Commit Graph

34 Commits

Author SHA1 Message Date
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
Vyacheslav Egorov 99a5f149ac [vm] Enable type stubs based type checks in JIT mode for some types.
Relanding 4be50d6fa1 with fixes to DBC
and location summaries: AssertAssignable must save FPU registers.

For now we are limiting this to type checks against type parameter types.


In Dart 1 mode Dart2JS compiles itself in 28s when running from source
and in 23s when running from ideal app-jit snapshot (trained on the
same workload).

Before this change in Dart 2 mode numbers were 51s and 57s respectively.

After this change in Dart 2 mode numbers are 38s and 32s. Meaning
that regression is reduced by 50%.

Issue https://github.com/dart-lang/sdk/issues/31798
Issue https://github.com/dart-lang/sdk/issues/33257

Change-Id: Ifb55f86453bfdf36a2e03bcd7f3197cfde257103
Reviewed-on: https://dart-review.googlesource.com/57980
Commit-Queue: Vyacheslav Egorov <vegorov@google.com>
Reviewed-by: Régis Crelier <regis@google.com>
2018-06-01 20:58:33 +00:00
Vyacheslav Egorov 0aadba1189 Revert "[vm] Enable type stubs based type checks in JIT mode for some types."
This reverts commit 4be50d6fa1.

Reason for revert: Failures on SIMDBC64 and Analyzer bots.

Original change's description:
> [vm] Enable type stubs based type checks in JIT mode for some types.
> 
> For now we are limiting this to type checks against type parameter types.
> 
> # Performance improvements
> 
> In Dart 1 mode Dart2JS compiles itself in 28s when running from source
> and in 23s when running from ideal app-jit snapshot (trained on the
> same workload).
> 
> Before this change in Dart 2 mode numbers were 51s and 57s respectively.
> 
> After this change in Dart 2 mode numbers are 38s and 32s. Meaning
> that regression is reduced by 50%.
> 
> Issue https://github.com/dart-lang/sdk/issues/31798
> Issue https://github.com/dart-lang/sdk/issues/33257
> 
> Change-Id: I34bf5385a5cc3c7702dc281c6dfa89da85d3dde1
> Reviewed-on: https://dart-review.googlesource.com/57601
> Reviewed-by: Régis Crelier <regis@google.com>
> Commit-Queue: Vyacheslav Egorov <vegorov@google.com>

TBR=vegorov@google.com,kustermann@google.com,regis@google.com

Change-Id: I85a30c962b0cd556310e19193f5993ab76ecf2e7
No-Presubmit: true
No-Tree-Checks: true
No-Try: true
Reviewed-on: https://dart-review.googlesource.com/57840
Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
Commit-Queue: Vyacheslav Egorov <vegorov@google.com>
2018-06-01 11:23:08 +00:00
Vyacheslav Egorov 4be50d6fa1 [vm] Enable type stubs based type checks in JIT mode for some types.
For now we are limiting this to type checks against type parameter types.

# Performance improvements

In Dart 1 mode Dart2JS compiles itself in 28s when running from source
and in 23s when running from ideal app-jit snapshot (trained on the
same workload).

Before this change in Dart 2 mode numbers were 51s and 57s respectively.

After this change in Dart 2 mode numbers are 38s and 32s. Meaning
that regression is reduced by 50%.

Issue https://github.com/dart-lang/sdk/issues/31798
Issue https://github.com/dart-lang/sdk/issues/33257

Change-Id: I34bf5385a5cc3c7702dc281c6dfa89da85d3dde1
Reviewed-on: https://dart-review.googlesource.com/57601
Reviewed-by: Régis Crelier <regis@google.com>
Commit-Queue: Vyacheslav Egorov <vegorov@google.com>
2018-06-01 10:50:09 +00:00
Alexander Markov 2786b9ff43 [vm/aot] Add detailed error messages and stack traces for null checks
This CL fixes error message in NoSuchMethodError thrown by null checks
and line numbers in corresponding stack traces (in AOT).

Name of the called function is placed into object pool, and metadata
for null check site is generated in CodeSourceMap.

