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			978 lines
		
	
	
		
			29 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			978 lines
		
	
	
		
			29 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
| /******************************************************************************
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|  * @file     statistics_functions.h
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|  * @brief    Public header file for CMSIS DSP Library
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|  * @version  V1.10.0
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|  * @date     08 July 2021
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|  * Target Processor: Cortex-M and Cortex-A cores
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|  ******************************************************************************/
 | |
| /*
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|  * Copyright (c) 2010-2020 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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| 
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|  
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| #ifndef _STATISTICS_FUNCTIONS_H_
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| #define _STATISTICS_FUNCTIONS_H_
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| 
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| #include "arm_math_types.h"
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| #include "arm_math_memory.h"
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| 
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| #include "dsp/none.h"
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| #include "dsp/utils.h"
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| 
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| #include "dsp/basic_math_functions.h"
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| #include "dsp/fast_math_functions.h"
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| 
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| #ifdef   __cplusplus
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| extern "C"
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| {
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| #endif
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| 
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| 
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| /**
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|  * @defgroup groupStats Statistics Functions
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|  */
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| 
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| /**
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|  * @brief Computation of the LogSumExp
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|  *
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|  * In probabilistic computations, the dynamic of the probability values can be very
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|  * wide because they come from gaussian functions.
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|  * To avoid underflow and overflow issues, the values are represented by their log.
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|  * In this representation, multiplying the original exp values is easy : their logs are added.
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|  * But adding the original exp values is requiring some special handling and it is the
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|  * goal of the LogSumExp function.
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|  *
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|  * If the values are x1...xn, the function is computing:
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|  *
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|  * ln(exp(x1) + ... + exp(xn)) and the computation is done in such a way that
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|  * rounding issues are minimised.
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|  *
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|  * The max xm of the values is extracted and the function is computing:
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|  * xm + ln(exp(x1 - xm) + ... + exp(xn - xm))
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|  *
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|  * @param[in]  *in         Pointer to an array of input values.
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|  * @param[in]  blockSize   Number of samples in the input array.
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|  * @return LogSumExp
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|  *
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|  */
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| 
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| 
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| float32_t arm_logsumexp_f32(const float32_t *in, uint32_t blockSize);
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| 
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| /**
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|  * @brief Dot product with log arithmetic
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|  *
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|  * Vectors are containing the log of the samples
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|  *
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|  * @param[in]       pSrcA points to the first input vector
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|  * @param[in]       pSrcB points to the second input vector
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|  * @param[in]       blockSize number of samples in each vector
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|  * @param[in]       pTmpBuffer temporary buffer of length blockSize
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|  * @return The log of the dot product .
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|  *
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|  */
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| 
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| 
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| float32_t arm_logsumexp_dot_prod_f32(const float32_t * pSrcA,
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|   const float32_t * pSrcB,
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|   uint32_t blockSize,
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|   float32_t *pTmpBuffer);
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| 
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| /**
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|  * @brief Entropy
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|  *
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|  * @param[in]  pSrcA        Array of input values.
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|  * @param[in]  blockSize    Number of samples in the input array.
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|  * @return     Entropy      -Sum(p ln p)
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|  *
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|  */
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| 
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| 
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| float32_t arm_entropy_f32(const float32_t * pSrcA,uint32_t blockSize);
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| 
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| 
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| /**
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|  * @brief Entropy
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|  *
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|  * @param[in]  pSrcA        Array of input values.
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|  * @param[in]  blockSize    Number of samples in the input array.
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|  * @return     Entropy      -Sum(p ln p)
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|  *
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|  */
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| 
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| 
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| float64_t arm_entropy_f64(const float64_t * pSrcA, uint32_t blockSize);
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| 
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| 
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| /**
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|  * @brief Kullback-Leibler
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|  *
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|  * @param[in]  pSrcA         Pointer to an array of input values for probability distribution A.
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|  * @param[in]  pSrcB         Pointer to an array of input values for probability distribution B.
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|  * @param[in]  blockSize     Number of samples in the input array.
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|  * @return Kullback-Leibler  Divergence D(A || B)
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|  *
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|  */
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| float32_t arm_kullback_leibler_f32(const float32_t * pSrcA
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|   ,const float32_t * pSrcB
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|   ,uint32_t blockSize);
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| 
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| 
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| /**
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|  * @brief Kullback-Leibler
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|  *
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|  * @param[in]  pSrcA         Pointer to an array of input values for probability distribution A.
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|  * @param[in]  pSrcB         Pointer to an array of input values for probability distribution B.
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|  * @param[in]  blockSize     Number of samples in the input array.
