mirror of
https://github.com/gonum/gonum.git
synced 2025-10-06 07:37:03 +08:00
mat: add NonZeroDoer interfaces and implementations
Also clean up some documentation and missing type checks related to tests for NonZeroDoers.
This commit is contained in:
53
mat/band.go
53
mat/band.go
@@ -13,6 +13,10 @@ var (
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_ Matrix = bandDense
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_ Banded = bandDense
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_ RawBander = bandDense
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_ NonZeroDoer = bandDense
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_ RowNonZeroDoer = bandDense
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_ ColNonZeroDoer = bandDense
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)
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// BandDense represents a band matrix in dense storage format.
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@@ -39,6 +43,12 @@ type RawBander interface {
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RawBand() blas64.Band
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}
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// A MutableBanded can set elements of a band matrix.
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type MutableBanded interface {
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Banded
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SetBand(i, j int, v float64)
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}
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var (
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_ Matrix = TransposeBand{}
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_ Banded = TransposeBand{}
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@@ -173,3 +183,46 @@ func (b *BandDense) TBand() Banded {
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func (b *BandDense) RawBand() blas64.Band {
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return b.mat
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}
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// DoNonZero calls the function fn for each of the non-zero elements of b. The function fn
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// takes a row/column index and the element value of b at (i, j).
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func (b *BandDense) DoNonZero(fn func(i, j int, v float64)) {
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for i := 0; i < min(b.mat.Rows, b.mat.Cols+b.mat.KL); i++ {
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for j := max(0, i-b.mat.KL); j < min(b.mat.Cols, i+b.mat.KU+1); j++ {
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v := b.at(i, j)
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if v != 0 {
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fn(i, j, v)
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}
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}
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}
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}
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// DoRowNonZero calls the function fn for each of the non-zero elements of row i of b. The function fn
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// takes a row/column index and the element value of b at (i, j).
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func (b *BandDense) DoRowNonZero(i int, fn func(i, j int, v float64)) {
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if i < 0 || b.mat.Rows <= i {
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panic(ErrRowAccess)
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}
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for j := max(0, i-b.mat.KL); j < min(b.mat.Cols, i+b.mat.KU+1); j++ {
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v := b.at(i, j)
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if v != 0 {
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fn(i, j, v)
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}
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}
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}
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// DoColNonZero calls the function fn for each of the non-zero elements of column j of b. The function fn
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// takes a row/column index and the element value of b at (i, j).
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func (b *BandDense) DoColNonZero(j int, fn func(i, j int, v float64)) {
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if j < 0 || b.mat.Cols <= j {
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panic(ErrColAccess)
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}
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for i := 0; i < min(b.mat.Rows, b.mat.Cols+b.mat.KL); i++ {
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if i-b.mat.KL <= j && j < i+b.mat.KU+1 {
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v := b.at(i, j)
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if v != 0 {
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fn(i, j, v)
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}
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}
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}
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}
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@@ -182,6 +182,24 @@ type RawVectorer interface {
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RawVector() blas64.Vector
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}
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// A NonZeroDoer can call a function for each non-zero element of the receiver.
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// The parameters of the function are the element indices and its value.
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type NonZeroDoer interface {
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DoNonZero(func(i, j int, v float64))
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}
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// A RowNonZeroDoer can call a function for each non-zero element of a row of the receiver.
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// The parameters of the function are the element indices and its value.
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type RowNonZeroDoer interface {
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DoRowNonZero(i int, fn func(i, j int, v float64))
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}
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// A ColNonZeroDoer can call a function for each non-zero element of a column of the receiver.
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// The parameters of the function are the element indices and its value.
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type ColNonZeroDoer interface {
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DoColNonZero(j int, fn func(i, j int, v float64))
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}
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// TODO(btracey): Consider adding CopyCol/CopyRow if the behavior seems useful.
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// TODO(btracey): Add in fast paths to Row/Col for the other concrete types
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// (TriDense, etc.) as well as relevant interfaces (RowColer, RawRowViewer, etc.)
