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Chris Lattnerc68c31b2002-07-10 22:38:08 +00001//===- DataStructure.cpp - Implement the core data structure analysis -----===//
John Criswellb576c942003-10-20 19:43:21 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file was developed by the LLVM research group and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
Chris Lattnerbb2a28f2002-03-26 22:39:06 +00009//
Chris Lattnerc68c31b2002-07-10 22:38:08 +000010// This file implements the core data structure functionality.
Chris Lattnerbb2a28f2002-03-26 22:39:06 +000011//
12//===----------------------------------------------------------------------===//
13
Chris Lattnerfccd06f2002-10-01 22:33:50 +000014#include "llvm/Analysis/DSGraph.h"
15#include "llvm/Function.h"
Vikram S. Adve26b98262002-10-20 21:41:02 +000016#include "llvm/iOther.h"
Chris Lattnerc68c31b2002-07-10 22:38:08 +000017#include "llvm/DerivedTypes.h"
Chris Lattner7b7200c2002-10-02 04:57:39 +000018#include "llvm/Target/TargetData.h"
Chris Lattner58f98d02003-07-02 04:38:49 +000019#include "llvm/Assembly/Writer.h"
Chris Lattner0b144872004-01-27 22:03:40 +000020#include "Support/CommandLine.h"
Chris Lattner6806f562003-08-01 22:15:03 +000021#include "Support/Debug.h"
Chris Lattnerc68c31b2002-07-10 22:38:08 +000022#include "Support/STLExtras.h"
Chris Lattnerfccd06f2002-10-01 22:33:50 +000023#include "Support/Statistic.h"
Chris Lattner18552922002-11-18 21:44:46 +000024#include "Support/Timer.h"
Chris Lattner0d9bab82002-07-18 00:12:30 +000025#include <algorithm>
Chris Lattner9a927292003-11-12 23:11:14 +000026using namespace llvm;
Brian Gaeked0fde302003-11-11 22:41:34 +000027
Chris Lattner08db7192002-11-06 06:20:27 +000028namespace {
Chris Lattner33312f72002-11-08 01:21:07 +000029 Statistic<> NumFolds ("dsnode", "Number of nodes completely folded");
30 Statistic<> NumCallNodesMerged("dsnode", "Number of call nodes merged");
Chris Lattner0b144872004-01-27 22:03:40 +000031 Statistic<> NumNodeAllocated ("dsnode", "Number of nodes allocated");
32
33 cl::opt<bool>
34 EnableDSNodeGlobalRootsHack("enable-dsa-globalrootshack", cl::Hidden,
35 cl::desc("Make DSA less aggressive when cloning graphs"));
Chris Lattner08db7192002-11-06 06:20:27 +000036};
37
Chris Lattnera88a55c2004-01-28 02:41:32 +000038#if 1
Chris Lattner93ddd7e2004-01-22 16:36:28 +000039#define TIME_REGION(VARNAME, DESC) \
40 NamedRegionTimer VARNAME(DESC)
41#else
42#define TIME_REGION(VARNAME, DESC)
43#endif
44
Chris Lattnerb1060432002-11-07 05:20:53 +000045using namespace DS;
Chris Lattnerfccd06f2002-10-01 22:33:50 +000046
Chris Lattner731b2d72003-02-13 19:09:00 +000047DSNode *DSNodeHandle::HandleForwarding() const {
48 assert(!N->ForwardNH.isNull() && "Can only be invoked if forwarding!");
49
50 // Handle node forwarding here!
51 DSNode *Next = N->ForwardNH.getNode(); // Cause recursive shrinkage
52 Offset += N->ForwardNH.getOffset();
53
54 if (--N->NumReferrers == 0) {
55 // Removing the last referrer to the node, sever the forwarding link
56 N->stopForwarding();
57 }
58
59 N = Next;
60 N->NumReferrers++;
61 if (N->Size <= Offset) {
62 assert(N->Size <= 1 && "Forwarded to shrunk but not collapsed node?");
63 Offset = 0;
64 }
65 return N;
66}
67
Chris Lattnerbb2a28f2002-03-26 22:39:06 +000068//===----------------------------------------------------------------------===//
Chris Lattnerc68c31b2002-07-10 22:38:08 +000069// DSNode Implementation
70//===----------------------------------------------------------------------===//
Chris Lattnerbb2a28f2002-03-26 22:39:06 +000071
Chris Lattnerbd92b732003-06-19 21:15:11 +000072DSNode::DSNode(const Type *T, DSGraph *G)
Chris Lattner70793862003-07-02 23:57:05 +000073 : NumReferrers(0), Size(0), ParentGraph(G), Ty(Type::VoidTy), NodeType(0) {
Chris Lattner8f0a16e2002-10-31 05:45:02 +000074 // Add the type entry if it is specified...
Chris Lattner08db7192002-11-06 06:20:27 +000075 if (T) mergeTypeInfo(T, 0);
Chris Lattner72d29a42003-02-11 23:11:51 +000076 G->getNodes().push_back(this);
Chris Lattner0b144872004-01-27 22:03:40 +000077 ++NumNodeAllocated;
Chris Lattnerc68c31b2002-07-10 22:38:08 +000078}
79
Chris Lattner0d9bab82002-07-18 00:12:30 +000080// DSNode copy constructor... do not copy over the referrers list!
Chris Lattner0b144872004-01-27 22:03:40 +000081DSNode::DSNode(const DSNode &N, DSGraph *G, bool NullLinks)
Chris Lattner70793862003-07-02 23:57:05 +000082 : NumReferrers(0), Size(N.Size), ParentGraph(G),
Chris Lattner0b144872004-01-27 22:03:40 +000083 Ty(N.Ty), Globals(N.Globals), NodeType(N.NodeType) {
84 if (!NullLinks)
85 Links = N.Links;
86 else
87 Links.resize(N.Links.size()); // Create the appropriate number of null links
Chris Lattner72d29a42003-02-11 23:11:51 +000088 G->getNodes().push_back(this);
Chris Lattner0b144872004-01-27 22:03:40 +000089 ++NumNodeAllocated;
Chris Lattner0d9bab82002-07-18 00:12:30 +000090}
91
Chris Lattner15869aa2003-11-02 22:27:28 +000092/// getTargetData - Get the target data object used to construct this node.
93///
94const TargetData &DSNode::getTargetData() const {
95 return ParentGraph->getTargetData();
96}
97
Chris Lattner72d29a42003-02-11 23:11:51 +000098void DSNode::assertOK() const {
99 assert((Ty != Type::VoidTy ||
100 Ty == Type::VoidTy && (Size == 0 ||
101 (NodeType & DSNode::Array))) &&
102 "Node not OK!");
Chris Lattner85cfe012003-07-03 02:03:53 +0000103
104 assert(ParentGraph && "Node has no parent?");
Chris Lattner62482e52004-01-28 09:15:42 +0000105 const DSScalarMap &SM = ParentGraph->getScalarMap();
Chris Lattner85cfe012003-07-03 02:03:53 +0000106 for (unsigned i = 0, e = Globals.size(); i != e; ++i) {
Chris Lattnera88a55c2004-01-28 02:41:32 +0000107 assert(SM.count(Globals[i]));
Chris Lattner85cfe012003-07-03 02:03:53 +0000108 assert(SM.find(Globals[i])->second.getNode() == this);
109 }
Chris Lattner72d29a42003-02-11 23:11:51 +0000110}
111
112/// forwardNode - Mark this node as being obsolete, and all references to it
113/// should be forwarded to the specified node and offset.
114///
115void DSNode::forwardNode(DSNode *To, unsigned Offset) {
116 assert(this != To && "Cannot forward a node to itself!");
117 assert(ForwardNH.isNull() && "Already forwarding from this node!");
118 if (To->Size <= 1) Offset = 0;
119 assert((Offset < To->Size || (Offset == To->Size && Offset == 0)) &&
120 "Forwarded offset is wrong!");
121 ForwardNH.setNode(To);
122 ForwardNH.setOffset(Offset);
123 NodeType = DEAD;
124 Size = 0;
125 Ty = Type::VoidTy;
Chris Lattnerc68c31b2002-07-10 22:38:08 +0000126}
127
Chris Lattnerf9ae4c52002-07-11 20:32:22 +0000128// addGlobal - Add an entry for a global value to the Globals list. This also
129// marks the node with the 'G' flag if it does not already have it.
130//
131void DSNode::addGlobal(GlobalValue *GV) {
Chris Lattner0d9bab82002-07-18 00:12:30 +0000132 // Keep the list sorted.
Chris Lattnerb3416bc2003-02-01 04:01:21 +0000133 std::vector<GlobalValue*>::iterator I =
Chris Lattner0d9bab82002-07-18 00:12:30 +0000134 std::lower_bound(Globals.begin(), Globals.end(), GV);
135
136 if (I == Globals.end() || *I != GV) {
Chris Lattnerfccd06f2002-10-01 22:33:50 +0000137 //assert(GV->getType()->getElementType() == Ty);
Chris Lattner0d9bab82002-07-18 00:12:30 +0000138 Globals.insert(I, GV);
139 NodeType |= GlobalNode;
140 }
Chris Lattnerf9ae4c52002-07-11 20:32:22 +0000141}
142
Chris Lattner8f0a16e2002-10-31 05:45:02 +0000143/// foldNodeCompletely - If we determine that this node has some funny
144/// behavior happening to it that we cannot represent, we fold it down to a
145/// single, completely pessimistic, node. This node is represented as a
146/// single byte with a single TypeEntry of "void".
147///
148void DSNode::foldNodeCompletely() {
Chris Lattner72d29a42003-02-11 23:11:51 +0000149 if (isNodeCompletelyFolded()) return; // If this node is already folded...
Chris Lattner8f0a16e2002-10-31 05:45:02 +0000150
Chris Lattner08db7192002-11-06 06:20:27 +0000151 ++NumFolds;
152
Chris Lattner0b144872004-01-27 22:03:40 +0000153 // If this node has a size that is <= 1, we don't need to create a forwarding
154 // node.
155 if (getSize() <= 1) {
156 NodeType |= DSNode::Array;
157 Ty = Type::VoidTy;
158 Size = 1;
159 assert(Links.size() <= 1 && "Size is 1, but has more links?");
160 Links.resize(1);
Chris Lattner72d29a42003-02-11 23:11:51 +0000161 } else {
Chris Lattner0b144872004-01-27 22:03:40 +0000162 // Create the node we are going to forward to. This is required because
163 // some referrers may have an offset that is > 0. By forcing them to
164 // forward, the forwarder has the opportunity to correct the offset.
165 DSNode *DestNode = new DSNode(0, ParentGraph);
166 DestNode->NodeType = NodeType|DSNode::Array;
167 DestNode->Ty = Type::VoidTy;
168 DestNode->Size = 1;
169 DestNode->Globals.swap(Globals);
170
171 // Start forwarding to the destination node...
172 forwardNode(DestNode, 0);
173
174 if (!Links.empty()) {
175 DestNode->Links.reserve(1);
176
177 DSNodeHandle NH(DestNode);
178 DestNode->Links.push_back(Links[0]);
179
180 // If we have links, merge all of our outgoing links together...
181 for (unsigned i = Links.size()-1; i != 0; --i)
182 NH.getNode()->Links[0].mergeWith(Links[i]);
183 Links.clear();
184 } else {
185 DestNode->Links.resize(1);
186 }
Chris Lattner72d29a42003-02-11 23:11:51 +0000187 }
Chris Lattner8f0a16e2002-10-31 05:45:02 +0000188}
Chris Lattner076c1f92002-11-07 06:31:54 +0000189
Chris Lattner8f0a16e2002-10-31 05:45:02 +0000190/// isNodeCompletelyFolded - Return true if this node has been completely
191/// folded down to something that can never be expanded, effectively losing
192/// all of the field sensitivity that may be present in the node.
193///
194bool DSNode::isNodeCompletelyFolded() const {
Chris Lattner18552922002-11-18 21:44:46 +0000195 return getSize() == 1 && Ty == Type::VoidTy && isArray();
Chris Lattner8f0a16e2002-10-31 05:45:02 +0000196}
197
Chris Lattner5c5b10f2003-06-29 20:27:45 +0000198namespace {
199 /// TypeElementWalker Class - Used for implementation of physical subtyping...
200 ///
201 class TypeElementWalker {
202 struct StackState {
203 const Type *Ty;
204 unsigned Offset;
205 unsigned Idx;
206 StackState(const Type *T, unsigned Off = 0)
207 : Ty(T), Offset(Off), Idx(0) {}
208 };
209
210 std::vector<StackState> Stack;
Chris Lattner15869aa2003-11-02 22:27:28 +0000211 const TargetData &TD;
Chris Lattner5c5b10f2003-06-29 20:27:45 +0000212 public:
Chris Lattner15869aa2003-11-02 22:27:28 +0000213 TypeElementWalker(const Type *T, const TargetData &td) : TD(td) {
Chris Lattner5c5b10f2003-06-29 20:27:45 +0000214 Stack.push_back(T);
215 StepToLeaf();
216 }
217
218 bool isDone() const { return Stack.empty(); }
219 const Type *getCurrentType() const { return Stack.back().Ty; }
220 unsigned getCurrentOffset() const { return Stack.back().Offset; }
221
222 void StepToNextType() {
223 PopStackAndAdvance();
224 StepToLeaf();
225 }
226
227 private:
228 /// PopStackAndAdvance - Pop the current element off of the stack and
229 /// advance the underlying element to the next contained member.
230 void PopStackAndAdvance() {
231 assert(!Stack.empty() && "Cannot pop an empty stack!");
232 Stack.pop_back();
233 while (!Stack.empty()) {
234 StackState &SS = Stack.back();
235 if (const StructType *ST = dyn_cast<StructType>(SS.Ty)) {
236 ++SS.Idx;
237 if (SS.Idx != ST->getElementTypes().size()) {
238 const StructLayout *SL = TD.getStructLayout(ST);
239 SS.Offset += SL->MemberOffsets[SS.Idx]-SL->MemberOffsets[SS.Idx-1];
240 return;
241 }
242 Stack.pop_back(); // At the end of the structure
243 } else {
244 const ArrayType *AT = cast<ArrayType>(SS.Ty);
245 ++SS.Idx;
246 if (SS.Idx != AT->getNumElements()) {
247 SS.Offset += TD.getTypeSize(AT->getElementType());
248 return;
249 }
250 Stack.pop_back(); // At the end of the array
251 }
252 }
253 }
254
255 /// StepToLeaf - Used by physical subtyping to move to the first leaf node
256 /// on the type stack.
257 void StepToLeaf() {
258 if (Stack.empty()) return;
259 while (!Stack.empty() && !Stack.back().Ty->isFirstClassType()) {
260 StackState &SS = Stack.back();
261 if (const StructType *ST = dyn_cast<StructType>(SS.Ty)) {
262 if (ST->getElementTypes().empty()) {
263 assert(SS.Idx == 0);
264 PopStackAndAdvance();
265 } else {
266 // Step into the structure...
