Commit bd2117d1 authored by Michael Widenius's avatar Michael Widenius

Automatic merge from 5.5

Fixed 2 failing tests by replacing result files
parents cfa1ce81 5569132f
MYSQL_VERSION_MAJOR=10
MYSQL_VERSION_MINOR=0
MYSQL_VERSION_PATCH=14
MYSQL_VERSION_EXTRA=
/* Copyright (c) 2013, MariaDB foundation Ab and SkySQL
This program is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation; version 2 of the License.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02111-1307 USA
*/
/* instructions for specific cpu's */
/*
Macros for adjusting thread priority (hardware multi-threading)
The defines are the same ones used by the linux kernel
*/
#if defined(__powerpc__)
/* Very low priority */
#define HMT_very_low() asm volatile("or 31,31,31")
/* Low priority */
#define HMT_low() asm volatile("or 1,1,1")
/* Medium low priority */
#define HMT_medium_low() asm volatile("or 6,6,6")
/* Medium priority */
#define HMT_medium() asm volatile("or 2,2,2")
/* Medium high priority */
#define HMT_medium_high() asm volatile("or 5,5,5")
/* High priority */
#define HMT_high() asm volatile("or 3,3,3")
#else
#define HMT_very_low()
#define HMT_low()
#define HMT_medium_low()
#define HMT_medium()
#define HMT_medium_high()
#define HMT_high()
#endif
......@@ -227,7 +227,7 @@ DROP TABLE mysql050614_xxx_croatian_ci;
# Checking mysql_upgrade
#
# Running mysql_upgrade
Phase 1/3: Running 'mysql_fix_privilege_tables'...
Phase 1/4: Checking mysql database
Processing databases
mysql
mysql.column_stats OK
......@@ -258,8 +258,9 @@ mysql.time_zone_name OK
mysql.time_zone_transition OK
mysql.time_zone_transition_type OK
mysql.user OK
Phase 2/3: Fixing table and database names
Phase 3/3: Checking and upgrading tables
Phase 2/4: Running 'mysql_fix_privilege_tables'...
Phase 3/4: Fixing table and database names
Phase 4/4: Checking and upgrading tables
Processing databases
information_schema
mtr
......@@ -281,7 +282,7 @@ test.maria100004_xxx_croatian_ci OK
OK
# Running mysql_upgrade for the second time
# This should report OK for all tables
Phase 1/3: Running 'mysql_fix_privilege_tables'...
Phase 1/4: Checking mysql database
Processing databases
mysql
mysql.column_stats OK
......@@ -312,8 +313,9 @@ mysql.time_zone_name OK
mysql.time_zone_transition OK
mysql.time_zone_transition_type OK
mysql.user OK
Phase 2/3: Fixing table and database names
Phase 3/3: Checking and upgrading tables
Phase 2/4: Running 'mysql_fix_privilege_tables'...
Phase 3/4: Fixing table and database names
Phase 4/4: Checking and upgrading tables
Processing databases
information_schema
mtr
......
......@@ -11,7 +11,7 @@ Table Op Msg_type Msg_text
test.bug49823 repair status OK
RENAME TABLE general_log TO renamed_general_log;
RENAME TABLE test.bug49823 TO general_log;
Phase 1/3: Running 'mysql_fix_privilege_tables'...
Phase 1/4: Checking mysql database
Processing databases
mysql
mysql.column_stats OK
......@@ -43,8 +43,9 @@ mysql.time_zone_name OK
mysql.time_zone_transition OK
mysql.time_zone_transition_type OK
mysql.user OK
Phase 2/3: Fixing table and database names
Phase 3/3: Checking and upgrading tables
Phase 2/4: Running 'mysql_fix_privilege_tables'...
Phase 3/4: Fixing table and database names
Phase 4/4: Checking and upgrading tables
Processing databases
information_schema
mtr
......
