function getDefaultExportFromCjs(x) { return x && x.__esModule && Object.prototype.hasOwnProperty.call(x, "default") ? x["default"] : x; } var jsYaml = {}; var loader = {}; var common = {}; var hasRequiredCommon; function requireCommon() { if (hasRequiredCommon) return common; hasRequiredCommon = 1; function isNothing(subject) { return typeof subject === "undefined" || subject === null; } function isObject(subject) { return typeof subject === "object" && subject !== null; } function toArray(sequence) { if (Array.isArray(sequence)) return sequence; else if (isNothing(sequence)) return []; return [sequence]; } function extend(target, source) { if (source) { const sourceKeys = Object.keys(source); for (let index = 0, length = sourceKeys.length; index < length; index += 1) { const key = sourceKeys[index]; target[key] = source[key]; } } return target; } function repeat(string, count) { let result = ""; for (let cycle = 0; cycle < count; cycle += 1) { result += string; } return result; } function isNegativeZero(number) { return number === 0 && Number.NEGATIVE_INFINITY === 1 / number; } common.isNothing = isNothing; common.isObject = isObject; common.toArray = toArray; common.repeat = repeat; common.isNegativeZero = isNegativeZero; common.extend = extend; return common; } var exception; var hasRequiredException; function requireException() { if (hasRequiredException) return exception; hasRequiredException = 1; function formatError(exception2, compact) { let where = ""; const message = exception2.reason || "(unknown reason)"; if (!exception2.mark) return message; if (exception2.mark.name) { where += 'in "' + exception2.mark.name + '" '; } where += "(" + (exception2.mark.line + 1) + ":" + (exception2.mark.column + 1) + ")"; if (!compact && exception2.mark.snippet) { where += "\n\n" + exception2.mark.snippet; } return message + " " + where; } function YAMLException2(reason, mark) { Error.call(this); this.name = "YAMLException"; this.reason = reason; this.mark = mark; this.message = formatError(this, false); if (Error.captureStackTrace) { Error.captureStackTrace(this, this.constructor); } else { this.stack = new Error().stack || ""; } } YAMLException2.prototype = Object.create(Error.prototype); YAMLException2.prototype.constructor = YAMLException2; YAMLException2.prototype.toString = function toString(compact) { return this.name + ": " + formatError(this, compact); }; exception = YAMLException2; return exception; } var snippet; var hasRequiredSnippet; function requireSnippet() { if (hasRequiredSnippet) return snippet; hasRequiredSnippet = 1; const common2 = requireCommon(); function getLine(buffer, lineStart, lineEnd, position, maxLineLength) { let head = ""; let tail = ""; const maxHalfLength = Math.floor(maxLineLength / 2) - 1; if (position - lineStart > maxHalfLength) { head = " ... "; lineStart = position - maxHalfLength + head.length; } if (lineEnd - position > maxHalfLength) { tail = " ..."; lineEnd = position + maxHalfLength - tail.length; } return { str: head + buffer.slice(lineStart, lineEnd).replace(/\t/g, "→") + tail, pos: position - lineStart + head.length // relative position }; } function padStart(string, max) { return common2.repeat(" ", max - string.length) + string; } function makeSnippet(mark, options) { options = Object.create(options || null); if (!mark.buffer) return null; if (!options.maxLength) options.maxLength = 79; if (typeof options.indent !== "number") options.indent = 1; if (typeof options.linesBefore !== "number") options.linesBefore = 3; if (typeof options.linesAfter !== "number") options.linesAfter = 2; const re = /\r?\n|\r|\0/g; const lineStarts = [0]; const lineEnds = []; let match; let foundLineNo = -1; while (match = re.exec(mark.buffer)) { lineEnds.push(match.index); lineStarts.push(match.index + match[0].length); if (mark.position <= match.index && foundLineNo < 0) { foundLineNo = lineStarts.length - 2; } } if (foundLineNo < 0) foundLineNo = lineStarts.length - 1; let result = ""; const lineNoLength = Math.min(mark.line + options.linesAfter, lineEnds.length).toString().length; const maxLineLength = options.maxLength - (options.indent + lineNoLength + 3); for (let i = 1; i <= options.linesBefore; i++) { if (foundLineNo - i < 0) break; const line2 = getLine( mark.buffer, lineStarts[foundLineNo - i], lineEnds[foundLineNo - i], mark.position - (lineStarts[foundLineNo] - lineStarts[foundLineNo - i]), maxLineLength ); result = common2.repeat(" ", options.indent) + padStart((mark.line - i + 1).toString(), lineNoLength) + " | " + line2.str + "\n" + result; } const line = getLine(mark.buffer, lineStarts[foundLineNo], lineEnds[foundLineNo], mark.position, maxLineLength); result += common2.repeat(" ", options.indent) + padStart((mark.line + 1).toString(), lineNoLength) + " | " + line.str + "\n"; result += common2.repeat("-", options.indent + lineNoLength + 3 + line.pos) + "^\n"; for (let i = 1; i <= options.linesAfter; i++) { if (foundLineNo + i >= lineEnds.length) break; const line2 = getLine( mark.buffer, lineStarts[foundLineNo + i], lineEnds[foundLineNo + i], mark.position - (lineStarts[foundLineNo] - lineStarts[foundLineNo + i]), maxLineLength ); result += common2.repeat(" ", options.indent) + padStart((mark.line + i + 1).toString(), lineNoLength) + " | " + line2.str + "\n"; } return result.replace(/\n$/, ""); } snippet = makeSnippet; return snippet; } var type; var hasRequiredType; function requireType() { if (hasRequiredType) return type; hasRequiredType = 1; const YAMLException2 = requireException(); const TYPE_CONSTRUCTOR_OPTIONS = [ "kind", "multi", "resolve", "construct", "instanceOf", "predicate", "represent", "representName", "defaultStyle", "styleAliases" ]; const YAML_NODE_KINDS = [ "scalar", "sequence", "mapping" ]; function compileStyleAliases(map2) { const result = {}; if (map2 !== null) { Object.keys(map2).forEach(function(style) { map2[style].forEach(function(alias) { result[String(alias)] = style; }); }); } return result; } function Type2(tag, options) { options = options || {}; Object.keys(options).forEach(function(name) { if (TYPE_CONSTRUCTOR_OPTIONS.indexOf(name) === -1) { throw new YAMLException2('Unknown option "' + name + '" is met in definition of "' + tag + '" YAML type.'); } }); this.options = options; this.tag = tag; this.kind = options["kind"] || null; this.resolve = options["resolve"] || function() { return true; }; this.construct = options["construct"] || function(data) { return data; }; this.instanceOf = options["instanceOf"] || null; this.predicate = options["predicate"] || null; this.represent = options["represent"] || null; this.representName = options["representName"] || null; this.defaultStyle = options["defaultStyle"] || null; this.multi = options["multi"] || false; this.styleAliases = compileStyleAliases(options["styleAliases"] || null); if (YAML_NODE_KINDS.indexOf(this.kind) === -1) { throw new YAMLException2('Unknown kind "' + this.kind + '" is specified for "' + tag + '" YAML type.'); } } type = Type2; return type; } var schema; var hasRequiredSchema; function requireSchema() { if (hasRequiredSchema) return schema; hasRequiredSchema = 1; const YAMLException2 = requireException(); const Type2 = requireType(); function compileList(schema2, name) { const result = []; schema2[name].forEach(function(currentType) { let newIndex = result.length; result.forEach(function(previousType, previousIndex) { if (previousType.tag === currentType.tag && previousType.kind === currentType.kind && previousType.multi === currentType.multi) { newIndex = previousIndex; } }); result[newIndex] = currentType; }); return result; } function compileMap() { const result = { scalar: {}, sequence: {}, mapping: {}, fallback: {}, multi: { scalar: [], sequence: [], mapping: [], fallback: [] } }; function collectType(type2) { if (type2.multi) { result.multi[type2.kind].push(type2); result.multi["fallback"].push(type2); } else { result[type2.kind][type2.tag] = result["fallback"][type2.tag] = type2; } } for (let index = 0, length = arguments.length; index < length; index += 1) { arguments[index].forEach(collectType); } return result; } function Schema2(definition) { return this.extend(definition); } Schema2.prototype.extend = function extend(definition) { let implicit = []; let explicit = []; if (definition instanceof Type2) { explicit.push(definition); } else if (Array.isArray(definition)) { explicit = explicit.concat(definition); } else if (definition && (Array.isArray(definition.implicit) || Array.isArray(definition.explicit))) { if (definition.implicit) implicit = implicit.concat(definition.implicit); if (definition.explicit) explicit = explicit.concat(definition.explicit); } else { throw new YAMLException2("Schema.extend argument should be a Type, [ Type ], or a schema definition ({ implicit: [...], explicit: [...] })"); } implicit.forEach(function(type2) { if (!(type2 instanceof Type2)) { throw new YAMLException2("Specified list of YAML types (or a single Type object) contains a non-Type object."); } if (type2.loadKind && type2.loadKind !== "scalar") { throw new YAMLException2("There is a non-scalar type in the implicit list of a schema. Implicit resolving of such types is not supported."); } if (type2.multi) { throw new YAMLException2("There is a multi type in the implicit list of a schema. Multi tags can only be listed as explicit."); } }); explicit.forEach(function(type2) { if (!(type2 instanceof Type2)) { throw new YAMLException2("Specified list of YAML types (or a single Type object) contains a non-Type object."); } }); const result = Object.create(Schema2.prototype); result.implicit = (this.implicit || []).concat(implicit); result.explicit = (this.explicit || []).concat(explicit); result.compiledImplicit = compileList(result, "implicit"); result.compiledExplicit = compileList(result, "explicit"); result.compiledTypeMap = compileMap(result.compiledImplicit, result.compiledExplicit); return result; }; schema = Schema2; return schema; } var str; var hasRequiredStr; function requireStr() { if (hasRequiredStr) return str; hasRequiredStr = 1; const Type2 = requireType(); str = new Type2("tag:yaml.org,2002:str", { kind: "scalar", construct: function(data) { return data !== null ? data : ""; } }); return str; } var seq; var hasRequiredSeq; function requireSeq() { if (hasRequiredSeq) return seq; hasRequiredSeq = 1; const Type2 = requireType(); seq = new Type2("tag:yaml.org,2002:seq", { kind: "sequence", construct: function(data) { return data !== null ? data : []; } }); return seq; } var map; var hasRequiredMap; function requireMap() { if (hasRequiredMap) return map; hasRequiredMap = 1; const Type2 = requireType(); map = new Type2("tag:yaml.org,2002:map", { kind: "mapping", construct: function(data) { return data !