Listing the "Blender Foundation" as copyright holder implied the Blender Foundation holds copyright to files which may include work from many developers. While keeping copyright on headers makes sense for isolated libraries, Blender's own code may be refactored or moved between files in a way that makes the per file copyright holders less meaningful. Copyright references to the "Blender Foundation" have been replaced with "Blender Authors", with the exception of `./extern/` since these this contains libraries which are more isolated, any changed to license headers there can be handled on a case-by-case basis. Some directories in `./intern/` have also been excluded: - `./intern/cycles/` it's own `AUTHORS` file is planned. - `./intern/opensubdiv/`. An "AUTHORS" file has been added, using the chromium projects authors file as a template. Design task: #110784 Ref !110783.
413 lines
11 KiB
C++
413 lines
11 KiB
C++
/* SPDX-FileCopyrightText: 2023 Blender Authors
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*
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* SPDX-License-Identifier: GPL-2.0-or-later */
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/** \file
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* \ingroup bpygpu
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*
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* - Use `bpygpu_` for local API.
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* - Use `BPyGPU` for public API.
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*/
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#include <Python.h>
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#include "GPU_vertex_buffer.h"
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#include "MEM_guardedalloc.h"
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#include "../generic/py_capi_utils.h"
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#include "../generic/python_utildefines.h"
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#include "gpu_py_vertex_buffer.h" /* own include */
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#include "gpu_py_vertex_format.h"
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/* -------------------------------------------------------------------- */
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/** \name Utility Functions
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* \{ */
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#define PYGPU_AS_NATIVE_SWITCH(attr) \
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switch (attr->comp_type) { \
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case GPU_COMP_I8: { \
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PY_AS_NATIVE(int8_t, PyC_Long_AsI8); \
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break; \
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} \
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case GPU_COMP_U8: { \
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PY_AS_NATIVE(uint8_t, PyC_Long_AsU8); \
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break; \
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} \
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case GPU_COMP_I16: { \
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PY_AS_NATIVE(int16_t, PyC_Long_AsI16); \
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break; \
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} \
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case GPU_COMP_U16: { \
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PY_AS_NATIVE(uint16_t, PyC_Long_AsU16); \
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break; \
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} \
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case GPU_COMP_I32: { \
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PY_AS_NATIVE(int32_t, PyC_Long_AsI32); \
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break; \
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} \
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case GPU_COMP_U32: { \
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PY_AS_NATIVE(uint32_t, PyC_Long_AsU32); \
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break; \
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} \
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case GPU_COMP_F32: { \
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PY_AS_NATIVE(float, PyFloat_AsDouble); \
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break; \
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} \
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default: \
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BLI_assert_unreachable(); \
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break; \
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} \
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((void)0)
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/* No error checking, callers must run PyErr_Occurred */
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static void pygpu_fill_format_elem(void *data_dst_void, PyObject *py_src, const GPUVertAttr *attr)
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{
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#define PY_AS_NATIVE(ty_dst, py_as_native) \
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{ \
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ty_dst *data_dst = static_cast<ty_dst *>(data_dst_void); \
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*data_dst = py_as_native(py_src); \
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} \
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((void)0)
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PYGPU_AS_NATIVE_SWITCH(attr);
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#undef PY_AS_NATIVE
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}
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/* No error checking, callers must run PyErr_Occurred */
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static void pygpu_fill_format_sequence(void *data_dst_void,
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PyObject *py_seq_fast,
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const GPUVertAttr *attr)
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{
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const uint len = attr->comp_len;
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PyObject **value_fast_items = PySequence_Fast_ITEMS(py_seq_fast);
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/**
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* Args are constants, so range checks will be optimized out if they're no-op's.
