408 lines
18 KiB
C
408 lines
18 KiB
C
/* ----------------------------------------------------------------------
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* Project: CMSIS DSP Python Wrapper
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* Title: cmsismodule.c
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* Description: C code for the CMSIS-DSP Python wrapper
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*
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* $Date: 25. March 2019
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* $Revision: V0.0.1
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*
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* Target Processor: Cortex-M cores
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* -------------------------------------------------------------------- */
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/*
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* Copyright (C) 2010-2019 ARM Limited or its affiliates. All rights reserved.
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*
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* SPDX-License-Identifier: Apache-2.0
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*
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* Licensed under the Apache License, Version 2.0 (the License); you may
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* not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an AS IS BASIS, WITHOUT
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* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#define NPY_NO_DEPRECATED_API NPY_1_15_API_VERSION
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#ifdef WIN
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#pragma warning( disable : 4013 )
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#pragma warning( disable : 4244 )
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#endif
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#include <Python.h>
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#define MAX(A,B) (A) < (B) ? (B) : (A)
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#define CAT1(A,B) A##B
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#define CAT(A,B) CAT1(A,B)
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#ifdef CMSISDSP
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#include "arm_math.h"
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#define MODNAME "cmsisdsp"
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#define MODINITNAME cmsisdsp
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#endif
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#include <numpy/arrayobject.h>
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#include <numpy/ndarraytypes.h>
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#if PY_MAJOR_VERSION >= 3
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#define IS_PY3K
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#endif
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struct module_state {
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PyObject *error;
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};
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#if PY_MAJOR_VERSION >= 3
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#define GETSTATE(m) ((struct module_state*)PyModule_GetState(m))
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#else
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#define GETSTATE(m) (&_state)
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static struct module_state _state;
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#endif
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static PyObject *
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error_out(PyObject *m) {
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struct module_state *st = GETSTATE(m);
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PyErr_SetString(st->error, "something bad happened");
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return NULL;
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}
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#define MLTYPE(name,thenewfunc,deallocfunc,initfunc,methods)\
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static PyTypeObject ml_##name##Type = { \
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PyVarObject_HEAD_INIT(NULL, 0) \
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.tp_name=MODNAME".##name", \
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.tp_basicsize = sizeof(ml_##name##Object), \
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.tp_itemsize = 0, \
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.tp_dealloc = (destructor)deallocfunc, \
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.tp_flags = Py_TPFLAGS_DEFAULT, \
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.tp_doc = #name, \
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.tp_init = (initproc)initfunc, \
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.tp_new = (newfunc)thenewfunc, \
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.tp_methods = methods \
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};
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#define MEMCPY(DST,SRC,NB,FORMAT) \
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for(memCpyIndex = 0; memCpyIndex < (NB) ; memCpyIndex++)\
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{ \
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(DST)[memCpyIndex] = (FORMAT)(SRC)[memCpyIndex]; \
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}
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#define GETFIELD(NAME,FIELD,FORMAT) \
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static PyObject * \
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Method_##NAME##_##FIELD(ml_##NAME##Object *self, PyObject *ignored)\
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{ \
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return(Py_BuildValue(FORMAT,self->instance->FIELD)); \
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}
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#define GETFIELDARRAY(NAME,FIELD,FORMAT) \
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static PyObject * \
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Method_##NAME##_##FIELD(ml_##NAME##Object *self, PyObject *ignored)\
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{ \
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return(specific_##NAME##_##FIELD(self->instance)); \
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}
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#define INITARRAYFIELD(FIELD,FORMAT,SRCFORMAT,DSTFORMAT) \
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if (FIELD) \
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{ \
