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1 | # ancestor.py - generic DAG ancestor algorithm for mercurial |
|
1 | # ancestor.py - generic DAG ancestor algorithm for mercurial | |
2 | # |
|
2 | # | |
3 | # Copyright 2006 Matt Mackall <mpm@selenic.com> |
|
3 | # Copyright 2006 Matt Mackall <mpm@selenic.com> | |
4 | # |
|
4 | # | |
5 | # This software may be used and distributed according to the terms of the |
|
5 | # This software may be used and distributed according to the terms of the | |
6 | # GNU General Public License version 2 or any later version. |
|
6 | # GNU General Public License version 2 or any later version. | |
7 |
|
7 | |||
8 | from __future__ import absolute_import |
|
8 | from __future__ import absolute_import | |
9 |
|
9 | |||
10 | import heapq |
|
10 | import heapq | |
11 |
|
11 | |||
12 | from .node import nullrev |
|
12 | from .node import nullrev | |
13 | from . import ( |
|
13 | from . import ( | |
14 | pycompat, |
|
14 | pycompat, | |
15 | ) |
|
15 | ) | |
16 |
|
16 | |||
17 | def commonancestorsheads(pfunc, *nodes): |
|
17 | def commonancestorsheads(pfunc, *nodes): | |
18 | """Returns a set with the heads of all common ancestors of all nodes, |
|
18 | """Returns a set with the heads of all common ancestors of all nodes, | |
19 | heads(::nodes[0] and ::nodes[1] and ...) . |
|
19 | heads(::nodes[0] and ::nodes[1] and ...) . | |
20 |
|
20 | |||
21 | pfunc must return a list of parent vertices for a given vertex. |
|
21 | pfunc must return a list of parent vertices for a given vertex. | |
22 | """ |
|
22 | """ | |
23 | if not isinstance(nodes, set): |
|
23 | if not isinstance(nodes, set): | |
24 | nodes = set(nodes) |
|
24 | nodes = set(nodes) | |
25 | if nullrev in nodes: |
|
25 | if nullrev in nodes: | |
26 | return set() |
|
26 | return set() | |
27 | if len(nodes) <= 1: |
|
27 | if len(nodes) <= 1: | |
28 | return nodes |
|
28 | return nodes | |
29 |
|
29 | |||
30 | allseen = (1 << len(nodes)) - 1 |
|
30 | allseen = (1 << len(nodes)) - 1 | |
31 | seen = [0] * (max(nodes) + 1) |
|
31 | seen = [0] * (max(nodes) + 1) | |
32 | for i, n in enumerate(nodes): |
|
32 | for i, n in enumerate(nodes): | |
33 | seen[n] = 1 << i |
|
33 | seen[n] = 1 << i | |
34 | poison = 1 << (i + 1) |
|
34 | poison = 1 << (i + 1) | |
35 |
|
35 | |||
36 | gca = set() |
|
36 | gca = set() | |
37 | interesting = len(nodes) |
|
37 | interesting = len(nodes) | |
38 | nv = len(seen) - 1 |
|
38 | nv = len(seen) - 1 | |
39 | while nv >= 0 and interesting: |
|
39 | while nv >= 0 and interesting: | |
40 | v = nv |
|
40 | v = nv | |
41 | nv -= 1 |
|
41 | nv -= 1 | |
42 | if not seen[v]: |
|
42 | if not seen[v]: | |
43 | continue |
|
43 | continue | |
44 | sv = seen[v] |
|
44 | sv = seen[v] | |
45 | if sv < poison: |
|
45 | if sv < poison: | |
46 | interesting -= 1 |
|
46 | interesting -= 1 | |
47 | if sv == allseen: |
|
47 | if sv == allseen: | |
48 | gca.add(v) |
|
48 | gca.add(v) | |
49 | sv |= poison |
|
49 | sv |= poison | |
50 | if v in nodes: |
|
50 | if v in nodes: | |
51 | # history is linear |
|
51 | # history is linear | |
52 | return {v} |
|
52 | return {v} | |
53 | if sv < poison: |
|
53 | if sv < poison: | |
54 | for p in pfunc(v): |
|
54 | for p in pfunc(v): | |
55 | sp = seen[p] |
|
55 | sp = seen[p] | |
56 | if p == nullrev: |
|
56 | if p == nullrev: | |
57 | continue |
|
57 | continue | |
58 | if sp == 0: |
|
58 | if sp == 0: | |
59 | seen[p] = sv |
|
59 | seen[p] = sv | |
60 | interesting += 1 |
|
60 | interesting += 1 | |
61 | elif sp != sv: |
|
61 | elif sp != sv: | |
62 | seen[p] |= sv |
|
62 | seen[p] |= sv | |
63 | else: |
|
63 | else: | |
64 | for p in pfunc(v): |
|
64 | for p in pfunc(v): | |
65 | if p == nullrev: |
|
65 | if p == nullrev: | |
66 | continue |
|
66 | continue | |
67 | sp = seen[p] |
|
67 | sp = seen[p] | |
68 | if sp and sp < poison: |
|
68 | if sp and sp < poison: | |
69 | interesting -= 1 |
|
69 | interesting -= 1 | |
70 | seen[p] = sv |
|
70 | seen[p] = sv | |
71 | return gca |
|
71 | return gca | |
72 |
|
72 | |||
73 | def ancestors(pfunc, *orignodes): |
|
73 | def ancestors(pfunc, *orignodes): | |
74 | """ |
|
74 | """ | |
75 | Returns the common ancestors of a and b that are furthest from a |
|
75 | Returns the common ancestors of a and b that are furthest from a | |
76 | root (as measured by longest path). |
|
76 | root (as measured by longest path). | |
77 |
|
77 | |||
78 | pfunc must return a list of parent vertices for a given vertex. |
