Commit Graph

53 Commits

Author SHA1 Message Date
Andrew Trick
6898e33edd [NFC] fix a dropUnusedArguments parameter name 2025-04-07 14:42:10 -07:00
Kuba Mracek
6f4ae28520 [ASTMangler] Pass ASTContext to all instantiations of ASTMangler 2024-12-02 15:01:04 -08:00
Slava Pestov
ae77d6f0c1 AST: Replace one-off predicates with SubstitutionMap::getRecursiveProperties() 2024-08-21 13:19:10 -04:00
Tim Kientzle
1d961ba22d Add #include "swift/Basic/Assertions.h" to a lot of source files
Although I don't plan to bring over new assertions wholesale
into the current qualification branch, it's entirely possible
that various minor changes in main will use the new assertions;
having this basic support in the release branch will simplify that.
(This is why I'm adding the includes as a separate pass from
rewriting the individual assertions)
2024-06-05 19:37:30 -07:00
Erik Eckstein
7839b54b8a GenericSpecializer: drop metatype arguments in specialized functions
And replace them with explicit `metatype` instruction in the entry block.
This allows such metatype instructions to be deleted if they are dead.

This was already done for performance-annotated functions. But now do this for all functions.

It is essential that performance-annotated functions are specialized in the same way as other functions.
Because otherwise it can happen that the same specialization has different performance characteristics in different modules.
And it's up to the linker to select one of those ODR functions when linking.

Also, dropping metatype arguments is good for performance and code size in general.

This change also contains a few bug fixes for dropping metatype arguments.

rdar://110509780
2023-06-15 21:42:01 +02:00
Erik Eckstein
ecbcacdecf SIL Analysis: Rename InvalidationKind::FunctionData to InvalidationKind::Effects
This invalidation kind is used when a compute-effects pass changes function effects.
Also, let optimization passes which don't change effects only invalidate the `FunctionBody` and not `Everything`.
2022-10-20 09:20:28 +02:00
Erik Eckstein
6a020f8f15 Stabilize and simplify SIL linkage and serialization
The main point of this change is to make sure that a shared function always has a body: both, in the optimizer pipeline and in the swiftmodule file.
This is important because the compiler always needs to emit code for a shared function. Shared functions cannot be referenced from outside the module.
In several corner cases we missed to maintain this invariant which resulted in unresolved-symbol linker errors.

As side-effect of this change we can drop the shared_external SIL linkage and the IsSerializable flag, which simplifies the serialization and linkage concept.
2022-03-09 15:28:05 +01:00
Erik Eckstein
9e43f493f3 GenericSpecializer: use an alternative mangling if the function has re-abstracted resilient type parameters.
If the specialized function has a re-abstracted (= converted from indirect to direct) resilient argument or return types, use an alternative mangling: "TB" instead of "Tg".
Resilient parameters/returns can be converted from indirect to direct if the specialization is created within the type's resilience domain, i.e. in its module (where the type is loadable).
In this case we need to generate a different mangled name for the specialized function to distinguish it from specializations in other modules, which cannot re-abstract this resilient type.

This fixes a miscompile resulting from ODR-linking specializations from different modules, which in fact have different function signatures.

https://bugs.swift.org/browse/SR-13900
rdar://71914016
2020-12-07 17:23:46 +01:00
Erik Eckstein
f702be94b7 SIL: cleanup the GenericSpecializationMangler API
NFC
2020-12-07 17:23:46 +01:00
Arnold Schwaighofer
8aaa7b4dc1 SILOptimizer: Pipe through TypeExpansionContext 2019-11-11 14:21:52 -08:00
Andrew Trick
bddc69c8a6 Organize SILOptimizer/Utils headers. Remove Local.h.
The XXOptUtils.h convention is already established and parallels
the SIL/XXUtils convention.

New:
- InstOptUtils.h
- CFGOptUtils.h
- BasicBlockOptUtils.h
- ValueLifetime.h

Removed:
- Local.h
- Two conflicting CFG.h files

This reorganization is helpful before I introduce more
utilities for block cloning similar to SinkAddressProjections.