File mode changed from 100644 to 100755
......@@ -32,13 +32,6 @@ SET_SOURCE_FILES_PROPERTIES(${GEN_SOURCES} PROPERTIES GENERATED 1)
ADD_DEFINITIONS(-DMYSQL_SERVER -DHAVE_EVENT_SCHEDULER)
IF (CMAKE_SYSTEM_NAME MATCHES "Linux" OR
CMAKE_SYSTEM_NAME MATCHES "Windows" OR
CMAKE_SYSTEM_NAME MATCHES "SunOS" OR
HAVE_KQUEUE)
ADD_DEFINITIONS(-DHAVE_POOL_OF_THREADS)
ENDIF()
IF(SSL_DEFINES)
ADD_DEFINITIONS(${SSL_DEFINES})
ENDIF()
......@@ -105,10 +98,16 @@ SET (SQL_SOURCE
${MYSYS_LIBWRAP_SOURCE}
)
IF(WIN32)
SET(SQL_SOURCE ${SQL_SOURCE} threadpool_win.cc)
ELSE()
SET(SQL_SOURCE ${SQL_SOURCE} threadpool_unix.cc)
IF (CMAKE_SYSTEM_NAME MATCHES "Linux" OR
CMAKE_SYSTEM_NAME MATCHES "Windows" OR
CMAKE_SYSTEM_NAME MATCHES "SunOS" OR
HAVE_KQUEUE)
ADD_DEFINITIONS(-DHAVE_POOL_OF_THREADS)
IF(WIN32)
SET(SQL_SOURCE ${SQL_SOURCE} threadpool_win.cc)
ELSE()
SET(SQL_SOURCE ${SQL_SOURCE} threadpool_unix.cc)
ENDIF()
ENDIF()
MYSQL_ADD_PLUGIN(partition ha_partition.cc STORAGE_ENGINE DEFAULT STATIC_ONLY
......
......@@ -123,6 +123,25 @@ IF(NOT CMAKE_CROSSCOMPILING)
}"
HAVE_IB_GCC_ATOMIC_BUILTINS_64
)
CHECK_C_SOURCE_RUNS(
"#include<stdint.h>
int main()
{
__sync_synchronize();
return(0);
}"
HAVE_IB_GCC_SYNC_SYNCHRONISE
)
CHECK_C_SOURCE_RUNS(
"#include<stdint.h>
int main()
{
__atomic_thread_fence(__ATOMIC_ACQUIRE);
__atomic_thread_fence(__ATOMIC_RELEASE);
return(0);
}"
HAVE_IB_GCC_ATOMIC_THREAD_FENCE
)
ENDIF()
IF(HAVE_IB_GCC_ATOMIC_BUILTINS)
......@@ -133,6 +152,14 @@ IF(HAVE_IB_GCC_ATOMIC_BUILTINS_64)
ADD_DEFINITIONS(-DHAVE_IB_GCC_ATOMIC_BUILTINS_64=1)
ENDIF()
IF(HAVE_IB_GCC_SYNC_SYNCHRONISE)
ADD_DEFINITIONS(-DHAVE_IB_GCC_SYNC_SYNCHRONISE=1)
ENDIF()
IF(HAVE_IB_GCC_ATOMIC_THREAD_FENCE)
ADD_DEFINITIONS(-DHAVE_IB_GCC_ATOMIC_THREAD_FENCE=1)
ENDIF()
# either define HAVE_IB_ATOMIC_PTHREAD_T_GCC or not
IF(NOT CMAKE_CROSSCOMPILING)
CHECK_C_SOURCE_RUNS(
......@@ -214,10 +241,21 @@ IF(CMAKE_SYSTEM_NAME STREQUAL "SunOS")
return(0);
}
" HAVE_IB_ATOMIC_PTHREAD_T_SOLARIS)
CHECK_C_SOURCE_COMPILES(
"#include <mbarrier.h>
int main() {
__machine_r_barrier();
__machine_w_barrier();
return(0);
}"
HAVE_IB_MACHINE_BARRIER_SOLARIS)
ENDIF()
IF(HAVE_IB_ATOMIC_PTHREAD_T_SOLARIS)
ADD_DEFINITIONS(-DHAVE_IB_ATOMIC_PTHREAD_T_SOLARIS=1)
ENDIF()
IF(HAVE_IB_MACHINE_BARRIER_SOLARIS)
ADD_DEFINITIONS(-DHAVE_IB_MACHINE_BARRIER_SOLARIS=1)
ENDIF()
ENDIF()
......@@ -235,6 +273,7 @@ ENDIF()
IF(MSVC)
ADD_DEFINITIONS(-DHAVE_WINDOWS_ATOMICS)
ADD_DEFINITIONS(-DHAVE_WINDOWS_MM_FENCE)
ENDIF()
......