|
78 | pfunc must return a list of parent vertices for a given vertex. | |
79 | """ |
|
79 | """ | |
80 | def deepest(nodes): |
|
80 | def deepest(nodes): | |
81 | interesting = {} |
|
81 | interesting = {} | |
82 | count = max(nodes) + 1 |
|
82 | count = max(nodes) + 1 | |
83 | depth = [0] * count |
|
83 | depth = [0] * count | |
84 | seen = [0] * count |
|
84 | seen = [0] * count | |
85 | mapping = [] |
|
85 | mapping = [] | |
86 | for (i, n) in enumerate(sorted(nodes)): |
|
86 | for (i, n) in enumerate(sorted(nodes)): | |
87 | depth[n] = 1 |
|
87 | depth[n] = 1 | |
88 | b = 1 << i |
|
88 | b = 1 << i | |
89 | seen[n] = b |
|
89 | seen[n] = b | |
90 | interesting[b] = 1 |
|
90 | interesting[b] = 1 | |
91 | mapping.append((b, n)) |
|
91 | mapping.append((b, n)) | |
92 | nv = count - 1 |
|
92 | nv = count - 1 | |
93 | while nv >= 0 and len(interesting) > 1: |
|
93 | while nv >= 0 and len(interesting) > 1: | |
94 | v = nv |
|
94 | v = nv | |
95 | nv -= 1 |
|
95 | nv -= 1 | |
96 | dv = depth[v] |
|
96 | dv = depth[v] | |
97 | if dv == 0: |
|
97 | if dv == 0: | |
98 | continue |
|
98 | continue | |
99 | sv = seen[v] |
|
99 | sv = seen[v] | |
100 | for p in pfunc(v): |
|
100 | for p in pfunc(v): | |
101 | if p == nullrev: |
|
101 | if p == nullrev: | |
102 | continue |
|
102 | continue | |
103 | dp = depth[p] |
|
103 | dp = depth[p] | |
104 | nsp = sp = seen[p] |
|
104 | nsp = sp = seen[p] | |
105 | if dp <= dv: |
|
105 | if dp <= dv: | |
106 | depth[p] = dv + 1 |
|
106 | depth[p] = dv + 1 | |
107 | if sp != sv: |
|
107 | if sp != sv: | |
108 | interesting[sv] += 1 |
|
108 | interesting[sv] += 1 | |
109 | nsp = seen[p] = sv |
|
109 | nsp = seen[p] = sv | |
110 | if sp: |
|
110 | if sp: | |
111 | interesting[sp] -= 1 |
|
111 | interesting[sp] -= 1 | |
112 | if interesting[sp] == 0: |
|
112 | if interesting[sp] == 0: | |
113 | del interesting[sp] |
|
113 | del interesting[sp] | |
114 | elif dv == dp - 1: |
|
114 | elif dv == dp - 1: | |
115 | nsp = sp | sv |
|
115 | nsp = sp | sv | |
116 | if nsp == sp: |
|
116 | if nsp == sp: | |
117 | continue |
|
117 | continue | |
118 | seen[p] = nsp |
|
118 | seen[p] = nsp | |
119 | interesting.setdefault(nsp, 0) |
|
119 | interesting.setdefault(nsp, 0) | |
120 | interesting[nsp] += 1 |
|
120 | interesting[nsp] += 1 | |
121 | interesting[sp] -= 1 |
|
121 | interesting[sp] -= 1 | |
122 | if interesting[sp] == 0: |
|
122 | if interesting[sp] == 0: | |
123 | del interesting[sp] |
|
123 | del interesting[sp] | |
124 | interesting[sv] -= 1 |
|
124 | interesting[sv] -= 1 | |
125 | if interesting[sv] == 0: |
|
125 | if interesting[sv] == 0: | |
126 | del interesting[sv] |
|
126 | del interesting[sv] | |
127 |
|
127 | |||
128 | if len(interesting) != 1: |
|
128 | if len(interesting) != 1: | |
129 | return [] |
|
129 | return [] | |
130 |
|
130 | |||
131 | k = 0 |
|
131 | k = 0 | |
132 | for i in interesting: |
|
132 | for i in interesting: | |
133 | k |= i |
|
133 | k |= i | |
134 | return set(n for (i, n) in mapping if k & i) |
|
134 | return set(n for (i, n) in mapping if k & i) | |
135 |
|
135 | |||
136 | gca = commonancestorsheads(pfunc, *orignodes) |
|
136 | gca = commonancestorsheads(pfunc, *orignodes) | |
137 |
|
137 | |||
138 | if len(gca) <= 1: |
|
138 | if len(gca) <= 1: | |
139 | return gca |
|
139 | return gca | |
140 | return deepest(gca) |
|
140 | return deepest(gca) | |
141 |
|
141 | |||
142 | class incrementalmissingancestors(object): |
|
142 | class incrementalmissingancestors(object): | |
143 | '''persistent state used to calculate missing ancestors incrementally |
|
143 | '''persistent state used to calculate missing ancestors incrementally | |
144 |
|
144 | |||
145 | Although similar in spirit to lazyancestors below, this is a separate class |
|
145 | Although similar in spirit to lazyancestors below, this is a separate class | |
146 | because trying to support contains and missingancestors operations with the |
|
146 | because trying to support contains and missingancestors operations with the | |
147 | same internal data structures adds needless complexity.''' |
|
147 | same internal data structures adds needless complexity.''' | |
148 | def __init__(self, pfunc, bases): |
|
148 | def __init__(self, pfunc, bases): | |
149 | self.bases = set(bases) |
|
149 | self.bases = set(bases) | |
150 | if not self.bases: |
|
150 | if not self.bases: | |
151 | self.bases.add(nullrev) |
|
151 | self.bases.add(nullrev) | |
152 | self.pfunc = pfunc |
