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{"version":3,"file":"source-map.umd.js","sources":["../node_modules/@jridgewell/sourcemap-codec/dist/sourcemap-codec.mjs","../node_modules/@jridgewell/resolve-uri/dist/resolve-uri.mjs","../node_modules/@jridgewell/trace-mapping/dist/trace-mapping.mjs","../node_modules/@jridgewell/set-array/dist/set-array.mjs","../node_modules/@jridgewell/gen-mapping/dist/gen-mapping.mjs","../../src/source-map.ts"],"sourcesContent":["const comma = ','.charCodeAt(0);\nconst semicolon = ';'.charCodeAt(0);\nconst chars = 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/';\nconst intToChar = new Uint8Array(64); // 64 possible chars.\nconst charToInteger = new Uint8Array(128); // z is 122 in ASCII\nfor (let i = 0; i < chars.length; i++) {\n const c = chars.charCodeAt(i);\n charToInteger[c] = i;\n intToChar[i] = c;\n}\n// Provide a fallback for older environments.\nconst td = typeof TextDecoder !== 'undefined'\n ? new TextDecoder()\n : typeof Buffer !== 'undefined'\n ? {\n decode(buf) {\n const out = Buffer.from(buf.buffer, buf.byteOffset, buf.byteLength);\n return out.toString();\n },\n }\n : {\n decode(buf) {\n let out = '';\n for (let i = 0; i < buf.length; i++) {\n out += String.fromCharCode(buf[i]);\n }\n return out;\n },\n };\nfunction decode(mappings) {\n const state = new Int32Array(5);\n const decoded = [];\n let line = [];\n let sorted = true;\n let lastCol = 0;\n for (let i = 0; i < mappings.length;) {\n const c = mappings.charCodeAt(i);\n if (c === comma) {\n i++;\n }\n else if (c === semicolon) {\n state[0] = lastCol = 0;\n if (!sorted)\n sort(line);\n sorted = true;\n decoded.push(line);\n line = [];\n i++;\n }\n else {\n i = decodeInteger(mappings, i, state, 0); // generatedCodeColumn\n const col = state[0];\n if (col < lastCol)\n sorted = false;\n lastCol = col;\n if (!hasMoreSegments(mappings, i)) {\n line.push([col]);\n continue;\n }\n i = decodeInteger(mappings, i, state, 1); // sourceFileIndex\n i = decodeInteger(mappings, i, state, 2); // sourceCodeLine\n i = decodeInteger(mappings, i, state, 3); // sourceCodeColumn\n if (!hasMoreSegments(mappings, i)) {\n line.push([col, state[1], state[2], state[3]]);\n continue;\n }\n i = decodeInteger(mappings, i, state, 4); // nameIndex\n line.push([col, state[1], state[2], state[3], state[4]]);\n }\n }\n if (!sorted)\n sort(line);\n decoded.push(line);\n return decoded;\n}\nfunction decodeInteger(mappings, pos, state, j) {\n let value = 0;\n let shift = 0;\n let integer = 0;\n do {\n const c = mappings.charCodeAt(pos++);\n integer = charToInteger[c];\n value |= (integer & 31) << shift;\n shift += 5;\n } while (integer & 32);\n const shouldNegate = value & 1;\n value >>>= 1;\n if (shouldNegate) {\n value = -0x80000000 | -value;\n }\n state[j] += value;\n return pos;\n}\nfunction hasMoreSegments(mappings, i) {\n if (i >= mappings.length)\n return false;\n const c = mappings.charCodeAt(i);\n if (c === comma || c === semicolon)\n return false;\n return true;\n}\nfunction sort(line) {\n line.sort(sortComparator);\n}\nfunction sortComparator(a, b) {\n return a[0] - b[0];\n}\nfunction encode(decoded) {\n const state = new Int32Array(5);\n let buf = new Uint8Array(1024);\n let pos = 0;\n for (let i = 0; i < decoded.length; i++) {\n const line = decoded[i];\n if (i > 0) {\n buf = reserve(buf, pos, 1);\n buf[pos++] = semicolon;\n }\n if (line.length === 0)\n continue;\n state[0] = 0;\n for (let j = 0; j < line.length; j++) {\n const segment = line[j];\n // We can push up to 5 ints, each int can take at most 7 chars, and we\n // may push a comma.\n buf = reserve(buf, pos, 36);\n if (j > 0)\n buf[pos++] = comma;\n pos = encodeInteger(buf, pos, state, segment, 0); // generatedCodeColumn\n if (segment.length === 1)\n continue;\n pos = encodeInteger(buf, pos, state, segment, 1); // sourceFileIndex\n pos = encodeInteger(buf, pos, state, segment, 2); // sourceCodeLine\n pos = encodeInteger(buf, pos, state, segment, 3); // sourceCodeColumn\n if (segment.length === 4)\n continue;\n pos = encodeInteger(buf, pos, state, segment, 4); // nameIndex\n }\n }\n return td.decode(buf.subarray(0, pos));\n}\nfunction reserve(buf, pos, count) {\n if (buf.length > pos + count)\n return buf;\n const swap = new Uint8Array(buf.length * 2);\n swap.set(buf);\n return swap;\n}\nfunction encodeInteger(buf, pos, state, segment, j) {\n const next = segment[j];\n let num = next - state[j];\n state[j] = next;\n num = num < 0 ? (-num << 1) | 1 : num << 1;\n do {\n let clamped = num & 0b011111;\n num >>>= 5;\n if (num > 0)\n clamped |= 0b100000;\n buf[pos++] = intToChar[clamped];\n } while (num > 0);\n return pos;\n}\n\nexport { decode, encode };\n//# sourceMappingURL=sourcemap-codec.mjs.map\n","// Matches the scheme of a URL, eg \"http://\"\nconst schemeRegex = /^[\\w+.-]+:\\/\\//;\n/**\n * Matches the parts of a URL:\n * 1. Scheme, including \":\", guaranteed.\n * 2. User/password, including \"@\", optional.\n * 3. Host, guaranteed.\n * 4. Port, including \":\", optional.\n * 5. Path, including \"/\", optional.\n */\nconst urlRegex = /^([\\w+.-]+:)\\/\\/([^@/#?]