Commit Graph

303 Commits

Author SHA1 Message Date
Martin Kustermann d91e0ad3d7 [VM] Make method extractors call a stub for creation of tear-off closure
Issue https://github.com/dart-lang/sdk/issues/33274

Change-Id: I7ec37a57c968baa9a3099379cbecb306cd06b464
Reviewed-on: https://dart-review.googlesource.com/c/72780
Commit-Queue: Martin Kustermann <kustermann@google.com>
Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
2018-10-23 15:51:37 +00:00
Ryan Macnak 662ff7f112 [vm] Remove TokenStream, TokenValue, CompilerStats.
(CompilerStats timers have been replaced with the timeline events.)

Change-Id: Iddcb752c085de9762eb802371b6d2905fa608a76
Reviewed-on: https://dart-review.googlesource.com/c/79086
Reviewed-by: Siva Annamalai <asiva@google.com>
Commit-Queue: Ryan Macnak <rmacnak@google.com>
2018-10-10 21:39:45 +00:00
Ryan Macnak 2f25dcda16 [vm] Remove script snapshots.
Change-Id: I5bc692b754c0909de4aa5f05af81b074578b16f4
Reviewed-on: https://dart-review.googlesource.com/76706
Reviewed-by: Siva Annamalai <asiva@google.com>
Commit-Queue: Ryan Macnak <rmacnak@google.com>
2018-09-26 22:49:27 +00:00
Ryan Macnak 7d7e7c268e [vm] Work around interaction between type and instance canonicalization in isolate messages.
Type canonicalization is deferred between in may involve cycles. Instances are canonicalized eagerly, but their type arguments are not necessarily canonical yet, which can lead to incorrect canonicalization of the instance.

The work around is to include the most popular type arguments in the serializer's set of base objects, bypassing deferred canonicalization. Other type arguments will continue to fail.

Bug: https://github.com/dart-lang/sdk/issues/33430
Change-Id: Ia992b3ebc2974b54acb5c88b3e1d836f6ec1f1b8
Reviewed-on: https://dart-review.googlesource.com/61721
Commit-Queue: Ryan Macnak <rmacnak@google.com>
Reviewed-by: Siva Annamalai <asiva@google.com>
2018-06-21 23:45:05 +00:00
Régis Crelier 12b33ada44 [VM interpreter] Support NativeCall kernel bytecode.
Change-Id: I89c905d17fb48447239ee4b0c1c8c50060239b88
Reviewed-on: https://dart-review.googlesource.com/59560
Commit-Queue: Régis Crelier <regis@google.com>
Reviewed-by: Zach Anderson <zra@google.com>
Reviewed-by: Alexander Markov <alexmarkov@google.com>
2018-06-13 23:30:44 +00:00
Samir Jindel beb0432d6c Re-land "[vm/kernel/aot] Exclude vmservice_io from "product" AOT snapshots."
This reverts commit 17585c42fe.

The original revision is in Patchset 1.

Fixed Tests:

python tools/test.py -m debug -c dartkp -r dart_precompiled --strong standalone_2/no_support_service_test
python tools/test.py -m product -c precompiler -r dart_precompiled lib_2/isolate/function_send1_test

Change-Id: I6af715ee3c080b515c8312357f3d8be6e494747a
Reviewed-on: https://dart-review.googlesource.com/59760
Commit-Queue: Samir Jindel <sjindel@google.com>
Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
2018-06-12 15:31:19 +00:00
Alexander Markov 17585c42fe Revert "[vm/kernel/aot] Exclude vmservice_io from "product" AOT snapshots."
This reverts commit 23fff58503.

Reason: failures on vm-kernel-precomp-linux-debug-x64-4-8-be,
precomp-linux-debug-x64-1-3-be, precomp-linux-product-x64-be bots.
Change-Id: I7bd67038aac3795c4b6ec9562c6fd4afead41a36
Reviewed-on: https://dart-review.googlesource.com/59242
Reviewed-by: Alexander Markov <alexmarkov@google.com>
Commit-Queue: Alexander Markov <alexmarkov@google.com>
2018-06-08 00:51:53 +00:00
Samir Jindel 23fff58503 [vm/kernel/aot] Exclude vmservice_io from "product" AOT snapshots.
The `@pragma` annotation on `vmservice_io.main` is modified to only mark it as a
root on non-product builds. Since the annotation is evaluated in the constant
transformation, we need to thread a flag through `gen_kernel.dart` indicating
whether the Kernel produced should target a product precompiler.

# Test Plan

Tested locally on Flutter. Unfortunately it's not possible to test the scenario where
`vmservice_io` is not included, since we don't have any "product" bots. Soon the
flag will be introduced into Flutter, and we will have some coverage from there.

Change-Id: I39f12343038fa221aafe5a55241bff4b8d14ec19
Reviewed-on: https://dart-review.googlesource.com/57501
Commit-Queue: Samir Jindel <sjindel@google.com>
Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
2018-06-07 20:22:21 +00:00
Alexander Markov c3b5939965 [vm] Remove --limit-ints-to-64-bits option and old _Bigint class
Closes https://github.com/dart-lang/sdk/issues/33306

Change-Id: I7088d8b7143edbe24f5cefe4be037ad2006e0625
Reviewed-on: https://dart-review.googlesource.com/58101
Commit-Queue: Alexander Markov <alexmarkov@google.com>
Reviewed-by: Régis Crelier <regis@google.com>
Reviewed-by: Ryan Macnak <rmacnak@google.com>
2018-06-04 20:10:40 +00:00
Samir Jindel 3d2b66074c Reland "[vm] Support definition of entry-points via @pragma('vm.extern') annotations.""
When the constant transformation is enabled on annotations, we need to fix handling
of @ExternalName annotations in the kernel_loader to ensure that we are setting
is_external = false on native methods.