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|  * @return Kullback-Leibler  Divergence D(A || B)
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|  *
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|  */
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| float64_t arm_kullback_leibler_f64(const float64_t * pSrcA, 
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|                 const float64_t * pSrcB, 
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|                 uint32_t blockSize);
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| 
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| 
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|  /**
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|    * @brief  Sum of the squares of the elements of a Q31 vector.
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|    * @param[in]  pSrc       is input pointer
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|    * @param[in]  blockSize  is the number of samples to process
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|    * @param[out] pResult    is output value.
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|    */
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|   void arm_power_q31(
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|   const q31_t * pSrc,
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|         uint32_t blockSize,
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|         q63_t * pResult);
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| 
 | |
| 
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|   /**
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|    * @brief  Sum of the squares of the elements of a floating-point vector.
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|    * @param[in]  pSrc       is input pointer
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|    * @param[in]  blockSize  is the number of samples to process
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|    * @param[out] pResult    is output value.
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|    */
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|   void arm_power_f32(
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|   const float32_t * pSrc,
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|         uint32_t blockSize,
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|         float32_t * pResult);
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| 
 | |
| 
 | |
|   /**
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|    * @brief  Sum of the squares of the elements of a floating-point vector.
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|    * @param[in]  pSrc       is input pointer
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|    * @param[in]  blockSize  is the number of samples to process
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|    * @param[out] pResult    is output value.
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|    */
 | |
|   void arm_power_f64(
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|   const float64_t * pSrc,
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|         uint32_t blockSize,
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|         float64_t * pResult);
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| 
 | |
| 
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|   /**
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|    * @brief  Sum of the squares of the elements of a Q15 vector.
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|    * @param[in]  pSrc       is input pointer
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|    * @param[in]  blockSize  is the number of samples to process
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|    * @param[out] pResult    is output value.
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|    */
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|   void arm_power_q15(
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|   const q15_t * pSrc,
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|         uint32_t blockSize,
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|         q63_t * pResult);
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| 
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| 
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|   /**
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|    * @brief  Sum of the squares of the elements of a Q7 vector.
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|    * @param[in]  pSrc       is input pointer
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|    * @param[in]  blockSize  is the number of samples to process
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|    * @param[out] pResult    is output value.
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|    */
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|   void arm_power_q7(
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|   const q7_t * pSrc,
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|         uint32_t blockSize,
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|         q31_t * pResult);
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| 
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| 
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|   /**
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|    * @brief  Mean value of a Q7 vector.
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|    * @param[in]  pSrc       is input pointer
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|    * @param[in]  blockSize  is the number of samples to process
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|    * @param[out] pResult    is output value.
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|    */
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|   void arm_mean_q7(
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|   const q7_t * pSrc,
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|         uint32_t blockSize,
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|         q7_t * pResult);
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| 
 | |
| 
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|   /**
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|    * @brief  Mean value of a Q15 vector.
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|    * @param[in]  pSrc       is input pointer
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|    * @param[in]  blockSize  is the number of samples to process
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|    * @param[out] pResult    is output value.
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|    */
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|   void arm_mean_q15(
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|   const q15_t * pSrc,
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|         uint32_t blockSize,
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|         q15_t * pResult);
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| 
 | |
| 
 | |
|   /**
 | |
|    * @brief  Mean value of a Q31 vector.
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|    * @param[in]  pSrc       is input pointer
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|    * @param[in]  blockSize  is the number of samples to process
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|    * @param[out] pResult    is output value.
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|    */
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|   void arm_mean_q31(
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|   const q31_t * pSrc,
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|         uint32_t blockSize,
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|         q31_t * pResult);
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| 
 | |
| 
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|   /**
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|    * @brief  Mean value of a floating-point vector.
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|    * @param[in]  pSrc       is input pointer
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|    * @param[in]  blockSize  is the number of samples to process
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|    * @param[out] pResult    is output value.
 | |
|    */
 | |
|   void arm_mean_f32(
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|   const float32_t * pSrc,
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|         uint32_t blockSize,
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|         float32_t * pResult);
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| 
 | |
| 
 | |
|   /**
 | |
|    * @brief  Mean value of a floating-point vector.
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|    * @param[in]  pSrc       is input pointer
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|    * @param[in]  blockSize  is the number of samples to process
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|    * @param[out] pResult    is output value.
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|    */
 | |
|   void arm_mean_f64(
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|   const float64_t * pSrc,
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|         uint32_t blockSize,
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|         float64_t * pResult);
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| 
 | |
| 
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|   /**
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|    * @brief  Variance of the elements of a floating-point vector.
