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erl_process.h
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/*
* %CopyrightBegin%
*
* Copyright Ericsson AB 1996-2016. All Rights Reserved.
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*
* %CopyrightEnd%
*/
#ifndef __PROCESS_H__
#define __PROCESS_H__
#undef ERTS_INCLUDE_SCHEDULER_INTERNALS
#if (defined(ERL_PROCESS_C__) \
|| defined(ERL_PORT_TASK_C__) \
|| (ERTS_GLB_INLINE_INCL_FUNC_DEF \
&& defined(ERTS_DO_INCL_GLB_INLINE_FUNC_DEF)))
#define ERTS_INCLUDE_SCHEDULER_INTERNALS
#endif
/* #define ERTS_DO_VERIFY_UNUSED_TEMP_ALLOC */
#if !defined(ERTS_DO_VERIFY_UNUSED_TEMP_ALLOC) && defined(DEBUG)
# define ERTS_DO_VERIFY_UNUSED_TEMP_ALLOC
#endif
typedef struct process Process;
#include "sys.h"
#define ERTS_PROCESS_LOCK_ONLY_PROC_LOCK_TYPE__
#include "erl_process_lock.h" /* Only pull out important types... */
#undef ERTS_PROCESS_LOCK_ONLY_PROC_LOCK_TYPE__
#define ERL_PORT_GET_PORT_TYPE_ONLY__
#include "erl_port.h"
#undef ERL_PORT_GET_PORT_TYPE_ONLY__
#include "erl_vm.h"
#include "erl_smp.h"
#include "erl_message.h"
#include "erl_process_dict.h"
#include "erl_node_container_utils.h"
#include "erl_node_tables.h"
#include "erl_monitors.h"
#include "erl_hl_timer.h"
#include "erl_time.h"
#include "erl_atom_table.h"
#include "external.h"
#include "erl_mseg.h"
#include "erl_async.h"
#include "erl_gc.h"
#define ERTS_ONLY_INCLUDE_TRACE_FLAGS
#include "erl_trace.h"
#undef ERTS_ONLY_INCLUDE_TRACE_FLAGS
#ifdef HIPE
#include "hipe_process.h"
#endif
#undef ERL_THR_PROGRESS_TSD_TYPE_ONLY
#define ERL_THR_PROGRESS_TSD_TYPE_ONLY
#include "erl_thr_progress.h"
#undef ERL_THR_PROGRESS_TSD_TYPE_ONLY
struct ErtsNodesMonitor_;
#define ERTS_HAVE_SCHED_UTIL_BALANCING_SUPPORT_OPT 0
#define ERTS_HAVE_SCHED_UTIL_BALANCING_SUPPORT 0
#define ERTS_MAX_NO_OF_SCHEDULERS 1024
#define ERTS_MAX_NO_OF_DIRTY_CPU_SCHEDULERS ERTS_MAX_NO_OF_SCHEDULERS
#define ERTS_MAX_NO_OF_DIRTY_IO_SCHEDULERS ERTS_MAX_NO_OF_SCHEDULERS
#define ERTS_DEFAULT_MAX_PROCESSES (1 << 18)
#define ERTS_HEAP_ALLOC(Type, Size) \
erts_alloc((Type), (Size))
#define ERTS_HEAP_REALLOC(Type, Ptr, OldSize, NewSize) \
erts_realloc((Type), (Ptr), (NewSize))
#define ERTS_HEAP_FREE(Type, Ptr, Size) \
erts_free((Type), (Ptr))
#define INITIAL_MOD 0
#define INITIAL_FUN 1
#define INITIAL_ARI 2
#include "export.h"
struct saved_calls {
int len;
int n;
int cur;
Export *ct[1];
};
extern Export exp_send, exp_receive, exp_timeout;
extern int erts_eager_check_io;
extern int erts_sched_compact_load;
extern int erts_sched_balance_util;
extern Uint erts_no_schedulers;
extern Uint erts_no_total_schedulers;
#ifdef ERTS_DIRTY_SCHEDULERS
extern Uint erts_no_dirty_cpu_schedulers;
extern Uint erts_no_dirty_io_schedulers;
#endif
extern Uint erts_no_run_queues;
extern int erts_sched_thread_suggested_stack_size;
#define ERTS_SCHED_THREAD_MIN_STACK_SIZE 4 /* Kilo words */