The original revision is in patchset 1.

# Test Plan

The only regression was on benchmarks, Golem results are pending.

Change-Id: Ib80bb9f532299056e770a3b378cc5ad9ee451f57
Reviewed-on: https://dart-review.googlesource.com/56960
Commit-Queue: Samir Jindel <sjindel@google.com>
Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
2018-05-30 20:06:40 +00:00
Samir Jindel 58dc4e476d Revert "[vm] Support definition of entry-points via @pragma('vm.extern') annotations."
This reverts commit 3e50ea32b5.

Reason for revert: Severe performance regressions on many aot-v2 benchmarks.

Original change's description:
> [vm] Support definition of entry-points via @pragma('vm.extern') annotations.
> 
> The `@pragma` annotations are evaluated by the constants transformation and
> visible to TFA and the precompiler, which match on the "options" field of the
> annotation to determine whether to mark the class/procedure as a root.
> 
> This required enabling the transformation of annotation constants by default.
> 
> # Test Plan
> 
> The "vmservice_io.main" entry-point is removed from `main.cc` and annotated with
> `@pragma`. All precompiler tests will crash if "vmservice_io.main" is not
> available at runtime.
> 
> Debug/release precompiler bots are visible in "cl-linux" button.
> 
> Change-Id: I03c5d6ba7918672ed9905fcaee8dabe675a93a5d
> Reviewed-on: https://dart-review.googlesource.com/56660
> Commit-Queue: Samir Jindel <sjindel@google.com>
> Reviewed-by: Vyacheslav Egorov <vegorov@google.com>

TBR=vegorov@google.com,alexmarkov@google.com,sjindel@google.com

Change-Id: I779c17d003659129a4b3fcf284423104948f60e2
No-Presubmit: true
No-Tree-Checks: true
No-Try: true
Reviewed-on: https://dart-review.googlesource.com/56820
Reviewed-by: Samir Jindel <sjindel@google.com>
Commit-Queue: Samir Jindel <sjindel@google.com>
2018-05-28 19:23:16 +00:00
Samir Jindel 3e50ea32b5 [vm] Support definition of entry-points via @pragma('vm.extern') annotations.
The `@pragma` annotations are evaluated by the constants transformation and
visible to TFA and the precompiler, which match on the "options" field of the
annotation to determine whether to mark the class/procedure as a root.

This required enabling the transformation of annotation constants by default.

# Test Plan

The "vmservice_io.main" entry-point is removed from `main.cc` and annotated with
`@pragma`. All precompiler tests will crash if "vmservice_io.main" is not
available at runtime.

Debug/release precompiler bots are visible in "cl-linux" button.

Change-Id: I03c5d6ba7918672ed9905fcaee8dabe675a93a5d
Reviewed-on: https://dart-review.googlesource.com/56660
Commit-Queue: Samir Jindel <sjindel@google.com>
Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
2018-05-28 15:13:55 +00:00
Martin Kustermann 3b414a277c Reland "[VM] Introduction of type testing stubs - Part 1-4"
Relands 165c583d57

    [VM] Introduction of type testing stubs - Part 1

    This CL:

      * Adds a field to [RawAbstractType] which will always hold a pointer
        to the entrypoint of a type testing stub

      * Makes this new field be initialized to a default stub whenever a
        instances are created (e.g. via Type::New(), snapshot reader, ...)

      * Makes the clustered snapshotter write a reference to the
        corresponding [RawInstructions] object when writing the field and do
        the reverse when reading it.

      * Makes us call the type testing stub for performing assert-assignable
        checks.

    To reduce unnecessary loads on callsites, we store the entrypoint of the
    type testing stubs directly in the type objects.  This means that the
    caller of type testing stubs can simply branch there without populating
    a code object first.  This also means that the type testing stubs
    themselves have no access to a pool and we therefore also don't hold on
    to the [Code] object, only the [Instruction] object is necessary.

    The type testing stubs do not setup a frame themselves and also have no
    safepoint.  In the case when the type testing stubs could not determine
    a positive answer they will tail-call a general-purpose stub.

    The general-purpose stub sets up a stub frame, tries to consult a
    [SubtypeTestCache] and bails out to runtime if this was unsuccessful.

    This CL is just the the first, for ease of reviewing.  The actual
    type-specialized type testing stubs will be generated in later CLs.

    Reviewed-on: https://dart-review.googlesource.com/44787

Relands f226c22424

    [VM] Introduction of type testing stubs - Part 2

    This CL starts building type testing stubs specialzed for [Type] objects
    we test against.

    More specifically, it adds support for:

      * Handling obvious fast cases on the call sites (while still having a
        call to stub for negative case)

      * Handling type tests against type parameters, by loading the value
        of the type parameter on the call sites and invoking it's type testing stub.

      * Specialzed type testing stubs for instantiated types where we can
        do [CidRange]-based subtype-checks.

        ==> e.g. String/List<dynamic>

      * Specialzed type testing stubs for instantiated types where we can
        do [CidRange]-based subclass-checks for the class and
        [CidRange]-based subtype-checks for the type arguments.

        ==> e.g. Widget<State>, where we know [Widget] is only extended and not
                 implemented.

      * Specialzed type testing stubs for certain non-instantiated types where we
        can do [CidRange]-based subclass-checks for the class and
        [CidRange]-based subtype-checks for the instantiated type arguments and
        cid based comparisons for type parameters.  (Note that this fast-case migth
        result in some false-negatives!)

        ==> e.g. _HashMapEntry<K, V>, where we know [_HashMapEntry] is only
                 extended and not implemented.

       This optimizes cases where the caller uses `new HashMap<A, B>()` and only
       uses `A` and `B` as key/values (and not subclasses of it).  The false-negative
       can occur when subtypes of A or B are used.  In such cases we fall back to the
       [SubtypeTestCache]-based imlementation.

