react-invenio-deposit-bma
Version:
React components to build forms in Invenio
1,520 lines (1,322 loc) • 357 kB
JavaScript
Object.defineProperty(exports, '__esModule', { value: true });
var axios = require('axios');
var _isEmpty = require('lodash/isEmpty');
var _set = require('lodash/set');
var React = require('react');
var reactRedux = require('react-redux');
var reactI18next = require('react-i18next');
var reactInvenioForms = require('react-invenio-forms');
var _indexOf = require('lodash/indexOf');
var _cloneDeep = require('lodash/cloneDeep');
var _defaults = require('lodash/defaults');
var _isArray = require('lodash/isArray');
var _isBoolean = require('lodash/isBoolean');
var _isNull = require('lodash/isNull');
var _isNumber = require('lodash/isNumber');
var _isObject = require('lodash/isObject');
var _mapValues = require('lodash/mapValues');
var _pick = require('lodash/pick');
var _pickBy = require('lodash/pickBy');
var _get = require('lodash/get');
require('lodash/isEqual');
var redux = require('redux');
var thunk = require('redux-thunk');
var i18n = require('i18next');
var LanguageDetector = require('i18next-browser-languagedetector');
var _join = require('lodash/join');
var formik = require('formik');
var semanticUiReact = require('semantic-ui-react');
var luxon = require('luxon');
var reactDndHtml5Backend = require('react-dnd-html5-backend');
var reactDnd = require('react-dnd');
var Yup = require('yup');
var _find = require('lodash/find');
var _map = require('lodash/map');
var _unickBy = require('lodash/unionBy');
var Dropzone = require('react-dropzone');
var _debounce = require('lodash/debounce');
var reactSearchkit = require('react-searchkit');
var reactOverridable = require('react-overridable');
var _truncate = require('lodash/truncate');
function _interopDefaultLegacy (e) { return e && typeof e === 'object' && 'default' in e ? e : { 'default': e }; }
function _interopNamespace(e) {
if (e && e.__esModule) return e;
var n = Object.create(null);
if (e) {
Object.keys(e).forEach(function (k) {
if (k !== 'default') {
var d = Object.getOwnPropertyDescriptor(e, k);
Object.defineProperty(n, k, d.get ? d : {
enumerable: true,
get: function () {
return e[k];
}
});
}
});
}
n['default'] = e;
return Object.freeze(n);
}
var axios__default = /*#__PURE__*/_interopDefaultLegacy(axios);
var _isEmpty__default = /*#__PURE__*/_interopDefaultLegacy(_isEmpty);
var _set__default = /*#__PURE__*/_interopDefaultLegacy(_set);
var React__default = /*#__PURE__*/_interopDefaultLegacy(React);
var _indexOf__default = /*#__PURE__*/_interopDefaultLegacy(_indexOf);
var _cloneDeep__default = /*#__PURE__*/_interopDefaultLegacy(_cloneDeep);
var _defaults__default = /*#__PURE__*/_interopDefaultLegacy(_defaults);
var _isArray__default = /*#__PURE__*/_interopDefaultLegacy(_isArray);
var _isBoolean__default = /*#__PURE__*/_interopDefaultLegacy(_isBoolean);
var _isNull__default = /*#__PURE__*/_interopDefaultLegacy(_isNull);
var _isNumber__default = /*#__PURE__*/_interopDefaultLegacy(_isNumber);
var _isObject__default = /*#__PURE__*/_interopDefaultLegacy(_isObject);
var _mapValues__default = /*#__PURE__*/_interopDefaultLegacy(_mapValues);
var _pick__default = /*#__PURE__*/_interopDefaultLegacy(_pick);
var _pickBy__default = /*#__PURE__*/_interopDefaultLegacy(_pickBy);
var _get__default = /*#__PURE__*/_interopDefaultLegacy(_get);
var thunk__default = /*#__PURE__*/_interopDefaultLegacy(thunk);
var i18n__default = /*#__PURE__*/_interopDefaultLegacy(i18n);
var LanguageDetector__default = /*#__PURE__*/_interopDefaultLegacy(LanguageDetector);
var _join__default = /*#__PURE__*/_interopDefaultLegacy(_join);
var Yup__namespace = /*#__PURE__*/_interopNamespace(Yup);
var _find__default = /*#__PURE__*/_interopDefaultLegacy(_find);
var _map__default = /*#__PURE__*/_interopDefaultLegacy(_map);
var _unickBy__default = /*#__PURE__*/_interopDefaultLegacy(_unickBy);
var Dropzone__default = /*#__PURE__*/_interopDefaultLegacy(Dropzone);
var _debounce__default = /*#__PURE__*/_interopDefaultLegacy(_debounce);
var _truncate__default = /*#__PURE__*/_interopDefaultLegacy(_truncate);
function createCommonjsModule(fn, module) {
return module = { exports: {} }, fn(module, module.exports), module.exports;
}
var runtime_1 = createCommonjsModule(function (module) {
/**
* Copyright (c) 2014-present, Facebook, Inc.
*
* This source code is licensed under the MIT license found in the
* LICENSE file in the root directory of this source tree.
