ComplexTestsQ31.cpp 9.5 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290
  1. #include "ComplexTestsQ31.h"
  2. #include "Error.h"
  3. #define SNR_THRESHOLD 100
  4. /*
  5. Reference patterns are generated with
  6. a double precision computation.
  7. */
  8. #define ABS_ERROR_Q31 ((q31_t)20)
  9. #define ABS_ERROR_Q63 ((q63_t)(1<<16))
  10. void ComplexTestsQ31::test_cmplx_conj_q31()
  11. {
  12. const q31_t *inp1=input1.ptr();
  13. q31_t *refp=ref.ptr();
  14. q31_t *outp=output.ptr();
  15. arm_cmplx_conj_q31(inp1,outp,input1.nbSamples() >> 1 );
  16. ASSERT_EMPTY_TAIL(output);
  17. ASSERT_SNR(output,ref,(float32_t)SNR_THRESHOLD);
  18. ASSERT_NEAR_EQ(output,ref,ABS_ERROR_Q31);
  19. }
  20. void ComplexTestsQ31::test_cmplx_dot_prod_q31()
  21. {
  22. q63_t re,im;
  23. const q31_t *inp1=input1.ptr();
  24. const q31_t *inp2=input2.ptr();
  25. q63_t *outp=dotOutput.ptr();
  26. arm_cmplx_dot_prod_q31(inp1,inp2,input1.nbSamples() >> 1 ,&re,&im);
  27. outp[0] = re;
  28. outp[1] = im;
  29. ASSERT_SNR(dotOutput,dotRef,(float32_t)SNR_THRESHOLD);
  30. ASSERT_NEAR_EQ(dotOutput,dotRef,ABS_ERROR_Q63);
  31. ASSERT_EMPTY_TAIL(dotOutput);
  32. }
  33. void ComplexTestsQ31::test_cmplx_mag_q31()
  34. {
  35. const q31_t *inp1=input1.ptr();
  36. q31_t *refp=ref.ptr();
  37. q31_t *outp=output.ptr();
  38. arm_cmplx_mag_q31(inp1,outp,input1.nbSamples() >> 1 );
  39. ASSERT_EMPTY_TAIL(output);
  40. ASSERT_SNR(output,ref,(float32_t)SNR_THRESHOLD);
  41. ASSERT_NEAR_EQ(output,ref,ABS_ERROR_Q31);
  42. }
  43. void ComplexTestsQ31::test_cmplx_mag_squared_q31()
  44. {
  45. const q31_t *inp1=input1.ptr();
  46. q31_t *refp=ref.ptr();
  47. q31_t *outp=output.ptr();
  48. arm_cmplx_mag_squared_q31(inp1,outp,input1.nbSamples() >> 1 );
  49. ASSERT_EMPTY_TAIL(output);
  50. ASSERT_SNR(output,ref,(float32_t)SNR_THRESHOLD);
  51. ASSERT_NEAR_EQ(output,ref,ABS_ERROR_Q31);
  52. }
  53. void ComplexTestsQ31::test_cmplx_mult_cmplx_q31()
  54. {
  55. const q31_t *inp1=input1.ptr();
  56. const q31_t *inp2=input2.ptr();
  57. q31_t *refp=ref.ptr();
  58. q31_t *outp=output.ptr();
  59. arm_cmplx_mult_cmplx_q31(inp1,inp2,outp,input1.nbSamples() >> 1 );
  60. ASSERT_EMPTY_TAIL(output);
  61. ASSERT_SNR(output,ref,(float32_t)SNR_THRESHOLD);
  62. ASSERT_NEAR_EQ(output,ref,ABS_ERROR_Q31);
  63. }
  64. void ComplexTestsQ31::test_cmplx_mult_real_q31()
  65. {
  66. const q31_t *inp1=input1.ptr();
  67. const q31_t *inp2=input2.ptr();
  68. q31_t *refp=ref.ptr();
  69. q31_t *outp=output.ptr();
  70. arm_cmplx_mult_real_q31(inp1,inp2,outp,input1.nbSamples() >> 1 );
  71. ASSERT_EMPTY_TAIL(output);
  72. ASSERT_SNR(output,ref,(float32_t)SNR_THRESHOLD);
  73. ASSERT_NEAR_EQ(output,ref,ABS_ERROR_Q31);
  74. }
  75. void ComplexTestsQ31::setUp(Testing::testID_t id,std::vector<Testing::param_t>& params,Client::PatternMgr *mgr)
  76. {
  77. Testing::nbSamples_t nb=MAX_NB_SAMPLES;
  78. switch(id)
  79. {
  80. case ComplexTestsQ31::TEST_CMPLX_CONJ_Q31_1:
  81. nb = 3;
  82. ref.reload(ComplexTestsQ31::REF_CONJ_Q31_ID,mgr,nb << 1);
