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0cb96de269
(1) Use PyErr_NewException("module.class", NULL, NULL) to create the exception object. (2) Remove all calls to Py_FatalError(); instead, return or ignore the errors -- the import code now checks PyErr_Occurred() after calling a module's init function, so it's no longer a fatal error for the initialization to fail. Also did some small cleanups, e.g. removed unnecessary test for "already initialized" from initfpectl(), and unified initposix()/initnt(). I haven't checked this very thoroughly, so while the changes are pretty trivial -- beware of untested code!
515 lines
12 KiB
C
515 lines
12 KiB
C
/***********************************************************
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Copyright 1991-1995 by Stichting Mathematisch Centrum, Amsterdam,
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The Netherlands.
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All Rights Reserved
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Permission to use, copy, modify, and distribute this software and its
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documentation for any purpose and without fee is hereby granted,
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provided that the above copyright notice appear in all copies and that
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both that copyright notice and this permission notice appear in
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supporting documentation, and that the names of Stichting Mathematisch
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Centrum or CWI or Corporation for National Research Initiatives or
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CNRI not be used in advertising or publicity pertaining to
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distribution of the software without specific, written prior
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permission.
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While CWI is the initial source for this software, a modified version
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is made available by the Corporation for National Research Initiatives
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(CNRI) at the Internet address ftp://ftp.python.org.
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STICHTING MATHEMATISCH CENTRUM AND CNRI DISCLAIM ALL WARRANTIES WITH
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REGARD TO THIS SOFTWARE, INCLUDING ALL IMPLIED WARRANTIES OF
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MERCHANTABILITY AND FITNESS, IN NO EVENT SHALL STICHTING MATHEMATISCH
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CENTRUM OR CNRI BE LIABLE FOR ANY SPECIAL, INDIRECT OR CONSEQUENTIAL
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DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR
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PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER
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TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
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PERFORMANCE OF THIS SOFTWARE.
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******************************************************************/
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/* Sad objects */
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#include "Python.h"
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#include "structmember.h"
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#ifdef HAVE_SYS_AUDIOIO_H
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#define SOLARIS
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#endif
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#ifdef HAVE_UNISTD_H
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#include <unistd.h>
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#endif
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#ifdef HAVE_FCNTL_H
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#include <fcntl.h>
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#endif
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#include <stropts.h>
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#include <sys/ioctl.h>
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#ifdef SOLARIS
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#include <sys/audioio.h>
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#else
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#include <sun/audioio.h>
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#endif
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/* #define offsetof(str,mem) ((int)(((str *)0)->mem)) */
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typedef struct {
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PyObject_HEAD
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int x_fd; /* The open file */
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int x_icount; /* # samples read */
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int x_ocount; /* # samples written */
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int x_isctl; /* True if control device */
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} sadobject;
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typedef struct {
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PyObject_HEAD
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audio_info_t ai;
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} sadstatusobject;
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staticforward PyTypeObject Sadtype;
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staticforward PyTypeObject Sadstatustype;
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static sadstatusobject *sads_alloc(); /* Forward */
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static PyObject *SunAudioError;
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#define is_sadobject(v) ((v)->ob_type == &Sadtype)
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#define is_sadstatusobject(v) ((v)->ob_type == &Sadstatustype)
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static sadobject *
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newsadobject(arg)
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PyObject *arg;
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{
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sadobject *xp;
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int fd;
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char *mode;
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int imode;
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/* Check arg for r/w/rw */
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if (!PyArg_Parse(arg, "s", &mode))
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return NULL;
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if (strcmp(mode, "r") == 0)
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imode = 0;
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else if (strcmp(mode, "w") == 0)
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imode = 1;
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else if (strcmp(mode, "rw") == 0)
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imode = 2;
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else if (strcmp(mode, "control") == 0)
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imode = -1;
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else {
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PyErr_SetString(SunAudioError,
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"Mode should be one of 'r', 'w', 'rw' or 'control'");
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return NULL;
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}
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/* Open the correct device */
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if (imode < 0)
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/* XXXX Check that this works */
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fd = open("/dev/audioctl", 2);
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else
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fd = open("/dev/audio", imode);
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if (fd < 0) {
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PyErr_SetFromErrno(SunAudioError);
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return NULL;
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}
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/* Create and initialize the object */
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xp = PyObject_NEW(sadobject, &Sadtype);