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|    * @param[in]  pSrc       is input pointer
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|    * @param[in]  blockSize  is the number of samples to process
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|    * @param[out] pResult    is output value.
 | |
|    */
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|   void arm_var_f32(
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|   const float32_t * pSrc,
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|         uint32_t blockSize,
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|         float32_t * pResult);
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| 
 | |
| 
 | |
|   /**
 | |
|    * @brief  Variance of the elements of a floating-point vector.
 | |
|    * @param[in]  pSrc       is input pointer
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|    * @param[in]  blockSize  is the number of samples to process
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|    * @param[out] pResult    is output value.
 | |
|    */
 | |
|   void arm_var_f64(
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|   const float64_t * pSrc,
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|         uint32_t blockSize,
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|         float64_t * pResult);
 | |
| 
 | |
| 
 | |
|   /**
 | |
|    * @brief  Variance of the elements of a Q31 vector.
 | |
|    * @param[in]  pSrc       is input pointer
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|    * @param[in]  blockSize  is the number of samples to process
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|    * @param[out] pResult    is output value.
 | |
|    */
 | |
|   void arm_var_q31(
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|   const q31_t * pSrc,
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|         uint32_t blockSize,
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|         q31_t * pResult);
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| 
 | |
| 
 | |
|   /**
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|    * @brief  Variance of the elements of a Q15 vector.
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|    * @param[in]  pSrc       is input pointer
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|    * @param[in]  blockSize  is the number of samples to process
 | |
|    * @param[out] pResult    is output value.
 | |
|    */
 | |
|   void arm_var_q15(
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|   const q15_t * pSrc,
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|         uint32_t blockSize,
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|         q15_t * pResult);
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| 
 | |
| 
 | |
|   /**
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|    * @brief  Root Mean Square of the elements of a floating-point vector.
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|    * @param[in]  pSrc       is input pointer
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|    * @param[in]  blockSize  is the number of samples to process
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|    * @param[out] pResult    is output value.
 | |
|    */
 | |
|   void arm_rms_f32(
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|   const float32_t * pSrc,
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|         uint32_t blockSize,
 | |
|         float32_t * pResult);
 | |
| 
 | |
| 
 | |
|   /**
 | |
|    * @brief  Root Mean Square of the elements of a Q31 vector.
 | |
|    * @param[in]  pSrc       is input pointer
 | |
|    * @param[in]  blockSize  is the number of samples to process
 | |
|    * @param[out] pResult    is output value.
 | |
|    */
 | |
|   void arm_rms_q31(
 | |
|   const q31_t * pSrc,
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|         uint32_t blockSize,
 | |
|         q31_t * pResult);
 | |
| 
 | |
| 
 | |
|   /**
 | |
|    * @brief  Root Mean Square of the elements of a Q15 vector.
 | |
|    * @param[in]  pSrc       is input pointer
 | |
|    * @param[in]  blockSize  is the number of samples to process
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|    * @param[out] pResult    is output value.
 | |
|    */
 | |
|   void arm_rms_q15(
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|   const q15_t * pSrc,
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|         uint32_t blockSize,
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|         q15_t * pResult);
 | |
| 
 | |
| 
 | |
|   /**
 | |
|    * @brief  Standard deviation of the elements of a floating-point vector.
 | |
|    * @param[in]  pSrc       is input pointer
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|    * @param[in]  blockSize  is the number of samples to process
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|    * @param[out] pResult    is output value.
 | |
|    */
 | |
|   void arm_std_f32(
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|   const float32_t * pSrc,
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|         uint32_t blockSize,
 | |
|         float32_t * pResult);
 | |
| 
 | |
| 
 | |
|   /**
 | |
|    * @brief  Standard deviation of the elements of a floating-point vector.
 | |
|    * @param[in]  pSrc       is input pointer
 | |
|    * @param[in]  blockSize  is the number of samples to process
 | |
|    * @param[out] pResult    is output value.
 | |
|    */
 | |
|   void arm_std_f64(
 | |
|   const float64_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         float64_t * pResult);
 | |
| 
 | |
| 
 | |
|   /**
 | |
|    * @brief  Standard deviation of the elements of a Q31 vector.
 | |
|    * @param[in]  pSrc       is input pointer
 | |
|    * @param[in]  blockSize  is the number of samples to process
 | |
|    * @param[out] pResult    is output value.
 | |
|    */
 | |
|   void arm_std_q31(
 | |
|   const q31_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         q31_t * pResult);
 | |
| 
 | |
| 
 | |
|   /**
 | |
|    * @brief  Standard deviation of the elements of a Q15 vector.
 | |
|    * @param[in]  pSrc       is input pointer
 | |
|    * @param[in]  blockSize  is the number of samples to process
 | |
|    * @param[out] pResult    is output value.
 | |
|    */
 | |
|   void arm_std_q15(
 | |
|   const q15_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         q15_t * pResult);
 | |
| 
 | |
| 
 | |
|   
 | |
|   /**
 | |
|    * @brief  Minimum value of a Q7 vector.
