mirror of
https://github.com/denoland/deno.git
synced 2024-12-22 07:14:47 -05:00
b4e42953e1
Co-authored-by: Aaron O'Mullan <aaron.omullan@gmail.com>
424 lines
11 KiB
Rust
424 lines
11 KiB
Rust
// Copyright 2018-2022 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 timers;
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use deno_core::error::range_error;
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use deno_core::error::type_error;
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use deno_core::error::AnyError;
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use deno_core::include_js_files;
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use deno_core::op;
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use deno_core::url::Url;
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use deno_core::ByteString;
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use deno_core::Extension;
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use deno_core::OpState;
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use deno_core::Resource;
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use deno_core::ResourceId;
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use deno_core::ZeroCopyBuf;
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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 serde::Deserialize;
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use serde::Serialize;
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use std::borrow::Cow;
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use std::cell::RefCell;
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use std::fmt;
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use std::usize;
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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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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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pub use crate::message_port::JsMessageData;
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pub use crate::message_port::MessagePort;
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use crate::timers::op_now;
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use crate::timers::op_sleep;
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use crate::timers::op_sleep_sync;
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use crate::timers::op_timer_handle;
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use crate::timers::StartTime;
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pub use crate::timers::TimersPermission;
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/// Load and execute the javascript code.
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pub fn init<P: TimersPermission + 'static>(
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blob_store: BlobStore,
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maybe_location: Option<Url>,
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) -> Extension {
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Extension::builder()
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.js(include_js_files!(
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prefix "deno:ext/web",
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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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"11_blob_url.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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))
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.ops(vec![
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op_base64_decode::decl(),
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op_base64_encode::decl(),
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op_base64_atob::decl(),
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op_base64_btoa::decl(),
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op_encoding_normalize_label::decl(),
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op_encoding_new_decoder::decl(),
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op_encoding_decode::decl(),
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op_encoding_encode_into::decl(),
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op_blob_create_part::decl(),
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op_blob_slice_part::decl(),
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op_blob_read_part::decl(),
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op_blob_remove_part::decl(),
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op_blob_create_object_url::decl(),
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op_blob_revoke_object_url::decl(),
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op_blob_from_object_url::decl(),
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op_message_port_create_entangled::decl(),
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op_message_port_post_message::decl(),
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op_message_port_recv_message::decl(),
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compression::op_compression_new::decl(),
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compression::op_compression_write::decl(),
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compression::op_compression_finish::decl(),
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op_now::decl::<P>(),
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op_timer_handle::decl(),
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op_sleep::decl(),
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op_sleep_sync::decl::<P>(),
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])
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.state(move |state| {
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state.put(blob_store.clone());
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if let Some(location) = maybe_location.clone() {
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state.put(Location(location));
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}
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state.put(StartTime::now());
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Ok(())
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})
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.build()
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}
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#[op]
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fn op_base64_decode(
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_: &mut OpState,
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input: String,
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_: (),
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) -> Result<ZeroCopyBuf, AnyError> {
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let mut input = input.into_bytes();
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input.retain(|c| !c.is_ascii_whitespace());
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Ok(b64_decode(&input)?.into())
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}
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#[op]
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fn op_base64_atob(
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_: &mut OpState,
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s: ByteString,
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_: (),
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) -> Result<ByteString, AnyError> {
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let mut s = s.0;
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s.retain(|c| !c.is_ascii_whitespace());
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// If padding is expected, fail if not 4-byte aligned
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if s.len() % 4 != 0 && (s.ends_with(b"==") || s.ends_with(b"=")) {
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return Err(
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DomExceptionInvalidCharacterError::new("Failed to decode base64.").into(),
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);
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}
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Ok(ByteString(b64_decode(&s)?))
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}
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fn b64_decode(input: &[u8]) -> Result<Vec<u8>, AnyError> {
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// "If the length of input divides by 4 leaving no remainder, then:
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// if input ends with one or two U+003D EQUALS SIGN (=) characters,
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// remove them from input."
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let input = match input.len() % 4 == 0 {
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true if input.ends_with(b"==") => &input[..input.len() - 2],
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true if input.ends_with(b"=") => &input[..input.len() - 1],
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_ => input,
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};
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// "If the length of input divides by 4 leaving a remainder of 1,
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// throw an InvalidCharacterError exception and abort these steps."
