source: libcfa/src/concurrency/clib/cfathread.cfa@ a196885

ADT arm-eh ast-experimental enum forall-pointer-decay jacob/cs343-translation new-ast-unique-expr pthread-emulation qualifiedEnum
Last change on this file since a196885 was 9e27f69, checked in by Thierry Delisle <tdelisle@…>, 5 years ago

Fixed warnings and errors in cfathreads.cfa

  • Property mode set to 100644
File size: 7.2 KB
Line 
1//
2// Cforall Version 1.0.0 Copyright (C) 2016 University of Waterloo
3//
4// The contents of this file are covered under the licence agreement in the
5// file "LICENCE" distributed with Cforall.
6//
7// clib/cfathread.cfa --
8//
9// Author : Thierry Delisle
10// Created On : Tue Sep 22 15:31:20 2020
11// Last Modified By :
12// Last Modified On :
13// Update Count :
14//
15
16#include "fstream.hfa"
17#include "locks.hfa"
18#include "kernel.hfa"
19#include "thread.hfa"
20#include "time.hfa"
21
22#include "cfathread.h"
23
24struct cfathread_object {
25 $thread self;
26 void * (*themain)( void * );
27 void * arg;
28 void * ret;
29};
30void main(cfathread_object & this);
31void ^?{}(cfathread_object & mutex this);
32
33static inline $thread * get_thread( cfathread_object & this ) { return &this.self; }
34
35typedef ThreadCancelled(cfathread_object) cfathread_exception;
36typedef ThreadCancelled_vtable(cfathread_object) cfathread_vtable;
37
38void defaultResumptionHandler(ThreadCancelled(cfathread_object) & except) {
39 abort | "A thread was cancelled";
40}
41
42cfathread_vtable _cfathread_vtable_instance;
43
44cfathread_vtable const & get_exception_vtable(cfathread_exception *) {
45 return _cfathread_vtable_instance;
46}
47
48static void ?{}( cfathread_object & this, cluster & cl, void *(*themain)( void * ), void * arg ) {
49 this.themain = themain;
50 this.arg = arg;
51 ((thread&)this){"C-thread", cl};
52 __thrd_start(this, main);
53}
54
55void ^?{}(cfathread_object & mutex this) {
56 ^(this.self){};
57}
58
59void main( cfathread_object & this ) {
60 __attribute__((unused)) void * const thrd_obj = (void*)&this;
61 __attribute__((unused)) void * const thrd_hdl = (void*)active_thread();
62 /* paranoid */ verify( thrd_obj == thrd_hdl );
63
64 this.ret = this.themain( this.arg );
65}
66
67processor * procs = 0p;
68int proc_cnt = 1;
69
70extern "C" {
71 int cfathread_cluster_create(cfathread_cluster_t * cl) __attribute__((nonnull(1))) {
72 *cl = new();
73 return 0;
74 }
75
76 cfathread_cluster_t cfathread_cluster_self(void) {
77 return active_cluster();
78 }
79
80 int cfathread_cluster_add_worker(cfathread_cluster_t cl, pthread_t* tid, void (*init_routine) (void *), void * arg) {
81 // processor * proc = new("C-processor", *cl, init_routine, arg);
82 processor * proc = alloc();
83 (*proc){ "C-processor", *cl, init_routine, arg };
84 if(tid) *tid = proc->kernel_thread;
85 return 0;
86 }
87
88 int cfathread_cluster_pause (cfathread_cluster_t) {
89 abort | "Pausing clusters is not supported";
90 exit(1);
91 }
92
93 int cfathread_cluster_resume(cfathread_cluster_t) {
94 abort | "Resuming clusters is not supported";
95 exit(1);
96 }
97
98 //--------------------
99 // Thread attributes
100 int cfathread_attr_init(cfathread_attr_t *attr) __attribute__((nonnull (1))) {
101 attr->cl = active_cluster();
102 return 0;
103 }
104
105 //--------------------
106 // Thread
107 int cfathread_create( cfathread_t * handle, const cfathread_attr_t * attr, void *(*main)( void * ), void * arg ) __attribute__((nonnull (1))) {
108 cluster * cl = attr ? attr->cl : active_cluster();
109 cfathread_t thrd = alloc();
110 (*thrd){ *cl, main, arg };
111 *handle = thrd;
112 return 0;
113 }
114
115 int cfathread_join( cfathread_t thrd, void ** retval ) {
116 void * ret = join( *thrd ).ret;
117 delete( thrd );
118 if(retval) {
119 *retval = ret;
120 }
121 return 0;
122 }
123
124 int cfathread_get_errno(void) {
125 return errno;
126 }
127
128 cfathread_t cfathread_self(void) {
129 return (cfathread_t)active_thread();
130 }
131
132 int cfathread_usleep(useconds_t usecs) {
133 sleep(usecs`us);
134 return 0;
135 }
136
137 int cfathread_sleep(unsigned int secs) {
138 sleep(secs`s);
139 return 0;
140 }
141
142 void cfathread_park( void ) {
143 park();
144 }
145
146 void cfathread_unpark( cfathread_t thrd ) {