......@@ -147,6 +147,13 @@ lsn_t
log_get_lsn(void);
/*=============*/
/************************************************************//**
Gets the current lsn.
@return current lsn */
UNIV_INLINE
lsn_t
log_get_lsn_nowait(void);
/*=============*/
/************************************************************//**
Gets the last lsn that is fully flushed to disk.
@return last flushed lsn */
UNIV_INLINE
......
......@@ -434,6 +434,26 @@ log_get_flush_lsn(void)
return(lsn);
}
/************************************************************//**
Gets the current lsn with a trylock
@return current lsn or 0 if false*/
UNIV_INLINE
lsn_t
log_get_lsn_nowait(void)
/*=============*/
{
lsn_t lsn;
if (mutex_enter_nowait(&(log_sys->mutex)))
return 0;
lsn = log_sys->lsn;
mutex_exit(&(log_sys->mutex));
return(lsn);
}
/****************************************************************
Gets the log group capacity. It is OK to read the value without
holding log_sys->mutex because it is constant.
......
......@@ -694,6 +694,54 @@ for synchronization */
os_decrement_counter_by_amount(mutex, counter, 1);\
} while (0);
/** barrier definitions for memory ordering */
#ifdef HAVE_IB_GCC_ATOMIC_THREAD_FENCE
# define HAVE_MEMORY_BARRIER
# define os_rmb __atomic_thread_fence(__ATOMIC_ACQUIRE)
# define os_wmb __atomic_thread_fence(__ATOMIC_RELEASE)
#ifdef __powerpc__
# define os_isync __asm __volatile ("isync":::"memory")
#else
#define os_isync do { } while(0)
#endif
# define IB_MEMORY_BARRIER_STARTUP_MSG \
"GCC builtin __atomic_thread_fence() is used for memory barrier"
#elif defined(HAVE_IB_GCC_SYNC_SYNCHRONISE)
# define HAVE_MEMORY_BARRIER
# define os_rmb __sync_synchronize()
# define os_wmb __sync_synchronize()
# define os_isync __sync_synchronize()
# define IB_MEMORY_BARRIER_STARTUP_MSG \
"GCC builtin __sync_synchronize() is used for memory barrier"
#elif defined(HAVE_IB_MACHINE_BARRIER_SOLARIS)
# define HAVE_MEMORY_BARRIER
# include <mbarrier.h>
# define os_rmb __machine_r_barrier()
# define os_wmb __machine_w_barrier()
# define os_isync os_rmb; os_wmb
# define IB_MEMORY_BARRIER_STARTUP_MSG \
"Soralis memory ordering functions are used for memory barrier"
#elif defined(HAVE_WINDOWS_MM_FENCE)
# define HAVE_MEMORY_BARRIER
# include <mmintrin.h>
# define os_rmb _mm_lfence()
# define os_wmb _mm_sfence()
# define os_isync os_rmb; os_wmb
# define IB_MEMORY_BARRIER_STARTUP_MSG \
"_mm_lfence() and _mm_sfence() are used for memory barrier"
#else
# define os_rmb do { } while(0)
# define os_wmb do { } while(0)
# define os_isync do { } while(0)
# define IB_MEMORY_BARRIER_STARTUP_MSG \
"Memory barrier is not used"
#endif
#ifndef UNIV_NONINL
#include "os0sync.ic"
#endif
......
......@@ -199,14 +199,14 @@ rw_lock_lock_word_decr(
ulint amount) /*!< in: amount to decrement */
{
#ifdef INNODB_RW_LOCKS_USE_ATOMICS
lint local_lock_word = lock->lock_word;
while (local_lock_word > 0) {
lint local_lock_word;
os_rmb;
while ((local_lock_word= lock->lock_word) > 0) {
if (os_compare_and_swap_lint(&lock->lock_word,
local_lock_word,
local_lock_word - amount)) {
return(TRUE);
}
local_lock_word = lock->lock_word;
}
return(FALSE);
#else /* INNODB_RW_LOCKS_USE_ATOMICS */
......