#define ERTS_SCHED_THREAD_MAX_STACK_SIZE 8192 /* Kilo words */
#ifdef ERTS_SMP
#include "erl_bits.h"
#endif
/* process priorities */
#define PRIORITY_MAX 0
#define PRIORITY_HIGH 1
#define PRIORITY_NORMAL 2
#define PRIORITY_LOW 3
#define ERTS_NO_PROC_PRIO_LEVELS 4
#define ERTS_NO_PROC_PRIO_QUEUES 3
#define ERTS_PORT_PRIO_LEVEL ERTS_NO_PROC_PRIO_LEVELS
#define ERTS_NO_PRIO_LEVELS (ERTS_NO_PROC_PRIO_LEVELS + 1)
#define ERTS_RUNQ_FLGS_PROCS_QMASK \
((((Uint32) 1) << ERTS_NO_PROC_PRIO_LEVELS) - 1)
#define ERTS_RUNQ_FLGS_QMASK \
((((Uint32) 1) << ERTS_NO_PRIO_LEVELS) - 1)
#define ERTS_RUNQ_FLGS_EMIGRATE_SHFT \
ERTS_NO_PRIO_LEVELS
#define ERTS_RUNQ_FLGS_IMMIGRATE_SHFT \
(ERTS_RUNQ_FLGS_EMIGRATE_SHFT + ERTS_NO_PRIO_LEVELS)
#define ERTS_RUNQ_FLGS_EVACUATE_SHFT \
(ERTS_RUNQ_FLGS_IMMIGRATE_SHFT + ERTS_NO_PRIO_LEVELS)
#define ERTS_RUNQ_FLGS_EMIGRATE_QMASK \
(ERTS_RUNQ_FLGS_QMASK << ERTS_RUNQ_FLGS_EMIGRATE_SHFT)
#define ERTS_RUNQ_FLGS_IMMIGRATE_QMASK \
(ERTS_RUNQ_FLGS_QMASK << ERTS_RUNQ_FLGS_IMMIGRATE_SHFT)
#define ERTS_RUNQ_FLGS_EVACUATE_QMASK \
(ERTS_RUNQ_FLGS_QMASK << ERTS_RUNQ_FLGS_EVACUATE_SHFT)
#define ERTS_RUNQ_FLG_BASE2 \
(ERTS_RUNQ_FLGS_EVACUATE_SHFT + ERTS_NO_PRIO_LEVELS)
#define ERTS_RUNQ_FLG_OUT_OF_WORK \
(((Uint32) 1) << (ERTS_RUNQ_FLG_BASE2 + 0))
#define ERTS_RUNQ_FLG_HALFTIME_OUT_OF_WORK \
(((Uint32) 1) << (ERTS_RUNQ_FLG_BASE2 + 1))
#define ERTS_RUNQ_FLG_SUSPENDED \
(((Uint32) 1) << (ERTS_RUNQ_FLG_BASE2 + 2))
#define ERTS_RUNQ_FLG_CHK_CPU_BIND \
(((Uint32) 1) << (ERTS_RUNQ_FLG_BASE2 + 3))
#define ERTS_RUNQ_FLG_INACTIVE \
(((Uint32) 1) << (ERTS_RUNQ_FLG_BASE2 + 4))
#define ERTS_RUNQ_FLG_NONEMPTY \
(((Uint32) 1) << (ERTS_RUNQ_FLG_BASE2 + 5))
#define ERTS_RUNQ_FLG_PROTECTED \
(((Uint32) 1) << (ERTS_RUNQ_FLG_BASE2 + 6))
#define ERTS_RUNQ_FLG_EXEC \
(((Uint32) 1) << (ERTS_RUNQ_FLG_BASE2 + 7))
#define ERTS_RUNQ_FLG_MAX (ERTS_RUNQ_FLG_BASE2 + 8)
#define ERTS_RUNQ_FLGS_MIGRATION_QMASKS \
(ERTS_RUNQ_FLGS_EMIGRATE_QMASK \
| ERTS_RUNQ_FLGS_IMMIGRATE_QMASK \
| ERTS_RUNQ_FLGS_EVACUATE_QMASK)
#define ERTS_RUNQ_FLGS_MIGRATION_INFO \
(ERTS_RUNQ_FLG_INACTIVE \
| ERTS_RUNQ_FLG_OUT_OF_WORK \
| ERTS_RUNQ_FLG_HALFTIME_OUT_OF_WORK)
#define ERTS_RUNQ_FLG_EMIGRATE(PRIO) \
(((Uint32) 1) << (ERTS_RUNQ_FLGS_EMIGRATE_SHFT + (PRIO)))
#define ERTS_CHK_RUNQ_FLG_EMIGRATE(FLGS, PRIO) \
((FLGS) & ERTS_RUNQ_FLG_EMIGRATE((PRIO)))
#define ERTS_SET_RUNQ_FLG_EMIGRATE(FLGS, PRIO) \
((FLGS) |= ERTS_RUNQ_FLG_EMIGRATE((PRIO)))
#define ERTS_UNSET_RUNQ_FLG_EMIGRATE(FLGS, PRIO) \
((FLGS) &= ~ERTS_RUNQ_FLG_EMIGRATE((PRIO)))
#define ERTS_RUNQ_FLG_IMMIGRATE(PRIO) \
(((Uint32) 1) << (ERTS_RUNQ_FLGS_IMMIGRATE_SHFT + (PRIO)))
#define ERTS_CHK_RUNQ_FLG_IMMIGRATE(FLGS, PRIO) \
((FLGS) & ERTS_RUNQ_FLG_IMMIGRATE((PRIO)))
#define ERTS_SET_RUNQ_FLG_IMMIGRATE(FLGS, PRIO) \
((FLGS) |= ERTS_RUNQ_FLG_IMMIGRATE((PRIO)))
#define ERTS_UNSET_RUNQ_FLG_IMMIGRATE(FLGS, PRIO) \
((FLGS) &= ~ERTS_RUNQ_FLG_IMMIGRATE((PRIO)))
#define ERTS_RUNQ_FLG_EVACUATE(PRIO) \