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PyArray_Descr *desct=PyArray_DescrFromType(FORMAT); \
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PyArrayObject *FIELD##c = (PyArrayObject *)PyArray_FromAny(FIELD,desct,\
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1,0,NPY_ARRAY_C_CONTIGUOUS | NPY_ARRAY_ALIGNED | NPY_ARRAY_FORCECAST, \
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NULL); \
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if (FIELD##c) \
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{ \
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uint32_t memCpyIndex; \
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SRCFORMAT *f=(SRCFORMAT*)PyArray_DATA(FIELD##c); \
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uint32_t n = PyArray_SIZE(FIELD##c); \
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self->instance->FIELD =PyMem_Malloc(sizeof(DSTFORMAT)*n); \
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MEMCPY(self->instance->FIELD ,f,n,DSTFORMAT); \
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Py_DECREF(FIELD##c); \
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} \
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}
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#define GETCARRAY(PYVAR,CVAR,FORMAT,SRCFORMAT,DSTFORMAT) \
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if (PYVAR) \
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{ \
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PyArray_Descr *desct=PyArray_DescrFromType(FORMAT); \
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PyArrayObject *PYVAR##c = (PyArrayObject *)PyArray_FromAny(PYVAR,desct,\
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1,0,NPY_ARRAY_C_CONTIGUOUS | NPY_ARRAY_ALIGNED | NPY_ARRAY_FORCECAST, \
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NULL); \
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if (PYVAR##c) \
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{ \
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uint32_t memCpyIndex; \
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SRCFORMAT *f=(SRCFORMAT*)PyArray_DATA(PYVAR##c); \
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uint32_t n = PyArray_SIZE(PYVAR##c); \
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CVAR =PyMem_Malloc(sizeof(DSTFORMAT)*n); \
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MEMCPY(CVAR ,f,n,DSTFORMAT); \
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Py_DECREF(PYVAR##c); \
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} \
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}
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#define GETARGUMENT(FIELD,FORMAT,SRCFORMAT,DSTFORMAT) \
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uint32_t arraySize##FIELD=0; \
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if (FIELD) \
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{ \
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PyArray_Descr *desct=PyArray_DescrFromType(FORMAT); \
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PyArrayObject *FIELD##c = (PyArrayObject *)PyArray_FromAny(FIELD,desct, \
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1,0,NPY_ARRAY_C_CONTIGUOUS | NPY_ARRAY_ALIGNED | NPY_ARRAY_FORCECAST, \
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NULL); \
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if (FIELD##c) \
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{ \
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uint32_t memCpyIndex; \
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SRCFORMAT *f=(SRCFORMAT*)PyArray_DATA(FIELD##c); \
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arraySize##FIELD = PyArray_SIZE(FIELD##c); \
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FIELD##_converted =PyMem_Malloc(sizeof(DSTFORMAT)*arraySize##FIELD);\
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MEMCPY(FIELD##_converted ,f,arraySize##FIELD,DSTFORMAT); \
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Py_DECREF(FIELD##c); \
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} \
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}
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#define FREEARGUMENT(FIELD) \
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PyMem_Free(FIELD)
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#ifdef IS_PY3K
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#define ADDTYPE(name) \
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if (PyType_Ready(&ml_##name##Type) < 0) \
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return; \
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\
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Py_INCREF(&ml_##name##Type); \
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PyModule_AddObject(module, #name, (PyObject *)&ml_##name##Type);
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#else
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#define ADDTYPE(name) \
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if (PyType_Ready(&ml_##name##Type) < 0) \
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return; \
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\
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Py_INCREF(&ml_##name##Type); \
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PyModule_AddObject(module, #name, (PyObject *)&ml_##name##Type);
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#endif
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#define FLOATARRAY2(OBJ,NB1,NB2,DATA) \
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npy_intp dims[2]; \
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dims[0]=NB1; \
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dims[1]=NB2; \
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const int ND=2; \
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PyObject *OBJ=PyArray_SimpleNewFromData(ND, dims, NPY_FLOAT, DATA);
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#define FLOATARRAY1(OBJ,NB1,DATA) \
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npy_intp dims[1]; \
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dims[0]=NB1; \
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const int ND=1; \
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PyObject *OBJ=PyArray_SimpleNewFromData(ND, dims, NPY_FLOAT, DATA);
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#define FLOAT64ARRAY1(OBJ,NB1,DATA) \
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npy_intp dims[1]; \
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dims[0]=NB1; \
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const int ND=1; \
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PyObject *OBJ=PyArray_SimpleNewFromData(ND, dims, NPY_DOUBLE, DATA);
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#define UINT32ARRAY1(OBJ,NB1,DATA) \