*@)?([^:/#?]*)(:\\d+)?(\\/[^#?]*)?/;\n/**\n * File URLs are weird. They dont' need the regular `//` in the scheme, they may or may not start\n * with a leading `/`, they can have a domain (but only if they don't start with a Windows drive).\n *\n * 1. Host, optional.\n * 2. Path, which may inclue \"/\", guaranteed.\n */\nconst fileRegex = /^file:(?:\\/\\/((?![a-z]:)[^/]*)?)?(\\/?.*)/i;\nfunction isAbsoluteUrl(input) {\n return schemeRegex.test(input);\n}\nfunction isSchemeRelativeUrl(input) {\n return input.startsWith('//');\n}\nfunction isAbsolutePath(input) {\n return input.startsWith('/');\n}\nfunction isFileUrl(input) {\n return input.startsWith('file:');\n}\nfunction parseAbsoluteUrl(input) {\n const match = urlRegex.exec(input);\n return makeUrl(match[1], match[2] || '', match[3], match[4] || '', match[5] || '/');\n}\nfunction parseFileUrl(input) {\n const match = fileRegex.exec(input);\n const path = match[2];\n return makeUrl('file:', '', match[1] || '', '', isAbsolutePath(path) ? path : '/' + path);\n}\nfunction makeUrl(scheme, user, host, port, path) {\n return {\n scheme,\n user,\n host,\n port,\n path,\n relativePath: false,\n };\n}\nfunction parseUrl(input) {\n if (isSchemeRelativeUrl(input)) {\n const url = parseAbsoluteUrl('http:' + input);\n url.scheme = '';\n return url;\n }\n if (isAbsolutePath(input)) {\n const url = parseAbsoluteUrl('http://foo.com' + input);\n url.scheme = '';\n url.host = '';\n return url;\n }\n if (isFileUrl(input))\n return parseFileUrl(input);\n if (isAbsoluteUrl(input))\n return parseAbsoluteUrl(input);\n const url = parseAbsoluteUrl('http://foo.com/' + input);\n url.scheme = '';\n url.host = '';\n url.relativePath = true;\n return url;\n}\nfunction stripPathFilename(path) {\n // If a path ends with a parent directory \"..\", then it's a relative path with excess parent\n // paths. It's not a file, so we can't strip it.\n if (path.endsWith('/..'))\n return path;\n const index = path.lastIndexOf('/');\n return path.slice(0, index + 1);\n}\nfunction mergePaths(url, base) {\n // If we're not a relative path, then we're an absolute path, and it doesn't matter what base is.\n if (!url.relativePath)\n return;\n normalizePath(base);\n // If the path is just a \"/\", then it was an empty path to begin with (remember, we're a relative\n // path).\n if (url.path === '/') {\n url.path = base.path;\n }\n else {\n // Resolution happens relative to the base path's directory, not the file.\n url.path = stripPathFilename(base.path) + url.path;\n }\n // If the base path is absolute, then our path is now absolute too.\n url.relativePath = base.relativePath;\n}\n/**\n * The path can have empty directories \"//\", unneeded parents \"foo/..\", or current directory\n * \"foo/.\". We need to normalize to a standard representation.\n */\nfunction normalizePath(url) {\n const { relativePath } = url;\n const pieces = url.path.split('/');\n // We need to preserve the first piece always, so that we output a leading slash. The item at\n // pieces[0] is an empty string.\n let pointer = 1;\n // Positive is the number of real directories we've output, used for popping a parent directory.\n // Eg, \"foo/bar/..\" will have a positive 2, and we can decrement to be left with just \"foo\".\n let positive = 0;\n // We need to keep a trailing slash if we encounter an empty directory (eg, splitting \"foo/\" will\n // generate `[\"foo\", \"\"]` pieces). And, if we pop a parent directory. But once we encounter a\n // real directory, we won't need to append, unless the other conditions happen again.\n let addTrailingSlash = false;\n for (let i = 1; i < pieces.length; i++) {\n const piece = pieces[i];\n // An empty directory, could be a trailing slash, or just a double \"//\" in the path.\n if (!piece) {\n addTrailingSlash = true;\n continue;\n }\n // If we encounter a real directory, then we don't need to append anymore.\n addTrailingSlash = false;\n // A current directory, which we can always drop.\n if (piece === '.')\n continue;\n // A parent directory, we need to see if there are any real directories we can pop. Else, we\n // have an excess of parents, and we'll need to keep the \"..\".\n if (piece === '..') {\n if (positive) {\n addTrailingSlash = true;\n positive--;\n pointer--;\n }\n else if (relativePath) {\n // If we're in a relativePath, then we need to keep the excess parents. Else, in an absolute\n // URL, protocol relative URL, or an absolute path, we don't need to keep excess.\n pieces[pointer++] = piece;\n }\n continue;\n }\n // We've encountered a real directory. Move it to the next insertion pointer, which accounts for\n // any popped or dropped directories.\n pieces[pointer++] = piece;\n positive++;\n }\n let path = '';\n for (let i = 1; i < pointer; i++) {\n path += '/' + pieces[i];\n }\n if (!path || (addTrailingSlash && !path.endsWith('/..'))) {\n path += '/';\n }\n url.path = path;\n}\n/**\n * Attempts to resolve `input` URL/path relative to `base`.\n */\nfunction resolve(input, base) {\n if (!input && !base)\n return '';\n const url = parseUrl(input);\n // If we have a base, and the input isn't already an absolute URL, then we need to merge.