|
152 | self.pfunc = pfunc | |
153 |
|
153 | |||
154 | def hasbases(self): |
|
154 | def hasbases(self): | |
155 | '''whether the common set has any non-trivial bases''' |
|
155 | '''whether the common set has any non-trivial bases''' | |
156 | return self.bases and self.bases != {nullrev} |
|
156 | return self.bases and self.bases != {nullrev} | |
157 |
|
157 | |||
158 | def addbases(self, newbases): |
|
158 | def addbases(self, newbases): | |
159 | '''grow the ancestor set by adding new bases''' |
|
159 | '''grow the ancestor set by adding new bases''' | |
160 | self.bases.update(newbases) |
|
160 | self.bases.update(newbases) | |
161 |
|
161 | |||
162 | def removeancestorsfrom(self, revs): |
|
162 | def removeancestorsfrom(self, revs): | |
163 | '''remove all ancestors of bases from the set revs (in place)''' |
|
163 | '''remove all ancestors of bases from the set revs (in place)''' | |
164 | bases = self.bases |
|
164 | bases = self.bases | |
165 | pfunc = self.pfunc |
|
165 | pfunc = self.pfunc | |
166 | revs.difference_update(bases) |
|
166 | revs.difference_update(bases) | |
167 | # nullrev is always an ancestor |
|
167 | # nullrev is always an ancestor | |
168 | revs.discard(nullrev) |
|
168 | revs.discard(nullrev) | |
169 | if not revs: |
|
169 | if not revs: | |
170 | return |
|
170 | return | |
171 | # anything in revs > start is definitely not an ancestor of bases |
|
171 | # anything in revs > start is definitely not an ancestor of bases | |
172 | # revs <= start needs to be investigated |
|
172 | # revs <= start needs to be investigated | |
173 | start = max(bases) |
|
173 | start = max(bases) | |
174 | keepcount = sum(1 for r in revs if r > start) |
|
174 | keepcount = sum(1 for r in revs if r > start) | |
175 | if len(revs) == keepcount: |
|
175 | if len(revs) == keepcount: | |
176 | # no revs to consider |
|
176 | # no revs to consider | |
177 | return |
|
177 | return | |
178 |
|
178 | |||
179 | for curr in pycompat.xrange(start, min(revs) - 1, -1): |
|
179 | for curr in pycompat.xrange(start, min(revs) - 1, -1): | |
180 | if curr not in bases: |
|
180 | if curr not in bases: | |
181 | continue |
|
181 | continue | |
182 | revs.discard(curr) |
|
182 | revs.discard(curr) | |
183 | bases.update(pfunc(curr)) |
|
183 | bases.update(pfunc(curr)) | |
184 | if len(revs) == keepcount: |
|
184 | if len(revs) == keepcount: | |
185 | # no more potential revs to discard |
|
185 | # no more potential revs to discard | |
186 | break |
|
186 | break | |
187 |
|
187 | |||
188 | def missingancestors(self, revs): |
|
188 | def missingancestors(self, revs): | |
189 | '''return all the ancestors of revs that are not ancestors of self.bases |
|
189 | '''return all the ancestors of revs that are not ancestors of self.bases | |
190 |
|
190 | |||
191 | This may include elements from revs. |
|
191 | This may include elements from revs. | |
192 |
|
192 | |||
193 | Equivalent to the revset (::revs - ::self.bases). Revs are returned in |
|
193 | Equivalent to the revset (::revs - ::self.bases). Revs are returned in | |
194 | revision number order, which is a topological order.''' |
|
194 | revision number order, which is a topological order.''' | |
195 | revsvisit = set(revs) |
|
195 | revsvisit = set(revs) | |
196 | basesvisit = self.bases |
|
196 | basesvisit = self.bases | |
197 | pfunc = self.pfunc |
|
197 | pfunc = self.pfunc | |
198 | bothvisit = revsvisit.intersection(basesvisit) |
|
198 | bothvisit = revsvisit.intersection(basesvisit) | |
199 | revsvisit.difference_update(bothvisit) |
|
199 | revsvisit.difference_update(bothvisit) | |
200 | if not revsvisit: |
|
200 | if not revsvisit: | |
201 | return [] |
|
201 | return [] | |
202 |
|
202 | |||
203 | start = max(max(revsvisit), max(basesvisit)) |
|
203 | start = max(max(revsvisit), max(basesvisit)) | |
204 | # At this point, we hold the invariants that: |
|
204 | # At this point, we hold the invariants that: | |
205 | # - revsvisit is the set of nodes we know are an ancestor of at least |
|
205 | # - revsvisit is the set of nodes we know are an ancestor of at least | |
206 | # one of the nodes in revs |
|
206 | # one of the nodes in revs | |
207 | # - basesvisit is the same for bases |
|
207 | # - basesvisit is the same for bases | |
208 | # - bothvisit is the set of nodes we know are ancestors of at least one |
|
208 | # - bothvisit is the set of nodes we know are ancestors of at least one | |