 | |
|    * @param[in]  pSrc       is input pointer
 | |
|    * @param[in]  blockSize  is the number of samples to process
 | |
|    * @param[out] result     is output pointer
 | |
|    * @param[in]  index      is the array index of the minimum value in the input buffer.
 | |
|    */
 | |
|   void arm_min_q7(
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|   const q7_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         q7_t * result,
 | |
|         uint32_t * index);
 | |
| 
 | |
|   /**
 | |
|    * @brief  Minimum value of absolute values of a Q7 vector.
 | |
|    * @param[in]  pSrc       is input pointer
 | |
|    * @param[in]  blockSize  is the number of samples to process
 | |
|    * @param[out] result     is output pointer
 | |
|    * @param[in]  index      is the array index of the minimum value in the input buffer.
 | |
|    */
 | |
|   void arm_absmin_q7(
 | |
|   const q7_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         q7_t * result,
 | |
|         uint32_t * index);
 | |
| 
 | |
|     /**
 | |
|    * @brief  Minimum value of absolute values of a Q7 vector.
 | |
|    * @param[in]  pSrc       is input pointer
 | |
|    * @param[in]  blockSize  is the number of samples to process
 | |
|    * @param[out] result     is output pointer
 | |
|    */
 | |
|   void arm_absmin_no_idx_q7(
 | |
|   const q7_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         q7_t * result);
 | |
| 
 | |
| 
 | |
|   /**
 | |
|    * @brief  Minimum value of a Q15 vector.
 | |
|    * @param[in]  pSrc       is input pointer
 | |
|    * @param[in]  blockSize  is the number of samples to process
 | |
|    * @param[out] pResult    is output pointer
 | |
|    * @param[in]  pIndex     is the array index of the minimum value in the input buffer.
 | |
|    */
 | |
|   void arm_min_q15(
 | |
|   const q15_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         q15_t * pResult,
 | |
|         uint32_t * pIndex);
 | |
| 
 | |
| /**
 | |
|    * @brief  Minimum value of absolute values of a Q15 vector.
 | |
|    * @param[in]  pSrc       is input pointer
 | |
|    * @param[in]  blockSize  is the number of samples to process
 | |
|    * @param[out] pResult    is output pointer
 | |
|    * @param[in]  pIndex     is the array index of the minimum value in the input buffer.
 | |
|    */
 | |
|   void arm_absmin_q15(
 | |
|   const q15_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         q15_t * pResult,
 | |
|         uint32_t * pIndex);
 | |
| 
 | |
|   /**
 | |
|    * @brief  Minimum value of absolute values of a Q15 vector.
 | |
|    * @param[in]  pSrc       is input pointer
 | |
|    * @param[in]  blockSize  is the number of samples to process
 | |
|    * @param[out] pResult    is output pointer
 | |
|    */
 | |
|   void arm_absmin_no_idx_q15(
 | |
|   const q15_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         q15_t * pResult);
 | |
| 
 | |
| 
 | |
|   /**
 | |
|    * @brief  Minimum value of a Q31 vector.
 | |
|    * @param[in]  pSrc       is input pointer
 | |
|    * @param[in]  blockSize  is the number of samples to process
 | |
|    * @param[out] pResult    is output pointer
 | |
|    * @param[out] pIndex     is the array index of the minimum value in the input buffer.
 | |
|    */
 | |
|   void arm_min_q31(
 | |
|   const q31_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         q31_t * pResult,
 | |
|         uint32_t * pIndex);
 | |
| 
 | |
|   /**
 | |
|    * @brief  Minimum value of absolute values of a Q31 vector.
 | |
|    * @param[in]  pSrc       is input pointer
 | |
|    * @param[in]  blockSize  is the number of samples to process
 | |
|    * @param[out] pResult    is output pointer
 | |
|    * @param[out] pIndex     is the array index of the minimum value in the input buffer.
 | |
|    */
 | |
|   void arm_absmin_q31(
 | |
|   const q31_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         q31_t * pResult,
 | |
|         uint32_t * pIndex);
 | |
| 
 | |
|  /**
 | |
|    * @brief  Minimum value of absolute values of a Q31 vector.
 | |
|    * @param[in]  pSrc       is input pointer
 | |
|    * @param[in]  blockSize  is the number of samples to process
 | |
|    * @param[out] pResult    is output pointer
 | |
|    */
 | |
|   void arm_absmin_no_idx_q31(
 | |
|   const q31_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         q31_t * pResult);
 | |
| 
 | |
| 
 | |
|   /**
 | |
|    * @brief  Minimum value of a floating-point vector.
 | |
|    * @param[in]  pSrc       is input pointer
 | |
|    * @param[in]  blockSize  is the number of samples to process
 | |
|    * @param[out] pResult    is output pointer
 | |
|    * @param[out] pIndex     is the array index of the minimum value in the input buffer.
