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1 /* ----------------------------------------------------------------------
2 * Copyright (C) 2010-2013 ARM Limited. All rights reserved.
3 *
4 * $Date: 17. January 2013
5 * $Revision: V1.4.1
6 *
7 * Project: CMSIS DSP Library
8 * Title: arm_cfft_radix4_init_q15.c
9 *
10 * Description: Radix-4 Decimation in Frequency Q15 FFT & IFFT initialization function
11 *
12 * Target Processor: Cortex-M4/Cortex-M3/Cortex-M0
13 *
14 * Redistribution and use in source and binary forms, with or without
15 * modification, are permitted provided that the following conditions
16 * are met:
17 * - Redistributions of source code must retain the above copyright
18 * notice, this list of conditions and the following disclaimer.
19 * - Redistributions in binary form must reproduce the above copyright
20 * notice, this list of conditions and the following disclaimer in
21 * the documentation and/or other materials provided with the
22 * distribution.
23 * - Neither the name of ARM LIMITED nor the names of its contributors
24 * may be used to endorse or promote products derived from this
25 * software without specific prior written permission.
26 *
27 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
28 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
29 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
30 * FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
31 * COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
32 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
33 * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
34 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
35 * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
36 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
37 * ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
38 * POSSIBILITY OF SUCH DAMAGE.
39 * -------------------------------------------------------------------- */
40
41 #include "arm_math.h"
42 #include "arm_common_tables.h"
43
44 /**
45 * @ingroup groupTransforms
46 */
47
48
49 /**
50 * @addtogroup ComplexFFT
51 * @{
52 */
53
54
55 /**
56 * @brief Initialization function for the Q15 CFFT/CIFFT.
57 * @param[in,out] *S points to an instance of the Q15 CFFT/CIFFT structure.
58 * @param[in] fftLen length of the FFT.
59 * @param[in] ifftFlag flag that selects forward (ifftFlag=0) or inverse (ifftFlag=1) transform.
60 * @param[in] bitReverseFlag flag that enables (bitReverseFlag=1) or disables (bitReverseFlag=0) bit reversal of output.
61 * @return The function returns ARM_MATH_SUCCESS if initialization is successful or ARM_MATH_ARGUMENT_ERROR if <code>fftLen</code> is not a supported value.
62 *
63 * \par Description:
64 * \par
65 * The parameter <code>ifftFlag</code> controls whether a forward or inverse transform is computed.
66 * Set(=1) ifftFlag for calculation of CIFFT otherwise CFFT is calculated
67 * \par
68 * The parameter <code>bitReverseFlag</code> controls whether output is in normal order or bit reversed order.
69 * Set(=1) bitReverseFlag for output to be in normal order otherwise output is in bit reversed order.
70 * \par
71 * The parameter <code>fftLen</code> Specifies length of CFFT/CIFFT process. Supported FFT Lengths are 16, 64, 256, 1024.
72 * \par
73 * This Function also initializes Twiddle factor table pointer and Bit reversal table pointer.
74 */
75
76 arm_status arm_cfft_radix4_init_q15(
77 arm_cfft_radix4_instance_q15 * S,
78 uint16_t fftLen,
79 uint8_t ifftFlag,
80 uint8_t bitReverseFlag)
81 {
82 /* Initialise the default arm status */
83 arm_status status = ARM_MATH_SUCCESS;
84 /* Initialise the FFT length */
85 S->fftLen = fftLen;
86 /* Initialise the Twiddle coefficient pointer */
87 S->pTwiddle = (q15_t *) twiddleCoefQ15;
88 /* Initialise the Flag for selection of CFFT or CIFFT */
89 S->ifftFlag = ifftFlag;
90 /* Initialise the Flag for calculation Bit reversal or not */
91 S->bitReverseFlag = bitReverseFlag;
92
93 /* Initializations of structure parameters depending on the FFT length */
94 switch (S->fftLen)
95 {
96 case 4096u:
97 /* Initializations of structure parameters for 4096 point FFT */
98
99 /* Initialise the twiddle coef modifier value */
100 S->twidCoefModifier = 1u;
101 /* Initialise the bit reversal table modifier */
102 S->bitRevFactor = 1u;
103 /* Initialise the bit reversal table pointer */
104 S->pBitRevTable = (uint16_t *) armBitRevTable;
105
106 break;
107
108 case 1024u:
109 /* Initializations of structure parameters for 1024 point FFT */
110 S->twidCoefModifier = 4u;
111 S->bitRevFactor = 4u;
112 S->pBitRevTable = (uint16_t *) & armBitRevTable[3];
113
114 break;
115
116 case 256u:
117 /* Initializations of structure parameters for 256 point FFT */
118 S->twidCoefModifier = 16u;
119 S->bitRevFactor = 16u;
120 S->pBitRevTable = (uint16_t *) & armBitRevTable[15];
121
122 break;
123
124 case 64u:
125 /* Initializations of structure parameters for 64 point FFT */
126 S->twidCoefModifier = 64u;
127 S->bitRevFactor = 64u;
128 S->pBitRevTable = (uint16_t *) & armBitRevTable[63];
129
130 break;
131
132 case 16u:
133 /* Initializations of structure parameters for 16 point FFT */
134 S->twidCoefModifier = 256u;
135 S->bitRevFactor = 256u;
136 S->pBitRevTable = (uint16_t *) & armBitRevTable[255];
137
138 break;
139
140 default:
141 /* Reporting argument error if fftSize is not valid value */
142 status = ARM_MATH_ARGUMENT_ERROR;
143 break;
144 }
145
146 return (status);
147 }
148
149 /**
150 * @} end of ComplexFFT group
151 */
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