== null ? data : {}; } }); return map; } var failsafe; var hasRequiredFailsafe; function requireFailsafe() { if (hasRequiredFailsafe) return failsafe; hasRequiredFailsafe = 1; const Schema2 = requireSchema(); failsafe = new Schema2({ explicit: [ requireStr(), requireSeq(), requireMap() ] }); return failsafe; } var _null; var hasRequired_null; function require_null() { if (hasRequired_null) return _null; hasRequired_null = 1; const Type2 = requireType(); function resolveYamlNull(data) { if (data === null) return true; const max = data.length; return max === 1 && data === "~" || max === 4 && (data === "null" || data === "Null" || data === "NULL"); } function constructYamlNull() { return null; } function isNull(object) { return object === null; } _null = new Type2("tag:yaml.org,2002:null", { kind: "scalar", resolve: resolveYamlNull, construct: constructYamlNull, predicate: isNull, represent: { canonical: function() { return "~"; }, lowercase: function() { return "null"; }, uppercase: function() { return "NULL"; }, camelcase: function() { return "Null"; }, empty: function() { return ""; } }, defaultStyle: "lowercase" }); return _null; } var bool; var hasRequiredBool; function requireBool() { if (hasRequiredBool) return bool; hasRequiredBool = 1; const Type2 = requireType(); function resolveYamlBoolean(data) { if (data === null) return false; const max = data.length; return max === 4 && (data === "true" || data === "True" || data === "TRUE") || max === 5 && (data === "false" || data === "False" || data === "FALSE"); } function constructYamlBoolean(data) { return data === "true" || data === "True" || data === "TRUE"; } function isBoolean(object) { return Object.prototype.toString.call(object) === "[object Boolean]"; } bool = new Type2("tag:yaml.org,2002:bool", { kind: "scalar", resolve: resolveYamlBoolean, construct: constructYamlBoolean, predicate: isBoolean, represent: { lowercase: function(object) { return object ? "true" : "false"; }, uppercase: function(object) { return object ? "TRUE" : "FALSE"; }, camelcase: function(object) { return object ? "True" : "False"; } }, defaultStyle: "lowercase" }); return bool; } var int; var hasRequiredInt; function requireInt() { if (hasRequiredInt) return int; hasRequiredInt = 1; const common2 = requireCommon(); const Type2 = requireType(); function isHexCode(c) { return c >= 48 && c <= 57 || c >= 65 && c <= 70 || c >= 97 && c <= 102; } function isOctCode(c) { return c >= 48 && c <= 55; } function isDecCode(c) { return c >= 48 && c <= 57; } function resolveYamlInteger(data) { if (data === null) return false; const max = data.length; let index = 0; let hasDigits = false; if (!max) return false; let ch = data[index]; if (ch === "-" || ch === "+") { ch = data[++index]; } if (ch === "0") { if (index + 1 === max) return true; ch = data[++index]; if (ch === "b") { index++; for (; index < max; index++) { ch = data[index]; if (ch !== "0" && ch !== "1") return false; hasDigits = true; } return hasDigits && isFinite(parseYamlInteger(data)); } if (ch === "x") { index++; for (; index < max; index++) { if (!isHexCode(data.charCodeAt(index))) return false; hasDigits = true; } return hasDigits && isFinite(parseYamlInteger(data)); } if (ch === "o") { index++; for (; index < max; index++) { if (!isOctCode(data.charCodeAt(index))) return false; hasDigits = true; } return hasDigits && isFinite(parseYamlInteger(data)); } } for (; index < max; index++) { if (!isDecCode(data.charCodeAt(index))) { return false; } hasDigits = true; } if (!hasDigits) return false; return isFinite(parseYamlInteger(data)); } function parseYamlInteger(data) { let value = data; let sign = 1; let ch = value[0]; if (ch === "-" || ch === "+") { if (ch === "-") sign = -1; value = value.slice(1); ch = value[0]; } if (value === "0") return 0; if (ch === "0") { if (value[1] === "b") return sign * parseInt(value.slice(2), 2); if (value[1] === "x") return sign * parseInt(value.slice(2), 16); if (value[1] === "o") return sign * parseInt(value.slice(2), 8); } return sign * parseInt(value, 10); } function constructYamlInteger(data) { return parseYamlInteger(data); } function isInteger(object) { return Object.prototype.toString.call(object) === "[object Number]" && (object % 1 === 0 && !common2.isNegativeZero(object)); } int = new Type2("tag:yaml.org,2002:int", { kind: "scalar", resolve: resolveYamlInteger, construct: constructYamlInteger, predicate: isInteger, represent: { binary: function(obj) { return obj >= 0 ? "0b" + obj.toString(2) : "-0b" + obj.toString(2).slice(1); }, octal: function(obj) { return obj >= 0 ? "0o" + obj.toString(8) : "-0o" + obj.toString(8).slice(1); }, decimal: function(obj) { return obj.toString(10); }, hexadecimal: function(obj) { return obj >= 0 ? "0x" + obj.toString(16).toUpperCase() : "-0x" + obj.toString(16).toUpperCase().slice(1); } }, defaultStyle: "decimal", styleAliases: { binary: [2, "bin"], octal: [8, "oct"], decimal: [10, "dec"], hexadecimal: [16, "hex"] } }); return int; } var float; var hasRequiredFloat; function requireFloat() { if (hasRequiredFloat) return float; hasRequiredFloat = 1; const common2 = requireCommon(); const Type2 = requireType(); const YAML_FLOAT_PATTERN = new RegExp( // 2.5e4, 2.5 and integers "^(?:[-+]?(?:[0-9]+)(?:\\.[0-9]*)?(?:[eE][-+]?[0-9]+)?|\\.[0-9]+(?:[eE][-+]?[0-9]+)?|[-+]?\\.(?:inf|Inf|INF)|\\.(?:nan|NaN|NAN))$" ); const YAML_FLOAT_SPECIAL_PATTERN = new RegExp( "^(?:[-+]?\\.(?:inf|Inf|INF)|\\.(?:nan|NaN|NAN))$" ); function resolveYamlFloat(data) { if (data === null) return false; if (!YAML_FLOAT_PATTERN.test(data)) { return false; } if (isFinite(parseFloat(data, 10))) { return true; } return YAML_FLOAT_SPECIAL_PATTERN.test(data); } function constructYamlFloat(data) { let value = data.toLowerCase(); const sign = value[0] === "-" ? -1 : 1; if ("+-".indexOf(value[0]) >= 0) { value = value.slice(1); } if (value === ".inf") { return sign === 1 ? Number.POSITIVE_INFINITY : Number.NEGATIVE_INFINITY; } else if (value === ".nan") { return NaN; } return sign * parseFloat(value, 10); } const SCIENTIFIC_WITHOUT_DOT = /^[-+]?[0-9]+e/; function representYamlFloat(object, style) { if (isNaN(object)) { switch (style) { case "lowercase": return ".nan"; case "uppercase": return ".NAN"; case "camelcase": return ".NaN"; } } else if (Number.POSITIVE_INFINITY === object) { switch (style) { case "lowercase": return ".inf"; case "uppercase": return ".INF"; case "camelcase": return ".Inf"; } } else if (Number.NEGATIVE_INFINITY === object) { switch (style) { case "lowercase": return "-.inf"; case "uppercase": return "-.INF"; case "camelcase": return "-.Inf"; } } else if (common2.isNegativeZero(object)) { return "-0.0"; } const res = object.toString(10); return SCIENTIFIC_WITHOUT_DOT.test(res) ? res.replace("e", ".e") : res; } function isFloat(object) { return Object.prototype.toString.call(object) === "[object Number]" && (object % 1 !== 0 || common2.isNegativeZero(object)); } float = new Type2("tag:yaml.org,2002:float", { kind: "scalar", resolve: resolveYamlFloat, construct: constructYamlFloat, predicate: isFloat, represent: representYamlFloat, defaultStyle: "lowercase" }); return float; } var json; var hasRequiredJson; function requireJson() { if (hasRequiredJson) return json; hasRequiredJson = 1; json = requireFailsafe().extend({ implicit: [ require_null(), requireBool(), requireInt(), requireFloat() ] }); return json; } var core; var hasRequiredCore; function requireCore() { if (hasRequiredCore) return core; hasRequiredCore = 1; core = requireJson(); return core; } var timestamp; var hasRequiredTimestamp; function requireTimestamp() { if (hasRequiredTimestamp) return timestamp; hasRequiredTimestamp = 1; const Type2 = requireType(); const YAML_DATE_REGEXP = new RegExp( "^([0-9][0-9][0-9][0-9])-([0-9][0-9])-([0-9][0-9])$" ); const YAML_TIMESTAMP_REGEXP = new RegExp( "^([0-9][0-9][0-9][0-9])-([0-9][0-9]?)-([0-9][0-9]?)(?:[Tt]|[ \\t]+)([0-9][0-9]?):([0-9][0-9]):([0-9][0-9])(?:\\.([0-9]*))?(?:[ \\t]*(Z|([-+])([0-9][0-9]?)(?::([0-9][0-9]))?))?$" ); function resolveYamlTimestamp(data) { if (data === null) return false; if (YAML_DATE_REGEXP.exec(data) !== null) return true; if (YAML_TIMESTAMP_REGEXP.exec(data) !== null) return true; return false; } function constructYamlTimestamp(data) { let fraction = 0; let delta = null; let match = YAML_DATE_REGEXP.exec(data); if (match === null) match = YAML_TIMESTAMP_REGEXP.exec(data); if (match === null) throw new Error("Date resolve error"); const year = +match[1]; const month = +match[2] - 1; const day = +match[3]; if (!match[4]) { return new Date(Date.UTC(year, month, day)); } const hour = +match[4]; const minute = +match[5]; const second = +match[6]; if (match[7]) { fraction = match[7].slice(0, 3); while (fraction.length < 3) { fraction += "0"; } fraction = +fraction; } if (match[9]) { const tzHour = +match[10]; const tzMinute = +(match[11] || 0); delta = (tzHour * 60 + tzMinute) * 6e4; if (match[9] === "-") delta = -delta; } const date = new Date(Date.UTC(year, month, day, hour, minute, second, fraction)); if (delta) date.setTime(date.getTime() - delta); return date; } function representYamlTimestamp(object) { return object.toISOString(); } timestamp = new Type2("tag:yaml.org,2002:timestamp", { kind: "scalar", resolve: resolveYamlTimestamp, construct: constructYamlTimestamp, instanceOf: Date, represent: representYamlTimestamp }); return timestamp; } var merge; var hasRequiredMerge; function requireMerge() { if (hasRequiredMerge) return merge; hasRequiredMerge = 1; const Type2 = requireType(); function resolveYamlMerge(data) { return data === "<<" || data === null; } merge = new Type2("tag:yaml.org,2002:merge", { kind: "scalar", resolve: resolveYamlMerge }); return merge; } var binary; var hasRequiredBinary; function requireBinary() { if (hasRequiredBinary) return binary; hasRequiredBinary = 1; const Type2 = requireType(); const BASE64_MAP = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/=\n\r"; function resolveYamlBinary(data) { if (data === null) return false; let bitlen = 0; const max = data.length; const map2 = BASE64_MAP; for (let idx = 0; idx < max; idx++) { const code = map2.indexOf(data.charAt(idx)); if (code > 64) continue; if (code < 0) return false; bitlen += 6; } return bitlen % 8 === 0; } function constructYamlBinary(data) { const input = data.replace(/[\r\n=]/g, ""); const max = input.length; const map2 = BASE64_MAP; let bits = 0; const result = []; for (let idx = 0; idx < max; idx++) { if (idx % 4 === 0 && idx) { result.push(bits >> 16 & 255); result.push(bits >> 8 & 255); result.push(bits & 255); } bits = bits << 6 | map2.indexOf(input.charAt(idx)); } const tailbits = max % 4 * 6; if (tailbits === 0) { result.push(bits >> 16 & 255); result.push(bits >> 8 & 255); result.push(bits & 255); } else if (tailbits === 18) { result.push(bits >> 10 & 255); result.push(bits >> 2 & 255); } else if (tailbits === 12) { result.push(bits >> 4 & 255); } return new Uint8Array(result); } function representYamlBinary(object) { let result = ""; let bits = 0; const max = object.length; const map2 = BASE64_MAP; for (let idx = 0; idx < max; idx++) { if (idx % 3 === 0 && idx) { result += map2[bits >> 18 & 63]; result += map2[bits >> 12 & 63]; result += map2[bits >> 6 & 63]; result += map2[bits & 63]; } bits = (bits << 8) + object[idx]; } const tail = max % 3; if (tail === 0) { result += map2[bits >> 18 & 63]; result += map2[bits >> 12 & 63]; result += map2[bits >> 6 & 63]; result += map2[bits & 63]; } else if (tail === 2) { result += map2[bits >> 10 & 63]; result += map2[bits >> 4 & 63]; result += map2[bits << 2 & 63]; result += map2[64]; } else if (tail === 1) { result += map2[bits >> 2 & 63]; result += map2[bits << 4 & 63]; result += map2[64]; result += map2[64]; } return result; } function isBinary(obj) { return Object.prototype.toString.call(obj) === "[object Uint8Array]"; } binary = new Type2("tag:yaml.org,2002:binary", { kind: "scalar", resolve: resolveYamlBinary, construct: constructYamlBinary, predicate: isBinary, represent: representYamlBinary }); return binary; } var omap; var hasRequiredOmap; function requireOmap() { if (hasRequiredOmap) return omap; hasRequiredOmap = 1; const Type2 = requireType(); const _hasOwnProperty = Object.prototype.hasOwnProperty; const _toString = Object.prototype.toString; function resolveYamlOmap(data) { if (data === null) return true; const objectKeys = []; const object = data; for (let index = 0, length = object.length; index < length; index += 1) { const pair = object[index]; let pairHasKey = false; if (_toString.call(pair) !