preserves/implementations/javascript/packages/schema/src/compiler/genconverter.ts

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import { FunctionContext } from "./context";
import * as M from '../meta';
import { block, Item, seq } from "./block";
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import { simpleType, dictionaryType, setType, typeFor } from "./gentype";
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import { refPosition } from "../reader";
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import { ANY_TYPE, Type } from "./type";
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export function converterForDefinition(
ctx: FunctionContext,
p: M.Definition,
src: string,
dest: string): Item[]
{
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if (p._variant === 'or') {
const alts = p.patterns;
function loop(i: number): Item[] {
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ctx.variantName = alts[i].variantLabel;
return [... converterForAlternative(ctx, alts[i].alternative, src, dest),
... ((i < alts.length - 1)
? [seq(`if (${dest} === void 0) `, ctx.block(() => loop(i + 1)))]
: [])];
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}
return alts.length === 0 ? [] : loop(0);
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} else {
ctx.variantName = void 0;
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return converterForAlternative(ctx, p.value, src, dest);
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}
}
function converterForAlternative(
ctx: FunctionContext,
p: M.Alternative,
src: string,
dest: string): Item[]
{
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if (p._variant === 'and') {
const alts = p.patterns;
function loop(i: number): Item[] {
return (i < alts.length)
? converterFor(ctx, alts[i], src, () => loop(i + 1))
: [ctx.buildCapturedCompound(dest)];
}
return alts.length === 0 ? [seq(`${dest} = ${src}`)] : loop(0);
} else {
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return converterFor(ctx, M.NamedPattern.anonymous(p.value), src, simpleValue => {
if (simpleValue === void 0) {
return [ctx.buildCapturedCompound(dest)];
} else if (ctx.variantName !== void 0) {
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if (typeFor(ctx.mod, p.value).kind === 'unit') {
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return [ctx.buildCapturedCompound(dest)];
} else {
return [ctx.withCapture('value',
simpleValue,
() => ctx.buildCapturedCompound(dest))];
}
} else {
return [`${dest} = ${simpleValue}`];
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}
});
}
}
function converterForTuple(ctx: FunctionContext,
ps: M.NamedPattern[],
src: string,
recordFields: boolean,
variablePattern: M.NamedSimplePattern | undefined,
k: () => Item[]): Item[]
{
function loop(i: number): Item[] {
if (i < ps.length) {
return converterFor(ctx, ps[i], `${src}[${i}]`, () => loop(i + 1));
} else {
if (variablePattern === void 0) {
return k();
} else {
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const vN = ctx.gentemp(Type.array(ANY_TYPE));
return [ps.length > 0 ? `${vN} = ${src}.slice(${ps.length})` : `${vN} = ${src}`,
converterForArray(ctx, variablePattern, vN, false, k)];
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}
}
}
const lengthCheck = variablePattern === void 0
? seq(` && ${src}.length === ${ps.length}`)
: ((ps.length === 0) ? '' : seq(` && ${src}.length >= ${ps.length}`));
return recordFields
? loop(0)
: [seq(`if (_.Array.isArray(${src})`, lengthCheck, `) `, ctx.block(() => loop(0)))];
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}
function converterForArray(ctx: FunctionContext,
arrayType: M.NamedSimplePattern,
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src: string,
checkArray: boolean,
k: (dest: string) => Item[]): Item
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{
const postCheck = () => {
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const r = ctx.gentemp(Type.array(simpleType(ctx.mod, M.unnameSimplePattern(arrayType))));
const v = ctx.gentempname();
return [
seq(`${r} = []`),
seq(`for (const ${v} of ${src}) `, ctx.block(() => [
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... converterFor(ctx, M.promoteNamedSimplePattern(arrayType), v, vv =>
[`${r}.push(${vv})`, `continue`]),
seq(`${r} = void 0`),
seq(`break`)])),
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ctx.convertCapture(M.nameFor(arrayType), r, k)];
};
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return (checkArray
? seq(`if (_.Array.isArray(${src})) `, ctx.block(postCheck))
: block(... postCheck()));
}
function converterFor(
ctx: FunctionContext,
np: M.NamedPattern,
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src: string,
ks: (dest: string | undefined) => Item[],
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recordFields = false): Item[]
{
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let p = M.unnamePattern(np);
let maybeName = M.nameFor(np);
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if (p._variant === 'SimplePattern') {
const dest = ctx.gentemp(simpleType(ctx.mod, p.value));
return [... converterForSimple(ctx, p.value, src, dest),
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ctx.convertCapture(maybeName, dest, ks)];
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} else {
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switch (p.value._variant) {
case 'setof': {
const setPattern = p.value.pattern;
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const r = ctx.gentemp(setType(ctx.mod, setPattern));
