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|
import {inspect} from 'node:util';
import {decorateErrorWithIndex, openAggregate, withAggregate}
from '#aggregate';
import {colors} from '#cli';
import {empty, filterProperties, stitchArrays, typeAppearance, unique}
from '#sugar';
import {a} from '#validators';
import {TupleMap} from '#wiki-data';
const globalCompositeCache = {};
const _valueIntoToken = shape =>
(value = null) =>
(value === null
? Symbol.for(`hsmusic.composite.${shape}`)
: typeof value === 'string'
? Symbol.for(`hsmusic.composite.${shape}:${value}`)
: {
symbol: Symbol.for(`hsmusic.composite.input`),
shape,
value,
});
export const input = _valueIntoToken('input');
input.symbol = Symbol.for('hsmusic.composite.input');
input.value = _valueIntoToken('input.value');
input.dependency = _valueIntoToken('input.dependency');
input.myself = () => Symbol.for(`hsmusic.composite.input.myself`);
input.thisProperty = () => Symbol.for('hsmusic.composite.input.thisProperty');
input.updateValue = _valueIntoToken('input.updateValue');
input.staticDependency = _valueIntoToken('input.staticDependency');
input.staticValue = _valueIntoToken('input.staticValue');
function isInputToken(token) {
if (token === null) {
return false;
} else if (typeof token === 'object') {
return token.symbol === Symbol.for('hsmusic.composite.input');
} else if (typeof token === 'symbol') {
return token.description.startsWith('hsmusic.composite.input');
} else {
return false;
}
}
function getInputTokenShape(token) {
if (!isInputToken(token)) {
throw new TypeError(`Expected an input token, got ${typeAppearance(token)}`);
}
if (typeof token === 'object') {
return token.shape;
} else {
return token.description.match(/hsmusic\.composite\.(input.*?)(:|$)/)[1];
}
}
function getInputTokenValue(token) {
if (!isInputToken(token)) {
throw new TypeError(`Expected an input token, got ${typeAppearance(token)}`);
}
if (typeof token === 'object') {
return token.value;
} else {
return token.description.match(/hsmusic\.composite\.input.*?:(.*)/)?.[1] ?? null;
}
}
function getStaticInputMetadata(inputOptions) {
const metadata = {};
for (const [name, token] of Object.entries(inputOptions)) {
if (typeof token === 'string') {
metadata[input.staticDependency(name)] = token;
metadata[input.staticValue(name)] = null;
} else if (isInputToken(token)) {
const tokenShape = getInputTokenShape(token);
const tokenValue = getInputTokenValue(token);
metadata[input.staticDependency(name)] =
(tokenShape === 'input.dependency'
? tokenValue
: null);
metadata[input.staticValue(name)] =
(tokenShape === 'input.value'
? tokenValue
: null);
} else {
metadata[input.staticDependency(name)] = null;
metadata[input.staticValue(name)] = null;
}
}
return metadata;
}
function getCompositionName(description) {
return (
(description.annotation
? description.annotation
: `unnamed composite`));
}
function validateInputValue(value, description) {
const tokenValue = getInputTokenValue(description);
const {acceptsNull, defaultValue, type, validate} = tokenValue || {};
if (value === null || value === undefined) {
if (acceptsNull || defaultValue === null) {
return true;
} else {
throw new TypeError(
(type
? `Expected ${a(type)}, got ${typeAppearance(value)}`
: `Expected a value, got ${typeAppearance(value)}`));
}
}
if (type) {
// Note: null is already handled earlier in this function, so it won't
// cause any trouble here.