147 unpark( *thrd );
148 }
149
150 void cfathread_yield( void ) {
151 yield();
152 }
153
154 typedef struct cfathread_mutex * cfathread_mutex_t;
155
156 //--------------------
157 // Mutex
158 struct cfathread_mutex {
159 single_acquisition_lock impl;
160 };
161 int cfathread_mutex_init(cfathread_mutex_t *restrict mut, const cfathread_mutexattr_t *restrict) __attribute__((nonnull (1))) { *mut = new(); return 0; }
162 int cfathread_mutex_destroy(cfathread_mutex_t *mut) __attribute__((nonnull (1))) { delete( *mut ); return 0; }
163 int cfathread_mutex_lock (cfathread_mutex_t *mut) __attribute__((nonnull (1))) { lock ( (*mut)->impl ); return 0; }
164 int cfathread_mutex_trylock(cfathread_mutex_t *mut) __attribute__((nonnull (1))) { try_lock( (*mut)->impl ); return 0; }
165 int cfathread_mutex_unlock (cfathread_mutex_t *mut) __attribute__((nonnull (1))) { unlock ( (*mut)->impl ); return 0; }
166
167 //--------------------
168 // Condition
169 struct cfathread_condition {
170 condition_variable(single_acquisition_lock) impl;
171 };
172 int cfathread_cond_init(cfathread_cond_t *restrict cond, const cfathread_condattr_t *restrict) __attribute__((nonnull (1))) { *cond = new(); return 0; }
173 int cfathread_cond_signal(cfathread_cond_t *cond) __attribute__((nonnull (1))) { notify_one( (*cond)->impl ); return 0; }
174 int cfathread_cond_wait(cfathread_cond_t *restrict cond, cfathread_mutex_t *restrict mut) __attribute__((nonnull (1,2))) { wait( (*cond)->impl, (*mut)->impl ); return 0; }
175 int cfathread_cond_timedwait(cfathread_cond_t *restrict cond, cfathread_mutex_t *restrict mut, const struct timespec *restrict abstime) __attribute__((nonnull (1,2,3))) {
176 Time t = { *abstime };
177 if( wait( (*cond)->impl, (*mut)->impl, t ) ) {
178 return 0;
179 }
180 errno = ETIMEDOUT;
181 return ETIMEDOUT;
182 }
183}
184
185#include <iofwd.hfa>
186
187extern "C" {
188 #include <unistd.h>
189 #include <sys/types.h>
190 #include <sys/socket.h>
191
192 //--------------------
193 // IO operations
194 int cfathread_socket(int domain, int type, int protocol) {
195 return socket(domain, type, protocol);
196 }
197 int cfathread_bind(int socket, const struct sockaddr *address, socklen_t address_len) {
198 return bind(socket, address, address_len);
199 }
200
201 int cfathread_listen(int socket, int backlog) {
202 return listen(socket, backlog);
203 }
204
205 int cfathread_accept(int socket, struct sockaddr *restrict address, socklen_t *restrict address_len) {
206 return cfa_accept4(socket, address, address_len, 0, CFA_IO_LAZY);
207 }
208
209 int cfathread_connect(int socket, const struct sockaddr *address, socklen_t address_len) {
210 return cfa_connect(socket, address, address_len, CFA_IO_LAZY);
211 }
212
213 int cfathread_dup(int fildes) {
214 return dup(fildes);
215 }
216
217 int cfathread_close(int fildes) {
218 return cfa_close(fildes, CFA_IO_LAZY);
219 }
220
221 ssize_t cfathread_sendmsg(int socket, const struct msghdr *message, int flags) {
222 return cfa_sendmsg(socket, message, flags, CFA_IO_LAZY);
223 }
224
225 ssize_t cfathread_write(int fildes, const void *buf, size_t nbyte) {
226 return cfa_write(fildes, buf, nbyte, CFA_IO_LAZY);
227 }
228
229 ssize_t cfathread_recvfrom(int socket, void *restrict buffer, size_t length, int flags, struct sockaddr *restrict address, socklen_t *restrict address_len) {
230 struct iovec iov;
231 iov.iov_base = buffer;
232 iov.iov_len = length;
233
234 struct msghdr msg;
235 msg.msg_name = address;
236 msg.msg_namelen = address_len ? (socklen_t)*address_len : (socklen_t)0;
237 msg.msg_iov = &iov;
238 msg.msg_iovlen = 1;
239 msg.msg_control = 0p;
240 msg.msg_controllen = 0;
241
242 ssize_t ret = cfa_recvmsg(socket, &msg, flags, CFA_IO_LAZY);
243
244 if(address_len) *address_len = msg.msg_namelen;
245 return ret;
246 }
247
248 ssize_t cfathread_read(int fildes, void *buf, size_t nbyte) {
249 return cfa_read(fildes, buf, nbyte, CFA_IO_LAZY);
250 }
251
252 void cfathread_suspendFD(int) {
253 abort | "Suspending File Descriptors is not supported";
254 }
255
256 void cfathread_resumeFD (int) {
257 abort | "Resuming File Descriptors is not supported";
258 }
259
260}
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