Size of flutter gallery in release mode:
	  Before	 After
RW	  2165286	 2201642	(+1.68%)
RO	  2122192	 2168224	(+2.17%)
RX	  6871072	 6871072	(+0.00%)
Total	 11163079	11245467	(+0.74%)

Closes https://github.com/dart-lang/sdk/issues/32863

Change-Id: I5ad1190f2ec9452a669863f7dd114ea5f9092d52
Reviewed-on: https://dart-review.googlesource.com/52703
Commit-Queue: Alexander Markov <alexmarkov@google.com>
Reviewed-by: Ryan Macnak <rmacnak@google.com>
Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
2018-04-26 20:33:15 +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
Vyacheslav Egorov 0b83be906c [vm/compiler/aot] Introduce ways to dump instruction size statistics.
We add two things:

* --print_instruction_stats makes compiler dump per IL instruction size
breakdown (how many bytes of code were produced from specific instruction
kinds). This was largely implemented by kustermann@ in
https://codereview.chromium.org/2584613002/ and this CL does only few changes
to the original implementation, namely more uniform handling of slow-path code
and puts statistics object into RawInstructions (which has free space due to
alignment) instead of RawCode.

* --print_instructions_sizes_to=symbols.json makes compiler dump per Instruction
object size breakdown into a JSON file. This JSON file can later be processed
with pkg/vm/tool/run_binary_size_analysis.dart script to produce interactive
binary size diagram similar to runtime/third_party/binary_size tool.

Change-Id: Ied4965b9a0a91b3025eefbe981ecd47cdcf782d6
Reviewed-on: https://dart-review.googlesource.com/50501
Commit-Queue: Vyacheslav Egorov <vegorov@google.com>
Reviewed-by: Alexander Markov <alexmarkov@google.com>
Reviewed-by: Martin Kustermann <kustermann@google.com>
2018-04-11 13:03:16 +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 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.

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

Measured impact on flutter HEAD-HEAD-HEAD with TTS Part 1 - 4 applied (2018-04-03):

      * stock build benchmark: around 4% improvement
      * gallery app.so size: -2.68%  (13987348 -> 13612928)
      * gallery memory: no sigificant changes:
         - SubtypeTestCache: - 10kb
         - ObjectPool: + 6 kb
         - Type: no change (probably due to wasted alignment slot before)
         - TypeParameter: + 4 kb (can get rid of the field here later)
      * gallery AOT compile-time: measured +1.3%, inside flakiness range

Change-Id: I12a398d18f970ba2db741913bb47b0f36ae38d58
Reviewed-on: https://dart-review.googlesource.com/48640
Commit-Queue: Martin Kustermann <kustermann@google.com>
Reviewed-by: Régis Crelier <regis@google.com>
2018-04-06 07:00:50 +00:00
Martin Kustermann 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.

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

Change-Id: I4dc5a8a49f939178fe74d44736ef69e4b9088e46
Reviewed-on: https://dart-review.googlesource.com/46984
Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
Reviewed-by: Régis Crelier <regis@google.com>
2018-04-06 07:00:50 +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
Martin Kustermann 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.

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

Change-Id: I174a11b3b812799f399a60af799144c2ba3c26ec
Reviewed-on: https://dart-review.googlesource.com/44787
Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
Reviewed-by: Régis Crelier <regis@google.com>
2018-04-06 07:00:50 +00:00
Martin Kustermann 80805ff1c1 [VM] Make FlowGraphCompiler::EmitTestAndCallCheckCid static and therefore usable from stubs
Issue https://github.com/dart-lang/sdk/issues/31798

Change-Id: I375cc01bf59d848a203dbcdbd59377d55e9aafe4
Reviewed-on: https://dart-review.googlesource.com/44540
Commit-Queue: Martin Kustermann <kustermann@google.com>
Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
2018-03-02 15:11:59 +00:00
Martin Kustermann cf8a6063f8 [VM] Improve AssertAssignable/InstanceOf by having a fast case for non-generic, instantiated types
When the type to test against is instantiated and has no type arguments
there is a high probability that we receive instances of that class or
subclasses at runtime.

This CL therefore extends the fast-path of AssertAssignable/InstanceOf
by checking whether the instance class id is within the cid ranges that
directly/indirectly implement/extend the type to test against.

Currently we have an almost depth-first preorder numbering of class ids
in AOT, but there are exceptions.  So each class can have a number of
cid-ranges as subclasses / classes which implement it's interface.

This seems to improve performance of dart-aot-v2
  * flutter stock build by 15+%
  * DeltaBlueClosures by 10+%

and reduces code size on
  * flutter gallery by -3%

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

Change-Id: I07dd91589cc3fcd8c5952bdba339e2e2a459e08e
Reviewed-on: https://dart-review.googlesource.com/35620
Commit-Queue: Martin Kustermann <kustermann@google.com>
Reviewed-by: Régis Crelier <regis@google.com>
Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
2018-01-25 07:13:42 +00:00
Martin Kustermann fd16b58955 [VM] Allow intrinsification of implicit field getters in checked/strong mode
Since implicit field getters have the receiver as the only argument
(on which don't have to perform any type checks), we can allow
intrinsification of implicit getters even in checked/strong mode.