\n if (base && !url.scheme) {\n const baseUrl = parseUrl(base);\n url.scheme = baseUrl.scheme;\n // If there's no host, then we were just a path.\n if (!url.host) {\n // The host, user, and port are joined, you can't copy one without the others.\n url.user = baseUrl.user;\n url.host = baseUrl.host;\n url.port = baseUrl.port;\n }\n mergePaths(url, baseUrl);\n }\n normalizePath(url);\n // If the input (and base, if there was one) are both relative, then we need to output a relative.\n if (url.relativePath) {\n // The first char is always a \"/\".\n const path = url.path.slice(1);\n if (!path)\n return '.';\n // If base started with a leading \".\", or there is no base and input started with a \".\", then we\n // need to ensure that the relative path starts with a \".\". We don't know if relative starts\n // with a \"..\", though, so check before prepending.\n const keepRelative = (base || input).startsWith('.');\n return !keepRelative || path.startsWith('.') ? path : './' + path;\n }\n // If there's no host (and no scheme/user/port), then we need to output an absolute path.\n if (!url.scheme && !url.host)\n return url.path;\n // We're outputting either an absolute URL, or a protocol relative one.\n return `${url.scheme}//${url.user}${url.host}${url.port}${url.path}`;\n}\n\nexport { resolve as default };\n//# sourceMappingURL=resolve-uri.mjs.map\n","import { encode, decode } from '@jridgewell/sourcemap-codec';\nimport resolveUri from '@jridgewell/resolve-uri';\n\nfunction resolve(input, base) {\n // The base is always treated as a directory, if it's not empty.\n // https://github.com/mozilla/source-map/blob/8cb3ee57/lib/util.js#L327\n // https://github.com/chromium/chromium/blob/da4adbb3/third_party/blink/renderer/devtools/front_end/sdk/SourceMap.js#L400-L401\n if (base && !base.endsWith('/'))\n base += '/';\n return resolveUri(input, base);\n}\n\n/**\n * Removes everything after the last \"/\", but leaves the slash.\n */\nfunction stripFilename(path) {\n if (!path)\n return '';\n const index = path.lastIndexOf('/');\n return path.slice(0, index + 1);\n}\n\nconst COLUMN = 0;\nconst SOURCES_INDEX = 1;\nconst SOURCE_LINE = 2;\nconst SOURCE_COLUMN = 3;\nconst NAMES_INDEX = 4;\nconst REV_GENERATED_LINE = 1;\nconst REV_GENERATED_COLUMN = 2;\n\nfunction maybeSort(mappings, owned) {\n const unsortedIndex = nextUnsortedSegmentLine(mappings, 0);\n if (unsortedIndex === mappings.length)\n return mappings;\n // If we own the array (meaning we parsed it from JSON), then we're free to directly mutate it. If\n // not, we do not want to modify the consumer's input array.\n if (!owned)\n mappings = mappings.slice();\n for (let i = unsortedIndex; i < mappings.length; i = nextUnsortedSegmentLine(mappings, i + 1)) {\n mappings[i] = sortSegments(mappings[i], owned);\n }\n return mappings;\n}\nfunction nextUnsortedSegmentLine(mappings, start) {\n for (let i = start; i < mappings.length; i++) {\n if (!isSorted(mappings[i]))\n return i;\n }\n return mappings.length;\n}\nfunction isSorted(line) {\n for (let j = 1; j < line.length; j++) {\n if (line[j][COLUMN] < line[j - 1][COLUMN]) {\n return false;\n }\n }\n return true;\n}\nfunction sortSegments(line, owned) {\n if (!owned)\n line = line.slice();\n return line.sort(sortComparator);\n}\nfunction sortComparator(a, b) {\n return a[COLUMN] - b[COLUMN];\n}\n\nlet found = false;\n/**\n * A binary search implementation that returns the index if a match is found.\n * If no match is found, then the left-index (the index associated with the item that comes just\n * before the desired index) is returned. To maintain proper sort order, a splice would happen at\n * the next index:\n *\n * ```js\n * const array = [1, 3];\n * const needle = 2;\n * const index = binarySearch(array, needle, (item, needle) => item - needle);\n *\n * assert.equal(index, 0);\n * array.splice(index + 1, 0, needle);\n * assert.deepEqual(array, [1, 2, 3]);\n * ```\n */\nfunction binarySearch(haystack, needle, low, high) {\n while (low <= high) {\n const mid = low + ((high - low) >> 1);\n const cmp = haystack[mid][COLUMN] - needle;\n if (cmp === 0) {\n found = true;\n return mid;\n }\n if (cmp < 0) {\n low = mid + 1;\n }\n else {\n high = mid - 1;\n }\n }\n found = false;\n return low - 1;\n}\nfunction upperBound(haystack, needle, index) {\n for (let i = index + 1; i < haystack.length; i++, index++) {\n if (haystack[i][COLUMN] !== needle)\n break;\n }\n return index;\n}\nfunction lowerBound(haystack, needle, index) {\n for (let i = index - 1; i >= 0; i--, index--) {\n if (haystack[i][COLUMN] !== needle)\n break;\n }\n return index;\n}\nfunction memoizedState() {\n return {\n lastKey: -1,\n lastNeedle: -1,\n lastIndex: -1,\n };\n}\n/**\n * This overly complicated beast is just to record the last tested line/column and the resulting\n * index, allowing us to skip a few tests if mappings are monotonically increasing.\n */\nfunction memoizedBinarySearch(haystack, needle, state, key) {\n const { lastKey, lastNeedle, lastIndex } = state;\n let low = 0;\n let high = haystack.length - 1;\n if (key === lastKey) {\n if (needle === lastNeedle) {\n found = lastIndex !