145 lines
4.2 KiB
C
145 lines
4.2 KiB
C
#ifndef VIETER_JOB_QUEUE
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#define VIETER_JOB_QUEUE
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#include "vieter_cron.h"
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#include <stdbool.h>
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#include <stdint.h>
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/*
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* The order of these do not imply that they happen in this order. New states
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* will just get added as consecutive numbers. Their values should be
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* monotonically increasing values, as these will be used to index arrays, among
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* other things.
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*/
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typedef enum vieter_job_state {
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vieter_job_state_queued = 0,
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vieter_job_state_ready = 1,
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vieter_job_state_build_finished = 2,
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vieter_job_state_failed = 3
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} vieter_job_state;
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// This macro should be kept in sync with the above enum
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#define VIETER_JOB_STATES 4
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#define VIETER_JOB_INITIAL_STATE vieter_job_state_queued
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#define VIETER_JOB_FAILURE_STATE vieter_job_state_failed
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/*
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* Struct storing a report for why a certain job failed to be processed in the
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* given state.
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*/
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typedef struct vieter_job_failure_report {
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vieter_job_state failed_state;
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char *msg;
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} vieter_job_failure_report;
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vieter_job_failure_report *vieter_job_failure_report_init();
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void vieter_job_failure_report_free(vieter_job_failure_report **ptp);
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/*
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* Represents a job currently being processed in the system. A job migrates
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* between different states before finally being removed from the queue.
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*/
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typedef struct vieter_job {
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uint64_t id;
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uint64_t next_scheduled_time;
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vieter_cron_expression *schedule;
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void *build_config;
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vieter_job_failure_report *failure_report;
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uint64_t state_transition_times[VIETER_JOB_STATES];
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vieter_job_state current_state;
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bool single;
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bool dispatched;
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} vieter_job;
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/*
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* Allocate a new vieter_job object.
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*/
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vieter_job *vieter_job_init();
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void vieter_job_free(vieter_job **ptp);
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/*
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* Represents the actual queue managing the list of jobs.
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*/
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typedef struct vieter_job_queue vieter_job_queue;
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typedef enum vieter_job_queue_error {
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vieter_job_queue_ok = 0,
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vieter_job_queue_not_present = 1,
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vieter_job_queue_already_present = 2,
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vieter_job_queue_state_empty = 3,
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vieter_job_queue_not_dispatched = 4
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} vieter_job_queue_error;
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/*
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* Allocate and initialize a new job queue.
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*/
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vieter_job_queue *vieter_job_queue_init();
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/*
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* Free a job queue.
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*/
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void vieter_job_queue_free(vieter_job_queue **ptp);
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/*
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* Insert the given job into the system.
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*/
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vieter_job_queue_error vieter_job_queue_insert(vieter_job_queue *queue,
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vieter_job *job);
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/*
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* Pop a job from the given state's queue. The job will then be marked as
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* dispatched.
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*/
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vieter_job_queue_error vieter_job_queue_pop(vieter_job **out,
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vieter_job_queue *queue,
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vieter_job_state state);
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/*
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* Transition the job with the given id to the new state. This sets the
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* job's dispatch flag to false, and adds it to the new state's queue.
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*
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* NOTE: this can only be done with dispatched jobs.
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*/
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vieter_job_queue_error vieter_job_queue_transition(vieter_job_queue *queue,
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uint64_t id,
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vieter_job_state new_state);
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/*
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* Remove the given job from the job queue, returning its pointer to the caller.
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*
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* NOTE: this can only be done with dispatched jobs.
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*/
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vieter_job_queue_error
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vieter_job_queue_remove(vieter_job **out, vieter_job_queue *queue, uint64_t id);
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/*
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* Transition a job into the failure state, and attach a failure report with the
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* provided message. The message is copied, so the caller is responsible for
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* freeing the provided string.
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*
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* NOTE: this can only be done with dispatched jobs.
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*/
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vieter_job_queue_error vieter_job_queue_fail(vieter_job_queue *queue,
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uint64_t id, char *report_message);
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/*
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* Acquire a read lock on the job queue. Return value is the result of
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* pthread_rwlock_rdlock.
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*/
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int vieter_job_queue_rlock(vieter_job_queue *job_queue);
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/*
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* Acquire a write lock on the job queue. Return value is the result of
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* pthread_rwlock_wrlock.
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*/
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int vieter_job_queue_wlock(vieter_job_queue *job_queue);
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/*
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* Unlock the lock after having acquired it. Return value is the result of
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* pthread_rwlock_unlock.
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*/
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int vieter_job_queue_unlock(vieter_job_queue *job_queue);
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#endif
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