File: MandatoryPerformanceOptimizations.swift

package info (click to toggle)
swiftlang 6.0.3-2
  • links: PTS, VCS
  • area: main
  • in suites: forky, sid, trixie
  • size: 2,519,992 kB
  • sloc: cpp: 9,107,863; ansic: 2,040,022; asm: 1,135,751; python: 296,500; objc: 82,456; f90: 60,502; lisp: 34,951; pascal: 19,946; sh: 18,133; perl: 7,482; ml: 4,937; javascript: 4,117; makefile: 3,840; awk: 3,535; xml: 914; fortran: 619; cs: 573; ruby: 573
file content (438 lines) | stat: -rw-r--r-- 14,999 bytes parent folder | download
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
242
243
244
245
246
247
248
249
250
251
252
253
254
255
256
257
258
259
260
261
262
263
264
265
266
267
268
269
270
271
272
273
274
275
276
277
278
279
280
281
282
283
284
285
286
287
288
289
290
291
292
293
294
295
296
297
298
299
300
301
302
303
304
305
306
307
308
309
310
311
312
313
314
315
316
317
318
319
320
321
322
323
324
325
326
327
328
329
330
331
332
333
334
335
336
337
338
339
340
341
342
343
344
345
346
347
348
349
350
351
352
353
354
355
356
357
358
359
360
361
362
363
364
365
366
367
368
369
370
371
372
373
374
375
376
377
378
379
380
381
382
383
384
385
386
387
388
389
390
391
392
393
394
395
396
397
398
399
400
401
402
403
404
405
406
407
408
409
410
411
412
413
414
415
416
417
418
419
420
421
422
423
424
425
426
427
428
429
430
431
432
433
434
435
436
437
438
//===--- MandatoryPerformanceOptimizations.swift --------------------------===//
//
// This source file is part of the Swift.org open source project
//
// Copyright (c) 2014 - 2023 Apple Inc. and the Swift project authors
// Licensed under Apache License v2.0 with Runtime Library Exception
//
// See https://swift.org/LICENSE.txt for license information
// See https://swift.org/CONTRIBUTORS.txt for the list of Swift project authors
//
//===----------------------------------------------------------------------===//

import SIL

/// Performs mandatory optimizations for performance-annotated functions, and global
/// variable initializers that are required to be statically initialized.
///
/// Optimizations include:
/// * de-virtualization
/// * mandatory inlining
/// * generic specialization
/// * mandatory memory optimizations
/// * dead alloc elimination
/// * instruction simplification
///
/// The pass starts with performance-annotated functions / globals and transitively handles
/// called functions.
///
let mandatoryPerformanceOptimizations = ModulePass(name: "mandatory-performance-optimizations") {
  (moduleContext: ModulePassContext) in

  var worklist = FunctionWorklist()
  // For embedded Swift, optimize all the functions (there cannot be any
  // generics, type metadata, etc.)
  if moduleContext.options.enableEmbeddedSwift {
    worklist.addAllNonGenericFunctions(of: moduleContext)
  } else {
    worklist.addAllPerformanceAnnotatedFunctions(of: moduleContext)
    worklist.addAllAnnotatedGlobalInitOnceFunctions(of: moduleContext)
  }

  optimizeFunctionsTopDown(using: &worklist, moduleContext)
}

private func optimizeFunctionsTopDown(using worklist: inout FunctionWorklist,
                                      _ moduleContext: ModulePassContext) {
  while let f = worklist.pop() {
    moduleContext.transform(function: f) { context in
      if !context.loadFunction(function: f, loadCalleesRecursively: true) {
        return
      }