== "[object Object]") return false; let pairKey; for (pairKey in pair) { if (_hasOwnProperty.call(pair, pairKey)) { if (!pairHasKey) pairHasKey = true; else return false; } } if (!pairHasKey) return false; if (objectKeys.indexOf(pairKey) === -1) objectKeys.push(pairKey); else return false; } return true; } function constructYamlOmap(data) { return data !== null ? data : []; } omap = new Type2("tag:yaml.org,2002:omap", { kind: "sequence", resolve: resolveYamlOmap, construct: constructYamlOmap }); return omap; } var pairs; var hasRequiredPairs; function requirePairs() { if (hasRequiredPairs) return pairs; hasRequiredPairs = 1; const Type2 = requireType(); const _toString = Object.prototype.toString; function resolveYamlPairs(data) { if (data === null) return true; const object = data; const result = new Array(object.length); for (let index = 0, length = object.length; index < length; index += 1) { const pair = object[index]; if (_toString.call(pair) !== "[object Object]") return false; const keys = Object.keys(pair); if (keys.length !== 1) return false; result[index] = [keys[0], pair[keys[0]]]; } return true; } function constructYamlPairs(data) { if (data === null) return []; const object = data; const result = new Array(object.length); for (let index = 0, length = object.length; index < length; index += 1) { const pair = object[index]; const keys = Object.keys(pair); result[index] = [keys[0], pair[keys[0]]]; } return result; } pairs = new Type2("tag:yaml.org,2002:pairs", { kind: "sequence", resolve: resolveYamlPairs, construct: constructYamlPairs }); return pairs; } var set; var hasRequiredSet; function requireSet() { if (hasRequiredSet) return set; hasRequiredSet = 1; const Type2 = requireType(); const _hasOwnProperty = Object.prototype.hasOwnProperty; function resolveYamlSet(data) { if (data === null) return true; const object = data; for (const key in object) { if (_hasOwnProperty.call(object, key)) { if (object[key] !== null) return false; } } return true; } function constructYamlSet(data) { return data !== null ? data : {}; } set = new Type2("tag:yaml.org,2002:set", { kind: "mapping", resolve: resolveYamlSet, construct: constructYamlSet }); return set; } var _default; var hasRequired_default; function require_default() { if (hasRequired_default) return _default; hasRequired_default = 1; _default = requireCore().extend({ implicit: [ requireTimestamp(), requireMerge() ], explicit: [ requireBinary(), requireOmap(), requirePairs(), requireSet() ] }); return _default; } var hasRequiredLoader; function requireLoader() { if (hasRequiredLoader) return loader; hasRequiredLoader = 1; const common2 = requireCommon(); const YAMLException2 = requireException(); const makeSnippet = requireSnippet(); const DEFAULT_SCHEMA2 = require_default(); const _hasOwnProperty = Object.prototype.hasOwnProperty; const CONTEXT_FLOW_IN = 1; const CONTEXT_FLOW_OUT = 2; const CONTEXT_BLOCK_IN = 3; const CONTEXT_BLOCK_OUT = 4; const CHOMPING_CLIP = 1; const CHOMPING_STRIP = 2; const CHOMPING_KEEP = 3; const PATTERN_NON_PRINTABLE = /[\x00-\x08\x0B\x0C\x0E-\x1F\x7F-\x84\x86-\x9F\uFFFE\uFFFF]|[\uD800-\uDBFF](?![\uDC00-\uDFFF])|(?:[^\uD800-\uDBFF]|^)[\uDC00-\uDFFF]/; const PATTERN_NON_ASCII_LINE_BREAKS = /[\x85\u2028\u2029]/; const PATTERN_FLOW_INDICATORS = /[,\[\]{}]/; const PATTERN_TAG_HANDLE = /^(?:!|!!|![0-9A-Za-z-]+!)$/; const PATTERN_TAG_URI = /^(?:!|[^,\[\]{}])(?:%[0-9a-f]{2}|[0-9a-z\-#;/?:@&=+$,_.!~*'()\[\]])*$/i; function _class(obj) { return Object.prototype.toString.call(obj); } function isEol(c) { return c === 10 || c === 13; } function isWhiteSpace(c) { return c === 9 || c === 32; } function isWsOrEol(c) { return c === 9 || c === 32 || c === 10 || c === 13; } function isFlowIndicator(c) { return c === 44 || c === 91 || c === 93 || c === 123 || c === 125; } function fromHexCode(c) { if (c >= 48 && c <= 57) { return c - 48; } const lc = c | 32; if (lc >= 97 && lc <= 102) { return lc - 97 + 10; } return -1; } function escapedHexLen(c) { if (c === 120) { return 2; } if (c === 117) { return 4; } if (c === 85) { return 8; } return 0; } function fromDecimalCode(c) { if (c >= 48 && c <= 57) { return c - 48; } return -1; } function simpleEscapeSequence(c) { switch (c) { case 48: return "\0"; case 97: return "\x07"; case 98: return "\b"; case 116: return " "; case 9: return " "; case 110: return "\n"; case 118: return "\v"; case 102: return "\f"; case 114: return "\r"; case 101: return "\x1B"; case 32: return " "; case 34: return '"'; case 47: return "/"; case 92: return "\\"; case 78: return "…"; case 95: return " "; case 76: return "\u2028"; case 80: return "\u2029"; default: return ""; } } function charFromCodepoint(c) { if (c <= 65535) { return String.fromCharCode(c); } return String.fromCharCode( (c - 65536 >> 10) + 55296, (c - 65536 & 1023) + 56320 ); } function setProperty(object, key, value) { if (key === "__proto__") { Object.defineProperty(object, key, { configurable: true, enumerable: true, writable: true, value }); } else { object[key] = value; } } const simpleEscapeCheck = new Array(256); const simpleEscapeMap = new Array(256); for (let i = 0; i < 256; i++) { simpleEscapeCheck[i] = simpleEscapeSequence(i) ? 1 : 0; simpleEscapeMap[i] = simpleEscapeSequence(i); } function State(input, options) { this.input = input; this.filename = options["filename"] || null; this.schema = options["schema"] || DEFAULT_SCHEMA2; this.onWarning = options["onWarning"] || null; this.legacy = options["legacy"] || false; this.json = options["json"] || false; this.listener = options["listener"] || null; this.maxDepth = typeof options["maxDepth"] === "number" ? options["maxDepth"] : 100; this.maxTotalMergeKeys = typeof options["maxTotalMergeKeys"] === "number" ? options["maxTotalMergeKeys"] : 1e4; this.implicitTypes = this.schema.compiledImplicit; this.typeMap = this.schema.compiledTypeMap; this.length = input.length; this.position = 0; this.line = 0; this.lineStart = 0; this.lineIndent = 0; this.depth = 0; this.totalMergeKeys = 0; this.firstTabInLine = -1; this.documents = []; this.anchorMapTransactions = []; } function generateError(state, message) { const mark = { name: state.filename, buffer: state.input.slice(0, -1), // omit trailing \0 position: state.position, line: state.line, column: state.position - state.lineStart }; mark.snippet = makeSnippet(mark); return new YAMLException2(message, mark); } function throwError(state, message) { throw generateError(state, message); } function throwWarning(state, message) { if (state.onWarning) { state.onWarning.call(null, generateError(state, message)); } } function storeAnchor(state, name, value) { const transactions = state.anchorMapTransactions; if (transactions.length !== 0) { const transaction = transactions[transactions.length - 1]; if (!_hasOwnProperty.call(transaction, name)) { transaction[name] = { existed: _hasOwnProperty.call(state.anchorMap, name), value: state.anchorMap[name] }; } } state.anchorMap[name] = value; } function beginAnchorTransaction(state) { state.anchorMapTransactions.push(/* @__PURE__ */ Object.create(null)); } function commitAnchorTransaction(state) { const transaction = state.anchorMapTransactions.pop(); const transactions = state.anchorMapTransactions; if (transactions.length === 0) return; const parent = transactions[transactions.length - 1]; const names = Object.keys(transaction); for (let index = 0, length = names.length; index < length; index += 1) { const name = names[index]; if (!_hasOwnProperty.call(parent, name)) { parent[name] = transaction[name]; } } } function rollbackAnchorTransaction(state) { const transaction = state.anchorMapTransactions.pop(); const names = Object.keys(transaction); for (let index = names.length - 1; index >= 0; index -= 1) { const entry = transaction[names[index]]; if (entry.existed) { state.anchorMap[names[index]] = entry.value; } else { delete state.anchorMap[names[index]]; } } } function snapshotState(state) { return { position: state.position, line: state.line, lineStart: state.lineStart, lineIndent: state.lineIndent, firstTabInLine: state.firstTabInLine, tag: state.tag, anchor: state.anchor, kind: state.kind, result: state.result }; } function restoreState(state, snapshot) { state.position = snapshot.position; state.line = snapshot.line; state.lineStart = snapshot.lineStart; state.lineIndent = snapshot.lineIndent; state.firstTabInLine = snapshot.firstTabInLine; state.tag = snapshot.tag; state.anchor = snapshot.anchor; state.kind = snapshot.kind; state.result = snapshot.result; } const directiveHandlers = { YAML: function handleYamlDirective(state, name, args) { if (state.version !== null) { throwError(state, "duplication of %YAML directive"); } if (args.length !== 1) { throwError(state, "YAML directive accepts exactly one argument"); } const match = /^([0-9]+)\.([0-9]+)$/.exec(args[0]); if (match === null) { throwError(state, "ill-formed argument of the YAML directive"); } const major = parseInt(match[1], 10); const minor = parseInt(match[2], 10); if (major !== 1) { throwError(state, "unacceptable YAML version of the document"); } state.version = args[0]; state.checkLineBreaks = minor < 2; if (minor !== 1 && minor !== 2) { throwWarning(state, "unsupported YAML version of the document"); } }, TAG: function handleTagDirective(state, name, args) { let prefix; if (args.length !