267 assert(SS.Idx < ST->getElementTypes().size());
268 const StructLayout *SL = TD.getStructLayout(ST);
269 Stack.push_back(StackState(ST->getElementTypes()[SS.Idx],
270 SS.Offset+SL->MemberOffsets[SS.Idx]));
271 }
272 } else {
273 const ArrayType *AT = cast<ArrayType>(SS.Ty);
274 if (AT->getNumElements() == 0) {
275 assert(SS.Idx == 0);
276 PopStackAndAdvance();
277 } else {
278 // Step into the array...
279 assert(SS.Idx < AT->getNumElements());
280 Stack.push_back(StackState(AT->getElementType(),
281 SS.Offset+SS.Idx*
282 TD.getTypeSize(AT->getElementType())));
283 }
284 }
285 }
286 }
287 };
Brian Gaeked0fde302003-11-11 22:41:34 +0000288} // end anonymous namespace
Chris Lattner5c5b10f2003-06-29 20:27:45 +0000289
290/// ElementTypesAreCompatible - Check to see if the specified types are
291/// "physically" compatible. If so, return true, else return false. We only
Chris Lattnerdbfe36e2003-11-02 21:02:20 +0000292/// have to check the fields in T1: T2 may be larger than T1. If AllowLargerT1
293/// is true, then we also allow a larger T1.
Chris Lattner5c5b10f2003-06-29 20:27:45 +0000294///
Chris Lattnerdbfe36e2003-11-02 21:02:20 +0000295static bool ElementTypesAreCompatible(const Type *T1, const Type *T2,
Chris Lattner15869aa2003-11-02 22:27:28 +0000296 bool AllowLargerT1, const TargetData &TD){
297 TypeElementWalker T1W(T1, TD), T2W(T2, TD);
Chris Lattner5c5b10f2003-06-29 20:27:45 +0000298
299 while (!T1W.isDone() && !T2W.isDone()) {
300 if (T1W.getCurrentOffset() != T2W.getCurrentOffset())
301 return false;
302
303 const Type *T1 = T1W.getCurrentType();
304 const Type *T2 = T2W.getCurrentType();
305 if (T1 != T2 && !T1->isLosslesslyConvertibleTo(T2))
306 return false;
307
308 T1W.StepToNextType();
309 T2W.StepToNextType();
310 }
311
Chris Lattnerdbfe36e2003-11-02 21:02:20 +0000312 return AllowLargerT1 || T1W.isDone();
Chris Lattner5c5b10f2003-06-29 20:27:45 +0000313}
314
315
Chris Lattner08db7192002-11-06 06:20:27 +0000316/// mergeTypeInfo - This method merges the specified type into the current node
317/// at the specified offset. This may update the current node's type record if
318/// this gives more information to the node, it may do nothing to the node if
319/// this information is already known, or it may merge the node completely (and
320/// return true) if the information is incompatible with what is already known.
Chris Lattner7b7200c2002-10-02 04:57:39 +0000321///
Chris Lattner08db7192002-11-06 06:20:27 +0000322/// This method returns true if the node is completely folded, otherwise false.
323///
Chris Lattner088b6392003-03-03 17:13:31 +0000324bool DSNode::mergeTypeInfo(const Type *NewTy, unsigned Offset,
325 bool FoldIfIncompatible) {
Chris Lattner15869aa2003-11-02 22:27:28 +0000326 const TargetData &TD = getTargetData();
Chris Lattner08db7192002-11-06 06:20:27 +0000327 // Check to make sure the Size member is up-to-date. Size can be one of the
328 // following:
329 // Size = 0, Ty = Void: Nothing is known about this node.
330 // Size = 0, Ty = FnTy: FunctionPtr doesn't have a size, so we use zero
331 // Size = 1, Ty = Void, Array = 1: The node is collapsed
332 // Otherwise, sizeof(Ty) = Size
333 //
Chris Lattner18552922002-11-18 21:44:46 +0000334 assert(((Size == 0 && Ty == Type::VoidTy && !isArray()) ||
335 (Size == 0 && !Ty->isSized() && !isArray()) ||
336 (Size == 1 && Ty == Type::VoidTy && isArray()) ||
337 (Size == 0 && !Ty->isSized() && !isArray()) ||
338 (TD.getTypeSize(Ty) == Size)) &&
Chris Lattner08db7192002-11-06 06:20:27 +0000339 "Size member of DSNode doesn't match the type structure!");
340 assert(NewTy != Type::VoidTy && "Cannot merge void type into DSNode!");
Chris Lattner7b7200c2002-10-02 04:57:39 +0000341
Chris Lattner18552922002-11-18 21:44:46 +0000342 if (Offset == 0 && NewTy == Ty)
Chris Lattner08db7192002-11-06 06:20:27 +0000343 return false; // This should be a common case, handle it efficiently
Chris Lattner7b7200c2002-10-02 04:57:39 +0000344
Chris Lattner08db7192002-11-06 06:20:27 +0000345 // Return true immediately if the node is completely folded.
346 if (isNodeCompletelyFolded()) return true;
347
Chris Lattner23f83dc2002-11-08 22:49:57 +0000348 // If this is an array type, eliminate the outside arrays because they won't
349 // be used anyway. This greatly reduces the size of large static arrays used
350 // as global variables, for example.
351 //
Chris Lattnerd8888932002-11-09 19:25:27 +0000352 bool WillBeArray = false;
Chris Lattner23f83dc2002-11-08 22:49:57 +0000353 while (const ArrayType *AT = dyn_cast<ArrayType>(NewTy)) {
354 // FIXME: we might want to keep small arrays, but must be careful about
355 // things like: [2 x [10000 x int*]]
356 NewTy = AT->getElementType();
Chris Lattnerd8888932002-11-09 19:25:27 +0000357 WillBeArray = true;
Chris Lattner23f83dc2002-11-08 22:49:57 +0000358 }
359
Chris Lattner08db7192002-11-06 06:20:27 +0000360 // Figure out how big the new type we're merging in is...
361 unsigned NewTySize = NewTy->isSized() ? TD.getTypeSize(NewTy) : 0;
362
363 // Otherwise check to see if we can fold this type into the current node. If
364 // we can't, we fold the node completely, if we can, we potentially update our
365 // internal state.
366 //
Chris Lattner18552922002-11-18 21:44:46 +0000367 if (Ty == Type::VoidTy) {
Chris Lattner08db7192002-11-06 06:20:27 +0000368 // If this is the first type that this node has seen, just accept it without
369 // question....
Chris Lattnerdbfe36e2003-11-02 21:02:20 +0000370 assert(Offset == 0 && !isArray() &&
371 "Cannot have an offset into a void node!");
Chris Lattner18552922002-11-18 21:44:46 +0000372 Ty = NewTy;
373 NodeType &= ~Array;
374 if (WillBeArray) NodeType |= Array;
Chris Lattner08db7192002-11-06 06:20:27 +0000375 Size = NewTySize;
376
377 // Calculate the number of outgoing links from this node.
378 Links.resize((Size+DS::PointerSize-1) >> DS::PointerShift);
379 return false;
Chris Lattner7b7200c2002-10-02 04:57:39 +0000380 }
Chris Lattner08db7192002-11-06 06:20:27 +0000381
382 // Handle node expansion case here...
383 if (Offset+NewTySize > Size) {
384 // It is illegal to grow this node if we have treated it as an array of
385 // objects...
Chris Lattner18552922002-11-18 21:44:46 +0000386 if (isArray()) {
Chris Lattner088b6392003-03-03 17:13:31 +0000387 if (FoldIfIncompatible) foldNodeCompletely();
Chris Lattner08db7192002-11-06 06:20:27 +0000388 return true;
389 }
390
391 if (Offset) { // We could handle this case, but we don't for now...
Chris Lattner5c5b10f2003-06-29 20:27:45 +0000392 std::cerr << "UNIMP: Trying to merge a growth type into "
393 << "offset != 0: Collapsing!\n";
Chris Lattner088b6392003-03-03 17:13:31 +0000394 if (FoldIfIncompatible) foldNodeCompletely();
Chris Lattner08db7192002-11-06 06:20:27 +0000395 return true;
396 }
397
398 // Okay, the situation is nice and simple, we are trying to merge a type in
399 // at offset 0 that is bigger than our current type. Implement this by
400 // switching to the new type and then merge in the smaller one, which should
401 // hit the other code path here. If the other code path decides it's not
402 // ok, it will collapse the node as appropriate.
403 //
Chris Lattner18552922002-11-18 21:44:46 +0000404 const Type *OldTy = Ty;
405 Ty = NewTy;
406 NodeType &= ~Array;
407 if (WillBeArray) NodeType |= Array;
Chris Lattner08db7192002-11-06 06:20:27 +0000408 Size = NewTySize;
409
410 // Must grow links to be the appropriate size...
411 Links.resize((Size+DS::PointerSize-1) >> DS::PointerShift);
412
413 // Merge in the old type now... which is guaranteed to be smaller than the
414 // "current" type.
415 return mergeTypeInfo(OldTy, 0);
416 }
417
Chris Lattnerf17b39a2002-11-07 04:59:28 +0000418 assert(Offset <= Size &&
Chris Lattner08db7192002-11-06 06:20:27 +0000419 "Cannot merge something into a part of our type that doesn't exist!");
420
Chris Lattner18552922002-11-18 21:44:46 +0000421 // Find the section of Ty that NewTy overlaps with... first we find the
Chris Lattner08db7192002-11-06 06:20:27 +0000422 // type that starts at offset Offset.
423 //
424 unsigned O = 0;
Chris Lattner18552922002-11-18 21:44:46 +0000425 const Type *SubType = Ty;
Chris Lattner08db7192002-11-06 06:20:27 +0000426 while (O < Offset) {
427 assert(Offset-O < TD.getTypeSize(SubType) && "Offset out of range!");
428
429 switch (SubType->getPrimitiveID()) {
430 case Type::StructTyID: {
431 const StructType *STy = cast<StructType>(SubType);
432 const StructLayout &SL = *TD.getStructLayout(STy);
433
434 unsigned i = 0, e = SL.MemberOffsets.size();
435 for (; i+1 < e && SL.MemberOffsets[i+1] <= Offset-O; ++i)
436 /* empty */;
437
438 // The offset we are looking for must be in the i'th element...
439 SubType = STy->getElementTypes()[i];
440 O += SL.MemberOffsets[i];
441 break;
442 }
443 case Type::ArrayTyID: {
444 SubType = cast<ArrayType>(SubType)->getElementType();
445 unsigned ElSize = TD.getTypeSize(SubType);
446 unsigned Remainder = (Offset-O) % ElSize;
447 O = Offset-Remainder;
448 break;
449 }
450 default:
Chris Lattner088b6392003-03-03 17:13:31 +0000451 if (FoldIfIncompatible) foldNodeCompletely();
Chris Lattner0ac7d5c2003-02-03 19:12:15 +0000452 return true;
Chris Lattner08db7192002-11-06 06:20:27 +0000453 }
454 }
455
456 assert(O == Offset && "Could not achieve the correct offset!");
457
458 // If we found our type exactly, early exit
459 if (SubType == NewTy) return false;
460
Chris Lattner0b144872004-01-27 22:03:40 +0000461 // Differing function types don't require us to merge. They are not values anyway.
462 if (isa<FunctionType>(SubType) &&
463 isa<FunctionType>(NewTy)) return false;
464
Chris Lattner5c5b10f2003-06-29 20:27:45 +0000465 unsigned SubTypeSize = SubType->isSized() ? TD.getTypeSize(SubType) : 0;
466
467 // Ok, we are getting desperate now. Check for physical subtyping, where we
468 // just require each element in the node to be compatible.
Chris Lattner06e24c82003-06-29 22:36:31 +0000469 if (NewTySize <= SubTypeSize && NewTySize && NewTySize < 256 &&
Chris Lattner5c5b10f2003-06-29 20:27:45 +0000470 SubTypeSize && SubTypeSize < 256 &&
Chris Lattner15869aa2003-11-02 22:27:28 +0000471 ElementTypesAreCompatible(NewTy, SubType, !isArray(), TD))
Chris Lattner5c5b10f2003-06-29 20:27:45 +0000472 return false;
473
Chris Lattner08db7192002-11-06 06:20:27 +0000474 // Okay, so we found the leader type at the offset requested. Search the list
475 // of types that starts at this offset. If SubType is currently an array or
476 // structure, the type desired may actually be the first element of the
477 // composite type...
478 //
Chris Lattner18552922002-11-18 21:44:46 +0000479 unsigned PadSize = SubTypeSize; // Size, including pad memory which is ignored
Chris Lattner08db7192002-11-06 06:20:27 +0000480 while (SubType != NewTy) {
481 const Type *NextSubType = 0;
Chris Lattnerbf10f052002-11-09 00:49:05 +0000482 unsigned NextSubTypeSize = 0;
Chris Lattner18552922002-11-18 21:44:46 +0000483 unsigned NextPadSize = 0;
Chris Lattner08db7192002-11-06 06:20:27 +0000484 switch (SubType->getPrimitiveID()) {
Chris Lattner18552922002-11-18 21:44:46 +0000485 case Type::StructTyID: {
486 const StructType *STy = cast<StructType>(SubType);
487 const StructLayout &SL = *TD.getStructLayout(STy);
488 if (SL.MemberOffsets.size() > 1)
489 NextPadSize = SL.MemberOffsets[1];
490 else
491 NextPadSize = SubTypeSize;
492 NextSubType = STy->getElementTypes()[0];
493 NextSubTypeSize = TD.getTypeSize(NextSubType);
Chris Lattner08db7192002-11-06 06:20:27 +0000494 break;
Chris Lattner18552922002-11-18 21:44:46 +0000495 }
Chris Lattner08db7192002-11-06 06:20:27 +0000496 case Type::ArrayTyID:
497 NextSubType = cast<ArrayType>(SubType)->getElementType();
Chris Lattner18552922002-11-18 21:44:46 +0000498 NextSubTypeSize = TD.getTypeSize(NextSubType);
499 NextPadSize = NextSubTypeSize;
Chris Lattner08db7192002-11-06 06:20:27 +0000500 break;
501 default: ;
502 // fall out
503 }
504
505 if (NextSubType == 0)
506 break; // In the default case, break out of the loop
507
Chris Lattner18552922002-11-18 21:44:46 +0000508 if (NextPadSize < NewTySize)
Chris Lattner08db7192002-11-06 06:20:27 +0000509 break; // Don't allow shrinking to a smaller type than NewTySize
510 SubType = NextSubType;
511 SubTypeSize = NextSubTypeSize;
Chris Lattner18552922002-11-18 21:44:46 +0000512 PadSize = NextPadSize;
Chris Lattner08db7192002-11-06 06:20:27 +0000513 }
514
515 // If we found the type exactly, return it...
516 if (SubType == NewTy)
517 return false;
518
519 // Check to see if we have a compatible, but different type...
520 if (NewTySize == SubTypeSize) {
Misha Brukmanf117cc92003-05-20 18:45:36 +0000521 // Check to see if this type is obviously convertible... int -> uint f.e.