== -1 && haystack[lastIndex][COLUMN] === needle;\n return lastIndex;\n }\n if (needle >= lastNeedle) {\n // lastIndex may be -1 if the previous needle was not found.\n low = lastIndex === -1 ? 0 : lastIndex;\n }\n else {\n high = lastIndex;\n }\n }\n state.lastKey = key;\n state.lastNeedle = needle;\n return (state.lastIndex = binarySearch(haystack, needle, low, high));\n}\n\n// Rebuilds the original source files, with mappings that are ordered by source line/column instead\n// of generated line/column.\nfunction buildBySources(decoded, memos) {\n const sources = memos.map(buildNullArray);\n for (let i = 0; i < decoded.length; i++) {\n const line = decoded[i];\n for (let j = 0; j < line.length; j++) {\n const seg = line[j];\n if (seg.length === 1)\n continue;\n const sourceIndex = seg[SOURCES_INDEX];\n const sourceLine = seg[SOURCE_LINE];\n const sourceColumn = seg[SOURCE_COLUMN];\n const originalSource = sources[sourceIndex];\n const originalLine = (originalSource[sourceLine] || (originalSource[sourceLine] = []));\n const memo = memos[sourceIndex];\n // The binary search either found a match, or it found the left-index just before where the\n // segment should go. Either way, we want to insert after that. And there may be multiple\n // generated segments associated with an original location, so there may need to move several\n // indexes before we find where we need to insert.\n const index = upperBound(originalLine, sourceColumn, memoizedBinarySearch(originalLine, sourceColumn, memo, sourceLine));\n insert(originalLine, (memo.lastIndex = index + 1), [sourceColumn, i, seg[COLUMN]]);\n }\n }\n return sources;\n}\nfunction insert(array, index, value) {\n for (let i = array.length; i > index; i--) {\n array[i] = array[i - 1];\n }\n array[index] = value;\n}\n// Null arrays allow us to use ordered index keys without actually allocating contiguous memory like\n// a real array. We use a null-prototype object to avoid prototype pollution and deoptimizations.\n// Numeric properties on objects are magically sorted in ascending order by the engine regardless of\n// the insertion order. So, by setting any numeric keys, even out of order, we'll get ascending\n// order when iterating with for-in.\nfunction buildNullArray() {\n return { __proto__: null };\n}\n\nconst AnyMap = function (map, mapUrl) {\n const parsed = typeof map === 'string' ? JSON.parse(map) : map;\n if (!('sections' in parsed))\n return new TraceMap(parsed, mapUrl);\n const mappings = [];\n const sources = [];\n const sourcesContent = [];\n const names = [];\n const { sections } = parsed;\n let i = 0;\n for (; i < sections.length - 1; i++) {\n const no = sections[i + 1].offset;\n addSection(sections[i], mapUrl, mappings, sources, sourcesContent, names, no.line, no.column);\n }\n if (sections.length > 0) {\n addSection(sections[i], mapUrl, mappings, sources, sourcesContent, names, Infinity, Infinity);\n }\n const joined = {\n version: 3,\n file: parsed.file,\n names,\n sources,\n sourcesContent,\n mappings,\n };\n return presortedDecodedMap(joined);\n};\nfunction addSection(section, mapUrl, mappings, sources, sourcesContent, names, stopLine, stopColumn) {\n const map = AnyMap(section.map, mapUrl);\n const { line: lineOffset, column: columnOffset } = section.offset;\n const sourcesOffset = sources.length;\n const namesOffset = names.length;\n const decoded = decodedMappings(map);\n const { resolvedSources } = map;\n append(sources, resolvedSources);\n append(sourcesContent, map.sourcesContent || fillSourcesContent(resolvedSources.length));\n append(names, map.names);\n // If this section jumps forwards several lines, we need to add lines to the output mappings catch up.\n for (let i = mappings.length; i <= lineOffset; i++)\n mappings.push([]);\n // We can only add so many lines before we step into the range that the next section's map\n // controls. When we get to the last line, then we'll start checking the segments to see if\n // they've crossed into the column range.\n const stopI = stopLine - lineOffset;\n const len = Math.min(decoded.length, stopI + 1);\n for (let i = 0; i < len; i++) {\n const line = decoded[i];\n // On the 0th loop, the line will already exist due to a previous section, or the line catch up\n // loop above.\n const out = i === 0 ? mappings[lineOffset] : (mappings[lineOffset + i] = []);\n // On the 0th loop, the section's column offset shifts us forward. On all other lines (since the\n // map can be multiple lines), it doesn't.\n const cOffset = i === 0 ? columnOffset : 0;\n for (let j = 0; j < line.length; j++) {\n const seg = line[j];\n const column = cOffset + seg[COLUMN];\n // If this segment steps into the column range that the next section's map controls, we need\n // to stop early.