Updates to kernel that sets more offsets (and introduces end offests
and 'debuggability') - but doesn't necessarily persist them,
i.e. the format doesn't change and no C++ changes are neccessary yet.
This is step #1 in introducing these things, next step(s) will be
persisting the new stuff and using it on the C++ side.
R=asgerf@google.com, kmillikin@google.com
Review-Url: https://codereview.chromium.org/2610133002 .
- For now include source uncompressed.
- When running from kernel, use token position 0
(i.e. dummy, but 'real' position) as start and end on functions
and classes to enable Observatory to run with the dill file.
- Debugging does not work, but one can browse the source in
Observatory.
R=kmillikin@google.com
Review-Url: https://codereview.chromium.org/2587673004 .
This CL adds support for using sdk summaries when building kernel using the
front_end entrypoint. I didn't expose this functionality in the dartk binary,
I'm hoping we can delay doing so until we integrate dartk and front_end.
I also switched front_end/tool/perf.dart to use kernel_generator directly.
This makes some observable difference for small scripts, but not so much with large apps like dart2js. Makes sense considering that the sdk is about 2Mb, and dart2js is 6Mb of sources.
The most interesting number I got is building the a library kernel file (not the whole program) for a small hello-world script on a warmed up vm:
no summaries: 500ms
with summaries: 30ms
R=asgerf@google.com, paulberry@google.com
Review-Url: https://codereview.chromium.org/2562923002 .
As a result, this changes the order in which declarations appear in the generated output. The new order is more consistent with the textual order in the original file.
Calling .computeNode() is sort of an anti-pattern for using analyzer. This was
however used very sparsely in dartk. The few places where it was used,
computeNode was practically called immediately after resolving the library
element, so I don't expect this to make almost any difference in performance.
R=asgerf@google.com, paulberry@google.com
Review URL: https://codereview.chromium.org/2553303002 .
In kernel, library import URIs now support an "app" scheme as an
alternative to the "file" scheme, representing a path relative to
the application root.
dartk takes an --app-root flag giving the application root. If none
is given, file URIs are used instead.
The intention is that kernel binaries should not carry irrelevant
path information, such as the path to the home directory of the
user who compiled a given file.
It is not the intention that end-users should see an app URI.
Import paths are currently not shown to users at all, and if we need
to do this, they should be translated to file paths first.
In theory we could stick to file URIs with relative paths, but the Uri
class from dart:core makes this difficult, as certain operations on it
assume that file paths should be absolute.
Source mapping URIs are not yet affected by this change.
R=kmillikin@google.com
Committed: https://github.com/dart-lang/sdk/commit/60adb852ad706ecf9424c77d47fa05583d543def
Review URL: https://codereview.chromium.org/2532053005 .
Reverted: https://github.com/dart-lang/sdk/commit/bb540416f27c39d75ee7f243899939fc37a2cd03
In kernel, library import URIs now have the "app" scheme instead of
the "file" scheme, representing a path relative to the application root.
dartk takes an --app-root flag giving the application root. This
defaults to the current working directory.
The intention is that kernel binaries should not carry irrelevant
path information, such as the path to the home directory of the
user who compiled a given file.
It is not the intention that end-users should see an app URI.
Import paths are currently not shown to users at all, and if we need
to do this, they should be translated to file paths first.
In theory we could stick to file URIs with relative paths, but the Uri
class from dart:core makes this difficult, as certain operations on it
assume that file paths should be absolute.
Source mapping URIs are not yet affected by this change.
R=kmillikin@google.com
Review URL: https://codereview.chromium.org/2532053005 .
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 .
A mixin application C<T1 ... Tm> with D<T1 ... Tn> is canonicalized if
the Ts are distinct, unbound type variables. In all other cases, a new
class is created per mixin application.
Previously, all mixin applications were canonicalized in an overly
general way, causing type checking issues, and excessive duplication of
type parameters.
BUG=
R=kmillikin@google.com
Review URL: https://chromereviews.googleplex.com/511567015 .
The VM does not support function type parameters at the moment, but we
can erase them at the last minute, to enable testing of other parts of
strong mode.
This also disables error checking in the SDK since the VM's
patch files are not in strong mode.
BUG=
R=kustermann@google.com
Review URL: https://chromereviews.googleplex.com/518647013 .
The concept of a binary library file no longer exists.
