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fea495a | 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217 218 219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246 247 248 249 250 251 252 253 254 255 256 257 258 259 260 261 262 263 264 265 266 267 268 269 270 271 272 273 274 275 276 277 278 279 280 281 282 283 284 285 286 287 288 289 290 291 292 293 294 295 296 297 298 299 300 301 302 | 'use client';
"use strict";
Object.defineProperty(exports, "__esModule", {
value: true
});
0 && (module.exports = {
createFetch: null,
createFromNextReadableStream: null,
fetchServerResponse: null
});
function _export(target, all) {
for(var name in all)Object.defineProperty(target, name, {
enumerable: true,
get: all[name]
});
}
_export(exports, {
createFetch: function() {
return createFetch;
},
createFromNextReadableStream: function() {
return createFromNextReadableStream;
},
fetchServerResponse: function() {
return fetchServerResponse;
}
});
const _client = require("react-server-dom-webpack/client");
const _approuterheaders = require("../app-router-headers");
const _appcallserver = require("../../app-call-server");
const _appfindsourcemapurl = require("../../app-find-source-map-url");
const _routerreducertypes = require("./router-reducer-types");
const _flightdatahelpers = require("../../flight-data-helpers");
const _appbuildid = require("../../app-build-id");
const _setcachebustingsearchparam = require("./set-cache-busting-search-param");
const _routeparams = require("../../route-params");
const createFromReadableStream = _client.createFromReadableStream;
function doMpaNavigation(url) {
return {
flightData: (0, _routeparams.urlToUrlWithoutFlightMarker)(new URL(url, location.origin)).toString(),
canonicalUrl: undefined,
couldBeIntercepted: false,
prerendered: false,
postponed: false,
staleTime: -1
};
}
let abortController = new AbortController();
if (typeof window !== 'undefined') {
// Abort any in-flight requests when the page is unloaded, e.g. due to
// reloading the page or performing hard navigations. This allows us to ignore
// what would otherwise be a thrown TypeError when the browser cancels the
// requests.
window.addEventListener('pagehide', ()=>{
abortController.abort();
});
// Use a fresh AbortController instance on pageshow, e.g. when navigating back
// and the JavaScript execution context is restored by the browser.
window.addEventListener('pageshow', ()=>{
abortController = new AbortController();
});
}
async function fetchServerResponse(url, options) {
const { flightRouterState, nextUrl, prefetchKind } = options;
const headers = {
// Enable flight response
[_approuterheaders.RSC_HEADER]: '1',
// Provide the current router state
[_approuterheaders.NEXT_ROUTER_STATE_TREE_HEADER]: (0, _flightdatahelpers.prepareFlightRouterStateForRequest)(flightRouterState, options.isHmrRefresh)
};
/**
* Three cases:
* - `prefetchKind` is `undefined`, it means it's a normal navigation, so we want to prefetch the page data fully
* - `prefetchKind` is `full` - we want to prefetch the whole page so same as above
* - `prefetchKind` is `auto` - if the page is dynamic, prefetch the page data partially, if static prefetch the page data fully
*/ if (prefetchKind === _routerreducertypes.PrefetchKind.AUTO) {
headers[_approuterheaders.NEXT_ROUTER_PREFETCH_HEADER] = '1';
}
if (process.env.NODE_ENV === 'development' && options.isHmrRefresh) {
headers[_approuterheaders.NEXT_HMR_REFRESH_HEADER] = '1';
}
if (nextUrl) {
headers[_approuterheaders.NEXT_URL] = nextUrl;
}
try {
var _res_headers_get;
// When creating a "temporary" prefetch (the "on-demand" prefetch that gets created on navigation, if one doesn't exist)
// we send the request with a "high" priority as it's in response to a user interaction that could be blocking a transition.
// Otherwise, all other prefetches are sent with a "low" priority.
