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File: /var/www/html/orbi-individual/node_modules/next/dist/esm/server/app-render/use-flight-response.js
import { htmlEscapeJsonString } from "../htmlescape";
const isEdgeRuntime = process.env.NEXT_RUNTIME === "edge";
const INLINE_FLIGHT_PAYLOAD_BOOTSTRAP = 0;
const INLINE_FLIGHT_PAYLOAD_DATA = 1;
const INLINE_FLIGHT_PAYLOAD_FORM_STATE = 2;
const flightResponses = new WeakMap();
const encoder = new TextEncoder();
/**
 * Render Flight stream.
 * This is only used for renderToHTML, the Flight response does not need additional wrappers.
 */ export function useFlightStream(flightStream, clientReferenceManifest, nonce) {
    const response = flightResponses.get(flightStream);
    if (response) {
        return response;
    }
    // react-server-dom-webpack/client.edge must not be hoisted for require cache clearing to work correctly
    let createFromReadableStream;
    // @TODO: investigate why the aliasing for turbopack doesn't pick this up, requiring this runtime check
    if (process.env.TURBOPACK) {
        createFromReadableStream = // eslint-disable-next-line import/no-extraneous-dependencies
        require("react-server-dom-turbopack/client.edge").createFromReadableStream;
    } else {
        createFromReadableStream = // eslint-disable-next-line import/no-extraneous-dependencies
        require("react-server-dom-webpack/client.edge").createFromReadableStream;
    }
    const newResponse = createFromReadableStream(flightStream, {
        ssrManifest: {
            moduleLoading: clientReferenceManifest.moduleLoading,
            moduleMap: isEdgeRuntime ? clientReferenceManifest.edgeSSRModuleMapping : clientReferenceManifest.ssrModuleMapping
        },
        nonce
    });
    flightResponses.set(flightStream, newResponse);
    return newResponse;
}
/**
 * There are times when an SSR render may be finished but the RSC render
 * is ongoing and we need to wait for it to complete to make some determination
 * about how to handle the render. This function will drain the RSC reader and
 * resolve when completed. This will generally require teeing the RSC stream and it
 * should be noted that it will cause all the RSC chunks to queue in the underlying
 * ReadableStream however given Flight currently is a push stream that doesn't respond
 * to backpressure this shouldn't change how much memory is maximally consumed
 */ export async function flightRenderComplete(flightStream) {
    const flightReader = flightStream.getReader();
    while(true){
        const { done } = await flightReader.read();
        if (done) {
            return;
        }
    }
}
/**
 * Creates a ReadableStream provides inline script tag chunks for writing hydration
 * data to the client outside the React render itself.
 *
 * @param flightStream The RSC render stream
 * @param nonce optionally a nonce used during this particular render
 * @param formState optionally the formState used with this particular render
 * @returns a ReadableStream without the complete property. This signifies a lazy ReadableStream
 */ export function createInlinedDataReadableStream(flightStream, nonce, formState) {
    const startScriptTag = nonce ? `<script nonce=${JSON.stringify(nonce)}>` : "<script>";
    const decoder = new TextDecoder("utf-8", {
        fatal: true
    });
    const decoderOptions = {
        stream: true
    };
    const flightReader = flightStream.getReader();
    const readable = new ReadableStream({
        type: "bytes",
        start (controller) {
            try {
                writeInitialInstructions(controller, startScriptTag, formState);
            } catch (error) {
                // during encoding or enqueueing forward the error downstream
                controller.error(error);
            }
        },
        async pull (controller) {
            try {
                const { done, value } = await flightReader.read();
                if (done) {
                    const tail = decoder.decode(value, {
                        stream: false
                    });
                    if (tail.length) {
                        writeFlightDataInstruction(controller, startScriptTag, tail);
                    }
                    controller.close();
                } else {
                    const chunkAsString = decoder.decode(value, decoderOptions);
                    writeFlightDataInstruction(controller, startScriptTag, chunkAsString);
                }
            } catch (error) {
                // There was a problem in the upstream reader or during decoding or enqueuing
                // forward the error downstream
                controller.error(error);
            }
        }
    });
    return readable;
}
function writeInitialInstructions(controller, scriptStart, formState) {
    controller.enqueue(encoder.encode(`${scriptStart}(self.__next_f=self.__next_f||[]).push(${htmlEscapeJsonString(JSON.stringify([
        INLINE_FLIGHT_PAYLOAD_BOOTSTRAP
    ]))});self.__next_f.push(${htmlEscapeJsonString(JSON.stringify([
        INLINE_FLIGHT_PAYLOAD_FORM_STATE,
        formState
    ]))})</script>`));
}
function writeFlightDataInstruction(controller, scriptStart, chunkAsString) {
    controller.enqueue(encoder.encode(`${scriptStart}self.__next_f.push(${htmlEscapeJsonString(JSON.stringify([
        INLINE_FLIGHT_PAYLOAD_DATA,
        chunkAsString
    ]))})</script>`));
}

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