B. Stubs for Run-time Library Functions
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This section provides stubs for the run-time library functions defined in the OpenMP C and C++ API. The stubs are provided to enable portability to platforms that do not support the OpenMP C and C++ API. On these platforms, OpenMP programs must be linked with a library containing these stub functions. The stub functions assume that the directives in the OpenMP program are ignored. As such, they emulate serial semantics.
Note
The lock variable that appears in the lock functions must be accessed exclusively through these functions. It should not be initialized or otherwise modified in the user program. Users should not make assumptions about mechanisms used by OpenMP C and C++ implementations to implement locks based on the scheme used by the stub functions.
Code
#include <stdio.h>
#include <stdlib.h>
#include "omp.h"
#ifdef __cplusplus
extern "C" {
#endif
void omp_set_num_threads(int num_threads)
{
}
int omp_get_num_threads(void)
{
return 1;
}
int omp_get_max_threads(void)
{
return 1;
}
int omp_get_thread_num(void)
{
return 0;
}
int omp_get_num_procs(void)
{
return 1;
}
void omp_set_dynamic(int dynamic_threads)
{
}
int omp_get_dynamic(void)
{
return 0;
}
int omp_in_parallel(void)
{
return 0;
}
void omp_set_nested(int nested)
{
}
int omp_get_nested(void)
{
return 0;
}
enum {UNLOCKED = -1, INIT, LOCKED};
void omp_init_lock(omp_lock_t *lock)
{
*lock = UNLOCKED;
}
void omp_destroy_lock(omp_lock_t *lock)
{
*lock = INIT;
}
void omp_set_lock(omp_lock_t *lock)
{
if (*lock == UNLOCKED)
{
*lock = LOCKED;
}
else
if (*lock == LOCKED)
{
fprintf_s(stderr, "error: deadlock in using lock variable\n");
exit(1);
} else {
fprintf_s(stderr, "error: lock not initialized\n");
exit(1);
}
}
void omp_unset_lock(omp_lock_t *lock)
{
if (*lock == LOCKED)
{
*lock = UNLOCKED;
}
else
if (*lock == UNLOCKED)
{
fprintf_s(stderr, "error: lock not set\n");
exit(1);
} else {
fprintf_s(stderr, "error: lock not initialized\n");
exit(1);
}
}
int omp_test_lock(omp_lock_t *lock)
{
if (*lock == UNLOCKED)
{
*lock = LOCKED;
return 1;
} else if (*lock == LOCKED) {
return 0;
} else {
fprintf_s(stderr, "error: lock not initialized\n");
exit(1);
}
}
#ifndef OMP_NEST_LOCK_T
typedef struct { // This really belongs in omp.h
int owner;
int count;
} omp_nest_lock_t;
#endif
enum {MASTER = 0};
void omp_init_nest_lock(omp_nest_lock_t *lock)
{
lock->owner = UNLOCKED;
lock->count = 0;
}
void omp_destroy_nest_lock(omp_nest_lock_t *lock)
{
lock->owner = UNLOCKED;
lock->count = UNLOCKED;
}
void omp_set_nest_lock(omp_nest_lock_t *lock)
{
if (lock->owner == MASTER && lock->count >= 1)
{
lock->count++;
} else
if (lock->owner == UNLOCKED && lock->count == 0)
{
lock->owner = MASTER;
lock->count = 1;
} else
{
fprintf_s(stderr, "error: lock corrupted or not initialized\n");
exit(1);
}
}
void omp_unset_nest_lock(omp_nest_lock_t *lock)
{
if (lock->owner == MASTER && lock->count >= 1)
{
lock->count--;
if (lock->count == 0)
{
lock->owner = UNLOCKED;
}
} else
if (lock->owner == UNLOCKED && lock->count == 0)
{
fprintf_s(stderr, "error: lock not set\n");
exit(1);
} else
{
fprintf_s(stderr, "error: lock corrupted or not initialized\n");
exit(1);
}
}
int omp_test_nest_lock(omp_nest_lock_t *lock)
{
omp_set_nest_lock(lock);
return lock->count;
}
double omp_get_wtime(void)
{
// This function does not provide a working
// wallclock timer. Replace it with a version
// customized for the target machine.
return 0.0;
}
double omp_get_wtick(void)
{
// This function does not provide a working
// clock tick function. Replace it with
// a version customized for the target machine.
return 365. * 86400.;
}
#ifdef __cplusplus
}
#endif