1579ba2acSDaniel Dunbar //===--- DAGDeltaAlgorithm.cpp - A DAG Minimization Algorithm --*- C++ -*--===//
2579ba2acSDaniel Dunbar //
3*2946cd70SChandler Carruth // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4*2946cd70SChandler Carruth // See https://llvm.org/LICENSE.txt for license information.
5*2946cd70SChandler Carruth // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6579ba2acSDaniel Dunbar //===----------------------------------------------------------------------===//
7579ba2acSDaniel Dunbar //
8579ba2acSDaniel Dunbar // The algorithm we use attempts to exploit the dependency information by
9579ba2acSDaniel Dunbar // minimizing top-down. We start by constructing an initial root set R, and
10579ba2acSDaniel Dunbar // then iteratively:
11579ba2acSDaniel Dunbar //
12579ba2acSDaniel Dunbar //   1. Minimize the set R using the test predicate:
13579ba2acSDaniel Dunbar //       P'(S) = P(S union pred*(S))
14579ba2acSDaniel Dunbar //
15579ba2acSDaniel Dunbar //   2. Extend R to R' = R union pred(R).
16579ba2acSDaniel Dunbar //
17579ba2acSDaniel Dunbar // until a fixed point is reached.
18579ba2acSDaniel Dunbar //
19579ba2acSDaniel Dunbar // The idea is that we want to quickly prune entire portions of the graph, so we
20579ba2acSDaniel Dunbar // try to find high-level nodes that can be eliminated with all of their
21579ba2acSDaniel Dunbar // dependents.
22579ba2acSDaniel Dunbar //
23579ba2acSDaniel Dunbar // FIXME: The current algorithm doesn't actually provide a strong guarantee
24579ba2acSDaniel Dunbar // about the minimality of the result. The problem is that after adding nodes to
25579ba2acSDaniel Dunbar // the required set, we no longer consider them for elimination. For strictly
26579ba2acSDaniel Dunbar // well formed predicates, this doesn't happen, but it commonly occurs in
27579ba2acSDaniel Dunbar // practice when there are unmodelled dependencies. I believe we can resolve
28579ba2acSDaniel Dunbar // this by allowing the required set to be minimized as well, but need more test
29579ba2acSDaniel Dunbar // cases first.
30579ba2acSDaniel Dunbar //
31579ba2acSDaniel Dunbar //===----------------------------------------------------------------------===//
32579ba2acSDaniel Dunbar 
33579ba2acSDaniel Dunbar #include "llvm/ADT/DAGDeltaAlgorithm.h"
34579ba2acSDaniel Dunbar #include "llvm/ADT/DeltaAlgorithm.h"
35579ba2acSDaniel Dunbar #include "llvm/Support/Debug.h"
36579ba2acSDaniel Dunbar #include "llvm/Support/Format.h"
37579ba2acSDaniel Dunbar #include "llvm/Support/raw_ostream.h"
38579ba2acSDaniel Dunbar #include <algorithm>
39579ba2acSDaniel Dunbar #include <cassert>
40579ba2acSDaniel Dunbar #include <iterator>
41579ba2acSDaniel Dunbar #include <map>
42579ba2acSDaniel Dunbar using namespace llvm;
43579ba2acSDaniel Dunbar 
44e96dd897SChandler Carruth #define DEBUG_TYPE "dag-delta"
45e96dd897SChandler Carruth 
46579ba2acSDaniel Dunbar namespace {
47579ba2acSDaniel Dunbar 
48579ba2acSDaniel Dunbar class DAGDeltaAlgorithmImpl {
49579ba2acSDaniel Dunbar   friend class DeltaActiveSetHelper;
50579ba2acSDaniel Dunbar 
51579ba2acSDaniel Dunbar public:
52579ba2acSDaniel Dunbar   typedef DAGDeltaAlgorithm::change_ty change_ty;