*/
var runtime = (function (exports) {
var Op = Object.prototype;
var hasOwn = Op.hasOwnProperty;
var undefined$1; // More compressible than void 0.
var $Symbol = typeof Symbol === "function" ? Symbol : {};
var iteratorSymbol = $Symbol.iterator || "@@iterator";
var asyncIteratorSymbol = $Symbol.asyncIterator || "@@asyncIterator";
var toStringTagSymbol = $Symbol.toStringTag || "@@toStringTag";
function define(obj, key, value) {
Object.defineProperty(obj, key, {
value: value,
enumerable: true,
configurable: true,
writable: true
});
return obj[key];
}
try {
// IE 8 has a broken Object.defineProperty that only works on DOM objects.
define({}, "");
} catch (err) {
define = function(obj, key, value) {
return obj[key] = value;
};
}
function wrap(innerFn, outerFn, self, tryLocsList) {
// If outerFn provided and outerFn.prototype is a Generator, then outerFn.prototype instanceof Generator.
var protoGenerator = outerFn && outerFn.prototype instanceof Generator ? outerFn : Generator;
var generator = Object.create(protoGenerator.prototype);
var context = new Context(tryLocsList || []);
// The ._invoke method unifies the implementations of the .next,
// .throw, and .return methods.
generator._invoke = makeInvokeMethod(innerFn, self, context);
return generator;
}
exports.wrap = wrap;
// Try/catch helper to minimize deoptimizations. Returns a completion
// record like context.tryEntries[i].completion. This interface could
// have been (and was previously) designed to take a closure to be
// invoked without arguments, but in all the cases we care about we
// already have an existing method we want to call, so there's no need
// to create a new function object. We can even get away with assuming
// the method takes exactly one argument, since that happens to be true
// in every case, so we don't have to touch the arguments object. The
// only additional allocation required is the completion record, which
// has a stable shape and so hopefully should be cheap to allocate.
function tryCatch(fn, obj, arg) {
try {
return { type: "normal", arg: fn.call(obj, arg) };
} catch (err) {
return { type: "throw", arg: err };
}
}
var GenStateSuspendedStart = "suspendedStart";
var GenStateSuspendedYield = "suspendedYield";
var GenStateExecuting = "executing";
var GenStateCompleted = "completed";
// Returning this object from the innerFn has the same effect as
// breaking out of the dispatch switch statement.
var ContinueSentinel = {};
// Dummy constructor functions that we use as the .constructor and
// .constructor.prototype properties for functions that return Generator
// objects. For full spec compliance, you may wish to configure your
// minifier not to mangle the names of these two functions.
function Generator() {}
function GeneratorFunction() {}
function GeneratorFunctionPrototype() {}
// This is a polyfill for %IteratorPrototype% for environments that
// don't natively support it.
var IteratorPrototype = {};
IteratorPrototype[iteratorSymbol] = function () {
return this;
};
var getProto = Object.getPrototypeOf;
var NativeIteratorPrototype = getProto && getProto(getProto(values([])));
if (NativeIteratorPrototype &&
NativeIteratorPrototype !== Op &&
hasOwn.call(NativeIteratorPrototype, iteratorSymbol)) {
// This environment has a native %IteratorPrototype%; use it instead
// of the polyfill.
IteratorPrototype = NativeIteratorPrototype;
}
var Gp = GeneratorFunctionPrototype.prototype =
Generator.prototype = Object.create(IteratorPrototype);
GeneratorFunction.prototype = Gp.constructor = GeneratorFunctionPrototype;
GeneratorFunctionPrototype.constructor = GeneratorFunction;
GeneratorFunction.displayName = define(
GeneratorFunctionPrototype,
toStringTagSymbol,
"GeneratorFunction"
);
// Helper for defining the .next, .throw, and .return methods of the
// Iterator interface in terms of a single ._invoke method.
function defineIteratorMethods(prototype) {
["next", "throw", "return"].forEach(function(method) {
define(prototype, method, function(arg) {
return this._invoke(method, arg);
});
});
}
exports.isGeneratorFunction = function(genFun) {
var ctor = typeof genFun === "function" && genFun.constructor;
return ctor
? ctor === GeneratorFunction ||
// For the native GeneratorFunction constructor, the best we can
// do is to check its .name property.
(ctor.displayName || ctor.name) === "GeneratorFunction"
: false;
};
exports.mark = function(genFun) {
if (Object.setPrototypeOf) {
Object.setPrototypeOf(genFun, GeneratorFunctionPrototype);
} else {
genFun.__proto__ = GeneratorFunctionPrototype;
define(genFun, toStringTagSymbol, "GeneratorFunction");
}
genFun.prototype = Object.create(Gp);
return genFun;
};
// Within the body of any async function, `await x` is transformed to
// `yield regeneratorRuntime.awrap(x)`, so that the runtime can test
// `hasOwn.call(value, "__await")` to determine if the yielded value is
// meant to be awaited.
exports.awrap = function(arg) {
return { __await: arg };
};
function AsyncIterator(generator, PromiseImpl) {
function invoke(method, arg, resolve, reject) {
var record = tryCatch(generator[method], generator, arg);
if (record.type === "throw") {
reject(record.arg);
} else {
var result = record.arg;
var value = result.value;
if (value &&
typeof value === "object" &&
hasOwn.call(value, "__await")) {
return PromiseImpl.resolve(value.__await).then(function(value) {
invoke("next", value, resolve, reject);
}, function(err) {
invoke("throw", err, resolve, reject);
});
}
return PromiseImpl.resolve(value).then(function(unwrapped) {
// When a yielded Promise is resolved, its final value becomes
// the .value of the Promise<{value,done}> result for the
// current iteration.
result.value = unwrapped;
resolve(result);
}, function(error) {
// If a rejected Promise was yielded, throw the rejection back
// into the async generator function so it can be handled there.