A kernel file can contain any number of libraries, and some of these
libraries can be "external". To reference a class or member from
another build, the class or member must be declared in an external
library.
Members in an external library contain all their type information,
but have no body.
Classes in an external library have their hierarchy information
present, but are not guaranteed to contain all their actual members.
The idea is that references themselves don't really cross module
boundaries, but rather refer to a local definition whose body is
contributed from elsewhere, much like 'external' members in Dart.
A modular backend such as DDC should be able to compile from one of
these kernel files without needing to load auxiliary information from
summaries or other kernel files.
For whole program transformations or backends, a linking step, which
is not yet implemented, must merge classes and members in external
libraries based on their name.
External libraries share the same IR and binary format as ordinary
libraries. Transformations that affect the interface for a member
or class should transform the external libraries alongside with the
internal ones, ideally without needing to treat them any different.
R=kmillikin@google.com
Review URL: https://chromereviews.googleplex.com/516847013 .
For now the focus is on getting stacktraces to look right.
What that basically means is to include source positions for throws,
calls (in many forms).
Includes source file uri for libraries, field, classes and methods.
Methods and fields for instance needs it because of top-level
procedures that might be included via 'parts'.
Corresponding kernel-sdk change in review at
https://chromereviews.googleplex.com/516617014R=asgerf@google.com, kasperl@google.com
Review URL: https://chromereviews.googleplex.com/509247013 .
dartk and other command-line tools no longer rely on analyzer classes
like AnalysisContext or DartSdk, and instead use only the interface
defined in loader.dart.
The class AnalyzerLoader has been renamed to DartLoader.
The sharing of state in batch mode is now owned by loader.dart, so
dartk.dart does not deal with DartSdk and package_config.
Repository no longer has a package or SDK path. These concepts are
now specific to the Dart frontend. Consequently, loading a binary
file no longer relies on URI resolution.
The Repository class is now more clearly focused on linking symbolic
names to their IR objects, which for the time being is only
URI-to-library bindings, but should be extended to support linking
class and member references across different files and different
loaders.
BUG=
R=kmillikin@google.com
Review URL: https://chromereviews.googleplex.com/512907013 .
The analyzer keeps a separate AnalysisContext for the SDK, and the
options we set on our own context did not match those on the SDK,
mainly causing issues for strong mode.
Also, the BatchModeState is now used to share the Dart SDK, instead of
using a single instance held in a static variable.
BUG=
R=kmillikin@google.com
Review URL: https://chromereviews.googleplex.com/504827013 .
Some backend targets require extra libraries that are not used
explicitly by a program (e.g., the Dart VM requires its bootstrap
libraries). Add a target-specific list of these libraries and ensure
that they are loaded when loading a program from Dart sources.
BUG=
R=asgerf@google.com
Review URL: https://chromereviews.googleplex.com/495497014 .
For example:
class A extends Foo<int> with Bar<String> {}
class B extends Foo<int> with Bar<double> {}
becomes:
class Foo&Bar<S,T> = Foo<S> with Bar<T>;
class A extends Foo&Bar<int, String> {}
class B extends Foo&Bar<int, double> {}
BUG=
R=kmillikin@google.com
Review URL: https://chromereviews.googleplex.com/493197013 .
This makes super calls name-based (no target) and add direct calls with
both receiver and explicit target.
Super call resolution translates the name-based super calls into direct
calls after they have been cloned into the mixin application.
For JS backends, it should suffice to clone mixed-in methods that
contain super calls, but that transformation is not part of this CL.
This also adds a --target option to dartk designating the target to
which the kernel IR should be specialized. The new transformation
is run when --target=vm.
BUG=
R=kmillikin@google.com
Review URL: https://chromereviews.googleplex.com/486537013 .
We need the ability to efficiently transform a mixin application class
into a regular class, and the separation was obstructing it. It also
simplifies the IR a bit, although it no longer enforces the invariant
that mixin applications cannot contain fields and procedures.
The binary format is unchanged, so the separation still shows up in
there. This ensures the CL can land without any changes to the SDK.
BUG=
R=vegorov@google.com
Review URL: https://chromereviews.googleplex.com/488407013 .
Previously, anonymous libraries would have an empty name when loaded
from Dart, but a null name when loaded from binary.
The textual printer will use synthetic names for null, but not for empty
names, so we should prefer null.
BUG=
R=kmillikin@google.com
Review URL: https://chromereviews.googleplex.com/419187013 .