209 | # of the nodes in revs and one of the nodes in bases. bothvisit and |
|
209 | # of the nodes in revs and one of the nodes in bases. bothvisit and | |
210 | # revsvisit are mutually exclusive, but bothvisit is a subset of |
|
210 | # revsvisit are mutually exclusive, but bothvisit is a subset of | |
211 | # basesvisit. |
|
211 | # basesvisit. | |
212 | # Now we walk down in reverse topo order, adding parents of nodes |
|
212 | # Now we walk down in reverse topo order, adding parents of nodes | |
213 | # already visited to the sets while maintaining the invariants. When a |
|
213 | # already visited to the sets while maintaining the invariants. When a | |
214 | # node is found in both revsvisit and basesvisit, it is removed from |
|
214 | # node is found in both revsvisit and basesvisit, it is removed from | |
215 | # revsvisit and added to bothvisit. When revsvisit becomes empty, there |
|
215 | # revsvisit and added to bothvisit. When revsvisit becomes empty, there | |
216 | # are no more ancestors of revs that aren't also ancestors of bases, so |
|
216 | # are no more ancestors of revs that aren't also ancestors of bases, so | |
217 | # exit. |
|
217 | # exit. | |
218 |
|
218 | |||
219 | missing = [] |
|
219 | missing = [] | |
220 | for curr in pycompat.xrange(start, nullrev, -1): |
|
220 | for curr in pycompat.xrange(start, nullrev, -1): | |
221 | if not revsvisit: |
|
221 | if not revsvisit: | |
222 | break |
|
222 | break | |
223 |
|
223 | |||
224 | if curr in bothvisit: |
|
224 | if curr in bothvisit: | |
225 | bothvisit.remove(curr) |
|
225 | bothvisit.remove(curr) | |
226 | # curr's parents might have made it into revsvisit through |
|
226 | # curr's parents might have made it into revsvisit through | |
227 | # another path |
|
227 | # another path | |
228 | for p in pfunc(curr): |
|
228 | for p in pfunc(curr): | |
229 | revsvisit.discard(p) |
|
229 | revsvisit.discard(p) | |
230 | basesvisit.add(p) |
|
230 | basesvisit.add(p) | |
231 | bothvisit.add(p) |
|
231 | bothvisit.add(p) | |
232 | continue |
|
232 | continue | |
233 |
|
233 | |||
234 | if curr in revsvisit: |
|
234 | if curr in revsvisit: | |
235 | missing.append(curr) |
|
235 | missing.append(curr) | |
236 | revsvisit.remove(curr) |
|
236 | revsvisit.remove(curr) | |
237 | thisvisit = revsvisit |
|
237 | thisvisit = revsvisit | |
238 | othervisit = basesvisit |
|
238 | othervisit = basesvisit | |
239 | elif curr in basesvisit: |
|
239 | elif curr in basesvisit: | |
240 | thisvisit = basesvisit |
|
240 | thisvisit = basesvisit | |
241 | othervisit = revsvisit |
|
241 | othervisit = revsvisit | |
242 | else: |
|
242 | else: | |
243 | # not an ancestor of revs or bases: ignore |
|
243 | # not an ancestor of revs or bases: ignore | |
244 | continue |
|
244 | continue | |
245 |
|
245 | |||
246 | for p in pfunc(curr): |
|
246 | for p in pfunc(curr): | |
247 | if p == nullrev: |
|
247 | if p == nullrev: | |
248 | pass |
|
248 | pass | |
249 | elif p in othervisit or p in bothvisit: |
|
249 | elif p in othervisit or p in bothvisit: | |
250 | # p is implicitly in thisvisit. This means p is or should be |
|
250 | # p is implicitly in thisvisit. This means p is or should be | |
251 | # in bothvisit |
|
251 | # in bothvisit | |
252 | revsvisit.discard(p) |
|
252 | revsvisit.discard(p) | |
253 | basesvisit.add(p) |
|
253 | basesvisit.add(p) | |
254 | bothvisit.add(p) |
|
254 | bothvisit.add(p) | |
255 | else: |
|
255 | else: | |
256 | # visit later |
|
256 | # visit later | |
257 | thisvisit.add(p) |
|
257 | thisvisit.add(p) | |
258 |
|
258 | |||
259 | missing.reverse() |
|
259 | missing.reverse() | |
260 | return missing |
|
260 | return missing | |
261 |
|
261 | |||
262 | # Extracted from lazyancestors.__iter__ to avoid a reference cycle |
|
262 | # Extracted from lazyancestors.__iter__ to avoid a reference cycle | |
263 | def _lazyancestorsiter(parentrevs, initrevs, stoprev, inclusive): |
|
263 | def _lazyancestorsiter(parentrevs, initrevs, stoprev, inclusive): | |
264 | seen = {nullrev} |
|
264 | seen = {nullrev} | |
265 | schedule = heapq.heappush |
|
265 | schedule = heapq.heappush | |
266 | nextitem = heapq.heappop |
|
266 | nextitem = heapq.heappop | |
267 | see = seen.add |
|
267 | see = seen.add | |
268 |
|
268 | |||
269 | if inclusive: |
|
269 | if inclusive: | |
270 | visit = [-r for r in initrevs] |
|
270 | visit = [-r for r in initrevs] | |
271 | seen.update(initrevs) |
|
271 | seen.update(initrevs) | |
272 | heapq.heapify(visit) |
|