    Reviewed-on: https://dart-review.googlesource.com/44788

Relands 25f98bcc75

    [VM] Introduction of type testing stubs - Part 3

    The changes include:

      * Make AssertAssignableInstr no longer have a call-summary, which
        helps methods with several parameter checks by not having to
        re-load/re-initialize type arguments registers

      * Lazily create SubtypeTestCaches: We already go to runtime to warm up
        the caches, so we now also create the caches on the first runtime
        call and patch the pool entries.

      * No longer load the destination name into a register: We only need
        the name when we throw an exception, so it is not on the hot path.
        Instead we let the runtime look at the call site, decoding a pool
        index from the instructions stream.  The destination name will be
        available in the pool, at a consecutive index to the subtype cache.

      * Remove the fall-through to N=1 case for probing subtypeing tests,
        since those will always be handled by the optimized stubs.

      * Do not generate optimized stubs for FutureOr<T> (so far it just
        falled-through to TTS).  We can make optimzed version of that later,
        but it requires special subtyping rules.

      * Local code quality improvement in the type-testing-stubs: Avoid
        extra jump at last case of cid-class-range checks.

    There are still a number of optimization opportunities we can do in
    future changes.

    Reviewed-on: https://dart-review.googlesource.com/46984

Relands 2c52480ec8

    [VM] Introduction of type testing stubs - Part 4

    In order to avoid generating type testing stubs for too many types in
    the system - and thereby potentially cause an increase in code size -
    this change introduces a smarter way to decide for which types we should
    generate optimized type testing stubs.

    The precompiler creates a [TypeUsageInfo] which we use to collect
    information.  More specifically:

       a) We collect the destination types for all type checks we emit
          (we do this inside AssertAssignableInstr::EmitNativeCode).

          -> These are types we might want to generate optimized type testing
             stubs for.

       b) We collect type argument vectors used in instance creations (we do
          this inside AllocateObjectInstr::EmitNativeCode) and keep a set of
          of used type argument vectors for each class.

    After the precompiler has finished compiling normal code we scan the set
    of destination types collected in a) for uninstantiated types (or more
    specifically, type parameter types).

    We then propagate the type argument vectors used on object allocation sites,
    which were collected in b), in order to find out what kind of types are flowing
    into those type parameters.

    This allows us to extend the set of types which we test against, by
    adding the types that flow into type parameters.

    We use this final augmented set of destination types as a "filter" when
    making the decision whether to generate an optimized type testing stub
    for a given type.

    Reviewed-on: https://dart-review.googlesource.com/48640

Issue https://github.com/dart-lang/sdk/issues/32603

Closes https://github.com/dart-lang/sdk/issues/32852

Change-Id: Ib79fbe7f043aa88f32bddad62d7656c638914b44
Reviewed-on: https://dart-review.googlesource.com/50944
Commit-Queue: Martin Kustermann <kustermann@google.com>
Reviewed-by: Régis Crelier <regis@google.com>
2018-04-13 09:06:56 +00:00
Ryan Macnak b3c94b5d52 Revert "Reland "[VM] Introduction of type testing stubs - Part 1-4""
This reverts commit 34763bc4c9.

Bug: https://github.com/dart-lang/sdk/issues/32852
Change-Id: I2131907d7036644707d5109a951969fc48dd74e1
Reviewed-on: https://dart-review.googlesource.com/50842
Reviewed-by: Alexander Markov <alexmarkov@google.com>
Commit-Queue: Ryan Macnak <rmacnak@google.com>
2018-04-11 22:42:59 +00:00
Martin Kustermann 34763bc4c9 Reland "[VM] Introduction of type testing stubs - Part 1-4"
Relands 165c583d57

    [VM] Introduction of type testing stubs - Part 1

    This CL:

      * Adds a field to [RawAbstractType] which will always hold a pointer
        to the entrypoint of a type testing stub

      * Makes this new field be initialized to a default stub whenever a
        instances are created (e.g. via Type::New(), snapshot reader, ...)

      * Makes the clustered snapshotter write a reference to the
        corresponding [RawInstructions] object when writing the field and do
        the reverse when reading it.

      * Makes us call the type testing stub for performing assert-assignable
        checks.

    To reduce unnecessary loads on callsites, we store the entrypoint of the
    type testing stubs directly in the type objects.  This means that the
    caller of type testing stubs can simply branch there without populating
    a code object first.  This also means that the type testing stubs
    themselves have no access to a pool and we therefore also don't hold on
    to the [Code] object, only the [Instruction] object is necessary.

    The type testing stubs do not setup a frame themselves and also have no
    safepoint.  In the case when the type testing stubs could not determine
    a positive answer they will tail-call a general-purpose stub.

    The general-purpose stub sets up a stub frame, tries to consult a
    [SubtypeTestCache] and bails out to runtime if this was unsuccessful.

    This CL is just the the first, for ease of reviewing.  The actual
    type-specialized type testing stubs will be generated in later CLs.

    Reviewed-on: https://dart-review.googlesource.com/44787

Relands f226c22424

    [VM] Introduction of type testing stubs - Part 2

    This CL starts building type testing stubs specialzed for [Type] objects
    we test against.

    More specifically, it adds support for:

      * Handling obvious fast cases on the call sites (while still having a
        call to stub for negative case)

      * Handling type tests against type parameters, by loading the value
        of the type parameter on the call sites and invoking it's type testing stub.

      * Specialzed type testing stubs for instantiated types where we can
        do [CidRange]-based subtype-checks.

        ==> e.g. String/List<dynamic>

      * Specialzed type testing stubs for instantiated types where we can
        do [CidRange]-based subclass-checks for the class and
        [CidRange]-based subtype-checks for the type arguments.