......@@ -92,6 +92,7 @@ ib_mutex_test_and_set(
ut_a(mutex->lock_word == 0);
mutex->lock_word = 1;
os_wmb;
}
return((byte) ret);
......@@ -144,6 +145,7 @@ mutex_get_waiters(
ptr = &(mutex->waiters);
os_rmb;
return(*ptr); /* Here we assume that the read of a single
word from memory is atomic */
}
......@@ -178,6 +180,7 @@ mutex_exit_func(
to wake up possible hanging threads if
they are missed in mutex_signal_object. */
os_isync;
if (mutex_get_waiters(mutex) != 0) {
mutex_signal_object(mutex);
......
......@@ -356,7 +356,12 @@ UNIV_INTERN ibool srv_use_posix_fallocate = TRUE;
UNIV_INTERN ulong srv_replication_delay = 0;
/*-------------------------------------------*/
#ifdef HAVE_MEMORY_BARRIER
/* No idea to wait long with memory barriers */
UNIV_INTERN ulong srv_n_spin_wait_rounds = 15;
#else
UNIV_INTERN ulong srv_n_spin_wait_rounds = 30;
#endif
UNIV_INTERN ulong srv_spin_wait_delay = 6;
UNIV_INTERN ibool srv_priority_boost = TRUE;
......@@ -1709,9 +1714,10 @@ loop:
/* Try to track a strange bug reported by Harald Fuchs and others,
where the lsn seems to decrease at times */
new_lsn = log_get_lsn();
/* We have to use nowait to ensure we don't block */
new_lsn= log_get_lsn_nowait();
if (new_lsn < old_lsn) {
if (new_lsn && new_lsn < old_lsn) {
ut_print_timestamp(stderr);
fprintf(stderr,
" InnoDB: Error: old log sequence number " LSN_PF
......@@ -1723,7 +1729,8 @@ loop:
ut_ad(0);
}
old_lsn = new_lsn;
if (new_lsn)
old_lsn = new_lsn;
if (difftime(time(NULL), srv_last_monitor_time) > 60) {
/* We referesh InnoDB Monitor values so that averages are
......
......@@ -758,6 +758,7 @@ sync_arr_cell_can_wake_up(
lock = static_cast<rw_lock_t*>(cell->wait_object);
os_rmb;
if (lock->lock_word > 0) {
/* Either unlocked or only read locked. */
......@@ -769,6 +770,7 @@ sync_arr_cell_can_wake_up(
lock = static_cast<rw_lock_t*>(cell->wait_object);
/* lock_word == 0 means all readers have left */
os_rmb;
if (lock->lock_word == 0) {
return(TRUE);
......@@ -777,6 +779,7 @@ sync_arr_cell_can_wake_up(
lock = static_cast<rw_lock_t*>(cell->wait_object);
/* lock_word > 0 means no writer or reserved writer */
os_rmb;
if (lock->lock_word > 0) {
return(TRUE);
......
......@@ -41,6 +41,7 @@ Created 9/11/1995 Heikki Tuuri
#include "srv0srv.h"
#include "os0sync.h" /* for INNODB_RW_LOCKS_USE_ATOMICS */
#include "ha_prototypes.h"
#include "my_cpu.h"
/*
IMPLEMENTATION OF THE RW_LOCK
......@@ -375,15 +376,19 @@ rw_lock_s_lock_spin(
lock_loop:
/* Spin waiting for the writer field to become free */
os_rmb;
HMT_low();
while (i < SYNC_SPIN_ROUNDS && lock->lock_word <= 0) {
if (srv_spin_wait_delay) {
ut_delay(ut_rnd_interval(0, srv_spin_wait_delay));
}
i++;
os_rmb;
}
if (i == SYNC_SPIN_ROUNDS) {