== 2) { throwError(state, "TAG directive accepts exactly two arguments"); } const handle = args[0]; prefix = args[1]; if (!PATTERN_TAG_HANDLE.test(handle)) { throwError(state, "ill-formed tag handle (first argument) of the TAG directive"); } if (_hasOwnProperty.call(state.tagMap, handle)) { throwError(state, 'there is a previously declared suffix for "' + handle + '" tag handle'); } if (!PATTERN_TAG_URI.test(prefix)) { throwError(state, "ill-formed tag prefix (second argument) of the TAG directive"); } try { prefix = decodeURIComponent(prefix); } catch (err) { throwError(state, "tag prefix is malformed: " + prefix); } state.tagMap[handle] = prefix; } }; function captureSegment(state, start, end, checkJson) { if (start < end) { const _result = state.input.slice(start, end); if (checkJson) { for (let _position = 0, _length = _result.length; _position < _length; _position += 1) { const _character = _result.charCodeAt(_position); if (!(_character === 9 || _character >= 32 && _character <= 1114111)) { throwError(state, "expected valid JSON character"); } } } else if (PATTERN_NON_PRINTABLE.test(_result)) { throwError(state, "the stream contains non-printable characters"); } state.result += _result; } } function mergeMappings(state, destination, source, overridableKeys) { if (!common2.isObject(source)) { throwError(state, "cannot merge mappings; the provided source object is unacceptable"); } const sourceKeys = Object.keys(source); for (let index = 0, quantity = sourceKeys.length; index < quantity; index += 1) { const key = sourceKeys[index]; if (state.maxTotalMergeKeys !== -1 && ++state.totalMergeKeys > state.maxTotalMergeKeys) { throwError(state, "merge keys exceeded maxTotalMergeKeys (" + state.maxTotalMergeKeys + ")"); } if (!_hasOwnProperty.call(destination, key)) { setProperty(destination, key, source[key]); overridableKeys[key] = true; } } } function storeMappingPair(state, _result, overridableKeys, keyTag, keyNode, valueNode, startLine, startLineStart, startPos) { if (Array.isArray(keyNode)) { keyNode = Array.prototype.slice.call(keyNode); for (let index = 0, quantity = keyNode.length; index < quantity; index += 1) { if (Array.isArray(keyNode[index])) { throwError(state, "nested arrays are not supported inside keys"); } if (typeof keyNode === "object" && _class(keyNode[index]) === "[object Object]") { keyNode[index] = "[object Object]"; } } } if (typeof keyNode === "object" && _class(keyNode) === "[object Object]") { keyNode = "[object Object]"; } keyNode = String(keyNode); if (_result === null) { _result = {}; } if (keyTag === "tag:yaml.org,2002:merge") { if (Array.isArray(valueNode)) { for (let index = 0, quantity = valueNode.length; index < quantity; index += 1) { mergeMappings(state, _result, valueNode[index], overridableKeys); } } else { mergeMappings(state, _result, valueNode, overridableKeys); } } else { if (!state.json && !_hasOwnProperty.call(overridableKeys, keyNode) && _hasOwnProperty.call(_result, keyNode)) { state.line = startLine || state.line; state.lineStart = startLineStart || state.lineStart; state.position = startPos || state.position; throwError(state, "duplicated mapping key"); } setProperty(_result, keyNode, valueNode); delete overridableKeys[keyNode]; } return _result; } function readLineBreak(state) { const ch = state.input.charCodeAt(state.position); if (ch === 10) { state.position++; } else if (ch === 13) { state.position++; if (state.input.charCodeAt(state.position) === 10) { state.position++; } } else { throwError(state, "a line break is expected"); } state.line += 1; state.lineStart = state.position; state.firstTabInLine = -1; } function skipSeparationSpace(state, allowComments, checkIndent) { let lineBreaks = 0; let ch = state.input.charCodeAt(state.position); while (ch !== 0) { while (isWhiteSpace(ch)) { if (ch === 9 && state.firstTabInLine === -1) { state.firstTabInLine = state.position; } ch = state.input.charCodeAt(++state.position); } if (allowComments && ch === 35) { do { ch = state.input.charCodeAt(++state.position); } while (ch !== 10 && ch !== 13 && ch !== 0); } if (isEol(ch)) { readLineBreak(state); ch = state.input.charCodeAt(state.position); lineBreaks++; state.lineIndent = 0; while (ch === 32) { state.lineIndent++; ch = state.input.charCodeAt(++state.position); } } else { break; } } if (checkIndent !== -1 && lineBreaks !== 0 && state.lineIndent < checkIndent) { throwWarning(state, "deficient indentation"); } return lineBreaks; } function testDocumentSeparator(state) { let _position = state.position; let ch = state.input.charCodeAt(_position); if ((ch === 45 || ch === 46) && ch === state.input.charCodeAt(_position + 1) && ch === state.input.charCodeAt(_position + 2)) { _position += 3; ch = state.input.charCodeAt(_position); if (ch === 0 || isWsOrEol(ch)) { return true; } } return false; } function writeFoldedLines(state, count) { if (count === 1) { state.result += " "; } else if (count > 1) { state.result += common2.repeat("\n", count - 1); } } function readPlainScalar(state, nodeIndent, withinFlowCollection) { let captureStart; let captureEnd; let hasPendingContent; let _line; let _lineStart; let _lineIndent; const _kind = state.kind; const _result = state.result; let ch = state.input.charCodeAt(state.position); if (isWsOrEol(ch) || isFlowIndicator(ch) || ch === 35 || ch === 38 || ch === 42 || ch === 33 || ch === 124 || ch === 62 || ch === 39 || ch === 34 || ch === 37 || ch === 64 || ch === 96) { return false; } if (ch === 63 || ch === 45) { const following = state.input.charCodeAt(state.position + 1); if (isWsOrEol(following) || withinFlowCollection && isFlowIndicator(following)) { return false; } } state.kind = "scalar"; state.result = ""; captureStart = captureEnd = state.position; hasPendingContent = false; while (ch !== 0) { if (ch === 58) { const following = state.input.charCodeAt(state.position + 1); if (isWsOrEol(following) || withinFlowCollection && isFlowIndicator(following)) { break; } } else if (ch === 35) { const preceding = state.input.charCodeAt(state.position - 1); if (isWsOrEol(preceding)) { break; } } else if (state.position === state.lineStart && testDocumentSeparator(state) || withinFlowCollection && isFlowIndicator(ch)) { break; } else if (isEol(ch)) { _line = state.line; _lineStart = state.lineStart; _lineIndent = state.lineIndent; skipSeparationSpace(state, false, -1); if (state.lineIndent >= nodeIndent) { hasPendingContent = true; ch = state.input.charCodeAt(state.position); continue; } else { state.position = captureEnd; state.line = _line; state.lineStart = _lineStart; state.lineIndent = _lineIndent; break; } } if (hasPendingContent) { captureSegment(state, captureStart, captureEnd, false); writeFoldedLines(state, state.line - _line); captureStart = captureEnd = state.position; hasPendingContent = false; } if (!isWhiteSpace(ch)) { captureEnd = state.position + 1; } ch = state.input.charCodeAt(++state.position); } captureSegment(state, captureStart, captureEnd, false); if (state.result) { return true; } state.kind = _kind; state.result = _result; return false; } function readSingleQuotedScalar(state, nodeIndent) { let captureStart; let captureEnd; let ch = state.input.charCodeAt(state.position); if (ch !== 39) { return false; } state.kind = "scalar"; state.result = ""; state.position++; captureStart = captureEnd = state.position; while ((ch = state.input.charCodeAt(state.position)) !== 0) { if (ch === 39) { captureSegment(state, captureStart, state.position, true); ch = state.input.charCodeAt(++state.position); if (ch === 39) { captureStart = state.position; state.position++; captureEnd = state.position; } else { return true; } } else if (isEol(ch)) { captureSegment(state, captureStart, captureEnd, true); writeFoldedLines(state, skipSeparationSpace(state, false, nodeIndent)); captureStart = captureEnd = state.position; } else if (state.position === state.lineStart && testDocumentSeparator(state)) { throwError(state, "unexpected end of the document within a single quoted scalar"); } else { state.position++; if (!isWhiteSpace(ch)) { captureEnd = state.position; } } } throwError(state, "unexpected end of the stream within a single quoted scalar"); } function readDoubleQuotedScalar(state, nodeIndent) { let captureStart; let captureEnd; let tmp; let ch = state.input.charCodeAt(state.position); if (ch !== 34) { return false; } state.kind = "scalar"; state.result = ""; state.position++; captureStart = captureEnd = state.position; while ((ch = state.input.charCodeAt(state.position)) !== 0) { if (ch === 34) { captureSegment(state, captureStart, state.position, true); state.position++; return true; } else if (ch === 92) { captureSegment(state, captureStart, state.position, true); ch = state.input.charCodeAt(++state.position); if (isEol(ch)) { skipSeparationSpace(state, false, nodeIndent); } else if (ch < 256 && simpleEscapeCheck[ch]) { state.result += simpleEscapeMap[ch]; state.position++; } else if ((tmp = escapedHexLen(ch)) > 0) { let hexLength = tmp; let hexResult = 0; for (; hexLength > 0; hexLength--) { ch = state.input.charCodeAt(++state.position); if ((tmp = fromHexCode(ch)) >= 0) { hexResult = (hexResult << 4) + tmp; } else { throwError(state, "expected hexadecimal character"); } } state.result += charFromCodepoint(hexResult); state.position++; } else { throwError(state, "unknown escape sequence"); } captureStart = captureEnd = state.position; } else if (isEol(ch)) { captureSegment(state, captureStart, captureEnd, true); writeFoldedLines(state, skipSeparationSpace(state, false, nodeIndent)); captureStart = captureEnd = state.position; } else if (state.position === state.lineStart && testDocumentSeparator(state)) { throwError(state, "unexpected end of the document within a double quoted scalar"); } else { state.position++; if (!isWhiteSpace(ch)) { captureEnd = state.position; } } } throwError(state, "unexpected end of the stream within a double quoted scalar"); } function readFlowCollection(state, nodeIndent) { let readNext = true; let _line; let _lineStart; let _pos; const _tag = state.tag; let _result; const _anchor = state.anchor; let terminator; let isPair; let isExplicitPair; let isMapping; const overridableKeys = /* @__PURE__ */ Object.create(null); let keyNode; let keyTag; let valueNode; let ch = state.input.charCodeAt(state.position); if (ch === 91) { terminator = 93; isMapping = false; _result = []; } else if (ch === 123) { terminator = 125; isMapping = true; _result = {}; } else { return false; } if (state.anchor !== null) { storeAnchor(state, state.anchor, _result); } ch = state.input.charCodeAt(++state.position); while (ch !