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@@ -521,3 +521,94 @@ func TestTrace(t *testing.T) {
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}
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testOneInputFunc(t, "Trace", f, denseComparison, sameAnswerFloat, isAnyType, isSquare)
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}
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func TestDoer(t *testing.T) {
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type MatrixDoer interface {
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Matrix
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NonZeroDoer
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RowNonZeroDoer
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ColNonZeroDoer
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}
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ones := func(n int) []float64 {
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data := make([]float64, n)
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for i := range data {
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data[i] = 1
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}
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return data
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}
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for i, m := range []MatrixDoer{
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NewTriDense(3, Lower, ones(3*3)),
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NewTriDense(3, Upper, ones(3*3)),
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NewBandDense(6, 6, 1, 1, ones(3*6)),
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NewBandDense(6, 10, 1, 1, ones(3*6)),
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NewBandDense(10, 6, 1, 1, ones(7*3)),
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NewSymBandDense(3, 0, ones(3)),
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NewSymBandDense(3, 1, ones(3*(1+1))),
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NewSymBandDense(6, 1, ones(6*(1+1))),
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NewSymBandDense(6, 2, ones(6*(2+1))),
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} {
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r, c := m.Dims()
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want := Sum(m)
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// got and fn sum the accessed elements in
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// the Doer that is being operated on.
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// fn also tests that the accessed elements
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// are within the writable areas of the
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// matrix to check that only valid elements
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// are operated on.
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var got float64
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fn := func(i, j int, v float64) {
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got += v
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switch m := m.(type) {
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case MutableTriangular:
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m.SetTri(i, j, v)
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case MutableBanded:
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m.SetBand(i, j, v)
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case MutableSymBanded:
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m.SetSymBand(i, j, v)
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default:
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panic("bad test: need mutable type")
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}
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}
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panicked, message := panics(func() { m.DoNonZero(fn) })
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if panicked {
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t.Errorf("unexpected panic for Doer test %d: %q", i, message)
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continue
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}
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if got != want {
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t.Errorf("unexpected Doer sum: got:%f want:%f", got, want)
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}
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// Reset got for testing with DoRowNonZero.
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got = 0
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panicked, message = panics(func() {
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for i := 0; i < r; i++ {
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m.DoRowNonZero(i, fn)
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}
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})
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if panicked {
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t.Errorf("unexpected panic for RowDoer test %d: %q", i, message)
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continue
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}
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if got != want {
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t.Errorf("unexpected RowDoer sum: got:%f want:%f", got, want)
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}
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// Reset got for testing with DoColNonZero.
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got = 0
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panicked, message = panics(func() {
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for j := 0; j < c; j++ {
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m.DoColNonZero(j, fn)
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}
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})
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if panicked {
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t.Errorf("unexpected panic for ColDoer test %d: %q", i, message)
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continue
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}
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if got != want {
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t.Errorf("unexpected ColDoer sum: got:%f want:%f", got, want)
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}
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}
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}
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@@ -16,6 +16,10 @@ var (
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_ Banded = symBandDense
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_ RawSymBander = symBandDense
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_ MutableSymBanded = symBandDense
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_ NonZeroDoer = symBandDense
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_ RowNonZeroDoer = symBandDense
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_ ColNonZeroDoer = symBandDense
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)
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// SymBandDense represents a symmetric band matrix in dense storage format.
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@@ -41,7 +45,7 @@ type RawSymBander interface {
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// NewSymBandDense creates a new SymBand matrix with n rows and columns. If data == nil,
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// a new slice is allocated for the backing slice. If len(data) == n*(k+1),
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// data is used as the backing slice, and changes to the elements of the returned
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// BandDense will be reflected in data. If neither of these is true, NewSymBandDense
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// SymBandDense will be reflected in data. If neither of these is true, NewSymBandDense
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// will panic. k must be at least zero and less than n, otherwise NewBandDense will panic.
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//
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// The data must be arranged in row-major order constructed by removing the zeros
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@@ -126,3 +130,46 @@ func (s *SymBandDense) TBand() Banded {
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func (s *SymBandDense) RawSymBand() blas64.SymmetricBand {
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return s.mat
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}
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// DoNonZero calls the function fn for each of the non-zero elements of s. The function fn
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// takes a row/column index and the element value of s at (i, j).
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func (s *SymBandDense) DoNonZero(fn func(i, j int, v float64)) {
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for i := 0; i < s.mat.N; i++ {
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for j := max(0, i-s.mat.K); j < min(s.mat.N, i+s.mat.K+1); j++ {
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v := s.at(i, j)
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if v != 0 {
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fn(i, j, v)
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}
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}
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}
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}
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// DoRowNonZero calls the function fn for each of the non-zero elements of row i of s. The function fn
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// takes a row/column index and the element value of s at (i, j).