HMT_medium();
if (lock->lock_word <= 0) {
os_thread_yield();
}
......@@ -472,14 +477,18 @@ rw_lock_x_lock_wait(
ut_ad(lock->lock_word <= 0);
os_rmb;
HMT_low();
while (lock->lock_word < 0) {
if (srv_spin_wait_delay) {
ut_delay(ut_rnd_interval(0, srv_spin_wait_delay));
}
if(i < SYNC_SPIN_ROUNDS) {
i++;
os_rmb;
continue;
}
HMT_medium();
/* If there is still a reader, then go to sleep.*/
rw_lock_stats.rw_x_spin_round_count.add(counter_index, i);
......@@ -516,7 +525,9 @@ rw_lock_x_lock_wait(
} else {
sync_array_free_cell(sync_arr, index);
}
HMT_low();
}
HMT_medium();
rw_lock_stats.rw_x_spin_round_count.add(counter_index, i);
}
......@@ -553,7 +564,8 @@ rw_lock_x_lock_low(
} else {
os_thread_id_t thread_id = os_thread_get_curr_id();
if (!pass)
os_rmb;
/* Decrement failed: relock or failed lock */
if (!pass && lock->recursive
&& os_thread_eq(lock->writer_thread, thread_id)) {
......@@ -632,6 +644,8 @@ lock_loop:
}
/* Spin waiting for the lock_word to become free */
os_rmb;
HMT_low();
while (i < SYNC_SPIN_ROUNDS
&& lock->lock_word <= 0) {
if (srv_spin_wait_delay) {
......@@ -640,7 +654,9 @@ lock_loop:
}
i++;
os_rmb;
}
HMT_medium();
if (i == SYNC_SPIN_ROUNDS) {
os_thread_yield();
} else {
......
......@@ -45,6 +45,7 @@ Created 9/5/1995 Heikki Tuuri
# include "srv0start.h" /* srv_is_being_started */
#endif /* UNIV_SYNC_DEBUG */
#include "ha_prototypes.h"
#include "my_cpu.h"
/*
REASONS FOR IMPLEMENTING THE SPIN LOCK MUTEX
......@@ -456,6 +457,8 @@ mutex_set_waiters(
ptr = &(mutex->waiters);
os_wmb;
*ptr = n; /* Here we assume that the write of a single
word in memory is atomic */
}
......@@ -500,13 +503,15 @@ mutex_loop:
spin_loop:
HMT_low();
while (mutex_get_lock_word(mutex) != 0 && i < SYNC_SPIN_ROUNDS) {
if (srv_spin_wait_delay) {
ut_delay(ut_rnd_interval(0, srv_spin_wait_delay));
}
os_rmb; // Ensure future reads sees new values
i++;
}
HMT_medium();
if (i == SYNC_SPIN_ROUNDS) {
os_thread_yield();
......
# verify that information_schema.tokudb_locks gets populated with locks, information_schema.tokudb_lock_waits gets
if (`select @@tokudb_version <= "7.1.6"`)
if (`select @@tokudb_version <= "7.1.7"`)
{
--skip Race condition in the test in TokuDB 7.1.6 or earlier
--skip Race condition in the test in TokuDB 7.1.7 or earlier
}
# populated with 1 lock_wait and all transactions are present in information_schema.tokudb_trx for 2 clients
......
if (`select @@tokudb_version <= "7.1.6"`)
if (`select @@tokudb_version <= "7.1.7"`)
{
--skip Race condition in the test in TokuDB 7.1.6 or earlier
--skip Race condition in the test in TokuDB 7.1.7 or earlier
}
# verify that information_schema.tokudb_locks gets populated with locks for 2 clients
......