53579ba2acSDaniel Dunbar   typedef DAGDeltaAlgorithm::changeset_ty changeset_ty;
54579ba2acSDaniel Dunbar   typedef DAGDeltaAlgorithm::changesetlist_ty changesetlist_ty;
55579ba2acSDaniel Dunbar   typedef DAGDeltaAlgorithm::edge_ty edge_ty;
56579ba2acSDaniel Dunbar 
57579ba2acSDaniel Dunbar private:
58579ba2acSDaniel Dunbar   typedef std::vector<change_ty>::iterator pred_iterator_ty;
59579ba2acSDaniel Dunbar   typedef std::vector<change_ty>::iterator succ_iterator_ty;
60579ba2acSDaniel Dunbar   typedef std::set<change_ty>::iterator pred_closure_iterator_ty;
61579ba2acSDaniel Dunbar   typedef std::set<change_ty>::iterator succ_closure_iterator_ty;
62579ba2acSDaniel Dunbar 
63579ba2acSDaniel Dunbar   DAGDeltaAlgorithm &DDA;
64579ba2acSDaniel Dunbar 
65579ba2acSDaniel Dunbar   std::vector<change_ty> Roots;
66579ba2acSDaniel Dunbar 
67579ba2acSDaniel Dunbar   /// Cache of failed test results. Successful test results are never cached
68579ba2acSDaniel Dunbar   /// since we always reduce following a success. We maintain an independent
69579ba2acSDaniel Dunbar   /// cache from that used by the individual delta passes because we may get
70579ba2acSDaniel Dunbar   /// hits across multiple individual delta invocations.
71579ba2acSDaniel Dunbar   mutable std::set<changeset_ty> FailedTestsCache;
72579ba2acSDaniel Dunbar 
73579ba2acSDaniel Dunbar   // FIXME: Gross.
74579ba2acSDaniel Dunbar   std::map<change_ty, std::vector<change_ty> > Predecessors;
75579ba2acSDaniel Dunbar   std::map<change_ty, std::vector<change_ty> > Successors;
76579ba2acSDaniel Dunbar 
77579ba2acSDaniel Dunbar   std::map<change_ty, std::set<change_ty> > PredClosure;
78579ba2acSDaniel Dunbar   std::map<change_ty, std::set<change_ty> > SuccClosure;
79579ba2acSDaniel Dunbar 
80579ba2acSDaniel Dunbar private:
81579ba2acSDaniel Dunbar   pred_iterator_ty pred_begin(change_ty Node) {
82579ba2acSDaniel Dunbar     assert(Predecessors.count(Node) && "Invalid node!");
83579ba2acSDaniel Dunbar     return Predecessors[Node].begin();
84579ba2acSDaniel Dunbar   }
85579ba2acSDaniel Dunbar   pred_iterator_ty pred_end(change_ty Node) {
86579ba2acSDaniel Dunbar     assert(Predecessors.count(Node) && "Invalid node!");
87579ba2acSDaniel Dunbar     return Predecessors[Node].end();
88579ba2acSDaniel Dunbar   }
89579ba2acSDaniel Dunbar 
90579ba2acSDaniel Dunbar   pred_closure_iterator_ty pred_closure_begin(change_ty Node) {
91579ba2acSDaniel Dunbar     assert(PredClosure.count(Node) && "Invalid node!");
92579ba2acSDaniel Dunbar     return PredClosure[Node].begin();
93579ba2acSDaniel Dunbar   }
94579ba2acSDaniel Dunbar   pred_closure_iterator_ty pred_closure_end(change_ty Node) {
95579ba2acSDaniel Dunbar     assert(PredClosure.count(Node) && "Invalid node!");
96579ba2acSDaniel Dunbar     return PredClosure[Node].end();
97579ba2acSDaniel Dunbar   }
98579ba2acSDaniel Dunbar 
99579ba2acSDaniel Dunbar   succ_iterator_ty succ_begin(change_ty Node) {
100579ba2acSDaniel Dunbar     assert(Successors.count(Node) && "Invalid node!");
101579ba2acSDaniel Dunbar     return Successors[Node].begin();
102579ba2acSDaniel Dunbar   }
103579ba2acSDaniel Dunbar   succ_iterator_ty succ_end(change_ty Node) {
