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version 1.9, 2012/08/21 12:54:39
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version 1.15.22.1, 2026/05/19 15:47:47
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Line 11
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Line 11
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| #include "../inc/config.h" |
#include "../inc/config.h" |
| #include <aitsched.h> |
#include <aitsched.h> |
| |
|
| intptr_t Kill; | intptr_t Kill[1]; |
| #ifdef AIO_SUPPORT |
#ifdef AIO_SUPPORT |
| struct iovec iv[3], wiv[3], riv[3]; |
struct iovec iv[3], wiv[3], riv[3]; |
| #endif |
#endif |
| |
volatile uint64_t total; |
| |
|
| void *event(sched_task_t *arg) |
void *event(sched_task_t *arg) |
| { |
{ |
| printf("Event::\n"); |
printf("Event::\n"); |
| return NULL; | taskExit(arg, NULL); |
| } |
} |
| |
|
| void *regular(sched_task_t *arg) |
void *regular(sched_task_t *arg) |
| { |
{ |
| printf("Task::\n"); |
printf("Task::\n"); |
| return NULL; | taskExit(arg, NULL); |
| } |
} |
| |
|
| void *timer(sched_task_t *arg) |
void *timer(sched_task_t *arg) |
| { |
{ |
| printf("Timer %p sec::\n", TASK_ARG(arg)); |
printf("Timer %p sec::\n", TASK_ARG(arg)); |
| return NULL; | taskExit(arg, NULL); |
| } |
} |
| |
|
| void *r(sched_task_t *arg) |
void *r(sched_task_t *arg) |
| { |
{ |
| printf("read:: %d bytes wait\n", TASK_RET(arg)); | printf("read:: %ld bytes wait\n", (long) TASK_RET(arg)); |
| Kill++; | Kill[0]++; |
| return NULL; | taskExit(arg, NULL); |
| } |
} |
| |
|
| void *w(sched_task_t *arg) |
void *w(sched_task_t *arg) |
| { |
{ |
| printf("write:: %d bytes wait\n", TASK_RET(arg)); | printf("write:: %ld bytes wait\n", (long) TASK_RET(arg)); |
| return NULL; | taskExit(arg, NULL); |
| } |
} |
| |
|
| void *once(sched_task_t *arg) |
void *once(sched_task_t *arg) |
| { |
{ |
| printf("once::\n"); |
printf("once::\n"); |
| return NULL; | taskExit(arg, NULL); |
| } |
} |
| |
|
| #ifdef AIO_SUPPORT |
#ifdef AIO_SUPPORT |
|
Line 65 void *aiowrite(sched_task_t *arg)
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Line 66 void *aiowrite(sched_task_t *arg)
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| |
|
| memset(ole, 0, BUFSIZ); |
memset(ole, 0, BUFSIZ); |
| schedAIORead(TASK_ROOT(arg), aioread, NULL, TASK_FD(arg), ole, BUFSIZ - 1, -1); |
schedAIORead(TASK_ROOT(arg), aioread, NULL, TASK_FD(arg), ole, BUFSIZ - 1, -1); |
| return NULL; | taskExit(arg, NULL); |
| } |
} |
| |
|
| void *aioread(sched_task_t *arg) |
void *aioread(sched_task_t *arg) |
|
Line 83 void *aioread(sched_task_t *arg)
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Line 84 void *aioread(sched_task_t *arg)
|
| |
|
| } |
} |
| free(TASK_DATA(arg)); |
free(TASK_DATA(arg)); |
| return NULL; | taskExit(arg, NULL); |
| } |
} |
| |
|
| void *aiobulkread(sched_task_t *arg) |
void *aiobulkread(sched_task_t *arg) |
|
Line 97 void *aiobulkread(sched_task_t *arg)
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Line 98 void *aiobulkread(sched_task_t *arg)
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| free(iv[i].iov_base); |
free(iv[i].iov_base); |
| } |
} |
| |
|
| return NULL; | taskExit(arg, NULL); |
| } |
} |
| |
|
| void *aiobulkwrite(sched_task_t *arg) |
void *aiobulkwrite(sched_task_t *arg) |
|
Line 111 void *aiobulkwrite(sched_task_t *arg)
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Line 112 void *aiobulkwrite(sched_task_t *arg)
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| free(iv[i].iov_base); |
free(iv[i].iov_base); |
| } |
} |
| |
|
| return NULL; | taskExit(arg, NULL); |
| } |
} |
| #endif |
#endif |
| |
|
| void *thr(sched_task_t *arg) |
void *thr(sched_task_t *arg) |
| { |
{ |
| printf("thread(%lu):: %s\n", TASK_VAL(arg), (char*) TASK_ARG(arg)); | printf("tid (%lx):: %s\n", TASK_VAL(arg), __func__); |
| taskExit(arg, 42); |
taskExit(arg, 42); |
| } |
} |
| |
|
| |
void *thr4kill(sched_task_t *arg) |
| |
{ |
| |
char blah[BUFSIZ]; |
| |
|
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printf("THREAD!!! tid (%lx):: %s\n", TASK_VAL(arg), __func__); |
| |
|
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read(0, blah, sizeof blah); |
| |
printf("never see!!! (%lx):: %s (%d == %d)\n", TASK_VAL(arg), (char*) TASK_ARG(arg), TASK_TYPE(arg), taskTHREAD); |
| |
taskExit(arg, 0); |
| |
} |
| |
|
| void sig(int s) |
void sig(int s) |
| { |
{ |
| switch (s) { |
switch (s) { |
| case SIGTERM: |
case SIGTERM: |
| Kill++; | case SIGINT: |
| | printf("I'm in switch case %d\n", s); |
| | Kill[0]++; |
| break; |
break; |
| |
case SIGHUP: |
| |
printf("Test SIGHUP\n"); |
| |
break; |
| } |
} |
| } |
} |
| |
|
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void *sigt(sched_task_t *arg) |
