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 .
TypeAnnotationBuilder and InterfaceType were being allocated
a bit aggressively.
It makes no measurable difference on runtime, but it rules out
some of these objects as potential culprits.
R=kmillikin@google.com
Review-Url: https://codereview.chromium.org/2581693002 .
Some of the kernel unit tests can now be run using:
tools/test.py -cdartk -rself_check language co19
This will search the pkg/ folder for files matching *_self_check.dart
and run each program with the compiled output as argument. If there is
no compiler, the test case itself is given as argument. These testers
are always run in batch-mode.
This type of test has no expected output, but is intended to check
itself by testing that certain invariants are not violated while
processing the given data set.
The 'self_check' runtime is not specifically tied to kernel,
although only kernel is using it at the moment.
There is also a new option --skip-compilation which skips the
compiler step. It doesn't interact nicely with the status files,
but can still be useful for a quick offline test.
Current limitations:
- All self-check tests are treated as the same test case. If one fails,
the remaining self-check testers don't run for that input.
- There is no way to run a subset of the self-check tests, or filter
them based on what compiler was used.
- Tests that are expected to fail in the compiler show up as
errors when skipping compilation.
BUG=
R=kustermann@google.com, whesse@google.com
Review-Url: https://codereview.chromium.org/2549793002 .
This is the result of:
- taking the diff of the branch closure_conversion to master in the kernel
repository
- updating the file paths
- applying the diff to the Dart SDK
- fixing conflicts between the changes to pkg/kernel in the Dart SDK and the master branch in the kernel repository
R=asgerf@google.com
Review-Url: https://codereview.chromium.org/2561723003 .
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 .
This CL creates top level accessor functions which may be used to map from AST data structures to their corresponding elements and types, and begins using those accessor functions throughout the SDK. It also adds empty interfaces ResolutionTarget and ResolutionType, which are implemented by Element and DartType respectively.
In a future CL, I will change the types stored in the AST to ResolutionTarget and ResolutionType, rather than specific element types; this will decouple the ASTs from the element model. The presence of the accessor functions will allow clients to continue accessing elements and types in a type-safe way.
R=asgerf@google.com, brianwilkerson@google.com, scheglov@google.com, vsm@google.com
Review URL: https://codereview.chromium.org/2551023005 .
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
We now check that classes and type parameters are not redeclared.
The verify_test also verifies that its test harness has no errors,
as this would make all the other tests useless.
BUG=
R=kmillikin@google.com
Review URL: https://codereview.chromium.org/2539743002 .
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 .
This replaces the old --sanity-check flag from dartk. Some files have
been renamed to avoid the wording "sanity check".
Compared to --sanity-check, the following checks have been added:
- variables are not referenced out of scope
- variables are not redeclared
- class type parameters are not referenced from static context
A unit test has been added to check that the verifier rejects certain
invalid ASTs.
BUG=
R=kmillikin@google.com
Review URL: https://codereview.chromium.org/2531873002 .
Sanity checks now run in a single pass rather than two, and
instead of building a set consisting of all members, it uses
a bit from the transformer flags to remember which members are
not orphaned.
As an additional check, it now checks that members are not
declared more than once.
R=kmillikin@google.com
Review URL: https://codereview.chromium.org/2529973002 .
This was originally done to be consistent with FunctionType,
where the named parameters are sorted, but for FunctionNode
it is not necessary.
It causes issues for natives that expect parameters to be
declared in a certain order. It is also an issue if we
ever want to reuse the kernel format for summaries, where
it is also preferable to present the named parameters in
their original order.
BUG=
R=kmillikin@google.com
Review URL: https://codereview.chromium.org/2527933002 .
This file is not strong-mode clean, but since a more recent version
of closure conversion still exists in a branch on the kernel github
repo, there is not much point in fixing this version of it.
BUG=
R=ahe@google.com
Review URL: https://codereview.chromium.org/2526793002 .
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 .
Since offsets and uris was added to the dill file, compiling to dill
without linking hasn't worked because of external libraries.
The external libraries doesn't add to the line starts table and thus
the uris from libraries, classes and so on isn't recorded.
When trying to write an unrecorded uri to the dill file it fails.
The simple solution applied here is to fall-back to the empty
string when the uri hasn't been recorded.
BUG=
R=asgerf@google.com
Review URL: https://codereview.chromium.org/2483243002 .
If the body of a let expression contains an await, the translation could
hoist statements that contain references to the let-bound variable out
of its scope.
Instead split by cases on whether the body contains an await. If so, we
hoist let-bound variables to the statement level. If not, we produce a
let expression.
BUG=
R=asgerf@google.com
Review URL: https://codereview.chromium.org/2480743002 .
The translation for async and async* functions translates returns into
two statements, where the second one is a return. The VM's compilation
strategy is to inline the code for all finally blocks immediately before
a return statement.
This causes future completion/stream cancellation to occur before
finally blocks, instead of after as intended.
The solution here is to translate returns into a break from a labeled
block and put a single async/async* return sequence, outside any finally
blocks, after the labeled block.
BUG=
R=asgerf@google.com
Review URL: https://codereview.chromium.org/2476513003 .