......@@ -129,6 +129,25 @@ IF(NOT CMAKE_CROSSCOMPILING)
}"
HAVE_IB_GCC_ATOMIC_BUILTINS_64
)
CHECK_C_SOURCE_RUNS(
"#include<stdint.h>
int main()
{
__sync_synchronize();
return(0);
}"
HAVE_IB_GCC_SYNC_SYNCHRONISE
)
CHECK_C_SOURCE_RUNS(
"#include<stdint.h>
int main()
{
__atomic_thread_fence(__ATOMIC_ACQUIRE);
__atomic_thread_fence(__ATOMIC_RELEASE);
return(0);
}"
HAVE_IB_GCC_ATOMIC_THREAD_FENCE
)
ENDIF()
IF(HAVE_IB_GCC_ATOMIC_BUILTINS)
......@@ -140,6 +159,14 @@ IF(HAVE_IB_GCC_ATOMIC_BUILTINS_64)
ADD_DEFINITIONS(-DHAVE_IB_GCC_ATOMIC_BUILTINS_64=1)
ENDIF()
IF(HAVE_IB_GCC_SYNC_SYNCHRONISE)
ADD_DEFINITIONS(-DHAVE_IB_GCC_SYNC_SYNCHRONISE=1)
ENDIF()
IF(HAVE_IB_GCC_ATOMIC_THREAD_FENCE)
ADD_DEFINITIONS(-DHAVE_IB_GCC_ATOMIC_THREAD_FENCE=1)
ENDIF()
# either define HAVE_IB_ATOMIC_PTHREAD_T_GCC or not
IF(NOT CMAKE_CROSSCOMPILING)
CHECK_C_SOURCE_RUNS(
......@@ -222,10 +249,21 @@ IF(CMAKE_SYSTEM_NAME STREQUAL "SunOS")
return(0);
}
" HAVE_IB_ATOMIC_PTHREAD_T_SOLARIS)
CHECK_C_SOURCE_COMPILES(
"#include <mbarrier.h>
int main() {
__machine_r_barrier();
__machine_w_barrier();
return(0);
}"
HAVE_IB_MACHINE_BARRIER_SOLARIS)
ENDIF()
IF(HAVE_IB_ATOMIC_PTHREAD_T_SOLARIS)
ADD_DEFINITIONS(-DHAVE_IB_ATOMIC_PTHREAD_T_SOLARIS=1)
ENDIF()
IF(HAVE_IB_MACHINE_BARRIER_SOLARIS)
ADD_DEFINITIONS(-DHAVE_IB_MACHINE_BARRIER_SOLARIS=1)
ENDIF()
ENDIF()
......@@ -243,6 +281,7 @@ ENDIF()
IF(MSVC)
ADD_DEFINITIONS(-DHAVE_WINDOWS_ATOMICS)
ADD_DEFINITIONS(-DHAVE_WINDOWS_MM_FENCE)
SET(XTRADB_OK 1)
# Avoid "unreferenced label" warning in generated file
......
......@@ -168,6 +168,13 @@ lsn_t
log_get_lsn(void);
/*=============*/
/************************************************************//**
Gets the current lsn.
@return current lsn */
UNIV_INLINE
lsn_t
log_get_lsn_nowait(void);
/*=============*/
/************************************************************//**
Gets the last lsn that is fully flushed to disk.
@return last flushed lsn */
UNIV_INLINE
......
......@@ -486,6 +486,26 @@ log_get_flush_lsn(void)
return(lsn);
}
/************************************************************//**
Gets the current lsn with a trylock
@return current lsn or 0 if false*/
UNIV_INLINE
lsn_t
log_get_lsn_nowait(void)
/*=============*/
{
lsn_t lsn;
if (mutex_enter_nowait(&(log_sys->mutex)))
return 0;
lsn = log_sys->lsn;
mutex_exit(&(log_sys->mutex));
return(lsn);
}
/****************************************************************
Gets the log group capacity. It is OK to read the value without
holding log_sys->mutex because it is constant.
......
......@@ -694,6 +694,54 @@ for synchronization */
os_decrement_counter_by_amount(mutex, counter, 1);\
} while (0);
/** barrier definitions for memory ordering */
#ifdef HAVE_IB_GCC_ATOMIC_THREAD_FENCE
# define HAVE_MEMORY_BARRIER
# define os_rmb __atomic_thread_fence(__ATOMIC_ACQUIRE)
# define os_wmb __atomic_thread_fence(__ATOMIC_RELEASE)
#ifdef __powerpc__
# define os_isync __asm __volatile ("isync":::"memory")
#else
#define os_isync do { } while(0)
#endif
# define IB_MEMORY_BARRIER_STARTUP_MSG \
"GCC builtin __atomic_thread_fence() is used for memory barrier"
#elif defined(HAVE_IB_GCC_SYNC_SYNCHRONISE)
# define HAVE_MEMORY_BARRIER
# define os_rmb __sync_synchronize()
# define os_wmb __sync_synchronize()
# define os_isync __sync_synchronize()
# define IB_MEMORY_BARRIER_STARTUP_MSG \
"GCC builtin __sync_synchronize() is used for memory barrier"
#elif defined(HAVE_IB_MACHINE_BARRIER_SOLARIS)
# define HAVE_MEMORY_BARRIER
# include <mbarrier.h>
# define os_rmb __machine_r_barrier()
# define os_wmb __machine_w_barrier()
# define os_isync os_rmb; os_wmb
# define IB_MEMORY_BARRIER_STARTUP_MSG \
"Soralis memory ordering functions are used for memory barrier"
#elif defined(HAVE_WINDOWS_MM_FENCE)
# define HAVE_MEMORY_BARRIER
# include <mmintrin.h>
# define os_rmb _mm_lfence()
# define os_wmb _mm_sfence()
# define os_isync os_rmb; os_wmb
# define IB_MEMORY_BARRIER_STARTUP_MSG \
"_mm_lfence() and _mm_sfence() are used for memory barrier"
#else
# define os_rmb do { } while(0)
# define os_wmb do { } while(0)
# define os_isync do { } while(0)
# define IB_MEMORY_BARRIER_STARTUP_MSG \
"Memory barrier is not used"
#endif
#ifndef UNIV_NONINL
#include "os0sync.ic"
#endif
......