 | |
|    */
 | |
|   void arm_min_f32(
 | |
|   const float32_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         float32_t * pResult,
 | |
|         uint32_t * pIndex);
 | |
| 
 | |
|   /**
 | |
|    * @brief  Minimum value of absolute values of a floating-point vector.
 | |
|    * @param[in]  pSrc       is input pointer
 | |
|    * @param[in]  blockSize  is the number of samples to process
 | |
|    * @param[out] pResult    is output pointer
 | |
|    * @param[out] pIndex     is the array index of the minimum value in the input buffer.
 | |
|    */
 | |
|   void arm_absmin_f32(
 | |
|   const float32_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         float32_t * pResult,
 | |
|         uint32_t * pIndex);
 | |
| 
 | |
|   /**
 | |
|    * @brief  Minimum value of absolute values of a floating-point vector.
 | |
|    * @param[in]  pSrc       is input pointer
 | |
|    * @param[in]  blockSize  is the number of samples to process
 | |
|    * @param[out] pResult    is output pointer
 | |
|    */
 | |
|   void arm_absmin_no_idx_f32(
 | |
|   const float32_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         float32_t * pResult);
 | |
| 
 | |
| 
 | |
|   /**
 | |
|    * @brief  Minimum value of a floating-point vector.
 | |
|    * @param[in]  pSrc       is input pointer
 | |
|    * @param[in]  blockSize  is the number of samples to process
 | |
|    * @param[out] pResult    is output pointer
 | |
|    * @param[out] pIndex     is the array index of the minimum value in the input buffer.
 | |
|    */
 | |
|   void arm_min_f64(
 | |
|   const float64_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         float64_t * pResult,
 | |
|         uint32_t * pIndex);
 | |
| 
 | |
|   /**
 | |
|    * @brief  Minimum value of absolute values of a floating-point vector.
 | |
|    * @param[in]  pSrc       is input pointer
 | |
|    * @param[in]  blockSize  is the number of samples to process
 | |
|    * @param[out] pResult    is output pointer
 | |
|    * @param[out] pIndex     is the array index of the minimum value in the input buffer.
 | |
|    */
 | |
|   void arm_absmin_f64(
 | |
|   const float64_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         float64_t * pResult,
 | |
|         uint32_t * pIndex);
 | |
| 
 | |
|   /**
 | |
|    * @brief  Minimum value of absolute values of a floating-point vector.
 | |
|    * @param[in]  pSrc       is input pointer
 | |
|    * @param[in]  blockSize  is the number of samples to process
 | |
|    * @param[out] pResult    is output pointer
 | |
|    */
 | |
|   void arm_absmin_no_idx_f64(
 | |
|   const float64_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         float64_t * pResult);
 | |
| 
 | |
| 
 | |
| /**
 | |
|  * @brief Maximum value of a Q7 vector.
 | |
|  * @param[in]  pSrc       points to the input buffer
 | |
|  * @param[in]  blockSize  length of the input vector
 | |
|  * @param[out] pResult    maximum value returned here
 | |
|  * @param[out] pIndex     index of maximum value returned here
 | |
|  */
 | |
|   void arm_max_q7(
 | |
|   const q7_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         q7_t * pResult,
 | |
|         uint32_t * pIndex);
 | |
| 
 | |
| /**
 | |
|  * @brief Maximum value of absolute values of a Q7 vector.
 | |
|  * @param[in]  pSrc       points to the input buffer
 | |
|  * @param[in]  blockSize  length of the input vector
 | |
|  * @param[out] pResult    maximum value returned here
 | |
|  * @param[out] pIndex     index of maximum value returned here
 | |
|  */
 | |
|   void arm_absmax_q7(
 | |
|   const q7_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         q7_t * pResult,
 | |
|         uint32_t * pIndex);
 | |
| 
 | |
| /**
 | |
|  * @brief Maximum value of absolute values of a Q7 vector.
 | |
|  * @param[in]  pSrc       points to the input buffer
 | |
|  * @param[in]  blockSize  length of the input vector
 | |
|  * @param[out] pResult    maximum value returned here
 | |
|  */
 | |
|   void arm_absmax_no_idx_q7(
 | |
|   const q7_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         q7_t * pResult);
 | |
| 
 | |
| 
 | |
| /**
 | |
|  * @brief Maximum value of a Q15 vector.
 | |
|  * @param[in]  pSrc       points to the input buffer
 | |
|  * @param[in]  blockSize  length of the input vector
 | |
|  * @param[out] pResult    maximum value returned here
 | |
|  * @param[out] pIndex     index of maximum value returned here
 | |
|  */
 | |
|   void arm_max_q15(
 | |
|   const q15_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         q15_t * pResult,
 | |
|         uint32_t * pIndex);
 | |
| 
 | |
| /**
 | |
|  * @brief Maximum value of absolute values of a Q15 vector.