return invoke("throw", error, resolve, reject);
});
}
}
var previousPromise;
function enqueue(method, arg) {
function callInvokeWithMethodAndArg() {
return new PromiseImpl(function(resolve, reject) {
invoke(method, arg, resolve, reject);
});
}
return previousPromise =
// If enqueue has been called before, then we want to wait until
// all previous Promises have been resolved before calling invoke,
// so that results are always delivered in the correct order. If
// enqueue has not been called before, then it is important to
// call invoke immediately, without waiting on a callback to fire,
// so that the async generator function has the opportunity to do
// any necessary setup in a predictable way. This predictability
// is why the Promise constructor synchronously invokes its
// executor callback, and why async functions synchronously
// execute code before the first await. Since we implement simple
// async functions in terms of async generators, it is especially
// important to get this right, even though it requires care.
previousPromise ? previousPromise.then(
callInvokeWithMethodAndArg,
// Avoid propagating failures to Promises returned by later
// invocations of the iterator.
callInvokeWithMethodAndArg
) : callInvokeWithMethodAndArg();
}
// Define the unified helper method that is used to implement .next,
// .throw, and .return (see defineIteratorMethods).
this._invoke = enqueue;
}
defineIteratorMethods(AsyncIterator.prototype);
AsyncIterator.prototype[asyncIteratorSymbol] = function () {
return this;
};
exports.AsyncIterator = AsyncIterator;
// Note that simple async functions are implemented on top of
// AsyncIterator objects; they just return a Promise for the value of
// the final result produced by the iterator.
exports.async = function(innerFn, outerFn, self, tryLocsList, PromiseImpl) {
if (PromiseImpl === void 0) PromiseImpl = Promise;
var iter = new AsyncIterator(
wrap(innerFn, outerFn, self, tryLocsList),
PromiseImpl
);
return exports.isGeneratorFunction(outerFn)
? iter // If outerFn is a generator, return the full iterator.
: iter.next().then(function(result) {
return result.done ? result.value : iter.next();
});
};
function makeInvokeMethod(innerFn, self, context) {
var state = GenStateSuspendedStart;
return function invoke(method, arg) {
if (state === GenStateExecuting) {
throw new Error("Generator is already running");
}
if (state === GenStateCompleted) {
if (method === "throw") {
throw arg;
}
// Be forgiving, per 25.3.3.3.3 of the spec:
// https://people.mozilla.org/~jorendorff/es6-draft.html#sec-generatorresume
return doneResult();
}
context.method = method;
context.arg = arg;
while (true) {
var delegate = context.delegate;
if (delegate) {
var delegateResult = maybeInvokeDelegate(delegate, context);
if (delegateResult) {
if (delegateResult === ContinueSentinel) continue;
return delegateResult;
}
}
if (context.method === "next") {
// Setting context._sent for legacy support of Babel's
// function.sent implementation.
context.sent = context._sent = context.arg;
} else if (context.method === "throw") {
if (state === GenStateSuspendedStart) {
state = GenStateCompleted;
throw context.arg;
}
context.dispatchException(context.arg);
} else if (context.method === "return") {
context.abrupt("return", context.arg);
}
state = GenStateExecuting;
var record = tryCatch(innerFn, self, context);
if (record.type === "normal") {
// If an exception is thrown from innerFn, we leave state ===
// GenStateExecuting and loop back for another invocation.
state = context.done
? GenStateCompleted
: GenStateSuspendedYield;
if (record.arg === ContinueSentinel) {
continue;
}
return {
value: record.arg,
done: context.done
};
} else if (record.type === "throw") {
state = GenStateCompleted;
// Dispatch the exception by looping back around to the
// context.dispatchException(context.arg) call above.
context.method = "throw";
context.arg = record.arg;
}
}
};
}
// Call delegate.iterator[context.method](context.arg) and handle the
// result, either by returning a { value, done } result from the
// delegate iterator, or by modifying context.method and context.arg,
// setting context.delegate to null, and returning the ContinueSentinel.
function maybeInvokeDelegate(delegate, context) {
var method = delegate.iterator[context.method];
if (method === undefined$1) {
// A .throw or .return when the delegate iterator has no .throw
// method always terminates the yield* loop.
context.delegate = null;
if (context.method === "throw") {
// Note: ["return"] must be used for ES3 parsing compatibility.
if (delegate.iterator["return"]) {
// If the delegate iterator has a return method, give it a
// chance to clean up.
context.method = "return";
context.arg = undefined$1;
maybeInvokeDelegate(delegate, context);
if (context.method === "throw") {
// If maybeInvokeDelegate(context) changed context.method from
// "return" to "throw", let that override the TypeError below.
return ContinueSentinel;
}
}
context.method = "throw";
context.arg = new TypeError(
"The iterator does not provide a 'throw' method");
}
return ContinueSentinel;
}
var record = tryCatch(method, delegate.iterator, context.arg);
if (record.type === "throw") {
context.method = "throw";
context.arg = record.arg;
context.delegate = null;
return ContinueSentinel;
}
var info = record.arg;
if (! info) {
context.method = "throw";
context.arg = new TypeError("iterator result is not an object");
context.delegate = null;
return ContinueSentinel;
}
if (info.done) {
// Assign the result of the finished delegate to the temporary
// variable specified by delegate.resultName (see delegateYield).
context[delegate.resultName] = info.value;
// Resume execution at the desired location (see delegateYield).
context.next = delegate.nextLoc;
// If context.method was "throw" but the delegate handled the
// exception, let the outer generator proceed normally. If
// context.method was "next", forget context.arg since it has been
// "consumed" by the delegate iterator. If context.method was
// "return", allow the original .return call to continue in the
// outer generator.
if (context.method !== "return") {
context.method = "next";
context.arg = undefined$1;
}
} else {
// Re-yield the result returned by the delegate method.
return info;
}
// The delegate iterator is finished, so forget it and continue with
// the outer generator.
context.delegate = null;
return ContinueSentinel;
}
// Define Generator.prototype.{next,throw,return} in terms of the
// unified ._invoke helper method.
defineIteratorMethods(Gp);
define(Gp, toStringTagSymbol, "Generator");
// A Generator should always return itself as the iterator object when the
// @@iterator function is called on it. Some browsers' implementations of the
// iterator prototype chain incorrectly implement this, causing the Generator
// object to not be returned from this call. This ensures that doesn't happen.