522 if (NewTy->isLosslesslyConvertibleTo(SubType))
Chris Lattner08db7192002-11-06 06:20:27 +0000523 return false;
524
525 // Check to see if we have a pointer & integer mismatch going on here,
526 // loading a pointer as a long, for example.
527 //
528 if (SubType->isInteger() && isa<PointerType>(NewTy) ||
529 NewTy->isInteger() && isa<PointerType>(SubType))
530 return false;
Chris Lattner18552922002-11-18 21:44:46 +0000531 } else if (NewTySize > SubTypeSize && NewTySize <= PadSize) {
532 // We are accessing the field, plus some structure padding. Ignore the
533 // structure padding.
534 return false;
Chris Lattner08db7192002-11-06 06:20:27 +0000535 }
536
Chris Lattner58f98d02003-07-02 04:38:49 +0000537 Module *M = 0;
Chris Lattner58f98d02003-07-02 04:38:49 +0000538 if (getParentGraph()->getReturnNodes().size())
539 M = getParentGraph()->getReturnNodes().begin()->first->getParent();
Chris Lattner58f98d02003-07-02 04:38:49 +0000540 DEBUG(std::cerr << "MergeTypeInfo Folding OrigTy: ";
541 WriteTypeSymbolic(std::cerr, Ty, M) << "\n due to:";
542 WriteTypeSymbolic(std::cerr, NewTy, M) << " @ " << Offset << "!\n"
543 << "SubType: ";
544 WriteTypeSymbolic(std::cerr, SubType, M) << "\n\n");
Chris Lattner08db7192002-11-06 06:20:27 +0000545
Chris Lattner088b6392003-03-03 17:13:31 +0000546 if (FoldIfIncompatible) foldNodeCompletely();
Chris Lattner08db7192002-11-06 06:20:27 +0000547 return true;
Chris Lattner7b7200c2002-10-02 04:57:39 +0000548}
549
Chris Lattner08db7192002-11-06 06:20:27 +0000550
551
Chris Lattnerc68c31b2002-07-10 22:38:08 +0000552// addEdgeTo - Add an edge from the current node to the specified node. This
553// can cause merging of nodes in the graph.
554//
Chris Lattnerfccd06f2002-10-01 22:33:50 +0000555void DSNode::addEdgeTo(unsigned Offset, const DSNodeHandle &NH) {
Chris Lattner0b144872004-01-27 22:03:40 +0000556 if (NH.isNull()) return; // Nothing to do
Chris Lattnerfccd06f2002-10-01 22:33:50 +0000557
Chris Lattner08db7192002-11-06 06:20:27 +0000558 DSNodeHandle &ExistingEdge = getLink(Offset);
Chris Lattner0b144872004-01-27 22:03:40 +0000559 if (!ExistingEdge.isNull()) {
Chris Lattner7b7200c2002-10-02 04:57:39 +0000560 // Merge the two nodes...
Chris Lattner08db7192002-11-06 06:20:27 +0000561 ExistingEdge.mergeWith(NH);
Chris Lattner7b7200c2002-10-02 04:57:39 +0000562 } else { // No merging to perform...
563 setLink(Offset, NH); // Just force a link in there...
Chris Lattnerfccd06f2002-10-01 22:33:50 +0000564 }
Chris Lattner7b7200c2002-10-02 04:57:39 +0000565}
Chris Lattnerfccd06f2002-10-01 22:33:50 +0000566
Chris Lattnerc68c31b2002-07-10 22:38:08 +0000567
Chris Lattnerfccd06f2002-10-01 22:33:50 +0000568// MergeSortedVectors - Efficiently merge a vector into another vector where
569// duplicates are not allowed and both are sorted. This assumes that 'T's are
570// efficiently copyable and have sane comparison semantics.
Chris Lattnerc68c31b2002-07-10 22:38:08 +0000571//
Chris Lattnerb3416bc2003-02-01 04:01:21 +0000572static void MergeSortedVectors(std::vector<GlobalValue*> &Dest,
573 const std::vector<GlobalValue*> &Src) {
Chris Lattnerfccd06f2002-10-01 22:33:50 +0000574 // By far, the most common cases will be the simple ones. In these cases,
575 // avoid having to allocate a temporary vector...
576 //
577 if (Src.empty()) { // Nothing to merge in...
578 return;
579 } else if (Dest.empty()) { // Just copy the result in...
580 Dest = Src;
581 } else if (Src.size() == 1) { // Insert a single element...
Chris Lattner18552922002-11-18 21:44:46 +0000582 const GlobalValue *V = Src[0];
Chris Lattnerb3416bc2003-02-01 04:01:21 +0000583 std::vector<GlobalValue*>::iterator I =
Chris Lattnerfccd06f2002-10-01 22:33:50 +0000584 std::lower_bound(Dest.begin(), Dest.end(), V);
585 if (I == Dest.end() || *I != Src[0]) // If not already contained...
586 Dest.insert(I, Src[0]);
587 } else if (Dest.size() == 1) {
Chris Lattner18552922002-11-18 21:44:46 +0000588 GlobalValue *Tmp = Dest[0]; // Save value in temporary...
Chris Lattnerfccd06f2002-10-01 22:33:50 +0000589 Dest = Src; // Copy over list...
Chris Lattnerb3416bc2003-02-01 04:01:21 +0000590 std::vector<GlobalValue*>::iterator I =
Chris Lattner5190ce82002-11-12 07:20:45 +0000591 std::lower_bound(Dest.begin(), Dest.end(), Tmp);
592 if (I == Dest.end() || *I != Tmp) // If not already contained...
593 Dest.insert(I, Tmp);
Chris Lattnerfccd06f2002-10-01 22:33:50 +0000594
595 } else {
596 // Make a copy to the side of Dest...
Chris Lattnerb3416bc2003-02-01 04:01:21 +0000597 std::vector<GlobalValue*> Old(Dest);
Chris Lattnerfccd06f2002-10-01 22:33:50 +0000598
599 // Make space for all of the type entries now...
600 Dest.resize(Dest.size()+Src.size());
601
602 // Merge the two sorted ranges together... into Dest.
603 std::merge(Old.begin(), Old.end(), Src.begin(), Src.end(), Dest.begin());
604
605 // Now erase any duplicate entries that may have accumulated into the
606 // vectors (because they were in both of the input sets)
607 Dest.erase(std::unique(Dest.begin(), Dest.end()), Dest.end());
608 }
609}
610
Chris Lattner0b144872004-01-27 22:03:40 +0000611void DSNode::mergeGlobals(const std::vector<GlobalValue*> &RHS) {
612 MergeSortedVectors(Globals, RHS);
613}
Chris Lattnerfccd06f2002-10-01 22:33:50 +0000614
Chris Lattner0b144872004-01-27 22:03:40 +0000615// MergeNodes - Helper function for DSNode::mergeWith().
Vikram S. Adve2b7a92c2002-12-06 21:15:21 +0000616// This function does the hard work of merging two nodes, CurNodeH
617// and NH after filtering out trivial cases and making sure that
618// CurNodeH.offset >= NH.offset.
619//
620// ***WARNING***
621// Since merging may cause either node to go away, we must always
622// use the node-handles to refer to the nodes. These node handles are
623// automatically updated during merging, so will always provide access
624// to the correct node after a merge.
625//
626void DSNode::MergeNodes(DSNodeHandle& CurNodeH, DSNodeHandle& NH) {
627 assert(CurNodeH.getOffset() >= NH.getOffset() &&
628 "This should have been enforced in the caller.");
629
630 // Now we know that Offset >= NH.Offset, so convert it so our "Offset" (with
631 // respect to NH.Offset) is now zero. NOffset is the distance from the base
632 // of our object that N starts from.
633 //
634 unsigned NOffset = CurNodeH.getOffset()-NH.getOffset();
635 unsigned NSize = NH.getNode()->getSize();
636
Chris Lattner5c5b10f2003-06-29 20:27:45 +0000637 // If the two nodes are of different size, and the smaller node has the array
638 // bit set, collapse!
639 if (NSize != CurNodeH.getNode()->getSize()) {
640 if (NSize < CurNodeH.getNode()->getSize()) {
641 if (NH.getNode()->isArray())
642 NH.getNode()->foldNodeCompletely();
643 } else if (CurNodeH.getNode()->isArray()) {
644 NH.getNode()->foldNodeCompletely();
645 }
646 }
647
648 // Merge the type entries of the two nodes together...
Chris Lattner72d29a42003-02-11 23:11:51 +0000649 if (NH.getNode()->Ty != Type::VoidTy)
Vikram S. Adve2b7a92c2002-12-06 21:15:21 +0000650 CurNodeH.getNode()->mergeTypeInfo(NH.getNode()->Ty, NOffset);
Chris Lattnerbd92b732003-06-19 21:15:11 +0000651 assert(!CurNodeH.getNode()->isDeadNode());
Vikram S. Adve2b7a92c2002-12-06 21:15:21 +0000652
653 // If we are merging a node with a completely folded node, then both nodes are
654 // now completely folded.
655 //
656 if (CurNodeH.getNode()->isNodeCompletelyFolded()) {
657 if (!NH.getNode()->isNodeCompletelyFolded()) {
658 NH.getNode()->foldNodeCompletely();
Chris Lattner72d29a42003-02-11 23:11:51 +0000659 assert(NH.getNode() && NH.getOffset() == 0 &&
660 "folding did not make offset 0?");
Vikram S. Adve2b7a92c2002-12-06 21:15:21 +0000661 NOffset = NH.getOffset();
662 NSize = NH.getNode()->getSize();
663 assert(NOffset == 0 && NSize == 1);
664 }
665 } else if (NH.getNode()->isNodeCompletelyFolded()) {
666 CurNodeH.getNode()->foldNodeCompletely();
Chris Lattner72d29a42003-02-11 23:11:51 +0000667 assert(CurNodeH.getNode() && CurNodeH.getOffset() == 0 &&
668 "folding did not make offset 0?");
Vikram S. Adve2b7a92c2002-12-06 21:15:21 +0000669 NOffset = NH.getOffset();
670 NSize = NH.getNode()->getSize();
671 assert(NOffset == 0 && NSize == 1);
672 }
673
Chris Lattner72d29a42003-02-11 23:11:51 +0000674 DSNode *N = NH.getNode();
675 if (CurNodeH.getNode() == N || N == 0) return;
Chris Lattnerbd92b732003-06-19 21:15:11 +0000676 assert(!CurNodeH.getNode()->isDeadNode());
677
Chris Lattner0b144872004-01-27 22:03:40 +0000678 // Merge the NodeType information.
Chris Lattnerbd92b732003-06-19 21:15:11 +0000679 CurNodeH.getNode()->NodeType |= N->NodeType;
Vikram S. Adve2b7a92c2002-12-06 21:15:21 +0000680
Chris Lattner72d29a42003-02-11 23:11:51 +0000681 // Start forwarding to the new node!
Chris Lattner72d29a42003-02-11 23:11:51 +0000682 N->forwardNode(CurNodeH.getNode(), NOffset);
Chris Lattnerbd92b732003-06-19 21:15:11 +0000683 assert(!CurNodeH.getNode()->isDeadNode());
Vikram S. Adve2b7a92c2002-12-06 21:15:21 +0000684
Chris Lattner72d29a42003-02-11 23:11:51 +0000685 // Make all of the outgoing links of N now be outgoing links of CurNodeH.
686 //
687 for (unsigned i = 0; i < N->getNumLinks(); ++i) {
688 DSNodeHandle &Link = N->getLink(i << DS::PointerShift);
Vikram S. Adve2b7a92c2002-12-06 21:15:21 +0000689 if (Link.getNode()) {
690 // Compute the offset into the current node at which to
691 // merge this link. In the common case, this is a linear
692 // relation to the offset in the original node (with
693 // wrapping), but if the current node gets collapsed due to
694 // recursive merging, we must make sure to merge in all remaining
695 // links at offset zero.
696 unsigned MergeOffset = 0;
Chris Lattner72d29a42003-02-11 23:11:51 +0000697 DSNode *CN = CurNodeH.getNode();
698 if (CN->Size != 1)
699 MergeOffset = ((i << DS::PointerShift)+NOffset) % CN->getSize();
700 CN->addEdgeTo(MergeOffset, Link);
Vikram S. Adve2b7a92c2002-12-06 21:15:21 +0000701 }
702 }
703
704 // Now that there are no outgoing edges, all of the Links are dead.
Chris Lattner72d29a42003-02-11 23:11:51 +0000705 N->Links.clear();
Vikram S. Adve2b7a92c2002-12-06 21:15:21 +0000706
707 // Merge the globals list...
Chris Lattner72d29a42003-02-11 23:11:51 +0000708 if (!N->Globals.empty()) {
Chris Lattner0b144872004-01-27 22:03:40 +0000709 CurNodeH.getNode()->mergeGlobals(N->Globals);
Vikram S. Adve2b7a92c2002-12-06 21:15:21 +0000710
711 // Delete the globals from the old node...
Chris Lattner72d29a42003-02-11 23:11:51 +0000712 std::vector<GlobalValue*>().swap(N->Globals);
Vikram S. Adve2b7a92c2002-12-06 21:15:21 +0000713 }
714}
715
716
Chris Lattnerfccd06f2002-10-01 22:33:50 +0000717// mergeWith - Merge this node and the specified node, moving all links to and
718// from the argument node into the current node, deleting the node argument.
719// Offset indicates what offset the specified node is to be merged into the
720// current node.
721//
Chris Lattner5254a8d2004-01-22 16:31:08 +0000722// The specified node may be a null pointer (in which case, we update it to
723// point to this node).
Chris Lattnerfccd06f2002-10-01 22:33:50 +0000724//
725void DSNode::mergeWith(const DSNodeHandle &NH, unsigned Offset) {
726 DSNode *N = NH.getNode();
Chris Lattner5254a8d2004-01-22 16:31:08 +0000727 if (N == this && NH.getOffset() == Offset)
Chris Lattner8f0a16e2002-10-31 05:45:02 +0000728 return; // Noop
Chris Lattnerfccd06f2002-10-01 22:33:50 +0000729
Chris Lattner5254a8d2004-01-22 16:31:08 +0000730 // If the RHS is a null node, make it point to this node!
731 if (N == 0) {
732 NH.mergeWith(DSNodeHandle(this, Offset));
733 return;
734 }
735
Chris Lattnerbd92b732003-06-19 21:15:11 +0000736 assert(!N->isDeadNode() && !isDeadNode());
Chris Lattner679e8e12002-11-08 21:27:12 +0000737 assert(!hasNoReferrers() && "Should not try to fold a useless node!");
738
Chris Lattner02606632002-11-04 06:48:26 +0000739 if (N == this) {
Chris Lattner08db7192002-11-06 06:20:27 +0000740 // We cannot merge two pieces of the same node together, collapse the node
741 // completely.
