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/* Support for dynamic loading of extension modules */

#include "Python.h"
#include "importdl.h"

#include <sys/types.h>
#include <sys/stat.h>

#if defined(__NetBSD__)
#include <sys/param.h>
#if (NetBSD < 199712)
#include <nlist.h>
#include <link.h>
#define dlerror() "error in dynamic linking"
#endif
#endif /* NetBSD */

#ifdef HAVE_DLFCN_H
#include <dlfcn.h>
#else
#if defined(PYOS_OS2) && defined(PYCC_GCC)
#include "dlfcn.h"
#endif
#endif

#if (defined(__OpenBSD__) || defined(__NetBSD__)) && !defined(__ELF__)
#define LEAD_UNDERSCORE "_"
#else
#define LEAD_UNDERSCORE ""
#endif


const struct filedescr _PyImport_DynLoadFiletab[] = {
#ifdef __CYGWIN__
	{".dll", "rb", C_EXTENSION},
	{"module.dll", "rb", C_EXTENSION},
#else
#if defined(PYOS_OS2) && defined(PYCC_GCC)
	{".pyd", "rb", C_EXTENSION},
	{".dll", "rb", C_EXTENSION},
#else
#ifdef __VMS
        {".exe", "rb", C_EXTENSION},
        {".EXE", "rb", C_EXTENSION},
        {"module.exe", "rb", C_EXTENSION},
        {"MODULE.EXE", "rb", C_EXTENSION},
#else
	{".so", "rb", C_EXTENSION},
	{"module.so", "rb", C_EXTENSION},
#endif
#endif
#endif
	{0, 0}
};

static struct {
	dev_t dev;
#ifdef __VMS
	ino_t ino[3];
#else
	ino_t ino;
#endif
	void *handle;
} handles[128];
static int nhandles = 0;


dl_funcptr _PyImport_GetDynLoadFunc(const char *fqname, const char *shortname,
				    const char *pathname, FILE *fp)
{
	dl_funcptr p;
	void *handle;
	char funcname[258];
	char pathbuf[260];
        int dlopenflags=0;

	if (strchr(pathname, '/') == NULL) {
		/* Prefix bare filename with "./" */
		PyOS_snprintf(pathbuf, sizeof(pathbuf), "./%-.255s", pathname);
		pathname = pathbuf;
	}

	PyOS_snprintf(funcname, sizeof(funcname), 
		      LEAD_UNDERSCORE "PyInit_%.200s", shortname);

	if (fp != NULL) {
		int i;
		struct stat statb;
		fstat(fileno(fp), &statb);
		for (i = 0; i < nhandles; i++) {
			if (statb.st_dev == handles[i].dev &&
			    statb.st_ino == handles[i].ino) {
				p = (dl_funcptr) dlsym(handles[i].handle,
						       funcname);
				return p;
			}
		}
		if (nhandles < 128) {
			handles[nhandles].dev = statb.st_dev;
#ifdef __VMS
			handles[nhandles].ino[0] = statb.st_ino[0];
			handles[nhandles].ino[1] = statb.st_ino[1];
			handles[nhandles].ino[2] = statb.st_ino[2];
#else
			handles[nhandles].ino = statb.st_ino;
#endif
		}
	}

#if !(defined(PYOS_OS2) && defined(PYCC_GCC))
        dlopenflags = PyThreadState_GET()->interp->dlopenflags;
#endif

	if (Py_VerboseFlag)
		PySys_WriteStderr("dlopen(\"%s\", %x);\n", pathname, 
				  dlopenflags);

#ifdef __VMS
	/* VMS currently don't allow a pathname, use a logical name instead */
	/* Concatenate 'python_module_' and shortname */
	/* so "import vms.bar" will use the logical python_module_bar */
	/* As C module use only one name space this is probably not a */
	/* important limitation */
	PyOS_snprintf(pathbuf, sizeof(pathbuf), "python_module_%-.200s", 
		      shortname);
	pathname = pathbuf;
#endif

	handle = dlopen(pathname, dlopenflags);

