BinaryTestsQ31.cpp 4.4 KB

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  1. #include "BinaryTestsQ31.h"
  2. #include <stdio.h>
  3. #include "Error.h"
  4. #define SNR_THRESHOLD 100
  5. /*
  6. Reference patterns are generated with
  7. a double precision computation.
  8. */
  9. #define ABS_ERROR_Q31 ((q31_t)5)
  10. #define ABS_ERROR_Q63 ((q63_t)(1<<16))
  11. #define ONEHALF 0x40000000
  12. /* Upper bound of maximum matrix dimension used by Python */
  13. #define MAXMATRIXDIM 40
  14. #define LOADDATA2() \
  15. const q31_t *inp1=input1.ptr(); \
  16. const q31_t *inp2=input2.ptr(); \
  17. \
  18. q31_t *ap=a.ptr(); \
  19. q31_t *bp=b.ptr(); \
  20. \
  21. q31_t *outp=output.ptr(); \
  22. int16_t *dimsp = dims.ptr(); \
  23. int nbMatrixes = dims.nbSamples() / 3;\
  24. int rows,internal,columns; \
  25. int i;
  26. #define PREPAREDATA2() \
  27. in1.numRows=rows; \
  28. in1.numCols=internal; \
  29. memcpy((void*)ap,(const void*)inp1,2*sizeof(q31_t)*rows*internal);\
  30. in1.pData = ap; \
  31. \
  32. in2.numRows=internal; \
  33. in2.numCols=columns; \
  34. memcpy((void*)bp,(const void*)inp2,2*sizeof(q31_t)*internal*columns);\
  35. in2.pData = bp; \
  36. \
  37. out.numRows=rows; \
  38. out.numCols=columns; \
  39. out.pData = outp;
  40. void BinaryTestsQ31::test_mat_mult_q31()
  41. {
  42. LOADDATA2();
  43. arm_status status;
  44. for(i=0;i < nbMatrixes ; i ++)
  45. {
  46. rows = *dimsp++;
  47. internal = *dimsp++;
  48. columns = *dimsp++;
  49. PREPAREDATA2();
  50. status=arm_mat_mult_q31(&this->in1,&this->in2,&this->out);
  51. ASSERT_TRUE(status==ARM_MATH_SUCCESS);
  52. outp += (rows * columns);
  53. }
  54. ASSERT_EMPTY_TAIL(output);
  55. ASSERT_SNR(output,ref,(q31_t)SNR_THRESHOLD);
  56. ASSERT_NEAR_EQ(output,ref,ABS_ERROR_Q31);
  57. }
  58. void BinaryTestsQ31::test_mat_cmplx_mult_q31()
  59. {
  60. LOADDATA2();
  61. arm_status status;
  62. for(i=0;i < nbMatrixes ; i ++)
  63. {
  64. rows = *dimsp++;
  65. internal = *dimsp++;
  66. columns = *dimsp++;
  67. PREPAREDATA2();
  68. status=arm_mat_cmplx_mult_q31(&this->in1,&this->in2,&this->out);
  69. ASSERT_TRUE(status==ARM_MATH_SUCCESS);
  70. outp += (2*rows * columns);
  71. }
  72. ASSERT_EMPTY_TAIL(output);
  73. ASSERT_SNR(output,ref,(q31_t)SNR_THRESHOLD);
  74. ASSERT_NEAR_EQ(output,ref,ABS_ERROR_Q31);
  75. }
  76. void BinaryTestsQ31::setUp(Testing::testID_t id,std::vector<Testing::param_t>& params,Client::PatternMgr *mgr)
  77. {
  78. (void)params;
  79. switch(id)
  80. {
  81. case TEST_MAT_MULT_Q31_1:
  82. input1.reload(BinaryTestsQ31::INPUTS1_Q31_ID,mgr);
  83. input2.reload(BinaryTestsQ31::INPUTS2_Q31_ID,mgr);
  84. dims.reload(BinaryTestsQ31::DIMSBINARY1_S16_ID,mgr);
  85. ref.reload(BinaryTestsQ31::REFMUL1_Q31_ID,mgr);
  86. output.create(ref.nbSamples(),BinaryTestsQ31::OUT_Q31_ID,mgr);
  87. a.create(MAXMATRIXDIM*MAXMATRIXDIM,BinaryTestsQ31::TMPA_Q31_ID,mgr);
  88. b.create(MAXMATRIXDIM*MAXMATRIXDIM,BinaryTestsQ31::TMPB_Q31_ID,mgr);
  89. break;
  90. case TEST_MAT_CMPLX_MULT_Q31_2:
  91. input1.reload(BinaryTestsQ31::INPUTSC1_Q31_ID,mgr);
  92. input2.reload(BinaryTestsQ31::INPUTSC2_Q31_ID,mgr);
  93. dims.reload(BinaryTestsQ31::DIMSBINARY1_S16_ID,mgr);
  94. ref.reload(BinaryTestsQ31::REFCMPLXMUL1_Q31_ID,mgr);
  95. output.create(ref.nbSamples(),BinaryTestsQ31::OUT_Q31_ID,mgr);
  96. a.create(2*MAXMATRIXDIM*MAXMATRIXDIM,BinaryTestsQ31::TMPA_Q31_ID,mgr);
  97. b.create(2*MAXMATRIXDIM*MAXMATRIXDIM,BinaryTestsQ31::TMPB_Q31_ID,mgr);
  98. break;
  99. }
  100. }
  101. void BinaryTestsQ31::tearDown(Testing::testID_t id,Client::PatternMgr *mgr)
  102. {
  103. (void)id;
  104. output.dump(mgr);
  105. }