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npy_intp dims[1]; \
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dims[0]=NB1; \
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const int ND=1; \
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PyObject *OBJ=PyArray_SimpleNewFromData(ND, dims, NPY_UINT32, DATA);
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#define INT32ARRAY1(OBJ,NB1,DATA) \
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npy_intp dims[1]; \
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dims[0]=NB1; \
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const int ND=1; \
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PyObject *OBJ=PyArray_SimpleNewFromData(ND, dims, NPY_INT32, DATA);
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#define INT16ARRAY1(OBJ,NB1,DATA) \
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npy_intp dims[1]; \
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dims[0]=NB1; \
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const int ND=1; \
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PyObject *OBJ=PyArray_SimpleNewFromData(ND, dims, NPY_INT16, DATA);
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#define INT8ARRAY1(OBJ,NB1,DATA) \
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npy_intp dims[1]; \
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dims[0]=NB1; \
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const int ND=1; \
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PyObject *OBJ=PyArray_SimpleNewFromData(ND, dims, NPY_BYTE, DATA);
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#define MATRIXFROMNUMPY(EXT,TYP,SRCTYPE,NUMPYTYPE) \
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arm_matrix_instance_##EXT *EXT##MatrixFromNumpy(PyObject *o) \
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{ \
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arm_matrix_instance_##EXT *s; \
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\
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s=PyMem_Malloc(sizeof(arm_matrix_instance_##EXT)); \
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s->pData=NULL; \
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s->numRows=0; \
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s->numCols=0; \
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\
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PyArray_Descr *desct=PyArray_DescrFromType(NUMPYTYPE); \
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PyArrayObject *cdata = (PyArrayObject *)PyArray_FromAny(o,desct, \
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1,0,NPY_ARRAY_C_CONTIGUOUS | NPY_ARRAY_ALIGNED | NPY_ARRAY_FORCECAST, \
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NULL); \
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if (cdata) \
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{ \
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uint32_t memCpyIndex; \
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SRCTYPE *f=(SRCTYPE*)PyArray_DATA(cdata); \
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s->numRows=PyArray_DIM(cdata,0); \
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s->numCols=PyArray_DIM(cdata,1); \
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uint32_t nb = PyArray_SIZE(cdata); \
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s->pData = PyMem_Malloc(sizeof(TYP)*nb); \
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MEMCPY(s->pData ,f,nb,TYP); \
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Py_DECREF(cdata); \
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} \
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\
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\
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return(s); \
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\
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}
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MATRIXFROMNUMPY(f32,float32_t,double,NPY_DOUBLE);
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MATRIXFROMNUMPY(f64,float64_t,double,NPY_DOUBLE);
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MATRIXFROMNUMPY(q31,q31_t,int32_t,NPY_INT32);
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MATRIXFROMNUMPY(q15,q15_t,int16_t,NPY_INT16);
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#define CREATEMATRIX(EXT,TYP) \
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arm_matrix_instance_##EXT *create##EXT##Matrix(uint32_t r,uint32_t c)\
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{ \
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arm_matrix_instance_##EXT *s; \
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\
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s=PyMem_Malloc(sizeof(arm_matrix_instance_##EXT)); \
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s->pData=PyMem_Malloc(sizeof(TYP)*r*c); \
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s->numRows=r; \
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s->numCols=c; \
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return(s); \
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}
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CREATEMATRIX(f32,float32_t);
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CREATEMATRIX(f64,float64_t);
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CREATEMATRIX(q31,q31_t);
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CREATEMATRIX(q15,q15_t);
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#define NUMPYARRAYFROMMATRIX(EXT,NUMPYTYPE_FROMC) \
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PyObject *NumpyArrayFrom##EXT##Matrix(arm_matrix_instance_##EXT *mat) \
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{ \
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npy_intp dims[2]; \
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dims[0]=mat->numRows; \
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dims[1]=mat->numCols; \
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const int ND=2; \
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PyObject *OBJ=PyArray_SimpleNewFromData(ND, dims, NUMPYTYPE_FROMC, mat->pData);\
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return(OBJ); \
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}
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NUMPYARRAYFROMMATRIX(f32,NPY_FLOAT);
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NUMPYARRAYFROMMATRIX(f64,NPY_DOUBLE);
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NUMPYARRAYFROMMATRIX(q31,NPY_INT32);
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NUMPYARRAYFROMMATRIX(q15,NPY_INT16);
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//#include "specific.h"
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#include "cmsismodule.h"
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#if 0