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func (s *SymBandDense) DoRowNonZero(i int, fn func(i, j int, v float64)) {
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if i < 0 || s.mat.N <= i {
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panic(ErrRowAccess)
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}
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for j := max(0, i-s.mat.K); j < min(s.mat.N, i+s.mat.K+1); j++ {
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v := s.at(i, j)
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if v != 0 {
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fn(i, j, v)
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}
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}
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}
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// DoColNonZero calls the function fn for each of the non-zero elements of column j of s. The function fn
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// takes a row/column index and the element value of s at (i, j).
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func (s *SymBandDense) DoColNonZero(j int, fn func(i, j int, v float64)) {
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if j < 0 || s.mat.N <= j {
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panic(ErrColAccess)
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}
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for i := 0; i < s.mat.N; i++ {
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if i-s.mat.K <= j && j < i+s.mat.K+1 {
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v := s.at(i, j)
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if v != 0 {
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fn(i, j, v)
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}
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}
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}
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}
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@@ -45,6 +45,7 @@ type RawSymmetricer interface {
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RawSymmetric() blas64.Symmetric
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}
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// A MutableSymmetric can set elements of a symmetric matrix.
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type MutableSymmetric interface {
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Symmetric
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SetSym(i, j int, v float64)
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@@ -14,9 +14,14 @@ import (
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var (
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triDense *TriDense
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_ Matrix = triDense
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_ Triangular = triDense
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_ RawTriangular = triDense
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_ Matrix = triDense
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_ Triangular = triDense
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_ RawTriangular = triDense
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_ MutableTriangular = triDense
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_ NonZeroDoer = triDense
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_ RowNonZeroDoer = triDense
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_ ColNonZeroDoer = triDense
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)
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const badTriCap = "mat: bad capacity for TriDense"
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@@ -28,6 +33,7 @@ type TriDense struct {
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cap int
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}
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// Triangular represents a triangular matrix. Triangular matrices are always square.
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type Triangular interface {
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Matrix
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// Triangular returns the number of rows/columns in the matrix and its
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@@ -39,10 +45,17 @@ type Triangular interface {
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TTri() Triangular
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}
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// A RawTriangular can return a view of itself as a BLAS Triangular matrix.
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type RawTriangular interface {
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RawTriangular() blas64.Triangular
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}
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// A MutableTriangular can set elements of a triangular matrix.
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type MutableTriangular interface {
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Triangular
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SetTri(i, j int, v float64)
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}
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var (
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_ Matrix = TransposeTri{}
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_ Triangular = TransposeTri{}
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@@ -455,3 +468,73 @@ func copySymIntoTriangle(t *TriDense, s Symmetric) {
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}
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}
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}
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// DoNonZero calls the function fn for each of the non-zero elements of t. The function fn
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// takes a row/column index and the element value of t at (i, j).
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func (t *TriDense) DoNonZero(fn func(i, j int, v float64)) {
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if t.isUpper() {
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for i := 0; i < t.mat.N; i++ {
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for j := i; j < t.mat.N; j++ {
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v := t.at(i, j)
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if v != 0 {
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fn(i, j, v)
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}
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}
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}
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return
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}
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for i := 0; i < t.mat.N; i++ {
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for j := 0; j <= i; j++ {
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v := t.at(i, j)
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if v != 0 {
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fn(i, j, v)
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}
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}
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}
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}
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// DoRowNonZero calls the function fn for each of the non-zero elements of row i of t. The function fn
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// takes a row/column index and the element value of t at (i, j).
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func (t *TriDense) DoRowNonZero(i int, fn func(i, j int, v float64)) {
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if i < 0 || t.mat.N <= i {
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panic(ErrRowAccess)
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}
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if t.isUpper() {
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for j := i; j < t.mat.N; j++ {
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v := t.at(i, j)
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if v != 0 {
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fn(i, j, v)
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}
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}
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return
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}
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for j := 0; j <= i; j++ {
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v := t.at(i, j)
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if v != 0 {
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fn(i, j, v)
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}
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}
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}
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// DoColNonZero calls the function fn for each of the non-zero elements of column j of t. The function fn
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// takes a row/column index and the element value of t at (i, j).
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func (t *TriDense) DoColNonZero(j int, fn func(i, j int, v float64)) {
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if j < 0 || t.mat.N <= j {
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panic(ErrColAccess)
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}
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if t.isUpper() {
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for i := 0; i <= j; i++ {
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v := t.at(i, j)
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if v != 0 {
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fn(i, j, v)
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}
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}
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return
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}
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for i := j; i < t.mat.N; i++ {
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v := t.at(i, j)
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if v != 0 {
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fn(i, j, v)
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}
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}
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}
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