        ==> e.g. Widget<State>, where we know [Widget] is only extended and not
                 implemented.

      * Specialzed type testing stubs for certain non-instantiated types where we
        can do [CidRange]-based subclass-checks for the class and
        [CidRange]-based subtype-checks for the instantiated type arguments and
        cid based comparisons for type parameters.  (Note that this fast-case migth
        result in some false-negatives!)

        ==> e.g. _HashMapEntry<K, V>, where we know [_HashMapEntry] is only
                 extended and not implemented.

       This optimizes cases where the caller uses `new HashMap<A, B>()` and only
       uses `A` and `B` as key/values (and not subclasses of it).  The false-negative
       can occur when subtypes of A or B are used.  In such cases we fall back to the
       [SubtypeTestCache]-based imlementation.

    Reviewed-on: https://dart-review.googlesource.com/44788

Relands 25f98bcc75

    [VM] Introduction of type testing stubs - Part 3

    The changes include:

      * Make AssertAssignableInstr no longer have a call-summary, which
        helps methods with several parameter checks by not having to
        re-load/re-initialize type arguments registers

      * Lazily create SubtypeTestCaches: We already go to runtime to warm up
        the caches, so we now also create the caches on the first runtime
        call and patch the pool entries.

      * No longer load the destination name into a register: We only need
        the name when we throw an exception, so it is not on the hot path.
        Instead we let the runtime look at the call site, decoding a pool
        index from the instructions stream.  The destination name will be
        available in the pool, at a consecutive index to the subtype cache.

      * Remove the fall-through to N=1 case for probing subtypeing tests,
        since those will always be handled by the optimized stubs.

      * Do not generate optimized stubs for FutureOr<T> (so far it just
        falled-through to TTS).  We can make optimzed version of that later,
        but it requires special subtyping rules.

      * Local code quality improvement in the type-testing-stubs: Avoid
        extra jump at last case of cid-class-range checks.

    There are still a number of optimization opportunities we can do in
    future changes.

    Reviewed-on: https://dart-review.googlesource.com/46984

Relands 2c52480ec8

    [VM] Introduction of type testing stubs - Part 4

    In order to avoid generating type testing stubs for too many types in
    the system - and thereby potentially cause an increase in code size -
    this change introduces a smarter way to decide for which types we should
    generate optimized type testing stubs.

    The precompiler creates a [TypeUsageInfo] which we use to collect
    information.  More specifically:

       a) We collect the destination types for all type checks we emit
          (we do this inside AssertAssignableInstr::EmitNativeCode).

          -> These are types we might want to generate optimized type testing
             stubs for.

       b) We collect type argument vectors used in instance creations (we do
          this inside AllocateObjectInstr::EmitNativeCode) and keep a set of
          of used type argument vectors for each class.

    After the precompiler has finished compiling normal code we scan the set
    of destination types collected in a) for uninstantiated types (or more
    specifically, type parameter types).

    We then propagate the type argument vectors used on object allocation sites,
    which were collected in b), in order to find out what kind of types are flowing
    into those type parameters.

    This allows us to extend the set of types which we test against, by
    adding the types that flow into type parameters.

    We use this final augmented set of destination types as a "filter" when
    making the decision whether to generate an optimized type testing stub
    for a given type.

    Reviewed-on: https://dart-review.googlesource.com/48640

Issue https://github.com/dart-lang/sdk/issues/32603

Change-Id: I6d33d4ca3d5187a1eb1664078c003061855f0160
Reviewed-on: https://dart-review.googlesource.com/50482
Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
Commit-Queue: Martin Kustermann <kustermann@google.com>
2018-04-10 12:20:10 +00:00
Martin Kustermann 1e997ee6b7 Revert "Reland "[VM] Introduction of type testing stubs - Part 1-4""
This reverts commit 8054409a02.

Reason for revert: Potential cause of flakes, not entirely clear yet if it was caused by this CL.

Change-Id: Icb119a107f22245ba2f303c7f2ae11f061f605f5
Reviewed-on: https://dart-review.googlesource.com/50261
Reviewed-by: Martin Kustermann <kustermann@google.com>
Commit-Queue: Martin Kustermann <kustermann@google.com>
2018-04-09 14:29:07 +00:00
Martin Kustermann 8054409a02 Reland "[VM] Introduction of type testing stubs - Part 1-4"
Relands 165c583d57

    [VM] Introduction of type testing stubs - Part 1

    This CL:

      * Adds a field to [RawAbstractType] which will always hold a pointer
        to the entrypoint of a type testing stub

      * Makes this new field be initialized to a default stub whenever a
        instances are created (e.g. via Type::New(), snapshot reader, ...)

      * Makes the clustered snapshotter write a reference to the
        corresponding [RawInstructions] object when writing the field and do
        the reverse when reading it.

      * Makes us call the type testing stub for performing assert-assignable
        checks.

    To reduce unnecessary loads on callsites, we store the entrypoint of the
    type testing stubs directly in the type objects.  This means that the
    caller of type testing stubs can simply branch there without populating
    a code object first.  This also means that the type testing stubs
    themselves have no access to a pool and we therefore also don't hold on
    to the [Code] object, only the [Instruction] object is necessary.

    The type testing stubs do not setup a frame themselves and also have no
    safepoint.  In the case when the type testing stubs could not determine
    a positive answer they will tail-call a general-purpose stub.

    The general-purpose stub sets up a stub frame, tries to consult a
    [SubtypeTestCache] and bails out to runtime if this was unsuccessful.

    This CL is just the the first, for ease of reviewing.  The actual
    type-specialized type testing stubs will be generated in later CLs.

    Reviewed-on: https://dart-review.googlesource.com/44787

Relands f226c22424

    [VM] Introduction of type testing stubs - Part 2

    This CL starts building type testing stubs specialzed for [Type] objects
    we test against.

