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+/*
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+ * Copyright (c) 2024, Tim Flynn <trflynn89@ladybird.org>
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+ *
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+ * SPDX-License-Identifier: BSD-2-Clause
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+ */
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+
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+#include <LibCompress/Deflate.h>
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+#include <LibCompress/Gzip.h>
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+#include <LibCompress/Zlib.h>
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+#include <LibJS/Runtime/ArrayBuffer.h>
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+#include <LibJS/Runtime/Realm.h>
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+#include <LibJS/Runtime/TypedArray.h>
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+#include <LibWeb/Bindings/DecompressionStreamPrototype.h>
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+#include <LibWeb/Bindings/ExceptionOrUtils.h>
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+#include <LibWeb/Bindings/Intrinsics.h>
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+#include <LibWeb/Compression/DecompressionStream.h>
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+#include <LibWeb/Streams/AbstractOperations.h>
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+#include <LibWeb/Streams/TransformStream.h>
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+#include <LibWeb/WebIDL/AbstractOperations.h>
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+
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+namespace Web::Compression {
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+
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+GC_DEFINE_ALLOCATOR(DecompressionStream);
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+
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+// https://compression.spec.whatwg.org/#dom-decompressionstream-decompressionstream
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+WebIDL::ExceptionOr<GC::Ref<DecompressionStream>> DecompressionStream::construct_impl(JS::Realm& realm, Bindings::CompressionFormat format)
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+{
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+ // 1. If format is unsupported in DecompressionStream, then throw a TypeError.
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+ // 2. Set this's format to format.
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+ auto input_stream = make<AllocatingMemoryStream>();
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+
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+ auto decompressor = [&, input_stream = MaybeOwned<Stream> { *input_stream }]() mutable -> ErrorOr<Decompressor> {
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+ switch (format) {
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+ case Bindings::CompressionFormat::Deflate:
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+ // FIXME: Our zlib decompressor assumes the initial data contains the zlib header. We don't have any data yet,
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+ // so this will always fail.
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+ return TRY(Compress::ZlibDecompressor::create(move(input_stream)));
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+ case Bindings::CompressionFormat::DeflateRaw:
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+ return TRY(Compress::DeflateDecompressor::construct(make<LittleEndianInputBitStream>(move(input_stream))));
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+ case Bindings::CompressionFormat::Gzip:
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+ return make<Compress::GzipDecompressor>(move(input_stream));
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+ }
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+
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+ VERIFY_NOT_REACHED();
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+ }();
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+
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+ if (decompressor.is_error())
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+ return WebIDL::SimpleException { WebIDL::SimpleExceptionType::TypeError, MUST(String::formatted("Unable to create decompressor: {}", decompressor.error())) };
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+
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+ // 5. Set this's transform to a new TransformStream.
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+ // NOTE: We do this first so that we may store it as nonnull in the GenericTransformStream.
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+ auto stream = realm.create<DecompressionStream>(realm, realm.create<Streams::TransformStream>(realm), decompressor.release_value(), move(input_stream));
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+
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+ // 3. Let transformAlgorithm be an algorithm which takes a chunk argument and runs the decompress and enqueue a chunk
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+ // algorithm with this and chunk.
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+ auto transform_algorithm = GC::create_function(realm.heap(), [stream](JS::Value chunk) -> GC::Ref<WebIDL::Promise> {
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+ auto& realm = stream->realm();
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+ auto& vm = realm.vm();
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+
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+ if (auto result = stream->decompress_and_enqueue_chunk(chunk); result.is_error()) {
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+ auto throw_completion = Bindings::dom_exception_to_throw_completion(vm, result.exception());
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+ return WebIDL::create_rejected_promise(realm, *throw_completion.release_value());
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+ }
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+
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+ return WebIDL::create_resolved_promise(realm, JS::js_undefined());
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+ });
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+
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+ // 4. Let flushAlgorithm be an algorithm which takes no argument and runs the decompress flush and enqueue algorithm with this.
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+ auto flush_algorithm = GC::create_function(realm.heap(), [stream]() -> GC::Ref<WebIDL::Promise> {
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+ auto& realm = stream->realm();
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+ auto& vm = realm.vm();
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+
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+ if (auto result = stream->decompress_flush_and_enqueue(); result.is_error()) {
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+ auto throw_completion = Bindings::dom_exception_to_throw_completion(vm, result.exception());
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+ return WebIDL::create_rejected_promise(realm, *throw_completion.release_value());
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+ }
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+
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+ return WebIDL::create_resolved_promise(realm, JS::js_undefined());
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+ });
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+
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+ // 6. Set up this's transform with transformAlgorithm set to transformAlgorithm and flushAlgorithm set to flushAlgorithm.