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*/
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#define PY_AS_NATIVE(ty_dst, py_as_native) \
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ty_dst *data_dst = static_cast<ty_dst *>(data_dst_void); \
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for (uint i = 0; i < len; i++) { \
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data_dst[i] = py_as_native(value_fast_items[i]); \
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} \
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((void)0)
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PYGPU_AS_NATIVE_SWITCH(attr);
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#undef PY_AS_NATIVE
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}
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#undef PYGPU_AS_NATIVE_SWITCH
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#undef WARN_TYPE_LIMIT_PUSH
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#undef WARN_TYPE_LIMIT_POP
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static bool pygpu_vertbuf_fill_impl(GPUVertBuf *vbo,
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uint data_id,
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PyObject *seq,
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const char *error_prefix)
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{
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const char *exc_str_size_mismatch = "Expected a %s of size %d, got %u";
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bool ok = true;
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const GPUVertAttr *attr = &GPU_vertbuf_get_format(vbo)->attrs[data_id];
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uint vert_len = GPU_vertbuf_get_vertex_len(vbo);
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if (PyObject_CheckBuffer(seq)) {
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Py_buffer pybuffer;
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if (PyObject_GetBuffer(seq, &pybuffer, PyBUF_STRIDES | PyBUF_ND) == -1) {
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/* PyObject_GetBuffer raise a PyExc_BufferError */
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return false;
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}
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const uint comp_len = pybuffer.ndim == 1 ? 1 : uint(pybuffer.shape[1]);
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if (pybuffer.shape[0] != vert_len) {
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PyErr_Format(
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PyExc_ValueError, exc_str_size_mismatch, "sequence", vert_len, pybuffer.shape[0]);
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ok = false;
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}
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else if (comp_len != attr->comp_len) {
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PyErr_Format(PyExc_ValueError, exc_str_size_mismatch, "component", attr->comp_len, comp_len);
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ok = false;
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}
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else {
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GPU_vertbuf_attr_fill_stride(vbo, data_id, pybuffer.strides[0], pybuffer.buf);
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}
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PyBuffer_Release(&pybuffer);
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}
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else {
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GPUVertBufRaw data_step;
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GPU_vertbuf_attr_get_raw_data(vbo, data_id, &data_step);
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PyObject *seq_fast = PySequence_Fast(seq, "Vertex buffer fill");
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if (seq_fast == nullptr) {
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return false;
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}
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const uint seq_len = PySequence_Fast_GET_SIZE(seq_fast);
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if (seq_len != vert_len) {
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PyErr_Format(PyExc_ValueError, exc_str_size_mismatch, "sequence", vert_len, seq_len);
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}
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PyObject **seq_items = PySequence_Fast_ITEMS(seq_fast);
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if (attr->comp_len == 1) {
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for (uint i = 0; i < seq_len; i++) {
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uchar *data = (uchar *)GPU_vertbuf_raw_step(&data_step);
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PyObject *item = seq_items[i];
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pygpu_fill_format_elem(data, item, attr);
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}
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}
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else {
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for (uint i = 0; i < seq_len; i++) {
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uchar *data = (uchar *)GPU_vertbuf_raw_step(&data_step);
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PyObject *seq_fast_item = PySequence_Fast(seq_items[i], error_prefix);
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if (seq_fast_item == nullptr) {
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ok = false;
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goto finally;
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}
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if (PySequence_Fast_GET_SIZE(seq_fast_item) != attr->comp_len) {
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PyErr_Format(PyExc_ValueError,
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exc_str_size_mismatch,
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"sequence",
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attr->comp_len,
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PySequence_Fast_GET_SIZE(seq_fast_item));
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ok = false;
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Py_DECREF(seq_fast_item);
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goto finally;
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}
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/* May trigger error, check below */
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pygpu_fill_format_sequence(data, seq_fast_item, attr);
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Py_DECREF(seq_fast_item);
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}
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}
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if (PyErr_Occurred()) {
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ok = false;
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}
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finally:
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Py_DECREF(seq_fast);
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}