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{ |
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int s = TASK_VAL(arg); |
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|
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printf("Received signal #%d\n", s); |
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|
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sig(s); |
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|
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schedSignalSelf(arg); |
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taskExit(arg, NULL); |
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} |
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|
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static void* |
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prof(void *task, void *stage) |
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{ |
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sched_task_t *t = task; |
| |
struct timespec ts; |
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static volatile uint64_t ns; |
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|
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clock_gettime(CLOCK_MONOTONIC, &ts); |
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if (!stage) |
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ns = (uint64_t) ts.tv_sec * 1000000000LL + ts.tv_nsec; |
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else { |
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ns = (uint64_t) ts.tv_sec * 1000000000LL + ts.tv_nsec - ns; |
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printf("Task ran for %lu ns: id=%p type=%d call=%p -> #%ld\n", ns, |
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TASK_ID(t), TASK_TYPE(t), TASK_FUNC(t), TASK_RET(t)); |
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|
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total += ns; |
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} |
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|
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return NULL; |
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} |
| |
|
| int |
int |
| main(int argc, char **argv) |
main(int argc, char **argv) |
| { |
{ |
|
Line 137 main(int argc, char **argv)
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Line 187 main(int argc, char **argv)
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| int f, fd; |
int f, fd; |
| struct sockaddr_in sin; |
struct sockaddr_in sin; |
| struct timespec ts = { 20, 0 }; |
struct timespec ts = { 20, 0 }; |
| // struct timespec p = { 0, 10000000 }; | struct timespec p = { 0, 10000000 }; |
| struct sigaction sa; | // struct sigaction sa; |
| | sched_task_t *t; |
| #ifdef AIO_SUPPORT |
#ifdef AIO_SUPPORT |
| char *ole = malloc(BUFSIZ); |
char *ole = malloc(BUFSIZ); |
| register int i; |
register int i; |
| #endif |
#endif |
| |
|
| |
/* |
| sa.sa_handler = sig; |
sa.sa_handler = sig; |
| sigemptyset(&sa.sa_mask); |
sigemptyset(&sa.sa_mask); |
| sigaction(SIGTERM, &sa, NULL); |
sigaction(SIGTERM, &sa, NULL); |
| |
*/ |
| |
|
| f = socket(AF_INET, SOCK_DGRAM, IPPROTO_UDP); |
f = socket(AF_INET, SOCK_DGRAM, IPPROTO_UDP); |
| if (f == -1) |
if (f == -1) |
| return 1; |
return 1; |
| |
#ifndef __linux__ |
| sin.sin_len = sizeof sin; |
sin.sin_len = sizeof sin; |
| |
#endif |
| sin.sin_family = AF_INET; |
sin.sin_family = AF_INET; |
| sin.sin_port = htons(2345); |
sin.sin_port = htons(2345); |
| sin.sin_addr.s_addr = INADDR_ANY; |
sin.sin_addr.s_addr = INADDR_ANY; |
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Line 169 main(int argc, char **argv)
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Line 224 main(int argc, char **argv)
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| return 1; |
return 1; |
| } |
} |
| |
|
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if (argc > 1) |
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ROOT_PROFILING(root, prof); |
| |
|
| if (!schedTimer(root, timer, (void*) (intptr_t) ts.tv_sec, ts, NULL, 0)) { |
if (!schedTimer(root, timer, (void*) (intptr_t) ts.tv_sec, ts, NULL, 0)) { |
| printf("Error:: #%d - %s\n", sched_GetErrno(), sched_GetError()); |
printf("Error:: #%d - %s\n", sched_GetErrno(), sched_GetError()); |
| return 4; |
return 4; |
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Line 195 main(int argc, char **argv)
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Line 253 main(int argc, char **argv)
|
| return 4; |
return 4; |
| } |
} |
| |
|
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if (!(t = schedRead(root, r, "rrr_test", f, NULL, 0))) { |
| |
printf("Error:: #%d - %s\n", sched_GetErrno(), sched_GetError()); |