      // It's not required to set the perf_constraint flag on all functions in embedded mode.
      // Embedded mode already implies that flag.
      if !moduleContext.options.enableEmbeddedSwift {
        f.set(isPerformanceConstraint: true, context)
      }

      optimize(function: f, context, moduleContext, &worklist)
    }

    // Generic specialization takes care of removing metatype arguments of generic functions.
    // But sometimes non-generic functions have metatype arguments which must be removed.
    // We need handle this case with a function signature optimization.
    removeMetatypeArgumentsInCallees(of: f, moduleContext)

    worklist.addCallees(of: f)
  }
}

fileprivate struct PathFunctionTuple: Hashable {
  var path: SmallProjectionPath
  var function: Function
}

private func optimize(function: Function, _ context: FunctionPassContext, _ moduleContext: ModulePassContext, _ worklist: inout FunctionWorklist) {
  var alreadyInlinedFunctions: Set<PathFunctionTuple> = Set()
  
  var changed = true
  while changed {
    changed = runSimplification(on: function, context, preserveDebugInfo: true) { instruction, simplifyCtxt in
      if let i = instruction as? OnoneSimplifyable {
        i.simplify(simplifyCtxt)
        if instruction.isDeleted {
          return
        }
      }
      switch instruction {
      case let apply as FullApplySite:
        inlineAndDevirtualize(apply: apply, alreadyInlinedFunctions: &alreadyInlinedFunctions, context, simplifyCtxt)

      // Embedded Swift specific transformations
      case let alloc as AllocRefInst:
        if context.options.enableEmbeddedSwift {
          specializeVTableAndAddEntriesToWorklist(for: alloc.type, in: function, context, moduleContext, &worklist)
        }
      case let metatype as MetatypeInst:
        if context.options.enableEmbeddedSwift {
          specializeVTableAndAddEntriesToWorklist(for: metatype.type, in: function, context, moduleContext, &worklist)
        }
      case let classMethod as ClassMethodInst:
        if context.options.enableEmbeddedSwift {
          _ = context.specializeClassMethodInst(classMethod)
        }

      // We need to de-virtualize deinits of non-copyable types to be able to specialize the deinitializers.
      case let destroyValue as DestroyValueInst:
        if !devirtualizeDeinits(of: destroyValue, simplifyCtxt) {
          context.diagnosticEngine.diagnose(destroyValue.location.sourceLoc, .deinit_not_visible)
        }
      case let destroyAddr as DestroyAddrInst:
        if !devirtualizeDeinits(of: destroyAddr, simplifyCtxt) {
          context.diagnosticEngine.diagnose(destroyAddr.location.sourceLoc, .deinit_not_visible)
        }

      case let iem as InitExistentialMetatypeInst:
        if iem.uses.ignoreDebugUses.isEmpty {
          context.erase(instructionIncludingDebugUses: iem)
        }

      default:
        break
      }
    }

    _ = context.specializeApplies(in: function, isMandatory: true)

    removeUnusedMetatypeInstructions(in: function, context)

    // If this is a just specialized function, try to optimize copy_addr, etc.
    changed = context.optimizeMemoryAccesses(in: function) || changed
    changed = context.eliminateDeadAllocations(in: function) || changed
  }
}

private func specializeVTableAndAddEntriesToWorklist(for type: Type, in function: Function,
                                                     _ context: FunctionPassContext, _ moduleContext: ModulePassContext,
                                                     _ worklist: inout FunctionWorklist) {
  let vTablesCountBefore = moduleContext.vTables.count

  guard context.specializeVTable(for: type, in: function) != nil else {
    return
  }

  // More than one new vtable might have been created (superclasses), process them all
  let vTables = moduleContext.vTables
  for i in vTablesCountBefore ..< vTables.count {
    for entry in vTables[i].entries {
      worklist.pushIfNotVisited(entry.function)
    }
  }
}

private func inlineAndDevirtualize(apply: FullApplySite, alreadyInlinedFunctions: inout Set<PathFunctionTuple>,
                                   _ context: FunctionPassContext, _ simplifyCtxt: SimplifyContext) {
  if simplifyCtxt.tryDevirtualize(apply: apply, isMandatory: true) != nil {
    return
  }

  guard let callee = apply.referencedFunction else {
    return
  }

  if !context.loadFunction(function: callee, loadCalleesRecursively: true) {
    // We don't have the function body of the callee.
    return
  }

  if apply.canInline &&
     shouldInline(apply: apply, callee: callee, alreadyInlinedFunctions: &alreadyInlinedFunctions)
  {
    if apply.inliningCanInvalidateStackNesting  {
      simplifyCtxt.notifyInvalidatedStackNesting()
    }

