Commit Graph

22 Commits

Author SHA1 Message Date
Erik Eckstein
f9b524b1cb AliasAnalysis: a complete overhaul of alias- and memory-behavior analysis
The main changes are:

*) Rewrite everything in swift. So far, parts of memory-behavior analysis were already implemented in swift. Now everything is done in swift and lives in `AliasAnalysis.swift`. This is a big code simplification.

*) Support many more instructions in the memory-behavior analysis - especially OSSA instructions, like `begin_borrow`, `end_borrow`, `store_borrow`, `load_borrow`. The computation of end_borrow effects is now much more precise. Also, partial_apply is now handled more precisely.

*) Simplify and reduce type-based alias analysis (TBAA). The complexity of the old TBAA comes from old days where the language and SIL didn't have strict aliasing and exclusivity rules (e.g. for inout arguments). Now TBAA is only needed for code using unsafe pointers. The new TBAA handles this - and not more. Note that TBAA for classes is already done in `AccessBase.isDistinct`.

*) Handle aliasing in `begin_access [modify]` scopes. We already supported truly immutable scopes like `begin_access [read]` or `ref_element_addr [immutable]`. For `begin_access [modify]` we know that there are no other reads or writes to the access-address within the scope.

*) Don't cache memory-behavior results. It turned out that the hit-miss rate was pretty bad (~ 1:7). The overhead of the cache lookup took as long as recomputing the memory behavior.
2024-07-29 17:33:46 +02:00
Slava Pestov
977b444eb3 AST: Add a new overload of getContextSubstitutionMap() 2024-07-10 13:28:26 -04:00
Slava Pestov
fae01d9776 AST: Remove ModuleDecl parameter from more places 2024-07-06 12:05:46 -04:00
Kshitij
12faf79911 [Autodiff] Adds logic to rewrite call-sites using functions specialized by the closure-spec optimization 2024-05-21 12:02:28 -07:00
Kshitij
ab751d57ab [Autodiff] Adds logic to generate specialized functions in the closure-spec pass 2024-05-13 11:16:42 -07:00
Kshitij
a7f8d6c647 [Autodiff] Adds bridging code in preparation for the Swift based Autodiff closure-spec pass 2024-05-02 09:14:05 -07:00
Erik Eckstein
367dc1a299 SwiftCompilerSources: add OperandSet and OperandWorklist
Implemented by bridging the C++ OperandSet, similar to BasicBlockSet and NodeSet
2024-03-21 15:52:39 +01:00
Michael Gottesman
11f0ff6e32 [sil] Ensure that all SILValues have a parent function by making it so that SILUndef is uniqued at the function instead of module level.
For years, optimizer engineers have been hitting a common bug caused by passes
assuming all SILValues have a parent function only to be surprised by SILUndef.
Generally we see SILUndef not that often so we see this come up later in
testing. This patch eliminates that problem by making SILUndef uniqued at the
function level instead of the module level. This ensures that it makes sense for
SILUndef to have a parent function, eliminating this possibility since we can
define an API to get its parent function.

rdar://123484595
2024-02-27 13:14:47 -08:00
Erik Eckstein
250e2680aa SwiftCompilerSources: add some module-level APIs
* `Context.lookupFunction`
* `ModulePassContext.loadFunction`
* `ModulePassContext.createSpecializedFunctionDeclaration`
* `ModulePassContext.moveFunctionBody`
* `ModulePassContext.mangle(withDeadArguments:)`
2024-01-31 17:16:13 +01:00
Erik Eckstein
fa0be3c10f SwiftCompilerSources: bridge some SIL APIs
* `TryApplyInst.specializationInfo`
* `BasicBlock.addFunctionArgument`
* `Function.appendNewBlock`
2024-01-31 17:16:12 +01:00
Erik Eckstein
7a62f15dae pass Context: verify that only the currently transformed function is modified 2024-01-31 17:16:12 +01:00
Erik Eckstein
543fe31e8f SwiftCompilerSources: add Context.notifyDependency(onBodyOf:)
It notifies the pass manager that the optimization result of the current pass depends on the body (i.e. SIL instructions) of another function than the currently optimized one.
2024-01-10 09:34:00 +01:00
Meghana Gupta
06f0d15c45 Use OSSALifetimeCompletion in PredictableMemOpt
The current algorithm to complete lifetimes is incorrect in a few cases.
Use OSSALifetimeCompletion instead.

Fixes rdar://119204768
2023-12-15 15:16:55 -08:00
Erik Eckstein
773d6b179d SwiftCompilerSources: remove the redundant BridgedPassContext.Feature enum
And replace it with the existing BridgedFeature
2023-12-13 13:28:17 +01:00
Erik Eckstein
ca20ebc158 SwiftCompilerSources: add bridging to hasFeature 2023-12-09 18:49:57 +01:00
Erik Eckstein
9514b3450c SwiftCompilerSources: add some context APIs
* `Context.moduleIsSerialized`
* `Context.getBuiltinIntegerType`
* `Instruction.move(before:)`
2023-12-09 18:48:50 +01:00
Erik Eckstein
b948ccf1ae SwiftCompilerSources: add more APIs to create new basic blocks
* rename `Context.splitBlock(at:)` -> `Context.splitBlock(before:)`
* add `Context.splitBlock(after:)`
* add `Context.createBlock(after:)`
2023-11-27 09:21:33 +01:00
Hamish Knight
5d99fe63e9 Rename get() -> unbridged() on bridging wrappers 2023-10-31 11:06:39 +00:00
Hamish Knight
fce1cb54d5 [AST] Merge BridgedDiagnosticEngine + BridgedDiagEngine
Introduce a macro that can stamp out wrapper
classes for underlying C++ pointers, and use
it to define BridgedDiagnosticEngine in
ASTBridging. Then, migrate users of
BridgedDiagEngine onto it.
2023-10-30 23:49:55 +00:00
Andrew Trick
972a69f17e SwiftCompilerSources bridging review feedback 2023-10-12 14:33:37 -07:00
Andrew Trick
e2333cdcfc SwiftCompilerSources: diagnostics bridging. 2023-10-12 14:33:37 -07:00
Erik Eckstein
2dbd6cc56b SwiftCompilerSources: rework bridging
Introduce two modes of bridging:
* inline mode: this is basically how it worked so far. Using full C++ interop which allows bridging functions to be inlined.
* pure mode: bridging functions are not inlined but compiled in a cpp file. This allows to reduce the C++ interop requirements to a minimum. No std/llvm/swift headers are imported.

This change requires a major refactoring of bridging sources. The implementation of bridging functions go to two separate files: SILBridgingImpl.h and OptimizerBridgingImpl.h.
Depending on the mode, those files are either included in the corresponding header files (inline mode), or included in the c++ file (pure mode).

The mode can be selected with the BRIDGING_MODE cmake variable. By default it is set to the inline mode (= existing behavior). The pure mode is only selected in certain configurations to work around C++ interop issues:
* In debug builds, to workaround a problem with LLDB's `po` command (rdar://115770255).
* On windows to workaround a build problem.
2023-10-09 09:52:52 +02:00