  83. input1.reload(ComplexTestsQ31::INPUT1_Q31_ID,mgr,nb << 1);
  84. output.create(ref.nbSamples(),ComplexTestsQ31::OUT_SAMPLES_Q31_ID,mgr);
  85. break;
  86. case ComplexTestsQ31::TEST_CMPLX_CONJ_Q31_2:
  87. nb = 8;
  88. ref.reload(ComplexTestsQ31::REF_CONJ_Q31_ID,mgr,nb << 1);
  89. input1.reload(ComplexTestsQ31::INPUT1_Q31_ID,mgr,nb << 1);
  90. output.create(ref.nbSamples(),ComplexTestsQ31::OUT_SAMPLES_Q31_ID,mgr);
  91. break;
  92. case ComplexTestsQ31::TEST_CMPLX_CONJ_Q31_3:
  93. nb = 9;
  94. ref.reload(ComplexTestsQ31::REF_CONJ_Q31_ID,mgr,nb << 1);
  95. input1.reload(ComplexTestsQ31::INPUT1_Q31_ID,mgr,nb << 1);
  96. output.create(ref.nbSamples(),ComplexTestsQ31::OUT_SAMPLES_Q31_ID,mgr);
  97. break;
  98. case ComplexTestsQ31::TEST_CMPLX_DOT_PROD_Q31_4:
  99. nb = 3;
  100. dotRef.reload(ComplexTestsQ31::REF_DOT_PROD_3_Q31_ID,mgr);
  101. input1.reload(ComplexTestsQ31::INPUT1_Q31_ID,mgr,nb << 1);
  102. input2.reload(ComplexTestsQ31::INPUT2_Q31_ID,mgr,nb << 1);
  103. dotOutput.create(dotRef.nbSamples(),ComplexTestsQ31::OUT_SAMPLES_Q31_ID,mgr);
  104. break;
  105. case ComplexTestsQ31::TEST_CMPLX_DOT_PROD_Q31_5:
  106. nb = 8;
  107. dotRef.reload(ComplexTestsQ31::REF_DOT_PROD_4N_Q31_ID,mgr);
  108. input1.reload(ComplexTestsQ31::INPUT1_Q31_ID,mgr,nb << 1);
  109. input2.reload(ComplexTestsQ31::INPUT2_Q31_ID,mgr,nb << 1);
  110. dotOutput.create(dotRef.nbSamples(),ComplexTestsQ31::OUT_SAMPLES_Q31_ID,mgr);
  111. break;
  112. case ComplexTestsQ31::TEST_CMPLX_DOT_PROD_Q31_6:
  113. nb = 9;
  114. dotRef.reload(ComplexTestsQ31::REF_DOT_PROD_4N1_Q31_ID,mgr);
  115. input1.reload(ComplexTestsQ31::INPUT1_Q31_ID,mgr,nb << 1);
  116. input2.reload(ComplexTestsQ31::INPUT2_Q31_ID,mgr,nb << 1);
  117. dotOutput.create(dotRef.nbSamples(),ComplexTestsQ31::OUT_SAMPLES_Q31_ID,mgr);
  118. break;
  119. case ComplexTestsQ31::TEST_CMPLX_MAG_Q31_7:
  120. nb = 3;
  121. ref.reload(ComplexTestsQ31::REF_MAG_Q31_ID,mgr,nb);
  122. input1.reload(ComplexTestsQ31::INPUT1_Q31_ID,mgr,nb << 1);
  123. output.create(ref.nbSamples(),ComplexTestsQ31::OUT_SAMPLES_Q31_ID,mgr);
  124. break;
  125. case ComplexTestsQ31::TEST_CMPLX_MAG_Q31_8:
  126. nb = 8;
  127. ref.reload(ComplexTestsQ31::REF_MAG_Q31_ID,mgr,nb);
  128. input1.reload(ComplexTestsQ31::INPUT1_Q31_ID,mgr,nb << 1);
  129. output.create(ref.nbSamples(),ComplexTestsQ31::OUT_SAMPLES_Q31_ID,mgr);
  130. break;
  131. case ComplexTestsQ31::TEST_CMPLX_MAG_Q31_9:
  132. nb = 9;
  133. ref.reload(ComplexTestsQ31::REF_MAG_Q31_ID,mgr,nb);
  134. input1.reload(ComplexTestsQ31::INPUT1_Q31_ID,mgr,nb << 1);
  135. output.create(ref.nbSamples(),ComplexTestsQ31::OUT_SAMPLES_Q31_ID,mgr);
  136. break;
  137. case ComplexTestsQ31::TEST_CMPLX_MAG_SQUARED_Q31_10:
  138. nb = 3;
  139. ref.reload(ComplexTestsQ31::REF_MAG_SQUARED_Q31_ID,mgr,nb);
  140. input1.reload(ComplexTestsQ31::INPUT1_Q31_ID,mgr,nb << 1);
  141. output.create(ref.nbSamples(),ComplexTestsQ31::OUT_SAMPLES_Q31_ID,mgr);
  142. break;
  143. case ComplexTestsQ31::TEST_CMPLX_MAG_SQUARED_Q31_11:
  144. nb = 8;
  145. ref.reload(ComplexTestsQ31::REF_MAG_SQUARED_Q31_ID,mgr,nb);