Move the control flow utilies out of Local.h, which was an
unreadable, unprincipled mess. Rename it to InstOptUtils.h, and
confine it to small APIs for working with individual instructions.
These are the optimizer's additions to /SIL/InstUtils.h.

Rename CFG.h to CFGOptUtils.h and remove the one in /Analysis. Now
there is only SIL/CFG.h, resolving the naming conflict within the
swift project (this has always been a problem for source tools). Limit
this header to low-level APIs for working with branches and CFG edges.

Add BasicBlockOptUtils.h for block level transforms (it makes me sad
that I can't use BBOptUtils.h, but SIL already has
BasicBlockUtils.h). These are larger APIs for cloning or removing
whole blocks.
2019-10-02 11:34:54 -07:00
Arnold Schwaighofer
c187c8ac13 SIL: Replace uses of getReferencedFunction() by getReferencedFunctionOrNull() and getInitialReferencedFunction()
With the advent of dynamic_function_ref the actual callee of such a ref
my vary. Optimizations should not assume to know the content of a
function referenced by dynamic_function_ref. Introduce
getReferencedFunctionOrNull which will return null for such function
refs. And getInitialReferencedFunction to return the referenced
function.
Use as appropriate.

rdar://50959798
2019-05-26 08:58:14 -07:00
Slava Pestov
00b4662ab9 SILOptimizer: Clean up the generic specializer a bit 2019-03-12 01:16:04 -04:00
Michael Gottesman
bc280ab3a3 [gardening] Change an if-else over ApplySite to a covered switch over ApplySiteKind.
This will ensure that we get covered switch warnings if a new apply site is ever
added.

NFC.
2019-02-11 13:15:19 -08:00
Erik Eckstein
aca5ae8fb7 SILOptimizer: handle begin_apply in an assert in the UsePrespecialied optimization.
Fixes a crash when accessors are used for array subscript.
2018-09-06 16:54:37 -07:00
Bob Wilson
8e330ee344 NFC: Fix indentation around the newly renamed LLVM_DEBUG macro.
Jordan used a sed command to rename DEBUG to LLVM_DEBUG. That caused some
lines to wrap and messed up indentiation for multi-line arguments.
2018-07-21 00:56:18 -07:00
Jordan Rose
cefb0b62ba Replace old DEBUG macro with new LLVM_DEBUG
...using a sed command provided by Vedant:

$ find . -name \*.cpp -print -exec sed -i "" -E "s/ DEBUG\(/ LLVM_DEBUG(/g" {} \;
2018-07-20 14:37:26 -07:00
Doug Gregor
09446defef Eliminate yet more SubstitutionLists from SIL in search of a steady-state 2018-05-11 13:18:06 -07:00
Roman Levenstein
53a6d89a9d More fixes for pre-specializations
Since the bodies of pre-specializaitons are not serialized, do not use the `[serialized]` attribute for them.
2017-10-02 14:34:14 -07:00
John McCall
ab3f77baf2 Make SILInstruction no longer a subclass of ValueBase and
introduce a common superclass, SILNode.

This is in preparation for allowing instructions to have multiple
results.  It is also a somewhat more elegant representation for
instructions that have zero results.  Instructions that are known
to have exactly one result inherit from a class, SingleValueInstruction,
that subclasses both ValueBase and SILInstruction.  Some care must be
taken when working with SILNode pointers and testing for equality;
please see the comment on SILNode for more information.

A number of SIL passes needed to be updated in order to handle this
new distinction between SIL values and SIL instructions.

Note that the SIL parser is now stricter about not trying to assign
a result value from an instruction (like 'return' or 'strong_retain')
that does not produce any.
2017-09-25 02:06:26 -04:00
Andrew Trick
be1881aa1f Remove redundant Transform.getName() definitions.
At some point, pass definitions were heavily macro-ized. Pass
descriptive names were added in two places. This is not only redundant
but a source of confusion. You could waste a lot of time grepping for
the wrong string. I removed all the getName() overrides which, at
around 90 passes, was a fairly significant amount of code bloat.

Any pass that we want to be able to invoke by name from a tool
(sil-opt) or pipeline plan *should* have unique type name, enum value,
commend-line string, and name string. I removed a comment about the
various inliner passes that contradicted that.