(((Uint32) 1) << (ERTS_RUNQ_FLGS_EVACUATE_SHFT + (PRIO)))
#define ERTS_CHK_RUNQ_FLG_EVACUATE(FLGS, PRIO) \
((FLGS) & ERTS_RUNQ_FLG_EVACUATE((PRIO)))
#define ERTS_SET_RUNQ_FLG_EVACUATE(FLGS, PRIO) \
((FLGS) |= ERTS_RUNQ_FLG_EVACUATE((PRIO)))
#define ERTS_UNSET_RUNQ_FLG_EVACUATE(FLGS, PRIO) \
((FLGS) &= ~ERTS_RUNQ_FLG_EVACUATE((PRIO)))
#define ERTS_RUNQ_FLGS_INIT(RQ, INIT) \
erts_smp_atomic32_init_nob(&(RQ)->flags, (erts_aint32_t) (INIT))
#define ERTS_RUNQ_FLGS_SET(RQ, FLGS) \
((Uint32) erts_smp_atomic32_read_bor_relb(&(RQ)->flags, \
(erts_aint32_t) (FLGS)))
#define ERTS_RUNQ_FLGS_SET_NOB(RQ, FLGS) \
((Uint32) erts_smp_atomic32_read_bor_nob(&(RQ)->flags, \
(erts_aint32_t) (FLGS)))
#define ERTS_RUNQ_FLGS_BSET(RQ, MSK, FLGS) \
((Uint32) erts_smp_atomic32_read_bset_relb(&(RQ)->flags, \
(erts_aint32_t) (MSK), \
(erts_aint32_t) (FLGS)))
#define ERTS_RUNQ_FLGS_UNSET(RQ, FLGS) \
((Uint32) erts_smp_atomic32_read_band_relb(&(RQ)->flags, \
(erts_aint32_t) ~(FLGS)))
#define ERTS_RUNQ_FLGS_UNSET_NOB(RQ, FLGS) \
((Uint32) erts_smp_atomic32_read_band_nob(&(RQ)->flags, \
(erts_aint32_t) ~(FLGS)))
#define ERTS_RUNQ_FLGS_GET(RQ) \
((Uint32) erts_smp_atomic32_read_acqb(&(RQ)->flags))
#define ERTS_RUNQ_FLGS_GET_NOB(RQ) \
((Uint32) erts_smp_atomic32_read_nob(&(RQ)->flags))
#define ERTS_RUNQ_FLGS_GET_MB(RQ) \
((Uint32) erts_smp_atomic32_read_mb(&(RQ)->flags))
#define ERTS_RUNQ_FLGS_READ_BSET(RQ, MSK, FLGS) \
((Uint32) erts_smp_atomic32_read_bset_relb(&(RQ)->flags, \
(erts_aint32_t) (MSK), \
(erts_aint32_t) (FLGS)))
typedef enum {
ERTS_SCHDLR_SSPND_DONE_MSCHED_BLOCKED,
ERTS_SCHDLR_SSPND_DONE_NMSCHED_BLOCKED,
ERTS_SCHDLR_SSPND_YIELD_DONE_MSCHED_BLOCKED,
ERTS_SCHDLR_SSPND_YIELD_DONE_NMSCHED_BLOCKED,
ERTS_SCHDLR_SSPND_DONE,
ERTS_SCHDLR_SSPND_YIELD_RESTART,
ERTS_SCHDLR_SSPND_YIELD_DONE,
ERTS_SCHDLR_SSPND_EINVAL
} ErtsSchedSuspendResult;
typedef enum {
ERTS_MIGRATE_SUCCESS,
ERTS_MIGRATE_FAILED_NOT_IN_RUNQ,
ERTS_MIGRATE_FAILED_RUNQ_CHANGED,
ERTS_MIGRATE_FAILED_RUNQ_SUSPENDED
} ErtsMigrateResult;
#define ERTS_SSI_FLG_SLEEPING (((erts_aint32_t) 1) << 0)
#define ERTS_SSI_FLG_POLL_SLEEPING (((erts_aint32_t) 1) << 1)
#define ERTS_SSI_FLG_TSE_SLEEPING (((erts_aint32_t) 1) << 2)
#define ERTS_SSI_FLG_WAITING (((erts_aint32_t) 1) << 3)
#define ERTS_SSI_FLG_SUSPENDED (((erts_aint32_t) 1) << 4)
#define ERTS_SSI_FLGS_MAX 5
#define ERTS_SSI_FLGS_SLEEP_TYPE \
(ERTS_SSI_FLG_TSE_SLEEPING|ERTS_SSI_FLG_POLL_SLEEPING)
#define ERTS_SSI_FLGS_SLEEP \
(ERTS_SSI_FLG_SLEEPING|ERTS_SSI_FLGS_SLEEP_TYPE)
#define ERTS_SSI_FLGS_ALL \
(ERTS_SSI_FLGS_SLEEP \
| ERTS_SSI_FLG_WAITING \
| ERTS_SSI_FLG_SUSPENDED)
/*
* Keep ERTS_SSI_AUX_WORK flags ordered in expected frequency
* order relative eachother. Most frequent at lowest at lowest
* index.
*
* ERTS_SSI_AUX_WORK_DEBUG_WAIT_COMPLETED_IX *need* to be
* highest index...
*
* Remember to update description in erts_pre_init_process()
* when adding new flags...
