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			145 lines
		
	
	
		
			3.9 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
			
		
		
	
	
			145 lines
		
	
	
		
			3.9 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
| // Copyright ©2019 The Gonum Authors. All rights reserved.
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| // Use of this source code is governed by a BSD-style
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| // license that can be found in the LICENSE file.
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| 
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| package testblas
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| 
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| import (
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| 	"fmt"
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| 	"testing"
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| 
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| 	"golang.org/x/exp/rand"
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| 
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| 	"gonum.org/v1/gonum/blas"
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| )
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| 
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| type Ztrsmer interface {
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| 	Ztrsm(side blas.Side, uplo blas.Uplo, transA blas.Transpose, diag blas.Diag, m, n int, alpha complex128, a []complex128, lda int, b []complex128, ldb int)
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| }
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| 
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| func ZtrsmTest(t *testing.T, impl Ztrsmer) {
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| 	for _, side := range []blas.Side{blas.Left, blas.Right} {
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| 		for _, uplo := range []blas.Uplo{blas.Lower, blas.Upper} {
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| 			for _, trans := range []blas.Transpose{blas.NoTrans, blas.Trans, blas.ConjTrans} {
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| 				for _, diag := range []blas.Diag{blas.Unit, blas.NonUnit} {
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| 					name := sideString(side) + "-" + uploString(uplo) + "-" + transString(trans) + "-" + diagString(diag)
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| 					t.Run(name, func(t *testing.T) {
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| 						for _, m := range []int{0, 1, 2, 3, 4, 5} {
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| 							for _, n := range []int{0, 1, 2, 3, 4, 5} {
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| 								ztrsmTest(t, impl, side, uplo, trans, diag, m, n)
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| 							}
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| 						}
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| 					})
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| 				}
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| 			}
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| 		}
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| 	}
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| }
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| 
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| func ztrsmTest(t *testing.T, impl Ztrsmer, side blas.Side, uplo blas.Uplo, trans blas.Transpose, diag blas.Diag, m, n int) {
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| 	const tol = 1e-13
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| 
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| 	rnd := rand.New(rand.NewSource(1))
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| 
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| 	nA := m
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| 	if side == blas.Right {
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| 		nA = n
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| 	}
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| 	for _, lda := range []int{max(1, nA), nA + 2} {
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| 		for _, ldb := range []int{max(1, n), n + 3} {
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| 			for _, alpha := range []complex128{0, 1, complex(0.7, -0.9)} {
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| 				// Allocate the matrix A and fill it with random numbers.
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| 				a := make([]complex128, nA*lda)
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| 				for i := range a {
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| 					a[i] = rndComplex128(rnd)
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| 				}
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| 				// Set some elements of A to 0 and 1 to cover special cases in Ztrsm.
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| 				if nA > 2 {
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| 					if uplo == blas.Upper {
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| 						a[nA-2] = 1
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| 						a[nA-1] = 0
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| 					} else {
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| 						a[(nA-2)*lda] = 1
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| 						a[(nA-1)*lda] = 0
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| 					}
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| 				}
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| 				// Create a copy of A for checking that Ztrsm
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| 				// does not modify its triangle opposite to uplo.
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| 				aCopy := make([]complex128, len(a))
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| 				copy(aCopy, a)
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| 				// Create a dense representation of A for
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| 				// computing the right-hand side matrix using zmm.
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| 				aTri := make([]complex128, len(a))
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| 				copy(aTri, a)
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| 				if uplo == blas.Upper {
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| 					for i := 0; i < nA; i++ {
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| 						// Zero out the lower triangle.
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| 						for j := 0; j < i; j++ {
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| 							aTri[i*lda+j] = 0
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| 						}
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| 						if diag == blas.Unit {
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| 							aTri[i*lda+i] = 1
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| 						}
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| 					}
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| 				} else {
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| 					for i := 0; i < nA; i++ {
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| 						if diag == blas.Unit {
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| 							aTri[i*lda+i] = 1
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| 						}
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| 						// Zero out the upper triangle.
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| 						for j := i + 1; j < nA; j++ {
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| 							aTri[i*lda+j] = 0
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| 						}
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| 					}
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| 				}
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| 
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| 				// Allocate the right-hand side matrix B and fill it with random numbers.
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| 				b := make([]complex128, m*ldb)
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| 				for i := range b {
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| 					b[i] = rndComplex128(rnd)
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| 				}
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| 				// Set some elements of B to 0 to cover special cases in Ztrsm.
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| 				if m > 1 && n > 1 {
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| 					b[0] = 0
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| 					b[(m-1)*ldb+n-1] = 0
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| 				}
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| 				bCopy := make([]complex128, len(b))
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| 				copy(bCopy, b)
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| 
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| 				// Compute the solution matrix X using Ztrsm.
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| 				// X is overwritten on B.
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| 				impl.Ztrsm(side, uplo, trans, diag, m, n, alpha, a, lda, b, ldb)
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| 				x := b
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| 
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| 				prefix := fmt.Sprintf("m=%v,n=%v,lda=%v,ldb=%v,alpha=%v", m, n, lda, ldb, alpha)
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| 
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| 				if !zsame(a, aCopy) {
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| 					t.Errorf("%v: unexpected modification of A", prefix)
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| 					continue
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| 				}
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| 
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| 				// Compute the left-hand side matrix of op(A)*X=alpha*B or X*op(A)=alpha*B
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| 				// using an internal Zgemm implementation.
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| 				var lhs []complex128
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| 				if side == blas.Left {
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| 					lhs = zmm(trans, blas.NoTrans, m, n, m, 1, aTri, lda, x, ldb, 0, b, ldb)
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| 				} else {
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| 					lhs = zmm(blas.NoTrans, trans, m, n, n, 1, x, ldb, aTri, lda, 0, b, ldb)
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| 				}
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| 
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| 				// Compute the right-hand side matrix alpha*B.
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| 				rhs := bCopy
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| 				for i := 0; i < m; i++ {
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| 					for j := 0; j < n; j++ {
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| 						rhs[i*ldb+j] *= alpha
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| 					}
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| 				}
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| 
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| 				if !zEqualApprox(lhs, rhs, tol) {
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| 					t.Errorf("%v: unexpected result", prefix)
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| 				}
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| 			}
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| 		}
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| 	}
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| }
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