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+ Streams::transform_stream_set_up(stream->m_transform, transform_algorithm, flush_algorithm);
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+
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+ return stream;
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+}
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+
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+DecompressionStream::DecompressionStream(JS::Realm& realm, GC::Ref<Streams::TransformStream> transform, Decompressor decompressor, NonnullOwnPtr<AllocatingMemoryStream> input_stream)
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+ : Bindings::PlatformObject(realm)
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+ , Streams::GenericTransformStreamMixin(transform)
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+ , m_decompressor(move(decompressor))
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+ , m_input_stream(move(input_stream))
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+{
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+}
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+
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+DecompressionStream::~DecompressionStream() = default;
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+
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+void DecompressionStream::initialize(JS::Realm& realm)
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+{
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+ Base::initialize(realm);
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+ WEB_SET_PROTOTYPE_FOR_INTERFACE(DecompressionStream);
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+}
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+
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+void DecompressionStream::visit_edges(JS::Cell::Visitor& visitor)
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+{
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+ Base::visit_edges(visitor);
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+ Streams::GenericTransformStreamMixin::visit_edges(visitor);
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+}
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+
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+// https://compression.spec.whatwg.org/#decompress-and-enqueue-a-chunk
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+WebIDL::ExceptionOr<void> DecompressionStream::decompress_and_enqueue_chunk(JS::Value chunk)
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+{
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+ auto& realm = this->realm();
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+
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+ // 1. If chunk is not a BufferSource type, then throw a TypeError.
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+ if (!WebIDL::is_buffer_source_type(chunk))
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+ return WebIDL::SimpleException { WebIDL::SimpleExceptionType::TypeError, "Chunk is not a BufferSource type"sv };
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+
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+ // 2. Let buffer be the result of decompressing chunk with ds's format and context. If this results in an error,
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+ // then throw a TypeError.
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+ auto buffer = [&]() -> ErrorOr<ByteBuffer> {
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+ if (auto buffer = WebIDL::underlying_buffer_source(chunk.as_object()))
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+ return decompress(buffer->buffer());
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+ return ByteBuffer {};
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+ }();
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+
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+ if (buffer.is_error())
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+ return WebIDL::SimpleException { WebIDL::SimpleExceptionType::TypeError, MUST(String::formatted("Unable to decompress chunk: {}", buffer.error())) };
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+
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+ // 3. If buffer is empty, return.
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+ if (buffer.value().is_empty())
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+ return {};
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+
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+ // 4. Split buffer into one or more non-empty pieces and convert them into Uint8Arrays.
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+ auto array_buffer = JS::ArrayBuffer::create(realm, buffer.release_value());
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+ auto array = JS::Uint8Array::create(realm, array_buffer->byte_length(), *array_buffer);
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+
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+ // 5. For each Uint8Array array, enqueue array in ds's transform.
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+ TRY(Streams::transform_stream_default_controller_enqueue(*m_transform->controller(), array));
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+ return {};
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+}
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+
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+// https://compression.spec.whatwg.org/#decompress-flush-and-enqueue
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+WebIDL::ExceptionOr<void> DecompressionStream::decompress_flush_and_enqueue()
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+{
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+ auto& realm = this->realm();
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+
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+ // 1. Let buffer be the result of decompressing an empty input with ds's format and context, with the finish flag.
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+ auto buffer = decompress({});
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+
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+ if (buffer.is_error())
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+ return WebIDL::SimpleException { WebIDL::SimpleExceptionType::TypeError, MUST(String::formatted("Unable to compress flush: {}", buffer.error())) };
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+
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+ // FIXME: 2. If the end of the compressed input has not been reached, then throw a TypeError.
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+
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+ // 3. If buffer is empty, return.
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+ if (buffer.value().is_empty())
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+ return {};
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+
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+ // 4. Split buffer into one or more non-empty pieces and convert them into Uint8Arrays.
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+ auto array_buffer = JS::ArrayBuffer::create(realm, buffer.release_value());
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+ auto array = JS::Uint8Array::create(realm, array_buffer->byte_length(), *array_buffer);
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+
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+ // 5. For each Uint8Array array, enqueue array in ds's transform.
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+ TRY(Streams::transform_stream_default_controller_enqueue(*m_transform->controller(), array));
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+ return {};
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+}
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+
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+ErrorOr<ByteBuffer> DecompressionStream::decompress(ReadonlyBytes bytes)
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+{
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+ TRY(m_input_stream->write_until_depleted(bytes));
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+
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+ return TRY(m_decompressor.visit([&](auto const& decompressor) {
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+ return decompressor->read_until_eof();
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+ }));
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+}
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+
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+}
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