*/
typedef enum {
ERTS_SSI_AUX_WORK_DELAYED_AW_WAKEUP_IX,
ERTS_SSI_AUX_WORK_DD_IX,
ERTS_SSI_AUX_WORK_DD_THR_PRGR_IX,
ERTS_SSI_AUX_WORK_FIX_ALLOC_DEALLOC_IX,
ERTS_SSI_AUX_WORK_FIX_ALLOC_LOWER_LIM_IX,
ERTS_SSI_AUX_WORK_THR_PRGR_LATER_OP_IX,
ERTS_SSI_AUX_WORK_CNCLD_TMRS_IX,
ERTS_SSI_AUX_WORK_CNCLD_TMRS_THR_PRGR_IX,
ERTS_SSI_AUX_WORK_ASYNC_READY_IX,
ERTS_SSI_AUX_WORK_ASYNC_READY_CLEAN_IX,
ERTS_SSI_AUX_WORK_MISC_THR_PRGR_IX,
ERTS_SSI_AUX_WORK_MISC_IX,
ERTS_SSI_AUX_WORK_PENDING_EXITERS_IX,
ERTS_SSI_AUX_WORK_SET_TMO_IX,
ERTS_SSI_AUX_WORK_MSEG_CACHE_CHECK_IX,
ERTS_SSI_AUX_WORK_REAP_PORTS_IX,
ERTS_SSI_AUX_WORK_DEBUG_WAIT_COMPLETED_IX, /* SHOULD be last flag index */
ERTS_SSI_AUX_WORK_NO_FLAGS /* Not a flag index... */
} ErtsSsiAuxWorkFlagIndex;
#define ERTS_SSI_AUX_WORK_DELAYED_AW_WAKEUP \
(((erts_aint32_t) 1) << ERTS_SSI_AUX_WORK_DELAYED_AW_WAKEUP_IX)
#define ERTS_SSI_AUX_WORK_DD \
(((erts_aint32_t) 1) << ERTS_SSI_AUX_WORK_DD_IX)
#define ERTS_SSI_AUX_WORK_DD_THR_PRGR \
(((erts_aint32_t) 1) << ERTS_SSI_AUX_WORK_DD_THR_PRGR_IX)
#define ERTS_SSI_AUX_WORK_FIX_ALLOC_DEALLOC \
(((erts_aint32_t) 1) << ERTS_SSI_AUX_WORK_FIX_ALLOC_DEALLOC_IX)
#define ERTS_SSI_AUX_WORK_FIX_ALLOC_LOWER_LIM \
(((erts_aint32_t) 1) << ERTS_SSI_AUX_WORK_FIX_ALLOC_LOWER_LIM_IX)
#define ERTS_SSI_AUX_WORK_THR_PRGR_LATER_OP \
(((erts_aint32_t) 1) << ERTS_SSI_AUX_WORK_THR_PRGR_LATER_OP_IX)
#define ERTS_SSI_AUX_WORK_CNCLD_TMRS \
(((erts_aint32_t) 1) << ERTS_SSI_AUX_WORK_CNCLD_TMRS_IX)
#define ERTS_SSI_AUX_WORK_CNCLD_TMRS_THR_PRGR \
(((erts_aint32_t) 1) << ERTS_SSI_AUX_WORK_CNCLD_TMRS_THR_PRGR_IX)
#define ERTS_SSI_AUX_WORK_ASYNC_READY \
(((erts_aint32_t) 1) << ERTS_SSI_AUX_WORK_ASYNC_READY_IX)
#define ERTS_SSI_AUX_WORK_ASYNC_READY_CLEAN \
(((erts_aint32_t) 1) << ERTS_SSI_AUX_WORK_ASYNC_READY_CLEAN_IX)
#define ERTS_SSI_AUX_WORK_MISC_THR_PRGR \
(((erts_aint32_t) 1) << ERTS_SSI_AUX_WORK_MISC_THR_PRGR_IX)
#define ERTS_SSI_AUX_WORK_MISC \
(((erts_aint32_t) 1) << ERTS_SSI_AUX_WORK_MISC_IX)
#define ERTS_SSI_AUX_WORK_PENDING_EXITERS \
(((erts_aint32_t) 1) << ERTS_SSI_AUX_WORK_PENDING_EXITERS_IX)
#define ERTS_SSI_AUX_WORK_SET_TMO \
(((erts_aint32_t) 1) << ERTS_SSI_AUX_WORK_SET_TMO_IX)
#define ERTS_SSI_AUX_WORK_MSEG_CACHE_CHECK \
(((erts_aint32_t) 1) << ERTS_SSI_AUX_WORK_MSEG_CACHE_CHECK_IX)
#define ERTS_SSI_AUX_WORK_REAP_PORTS \
(((erts_aint32_t) 1) << ERTS_SSI_AUX_WORK_REAP_PORTS_IX)
#define ERTS_SSI_AUX_WORK_DEBUG_WAIT_COMPLETED \
(((erts_aint32_t) 1) << ERTS_SSI_AUX_WORK_DEBUG_WAIT_COMPLETED_IX)
typedef struct ErtsSchedulerSleepInfo_ ErtsSchedulerSleepInfo;
#ifdef ERTS_DIRTY_SCHEDULERS
typedef struct {
erts_smp_spinlock_t lock;
ErtsSchedulerSleepInfo *list;
} ErtsSchedulerSleepList;
#endif
struct ErtsSchedulerSleepInfo_ {
#ifdef ERTS_SMP
ErtsSchedulerSleepInfo *next;
ErtsSchedulerSleepInfo *prev;
erts_smp_atomic32_t flags;
erts_tse_t *event;
#endif
erts_atomic32_t aux_work;
};
/* times to reschedule low prio process before running */
#define RESCHEDULE_LOW 8
#define ERTS_MAX_MISC_OPS 5
#define ERTS_FULL_REDS_HISTORY_AVG_SHFT 3
#define ERTS_FULL_REDS_HISTORY_SIZE \
((1 << ERTS_FULL_REDS_HISTORY_AVG_SHFT) - 1)
typedef struct ErtsProcList_ ErtsProcList;
struct ErtsProcList_ {
Eterm pid;
Uint64 started_interval;
ErtsProcList* next;
ErtsProcList* prev;
};
typedef struct ErtsMiscOpList_ ErtsMiscOpList;
struct ErtsMiscOpList_ {
ErtsMiscOpList *next;