// We use "auto" for in all other cases to match the existing default, as this function is shared outside of prefetching.
const fetchPriority = prefetchKind ? prefetchKind === _routerreducertypes.PrefetchKind.TEMPORARY ? 'high' : 'low' : 'auto';
if (process.env.NODE_ENV === 'production') {
if (process.env.__NEXT_CONFIG_OUTPUT === 'export') {
// In "output: export" mode, we can't rely on headers to distinguish
// between HTML and RSC requests. Instead, we append an extra prefix
// to the request.
url = new URL(url);
if (url.pathname.endsWith('/')) {
url.pathname += 'index.txt';
} else {
url.pathname += '.txt';
}
}
}
const res = await createFetch(url, headers, fetchPriority, abortController.signal);
const responseUrl = (0, _routeparams.urlToUrlWithoutFlightMarker)(new URL(res.url));
const canonicalUrl = res.redirected ? responseUrl : undefined;
const contentType = res.headers.get('content-type') || '';
const interception = !!((_res_headers_get = res.headers.get('vary')) == null ? void 0 : _res_headers_get.includes(_approuterheaders.NEXT_URL));
const postponed = !!res.headers.get(_approuterheaders.NEXT_DID_POSTPONE_HEADER);
const staleTimeHeaderSeconds = res.headers.get(_approuterheaders.NEXT_ROUTER_STALE_TIME_HEADER);
const staleTime = staleTimeHeaderSeconds !== null ? parseInt(staleTimeHeaderSeconds, 10) * 1000 : -1;
let isFlightResponse = contentType.startsWith(_approuterheaders.RSC_CONTENT_TYPE_HEADER);
if (process.env.NODE_ENV === 'production') {
if (process.env.__NEXT_CONFIG_OUTPUT === 'export') {
if (!isFlightResponse) {
isFlightResponse = contentType.startsWith('text/plain');
}
}
}
// If fetch returns something different than flight response handle it like a mpa navigation
// If the fetch was not 200, we also handle it like a mpa navigation
if (!isFlightResponse || !res.ok || !res.body) {
// in case the original URL came with a hash, preserve it before redirecting to the new URL
if (url.hash) {
responseUrl.hash = url.hash;
}
return doMpaNavigation(responseUrl.toString());
}
// We may navigate to a page that requires a different Webpack runtime.
// In prod, every page will have the same Webpack runtime.
// In dev, the Webpack runtime is minimal for each page.
// We need to ensure the Webpack runtime is updated before executing client-side JS of the new page.
if (process.env.NODE_ENV !== 'production' && !process.env.TURBOPACK) {
await require('../../dev/hot-reloader/app/hot-reloader-app').waitForWebpackRuntimeHotUpdate();
}
// Handle the `fetch` readable stream that can be unwrapped by `React.use`.
const flightStream = postponed ? createUnclosingPrefetchStream(res.body) : res.body;
const response = await createFromNextReadableStream(flightStream);
if ((0, _appbuildid.getAppBuildId)() !== response.b) {
return doMpaNavigation(res.url);
}
return {
flightData: (0, _flightdatahelpers.normalizeFlightData)(response.f),
canonicalUrl: canonicalUrl,
couldBeIntercepted: interception,
prerendered: response.S,
postponed,
staleTime
};
} catch (err) {
if (!abortController.signal.aborted) {
console.error("Failed to fetch RSC payload for " + url + ". Falling back to browser navigation.", err);
}
// If fetch fails handle it like a mpa navigation
// TODO-APP: Add a test for the case where a CORS request fails, e.g. external url redirect coming from the response.
// See https://github.com/vercel/next.js/issues/43605#issuecomment-1451617521 for a reproduction.
return {
flightData: url.toString(),
canonicalUrl: undefined,
couldBeIntercepted: false,
prerendered: false,
postponed: false,
staleTime: -1
};
}
}
async function createFetch(url, headers, fetchPriority, signal) {
// TODO: In output: "export" mode, the headers do nothing. Omit them (and the
// cache busting search param) from the request so they're
// maximally cacheable.
if (process.env.__NEXT_TEST_MODE && fetchPriority !== null) {
headers['Next-Test-Fetch-Priority'] = fetchPriority;
}
if (process.env.NEXT_DEPLOYMENT_ID) {
headers['x-deployment-id'] = process.env.NEXT_DEPLOYMENT_ID;
}
const fetchOptions = {
// Backwards compat for older browsers. `same-origin` is the default in modern browsers.
credentials: 'same-origin',
headers,
priority: fetchPriority || undefined,
signal
};
// `fetchUrl` is slightly different from `url` because we add a cache-busting
// search param to it. This should not leak outside of this function, so we
// track them separately.
let fetchUrl = new URL(url);
(0, _setcachebustingsearchparam.setCacheBustingSearchParam)(fetchUrl, headers);
let browserResponse = await fetch(fetchUrl, fetchOptions);
// If the server responds with a redirect (e.g. 307), and the redirected
// location does not contain the cache busting search param set in the
// original request, the response is likely invalid — when following the
// redirect, the browser forwards the request headers, but since the cache
// busting search param is missing, the server will reject the request due to
// a mismatch.