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static PyObject *cmsisml_test(PyObject *obj, PyObject *args)
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{
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ml_arm_svm_linear_instance_f32Object *self=NULL;
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PyObject *svm, *vector=NULL;
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if (!PyArg_ParseTuple(args, "OO", &svm,&vector))
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return NULL;
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self=(ml_arm_svm_linear_instance_f32Object*)svm;
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if (self)
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{
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if (self->instance)
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{
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int result;
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float32_t *input=NULL;
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GETCARRAY(vector,input,NPY_DOUBLE,double,float32_t);
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arm_svm_linear_predict_f32(self->instance,input,&result);
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/*
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printf("Dual\n");
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for(int i = 0 ; i < self->instance->nbOfSupportVectors ; i++)
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{
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printf("%f\n",self->instance->dualCoefficients[i]);
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}
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printf("Vectors\n");
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int k=0;
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for(int i = 0 ; i < self->instance->nbOfSupportVectors ; i++)
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{
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printf("Vector %d\n",i);
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for(int j = 0 ; j < self->instance->vectorDimension ; j++)
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{
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printf("%f\n",self->instance->supportVectors[k]);
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k++;
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}
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}
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printf("Classes\n");
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for(int i = 0 ; i < 2 ; i++)
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{
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printf("%d\n",self->instance->classes[i]);
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}
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printf("Intercept %f\n",self->instance->intercept);
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*/
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PyMem_Free(input);
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return(Py_BuildValue("i",result));
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}
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}
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return(Py_BuildValue("i",-1));
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}
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#endif
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#ifdef IS_PY3K
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static int cmsisml_traverse(PyObject *m, visitproc visit, void *arg) {
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Py_VISIT(GETSTATE(m)->error);
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return 0;
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}
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static int cmsisml_clear(PyObject *m) {
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Py_CLEAR(GETSTATE(m)->error);
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return 0;
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}
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static struct PyModuleDef moduledef = {
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PyModuleDef_HEAD_INIT,
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MODNAME,
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NULL,
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sizeof(struct module_state),
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CMSISMLMethods,
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NULL,
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cmsisml_traverse,
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cmsisml_clear,
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NULL
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};
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#define INITERROR return NULL
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PyMODINIT_FUNC
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CAT(PyInit_,MODINITNAME)(void)
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#else
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#define INITERROR return
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void CAT(init,MODINITNAME)(void)
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#endif
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{
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import_array();
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#ifdef IS_PY3K
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PyObject *module = PyModule_Create(&moduledef);
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#else
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PyObject *module = Py_InitModule(MODNAME, CMSISMLMethods);
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#endif
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if (module == NULL)
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INITERROR;
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struct module_state *st = GETSTATE(module);
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st->error = PyErr_NewException(MODNAME".Error", NULL, NULL);
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if (st->error == NULL) {
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Py_DECREF(module);
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INITERROR;
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}
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typeRegistration(module);
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#ifdef IS_PY3K
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return module;
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#endif
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} |