104579ba2acSDaniel Dunbar     assert(Successors.count(Node) && "Invalid node!");
105579ba2acSDaniel Dunbar     return Successors[Node].end();
106579ba2acSDaniel Dunbar   }
107579ba2acSDaniel Dunbar 
108579ba2acSDaniel Dunbar   succ_closure_iterator_ty succ_closure_begin(change_ty Node) {
109579ba2acSDaniel Dunbar     assert(SuccClosure.count(Node) && "Invalid node!");
110579ba2acSDaniel Dunbar     return SuccClosure[Node].begin();
111579ba2acSDaniel Dunbar   }
112579ba2acSDaniel Dunbar   succ_closure_iterator_ty succ_closure_end(change_ty Node) {
113579ba2acSDaniel Dunbar     assert(SuccClosure.count(Node) && "Invalid node!");
114579ba2acSDaniel Dunbar     return SuccClosure[Node].end();
115579ba2acSDaniel Dunbar   }
116579ba2acSDaniel Dunbar 
117579ba2acSDaniel Dunbar   void UpdatedSearchState(const changeset_ty &Changes,
118579ba2acSDaniel Dunbar                           const changesetlist_ty &Sets,
119579ba2acSDaniel Dunbar                           const changeset_ty &Required) {
120579ba2acSDaniel Dunbar     DDA.UpdatedSearchState(Changes, Sets, Required);
121579ba2acSDaniel Dunbar   }
122579ba2acSDaniel Dunbar 
1235485acd4SDmitri Gribenko   /// ExecuteOneTest - Execute a single test predicate on the change set \p S.
124579ba2acSDaniel Dunbar   bool ExecuteOneTest(const changeset_ty &S) {
125579ba2acSDaniel Dunbar     // Check dependencies invariant.
126d34e60caSNicola Zaghen     LLVM_DEBUG({
127d34e60caSNicola Zaghen       for (changeset_ty::const_iterator it = S.begin(), ie = S.end(); it != ie;
128d34e60caSNicola Zaghen            ++it)
129d34e60caSNicola Zaghen         for (succ_iterator_ty it2 = succ_begin(*it), ie2 = succ_end(*it);
130d34e60caSNicola Zaghen              it2 != ie2; ++it2)
131579ba2acSDaniel Dunbar           assert(S.count(*it2) && "Attempt to run invalid changeset!");
132579ba2acSDaniel Dunbar     });
133579ba2acSDaniel Dunbar 
134579ba2acSDaniel Dunbar     return DDA.ExecuteOneTest(S);
135579ba2acSDaniel Dunbar   }
136579ba2acSDaniel Dunbar 
137579ba2acSDaniel Dunbar public:
1389f380a3cSDavid Blaikie   DAGDeltaAlgorithmImpl(DAGDeltaAlgorithm &DDA, const changeset_ty &Changes,
1399f380a3cSDavid Blaikie                         const std::vector<edge_ty> &Dependencies);
140579ba2acSDaniel Dunbar 
141579ba2acSDaniel Dunbar   changeset_ty Run();
142579ba2acSDaniel Dunbar 
1435485acd4SDmitri Gribenko   /// GetTestResult - Get the test result for the active set \p Changes with
1445485acd4SDmitri Gribenko   /// \p Required changes from the cache, executing the test if necessary.
145579ba2acSDaniel Dunbar   ///
146579ba2acSDaniel Dunbar   /// \param Changes - The set of active changes being minimized, which should
147579ba2acSDaniel Dunbar   /// have their pred closure included in the test.
148579ba2acSDaniel Dunbar   /// \param Required - The set of changes which have previously been
149579ba2acSDaniel Dunbar   /// established to be required.
150579ba2acSDaniel Dunbar   /// \return - The test result.
151579ba2acSDaniel Dunbar   bool GetTestResult(const changeset_ty &Changes, const changeset_ty &Required);
152579ba2acSDaniel Dunbar };
153579ba2acSDaniel Dunbar 
154579ba2acSDaniel Dunbar /// Helper object for minimizing an active set of changes.
