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9c43343213
Semisync ack (master side) receiver thread is made to report details of faced errors. In case of 'magic byte' error, a hexdump of the received packet is always (level) NOTEd into the error log. In other cases an exact server level error is print out as a warning (as it may not be critical) under log_warnings > 2. An MTR test added for the magic byte error. For others existing mtr tests cover that, provided log_warnings > 2 is set.
303 lines
7.6 KiB
C++
303 lines
7.6 KiB
C++
/* Copyright (c) 2014, Oracle and/or its affiliates. All rights reserved.
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; version 2 of the License.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */
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#include <my_global.h>
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#include "semisync_master.h"
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#include "semisync_master_ack_receiver.h"
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#ifdef HAVE_PSI_MUTEX_INTERFACE
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extern PSI_mutex_key key_LOCK_ack_receiver;
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extern PSI_cond_key key_COND_ack_receiver;
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#endif
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#ifdef HAVE_PSI_THREAD_INTERFACE
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extern PSI_thread_key key_thread_ack_receiver;
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#endif
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extern Repl_semi_sync_master repl_semisync;
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/* Callback function of ack receive thread */
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pthread_handler_t ack_receive_handler(void *arg)
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{
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Ack_receiver *recv= reinterpret_cast<Ack_receiver *>(arg);
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my_thread_init();
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recv->run();
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my_thread_end();
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return NULL;
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}
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Ack_receiver::Ack_receiver()
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{
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DBUG_ENTER("Ack_receiver::Ack_receiver");
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m_status= ST_DOWN;
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mysql_mutex_init(key_LOCK_ack_receiver, &m_mutex, NULL);
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mysql_cond_init(key_COND_ack_receiver, &m_cond, NULL);
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m_pid= 0;
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DBUG_VOID_RETURN;
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}
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void Ack_receiver::cleanup()
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{
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DBUG_ENTER("Ack_receiver::~Ack_receiver");
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stop();
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mysql_mutex_destroy(&m_mutex);
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mysql_cond_destroy(&m_cond);
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DBUG_VOID_RETURN;
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}
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bool Ack_receiver::start()
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{
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DBUG_ENTER("Ack_receiver::start");
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mysql_mutex_lock(&m_mutex);
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if(m_status == ST_DOWN)
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{
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pthread_attr_t attr;
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m_status= ST_UP;
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if (DBUG_EVALUATE_IF("rpl_semisync_simulate_create_thread_failure", 1, 0) ||
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pthread_attr_init(&attr) != 0 ||
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pthread_attr_setdetachstate(&attr, PTHREAD_CREATE_JOINABLE) != 0 ||
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#ifndef _WIN32
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pthread_attr_setscope(&attr, PTHREAD_SCOPE_SYSTEM) != 0 ||
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#endif
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mysql_thread_create(key_thread_ack_receiver, &m_pid,
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&attr, ack_receive_handler, this))
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{
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sql_print_error("Failed to start semi-sync ACK receiver thread, "
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" could not create thread(errno:%d)", errno);
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m_status= ST_DOWN;
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mysql_mutex_unlock(&m_mutex);
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DBUG_RETURN(true);
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}
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(void) pthread_attr_destroy(&attr);
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}
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mysql_mutex_unlock(&m_mutex);
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DBUG_RETURN(false);
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}
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void Ack_receiver::stop()
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{
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DBUG_ENTER("Ack_receiver::stop");
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mysql_mutex_lock(&m_mutex);
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if (m_status == ST_UP)
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{
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m_status= ST_STOPPING;
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mysql_cond_broadcast(&m_cond);
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while (m_status == ST_STOPPING)
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mysql_cond_wait(&m_cond, &m_mutex);
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DBUG_ASSERT(m_status == ST_DOWN);
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m_pid= 0;
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}
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mysql_mutex_unlock(&m_mutex);
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DBUG_VOID_RETURN;
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}
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bool Ack_receiver::add_slave(THD *thd)
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{
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Slave *slave;
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DBUG_ENTER("Ack_receiver::add_slave");
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if (!(slave= new Slave))
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DBUG_RETURN(true);
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slave->thd= thd;
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slave->vio= *thd->net.vio;
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slave->vio.mysql_socket.m_psi= NULL;
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slave->vio.read_timeout= 1;
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mysql_mutex_lock(&m_mutex);
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m_slaves.push_back(slave);
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m_slaves_changed= true;
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mysql_cond_broadcast(&m_cond);
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mysql_mutex_unlock(&m_mutex);
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DBUG_RETURN(false);
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}
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void Ack_receiver::remove_slave(THD *thd)
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{
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I_List_iterator<Slave> it(m_slaves);
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Slave *slave;
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DBUG_ENTER("Ack_receiver::remove_slave");
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mysql_mutex_lock(&m_mutex);
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while ((slave= it++))
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{
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if (slave->thd == thd)
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{
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delete slave;
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m_slaves_changed= true;
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break;
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}
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}
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mysql_mutex_unlock(&m_mutex);
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DBUG_VOID_RETURN;
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}