// See https://github.com/facebook/regenerator/issues/274 for more details.
Gp[iteratorSymbol] = function() {
return this;
};
Gp.toString = function() {
return "[object Generator]";
};
function pushTryEntry(locs) {
var entry = { tryLoc: locs[0] };
if (1 in locs) {
entry.catchLoc = locs[1];
}
if (2 in locs) {
entry.finallyLoc = locs[2];
entry.afterLoc = locs[3];
}
this.tryEntries.push(entry);
}
function resetTryEntry(entry) {
var record = entry.completion || {};
record.type = "normal";
delete record.arg;
entry.completion = record;
}
function Context(tryLocsList) {
// The root entry object (effectively a try statement without a catch
// or a finally block) gives us a place to store values thrown from
// locations where there is no enclosing try statement.
this.tryEntries = [{ tryLoc: "root" }];
tryLocsList.forEach(pushTryEntry, this);
this.reset(true);
}
exports.keys = function(object) {
var keys = [];
for (var key in object) {
keys.push(key);
}
keys.reverse();
// Rather than returning an object with a next method, we keep
// things simple and return the next function itself.
return function next() {
while (keys.length) {
var key = keys.pop();
if (key in object) {
next.value = key;
next.done = false;
return next;
}
}
// To avoid creating an additional object, we just hang the .value
// and .done properties off the next function object itself. This
// also ensures that the minifier will not anonymize the function.
next.done = true;
return next;
};
};
function values(iterable) {
if (iterable) {
var iteratorMethod = iterable[iteratorSymbol];
if (iteratorMethod) {
return iteratorMethod.call(iterable);
}
if (typeof iterable.next === "function") {
return iterable;
}
if (!isNaN(iterable.length)) {
var i = -1, next = function next() {
while (++i < iterable.length) {
if (hasOwn.call(iterable, i)) {
next.value = iterable[i];
next.done = false;
return next;
}
}
next.value = undefined$1;
next.done = true;
return next;
};
return next.next = next;
}
}
// Return an iterator with no values.
return { next: doneResult };
}
exports.values = values;
function doneResult() {
return { value: undefined$1, done: true };
}
Context.prototype = {
constructor: Context,
reset: function(skipTempReset) {
this.prev = 0;
this.next = 0;
// Resetting context._sent for legacy support of Babel's
// function.sent implementation.
this.sent = this._sent = undefined$1;
this.done = false;
this.delegate = null;
this.method = "next";
this.arg = undefined$1;
this.tryEntries.forEach(resetTryEntry);
if (!skipTempReset) {
for (var name in this) {
// Not sure about the optimal order of these conditions:
if (name.charAt(0) === "t" &&
hasOwn.call(this, name) &&
!isNaN(+name.slice(1))) {
this[name] = undefined$1;
}
}
}
},
stop: function() {
this.done = true;
var rootEntry = this.tryEntries[0];
var rootRecord = rootEntry.completion;
if (rootRecord.type === "throw") {
throw rootRecord.arg;
}
return this.rval;
},
dispatchException: function(exception) {
if (this.done) {
throw exception;
}
var context = this;
function handle(loc, caught) {
record.type = "throw";
record.arg = exception;
context.next = loc;
if (caught) {
// If the dispatched exception was caught by a catch block,
// then let that catch block handle the exception normally.
context.method = "next";
context.arg = undefined$1;
}
return !! caught;
}
for (var i = this.tryEntries.length - 1; i >= 0; --i) {
var entry = this.tryEntries[i];
var record = entry.completion;
if (entry.tryLoc === "root") {
// Exception thrown outside of any try block that could handle
// it, so set the completion value of the entire function to
// throw the exception.
return handle("end");
}
if (entry.tryLoc <= this.prev) {
var hasCatch = hasOwn.call(entry, "catchLoc");
var hasFinally = hasOwn.call(entry, "finallyLoc");
if (hasCatch && hasFinally) {
if (this.prev < entry.catchLoc) {
return handle(entry.catchLoc, true);
} else if (this.prev < entry.finallyLoc) {
return handle(entry.finallyLoc);
}
} else if (hasCatch) {
if (this.prev < entry.catchLoc) {
return handle(entry.catchLoc, true);
}
} else if (hasFinally) {
if (this.prev < entry.finallyLoc) {
return handle(entry.finallyLoc);
}
} else {
throw new Error("try statement without catch or finally");
}
}
}
},
abrupt: function(type, arg) {
for (var i = this.tryEntries.length - 1; i >= 0; --i) {
var entry = this.tryEntries[i];
if (entry.tryLoc <= this.prev &&
hasOwn.call(entry, "finallyLoc") &&
this.prev < entry.finallyLoc) {
var finallyEntry = entry;
break;
}
}
if (finallyEntry &&
(type === "break" ||
type === "continue") &&
finallyEntry.tryLoc <= arg &&
arg <= finallyEntry.finallyLoc) {
// Ignore the finally entry if control is not jumping to a
// location outside the try/catch block.