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

Change-Id: If08c6ee33818ab513a9dbf1457fede0eeb8c4404
Reviewed-on: https://dart-review.googlesource.com/34142
Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
Commit-Queue: Vyacheslav Egorov <vegorov@google.com>
2018-01-12 16:50:09 +00:00
Martin Kustermann cf1de7d46c [VM] Replace hand-written assembly prologues with IR
As part of the prologue changes we get rid of the empty context as well.

Issue https://github.com/dart-lang/sdk/issues/31495

Change-Id: I707e23c631bcfbbad6c91c4963d0c10f7a0be625
Reviewed-on: https://dart-review.googlesource.com/25320
Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
2017-12-13 16:04:34 +00:00
Martin Kustermann ada5985e04 [VM] Move removal of unnecessary CheckStackOverflowInstr in leaf functions
Issue https://github.com/dart-lang/sdk/issues/31495

Change-Id: I0c07cdae00152fc6e2dce10e48b8ba99356e2751
Reviewed-on: https://dart-review.googlesource.com/24780
Commit-Queue: Martin Kustermann <kustermann@google.com>
Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
2017-11-30 14:31:55 +00:00
Régis Crelier f91f67a5be [VM] Emit type checks for incoming function arguments in strong mode.
Change-Id: Icd64913f0fc6ba54a0b8517bf05ae4babfae3bdc
Reviewed-on: https://dart-review.googlesource.com/19287
Reviewed-by: Siva Annamalai <asiva@google.com>
2017-11-18 00:31:35 +00:00
Martin Kustermann 239f45b5ca [VM] Combine use_speculative_inlining/inlining_blacklist into SpeculativeInliningPolicy
Change-Id: I20a1354842d825ed1df0a19de57405a6d4041bd8
Reviewed-on: https://dart-review.googlesource.com/17444
Commit-Queue: Martin Kustermann <kustermann@google.com>
Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
2017-11-01 11:06:00 +00:00
Ryan Macnak 775f2054e1 [vm] Reduce duplication around EmitCallsiteMetadata.
Change-Id: I9c28ddd6104381902321e8b2788d70c4a63ce21a
Reviewed-on: https://dart-review.googlesource.com/12845
Reviewed-by: Alexander Markov <alexmarkov@google.com>
2017-10-10 23:00:30 +00:00
Alexander Aprelev ce427ac14f Revert "Revert "Introduce StaticCallNode::kNoRebind and use that in implicit closures.""
This reverts commit ade37f931e.

This re-lands RebindRule change with fixes for the "-mdebug--hot-reload" test failures.

Original commit is reverted in patch set 1.
Fixes are in following patch sets.

Bug:
Change-Id: I49375af9b891323fe05c670d77cbf880964aae54
Reviewed-on: https://dart-review.googlesource.com/9361
Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
Commit-Queue: Alexander Aprelev <aam@google.com>
2017-09-28 19:43:32 +00:00
Dmitry Stefantsov ade37f931e Revert "Introduce StaticCallNode::kNoRebind and use that in implicit closures."
This reverts commit 97393fd961.

TBR=aam@google.com

Change-Id: I8fc5f644e994faa20aa8b5c54f8d6227a054e39d
Reviewed-on: https://dart-review.googlesource.com/9220
Reviewed-by: Dmitry Stefantsov <dmitryas@google.com>
2017-09-28 08:44:48 +00:00
Alexander Aprelev 97393fd961 Introduce StaticCallNode::kNoRebind and use that in implicit closures.
Change-Id: I6219462fed278dbb90361c2084eed886c9245097

Revert "Revert "Introduce inline cache reload rule attribute to static call AST node and ICData.""

This reverts commit 162283c2f3.

This re-lands the change with original revert in Patch set 1, actual bug fix in next patch set.

Bug:
Change-Id: I6219462fed278dbb90361c2084eed886c9245097
Reviewed-on: https://dart-review.googlesource.com/8760
Commit-Queue: Alexander Aprelev <aam@google.com>
Reviewed-by: Ryan Macnak <rmacnak@google.com>
2017-09-28 03:26:22 +00:00
Alexander Aprelev 162283c2f3 Revert "Introduce inline cache reload rule attribute to static call AST node and ICData."
This reverts commit 68a727fa5c.

Revert "Fix ICData::New() invocation. Follow-up to 68a727fa5cf5."

This reverts commit ac06b1c8ea.

Revert "Fix last ICData::New() invocation. Follow-up to 68a727fa5cf5."