const typeofValue =
(typeof value === 'object'
? Array.isArray(value) ? 'array' : 'object'
: typeof value);
if (typeofValue !== type) {
throw new TypeError(`Expected ${a(type)}, got ${typeAppearance(value)}`);
}
}
if (validate) {
validate(value);
}
return true;
}
export function templateCompositeFrom(description) {
const compositionName = getCompositionName(description);
withAggregate({message: `Errors in description for ${compositionName}`}, ({map, nest, push}) => {
if ('steps' in description) {
if (Array.isArray(description.steps)) {
push(new TypeError(`Wrap steps array in a function`));
} else if (typeof description.steps !== 'function') {
push(new TypeError(`Expected steps to be a function (returning an array)`));
}
}
validateInputs:
if ('inputs' in description) {
if (
Array.isArray(description.inputs) ||
typeof description.inputs !== 'object'
) {
push(new Error(`Expected inputs to be object, got ${typeAppearance(description.inputs)}`));
break validateInputs;
}
nest({message: `Errors in static input descriptions for ${compositionName}`}, ({push}) => {
const missingCallsToInput = [];
const wrongCallsToInput = [];
for (const [name, value] of Object.entries(description.inputs)) {
if (!isInputToken(value)) {
missingCallsToInput.push(name);
continue;
}
if (!['input', 'input.staticDependency', 'input.staticValue'].includes(getInputTokenShape(value))) {
wrongCallsToInput.push(name);
}
}
for (const name of missingCallsToInput) {
push(new Error(`${name}: Missing call to input()`));
}
for (const name of wrongCallsToInput) {
const shape = getInputTokenShape(description.inputs[name]);
push(new Error(`${name}: Expected call to input, input.staticDependency, or input.staticValue, got ${shape}`));
}
});
}
validateOutputs:
if ('outputs' in description) {
if (
!Array.isArray(description.outputs) &&
typeof description.outputs !== 'function'
) {
push(new Error(`Expected outputs to be array or function, got ${typeAppearance(description.outputs)}`));
break validateOutputs;
}
if (Array.isArray(description.outputs)) {
map(
description.outputs,
decorateErrorWithIndex(value => {
if (typeof value !== 'string') {
throw new Error(`${value}: Expected string, got ${typeAppearance(value)}`)
} else if (!value.startsWith('#')) {
throw new Error(`${value}: Expected "#" at start`);
}
}),
{message: `Errors in output descriptions for ${compositionName}`});
}
}
});
const expectedInputNames =
(description.inputs
? Object.keys(description.inputs)
: []);
const instantiate = (inputOptions = {}) => {
withAggregate({message: `Errors in input options passed to ${compositionName}`}, ({push}) => {
const providedInputNames = Object.keys(inputOptions);
const misplacedInputNames =
providedInputNames
.filter(name => !expectedInputNames.includes(name));
const missingInputNames =
expectedInputNames
.filter(name => !providedInputNames.includes(name))
.filter(name => {
const inputDescription = getInputTokenValue(description.inputs[name]);
if (!inputDescription) return true;
if ('defaultValue' in inputDescription) return false;
if ('defaultDependency' in inputDescription) return false;
return true;
});
const wrongTypeInputNames = [];
const expectedStaticValueInputNames = [];
const expectedStaticDependencyInputNames = [];
const expectedValueProvidingTokenInputNames = [];
const validateFailedErrors = [];
for (const [name, value] of Object.entries(inputOptions)) {
if (misplacedInputNames.includes(name)) {
continue;
}
if (typeof value !== 'string' && !isInputToken(value)) {
wrongTypeInputNames.push(name);
continue;
}
const descriptionShape = getInputTokenShape(description.inputs[name]);
const tokenShape = (isInputToken(value) ? getInputTokenShape(value) : null);
const tokenValue = (isInputToken(value) ? getInputTokenValue(value) : null);
switch (descriptionShape) {
case'input.staticValue':
if (tokenShape !== 'input.value') {
expectedStaticValueInputNames.push(name);
continue;
}
break;
case 'input.staticDependency':
if (typeof value !== 'string' && tokenShape !== 'input.dependency') {
expectedStaticDependencyInputNames.push(name);
continue;
}
break;
case 'input':
if (typeof value !== 'string' && ![
'input',
'input.value',
'input.dependency',
'input.myself',
'input.thisProperty',
'input.updateValue',
].includes(tokenShape)) {
expectedValueProvidingTokenInputNames.push(name);
continue;
}
break;
}
if (tokenShape === 'input.value') {
try {
validateInputValue(tokenValue, description.inputs[name]);
} catch (error) {
error.message = `${name}: ${error.message}`;
