mirror of
https://github.com/lexborisov/Modest
synced 2024-11-22 13:51:39 +03:00
160 lines
5.3 KiB
C
160 lines
5.3 KiB
C
/*
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Copyright (C) 2015-2017 Alexander Borisov
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This library is free software; you can redistribute it and/or
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modify it under the terms of the GNU Lesser General Public
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License as published by the Free Software Foundation; either
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version 2.1 of the License, or (at your option) any later version.
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This library 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 GNU
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Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public
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License along with this library; if not, write to the Free Software
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Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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Author: lex.borisov@gmail.com (Alexander Borisov)
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*/
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#ifndef MyCORE_THREAD_H
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#define MyCORE_THREAD_H
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#pragma once
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#ifdef __cplusplus
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extern "C" {
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#endif
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#include <mycore/myosi.h>
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#include <mycore/mystring.h>
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#ifdef MyCORE_BUILD_WITHOUT_THREADS
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struct mythread {
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int sys_last_error;
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};
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#else
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/* functions */
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typedef void (*mythread_callback_before_entry_join_f)(mythread_t* mythread, mythread_entry_t* entry, void* ctx);
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typedef void * (*mythread_process_f)(void* arg);
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typedef void (*mythread_work_f)(mythread_id_t thread_id, void* arg);
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void * mythread_function_queue_stream(void *arg);
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void * mythread_function_queue_batch(void *arg);
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void * mythread_function(void *arg);
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enum mythread_thread_opt {
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MyTHREAD_OPT_UNDEF = 0x00,
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MyTHREAD_OPT_WAIT = 0x01,
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MyTHREAD_OPT_QUIT = 0x02,
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MyTHREAD_OPT_STOP = 0x04,
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MyTHREAD_OPT_DONE = 0x08
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}
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typedef mythread_thread_opt_t;
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enum mythread_type {
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MyTHREAD_TYPE_STREAM = 0x00,
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MyTHREAD_TYPE_BATCH = 0x01
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}
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typedef mythread_type_t;
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// thread
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struct mythread_context {
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mythread_id_t id;
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mythread_work_f func;
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volatile size_t t_count;
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volatile mythread_thread_opt_t opt;
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mystatus_t status;
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void* mutex;
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void* timespec;
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mythread_t* mythread;
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};
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struct mythread_entry {
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void* thread;
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mythread_context_t context;
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mythread_process_f process_func;
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};
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struct mythread {
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mythread_entry_t *entries;
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size_t entries_length;
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size_t entries_size;
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size_t id_increase;
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void* context;
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void* attr;
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void* timespec;
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int sys_last_error;
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mythread_type_t type;
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volatile mythread_thread_opt_t opt;
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};
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mythread_t * mythread_create(void);
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mystatus_t mythread_init(mythread_t *mythread, mythread_type_t type, size_t threads_count, size_t id_increase);
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void mythread_clean(mythread_t *mythread);
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mythread_t * mythread_destroy(mythread_t *mythread, mythread_callback_before_entry_join_f before_join, void* ctx, bool self_destroy);
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mythread_id_t myhread_increase_id_by_entry_id(mythread_t* mythread, mythread_id_t thread_id);
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/* set for all threads */
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mystatus_t mythread_join(mythread_t *mythread, mythread_callback_before_entry_join_f before_join, void* ctx);
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mystatus_t mythread_quit(mythread_t *mythread, mythread_callback_before_entry_join_f before_join, void* ctx);
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mystatus_t mythread_stop(mythread_t *mythread);
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mystatus_t mythread_resume(mythread_t *mythread, mythread_thread_opt_t send_opt);
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mystatus_t mythread_suspend(mythread_t *mythread);
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mystatus_t mythread_check_status(mythread_t *mythread);
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mythread_thread_opt_t mythread_option(mythread_t *mythread);
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void mythread_option_set(mythread_t *mythread, mythread_thread_opt_t opt);
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/* Entries */
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mystatus_t myhread_entry_create(mythread_t *mythread, mythread_process_f process_func, mythread_work_f func, mythread_thread_opt_t opt);
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mystatus_t mythread_entry_join(mythread_entry_t* entry, mythread_callback_before_entry_join_f before_join, void* ctx);
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mystatus_t mythread_entry_quit(mythread_entry_t* entry, mythread_callback_before_entry_join_f before_join, void* ctx);
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mystatus_t mythread_entry_stop(mythread_entry_t* entry);
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mystatus_t mythread_entry_resume(mythread_entry_t* entry, mythread_thread_opt_t send_opt);
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mystatus_t mythread_entry_suspend(mythread_entry_t* entry);
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mystatus_t mythread_entry_status(mythread_entry_t* entry);
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mythread_t * mythread_entry_mythread(mythread_entry_t* entry);
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/* API for ports */
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void * mythread_thread_create(mythread_t *mythread, mythread_process_f process_func, void* ctx);
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mystatus_t mythread_thread_join(mythread_t *mythread, void* thread);
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mystatus_t mythread_thread_cancel(mythread_t *mythread, void* thread);
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mystatus_t mythread_thread_destroy(mythread_t *mythread, void* thread);
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void * mythread_thread_attr_init(mythread_t *mythread);
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void mythread_thread_attr_clean(mythread_t *mythread, void* attr);
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void mythread_thread_attr_destroy(mythread_t *mythread, void* attr);
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void * mythread_mutex_create(mythread_t *mythread);
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mystatus_t mythread_mutex_post(mythread_t *mythread, void* mutex);
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mystatus_t mythread_mutex_wait(mythread_t *mythread, void* mutex);
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void mythread_mutex_close(mythread_t *mythread, void* mutex);
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void * mythread_nanosleep_create(mythread_t* mythread);
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void mythread_nanosleep_clean(void* timespec);
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void mythread_nanosleep_destroy(void* timespec);
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mystatus_t mythread_nanosleep_sleep(void* timespec);
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/* callback */
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void mythread_callback_quit(mythread_t* mythread, mythread_entry_t* entry, void* ctx);
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#endif
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#ifdef __cplusplus
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} /* extern "C" */
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#endif
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#endif /* MyCORE_THREAD_H */
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