155579ba2acSDaniel Dunbar class DeltaActiveSetHelper : public DeltaAlgorithm {
156579ba2acSDaniel Dunbar   DAGDeltaAlgorithmImpl &DDAI;
157579ba2acSDaniel Dunbar 
158579ba2acSDaniel Dunbar   const changeset_ty &Required;
159579ba2acSDaniel Dunbar 
160579ba2acSDaniel Dunbar protected:
161579ba2acSDaniel Dunbar   /// UpdatedSearchState - Callback used when the search state changes.
1626ff5aa7cSCraig Topper   void UpdatedSearchState(const changeset_ty &Changes,
16373156025SCraig Topper                                   const changesetlist_ty &Sets) override {
164579ba2acSDaniel Dunbar     DDAI.UpdatedSearchState(Changes, Sets, Required);
165579ba2acSDaniel Dunbar   }
166579ba2acSDaniel Dunbar 
1676ff5aa7cSCraig Topper   bool ExecuteOneTest(const changeset_ty &S) override {
168579ba2acSDaniel Dunbar     return DDAI.GetTestResult(S, Required);
169579ba2acSDaniel Dunbar   }
170579ba2acSDaniel Dunbar 
171579ba2acSDaniel Dunbar public:
1729f380a3cSDavid Blaikie   DeltaActiveSetHelper(DAGDeltaAlgorithmImpl &DDAI,
1739f380a3cSDavid Blaikie                        const changeset_ty &Required)
1749f380a3cSDavid Blaikie       : DDAI(DDAI), Required(Required) {}
175579ba2acSDaniel Dunbar };
176579ba2acSDaniel Dunbar 
177f00654e3SAlexander Kornienko }
178579ba2acSDaniel Dunbar 
1799f380a3cSDavid Blaikie DAGDeltaAlgorithmImpl::DAGDeltaAlgorithmImpl(
1809f380a3cSDavid Blaikie     DAGDeltaAlgorithm &DDA, const changeset_ty &Changes,
1819f380a3cSDavid Blaikie     const std::vector<edge_ty> &Dependencies)
1829f380a3cSDavid Blaikie     : DDA(DDA) {
183579ba2acSDaniel Dunbar   for (changeset_ty::const_iterator it = Changes.begin(),
184579ba2acSDaniel Dunbar          ie = Changes.end(); it != ie; ++it) {
185579ba2acSDaniel Dunbar     Predecessors.insert(std::make_pair(*it, std::vector<change_ty>()));
186579ba2acSDaniel Dunbar     Successors.insert(std::make_pair(*it, std::vector<change_ty>()));
187579ba2acSDaniel Dunbar   }
188579ba2acSDaniel Dunbar   for (std::vector<edge_ty>::const_iterator it = Dependencies.begin(),
189579ba2acSDaniel Dunbar          ie = Dependencies.end(); it != ie; ++it) {
190579ba2acSDaniel Dunbar     Predecessors[it->second].push_back(it->first);
191579ba2acSDaniel Dunbar     Successors[it->first].push_back(it->second);
192579ba2acSDaniel Dunbar   }
193579ba2acSDaniel Dunbar 
194579ba2acSDaniel Dunbar   // Compute the roots.
195579ba2acSDaniel Dunbar   for (changeset_ty::const_iterator it = Changes.begin(),
196579ba2acSDaniel Dunbar          ie = Changes.end(); it != ie; ++it)
197579ba2acSDaniel Dunbar     if (succ_begin(*it) == succ_end(*it))
198579ba2acSDaniel Dunbar       Roots.push_back(*it);
199579ba2acSDaniel Dunbar 
200579ba2acSDaniel Dunbar   // Pre-compute the closure of the successor relation.