validateFailedErrors.push(error);
}
}
}
if (!empty(misplacedInputNames)) {
push(new Error(`Unexpected input names: ${misplacedInputNames.join(', ')}`));
}
if (!empty(missingInputNames)) {
push(new Error(`Required these inputs: ${missingInputNames.join(', ')}`));
}
const inputAppearance = name =>
(isInputToken(inputOptions[name])
? `${getInputTokenShape(inputOptions[name])}() call`
: `dependency name`);
for (const name of expectedStaticDependencyInputNames) {
const appearance = inputAppearance(name);
push(new Error(`${name}: Expected dependency name, got ${appearance}`));
}
for (const name of expectedStaticValueInputNames) {
const appearance = inputAppearance(name)
push(new Error(`${name}: Expected input.value() call, got ${appearance}`));
}
for (const name of expectedValueProvidingTokenInputNames) {
const appearance = getInputTokenShape(inputOptions[name]);
push(new Error(`${name}: Expected dependency name or value-providing input() call, got ${appearance}`));
}
for (const name of wrongTypeInputNames) {
const type = typeAppearance(inputOptions[name]);
push(new Error(`${name}: Expected dependency name or input() call, got ${type}`));
}
for (const error of validateFailedErrors) {
push(error);
}
});
const inputMetadata = getStaticInputMetadata(inputOptions);
const expectedOutputNames =
(Array.isArray(description.outputs)
? description.outputs
: typeof description.outputs === 'function'
? description.outputs(inputMetadata)
.map(name =>
(name.startsWith('#')
? name
: '#' + name))
: []);
const ownUpdateDescription =
(typeof description.update === 'object'
? description.update
: typeof description.update === 'function'
? description.update(inputMetadata)
: null);
const outputOptions = {};
const instantiatedTemplate = {
symbol: templateCompositeFrom.symbol,
outputs(providedOptions) {
withAggregate({message: `Errors in output options passed to ${compositionName}`}, ({push}) => {
const misplacedOutputNames = [];
const wrongTypeOutputNames = [];
for (const [name, value] of Object.entries(providedOptions)) {
if (!expectedOutputNames.includes(name)) {
misplacedOutputNames.push(name);
continue;
}
if (typeof value !== 'string') {
wrongTypeOutputNames.push(name);
continue;
}
}
if (!empty(misplacedOutputNames)) {
push(new Error(`Unexpected output names: ${misplacedOutputNames.join(', ')}`));
}
for (const name of wrongTypeOutputNames) {
const appearance = typeAppearance(providedOptions[name]);
push(new Error(`${name}: Expected string, got ${appearance}`));
}
});
Object.assign(outputOptions, providedOptions);
return instantiatedTemplate;
},
toDescription() {
const finalDescription = {};
if ('annotation' in description) {
finalDescription.annotation = description.annotation;
}
if ('compose' in description) {
finalDescription.compose = description.compose;
}
if (ownUpdateDescription) {
finalDescription.update = ownUpdateDescription;
}
if ('inputs' in description) {
const inputMapping = {};
for (const [name, token] of Object.entries(description.inputs)) {
const tokenValue = getInputTokenValue(token);
if (name in inputOptions) {
if (typeof inputOptions[name] === 'string') {
inputMapping[name] = input.dependency(inputOptions[name]);
} else {
inputMapping[name] = inputOptions[name];
}
} else if (tokenValue.defaultValue) {
inputMapping[name] = input.value(tokenValue.defaultValue);
} else if (tokenValue.defaultDependency) {
inputMapping[name] = input.dependency(tokenValue.defaultDependency);
} else {
inputMapping[name] = input.value(null);
}
}
finalDescription.inputMapping = inputMapping;
finalDescription.inputDescriptions = description.inputs;
}
if ('outputs' in description) {
const finalOutputs = {};
for (const name of expectedOutputNames) {
if (name in outputOptions) {
finalOutputs[name] = outputOptions[name];
} else {
finalOutputs[name] = name;
}
}
finalDescription.outputs = finalOutputs;
}
if ('steps' in description) {
finalDescription.steps = description.steps;
}
return finalDescription;
},
toResolvedComposition() {
const ownDescription = instantiatedTemplate.toDescription();
const finalDescription = {...ownDescription};
const aggregate = openAggregate({message: `Errors resolving ${compositionName}`});
const steps = ownDescription.steps();
const resolvedSteps =
aggregate.map(
steps,
decorateErrorWithIndex(step =>
(step.symbol === templateCompositeFrom.symbol
? compositeFrom(step.toResolvedComposition())
: step)),
{message: `Errors resolving steps`});
aggregate.close();
finalDescription.steps = resolvedSteps;