......@@ -256,14 +256,14 @@ rw_lock_lock_word_decr(
ulint amount) /*!< in: amount to decrement */
{
#ifdef INNODB_RW_LOCKS_USE_ATOMICS
lint local_lock_word = lock->lock_word;
while (local_lock_word > 0) {
lint local_lock_word;
os_rmb;
while ((local_lock_word= lock->lock_word) > 0) {
if (os_compare_and_swap_lint(&lock->lock_word,
local_lock_word,
local_lock_word - amount)) {
return(TRUE);
}
local_lock_word = lock->lock_word;
}
return(FALSE);
#else /* INNODB_RW_LOCKS_USE_ATOMICS */
......
......@@ -95,6 +95,7 @@ ib_mutex_test_and_set(
ut_a(mutex->lock_word == 0);
mutex->lock_word = 1;
os_wmb;
}
return((byte) ret);
......@@ -147,6 +148,7 @@ mutex_get_waiters(
ptr = &(mutex->waiters);
os_rmb;
return(*ptr); /* Here we assume that the read of a single
word from memory is atomic */
}
......@@ -181,6 +183,7 @@ mutex_exit_func(
to wake up possible hanging threads if
they are missed in mutex_signal_object. */
os_isync;
if (mutex_get_waiters(mutex) != 0) {
mutex_signal_object(mutex);
......
......@@ -477,7 +477,12 @@ UNIV_INTERN ulong srv_log_checksum_algorithm =
SRV_CHECKSUM_ALGORITHM_INNODB;
/*-------------------------------------------*/
#ifdef HAVE_MEMORY_BARRIER
/* No idea to wait long with memory barriers */
UNIV_INTERN ulong srv_n_spin_wait_rounds = 15;
#else
UNIV_INTERN ulong srv_n_spin_wait_rounds = 30;
#endif
UNIV_INTERN ulong srv_spin_wait_delay = 6;
UNIV_INTERN ibool srv_priority_boost = TRUE;
......@@ -2094,9 +2099,10 @@ loop:
/* Try to track a strange bug reported by Harald Fuchs and others,
where the lsn seems to decrease at times */
new_lsn = log_get_lsn();
/* We have to use nowait to ensure we don't block */
new_lsn= log_get_lsn_nowait();
if (new_lsn < old_lsn) {
if (new_lsn && new_lsn < old_lsn) {
ut_print_timestamp(stderr);
fprintf(stderr,
" InnoDB: Error: old log sequence number " LSN_PF
......@@ -2108,7 +2114,8 @@ loop:
ut_ad(0);
}
old_lsn = new_lsn;
if (new_lsn)
old_lsn = new_lsn;
if (difftime(time(NULL), srv_last_monitor_time) > 60) {
/* We referesh InnoDB Monitor values so that averages are
......