void (*func)(void *arg);
void *arg;
};
typedef struct {
Process* first;
Process* last;
} ErtsRunPrioQueue;
typedef struct ErtsSchedulerData_ ErtsSchedulerData;
typedef struct ErtsRunQueue_ ErtsRunQueue;
typedef struct {
erts_smp_atomic32_t len;
erts_aint32_t max_len;
int reds;
} ErtsRunQueueInfo;
#ifdef ERTS_HAVE_OS_MONOTONIC_TIME_SUPPORT
# undef ERTS_HAVE_SCHED_UTIL_BALANCING_SUPPORT_OPT
# define ERTS_HAVE_SCHED_UTIL_BALANCING_SUPPORT_OPT 1
#endif
#ifdef ERTS_SMP
#undef ERTS_HAVE_SCHED_UTIL_BALANCING_SUPPORT
#define ERTS_HAVE_SCHED_UTIL_BALANCING_SUPPORT ERTS_HAVE_SCHED_UTIL_BALANCING_SUPPORT_OPT
typedef erts_atomic64_t ErtsAtomicSchedTime;
#if ERTS_HAVE_SCHED_UTIL_BALANCING_SUPPORT
typedef struct {
ErtsAtomicSchedTime last;
struct {
Uint64 short_interval;
Uint64 long_interval;
} worktime;
int is_working;
} ErtsRunQueueSchedUtil;
#endif
typedef struct {
#if ERTS_HAVE_SCHED_UTIL_BALANCING_SUPPORT
int sched_util;
#endif
Uint32 flags;
ErtsRunQueue *misc_evac_runq;
struct {
struct {
int this;
int other;
} limit;
ErtsRunQueue *runq;
Uint32 flags;
} prio[ERTS_NO_PRIO_LEVELS];
} ErtsMigrationPath;
typedef struct ErtsMigrationPaths_ ErtsMigrationPaths;
struct ErtsMigrationPaths_ {
void *block;
ErtsMigrationPaths *next;
ErtsThrPrgrVal thr_prgr;
ErtsMigrationPath mpath[1];
};
#endif /* ERTS_SMP */
struct ErtsRunQueue_ {
int ix;
erts_smp_mtx_t mtx;
erts_smp_cnd_t cnd;
#ifdef ERTS_DIRTY_SCHEDULERS
#ifdef ERTS_SMP
ErtsSchedulerSleepList sleepers;
#endif
#endif
ErtsSchedulerData *scheduler;
int waiting; /* < 0 in sys schedule; > 0 on cnd variable */
int woken;
erts_smp_atomic32_t flags;
int check_balance_reds;
int full_reds_history_sum;
int full_reds_history[ERTS_FULL_REDS_HISTORY_SIZE];
int out_of_work_count;
erts_aint32_t max_len;
erts_smp_atomic32_t len;
int wakeup_other;
int wakeup_other_reds;
int halt_in_progress;
struct {
ErtsProcList *pending_exiters;
Uint context_switches;
Uint reductions;
ErtsRunQueueInfo prio_info[ERTS_NO_PROC_PRIO_LEVELS];
/* We use the same prio queue for low and
normal prio processes */
ErtsRunPrioQueue prio[ERTS_NO_PROC_PRIO_LEVELS-1];
} procs;
struct {
ErtsMiscOpList *start;
ErtsMiscOpList *end;
erts_smp_atomic_t evac_runq;
} misc;
struct {
ErtsRunQueueInfo info;
Port *start;
Port *end;
} ports;
#if ERTS_HAVE_SCHED_UTIL_BALANCING_SUPPORT
ErtsRunQueueSchedUtil sched_util;
#endif
};
#ifdef ERTS_SMP
extern long erts_runq_supervision_interval;
#endif
typedef union {
ErtsRunQueue runq;
char align[ERTS_ALC_CACHE_LINE_ALIGN_SIZE(sizeof(ErtsRunQueue))];
} ErtsAlignedRunQueue;
extern ErtsAlignedRunQueue *erts_aligned_run_queues;
#define ERTS_PROC_REDUCTIONS_EXECUTED(SD, RQ, PRIO, REDS, AREDS)\
do { \
(RQ)->procs.reductions += (AREDS); \
(RQ)->procs.prio_info[(PRIO)].reds += (REDS); \
(RQ)->check_balance_reds -= (REDS); \
(RQ)->wakeup_other_reds += (AREDS); \
(SD)->check_time_reds += (AREDS); \
} while (0)
#define ERTS_PORT_REDUCTIONS_EXECUTED(SD, RQ, REDS) \
do { \
(RQ)->ports.info.reds += (REDS); \
(RQ)->check_balance_reds -= (REDS); \
(RQ)->wakeup_other_reds += (REDS); \
(SD)->check_time_reds += (REDS); \
} while (0)
typedef struct {
int need; /* "+sbu true" or scheduler_wall_time enabled */
int enabled;
Uint64 start;
struct {
Uint64 total;
Uint64 start;
int currently;
} working;
} ErtsSchedWallTime;
typedef struct {
int sched;
erts_aint32_t aux_work;
} ErtsDelayedAuxWorkWakeupJob;