return finalDescription;
},
};
return instantiatedTemplate;
};
instantiate.inputs = instantiate;
return instantiate;
}
templateCompositeFrom.symbol = Symbol();
export const continuationSymbol = Symbol.for('compositeFrom: continuation symbol');
export const noTransformSymbol = Symbol.for('compositeFrom: no-transform symbol');
export function compositeFrom(description) {
const {annotation} = description;
const compositionName = getCompositionName(description);
const debug = fn => {
if (compositeFrom.debug === true) {
const label =
(annotation
? colors.dim(`[composite: ${annotation}]`)
: colors.dim(`[composite]`));
const result = fn();
if (Array.isArray(result)) {
console.log(label, ...result.map(value =>
(typeof value === 'object'
? inspect(value, {depth: 1, colors: true, compact: true, breakLength: Infinity})
: value)));
} else {
console.log(label, result);
}
}
};
if (!Array.isArray(description.steps)) {
throw new TypeError(
`Expected steps to be array, got ${typeAppearance(description.steps)}` +
(annotation ? ` (${annotation})` : ''));
}
const composition =
description.steps.map(step =>
('toResolvedComposition' in step
? compositeFrom(step.toResolvedComposition())
: step));
const inputMetadata = getStaticInputMetadata(description.inputMapping ?? {});
function _mapDependenciesToOutputs(providedDependencies) {
if (!description.outputs) {
return {};
}
if (!providedDependencies) {
return {};
}
return (
Object.fromEntries(
Object.entries(description.outputs)
.map(([continuationName, outputName]) => [
outputName,
(continuationName in providedDependencies
? providedDependencies[continuationName]
: providedDependencies[continuationName.replace(/^#/, '')]),
])));
}
// These dependencies were all provided by the composition which this one is
// nested inside, so input('name')-shaped tokens are going to be evaluated
// in the context of the containing composition.
const dependenciesFromInputs =
Object.values(description.inputMapping ?? {})
.map(token => {
const tokenShape = getInputTokenShape(token);
const tokenValue = getInputTokenValue(token);
switch (tokenShape) {
case 'input.dependency':
return tokenValue;
case 'input':
case 'input.updateValue':
return token;
case 'input.myself':
return 'this';
case 'input.thisProperty':
return 'thisProperty';
default:
return null;
}
})
.filter(Boolean);
const anyInputsUseUpdateValue =
dependenciesFromInputs
.filter(dependency => isInputToken(dependency))
.some(token => getInputTokenShape(token) === 'input.updateValue');
const inputNames =
Object.keys(description.inputMapping ?? {});
const inputSymbols =
inputNames.map(name => input(name));
const inputsMayBeDynamicValue =
stitchArrays({
mappingToken: Object.values(description.inputMapping ?? {}),
descriptionToken: Object.values(description.inputDescriptions ?? {}),
}).map(({mappingToken, descriptionToken}) => {
if (getInputTokenShape(descriptionToken) === 'input.staticValue') return false;
if (getInputTokenShape(mappingToken) === 'input.value') return false;
return true;
});
const inputDescriptions =
Object.values(description.inputDescriptions ?? {});
/*
const inputsAcceptNull =
Object.values(description.inputDescriptions ?? {})
.map(token => {
const tokenValue = getInputTokenValue(token);
if (!tokenValue) return false;
if ('acceptsNull' in tokenValue) return tokenValue.acceptsNull;
if ('defaultValue' in tokenValue) return tokenValue.defaultValue === null;
return false;
});
*/
// Update descriptions passed as the value in an input.updateValue() token,
// as provided as inputs for this composition.
const inputUpdateDescriptions =
Object.values(description.inputMapping ?? {})
.map(token =>
(getInputTokenShape(token) === 'input.updateValue'
? getInputTokenValue(token)
: null))
.filter(Boolean);
const base = composition.at(-1);
const steps = composition.slice();
const aggregate = openAggregate({
message:
`Errors preparing composition` +
(annotation ? ` (${annotation})` : ''),
});
const compositionNests = description.compose ?? true;
if (compositionNests && empty(steps)) {
aggregate.push(new TypeError(`Expected at least one step`));
}
// Steps default to exposing if using a shorthand syntax where flags aren't
// specified at all.
const stepsExpose =
steps
.map(step =>
(step.flags
? step.flags.expose ?? false
: true));
// Steps default to composing if using a shorthand syntax where flags aren't
// specified at all - *and* aren't the base (final step), unless the whole
// composition is nestable.