201579ba2acSDaniel Dunbar   std::vector<change_ty> Worklist(Roots.begin(), Roots.end());
202579ba2acSDaniel Dunbar   while (!Worklist.empty()) {
203579ba2acSDaniel Dunbar     change_ty Change = Worklist.back();
204579ba2acSDaniel Dunbar     Worklist.pop_back();
205579ba2acSDaniel Dunbar 
206579ba2acSDaniel Dunbar     std::set<change_ty> &ChangeSuccs = SuccClosure[Change];
207579ba2acSDaniel Dunbar     for (pred_iterator_ty it = pred_begin(Change),
208579ba2acSDaniel Dunbar            ie = pred_end(Change); it != ie; ++it) {
209579ba2acSDaniel Dunbar       SuccClosure[*it].insert(Change);
210579ba2acSDaniel Dunbar       SuccClosure[*it].insert(ChangeSuccs.begin(), ChangeSuccs.end());
211579ba2acSDaniel Dunbar       Worklist.push_back(*it);
212579ba2acSDaniel Dunbar     }
213579ba2acSDaniel Dunbar   }
214579ba2acSDaniel Dunbar 
215579ba2acSDaniel Dunbar   // Invert to form the predecessor closure map.
216579ba2acSDaniel Dunbar   for (changeset_ty::const_iterator it = Changes.begin(),
217579ba2acSDaniel Dunbar          ie = Changes.end(); it != ie; ++it)
218579ba2acSDaniel Dunbar     PredClosure.insert(std::make_pair(*it, std::set<change_ty>()));
219579ba2acSDaniel Dunbar   for (changeset_ty::const_iterator it = Changes.begin(),
220579ba2acSDaniel Dunbar          ie = Changes.end(); it != ie; ++it)
221579ba2acSDaniel Dunbar     for (succ_closure_iterator_ty it2 = succ_closure_begin(*it),
222579ba2acSDaniel Dunbar            ie2 = succ_closure_end(*it); it2 != ie2; ++it2)
223579ba2acSDaniel Dunbar       PredClosure[*it2].insert(*it);
224579ba2acSDaniel Dunbar 
225579ba2acSDaniel Dunbar   // Dump useful debug info.
226d34e60caSNicola Zaghen   LLVM_DEBUG({
227579ba2acSDaniel Dunbar     llvm::errs() << "-- DAGDeltaAlgorithmImpl --\n";
228579ba2acSDaniel Dunbar     llvm::errs() << "Changes: [";
229d34e60caSNicola Zaghen     for (changeset_ty::const_iterator it = Changes.begin(), ie = Changes.end();
230d34e60caSNicola Zaghen          it != ie; ++it) {
231d34e60caSNicola Zaghen       if (it != Changes.begin())
232d34e60caSNicola Zaghen         llvm::errs() << ", ";
233579ba2acSDaniel Dunbar       llvm::errs() << *it;
234579ba2acSDaniel Dunbar 
235579ba2acSDaniel Dunbar       if (succ_begin(*it) != succ_end(*it)) {
236579ba2acSDaniel Dunbar         llvm::errs() << "(";
237d34e60caSNicola Zaghen         for (succ_iterator_ty it2 = succ_begin(*it), ie2 = succ_end(*it);
238d34e60caSNicola Zaghen              it2 != ie2; ++it2) {
239d34e60caSNicola Zaghen           if (it2 != succ_begin(*it))
240d34e60caSNicola Zaghen             llvm::errs() << ", ";
241579ba2acSDaniel Dunbar           llvm::errs() << "->" << *it2;
242579ba2acSDaniel Dunbar         }
243579ba2acSDaniel Dunbar         llvm::errs() << ")";
244579ba2acSDaniel Dunbar       }
245579ba2acSDaniel Dunbar     }
246579ba2acSDaniel Dunbar     llvm::errs() << "]\n";
247579ba2acSDaniel Dunbar 
248579ba2acSDaniel Dunbar     llvm::errs() << "Roots: [";
249579ba2acSDaniel Dunbar     for (std::vector<change_ty>::const_iterator it = Roots.begin(),
250d34e60caSNicola Zaghen                                                 ie = Roots.end();
251d34e60caSNicola Zaghen          it != ie; ++it) {
252d34e60caSNicola Zaghen       if (it != Roots.begin())
253d34e60caSNicola Zaghen         llvm::errs() << ", ";