finallyEntry = null;
}
var record = finallyEntry ? finallyEntry.completion : {};
record.type = type;
record.arg = arg;
if (finallyEntry) {
this.method = "next";
this.next = finallyEntry.finallyLoc;
return ContinueSentinel;
}
return this.complete(record);
},
complete: function(record, afterLoc) {
if (record.type === "throw") {
throw record.arg;
}
if (record.type === "break" ||
record.type === "continue") {
this.next = record.arg;
} else if (record.type === "return") {
this.rval = this.arg = record.arg;
this.method = "return";
this.next = "end";
} else if (record.type === "normal" && afterLoc) {
this.next = afterLoc;
}
return ContinueSentinel;
},
finish: function(finallyLoc) {
for (var i = this.tryEntries.length - 1; i >= 0; --i) {
var entry = this.tryEntries[i];
if (entry.finallyLoc === finallyLoc) {
this.complete(entry.completion, entry.afterLoc);
resetTryEntry(entry);
return ContinueSentinel;
}
}
},
"catch": function(tryLoc) {
for (var i = this.tryEntries.length - 1; i >= 0; --i) {
var entry = this.tryEntries[i];
if (entry.tryLoc === tryLoc) {
var record = entry.completion;
if (record.type === "throw") {
var thrown = record.arg;
resetTryEntry(entry);
}
return thrown;
}
}
// The context.catch method must only be called with a location
// argument that corresponds to a known catch block.
throw new Error("illegal catch attempt");
},
delegateYield: function(iterable, resultName, nextLoc) {
this.delegate = {
iterator: values(iterable),
resultName: resultName,
nextLoc: nextLoc
};
if (this.method === "next") {
// Deliberately forget the last sent value so that we don't
// accidentally pass it on to the delegate.
this.arg = undefined$1;
}
return ContinueSentinel;
}
};
// Regardless of whether this script is executing as a CommonJS module
// or not, return the runtime object so that we can declare the variable
// regeneratorRuntime in the outer scope, which allows this module to be
// injected easily by `bin/regenerator --include-runtime script.js`.
return exports;
}(
// If this script is executing as a CommonJS module, use module.exports
// as the regeneratorRuntime namespace. Otherwise create a new empty
// object. Either way, the resulting object will be used to initialize
// the regeneratorRuntime variable at the top of this file.
module.exports
));
try {
regeneratorRuntime = runtime;
} catch (accidentalStrictMode) {
// This module should not be running in strict mode, so the above
// assignment should always work unless something is misconfigured. Just
// in case runtime.js accidentally runs in strict mode, we can escape
// strict mode using a global Function call. This could conceivably fail
// if a Content Security Policy forbids using Function, but in that case
// the proper solution is to fix the accidental strict mode problem. If
// you've misconfigured your bundler to force strict mode and applied a
// CSP to forbid Function, and you're not willing to fix either of those
// problems, please detail your unique predicament in a GitHub issue.
Function("r", "regeneratorRuntime = r")(runtime);
}
});
var regenerator = runtime_1;
function asyncGeneratorStep(gen, resolve, reject, _next, _throw, key, arg) {
try {
var info = gen[key](arg);
var value = info.value;
} catch (error) {
reject(error);
return;
}
if (info.done) {
resolve(value);
} else {
Promise.resolve(value).then(_next, _throw);
}
}
function _asyncToGenerator(fn) {
return function () {
var self = this,
args = arguments;
return new Promise(function (resolve, reject) {
var gen = fn.apply(self, args);
function _next(value) {
asyncGeneratorStep(gen, resolve, reject, _next, _throw, "next", value);
}
function _throw(err) {
asyncGeneratorStep(gen, resolve, reject, _next, _throw, "throw", err);
}
_next(undefined);
});
};
}
function _defineProperties(target, props) {
for (var i = 0; i < props.length; i++) {
var descriptor = props[i];
descriptor.enumerable = descriptor.enumerable || false;
descriptor.configurable = true;
if ("value" in descriptor) descriptor.writable = true;
Object.defineProperty(target, descriptor.key, descriptor);
}
}
function _createClass(Constructor, protoProps, staticProps) {
if (protoProps) _defineProperties(Constructor.prototype, protoProps);
if (staticProps) _defineProperties(Constructor, staticProps);
return Constructor;
}
function _classCallCheck(instance, Constructor) {
if (!(instance instanceof Constructor)) {
throw new TypeError("Cannot call a class as a function");
}
}
var CancelToken = axios__default['default'].CancelToken;
var apiConfig$1 = {
withCredentials: true,
xsrfCookieName: 'csrftoken',
xsrfHeaderName: 'X-CSRFToken'
};
var axiosWithconfig$1 = axios__default['default'].create(apiConfig$1);
/**
* API client response.
*
* It's a wrapper/sieve around Axios to contain Axios coupling here. It maps
* good and bad responses to a unified interface.
*
*/
var DepositApiClientResponse = function DepositApiClientResponse(data, errors, code) {
_classCallCheck(this, DepositApiClientResponse);
this.data = data;
this.errors = errors;
this.code = code;
};
/**
* API Client for deposits.
*
* It mostly uses the API links passed to it from responses.