 | |
|  * @param[in]  pSrc       points to the input buffer
 | |
|  * @param[in]  blockSize  length of the input vector
 | |
|  * @param[out] pResult    maximum value returned here
 | |
|  * @param[out] pIndex     index of maximum value returned here
 | |
|  */
 | |
|   void arm_absmax_q15(
 | |
|   const q15_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         q15_t * pResult,
 | |
|         uint32_t * pIndex);
 | |
| 
 | |
|   /**
 | |
|  * @brief Maximum value of absolute values of a Q15 vector.
 | |
|  * @param[in]  pSrc       points to the input buffer
 | |
|  * @param[in]  blockSize  length of the input vector
 | |
|  * @param[out] pResult    maximum value returned here
 | |
|  */
 | |
|   void arm_absmax_no_idx_q15(
 | |
|   const q15_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         q15_t * pResult);
 | |
| 
 | |
| /**
 | |
|  * @brief Maximum value of a Q31 vector.
 | |
|  * @param[in]  pSrc       points to the input buffer
 | |
|  * @param[in]  blockSize  length of the input vector
 | |
|  * @param[out] pResult    maximum value returned here
 | |
|  * @param[out] pIndex     index of maximum value returned here
 | |
|  */
 | |
|   void arm_max_q31(
 | |
|   const q31_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         q31_t * pResult,
 | |
|         uint32_t * pIndex);
 | |
| 
 | |
| /**
 | |
|  * @brief Maximum value of absolute values of a Q31 vector.
 | |
|  * @param[in]  pSrc       points to the input buffer
 | |
|  * @param[in]  blockSize  length of the input vector
 | |
|  * @param[out] pResult    maximum value returned here
 | |
|  * @param[out] pIndex     index of maximum value returned here
 | |
|  */
 | |
|   void arm_absmax_q31(
 | |
|   const q31_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         q31_t * pResult,
 | |
|         uint32_t * pIndex);
 | |
| 
 | |
|  /**
 | |
|  * @brief Maximum value of absolute values of a Q31 vector.
 | |
|  * @param[in]  pSrc       points to the input buffer
 | |
|  * @param[in]  blockSize  length of the input vector
 | |
|  * @param[out] pResult    maximum value returned here
 | |
|  */
 | |
|   void arm_absmax_no_idx_q31(
 | |
|   const q31_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         q31_t * pResult);
 | |
| 
 | |
| /**
 | |
|  * @brief Maximum value of a floating-point vector.
 | |
|  * @param[in]  pSrc       points to the input buffer
 | |
|  * @param[in]  blockSize  length of the input vector
 | |
|  * @param[out] pResult    maximum value returned here
 | |
|  * @param[out] pIndex     index of maximum value returned here
 | |
|  */
 | |
|   void arm_max_f32(
 | |
|   const float32_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         float32_t * pResult,
 | |
|         uint32_t * pIndex);
 | |
| 
 | |
| /**
 | |
|  * @brief Maximum value of absolute values of a floating-point vector.
 | |
|  * @param[in]  pSrc       points to the input buffer
 | |
|  * @param[in]  blockSize  length of the input vector
 | |
|  * @param[out] pResult    maximum value returned here
 | |
|  * @param[out] pIndex     index of maximum value returned here
 | |
|  */
 | |
|   void arm_absmax_f32(
 | |
|   const float32_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         float32_t * pResult,
 | |
|         uint32_t * pIndex);
 | |
| 
 | |
|  /**
 | |
|  * @brief Maximum value of absolute values of a floating-point vector.
 | |
|  * @param[in]  pSrc       points to the input buffer
 | |
|  * @param[in]  blockSize  length of the input vector
 | |
|  * @param[out] pResult    maximum value returned here
 | |
|  */
 | |
|   void arm_absmax_no_idx_f32(
 | |
|   const float32_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         float32_t * pResult);
 | |
| 
 | |
| /**
 | |
|  * @brief Maximum value of a floating-point vector.
 | |
|  * @param[in]  pSrc       points to the input buffer
 | |
|  * @param[in]  blockSize  length of the input vector
 | |
|  * @param[out] pResult    maximum value returned here
 | |
|  * @param[out] pIndex     index of maximum value returned here
 | |
|  */
 | |
|   void arm_max_f64(
 | |
|   const float64_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         float64_t * pResult,
 | |
|         uint32_t * pIndex);
 | |
| 
 | |
| /**
 | |
|  * @brief Maximum value of absolute values of a floating-point vector.