254579ba2acSDaniel Dunbar       llvm::errs() << *it;
255579ba2acSDaniel Dunbar     }
256579ba2acSDaniel Dunbar     llvm::errs() << "]\n";
257579ba2acSDaniel Dunbar 
258579ba2acSDaniel Dunbar     llvm::errs() << "Predecessor Closure:\n";
259d34e60caSNicola Zaghen     for (changeset_ty::const_iterator it = Changes.begin(), ie = Changes.end();
260d34e60caSNicola Zaghen          it != ie; ++it) {
261579ba2acSDaniel Dunbar       llvm::errs() << format("  %-4d: [", *it);
262579ba2acSDaniel Dunbar       for (pred_closure_iterator_ty it2 = pred_closure_begin(*it),
263d34e60caSNicola Zaghen                                     ie2 = pred_closure_end(*it);
264d34e60caSNicola Zaghen            it2 != ie2; ++it2) {
265d34e60caSNicola Zaghen         if (it2 != pred_closure_begin(*it))
266d34e60caSNicola Zaghen           llvm::errs() << ", ";
267579ba2acSDaniel Dunbar         llvm::errs() << *it2;
268579ba2acSDaniel Dunbar       }
269579ba2acSDaniel Dunbar       llvm::errs() << "]\n";
270579ba2acSDaniel Dunbar     }
271579ba2acSDaniel Dunbar 
272579ba2acSDaniel Dunbar     llvm::errs() << "Successor Closure:\n";
273d34e60caSNicola Zaghen     for (changeset_ty::const_iterator it = Changes.begin(), ie = Changes.end();
274d34e60caSNicola Zaghen          it != ie; ++it) {
275579ba2acSDaniel Dunbar       llvm::errs() << format("  %-4d: [", *it);
276579ba2acSDaniel Dunbar       for (succ_closure_iterator_ty it2 = succ_closure_begin(*it),
277d34e60caSNicola Zaghen                                     ie2 = succ_closure_end(*it);
278d34e60caSNicola Zaghen            it2 != ie2; ++it2) {
279d34e60caSNicola Zaghen         if (it2 != succ_closure_begin(*it))
280d34e60caSNicola Zaghen           llvm::errs() << ", ";
281579ba2acSDaniel Dunbar         llvm::errs() << *it2;
282579ba2acSDaniel Dunbar       }
283579ba2acSDaniel Dunbar       llvm::errs() << "]\n";
284579ba2acSDaniel Dunbar     }
285579ba2acSDaniel Dunbar 
286579ba2acSDaniel Dunbar     llvm::errs() << "\n\n";
287579ba2acSDaniel Dunbar   });
288579ba2acSDaniel Dunbar }
289579ba2acSDaniel Dunbar 
290579ba2acSDaniel Dunbar bool DAGDeltaAlgorithmImpl::GetTestResult(const changeset_ty &Changes,
291579ba2acSDaniel Dunbar                                           const changeset_ty &Required) {
292579ba2acSDaniel Dunbar   changeset_ty Extended(Required);
293579ba2acSDaniel Dunbar   Extended.insert(Changes.begin(), Changes.end());
2945729f514SDaniel Dunbar   for (changeset_ty::const_iterator it = Changes.begin(),
295579ba2acSDaniel Dunbar          ie = Changes.end(); it != ie; ++it)
296579ba2acSDaniel Dunbar     Extended.insert(pred_closure_begin(*it), pred_closure_end(*it));
297579ba2acSDaniel Dunbar 
298579ba2acSDaniel Dunbar   if (FailedTestsCache.count(Extended))
299579ba2acSDaniel Dunbar     return false;
300579ba2acSDaniel Dunbar 
301579ba2acSDaniel Dunbar   bool Result = ExecuteOneTest(Extended);
302579ba2acSDaniel Dunbar   if (!Result)
303579ba2acSDaniel Dunbar     FailedTestsCache.insert(Extended);
304579ba2acSDaniel Dunbar 
305579ba2acSDaniel Dunbar   return Result;
306579ba2acSDaniel Dunbar }
307579ba2acSDaniel Dunbar 
308579ba2acSDaniel Dunbar DAGDeltaAlgorithm::changeset_ty
309579ba2acSDaniel Dunbar DAGDeltaAlgorithmImpl::Run() {
310579ba2acSDaniel Dunbar   // The current set of changes we are minimizing, starting at the roots.