    More specifically, it adds support for:

      * Handling obvious fast cases on the call sites (while still having a
        call to stub for negative case)

      * Handling type tests against type parameters, by loading the value
        of the type parameter on the call sites and invoking it's type testing stub.

      * Specialzed type testing stubs for instantiated types where we can
        do [CidRange]-based subtype-checks.

        ==> e.g. String/List<dynamic>

      * Specialzed type testing stubs for instantiated types where we can
        do [CidRange]-based subclass-checks for the class and
        [CidRange]-based subtype-checks for the type arguments.

        ==> e.g. Widget<State>, where we know [Widget] is only extended and not
                 implemented.

      * Specialzed type testing stubs for certain non-instantiated types where we
        can do [CidRange]-based subclass-checks for the class and
        [CidRange]-based subtype-checks for the instantiated type arguments and
        cid based comparisons for type parameters.  (Note that this fast-case migth
        result in some false-negatives!)

        ==> e.g. _HashMapEntry<K, V>, where we know [_HashMapEntry] is only
                 extended and not implemented.

       This optimizes cases where the caller uses `new HashMap<A, B>()` and only
       uses `A` and `B` as key/values (and not subclasses of it).  The false-negative
       can occur when subtypes of A or B are used.  In such cases we fall back to the
       [SubtypeTestCache]-based imlementation.

    Reviewed-on: https://dart-review.googlesource.com/44788

Relands 25f98bcc75

    [VM] Introduction of type testing stubs - Part 3

    The changes include:

      * Make AssertAssignableInstr no longer have a call-summary, which
        helps methods with several parameter checks by not having to
        re-load/re-initialize type arguments registers

      * Lazily create SubtypeTestCaches: We already go to runtime to warm up
        the caches, so we now also create the caches on the first runtime
        call and patch the pool entries.

      * No longer load the destination name into a register: We only need
        the name when we throw an exception, so it is not on the hot path.
        Instead we let the runtime look at the call site, decoding a pool
        index from the instructions stream.  The destination name will be
        available in the pool, at a consecutive index to the subtype cache.

      * Remove the fall-through to N=1 case for probing subtypeing tests,
        since those will always be handled by the optimized stubs.

      * Do not generate optimized stubs for FutureOr<T> (so far it just
        falled-through to TTS).  We can make optimzed version of that later,
        but it requires special subtyping rules.

      * Local code quality improvement in the type-testing-stubs: Avoid
        extra jump at last case of cid-class-range checks.

    There are still a number of optimization opportunities we can do in
    future changes.

    Reviewed-on: https://dart-review.googlesource.com/46984

Relands 2c52480ec8

    [VM] Introduction of type testing stubs - Part 4

    In order to avoid generating type testing stubs for too many types in
    the system - and thereby potentially cause an increase in code size -
    this change introduces a smarter way to decide for which types we should
    generate optimized type testing stubs.

    The precompiler creates a [TypeUsageInfo] which we use to collect
    information.  More specifically:

       a) We collect the destination types for all type checks we emit
          (we do this inside AssertAssignableInstr::EmitNativeCode).

          -> These are types we might want to generate optimized type testing
             stubs for.

       b) We collect type argument vectors used in instance creations (we do
          this inside AllocateObjectInstr::EmitNativeCode) and keep a set of
          of used type argument vectors for each class.

    After the precompiler has finished compiling normal code we scan the set
    of destination types collected in a) for uninstantiated types (or more
    specifically, type parameter types).

    We then propagate the type argument vectors used on object allocation sites,
    which were collected in b), in order to find out what kind of types are flowing
    into those type parameters.

    This allows us to extend the set of types which we test against, by
    adding the types that flow into type parameters.

    We use this final augmented set of destination types as a "filter" when
    making the decision whether to generate an optimized type testing stub
    for a given type.

    Reviewed-on: https://dart-review.googlesource.com/48640

Issue https://github.com/dart-lang/sdk/issues/32603

Change-Id: I44a1d5d4b27454ae026aef2a301aada3dd399ea0
Reviewed-on: https://dart-review.googlesource.com/49861
Commit-Queue: Martin Kustermann <kustermann@google.com>
Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
2018-04-09 11:25:36 +00:00
Martin Kustermann dbb1d3d44f Revert "[VM] Introduction of type testing stubs - Part 1-4"
This reverts commit 2c52480ec8.
This reverts commit 25f98bcc75.
This reverts commit f226c22424.
This reverts commit 165c583d57.

Change-Id: I3892d672b9ca0b0acc0b9b83c32ecc92355839c2
Reviewed-on: https://dart-review.googlesource.com/49843
Reviewed-by: Martin Kustermann <kustermann@google.com>
2018-04-06 08:35:01 +00:00
Martin Kustermann f226c22424 [VM] Introduction of type testing stubs - Part 2
This CL starts building type testing stubs specialzed for [Type] objects
we test against.

More specifically, it adds support for:

  * Handling obvious fast cases on the call sites (while still having a
    call to stub for negative case)

  * Handling type tests against type parameters, by loading the value
    of the type parameter on the call sites and invoking it's type testing stub.

  * Specialzed type testing stubs for instantiated types where we can
    do [CidRange]-based subtype-checks.

    ==> e.g. String/List<dynamic>

  * Specialzed type testing stubs for instantiated types where we can
    do [CidRange]-based subclass-checks for the class and
    [CidRange]-based subtype-checks for the type arguments.

    ==> e.g. Widget<State>, where we know [Widget] is only extended and not
	     implemented.

  * Specialzed type testing stubs for certain non-instantiated types where we
    can do [CidRange]-based subclass-checks for the class and
    [CidRange]-based subtype-checks for the instantiated type arguments and
    cid based comparisons for type parameters.  (Note that this fast-case migth
    result in some false-negatives!)

