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2 | mjames | 1 | /* |
2 | * Copyright (C) 2010-2018 Arm Limited or its affiliates. All rights reserved. |
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3 | * |
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4 | * SPDX-License-Identifier: Apache-2.0 |
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5 | * |
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6 | * Licensed under the Apache License, Version 2.0 (the License); you may |
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7 | * not use this file except in compliance with the License. |
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8 | * You may obtain a copy of the License at |
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9 | * |
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10 | * www.apache.org/licenses/LICENSE-2.0 |
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11 | * |
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12 | * Unless required by applicable law or agreed to in writing, software |
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13 | * distributed under the License is distributed on an AS IS BASIS, WITHOUT |
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14 | * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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15 | * See the License for the specific language governing permissions and |
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16 | * limitations under the License. |
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17 | */ |
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18 | |||
19 | /* ---------------------------------------------------------------------- |
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20 | * Project: CMSIS NN Library |
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21 | * Title: arm_fully_connected_q15.c |
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22 | * Description: Q15 basic fully-connected layer function |
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23 | * |
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24 | * $Date: 17. January 2018 |
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25 | * $Revision: V.1.0.0 |
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26 | * |
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27 | * Target Processor: Cortex-M cores |
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28 | * |
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29 | * -------------------------------------------------------------------- */ |
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30 | |||
31 | #include "arm_math.h" |
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32 | #include "arm_nnfunctions.h" |
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33 | |||
34 | /** |
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35 | * @ingroup groupNN |
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36 | */ |
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37 | |||
38 | /** |
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39 | * @addtogroup FC |
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40 | * @{ |
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41 | */ |
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42 | |||
43 | /** |
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44 | * @brief Q15 opt fully-connected layer function |
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45 | * @param[in] pV pointer to input vector |
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46 | * @param[in] pM pointer to matrix weights |
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47 | * @param[in] dim_vec length of the vector |
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48 | * @param[in] num_of_rows number of rows in weight matrix |
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49 | * @param[in] bias_shift amount of left-shift for bias |
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50 | * @param[in] out_shift amount of right-shift for output |
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51 | * @param[in] bias pointer to bias |
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52 | * @param[in,out] pOut pointer to output vector |
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53 | * @param[in,out] vec_buffer pointer to buffer space for input |
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54 | * @return The function returns <code>ARM_MATH_SUCCESS</code> |
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55 | * |
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56 | * |
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57 | * @details |
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58 | * |
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59 | * <b>Buffer size:</b> |
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60 | * |
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61 | * vec_buffer size: 0 |
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62 | * |
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63 | */ |
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64 | |||
65 | arm_status |
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66 | arm_fully_connected_q15(const q15_t * pV, |
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67 | const q15_t * pM, |
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68 | const uint16_t dim_vec, |
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69 | const uint16_t num_of_rows, |
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70 | const uint16_t bias_shift, |
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71 | const uint16_t out_shift, |
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72 | const q15_t * bias, |
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73 | q15_t * pOut, |
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74 | q15_t * vec_buffer) |
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75 | { |
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76 | |||
77 | #if defined (ARM_MATH_DSP) |
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78 | /* Run the following code for Cortex-M4 and Cortex-M7 */ |
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79 | |||
80 | const q15_t *pB = pM; |
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81 | const q15_t *pB2 = pB + dim_vec; |
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82 | q15_t *pO = pOut; |
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83 | const q15_t *pA; |
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84 | const q15_t *pBias = bias; |
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85 | uint16_t rowCnt = num_of_rows >> 1; |
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86 | |||
87 | /* this loop loops over different output */ |
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88 | while (rowCnt) { |