Side note: We should be consistent with the policy that a pass is
identified by its type. We have a couple passes, LICM and CSE, which
currently violate that convention.
2017-04-09 15:20:28 -07:00
Slava Pestov
8fe8b89b0f SIL: Terminology change: [fragile] => [serialized]
Also, add a third [serializable] state for functions whose bodies we
*can* serialize, but only do so if they're referenced from another
serialized function.

This will be used for bodies synthesized for imported definitions,
such as init(rawValue:), etc, and various thunks, but for now this
change is NFC.
2017-03-29 16:47:28 -07:00
Erik Eckstein
d70bfc5de2 rename namespace NewMangling -> Mangle 2017-03-20 10:09:30 -07:00
Erik Eckstein
1625345b90 Remove the old mangler.
NFC
2017-03-17 16:10:36 -07:00
Erik Eckstein
5e80555c9b demangler: put the demangler into a separate library
Previously it was part of swiftBasic.

The demangler library does not depend on llvm (except some header-only utilities like StringRef). Putting it into its own library makes sure that no llvm stuff will be linked into clients which use the demangler library.

This change also contains other refactoring, like moving demangler code into different files. This makes it easier to remove the old demangler from the runtime library when we switch to the new symbol mangling.

Also in this commit: remove some unused API functions from the demangler Context.

fixes rdar://problem/30503344
2017-03-09 13:42:43 -08:00
Roman Levenstein
26c963f27b Generic specializer API changes to prepare for the new @_specialize attribute and partial specializations. 2017-02-07 23:16:00 -08:00
Slava Pestov
3519e0cd25 AST: Introduce new SubstitutionList type to replace ArrayRef<Substitution>
SubstitutionList is going to be a more compact representation of
a SubstitutionMap, suitable for inline allocation inside another
object.

For now, it's just a typedef for ArrayRef<Substitution>.
2017-02-06 21:36:33 -08:00
Slava Pestov
844765b2fc SILOptimizer: Clean up hasDynamicSelfTypes() and hasUnboundGenericTypes() 2017-01-08 21:01:13 -08:00
practicalswift
6d1ae2a39c [gardening] 2016 → 2017 2017-01-06 16:41:22 +01:00
practicalswift
38be6125e5 [gardening] C++ gardening: Terminate namespaces, fix argument names, ...
Changes:
* Terminate all namespaces with the correct closing comment.
* Make sure argument names in comments match the corresponding parameter name.
* Remove redundant get() calls on smart pointers.
* Prefer using "override" or "final" instead of "virtual". Remove "virtual" where appropriate.
2016-12-17 00:32:42 +01:00
Erik Eckstein
5ac0c5b9b7 Mangling: wire up the new mangling in various places in the compiler, but still use the old mangling.
The purpose of this change is to test if the new mangling is equivalent to the old mangling.
Both mangling strings are created, de-mangled and checked if the de-mangle trees are equivalent.
2016-12-05 14:07:05 -08:00
practicalswift
797b80765f [gardening] Use the correct base URL (https://swift.org) in references to the Swift website
Remove all references to the old non-TLS enabled base URL (http://swift.org)
2016-11-20 17:36:03 +01:00
Jordan Rose
e1126b36e5 Prespecialization: reduce the strength of an assertion.
If we find a specialization within the current module, it's okay if it
has a body. This can come up if we compile something with optimizations
and then compile the resulting SIL (or SIB) without optimizations.
2016-04-20 16:15:12 -07:00
Roman Levenstein
27bcabcde3 Improve handling of pre-specializations.
This commit does not result in any visible functionality changes yet.
This is a preparation for some changes on the swift-3-indexing branch.
2016-04-13 15:49:36 -07:00
Slava Pestov
5aa99fa346 SILOptimizer: Create non-[fragile] specializations of [fragile] functions where possible
Change the optimizer to only make specializations [fragile] if both the
original callee is [fragile] *and* the caller is [fragile].

Otherwise, the specialized callee might be [fragile] even if it is never
called from a [fragile] function, which inhibits the optimizer from
devirtualizing calls inside the specialization.