*
*/
var DepositApiClient = /*#__PURE__*/function () {
function DepositApiClient(createUrl) {
_classCallCheck(this, DepositApiClient);
this.createUrl = createUrl;
}
_createClass(DepositApiClient, [{
key: "createResponse",
value: function () {
var _createResponse = _asyncToGenerator( /*#__PURE__*/regenerator.mark(function _callee(axios_call) {
var response;
return regenerator.wrap(function _callee$(_context) {
while (1) {
switch (_context.prev = _context.next) {
case 0:
_context.prev = 0;
_context.next = 3;
return axios_call();
case 3:
response = _context.sent;
return _context.abrupt("return", new DepositApiClientResponse(response.data, // exclude errors?
response.data.errors, response.status));
case 7:
_context.prev = 7;
_context.t0 = _context["catch"](0);
return _context.abrupt("return", new DepositApiClientResponse(_context.t0.response.data, _context.t0.response.data.errors, _context.t0.response.status));
case 10:
case "end":
return _context.stop();
}
}
}, _callee, null, [[0, 7]]);
}));
function createResponse(_x) {
return _createResponse.apply(this, arguments);
}
return createResponse;
}()
/**
* Calls the API to create a new draft.
*
* @param {object} draft - Serialized draft
*/
}, {
key: "create",
value: function () {
var _create = _asyncToGenerator( /*#__PURE__*/regenerator.mark(function _callee2(draft) {
var _this = this;
return regenerator.wrap(function _callee2$(_context2) {
while (1) {
switch (_context2.prev = _context2.next) {
case 0:
return _context2.abrupt("return", this.createResponse(function () {
return axiosWithconfig$1.post(_this.createUrl, draft, {
headers: {
'Content-Type': 'application/json',
Accept: 'application/vnd.inveniordm.v1+json'
}
});
}));
case 1:
case "end":
return _context2.stop();
}
}
}, _callee2, this);
}));
function create(_x2) {
return _create.apply(this, arguments);
}
return create;
}()
/**
* Calls the API to save a pre-existing draft.
*
* @param {object} draft - Serialized draft
*/
}, {
key: "save",
value: function () {
var _save = _asyncToGenerator( /*#__PURE__*/regenerator.mark(function _callee3(draft) {
return regenerator.wrap(function _callee3$(_context3) {
while (1) {
switch (_context3.prev = _context3.next) {
case 0:
return _context3.abrupt("return", this.createResponse(function () {
return axiosWithconfig$1.put(draft.links.self, draft, {
headers: {
'Content-Type': 'application/json',
Accept: 'application/vnd.inveniordm.v1+json'
}
});
}));
case 1:
case "end":
return _context3.stop();
}
}
}, _callee3, this);
}));
function save(_x3) {
return _save.apply(this, arguments);
}
return save;
}()
/**
* Publishes the draft by calling its publish link.
*
* @param {object} draft - the payload from create()
*/
}, {
key: "publish",
value: function () {
var _publish = _asyncToGenerator( /*#__PURE__*/regenerator.mark(function _callee4(draft) {
return regenerator.wrap(function _callee4$(_context4) {
while (1) {
switch (_context4.prev = _context4.next) {
case 0:
return _context4.abrupt("return", this.createResponse(function () {
return axiosWithconfig$1.post(draft.links.publish, {}, {
headers: {
'Content-Type': 'application/json'
}
});
}));
case 1:
case "end":
return _context4.stop();
}
}
}, _callee4, this);
}));
function publish(_x4) {
return _publish.apply(this, arguments);
}
return publish;
}()
/**
* Deletes the draft by calling DELETE on its self link.
*
* @param {object} draft - the payload from create()/save()
*/
}, {
key: "delete",
value: function () {
var _delete2 = _asyncToGenerator( /*#__PURE__*/regenerator.mark(function _callee5(draft) {
return regenerator.wrap(function _callee5$(_context5) {
while (1) {
switch (_context5.prev = _context5.next) {
case 0:
return _context5.abrupt("return", this.createResponse(function () {
return axiosWithconfig$1.delete(draft.links.self, {}, {
headers: {
'Content-Type': 'application/json'
}
});
}));
case 1:
case "end":
return _context5.stop();
}
}
}, _callee5, this);
}));
function _delete(_x5) {
return _delete2.apply(this, arguments);
}
return _delete;
}() // TODO: Might consider extracting these out to a FilesApiClient.js
}, {
key: "initializeFileUpload",
value: function initializeFileUpload(initializeUploadUrl, filename) {
var payload = [{
key: filename
}];
return axiosWithconfig$1.post(initializeUploadUrl, payload, {
headers: {
'content-type': 'application/json'
}
});
}
}, {
key: "uploadFile",
value: function uploadFile(uploadUrl, file, onUploadProgress, cancel) {
var formData = new FormData();
formData.append('file', file);
return axiosWithconfig$1.put(uploadUrl, file, {
headers: {
'content-type': 'application/octet-stream'
},
onUploadProgress: onUploadProgress,
cancelToken: new CancelToken(cancel)
});
}
}, {
key: "finalizeFileUpload",
value: function finalizeFileUpload(finalizeUploadUrl) {
return axiosWithconfig$1.post(finalizeUploadUrl, {}, {
headers: {
'content-type': 'application/json'
}
});
}
}, {
key: "deleteFile",
value: function deleteFile(deleteUrl) {
return axiosWithconfig$1.delete(deleteUrl);
}
}, {
key: "importParentRecordFiles",
value: function importParentRecordFiles(importFilesUrl) {
return axiosWithconfig$1.post(importFilesUrl, {}, {
headers: {
'content-type': 'application/json'
}
});
}
/**
* Calls the API to reserve a PID.