 | |
|  * @param[in]  pSrc       points to the input buffer
 | |
|  * @param[in]  blockSize  length of the input vector
 | |
|  * @param[out] pResult    maximum value returned here
 | |
|  * @param[out] pIndex     index of maximum value returned here
 | |
|  */
 | |
|   void arm_absmax_f64(
 | |
|   const float64_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         float64_t * pResult,
 | |
|         uint32_t * pIndex);
 | |
| 
 | |
| /**
 | |
|  * @brief Maximum value of absolute values of a floating-point vector.
 | |
|  * @param[in]  pSrc       points to the input buffer
 | |
|  * @param[in]  blockSize  length of the input vector
 | |
|  * @param[out] pResult    maximum value returned here
 | |
|  */
 | |
|   void arm_absmax_no_idx_f64(
 | |
|   const float64_t * pSrc,
 | |
|         uint32_t blockSize,
 | |
|         float64_t * pResult);
 | |
| 
 | |
|   /**
 | |
|     @brief         Maximum value of a floating-point vector.
 | |
|     @param[in]     pSrc       points to the input vector
 | |
|     @param[in]     blockSize  number of samples in input vector
 | |
|     @param[out]    pResult    maximum value returned here
 | |
|     @return        none
 | |
|    */
 | |
|   void arm_max_no_idx_f32(
 | |
|       const float32_t *pSrc,
 | |
|       uint32_t   blockSize,
 | |
|       float32_t *pResult);
 | |
| 
 | |
|   /**
 | |
|     @brief         Minimum value of a floating-point vector.
 | |
|     @param[in]     pSrc       points to the input vector
 | |
|     @param[in]     blockSize  number of samples in input vector
 | |
|     @param[out]    pResult    minimum value returned here
 | |
|     @return        none
 | |
|    */
 | |
|   void arm_min_no_idx_f32(
 | |
|       const float32_t *pSrc,
 | |
|       uint32_t   blockSize,
 | |
|       float32_t *pResult);
 | |
| 
 | |
|   /**
 | |
|     @brief         Maximum value of a floating-point vector.
 | |
|     @param[in]     pSrc       points to the input vector
 | |
|     @param[in]     blockSize  number of samples in input vector
 | |
|     @param[out]    pResult    maximum value returned here
 | |
|     @return        none
 | |
|    */
 | |
|   void arm_max_no_idx_f64(
 | |
|       const float64_t *pSrc,
 | |
|       uint32_t   blockSize,
 | |
|       float64_t *pResult);
 | |
| 
 | |
|   /**
 | |
|     @brief         Maximum value of a q31 vector.
 | |
|     @param[in]     pSrc       points to the input vector
 | |
|     @param[in]     blockSize  number of samples in input vector
 | |
|     @param[out]    pResult    maximum value returned here
 | |
|     @return        none
 | |
|    */
 | |
|   void arm_max_no_idx_q31(
 | |
|       const q31_t *pSrc,
 | |
|       uint32_t   blockSize,
 | |
|       q31_t *pResult);
 | |
| 
 | |
|   /**
 | |
|     @brief         Maximum value of a q15 vector.
 | |
|     @param[in]     pSrc       points to the input vector
 | |
|     @param[in]     blockSize  number of samples in input vector
 | |
|     @param[out]    pResult    maximum value returned here
 | |
|     @return        none
 | |
|    */
 | |
|   void arm_max_no_idx_q15(
 | |
|       const q15_t *pSrc,
 | |
|       uint32_t   blockSize,
 | |
|       q15_t *pResult);
 | |
| 
 | |
|   /**
 | |
|     @brief         Maximum value of a q7 vector.
 | |
|     @param[in]     pSrc       points to the input vector
 | |
|     @param[in]     blockSize  number of samples in input vector
 | |
|     @param[out]    pResult    maximum value returned here
 | |
|     @return        none
 | |
|    */
 | |
|   void arm_max_no_idx_q7(
 | |
|       const q7_t *pSrc,
 | |
|       uint32_t   blockSize,
 | |
|       q7_t *pResult);
 | |
| 
 | |
|   /**
 | |
|     @brief         Minimum value of a floating-point vector.
 | |
|     @param[in]     pSrc       points to the input vector
 | |
|     @param[in]     blockSize  number of samples in input vector
 | |
|     @param[out]    pResult    minimum value returned here
 | |
|     @return        none
 | |
|    */
 | |
|   void arm_min_no_idx_f64(
 | |
|       const float64_t *pSrc,
 | |
|       uint32_t   blockSize,
 | |
|       float64_t *pResult);
 | |
| 
 | |
| /**
 | |
|     @brief         Minimum value of a q31 vector.