	if (handle == NULL) {
		const char *error = dlerror();
		if (error == NULL)
			error = "unknown dlopen() error";
		PyErr_SetString(PyExc_ImportError, error);
		return NULL;
	}
	if (fp != NULL && nhandles < 128)
		handles[nhandles++].handle = handle;
	p = (dl_funcptr) dlsym(handle, funcname);
	return p;
}
em = malloc(sizeof(_fmutex)); if (!initialized) PyThread_init_thread(); dprintf(("%ld: PyThread_allocate_lock() -> %lx\n", PyThread_get_thread_ident(), (long)sem)); if (_fmutex_create(sem, 0)) { free(sem); sem = NULL; } return (PyThread_type_lock)sem; #else APIRET rc; type_os2_lock lock = (type_os2_lock)malloc(sizeof(struct os2_lock_t)); dprintf(("PyThread_allocate_lock called\n")); if (!initialized) PyThread_init_thread(); lock->is_set = 0; DosCreateEventSem(NULL, &lock->changed, 0, 0); dprintf(("%ld: PyThread_allocate_lock() -> %p\n", PyThread_get_thread_ident(), lock->changed)); return (PyThread_type_lock)lock; #endif } void PyThread_free_lock(PyThread_type_lock aLock) { #if !defined(PYCC_GCC) type_os2_lock lock = (type_os2_lock)aLock; #endif dprintf(("%ld: PyThread_free_lock(%p) called\n", PyThread_get_thread_ident(),aLock)); #if defined(PYCC_GCC) if (aLock) { _fmutex_close((_fmutex *)aLock); free((_fmutex *)aLock); } #else DosCloseEventSem(lock->changed); free(aLock); #endif } /* * Return 1 on success if the lock was acquired * * and 0 if the lock was not acquired. */ int PyThread_acquire_lock(PyThread_type_lock aLock, int waitflag) { #if !defined(PYCC_GCC) int done = 0; ULONG count; PID pid = 0; TID tid = 0; type_os2_lock lock = (type_os2_lock)aLock; #endif dprintf(("%ld: PyThread_acquire_lock(%p, %d) called\n", PyThread_get_thread_ident(), aLock, waitflag)); #if defined(PYCC_GCC) /* always successful if the lock doesn't exist */ if (aLock && _fmutex_request((_fmutex *)aLock, waitflag ? 0 : _FMR_NOWAIT)) return 0; #else while (!done) { /* if the lock is currently set, we have to wait for * the state to change */ if (lock->is_set) { if (!waitflag) return 0; DosWaitEventSem(lock->changed, SEM_INDEFINITE_WAIT); } /* enter a critical section and try to get the semaphore. If * it is still locked, we will try again. */ if (DosEnterCritSec()) return 0; if (!lock->is_set) { lock->is_set = 1; DosResetEventSem(lock->changed, &count); done = 1; } DosExitCritSec(); } #endif return 1; } void PyThread_release_lock(PyThread_type_lock aLock) { #if !defined(PYCC_GCC) type_os2_lock lock = (type_os2_lock)aLock; #endif dprintf(("%ld: PyThread_release_lock(%p) called\n", PyThread_get_thread_ident(), aLock)); #if defined(PYCC_GCC) if (aLock) _fmutex_release((_fmutex *)aLock); #else if (!lock->is_set) { dprintf(("%ld: Could not PyThread_release_lock(%p) error: %l\n", PyThread_get_thread_ident(), aLock, GetLastError())); return; } if (DosEnterCritSec()) { dprintf(("%ld: Could not PyThread_release_lock(%p) error: %l\n", PyThread_get_thread_ident(), aLock, GetLastError())); return; } lock->is_set = 0; DosPostEventSem(lock->changed); DosExitCritSec(); #endif } /* minimum/maximum thread stack sizes supported */ #define THREAD_MIN_STACKSIZE 0x8000 /* 32kB */ #define THREAD_MAX_STACKSIZE 0x2000000 /* 32MB */ /* set the thread stack size. * Return 0 if size is valid, -1 otherwise. */ static int _pythread_os2_set_stacksize(size_t size) { /* set to default */ if (size == 0) { _pythread_stacksize = 0; return 0; } /* valid range? */ if (size >= THREAD_MIN_STACKSIZE && size < THREAD_MAX_STACKSIZE) { _pythread_stacksize = size; return 0; } return -1; } #define THREAD_SET_STACKSIZE(x) _pythread_os2_set_stacksize(x)