typedef struct {
int sched_id;
ErtsSchedulerData *esdp;
ErtsSchedulerSleepInfo *ssi;
#ifdef ERTS_SMP
ErtsThrPrgrVal current_thr_prgr;
ErtsThrPrgrVal latest_wakeup;
#endif
struct {
int ix;
#ifdef ERTS_SMP
ErtsThrPrgrVal thr_prgr;
#endif
} misc;
#ifdef ERTS_SMP
struct {
ErtsThrPrgrVal thr_prgr;
} dd;
struct {
ErtsThrPrgrVal thr_prgr;
} cncld_tmrs;
struct {
ErtsThrPrgrVal thr_prgr;
UWord size;
ErtsThrPrgrLaterOp *first;
ErtsThrPrgrLaterOp *last;
} later_op;
#endif
#ifdef ERTS_USE_ASYNC_READY_Q
struct {
#ifdef ERTS_SMP
int need_thr_prgr;
ErtsThrPrgrVal thr_prgr;
#endif
void *queue;
} async_ready;
#endif
#ifdef ERTS_SMP
struct {
Uint64 next;
int *sched2jix;
int jix;
ErtsDelayedAuxWorkWakeupJob *job;
} delayed_wakeup;
#endif
struct {
struct {
erts_aint32_t flags;
void (*callback)(void *);
void *arg;
} wait_completed;
} debug;
} ErtsAuxWorkData;
#ifdef ERTS_DIRTY_SCHEDULERS
typedef enum {
ERTS_DIRTY_CPU_SCHEDULER,
ERTS_DIRTY_IO_SCHEDULER
} ErtsDirtySchedulerType;
typedef union {
struct {
ErtsDirtySchedulerType type: 1;
Uint num: sizeof(Uint)*8 - 1;
} s;
Uint no;
} ErtsDirtySchedId;
#endif
struct ErtsSchedulerData_ {
/*
* Keep X registers first (so we get as many low
* numbered registers as possible in the same cache
* line).
*/
Eterm* x_reg_array; /* X registers */
FloatDef* f_reg_array; /* Floating point registers. */
ErtsTimerWheel *timer_wheel;
ErtsNextTimeoutRef next_tmo_ref;
ErtsHLTimerService *timer_service;
#ifdef ERTS_SMP
ethr_tid tid; /* Thread id */
struct erl_bits_state erl_bits_state; /* erl_bits.c state */
void *match_pseudo_process; /* erl_db_util.c:db_prog_match() */
Process *free_process;
ErtsThrPrgrData thr_progress_data;
#endif
ErtsSchedulerSleepInfo *ssi;
Process *current_process;
Uint no; /* Scheduler number for normal schedulers */
#ifdef ERTS_DIRTY_SCHEDULERS
ErtsDirtySchedId dirty_no; /* Scheduler number for dirty schedulers */
Process *dirty_shadow_process;
#endif
Port *current_port;
ErtsRunQueue *run_queue;
int virtual_reds;
int cpu_id; /* >= 0 when bound */
ErtsAuxWorkData aux_work_data;
ErtsAtomCacheMap atom_cache_map;
ErtsMonotonicTime last_monotonic_time;
int check_time_reds;
Uint32 thr_id;
Uint64 unique;
Uint64 ref;
ErtsSchedAllocData alloc_data;
struct {
Uint64 out;
Uint64 in;
} io;
Uint64 reductions;
ErtsSchedWallTime sched_wall_time;
ErtsGCInfo gc_info;
ErtsPortTaskHandle nosuspend_port_task_handle;
#ifdef ERTS_DO_VERIFY_UNUSED_TEMP_ALLOC
erts_alloc_verify_func_t verify_unused_temp_alloc;
Allctr_t *verify_unused_temp_alloc_data;
#endif
};
typedef union {
ErtsSchedulerData esd;
char align[ERTS_ALC_CACHE_LINE_ALIGN_SIZE(sizeof(ErtsSchedulerData))];
} ErtsAlignedSchedulerData;
extern ErtsAlignedSchedulerData *erts_aligned_scheduler_data;
#ifdef ERTS_DIRTY_SCHEDULERS
extern ErtsAlignedSchedulerData *erts_aligned_dirty_cpu_scheduler_data;
extern ErtsAlignedSchedulerData *erts_aligned_dirty_io_scheduler_data;
#endif
#ifndef ERTS_SMP
extern ErtsSchedulerData *erts_scheduler_data;
#endif
#if defined(ERTS_SMP) && defined(ERTS_ENABLE_LOCK_CHECK)
int erts_smp_lc_runq_is_locked(ErtsRunQueue *);
#endif
#ifdef ERTS_INCLUDE_SCHEDULER_INTERNALS
#ifdef ERTS_SMP
void erts_empty_runq(ErtsRunQueue *rq);
void erts_non_empty_runq(ErtsRunQueue *rq);
#endif
/*
* Run queue locked during modifications. We use atomic ops since
* other threads peek at values without run queue lock.