 | |
|     @param[in]     pSrc       points to the input vector
 | |
|     @param[in]     blockSize  number of samples in input vector
 | |
|     @param[out]    pResult    minimum value returned here
 | |
|     @return        none
 | |
|    */
 | |
|   void arm_min_no_idx_q31(
 | |
|       const q31_t *pSrc,
 | |
|       uint32_t   blockSize,
 | |
|       q31_t *pResult);
 | |
| 
 | |
|   /**
 | |
|     @brief         Minimum value of a q15 vector.
 | |
|     @param[in]     pSrc       points to the input vector
 | |
|     @param[in]     blockSize  number of samples in input vector
 | |
|     @param[out]    pResult    minimum value returned here
 | |
|     @return        none
 | |
|    */
 | |
|   void arm_min_no_idx_q15(
 | |
|       const q15_t *pSrc,
 | |
|       uint32_t   blockSize,
 | |
|       q15_t *pResult);
 | |
| 
 | |
|   /**
 | |
|     @brief         Minimum value of a q7 vector.
 | |
|     @param[in]     pSrc       points to the input vector
 | |
|     @param[in]     blockSize  number of samples in input vector
 | |
|     @param[out]    pResult    minimum value returned here
 | |
|     @return        none
 | |
|    */
 | |
|   void arm_min_no_idx_q7(
 | |
|       const q7_t *pSrc,
 | |
|       uint32_t   blockSize,
 | |
|       q7_t *pResult);
 | |
| 
 | |
| /**
 | |
|   @brief         Mean square error between two Q7 vectors.
 | |
|   @param[in]     pSrcA       points to the first input vector
 | |
|   @param[in]     pSrcB       points to the second input vector
 | |
|   @param[in]     blockSize  number of samples in input vector
 | |
|   @param[out]    pResult    mean square error
 | |
|   @return        none 
 | |
| */
 | |
|   
 | |
| void arm_mse_q7(
 | |
|   const q7_t * pSrcA,
 | |
|   const q7_t * pSrcB,
 | |
|         uint32_t blockSize,
 | |
|         q7_t * pResult);
 | |
| 
 | |
| /**
 | |
|   @brief         Mean square error between two Q15 vectors.
 | |
|   @param[in]     pSrcA       points to the first input vector
 | |
|   @param[in]     pSrcB       points to the second input vector
 | |
|   @param[in]     blockSize  number of samples in input vector
 | |
|   @param[out]    pResult    mean square error
 | |
|   @return        none 
 | |
| */
 | |
|   
 | |
| void arm_mse_q15(
 | |
|   const q15_t * pSrcA,
 | |
|   const q15_t * pSrcB,
 | |
|         uint32_t blockSize,
 | |
|         q15_t * pResult);
 | |
| 
 | |
| /**
 | |
|   @brief         Mean square error between two Q31 vectors.
 | |
|   @param[in]     pSrcA       points to the first input vector
 | |
|   @param[in]     pSrcB       points to the second input vector
 | |
|   @param[in]     blockSize  number of samples in input vector
 | |
|   @param[out]    pResult    mean square error
 | |
|   @return        none 
 | |
| */
 | |
|   
 | |
| void arm_mse_q31(
 | |
|   const q31_t * pSrcA,
 | |
|   const q31_t * pSrcB,
 | |
|         uint32_t blockSize,
 | |
|         q31_t * pResult);
 | |
| 
 | |
| /**
 | |
|   @brief         Mean square error between two single precision float vectors.
 | |
|   @param[in]     pSrcA       points to the first input vector
 | |
|   @param[in]     pSrcB       points to the second input vector
 | |
|   @param[in]     blockSize  number of samples in input vector
 | |
|   @param[out]    pResult    mean square error
 | |
|   @return        none 
 | |
| */
 | |
|   
 | |
| void arm_mse_f32(
 | |
|   const float32_t * pSrcA,
 | |
|   const float32_t * pSrcB,
 | |
|         uint32_t blockSize,
 | |
|         float32_t * pResult);
 | |
| 
 | |
| /**
 | |
|   @brief         Mean square error between two double precision float vectors.
 | |
|   @param[in]     pSrcA       points to the first input vector
 | |
|   @param[in]     pSrcB       points to the second input vector
 | |
|   @param[in]     blockSize  number of samples in input vector
 | |
|   @param[out]    pResult    mean square error
 | |
|   @return        none 
 | |
| */
 | |
|   
 | |
| void arm_mse_f64(
 | |
|   const float64_t * pSrcA,
 | |
|   const float64_t * pSrcB,
 | |
|         uint32_t blockSize,
 | |
|         float64_t * pResult);
 | |
| 
 | |
| #ifdef   __cplusplus
 | |
| }
 | |
| #endif
 | |
| 
 | |
| #endif /* ifndef _STATISTICS_FUNCTIONS_H_ */
 | 
