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quantity: Add multiplication methods
Add multiplication functionality to Quantity. Signed-off-by: Yuki Iwai <yuki.iwai.tz@gmail.com>
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0851995a61
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@ -203,6 +203,50 @@ func (a *int64Amount) Sub(b int64Amount) bool {
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return a.Add(int64Amount{value: -b.value, scale: b.scale})
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}
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// Mul multiplies two int64Amounts together, matching scales.
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// It will return false and not mutate a if overflow or underflow would result.
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// Mul adds the value of a to itself n times.
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// It will return false and not mutate a if overflow or underflow would result.
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func (a *int64Amount) Mul(b int64Amount) bool {
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switch {
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case b.value == 0:
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a.value = 0
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return true
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case a.value == 0:
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a.value = 0
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a.scale = b.scale
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return true
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case a.scale == b.scale:
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c, ok := int64Multiply(a.value, b.value)
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if !ok {
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return false
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}
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a.value = c
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case a.scale > b.scale:
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c, ok := positiveScaleInt64(a.value, a.scale-b.scale)
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if !ok {
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return false
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}
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c, ok = int64Multiply(c, b.value)
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if !ok {
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return false
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}
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a.scale = b.scale
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a.value = c
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default:
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c, ok := positiveScaleInt64(b.value, b.scale-a.scale)
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if !ok {
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return false
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}
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c, ok = int64Multiply(a.value, c)
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if !ok {
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return false
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}
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a.value = c
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}
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return true
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}
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// AsScale adjusts this amount to set a minimum scale, rounding up, and returns true iff no precision
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// was lost. (1.1e5).AsScale(5) would return 1.1e5, but (1.1e5).AsScale(6) would return 1e6.
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func (a int64Amount) AsScale(scale Scale) (int64Amount, bool) {
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@ -88,6 +88,54 @@ func TestInt64AmountAdd(t *testing.T) {
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}
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}
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}
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func TestInt64AmountMul(t *testing.T) {
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for _, test := range []struct {
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a, b, c int64Amount
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ok bool
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}{
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{int64Amount{value: 100, scale: 1}, int64Amount{value: 10, scale: 2}, int64Amount{value: 10000, scale: 1}, true},
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{int64Amount{value: 100, scale: 1}, int64Amount{value: 1, scale: 2}, int64Amount{value: 1000, scale: 1}, true},
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{int64Amount{value: 100, scale: 1}, int64Amount{value: 1, scale: 100}, int64Amount{value: 1, scale: 100}, false},
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{int64Amount{value: -5, scale: 2}, int64Amount{value: 50, scale: 1}, int64Amount{value: -2500, scale: 1}, true},
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{int64Amount{value: -5, scale: 2}, int64Amount{value: 5, scale: 2}, int64Amount{value: -25, scale: 2}, true},
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{int64Amount{value: mostPositive, scale: -1}, int64Amount{value: 1, scale: -1}, int64Amount{value: 9223372036854775807, scale: -1}, true},
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{int64Amount{value: mostPositive, scale: -1}, int64Amount{value: 0, scale: -1}, int64Amount{value: 0, scale: -1}, true},
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{int64Amount{value: mostPositive / 10, scale: 1}, int64Amount{value: 10, scale: 0}, int64Amount{value: mostPositive, scale: -1}, false},
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} {
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c := test.a
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ok := c.Mul(test.b)
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if ok != test.ok {
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t.Errorf("%v: unexpected ok: %t", test, ok)
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}
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if ok {
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if c != test.c {
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t.Errorf("%v: unexpected result: %d", test, c)
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}
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} else {
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if c != test.a {
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t.Errorf("%v: overflow multiplication mutated source: %d", test, c)
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}
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}
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// multiplication is commutative
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c = test.b
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if ok = c.Mul(test.a); ok != test.ok {
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t.Errorf("%v: unexpected ok: %t", test, ok)
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}
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if ok {
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if c != test.c {
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t.Errorf("%v: unexpected result: %d", test, c)
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}
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} else {
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if c != test.b {
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t.Errorf("%v: overflow multiplication mutated source: %d", test, c)
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}
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}
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}
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}
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func TestInt64AsCanonicalString(t *testing.T) {
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for _, test := range []struct {
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value int64
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@ -592,6 +592,19 @@ func (q *Quantity) Sub(y Quantity) {
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q.ToDec().d.Dec.Sub(q.d.Dec, y.AsDec())
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}
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// Mul multiplies the provided y quantity to the current value. If the current value is zero,
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// the format of the quantity will be updated to the format of y.
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func (q *Quantity) Mul(y Quantity) {
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q.s = ""
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if q.IsZero() {
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q.Format = y.Format
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}
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if q.d.Dec == nil && y.d.Dec == nil && q.i.Mul(y.i) {
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return
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}
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q.ToDec().d.Dec.Mul(q.d.Dec, y.AsDec())
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}
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// Cmp returns 0 if the quantity is equal to y, -1 if the quantity is less than y, or 1 if the
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// quantity is greater than y.
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func (q *Quantity) Cmp(y Quantity) int {
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@ -1137,6 +1137,28 @@ func TestAdd(t *testing.T) {
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}
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}
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func TestMul(t *testing.T) {
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tests := []struct {
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a Quantity
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b Quantity
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expected Quantity
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}{
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{decQuantity(10, 0, DecimalSI), decQuantity(1, 1, DecimalSI), decQuantity(100, 0, DecimalSI)},
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{decQuantity(10, 0, DecimalSI), decQuantity(1, 0, BinarySI), decQuantity(10, 0, DecimalSI)},
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{decQuantity(10, 0, BinarySI), decQuantity(1, 0, DecimalSI), decQuantity(10, 0, BinarySI)},
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{Quantity{Format: DecimalSI}, decQuantity(50, 0, DecimalSI), decQuantity(0, 0, DecimalSI)},
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{decQuantity(50, 0, DecimalSI), Quantity{Format: DecimalSI}, decQuantity(0, 0, DecimalSI)},
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{Quantity{Format: DecimalSI}, Quantity{Format: DecimalSI}, decQuantity(0, 0, DecimalSI)},
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}
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for i, test := range tests {
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test.a.Mul(test.b)
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if test.a.Cmp(test.expected) != 0 {
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t.Errorf("[%d] Expected %q, got %q", i, test.expected.String(), test.a.String())
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}
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}
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}
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func TestAddSubRoundTrip(t *testing.T) {
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for k := -10; k <= 10; k++ {
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q := Quantity{Format: DecimalSI}
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