| |
return 5; |
| |
} |
| if (!schedRead(root, r, "rrr", f, NULL, 0)) { |
if (!schedRead(root, r, "rrr", f, NULL, 0)) { |
| printf("Error:: #%d - %s\n", sched_GetErrno(), sched_GetError()); |
printf("Error:: #%d - %s\n", sched_GetErrno(), sched_GetError()); |
| return 5; |
return 5; |
| } |
} |
| |
schedCancel(t); |
| |
|
| if (!schedWrite(root, w, "www", f, NULL, 0)) { |
if (!schedWrite(root, w, "www", f, NULL, 0)) { |
| printf("Error:: #%d - %s\n", sched_GetErrno(), sched_GetError()); |
printf("Error:: #%d - %s\n", sched_GetErrno(), sched_GetError()); |
| return 6; |
return 6; |
| } |
} |
| |
|
| if (!schedThread(root, thr, "mdaaaa this is thread task", 0, NULL, 0)) { | if (!(t = schedThread(root, thr4kill, "0aaaa", 0, NULL, 0))) { |
| printf("Error:: #%d - %s\n", sched_GetErrno(), sched_GetError()); |
printf("Error:: #%d - %s\n", sched_GetErrno(), sched_GetError()); |
| return 7; |
return 7; |
| } |
} |
| if (!schedThread(root, thr, "mdaaaa this is thread task -detached", 42, NULL, 0)) { | if (!schedThread(root, thr, "mdaaaa this is thread task", 8192, NULL, 0)) { |
| printf("Error:: #%d - %s\n", sched_GetErrno(), sched_GetError()); |
printf("Error:: #%d - %s\n", sched_GetErrno(), sched_GetError()); |
| |
printf("stack is too small\n"); |
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} |
| |
if (!schedThread(root, thr, "mdaaaa this is thread task -detached", 131072, NULL, 0)) { |
| |
printf("Error:: #%d - %s\n", sched_GetErrno(), sched_GetError()); |
| return 7; |
return 7; |
| } |
} |
| if (!schedThread(root, thr, "mdaaaa this is thread task -j", 0, NULL, 0)) { |
if (!schedThread(root, thr, "mdaaaa this is thread task -j", 0, NULL, 0)) { |
| printf("Error:: #%d - %s\n", sched_GetErrno(), sched_GetError()); |
printf("Error:: #%d - %s\n", sched_GetErrno(), sched_GetError()); |
| return 7; |
return 7; |
| } |
} |
| |
printf("~~~try to cancel tid = %lx\n", TASK_VAL(t)); |
| |
schedCancel(t); |
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if (!schedThread(root, thr, "mdaaaa this is thread task -j2", 0, NULL, 0)) { |
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printf("Error:: #%d - %s\n", sched_GetErrno(), sched_GetError()); |
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return 7; |
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} |
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if (!(t = schedThread(root, thr4kill, "0aaaa", 0, NULL, 0))) { |
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printf("Error:: #%d - %s\n", sched_GetErrno(), sched_GetError()); |
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return 7; |
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} |
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if (!schedThread(root, thr, "mdaaaa this is thread task -j3", 4096, NULL, 0)) { |
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printf("Error:: #%d - %s\n", sched_GetErrno(), sched_GetError()); |
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printf("stack is too small\n"); |
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} |
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sleep(1); |
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schedCancel(t); |
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|
| #ifdef AIO_SUPPORT |
#ifdef AIO_SUPPORT |
| memset(ole, 0, BUFSIZ); |
memset(ole, 0, BUFSIZ); |
|
Line 256 main(int argc, char **argv)
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Line 339 main(int argc, char **argv)
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| |
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| schedCallOnce(root, once, "000000", 42, NULL, 0); |
schedCallOnce(root, once, "000000", 42, NULL, 0); |
| |
|
| // schedPolling(root, &p, NULL); | printf("add signals\n"); |
| schedRun(root, &Kill); | schedSignal(root, sigt, NULL, SIGHUP, NULL, 0); |
| | schedSignal(root, sigt, NULL, SIGTERM, NULL, 0); |
| | schedSignal(root, sigt, NULL, SIGINT, NULL, 0); |
| | |
| | schedPolling(root, &p, NULL); |
| | schedSignalDispatch(root, 42); |
| | schedRun(root, Kill); |
| | schedSignalDispatch(root, 0); |
| schedEnd(&root); |
schedEnd(&root); |
| |
sleep(1); |
| |
|
| #ifdef AIO_SUPPORT |
#ifdef AIO_SUPPORT |
| for (i = 0; i < 3; i++) |
for (i = 0; i < 3; i++) |
|
Line 267 main(int argc, char **argv)
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Line 358 main(int argc, char **argv)
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| close(fd); |
close(fd); |
| close(f); |
close(f); |
| |
|
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if (argc > 1) |
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printf("Total spend of time for all tasks = %lu\n", total); |
| return 0; |
return 0; |
| } |
} |