const v = ctx.gentempname();
return [
seq(`if (_.Set.isSet<_ptr>(${src})) `, ctx.block(() => [
seq(`${r} = new _.KeyedSet()`),
seq(`for (const ${v} of ${src}) `, ctx.block(() => [
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... converterFor(ctx, M.anonymousSimplePattern(setPattern), v, vv =>
[`${r}.add(${vv})`, `continue`]),
seq(`${r} = void 0`),
seq(`break`)])),
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ctx.convertCapture(maybeName, r, ks)]))];
}
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case 'dictof': {
const keyPattern = p.value.key;
const valPattern = p.value.value;
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const r = ctx.gentemp(dictionaryType(ctx.mod, keyPattern, valPattern));
const v = ctx.gentempname();
const k = ctx.gentempname();
return [
seq(`if (_.Dictionary.isDictionary<_ptr>(${src})) `, ctx.block(() => [
seq(`${r} = new _.KeyedDictionary()`),
seq(`for (const [${k}, ${v}] of ${src}) `, ctx.block(() => [
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... converterFor(ctx, M.anonymousSimplePattern(keyPattern), k, kk =>
converterFor(ctx, M.anonymousSimplePattern(valPattern), v, vv =>
[`${r}.set(${kk}, ${vv})`, `continue`])),
seq(`${r} = void 0`),
seq(`break`)])),
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ctx.convertCapture(maybeName, r, ks)]))];
}
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default: {
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const arrayType = M.simpleArray(p.value);
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if (arrayType === void 0) {
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return converterForCompound(ctx, p.value, src, recordFields, () => ks(void 0));
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} else {
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return [converterForArray(
ctx, M.NamedSimplePattern.anonymous(arrayType), src, !recordFields, ks)];
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}
}
}
}
}
function converterForSimple(
ctx: FunctionContext,
p: M.SimplePattern,
src: string,
dest: string): Item[]
{
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switch (p._variant) {
case 'any':
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return [`${dest} = ${src}`];
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case 'atom': {
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let test: Item;
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switch (p.atomKind._variant) {
case 'Boolean': test = `typeof ${src} === 'boolean'`; break;
case 'Float': test = `_.Float.isSingle(${src})`; break;
case 'Double': test =`_.Float.isDouble(${src})`; break;
case 'SignedInteger': test = `typeof ${src} === 'number'`; break;
case 'String': test = `typeof ${src} === 'string'`; break;
case 'ByteString': test = `_.Bytes.isBytes(${src})`; break;
case 'Symbol': test = `typeof ${src} === 'symbol'`; break;
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}
return [seq(`${dest} = `, test, ` ? ${src} : void 0`)];
}
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case 'lit':
return [`${dest} = _.is(${src}, ${ctx.mod.literal(p.value)}) ? null : void 0`];
case 'Ref':
return M.lookup(refPosition(p.value), p.value, ctx.mod.env,
(_p) => [`${dest} = to${p.value.name.description!}(${src})`],
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(modId, modPath,_p) => {
ctx.mod.imports.add([modId, modPath]);
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return [`${dest} = ${modId}.decode${p.value.name.description!}(${src})`];
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});
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case 'pointer':
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return [`${dest} = _toPtr(${src})`];
default:
((_p: never) => {})(p);
throw new Error("Unreachable");
}
}
function converterForCompound(
ctx: FunctionContext,
p: M.CompoundPattern,
src: string,
recordFields: boolean,
ks: () => Item[]): Item[]
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{
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switch (p._variant) {
case 'rec':
return [seq(`if (_.Record.isRecord<_val, _.Tuple<_val>, _ptr>(${src})) `, ctx.block(() =>
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converterFor(ctx, p.label, `${src}.label`, () =>
converterFor(ctx, p.fields, src, ks, true))))];
case 'tuple':
return converterForTuple(ctx, p.patterns, src, recordFields, void 0, ks);
case 'tuple*':
return converterForTuple(ctx, p.fixed, src, recordFields, p.variable, ks);
case 'setof':
case 'dictof':
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throw new Error('Internal error: setof and dictof are handled in converterFor()');
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case 'dict': {
const entries = Array.from(p.entries);
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function loop(i: number): Item[] {
if (i < entries.length) {
const [k, n] = entries[i];
const tmpSrc = ctx.gentemp();
return [seq(`if ((${tmpSrc} = ${src}.get(${ctx.mod.literal(k)})) !== void 0) `,
ctx.block(() =>
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converterFor(
ctx,
M.promoteNamedSimplePattern(M.addNameIfAbsent(n, k)),
tmpSrc,
() => loop(i + 1))))];
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} else {
return ks();
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}
}
return [seq(`if (_.Dictionary.isDictionary<_ptr>(${src})) `, ctx.block(() => loop(0)))];
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}
default:
((_p: never) => {})(p);
throw new Error("Unreachable");
}
}