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inline void Ack_receiver::set_stage_info(const PSI_stage_info &stage)
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{
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MYSQL_SET_STAGE(stage.m_key, __FILE__, __LINE__);
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}
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inline void Ack_receiver::wait_for_slave_connection()
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{
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set_stage_info(stage_waiting_for_semi_sync_slave);
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mysql_cond_wait(&m_cond, &m_mutex);
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}
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/* Auxilary function to initialize a NET object with given net buffer. */
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static void init_net(NET *net, unsigned char *buff, unsigned int buff_len)
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{
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memset(net, 0, sizeof(NET));
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net->max_packet= buff_len;
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net->buff= buff;
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net->buff_end= buff + buff_len;
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net->read_pos= net->buff;
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}
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void Ack_receiver::run()
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{
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THD *thd= new THD(next_thread_id());
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NET net;
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unsigned char net_buff[REPLY_MESSAGE_MAX_LENGTH];
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my_thread_init();
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DBUG_ENTER("Ack_receiver::run");
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#ifdef HAVE_POLL
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Poll_socket_listener listener(m_slaves);
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#else
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Select_socket_listener listener(m_slaves);
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#endif //HAVE_POLL
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sql_print_information("Starting ack receiver thread");
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thd->system_thread= SYSTEM_THREAD_SEMISYNC_MASTER_BACKGROUND;
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thd->thread_stack= (char*) &thd;
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thd->store_globals();
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thd->security_ctx->skip_grants();
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thd->set_command(COM_DAEMON);
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init_net(&net, net_buff, REPLY_MESSAGE_MAX_LENGTH);
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mysql_mutex_lock(&m_mutex);
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m_slaves_changed= true;
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mysql_mutex_unlock(&m_mutex);
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while (1)
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{
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int ret;
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uint slave_count __attribute__((unused))= 0;
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Slave *slave;
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mysql_mutex_lock(&m_mutex);
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if (unlikely(m_status == ST_STOPPING))
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goto end;
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set_stage_info(stage_waiting_for_semi_sync_ack_from_slave);
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if (unlikely(m_slaves_changed))
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{
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if (unlikely(m_slaves.is_empty()))
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{
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wait_for_slave_connection();
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mysql_mutex_unlock(&m_mutex);
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continue;
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}
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if ((slave_count= listener.init_slave_sockets()) == 0)
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goto end;
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m_slaves_changed= false;
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#ifdef HAVE_POLL
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DBUG_PRINT("info", ("fd count %u", slave_count));
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#else
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DBUG_PRINT("info", ("fd count %u, max_fd %d", slave_count,
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(int) listener.get_max_fd()));
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#endif
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}
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ret= listener.listen_on_sockets();
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if (ret <= 0)
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{
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mysql_mutex_unlock(&m_mutex);
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ret= DBUG_EVALUATE_IF("rpl_semisync_simulate_select_error", -1, ret);
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if (ret == -1 && errno != EINTR)
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sql_print_information("Failed to wait on semi-sync sockets, "
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"error: errno=%d", socket_errno);
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/* Sleep 1us, so other threads can catch the m_mutex easily. */
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my_sleep(1);
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continue;
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}
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set_stage_info(stage_reading_semi_sync_ack);
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Slave_ilist_iterator it(m_slaves);
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while ((slave= it++))
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{
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if (listener.is_socket_active(slave))
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{
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ulong len;
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net_clear(&net, 0);
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net.vio= &slave->vio;
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/*
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Set compress flag. This is needed to support
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Slave_compress_protocol flag enabled Slaves
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*/
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net.compress= slave->thd->net.compress;
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len= my_net_read(&net);
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if (likely(len != packet_error))
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repl_semisync_master.report_reply_packet(slave->server_id(),
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net.read_pos, len);
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else
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{
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if (net.last_errno == ER_NET_READ_ERROR)
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{
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listener.clear_socket_info(slave);
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}
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if (net.last_errno > 0 && global_system_variables.log_warnings > 2)
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sql_print_warning("Semisync ack receiver got error %d \"%s\" "
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"from slave server-id %d",
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net.last_errno, ER_DEFAULT(net.last_errno),
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slave->server_id());
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}
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}
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}
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mysql_mutex_unlock(&m_mutex);
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}
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end:
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sql_print_information("Stopping ack receiver thread");
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m_status= ST_DOWN;
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delete thd;
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mysql_cond_broadcast(&m_cond);
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mysql_mutex_unlock(&m_mutex);
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DBUG_VOID_RETURN;
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}
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