Chris Lattner3c87b292002-11-07 01:54:56 +0000742 DEBUG(std::cerr << "Attempting to merge two chunks of"
743 << " the same node together!\n");
Chris Lattner08db7192002-11-06 06:20:27 +0000744 foldNodeCompletely();
Chris Lattner02606632002-11-04 06:48:26 +0000745 return;
746 }
Chris Lattnerfccd06f2002-10-01 22:33:50 +0000747
Chris Lattner5190ce82002-11-12 07:20:45 +0000748 // If both nodes are not at offset 0, make sure that we are merging the node
749 // at an later offset into the node with the zero offset.
750 //
751 if (Offset < NH.getOffset()) {
752 N->mergeWith(DSNodeHandle(this, Offset), NH.getOffset());
753 return;
754 } else if (Offset == NH.getOffset() && getSize() < N->getSize()) {
755 // If the offsets are the same, merge the smaller node into the bigger node
756 N->mergeWith(DSNodeHandle(this, Offset), NH.getOffset());
757 return;
758 }
759
Vikram S. Adve2b7a92c2002-12-06 21:15:21 +0000760 // Ok, now we can merge the two nodes. Use a static helper that works with
761 // two node handles, since "this" may get merged away at intermediate steps.
762 DSNodeHandle CurNodeH(this, Offset);
763 DSNodeHandle NHCopy(NH);
764 DSNode::MergeNodes(CurNodeH, NHCopy);
Chris Lattnerc68c31b2002-07-10 22:38:08 +0000765}
766
Chris Lattner0b144872004-01-27 22:03:40 +0000767
768//===----------------------------------------------------------------------===//
769// ReachabilityCloner Implementation
770//===----------------------------------------------------------------------===//
771
772DSNodeHandle ReachabilityCloner::getClonedNH(const DSNodeHandle &SrcNH) {
773 if (SrcNH.isNull()) return DSNodeHandle();
774 const DSNode *SN = SrcNH.getNode();
775
776 DSNodeHandle &NH = NodeMap[SN];
777 if (!NH.isNull()) // Node already mapped?
778 return DSNodeHandle(NH.getNode(), NH.getOffset()+SrcNH.getOffset());
779
780 DSNode *DN = new DSNode(*SN, &Dest, true /* Null out all links */);
781 DN->maskNodeTypes(BitsToKeep);
Chris Lattner00948c02004-01-28 02:05:05 +0000782 NH = DN;
Chris Lattner0b144872004-01-27 22:03:40 +0000783
784 // Next, recursively clone all outgoing links as necessary. Note that
785 // adding these links can cause the node to collapse itself at any time, and
786 // the current node may be merged with arbitrary other nodes. For this
787 // reason, we must always go through NH.
788 DN = 0;
789 for (unsigned i = 0, e = SN->getNumLinks(); i != e; ++i) {
790 const DSNodeHandle &SrcEdge = SN->getLink(i << DS::PointerShift);
791 if (!SrcEdge.isNull()) {
792 const DSNodeHandle &DestEdge = getClonedNH(SrcEdge);
793 // Compute the offset into the current node at which to
794 // merge this link. In the common case, this is a linear
795 // relation to the offset in the original node (with
796 // wrapping), but if the current node gets collapsed due to
797 // recursive merging, we must make sure to merge in all remaining
798 // links at offset zero.
799 unsigned MergeOffset = 0;
800 DSNode *CN = NH.getNode();
801 if (CN->getSize() != 1)
802 MergeOffset = ((i << DS::PointerShift)+NH.getOffset()
803 - SrcNH.getOffset()) %CN->getSize();
804 CN->addEdgeTo(MergeOffset, DestEdge);
805 }
806 }
807
808 // If this node contains any globals, make sure they end up in the scalar
809 // map with the correct offset.
810 for (DSNode::global_iterator I = SN->global_begin(), E = SN->global_end();
811 I != E; ++I) {
812 GlobalValue *GV = *I;
813 const DSNodeHandle &SrcGNH = Src.getNodeForValue(GV);
814 DSNodeHandle &DestGNH = NodeMap[SrcGNH.getNode()];
815 assert(DestGNH.getNode() == NH.getNode() &&"Global mapping inconsistent");
816 Dest.getNodeForValue(GV).mergeWith(DSNodeHandle(DestGNH.getNode(),
Chris Lattner00948c02004-01-28 02:05:05 +0000817 DestGNH.getOffset()+SrcGNH.getOffset()));
Chris Lattner0b144872004-01-27 22:03:40 +0000818
819 if (CloneFlags & DSGraph::UpdateInlinedGlobals)
820 Dest.getInlinedGlobals().insert(GV);
821 }
822
823 return DSNodeHandle(NH.getNode(), NH.getOffset()+SrcNH.getOffset());
824}
825
826void ReachabilityCloner::merge(const DSNodeHandle &NH,
827 const DSNodeHandle &SrcNH) {
828 if (SrcNH.isNull()) return; // Noop
829 if (NH.isNull()) {
830 // If there is no destination node, just clone the source and assign the
831 // destination node to be it.
832 NH.mergeWith(getClonedNH(SrcNH));
833 return;
834 }
835
836 // Okay, at this point, we know that we have both a destination and a source
837 // node that need to be merged. Check to see if the source node has already
838 // been cloned.
839 const DSNode *SN = SrcNH.getNode();
840 DSNodeHandle &SCNH = NodeMap[SN]; // SourceClonedNodeHandle
841 if (SCNH.getNode()) { // Node already cloned?
842 NH.mergeWith(DSNodeHandle(SCNH.getNode(),
843 SCNH.getOffset()+SrcNH.getOffset()));
844
845 return; // Nothing to do!
846 }
847
848 // Okay, so the source node has not already been cloned. Instead of creating
849 // a new DSNode, only to merge it into the one we already have, try to perform
850 // the merge in-place. The only case we cannot handle here is when the offset
851 // into the existing node is less than the offset into the virtual node we are
852 // merging in. In this case, we have to extend the existing node, which
853 // requires an allocation anyway.
854 DSNode *DN = NH.getNode(); // Make sure the Offset is up-to-date
855 if (NH.getOffset() >= SrcNH.getOffset()) {
Chris Lattner0b144872004-01-27 22:03:40 +0000856 if (!DN->isNodeCompletelyFolded()) {
857 // Make sure the destination node is folded if the source node is folded.
858 if (SN->isNodeCompletelyFolded()) {
859 DN->foldNodeCompletely();
860 DN = NH.getNode();
861 } else if (SN->getSize() != DN->getSize()) {
862 // If the two nodes are of different size, and the smaller node has the
863 // array bit set, collapse!
864 if (SN->getSize() < DN->getSize()) {
865 if (SN->isArray()) {
866 DN->foldNodeCompletely();
867 DN = NH.getNode();
868 }
869 } else if (DN->isArray()) {
870 DN->foldNodeCompletely();
871 DN = NH.getNode();
872 }
873 }
874
875 // Merge the type entries of the two nodes together...
876 if (SN->getType() != Type::VoidTy && !DN->isNodeCompletelyFolded()) {
877 DN->mergeTypeInfo(SN->getType(), NH.getOffset()-SrcNH.getOffset());
878 DN = NH.getNode();
879 }
880 }
881
882 assert(!DN->isDeadNode());
883
884 // Merge the NodeType information.
885 DN->mergeNodeFlags(SN->getNodeFlags() & BitsToKeep);
886
887 // Before we start merging outgoing links and updating the scalar map, make
888 // sure it is known that this is the representative node for the src node.
889 SCNH = DSNodeHandle(DN, NH.getOffset()-SrcNH.getOffset());
890
891 // If the source node contains any globals, make sure they end up in the
892 // scalar map with the correct offset.
893 if (SN->global_begin() != SN->global_end()) {
894 // Update the globals in the destination node itself.
895 DN->mergeGlobals(SN->getGlobals());
896
897 // Update the scalar map for the graph we are merging the source node
898 // into.
899 for (DSNode::global_iterator I = SN->global_begin(), E = SN->global_end();
900 I != E; ++I) {
901 GlobalValue *GV = *I;
902 const DSNodeHandle &SrcGNH = Src.getNodeForValue(GV);
903 DSNodeHandle &DestGNH = NodeMap[SrcGNH.getNode()];
904 assert(DestGNH.getNode()==NH.getNode() &&"Global mapping inconsistent");
905 Dest.getNodeForValue(GV).mergeWith(DSNodeHandle(DestGNH.getNode(),
Chris Lattneread9eb72004-01-29 08:36:22 +0000906 DestGNH.getOffset()+SrcGNH.getOffset()));
Chris Lattner0b144872004-01-27 22:03:40 +0000907
908 if (CloneFlags & DSGraph::UpdateInlinedGlobals)
909 Dest.getInlinedGlobals().insert(GV);
910 }
911 }
912 } else {
913 // We cannot handle this case without allocating a temporary node. Fall
914 // back on being simple.
Chris Lattner0b144872004-01-27 22:03:40 +0000915 DSNode *NewDN = new DSNode(*SN, &Dest, true /* Null out all links */);
916 NewDN->maskNodeTypes(BitsToKeep);
917
918 unsigned NHOffset = NH.getOffset();
919 NH.mergeWith(DSNodeHandle(NewDN, SrcNH.getOffset()));
Chris Lattneread9eb72004-01-29 08:36:22 +0000920
Chris Lattner0b144872004-01-27 22:03:40 +0000921 assert(NH.getNode() &&
922 (NH.getOffset() > NHOffset ||
923 (NH.getOffset() == 0 && NH.getNode()->isNodeCompletelyFolded())) &&
924 "Merging did not adjust the offset!");
925
926 // Before we start merging outgoing links and updating the scalar map, make
927 // sure it is known that this is the representative node for the src node.
928 SCNH = DSNodeHandle(NH.getNode(), NH.getOffset()-SrcNH.getOffset());
Chris Lattneread9eb72004-01-29 08:36:22 +0000929
930 // If the source node contained any globals, make sure to create entries
931 // in the scalar map for them!
932 for (DSNode::global_iterator I = SN->global_begin(), E = SN->global_end();
933 I != E; ++I) {
934 GlobalValue *GV = *I;
935 const DSNodeHandle &SrcGNH = Src.getNodeForValue(GV);
936 DSNodeHandle &DestGNH = NodeMap[SrcGNH.getNode()];
937 assert(DestGNH.getNode()==NH.getNode() &&"Global mapping inconsistent");
938 assert(SrcGNH.getNode() == SN && "Global mapping inconsistent");
939 Dest.getNodeForValue(GV).mergeWith(DSNodeHandle(DestGNH.getNode(),
940 DestGNH.getOffset()+SrcGNH.getOffset()));
941
942 if (CloneFlags & DSGraph::UpdateInlinedGlobals)
943 Dest.getInlinedGlobals().insert(GV);
944 }
Chris Lattner0b144872004-01-27 22:03:40 +0000945 }
946
947
948 // Next, recursively merge all outgoing links as necessary. Note that
949 // adding these links can cause the destination node to collapse itself at
950 // any time, and the current node may be merged with arbitrary other nodes.
951 // For this reason, we must always go through NH.
952 DN = 0;
953 for (unsigned i = 0, e = SN->getNumLinks(); i != e; ++i) {
954 const DSNodeHandle &SrcEdge = SN->getLink(i << DS::PointerShift);
955 if (!SrcEdge.isNull()) {
956 // Compute the offset into the current node at which to
957 // merge this link. In the common case, this is a linear
958 // relation to the offset in the original node (with
959 // wrapping), but if the current node gets collapsed due to
960 // recursive merging, we must make sure to merge in all remaining
961 // links at offset zero.
962 unsigned MergeOffset = 0;
963 DSNode *CN = SCNH.getNode();
964 if (CN->getSize() != 1)
965 MergeOffset = ((i << DS::PointerShift)+SCNH.getOffset()) %CN->getSize();
966
967 // Perform the recursive merging. Make sure to create a temporary NH,
968 // because the Link can disappear in the process of recursive merging.
969 DSNodeHandle Tmp = CN->getLink(MergeOffset);
970 merge(Tmp, SrcEdge);
971 }
972 }
973}
974
975/// mergeCallSite - Merge the nodes reachable from the specified src call
976/// site into the nodes reachable from DestCS.
977void ReachabilityCloner::mergeCallSite(const DSCallSite &DestCS,
978 const DSCallSite &SrcCS) {
979 merge(DestCS.getRetVal(), SrcCS.getRetVal());
980 unsigned MinArgs = DestCS.getNumPtrArgs();
981 if (SrcCS.getNumPtrArgs() < MinArgs) MinArgs = SrcCS.getNumPtrArgs();
982
983 for (unsigned a = 0; a != MinArgs; ++a)
984 merge(DestCS.getPtrArg(a), SrcCS.getPtrArg(a));
985}
986
987
Chris Lattner9de906c2002-10-20 22:11:44 +0000988//===----------------------------------------------------------------------===//
989// DSCallSite Implementation
990//===----------------------------------------------------------------------===//
991
Vikram S. Adve26b98262002-10-20 21:41:02 +0000992// Define here to avoid including iOther.h and BasicBlock.h in DSGraph.h
Chris Lattner9de906c2002-10-20 22:11:44 +0000993Function &DSCallSite::getCaller() const {
Chris Lattner808a7ae2003-09-20 16:34:13 +0000994 return *Site.getInstruction()->getParent()->getParent();
Vikram S. Adve26b98262002-10-20 21:41:02 +0000995}
Vikram S. Adve42fd1692002-10-20 18:07:37 +0000996
Chris Lattner0b144872004-01-27 22:03:40 +0000997void DSCallSite::InitNH(DSNodeHandle &NH, const DSNodeHandle &Src,
998 ReachabilityCloner &RC) {
999 NH = RC.getClonedNH(Src);
1000}
Vikram S. Adve42fd1692002-10-20 18:07:37 +00001001
Chris Lattnerc68c31b2002-07-10 22:38:08 +00001002//===----------------------------------------------------------------------===//
1003// DSGraph Implementation
1004//===----------------------------------------------------------------------===//
1005
Chris Lattnera9d65662003-06-30 05:57:30 +00001006/// getFunctionNames - Return a space separated list of the name of the
1007/// functions in this graph (if any)
1008std::string DSGraph::getFunctionNames() const {
1009 switch (getReturnNodes().size()) {
1010 case 0: return "Globals graph";
1011 case 1: return getReturnNodes().begin()->first->getName();
1012 default:
1013 std::string Return;
1014 for (DSGraph::ReturnNodesTy::const_iterator I = getReturnNodes().begin();
1015 I != getReturnNodes().end(); ++I)
1016 Return += I->first->getName() + " ";
1017 Return.erase(Return.end()-1, Return.end()); // Remove last space character
1018 return Return;
1019 }
1020}
1021
1022
Chris Lattner15869aa2003-11-02 22:27:28 +00001023DSGraph::DSGraph(const DSGraph &G) : GlobalsGraph(0), TD(G.TD) {
Chris Lattneraa8146f2002-11-10 06:59:55 +00001024 PrintAuxCalls = false;
Chris Lattner5a540632003-06-30 03:15:25 +00001025 NodeMapTy NodeMap;
1026 cloneInto(G, ScalarMap, ReturnNodes, NodeMap);
Chris Lattner0d9bab82002-07-18 00:12:30 +00001027}
1028
Chris Lattner5a540632003-06-30 03:15:25 +00001029DSGraph::DSGraph(const DSGraph &G, NodeMapTy &NodeMap)
Chris Lattner15869aa2003-11-02 22:27:28 +00001030 : GlobalsGraph(0), TD(G.TD) {
Chris Lattneraa8146f2002-11-10 06:59:55 +00001031 PrintAuxCalls = false;
Chris Lattner5a540632003-06-30 03:15:25 +00001032 cloneInto(G, ScalarMap, ReturnNodes, NodeMap);
Chris Lattnereff0da92002-10-21 15:32:34 +00001033}
1034
Chris Lattnerc68c31b2002-07-10 22:38:08 +00001035DSGraph::~DSGraph() {
1036 FunctionCalls.clear();
Chris Lattner679e8e12002-11-08 21:27:12 +00001037 AuxFunctionCalls.clear();
Vikram S. Adve78bbec72003-07-16 21:36:31 +00001038 InlinedGlobals.clear();
Chris Lattnerc875f022002-11-03 21:27:48 +00001039 ScalarMap.clear();
Chris Lattner5a540632003-06-30 03:15:25 +00001040 ReturnNodes.clear();
Chris Lattnerc68c31b2002-07-10 22:38:08 +00001041
Chris Lattnerc68c31b2002-07-10 22:38:08 +00001042 // Drop all intra-node references, so that assertions don't fail...