const stepsCompose =
steps
.map((step, index, {length}) =>
(step.flags
? step.flags.compose ?? false
: (index === length - 1
? compositionNests
: true)));
// Steps update if the corresponding flag is explicitly set, if a transform
// function is provided, or if the dependencies include an input.updateValue
// token.
const stepsUpdate =
steps
.map(step =>
(step.flags
? step.flags.update ?? false
: !!step.transform ||
!!step.dependencies?.some(dependency =>
isInputToken(dependency) &&
getInputTokenShape(dependency) === 'input.updateValue')));
// The expose description for a step is just the entire step object, when
// using the shorthand syntax where {flags: {expose: true}} is left implied.
const stepExposeDescriptions =
steps
.map((step, index) =>
(stepsExpose[index]
? (step.flags
? step.expose ?? null
: step)
: null));
// The update description for a step, if present at all, is always set
// explicitly. There may be multiple per step - namely that step's own
// {update} description, and any descriptions passed as the value in an
// input.updateValue({...}) token.
const stepUpdateDescriptions =
steps
.map((step, index) =>
(stepsUpdate[index]
? [
step.update ?? null,
...(stepExposeDescriptions[index]?.dependencies ?? [])
.filter(dependency => isInputToken(dependency))
.filter(token => getInputTokenShape(token) === 'input.updateValue')
.map(token => getInputTokenValue(token)),
].filter(Boolean)
: []));
// Indicates presence of a {compute} function on the expose description.
const stepsCompute =
stepExposeDescriptions
.map(expose => !!expose?.compute);
// Indicates presence of a {transform} function on the expose description.
const stepsTransform =
stepExposeDescriptions
.map(expose => !!expose?.transform);
const dependenciesFromSteps =
unique(
stepExposeDescriptions
.flatMap(expose => expose?.dependencies ?? [])
.map(dependency => {
if (typeof dependency === 'string')
return (dependency.startsWith('#') ? null : dependency);
const tokenShape = getInputTokenShape(dependency);
const tokenValue = getInputTokenValue(dependency);
switch (tokenShape) {
case 'input.dependency':
return (tokenValue.startsWith('#') ? null : tokenValue);
case 'input.myself':
return 'this';
case 'input.thisProperty':
return 'thisProperty';
default:
return null;
}
})
.filter(Boolean));
const anyStepsUseUpdateValue =
stepExposeDescriptions
.some(expose =>
(expose?.dependencies
? expose.dependencies.includes(input.updateValue())
: false));
const anyStepsExpose =
stepsExpose.includes(true);
const anyStepsUpdate =
stepsUpdate.includes(true);
const anyStepsCompute =
stepsCompute.includes(true);
const compositionExposes =
anyStepsExpose;
const compositionUpdates =
'update' in description ||
anyInputsUseUpdateValue ||
anyStepsUseUpdateValue ||
anyStepsUpdate;
const stepEntries = stitchArrays({
step: steps,
stepComposes: stepsCompose,
stepComputes: stepsCompute,
stepTransforms: stepsTransform,
});
for (let i = 0; i < stepEntries.length; i++) {
const {
step,
stepComposes,
stepComputes,
stepTransforms,
} = stepEntries[i];
const isBase = i === stepEntries.length - 1;
const message =
`Errors in step #${i + 1}` +
(isBase ? ` (base)` : ``) +
(step.annotation ? ` (${step.annotation})` : ``);
aggregate.nest({message}, ({push}) => {
if (!isBase && !stepComposes) {
return push(new TypeError(
`All steps leading up to base must compose`));
}
if (
!compositionNests && !compositionUpdates &&
stepTransforms && !stepComputes
) {
return push(new TypeError(
`Steps which only transform can't be used in a composition that doesn't update`));
}
});
}
if (!compositionNests && !compositionUpdates && !anyStepsCompute) {
aggregate.push(new TypeError(`Expected at least one step to compute`));
}
aggregate.close();
function _prepareContinuation(callingTransformForThisStep) {
const continuationStorage = {
returnedWith: null,
providedDependencies: undefined,
providedValue: undefined,
};
const continuation =
(callingTransformForThisStep
? (providedValue, providedDependencies = null) => {
continuationStorage.returnedWith = 'continuation';
continuationStorage.providedDependencies = providedDependencies;
continuationStorage.providedValue = providedValue;