\n if (i === stopI && column >= stopColumn)\n break;\n if (seg.length === 1) {\n out.push([column]);\n continue;\n }\n const sourcesIndex = sourcesOffset + seg[SOURCES_INDEX];\n const sourceLine = seg[SOURCE_LINE];\n const sourceColumn = seg[SOURCE_COLUMN];\n if (seg.length === 4) {\n out.push([column, sourcesIndex, sourceLine, sourceColumn]);\n continue;\n }\n out.push([column, sourcesIndex, sourceLine, sourceColumn, namesOffset + seg[NAMES_INDEX]]);\n }\n }\n}\nfunction append(arr, other) {\n for (let i = 0; i < other.length; i++)\n arr.push(other[i]);\n}\n// Sourcemaps don't need to have sourcesContent, and if they don't, we need to create an array of\n// equal length to the sources. This is because the sources and sourcesContent are paired arrays,\n// where `sourcesContent[i]` is the content of the `sources[i]` file. If we didn't, then joined\n// sourcemap would desynchronize the sources/contents.\nfunction fillSourcesContent(len) {\n const sourcesContent = [];\n for (let i = 0; i < len; i++)\n sourcesContent[i] = null;\n return sourcesContent;\n}\n\nconst INVALID_ORIGINAL_MAPPING = Object.freeze({\n source: null,\n line: null,\n column: null,\n name: null,\n});\nconst INVALID_GENERATED_MAPPING = Object.freeze({\n line: null,\n column: null,\n});\nconst LINE_GTR_ZERO = '`line` must be greater than 0 (lines start at line 1)';\nconst COL_GTR_EQ_ZERO = '`column` must be greater than or equal to 0 (columns start at column 0)';\nconst LEAST_UPPER_BOUND = -1;\nconst GREATEST_LOWER_BOUND = 1;\n/**\n * Returns the encoded (VLQ string) form of the SourceMap's mappings field.\n */\nlet encodedMappings;\n/**\n * Returns the decoded (array of lines of segments) form of the SourceMap's mappings field.\n */\nlet decodedMappings;\n/**\n * A low-level API to find the segment associated with a generated line/column (think, from a\n * stack trace). Line and column here are 0-based, unlike `originalPositionFor`.\n */\nlet traceSegment;\n/**\n * A higher-level API to find the source/line/column associated with a generated line/column\n * (think, from a stack trace). Line is 1-based, but column is 0-based, due to legacy behavior in\n * `source-map` library.\n */\nlet originalPositionFor;\n/**\n * Finds the source/line/column directly after the mapping returned by originalPositionFor, provided\n * the found mapping is from the same source and line as the originalPositionFor mapping.\n *\n * Eg, in the code `let id = 1`, `originalPositionAfter` could find the mapping associated with `1`\n * using the same needle that would return `id` when calling `originalPositionFor`.\n */\nlet generatedPositionFor;\n/**\n * Iterates each mapping in generated position order.\n */\nlet eachMapping;\n/**\n * A helper that skips sorting of the input map's mappings array, which can be expensive for larger\n * maps.\n */\nlet presortedDecodedMap;\n/**\n * Returns a sourcemap object (with decoded mappings) suitable for passing to a library that expects\n * a sourcemap, or to JSON.stringify.\n */\nlet decodedMap;\n/**\n * Returns a sourcemap object (with encoded mappings) suitable for passing to a library that expects\n * a sourcemap, or to JSON.stringify.\n */\nlet encodedMap;\nclass TraceMap {\n constructor(map, mapUrl) {\n this._decodedMemo = memoizedState();\n this._bySources = undefined;\n this._bySourceMemos = undefined;\n const isString = typeof map === 'string';\n if (!isString && map.constructor === TraceMap)\n return map;\n const parsed = (isString ? JSON.parse(map) : map);\n const { version, file, names, sourceRoot, sources, sourcesContent } = parsed;\n this.version = version;\n this.file = file;\n this.names = names;\n this.sourceRoot = sourceRoot;\n this.sources = sources;\n this.sourcesContent = sourcesContent;\n if (sourceRoot || mapUrl) {\n const from = resolve(sourceRoot || '', stripFilename(mapUrl));\n this.resolvedSources = sources.map((s) => resolve(s || '', from));\n }\n else {\n this.resolvedSources = sources.map((s) => s || '');\n }\n const { mappings } = parsed;\n if (typeof mappings === 'string') {\n this._encoded = mappings;\n this._decoded = undefined;\n }\n else {\n this._encoded = undefined;\n this._decoded = maybeSort(mappings, isString);\n }\n }\n}\n(() => {\n encodedMappings = (map) => {\n var _a;\n return ((_a = map._encoded) !== null && _a !== void 0 ? _a : (map._encoded = encode(map._decoded)));\n };\n decodedMappings = (map) => {\n return (map._decoded || (map._decoded = decode(map._encoded)));\n };\n traceSegment = (map, line, column) => {\n const decoded = decodedMappings(map);\n // It's common for parent source maps to have pointers to lines that have no\n // mapping (like a \"//# sourceMappingURL=\") at the end of the child file.\n if (line >= decoded.length)\n return null;\n return traceSegmentInternal(decoded[line], map._decodedMemo, line, column, GREATEST_LOWER_BOUND);\n };\n originalPositionFor = (map, { line, column, bias }) => {\n line--;\n if (line < 0)\n throw new Error(LINE_GTR_ZERO);\n if (column < 0)\n throw new Error(COL_GTR_EQ_ZERO);\n const decoded = decodedMappings(map);\n // It's common for parent source maps to have pointers to lines that have no\n // mapping (like a \"//# sourceMappingURL=\") at the end of the child file.