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return ok;
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}
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static int pygpu_vertbuf_fill(GPUVertBuf *buf,
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int id,
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PyObject *py_seq_data,
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const char *error_prefix)
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{
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if (id < 0 || id >= GPU_vertbuf_get_format(buf)->attr_len) {
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PyErr_Format(PyExc_ValueError, "Format id %d out of range", id);
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return 0;
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}
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if (GPU_vertbuf_get_data(buf) == nullptr) {
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PyErr_SetString(PyExc_ValueError, "Can't fill, static buffer already in use");
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return 0;
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}
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if (!pygpu_vertbuf_fill_impl(buf, uint(id), py_seq_data, error_prefix)) {
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return 0;
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}
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return 1;
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}
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/** \} */
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/* -------------------------------------------------------------------- */
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/** \name VertBuf Type
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* \{ */
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static PyObject *pygpu_vertbuf__tp_new(PyTypeObject * /*type*/, PyObject *args, PyObject *kwds)
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{
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struct {
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PyObject *py_fmt;
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uint len;
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} params;
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static const char *_keywords[] = {"format", "len", nullptr};
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static _PyArg_Parser _parser = {
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"O!" /* `format` */
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"I" /* `len` */
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":GPUVertBuf.__new__",
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_keywords,
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nullptr,
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};
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if (!_PyArg_ParseTupleAndKeywordsFast(
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args, kwds, &_parser, &BPyGPUVertFormat_Type, ¶ms.py_fmt, ¶ms.len))
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{
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return nullptr;
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}
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const GPUVertFormat *fmt = &((BPyGPUVertFormat *)params.py_fmt)->fmt;
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GPUVertBuf *vbo = GPU_vertbuf_create_with_format(fmt);
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GPU_vertbuf_data_alloc(vbo, params.len);
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return BPyGPUVertBuf_CreatePyObject(vbo);
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}
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PyDoc_STRVAR(pygpu_vertbuf_attr_fill_doc,
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".. method:: attr_fill(id, data)\n"
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"\n"
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" Insert data into the buffer for a single attribute.\n"
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"\n"
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" :arg id: Either the name or the id of the attribute.\n"
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" :type id: int or str\n"
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" :arg data: Sequence of data that should be stored in the buffer\n"
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" :type data: sequence of floats, ints, vectors or matrices\n");
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static PyObject *pygpu_vertbuf_attr_fill(BPyGPUVertBuf *self, PyObject *args, PyObject *kwds)
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{
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PyObject *data;
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PyObject *identifier;
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static const char *_keywords[] = {"id", "data", nullptr};
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static _PyArg_Parser _parser = {
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"O" /* `id` */
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"O" /* `data` */
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":attr_fill",
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_keywords,
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nullptr,
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};
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if (!_PyArg_ParseTupleAndKeywordsFast(args, kwds, &_parser, &identifier, &data)) {
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return nullptr;
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}
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int id;
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if (PyLong_Check(identifier)) {
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id = PyLong_AsLong(identifier);
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}
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else if (PyUnicode_Check(identifier)) {
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const GPUVertFormat *format = GPU_vertbuf_get_format(self->buf);
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const char *name = PyUnicode_AsUTF8(identifier);
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id = GPU_vertformat_attr_id_get(format, name);
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if (id == -1) {
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PyErr_Format(PyExc_ValueError, "Unknown attribute '%s'", name);
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return nullptr;
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}
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}
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else {
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PyErr_SetString(PyExc_TypeError, "expected int or str type as identifier");
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return nullptr;
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}
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if (!pygpu_vertbuf_fill(self->buf, id, data, "GPUVertBuf.attr_fill")) {
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return nullptr;
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}
