When a DisplayObject is removed from its parent by a RemoveTag, it still runs its framescript for the current frame (but with 'this.parent == null'). It then stops executing entirely, unlike ActionScript-removed orphans, which continue to execute indefinitely.
Additionally, objects created by ActionScript during a frame skip their next 'enterFrame' logic (but still receive an enterFrame event). This results in the currentFrame lagging one frame behind objects that were placed by the timeline during the same frame.
The combination of these two changes lets us greatly simplify frame lifecycle handling for orphan movies. Most of the orphan stages were unencessary, and the remaining ones run in the same phase as the normal Stage-descendant objects.
When a MovieClip is an 'orphan' (it has no parent),
it still has frames run (including frame scripts). Some SWFS
like SteamBirds and 'This is the Only Level TOO' rely on this behavior,
so we need to implement it.
The overall idea is straightforward - we keep a global list of
orphan movies, which we add to whenever we unset the parent for a movie.
This list stores weak references for consistency with Flash.
When we run a frame, we process entries in the root movie list,
in addition to the normal recursive processing from the `Stage`.
However, exactly matching Flash's output turned out to be quite tricky.
The particular sequence of calls I make in `run_all_phases_avm2` makes Ruffle
pass two complicated test cases, but there could still be lurking bugs.
This is enough to get SteamBirds to the first level (which doesn't
render due to a different error).
This is linked to the legacy DisplayObject::Text, which can
only be created by Flash CS6 (but is allowed in AVM2 swfs).
The 'StaticText' class cannot be constructed from ActionScript.
To support this, I've added support for native initializers to
playerglobal. This allows us to throw an exception in the
ActionScript constructor in Test.as, and do nothing in the native
intiializer (so that we can construct it from a DisplayObject).
I've left StaticText.text unimplemented for now, since it will require
dealing with Glyphs
Co-authored-by: kmeisthax <dcrkid@yahoo.com>
Previously, we would display an empty string for the method name.
We can now store a `&'static str` again in `NativeMethod`,
instead of needing a `Cow`
Our AVM2 `SharedObject` support is now *almost* equivalent
to our avm1 `SharedObject` support. We implement serialization
and deserialization for primitives, arrays, and `Object` instances
with local properties. We also implement serialization for `Date`,
but not `Xml` (since our AVM2 `Xml` class is just a stub at the moment).
This is enough to make 'This is the only level too' save level
progress to disk.
Currently, we always serialize to AMF3. When we implement
the `defaultObjectEncoding` and `objectEncoding`, we'll need
to adjust this.
* avm2: Implement call stack
* avm2: Class traits should have a special prefix
* avm2: Stack tracebacks should also contain error message
* avm2: Move method naming to Executable
* avm2: Handle getter and setter methods in tracebacks
* chore: Formatting
* chore: Add comments
* avm2: Make full_name write to a string, instead of creating a new one
* core: Make GcArena publicly accessible
* core: Add Deref impl for Either type
* desktop: Add AVM2 call stack to panic message
* avm2: Prefix native methods with a `/`
* chore: Appease clippy
* avm2: Check if method actually contains bytecode instead of unwrapping
* web: Add AVM2 stack trace to panic message
* chore: Formatting
* chore: Clippy
* avm2: Fix stack traces for free standing functions
* core: Remove global data from context
* core: Rename GcGlobalData to GcCallstack
* core: Introduce StaticCallstack, make GcArena private again
Co-authored-by: Adrian Wielgosik <4729533+adrian17@users.noreply.github.com>
Extract `swf::Reader::read_do_abc()` which, as the name suggests,
reads a `DoAbc` tag, and use it before calling to `Avm2::load_abc`.
Finally, introduce `DoAbcFlag` using `bitflags`.
This greatly simplifies the ABC loading code.
This commit adds support for combining instance allocators with
ActionScript playerglobal class definitions. This is activated
by defining the metadata `[Ruffle(InstanceAllocator = "true")]`
on the ActionScript class definition.
The implementation of this feature is very similar to native methods:
`build_playerglobal` checks for the metadata described above,
and defines a const `NATIVE_INSTANCE_ALLOCATOR_TABLE` mapping
class ids to function pointers.
To demonstrate this feature, I've converted `Event` to ActionScript
(keeping the existing instance allocator function).
I've also converted `ActivityEvent` and `ContextMenuEvent` to
`ActionScript`, to demonstrate how this simplifies inheritance.
In a future PR, we can convert the remaining events to ActionScript,
and remove the `EventData` enum entirely.
Unfortunately, `flex-sdk`'s `asc.jar` compiler strips out all metadata
when the `-optimize` option is passed. As a result, I forked
`flex-sdk` and disabled this behavior:
https://github.com/ruffle-rs/flex-sdk/releases/tag/ruffle-1.0.0
The modified `asc.jar` (built from the forked repository)
is included in this PR, and replaces the our previous 'asc.jar'
downloaded from the official Flex SDK release.
* Change metadata to `[Ruffle(InstanceAllocator)]`
* Strip out metadata before saving bytecode
This commit adds support for marking methods as `native`
in ActionScript classes defined in playerglobal. The
`build_playerglobal` now checks for native methods, and
generates Rust code linking them to a corresponding Rust
function definition in the codebase.
To test this functionality, I've reimplemented several
functions as native methods (and moved related code to
pure ActionScript).
This PR adds support for building a custom `playerglobal.swf`, which can be used
to implement builtin Flash classes in ActionScript. This file is embedded into Ruffle
using `include_bytes!`, and loaded during initialization.
As an example, the `Point` class is reimplemented
in ActionScript, and `flash.text.AntiAliasType` is added.
The ActionScript compilation process is performed by `core/build.rs`.
See that file, along with `core/src/avm2/globals/README.md`, for
more details.
This PR implements the `URLLoader` class, allowing AVM2 scripts
to load data from a URL. This requires several other related
classes (`URLLoaderDataFormat`, `URLRequest`, `IOError`) to be
implemented as well.
Currently implemented:
* Fetching from URLs using the 'navigator' backend
* The `text` and `binary` data formats (which store data
in a `String` or `ByteArray` respectively)
* The `open`, `complete`, and `ioError` events
* The `bytesLoaded`, `bytesTotal`, and `data` properties
Not yet implemented:
* The HTTP and security events
* All of the properties of `IOError`
* The properties on `URLRequest` (besides `url`)
* The "variables" data format
This should be enough to get some basic uses of `URLLoader` working
(e.g. simple GET requests to a particular website).
Note that in Flash's `playerglobal`, the `URLLoader` class is just
a think wrapper around the more general `URLStream`. However,
implementing `URLStream` will require changes to `Navigator``
to support notifications when data arrives in the stream. When
that happens, we should be able to re-use a large amount of the
code in this PR.
This re-uses the logic we have for handling AVM1's `ExternalInterface`.
For now, serialization/deserialization of non-array objects is
left unimplemented.