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if (xp == NULL) {
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close(fd);
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return NULL;
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}
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xp->x_fd = fd;
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xp->x_icount = xp->x_ocount = 0;
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xp->x_isctl = (imode < 0);
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return xp;
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}
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/* Sad methods */
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static void
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sad_dealloc(xp)
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sadobject *xp;
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{
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close(xp->x_fd);
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PyMem_DEL(xp);
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}
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static PyObject *
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sad_read(self, args)
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sadobject *self;
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PyObject *args;
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{
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int size, count;
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char *cp;
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PyObject *rv;
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if (!PyArg_Parse(args, "i", &size))
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return NULL;
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rv = PyString_FromStringAndSize(NULL, size);
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if (rv == NULL)
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return NULL;
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if (!(cp = PyString_AsString(rv)))
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goto finally;
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count = read(self->x_fd, cp, size);
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if (count < 0) {
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PyErr_SetFromErrno(SunAudioError);
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goto finally;
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}
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#if 0
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/* TBD: why print this message if you can handle the condition?
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* assume it's debugging info which we can just as well get rid
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* of. in any case this message should *not* be using printf!
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*/
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if (count != size)
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printf("sunaudio: funny read rv %d wtd %d\n", count, size);
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#endif
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self->x_icount += count;
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return rv;
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finally:
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Py_DECREF(rv);
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return NULL;
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}
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static PyObject *
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sad_write(self, args)
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sadobject *self;
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PyObject *args;
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{
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char *cp;
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int count, size;
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if (!PyArg_Parse(args, "s#", &cp, &size))
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return NULL;
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count = write(self->x_fd, cp, size);
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if (count < 0) {
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PyErr_SetFromErrno(SunAudioError);
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return NULL;
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}
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#if 0
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if (count != size)
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printf("sunaudio: funny write rv %d wanted %d\n", count, size);
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#endif
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self->x_ocount += count;
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Py_INCREF(Py_None);
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return Py_None;
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}
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static PyObject *
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sad_getinfo(self, args)
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sadobject *self;
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PyObject *args;
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{
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sadstatusobject *rv;
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if (!PyArg_Parse(args, ""))
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return NULL;
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if (!(rv = sads_alloc()))
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return NULL;
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if (ioctl(self->x_fd, AUDIO_GETINFO, &rv->ai) < 0) {
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PyErr_SetFromErrno(SunAudioError);
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Py_DECREF(rv);
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return NULL;
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}
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return (PyObject *)rv;
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}
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static PyObject *
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sad_setinfo(self, arg)
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sadobject *self;
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sadstatusobject *arg;
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{
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if (!is_sadstatusobject(arg)) {
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PyErr_SetString(PyExc_TypeError,
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"Must be sun audio status object");
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return NULL;
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}
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if (ioctl(self->x_fd, AUDIO_SETINFO, &arg->ai) < 0) {
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PyErr_SetFromErrno(SunAudioError);
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return NULL;
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}
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Py_INCREF(Py_None);
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return Py_None;
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}
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static PyObject *
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sad_ibufcount(self, args)
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sadobject *self;
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PyObject *args;
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{
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audio_info_t ai;
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if (!PyArg_Parse(args, ""))
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return NULL;
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if (ioctl(self->x_fd, AUDIO_GETINFO, &ai) < 0) {
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PyErr_SetFromErrno(SunAudioError);
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return NULL;
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}
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return PyInt_FromLong(ai.record.samples - self->x_icount);
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}
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static PyObject *
