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https://github.com/MariaDB/server.git
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This patch contains the port of the MDEV-18379 patch for 10.1 branch, but also includes a number of changes made within MDEV-17835, which are necessary for the normal operation of tests that use IPv6: 1) Fixed flaws in the galera_3nodes mtr suite control scripts, because of which they could not work with mariabackup. 2) Fixed numerous bugs in the SST scripts and in the mtr test files (galera_3nodes mtr suite) that prevented the use of Galera with IPv6 addresses. 3) Fixed flaws in tests for rsync and mysqldump (for galera_3nodes mtr tests suite). These tests were not performed successfully without these fixes. 4) Currently, the three-node mtr suite for Galera (galera_3nodes) uses a separate IPv6 availability check using the "have_ipv6.inc" file. This check duplicates a more accurate check at suite.pm level, which can be used by including the file "check_ipv6.inc". This patch removes this discrepancy between suites. 5) GAL-501 test in the galera_3nodes suite does not contain the option "--bind-address=::" which is needed for the test to work correctly with IPv6 (at least on some systems), since without it the server will not wait for connections on the IPv6 interface. https://jira.mariadb.org/browse/MDEV-18379 and partially https://jira.mariadb.org/browse/MDEV-17835
427 lines
9.0 KiB
C++
427 lines
9.0 KiB
C++
/* Copyright (C) 2013-2015 Codership Oy <info@codership.com>
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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 along
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with this program; if not, write to the Free Software Foundation, Inc.,
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51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. */
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#ifndef WSREP_UTILS_H
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#define WSREP_UTILS_H
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#include "wsrep_priv.h"
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#include "wsrep_mysqld.h"
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unsigned int wsrep_check_ip (const char* const addr, bool *is_ipv6);
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size_t wsrep_guess_ip (char* buf, size_t buf_len);
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/* returns the length of the host part of the address string */
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size_t wsrep_host_len(const char* addr, size_t addr_len);
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namespace wsp {
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class Address {
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public:
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Address()
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: m_address_len(0), m_family(UNSPEC), m_port(0), m_valid(false)
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{
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memset(m_address, 0, sizeof(m_address));
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}
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Address(const char *addr_in)
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: m_address_len(0), m_family(UNSPEC), m_port(0), m_valid(false)
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{
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memset(m_address, 0, sizeof(m_address));
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parse_addr(addr_in);
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}
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bool is_valid() { return m_valid; }
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bool is_ipv6() { return (m_family == INET6); }
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const char* get_address() { return m_address; }
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size_t get_address_len() { return m_address_len; }
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int get_port() { return m_port; }
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private:
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enum family {
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UNSPEC= 0,
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INET, /* IPv4 */
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INET6, /* IPv6 */
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};
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char m_address[256];
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size_t m_address_len;
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family m_family;
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int m_port;
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bool m_valid;
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void parse_addr(const char *addr_in) {
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const char *start;
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const char *end;
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const char *port;
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const char* open_bracket= strchr(const_cast<char *>(addr_in), '[');
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const char* close_bracket= strchr(const_cast<char *>(addr_in), ']');
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const char* colon= strchr(const_cast<char *>(addr_in), ':');
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const char* dot= strchr(const_cast<char *>(addr_in), '.');
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int cc= colon_count(addr_in);
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if (open_bracket != NULL ||
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dot == NULL ||
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(colon != NULL && (dot == NULL || colon < dot)))
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{
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// This could be an IPv6 address or a hostname
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if (open_bracket != NULL) {
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/* Sanity check: Address with '[' must include ']' */
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if (close_bracket == NULL &&
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open_bracket < close_bracket) /* Error: malformed address */
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{
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m_valid= false;
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return;
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}
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start= open_bracket + 1;
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end= close_bracket;
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/* Check for port */
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port= strchr(close_bracket, ':');
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if ((port != NULL) && parse_port(port + 1))
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{
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return; /* Error: invalid port */
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}
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m_family= INET6;
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}
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else
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{
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switch (cc) {
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case 0:
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/* Hostname with no port */
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start= addr_in;
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end= addr_in + strlen(addr_in);
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break;
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case 1:
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/* Hostname with port (host:port) */
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start= addr_in;
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end= colon;
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if (parse_port(colon + 1))
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return; /* Error: invalid port */
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break;
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default:
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/* IPv6 address */
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start= addr_in;
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end= addr_in + strlen(addr_in);
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m_family= INET6;
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break;
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}
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}
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} else { /* IPv4 address or hostname */
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start= addr_in;
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if (colon != NULL) { /* Port */
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end= colon;
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if (parse_port(colon + 1))
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return; /* Error: invalid port */
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} else {
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end= addr_in + strlen(addr_in);
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}
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}
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size_t len= end - start;
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/* Safety */
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if (len >= sizeof(m_address))
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{
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// The supplied address is too large to fit into the internal buffer.
