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29 * Author: Nedeljko Babic (nbabic@mips.com)
31 * This file is part of FFmpeg.
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45 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
48 #ifndef AVUTIL_FIXED_DSP_H
49 #define AVUTIL_FIXED_DSP_H
52 #include "attributes.h"
54 #include "libavcodec/mathops.h"
56 typedef struct AVFixedDSPContext {
57 /* Assume len is a multiple of 16, and arrays are 32-byte aligned */
58 /* Results of multiplications are scaled down by 31 bit (and rounded) if not
62 * Overlap/add with window function.
63 * Result is scaled down by "bits" bits.
64 * Used primarily by MDCT-based audio codecs.
65 * Source and destination vectors must overlap exactly or not at all.
67 * @param dst result vector
68 * constraints: 16-byte aligned
69 * @param src0 first source vector
70 * constraints: 16-byte aligned
71 * @param src1 second source vector
72 * constraints: 16-byte aligned
73 * @param win half-window vector
74 * constraints: 16-byte aligned
75 * @param len length of vector
76 * constraints: multiple of 4
77 * @param bits scaling parameter
80 void (*vector_fmul_window_scaled)(int16_t *dst, const int32_t *src0, const int32_t *src1, const int32_t *win, int len, uint8_t bits);
83 * Overlap/add with window function.
84 * Used primarily by MDCT-based audio codecs.
85 * Source and destination vectors must overlap exactly or not at all.
87 * @param dst result vector
88 * constraints: 32-byte aligned
89 * @param src0 first source vector
90 * constraints: 16-byte aligned
91 * @param src1 second source vector
92 * constraints: 16-byte aligned
93 * @param win half-window vector
94 * constraints: 16-byte aligned
95 * @param len length of vector
96 * constraints: multiple of 4
98 void (*vector_fmul_window)(int32_t *dst, const int32_t *src0, const int32_t *src1, const int32_t *win, int len);
101 * Fixed-point multiplication that calculates the entry wise product of two
102 * vectors of integers and stores the result in a vector of integers.
104 * @param dst output vector
105 * constraints: 32-byte aligned
106 * @param src0 first input vector
107 * constraints: 32-byte aligned
108 * @param src1 second input vector
109 * constraints: 32-byte aligned
110 * @param len number of elements in the input
111 * constraints: multiple of 16
113 void (*vector_fmul)(int *dst, const int *src0, const int *src1,
116 void (*vector_fmul_reverse)(int *dst, const int *src0, const int *src1, int len);
118 * Calculate the entry wise product of two vectors of integers, add a third vector of
119 * integers and store the result in a vector of integers.
121 * @param dst output vector
122 * constraints: 32-byte aligned
123 * @param src0 first input vector
124 * constraints: 32-byte aligned
125 * @param src1 second input vector
126 * constraints: 32-byte aligned
127 * @param src2 third input vector
128 * constraints: 32-byte aligned
129 * @param len number of elements in the input
130 * constraints: multiple of 16
132 void (*vector_fmul_add)(int *dst, const int *src0, const int *src1,
133 const int *src2, int len);
136 * Calculate the scalar product of two vectors of integers.
138 * @param v1 first vector, 16-byte aligned
139 * @param v2 second vector, 16-byte aligned
140 * @param len length of vectors, multiple of 4
142 * @return sum of elementwise products
144 int (*scalarproduct_fixed)(const int *v1, const int *v2, int len);
147 * Calculate the sum and difference of two vectors of integers.
149 * @param v1 first input vector, sum output, 16-byte aligned
150 * @param v2 second input vector, difference output, 16-byte aligned
151 * @param len length of vectors, multiple of 4
153 void (*butterflies_fixed)(int *av_restrict v1, int *av_restrict v2, int len);
157 * Allocate and initialize a fixed DSP context.
158 * note: should be freed with a av_free call when no longer needed.
160 * @param strict setting to non-zero avoids using functions which may not be IEEE-754 compliant
162 AVFixedDSPContext * avpriv_alloc_fixed_dsp(int strict);
164 void ff_fixed_dsp_init_x86(AVFixedDSPContext *fdsp);
167 * Calculate the square root
169 * @param x input fixed point number
171 * @param bits format of fixed point number (32 - bits).bits
173 * note: input is normalized to (0, 1) fixed point value
176 static av_always_inline int fixed_sqrt(int x, int bits)
178 int retval, bit_mask, guess, square, i;
180 int shift1 = 30 - bits;
181 int shift2 = bits - 15;
183 if (shift1 > 0) retval = ff_sqrt(x << shift1);
184 else retval = ff_sqrt(x >> -shift1);
187 retval = retval << shift2;
188 bit_mask = (1 << (shift2 - 1));
190 for (i=0; i<shift2; i++){
191 guess = retval + bit_mask;
192 accu = (int64_t)guess * guess;
193 square = (int)((accu + bit_mask) >> bits);
200 else retval >>= (-shift2);
205 #endif /* AVUTIL_FIXED_DSP_H */