    ==> e.g. _HashMapEntry<K, V>, where we know [_HashMapEntry] is only
	     extended and not implemented.

   This optimizes cases where the caller uses `new HashMap<A, B>()` and only
   uses `A` and `B` as key/values (and not subclasses of it).  The false-negative
   can occur when subtypes of A or B are used.  In such cases we fall back to the
   [SubtypeTestCache]-based imlementation.

Issue https://github.com/dart-lang/sdk/issues/31798

Change-Id: Ic1853977bf55d815755b0d652ec8e20e51efb4cf
Reviewed-on: https://dart-review.googlesource.com/44788
Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
Reviewed-by: Régis Crelier <regis@google.com>
2018-04-06 07:00:50 +00:00
Ryan Macnak d366f9619a [vm] Toward deterministic builds.
- Remove random build-id.
 - Replace build time in embedded version string with commit time.
 - Remove timestamps from Observatory tarball.
 - Zero-initialize skipped bytes in snapshot streams.
 - Fix uninitialized fields in PatchClass, Script and Library.
 - Disable (under flag) random identity hashes and concurrent GC.

Bug: https://github.com/dart-lang/sdk/issues/31427
Change-Id: I3e95de679c8372841cd27ca60df78d9b00ffbfe1
Reviewed-on: https://dart-review.googlesource.com/22901
Commit-Queue: Ryan Macnak <rmacnak@google.com>
Reviewed-by: Zach Anderson <zra@google.com>
2017-11-23 00:07:56 +00:00
Vyacheslav Egorov 4985165e76 [VM] Make "Hello, World!" run in strong mode (through DFE).
Includes the following changes:

- Disable type checking in the service isolate when strong mode is 
turned on. We don't yet have strong mode clean vmservice Kernel 
binary available (Issue #31203);
- Introduce new Dart VM API to allow creating List<T> (T in {String, int}).
Current API only allows to create List<dynamic> and in strong mode 
List<dynamic> is not assignable to List<T>. For now we limit this API to 
a fixed number of core types for performance considerations (type 
arguments can be canonicalized and cache ahead of time). We will
extend the API allowing creation of arbitrary List<T> if we will
discover the need for it later;
- Use this new API to fix CreateRuntimeOptions to create List<String>
and not List<dynamic>;
- Likewise fix OneByteString_splitWithCharCode to return List<String>
and not List<dynamic>;

Additionally this CL refactors how getters and setters are created
in object_store.h removing 500 lines of largely boilerplate code.

Bug: https://github.com/dart-lang/sdk/issues/31052
Change-Id: I3fdcd2d54ff3f307db0913c67a7c2f009ea9d7a7
Reviewed-on: https://dart-review.googlesource.com/15884
Commit-Queue: Vyacheslav Egorov <vegorov@google.com>
Reviewed-by: Siva Annamalai <asiva@google.com>
2017-10-24 11:43:48 +00:00
Régis Crelier db8b20107b Revert "Revert "Dart Core Lib change to support generic functions in class NoSuchMethodError.""
This reverts commit 8cf9ef22c4.

The expectations in Dart2js and Kernel tests have now been updated.

Change-Id: I9d65ff207490cfc783849b1b726db81cf56ecfc2
Reviewed-on: https://dart-review.googlesource.com/9124
Reviewed-by: Régis Crelier <regis@google.com>
2017-09-28 00:27:24 +00:00
Régis Crelier 8cf9ef22c4 Revert "Dart Core Lib change to support generic functions in class NoSuchMethodError."
This reverts commit db15f5d73b.

Dart2js and Kernel tests are comparing text that has changed because of
the core lib change.

Change-Id: I1d33716a3d6e6a077aa1f1a9ad7cc37825d31fa6
Reviewed-on: https://dart-review.googlesource.com/9082
Reviewed-by: Siva Chandra <sivachandra@google.com>
2017-09-27 21:08:20 +00:00
Régis Crelier db15f5d73b Dart Core Lib change to support generic functions in class NoSuchMethodError.
Change-Id: If7d1a8c07e4bee7ec68fede80a9d17cae0044d31
Reviewed-on: https://dart-review.googlesource.com/5329
Reviewed-by: Florian Loitsch <floitsch@google.com>
2017-09-27 17:57:41 +00:00
Ryan Macnak 5efa08b663 Reapply "[reload] Add facility to check for program elements changed in the last reload but not executed."
- Weaken assert for identity reloads to account for lazy finalization.
 - Store actual field end positions instead of computing from a terminating semicolon.
 - Consider unfinalized classes to be unchanged if they have same sequence of tokens.

Change-Id: I3fcd7fed924bfac47dc382702ce63207bb8aa031
Reviewed-on: https://dart-review.googlesource.com/8164
Reviewed-by: Siva Annamalai <asiva@google.com>
Commit-Queue: Ryan Macnak <rmacnak@google.com>
2017-09-27 02:50:35 +00:00
Ryan Macnak 9dd3730ea2 Revert "[reload] Add facility to check for program elements changed in the last reload but not executed."
This reverts commit 4a0d5cbf3f.

Change-Id: Ic90f78443b5c1878ac6f17a1a1439f8e4515db42
Reviewed-on: https://dart-review.googlesource.com/7681
Reviewed-by: Ryan Macnak <rmacnak@google.com>
2017-09-21 22:56:39 +00:00
Ryan Macnak 4a0d5cbf3f [reload] Add facility to check for program elements changed in the last reload but not executed.
Change-Id: Ifdc73166be68c5d2915e8b9d71db0a09d06835a0
Reviewed-on: https://dart-review.googlesource.com/5330
Commit-Queue: Ryan Macnak <rmacnak@google.com>
Reviewed-by: Siva Annamalai <asiva@google.com>
2017-09-21 20:28:06 +00:00
Vyacheslav Egorov 7d5231796e [VM, Precompiler] Support obfuscation of the symbolic information in precompiler
Obfuscation is controlled by obfuscate flag in Dart_IsolateFlags.