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m_valid= false;
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return;
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}
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memcpy(m_address, start, len);
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m_address[len]= '\0';
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m_address_len= ++ len;
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m_valid= true;
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return;
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}
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int colon_count(const char *addr) {
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int count= 0, i= 0;
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while(addr[i] != '\0')
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{
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if (addr[i] == ':') ++count;
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++ i;
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}
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return count;
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}
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bool parse_port(const char *port) {
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errno= 0; /* Reset the errno */
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m_port= strtol(port, NULL, 10);
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if (errno == EINVAL || errno == ERANGE)
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{
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m_port= 0; /* Error: invalid port */
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m_valid= false;
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return true;
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}
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return false;
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}
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};
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class Config_state
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{
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public:
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Config_state() : view_(), status_(WSREP_MEMBER_UNDEFINED)
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{}
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void set(wsrep_member_status_t status, const wsrep_view_info_t* view)
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{
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wsrep_notify_status(status, view);
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lock();
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status_= status;
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view_= *view;
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member_info_.clear();
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wsrep_member_info_t memb;
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for(int i= 0; i < view->memb_num; i ++)
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{
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memb= view->members[i];
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member_info_.append_val(memb);
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}
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unlock();
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}
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void set(wsrep_member_status_t status)
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{
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wsrep_notify_status(status, 0);
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lock();
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status_= status;
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unlock();
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}
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wsrep_view_info_t get_view_info() const
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{
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return view_;
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}
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wsrep_member_status_t get_status() const
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{
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return status_;
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}
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Dynamic_array<wsrep_member_info_t> * get_member_info()
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{
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return &member_info_;
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}
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int lock()
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{
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return mysql_mutex_lock(&LOCK_wsrep_config_state);
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}
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int unlock()
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{
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return mysql_mutex_unlock(&LOCK_wsrep_config_state);
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}
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private:
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wsrep_view_info_t view_;
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wsrep_member_status_t status_;
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Dynamic_array<wsrep_member_info_t> member_info_;
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};
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} /* namespace wsp */
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extern wsp::Config_state wsrep_config_state;
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namespace wsp {
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/* a class to manage env vars array */
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class env
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{
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private:
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size_t len_;
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char** env_;
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int errno_;
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bool ctor_common(char** e);
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void dtor();
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env& operator =(env);
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public:
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explicit env(char** env);
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explicit env(const env&);
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~env();
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int append(const char* var); /* add a new env. var */
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int error() const { return errno_; }
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char** operator()() { return env_; }
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};
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/* A small class to run external programs. */
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class process
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{
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private:
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const char* const str_;
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FILE* io_;
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int err_;
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pid_t pid_;
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public:
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/*! @arg type is a pointer to a null-terminated string which must contain
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either the letter 'r' for reading or the letter 'w' for writing.
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@arg env optional null-terminated vector of environment variables
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*/
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process (const char* cmd, const char* type, char** env);
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~process ();
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FILE* pipe () { return io_; }
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int error() { return err_; }
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int wait ();
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const char* cmd() { return str_; }
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};
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class thd
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{
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class thd_init
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{
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public:
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thd_init() { my_thread_init(); }
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~thd_init() { my_thread_end(); }
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}
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init;
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thd (const thd&);
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thd& operator= (const thd&);
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public:
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thd(my_bool wsrep_on);
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~thd();
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THD* const ptr;
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};
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class string
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{
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public:
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string() : string_(0) {}
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explicit string(size_t s) : string_(static_cast<char*>(malloc(s))) {}
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char* operator()() { return string_; }
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void set(char* str) { if (string_) free (string_); string_ = str; }
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~string() { set (0); }
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private:
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char* string_;
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};
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#ifdef REMOVED
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class lock
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{
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pthread_mutex_t* const mtx_;
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public:
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lock (pthread_mutex_t* mtx) : mtx_(mtx)
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{
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int err = pthread_mutex_lock (mtx_);
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if (err)
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{
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WSREP_ERROR("Mutex lock failed: %s", strerror(err));
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abort();
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}
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}
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virtual ~lock ()
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{
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int err = pthread_mutex_unlock (mtx_);
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if (err)
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{
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WSREP_ERROR("Mutex unlock failed: %s", strerror(err));
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abort();
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}
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}
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inline void wait (pthread_cond_t* cond)
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{
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pthread_cond_wait (cond, mtx_);
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}
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private:
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lock (const lock&);
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lock& operator=(const lock&);
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};
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class monitor
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{
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int mutable refcnt;
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pthread_mutex_t mutable mtx;
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pthread_cond_t mutable cond;
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public:
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monitor() : refcnt(0)
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{
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pthread_mutex_init (&mtx, NULL);
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pthread_cond_init (&cond, NULL);
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}
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~monitor()
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{
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pthread_mutex_destroy (&mtx);
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pthread_cond_destroy (&cond);
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}
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void enter() const
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{
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lock l(&mtx);
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while (refcnt)
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{
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l.wait(&cond);
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}
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refcnt++;
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}
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void leave() const
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{
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lock l(&mtx);
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refcnt--;
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if (refcnt == 0)
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{
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pthread_cond_signal (&cond);
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}
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}
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private:
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monitor (const monitor&);
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monitor& operator= (const monitor&);
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};
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class critical
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{
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const monitor& mon;
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public:
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critical(const monitor& m) : mon(m) { mon.enter(); }
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~critical() { mon.leave(); }
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private:
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critical (const critical&);
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critical& operator= (const critical&);
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};
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#endif
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} // namespace wsrep
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#endif /* WSREP_UTILS_H */
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