== 0) { skipSeparationSpace(state, true, nodeIndent); ch = state.input.charCodeAt(state.position); if (ch === terminator) { state.position++; state.tag = _tag; state.anchor = _anchor; state.kind = isMapping ? "mapping" : "sequence"; state.result = _result; return true; } else if (!readNext) { throwError(state, "missed comma between flow collection entries"); } else if (ch === 44) { throwError(state, "expected the node content, but found ','"); } keyTag = keyNode = valueNode = null; isPair = isExplicitPair = false; if (ch === 63) { const following = state.input.charCodeAt(state.position + 1); if (isWsOrEol(following)) { isPair = isExplicitPair = true; state.position++; skipSeparationSpace(state, true, nodeIndent); } } _line = state.line; _lineStart = state.lineStart; _pos = state.position; composeNode(state, nodeIndent, CONTEXT_FLOW_IN, false, true); keyTag = state.tag; keyNode = state.result; skipSeparationSpace(state, true, nodeIndent); ch = state.input.charCodeAt(state.position); if ((isExplicitPair || state.line === _line) && ch === 58) { isPair = true; ch = state.input.charCodeAt(++state.position); skipSeparationSpace(state, true, nodeIndent); composeNode(state, nodeIndent, CONTEXT_FLOW_IN, false, true); valueNode = state.result; } if (isMapping) { storeMappingPair(state, _result, overridableKeys, keyTag, keyNode, valueNode, _line, _lineStart, _pos); } else if (isPair) { _result.push(storeMappingPair(state, null, overridableKeys, keyTag, keyNode, valueNode, _line, _lineStart, _pos)); } else { _result.push(keyNode); } skipSeparationSpace(state, true, nodeIndent); ch = state.input.charCodeAt(state.position); if (ch === 44) { readNext = true; ch = state.input.charCodeAt(++state.position); } else { readNext = false; } } throwError(state, "unexpected end of the stream within a flow collection"); } function readBlockScalar(state, nodeIndent) { let folding; let chomping = CHOMPING_CLIP; let didReadContent = false; let detectedIndent = false; let textIndent = nodeIndent; let emptyLines = 0; let atMoreIndented = false; let tmp; let ch = state.input.charCodeAt(state.position); if (ch === 124) { folding = false; } else if (ch === 62) { folding = true; } else { return false; } state.kind = "scalar"; state.result = ""; while (ch !== 0) { ch = state.input.charCodeAt(++state.position); if (ch === 43 || ch === 45) { if (CHOMPING_CLIP === chomping) { chomping = ch === 43 ? CHOMPING_KEEP : CHOMPING_STRIP; } else { throwError(state, "repeat of a chomping mode identifier"); } } else if ((tmp = fromDecimalCode(ch)) >= 0) { if (tmp === 0) { throwError(state, "bad explicit indentation width of a block scalar; it cannot be less than one"); } else if (!detectedIndent) { textIndent = nodeIndent + tmp - 1; detectedIndent = true; } else { throwError(state, "repeat of an indentation width identifier"); } } else { break; } } if (isWhiteSpace(ch)) { do { ch = state.input.charCodeAt(++state.position); } while (isWhiteSpace(ch)); if (ch === 35) { do { ch = state.input.charCodeAt(++state.position); } while (!isEol(ch) && ch !== 0); } } while (ch !== 0) { readLineBreak(state); state.lineIndent = 0; ch = state.input.charCodeAt(state.position); while ((!detectedIndent || state.lineIndent < textIndent) && ch === 32) { state.lineIndent++; ch = state.input.charCodeAt(++state.position); } if (!detectedIndent && state.lineIndent > textIndent) { textIndent = state.lineIndent; } if (isEol(ch)) { emptyLines++; continue; } if (!detectedIndent && textIndent === 0) { throwError(state, "missing indentation for block scalar"); } if (state.lineIndent < textIndent) { if (chomping === CHOMPING_KEEP) { state.result += common2.repeat("\n", didReadContent ? 1 + emptyLines : emptyLines); } else if (chomping === CHOMPING_CLIP) { if (didReadContent) { state.result += "\n"; } } break; } if (folding) { if (isWhiteSpace(ch)) { atMoreIndented = true; state.result += common2.repeat("\n", didReadContent ? 1 + emptyLines : emptyLines); } else if (atMoreIndented) { atMoreIndented = false; state.result += common2.repeat("\n", emptyLines + 1); } else if (emptyLines === 0) { if (didReadContent) { state.result += " "; } } else { state.result += common2.repeat("\n", emptyLines); } } else { state.result += common2.repeat("\n", didReadContent ? 1 + emptyLines : emptyLines); } didReadContent = true; detectedIndent = true; emptyLines = 0; const captureStart = state.position; while (!isEol(ch) && ch !== 0) { ch = state.input.charCodeAt(++state.position); } captureSegment(state, captureStart, state.position, false); } return true; } function readBlockSequence(state, nodeIndent) { const _tag = state.tag; const _anchor = state.anchor; const _result = []; let detected = false; if (state.firstTabInLine !== -1) return false; if (state.anchor !== null) { storeAnchor(state, state.anchor, _result); } let ch = state.input.charCodeAt(state.position); while (ch !== 0) { if (state.firstTabInLine !== -1) { state.position = state.firstTabInLine; throwError(state, "tab characters must not be used in indentation"); } if (ch !== 45) { break; } const following = state.input.charCodeAt(state.position + 1); if (!isWsOrEol(following)) { break; } detected = true; state.position++; if (skipSeparationSpace(state, true, -1)) { if (state.lineIndent <= nodeIndent) { _result.push(null); ch = state.input.charCodeAt(state.position); continue; } } const _line = state.line; composeNode(state, nodeIndent, CONTEXT_BLOCK_IN, false, true); _result.push(state.result); skipSeparationSpace(state, true, -1); ch = state.input.charCodeAt(state.position); if ((state.line === _line || state.lineIndent > nodeIndent) && ch !== 0) { throwError(state, "bad indentation of a sequence entry"); } else if (state.lineIndent < nodeIndent) { break; } } if (detected) { state.tag = _tag; state.anchor = _anchor; state.kind = "sequence"; state.result = _result; return true; } return false; } function readBlockMapping(state, nodeIndent, flowIndent) { let allowCompact; let _keyLine; let _keyLineStart; let _keyPos; const _tag = state.tag; const _anchor = state.anchor; const _result = {}; const overridableKeys = /* @__PURE__ */ Object.create(null); let keyTag = null; let keyNode = null; let valueNode = null; let atExplicitKey = false; let detected = false; if (state.firstTabInLine !== -1) return false; if (state.anchor !== null) { storeAnchor(state, state.anchor, _result); } let ch = state.input.charCodeAt(state.position); while (ch !== 0) { if (!atExplicitKey && state.firstTabInLine !== -1) { state.position = state.firstTabInLine; throwError(state, "tab characters must not be used in indentation"); } const following = state.input.charCodeAt(state.position + 1); const _line = state.line; if ((ch === 63 || ch === 58) && isWsOrEol(following)) { if (ch === 63) { if (atExplicitKey) { storeMappingPair(state, _result, overridableKeys, keyTag, keyNode, null, _keyLine, _keyLineStart, _keyPos); keyTag = keyNode = valueNode = null; } detected = true; atExplicitKey = true; allowCompact = true; } else if (atExplicitKey) { atExplicitKey = false; allowCompact = true; } else { throwError(state, "incomplete explicit mapping pair; a key node is missed; or followed by a non-tabulated empty line"); } state.position += 1; ch = following; } else { _keyLine = state.line; _keyLineStart = state.lineStart; _keyPos = state.position; if (!composeNode(state, flowIndent, CONTEXT_FLOW_OUT, false, true)) { break; } if (state.line === _line) { ch = state.input.charCodeAt(state.position); while (isWhiteSpace(ch)) { ch = state.input.charCodeAt(++state.position); } if (ch === 58) { ch = state.input.charCodeAt(++state.position); if (!isWsOrEol(ch)) { throwError(state, "a whitespace character is expected after the key-value separator within a block mapping"); } if (atExplicitKey) { storeMappingPair(state, _result, overridableKeys, keyTag, keyNode, null, _keyLine, _keyLineStart, _keyPos); keyTag = keyNode = valueNode = null; } detected = true; atExplicitKey = false; allowCompact = false; keyTag = state.tag; keyNode = state.result; } else if (detected) { throwError(state, "can not read an implicit mapping pair; a colon is missed"); } else { state.tag = _tag; state.anchor = _anchor; return true; } } else if (detected) { throwError(state, "can not read a block mapping entry; a multiline key may not be an implicit key"); } else { state.tag = _tag; state.anchor = _anchor; return true; } } if (state.line === _line || state.lineIndent > nodeIndent) { if (atExplicitKey) { _keyLine = state.line; _keyLineStart = state.lineStart; _keyPos = state.position; } if (composeNode(state, nodeIndent, CONTEXT_BLOCK_OUT, true, allowCompact)) { if (atExplicitKey) { keyNode = state.result; } else { valueNode = state.result; } } if (!atExplicitKey) { storeMappingPair(state, _result, overridableKeys, keyTag, keyNode, valueNode, _keyLine, _keyLineStart, _keyPos); keyTag = keyNode = valueNode = null; } skipSeparationSpace(state, true, -1); ch = state.input.charCodeAt(state.position); } if ((state.line === _line || state.lineIndent > nodeIndent) && ch !== 0) { throwError(state, "bad indentation of a mapping entry"); } else if (state.lineIndent < nodeIndent) { break; } } if (atExplicitKey) { storeMappingPair(state, _result, overridableKeys, keyTag, keyNode, null, _keyLine, _keyLineStart, _keyPos); } if (detected) { state.tag = _tag; state.anchor = _anchor; state.kind = "mapping"; state.result = _result; } return detected; } function readTagProperty(state) { let isVerbatim = false; let isNamed = false; let tagHandle; let tagName; let ch = state.input.charCodeAt(state.position); if (ch !== 33) return false; if (state.tag !== null) { throwError(state, "duplication of a tag property"); } ch = state.input.charCodeAt(++state.position); if (ch === 60) { isVerbatim = true; ch = state.input.charCodeAt(++state.position); } else if (ch === 33) { isNamed = true; tagHandle = "!!"; ch = state.input.charCodeAt(++state.position); } else { tagHandle = "!"; } let _position = state.position; if (isVerbatim) { do { ch = state.input.charCodeAt(++state.position); } while (ch !== 0 && ch !== 62); if (state.position < state.length) { tagName = state.input.slice(_position, state.position); ch = state.input.charCodeAt(++state.position); } else { throwError(state, "unexpected end of the stream within a verbatim tag"); } } else { while (ch !== 0 && !isWsOrEol(ch)) { if (ch === 33) { if (!isNamed) { tagHandle = state.input.slice(_position - 1, state.position + 1); if (!PATTERN_TAG_HANDLE.test(tagHandle)) { throwError(state, "named tag handle cannot contain such characters"); } isNamed = true; _position = state.position + 1; } else { throwError(state, "tag suffix cannot contain exclamation marks"); } } ch = state.input.charCodeAt(++state.position); } tagName = state.input.slice(_position, state.position); if (PATTERN_FLOW_INDICATORS.test(tagName)) { throwError(state, "tag suffix cannot contain flow indicator characters"); } } if (tagName && !PATTERN_TAG_URI.test(tagName)) { throwError(state, "tag name cannot contain such characters: " + tagName); } try { tagName = decodeURIComponent(tagName); } catch (err) { throwError(state, "tag name is malformed: " + tagName); } if (isVerbatim) { state.tag = tagName; } else if (_hasOwnProperty.call(state.tagMap, tagHandle)) { state.tag = state.tagMap[tagHandle] + tagName; } else if (tagHandle === "!") { state.tag = "!" + tagName; } else if (tagHandle === "!!") { state.tag = "tag:yaml.org,2002:" + tagName; } else { throwError(state, 'undeclared tag handle "' + tagHandle + '"'); } return true; } function readAnchorProperty(state) { let ch = state.input.charCodeAt(state.position); if (ch !== 38) return false; if (state.anchor !