495 lines
14 KiB
JavaScript
495 lines
14 KiB
JavaScript
"use strict";
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var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) {
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if (k2 === undefined) k2 = k;
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var desc = Object.getOwnPropertyDescriptor(m, k);
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if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) {
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desc = { enumerable: true, get: function() { return m[k]; } };
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}
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Object.defineProperty(o, k2, desc);
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}) : (function(o, m, k, k2) {
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if (k2 === undefined) k2 = k;
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o[k2] = m[k];
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}));
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var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) {
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Object.defineProperty(o, "default", { enumerable: true, value: v });
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}) : function(o, v) {
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o["default"] = v;
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});
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var __importStar = (this && this.__importStar) || function (mod) {
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if (mod && mod.__esModule) return mod;
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var result = {};
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if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k);
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__setModuleDefault(result, mod);
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return result;
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};
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Object.defineProperty(exports, "__esModule", { value: true });
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exports.bifunctorTaskThese = exports.functorTaskThese = exports.traverseReadonlyArrayWithIndexSeq = exports.traverseReadonlyNonEmptyArrayWithIndexSeq = exports.traverseReadonlyArrayWithIndex = exports.traverseReadonlyNonEmptyArrayWithIndex = exports.ApT = exports.toTuple2 = exports.fromTaskK = exports.FromTask = exports.fromIOK = exports.FromIO = exports.fromTheseK = exports.FromThese = exports.fromPredicate = exports.fromOptionK = exports.fromOption = exports.FromEither = exports.Bifunctor = exports.Pointed = exports.flap = exports.Functor = exports.getMonad = exports.getChain = exports.getApplicative = exports.getApply = exports.URI = exports.of = exports.mapLeft = exports.bimap = exports.map = exports.swap = exports.foldW = exports.matchEW = exports.fold = exports.matchE = exports.matchW = exports.match = exports.fromTask = exports.fromIOEither = exports.fromIO = exports.fromThese = exports.fromEither = exports.leftIO = exports.rightIO = exports.leftTask = exports.rightTask = exports.both = exports.right = exports.left = void 0;
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exports.getSemigroup = exports.taskThese = exports.toTuple = void 0;
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var Apply_1 = require("./Apply");
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var FromEither_1 = require("./FromEither");
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var FromIO_1 = require("./FromIO");
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var FromTask_1 = require("./FromTask");
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var FromThese_1 = require("./FromThese");
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var function_1 = require("./function");
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var Functor_1 = require("./Functor");
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var _ = __importStar(require("./internal"));
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var T = __importStar(require("./Task"));
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var TH = __importStar(require("./These"));
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var TT = __importStar(require("./TheseT"));
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/**
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* @category constructors
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* @since 2.4.0
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*/
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exports.left = TT.left(T.Pointed);
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/**
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* @category constructors
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* @since 2.4.0
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*/
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exports.right = TT.right(T.Pointed);
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/**
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* @category constructors
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* @since 2.4.0
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*/
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exports.both = TT.both(T.Pointed);
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/**
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* @category constructors
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* @since 2.4.0
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*/
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exports.rightTask = TT.rightF(T.Functor);
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/**
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* @category constructors
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* @since 2.4.0
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*/
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exports.leftTask = TT.leftF(T.Functor);
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/**
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* @category constructors
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* @since 2.4.0
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*/
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exports.rightIO = (0, function_1.flow)(T.fromIO, exports.rightTask);
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/**
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* @category constructors
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* @since 2.4.0
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*/
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exports.leftIO = (0, function_1.flow)(T.fromIO, exports.leftTask);
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// -------------------------------------------------------------------------------------
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// conversions
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// -------------------------------------------------------------------------------------
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/**
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* @category conversions
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* @since 2.10.0
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*/
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exports.fromEither = T.of;
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/**
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* @category conversions
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* @since 2.11.0
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*/
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exports.fromThese = T.of;
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/**
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* @category conversions
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* @since 2.7.0
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*/
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exports.fromIO = exports.rightIO;
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/**
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* @category conversions
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* @since 2.4.0
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*/
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exports.fromIOEither = T.fromIO;
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/**
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* @category conversions
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* @since 2.7.0
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*/
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exports.fromTask = exports.rightTask;
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/**
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* @category pattern matching
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* @since 2.10.0
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*/
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exports.match = TT.match(T.Functor);
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/**
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* Less strict version of [`match`](#match).