1043 std::for_each(Nodes.begin(), Nodes.end(),
1044 std::mem_fun(&DSNode::dropAllReferences));
Chris Lattnerc68c31b2002-07-10 22:38:08 +00001045
1046 // Delete all of the nodes themselves...
1047 std::for_each(Nodes.begin(), Nodes.end(), deleter<DSNode>);
1048}
1049
Chris Lattner0d9bab82002-07-18 00:12:30 +00001050// dump - Allow inspection of graph in a debugger.
1051void DSGraph::dump() const { print(std::cerr); }
1052
Chris Lattnerfccd06f2002-10-01 22:33:50 +00001053
Chris Lattnerfccd06f2002-10-01 22:33:50 +00001054/// remapLinks - Change all of the Links in the current node according to the
1055/// specified mapping.
Chris Lattner8f0a16e2002-10-31 05:45:02 +00001056///
Chris Lattner8d327672003-06-30 03:36:09 +00001057void DSNode::remapLinks(DSGraph::NodeMapTy &OldNodeMap) {
Chris Lattner2f561382004-01-22 16:56:13 +00001058 for (unsigned i = 0, e = Links.size(); i != e; ++i)
1059 if (DSNode *N = Links[i].getNode()) {
Chris Lattner091f7762004-01-23 01:44:53 +00001060 DSGraph::NodeMapTy::const_iterator ONMI = OldNodeMap.find(N);
1061 if (ONMI != OldNodeMap.end()) {
1062 Links[i].setNode(ONMI->second.getNode());
1063 Links[i].setOffset(Links[i].getOffset()+ONMI->second.getOffset());
1064 }
Chris Lattner2f561382004-01-22 16:56:13 +00001065 }
Chris Lattnerfccd06f2002-10-01 22:33:50 +00001066}
Vikram S. Adve355e2ca2002-07-30 22:05:22 +00001067
Vikram S. Adve78bbec72003-07-16 21:36:31 +00001068/// updateFromGlobalGraph - This function rematerializes global nodes and
1069/// nodes reachable from them from the globals graph into the current graph.
Chris Lattner0b144872004-01-27 22:03:40 +00001070/// It uses the vector InlinedGlobals to avoid cloning and merging globals that
1071/// are already up-to-date in the current graph. In practice, in the TD pass,
1072/// this is likely to be a large fraction of the live global nodes in each
1073/// function (since most live nodes are likely to have been brought up-to-date
1074/// in at _some_ caller or callee).
Vikram S. Adve78bbec72003-07-16 21:36:31 +00001075///
1076void DSGraph::updateFromGlobalGraph() {
Chris Lattner0b144872004-01-27 22:03:40 +00001077 TIME_REGION(X, "updateFromGlobalGraph");
Chris Lattner0b144872004-01-27 22:03:40 +00001078 ReachabilityCloner RC(*this, *GlobalsGraph, 0);
1079
1080 // Clone the non-up-to-date global nodes into this graph.
Chris Lattnerbdce7b72004-01-28 03:03:06 +00001081 for (DSScalarMap::global_iterator I = getScalarMap().global_begin(),
1082 E = getScalarMap().global_end(); I != E; ++I)
1083 if (InlinedGlobals.count(*I) == 0) { // GNode is not up-to-date
Chris Lattner62482e52004-01-28 09:15:42 +00001084 DSScalarMap::iterator It = GlobalsGraph->ScalarMap.find(*I);
Chris Lattnerbdce7b72004-01-28 03:03:06 +00001085 if (It != GlobalsGraph->ScalarMap.end())
1086 RC.merge(getNodeForValue(*I), It->second);
1087 }
Vikram S. Adve78bbec72003-07-16 21:36:31 +00001088}
1089
Chris Lattner5a540632003-06-30 03:15:25 +00001090/// cloneInto - Clone the specified DSGraph into the current graph. The
1091/// translated ScalarMap for the old function is filled into the OldValMap
1092/// member, and the translated ReturnNodes map is returned into ReturnNodes.
1093///
1094/// The CloneFlags member controls various aspects of the cloning process.
1095///
Chris Lattner62482e52004-01-28 09:15:42 +00001096void DSGraph::cloneInto(const DSGraph &G, DSScalarMap &OldValMap,
Chris Lattner5a540632003-06-30 03:15:25 +00001097 ReturnNodesTy &OldReturnNodes, NodeMapTy &OldNodeMap,
1098 unsigned CloneFlags) {
Chris Lattner93ddd7e2004-01-22 16:36:28 +00001099 TIME_REGION(X, "cloneInto");
Chris Lattnerfccd06f2002-10-01 22:33:50 +00001100 assert(OldNodeMap.empty() && "Returned OldNodeMap should be empty!");
Chris Lattner33312f72002-11-08 01:21:07 +00001101 assert(&G != this && "Cannot clone graph into itself!");
Chris Lattner0d9bab82002-07-18 00:12:30 +00001102
Vikram S. Adve355e2ca2002-07-30 22:05:22 +00001103 unsigned FN = Nodes.size(); // First new node...
Chris Lattner0d9bab82002-07-18 00:12:30 +00001104
1105 // Duplicate all of the nodes, populating the node map...
1106 Nodes.reserve(FN+G.Nodes.size());
Chris Lattner1e883692003-02-03 20:08:51 +00001107
1108 // Remove alloca or mod/ref bits as specified...
Vikram S. Adve78bbec72003-07-16 21:36:31 +00001109 unsigned BitsToClear = ((CloneFlags & StripAllocaBit)? DSNode::AllocaNode : 0)
1110 | ((CloneFlags & StripModRefBits)? (DSNode::Modified | DSNode::Read) : 0)
1111 | ((CloneFlags & StripIncompleteBit)? DSNode::Incomplete : 0);
Chris Lattnerbd92b732003-06-19 21:15:11 +00001112 BitsToClear |= DSNode::DEAD; // Clear dead flag...
Chris Lattner0d9bab82002-07-18 00:12:30 +00001113 for (unsigned i = 0, e = G.Nodes.size(); i != e; ++i) {
Chris Lattnerfccd06f2002-10-01 22:33:50 +00001114 DSNode *Old = G.Nodes[i];
Chris Lattner72d29a42003-02-11 23:11:51 +00001115 DSNode *New = new DSNode(*Old, this);
Chris Lattnerbd92b732003-06-19 21:15:11 +00001116 New->maskNodeTypes(~BitsToClear);
Vikram S. Adve6aa0d622002-07-18 16:12:08 +00001117 OldNodeMap[Old] = New;
Chris Lattner0d9bab82002-07-18 00:12:30 +00001118 }
Chris Lattner18552922002-11-18 21:44:46 +00001119#ifndef NDEBUG
1120 Timer::addPeakMemoryMeasurement();
1121#endif
1122
Vikram S. Adve355e2ca2002-07-30 22:05:22 +00001123 // Rewrite the links in the new nodes to point into the current graph now.
Chris Lattner0d9bab82002-07-18 00:12:30 +00001124 for (unsigned i = FN, e = Nodes.size(); i != e; ++i)
Chris Lattnerfccd06f2002-10-01 22:33:50 +00001125 Nodes[i]->remapLinks(OldNodeMap);
Chris Lattner0d9bab82002-07-18 00:12:30 +00001126
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001127 // Copy the scalar map... merging all of the global nodes...
Chris Lattner62482e52004-01-28 09:15:42 +00001128 for (DSScalarMap::const_iterator I = G.ScalarMap.begin(),
Chris Lattnerc875f022002-11-03 21:27:48 +00001129 E = G.ScalarMap.end(); I != E; ++I) {
Chris Lattnerf8c6aab2002-11-08 05:01:14 +00001130 DSNodeHandle &MappedNode = OldNodeMap[I->second.getNode()];
Chris Lattner2cb9acd2003-06-30 05:09:29 +00001131 DSNodeHandle &H = OldValMap[I->first];
1132 H.mergeWith(DSNodeHandle(MappedNode.getNode(),
1133 I->second.getOffset()+MappedNode.getOffset()));
Chris Lattnercf15db32002-10-17 20:09:52 +00001134
Chris Lattner2cb9acd2003-06-30 05:09:29 +00001135 // If this is a global, add the global to this fn or merge if already exists
Vikram S. Adve78bbec72003-07-16 21:36:31 +00001136 if (GlobalValue* GV = dyn_cast<GlobalValue>(I->first)) {
1137 ScalarMap[GV].mergeWith(H);
Chris Lattner091f7762004-01-23 01:44:53 +00001138 if (CloneFlags & DSGraph::UpdateInlinedGlobals)
1139 InlinedGlobals.insert(GV);
Vikram S. Adve78bbec72003-07-16 21:36:31 +00001140 }
Chris Lattnercf15db32002-10-17 20:09:52 +00001141 }
Chris Lattnerfccd06f2002-10-01 22:33:50 +00001142
Chris Lattner679e8e12002-11-08 21:27:12 +00001143 if (!(CloneFlags & DontCloneCallNodes)) {
1144 // Copy the function calls list...
1145 unsigned FC = FunctionCalls.size(); // FirstCall
1146 FunctionCalls.reserve(FC+G.FunctionCalls.size());
1147 for (unsigned i = 0, ei = G.FunctionCalls.size(); i != ei; ++i)
1148 FunctionCalls.push_back(DSCallSite(G.FunctionCalls[i], OldNodeMap));
Chris Lattneracf491f2002-11-08 22:27:09 +00001149 }
Chris Lattner679e8e12002-11-08 21:27:12 +00001150
Chris Lattneracf491f2002-11-08 22:27:09 +00001151 if (!(CloneFlags & DontCloneAuxCallNodes)) {
Misha Brukman2f2d0652003-09-11 18:14:24 +00001152 // Copy the auxiliary function calls list...
Chris Lattneracf491f2002-11-08 22:27:09 +00001153 unsigned FC = AuxFunctionCalls.size(); // FirstCall
Chris Lattner679e8e12002-11-08 21:27:12 +00001154 AuxFunctionCalls.reserve(FC+G.AuxFunctionCalls.size());
1155 for (unsigned i = 0, ei = G.AuxFunctionCalls.size(); i != ei; ++i)
1156 AuxFunctionCalls.push_back(DSCallSite(G.AuxFunctionCalls[i], OldNodeMap));
1157 }
Chris Lattnercf15db32002-10-17 20:09:52 +00001158
Chris Lattner5a540632003-06-30 03:15:25 +00001159 // Map the return node pointers over...
1160 for (ReturnNodesTy::const_iterator I = G.getReturnNodes().begin(),
1161 E = G.getReturnNodes().end(); I != E; ++I) {
1162 const DSNodeHandle &Ret = I->second;
1163 DSNodeHandle &MappedRet = OldNodeMap[Ret.getNode()];
1164 OldReturnNodes.insert(std::make_pair(I->first,
1165 DSNodeHandle(MappedRet.getNode(),
1166 MappedRet.getOffset()+Ret.getOffset())));
1167 }
Chris Lattner0d9bab82002-07-18 00:12:30 +00001168}
1169
Chris Lattner4c6cb7a2004-01-22 15:30:58 +00001170
Chris Lattner076c1f92002-11-07 06:31:54 +00001171/// mergeInGraph - The method is used for merging graphs together. If the
1172/// argument graph is not *this, it makes a clone of the specified graph, then
1173/// merges the nodes specified in the call site with the formal arguments in the
1174/// graph.
1175///
Chris Lattner9f930552003-06-30 05:27:18 +00001176void DSGraph::mergeInGraph(const DSCallSite &CS, Function &F,
1177 const DSGraph &Graph, unsigned CloneFlags) {
Chris Lattner0b144872004-01-27 22:03:40 +00001178 TIME_REGION(X, "mergeInGraph");
1179
Chris Lattner076c1f92002-11-07 06:31:54 +00001180 // If this is not a recursive call, clone the graph into this graph...
1181 if (&Graph != this) {
Chris Lattner0b144872004-01-27 22:03:40 +00001182 // Clone the callee's graph into the current graph, keeping track of where
1183 // scalars in the old graph _used_ to point, and of the new nodes matching
1184 // nodes of the old graph.
1185 ReachabilityCloner RC(*this, Graph, CloneFlags);
1186
Chris Lattner4c6cb7a2004-01-22 15:30:58 +00001187 // Set up argument bindings
1188 Function::aiterator AI = F.abegin();
1189 for (unsigned i = 0, e = CS.getNumPtrArgs(); i != e; ++i, ++AI) {
1190 // Advance the argument iterator to the first pointer argument...
1191 while (AI != F.aend() && !isPointerType(AI->getType())) {
1192 ++AI;
Chris Lattner17a93e22004-01-29 03:32:15 +00001193#ifndef NDEBUG // FIXME: We should merge vararg arguments!
1194 if (AI == F.aend() && !F.getFunctionType()->isVarArg())
Chris Lattner4c6cb7a2004-01-22 15:30:58 +00001195 std::cerr << "Bad call to Function: " << F.getName() << "\n";
Chris Lattner076c1f92002-11-07 06:31:54 +00001196#endif
Chris Lattner4c6cb7a2004-01-22 15:30:58 +00001197 }
1198 if (AI == F.aend()) break;
1199
1200 // Add the link from the argument scalar to the provided value.
Chris Lattner0b144872004-01-27 22:03:40 +00001201 RC.merge(CS.getPtrArg(i), Graph.getNodeForValue(AI));
Chris Lattner076c1f92002-11-07 06:31:54 +00001202 }
1203
Chris Lattner0b144872004-01-27 22:03:40 +00001204 // Map the return node pointer over.