This opens up some missed optimization opportunities in the performance
inliner and devirtualization, which currently reject fragile->non-fragile
references:

TEST                                                    | OLD_MIN | NEW_MIN | DELTA (%) | SPEEDUP
---                                                     | ---     | ---     | ---       | ---
DictionaryRemoveOfObjects                               | 38391   | 35859   | -6.6%     | **1.07x**
Hanoi                                                   | 5853    | 5288    | -9.7%     | **1.11x**
Phonebook                                               | 18287   | 14988   | -18.0%    | **1.22x**
SetExclusiveOr_OfObjects                                | 20001   | 15906   | -20.5%    | **1.26x**
SetUnion_OfObjects                                      | 16490   | 12370   | -25.0%    | **1.33x**

Right now, passes other than performance inlining and devirtualization
of class methods are not checking invariants on [fragile] functions
at all, which was incorrect; as part of the work on building the
standard library with -enable-resilience, I added these checks, which
regressed performance with resilience disabled. This patch makes up for
these regressions.

Furthermore, once SIL type lowering is aware of resilience, this will
allow the stack promotion pass to make further optimizations after
specializing [fragile] callees.
2016-04-08 02:10:31 -07:00
Andrew Trick
482b264afc Reapply "Merge pull request #1725 from atrick/specialize"
This was mistakenly reverted in an attempt to fix buildbots.
Unfortunately it's now smashed into one commit.

---
Introduce @_specialize(<type list>) internal attribute.

This attribute can be attached to generic functions. The attribute's
arguments must be a list of concrete types to be substituted in the
function's generic signature. Any number of specializations may be
associated with a generic function.

This attribute provides a hint to the compiler. At -O, the compiler
will generate the specified specializations and emit calls to the
specialized code in the original generic function guarded by type
checks.

The current attribute is designed to be an internal tool for
performance experimentation. It does not affect the language or
API. This work may be extended in the future to add user-visible
attributes that do provide API guarantees and/or direct dispatch to
specialized code.

This attribute works on any generic function: a freestanding function
with generic type parameters, a nongeneric method declared in a
generic class, a generic method in a nongeneric class or a generic
method in a generic class. A function's generic signature is a
concatenation of the generic context and the function's own generic
type parameters.

e.g.

struct S<T> {
var x: T
@_specialize(Int, Float)
mutating func exchangeSecond<U>(u: U, _ t: T) -> (U, T) {
x = t
return (u, x)
}
}
// Substitutes: <T, U> with <Int, Float> producing:
// S<Int>::exchangeSecond<Float>(u: Float, t: Int) -> (Float, Int)

---
[SILOptimizer] Introduce an eager-specializer pass.

This pass finds generic functions with @_specialized attributes and
generates specialized code for the attribute's concrete types. It
inserts type checks and guarded dispatch at the beginning of the
generic function for each specialization. Since we don't currently
expose this attribute as API and don't specialize vtables and witness
tables yet, the only way to reach the specialized code is by calling
the generic function which performs the guarded dispatch.

In the future, we can build on this work in several ways:
- cross module dispatch directly to specialized code
- dynamic dispatch directly to specialized code
- automated specialization based on less specific hints
- partial specialization
- and so on...

I reorganized and refactored the optimizer's generic utilities to
support direct function specialization as opposed to apply
specialization.
2016-03-21 12:43:05 -07:00
Andrew Trick
5bda28e1cb Revert "Merge pull request #1725 from atrick/specialize"
Temporarily reverting @_specialize because stdlib unit tests are
failing on an internal branch during deserialization.

This reverts commit e2c43cfe14, reversing
changes made to 9078011f93.
2016-03-18 22:31:29 -07:00
Andrew Trick
295dc96fb6 [SILOptimizer] Introduce an eager-specializer pass.
This pass finds generic functions with @_specialized attributes and
generates specialized code for the attribute's concrete types. It
inserts type checks and guarded dispatch at the beginning of the
generic function for each specialization. Since we don't currently
expose this attribute as API and don't specialize vtables and witness
tables yet, the only way to reach the specialized code is by calling
the generic function which performs the guarded dispatch.

In the future, we can build on this work in several ways:
- cross module dispatch directly to specialized code
- dynamic dispatch directly to specialized code
- automated specialization based on less specific hints
- partial specialization
- and so on...