\n if (line >= decoded.length)\n return INVALID_ORIGINAL_MAPPING;\n const segment = traceSegmentInternal(decoded[line], map._decodedMemo, line, column, bias || GREATEST_LOWER_BOUND);\n if (segment == null)\n return INVALID_ORIGINAL_MAPPING;\n if (segment.length == 1)\n return INVALID_ORIGINAL_MAPPING;\n const { names, resolvedSources } = map;\n return {\n source: resolvedSources[segment[SOURCES_INDEX]],\n line: segment[SOURCE_LINE] + 1,\n column: segment[SOURCE_COLUMN],\n name: segment.length === 5 ? names[segment[NAMES_INDEX]] : null,\n };\n };\n generatedPositionFor = (map, { source, line, column, bias }) => {\n line--;\n if (line < 0)\n throw new Error(LINE_GTR_ZERO);\n if (column < 0)\n throw new Error(COL_GTR_EQ_ZERO);\n const { sources, resolvedSources } = map;\n let sourceIndex = sources.indexOf(source);\n if (sourceIndex === -1)\n sourceIndex = resolvedSources.indexOf(source);\n if (sourceIndex === -1)\n return INVALID_GENERATED_MAPPING;\n const generated = (map._bySources || (map._bySources = buildBySources(decodedMappings(map), (map._bySourceMemos = sources.map(memoizedState)))));\n const memos = map._bySourceMemos;\n const segments = generated[sourceIndex][line];\n if (segments == null)\n return INVALID_GENERATED_MAPPING;\n const segment = traceSegmentInternal(segments, memos[sourceIndex], line, column, bias || GREATEST_LOWER_BOUND);\n if (segment == null)\n return INVALID_GENERATED_MAPPING;\n return {\n line: segment[REV_GENERATED_LINE] + 1,\n column: segment[REV_GENERATED_COLUMN],\n };\n };\n eachMapping = (map, cb) => {\n const decoded = decodedMappings(map);\n const { names, resolvedSources } = map;\n for (let i = 0; i < decoded.length; i++) {\n const line = decoded[i];\n for (let j = 0; j < line.length; j++) {\n const seg = line[j];\n const generatedLine = i + 1;\n const generatedColumn = seg[0];\n let source = null;\n let originalLine = null;\n let originalColumn = null;\n let name = null;\n if (seg.length !== 1) {\n source = resolvedSources[seg[1]];\n originalLine = seg[2] + 1;\n originalColumn = seg[3];\n }\n if (seg.length === 5)\n name = names[seg[4]];\n cb({\n generatedLine,\n generatedColumn,\n source,\n originalLine,\n originalColumn,\n name,\n });\n }\n }\n };\n presortedDecodedMap = (map, mapUrl) => {\n const clone = Object.assign({}, map);\n clone.mappings = [];\n const tracer = new TraceMap(clone, mapUrl);\n tracer._decoded = map.mappings;\n return tracer;\n };\n decodedMap = (map) => {\n return {\n version: 3,\n file: map.file,\n names: map.names,\n sourceRoot: map.sourceRoot,\n sources: map.sources,\n sourcesContent: map.sourcesContent,\n mappings: decodedMappings(map),\n };\n };\n encodedMap = (map) => {\n return {\n version: 3,\n file: map.file,\n names: map.names,\n sourceRoot: map.sourceRoot,\n sources: map.sources,\n sourcesContent: map.sourcesContent,\n mappings: encodedMappings(map),\n };\n };\n})();\nfunction traceSegmentInternal(segments, memo, line, column, bias) {\n let index = memoizedBinarySearch(segments, column, memo, line);\n if (found) {\n index = (bias === LEAST_UPPER_BOUND ? upperBound : lowerBound)(segments, column, index);\n }\n else if (bias === LEAST_UPPER_BOUND)\n index++;\n if (index === -1 || index === segments.length)\n return null;\n return segments[index];\n}\n\nexport { AnyMap, GREATEST_LOWER_BOUND, LEAST_UPPER_BOUND, TraceMap, decodedMap, decodedMappings, eachMapping, encodedMap, encodedMappings, generatedPositionFor, originalPositionFor, presortedDecodedMap, traceSegment };\n//# sourceMappingURL=trace-mapping.mjs.map\n","/**\n * Gets the index associated with `key` in the backing array, if it is already present.\n */\nlet get;\n/**\n * Puts `key` into the backing array, if it is not already present. Returns\n * the index of the `key` in the backing array.\n */\nlet put;\n/**\n * Pops the last added item out of the SetArray.\n */\nlet pop;\n/**\n * SetArray acts like a `Set` (allowing only one occurrence of a string `key`), but provides the\n * index of the `key` in the backing array.\n *\n * This is designed to allow synchronizing a second array with the contents of the backing array,\n * like how in a sourcemap `sourcesContent[i]` is the source content associated with `source[i]`,\n * and there are never duplicates.\n */\nclass SetArray {\n constructor() {\n this._indexes = { __proto__: null };\n this.array = [];\n }\n}\n(() => {\n get = (strarr, key) => strarr._indexes[key];\n put = (strarr, key) => {\n // The key may or may not be present. If it is present, it's a number.\n const index = get(strarr, key);\n if (index !== undefined)\n return index;\n const { array, _indexes: indexes } = strarr;\n return (indexes[key] = array.push(key) - 1);\n };\n pop = (strarr) => {\n const { array, _indexes: indexes } = strarr;\n if (array.length === 0)\n return;\n const last = array.pop();\n indexes[last] = undefined;\n };\n})();\n\nexport { SetArray, get, pop, put };\n//# sourceMappingURL=set-array.mjs.map\n","import { SetArray, put } from '@jridgewell/set-array';\nimport { encode } from '@jridgewell/sourcemap-codec';\nimport { TraceMap, decodedMappings } from '@jridgewell/trace-mapping';\n\nconst COLUMN = 0;\nconst SOURCES_INDEX = 1;\nconst SOURCE_LINE = 2;\nconst SOURCE_COLUMN = 3;\nconst NAMES_INDEX = 4;\n\nconst NO_NAME = -1;\n/**\n * A low-level API to associate a generated position with an original source position. Line and\n * column here are 0-based, unlike `addMapping`.