1205 if (CS.getRetVal().getNode())
1206 RC.merge(CS.getRetVal(), Graph.getReturnNodeFor(F));
1207
1208 // If requested, copy the calls or aux-calls lists.
1209 if (!(CloneFlags & DontCloneCallNodes)) {
1210 // Copy the function calls list...
1211 FunctionCalls.reserve(FunctionCalls.size()+Graph.FunctionCalls.size());
1212 for (unsigned i = 0, ei = Graph.FunctionCalls.size(); i != ei; ++i)
1213 FunctionCalls.push_back(DSCallSite(Graph.FunctionCalls[i], RC));
1214 }
1215
1216 if (!(CloneFlags & DontCloneAuxCallNodes)) {
1217 // Copy the auxiliary function calls list...
1218 AuxFunctionCalls.reserve(AuxFunctionCalls.size()+
1219 Graph.AuxFunctionCalls.size());
1220 for (unsigned i = 0, ei = Graph.AuxFunctionCalls.size(); i != ei; ++i)
1221 AuxFunctionCalls.push_back(DSCallSite(Graph.AuxFunctionCalls[i], RC));
1222 }
1223
1224 // If the user requested it, add the nodes that we need to clone to the
1225 // RootNodes set.
1226 if (!EnableDSNodeGlobalRootsHack)
1227 for (unsigned i = 0, e = Graph.Nodes.size(); i != e; ++i)
1228 if (!Graph.Nodes[i]->getGlobals().empty())
1229 RC.getClonedNH(Graph.Nodes[i]);
1230
Chris Lattner4c6cb7a2004-01-22 15:30:58 +00001231 } else {
1232 DSNodeHandle RetVal = getReturnNodeFor(F);
Chris Lattner4c6cb7a2004-01-22 15:30:58 +00001233
1234 // Merge the return value with the return value of the context...
1235 RetVal.mergeWith(CS.getRetVal());
1236
1237 // Resolve all of the function arguments...
1238 Function::aiterator AI = F.abegin();
1239
1240 for (unsigned i = 0, e = CS.getNumPtrArgs(); i != e; ++i, ++AI) {
1241 // Advance the argument iterator to the first pointer argument...
1242 while (AI != F.aend() && !isPointerType(AI->getType())) {
1243 ++AI;
Chris Lattner17a93e22004-01-29 03:32:15 +00001244#ifndef NDEBUG // FIXME: We should merge varargs arguments!!
1245 if (AI == F.aend() && !F.getFunctionType()->isVarArg())
Chris Lattner4c6cb7a2004-01-22 15:30:58 +00001246 std::cerr << "Bad call to Function: " << F.getName() << "\n";
1247#endif
1248 }
1249 if (AI == F.aend()) break;
1250
1251 // Add the link from the argument scalar to the provided value
Chris Lattner0b144872004-01-27 22:03:40 +00001252 DSNodeHandle &NH = getNodeForValue(AI);
Chris Lattner4c6cb7a2004-01-22 15:30:58 +00001253 assert(NH.getNode() && "Pointer argument without scalarmap entry?");
1254 NH.mergeWith(CS.getPtrArg(i));
1255 }
Chris Lattner076c1f92002-11-07 06:31:54 +00001256 }
1257}
1258
Chris Lattner58f98d02003-07-02 04:38:49 +00001259/// getCallSiteForArguments - Get the arguments and return value bindings for
1260/// the specified function in the current graph.
1261///
1262DSCallSite DSGraph::getCallSiteForArguments(Function &F) const {
1263 std::vector<DSNodeHandle> Args;
1264
1265 for (Function::aiterator I = F.abegin(), E = F.aend(); I != E; ++I)
1266 if (isPointerType(I->getType()))
Chris Lattner0b144872004-01-27 22:03:40 +00001267 Args.push_back(getNodeForValue(I));
Chris Lattner58f98d02003-07-02 04:38:49 +00001268
Chris Lattner808a7ae2003-09-20 16:34:13 +00001269 return DSCallSite(CallSite(), getReturnNodeFor(F), &F, Args);
Chris Lattner58f98d02003-07-02 04:38:49 +00001270}
1271
1272
Vikram S. Adve355e2ca2002-07-30 22:05:22 +00001273
Chris Lattner0d9bab82002-07-18 00:12:30 +00001274// markIncompleteNodes - Mark the specified node as having contents that are not
1275// known with the current analysis we have performed. Because a node makes all
Chris Lattnerbd92b732003-06-19 21:15:11 +00001276// of the nodes it can reach incomplete if the node itself is incomplete, we
Chris Lattner0d9bab82002-07-18 00:12:30 +00001277// must recursively traverse the data structure graph, marking all reachable
1278// nodes as incomplete.
1279//
1280static void markIncompleteNode(DSNode *N) {
1281 // Stop recursion if no node, or if node already marked...
Chris Lattner72d50a02003-06-28 21:58:28 +00001282 if (N == 0 || N->isIncomplete()) return;
Chris Lattner0d9bab82002-07-18 00:12:30 +00001283
1284 // Actually mark the node
Chris Lattnerbd92b732003-06-19 21:15:11 +00001285 N->setIncompleteMarker();
Chris Lattner0d9bab82002-07-18 00:12:30 +00001286
Misha Brukman2f2d0652003-09-11 18:14:24 +00001287 // Recursively process children...
Chris Lattner08db7192002-11-06 06:20:27 +00001288 for (unsigned i = 0, e = N->getSize(); i < e; i += DS::PointerSize)
1289 if (DSNode *DSN = N->getLink(i).getNode())
1290 markIncompleteNode(DSN);
Chris Lattner0d9bab82002-07-18 00:12:30 +00001291}
1292
Chris Lattnere71ffc22002-11-11 03:36:55 +00001293static void markIncomplete(DSCallSite &Call) {
1294 // Then the return value is certainly incomplete!
1295 markIncompleteNode(Call.getRetVal().getNode());
1296
1297 // All objects pointed to by function arguments are incomplete!
1298 for (unsigned i = 0, e = Call.getNumPtrArgs(); i != e; ++i)
1299 markIncompleteNode(Call.getPtrArg(i).getNode());
1300}
Chris Lattner0d9bab82002-07-18 00:12:30 +00001301
1302// markIncompleteNodes - Traverse the graph, identifying nodes that may be
1303// modified by other functions that have not been resolved yet. This marks
1304// nodes that are reachable through three sources of "unknownness":
1305//
1306// Global Variables, Function Calls, and Incoming Arguments
1307//
1308// For any node that may have unknown components (because something outside the
1309// scope of current analysis may have modified it), the 'Incomplete' flag is
1310// added to the NodeType.
1311//
Chris Lattner394471f2003-01-23 22:05:33 +00001312void DSGraph::markIncompleteNodes(unsigned Flags) {
Chris Lattner0d9bab82002-07-18 00:12:30 +00001313 // Mark any incoming arguments as incomplete...
Chris Lattner5a540632003-06-30 03:15:25 +00001314 if (Flags & DSGraph::MarkFormalArgs)
1315 for (ReturnNodesTy::iterator FI = ReturnNodes.begin(), E =ReturnNodes.end();
1316 FI != E; ++FI) {
1317 Function &F = *FI->first;
1318 if (F.getName() != "main")
1319 for (Function::aiterator I = F.abegin(), E = F.aend(); I != E; ++I)
Chris Lattner0b144872004-01-27 22:03:40 +00001320 if (isPointerType(I->getType()))
1321 markIncompleteNode(getNodeForValue(I).getNode());
Chris Lattner5a540632003-06-30 03:15:25 +00001322 }
Chris Lattner0d9bab82002-07-18 00:12:30 +00001323
1324 // Mark stuff passed into functions calls as being incomplete...
Chris Lattnere71ffc22002-11-11 03:36:55 +00001325 if (!shouldPrintAuxCalls())
1326 for (unsigned i = 0, e = FunctionCalls.size(); i != e; ++i)
1327 markIncomplete(FunctionCalls[i]);
1328 else
1329 for (unsigned i = 0, e = AuxFunctionCalls.size(); i != e; ++i)
1330 markIncomplete(AuxFunctionCalls[i]);
1331
Chris Lattner0d9bab82002-07-18 00:12:30 +00001332
Chris Lattner93d7a212003-02-09 18:41:49 +00001333 // Mark all global nodes as incomplete...
1334 if ((Flags & DSGraph::IgnoreGlobals) == 0)
1335 for (unsigned i = 0, e = Nodes.size(); i != e; ++i)
Chris Lattnerbd92b732003-06-19 21:15:11 +00001336 if (Nodes[i]->isGlobalNode() && Nodes[i]->getNumLinks())
Chris Lattner93d7a212003-02-09 18:41:49 +00001337 markIncompleteNode(Nodes[i]);
Chris Lattner0d9bab82002-07-18 00:12:30 +00001338}
1339
Chris Lattneraa8146f2002-11-10 06:59:55 +00001340static inline void killIfUselessEdge(DSNodeHandle &Edge) {
1341 if (DSNode *N = Edge.getNode()) // Is there an edge?
Chris Lattner72d29a42003-02-11 23:11:51 +00001342 if (N->getNumReferrers() == 1) // Does it point to a lonely node?
Chris Lattnerbd92b732003-06-19 21:15:11 +00001343 // No interesting info?
1344 if ((N->getNodeFlags() & ~DSNode::Incomplete) == 0 &&
Chris Lattner18552922002-11-18 21:44:46 +00001345 N->getType() == Type::VoidTy && !N->isNodeCompletelyFolded())
Chris Lattneraa8146f2002-11-10 06:59:55 +00001346 Edge.setNode(0); // Kill the edge!
1347}
Chris Lattner0d9bab82002-07-18 00:12:30 +00001348
Chris Lattneraa8146f2002-11-10 06:59:55 +00001349static inline bool nodeContainsExternalFunction(const DSNode *N) {
1350 const std::vector<GlobalValue*> &Globals = N->getGlobals();
1351 for (unsigned i = 0, e = Globals.size(); i != e; ++i)
1352 if (Globals[i]->isExternal())
1353 return true;
Chris Lattner0d9bab82002-07-18 00:12:30 +00001354 return false;
1355}
1356
Chris Lattner5a540632003-06-30 03:15:25 +00001357static void removeIdenticalCalls(std::vector<DSCallSite> &Calls) {
Vikram S. Adve355e2ca2002-07-30 22:05:22 +00001358 // Remove trivially identical function calls
1359 unsigned NumFns = Calls.size();
Chris Lattneraa8146f2002-11-10 06:59:55 +00001360 std::sort(Calls.begin(), Calls.end()); // Sort by callee as primary key!
1361
Chris Lattner0b144872004-01-27 22:03:40 +00001362#if 1
Chris Lattneraa8146f2002-11-10 06:59:55 +00001363 // Scan the call list cleaning it up as necessary...
Chris Lattner923fc052003-02-05 21:59:58 +00001364 DSNode *LastCalleeNode = 0;
1365 Function *LastCalleeFunc = 0;
Chris Lattneraa8146f2002-11-10 06:59:55 +00001366 unsigned NumDuplicateCalls = 0;
1367 bool LastCalleeContainsExternalFunction = false;
Chris Lattnere4258442002-11-11 21:35:38 +00001368 for (unsigned i = 0; i != Calls.size(); ++i) {
Chris Lattneraa8146f2002-11-10 06:59:55 +00001369 DSCallSite &CS = Calls[i];
1370
Chris Lattnere4258442002-11-11 21:35:38 +00001371 // If the Callee is a useless edge, this must be an unreachable call site,
1372 // eliminate it.
Chris Lattner72d29a42003-02-11 23:11:51 +00001373 if (CS.isIndirectCall() && CS.getCalleeNode()->getNumReferrers() == 1 &&
Chris Lattnerbd92b732003-06-19 21:15:11 +00001374 CS.getCalleeNode()->getNodeFlags() == 0) { // No useful info?
Chris Lattner64507e32004-01-28 01:19:52 +00001375#ifndef NDEBUG
Chris Lattner923fc052003-02-05 21:59:58 +00001376 std::cerr << "WARNING: Useless call site found??\n";
Chris Lattner64507e32004-01-28 01:19:52 +00001377#endif
Chris Lattnere4258442002-11-11 21:35:38 +00001378 CS.swap(Calls.back());
1379 Calls.pop_back();
1380 --i;
Chris Lattneraa8146f2002-11-10 06:59:55 +00001381 } else {
Chris Lattnere4258442002-11-11 21:35:38 +00001382 // If the return value or any arguments point to a void node with no
1383 // information at all in it, and the call node is the only node to point
1384 // to it, remove the edge to the node (killing the node).
1385 //
1386 killIfUselessEdge(CS.getRetVal());
1387 for (unsigned a = 0, e = CS.getNumPtrArgs(); a != e; ++a)
1388 killIfUselessEdge(CS.getPtrArg(a));
1389
1390 // If this call site calls the same function as the last call site, and if
1391 // the function pointer contains an external function, this node will
1392 // never be resolved. Merge the arguments of the call node because no
1393 // information will be lost.
1394 //
Chris Lattner923fc052003-02-05 21:59:58 +00001395 if ((CS.isDirectCall() && CS.getCalleeFunc() == LastCalleeFunc) ||
1396 (CS.isIndirectCall() && CS.getCalleeNode() == LastCalleeNode)) {
Chris Lattnere4258442002-11-11 21:35:38 +00001397 ++NumDuplicateCalls;
1398 if (NumDuplicateCalls == 1) {
Chris Lattner923fc052003-02-05 21:59:58 +00001399 if (LastCalleeNode)
1400 LastCalleeContainsExternalFunction =
1401 nodeContainsExternalFunction(LastCalleeNode);
1402 else
1403 LastCalleeContainsExternalFunction = LastCalleeFunc->isExternal();
Chris Lattnere4258442002-11-11 21:35:38 +00001404 }
Chris Lattner0b144872004-01-27 22:03:40 +00001405
1406 // It is not clear why, but enabling this code makes DSA really
1407 // sensitive to node forwarding. Basically, with this enabled, DSA
1408 // performs different number of inlinings based on which nodes are
1409 // forwarding or not. This is clearly a problem, so this code is
1410 // disabled until this can be resolved.
Chris Lattner58f98d02003-07-02 04:38:49 +00001411#if 1
Chris Lattner0b144872004-01-27 22:03:40 +00001412 if (LastCalleeContainsExternalFunction
1413#if 0
1414 ||
Chris Lattnere4258442002-11-11 21:35:38 +00001415 // This should be more than enough context sensitivity!
1416 // FIXME: Evaluate how many times this is tripped!
Chris Lattner0b144872004-01-27 22:03:40 +00001417 NumDuplicateCalls > 20
1418#endif
1419 ) {
Chris Lattnere4258442002-11-11 21:35:38 +00001420 DSCallSite &OCS = Calls[i-1];
1421 OCS.mergeWith(CS);
1422
1423 // The node will now be eliminated as a duplicate!
