V4.0.1 of the ARM CMSIS DSP libraries. Note that arm_bitreversal2.s, arm_cfft_f32.c and arm_rfft_fast_f32.c had to be removed. arm_bitreversal2.s will not assemble with the online tools. So, the fast f32 FFT functions are not yet available. All the other FFT functions are available.

Dependents:   MPU9150_Example fir_f32 fir_f32 MPU9150_nucleo_noni2cdev ... more

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Power

Calculates the sum of the squares of the elements in the input vector. More...

Functions

void arm_power_f32 (float32_t *pSrc, uint32_t blockSize, float32_t *pResult)
 Sum of the squares of the elements of a floating-point vector.
void arm_power_q15 (q15_t *pSrc, uint32_t blockSize, q63_t *pResult)
 Sum of the squares of the elements of a Q15 vector.
void arm_power_q31 (q31_t *pSrc, uint32_t blockSize, q63_t *pResult)
 Sum of the squares of the elements of a Q31 vector.
void arm_power_q7 (q7_t *pSrc, uint32_t blockSize, q31_t *pResult)
 Sum of the squares of the elements of a Q7 vector.

Detailed Description

Calculates the sum of the squares of the elements in the input vector.

The underlying algorithm is used:

    
 	Result = pSrc[0] * pSrc[0] + pSrc[1] * pSrc[1] + pSrc[2] * pSrc[2] + ... + pSrc[blockSize-1] * pSrc[blockSize-1];    
 

There are separate functions for floating point, Q31, Q15, and Q7 data types.


Function Documentation

void arm_power_f32 ( float32_t *  pSrc,
uint32_t  blockSize,
float32_t *  pResult 
)

Sum of the squares of the elements of a floating-point vector.

Parameters:
[in]*pSrcpoints to the input vector
[in]blockSizelength of the input vector
[out]*pResultsum of the squares value returned here
Returns:
none.

Definition at line 76 of file arm_power_f32.c.

void arm_power_q15 ( q15_t *  pSrc,
uint32_t  blockSize,
q63_t *  pResult 
)

Sum of the squares of the elements of a Q15 vector.

Parameters:
[in]*pSrcpoints to the input vector
[in]blockSizelength of the input vector
[out]*pResultsum of the squares value returned here
Returns:
none.

Scaling and Overflow Behavior:

The function is implemented using a 64-bit internal accumulator. The input is represented in 1.15 format. Intermediate multiplication yields a 2.30 format, and this result is added without saturation to a 64-bit accumulator in 34.30 format. With 33 guard bits in the accumulator, there is no risk of overflow, and the full precision of the intermediate multiplication is preserved. Finally, the return result is in 34.30 format.

Definition at line 73 of file arm_power_q15.c.

void arm_power_q31 ( q31_t *  pSrc,
uint32_t  blockSize,
q63_t *  pResult 
)

Sum of the squares of the elements of a Q31 vector.

Parameters:
[in]*pSrcpoints to the input vector
[in]blockSizelength of the input vector
[out]*pResultsum of the squares value returned here
Returns:
none.

Scaling and Overflow Behavior:

The function is implemented using a 64-bit internal accumulator. The input is represented in 1.31 format. Intermediate multiplication yields a 2.62 format, and this result is truncated to 2.48 format by discarding the lower 14 bits. The 2.48 result is then added without saturation to a 64-bit accumulator in 16.48 format. With 15 guard bits in the accumulator, there is no risk of overflow, and the full precision of the intermediate multiplication is preserved. Finally, the return result is in 16.48 format.

Definition at line 74 of file arm_power_q31.c.

void arm_power_q7 ( q7_t *  pSrc,
uint32_t  blockSize,
q31_t *  pResult 
)

Sum of the squares of the elements of a Q7 vector.

Parameters:
[in]*pSrcpoints to the input vector
[in]blockSizelength of the input vector
[out]*pResultsum of the squares value returned here
Returns:
none.

Scaling and Overflow Behavior:

The function is implemented using a 32-bit internal accumulator. The input is represented in 1.7 format. Intermediate multiplication yields a 2.14 format, and this result is added without saturation to an accumulator in 18.14 format. With 17 guard bits in the accumulator, there is no risk of overflow, and the full precision of the intermediate multiplication is preserved. Finally, the return result is in 18.14 format.

Definition at line 73 of file arm_power_q7.c.