Add explicit IgnoreBOM and ErrorMode options to LibTextCodec decoders,
and thread them through TextDecoder and TextDecoderStream.
This lets Web-facing decoder APIs preserve BOMs when requested and use
fatal error handling without post-processing decoded output.
NB: RemoveBOM was renamed to IgnoreBOM as "RemoveBOM" is the name
used by encoding_rs and was previously an implementation detail.
The new name matches what is used by the encoding standard as it
is now also used in LibWeb.
Represent BufferSource and ArrayBufferView as ordinary IDL typedefs over
their underlying union types, instead of special casing in the IDL
generator. This allows the union conversion/return machinery handle
these types consistently with other typedefs, which removes buffer
specific paths from the IDL generator.
This necessitates changing the WebIDL::BufferSource and
WebIDL::ArrayBufferView classes as views over these variants. This
replaces the old GC backed BufferableObject wrapper structure and
provide convenience helpers to determine things such as the byte length,
byte offset, backing buffer, and typed-array APIs.
Represent WebIDL C++ types with a single CppType model that tracks
nullability, optional presence, and contained storage.
GC-like values now use GC::Ref/GC::Ptr directly, while containers choose
"plain", "Root", or "Conservative" container types depending on what
they contain. For example, sequence<Element> becomes a RootVector of
GC::Ref values, while sequence<SomeDictionary> becomes a
ConservativeVector only when the dictionary contains GC-like values.
This moves the generated bindings away from wrapping GC values in
GC::Root by default.
This has broad fallout as the types passed to interfaces for GC
objects changes almost fully across the board.
Previously we were inconsistent by generating code for enum definitions
but not generating code for dictionaries. With future changes to the
IDL generator to expose helpers to convert to and from IDL values
this produced circular depdendencies. To solve this problem, also
generate the dictionary definitions in bindings headers.
This mirrors the existing TextEncoderCommon split and lets a future
TextDecoderStream share the same encoding/fatal/ignoreBOM state with
TextDecoder. The state (decoder reference, encoding name, error mode,
ignore-BOM flag, and BOM-seen flag) all moves into a
TextDecoderCommonMixin base class so both interfaces can inherit it.
Resulting in a massive rename across almost everywhere! Alongside the
namespace change, we now have the following names:
* JS::NonnullGCPtr -> GC::Ref
* JS::GCPtr -> GC::Ptr
* JS::HeapFunction -> GC::Function
* JS::CellImpl -> GC::Cell
* JS::Handle -> GC::Root