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Py_RETURN_NONE;
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}
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#if (defined(__GNUC__) && !defined(__clang__))
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# pragma GCC diagnostic push
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# pragma GCC diagnostic ignored "-Wcast-function-type"
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#endif
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static PyMethodDef pygpu_vertbuf__tp_methods[] = {
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{"attr_fill",
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(PyCFunction)pygpu_vertbuf_attr_fill,
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METH_VARARGS | METH_KEYWORDS,
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pygpu_vertbuf_attr_fill_doc},
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{nullptr, nullptr, 0, nullptr},
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};
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#if (defined(__GNUC__) && !defined(__clang__))
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# pragma GCC diagnostic pop
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#endif
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static void pygpu_vertbuf__tp_dealloc(BPyGPUVertBuf *self)
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{
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GPU_vertbuf_discard(self->buf);
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Py_TYPE(self)->tp_free(self);
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}
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PyDoc_STRVAR(pygpu_vertbuf__tp_doc,
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".. class:: GPUVertBuf(format, len)\n"
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"\n"
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" Contains a VBO.\n"
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"\n"
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" :arg format: Vertex format.\n"
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" :type format: :class:`gpu.types.GPUVertFormat`\n"
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" :arg len: Amount of vertices that will fit into this buffer.\n"
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" :type len: int\n");
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PyTypeObject BPyGPUVertBuf_Type = {
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/*ob_base*/ PyVarObject_HEAD_INIT(nullptr, 0)
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/*tp_name*/ "GPUVertBuf",
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/*tp_basicsize*/ sizeof(BPyGPUVertBuf),
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/*tp_itemsize*/ 0,
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/*tp_dealloc*/ (destructor)pygpu_vertbuf__tp_dealloc,
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/*tp_vectorcall_offset*/ 0,
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/*tp_getattr*/ nullptr,
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/*tp_setattr*/ nullptr,
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/*tp_as_async*/ nullptr,
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/*tp_repr*/ nullptr,
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/*tp_as_number*/ nullptr,
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/*tp_as_sequence*/ nullptr,
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/*tp_as_mapping*/ nullptr,
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/*tp_hash*/ nullptr,
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/*tp_call*/ nullptr,
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/*tp_str*/ nullptr,
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/*tp_getattro*/ nullptr,
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/*tp_setattro*/ nullptr,
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/*tp_as_buffer*/ nullptr,
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/*tp_flags*/ Py_TPFLAGS_DEFAULT,
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/*tp_doc*/ pygpu_vertbuf__tp_doc,
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/*tp_traverse*/ nullptr,
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/*tp_clear*/ nullptr,
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/*tp_richcompare*/ nullptr,
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/*tp_weaklistoffset*/ 0,
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/*tp_iter*/ nullptr,
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/*tp_iternext*/ nullptr,
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/*tp_methods*/ pygpu_vertbuf__tp_methods,
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/*tp_members*/ nullptr,
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/*tp_getset*/ nullptr,
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/*tp_base*/ nullptr,
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/*tp_dict*/ nullptr,
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/*tp_descr_get*/ nullptr,
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/*tp_descr_set*/ nullptr,
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/*tp_dictoffset*/ 0,
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/*tp_init*/ nullptr,
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/*tp_alloc*/ nullptr,
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/*tp_new*/ pygpu_vertbuf__tp_new,
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/*tp_free*/ nullptr,
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/*tp_is_gc*/ nullptr,
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/*tp_bases*/ nullptr,
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/*tp_mro*/ nullptr,
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/*tp_cache*/ nullptr,
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/*tp_subclasses*/ nullptr,
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/*tp_weaklist*/ nullptr,
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/*tp_del*/ nullptr,
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/*tp_version_tag*/ 0,
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/*tp_finalize*/ nullptr,
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/*tp_vectorcall*/ nullptr,
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};
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/** \} */
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/* -------------------------------------------------------------------- */
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/** \name Public API
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* \{ */
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PyObject *BPyGPUVertBuf_CreatePyObject(GPUVertBuf *buf)
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{
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BPyGPUVertBuf *self;
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self = PyObject_New(BPyGPUVertBuf, &BPyGPUVertBuf_Type);
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self->buf = buf;
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return (PyObject *)self;
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}
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/** \} */
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