== null) { throwError(state, "duplication of an anchor property"); } ch = state.input.charCodeAt(++state.position); const _position = state.position; while (ch !== 0 && !isWsOrEol(ch) && !isFlowIndicator(ch)) { ch = state.input.charCodeAt(++state.position); } if (state.position === _position) { throwError(state, "name of an anchor node must contain at least one character"); } state.anchor = state.input.slice(_position, state.position); return true; } function readAlias(state) { let ch = state.input.charCodeAt(state.position); if (ch !== 42) return false; ch = state.input.charCodeAt(++state.position); const _position = state.position; while (ch !== 0 && !isWsOrEol(ch) && !isFlowIndicator(ch)) { ch = state.input.charCodeAt(++state.position); } if (state.position === _position) { throwError(state, "name of an alias node must contain at least one character"); } const alias = state.input.slice(_position, state.position); if (!_hasOwnProperty.call(state.anchorMap, alias)) { throwError(state, 'unidentified alias "' + alias + '"'); } state.result = state.anchorMap[alias]; skipSeparationSpace(state, true, -1); return true; } function tryReadBlockMappingFromProperty(state, propertyStart, nodeIndent, flowIndent) { const fallbackState = snapshotState(state); beginAnchorTransaction(state); restoreState(state, propertyStart); state.tag = null; state.anchor = null; state.kind = null; state.result = null; if (readBlockMapping(state, nodeIndent, flowIndent) && state.kind === "mapping") { commitAnchorTransaction(state); return true; } rollbackAnchorTransaction(state); restoreState(state, fallbackState); return false; } function composeNode(state, parentIndent, nodeContext, allowToSeek, allowCompact) { let allowBlockScalars; let allowBlockCollections; let indentStatus = 1; let atNewLine = false; let hasContent = false; let propertyStart = null; let type2; let flowIndent; let blockIndent; if (state.depth >= state.maxDepth) { throwError(state, "nesting exceeded maxDepth (" + state.maxDepth + ")"); } state.depth += 1; if (state.listener !== null) { state.listener("open", state); } state.tag = null; state.anchor = null; state.kind = null; state.result = null; const allowBlockStyles = allowBlockScalars = allowBlockCollections = CONTEXT_BLOCK_OUT === nodeContext || CONTEXT_BLOCK_IN === nodeContext; if (allowToSeek) { if (skipSeparationSpace(state, true, -1)) { atNewLine = true; if (state.lineIndent > parentIndent) { indentStatus = 1; } else if (state.lineIndent === parentIndent) { indentStatus = 0; } else if (state.lineIndent < parentIndent) { indentStatus = -1; } } } if (indentStatus === 1) { while (true) { const ch = state.input.charCodeAt(state.position); const propertyState = snapshotState(state); if (atNewLine && (ch === 33 && state.tag !== null || ch === 38 && state.anchor !== null)) { break; } if (!readTagProperty(state) && !readAnchorProperty(state)) { break; } if (propertyStart === null) { propertyStart = propertyState; } if (skipSeparationSpace(state, true, -1)) { atNewLine = true; allowBlockCollections = allowBlockStyles; if (state.lineIndent > parentIndent) { indentStatus = 1; } else if (state.lineIndent === parentIndent) { indentStatus = 0; } else if (state.lineIndent < parentIndent) { indentStatus = -1; } } else { allowBlockCollections = false; } } } if (allowBlockCollections) { allowBlockCollections = atNewLine || allowCompact; } if (indentStatus === 1 || CONTEXT_BLOCK_OUT === nodeContext) { if (CONTEXT_FLOW_IN === nodeContext || CONTEXT_FLOW_OUT === nodeContext) { flowIndent = parentIndent; } else { flowIndent = parentIndent + 1; } blockIndent = state.position - state.lineStart; if (indentStatus === 1) { if (allowBlockCollections && (readBlockSequence(state, blockIndent) || readBlockMapping(state, blockIndent, flowIndent)) || readFlowCollection(state, flowIndent)) { hasContent = true; } else { const ch = state.input.charCodeAt(state.position); if (propertyStart !== null && allowBlockStyles && !allowBlockCollections && ch !== 124 && ch !== 62 && tryReadBlockMappingFromProperty( state, propertyStart, propertyStart.position - propertyStart.lineStart, flowIndent )) { hasContent = true; } else if (allowBlockScalars && readBlockScalar(state, flowIndent) || readSingleQuotedScalar(state, flowIndent) || readDoubleQuotedScalar(state, flowIndent)) { hasContent = true; } else if (readAlias(state)) { hasContent = true; if (state.tag !== null || state.anchor !== null) { throwError(state, "alias node should not have any properties"); } } else if (readPlainScalar(state, flowIndent, CONTEXT_FLOW_IN === nodeContext)) { hasContent = true; if (state.tag === null) { state.tag = "?"; } } if (state.anchor !== null) { storeAnchor(state, state.anchor, state.result); } } } else if (indentStatus === 0) { hasContent = allowBlockCollections && readBlockSequence(state, blockIndent); } } if (state.tag === null) { if (state.anchor !== null) { storeAnchor(state, state.anchor, state.result); } } else if (state.tag === "?") { if (state.result !== null && state.kind !== "scalar") { throwError(state, 'unacceptable node kind for ! tag; it should be "scalar", not "' + state.kind + '"'); } for (let typeIndex = 0, typeQuantity = state.implicitTypes.length; typeIndex < typeQuantity; typeIndex += 1) { type2 = state.implicitTypes[typeIndex]; if (type2.resolve(state.result)) { state.result = type2.construct(state.result); state.tag = type2.tag; if (state.anchor !== null) { storeAnchor(state, state.anchor, state.result); } break; } } } else if (state.tag !== "!") { if (_hasOwnProperty.call(state.typeMap[state.kind || "fallback"], state.tag)) { type2 = state.typeMap[state.kind || "fallback"][state.tag]; } else { type2 = null; const typeList = state.typeMap.multi[state.kind || "fallback"]; for (let typeIndex = 0, typeQuantity = typeList.length; typeIndex < typeQuantity; typeIndex += 1) { if (state.tag.slice(0, typeList[typeIndex].tag.length) === typeList[typeIndex].tag) { type2 = typeList[typeIndex]; break; } } } if (!type2) { throwError(state, "unknown tag !<" + state.tag + ">"); } if (state.result !== null && type2.kind !== state.kind) { throwError(state, "unacceptable node kind for !<" + state.tag + '> tag; it should be "' + type2.kind + '", not "' + state.kind + '"'); } if (!type2.resolve(state.result, state.tag)) { throwError(state, "cannot resolve a node with !<" + state.tag + "> explicit tag"); } else { state.result = type2.construct(state.result, state.tag); if (state.anchor !== null) { storeAnchor(state, state.anchor, state.result); } } } if (state.listener !== null) { state.listener("close", state); } state.depth -= 1; return state.tag !== null || state.anchor !== null || hasContent; } function readDocument(state) { const documentStart = state.position; let hasDirectives = false; let ch; state.version = null; state.checkLineBreaks = state.legacy; state.tagMap = /* @__PURE__ */ Object.create(null); state.anchorMap = /* @__PURE__ */ Object.create(null); while ((ch = state.input.charCodeAt(state.position)) !== 0) { skipSeparationSpace(state, true, -1); ch = state.input.charCodeAt(state.position); if (state.lineIndent > 0 || ch !== 37) { break; } hasDirectives = true; ch = state.input.charCodeAt(++state.position); let _position = state.position; while (ch !== 0 && !isWsOrEol(ch)) { ch = state.input.charCodeAt(++state.position); } const directiveName = state.input.slice(_position, state.position); const directiveArgs = []; if (directiveName.length < 1) { throwError(state, "directive name must not be less than one character in length"); } while (ch !== 0) { while (isWhiteSpace(ch)) { ch = state.input.charCodeAt(++state.position); } if (ch === 35) { do { ch = state.input.charCodeAt(++state.position); } while (ch !== 0 && !isEol(ch)); break; } if (isEol(ch)) break; _position = state.position; while (ch !== 0 && !isWsOrEol(ch)) { ch = state.input.charCodeAt(++state.position); } directiveArgs.push(state.input.slice(_position, state.position)); } if (ch !== 0) readLineBreak(state); if (_hasOwnProperty.call(directiveHandlers, directiveName)) { directiveHandlers[directiveName](state, directiveName, directiveArgs); } else { throwWarning(state, 'unknown document directive "' + directiveName + '"'); } } skipSeparationSpace(state, true, -1); if (state.lineIndent === 0 && state.input.charCodeAt(state.position) === 45 && state.input.charCodeAt(state.position + 1) === 45 && state.input.charCodeAt(state.position + 2) === 45) { state.position += 3; skipSeparationSpace(state, true, -1); } else if (hasDirectives) { throwError(state, "directives end mark is expected"); } composeNode(state, state.lineIndent - 1, CONTEXT_BLOCK_OUT, false, true); skipSeparationSpace(state, true, -1); if (state.checkLineBreaks && PATTERN_NON_ASCII_LINE_BREAKS.test(state.input.slice(documentStart, state.position))) { throwWarning(state, "non-ASCII line breaks are interpreted as content"); } state.documents.push(state.result); if (state.position === state.lineStart && testDocumentSeparator(state)) { if (state.input.charCodeAt(state.position) === 46) { state.position += 3; skipSeparationSpace(state, true, -1); } return; } if (state.position < state.length - 1) { throwError(state, "end of the stream or a document separator is expected"); } } function loadDocuments(input, options) { input = String(input); options = options || {}; if (input.length !== 0) { if (input.charCodeAt(input.length - 1) !== 10 && input.charCodeAt(input.length - 1) !== 13) { input += "\n"; } if (input.charCodeAt(0) === 65279) { input = input.slice(1); } } const state = new State(input, options); const nullpos = input.indexOf("\0"); if (nullpos !== -1) { state.position = nullpos; throwError(state, "null byte is not allowed in input"); } state.input += "\0"; while (state.input.charCodeAt(state.position) === 32) { state.lineIndent += 1; state.position += 1; } while (state.position < state.length - 1) { readDocument(state); } return state.documents; } function loadAll2(input, iterator, options) { if (iterator !== null && typeof iterator === "object" && typeof options === "undefined") { options = iterator; iterator = null; } const documents = loadDocuments(input, options); if (typeof iterator !