\n */\nlet addSegment;\n/**\n * A high-level API to associate a generated position with an original source position. Line is\n * 1-based, but column is 0-based, due to legacy behavior in `source-map` library.\n */\nlet addMapping;\n/**\n * Same as `addSegment`, but will only add the segment if it generates useful information in the\n * resulting map. This only works correctly if segments are added **in order**, meaning you should\n * not add a segment with a lower generated line/column than one that came before.\n */\nlet maybeAddSegment;\n/**\n * Same as `addMapping`, but will only add the mapping if it generates useful information in the\n * resulting map. This only works correctly if mappings are added **in order**, meaning you should\n * not add a mapping with a lower generated line/column than one that came before.\n */\nlet maybeAddMapping;\n/**\n * Adds/removes the content of the source file to the source map.\n */\nlet setSourceContent;\n/**\n * Returns a sourcemap object (with decoded mappings) suitable for passing to a library that expects\n * a sourcemap, or to JSON.stringify.\n */\nlet toDecodedMap;\n/**\n * Returns a sourcemap object (with encoded mappings) suitable for passing to a library that expects\n * a sourcemap, or to JSON.stringify.\n */\nlet toEncodedMap;\n/**\n * Constructs a new GenMapping, using the already present mappings of the input.\n */\nlet fromMap;\n/**\n * Returns an array of high-level mapping objects for every recorded segment, which could then be\n * passed to the `source-map` library.\n */\nlet allMappings;\n// This split declaration is only so that terser can elminiate the static initialization block.\nlet addSegmentInternal;\n/**\n * Provides the state to generate a sourcemap.\n */\nclass GenMapping {\n constructor({ file, sourceRoot } = {}) {\n this._names = new SetArray();\n this._sources = new SetArray();\n this._sourcesContent = [];\n this._mappings = [];\n this.file = file;\n this.sourceRoot = sourceRoot;\n }\n}\n(() => {\n addSegment = (map, genLine, genColumn, source, sourceLine, sourceColumn, name) => {\n return addSegmentInternal(false, map, genLine, genColumn, source, sourceLine, sourceColumn, name);\n };\n maybeAddSegment = (map, genLine, genColumn, source, sourceLine, sourceColumn, name) => {\n return addSegmentInternal(true, map, genLine, genColumn, source, sourceLine, sourceColumn, name);\n };\n addMapping = (map, mapping) => {\n return addMappingInternal(false, map, mapping);\n };\n maybeAddMapping = (map, mapping) => {\n return addMappingInternal(true, map, mapping);\n };\n setSourceContent = (map, source, content) => {\n const { _sources: sources, _sourcesContent: sourcesContent } = map;\n sourcesContent[put(sources, source)] = content;\n };\n toDecodedMap = (map) => {\n const { file, sourceRoot, _mappings: mappings, _sources: sources, _sourcesContent: sourcesContent, _names: names, } = map;\n removeEmptyFinalLines(mappings);\n return {\n version: 3,\n file: file || undefined,\n names: names.array,\n sourceRoot: sourceRoot || undefined,\n sources: sources.array,\n sourcesContent,\n mappings,\n };\n };\n toEncodedMap = (map) => {\n const decoded = toDecodedMap(map);\n return Object.assign(Object.assign({}, decoded), { mappings: encode(decoded.mappings) });\n };\n allMappings = (map) => {\n const out = [];\n const { _mappings: mappings, _sources: sources, _names: names } = map;\n for (let i = 0; i < mappings.length; i++) {\n const line = mappings[i];\n for (let j = 0; j < line.length; j++) {\n const seg = line[j];\n const generated = { line: i + 1, column: seg[COLUMN] };\n let source = undefined;\n let original = undefined;\n let name = undefined;\n if (seg.length !== 1) {\n source = sources.array[seg[SOURCES_INDEX]];\n original = { line: seg[SOURCE_LINE] + 1, column: seg[SOURCE_COLUMN] };\n if (seg.length === 5)\n name = names.array[seg[NAMES_INDEX]];\n }\n out.push({ generated, source, original, name });\n }\n }\n return out;\n };\n fromMap = (input) => {\n const map = new TraceMap(input);\n const gen = new GenMapping({ file: map.file, sourceRoot: map.sourceRoot });\n putAll(gen._names, map.names);\n putAll(gen._sources, map.sources);\n gen._sourcesContent = map.sourcesContent || map.sources.map(() => null);\n gen._mappings = decodedMappings(map);\n return gen;\n };\n // Internal helpers\n addSegmentInternal = (skipable, map, genLine, genColumn, source, sourceLine, sourceColumn, name) => {\n const { _mappings: mappings, _sources: sources, _sourcesContent: sourcesContent, _names: names, } = map;\n const line = getLine(mappings, genLine);\n const index = getColumnIndex(line, genColumn);\n if (!source) {\n if (skipable && skipSourceless(line, index))\n return;\n return insert(line, index, [genColumn]);\n }\n const sourcesIndex = put(sources, source);\n const namesIndex = name ? put(names, name) : NO_NAME;\n if (sourcesIndex === sourcesContent.length)\n sourcesContent[sourcesIndex] = null;\n if (skipable && skipSource(line, index, sourcesIndex, sourceLine, sourceColumn, namesIndex)) {\n return;\n }\n return insert(line, index, name\n ? [genColumn, sourcesIndex, sourceLine, sourceColumn, namesIndex]\n : [genColumn, sourcesIndex, sourceLine, sourceColumn]);\n };\n})();\nfunction getLine(mappings, index) {\n for (let i = mappings.length; i <= index; i++) {\n mappings[i] = [];\n }\n return mappings[index];\n}\nfunction getColumnIndex(line, genColumn) {\n let index = line.length;\n for (let i = index - 1; i >= 0; index = i--) {\n const current = line[i];\n if (genColumn >= current[COLUMN])\n break;\n }\n return index;\n}\nfunction insert(array, index, value) {\n for (let i = array.length; i > index; i--) {\n array[i] = array[i - 1];\n }\n array[index] = value;\n}\nfunction removeEmptyFinalLines(mappings) {\n const { length } = mappings;\n let len = length;\n for (let i = len - 1; i >= 0; len = i, i--) {\n if (mappings[i].length > 0)\n break;\n }\n if (len < length)\n mappings.length = len;\n}\nfunction putAll(strarr, array) {\n for (let i = 0; i < array.length; i++)\n put(strarr, array[i]);\n}\nfunction skipSourceless(line, index) {\n // The start of a line is already sourceless, so adding a sourceless segment to the beginning\n // doesn't generate any useful information.\n if (index === 0)\n return true;\n const prev = line[index - 1];\n // If the previous segment is also sourceless, then adding another sourceless segment doesn't\n // genrate any new information. Else, this segment will end the source/named segment and point to\n // a sourceless position, which is useful.\n return prev.length === 1;\n}\nfunction skipSource(line, index, sourcesIndex, sourceLine, sourceColumn, namesIndex) {\n // A source/named segment at the start of a line gives position at that genColumn\n if (index === 0)\n return false;\n const prev = line[index - 1];\n // If the previous segment is sourceless, then we're transitioning to a source.\n if (prev.length === 1)\n return false;\n // If the previous segment maps to the exact same source position, then this segment doesn't\n // provide any new position information.\n return (sourcesIndex === prev[SOURCES_INDEX] &&\n sourceLine === prev[SOURCE_LINE] &&\n sourceColumn === prev[SOURCE_COLUMN] &&\n namesIndex === (prev.length === 5 ? prev[NAMES_INDEX] : NO_NAME));\n}\nfunction addMappingInternal(skipable, map, mapping) {\n const { generated, source, original, name } = mapping;\n if (!source) {\n return addSegmentInternal(skipable, map, generated.line - 1, generated.column, null, null, null, null);\n }\n const s = source;\n return addSegmentInternal(skipable, map, generated.line - 1, generated.column, s, original.line - 1, original.column, name);\n}\n\nexport { GenMapping, addMapping, addSegment, allMappings, fromMap, maybeAddMapping, maybeAddSegment, setSourceContent, toDecodedMap, toEncodedMap };\n//# sourceMappingURL=gen-mapping.mjs.map\n","import { AnyMap, originalPositionFor } from '@jridgewell/trace-mapping';\nimport {\n GenMapping,\n maybeAddMapping,\n toDecodedMap,\n toEncodedMap,\n setSourceContent,\n} from '@jridgewell/gen-mapping';\n\nimport type { TraceMap, SectionedSourceMapInput } from '@jridgewell/trace-mapping';\nexport type { TraceMap, SectionedSourceMapInput };\n\nimport type { Mapping, EncodedSourceMap, DecodedSourceMap } from '@jridgewell/gen-mapping';\nexport type { Mapping, EncodedSourceMap, DecodedSourceMap };\n\nexport class SourceMapConsumer {\n private declare _map: TraceMap;\n declare file: TraceMap['file'];\n declare names: TraceMap['names'];\n declare sourceRoot: TraceMap['sourceRoot'];\n declare sources: TraceMap['sources'];\n declare sourcesContent: TraceMap['sourcesContent'];\n\n constructor(map: ConstructorParameters<typeof AnyMap>[0], mapUrl: Parameters<typeof AnyMap>[1]) {\n const trace = (this._map = new AnyMap(map, mapUrl));\n\n this.file = trace.file;\n this.names = trace.names;\n this.sourceRoot = trace.sourceRoot;\n this.sources = trace.resolvedSources;\n this.sourcesContent = trace.sourcesContent;\n }\n\n originalPositionFor(\n needle: Parameters<typeof originalPositionFor>[1],\n ): ReturnType<typeof originalPositionFor> {\n return originalPositionFor(this._map, needle);\n }\n\n destroy() {\n // noop.\n }\n}\n\nexport class SourceMapGenerator {\n private declare _map: GenMapping;\n\n constructor(opts: ConstructorParameters<typeof GenMapping>[0]) {\n this._map = new GenMapping(opts);\n }\n\n addMapping(mapping: Parameters<typeof maybeAddMapping>[1]): ReturnType<typeof maybeAddMapping> {\n maybeAddMapping(this._map, mapping);\n }\n\n setSourceContent(\n source: Parameters<typeof setSourceContent>[1],\n content: Parameters<typeof setSourceContent>[2],\n ): ReturnType<typeof setSourceContent> {\n setSourceContent(this._map, source, content);\n }\n\n toJSON(): ReturnType<typeof toEncodedMap> {\n return toEncodedMap(this._map);\n }\n\n toDecodedMap(): ReturnType<typeof toDecodedMap> {\n return toDecodedMap(this._map);\n 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