272 | heapq.heapify(visit) | |
273 | else: |
|
273 | else: | |
274 | visit = [] |
|
274 | visit = [] | |
275 | heapq.heapify(visit) |
|
275 | heapq.heapify(visit) | |
276 | for r in initrevs: |
|
276 | for r in initrevs: | |
277 |
|
|
277 | p1, p2 = parentrevs(r) | |
278 |
|
|
278 | if p1 not in seen: | |
279 |
|
|
279 | schedule(visit, -p1) | |
280 |
|
|
280 | see(p1) | |
|
281 | if p2 not in seen: | |||
|
282 | schedule(visit, -p2) | |||
|
283 | see(p2) | |||
281 |
|
284 | |||
282 | while visit: |
|
285 | while visit: | |
283 | current = -nextitem(visit) |
|
286 | current = -nextitem(visit) | |
284 | if current < stoprev: |
|
287 | if current < stoprev: | |
285 | break |
|
288 | break | |
286 | yield current |
|
289 | yield current | |
287 |
|
|
290 | p1, p2 = parentrevs(current) | |
288 |
|
|
291 | if p1 not in seen: | |
289 |
|
|
292 | schedule(visit, -p1) | |
290 |
|
|
293 | see(p1) | |
|
294 | if p2 not in seen: | |||
|
295 | schedule(visit, -p2) | |||
|
296 | see(p2) | |||
291 |
|
297 | |||
292 | class lazyancestors(object): |
|
298 | class lazyancestors(object): | |
293 | def __init__(self, pfunc, revs, stoprev=0, inclusive=False): |
|
299 | def __init__(self, pfunc, revs, stoprev=0, inclusive=False): | |
294 | """Create a new object generating ancestors for the given revs. Does |
|
300 | """Create a new object generating ancestors for the given revs. Does | |
295 | not generate revs lower than stoprev. |
|
301 | not generate revs lower than stoprev. | |
296 |
|
302 | |||
297 | This is computed lazily starting from revs. The object supports |
|
303 | This is computed lazily starting from revs. The object supports | |
298 | iteration and membership. |
|
304 | iteration and membership. | |
299 |
|
305 | |||
300 | cl should be a changelog and revs should be an iterable. inclusive is |
|
306 | cl should be a changelog and revs should be an iterable. inclusive is | |
301 | a boolean that indicates whether revs should be included. Revs lower |
|
307 | a boolean that indicates whether revs should be included. Revs lower | |
302 | than stoprev will not be generated. |
|
308 | than stoprev will not be generated. | |
303 |
|
309 | |||
304 | Result does not include the null revision.""" |
|
310 | Result does not include the null revision.""" | |
305 | self._parentrevs = pfunc |
|
311 | self._parentrevs = pfunc | |
306 | self._initrevs = revs = [r for r in revs if r >= stoprev] |
|
312 | self._initrevs = revs = [r for r in revs if r >= stoprev] | |
307 | self._stoprev = stoprev |
|
313 | self._stoprev = stoprev | |
308 | self._inclusive = inclusive |
|
314 | self._inclusive = inclusive | |
309 |
|
315 | |||
310 | self._containsseen = set() |
|
316 | self._containsseen = set() | |
311 | self._containsiter = _lazyancestorsiter(self._parentrevs, |
|
317 | self._containsiter = _lazyancestorsiter(self._parentrevs, | |
312 | self._initrevs, |
|
318 | self._initrevs, | |
313 | self._stoprev, |
|
319 | self._stoprev, | |
314 | self._inclusive) |
|
320 | self._inclusive) | |
315 |
|
321 | |||
316 | def __nonzero__(self): |
|
322 | def __nonzero__(self): | |
317 | """False if the set is empty, True otherwise.""" |
|
323 | """False if the set is empty, True otherwise.""" | |
318 | try: |
|
324 | try: | |
319 | next(iter(self)) |
|
325 | next(iter(self)) | |
320 | return True |
|
326 | return True | |
321 | except StopIteration: |
|
327 | except StopIteration: | |
322 | return False |
|
328 | return False | |
323 |
|
329 | |||
324 | __bool__ = __nonzero__ |
|
330 | __bool__ = __nonzero__ | |
325 |
|
331 | |||
326 | def __iter__(self): |
|
332 | def __iter__(self): | |
327 | """Generate the ancestors of _initrevs in reverse topological order. |
|
333 | """Generate the ancestors of _initrevs in reverse topological order. | |
328 |
|
334 | |||
329 | If inclusive is False, yield a sequence of revision numbers starting |
|
335 | If inclusive is False, yield a sequence of revision numbers starting | |
330 | with the parents of each revision in revs, i.e., each revision is |
|
336 | with the parents of each revision in revs, i.e., each revision is | |
331 | *not* considered an ancestor of itself. Results are emitted in reverse |
|
337 | *not* considered an ancestor of itself. Results are emitted in reverse | |
332 | revision number order. That order is also topological: a child is |
|
338 | revision number order. That order is also topological: a child is | |
333 | always emitted before its parent. |
|