  146. input1.reload(ComplexTestsQ31::INPUT1_Q31_ID,mgr,nb << 1);
  147. output.create(ref.nbSamples(),ComplexTestsQ31::OUT_SAMPLES_Q31_ID,mgr);
  148. break;
  149. case ComplexTestsQ31::TEST_CMPLX_MAG_SQUARED_Q31_12:
  150. nb = 9;
  151. ref.reload(ComplexTestsQ31::REF_MAG_SQUARED_Q31_ID,mgr,nb);
  152. input1.reload(ComplexTestsQ31::INPUT1_Q31_ID,mgr,nb << 1);
  153. output.create(ref.nbSamples(),ComplexTestsQ31::OUT_SAMPLES_Q31_ID,mgr);
  154. break;
  155. case ComplexTestsQ31::TEST_CMPLX_MULT_CMPLX_Q31_13:
  156. nb = 3;
  157. ref.reload(ComplexTestsQ31::REF_CMPLX_MULT_CMPLX_Q31_ID,mgr,nb << 1);
  158. input1.reload(ComplexTestsQ31::INPUT1_Q31_ID,mgr,nb << 1);
  159. input2.reload(ComplexTestsQ31::INPUT2_Q31_ID,mgr,nb << 1);
  160. output.create(ref.nbSamples(),ComplexTestsQ31::OUT_SAMPLES_Q31_ID,mgr);
  161. break;
  162. case ComplexTestsQ31::TEST_CMPLX_MULT_CMPLX_Q31_14:
  163. nb = 8;
  164. ref.reload(ComplexTestsQ31::REF_CMPLX_MULT_CMPLX_Q31_ID,mgr,nb << 1);
  165. input1.reload(ComplexTestsQ31::INPUT1_Q31_ID,mgr,nb << 1);
  166. input2.reload(ComplexTestsQ31::INPUT2_Q31_ID,mgr,nb << 1);
  167. output.create(ref.nbSamples(),ComplexTestsQ31::OUT_SAMPLES_Q31_ID,mgr);
  168. break;
  169. case ComplexTestsQ31::TEST_CMPLX_MULT_CMPLX_Q31_15:
  170. nb = 9;
  171. ref.reload(ComplexTestsQ31::REF_CMPLX_MULT_CMPLX_Q31_ID,mgr,nb << 1);
  172. input1.reload(ComplexTestsQ31::INPUT1_Q31_ID,mgr,nb << 1);
  173. input2.reload(ComplexTestsQ31::INPUT2_Q31_ID,mgr,nb << 1);
  174. output.create(ref.nbSamples(),ComplexTestsQ31::OUT_SAMPLES_Q31_ID,mgr);
  175. break;
  176. case ComplexTestsQ31::TEST_CMPLX_MULT_REAL_Q31_16:
  177. nb = 3;
  178. ref.reload(ComplexTestsQ31::REF_CMPLX_MULT_REAL_Q31_ID,mgr,nb << 1);
  179. input1.reload(ComplexTestsQ31::INPUT1_Q31_ID,mgr,nb << 1);
  180. input2.reload(ComplexTestsQ31::INPUT3_Q31_ID,mgr,nb);
  181. output.create(ref.nbSamples(),ComplexTestsQ31::OUT_SAMPLES_Q31_ID,mgr);
  182. break;
  183. case ComplexTestsQ31::TEST_CMPLX_MULT_REAL_Q31_17:
  184. nb = 8;
  185. ref.reload(ComplexTestsQ31::REF_CMPLX_MULT_REAL_Q31_ID,mgr,nb << 1);
  186. input1.reload(ComplexTestsQ31::INPUT1_Q31_ID,mgr,nb << 1);
  187. input2.reload(ComplexTestsQ31::INPUT3_Q31_ID,mgr,nb);
  188. output.create(ref.nbSamples(),ComplexTestsQ31::OUT_SAMPLES_Q31_ID,mgr);
  189. break;
  190. case ComplexTestsQ31::TEST_CMPLX_MULT_REAL_Q31_18:
  191. nb = 9;
  192. ref.reload(ComplexTestsQ31::REF_CMPLX_MULT_REAL_Q31_ID,mgr,nb << 1);
  193. input1.reload(ComplexTestsQ31::INPUT1_Q31_ID,mgr,nb << 1);
  194. input2.reload(ComplexTestsQ31::INPUT3_Q31_ID,mgr,nb);
  195. output.create(ref.nbSamples(),ComplexTestsQ31::OUT_SAMPLES_Q31_ID,mgr);
  196. break;
  197. }
  198. }
  199. void ComplexTestsQ31::tearDown(Testing::testID_t id,Client::PatternMgr *mgr)
  200. {
  201. switch(id)
  202. {
  203. case ComplexTestsQ31::TEST_CMPLX_DOT_PROD_Q31_4:
  204. case ComplexTestsQ31::TEST_CMPLX_DOT_PROD_Q31_5:
  205. case ComplexTestsQ31::TEST_CMPLX_DOT_PROD_Q31_6:
  206. dotOutput.dump(mgr);
  207. break;
  208. default:
  209. output.dump(mgr);
  210. }
  211. }