    simplifyCtxt.inlineFunction(apply: apply, mandatoryInline: true)
  }
}

private func removeMetatypeArgumentsInCallees(of function: Function, _ context: ModulePassContext) {
  for inst in function.instructions {
    if let apply = inst as? FullApplySite {
      specializeByRemovingMetatypeArguments(apply: apply, context)
    }
  }
}

private func removeUnusedMetatypeInstructions(in function: Function, _ context: FunctionPassContext) {
  for inst in function.instructions {
    if let mt = inst as? MetatypeInst,
       mt.isTriviallyDeadIgnoringDebugUses {
      context.erase(instructionIncludingDebugUses: mt)
    }
  }
}

private func shouldInline(apply: FullApplySite, callee: Function, alreadyInlinedFunctions: inout Set<PathFunctionTuple>) -> Bool {
  if callee.isTransparent {
    return true
  }

  if apply is BeginApplyInst {
    // Avoid co-routines because they might allocate (their context).
    return true
  }

  if callee.mayBindDynamicSelf {
    // We don't support inlining a function that binds dynamic self into a global-init function
    // because the global-init function cannot provide the self metadata.
    return false
  }

  if apply.parentFunction.isGlobalInitOnceFunction && callee.inlineStrategy == .always {
    // Some arithmetic operations, like integer conversions, are not transparent but `inline(__always)`.
    // Force inlining them in global initializers so that it's possible to statically initialize the global.
    return true
  }

  if apply.substitutionMap.isEmpty,
     let pathIntoGlobal = apply.resultIsUsedInGlobalInitialization(),
     alreadyInlinedFunctions.insert(PathFunctionTuple(path: pathIntoGlobal, function: callee)).inserted {
    return true
  }

  return false
}

private extension FullApplySite {
  func resultIsUsedInGlobalInitialization() -> SmallProjectionPath? {
    guard parentFunction.isGlobalInitOnceFunction,
          let global = parentFunction.getInitializedGlobal() else {
      return nil
    }

    switch numIndirectResultArguments {
    case 0:
      return singleDirectResult?.isStored(to: global)
    case 1:
      let resultAccessPath = arguments[0].accessPath
      switch resultAccessPath.base {
      case .global(let resultGlobal) where resultGlobal == global:
        return resultAccessPath.materializableProjectionPath
      case .stack(let allocStack) where resultAccessPath.projectionPath.isEmpty:
        return allocStack.getStoredValue(by: self)?.isStored(to: global)
      default:
        return nil
      }
    default:
      return nil
    }
  }
}

private extension AllocStackInst {
  func getStoredValue(by storingInstruction: Instruction) -> Value? {
    // If the only use (beside `storingInstruction`) is a load, it's the value which is
    // stored by `storingInstruction`.
    var loadedValue: Value? = nil
    for use in self.uses {
      switch use.instruction {
      case is DeallocStackInst:
        break
      case let load as LoadInst:
        if loadedValue != nil {
          return nil
        }
        loadedValue = load
      default:
        if use.instruction != storingInstruction {
          return nil
        }
      }
    }
    return loadedValue
  }
}