return continuationSymbol;
}
: (providedDependencies = null) => {
continuationStorage.returnedWith = 'continuation';
continuationStorage.providedDependencies = providedDependencies;
return continuationSymbol;
});
continuation.exit = (providedValue) => {
continuationStorage.returnedWith = 'exit';
continuationStorage.providedValue = providedValue;
return continuationSymbol;
};
if (compositionNests) {
const makeRaiseLike = returnWith =>
(callingTransformForThisStep
? (providedValue, providedDependencies = null) => {
continuationStorage.returnedWith = returnWith;
continuationStorage.providedDependencies = providedDependencies;
continuationStorage.providedValue = providedValue;
return continuationSymbol;
}
: (providedDependencies = null) => {
continuationStorage.returnedWith = returnWith;
continuationStorage.providedDependencies = providedDependencies;
return continuationSymbol;
});
continuation.raiseOutput = makeRaiseLike('raiseOutput');
continuation.raiseOutputAbove = makeRaiseLike('raiseOutputAbove');
}
return {continuation, continuationStorage};
}
function _computeOrTransform(initialValue, continuationIfApplicable, initialDependencies) {
const expectingTransform = initialValue !== noTransformSymbol;
let valueSoFar =
(expectingTransform
? initialValue
: undefined);
const availableDependencies = {...initialDependencies};
const inputValues =
Object.values(description.inputMapping ?? {})
.map(token => {
const tokenShape = getInputTokenShape(token);
const tokenValue = getInputTokenValue(token);
switch (tokenShape) {
case 'input.dependency':
return initialDependencies[tokenValue];
case 'input.value':
return tokenValue;
case 'input.updateValue':
if (!expectingTransform)
throw new Error(`Unexpected input.updateValue() accessed on non-transform call`);
return valueSoFar;
case 'input.myself':
return initialDependencies['this'];
case 'input.thisProperty':
return initialDependencies['thisProperty'];
case 'input':
return initialDependencies[token];
default:
throw new TypeError(`Unexpected input shape ${tokenShape}`);
}
});
withAggregate({message: `Errors in input values provided to ${compositionName}`}, ({push}) => {
for (const {dynamic, name, value, description} of stitchArrays({
dynamic: inputsMayBeDynamicValue,
name: inputNames,
value: inputValues,
description: inputDescriptions,
})) {
if (!dynamic) continue;
try {
validateInputValue(value, description);
} catch (error) {
error.message = `${name}: ${error.message}`;
push(error);
}
}
});
if (expectingTransform) {
debug(() => [colors.bright(`begin composition - transforming from:`), initialValue]);
} else {
debug(() => colors.bright(`begin composition - not transforming`));
}
for (
const [i, {
step,
stepComposes,
}] of
stitchArrays({
step: steps,
stepComposes: stepsCompose,
}).entries()
) {
const isBase = i === steps.length - 1;
debug(() => [
`step #${i+1}` +
(isBase
? ` (base):`
: ` of ${steps.length}:`),
step]);
const expose =
(step.flags
? step.expose
: step);
if (!expose) {
if (!isBase) {
debug(() => `step #${i+1} - no expose description, nothing to do for this step`);
continue;
}
if (expectingTransform) {
debug(() => `step #${i+1} (base) - no expose description, returning so-far update value:`, valueSoFar);
if (continuationIfApplicable) {
debug(() => colors.bright(`end composition - raise (inferred - composing)`));
return continuationIfApplicable(valueSoFar);
} else {
debug(() => colors.bright(`end composition - exit (inferred - not composing)`));
return valueSoFar;
}
} else {
debug(() => `step #${i+1} (base) - no expose description, nothing to continue with`);
if (continuationIfApplicable) {
debug(() => colors.bright(`end composition - raise (inferred - composing)`));
return continuationIfApplicable();
} else {
debug(() => colors.bright(`end composition - exit (inferred - not composing)`));
return null;
}
}
}
const callingTransformForThisStep =
expectingTransform && expose.transform;
let continuationStorage;
const inputDictionary =
Object.fromEntries(
stitchArrays({symbol: inputSymbols, value: inputValues})
.map(({symbol, value}) => [symbol, value]));
const filterableDependencies = {
...availableDependencies,
...inputMetadata,
...inputDictionary,
...