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*
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* The `W` suffix (short for **W**idening) means that the handler return types will be merged.
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*
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* @category pattern matching
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* @since 2.10.0
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*/
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exports.matchW = exports.match;
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/**
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* The `E` suffix (short for **E**ffect) means that the handlers return an effect (`Task`).
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*
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* @category pattern matching
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* @since 2.10.0
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*/
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exports.matchE = TT.matchE(T.Monad);
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/**
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* Alias of [`matchE`](#matche).
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*
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* @category pattern matching
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* @since 2.4.0
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*/
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exports.fold = exports.matchE;
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/**
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* Less strict version of [`matchE`](#matche).
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*
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* The `W` suffix (short for **W**idening) means that the handler return types will be merged.
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*
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* @category pattern matching
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* @since 2.10.0
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*/
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exports.matchEW = exports.fold;
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/**
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* Alias of [`matchEW`](#matchew).
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*
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* @category pattern matching
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* @since 2.10.0
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*/
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exports.foldW = exports.matchEW;
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/**
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* @since 2.4.0
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*/
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exports.swap = TT.swap(T.Functor);
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var _map = function (fa, f) { return (0, function_1.pipe)(fa, (0, exports.map)(f)); };
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/* istanbul ignore next */
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var _bimap = function (fa, f, g) { return (0, function_1.pipe)(fa, (0, exports.bimap)(f, g)); };
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/* istanbul ignore next */
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var _mapLeft = function (fa, f) { return (0, function_1.pipe)(fa, (0, exports.mapLeft)(f)); };
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/**
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* `map` can be used to turn functions `(a: A) => B` into functions `(fa: F<A>) => F<B>` whose argument and return types
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* use the type constructor `F` to represent some computational context.
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*
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* @category mapping
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* @since 2.4.0
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*/
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exports.map = TT.map(T.Functor);
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/**
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* Map a pair of functions over the two type arguments of the bifunctor.
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*
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* @category mapping
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* @since 2.4.0
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*/
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exports.bimap =
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/*#__PURE__*/ TT.bimap(T.Functor);
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/**
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* Map a function over the first type argument of a bifunctor.
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*
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* @category error handling
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* @since 2.4.0
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*/
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exports.mapLeft = TT.mapLeft(T.Functor);
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/**
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* @category constructors
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* @since 2.7.0
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*/
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exports.of = exports.right;
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/**
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* @category type lambdas
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* @since 2.4.0
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*/
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exports.URI = 'TaskThese';
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/**
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* @category instances
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* @since 2.10.0
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*/
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var getApply = function (A, S) {
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var ap = TT.ap(A, S);
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return {
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URI: exports.URI,
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_E: undefined,
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map: _map,
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ap: function (fab, fa) { return (0, function_1.pipe)(fab, ap(fa)); }
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};
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};
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exports.getApply = getApply;
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/**
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* @category instances
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* @since 2.7.0
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*/
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function getApplicative(A, S) {
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var ap = (0, exports.getApply)(A, S).ap;
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return {
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URI: exports.URI,
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_E: undefined,
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map: _map,
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ap: ap,
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of: exports.of
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};
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}
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exports.getApplicative = getApplicative;
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/**
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* @category instances
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* @since 2.10.0
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*/
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function getChain(S) {
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var A = (0, exports.getApply)(T.ApplicativePar, S);
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var chain = TT.chain(T.Monad, S);
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return {
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URI: exports.URI,
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_E: undefined,
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map: _map,
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ap: A.ap,
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chain: function (ma, f) { return (0, function_1.pipe)(ma, chain(f)); }
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};
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}
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exports.getChain = getChain;
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/**
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* @category instances
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* @since 2.4.0
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*/
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function getMonad(S) {
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var A = getApplicative(T.ApplicativePar, S);
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var C = getChain(S);
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return {