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sad_obufcount(self, args)
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sadobject *self;
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PyObject *args;
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{
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audio_info_t ai;
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if (!PyArg_Parse(args, ""))
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return NULL;
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if (ioctl(self->x_fd, AUDIO_GETINFO, &ai) < 0) {
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PyErr_SetFromErrno(SunAudioError);
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return NULL;
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}
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/* x_ocount is in bytes, wheras play.samples is in frames */
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/* we want frames */
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return PyInt_FromLong(self->x_ocount / (ai.play.channels *
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ai.play.precision / 8) -
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ai.play.samples);
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}
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static PyObject *
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sad_drain(self, args)
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sadobject *self;
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PyObject *args;
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{
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if (!PyArg_Parse(args, ""))
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return NULL;
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if (ioctl(self->x_fd, AUDIO_DRAIN, 0) < 0) {
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PyErr_SetFromErrno(SunAudioError);
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return NULL;
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}
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Py_INCREF(Py_None);
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return Py_None;
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}
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#ifdef SOLARIS
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static PyObject *
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sad_getdev(self, args)
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sadobject *self;
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PyObject *args;
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{
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struct audio_device ad;
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if (!PyArg_Parse(args, ""))
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return NULL;
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if (ioctl(self->x_fd, AUDIO_GETDEV, &ad) < 0) {
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PyErr_SetFromErrno(SunAudioError);
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return NULL;
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}
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return Py_BuildValue("(sss)", ad.name, ad.version, ad.config);
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}
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#endif
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static PyObject *
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sad_flush(self, args)
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sadobject *self;
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PyObject *args;
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{
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if (!PyArg_Parse(args, ""))
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return NULL;
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if (ioctl(self->x_fd, I_FLUSH, FLUSHW) < 0) {
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PyErr_SetFromErrno(SunAudioError);
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return NULL;
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}
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Py_INCREF(Py_None);
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return Py_None;
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}
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static PyObject *
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sad_close(self, args)
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sadobject *self;
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PyObject *args;
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{
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if (!PyArg_Parse(args, ""))
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return NULL;
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if (self->x_fd >= 0) {
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close(self->x_fd);
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self->x_fd = -1;
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}
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Py_INCREF(Py_None);
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return Py_None;
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}
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static PyMethodDef sad_methods[] = {
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{ "read", (PyCFunction)sad_read },
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{ "write", (PyCFunction)sad_write },
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{ "ibufcount", (PyCFunction)sad_ibufcount },
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{ "obufcount", (PyCFunction)sad_obufcount },
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#define CTL_METHODS 4
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{ "getinfo", (PyCFunction)sad_getinfo },
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{ "setinfo", (PyCFunction)sad_setinfo },
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{ "drain", (PyCFunction)sad_drain },
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{ "flush", (PyCFunction)sad_flush },
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#ifdef SOLARIS
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{ "getdev", (PyCFunction)sad_getdev },
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#endif
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{ "close", (PyCFunction)sad_close },
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{NULL, NULL} /* sentinel */
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};
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static PyObject *
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sad_getattr(xp, name)
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sadobject *xp;
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char *name;
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{
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if (xp->x_isctl)
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return Py_FindMethod(sad_methods+CTL_METHODS,
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(PyObject *)xp, name);
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else
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return Py_FindMethod(sad_methods, (PyObject *)xp, name);
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}
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/* ----------------------------------------------------------------- */
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static sadstatusobject *
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sads_alloc() {
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return PyObject_NEW(sadstatusobject, &Sadstatustype);
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}
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static void
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sads_dealloc(xp)
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sadstatusobject *xp;
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{
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PyMem_DEL(xp);
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}
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#define OFF(x) offsetof(audio_info_t,x)
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static struct memberlist sads_ml[] = {
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{ "i_sample_rate", T_UINT, OFF(record.sample_rate) },
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{ "i_channels", T_UINT, OFF(record.channels) },
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{ "i_precision", T_UINT, OFF(record.precision) },
