A few more toDecimal() fixes
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parent
656f7e6796
commit
3a33ffdd50
2 changed files with 44 additions and 28 deletions
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@ -140,6 +140,9 @@ for (let i = 0; i <= 12; i++) {
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test("set 100");
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test("div 3");
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test("set 4001");
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test("div -5");
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repl.start({
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prompt: "int36> ",
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input: process.stdin,
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@ -34,15 +34,17 @@ var DEBUG = true;
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* @class Int36
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* @property {number} value
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* @property {number|null} extended
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* @property {number} remainder
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* @property {number|null} remainder
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* @property {number} error
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*
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* The 'value' property stores the 36-bit value as a two's complement integer.
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*
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* The 'extended' property stores an additional 36 bits of data from a multiplication;
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* it must also be set prior to a division.
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* it must also be set prior to a division. Internally, it will be set to null whenever
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* the current value is not extended.
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*
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* The 'remainder' property stores the remainder from a division.
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* The 'remainder' property stores the remainder from the last division. You should
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* assume that it will be set to null by any other operation.
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*
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* The 'error' property records any error(s) from the last operation.
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*/
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@ -54,7 +56,7 @@ class Int36 {
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* The constructor, which simply calls set(), creates an Int36 from either:
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*
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* 1) another Int36
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* 2) a single (signed) 36-bit value, with an optional 36-bit extended value
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* 2) a single (signed) 36-bit value, with an optional 36-bit extension
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* 3) nothing (initial value will be zero)
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*
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* We guarantee that an Int36 value will be (and will always remain) a signed value within this range:
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@ -90,7 +92,7 @@ class Int36 {
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*
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* @this {Int36}
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* @param {Int36|number} [obj] (if omitted, the default is zero)
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* @param {number} [extended]
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* @param {number|null} [extended]
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*/
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constructor(obj, extended)
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{
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@ -104,7 +106,7 @@ class Int36 {
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*
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* @this {Int36}
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* @param {Int36|number} [obj] (if omitted, the default is zero)
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* @param {number} [extended]
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* @param {number|null} [extended]
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*/
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set(obj = 0, extended)
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{
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@ -116,10 +118,13 @@ class Int36 {
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else {
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this.value = Int36.validate(obj || 0);
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this.extended = null;
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/*
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* NOTE: Surprisingly, isNaN(null) is false, whereas isNaN(undefined) is true. Go figure.
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*/
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if (extended != null && !isNaN(extended)) {
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this.extended = Int36.validate(extended);
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}
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this.remainder = 0;
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this.remainder = null;
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}
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this.error = Int36.ERROR.NONE;
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}
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@ -135,23 +140,19 @@ class Int36 {
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var s = "", fNeg = false;
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var i36Div = new Int36(10000000000);
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var i36Tmp = new Int36(this.value, this.extended);
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if (i36Tmp.extended < 0 || i36Tmp.extended == null && i36Tmp.value < 0) {
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i36Tmp.negExtended();
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if (i36Tmp.isNegative()) {
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i36Tmp.negate();
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fNeg = true;
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}
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var quotient = i36Tmp.div(i36Div);
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i36Tmp.value = i36Tmp.remainder;
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if (quotient) {
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var nDigits = 10;
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do {
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var quotient = i36Tmp.div(i36Div);
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var nMinDigits = (quotient? 10 : 1);
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i36Tmp.value = i36Tmp.remainder;
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do {
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i36Tmp.divNum(10);
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s = String.fromCharCode(0x30 + i36Tmp.remainder) + s;
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} while (--nDigits);
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} while (--nMinDigits > 0 || i36Tmp.value);
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i36Tmp.value = quotient;
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}
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do {
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i36Tmp.divNum(10);
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s = String.fromCharCode(0x30 + i36Tmp.remainder) + s;
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} while (i36Tmp.value);
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if (fNeg) s = '-' + s;
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return s;
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@ -190,7 +191,7 @@ class Int36 {
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if (fUnsigned || extended) {
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if (value < 0) value += Int36.BIT36;
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if (extended) {
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if (extended != null) {
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if (fUnsigned) extended += Int36.BIT36;
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/*
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* TODO: Need a radix-independent solution for these extended (up to 72-bit) values,
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@ -219,6 +220,8 @@ class Int36 {
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if (DEBUG && result !== Math.trunc(result)) {
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console.log("Int36.truncate(" + result + " is not an integer)");
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}
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this.extended = null;
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this.remainder = null;
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this.error = Int36.ERROR.NONE;
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if (result > Int36.MAXVAL) {
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result %= Int36.BIT36;
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@ -345,7 +348,7 @@ class Int36 {
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this.value = this.truncate(value);
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this.extended = this.truncate(extended);
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if (fNeg) this.negExtended();
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if (fNeg) this.negate();
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}
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/**
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@ -396,8 +399,8 @@ class Int36 {
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bNegLo = 1 - bNegLo;
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}
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if (this.extended < 0 || this.extended == null && this.value < 0) {
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this.negExtended();
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if (this.isNegative()) {
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this.negate();
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bNegHi = 1; bNegLo = 1 - bNegLo;
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}
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@ -438,7 +441,7 @@ class Int36 {
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}
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this.value = result;
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this.extended = 0;
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this.extended = null;
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this.remainder = bitsRem[0];
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if (bNegLo && this.value && this.value > Int36.MINVAL) {
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@ -452,7 +455,17 @@ class Int36 {
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}
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/**
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* negExtended()
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* isNegative()
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*
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* @return {boolean}
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*/
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isNegative()
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{
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return (this.extended < 0 || this.extended == null && this.value < 0);
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}
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/**
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* negate()
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*
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* Converts the current value to its two's complement. If we were dealing with 8-bit values:
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*
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@ -468,12 +481,12 @@ class Int36 {
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* 126 -126 -127
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* 127 -127 -128
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*
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* So the one wrinkle is that, when performing two's complement, MINVAL and ZERO are not modified.
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* so you can see that, when performing two's complement, MINVAL and ZERO are not modified.
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*
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* However, in our world, since JavaScript numbers CAN represent both positive and negative MINVAL
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* values, we don't need to exclude MINVAL from the process.
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* However, in our happy little world, since JavaScript numbers CAN represent both positive and negative
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* MINVAL values, we don't need to exclude MINVAL from the conversion.
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*/
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negExtended()
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negate()
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{
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this.error = Int36.ERROR.NONE;
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/*
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