*
*/
}, {
key: "reservePID",
value: function () {
var _reservePID = _asyncToGenerator( /*#__PURE__*/regenerator.mark(function _callee6(links, pidType) {
return regenerator.wrap(function _callee6$(_context6) {
while (1) {
switch (_context6.prev = _context6.next) {
case 0:
return _context6.abrupt("return", this.createResponse(function () {
var link = "".concat(links.self, "/pids/").concat(pidType); // PIDS-FIXME: should be uncommented when links for pids are released in backend
// const link = _get(links, `self_${pidType}`, '');
// if (link === '') {
// throw Error(`Cannot get the link to discard the PID for ${pidType}`);
// }
// PIDS-FIXME: should be uncommented when links for pids are released in backend
// const link = _get(links, `self_${pidType}`, '');
// if (link === '') {
// throw Error(`Cannot get the link to discard the PID for ${pidType}`);
// }
return axiosWithconfig$1.post(link, {}, {
headers: {
'Content-Type': 'application/json'
}
});
}));
case 1:
case "end":
return _context6.stop();
}
}
}, _callee6, this);
}));
function reservePID(_x6, _x7) {
return _reservePID.apply(this, arguments);
}
return reservePID;
}()
/**
* Calls the API to discard a previously reserved PID.
*
*/
}, {
key: "discardPID",
value: function () {
var _discardPID = _asyncToGenerator( /*#__PURE__*/regenerator.mark(function _callee7(links, pidType) {
return regenerator.wrap(function _callee7$(_context7) {
while (1) {
switch (_context7.prev = _context7.next) {
case 0:
return _context7.abrupt("return", this.createResponse(function () {
var link = "".concat(links.self, "/pids/").concat(pidType); // PIDS-FIXME: should be uncommented when links for pids are released in backend
// const link = _get(links, `self_${pidType}`, '');
// if (link === '') {
// throw Error(`Cannot get the link to discard the PID for ${pidType}`);
// }
// PIDS-FIXME: should be uncommented when links for pids are released in backend
// const link = _get(links, `self_${pidType}`, '');
// if (link === '') {
// throw Error(`Cannot get the link to discard the PID for ${pidType}`);
// }
return axiosWithconfig$1.delete(link, {}, {
headers: {
'Content-Type': 'application/json'
}
});
}));
case 1:
case "end":
return _context7.stop();
}
}
}, _callee7, this);
}));
function discardPID(_x8, _x9) {
return _discardPID.apply(this, arguments);
}
return discardPID;
}()
}]);
return DepositApiClient;
}();
function _arrayLikeToArray(arr, len) {
if (len == null || len > arr.length) len = arr.length;
for (var i = 0, arr2 = new Array(len); i < len; i++) {
arr2[i] = arr[i];
}
return arr2;
}
function _unsupportedIterableToArray(o, minLen) {
if (!o) return;
if (typeof o === "string") return _arrayLikeToArray(o, minLen);
var n = Object.prototype.toString.call(o).slice(8, -1);
if (n === "Object" && o.constructor) n = o.constructor.name;
if (n === "Map" || n === "Set") return Array.from(n);
if (n === "Arguments" || /^(?:Ui|I)nt(?:8|16|32)(?:Clamped)?Array$/.test(n)) return _arrayLikeToArray(o, minLen);
}
function _createForOfIteratorHelper(o) {
if (typeof Symbol === "undefined" || o[Symbol.iterator] == null) {
if (Array.isArray(o) || (o = _unsupportedIterableToArray(o))) {
var i = 0;
var F = function F() {};
return {
s: F,
n: function n() {
if (i >= o.length) return {
done: true
};
return {
done: false,
value: o[i++]
};
},
e: function e(_e) {
throw _e;
},
f: F
};
}
throw new TypeError("Invalid attempt to iterate non-iterable instance.\nIn order to be iterable, non-array objects must have a [Symbol.iterator]() method.");
}
var it,
normalCompletion = true,
didErr = false,
err;
return {
s: function s() {
it = o[Symbol.iterator]();
},
n: function n() {
var step = it.next();
normalCompletion = step.done;
return step;
},
e: function e(_e2) {
didErr = true;
err = _e2;
},
f: function f() {
try {
if (!normalCompletion && it["return"] != null) it["return"]();
} finally {
if (didErr) throw err;
}
}
};
}
// This file is part of React-Invenio-Deposit
// Copyright (C) 2020 CERN.
// Copyright (C) 2020 Northwestern University.
//
// React-Invenio-Deposit is free software; you can redistribute it and/or modify it
// under the terms of the MIT License; see LICENSE file for more details.
