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}
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}
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int retval = read(input_fd, current_write_buffer + index_in_current_write_buffer, bufsize - index_in_current_write_buffer);
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int retval = read(input_fd, current_write_buffer + index_in_current_write_buffer, bufsize - index_in_current_write_buffer);
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fprintf(stderr, "mainfor: read %d\n", retval);
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if(retval>0)
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if(retval>0)
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{
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{
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index_in_current_write_buffer += retval;
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index_in_current_write_buffer += retval;
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@ -248,16 +256,22 @@ void client_erase(client_t* client)
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void* client_thread (void* param)
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void* client_thread (void* param)
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{
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{
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fprintf(stderr, "client 0x%x: started!\n", (unsigned)param);
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client_t* this_client = (client_t*)param;
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client_t* this_client = (client_t*)param;
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this_client->status = CS_THREAD_RUNNING;
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this_client->status = CS_THREAD_RUNNING;
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int retval;
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int retval;
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tsmpool* lpool = this_client->lpool;
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tsmpool* lpool = this_client->lpool;
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fprintf(stderr, "client 0x%x: make maxfd... ", (unsigned)param);
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fd_set client_select_fds;
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fd_set client_select_fds;
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fprintf(stderr, "1");
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int client_highfd = 0;
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int client_highfd = 0;
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FD_ZERO(&client_select_fds);
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FD_ZERO(&client_select_fds);
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fprintf(stderr, "2 %d <= %d ", this_client->socket, FD_SETSIZE);
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FD_SET(this_client->socket, &client_select_fds);
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FD_SET(this_client->socket, &client_select_fds);
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fprintf(stderr, "3");
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maxfd(&client_highfd, this_client->socket);
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maxfd(&client_highfd, this_client->socket);
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fprintf(stderr, "done.\n");
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//Set client->socket to non-blocking
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//Set client->socket to non-blocking
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if(set_nonblocking(this_client->socket))
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if(set_nonblocking(this_client->socket))
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@ -271,8 +285,9 @@ void* client_thread (void* param)
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//Wait until there is any data to send.
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//Wait until there is any data to send.
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// If I haven't sent all the data from my last buffer, don't wait.
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// If I haven't sent all the data from my last buffer, don't wait.
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// (Wait for the server process to wake me up.)
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// (Wait for the server process to wake me up.)
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while(!pool_read_buffer || client_buffer_index == lpool->size)
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while(!pool_read_buffer || client_buffer_index >= lpool->size)
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{
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{
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fprintf(stderr, "client 0x%x: waiting\n", (unsigned)param);
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char* pool_read_buffer = (char*)lpool->get_read_buffer(this_client->tsmthread);
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char* pool_read_buffer = (char*)lpool->get_read_buffer(this_client->tsmthread);
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pthread_mutex_lock(&this_client->wait_mutex);
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pthread_mutex_lock(&this_client->wait_mutex);
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this_client->sleeping = 1;
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this_client->sleeping = 1;
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@ -280,10 +295,14 @@ void* client_thread (void* param)
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}
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}
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//Wait for the socket to be available for write.
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//Wait for the socket to be available for write.
