mirror of
https://github.com/denoland/deno.git
synced 2024-12-01 16:51:13 -05:00
73fbd61bd0
`performance.timeOrigin` was being set from when JS started executing, but `op_now` measures from an `std::time::Instant` stored in `OpState`, which is created at a completely different time. This caused `performance.timeOrigin` to be very incorrect. This PR corrects the origin and also cleans up some of the timer code. Compared to `Date.now()`, `performance`'s time origin is now consistently within 5us (0.005ms) of system time. ![image](https://github.com/user-attachments/assets/0a7be04a-4f6d-4816-bd25-38a2e6136926)
418 lines
11 KiB
Rust
418 lines
11 KiB
Rust
// Copyright 2018-2024 the Deno authors. All rights reserved. MIT license.
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mod blob;
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mod compression;
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mod message_port;
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mod stream_resource;
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mod timers;
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use deno_core::op2;
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use deno_core::url::Url;
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use deno_core::v8;
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use deno_core::ByteString;
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use deno_core::ToJsBuffer;
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use deno_core::U16String;
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use encoding_rs::CoderResult;
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use encoding_rs::Decoder;
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use encoding_rs::DecoderResult;
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use encoding_rs::Encoding;
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use std::borrow::Cow;
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use std::cell::RefCell;
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use std::path::PathBuf;
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use std::sync::Arc;
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pub use blob::BlobError;
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pub use compression::CompressionError;
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pub use message_port::MessagePortError;
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pub use stream_resource::StreamResourceError;
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use crate::blob::op_blob_create_object_url;
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use crate::blob::op_blob_create_part;
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use crate::blob::op_blob_from_object_url;
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use crate::blob::op_blob_read_part;
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use crate::blob::op_blob_remove_part;
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use crate::blob::op_blob_revoke_object_url;
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use crate::blob::op_blob_slice_part;
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pub use crate::blob::Blob;
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pub use crate::blob::BlobPart;
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pub use crate::blob::BlobStore;
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pub use crate::blob::InMemoryBlobPart;
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pub use crate::message_port::create_entangled_message_port;
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pub use crate::message_port::deserialize_js_transferables;
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use crate::message_port::op_message_port_create_entangled;
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use crate::message_port::op_message_port_post_message;
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use crate::message_port::op_message_port_recv_message;
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use crate::message_port::op_message_port_recv_message_sync;
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pub use crate::message_port::serialize_transferables;
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pub use crate::message_port::JsMessageData;
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pub use crate::message_port::MessagePort;
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pub use crate::message_port::Transferable;
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use crate::timers::op_defer;
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use crate::timers::op_now;
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use crate::timers::op_time_origin;
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pub use crate::timers::StartTime;
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pub use crate::timers::TimersPermission;
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deno_core::extension!(deno_web,
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deps = [ deno_webidl, deno_console, deno_url ],
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parameters = [P: TimersPermission],
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ops = [
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op_base64_decode,
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op_base64_encode,
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op_base64_atob,
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op_base64_btoa,
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op_encoding_normalize_label,
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op_encoding_decode_single,
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op_encoding_decode_utf8,
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op_encoding_new_decoder,
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op_encoding_decode,
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op_encoding_encode_into,
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op_blob_create_part,
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op_blob_slice_part,
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op_blob_read_part,
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op_blob_remove_part,
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op_blob_create_object_url,
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op_blob_revoke_object_url,
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op_blob_from_object_url,
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op_message_port_create_entangled,
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op_message_port_post_message,
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op_message_port_recv_message,
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op_message_port_recv_message_sync,
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compression::op_compression_new,
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compression::op_compression_write,
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compression::op_compression_finish,
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op_now<P>,
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op_time_origin<P>,
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op_defer,
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stream_resource::op_readable_stream_resource_allocate,
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stream_resource::op_readable_stream_resource_allocate_sized,
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stream_resource::op_readable_stream_resource_get_sink,
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stream_resource::op_readable_stream_resource_write_error,
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stream_resource::op_readable_stream_resource_write_buf,
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stream_resource::op_readable_stream_resource_write_sync,
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stream_resource::op_readable_stream_resource_close,
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stream_resource::op_readable_stream_resource_await_close,
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],
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esm = [
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"00_infra.js",
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"01_dom_exception.js",
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"01_mimesniff.js",
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"02_event.js",
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"02_structured_clone.js",
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"02_timers.js",
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"03_abort_signal.js",
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"04_global_interfaces.js",
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"05_base64.js",
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"06_streams.js",
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"08_text_encoding.js",
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"09_file.js",
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"10_filereader.js",
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"12_location.js",
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"13_message_port.js",
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"14_compression.js",
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"15_performance.js",
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"16_image_data.js",
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],
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options = {
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blob_store: Arc<BlobStore>,
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maybe_location: Option<Url>,
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},
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state = |state, options| {
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state.put(options.blob_store);
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if let Some(location) = options.maybe_location {
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state.put(Location(location));
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}
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state.put(StartTime::default());
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}
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);
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#[derive(Debug, thiserror::Error)]
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pub enum WebError {
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#[error("Failed to decode base64")]
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Base64Decode,
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#[error("The encoding label provided ('{0}') is invalid.")]