(expectingTransform
? {[input.updateValue()]: valueSoFar}
: {}),
[input.myself()]: initialDependencies?.['this'] ?? null,
[input.thisProperty()]: initialDependencies?.['thisProperty'] ?? null,
};
const selectDependencies =
(expose.dependencies ?? []).map(dependency => {
if (!isInputToken(dependency)) return dependency;
const tokenShape = getInputTokenShape(dependency);
const tokenValue = getInputTokenValue(dependency);
switch (tokenShape) {
case 'input':
case 'input.staticDependency':
case 'input.staticValue':
return dependency;
case 'input.myself':
return input.myself();
case 'input.thisProperty':
return input.thisProperty();
case 'input.dependency':
return tokenValue;
case 'input.updateValue':
return input.updateValue();
default:
throw new Error(`Unexpected token ${tokenShape} as dependency`);
}
})
const filteredDependencies =
filterProperties(filterableDependencies, selectDependencies);
debug(() => [
`step #${i+1} - ${callingTransformForThisStep ? 'transform' : 'compute'}`,
`with dependencies:`, filteredDependencies,
`selecting:`, selectDependencies,
`from available:`, filterableDependencies,
...callingTransformForThisStep ? [`from value:`, valueSoFar] : []]);
let result;
const getExpectedEvaluation = () =>
(callingTransformForThisStep
? (filteredDependencies
? ['transform', valueSoFar, continuationSymbol, filteredDependencies]
: ['transform', valueSoFar, continuationSymbol])
: (filteredDependencies
? ['compute', continuationSymbol, filteredDependencies]
: ['compute', continuationSymbol]));
const naturalEvaluate = () => {
const [name, ...argsLayout] = getExpectedEvaluation();
let args;
if (stepComposes) {
let continuation;
({continuation, continuationStorage} =
_prepareContinuation(callingTransformForThisStep));
args =
argsLayout.map(arg =>
(arg === continuationSymbol
? continuation
: arg));
} else {
args =
argsLayout.filter(arg => arg !== continuationSymbol);
}
return expose[name](...args);
}
switch (step.cache) {
// Warning! Highly WIP!
case 'aggressive': {
const hrnow = () => {
const hrTime = process.hrtime();
return hrTime[0] * 1000000000 + hrTime[1];
};
const [name, ...args] = getExpectedEvaluation();
let cache = globalCompositeCache[step.annotation];
if (!cache) {
cache = globalCompositeCache[step.annotation] = {
transform: new TupleMap(),
compute: new TupleMap(),
times: {
read: [],
evaluate: [],
},
};
}
const tuplefied = args
.flatMap(arg => [
Symbol.for('compositeFrom: tuplefied arg divider'),
...(typeof arg !== 'object' || Array.isArray(arg)
? [arg]
: Object.entries(arg).flat()),
]);
const readTime = hrnow();
const cacheContents = cache[name].get(tuplefied);
cache.times.read.push(hrnow() - readTime);
if (cacheContents) {
({result, continuationStorage} = cacheContents);
} else {
const evaluateTime = hrnow();
result = naturalEvaluate();
cache.times.evaluate.push(hrnow() - evaluateTime);
cache[name].set(tuplefied, {result, continuationStorage});
}
break;
}
default: {
result = naturalEvaluate();
break;
}
}
if (result !== continuationSymbol) {
debug(() => [`step #${i+1} - result: exit (inferred) ->`, result]);
debug(() => colors.bright(`end composition - exit (inferred)`));
return result;
}
const {returnedWith} = continuationStorage;
if (returnedWith === 'exit') {
const {providedValue} = continuationStorage;
debug(() => [`step #${i+1} - result: exit (explicit) ->`, providedValue]);
debug(() => colors.bright(`end composition - exit (explicit)`));
if (compositionNests) {
return continuationIfApplicable.exit(providedValue);
} else {
return providedValue;
}
}
const {providedValue, providedDependencies} = continuationStorage;
const continuationArgs = [];
if (expectingTransform) {
continuationArgs.push(
(callingTransformForThisStep
? providedValue ?? null
: valueSoFar ?? null));
}
debug(() => {
const base = `step #${i+1} - result: ` + returnedWith;
const parts = [];
if (callingTransformForThisStep) {
parts.push('value:', providedValue);
}
if (providedDependencies !== null) {
parts.push(`deps:`, providedDependencies);
} else {
parts.push(`(no deps)`);
}
if (empty(parts)) {
return base;
} else {
return [base + ' ->', ...parts];
}
});
switch (returnedWith) {
case 'raiseOutput':
debug(() =>
(isBase
? colors.bright(`end composition - raiseOutput (base: explicit)`)
: colors.bright(`end composition - raiseOutput`)));
continuationArgs.push(_mapDependenciesToOutputs(providedDependencies));
return continuationIfApplicable(...continuationArgs);
case 'raiseOutputAbove':
debug(() => colors.bright(`end composition - raiseOutputAbove`));
continuationArgs.push(_mapDependenciesToOutputs(providedDependencies));
return continuationIfApplicable.raiseOutput(...continuationArgs);
case 'continuation':
if (isBase) {
debug(() => colors.bright(`end composition - raiseOutput (inferred)`));
continuationArgs.push(_mapDependenciesToOutputs(providedDependencies));
return continuationIfApplicable(...continuationArgs);
} else {
Object.assign(availableDependencies, providedDependencies);
if (callingTransformForThisStep && providedValue !== null) {
valueSoFar = providedValue;
}
break;
}
}
}
}
const constructedDescriptor = {};
if (annotation) {
constructedDescriptor.annotation = annotation;
}
constructedDescriptor.flags = {
update: compositionUpdates,
expose: compositionExposes,
compose: compositionNests,
};
if (compositionUpdates) {
// TODO: This is a dumb assign statement, and it could probably do more
// interesting things, like combining validation functions.