Obfuscation of identifiers is performed during script tokenization - when TokenStream is generated from the source. All kIDENT and kINTERPOL_VAR tokens are renamed consistently using a persistent obfuscation map stored in ObjectStore::obfuscation_map.

Some identifiers (pseudo-keywords, arithmetic operators, builtin recognized methods and entry-points) are not renamed to keep name based lookups from breaking. All other identifiers are renamed.

Constant instances of Symbol-s (both created via literal syntax #ident and using constant constructor const Symbol("ident")) are renamed consistently with corresponding identifiers.

Script urls and Library urls and names are also obfuscated.

Obfuscation map can be dumped as a JSON array at the end of precompilation using Dart_GetObfuscationMap API.

BUG=https://github.com/dart-lang/sdk/issues/30524
R=rmacnak@google.com

Review-Url: https://codereview.chromium.org/3003583002 .
2017-08-25 09:48:23 +02:00
Ryan Macnak f20b32b793 [vm] Enable mirrors in product mode. Allows building a product mode SDK.
Fixes https://github.com/dart-lang/sdk/issues/29972

R=zra@google.com

Review-Url: https://codereview.chromium.org/2972883002 .
2017-07-12 12:55:58 -07:00
Ryan Macnak 76df24b076 CoreJIT snapshots without training.
Only include OSR and field guards in the features descriptor for JIT code to avoid gen_snapshot and dart having different default values.

Disabled since core snapshots with code break tests with non-default flags for type checks, assertions, strict errors, OSR, or field guards.

R=zra@google.com

Review-Url: https://codereview.chromium.org/2902313004 .
2017-05-31 13:49:12 -07:00
Kevin Millikin 385f8fb054 Read platform.dill in the VM.
1. A --platform flag is added to dart to give a path to a Kernel
   binary for the platform libraries (as produced by building the
   runtime_kernel target).

2. This binary is used for bootstrapping.  Since it contains libraries
   other then the VM's bootstrap libraries, they are also loaded.

3. The frontend does not send any library with a dart: import URI
   scheme.  Note that it does not (yet) prune the canonical name
   table, which will contain a lot of unnecessary names used for
   internal linkages in the platform libraries.

4. There is a single dependency in the platform libraries on the
   script: _getMainClosure in dart:_builtin.  This is patched after
   the script is loaded.

BUG=
R=ahe@google.com, kustermann@google.com, vegorov@google.com

Review-Url: https://codereview.chromium.org/2786083002 .
2017-04-25 20:04:25 +02:00
Florian Schneider 80b43ff15c Reland "VM: Handle null-comparisons in the flow graph type propagation"
This reverts commit ee452a8600.

Original CL: https://codereview.chromium.org/2772143002/

Additional bug fix: Correctly replace ToCid with ToNullableCid in
RedefinitionInstr::ComputeType.

R=rmacnak@google.com

Review-Url: https://codereview.chromium.org/2789943002 .
2017-03-31 15:39:01 -07:00
Ryan Macnak a2c41bd926 Move the canonical empty context to the VM isolate.
R=fschneider@google.com

Review-Url: https://codereview.chromium.org/2780393005 .
2017-03-31 14:43:01 -07:00
Florian Schneider ee452a8600 Revert "Reland "VM: Handle null-comparisons in the flow graph type propagation""
This reverts commit e7afde47e9.

This was because of analyzer test failures (out of memory in the background compiler)

TBR=rmacnak@google.com

Review-Url: https://codereview.chromium.org/2794583002 .
2017-03-31 10:53:56 -07:00
Florian Schneider e7afde47e9 Reland "VM: Handle null-comparisons in the flow graph type propagation"
This reverts commit 30a942f728.

Plus:

1. Fixes integer type propagation in the optimizer by introducing a _int64 marker interface

2. Fixes calculation of whether an instructions can deoptimize: This has to be stable so that
once determined that an instructions can't deoptimize, it will stay that way and not flip back
later in the optimization

3. Address comments to improve CompileType::CopyNonNullable()

R=vegorov@google.com

Review-Url: https://codereview.chromium.org/2772143002 .
2017-03-31 10:12:59 -07:00
Ryan Macnak 857b8cbc36 Teach treeshaker about new cached functions and classes.
R=fschneider@google.com

Review-Url: https://codereview.chromium.org/2781553004 .
2017-03-27 18:02:00 -07:00
John McCutchan 11cf515e5e Cleanups needed for async step-out
BUG=
R=rmacnak@google.com

Review-Url: https://codereview.chromium.org/2774233003 .
2017-03-27 15:18:41 -07:00
John McCutchan 07a257573d Debugger support for step-into async and async* functions.
- [x] Support stepping into an async function.
- [x] Support stepping into the async generator in an await for loop.
- [x] Unit test for async function.
- [x] Unit test for async* function.

BUG=
R=asiva@google.com, rmacnak@google.com

Review-Url: https://codereview.chromium.org/2768103002 .
2017-03-24 07:56:50 -07:00
John McCutchan a0ee5b24db Track async causal stack traces
This CL improves the stack traces that accompany exceptions. Whenever an
async function is entered, we remember how we got there. This is similar
in spirit to package:stack_trace but the implementation is more efficient
and memory usage can be more easily reasoned about.

Tracking causal stack traces:

- [x] Upon entry to an async function, capture the synchronous stack trace prefix and store it into the closure.
- [x] Upon entry to an async* function, capture the synchronous stack trace prefix and store it into the closure.
- [x] Before returning from an async function, clear the Thread's asynchronous stack trace.
- [x] After resuming an async function, load the sychronous stack trace prefix into the Thread.
- [x] Filter stack traces to remove async machinery.