//
// Ideally, we would be able to intercept the redirect response and perform it
// manually, instead of letting the browser automatically follow it, but this
// is not allowed by the fetch API.
//
// So instead, we must "replay" the redirect by fetching the new location
// again, but this time we'll append the cache busting search param to prevent
// a mismatch.
//
// TODO: We can optimize Next.js's built-in middleware APIs by returning a
// custom status code, to prevent the browser from automatically following it.
//
// This does not affect Server Action-based redirects; those are encoded
// differently, as part of the Flight body. It only affects redirects that
// occur in a middleware or a third-party proxy.
let redirected = browserResponse.redirected;
if (process.env.__NEXT_CLIENT_VALIDATE_RSC_REQUEST_HEADERS) {
// This is to prevent a redirect loop. Same limit used by Chrome.
const MAX_REDIRECTS = 20;
for(let n = 0; n < MAX_REDIRECTS; n++){
if (!browserResponse.redirected) {
break;
}
const responseUrl = new URL(browserResponse.url, fetchUrl);
if (responseUrl.origin !== fetchUrl.origin) {
break;
}
if (responseUrl.searchParams.get(_approuterheaders.NEXT_RSC_UNION_QUERY) === fetchUrl.searchParams.get(_approuterheaders.NEXT_RSC_UNION_QUERY)) {
break;
}
// The RSC request was redirected. Assume the response is invalid.
//
// Append the cache busting search param to the redirected URL and
// fetch again.
fetchUrl = new URL(responseUrl);
(0, _setcachebustingsearchparam.setCacheBustingSearchParam)(fetchUrl, headers);
browserResponse = await fetch(fetchUrl, fetchOptions);
// We just performed a manual redirect, so this is now true.
redirected = true;
}
}
// Remove the cache busting search param from the response URL, to prevent it
// from leaking outside of this function.
const responseUrl = new URL(browserResponse.url, fetchUrl);
responseUrl.searchParams.delete(_approuterheaders.NEXT_RSC_UNION_QUERY);
const rscResponse = {
url: responseUrl.href,
// This is true if any redirects occurred, either automatically by the
// browser, or manually by us. So it's different from
// `browserResponse.redirected`, which only tells us whether the browser
// followed a redirect, and only for the last response in the chain.
redirected,
// These can be copied from the last browser response we received. We
// intentionally only expose the subset of fields that are actually used
// elsewhere in the codebase.
ok: browserResponse.ok,
headers: browserResponse.headers,
body: browserResponse.body,
status: browserResponse.status
};
return rscResponse;
}
function createFromNextReadableStream(flightStream) {
return createFromReadableStream(flightStream, {
callServer: _appcallserver.callServer,
findSourceMapURL: _appfindsourcemapurl.findSourceMapURL
});
}
function createUnclosingPrefetchStream(originalFlightStream) {
// When PPR is enabled, prefetch streams may contain references that never
// resolve, because that's how we encode dynamic data access. In the decoded
// object returned by the Flight client, these are reified into hanging
// promises that suspend during render, which is effectively what we want.
// The UI resolves when it switches to the dynamic data stream
// (via useDeferredValue(dynamic, static)).
//
// However, the Flight implementation currently errors if the server closes
// the response before all the references are resolved. As a cheat to work
// around this, we wrap the original stream in a new stream that never closes,
// and therefore doesn't error.
const reader = originalFlightStream.getReader();
return new ReadableStream({
async pull (controller) {
while(true){
const { done, value } = await reader.read();
if (!done) {
// Pass to the target stream and keep consuming the Flight response
// from the server.
controller.enqueue(value);
continue;
}
// The server stream has closed. Exit, but intentionally do not close
// the target stream.
return;
}
}
});
}
if ((typeof exports.default === 'function' || (typeof exports.default === 'object' && exports.default !== null)) && typeof exports.default.__esModule === 'undefined') {
Object.defineProperty(exports.default, '__esModule', { value: true });
Object.assign(exports.default, exports);
module.exports = exports.default;
}
//# sourceMappingURL=fetch-server-response.js.map |