forked from auracaster/pyalsaaudio
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2 Commits
larsimmisc
...
main
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b3d11582e0 | ||
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2a2fa8f742 |
@@ -46,14 +46,9 @@ First, get the sources and change to the source directory:
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$ cd pyalsaaudio
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$ cd pyalsaaudio
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```
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```
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Then, build:
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Then, build and install:
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```
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```
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$ python setup.py build
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$ pip install .
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```
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And install:
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```
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$ sudo python setup.py install
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```
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```
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# Using the API
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# Using the API
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@@ -1,28 +1,18 @@
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# Make a new release
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# Make a new release
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Update the version in setup.py
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Create and push a tag naming the version (i.e. 0.11.1):
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pyalsa_version = '0.9.0'
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git tag 0.11.1
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git push origin 0.11.1
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Commit and push the update.
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This should trigger a build via a github actions and publish pre-built binaries to pypi.org
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Create and push a tag naming the version (i.e. 0.9.0):
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git tag 0.9.0
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git push origin 0.9.0
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Create the package:
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python3 setup.py sdist
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Upload the package
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twine upload dist/*
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Don't forget to update the documentation.
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# Publish the documentation
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# Publish the documentation
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All commits to main should trigger a rebuild of the documentation.
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## Historical background
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The documentation is published through the `gh-pages` branch.
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The documentation is published through the `gh-pages` branch.
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To publish the documentation, you need to clone the `gh-pages` branch of this repository into
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To publish the documentation, you need to clone the `gh-pages` branch of this repository into
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@@ -86,11 +86,7 @@ ship with ALSA kernels.
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To install, execute the following: --- ::
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To install, execute the following: --- ::
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$ python setup.py build
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$ pip install .
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And then as root: --- ::
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# python setup.py install
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*******
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*******
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109
src/alsaaudio.c
109
src/alsaaudio.c
@@ -1448,6 +1448,114 @@ alsapcm_read(alsapcm_t *self, PyObject *args)
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return tuple_obj;
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return tuple_obj;
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}
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}
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static PyObject *
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alsapcm_read_sw(alsapcm_t *self, PyObject *args)
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{
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snd_pcm_state_t state;
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int res;
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int max_frames_to_read;
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int size;
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int sizeout = 0;
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PyObject *buffer_obj, *tuple_obj, *res_obj;
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char *buffer;
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if (!PyArg_ParseTuple(args,"i:read_sw", &max_frames_to_read))
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return NULL;
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if (!self->handle) {
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PyErr_SetString(ALSAAudioError, "PCM device is closed");
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return NULL;
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}
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if (self->pcmtype != SND_PCM_STREAM_CAPTURE)
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{
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PyErr_Format(ALSAAudioError, "Cannot read from playback PCM [%s]",
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self->cardname);
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return NULL;
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}
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size = self->framesize * max_frames_to_read;
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#if PY_MAJOR_VERSION < 3
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buffer_obj = PyString_FromStringAndSize(NULL, size);
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if (!buffer_obj)
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return NULL;
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buffer = PyString_AS_STRING(buffer_obj);
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#else
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buffer_obj = PyBytes_FromStringAndSize(NULL, size);
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if (!buffer_obj)
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return NULL;
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buffer = PyBytes_AS_STRING(buffer_obj);
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#endif
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// After drop() and drain(), we need to prepare the stream again.
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// Note that fresh streams are already prepared by snd_pcm_hw_params().
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state = snd_pcm_state(self->handle);
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if ((state != SND_PCM_STATE_SETUP) ||
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!(res = snd_pcm_prepare(self->handle))) {
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Py_BEGIN_ALLOW_THREADS
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res = snd_pcm_readi(self->handle, buffer, max_frames_to_read);
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Py_END_ALLOW_THREADS
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if (res == -EPIPE) {
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// This means buffer overrun, which we need to report.
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// However, we recover the stream, so the next PCM.read() will work
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// again. If recovery fails (very unlikely), report that instead.
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if (!(res = snd_pcm_prepare(self->handle)))
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res = -EPIPE;
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}
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}
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if (res != -EPIPE)
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{
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if (res == -EAGAIN)
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{
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res = 0;
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}
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else if (res < 0) {
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PyErr_Format(ALSAAudioError, "%s [%s]", snd_strerror(res),
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self->cardname);
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Py_DECREF(buffer_obj);
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return NULL;
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}
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else
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{
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sizeout = res * self->framesize;
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}
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}
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if (size != sizeout) {
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#if PY_MAJOR_VERSION < 3
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/* If the following fails, it will free the object */
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if (_PyString_Resize(&buffer_obj, sizeout))
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return NULL;
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#else
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/* If the following fails, it will free the object */
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if (_PyBytes_Resize(&buffer_obj, sizeout))
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return NULL;
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#endif
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}
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res_obj = PyLong_FromLong(res);
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if (!res_obj) {
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Py_DECREF(buffer_obj);
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return NULL;
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}
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tuple_obj = PyTuple_New(2);
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if (!tuple_obj) {
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Py_DECREF(buffer_obj);
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Py_DECREF(res_obj);
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return NULL;
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}
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/* Steal reference counts */
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PyTuple_SET_ITEM(tuple_obj, 0, res_obj);
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PyTuple_SET_ITEM(tuple_obj, 1, buffer_obj);
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return tuple_obj;
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}
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static PyObject *alsapcm_write(alsapcm_t *self, PyObject *args)
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static PyObject *alsapcm_write(alsapcm_t *self, PyObject *args)
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{
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{
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int datalen;
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int datalen;
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@@ -1767,6 +1875,7 @@ static PyMethodDef alsapcm_methods[] = {
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{"getratebounds", (PyCFunction)alsapcm_getratemaxmin, METH_VARARGS},
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{"getratebounds", (PyCFunction)alsapcm_getratemaxmin, METH_VARARGS},
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{"getrates", (PyCFunction)alsapcm_getrates, METH_VARARGS},
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{"getrates", (PyCFunction)alsapcm_getrates, METH_VARARGS},
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{"read", (PyCFunction)alsapcm_read, METH_VARARGS},
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{"read", (PyCFunction)alsapcm_read, METH_VARARGS},
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{"read_sw", (PyCFunction)alsapcm_read_sw, METH_VARARGS},
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{"write", (PyCFunction)alsapcm_write, METH_VARARGS},
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{"write", (PyCFunction)alsapcm_write, METH_VARARGS},
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{"avail", (PyCFunction)alsapcm_avail, METH_VARARGS},
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{"avail", (PyCFunction)alsapcm_avail, METH_VARARGS},
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{"pause", (PyCFunction)alsapcm_pause, METH_VARARGS},
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{"pause", (PyCFunction)alsapcm_pause, METH_VARARGS},
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