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InvalidEncodingLabel(String),
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#[error("buffer exceeds maximum length")]
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BufferTooLong,
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#[error("Value too large to decode")]
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ValueTooLarge,
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#[error("Provided buffer too small")]
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BufferTooSmall,
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#[error("The encoded data is not valid")]
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DataInvalid,
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#[error(transparent)]
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DataError(#[from] v8::DataError),
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}
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#[op2]
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#[serde]
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fn op_base64_decode(#[string] input: String) -> Result<ToJsBuffer, WebError> {
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let mut s = input.into_bytes();
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let decoded_len = forgiving_base64_decode_inplace(&mut s)?;
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s.truncate(decoded_len);
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Ok(s.into())
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}
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#[op2]
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#[serde]
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fn op_base64_atob(#[serde] mut s: ByteString) -> Result<ByteString, WebError> {
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let decoded_len = forgiving_base64_decode_inplace(&mut s)?;
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s.truncate(decoded_len);
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Ok(s)
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}
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/// See <https://infra.spec.whatwg.org/#forgiving-base64>
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#[inline]
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fn forgiving_base64_decode_inplace(
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input: &mut [u8],
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) -> Result<usize, WebError> {
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let decoded = base64_simd::forgiving_decode_inplace(input)
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.map_err(|_| WebError::Base64Decode)?;
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Ok(decoded.len())
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}
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#[op2]
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#[string]
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fn op_base64_encode(#[buffer] s: &[u8]) -> String {
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forgiving_base64_encode(s)
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}
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#[op2]
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#[string]
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fn op_base64_btoa(#[serde] s: ByteString) -> String {
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forgiving_base64_encode(s.as_ref())
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}
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/// See <https://infra.spec.whatwg.org/#forgiving-base64>
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#[inline]
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fn forgiving_base64_encode(s: &[u8]) -> String {
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base64_simd::STANDARD.encode_to_string(s)
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}
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#[op2]
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#[string]
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fn op_encoding_normalize_label(
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#[string] label: String,
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) -> Result<String, WebError> {
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let encoding = Encoding::for_label_no_replacement(label.as_bytes())
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.ok_or(WebError::InvalidEncodingLabel(label))?;
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Ok(encoding.name().to_lowercase())
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}
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#[op2]
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fn op_encoding_decode_utf8<'a>(
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scope: &mut v8::HandleScope<'a>,
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#[anybuffer] zero_copy: &[u8],
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ignore_bom: bool,
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) -> Result<v8::Local<'a, v8::String>, WebError> {
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let buf = &zero_copy;
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let buf = if !ignore_bom
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&& buf.len() >= 3
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&& buf[0] == 0xef
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&& buf[1] == 0xbb
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&& buf[2] == 0xbf
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{
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&buf[3..]
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} else {
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buf
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};
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// If `String::new_from_utf8()` returns `None`, this means that the
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// length of the decoded string would be longer than what V8 can
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// handle. In this case we return `RangeError`.
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//
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// For more details see:
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// - https://encoding.spec.whatwg.org/#dom-textdecoder-decode
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// - https://github.com/denoland/deno/issues/6649
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// - https://github.com/v8/v8/blob/d68fb4733e39525f9ff0a9222107c02c28096e2a/include/v8.h#L3277-L3278
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match v8::String::new_from_utf8(scope, buf, v8::NewStringType::Normal) {
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Some(text) => Ok(text),
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None => Err(WebError::BufferTooLong),
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}
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}
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#[op2]
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#[serde]
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fn op_encoding_decode_single(
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#[anybuffer] data: &[u8],
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#[string] label: String,
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fatal: bool,
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ignore_bom: bool,
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) -> Result<U16String, WebError> {
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let encoding = Encoding::for_label(label.as_bytes())
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.ok_or(WebError::InvalidEncodingLabel(label))?;
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let mut decoder = if ignore_bom {
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encoding.new_decoder_without_bom_handling()
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} else {
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encoding.new_decoder_with_bom_removal()
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};
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let max_buffer_length = decoder
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.max_utf16_buffer_length(data.len())
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.ok_or(WebError::ValueTooLarge)?;
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let mut output = vec![0; max_buffer_length];
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if fatal {
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let (result, _, written) =
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decoder.decode_to_utf16_without_replacement(data, &mut output, true);
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match result {
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DecoderResult::InputEmpty => {
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output.truncate(written);
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Ok(output.into())
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}
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DecoderResult::OutputFull => Err(WebError::BufferTooSmall),
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DecoderResult::Malformed(_, _) => Err(WebError::DataInvalid),
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}
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} else {
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let (result, _, written, _) =
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decoder.decode_to_utf16(data, &mut output, true);
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match result {