339 | always emitted before its parent. | |
334 |
|
340 | |||
335 | If inclusive is True, the source revisions are also yielded. The |
|
341 | If inclusive is True, the source revisions are also yielded. The | |
336 | reverse revision number order is still enforced.""" |
|
342 | reverse revision number order is still enforced.""" | |
337 | for rev in _lazyancestorsiter(self._parentrevs, self._initrevs, |
|
343 | for rev in _lazyancestorsiter(self._parentrevs, self._initrevs, | |
338 | self._stoprev, self._inclusive): |
|
344 | self._stoprev, self._inclusive): | |
339 | yield rev |
|
345 | yield rev | |
340 |
|
346 | |||
341 | def __contains__(self, target): |
|
347 | def __contains__(self, target): | |
342 | """Test whether target is an ancestor of self._initrevs.""" |
|
348 | """Test whether target is an ancestor of self._initrevs.""" | |
343 | seen = self._containsseen |
|
349 | seen = self._containsseen | |
344 | if target in seen: |
|
350 | if target in seen: | |
345 | return True |
|
351 | return True | |
346 | iter = self._containsiter |
|
352 | iter = self._containsiter | |
347 | if iter is None: |
|
353 | if iter is None: | |
348 | # Iterator exhausted |
|
354 | # Iterator exhausted | |
349 | return False |
|
355 | return False | |
350 | # Only integer target is valid, but some callers expect 'None in self' |
|
356 | # Only integer target is valid, but some callers expect 'None in self' | |
351 | # to be False. So we explicitly allow it. |
|
357 | # to be False. So we explicitly allow it. | |
352 | if target is None: |
|
358 | if target is None: | |
353 | return False |
|
359 | return False | |
354 |
|
360 | |||
355 | see = seen.add |
|
361 | see = seen.add | |
356 | try: |
|
362 | try: | |
357 | while True: |
|
363 | while True: | |
358 | rev = next(iter) |
|
364 | rev = next(iter) | |
359 | see(rev) |
|
365 | see(rev) | |
360 | if rev == target: |
|
366 | if rev == target: | |
361 | return True |
|
367 | return True | |
362 | if rev < target: |
|
368 | if rev < target: | |
363 | return False |
|
369 | return False | |
364 | except StopIteration: |
|
370 | except StopIteration: | |
365 | # Set to None to indicate fast-path can be used next time, and to |
|
371 | # Set to None to indicate fast-path can be used next time, and to | |
366 | # free up memory. |
|
372 | # free up memory. | |
367 | self._containsiter = None |
|
373 | self._containsiter = None | |
368 | return False |
|
374 | return False |
@@ -1,280 +1,280 b'' | |||||
1 | from __future__ import absolute_import, print_function |
|
1 | from __future__ import absolute_import, print_function | |
2 |
|
2 | |||
3 | import binascii |
|
3 | import binascii | |
4 | import getopt |
|
4 | import getopt | |
5 | import math |
|
5 | import math | |
6 | import os |
|
6 | import os | |
7 | import random |
|
7 | import random | |
8 | import sys |
|
8 | import sys | |
9 | import time |
|
9 | import time | |
10 |
|
10 | |||
11 | from mercurial.node import nullrev |
|
11 | from mercurial.node import nullrev | |
12 | from mercurial import ( |
|
12 | from mercurial import ( | |
13 | ancestor, |
|
13 | ancestor, | |
14 | debugcommands, |
|
14 | debugcommands, | |
15 | hg, |
|
15 | hg, | |
16 | pycompat, |
|
16 | pycompat, | |
17 | ui as uimod, |
|
17 | ui as uimod, | |
18 | util, |
|
18 | util, | |
19 | ) |
|
19 | ) | |
20 |
|
20 | |||
21 | if pycompat.ispy3: |
|
21 | if pycompat.ispy3: | |
22 | long = int |
|
22 | long = int | |
23 | xrange = range |
|
23 | xrange = range | |
24 |
|
24 | |||
25 | def buildgraph(rng, nodes=100, rootprob=0.05, mergeprob=0.2, prevprob=0.7): |
|
25 | def buildgraph(rng, nodes=100, rootprob=0.05, mergeprob=0.2, prevprob=0.7): | |
26 | '''nodes: total number of nodes in the graph |
|
26 | '''nodes: total number of nodes in the graph | |
27 | rootprob: probability that a new node (not 0) will be a root |
|
27 | rootprob: probability that a new node (not 0) will be a root | |
28 | mergeprob: probability that, excluding a root a node will be a merge |
|
28 | mergeprob: probability that, excluding a root a node will be a merge | |
29 | prevprob: probability that p1 will be the previous node |
|
29 | prevprob: probability that p1 will be the previous node | |
30 |
|
30 | |||
31 | return value is a graph represented as an adjacency list. |
|
31 | return value is a graph represented as an adjacency list. | |
32 | ''' |
|
32 | ''' | |
33 | graph = [None] * nodes |
|
33 | graph = [None] * nodes | |
34 | for i in xrange(nodes): |
