This change fixes findNativeName() in package:kernel/transformations/treeshaker
to handle constant evaluated Dart annotations. This function is used from
TFA and kernel tree shaker.
This change is a prerequisite for enabling constant evaluation of annotations.
Change-Id: I40f91cce6b34f0e262db7ae6f0fd98303acbf133
Reviewed-on: https://dart-review.googlesource.com/57401
Reviewed-by: Samir Jindel <sjindel@google.com>
Commit-Queue: Samir Jindel <sjindel@google.com>
This CL:
* Removes unused functions in the ClassHierarchy
* Turns the data structures used in the ClassHierarchy upside down
(nodes have a lists of supers instead of lists of subs)
* Factors some things that needs the original list-of-subs into another
class that the user can ask the ClassHierarchy to compute if needed.
It appears that it isn't generally.
This is step #1 in turning the ClassHierarchy into an incremental
ClassHierarchy.
Change-Id: I48c5731c01c1b0e8bf1fcd4ddba7f2bf7ce3b9c9
Reviewed-on: https://dart-review.googlesource.com/53662
Commit-Queue: Jens Johansen <jensj@google.com>
Reviewed-by: Aske Simon Christensen <askesc@google.com>
Dart allows 'external' functions which are not connected to their body.
Calling such functions produces runtime error, but they should be accepted
at compile time. Test language_2/external_test verifies this behavior.
This CL fixes treeshaker/findNativeName to return 'null' instead of throwing
an error for 'external' functions without @ExternalName annotation (which
is used to specify native name).
Change-Id: I04ec892af29ffe064ece8fddd6f67c7acdca1139
Reviewed-on: https://dart-review.googlesource.com/37122
Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
Commit-Queue: Alexander Markov <alexmarkov@google.com>
The changes in this CL include:
* handle interface targets also on this dispatch (which happens due
to mixins)
* preserve class members if interface targets refer to them
* remove references to shaken elements in `Library.additionalExports`
* support handling of typedefs
Change-Id: Id8df6fbf5c3428ae9c9f8b11ee9bf80c35a7a091
Reviewed-on: https://dart-review.googlesource.com/21640
Reviewed-by: Jens Johansen <jensj@google.com>
Commit-Queue: Martin Kustermann <kustermann@google.com>
The introduced "constants" transformation can evaluate constant expressions. The
original use-sites of constant expressions are replaced by a new [ConstantExpression]
node, which points to a subclass of a new [Constant] class hierarchy. Constant
[Field]s and [VariableDeclarations]s will be removed, since all use-sites are
re-written.
The [Constant] class hierarchy is, similarly to the [DartType] class hierarchy, not
part of the AST tree (also has no parent pointer). The constants form a
DAG (directed acyclic graph).
There is no canonicalization requirement of the [Constant] objects referenced by the
AST (via [ConstantExpression]). Although it is beneficial to canonicalize them during
construction, since it reduces time spent in operator==/hashCode.
This CL furthermore adds support for a constant table in the binary format. Similarly
to [String]s, we canonicalize the constants before writing the table to the binary.
The constant table entries in the binary are written in a post-order way, to ensure
easy construction on the backend side.
The text format will be augmented with a "constants { ... }" section at the end,
which lists the constants in the same order as in the binary format.
The transformation can be used by those backends who choose to do so. It is not
enabled by default atm. It should therefore not affect analyzer, fasta or other
components.
Change-Id: I57cd9624fedcf537ab6870db76246149647bed21
Reviewed-on: https://dart-review.googlesource.com/14382
Commit-Queue: Martin Kustermann <kustermann@google.com>
Reviewed-by: Kevin Millikin <kmillikin@google.com>
A smaller step this time - change only clients, but keep implementation
the same for now.
Not all patched SDKs have all classes and procedures, so I have to make
some them lazy. All of them could be done for consistency, but this
might slightly affect performance for often used dart:core classes.
Also it's a bit of mess now.
Maybe group these classes into logical structures, coreTypes.core.list,
coreTypes.async.future, coreTypes.async.futureMicrotask, etc. Something
like it was before this change, but fixed types and names instead of
more flexible (but in general slower) strings.