This reverts commit da26ffc4de.

Bug:
Change-Id: Ia2d4e6a3c3a3a329982c90aded11e72bf25a9a34
Reviewed-on: https://dart-review.googlesource.com/8402
Reviewed-by: Alexander Aprelev <aam@google.com>
Commit-Queue: Alexander Aprelev <aam@google.com>
2017-09-26 02:08:17 +00:00
Alexander Aprelev 68a727fa5c Introduce inline cache reload rule attribute to static call AST node and ICData.
Reload rule describes how inline cache has to be processed during hot reload, whether it should
be updated, reset or preserved.

Bug: dartbug.com/30639
Change-Id: I40b63ade786456ec48d4fa205a076654c2996bce
Reviewed-on: https://dart-review.googlesource.com/7586
Commit-Queue: Alexander Aprelev <aam@google.com>
Reviewed-by: Ryan Macnak <rmacnak@google.com>
2017-09-25 20:18:58 +00:00
Alexander Markov f6d6766920 [VM] Restore disassembler in flutter/profile (dart/release) mode
This CL restores disassembler in precompiled mode after it was removed
in 8cb752f73b.
Without disassembler observatory is not able to show assembly code
in 'flutter run --profile' mode.

This CL also pulls BufferFormatter out of il_printer.h/.cc as it is also
used in disassembler.

Change-Id: I098ddb8d8f5a2426028c1f467d58e5c2d6a82d21
Reviewed-on: https://dart-review.googlesource.com/7486
Reviewed-by: Zach Anderson <zra@google.com>
2017-09-21 16:07:02 +00:00
Régis Crelier e0300086d1 [VM precompiler generic functions] Fix previous bad commit.
Generic functions cannot be called via monomorphic checked entries, because
the argument descriptor is lost. This limitation was removed by error and not
properly tested. It is reintroduced in runtime_entry.cc.
Changes in other sources are merely clean up and non-critical.

Change-Id: I7967950c1ad008b50e8691d59f4a9d5cd1c9f885
Reviewed-on: https://dart-review.googlesource.com/3761
Reviewed-by: Ryan Macnak <rmacnak@google.com>
2017-09-06 23:27:36 +00:00
Régis Crelier beedd2e103 [VM generic function reification] Fix megamorphic cache lookup when calling
reified generic function.
Clean up code to avoid similar issue in the future, i.e. make it clear whether
the passed type argument vector is counted or not by using better names.

Change-Id: I60fd6f6acb302235d8c1ae4f2bc4bf459724421e
Reviewed-on: https://dart-review.googlesource.com/3400
Reviewed-by: Ryan Macnak <rmacnak@google.com>
2017-09-06 00:36:19 +00:00
Alexander Markov 5f886940c4 [vm] Add more assertions to compiler
This CL adds a couple of new assertions to the compiler:

1. Check for 'use_speculative_inlining' in FlowGraphCompiler::AddDeoptStub
enables early detection of the deopt path generation in AOT.
Although this condition is also detected later (in precompiler),
it is much more obvious and easy to debug it with early assertion
failure, pointing directly to the place which triggered deopt generation.

2. Check register assignment in UnboxInstr::EmitLoadFromBox() for ia32
and 32-bit arm to ensure the correctness of generated code.

Also, this CL includes minor refactoring of UnboxInstr::ComputeCanDeoptimize()
to more closely match UnboxInstr::EmitNativeCode().

Issue: https://github.com/dart-lang/sdk/issues/30480
Change-Id: Icf6129d54f3da50c043aab84e5e3ee524c264aec
Reviewed-on: https://dart-review.googlesource.com/3305
Reviewed-by: Ryan Macnak <rmacnak@google.com>
Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
Commit-Queue: Alexander Markov <alexmarkov@google.com>
2017-09-05 18:35:37 +00:00
Vyacheslav Egorov 8a179fb953 [VM, Compiler] Move compiler to a separate folder.
New folder structure (nested under vm/):

- compiler/
-   jit/         - JIT specific code
-   aot/         - AOT specific code
-   backend/     - all middle-end and back-end code (IL, flow graph)
-   assembler/   - assemblers and disassemblers
-   frontend/    - front ends (AST -> IL, Kernel -> IL)

compiler/README.md would be the documentation root for the compiler
pipeline

Bug: https://github.com/dart-lang/sdk/issues/30575
Change-Id: I2dfd9688793bff737f7632ddc77fca766875ce36
Reviewed-on: https://dart-review.googlesource.com/2940
Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
Commit-Queue: Vyacheslav Egorov <vegorov@google.com>
2017-09-04 15:15:18 +00:00