private extension Value {
  /// Analyzes the def-use chain of an apply instruction, and looks for a single chain that leads to a store instruction
  /// that initializes a part of a global variable or the entire variable:
  ///
  /// Example:
  ///   %g = global_addr @global
  ///   ...
  ///   %f = function_ref @func
  ///   %apply = apply %f(...)
  ///   store %apply to %g   <--- is a store to the global trivially (the apply result is immediately going into a store)
  ///
  /// Example:
  ///   %apply = apply %f(...)
  ///   %apply2 = apply %f2(%apply)
  ///   store %apply2 to %g   <--- is a store to the global (the apply result has a single chain into the store)
  ///
  /// Example:
  ///   %a = apply %f(...)
  ///   %s = struct $MyStruct (%a, %b)
  ///   store %s to %g   <--- is a partial store to the global (returned SmallProjectionPath is MyStruct.s0)
  ///
  /// Example:
  ///   %a = apply %f(...)
  ///   %as = struct $AStruct (%other, %a)
  ///   %bs = struct $BStruct (%as, %bother)
  ///   store %bs to %g   <--- is a partial store to the global (returned SmallProjectionPath is MyStruct.s0.s1)
  ///
  /// Returns nil if we cannot find a singular def-use use chain (e.g. because a value has more than one user)
  /// leading to a store to the specified global variable.
  func isStored(to global: GlobalVariable) -> SmallProjectionPath? {
    var singleUseValue: any Value = self
    var path = SmallProjectionPath()
    while true {
      // The initializer value of a global can contain access instructions if it references another
      // global variable by address, e.g.
      //   var p = Point(x: 10, y: 20)
      //   let o = UnsafePointer(&p)
      // Therefore ignore the `end_access` use of a `begin_access`.
      let relevantUses = singleUseValue.uses.ignoreDebugUses.ignoreUsers(ofType: EndAccessInst.self)

      guard let use = relevantUses.singleUse else {
        return nil
      }
      
      switch use.instruction {
      case is StructInst:
        path = path.push(.structField, index: use.index)
        break
      case is TupleInst:
        path = path.push(.tupleField, index: use.index)
        break
      case let ei as EnumInst:
        path = path.push(.enumCase, index: ei.caseIndex)
        break
      case let si as StoreInst:
        let accessPath = si.destination.getAccessPath(fromInitialPath: path)
        switch accessPath.base {
        case .global(let storedGlobal) where storedGlobal == global:
          return accessPath.materializableProjectionPath
        default:
          return nil
        }
      case is PointerToAddressInst, is AddressToPointerInst, is BeginAccessInst:
        break
      default:
        return nil
      }

      guard let nextInstruction = use.instruction as? SingleValueInstruction else {
        return nil
      }

      singleUseValue = nextInstruction
    }
  }
}

private extension Function {
  /// Analyzes the global initializer function and returns global it initializes (from `alloc_global` instruction).
  func getInitializedGlobal() -> GlobalVariable? {
    if !isDefinition {
      return nil
    }
    for inst in self.entryBlock.instructions {
      switch inst {
      case let agi as AllocGlobalInst:
        return agi.global
      default:
        break
      }
    }

    return nil
  }
}

fileprivate struct FunctionWorklist {
  private(set) var functions = Array<Function>()
  private var pushedFunctions = Set<Function>()
  private var currentIndex = 0

  mutating func pop() -> Function? {
    if currentIndex < functions.count {
      let f = functions[currentIndex]
      currentIndex += 1
      return f
    }
    return nil
  }

  mutating func addAllPerformanceAnnotatedFunctions(of moduleContext: ModulePassContext) {
    for f in moduleContext.functions where f.performanceConstraints != .none {
      pushIfNotVisited(f)
    }
  }

  mutating func addAllNonGenericFunctions(of moduleContext: ModulePassContext) {
    for f in moduleContext.functions where !f.isGeneric {
      pushIfNotVisited(f)
    }
    return
  }

  mutating func addAllAnnotatedGlobalInitOnceFunctions(of moduleContext: ModulePassContext) {
    for f in moduleContext.functions where f.isGlobalInitOnceFunction {
      if let global = f.getInitializedGlobal(),
         global.mustBeInitializedStatically {
        pushIfNotVisited(f)
      }
    }
  }

  mutating func addCallees(of function: Function) {
    for inst in function.instructions {
      switch inst {
      case let apply as ApplySite:
        if let callee = apply.referencedFunction {
          pushIfNotVisited(callee)
        }
      case let bi as BuiltinInst:
        switch bi.id {
        case .Once, .OnceWithContext:
          if let fri = bi.operands[1].value as? FunctionRefInst {
            pushIfNotVisited(fri.referencedFunction)
          }
          break;
        default:
          break
        }
      default:
        break
      }
    }
  }

  mutating func pushIfNotVisited(_ element: Function) {
    if pushedFunctions.insert(element).inserted {
      functions.append(element)
    }
  }
}