I reorganized and refactored the optimizer's generic utilities to
support direct function specialization as opposed to apply
specialization.
2016-03-18 10:18:55 -07:00
Erik Eckstein
68f0d5c202 Reinstate "GenericSpecializer: When specializing a generic function, convert indirect parameters/result to direct parameters/result.""
This reinstates commit 4187959e66.

It was reverted because of a bug in ValueLifetimeAnalysis which is now fixed.
2016-02-29 07:42:59 -08:00
Xin Tong
d0dc008fc1 Revert GenericSpecializer code.
This reverts commit

ed8126d050
ac0e7fd183
a11042eb05
b2d6e8ce6e
3a83cee006
0c2ca94ef7

First 4 commits are @practicalswift typo fixes which are implicated. Last 2 are
the culprits.

This causes an asan build crash.
2016-02-28 11:13:44 -08:00
Erik Eckstein
3a83cee006 Reinstate "GenericSpecializer: When specializing a generic function, convert indirect parameters/result to direct parameters/result.""
This reinstates commit 4187959e66.

The exposed crash in the ClosureSpecializer is fixed.
2016-02-26 14:05:48 -08:00
Erik Eckstein
f70b53b015 Revert "Reinstate "GenericSpecializer: When specializing a generic function, convert indirect parameters/result to direct parameters/result."""
This reverts commit c556d5cd39.

Hitting a new assert.
2016-02-25 09:50:11 -08:00
Erik Eckstein
c556d5cd39 Reinstate "GenericSpecializer: When specializing a generic function, convert indirect parameters/result to direct parameters/result.""
This reinstates commit 4187959e66.

After Xin's recent fix in ARC (6a9a430f68) the crash on i386 should be resolved.
2016-02-25 08:48:15 -08:00
Michael Gottesman
a5be2fff01 [sil] Use FullApplySite instead of ApplyInst in SILInstruction::getMemoryBehavior().
We were giving special handling to ApplyInst when we were attempting to use
getMemoryBehavior(). This commit changes the special handling to work on all
full apply sites instead of just AI. Additionally, we look through partial
applies and thin to thick functions.

I also added a dumper called BasicInstructionPropertyDumper that just dumps the
results of SILInstruction::get{Memory,Releasing}Behavior() for all instructions
in order to verify this behavior.
2016-02-23 15:00:43 -08:00
Erik Eckstein
5b4c73ed3b Revert "GenericSpecializer: When specializing a generic function, convert indirect parameters/result to direct parameters/result."
This reverts commit 4187959e66.

There is a crash in StdlibUnittests on i386 (Release-Assert build)
2016-02-23 08:29:41 -08:00
Erik Eckstein
4187959e66 GenericSpecializer: When specializing a generic function, convert indirect parameters/result to direct parameters/result.
With this re-abstraction a specialized function has the same calling convention as if it would have been written with the specialized types in the first place.
In general this results in less alloc_stacks and load/stores.
It also can eliminate some re-abstraction thunks, e.g. if a generic closure is used in a non-generic context.
It some (hopefully rare) cases it may require to add re-abstraction thunks.

In case a function has multiple indirect results, only the first is converted to a direct result. This is an open TODO.
2016-02-22 13:58:10 -08:00
practicalswift
1339b5403b Consistent use of header comment format.
Correct format:
//===--- Name of file - Description ----------------------------*- Lang -*-===//
2016-01-04 13:26:31 +01:00
practicalswift
50baf2e53b Use consistent formatting in top of file headers. 2016-01-04 02:17:48 +01:00
Zach Panzarino
e3a4147ac9 Update copyright date 2015-12-31 23:28:40 +00:00
Nadav Rotem
07d4558c1c [Mangler] Change the Swift mangler into a symbol builder.
This commit changes the Swift mangler from a utility that writes tokens into a
stream into a name-builder that has two phases: "building a name", and "ready".
This clear separation is needed for the implementation of the compression layer.

Users of the mangler can continue to build the name using the mangleXXX methods,
but to access the results the users of the mangler need to call the finalize()
method. This method can write the result into a stream, like before, or return
an std::string.
2015-12-25 21:40:25 -08:00