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URI: exports.URI,
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_E: undefined,
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map: _map,
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ap: A.ap,
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of: exports.of,
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chain: C.chain,
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fromIO: exports.fromIO,
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fromTask: exports.fromTask
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};
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}
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exports.getMonad = getMonad;
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/**
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* @category instances
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* @since 2.10.0
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*/
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exports.Functor = {
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URI: exports.URI,
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map: _map
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};
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/**
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* @category mapping
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* @since 2.10.0
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*/
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exports.flap = (0, Functor_1.flap)(exports.Functor);
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/**
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* @category instances
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* @since 2.10.0
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*/
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exports.Pointed = {
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URI: exports.URI,
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of: exports.of
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};
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/**
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* @category instances
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* @since 2.10.0
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*/
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exports.Bifunctor = {
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URI: exports.URI,
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bimap: _bimap,
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mapLeft: _mapLeft
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};
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/**
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* @category instances
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* @since 2.10.0
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*/
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exports.FromEither = {
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URI: exports.URI,
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fromEither: exports.fromEither
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};
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/**
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* @category conversions
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* @since 2.10.0
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*/
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exports.fromOption =
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/*#__PURE__*/ (0, FromEither_1.fromOption)(exports.FromEither);
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/**
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* @category lifting
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* @since 2.10.0
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*/
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exports.fromOptionK =
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/*#__PURE__*/ (0, FromEither_1.fromOptionK)(exports.FromEither);
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/**
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* @category lifting
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* @since 2.10.0
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*/
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exports.fromPredicate = (0, FromEither_1.fromPredicate)(exports.FromEither);
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/**
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* @category instances
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* @since 2.11.0
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*/
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exports.FromThese = {
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URI: exports.URI,
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fromThese: exports.fromThese
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};
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/**
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* @category lifting
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* @since 2.11.0
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*/
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exports.fromTheseK = (0, FromThese_1.fromTheseK)(exports.FromThese);
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/**
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* @category instances
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* @since 2.10.0
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*/
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exports.FromIO = {
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URI: exports.URI,
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fromIO: exports.fromIO
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};
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/**
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* @category lifting
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* @since 2.10.0
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*/
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exports.fromIOK = (0, FromIO_1.fromIOK)(exports.FromIO);
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/**
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* @category instances
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* @since 2.10.0
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*/
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exports.FromTask = {
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URI: exports.URI,
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fromIO: exports.fromIO,
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fromTask: exports.fromTask
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};
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/**
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* @category lifting
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* @since 2.10.0
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*/
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exports.fromTaskK = (0, FromTask_1.fromTaskK)(exports.FromTask);
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// -------------------------------------------------------------------------------------
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// utils
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// -------------------------------------------------------------------------------------
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/**
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* @since 2.10.0
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*/
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exports.toTuple2 =
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/*#__PURE__*/ TT.toTuple2(T.Functor);
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/**
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* @since 2.11.0
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*/
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exports.ApT = (0, exports.of)(_.emptyReadonlyArray);
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// -------------------------------------------------------------------------------------
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// array utils
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// -------------------------------------------------------------------------------------
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/**
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* Equivalent to `ReadonlyNonEmptyArray#traverseWithIndex(getApplicative(T.ApplicativePar, S))`.
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*
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* @category traversing
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* @since 2.11.0
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*/
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var traverseReadonlyNonEmptyArrayWithIndex = function (S) {
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var g = TH.traverseReadonlyNonEmptyArrayWithIndex(S);
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return function (f) { return (0, function_1.flow)(T.traverseReadonlyNonEmptyArrayWithIndex(f), T.map(g(function_1.SK))); };
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};
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exports.traverseReadonlyNonEmptyArrayWithIndex = traverseReadonlyNonEmptyArrayWithIndex;
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/**
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* Equivalent to `ReadonlyArray#traverseWithIndex(getApplicative(T.ApplicativePar, S))`.