......@@ -849,6 +849,7 @@ sync_arr_cell_can_wake_up(
lock = static_cast<rw_lock_t*>(cell->wait_object);
os_rmb;
if (lock->lock_word > 0) {
/* Either unlocked or only read locked. */
......@@ -860,6 +861,7 @@ sync_arr_cell_can_wake_up(
lock = static_cast<rw_lock_t*>(cell->wait_object);
/* lock_word == 0 means all readers have left */
os_rmb;
if (lock->lock_word == 0) {
return(TRUE);
......@@ -869,6 +871,7 @@ sync_arr_cell_can_wake_up(
lock = static_cast<rw_lock_t*>(cell->wait_object);
/* lock_word > 0 means no writer or reserved writer */
os_rmb;
if (lock->lock_word > 0) {
return(TRUE);
......
......@@ -41,6 +41,7 @@ Created 9/11/1995 Heikki Tuuri
#include "srv0srv.h"
#include "os0sync.h" /* for INNODB_RW_LOCKS_USE_ATOMICS */
#include "ha_prototypes.h"
#include "my_cpu.h"
/*
IMPLEMENTATION OF THE RW_LOCK
......@@ -448,6 +449,8 @@ lock_loop:
lock)) {
/* Spin waiting for the writer field to become free */
os_rmb;
HMT_low();
while (i < SYNC_SPIN_ROUNDS && lock->lock_word <= 0) {
if (srv_spin_wait_delay) {
ut_delay(ut_rnd_interval(0,
......@@ -455,9 +458,11 @@ lock_loop:
}
i++;
os_rmb;
}
if (i == SYNC_SPIN_ROUNDS) {
HMT_medium();
if (lock->lock_word <= 0) {
os_thread_yield();
}
......@@ -605,14 +610,18 @@ rw_lock_x_lock_wait(
ut_ad(lock->lock_word <= 0);
os_rmb;
HMT_low();
while (lock->lock_word < 0) {
if (srv_spin_wait_delay) {
ut_delay(ut_rnd_interval(0, srv_spin_wait_delay));
}
if(i < SYNC_SPIN_ROUNDS) {
i++;
os_rmb;
continue;
}
HMT_medium();
/* If there is still a reader, then go to sleep.*/
rw_lock_stats.rw_x_spin_round_count.add(counter_index, i);
......@@ -660,7 +669,9 @@ rw_lock_x_lock_wait(
prio_rw_lock->high_priority_wait_ex_waiter = 0;
}
}
HMT_low();
}
HMT_medium();
rw_lock_stats.rw_x_spin_round_count.add(counter_index, i);
}
......@@ -701,7 +712,8 @@ rw_lock_x_lock_low(
} else {
os_thread_id_t thread_id = os_thread_get_curr_id();
if (!pass)
os_rmb;
/* Decrement failed: relock or failed lock */
if (!pass && lock->recursive
&& os_thread_eq(lock->writer_thread, thread_id)) {
......@@ -792,6 +804,8 @@ lock_loop:
}
/* Spin waiting for the lock_word to become free */
os_rmb;
HMT_low();
while (i < SYNC_SPIN_ROUNDS
&& lock->lock_word <= 0) {
if (srv_spin_wait_delay) {
......@@ -800,7 +814,9 @@ lock_loop:
}
i++;
os_rmb;
}
HMT_medium();
if (i == SYNC_SPIN_ROUNDS) {
os_thread_yield();
} else {
......
......@@ -46,6 +46,7 @@ Created 9/5/1995 Heikki Tuuri
# include "srv0start.h" /* srv_is_being_started */
#endif /* UNIV_SYNC_DEBUG */
#include "ha_prototypes.h"
#include "my_cpu.h"
/*
REASONS FOR IMPLEMENTING THE SPIN LOCK MUTEX
......@@ -535,6 +536,8 @@ mutex_set_waiters(
ptr = &(mutex->waiters);
os_wmb;
*ptr = n; /* Here we assume that the write of a single
word in memory is atomic */
}
......@@ -587,13 +590,15 @@ mutex_loop:
spin_loop:
HMT_low();
while (mutex_get_lock_word(mutex) != 0 && i < SYNC_SPIN_ROUNDS) {
if (srv_spin_wait_delay) {
ut_delay(ut_rnd_interval(0, srv_spin_wait_delay));
}
os_rmb; // Ensure future reads sees new values
i++;
}
HMT_medium();
if (i == SYNC_SPIN_ROUNDS) {
os_thread_yield();
......
Markdown is supported
0%
or
You are about to add 0 people to the discussion. Proceed with caution.
Finish editing this message first!
Please register or to comment