constructedDescriptor.update =
Object.assign(
{...description.update ?? {}},
...inputUpdateDescriptions,
...stepUpdateDescriptions.flat());
}
if (compositionExposes) {
const expose = constructedDescriptor.expose = {};
expose.dependencies =
unique([
...dependenciesFromInputs,
...dependenciesFromSteps,
]);
const _wrapper = (...args) => {
try {
return _computeOrTransform(...args);
} catch (thrownError) {
const error = new Error(
`Error computing composition` +
(annotation ? ` ${annotation}` : ''));
error.cause = thrownError;
throw error;
}
};
if (compositionNests) {
if (compositionUpdates) {
expose.transform = (value, continuation, dependencies) =>
_wrapper(value, continuation, dependencies);
}
if (anyStepsCompute && !anyStepsUseUpdateValue && !anyInputsUseUpdateValue) {
expose.compute = (continuation, dependencies) =>
_wrapper(noTransformSymbol, continuation, dependencies);
}
if (base.cacheComposition) {
expose.cache = base.cacheComposition;
}
} else if (compositionUpdates) {
if (!empty(steps)) {
expose.transform = (value, dependencies) =>
_wrapper(value, null, dependencies);
}
} else {
expose.compute = (dependencies) =>
_wrapper(noTransformSymbol, null, dependencies);
}
}
return constructedDescriptor;
}
export function displayCompositeCacheAnalysis() {
const showTimes = (cache, key) => {
const times = cache.times[key].slice().sort();
const all = times;
const worst10pc = times.slice(-times.length / 10);
const best10pc = times.slice(0, times.length / 10);
const middle50pc = times.slice(times.length / 4, -times.length / 4);
const middle80pc = times.slice(times.length / 10, -times.length / 10);
const fmt = val => `${(val / 1000).toFixed(2)}ms`.padStart(9);
const avg = times => times.reduce((a, b) => a + b, 0) / times.length;
const left = ` - ${key}: `;
const indn = ' '.repeat(left.length);
console.log(left + `${fmt(avg(all))} (all ${all.length})`);
console.log(indn + `${fmt(avg(worst10pc))} (worst 10%)`);
console.log(indn + `${fmt(avg(best10pc))} (best 10%)`);
console.log(indn + `${fmt(avg(middle80pc))} (middle 80%)`);
console.log(indn + `${fmt(avg(middle50pc))} (middle 50%)`);
};
for (const [annotation, cache] of Object.entries(globalCompositeCache)) {
console.log(`Cached ${annotation}:`);
showTimes(cache, 'evaluate');
showTimes(cache, 'read');
}
}
// Evaluates a function with composite debugging enabled, turns debugging
// off again, and returns the result of the function. This is mostly syntax
// sugar, but also helps avoid unit tests avoid accidentally printing debug
// info for a bunch of unrelated composites (due to property enumeration
// when displaying an unexpected result). Use as so:
//
// Without debugging:
// t.same(thing.someProp, value)
//
// With debugging:
// t.same(debugComposite(() => thing.someProp), value)
//
export function debugComposite(fn) {
compositeFrom.debug = true;
const value = fn();
compositeFrom.debug = false;
return value;
}
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