== "function") { return documents; } for (let index = 0, length = documents.length; index < length; index += 1) { iterator(documents[index]); } } function load2(input, options) { const documents = loadDocuments(input, options); if (documents.length === 0) { return void 0; } else if (documents.length === 1) { return documents[0]; } throw new YAMLException2("expected a single document in the stream, but found more"); } loader.loadAll = loadAll2; loader.load = load2; return loader; } var dumper = {}; var hasRequiredDumper; function requireDumper() { if (hasRequiredDumper) return dumper; hasRequiredDumper = 1; const common2 = requireCommon(); const YAMLException2 = requireException(); const DEFAULT_SCHEMA2 = require_default(); const _toString = Object.prototype.toString; const _hasOwnProperty = Object.prototype.hasOwnProperty; const CHAR_BOM = 65279; const CHAR_TAB = 9; const CHAR_LINE_FEED = 10; const CHAR_CARRIAGE_RETURN = 13; const CHAR_SPACE = 32; const CHAR_EXCLAMATION = 33; const CHAR_DOUBLE_QUOTE = 34; const CHAR_SHARP = 35; const CHAR_PERCENT = 37; const CHAR_AMPERSAND = 38; const CHAR_SINGLE_QUOTE = 39; const CHAR_ASTERISK = 42; const CHAR_COMMA = 44; const CHAR_MINUS = 45; const CHAR_COLON = 58; const CHAR_EQUALS = 61; const CHAR_GREATER_THAN = 62; const CHAR_QUESTION = 63; const CHAR_COMMERCIAL_AT = 64; const CHAR_LEFT_SQUARE_BRACKET = 91; const CHAR_RIGHT_SQUARE_BRACKET = 93; const CHAR_GRAVE_ACCENT = 96; const CHAR_LEFT_CURLY_BRACKET = 123; const CHAR_VERTICAL_LINE = 124; const CHAR_RIGHT_CURLY_BRACKET = 125; const ESCAPE_SEQUENCES = {}; ESCAPE_SEQUENCES[0] = "\\0"; ESCAPE_SEQUENCES[7] = "\\a"; ESCAPE_SEQUENCES[8] = "\\b"; ESCAPE_SEQUENCES[9] = "\\t"; ESCAPE_SEQUENCES[10] = "\\n"; ESCAPE_SEQUENCES[11] = "\\v"; ESCAPE_SEQUENCES[12] = "\\f"; ESCAPE_SEQUENCES[13] = "\\r"; ESCAPE_SEQUENCES[27] = "\\e"; ESCAPE_SEQUENCES[34] = '\\"'; ESCAPE_SEQUENCES[92] = "\\\\"; ESCAPE_SEQUENCES[133] = "\\N"; ESCAPE_SEQUENCES[160] = "\\_"; ESCAPE_SEQUENCES[8232] = "\\L"; ESCAPE_SEQUENCES[8233] = "\\P"; const DEPRECATED_BOOLEANS_SYNTAX = [ "y", "Y", "yes", "Yes", "YES", "on", "On", "ON", "n", "N", "no", "No", "NO", "off", "Off", "OFF" ]; const DEPRECATED_BASE60_SYNTAX = /^[-+]?[0-9_]+(?::[0-9_]+)+(?:\.[0-9_]*)?$/; function compileStyleMap(schema2, map2) { if (map2 === null) return {}; const result = {}; const keys = Object.keys(map2); for (let index = 0, length = keys.length; index < length; index += 1) { let tag = keys[index]; let style = String(map2[tag]); if (tag.slice(0, 2) === "!!") { tag = "tag:yaml.org,2002:" + tag.slice(2); } const type2 = schema2.compiledTypeMap["fallback"][tag]; if (type2 && _hasOwnProperty.call(type2.styleAliases, style)) { style = type2.styleAliases[style]; } result[tag] = style; } return result; } function encodeHex(character) { let handle; let length; const string = character.toString(16).toUpperCase(); if (character <= 255) { handle = "x"; length = 2; } else if (character <= 65535) { handle = "u"; length = 4; } else if (character <= 4294967295) { handle = "U"; length = 8; } else { throw new YAMLException2("code point within a string may not be greater than 0xFFFFFFFF"); } return "\\" + handle + common2.repeat("0", length - string.length) + string; } const QUOTING_TYPE_SINGLE = 1; const QUOTING_TYPE_DOUBLE = 2; function State(options) { this.schema = options["schema"] || DEFAULT_SCHEMA2; this.indent = Math.max(1, options["indent"] || 2); this.noArrayIndent = options["noArrayIndent"] || false; this.skipInvalid = options["skipInvalid"] || false; this.flowLevel = common2.isNothing(options["flowLevel"]) ? -1 : options["flowLevel"]; this.styleMap = compileStyleMap(this.schema, options["styles"] || null); this.sortKeys = options["sortKeys"] || false; this.lineWidth = options["lineWidth"] || 80; this.noRefs = options["noRefs"] || false; this.noCompatMode = options["noCompatMode"] || false; this.condenseFlow = options["condenseFlow"] || false; this.quotingType = options["quotingType"] === '"' ? QUOTING_TYPE_DOUBLE : QUOTING_TYPE_SINGLE; this.forceQuotes = options["forceQuotes"] || false; this.replacer = typeof options["replacer"] === "function" ? options["replacer"] : null; this.implicitTypes = this.schema.compiledImplicit; this.explicitTypes = this.schema.compiledExplicit; this.tag = null; this.result = ""; this.duplicates = []; this.usedDuplicates = null; } function indentString(string, spaces) { const ind = common2.repeat(" ", spaces); let position = 0; let result = ""; const length = string.length; while (position < length) { let line; const next = string.indexOf("\n", position); if (next === -1) { line = string.slice(position); position = length; } else { line = string.slice(position, next + 1); position = next + 1; } if (line.length && line !== "\n") result += ind; result += line; } return result; } function generateNextLine(state, level) { return "\n" + common2.repeat(" ", state.indent * level); } function testImplicitResolving(state, str2) { for (let index = 0, length = state.implicitTypes.length; index < length; index += 1) { const type2 = state.implicitTypes[index]; if (type2.resolve(str2)) { return true; } } return false; } function isWhitespace(c) { return c === CHAR_SPACE || c === CHAR_TAB; } function isPrintable(c) { return c >= 32 && c <= 126 || c >= 161 && c <= 55295 && c !== 8232 && c !== 8233 || c >= 57344 && c <= 65533 && c !== CHAR_BOM || c >= 65536 && c <= 1114111; } function isNsCharOrWhitespace(c) { return isPrintable(c) && c !== CHAR_BOM && // - b-char c !== CHAR_CARRIAGE_RETURN && c !== CHAR_LINE_FEED; } function isPlainSafe(c, prev, inblock) { const cIsNsCharOrWhitespace = isNsCharOrWhitespace(c); const cIsNsChar = cIsNsCharOrWhitespace && !isWhitespace(c); return ( // ns-plain-safe (inblock ? cIsNsCharOrWhitespace : cIsNsCharOrWhitespace && // - c-flow-indicator c !== CHAR_COMMA && c !== CHAR_LEFT_SQUARE_BRACKET && c !== CHAR_RIGHT_SQUARE_BRACKET && c !== CHAR_LEFT_CURLY_BRACKET && c !== CHAR_RIGHT_CURLY_BRACKET) && // ns-plain-char c !== CHAR_SHARP && // false on '#' !(prev === CHAR_COLON && !cIsNsChar) || // false on ': ' isNsCharOrWhitespace(prev) && !isWhitespace(prev) && c === CHAR_SHARP || // change to true on '[^ ]#' prev === CHAR_COLON && cIsNsChar ); } function isPlainSafeFirst(c) { return isPrintable(c) && c !== CHAR_BOM && !isWhitespace(c) && // - s-white // - (c-indicator ::= // “-” | “?” | “:” | “,” | “[” | “]” | “{” | “}” c !== CHAR_MINUS && c !== CHAR_QUESTION && c !== CHAR_COLON && c !== CHAR_COMMA && c !== CHAR_LEFT_SQUARE_BRACKET && c !== CHAR_RIGHT_SQUARE_BRACKET && c !== CHAR_LEFT_CURLY_BRACKET && c !== CHAR_RIGHT_CURLY_BRACKET && // | “#” | “&” | “*” | “!” | “|” | “=” | “>” | “'” | “"” c !== CHAR_SHARP && c !== CHAR_AMPERSAND && c !== CHAR_ASTERISK && c !== CHAR_EXCLAMATION && c !== CHAR_VERTICAL_LINE && c !== CHAR_EQUALS && c !== CHAR_GREATER_THAN && c !== CHAR_SINGLE_QUOTE && c !== CHAR_DOUBLE_QUOTE && // | “%” | “@” | “`”) c !== CHAR_PERCENT && c !== CHAR_COMMERCIAL_AT && c !== CHAR_GRAVE_ACCENT; } function isPlainSafeLast(c) { return !isWhitespace(c) && c !== CHAR_COLON; } function codePointAt(string, pos) { const first = string.charCodeAt(pos); let second; if (first >= 55296 && first <= 56319 && pos + 1 < string.length) { second = string.charCodeAt(pos + 1); if (second >= 56320 && second <= 57343) { return (first - 55296) * 1024 + second - 56320 + 65536; } } return first; } function needIndentIndicator(string) { const leadingSpaceRe = /^\n* /; return leadingSpaceRe.test(string); } const STYLE_PLAIN = 1; const STYLE_SINGLE = 2; const STYLE_LITERAL = 3; const STYLE_FOLDED = 4; const STYLE_DOUBLE = 5; function chooseScalarStyle(string, singleLineOnly, indentPerLevel, lineWidth, testAmbiguousType, quotingType, forceQuotes, inblock) { let i; let char = 0; let prevChar = null; let hasLineBreak = false; let hasFoldableLine = false; const shouldTrackWidth = lineWidth !== -1; let previousLineBreak = -1; let plain = isPlainSafeFirst(codePointAt(string, 0)) && isPlainSafeLast(codePointAt(string, string.length - 1)); if (singleLineOnly || forceQuotes) { for (i = 0; i < string.length; char >= 65536 ? i += 2 : i++) { char = codePointAt(string, i); if (!isPrintable(char)) { return STYLE_DOUBLE; } plain = plain && isPlainSafe(char, prevChar, inblock); prevChar = char; } } else { for (i = 0; i < string.length; char >= 65536 ? i += 2 : i++) { char = codePointAt(string, i); if (char === CHAR_LINE_FEED) { hasLineBreak = true; if (shouldTrackWidth) { hasFoldableLine = hasFoldableLine || // Foldable line = too long, and not more-indented. i - previousLineBreak - 1 > lineWidth && string[previousLineBreak + 1] !== " "; previousLineBreak = i; } } else if (!isPrintable(char)) { return STYLE_DOUBLE; } plain = plain && isPlainSafe(char, prevChar, inblock); prevChar = char; } hasFoldableLine = hasFoldableLine || shouldTrackWidth && (i - previousLineBreak - 1 > lineWidth && string[previousLineBreak + 1] !== " "); } if (!hasLineBreak && !hasFoldableLine) { if (plain && !forceQuotes && !testAmbiguousType(string)) { return STYLE_PLAIN; } return quotingType === QUOTING_TYPE_DOUBLE ? STYLE_DOUBLE : STYLE_SINGLE; } if (indentPerLevel > 9 && needIndentIndicator(string)) { return STYLE_DOUBLE; } if (!forceQuotes) { return hasFoldableLine ? STYLE_FOLDED : STYLE_LITERAL; } return quotingType === QUOTING_TYPE_DOUBLE ? STYLE_DOUBLE : STYLE_SINGLE; } function writeScalar(state, string, level, iskey, inblock) { state.dump = (function() { if (string.length === 0) { return state.quotingType === QUOTING_TYPE_DOUBLE ? '""' : "''"; } if (!state.noCompatMode) { if (DEPRECATED_BOOLEANS_SYNTAX.indexOf(string) !== -1 || DEPRECATED_BASE60_SYNTAX.test(string)) { return state.quotingType === QUOTING_TYPE_DOUBLE ? '"' + string + '"' : "'" + string + "'"; } } const indent = state.indent * Math.max(1, level); const lineWidth = state.lineWidth === -1 ? -1 : Math.max(Math.min(state.lineWidth, 40), state.lineWidth - indent); const singleLineOnly = iskey || // No block styles in flow mode. state.flowLevel > -1 && level >= state.flowLevel; function testAmbiguity(string2) { return testImplicitResolving(state, string2); } switch (chooseScalarStyle( string, singleLineOnly, state.indent, lineWidth, testAmbiguity, state.quotingType, state.forceQuotes && !iskey, inblock )) { case STYLE_PLAIN: return string; case STYLE_SINGLE: return "'" + string.replace(/'/g, "''") + "'"; case STYLE_LITERAL: return "|" + blockHeader(string, state.indent) + dropEndingNewline(indentString(string, indent)); case STYLE_FOLDED: return ">" + blockHeader(string, state.indent) + dropEndingNewline(indentString(foldString(string, lineWidth), indent)); case STYLE_DOUBLE: return '"' + escapeString(string) + '"'; default: throw new YAMLException2("impossible error: invalid scalar style"); } })(); } function blockHeader(string, indentPerLevel) { const indentIndicator = needIndentIndicator(string) ? String(indentPerLevel) : ""; const clip = string[string.length - 1] === "\n"; const keep = clip && (string[string.length - 2] === "\n" || string === "\n"); const chomp = keep ? "+" : clip ? "" : "-"; return indentIndicator + chomp + "\n"; } function dropEndingNewline(string) { return string[string.length - 1] === "\n" ? string.slice(0, -1) : string; } function foldString(string, width) { const lineRe = /(\n+)([^\n]*)/g; let result = (function() { let nextLF = string.indexOf("\n"); nextLF = nextLF !== -1 ? nextLF : string.length; lineRe.lastIndex = nextLF; return foldLine(string.slice(0, nextLF), width); })(); let prevMoreIndented = string[0] === "\n" || string[0] === " "; let moreIndented; let match; while (match = lineRe.exec(string)) { const prefix = match[1]; const line = match[2]; moreIndented = line[0] === " "; result += prefix + (!prevMoreIndented && !moreIndented && line !