var FILE_UPLOAD_IN_PROGRESS = 'FILE_UPLOAD_IN_PROGRESS';
var FILE_UPLOAD_START = 'FILE_UPLOAD_START';
var FILE_UPLOAD_FINISHED = 'FILE_UPLOAD_FINISHED';
var FILE_UPLOAD_FAILED = 'FILE_UPLOAD_FAILED';
var FILE_IMPORT_STARTED = 'FILE_IMPORT_STARTED';
var FILE_IMPORT_SUCCESS = 'FILE_IMPORT_SUCCESS';
var FILE_IMPORT_FAILED = 'FILE_IMPORT_FAILED';
var FILE_DELETED_SUCCESS = 'FILE_DELETED_SUCCESS';
var FILE_DELETE_FAILED = 'FILE_DELETE_FAILED';
var FILE_UPLOAD_SET_CANCEL_FUNCTION = 'FILE_UPLOAD_SET_CANCEL_FUNCTION';
var FILE_UPLOAD_CANCELLED = 'FILE_UPLOAD_CANCELLED';
var FILE_UPLOAD_INITIATE = 'FILE_UPLOAD_INITIATE'; // Actions
var ACTION_CREATE_SUCCEEDED = 'ACTION_CREATE_SUCCEEDED';
var ACTION_DELETE_FAILED = 'ACTION_DELETE_FAILED';
var ACTION_PUBLISH_SUCCEEDED = 'ACTION_PUBLISH_SUCCEEDED';
var ACTION_PUBLISH_FAILED = 'ACTION_PUBLISH_FAILED';
var ACTION_SAVE_SUCCEEDED = 'ACTION_SAVE_SUCCEEDED';
var ACTION_SAVE_PARTIALLY_SUCCEEDED = 'ACTION_SAVE_PARTIALLY_SUCCEEDED';
var ACTION_SAVE_FAILED = 'ACTION_SAVE_FAILED'; // Form States
var FORM_ACTION_EVENT_EMITTED = 'FORM_ACTION_EVENT_EMITTED';
var FORM_DELETE_FAILED = 'FORM_DELETE_FAILED';
var FORM_SAVING = 'FORM_SAVING';
var FORM_SAVE_SUCCEEDED = 'FORM_SAVE_SUCCEEDED';
var FORM_SAVE_PARTIALLY_SUCCEEDED = 'FORM_SAVE_PARTIALLY_SUCCEEDED';
var FORM_SAVE_FAILED = 'FORM_SAVE_FAILED';
var FORM_PUBLISHING = 'FORM_PUBLISHING';
var FORM_PUBLISH_FAILED = 'FORM_PUBLISH_FAILED';
var FORM_PUBLISH_SUCCEEDED = 'FORM_PUBLISH_SUCCEEDED'; // PIDs reserve
var RESERVE_PID_STARTED = 'RESERVE_PID_STARTED';
var RESERVE_PID_SUCCESS = 'RESERVE_PID_SUCCESS';
var RESERVE_PID_FAILED = 'RESERVE_PID_FAILED'; // PIDs discard
var DISCARD_PID_STARTED = 'DISCARD_PID_STARTED';
var DISCARD_PID_SUCCESS = 'DISCARD_PID_SUCCESS';
var DISCARD_PID_FAILED = 'DISCARD_PID_FAILED';
var DepositController = /*#__PURE__*/function () {
function DepositController(apiClient, fileUploader) {
var _this = this;
_classCallCheck(this, DepositController);
this.reservePID = /*#__PURE__*/function () {
var _ref2 = _asyncToGenerator( /*#__PURE__*/regenerator.mark(function _callee(draft, pidType, _ref) {
var formik, store, recordSerializer, response, data, errors;
return regenerator.wrap(function _callee$(_context) {
while (1) {
switch (_context.prev = _context.next) {
case 0:
formik = _ref.formik, store = _ref.store;
recordSerializer = store.config.recordSerializer;
_context.next = 4;
return _this.apiClient.reservePID(draft, pidType);
case 4:
response = _context.sent;
data = recordSerializer.deserialize(response.data || {});
errors = recordSerializer.deserializeErrors(response.errors || []);
if (200 <= response.code && response.code < 300 && _isEmpty__default['default'](errors)) {
store.dispatch({
type: RESERVE_PID_SUCCESS,
payload: {
data: data
}
});
} else {
store.dispatch({
type: RESERVE_PID_FAILED,
payload: {
data: data,
errors: errors
}
});
formik.setErrors(errors);
}
case 8:
case "end":
return _context.stop();
}
}
}, _callee);
}));
return function (_x, _x2, _x3) {
return _ref2.apply(this, arguments);
};
}();
this.discardPID = /*#__PURE__*/function () {
var _ref4 = _asyncToGenerator( /*#__PURE__*/regenerator.mark(function _callee2(draft, pidType, _ref3) {
var formik, store, recordSerializer, response, data, errors;
return regenerator.wrap(function _callee2$(_context2) {
while (1) {
switch (_context2.prev = _context2.next) {
case 0:
formik = _ref3.formik, store = _ref3.store;
recordSerializer = store.config.recordSerializer;
_context2.next = 4;
return _this.apiClient.discardPID(draft, pidType);
case 4:
response = _context2.sent;
data = recordSerializer.deserialize(response.data || {});
errors = recordSerializer.deserializeErrors(response.errors || []);
if (200 <= response.code && response.code < 300 && _isEmpty__default['default'](errors)) {
store.dispatch({
type: DISCARD_PID_SUCCESS,
payload: {
data: data
}
});
} else {
store.dispatch({
type: DISCARD_PID_FAILED,
payload: {
data: data,
errors: errors
}
});
formik.setErrors(errors);
}
case 8:
case "end":
return _context2.stop();
}
}
}, _callee2);
}));
return function (_x4, _x5, _x6) {
return _ref4.apply(this, arguments);
};
}();
this.apiClient = apiClient;
this.fileUploader = fileUploader;
}
_createClass(DepositController, [{
key: "draftAlreadyCreated",
value: function draftAlreadyCreated(record) {
return record.id ? true : false;
}
/**
* Creates the current draft (backend) and changes URL to match its edit URL.
*
* @param {object} draft - current draft
* @param {object} store - redux store
*/
}, {
key: "createDraft",
value: function () {
var _createDraft = _asyncToGenerator( /*#__PURE__*/regenerator.mark(function _callee3(draft, _ref5) {
var store, recordSerializer, payload, response, draftURL;
return regenerator.wrap(function _callee3$(_context3) {
while (1) {
switch (_context3.prev = _context3.next) {
case 0:
store =