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fprintf(stderr, "client 0x%x: selecting...", (unsigned)param);
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select(client_highfd, NULL, &client_select_fds, NULL, NULL);
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select(client_highfd, NULL, &client_select_fds, NULL, NULL);
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fprintf(stderr, "done.\n");
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//Read data from global tsmpool and write it to client socket
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//Read data from global tsmpool and write it to client socket
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fprintf(stderr, "client 0x%x: sending...", (unsigned)param);
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int ret = send(this_client->socket, pool_read_buffer + client_buffer_index, lpool->size - client_buffer_index, 0);
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int ret = send(this_client->socket, pool_read_buffer + client_buffer_index, lpool->size - client_buffer_index, 0);
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fprintf(stderr, "done.\n");
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if(ret == -1)
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if(ret == -1)
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{
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{
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switch(errno)
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switch(errno)
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2
nmux.h
2
nmux.h
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@ -31,7 +31,7 @@ typedef struct client_s
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tsmthread_t* tsmthread;
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tsmthread_t* tsmthread;
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client_status_t status;
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client_status_t status;
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//the following members are there to give access to some global variables inside the thread:
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//the following members are there to give access to some global variables inside the thread:
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tsmpool* lpool; //local pool
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tsmpool* lpool;
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int sleeping;
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int sleeping;
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pthread_cond_t* wait_condition;
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pthread_cond_t* wait_condition;
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pthread_mutex_t wait_mutex;
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pthread_mutex_t wait_mutex;
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12
tsmpool.cpp
12
tsmpool.cpp
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@ -8,7 +8,7 @@ tsmpool::tsmpool(size_t size, int num) :
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this->ok = 1;
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this->ok = 1;
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this->lowest_read_index = -1;
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this->lowest_read_index = -1;
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this->write_index = 0;
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this->write_index = 0;
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this->my_read_index = 0;
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this->my_read_index = index_before(0);
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if (pthread_mutex_init(&this->mutex, NULL) != 0) { this->ok = 0; return; }
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if (pthread_mutex_init(&this->mutex, NULL) != 0) { this->ok = 0; return; }
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for(int i=0; i<num; i++)
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for(int i=0; i<num; i++)
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{
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{
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@ -23,15 +23,18 @@ int tsmpool::is_ok() { return this->ok; }
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void* tsmpool::get_write_buffer()
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void* tsmpool::get_write_buffer()
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{
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{
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//if(write_index==index_before(lowest_read_index)) return NULL;
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//if(write_index==index_before(lowest_read_index)) return NULL;
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pthread_mutex_lock(&this->mutex);
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void* to_return = buffers[write_index];
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void* to_return = buffers[write_index];
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write_index=index_next(write_index);
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write_index = index_next(write_index);
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pthread_mutex_unlock(&this->mutex);
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return to_return;
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}
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}
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tsmthread_t* tsmpool::register_thread()
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tsmthread_t* tsmpool::register_thread()
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{
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{
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if(!ok) return NULL;
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if(!ok) return NULL;
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pthread_mutex_lock(&this->mutex);
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pthread_mutex_lock(&this->mutex);
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tsmthread_t* thread = new tsmthread_t;
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tsmthread_t* thread = new tsmthread_t();
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thread->read_index = index_before(write_index);
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thread->read_index = index_before(write_index);
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threads.push_back(thread);
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threads.push_back(thread);
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pthread_mutex_unlock(&this->mutex);
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pthread_mutex_unlock(&this->mutex);
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@ -53,8 +56,11 @@ int tsmpool::remove_thread(tsmthread_t* thread)
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void* tsmpool::get_read_buffer(tsmthread_t* thread)
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void* tsmpool::get_read_buffer(tsmthread_t* thread)
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{
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{
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pthread_mutex_lock(&this->mutex);
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int* actual_read_index = (thread==NULL) ? &my_read_index : &thread->read_index;
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int* actual_read_index = (thread==NULL) ? &my_read_index : &thread->read_index;
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if(*actual_read_index==index_before(write_index)) return NULL;
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if(*actual_read_index==index_before(write_index)) return NULL;
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void* to_return = buffers[*actual_read_index];
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void* to_return = buffers[*actual_read_index];
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*actual_read_index=index_next(*actual_read_index);
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*actual_read_index=index_next(*actual_read_index);
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pthread_mutex_unlock(&this->mutex);
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return to_return;
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}
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}
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@ -35,6 +35,6 @@ public:
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tsmthread_t* register_thread();
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tsmthread_t* register_thread();
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int remove_thread(tsmthread_t* thread);
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int remove_thread(tsmthread_t* thread);
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void* get_read_buffer(tsmthread_t* thread);
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void* get_read_buffer(tsmthread_t* thread);
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int index_next(int index) { return (index+1==size)?0:index; }
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int index_next(int index) { return (index+1==num)?0:index+1; }
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int index_before(int index) { return (index-1<0)?size-1:index; }
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int index_before(int index) { return (index-1<0)?num-1:index-1; }
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};
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};
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