R=ahe@google.com, kmillikin@google.com, paulberry@google.com, sigmund@google.com
BUG=
Review-Url: https://codereview.chromium.org/2890933002 .
There are four operations that work on Vectors: Vector creation, looking
up an item in a Vector, assigning a value to an item in a Vector, and
copying a Vector. The first three operations are allowed to only use
integer literals as number operands (length for Vector creation, index
for item lookup and assignment). Corresponding AST nodes are created for
these operations.
Vectors are used to represent contexts in Closure Conversion. The parent
context is stored as item 0 in its children contexts. The "golden" tests
for this transformation are adjusted accordingly.
The support for Vectors is added to ast-to-text, ast-to-binary, and
binary-to-ast transformations.
R=asgerf@google.com, kmillikin@google.com
Review-Url: https://codereview.chromium.org/2767773004 .
The new class becomes a superclass of CoreTypes, which now gets its
functionality from that class, but also exposes commonly used built-in
members as fields.
This replaces a couple of ad-hoc linear searches spread throughout
the code.
The canonical names are not a convenient interface for transformers, so
the idea is that they can use LibraryIndex to address their own runtime
libraries.
To avoid name clashes and still have a somewhat convenient interface,
getters and setters are prefixed by 'get:' and 'set:' in the lookup
table (and only in the lookup table), and top-level members can be
accessed using '::' as the class name. This is the same convention
used by the VM, although it is currently not required to be the same.
R=dmitryas@google.com, karlklose@google.com, kmillikin@google.com
Review-Url: https://codereview.chromium.org/2706243011 .
This adds a class CanonicalName that can represent a library, class,
or member. All references now go through a Reference object, which is
linked to both the AST node and its CanonicalName, so either can be
created first.
dartk now accepts multiple input files:
- If multiple dart files are given, they are all compiled.
- If multiple binaries are given, they are linked together.
Mixed dart and binary input is not supported by dartk.
dartk now has a flag --include-sdk which includes the entire SDK in
the output. This is so the SDK can be compiled alone and then linked.
Example of compiling separately and then linking:
dartk foo.dart -o foo.dill
dartk main.dart -o main.dill
dartk --include-sdk -o sdk.dill
dartk main.dill foo.dill sdk.dill --target=vm --link -o program.dill
dartk still has incredibly slow cold start due to the analyzer loading
the dart sdk, so this does not actually speed things up at the moment.
BUG=
R=ahe@google.com, kmillikin@google.com, kustermann@google.com, sigmund@google.com
Review-Url: https://codereview.chromium.org/2665723002 .
- Use strong-mode types for more precise tree shaking.
- Bail out nicely if dart:mirrors is used.
- Run the tree shaker in the VM target.
The initial tree-shaking pass could be combined with the type checking
pass (inserting implicit down casts) but for now they remain separate.
R=kmillikin@google.com
Review-Url: https://codereview.chromium.org/2627723003 .
FunctionType now has a List<NamedType> which must be sorted by name.
Previously, named parameters were stored in a Map<String, DartType>.
FunctionNode still has a List<VariableDeclaration>, but this list must
now be sorted by name.
BUG=
R=ahe@google.com
Review URL: https://codereview.chromium.org/2502343002 .
Type annotations in the supertype clauses of a class are now Supertypes
instead of InterfaceTypes. In the current version, the two classes
contain the same information, but they are about to diverge in the
following ways:
- An InterfaceType may be nullable, whereas a supertype cannot.
- An InterfaceType may represent the exact class, a subclass, or
a subtype of the given class.
- The type arguments to an interface type represent bounds, whereas
the arguments to a supertype are always exact.
We also introduce a class Substitution that represents an operator
that replaces type parameters with types, depending on the variance
of their use site.
A substitution can be applied to a DartType or a Supertype, and can
be generated independently of how it will be applied.
BUG=
R=kmillikin@google.com
Review URL: https://codereview.chromium.org/2439043002 .