Service protocol changes:

- [x] Send causal async stack trace.

Observatory changes:

- [x] Display causal async stack trace below async functions.

Fixes https://github.com/dart-lang/sdk/issues/27661

R=asiva@google.com, rmacnak@google.com

Comparisons: https://docs.google.com/a/google.com/document/d/10r6jEqr8OCiDZ4y9SYU_uOimcHiOGAZMly2ghTErALI/edit?usp=sharing
Review-Url: https://codereview.chromium.org/2646443005 .
2017-02-09 15:39:44 -08:00
Ryan Macnak dc426c8c52 Rename snapshot kind enum values (kAppWithJIT -> kAppJIT, kAppNoJIT -> kAppAOT).
R=fschneider@google.com

Review-Url: https://codereview.chromium.org/2580823003 .
2016-12-15 12:16:02 -08:00
John McCutchan f125cc7d0b Improve the casing of Stackmap and Stacktrace.
- [x] Stackmap -> StackMap
- [x] Stacktrace -> StackTrace

This makes us consistent with the Dart language (StackTrace) and
corrects the casing of StackMap.

BUG=
R=rmacnak@google.com

Review-Url: https://codereview.chromium.org/2572563004 .
2016-12-12 14:51:30 -08:00
Zachary Anderson 630d24bec8 clang-formats remaining files and adds a presubmit check.
R=asiva@google.com, johnmccutchan@google.com

Review URL: https://codereview.chromium.org/2483363002 .
2016-11-09 12:43:57 -08:00
Vyacheslav Egorov 6dce6e87f8 Reduce amount of boilerplate associated with bootstrap libraries.
R=fschneider@google.com
BUG=

Review URL: https://codereview.chromium.org/2493473002 .
2016-11-09 16:38:50 +01:00
Zachary Anderson a1bcf051d8 clang-format runtime/vm
R=johnmccutchan@google.com

Review URL: https://codereview.chromium.org/2481873005 .
2016-11-08 13:54:47 -08:00
Vyacheslav Egorov 0635b57d43 Reland "Recognize and optimize a.runtimeType == b.runtimeType pattern."
This relands commit f4ec20abac.

BUG=
R=rmacnak@google.com

Review URL: https://codereview.chromium.org/2465793003 .
2016-11-01 16:49:02 +01:00
Vyacheslav Egorov 16e4f2f1c2 Revert "Revert "Revert "Recognize and optimize a.runtimeType == b.runtimeType pattern."""
This reverts commit e495e100dd.

Commit breaks bots that are using Android devices (SIMARM is unaffected).

R=rmacnak@google.com
BUG=

Review URL: https://codereview.chromium.org/2449013004 .
2016-10-26 16:53:32 +02:00
Vyacheslav Egorov e495e100dd Revert "Revert "Recognize and optimize a.runtimeType == b.runtimeType pattern.""
This reverts commit 890f694de5.

Previous commit was passing field_type_map_ down in a place where it was not passed down before.

This caused some handles to be used across zones, which caused crashes.

BUG=

Review URL: https://codereview.chromium.org/2453463006 .
2016-10-26 12:25:48 +02:00
Zachary Anderson 103881d01c Make header include guards great again
i.e. #ifndef VM_WHATEVER -> #ifndef RUNTIME_VM_WHATEVER

This lets us remove a hack from the PRESUBMIT.py script that existed
for reasons that are no longer valid, and sets us up to add some
presubmit checks for the GN build.

R=asiva@google.com, rmacnak@google.com

Review URL: https://codereview.chromium.org/2450713004 .
2016-10-26 00:26:03 -07:00
Ryan Macnak 890f694de5 Revert "Recognize and optimize a.runtimeType == b.runtimeType pattern."
This reverts commit f4ec20abac.

Revert "Use ZoneHandle when creating ConstantInstr"

This reverts commit cb87f2d82f.

This change introduced crashes on AOT and runtime errors on the GN SDK build.

TBR=vegorov@google.com

Review URL: https://codereview.chromium.org/2451893002 .
2016-10-25 13:19:33 -07:00
Vyacheslav Egorov f4ec20abac Recognize and optimize a.runtimeType == b.runtimeType pattern.
Start by removing all get:runtimeType overrides in the patch files to have a single point computing the runtime type - Object.get:runtimeType. Handle string, double and integer types inside both intrinsic and runtime call to unify their handling and guarantee that code works even with intrinsifier disabled.

With overrides removed we can easily check that get:runtimeType is unique function name within the application that is being precompiled and use that to convert InstanceCall(get:runtimeType, ...) into StaticCall even nothing is known about the receiver.

This enables us to check if both left side and right side of comparison are StaticCall(Object.get:runtimeType, ...) when specializing InstanceCall(==, x, y). If they are we convert InstanceCall(==, StaticCall(get:runtimeType, a), StaticCall(get:runtimeType, b)) into StaticCall(Object._hasSameRuntimeType, a, b). A canonicalization rule will later delete unused get:runtimeType invocations.

Object._hasSameRuntimeType is implemented in C++ and intrinsified. It operates without creating new runtime types (except for Closures - where it does for simplicity). Cases of different class ids (i.e. a.[cid] != b.[cid]) and non-parameterized types are handled completely in the intrinsic. The rest is handled in the runtime code.

Microbenchmarking results:

Same parameterized classes: 15x improvement
Different parameterized classes: 300x improvement
Different/same non-parameterized classes: 2x improvement

BUG=
R=fschneider@google.com, regis@google.com

Review URL: https://codereview.chromium.org/2379733002 .
2016-10-25 10:03:06 +02:00