Microchip® Advanced Software Framework

vect_dsp16_complex_conj_at32uc.c File Reference
#include "dsp.h"
#include "preprocessor.h"

Macros

#define ASM_INSTRUCT_COMPACKED(str)   str
 
#define ASM_INSTRUCT_EXTENDED(str)   str
 
#define DSP16_CONJ_END_KERNEL_X_FCT(x_num, data)   __attribute__((__naked__)) DSP16_CONJ_END_KERNEL_X_FCT__(x_num, data)
 
#define DSP16_CONJ_END_KERNEL_X_FCT__(x_num, data)
 
#define DSP16_CONJUGATE_0(r_vect1, r_vect2)
 
#define DSP16_CONJUGATE_1(r_vect1, r_vect2)
 
#define DSP16_CONJUGATE_2(r_vect1, r_vect2)
 
#define DSP16_CONJUGATE_3(r_vect1, r_vect2)
 

Functions

void dsp16_vect_complex_conj (dsp16_complex_t *vect1, dsp16_complex_t *vect2, int size)
 16-bit fixed point version of the complex vector conjugate function. More...
 
static int dsp16_vect_conj_kernel_ext (dsp16_complex_t *vect1, dsp16_complex_t *vect2, int size)
 avr32-uc3 16 bit version More...
 

#define ASM_INSTRUCT_COMPACKED (   str)    str
#define ASM_INSTRUCT_EXTENDED (   str)    str
#define DSP16_CONJ_END_KERNEL_X_FCT (   x_num,
  data 
)    __attribute__((__naked__)) DSP16_CONJ_END_KERNEL_X_FCT__(x_num, data)
#define DSP16_CONJ_END_KERNEL_X_FCT__ (   x_num,
  data 
)
Value:
static void TPASTE2(dsp16_vect_conj_end_kernel_x, x_num)(dsp16_complex_t *vect1, dsp16_complex_t *vect2) \
{ \
__asm__ __volatile__ ( \
"pushm r0-r3, lr\n\t" \
TPASTE2(DSP16_CONJUGATE_, x_num)(r12, r11) \
"popm r0-r3, pc\n\t" \
); \
}
dsp16_complex_t vect1[1<< NLOG]
Definition: benchmark.c:52
16-bit complex signed fixed point type
Definition: dsp_types.h:209
dsp16_t vect2[1<< NLOG]
Definition: benchmark.c:53
#define TPASTE2(a, b)
Definition: tpaste.h:61
#define DSP16_CONJUGATE_0 (   r_vect1,
  r_vect2 
)
#define DSP16_CONJUGATE_1 (   r_vect1,
  r_vect2 
)
Value:
"ld.w r0, "ASTRINGZ(r_vect2)"[0x0]\n\t" \
"sthh.w "ASTRINGZ(r_vect1)"[0x0], r0:b, r0:t\n\t"
#define ASTRINGZ(x)
Absolute stringize.
Definition: stringz.h:71
#define DSP16_CONJUGATE_2 (   r_vect1,
  r_vect2 
)
Value:
"ld.d r0, "ASTRINGZ(r_vect2)"[0x0]\n\t" \
"swap.h r0\n\t" \
"swap.h r1\n\t" \
"st.d "ASTRINGZ(r_vect1)"[0x0], r0\n\t"
#define ASTRINGZ(x)
Absolute stringize.
Definition: stringz.h:71
#define DSP16_CONJUGATE_3 (   r_vect1,
  r_vect2 
)
Value:
"ld.d r0, "ASTRINGZ(r_vect2)"[0x0]\n\t" \
"swap.h r0\n\t" \
"swap.h r1\n\t" \
"st.d "ASTRINGZ(r_vect1)"[0x0], r0\n\t" \
\
"ld.w r0, "ASTRINGZ(r_vect2)"[0x8]\n\t" \
"sthh.w "ASTRINGZ(r_vect1)"[0x8], r0:b, r0:t\n\t"
#define ASTRINGZ(x)
Absolute stringize.
Definition: stringz.h:71

static int dsp16_vect_conj_kernel_ext ( dsp16_complex_t vect1,
dsp16_complex_t vect2,
int  size 
)
static

avr32-uc3 16 bit version

References ASM_INSTRUCT_COMPACKED.

Referenced by dsp16_vect_complex_conj().