You can not select more than 25 topics Topics must start with a chinese character,a letter or number, can include dashes ('-') and can be up to 35 characters long.

sgemmt.c 5.6 kB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165
  1. #include "relapack.h"
  2. static void RELAPACK_sgemmt_rec(const char *, const char *, const char *,
  3. const blasint *, const blasint *, const float *, const float *, const blasint *,
  4. const float *, const blasint *, const float *, float *, const blasint *);
  5. static void RELAPACK_sgemmt_rec2(const char *, const char *, const char *,
  6. const blasint *, const blasint *, const float *, const float *, const blasint *,
  7. const float *, const blasint *, const float *, float *, const blasint *);
  8. /** SGEMMT computes a matrix-matrix product with general matrices but updates
  9. * only the upper or lower triangular part of the result matrix.
  10. *
  11. * This routine performs the same operation as the BLAS routine
  12. * sgemm(transA, transB, n, n, k, alpha, A, ldA, B, ldB, beta, C, ldC)
  13. * but only updates the triangular part of C specified by uplo:
  14. * If (*uplo == 'L'), only the lower triangular part of C is updated,
  15. * otherwise the upper triangular part is updated.
  16. * */
  17. void RELAPACK_sgemmt(
  18. const char *uplo, const char *transA, const char *transB,
  19. const blasint *n, const blasint *k,
  20. const float *alpha, const float *A, const blasint *ldA,
  21. const float *B, const blasint *ldB,
  22. const float *beta, float *C, const blasint *ldC
  23. ) {
  24. #if HAVE_XGEMMT
  25. BLAS(sgemmt)(uplo, transA, transB, n, k, alpha, A, ldA, B, ldB, beta, C, ldC);
  26. return;
  27. #else
  28. // Check arguments
  29. const blasint lower = LAPACK(lsame)(uplo, "L");
  30. const blasint upper = LAPACK(lsame)(uplo, "U");
  31. const blasint notransA = LAPACK(lsame)(transA, "N");
  32. const blasint tranA = LAPACK(lsame)(transA, "T");
  33. const blasint notransB = LAPACK(lsame)(transB, "N");
  34. const blasint tranB = LAPACK(lsame)(transB, "T");
  35. blasint info = 0;
  36. if (!lower && !upper)
  37. info = 1;
  38. else if (!tranA && !notransA)
  39. info = 2;
  40. else if (!tranB && !notransB)
  41. info = 3;
  42. else if (*n < 0)
  43. info = 4;
  44. else if (*k < 0)
  45. info = 5;
  46. else if (*ldA < MAX(1, notransA ? *n : *k))
  47. info = 8;
  48. else if (*ldB < MAX(1, notransB ? *k : *n))
  49. info = 10;
  50. else if (*ldC < MAX(1, *n))
  51. info = 13;
  52. if (info) {
  53. LAPACK(xerbla)("SGEMMT", &info, strlen("SGEMMT"));
  54. return;
  55. }
  56. // Clean char * arguments
  57. const char cleanuplo = lower ? 'L' : 'U';
  58. const char cleantransA = notransA ? 'N' : 'T';
  59. const char cleantransB = notransB ? 'N' : 'T';
  60. // Recursive kernel
  61. RELAPACK_sgemmt_rec(&cleanuplo, &cleantransA, &cleantransB, n, k, alpha, A, ldA, B, ldB, beta, C, ldC);
  62. #endif
  63. }
  64. /** sgemmt's recursive compute kernel */
  65. static void RELAPACK_sgemmt_rec(
  66. const char *uplo, const char *transA, const char *transB,
  67. const blasint *n, const blasint *k,
  68. const float *alpha, const float *A, const blasint *ldA,
  69. const float *B, const blasint *ldB,
  70. const float *beta, float *C, const blasint *ldC
  71. ) {
  72. if (*n <= MAX(CROSSOVER_SGEMMT, 1)) {
  73. // Unblocked
  74. RELAPACK_sgemmt_rec2(uplo, transA, transB, n, k, alpha, A, ldA, B, ldB, beta, C, ldC);
  75. return;
  76. }
  77. // Splitting
  78. const blasint n1 = SREC_SPLIT(*n);
  79. const blasint n2 = *n - n1;
  80. // A_T
  81. // A_B
  82. const float *const A_T = A;
  83. const float *const A_B = A + ((*transA == 'N') ? n1 : *ldA * n1);
  84. // B_L B_R
  85. const float *const B_L = B;
  86. const float *const B_R = B + ((*transB == 'N') ? *ldB * n1 : n1);
  87. // C_TL C_TR
  88. // C_BL C_BR
  89. float *const C_TL = C;
  90. float *const C_TR = C + *ldC * n1;
  91. float *const C_BL = C + n1;
  92. float *const C_BR = C + *ldC * n1 + n1;
  93. // recursion(C_TL)
  94. RELAPACK_sgemmt_rec(uplo, transA, transB, &n1, k, alpha, A_T, ldA, B_L, ldB, beta, C_TL, ldC);
  95. if (*uplo == 'L')
  96. // C_BL = alpha A_B B_L + beta C_BL
  97. BLAS(sgemm)(transA, transB, &n2, &n1, k, alpha, A_B, ldA, B_L, ldB, beta, C_BL, ldC);
  98. else
  99. // C_TR = alpha A_T B_R + beta C_TR
  100. BLAS(sgemm)(transA, transB, &n1, &n2, k, alpha, A_T, ldA, B_R, ldB, beta, C_TR, ldC);
  101. // recursion(C_BR)
  102. RELAPACK_sgemmt_rec(uplo, transA, transB, &n2, k, alpha, A_B, ldA, B_R, ldB, beta, C_BR, ldC);
  103. }
  104. /** sgemmt's unblocked compute kernel */
  105. static void RELAPACK_sgemmt_rec2(
  106. const char *uplo, const char *transA, const char *transB,
  107. const blasint *n, const blasint *k,
  108. const float *alpha, const float *A, const blasint *ldA,
  109. const float *B, const blasint *ldB,
  110. const float *beta, float *C, const blasint *ldC
  111. ) {
  112. const blasint incB = (*transB == 'N') ? 1 : *ldB;
  113. const blasint incC = 1;
  114. blasint i;
  115. for (i = 0; i < *n; i++) {
  116. // A_0
  117. // A_i
  118. const float *const A_0 = A;
  119. const float *const A_i = A + ((*transA == 'N') ? i : *ldA * i);
  120. // * B_i *
  121. const float *const B_i = B + ((*transB == 'N') ? *ldB * i : i);
  122. // * C_0i *
  123. // * C_ii *
  124. float *const C_0i = C + *ldC * i;
  125. float *const C_ii = C + *ldC * i + i;
  126. if (*uplo == 'L') {
  127. const blasint nmi = *n - i;
  128. if (*transA == 'N')
  129. BLAS(sgemv)(transA, &nmi, k, alpha, A_i, ldA, B_i, &incB, beta, C_ii, &incC);
  130. else
  131. BLAS(sgemv)(transA, k, &nmi, alpha, A_i, ldA, B_i, &incB, beta, C_ii, &incC);
  132. } else {
  133. const blasint ip1 = i + 1;
  134. if (*transA == 'N')
  135. BLAS(sgemv)(transA, &ip1, k, alpha, A_0, ldA, B_i, &incB, beta, C_0i, &incC);
  136. else
  137. BLAS(sgemv)(transA, k, &ip1, alpha, A_0, ldA, B_i, &incB, beta, C_0i, &incC);
  138. }
  139. }
  140. }