203 lines
6.1 KiB
JavaScript
203 lines
6.1 KiB
JavaScript
import React from 'react'
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import { Node, Leaf } from './mecanismViews/common'
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import { findRuleByDottedName, disambiguateRuleReference } from './rules'
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import { evaluateNode, rewriteNode, makeJsx } from './evaluation'
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import { getSituationValue } from './variables'
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import { Trans } from 'react-i18next'
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import { isNumeric } from '../utils'
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export let treatVariable = (rules, rule, filter) => parseResult => {
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let evaluate = (cache, situation, parsedRules, node) => {
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let dottedName = node.dottedName,
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// On va vérifier dans le cache courant, dict, si la variable n'a pas été déjà évaluée
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// En effet, l'évaluation dans le cas d'une variable qui a une formule, est coûteuse !
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cacheName = dottedName + (filter ? '.' + filter : ''),
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cached = cache[cacheName]
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if (cached) return cached
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let variable = findRuleByDottedName(parsedRules, dottedName),
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variableHasFormula = variable.formule != null,
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variableHasCond =
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variable['applicable si'] != null ||
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variable['non applicable si'] != null,
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situationValue = getSituationValue(situation, dottedName, variable),
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needsEvaluation =
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situationValue == null && (variableHasCond || variableHasFormula),
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explanation = needsEvaluation
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? evaluateNode(cache, situation, parsedRules, variable)
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: variable
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let cacheAndNode = (nodeValue, missingVariables) => {
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cache[cacheName] = rewriteNode(
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node,
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nodeValue,
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explanation,
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missingVariables
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)
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return cache[cacheName]
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}
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// SITUATION 1 : La variable est directement renseignée
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if (situationValue != null) return cacheAndNode(situationValue, {})
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// SITUATION 2 : La variable est calculée
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if (situationValue == null && variableHasFormula)
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return cacheAndNode(explanation.nodeValue, explanation.missingVariables)
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// SITUATION 3 : La variable est une question sans condition dont la valeur n'a pas été renseignée
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if (situationValue == null && !variableHasFormula && !variableHasCond)
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return cacheAndNode(null, { [dottedName]: 1 })
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// SITUATION 4 : La variable est une question avec conditions
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if (situationValue == null && !variableHasFormula && variableHasCond) {
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// SITUATION 4.1 : La condition est connue et vrai
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if (explanation.isApplicable)
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return variable.question
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? cacheAndNode(null, { [dottedName]: 1 })
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: cacheAndNode(true, {})
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// SITUATION 4.2 : La condition est connue et fausse
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if (explanation.isApplicable === false) return cacheAndNode(false, {})
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// SITUATION 4.3 : La condition n'est pas connue
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if (explanation.isApplicable == null)
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return cacheAndNode(null, {
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...explanation.missingVariables,
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...(variable.question ? { [dottedName]: 1 } : {})
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})
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}
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}
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let { fragments } = parseResult,
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variablePartialName = fragments.join(' . '),
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dottedName = disambiguateRuleReference(rules, rule, variablePartialName)
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return {
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evaluate,
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//eslint-disable-next-line react/display-name
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jsx: nodeValue => (
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<Leaf
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classes="variable filtered"
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filter={filter}
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name={fragments.join(' . ')}
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dottedName={dottedName}
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value={nodeValue}
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/>
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),
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name: variablePartialName,
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category: 'variable',
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fragments,
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dottedName,
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type: 'boolean | numeric'
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}
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}
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// This function is a wrapper that can apply :
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// - temporal transformations to the value of the variable.
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// See the période.yaml test suite for details
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// - filters on the variable to select one part of the variable's 'composantes'
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// TODO - the implementations of filters is really bad. It injects a hack in the situation to make the composante mecanism compute only one of its branch. It is then stored in the cache under a new key, dottedName.filter. This mecanism should just query the variable tree to get the active composante's value...
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export let treatVariableTransforms = (rules, rule) => parseResult => {
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let evaluateTransforms = originalEval => (
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cache,
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situation,
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parsedRules,
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node
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) => {
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// Filter transformation
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let filteringSituation = name =>
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name == 'sys.filter' ? parseResult.filter : situation(name)
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let filteredNode = originalEval(
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cache,
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parseResult.filter ? filteringSituation : situation,
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parsedRules,
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node
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)
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let nodeValue = filteredNode.nodeValue
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// Temporal transformation
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if (nodeValue == null || !isNumeric(nodeValue)) return filteredNode
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let ruleToTransform = findRuleByDottedName(
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rules,
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filteredNode.explanation.dottedName
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)
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let environmentPeriod = situation('période') || 'mois'
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let callingPeriod = rule['période'] || environmentPeriod
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let calledPeriod = ruleToTransform['période'] || environmentPeriod
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let transformedNodeValue =
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callingPeriod === 'mois' && calledPeriod === 'année'
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? nodeValue / 12
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: callingPeriod === 'année' && calledPeriod === 'mois'
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? nodeValue * 12
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: nodeValue
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return rewriteNode(
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filteredNode,
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transformedNodeValue,
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filteredNode.explanation,
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filteredNode.missingVariables
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)
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}
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let node = treatVariable(rules, rule, parseResult.filter)(
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parseResult.variable || parseResult
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)
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return {
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...node,
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// Decorate node with the composante filter (either who is paying, either tax free)
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...(parseResult.filter
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? {
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cotisation: {
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...node.cotisation,
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'dû par': parseResult.filter,
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'impôt sur le revenu': parseResult.filter
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}
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}
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: {}),
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evaluate: evaluateTransforms(node.evaluate)
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}
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}
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export let treatNegatedVariable = variable => {
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let evaluate = (cache, situation, parsedRules, node) => {
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let explanation = evaluateNode(
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cache,
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situation,
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parsedRules,
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node.explanation
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),
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nodeValue = explanation.nodeValue == null ? null : !explanation.nodeValue,
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missingVariables = explanation.missingVariables
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return rewriteNode(node, nodeValue, explanation, missingVariables)
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}
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let jsx = (nodeValue, explanation) => (
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<Node
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classes="inlineExpression negation"
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value={nodeValue}
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child={
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<span className="nodeContent">
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<Trans i18nKey="inlineExpressionNegation">Non</Trans>{' '}
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{makeJsx(explanation)}
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</span>
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}
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/>
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)
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return {
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evaluate,
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jsx,
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category: 'mecanism',
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name: 'négation',
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type: 'boolean',
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explanation: variable
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}
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}
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