|
34 | for i in xrange(nodes): | |
35 | if i == 0 or rng.random() < rootprob: |
|
35 | if i == 0 or rng.random() < rootprob: | |
36 | graph[i] = [nullrev] |
|
36 | graph[i] = [nullrev] | |
37 | elif i == 1: |
|
37 | elif i == 1: | |
38 | graph[i] = [0] |
|
38 | graph[i] = [0] | |
39 | elif rng.random() < mergeprob: |
|
39 | elif rng.random() < mergeprob: | |
40 | if i == 2 or rng.random() < prevprob: |
|
40 | if i == 2 or rng.random() < prevprob: | |
41 | # p1 is prev |
|
41 | # p1 is prev | |
42 | p1 = i - 1 |
|
42 | p1 = i - 1 | |
43 | else: |
|
43 | else: | |
44 | p1 = rng.randrange(i - 1) |
|
44 | p1 = rng.randrange(i - 1) | |
45 | p2 = rng.choice(list(range(0, p1)) + list(range(p1 + 1, i))) |
|
45 | p2 = rng.choice(list(range(0, p1)) + list(range(p1 + 1, i))) | |
46 | graph[i] = [p1, p2] |
|
46 | graph[i] = [p1, p2] | |
47 | elif rng.random() < prevprob: |
|
47 | elif rng.random() < prevprob: | |
48 | graph[i] = [i - 1] |
|
48 | graph[i] = [i - 1] | |
49 | else: |
|
49 | else: | |
50 | graph[i] = [rng.randrange(i - 1)] |
|
50 | graph[i] = [rng.randrange(i - 1)] | |
51 |
|
51 | |||
52 | return graph |
|
52 | return graph | |
53 |
|
53 | |||
54 | def buildancestorsets(graph): |
|
54 | def buildancestorsets(graph): | |
55 | ancs = [None] * len(graph) |
|
55 | ancs = [None] * len(graph) | |
56 | for i in xrange(len(graph)): |
|
56 | for i in xrange(len(graph)): | |
57 | ancs[i] = {i} |
|
57 | ancs[i] = {i} | |
58 | if graph[i] == [nullrev]: |
|
58 | if graph[i] == [nullrev]: | |
59 | continue |
|
59 | continue | |
60 | for p in graph[i]: |
|
60 | for p in graph[i]: | |
61 | ancs[i].update(ancs[p]) |
|
61 | ancs[i].update(ancs[p]) | |
62 | return ancs |
|
62 | return ancs | |
63 |
|
63 | |||
64 | class naiveincrementalmissingancestors(object): |
|
64 | class naiveincrementalmissingancestors(object): | |
65 | def __init__(self, ancs, bases): |
|
65 | def __init__(self, ancs, bases): | |
66 | self.ancs = ancs |
|
66 | self.ancs = ancs | |
67 | self.bases = set(bases) |
|
67 | self.bases = set(bases) | |
68 | def addbases(self, newbases): |
|
68 | def addbases(self, newbases): | |
69 | self.bases.update(newbases) |
|
69 | self.bases.update(newbases) | |
70 | def removeancestorsfrom(self, revs): |
|
70 | def removeancestorsfrom(self, revs): | |
71 | for base in self.bases: |
|
71 | for base in self.bases: | |
72 | if base != nullrev: |
|
72 | if base != nullrev: | |
73 | revs.difference_update(self.ancs[base]) |
|
73 | revs.difference_update(self.ancs[base]) | |
74 | revs.discard(nullrev) |
|
74 | revs.discard(nullrev) | |
75 | def missingancestors(self, revs): |
|
75 | def missingancestors(self, revs): | |
76 | res = set() |
|
76 | res = set() | |
77 | for rev in revs: |
|
77 | for rev in revs: | |
78 | if rev != nullrev: |
|
78 | if rev != nullrev: | |
79 | res.update(self.ancs[rev]) |
|
79 | res.update(self.ancs[rev]) | |
80 | for base in self.bases: |
|
80 | for base in self.bases: | |
81 | if base != nullrev: |
|
81 | if base != nullrev: | |
82 | res.difference_update(self.ancs[base]) |
|
82 | res.difference_update(self.ancs[base]) | |
83 | return sorted(res) |
|
83 | return sorted(res) | |
84 |
|
84 | |||
85 | def test_missingancestors(seed, rng): |
|
85 | def test_missingancestors(seed, rng): | |
86 | # empirically observed to take around 1 second |
|
86 | # empirically observed to take around 1 second | |
87 | graphcount = 100 |
|
87 | graphcount = 100 | |
88 | testcount = 10 |
|
88 | testcount = 10 | |
89 | inccount = 10 |
|
89 | inccount = 10 | |
90 | nerrs = [0] |
|
90 | nerrs = [0] | |
91 | # the default mu and sigma give us a nice distribution of mostly |
|
91 | # the default mu and sigma give us a nice distribution of mostly | |
92 | # single-digit counts (including 0) with some higher ones |
|
92 | # single-digit counts (including 0) with some higher ones | |
93 | def lognormrandom(mu, sigma): |
|
93 | def lognormrandom(mu, sigma): | |
94 | return int(math.floor(rng.lognormvariate(mu, sigma))) |
|
94 | return int(math.floor(rng.lognormvariate(mu, sigma))) | |
95 |
|
95 | |||
96 | def samplerevs(nodes, mu=1.1, sigma=0.8): |
|
96 | def samplerevs(nodes, mu=1.1, sigma=0.8): | |
97 | count = min(lognormrandom(mu, sigma), len(nodes)) |
|
97 | count = min(lognormrandom(mu, sigma), len(nodes)) | |
98 | return rng.sample(nodes, count) |
|
98 | return rng.sample(nodes, count) | |
99 |
|
99 | |||
100 | def err(seed, graph, bases, seq, output, expected): |
|