1424 if (CS.getNumPtrArgs() < OCS.getNumPtrArgs())
1425 CS = OCS;
1426 else if (CS.getNumPtrArgs() > OCS.getNumPtrArgs())
1427 OCS = CS;
1428 }
Chris Lattner18f07a12003-07-01 16:28:11 +00001429#endif
Chris Lattnere4258442002-11-11 21:35:38 +00001430 } else {
Chris Lattner923fc052003-02-05 21:59:58 +00001431 if (CS.isDirectCall()) {
1432 LastCalleeFunc = CS.getCalleeFunc();
1433 LastCalleeNode = 0;
1434 } else {
1435 LastCalleeNode = CS.getCalleeNode();
1436 LastCalleeFunc = 0;
1437 }
Chris Lattnere4258442002-11-11 21:35:38 +00001438 NumDuplicateCalls = 0;
1439 }
Chris Lattneraa8146f2002-11-10 06:59:55 +00001440 }
1441 }
Chris Lattner0b144872004-01-27 22:03:40 +00001442#endif
Chris Lattner4c6cb7a2004-01-22 15:30:58 +00001443 Calls.erase(std::unique(Calls.begin(), Calls.end()), Calls.end());
Vikram S. Adve355e2ca2002-07-30 22:05:22 +00001444
Chris Lattner33312f72002-11-08 01:21:07 +00001445 // Track the number of call nodes merged away...
1446 NumCallNodesMerged += NumFns-Calls.size();
1447
Vikram S. Adve355e2ca2002-07-30 22:05:22 +00001448 DEBUG(if (NumFns != Calls.size())
Chris Lattner5a540632003-06-30 03:15:25 +00001449 std::cerr << "Merged " << (NumFns-Calls.size()) << " call nodes.\n";);
Vikram S. Adve355e2ca2002-07-30 22:05:22 +00001450}
Chris Lattner0d9bab82002-07-18 00:12:30 +00001451
Chris Lattneraa8146f2002-11-10 06:59:55 +00001452
Chris Lattnere2219762002-07-18 18:22:40 +00001453// removeTriviallyDeadNodes - After the graph has been constructed, this method
1454// removes all unreachable nodes that are created because they got merged with
1455// other nodes in the graph. These nodes will all be trivially unreachable, so
1456// we don't have to perform any non-trivial analysis here.
Chris Lattner0d9bab82002-07-18 00:12:30 +00001457//
Chris Lattnerf40f0a32002-11-09 22:07:02 +00001458void DSGraph::removeTriviallyDeadNodes() {
Chris Lattner93ddd7e2004-01-22 16:36:28 +00001459 TIME_REGION(X, "removeTriviallyDeadNodes");
Chris Lattner5a540632003-06-30 03:15:25 +00001460 removeIdenticalCalls(FunctionCalls);
1461 removeIdenticalCalls(AuxFunctionCalls);
Chris Lattneraa8146f2002-11-10 06:59:55 +00001462
Chris Lattnerbab8c282003-09-20 21:34:07 +00001463 // Loop over all of the nodes in the graph, calling getNode on each field.
1464 // This will cause all nodes to update their forwarding edges, causing
1465 // forwarded nodes to be delete-able.
1466 for (unsigned i = 0, e = Nodes.size(); i != e; ++i) {
1467 DSNode *N = Nodes[i];
1468 for (unsigned l = 0, e = N->getNumLinks(); l != e; ++l)
1469 N->getLink(l*N->getPointerSize()).getNode();
1470 }
1471
Chris Lattner0b144872004-01-27 22:03:40 +00001472 // NOTE: This code is disabled. Though it should, in theory, allow us to
1473 // remove more nodes down below, the scan of the scalar map is incredibly
1474 // expensive for certain programs (with large SCCs). In the future, if we can
1475 // make the scalar map scan more efficient, then we can reenable this.
1476#if 0
1477 { TIME_REGION(X, "removeTriviallyDeadNodes:scalarmap");
1478
Chris Lattner4c6cb7a2004-01-22 15:30:58 +00001479 // Likewise, forward any edges from the scalar nodes. While we are at it,
1480 // clean house a bit.
Chris Lattner62482e52004-01-28 09:15:42 +00001481 for (DSScalarMap::iterator I = ScalarMap.begin(),E = ScalarMap.end();I != E;){
Chris Lattner0b144872004-01-27 22:03:40 +00001482 I->second.getNode();
1483 ++I;
Chris Lattner4c6cb7a2004-01-22 15:30:58 +00001484 }
Chris Lattner0b144872004-01-27 22:03:40 +00001485 }
1486#endif
Vikram S. Adve78bbec72003-07-16 21:36:31 +00001487 bool isGlobalsGraph = !GlobalsGraph;
1488
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001489 for (unsigned i = 0; i != Nodes.size(); ++i) {
1490 DSNode *Node = Nodes[i];
Vikram S. Adve78bbec72003-07-16 21:36:31 +00001491
1492 // Do not remove *any* global nodes in the globals graph.
1493 // This is a special case because such nodes may not have I, M, R flags set.
1494 if (Node->isGlobalNode() && isGlobalsGraph)
1495 continue;
1496
Chris Lattner72d50a02003-06-28 21:58:28 +00001497 if (Node->isComplete() && !Node->isModified() && !Node->isRead()) {
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001498 // This is a useless node if it has no mod/ref info (checked above),
1499 // outgoing edges (which it cannot, as it is not modified in this
1500 // context), and it has no incoming edges. If it is a global node it may
1501 // have all of these properties and still have incoming edges, due to the
1502 // scalar map, so we check those now.
1503 //
Chris Lattner72d29a42003-02-11 23:11:51 +00001504 if (Node->getNumReferrers() == Node->getGlobals().size()) {
Chris Lattnerbd92b732003-06-19 21:15:11 +00001505 const std::vector<GlobalValue*> &Globals = Node->getGlobals();
Chris Lattner72d29a42003-02-11 23:11:51 +00001506
Chris Lattner17a93e22004-01-29 03:32:15 +00001507 // Loop through and make sure all of the globals are referring directly
1508 // to the node...
1509 for (unsigned j = 0, e = Globals.size(); j != e; ++j) {
1510 DSNode *N = getNodeForValue(Globals[j]).getNode();
1511 assert(N == Node && "ScalarMap doesn't match globals list!");
1512 }
1513
Chris Lattnerbd92b732003-06-19 21:15:11 +00001514 // Make sure NumReferrers still agrees, if so, the node is truly dead.
Chris Lattner72d29a42003-02-11 23:11:51 +00001515 if (Node->getNumReferrers() == Globals.size()) {
1516 for (unsigned j = 0, e = Globals.size(); j != e; ++j)
1517 ScalarMap.erase(Globals[j]);
Chris Lattner17a93e22004-01-29 03:32:15 +00001518 Node->makeNodeDead();
Chris Lattner72d29a42003-02-11 23:11:51 +00001519 }
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001520 }
1521 }
1522
Chris Lattnerbd92b732003-06-19 21:15:11 +00001523 if (Node->getNodeFlags() == 0 && Node->hasNoReferrers()) {
Chris Lattner2609c072003-02-10 18:18:18 +00001524 // This node is dead!
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001525 delete Node; // Free memory...
Chris Lattnera954b5e2003-02-10 18:47:23 +00001526 Nodes[i--] = Nodes.back();
1527 Nodes.pop_back(); // Remove from node list...
Chris Lattneraa8146f2002-11-10 06:59:55 +00001528 }
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001529 }
Chris Lattner0d9bab82002-07-18 00:12:30 +00001530}
1531
1532
Chris Lattner5c7380e2003-01-29 21:10:20 +00001533/// markReachableNodes - This method recursively traverses the specified
1534/// DSNodes, marking any nodes which are reachable. All reachable nodes it adds
1535/// to the set, which allows it to only traverse visited nodes once.
1536///
Chris Lattner41c04f72003-02-01 04:52:08 +00001537void DSNode::markReachableNodes(hash_set<DSNode*> &ReachableNodes) {
Chris Lattner5c7380e2003-01-29 21:10:20 +00001538 if (this == 0) return;
Chris Lattner72d29a42003-02-11 23:11:51 +00001539 assert(getForwardNode() == 0 && "Cannot mark a forwarded node!");
Chris Lattner4c6cb7a2004-01-22 15:30:58 +00001540 if (ReachableNodes.insert(this).second) // Is newly reachable?
1541 for (unsigned i = 0, e = getSize(); i < e; i += DS::PointerSize)
1542 getLink(i).getNode()->markReachableNodes(ReachableNodes);
Chris Lattner5c7380e2003-01-29 21:10:20 +00001543}
1544
Chris Lattner41c04f72003-02-01 04:52:08 +00001545void DSCallSite::markReachableNodes(hash_set<DSNode*> &Nodes) {
Chris Lattner5c7380e2003-01-29 21:10:20 +00001546 getRetVal().getNode()->markReachableNodes(Nodes);
Chris Lattner923fc052003-02-05 21:59:58 +00001547 if (isIndirectCall()) getCalleeNode()->markReachableNodes(Nodes);
Chris Lattner5c7380e2003-01-29 21:10:20 +00001548
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001549 for (unsigned i = 0, e = getNumPtrArgs(); i != e; ++i)
1550 getPtrArg(i).getNode()->markReachableNodes(Nodes);
Chris Lattnere2219762002-07-18 18:22:40 +00001551}
1552
Chris Lattnera1220af2003-02-01 06:17:02 +00001553// CanReachAliveNodes - Simple graph walker that recursively traverses the graph
1554// looking for a node that is marked alive. If an alive node is found, return
1555// true, otherwise return false. If an alive node is reachable, this node is
1556// marked as alive...
Chris Lattneraa8146f2002-11-10 06:59:55 +00001557//
Chris Lattnera1220af2003-02-01 06:17:02 +00001558static bool CanReachAliveNodes(DSNode *N, hash_set<DSNode*> &Alive,
Chris Lattner85cfe012003-07-03 02:03:53 +00001559 hash_set<DSNode*> &Visited,
1560 bool IgnoreGlobals) {
Vikram S. Adve355e2ca2002-07-30 22:05:22 +00001561 if (N == 0) return false;
Chris Lattner72d29a42003-02-11 23:11:51 +00001562 assert(N->getForwardNode() == 0 && "Cannot mark a forwarded node!");
Vikram S. Adve355e2ca2002-07-30 22:05:22 +00001563
Chris Lattner85cfe012003-07-03 02:03:53 +00001564 // If this is a global node, it will end up in the globals graph anyway, so we
1565 // don't need to worry about it.
1566 if (IgnoreGlobals && N->isGlobalNode()) return false;
1567
Chris Lattneraa8146f2002-11-10 06:59:55 +00001568 // If we know that this node is alive, return so!
1569 if (Alive.count(N)) return true;
Vikram S. Adve355e2ca2002-07-30 22:05:22 +00001570
Chris Lattneraa8146f2002-11-10 06:59:55 +00001571 // Otherwise, we don't think the node is alive yet, check for infinite
1572 // recursion.
Chris Lattner41c04f72003-02-01 04:52:08 +00001573 if (Visited.count(N)) return false; // Found a cycle
Chris Lattnera1220af2003-02-01 06:17:02 +00001574 Visited.insert(N); // No recursion, insert into Visited...
Chris Lattneraa8146f2002-11-10 06:59:55 +00001575
Chris Lattner08db7192002-11-06 06:20:27 +00001576 for (unsigned i = 0, e = N->getSize(); i < e; i += DS::PointerSize)
Chris Lattner85cfe012003-07-03 02:03:53 +00001577 if (CanReachAliveNodes(N->getLink(i).getNode(), Alive, Visited,
1578 IgnoreGlobals)) {
Chris Lattnera1220af2003-02-01 06:17:02 +00001579 N->markReachableNodes(Alive);
1580 return true;
1581 }
1582 return false;
Chris Lattneraa8146f2002-11-10 06:59:55 +00001583}
Vikram S. Adve355e2ca2002-07-30 22:05:22 +00001584
Chris Lattnera1220af2003-02-01 06:17:02 +00001585// CallSiteUsesAliveArgs - Return true if the specified call site can reach any
1586// alive nodes.
1587//
Chris Lattner41c04f72003-02-01 04:52:08 +00001588static bool CallSiteUsesAliveArgs(DSCallSite &CS, hash_set<DSNode*> &Alive,
Chris Lattner85cfe012003-07-03 02:03:53 +00001589 hash_set<DSNode*> &Visited,
1590 bool IgnoreGlobals) {
1591 if (CanReachAliveNodes(CS.getRetVal().getNode(), Alive, Visited,
1592 IgnoreGlobals))
Chris Lattner923fc052003-02-05 21:59:58 +00001593 return true;
1594 if (CS.isIndirectCall() &&
Chris Lattner85cfe012003-07-03 02:03:53 +00001595 CanReachAliveNodes(CS.getCalleeNode(), Alive, Visited, IgnoreGlobals))
Chris Lattneraa8146f2002-11-10 06:59:55 +00001596 return true;
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001597 for (unsigned i = 0, e = CS.getNumPtrArgs(); i != e; ++i)
Chris Lattner85cfe012003-07-03 02:03:53 +00001598 if (CanReachAliveNodes(CS.getPtrArg(i).getNode(), Alive, Visited,
1599 IgnoreGlobals))
Chris Lattneraa8146f2002-11-10 06:59:55 +00001600 return true;
Vikram S. Adve355e2ca2002-07-30 22:05:22 +00001601 return false;
1602}
1603
Chris Lattnere2219762002-07-18 18:22:40 +00001604// removeDeadNodes - Use a more powerful reachability analysis to eliminate
1605// subgraphs that are unreachable. This often occurs because the data
1606// structure doesn't "escape" into it's caller, and thus should be eliminated
1607// from the caller's graph entirely. This is only appropriate to use when
1608// inlining graphs.
1609//
Chris Lattner394471f2003-01-23 22:05:33 +00001610void DSGraph::removeDeadNodes(unsigned Flags) {
Chris Lattner9dc41852003-11-12 04:57:58 +00001611 DEBUG(AssertGraphOK(); if (GlobalsGraph) GlobalsGraph->AssertGraphOK());
Chris Lattner85cfe012003-07-03 02:03:53 +00001612
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001613 // Reduce the amount of work we have to do... remove dummy nodes left over by
1614 // merging...
Chris Lattnera3fd88d2004-01-28 03:24:41 +00001615 removeTriviallyDeadNodes();
Vikram S. Adve355e2ca2002-07-30 22:05:22 +00001616
Chris Lattner93ddd7e2004-01-22 16:36:28 +00001617 TIME_REGION(X, "removeDeadNodes");
1618
Misha Brukman2f2d0652003-09-11 18:14:24 +00001619 // FIXME: Merge non-trivially identical call nodes...
Chris Lattnere2219762002-07-18 18:22:40 +00001620
1621 // Alive - a set that holds all nodes found to be reachable/alive.