*/
ERTS_GLB_INLINE void erts_smp_inc_runq_len(ErtsRunQueue *rq, ErtsRunQueueInfo *rqi, int prio);
ERTS_GLB_INLINE void erts_smp_dec_runq_len(ErtsRunQueue *rq, ErtsRunQueueInfo *rqi, int prio);
ERTS_GLB_INLINE void erts_smp_reset_max_len(ErtsRunQueue *rq, ErtsRunQueueInfo *rqi);
#if ERTS_GLB_INLINE_INCL_FUNC_DEF
ERTS_GLB_INLINE void
erts_smp_inc_runq_len(ErtsRunQueue *rq, ErtsRunQueueInfo *rqi, int prio)
{
erts_aint32_t len;
ERTS_SMP_LC_ASSERT(erts_smp_lc_runq_is_locked(rq));
len = erts_smp_atomic32_read_dirty(&rq->len);
#ifdef ERTS_SMP
if (len == 0)
erts_non_empty_runq(rq);
#endif
len++;
if (rq->max_len < len)
rq->max_len = len;
ASSERT(len > 0);
erts_smp_atomic32_set_nob(&rq->len, len);
len = erts_smp_atomic32_read_dirty(&rqi->len);
ASSERT(len >= 0);
if (len == 0) {
ASSERT((erts_smp_atomic32_read_nob(&rq->flags)
& ((erts_aint32_t) (1 << prio))) == 0);
erts_smp_atomic32_read_bor_nob(&rq->flags,
(erts_aint32_t) (1 << prio));
}
len++;
if (rqi->max_len < len)
rqi->max_len = len;
erts_smp_atomic32_set_relb(&rqi->len, len);
}
ERTS_GLB_INLINE void
erts_smp_dec_runq_len(ErtsRunQueue *rq, ErtsRunQueueInfo *rqi, int prio)
{
erts_aint32_t len;
ERTS_SMP_LC_ASSERT(erts_smp_lc_runq_is_locked(rq));
len = erts_smp_atomic32_read_dirty(&rq->len);
len--;
ASSERT(len >= 0);
erts_smp_atomic32_set_nob(&rq->len, len);
len = erts_smp_atomic32_read_dirty(&rqi->len);
len--;
ASSERT(len >= 0);
if (len == 0) {
ASSERT((erts_smp_atomic32_read_nob(&rq->flags)
& ((erts_aint32_t) (1 << prio))));
erts_smp_atomic32_read_band_nob(&rq->flags,
~((erts_aint32_t) (1 << prio)));
}
erts_smp_atomic32_set_relb(&rqi->len, len);
}
ERTS_GLB_INLINE void
erts_smp_reset_max_len(ErtsRunQueue *rq, ErtsRunQueueInfo *rqi)
{
erts_aint32_t len;
ERTS_SMP_LC_ASSERT(erts_smp_lc_runq_is_locked(rq));
len = erts_smp_atomic32_read_dirty(&rqi->len);
ASSERT(rqi->max_len >= len);
rqi->max_len = len;
}
#endif /* ERTS_GLB_INLINE_INCL_FUNC_DEF */
#define RUNQ_READ_LEN(X) erts_smp_atomic32_read_nob((X))
#endif /* ERTS_INCLUDE_SCHEDULER_INTERNALS */
/*
* Process Specific Data.
*
* NOTE: Only use PSD for very rarely used data.
*/
#define ERTS_PSD_ERROR_HANDLER 0
#define ERTS_PSD_SAVED_CALLS_BUF 1
#define ERTS_PSD_SCHED_ID 2
#define ERTS_PSD_CALL_TIME_BP 3
#define ERTS_PSD_DELAYED_GC_TASK_QS 4
#define ERTS_PSD_NIF_TRAP_EXPORT 5
#define ERTS_PSD_SUSPENDED_SAVED_CALLS_BUF 6
#define ERTS_PSD_SIZE 7
#if !defined(HIPE)
# undef ERTS_PSD_SUSPENDED_SAVED_CALLS_BUF
# undef ERTS_PSD_SIZE
# define ERTS_PSD_SIZE 6
#endif
typedef struct {
void *data[ERTS_PSD_SIZE];
} ErtsPSD;
#ifdef ERTS_ENABLE_LOCK_CHECK
#define ERTS_LC_PSD_ANY_LOCK (~ERTS_PROC_LOCKS_ALL)
#define ERTS_PSD_ERROR_HANDLER_BUF_GET_LOCKS ERTS_PROC_LOCK_MAIN
#define ERTS_PSD_ERROR_HANDLER_BUF_SET_LOCKS ERTS_PROC_LOCK_MAIN
#define ERTS_PSD_SAVED_CALLS_BUF_GET_LOCKS ((ErtsProcLocks) 0)
#define ERTS_PSD_SAVED_CALLS_BUF_SET_LOCKS ((ErtsProcLocks) 0)
#define ERTS_PSD_SCHED_ID_GET_LOCKS ERTS_PROC_LOCK_STATUS
#define ERTS_PSD_SCHED_ID_SET_LOCKS ERTS_PROC_LOCK_STATUS
#define ERTS_PSD_CALL_TIME_BP_GET_LOCKS ERTS_PROC_LOCK_MAIN
#define ERTS_PSD_CALL_TIME_BP_SET_LOCKS ERTS_PROC_LOCK_MAIN
#define ERTS_PSD_DELAYED_GC_TASK_QS_GET_LOCKS ERTS_PROC_LOCK_MAIN
#define ERTS_PSD_DELAYED_GC_TASK_QS_SET_LOCKS ERTS_PROC_LOCK_MAIN
#define ERTS_PSD_NIF_TRAP_EXPORT_GET_LOCKS ((ErtsProcLocks) 0)
#define ERTS_PSD_NIF_TRAP_EXPORT_SET_LOCKS ((ErtsProcLocks) 0)
typedef struct {
ErtsProcLocks get_locks;
ErtsProcLocks set_locks;
} ErtsLcPSDLocks;
extern ErtsLcPSDLocks erts_psd_required_locks[ERTS_PSD_SIZE];
#endif
#define ERTS_SCHED_STAT_MODIFY_DISABLE 1
#define ERTS_SCHED_STAT_MODIFY_ENABLE 2
#define ERTS_SCHED_STAT_MODIFY_CLEAR 3
typedef struct {
erts_smp_spinlock_t lock;
int enabled;
struct {
Eterm name;
Uint total_executed;
Uint executed;
Uint total_migrated;
Uint migrated;
} prio[ERTS_NO_PRIO_LEVELS];
} erts_sched_stat_t;
extern erts_sched_stat_t erts_sched_stat;
typedef struct {
Eterm reason;
ErlHeapFragment *bp;
} ErtsPendExit;
typedef struct ErtsProcSysTask_ ErtsProcSysTask;