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89 | q31_t sum = ((q31_t)(*pBias++) << bias_shift) + NN_ROUND(out_shift); |
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90 | q31_t sum2 = ((q31_t)(*pBias++) << bias_shift) + NN_ROUND(out_shift); |
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91 | |||
92 | uint16_t colCnt = dim_vec >> 2; |
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93 | |||
94 | pA = pV; |
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95 | pB2 = pB + dim_vec; |
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96 | |||
97 | while (colCnt) |
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98 | { |
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99 | q31_t inV1, inM1, inM2; |
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100 | inV1 = *__SIMD32(pA)++; |
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101 | inM1 = *__SIMD32(pB)++; |
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102 | sum = __SMLAD(inV1, inM1, sum); |
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103 | inM2 = *__SIMD32(pB2)++; |
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104 | sum2 = __SMLAD(inV1, inM2, sum2); |
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105 | |||
106 | inV1 = *__SIMD32(pA)++; |
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107 | inM1 = *__SIMD32(pB)++; |
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108 | sum = __SMLAD(inV1, inM1, sum); |
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109 | inM2 = *__SIMD32(pB2)++; |
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110 | sum2 = __SMLAD(inV1, inM2, sum2); |
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111 | |||
112 | colCnt--; |
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113 | } |
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114 | colCnt = dim_vec & 0x3; |
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115 | while (colCnt) |
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116 | { |
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117 | q15_t inV = *pA++; |
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118 | q15_t inM = *pB++; |
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119 | q15_t inM2 = *pB2++; |
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120 | |||
121 | sum += inV * inM; |
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122 | sum2 += inV * inM2; |
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123 | colCnt--; |
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124 | } /* while over colCnt */ |
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125 | *pO++ = (q15_t) (__SSAT((sum >> out_shift), 16)); |
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126 | *pO++ = (q15_t) (__SSAT((sum2>> out_shift), 16)); |
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127 | |||
128 | /* adjust the pointers and counters */ |
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129 | pB = pB + dim_vec; |
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130 | rowCnt --; |
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131 | } |
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132 | |||
133 | rowCnt = num_of_rows & 0x1; |
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134 | |||
135 | while (rowCnt) { |
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136 | q31_t sum = ((q31_t)(*pBias++) << bias_shift) + NN_ROUND(out_shift); |
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137 | |||
138 | uint16_t colCnt = dim_vec >> 2; |
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139 | |||
140 | pA = pV; |
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141 | |||
142 | while (colCnt) { |
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143 | q31_t inV1, inM1; |
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144 | inV1 = *__SIMD32(pA)++; |
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145 | inM1 = *__SIMD32(pB)++; |
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146 | sum = __SMLAD(inV1, inM1, sum); |
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147 | |||
148 | inV1 = *__SIMD32(pA)++; |
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149 | inM1 = *__SIMD32(pB)++; |
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150 | sum = __SMLAD(inV1, inM1, sum); |
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151 | |||
152 | colCnt--; |
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153 | } |
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154 | |||
155 | /* left-over of the vector */ |
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156 | colCnt = dim_vec & 0x3; |
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157 | while(colCnt) { |
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158 | q15_t inV = *pA++; |
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159 | q15_t inM = *pB++; |
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160 | |||
161 | sum += inV * inM; |
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162 | |||
163 | colCnt--; |
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164 | } |
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165 | |||
166 | *pO++ = (q15_t) (__SSAT((sum >> out_shift), 16)); |
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167 | |||
168 | rowCnt --; |
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169 | } |
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170 | |||
171 | #else |
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172 | int i, j; |
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173 | /* Run the following code as reference implementation for Cortex-M0 and Cortex-M3 */ |
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174 | for (i = 0; i < num_of_rows; i++) |
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175 | { |
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176 | int ip_out = ((q31_t)(bias[i]) << bias_shift) + NN_ROUND(out_shift); |
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177 | for (j = 0; j < dim_vec; j++) |
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178 | { |
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179 | ip_out += pV[j] * pM[i * dim_vec + j]; |
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180 | } |
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181 | pOut[i] = (q15_t) __SSAT((ip_out >> out_shift), 16); |
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182 | } |
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183 | |||
184 | #endif /* ARM_MATH_DSP */ |
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185 | |||
186 | /* Return to application */ |
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187 | return (ARM_MATH_SUCCESS); |
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188 | |||
189 | } |
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190 | |||
191 | /** |
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192 | * @} end of FC group |
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193 | */ |