Chris Lattner41c04f72003-02-01 04:52:08 +00001622 hash_set<DSNode*> Alive;
Chris Lattneraa8146f2002-11-10 06:59:55 +00001623 std::vector<std::pair<Value*, DSNode*> > GlobalNodes;
Chris Lattnere2219762002-07-18 18:22:40 +00001624
Chris Lattner0b144872004-01-27 22:03:40 +00001625 // Copy and merge all information about globals to the GlobalsGraph if this is
1626 // not a final pass (where unreachable globals are removed).
1627 //
1628 // Strip all alloca bits since the current function is only for the BU pass.
1629 // Strip all incomplete bits since they are short-lived properties and they
1630 // will be correctly computed when rematerializing nodes into the functions.
1631 //
1632 ReachabilityCloner GGCloner(*GlobalsGraph, *this, DSGraph::StripAllocaBit |
1633 DSGraph::StripIncompleteBit);
1634
Chris Lattneraa8146f2002-11-10 06:59:55 +00001635 // Mark all nodes reachable by (non-global) scalar nodes as alive...
Chris Lattner00948c02004-01-28 02:05:05 +00001636 { TIME_REGION(Y, "removeDeadNodes:scalarscan");
Chris Lattner62482e52004-01-28 09:15:42 +00001637 for (DSScalarMap::iterator I = ScalarMap.begin(), E = ScalarMap.end(); I !=E;)
Chris Lattner5f07a8b2003-02-14 06:28:00 +00001638 if (isa<GlobalValue>(I->first)) { // Keep track of global nodes
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001639 assert(I->second.getNode() && "Null global node?");
Vikram S. Adve78bbec72003-07-16 21:36:31 +00001640 assert(I->second.getNode()->isGlobalNode() && "Should be a global node!");
Chris Lattner5f07a8b2003-02-14 06:28:00 +00001641 GlobalNodes.push_back(std::make_pair(I->first, I->second.getNode()));
Chris Lattner0b144872004-01-27 22:03:40 +00001642
1643 // Make sure that all globals are cloned over as roots.
Chris Lattner00948c02004-01-28 02:05:05 +00001644 if (!(Flags & DSGraph::RemoveUnreachableGlobals)) {
1645 DSGraph::ScalarMapTy::iterator SMI =
1646 GlobalsGraph->getScalarMap().find(I->first);
1647 if (SMI != GlobalsGraph->getScalarMap().end())
1648 GGCloner.merge(SMI->second, I->second);
1649 else
1650 GGCloner.getClonedNH(I->second);
1651 }
Chris Lattner0b144872004-01-27 22:03:40 +00001652 ++I;
Chris Lattner5f07a8b2003-02-14 06:28:00 +00001653 } else {
Chris Lattnera88a55c2004-01-28 02:41:32 +00001654 DSNode *N = I->second.getNode();
1655#if 0
Chris Lattner0b144872004-01-27 22:03:40 +00001656 // Check to see if this is a worthless node generated for non-pointer
1657 // values, such as integers. Consider an addition of long types: A+B.
1658 // Assuming we can track all uses of the value in this context, and it is
1659 // NOT used as a pointer, we can delete the node. We will be able to
1660 // detect this situation if the node pointed to ONLY has Unknown bit set
1661 // in the node. In this case, the node is not incomplete, does not point
1662 // to any other nodes (no mod/ref bits set), and is therefore
1663 // uninteresting for data structure analysis. If we run across one of
1664 // these, prune the scalar pointing to it.
1665 //
Chris Lattner0b144872004-01-27 22:03:40 +00001666 if (N->getNodeFlags() == DSNode::UnknownNode && !isa<Argument>(I->first))
1667 ScalarMap.erase(I++);
1668 else {
Chris Lattnera88a55c2004-01-28 02:41:32 +00001669#endif
Chris Lattner0b144872004-01-27 22:03:40 +00001670 N->markReachableNodes(Alive);
1671 ++I;
Chris Lattnera88a55c2004-01-28 02:41:32 +00001672 //}
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001673 }
Chris Lattner00948c02004-01-28 02:05:05 +00001674 }
Chris Lattnere2219762002-07-18 18:22:40 +00001675
Chris Lattner0b144872004-01-27 22:03:40 +00001676 // The return values are alive as well.
Chris Lattner5a540632003-06-30 03:15:25 +00001677 for (ReturnNodesTy::iterator I = ReturnNodes.begin(), E = ReturnNodes.end();
1678 I != E; ++I)
1679 I->second.getNode()->markReachableNodes(Alive);
Vikram S. Adve355e2ca2002-07-30 22:05:22 +00001680
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001681 // Mark any nodes reachable by primary calls as alive...
1682 for (unsigned i = 0, e = FunctionCalls.size(); i != e; ++i)
1683 FunctionCalls[i].markReachableNodes(Alive);
1684
Vikram S. Adve78bbec72003-07-16 21:36:31 +00001685
1686 // Now find globals and aux call nodes that are already live or reach a live
1687 // value (which makes them live in turn), and continue till no more are found.
1688 //
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001689 bool Iterate;
Chris Lattner41c04f72003-02-01 04:52:08 +00001690 hash_set<DSNode*> Visited;
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001691 std::vector<unsigned char> AuxFCallsAlive(AuxFunctionCalls.size());
1692 do {
1693 Visited.clear();
Chris Lattner70793862003-07-02 23:57:05 +00001694 // If any global node points to a non-global that is "alive", the global is
Chris Lattner72d29a42003-02-11 23:11:51 +00001695 // "alive" as well... Remove it from the GlobalNodes list so we only have
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001696 // unreachable globals in the list.
1697 //
1698 Iterate = false;
Vikram S. Adve78bbec72003-07-16 21:36:31 +00001699 if (!(Flags & DSGraph::RemoveUnreachableGlobals))
Chris Lattner0b144872004-01-27 22:03:40 +00001700 for (unsigned i = 0; i != GlobalNodes.size(); ++i)
1701 if (CanReachAliveNodes(GlobalNodes[i].second, Alive, Visited,
1702 Flags & DSGraph::RemoveUnreachableGlobals)) {
1703 std::swap(GlobalNodes[i--], GlobalNodes.back()); // Move to end to...
1704 GlobalNodes.pop_back(); // erase efficiently
1705 Iterate = true;
1706 }
Chris Lattneraa8146f2002-11-10 06:59:55 +00001707
Vikram S. Adve78bbec72003-07-16 21:36:31 +00001708 // Mark only unresolvable call nodes for moving to the GlobalsGraph since
1709 // call nodes that get resolved will be difficult to remove from that graph.
1710 // The final unresolved call nodes must be handled specially at the end of
1711 // the BU pass (i.e., in main or other roots of the call graph).
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001712 for (unsigned i = 0, e = AuxFunctionCalls.size(); i != e; ++i)
1713 if (!AuxFCallsAlive[i] &&
Vikram S. Adve78bbec72003-07-16 21:36:31 +00001714 (AuxFunctionCalls[i].isIndirectCall()
1715 || CallSiteUsesAliveArgs(AuxFunctionCalls[i], Alive, Visited,
1716 Flags & DSGraph::RemoveUnreachableGlobals))) {
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001717 AuxFunctionCalls[i].markReachableNodes(Alive);
1718 AuxFCallsAlive[i] = true;
1719 Iterate = true;
1720 }
1721 } while (Iterate);
Chris Lattneraa8146f2002-11-10 06:59:55 +00001722
Vikram S. Adve78bbec72003-07-16 21:36:31 +00001723 // Move dead aux function calls to the end of the list
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001724 unsigned CurIdx = 0;
Chris Lattneraa8146f2002-11-10 06:59:55 +00001725 for (unsigned i = 0, e = AuxFunctionCalls.size(); i != e; ++i)
1726 if (AuxFCallsAlive[i])
1727 AuxFunctionCalls[CurIdx++].swap(AuxFunctionCalls[i]);
Vikram S. Adve78bbec72003-07-16 21:36:31 +00001728
1729 // Copy and merge all global nodes and dead aux call nodes into the
1730 // GlobalsGraph, and all nodes reachable from those nodes
1731 //
1732 if (!(Flags & DSGraph::RemoveUnreachableGlobals)) {
Chris Lattner0b144872004-01-27 22:03:40 +00001733 // Copy the unreachable call nodes to the globals graph, updating their
1734 // target pointers using the GGCloner
Vikram S. Adve78bbec72003-07-16 21:36:31 +00001735 for (unsigned i = CurIdx, e = AuxFunctionCalls.size(); i != e; ++i)
1736 GlobalsGraph->AuxFunctionCalls.push_back(DSCallSite(AuxFunctionCalls[i],
Chris Lattner0b144872004-01-27 22:03:40 +00001737 GGCloner));
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001738 }
1739 // Crop all the useless ones out...
Chris Lattneraa8146f2002-11-10 06:59:55 +00001740 AuxFunctionCalls.erase(AuxFunctionCalls.begin()+CurIdx,
1741 AuxFunctionCalls.end());
1742
Chris Lattner0b144872004-01-27 22:03:40 +00001743 // We are finally done with the GGCloner so we can clear it and then get rid
1744 // of unused nodes in the GlobalsGraph produced by merging.
1745 if (GGCloner.clonedNode()) {
1746 GGCloner.destroy();
1747 GlobalsGraph->removeTriviallyDeadNodes();
1748 }
Vikram S. Adve78bbec72003-07-16 21:36:31 +00001749
Vikram S. Adve40c600e2003-07-22 12:08:58 +00001750 // At this point, any nodes which are visited, but not alive, are nodes
1751 // which can be removed. Loop over all nodes, eliminating completely
1752 // unreachable nodes.
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001753 //
Chris Lattner72d29a42003-02-11 23:11:51 +00001754 std::vector<DSNode*> DeadNodes;
1755 DeadNodes.reserve(Nodes.size());
Chris Lattnere2219762002-07-18 18:22:40 +00001756 for (unsigned i = 0; i != Nodes.size(); ++i)
1757 if (!Alive.count(Nodes[i])) {
1758 DSNode *N = Nodes[i];
Chris Lattner72d29a42003-02-11 23:11:51 +00001759 Nodes[i--] = Nodes.back(); // move node to end of vector
1760 Nodes.pop_back(); // Erase node from alive list.
Vikram S. Adve78bbec72003-07-16 21:36:31 +00001761 DeadNodes.push_back(N);
1762 N->dropAllReferences();
Chris Lattner72d29a42003-02-11 23:11:51 +00001763 } else {
1764 assert(Nodes[i]->getForwardNode() == 0 && "Alive forwarded node?");
Chris Lattnere2219762002-07-18 18:22:40 +00001765 }
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001766
Vikram S. Adve78bbec72003-07-16 21:36:31 +00001767 // Remove all unreachable globals from the ScalarMap.
1768 // If flag RemoveUnreachableGlobals is set, GlobalNodes has only dead nodes.
1769 // In either case, the dead nodes will not be in the set Alive.
Chris Lattner0b144872004-01-27 22:03:40 +00001770 for (unsigned i = 0, e = GlobalNodes.size(); i != e; ++i)
Vikram S. Adve78bbec72003-07-16 21:36:31 +00001771 if (!Alive.count(GlobalNodes[i].second))
1772 ScalarMap.erase(GlobalNodes[i].first);
Chris Lattner0b144872004-01-27 22:03:40 +00001773 else
1774 assert((Flags & DSGraph::RemoveUnreachableGlobals) && "non-dead global");
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001775
Vikram S. Adve78bbec72003-07-16 21:36:31 +00001776 // Delete all dead nodes now since their referrer counts are zero.
Chris Lattner72d29a42003-02-11 23:11:51 +00001777 for (unsigned i = 0, e = DeadNodes.size(); i != e; ++i)
1778 delete DeadNodes[i];
1779
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001780 DEBUG(AssertGraphOK(); GlobalsGraph->AssertGraphOK());
Chris Lattnere2219762002-07-18 18:22:40 +00001781}
1782
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001783void DSGraph::AssertGraphOK() const {
Chris Lattner72d29a42003-02-11 23:11:51 +00001784 for (unsigned i = 0, e = Nodes.size(); i != e; ++i)
1785 Nodes[i]->assertOK();
Chris Lattner85cfe012003-07-03 02:03:53 +00001786
Chris Lattner8d327672003-06-30 03:36:09 +00001787 for (ScalarMapTy::const_iterator I = ScalarMap.begin(),
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001788 E = ScalarMap.end(); I != E; ++I) {
1789 assert(I->second.getNode() && "Null node in scalarmap!");
1790 AssertNodeInGraph(I->second.getNode());
1791 if (GlobalValue *GV = dyn_cast<GlobalValue>(I->first)) {
Chris Lattnerbd92b732003-06-19 21:15:11 +00001792 assert(I->second.getNode()->isGlobalNode() &&
Chris Lattner0ac7d5c2003-02-03 19:12:15 +00001793 "Global points to node, but node isn't global?");
1794 AssertNodeContainsGlobal(I->second.getNode(), GV);
1795 }
1796 }
1797 AssertCallNodesInGraph();
1798 AssertAuxCallNodesInGraph();
1799}
Vikram S. Adve78bbec72003-07-16 21:36:31 +00001800
Chris Lattner400433d2003-11-11 05:08:59 +00001801/// computeNodeMapping - Given roots in two different DSGraphs, traverse the
1802/// nodes reachable from the two graphs, computing the mapping of nodes from
1803/// the first to the second graph.
1804///
1805void DSGraph::computeNodeMapping(const DSNodeHandle &NH1,
Chris Lattnerafc1dba2003-11-12 17:58:22 +00001806 const DSNodeHandle &NH2, NodeMapTy &NodeMap,
1807 bool StrictChecking) {
Chris Lattner400433d2003-11-11 05:08:59 +00001808 DSNode *N1 = NH1.getNode(), *N2 = NH2.getNode();
1809 if (N1 == 0 || N2 == 0) return;
1810
1811 DSNodeHandle &Entry = NodeMap[N1];
1812 if (Entry.getNode()) {
1813 // Termination of recursion!
Chris Lattnerafc1dba2003-11-12 17:58:22 +00001814 assert(!StrictChecking ||
1815 (Entry.getNode() == N2 &&
1816 Entry.getOffset() == (NH2.getOffset()-NH1.getOffset())) &&
Chris Lattner400433d2003-11-11 05:08:59 +00001817 "Inconsistent mapping detected!");
1818 return;
1819 }
1820
1821 Entry.setNode(N2);
Chris Lattner413406c2003-11-11 20:12:32 +00001822 Entry.setOffset(NH2.getOffset()-NH1.getOffset());
Chris Lattner400433d2003-11-11 05:08:59 +00001823
1824 // Loop over all of the fields that N1 and N2 have in common, recursively
1825 // mapping the edges together now.
1826 int N2Idx = NH2.getOffset()-NH1.getOffset();
1827 unsigned N2Size = N2->getSize();
1828 for (unsigned i = 0, e = N1->getSize(); i < e; i += DS::PointerSize)
1829 if (unsigned(N2Idx)+i < N2Size)
1830 computeNodeMapping(N1->getLink(i), N2->getLink(N2Idx+i), NodeMap);
1831}