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@sanity/migrate

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Tooling for running data migrations on Sanity.io projects

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function _async_generator(gen) { var front, back; function send(key, arg) { return new Promise(function(resolve, reject) { var request = { key: key, arg: arg, resolve: resolve, reject: reject, next: null }; if (back) back = back.next = request; else { front = back = request; resume(key, arg); } }); } function resume(key, arg) { try { var result = gen[key](arg); var value = result.value; var overloaded = value instanceof _overload_yield; Promise.resolve(overloaded ? value.v : value).then(function(arg) { if (overloaded) { var nextKey = key === "return" ? "return" : "next"; if (!value.k || arg.done) return resume(nextKey, arg); else arg = gen[nextKey](arg).value; } settle(result.done ? "return" : "normal", arg); }, function(err) { resume("throw", err); }); } catch (err) { settle("throw", err); } } function settle(type, value) { switch(type){ case "return": front.resolve({ value: value, done: true }); break; case "throw": front.reject(value); break; default: front.resolve({ value: value, done: false }); break; } front = front.next; if (front) resume(front.key, front.arg); else back = null; } this._invoke = send; if (typeof gen.return !== "function") this.return = undefined; } _async_generator.prototype[typeof Symbol === "function" && Symbol.asyncIterator || "@@asyncIterator"] = function() { return this; }; _async_generator.prototype.next = function(arg) { return this._invoke("next", arg); }; _async_generator.prototype.throw = function(arg) { return this._invoke("throw", arg); }; _async_generator.prototype.return = function(arg) { return this._invoke("return", arg); }; function _async_iterator(iterable) { var method, async, sync, retry = 2; for("undefined" != typeof Symbol && (async = Symbol.asyncIterator, sync = Symbol.iterator); retry--;){ if (async && null != (method = iterable[async])) return method.call(iterable); if (sync && null != (method = iterable[sync])) return new AsyncFromSyncIterator(method.call(iterable)); async = "@@asyncIterator", sync = "@@iterator"; } throw new TypeError("Object is not async iterable"); } function AsyncFromSyncIterator(s) { function AsyncFromSyncIteratorContinuation(r) { if (Object(r) !== r) return Promise.reject(new TypeError(r + " is not an object.")); var done = r.done; return Promise.resolve(r.value).then(function(value) { return { value: value, done: done }; }); } return AsyncFromSyncIterator = function(s) { this.s = s, this.n = s.next; }, AsyncFromSyncIterator.prototype = { s: null, n: null, next: function() { return AsyncFromSyncIteratorContinuation(this.n.apply(this.s, arguments)); }, return: function(value) { var ret = this.s.return; return void 0 === ret ? Promise.resolve({ value: value, done: !0 }) : AsyncFromSyncIteratorContinuation(ret.apply(this.s, arguments)); }, throw: function(value) { var thr = this.s.return; return void 0 === thr ? Promise.reject(value) : AsyncFromSyncIteratorContinuation(thr.apply(this.s, arguments)); } }, new AsyncFromSyncIterator(s); } function _await_async_generator(value) { return new _overload_yield(value, 0); } function _overload_yield(value, kind) { this.v = value; this.k = kind; } function _wrap_async_generator(fn) { return function() { return new _async_generator(fn.apply(this, arguments)); }; } function _ts_generator(thisArg, body) { var f, y, t, _ = { label: 0, sent: function() { if (t[0] & 1) throw t[1]; return t[1]; }, trys: [], ops: [] }, g = Object.create((typeof Iterator === "function" ? Iterator : Object).prototype), d = Object.defineProperty; return d(g, "next", { value: verb(0) }), d(g, "throw", { value: verb(1) }), d(g, "return", { value: verb(2) }), typeof Symbol === "function" && d(g, Symbol.iterator, { value: function() { return this; } }), g; function verb(n) { return function(v) { return step([ n, v ]); }; } function step(op) { if (f) throw new TypeError("Generator is already executing."); while(g && (g = 0, op[0] && (_ = 0)), _)try { if (f = 1, y && (t = op[0] & 2 ? y["return"] : op[0] ? y["throw"] || ((t = y["return"]) && t.call(y), 0) : y.next) && !(t = t.call(y, op[1])).done) return t; if (y = 0, t) op = [ op[0] & 2, t.value ]; switch(op[0]){ case 0: case 1: t = op; break; case 4: _.label++; return { value: op[1], done: false }; case 5: _.label++; y = op[1]; op = [ 0 ]; continue; case 7: op = _.ops.pop(); _.trys.pop(); continue; default: if (!(t = _.trys, t = t.length > 0 && t[t.length - 1]) && (op[0] === 6 || op[0] === 2)) { _ = 0; continue; } if (op[0] === 3 && (!t || op[1] > t[0] && op[1] < t[3])) { _.label = op[1]; break; } if (op[0] === 6 && _.label < t[1]) { _.label = t[1]; t = op; break; } if (t && _.label < t[2]) { _.label = t[2]; _.ops.push(op); break; } if (t[2]) _.ops.pop(); _.trys.pop(); continue; } op = body.call(thisArg, _); } catch (e) { op = [ 6, e ]; y = 0; } finally{ f = t = 0; } if (op[0] & 5) throw op[1]; return { value: op[0] ? op[1] : void 0, done: true }; } } /** * Concatenates each chunk of a string iterator to a buffer and yields the buffer when the input iterator is done * @param it - The input iterator */ export function concatStr(it) { return _wrap_async_generator(function() { var buf, _iteratorAbruptCompletion, _didIteratorError, _iteratorError, _iterator, _step, _value, chunk, err; return _ts_generator(this, function(_state) { switch(_state.label){ case 0: buf = ''; _iteratorAbruptCompletion = false, _didIteratorError = false; _state.label = 1; case 1: _state.trys.push([ 1, 6, 7, 12 ]); _iterator = _async_iterator(it); _state.label = 2; case 2: return [ 4, _await_async_generator(_iterator.next()) ]; case 3: if (!(_iteratorAbruptCompletion = !(_step = _state.sent()).done)) return [ 3, 5 ]; _value = _step.value; chunk = _value; buf += chunk; _state.label = 4; case 4: _iteratorAbruptCompletion = false; return [ 3, 2 ]; case 5: return [ 3, 12 ]; case 6: err = _state.sent(); _didIteratorError = true; _iteratorError = err; return [ 3, 12 ]; case 7: _state.trys.push([ 7, , 10, 11 ]); if (!(_iteratorAbruptCompletion && _iterator.return != null)) return [ 3, 9 ]; return [ 4, _await_async_generator(_iterator.return()) ]; case 8: _state.sent(); _state.label = 9; case 9: return [ 3, 11 ]; case 10: if (_didIteratorError) { throw _iteratorError; } return [ 7 ]; case 11: return [ 7 ]; case 12: return [ 4, buf ]; case 13: _state.sent(); return [ 2 ]; } }); })(); }