311579ba2acSDaniel Dunbar   changeset_ty CurrentSet(Roots.begin(), Roots.end());
312579ba2acSDaniel Dunbar 
313579ba2acSDaniel Dunbar   // The set of required changes.
314579ba2acSDaniel Dunbar   changeset_ty Required;
315579ba2acSDaniel Dunbar 
316579ba2acSDaniel Dunbar   // Iterate until the active set of changes is empty. Convergence is guaranteed
317579ba2acSDaniel Dunbar   // assuming input was a DAG.
318579ba2acSDaniel Dunbar   //
319579ba2acSDaniel Dunbar   // Invariant:  CurrentSet intersect Required == {}
320579ba2acSDaniel Dunbar   // Invariant:  Required == (Required union succ*(Required))
321579ba2acSDaniel Dunbar   while (!CurrentSet.empty()) {
322d34e60caSNicola Zaghen     LLVM_DEBUG({
323579ba2acSDaniel Dunbar       llvm::errs() << "DAG_DD - " << CurrentSet.size() << " active changes, "
324579ba2acSDaniel Dunbar                    << Required.size() << " required changes\n";
325579ba2acSDaniel Dunbar     });
326579ba2acSDaniel Dunbar 
327579ba2acSDaniel Dunbar     // Minimize the current set of changes.
328579ba2acSDaniel Dunbar     DeltaActiveSetHelper Helper(*this, Required);
329579ba2acSDaniel Dunbar     changeset_ty CurrentMinSet = Helper.Run(CurrentSet);
330579ba2acSDaniel Dunbar 
331579ba2acSDaniel Dunbar     // Update the set of required changes. Since
332579ba2acSDaniel Dunbar     //   CurrentMinSet subset CurrentSet
333579ba2acSDaniel Dunbar     // and after the last iteration,
334579ba2acSDaniel Dunbar     //   succ(CurrentSet) subset Required
335579ba2acSDaniel Dunbar     // then
336579ba2acSDaniel Dunbar     //   succ(CurrentMinSet) subset Required
337579ba2acSDaniel Dunbar     // and our invariant on Required is maintained.
338579ba2acSDaniel Dunbar     Required.insert(CurrentMinSet.begin(), CurrentMinSet.end());
339579ba2acSDaniel Dunbar 
340579ba2acSDaniel Dunbar     // Replace the current set with the predecssors of the minimized set of
341579ba2acSDaniel Dunbar     // active changes.
342579ba2acSDaniel Dunbar     CurrentSet.clear();
343579ba2acSDaniel Dunbar     for (changeset_ty::const_iterator it = CurrentMinSet.begin(),
344579ba2acSDaniel Dunbar            ie = CurrentMinSet.end(); it != ie; ++it)
345579ba2acSDaniel Dunbar       CurrentSet.insert(pred_begin(*it), pred_end(*it));
346579ba2acSDaniel Dunbar 
347579ba2acSDaniel Dunbar     // FIXME: We could enforce CurrentSet intersect Required == {} here if we
348579ba2acSDaniel Dunbar     // wanted to protect against cyclic graphs.
349579ba2acSDaniel Dunbar   }
350579ba2acSDaniel Dunbar 
351579ba2acSDaniel Dunbar   return Required;
352579ba2acSDaniel Dunbar }
353579ba2acSDaniel Dunbar 
354421caa42SDavid Blaikie void DAGDeltaAlgorithm::anchor() {
355421caa42SDavid Blaikie }
356421caa42SDavid Blaikie 
357579ba2acSDaniel Dunbar DAGDeltaAlgorithm::changeset_ty
358579ba2acSDaniel Dunbar DAGDeltaAlgorithm::Run(const changeset_ty &Changes,
359579ba2acSDaniel Dunbar                        const std::vector<edge_ty> &Dependencies) {
360579ba2acSDaniel Dunbar   return DAGDeltaAlgorithmImpl(*this, Changes, Dependencies).Run();
361579ba2acSDaniel Dunbar }
362