== "" ? "\n" : "") + foldLine(line, width); prevMoreIndented = moreIndented; } return result; } function foldLine(line, width) { if (line === "" || line[0] === " ") return line; const breakRe = / [^ ]/g; let match; let start = 0; let end; let curr = 0; let next = 0; let result = ""; while (match = breakRe.exec(line)) { next = match.index; if (next - start > width) { end = curr > start ? curr : next; result += "\n" + line.slice(start, end); start = end + 1; } curr = next; } result += "\n"; if (line.length - start > width && curr > start) { result += line.slice(start, curr) + "\n" + line.slice(curr + 1); } else { result += line.slice(start); } return result.slice(1); } function escapeString(string) { let result = ""; let char = 0; for (let i = 0; i < string.length; char >= 65536 ? i += 2 : i++) { char = codePointAt(string, i); const escapeSeq = ESCAPE_SEQUENCES[char]; if (!escapeSeq && isPrintable(char)) { result += string[i]; if (char >= 65536) result += string[i + 1]; } else { result += escapeSeq || encodeHex(char); } } return result; } function writeFlowSequence(state, level, object) { let _result = ""; const _tag = state.tag; for (let index = 0, length = object.length; index < length; index += 1) { let value = object[index]; if (state.replacer) { value = state.replacer.call(object, String(index), value); } if (writeNode(state, level, value, false, false) || typeof value === "undefined" && writeNode(state, level, null, false, false)) { if (_result !== "") _result += "," + (!state.condenseFlow ? " " : ""); _result += state.dump; } } state.tag = _tag; state.dump = "[" + _result + "]"; } function writeBlockSequence(state, level, object, compact) { let _result = ""; const _tag = state.tag; for (let index = 0, length = object.length; index < length; index += 1) { let value = object[index]; if (state.replacer) { value = state.replacer.call(object, String(index), value); } if (writeNode(state, level + 1, value, true, true, false, true) || typeof value === "undefined" && writeNode(state, level + 1, null, true, true, false, true)) { if (!compact || _result !== "") { _result += generateNextLine(state, level); } if (state.dump && CHAR_LINE_FEED === state.dump.charCodeAt(0)) { _result += "-"; } else { _result += "- "; } _result += state.dump; } } state.tag = _tag; state.dump = _result || "[]"; } function writeFlowMapping(state, level, object) { let _result = ""; const _tag = state.tag; const objectKeyList = Object.keys(object); for (let index = 0, length = objectKeyList.length; index < length; index += 1) { let pairBuffer = ""; if (_result !== "") pairBuffer += ", "; if (state.condenseFlow) pairBuffer += '"'; const objectKey = objectKeyList[index]; let objectValue = object[objectKey]; if (state.replacer) { objectValue = state.replacer.call(object, objectKey, objectValue); } if (!writeNode(state, level, objectKey, false, false)) { continue; } if (state.dump.length > 1024) pairBuffer += "? "; pairBuffer += state.dump + (state.condenseFlow ? '"' : "") + ":" + (state.condenseFlow ? "" : " "); if (!writeNode(state, level, objectValue, false, false)) { continue; } pairBuffer += state.dump; _result += pairBuffer; } state.tag = _tag; state.dump = "{" + _result + "}"; } function writeBlockMapping(state, level, object, compact) { let _result = ""; const _tag = state.tag; const objectKeyList = Object.keys(object); if (state.sortKeys === true) { objectKeyList.sort(); } else if (typeof state.sortKeys === "function") { objectKeyList.sort(state.sortKeys); } else if (state.sortKeys) { throw new YAMLException2("sortKeys must be a boolean or a function"); } for (let index = 0, length = objectKeyList.length; index < length; index += 1) { let pairBuffer = ""; if (!compact || _result !== "") { pairBuffer += generateNextLine(state, level); } const objectKey = objectKeyList[index]; let objectValue = object[objectKey]; if (state.replacer) { objectValue = state.replacer.call(object, objectKey, objectValue); } if (!writeNode(state, level + 1, objectKey, true, true, true)) { continue; } const explicitPair = state.tag !== null && state.tag !== "?" || state.dump && state.dump.length > 1024; if (explicitPair) { if (state.dump && CHAR_LINE_FEED === state.dump.charCodeAt(0)) { pairBuffer += "?"; } else { pairBuffer += "? "; } } pairBuffer += state.dump; if (explicitPair) { pairBuffer += generateNextLine(state, level); } if (!writeNode(state, level + 1, objectValue, true, explicitPair)) { continue; } if (state.dump && CHAR_LINE_FEED === state.dump.charCodeAt(0)) { pairBuffer += ":"; } else { pairBuffer += ": "; } pairBuffer += state.dump; _result += pairBuffer; } state.tag = _tag; state.dump = _result || "{}"; } function detectType(state, object, explicit) { const typeList = explicit ? state.explicitTypes : state.implicitTypes; for (let index = 0, length = typeList.length; index < length; index += 1) { const type2 = typeList[index]; if ((type2.instanceOf || type2.predicate) && (!type2.instanceOf || typeof object === "object" && object instanceof type2.instanceOf) && (!type2.predicate || type2.predicate(object))) { if (explicit) { if (type2.multi && type2.representName) { state.tag = type2.representName(object); } else { state.tag = type2.tag; } } else { state.tag = "?"; } if (type2.represent) { const style = state.styleMap[type2.tag] || type2.defaultStyle; let _result; if (_toString.call(type2.represent) === "[object Function]") { _result = type2.represent(object, style); } else if (_hasOwnProperty.call(type2.represent, style)) { _result = type2.represent[style](object, style); } else { throw new YAMLException2("!<" + type2.tag + '> tag resolver accepts not "' + style + '" style'); } state.dump = _result; } return true; } } return false; } function writeNode(state, level, object, block, compact, iskey, isblockseq) { state.tag = null; state.dump = object; if (!detectType(state, object, false)) { detectType(state, object, true); } const type2 = _toString.call(state.dump); const inblock = block; if (block) { block = state.flowLevel < 0 || state.flowLevel > level; } const objectOrArray = type2 === "[object Object]" || type2 === "[object Array]"; let duplicateIndex; let duplicate; if (objectOrArray) { duplicateIndex = state.duplicates.indexOf(object); duplicate = duplicateIndex !== -1; } if (state.tag !== null && state.tag !== "?" || duplicate || state.indent !== 2 && level > 0) { compact = false; } if (duplicate && state.usedDuplicates[duplicateIndex]) { state.dump = "*ref_" + duplicateIndex; } else { if (objectOrArray && duplicate && !state.usedDuplicates[duplicateIndex]) { state.usedDuplicates[duplicateIndex] = true; } if (type2 === "[object Object]") { if (block && Object.keys(state.dump).length !== 0) { writeBlockMapping(state, level, state.dump, compact); if (duplicate) { state.dump = "&ref_" + duplicateIndex + state.dump; } } else { writeFlowMapping(state, level, state.dump); if (duplicate) { state.dump = "&ref_" + duplicateIndex + " " + state.dump; } } } else if (type2 === "[object Array]") { if (block && state.dump.length !== 0) { if (state.noArrayIndent && !isblockseq && level > 0) { writeBlockSequence(state, level - 1, state.dump, compact); } else { writeBlockSequence(state, level, state.dump, compact); } if (duplicate) { state.dump = "&ref_" + duplicateIndex + state.dump; } } else { writeFlowSequence(state, level, state.dump); if (duplicate) { state.dump = "&ref_" + duplicateIndex + " " + state.dump; } } } else if (type2 === "[object String]") { if (state.tag !== "?") { writeScalar(state, state.dump, level, iskey, inblock); } } else if (type2 === "[object Undefined]") { return false; } else { if (state.skipInvalid) return false; throw new YAMLException2("unacceptable kind of an object to dump " + type2); } if (state.tag !== null && state.tag !== "?") { let tagStr = encodeURI( state.tag[0] === "!" ? state.tag.slice(1) : state.tag ).replace(/!/g, "%21"); if (state.tag[0] === "!") { tagStr = "!" + tagStr; } else if (tagStr.slice(0, 18) === "tag:yaml.org,2002:") { tagStr = "!!" + tagStr.slice(18); } else { tagStr = "!<" + tagStr + ">"; } state.dump = tagStr + " " + state.dump; } } return true; } function getDuplicateReferences(object, state) { const objects = []; const duplicatesIndexes = []; inspectNode(object, objects, duplicatesIndexes); const length = duplicatesIndexes.length; for (let index = 0; index < length; index += 1) { state.duplicates.push(objects[duplicatesIndexes[index]]); } state.usedDuplicates = new Array(length); } function inspectNode(object, objects, duplicatesIndexes) { if (object !== null && typeof object === "object") { const index = objects.indexOf(object); if (index !== -1) { if (duplicatesIndexes.indexOf(index) === -1) { duplicatesIndexes.push(index); } } else { objects.push(object); if (Array.isArray(object)) { for (let i = 0, length = object.length; i < length; i += 1) { inspectNode(object[i], objects, duplicatesIndexes); } } else { const objectKeyList = Object.keys(object); for (let i = 0, length = objectKeyList.length; i < length; i += 1) { inspectNode(object[objectKeyList[i]], objects, duplicatesIndexes); } } } } } function dump2(input, options) { options = options || {}; const state = new State(options); if (!state.noRefs) getDuplicateReferences(input, state); let value = input; if (state.replacer) { value = state.replacer.call({ "": value }, "", value); } if (writeNode(state, 0, value, true, true)) return state.dump + "\n"; return ""; } dumper.dump = dump2; return dumper; } var hasRequiredJsYaml; function requireJsYaml() { if (hasRequiredJsYaml) return jsYaml; hasRequiredJsYaml = 1; const loader2 = requireLoader(); const dumper2 = requireDumper(); function renamed(from, to) { return function() { throw new Error("Function yaml." + from + " is removed in js-yaml 4. Use yaml." + to + " instead, which is now safe by default."); }; } jsYaml.Type = requireType(); jsYaml.Schema = requireSchema(); jsYaml.FAILSAFE_SCHEMA = requireFailsafe(); jsYaml.JSON_SCHEMA = requireJson(); jsYaml.CORE_SCHEMA = requireCore(); jsYaml.DEFAULT_SCHEMA = require_default(); jsYaml.load = loader2.load; jsYaml.loadAll = loader2.loadAll; jsYaml.dump = dumper2.dump; jsYaml.YAMLException = requireException(); jsYaml.types = { binary: requireBinary(), float: requireFloat(), map: requireMap(), null: require_null(), pairs: requirePairs(), set: requireSet(), timestamp: requireTimestamp(), bool: requireBool(), int: requireInt(), merge: requireMerge(), omap: requireOmap(), seq: requireSeq(), str: requireStr() }; jsYaml.safeLoad = renamed("safeLoad", "load"); jsYaml.safeLoadAll = renamed("safeLoadAll", "loadAll"); jsYaml.safeDump = renamed("safeDump", "dump"); return jsYaml; } var jsYamlExports = requireJsYaml(); const yaml = /* @__PURE__ */ getDefaultExportFromCjs(jsYamlExports); const { Type, Schema, FAILSAFE_SCHEMA, JSON_SCHEMA, CORE_SCHEMA, DEFAULT_SCHEMA, load, loadAll, dump, YAMLException, types, safeLoad, safeLoadAll, safeDump } = yaml; export { CORE_SCHEMA, DEFAULT_SCHEMA, FAILSAFE_SCHEMA, JSON_SCHEMA, Schema, Type, YAMLException, yaml as default, dump, load, loadAll, safeDump, safeLoad, safeLoadAll, types }; //# sourceMappingURL=js-yaml.mjs.map