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if input.len() % 4 == 1 {
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return Err(
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DomExceptionInvalidCharacterError::new("Failed to decode base64.").into(),
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);
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}
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let cfg = base64::Config::new(base64::CharacterSet::Standard, true)
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.decode_allow_trailing_bits(true);
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let out = base64::decode_config(input, cfg).map_err(|err| match err {
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base64::DecodeError::InvalidByte(_, _) => {
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DomExceptionInvalidCharacterError::new(
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"Failed to decode base64: invalid character",
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)
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}
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_ => DomExceptionInvalidCharacterError::new(&format!(
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"Failed to decode base64: {:?}",
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err
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)),
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})?;
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Ok(out)
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}
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#[op]
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fn op_base64_encode(
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_: &mut OpState,
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s: ZeroCopyBuf,
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_: (),
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) -> Result<String, AnyError> {
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Ok(b64_encode(&s))
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}
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#[op]
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fn op_base64_btoa(
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_: &mut OpState,
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s: ByteString,
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_: (),
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) -> Result<String, AnyError> {
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Ok(b64_encode(&s))
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}
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fn b64_encode(s: impl AsRef<[u8]>) -> String {
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let cfg = base64::Config::new(base64::CharacterSet::Standard, true)
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.decode_allow_trailing_bits(true);
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base64::encode_config(s.as_ref(), cfg)
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}
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#[derive(Deserialize)]
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#[serde(rename_all = "camelCase")]
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struct DecoderOptions {
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label: String,
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ignore_bom: bool,
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fatal: bool,
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}
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#[op]
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fn op_encoding_normalize_label(
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_state: &mut OpState,
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label: String,
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_: (),
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) -> Result<String, AnyError> {
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let encoding = Encoding::for_label_no_replacement(label.as_bytes())
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.ok_or_else(|| {
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range_error(format!(
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"The encoding label provided ('{}') is invalid.",
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label
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))
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})?;
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Ok(encoding.name().to_lowercase())
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}
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#[op]
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fn op_encoding_new_decoder(
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state: &mut OpState,
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options: DecoderOptions,
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_: (),
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) -> Result<ResourceId, AnyError> {
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let DecoderOptions {
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label,
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fatal,
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ignore_bom,
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} = options;
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let encoding = Encoding::for_label(label.as_bytes()).ok_or_else(|| {
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range_error(format!(
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"The encoding label provided ('{}') is invalid.",
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label
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))
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})?;
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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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let rid = state.resource_table.add(TextDecoderResource {
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decoder: RefCell::new(decoder),
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fatal,
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});
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Ok(rid)
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}
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#[derive(Deserialize)]
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#[serde(rename_all = "camelCase")]
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struct DecodeOptions {
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rid: ResourceId,
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stream: bool,
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}
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#[op]
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fn op_encoding_decode(
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state: &mut OpState,
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data: ZeroCopyBuf,
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options: DecodeOptions,
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) -> Result<String, AnyError> {
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let DecodeOptions { rid, stream } = options;
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let resource = state.resource_table.get::<TextDecoderResource>(rid)?;
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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 = if fatal {
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decoder
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.max_utf8_buffer_length_without_replacement(data.len())
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.ok_or_else(|| range_error("Value too large to decode."))?
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} else {
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decoder
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.max_utf8_buffer_length(data.len())
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.ok_or_else(|| range_error("Value too large to decode."))?
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};
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let mut output = String::with_capacity(max_buffer_length);
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if fatal {
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let (result, _) =
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decoder.decode_to_string_without_replacement(&data, &mut output, !stream);
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match result {
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DecoderResult::InputEmpty => Ok(output),
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DecoderResult::OutputFull => {
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Err(range_error("Provided buffer too small."))
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}
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DecoderResult::Malformed(_, _) => {
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Err(type_error("The encoded data is not valid."))
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}
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}
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} else {
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let (result, _, _) = decoder.decode_to_string(&data, &mut output, !stream);
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match result {
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CoderResult::InputEmpty => Ok(output),
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CoderResult::OutputFull => Err(range_error("Provided buffer too small.")),
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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 Resource for TextDecoderResource {
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fn name(&self) -> Cow<str> {
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"textDecoder".into()
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}
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}
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#[derive(Serialize)]
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#[serde(rename_all = "camelCase")]
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struct EncodeIntoResult {
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read: usize,
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written: usize,
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}
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#[op]
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fn op_encoding_encode_into(
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_state: &mut OpState,
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input: String,
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mut buffer: ZeroCopyBuf,
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) -> Result<EncodeIntoResult, AnyError> {
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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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Ok(EncodeIntoResult {
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// The `read` output parameter is measured in UTF-16 code units.
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read: input[..boundary].encode_utf16().count(),
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written: boundary,
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})
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}
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#[derive(Debug)]
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pub struct DomExceptionQuotaExceededError {
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pub msg: String,
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}
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impl DomExceptionQuotaExceededError {
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pub fn new(msg: &str) -> Self {
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DomExceptionQuotaExceededError {
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msg: msg.to_string(),
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}
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}
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}
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#[derive(Debug)]
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pub struct DomExceptionInvalidCharacterError {
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pub msg: String,
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}
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impl DomExceptionInvalidCharacterError {
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pub fn new(msg: &str) -> Self {
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DomExceptionInvalidCharacterError {
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msg: msg.to_string(),
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}
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}
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}
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impl fmt::Display for DomExceptionQuotaExceededError {
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fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
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f.pad(&self.msg)
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}
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}
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impl fmt::Display for DomExceptionInvalidCharacterError {
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fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
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f.pad(&self.msg)
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}
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}
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impl std::error::Error for DomExceptionQuotaExceededError {}
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impl std::error::Error for DomExceptionInvalidCharacterError {}
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pub fn get_error_class_name(e: &AnyError) -> Option<&'static str> {
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e.downcast_ref::<DomExceptionQuotaExceededError>()
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.map(|_| "DOMExceptionQuotaExceededError")
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.or_else(|| {
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e.downcast_ref::<DomExceptionInvalidCharacterError>()
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.map(|_| "DOMExceptionInvalidCharacterError")
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})
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}
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pub struct Location(pub Url);
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