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{ "i_encoding", T_UINT, OFF(record.encoding) },
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{ "i_gain", T_UINT, OFF(record.gain) },
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{ "i_port", T_UINT, OFF(record.port) },
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{ "i_samples", T_UINT, OFF(record.samples) },
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{ "i_eof", T_UINT, OFF(record.eof) },
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{ "i_pause", T_UBYTE, OFF(record.pause) },
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{ "i_error", T_UBYTE, OFF(record.error) },
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{ "i_waiting", T_UBYTE, OFF(record.waiting) },
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{ "i_open", T_UBYTE, OFF(record.open) , RO},
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{ "i_active", T_UBYTE, OFF(record.active) , RO},
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#ifdef SOLARIS
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{ "i_buffer_size", T_UINT, OFF(record.buffer_size) },
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{ "i_balance", T_UBYTE, OFF(record.balance) },
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{ "i_avail_ports", T_UINT, OFF(record.avail_ports) },
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#endif
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{ "o_sample_rate", T_UINT, OFF(play.sample_rate) },
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{ "o_channels", T_UINT, OFF(play.channels) },
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{ "o_precision", T_UINT, OFF(play.precision) },
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{ "o_encoding", T_UINT, OFF(play.encoding) },
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{ "o_gain", T_UINT, OFF(play.gain) },
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{ "o_port", T_UINT, OFF(play.port) },
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{ "o_samples", T_UINT, OFF(play.samples) },
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{ "o_eof", T_UINT, OFF(play.eof) },
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{ "o_pause", T_UBYTE, OFF(play.pause) },
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{ "o_error", T_UBYTE, OFF(play.error) },
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{ "o_waiting", T_UBYTE, OFF(play.waiting) },
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{ "o_open", T_UBYTE, OFF(play.open) , RO},
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{ "o_active", T_UBYTE, OFF(play.active) , RO},
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#ifdef SOLARIS
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{ "o_buffer_size", T_UINT, OFF(play.buffer_size) },
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{ "o_balance", T_UBYTE, OFF(play.balance) },
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{ "o_avail_ports", T_UINT, OFF(play.avail_ports) },
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#endif
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{ "monitor_gain", T_UINT, OFF(monitor_gain) },
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{ NULL, 0, 0},
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};
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static PyObject *
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sads_getattr(xp, name)
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sadstatusobject *xp;
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char *name;
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{
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return PyMember_Get((char *)&xp->ai, sads_ml, name);
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}
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static int
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sads_setattr(xp, name, v)
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sadstatusobject *xp;
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char *name;
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PyObject *v;
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{
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if (v == NULL) {
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PyErr_SetString(PyExc_TypeError,
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"can't delete sun audio status attributes");
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return -1;
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}
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return PyMember_Set((char *)&xp->ai, sads_ml, name, v);
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}
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/* ------------------------------------------------------------------- */
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static PyTypeObject Sadtype = {
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PyObject_HEAD_INIT(&PyType_Type)
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0, /*ob_size*/
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"sun_audio_device", /*tp_name*/
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sizeof(sadobject), /*tp_size*/
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0, /*tp_itemsize*/
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/* methods */
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(destructor)sad_dealloc, /*tp_dealloc*/
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0, /*tp_print*/
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(getattrfunc)sad_getattr, /*tp_getattr*/
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0, /*tp_setattr*/
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0, /*tp_compare*/
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0, /*tp_repr*/
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};
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static PyTypeObject Sadstatustype = {
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PyObject_HEAD_INIT(&PyType_Type)
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0, /*ob_size*/
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"sun_audio_device_status", /*tp_name*/
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sizeof(sadstatusobject), /*tp_size*/
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0, /*tp_itemsize*/
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/* methods */
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(destructor)sads_dealloc, /*tp_dealloc*/
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0, /*tp_print*/
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(getattrfunc)sads_getattr, /*tp_getattr*/
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(setattrfunc)sads_setattr, /*tp_setattr*/
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0, /*tp_compare*/
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0, /*tp_repr*/
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};
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/* ------------------------------------------------------------------- */
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static PyObject *
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sadopen(self, args)
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PyObject *self;
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PyObject *args;
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{
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return (PyObject *)newsadobject(args);
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}
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static PyMethodDef sunaudiodev_methods[] = {
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{ "open", sadopen },
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{ 0, 0 },
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};
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void
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initsunaudiodev()
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{
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PyObject *m, *d;
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m = Py_InitModule("sunaudiodev", sunaudiodev_methods);
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d = PyModule_GetDict(m);
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SunAudioError = PyErr_NewException("sunaudiodev.error", NULL, NULL);
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if (SunAudioError)
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PyDict_SetItemString(d, "error", SunAudioError);
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}
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