typedef struct ErtsProcSysTaskQs_ ErtsProcSysTaskQs;
#ifdef ERTS_SMP
typedef struct ErtsPendingSuspend_ ErtsPendingSuspend;
struct ErtsPendingSuspend_ {
ErtsPendingSuspend *next;
ErtsPendingSuspend *end;
Eterm pid;
void (*handle_func)(Process *suspendee,
ErtsProcLocks suspendee_locks,
int suspendee_alive,
Eterm pid);
};
#endif
/* Defines to ease the change of memory architecture */
# define HEAP_START(p) (p)->heap
# define HEAP_TOP(p) (p)->htop
# define HEAP_LIMIT(p) (p)->stop
# define HEAP_END(p) (p)->hend
# define HEAP_SIZE(p) (p)->heap_sz
# define STACK_START(p) (p)->hend
# define STACK_TOP(p) (p)->stop
# define STACK_END(p) (p)->htop
# define HIGH_WATER(p) (p)->high_water
# define OLD_HEND(p) (p)->old_hend
# define OLD_HTOP(p) (p)->old_htop
# define OLD_HEAP(p) (p)->old_heap
# define GEN_GCS(p) (p)->gen_gcs
# define MAX_GEN_GCS(p) (p)->max_gen_gcs
# define FLAGS(p) (p)->flags
# define MBUF(p) (p)->mbuf
# define HALLOC_MBUF(p) (p)->halloc_mbuf
# define MBUF_SIZE(p) (p)->mbuf_sz
# define MSO(p) (p)->off_heap
# define MIN_HEAP_SIZE(p) (p)->min_heap_size
# define MIN_VHEAP_SIZE(p) (p)->min_vheap_size
# define BIN_VHEAP_SZ(p) (p)->bin_vheap_sz
# define BIN_OLD_VHEAP_SZ(p) (p)->bin_old_vheap_sz
# define BIN_OLD_VHEAP(p) (p)->bin_old_vheap
# define MAX_HEAP_SIZE_GET(p) ((p)->max_heap_size >> 2)
# define MAX_HEAP_SIZE_SET(p, sz) ((p)->max_heap_size = ((sz) << 2) | \
MAX_HEAP_SIZE_FLAGS_GET(p))
# define MAX_HEAP_SIZE_FLAGS_GET(p) ((p)->max_heap_size & 0x3)
# define MAX_HEAP_SIZE_FLAGS_SET(p, flags) ((p)->max_heap_size = flags | \
((p)->max_heap_size & ~0x3))
# define MAX_HEAP_SIZE_KILL 1
# define MAX_HEAP_SIZE_LOG 2
struct process {
ErtsPTabElementCommon common; /* *Need* to be first in struct */
/* All fields in the PCB that differs between different heap
* architectures, have been moved to the end of this struct to
* make sure that as few offsets as possible differ. Different
* offsets between memory architectures in this struct, means that
* native code have to use functions instead of constants.
*/
Eterm* htop; /* Heap top */
Eterm* stop; /* Stack top */
Eterm* heap; /* Heap start */
Eterm* hend; /* Heap end */
Uint heap_sz; /* Size of heap in words */
Uint min_heap_size; /* Minimum size of heap (in words). */
Uint min_vheap_size; /* Minimum size of virtual heap (in words). */
#if !defined(NO_FPE_SIGNALS) || defined(HIPE)
volatile unsigned long fp_exception;
#endif
#ifdef HIPE
/* HiPE-specific process fields. Put it early in struct process,
to enable smaller & faster addressing modes on the x86. */
struct hipe_process_state hipe;
#endif
/*
* Moved to after "struct hipe_process_state hipe", as a temporary fix for
* LLVM hard-coding offsetof(struct process, hipe.nstack) (sic!)
* (see void X86FrameLowering::adjustForHiPEPrologue(...) in
* lib/Target/X86/X86FrameLowering.cpp).
*
* Used to be below "Eterm* hend".
*/
Eterm* abandoned_heap;
/*
* Saved x registers.
*/
Uint arity; /* Number of live argument registers (only valid
* when process is *not* running).
*/
Eterm* arg_reg; /* Pointer to argument registers. */
unsigned max_arg_reg; /* Maximum number of argument registers available. */
Eterm def_arg_reg[6]; /* Default array for argument registers. */
BeamInstr* cp; /* (untagged) Continuation pointer (for threaded code). */
BeamInstr* i; /* Program counter for threaded code. */
Sint catches; /* Number of catches on stack */
Sint fcalls; /*
* Number of reductions left to execute.
* Only valid for the current process.
*/
Uint32 rcount; /* suspend count */
int schedule_count; /* Times left to reschedule a low prio process */
Uint reds; /* No of reductions for this process */
Eterm group_leader; /* Pid in charge (can be boxed) */
Uint flags; /* Trap exit, etc (no trace flags anymore) */
Eterm fvalue; /* Exit & Throw value (failure reason) */
Uint freason; /* Reason for detected failure */
Eterm ftrace; /* Latest exception stack trace dump */
Process *next; /* Pointer to next process in run queue */