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*
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* @category traversing
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* @since 2.11.0
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*/
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var traverseReadonlyArrayWithIndex = function (S) {
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return function (f) {
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var g = (0, exports.traverseReadonlyNonEmptyArrayWithIndex)(S)(f);
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return function (as) { return (_.isNonEmpty(as) ? g(as) : exports.ApT); };
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};
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};
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exports.traverseReadonlyArrayWithIndex = traverseReadonlyArrayWithIndex;
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/**
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* Equivalent to `ReadonlyNonEmptyArray#traverseWithIndex(getApplicative(T.ApplicativeSeq, S))`.
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*
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* @category traversing
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* @since 2.11.0
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*/
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var traverseReadonlyNonEmptyArrayWithIndexSeq = function (S) {
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return function (f) {
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return function (as) {
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return function () {
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return _.tail(as).reduce(function (acc, a, i) {
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return acc.then(function (ebs) {
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return TH.isLeft(ebs)
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? acc
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: f(i + 1, a)().then(function (eb) {
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if (TH.isLeft(eb)) {
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return eb;
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}
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if (TH.isBoth(eb)) {
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var right_1 = ebs.right;
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right_1.push(eb.right);
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return TH.isBoth(ebs) ? TH.both(S.concat(ebs.left, eb.left), right_1) : TH.both(eb.left, right_1);
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}
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ebs.right.push(eb.right);
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return ebs;
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});
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});
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}, f(0, _.head(as))().then(TH.map(_.singleton)));
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};
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};
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};
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};
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exports.traverseReadonlyNonEmptyArrayWithIndexSeq = traverseReadonlyNonEmptyArrayWithIndexSeq;
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/**
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* Equivalent to `ReadonlyArray#traverseWithIndex(getApplicative(T.ApplicativeSeq, S))`.
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*
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* @category traversing
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* @since 2.11.0
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*/
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var traverseReadonlyArrayWithIndexSeq = function (S) {
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return function (f) {
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var g = (0, exports.traverseReadonlyNonEmptyArrayWithIndexSeq)(S)(f);
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return function (as) { return (_.isNonEmpty(as) ? g(as) : exports.ApT); };
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};
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};
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exports.traverseReadonlyArrayWithIndexSeq = traverseReadonlyArrayWithIndexSeq;
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// -------------------------------------------------------------------------------------
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// deprecated
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// -------------------------------------------------------------------------------------
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/**
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* Use [`Functor`](#functor) instead.
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*
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* @category zone of death
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* @since 2.7.0
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* @deprecated
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*/
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exports.functorTaskThese = {
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URI: exports.URI,
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map: _map
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};
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/**
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* Use [`Bifunctor`](#bifunctor) instead.
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*
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* @category zone of death
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* @since 2.7.0
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* @deprecated
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*/
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exports.bifunctorTaskThese = {
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URI: exports.URI,
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bimap: _bimap,
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mapLeft: _mapLeft
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};
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/**
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* Use [`toTuple2`](#totuple2) instead.
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*
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* @category zone of death
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* @since 2.4.0
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* @deprecated
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*/
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var toTuple = function (e, a) {
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return (0, exports.toTuple2)(function () { return e; }, function () { return a; });
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};
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exports.toTuple = toTuple;
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/**
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* This instance is deprecated, use small, specific instances instead.
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* For example if a function needs a `Functor` instance, pass `TT.Functor` instead of `TT.taskThese`
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* (where `TT` is from `import TT from 'fp-ts/TaskThese'`)
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*
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* @category zone of death
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* @since 2.4.0
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* @deprecated
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*/
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exports.taskThese = {
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URI: exports.URI,
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map: _map,
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bimap: _bimap,
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mapLeft: _mapLeft
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};
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/**
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* Use [`getApplySemigroup`](./Apply.ts.html#getapplysemigroup) instead.
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*
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* @category zone of death
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* @since 2.4.0
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* @deprecated
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*/
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var getSemigroup = function (SE, SA) {
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return (0, Apply_1.getApplySemigroup)(T.ApplySeq)(TH.getSemigroup(SE, SA));
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};
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exports.getSemigroup = getSemigroup;
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