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CoderResult::InputEmpty => {
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output.truncate(written);
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Ok(output.into())
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}
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CoderResult::OutputFull => Err(WebError::BufferTooSmall),
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}
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}
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}
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#[op2]
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#[cppgc]
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fn op_encoding_new_decoder(
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#[string] label: &str,
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fatal: bool,
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ignore_bom: bool,
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) -> Result<TextDecoderResource, WebError> {
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let encoding = Encoding::for_label(label.as_bytes())
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.ok_or_else(|| WebError::InvalidEncodingLabel(label.to_string()))?;
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let decoder = if ignore_bom {
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encoding.new_decoder_without_bom_handling()
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} else {
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encoding.new_decoder_with_bom_removal()
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};
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Ok(TextDecoderResource {
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decoder: RefCell::new(decoder),
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fatal,
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})
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}
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#[op2]
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#[serde]
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fn op_encoding_decode(
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#[anybuffer] data: &[u8],
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#[cppgc] resource: &TextDecoderResource,
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stream: bool,
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) -> Result<U16String, WebError> {
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let mut decoder = resource.decoder.borrow_mut();
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let fatal = resource.fatal;
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let max_buffer_length = decoder
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.max_utf16_buffer_length(data.len())
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.ok_or(WebError::ValueTooLarge)?;
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let mut output = vec![0; max_buffer_length];
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if fatal {
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let (result, _, written) =
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decoder.decode_to_utf16_without_replacement(data, &mut output, !stream);
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match result {
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DecoderResult::InputEmpty => {
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output.truncate(written);
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Ok(output.into())
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}
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DecoderResult::OutputFull => Err(WebError::BufferTooSmall),
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DecoderResult::Malformed(_, _) => Err(WebError::DataInvalid),
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}
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} else {
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let (result, _, written, _) =
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decoder.decode_to_utf16(data, &mut output, !stream);
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match result {
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CoderResult::InputEmpty => {
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output.truncate(written);
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Ok(output.into())
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}
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CoderResult::OutputFull => Err(WebError::BufferTooSmall),
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}
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}
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}
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struct TextDecoderResource {
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decoder: RefCell<Decoder>,
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fatal: bool,
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}
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impl deno_core::GarbageCollected for TextDecoderResource {}
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#[op2(fast(op_encoding_encode_into_fast))]
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fn op_encoding_encode_into(
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scope: &mut v8::HandleScope,
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input: v8::Local<v8::Value>,
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#[buffer] buffer: &mut [u8],
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#[buffer] out_buf: &mut [u32],
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) -> Result<(), WebError> {
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let s = v8::Local::<v8::String>::try_from(input)?;
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let mut nchars = 0;
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out_buf[1] = s.write_utf8(
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scope,
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buffer,
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Some(&mut nchars),
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v8::WriteOptions::NO_NULL_TERMINATION
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| v8::WriteOptions::REPLACE_INVALID_UTF8,
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) as u32;
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out_buf[0] = nchars as u32;
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Ok(())
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}
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#[op2(fast)]
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fn op_encoding_encode_into_fast(
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#[string] input: Cow<'_, str>,
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#[buffer] buffer: &mut [u8],
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#[buffer] out_buf: &mut [u32],
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) {
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// Since `input` is already UTF-8, we can simply find the last UTF-8 code
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// point boundary from input that fits in `buffer`, and copy the bytes up to
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// that point.
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let boundary = if buffer.len() >= input.len() {
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input.len()
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} else {
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let mut boundary = buffer.len();
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// The maximum length of a UTF-8 code point is 4 bytes.
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for _ in 0..4 {
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if input.is_char_boundary(boundary) {
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break;
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}
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debug_assert!(boundary > 0);
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boundary -= 1;
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}
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debug_assert!(input.is_char_boundary(boundary));
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boundary
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};
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buffer[..boundary].copy_from_slice(input[..boundary].as_bytes());
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// The `read` output parameter is measured in UTF-16 code units.
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out_buf[0] = match input {
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// Borrowed Cow strings are zero-copy views into the V8 heap.
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// Thus, they are guarantee to be SeqOneByteString.
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Cow::Borrowed(v) => v[..boundary].len() as u32,
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Cow::Owned(v) => v[..boundary].encode_utf16().count() as u32,
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};
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out_buf[1] = boundary as u32;
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}
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pub fn get_declaration() -> PathBuf {
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PathBuf::from(env!("CARGO_MANIFEST_DIR")).join("lib.deno_web.d.ts")
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}
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pub struct Location(pub Url);
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