100 | def err(seed, graph, bases, seq, output, expected): | |
101 | if nerrs[0] == 0: |
|
101 | if nerrs[0] == 0: | |
102 | print('seed:', hex(seed)[:-1], file=sys.stderr) |
|
102 | print('seed:', hex(seed)[:-1], file=sys.stderr) | |
103 | if gerrs[0] == 0: |
|
103 | if gerrs[0] == 0: | |
104 | print('graph:', graph, file=sys.stderr) |
|
104 | print('graph:', graph, file=sys.stderr) | |
105 | print('* bases:', bases, file=sys.stderr) |
|
105 | print('* bases:', bases, file=sys.stderr) | |
106 | print('* seq: ', seq, file=sys.stderr) |
|
106 | print('* seq: ', seq, file=sys.stderr) | |
107 | print('* output: ', output, file=sys.stderr) |
|
107 | print('* output: ', output, file=sys.stderr) | |
108 | print('* expected:', expected, file=sys.stderr) |
|
108 | print('* expected:', expected, file=sys.stderr) | |
109 | nerrs[0] += 1 |
|
109 | nerrs[0] += 1 | |
110 | gerrs[0] += 1 |
|
110 | gerrs[0] += 1 | |
111 |
|
111 | |||
112 | for g in xrange(graphcount): |
|
112 | for g in xrange(graphcount): | |
113 | graph = buildgraph(rng) |
|
113 | graph = buildgraph(rng) | |
114 | ancs = buildancestorsets(graph) |
|
114 | ancs = buildancestorsets(graph) | |
115 | gerrs = [0] |
|
115 | gerrs = [0] | |
116 | for _ in xrange(testcount): |
|
116 | for _ in xrange(testcount): | |
117 | # start from nullrev to include it as a possibility |
|
117 | # start from nullrev to include it as a possibility | |
118 | graphnodes = range(nullrev, len(graph)) |
|
118 | graphnodes = range(nullrev, len(graph)) | |
119 | bases = samplerevs(graphnodes) |
|
119 | bases = samplerevs(graphnodes) | |
120 |
|
120 | |||
121 | # fast algorithm |
|
121 | # fast algorithm | |
122 | inc = ancestor.incrementalmissingancestors(graph.__getitem__, bases) |
|
122 | inc = ancestor.incrementalmissingancestors(graph.__getitem__, bases) | |
123 | # reference slow algorithm |
|
123 | # reference slow algorithm | |
124 | naiveinc = naiveincrementalmissingancestors(ancs, bases) |
|
124 | naiveinc = naiveincrementalmissingancestors(ancs, bases) | |
125 | seq = [] |
|
125 | seq = [] | |
126 | revs = [] |
|
126 | revs = [] | |
127 | for _ in xrange(inccount): |
|
127 | for _ in xrange(inccount): | |
128 | if rng.random() < 0.2: |
|
128 | if rng.random() < 0.2: | |
129 | newbases = samplerevs(graphnodes) |
|
129 | newbases = samplerevs(graphnodes) | |
130 | seq.append(('addbases', newbases)) |
|
130 | seq.append(('addbases', newbases)) | |
131 | inc.addbases(newbases) |
|
131 | inc.addbases(newbases) | |
132 | naiveinc.addbases(newbases) |
|
132 | naiveinc.addbases(newbases) | |
133 | if rng.random() < 0.4: |
|
133 | if rng.random() < 0.4: | |
134 | # larger set so that there are more revs to remove from |
|
134 | # larger set so that there are more revs to remove from | |
135 | revs = samplerevs(graphnodes, mu=1.5) |
|
135 | revs = samplerevs(graphnodes, mu=1.5) | |
136 | seq.append(('removeancestorsfrom', revs)) |
|
136 | seq.append(('removeancestorsfrom', revs)) | |
137 | hrevs = set(revs) |
|
137 | hrevs = set(revs) | |
138 | rrevs = set(revs) |
|
138 | rrevs = set(revs) | |
139 | inc.removeancestorsfrom(hrevs) |
|
139 | inc.removeancestorsfrom(hrevs) | |
140 | naiveinc.removeancestorsfrom(rrevs) |
|
140 | naiveinc.removeancestorsfrom(rrevs) | |
141 | if hrevs != rrevs: |
|
141 | if hrevs != rrevs: | |
142 | err(seed, graph, bases, seq, sorted(hrevs), |
|
142 | err(seed, graph, bases, seq, sorted(hrevs), | |
143 | sorted(rrevs)) |
|
143 | sorted(rrevs)) | |
144 | else: |
|
144 | else: | |
145 | revs = samplerevs(graphnodes) |
|
145 | revs = samplerevs(graphnodes) | |
146 | seq.append(('missingancestors', revs)) |
|
146 | seq.append(('missingancestors', revs)) | |
147 | h = inc.missingancestors(revs) |
|
147 | h = inc.missingancestors(revs) | |
148 | r = naiveinc.missingancestors(revs) |
|
148 | r = naiveinc.missingancestors(revs) | |
149 | if h != r: |
|
149 | if h != r: | |
150 | err(seed, graph, bases, seq, h, r) |
|
150 | err(seed, graph, bases, seq, h, r) | |
151 |
|
151 | |||
152 | # graph is a dict of child->parent adjacency lists for this graph: |
|
152 | # graph is a dict of child->parent adjacency lists for this graph: | |
153 | # o 13 |
|
153 | # o 13 | |
154 | # | |
|
154 | # | | |
155 | # | o 12 |
|
155 | # | o 12 | |
156 | # | | |
|
156 | # | | | |
157 | # | | o 11 |
|
157 | # | | o 11 | |
158 | # | | |\ |
|
158 | # | | |\ | |
159 | # | | | | o 10 |
|
159 | # | | | | o 10 | |
160 | # | | | | | |
|
160 | # | | | | | | |
161 | # | o---+ | 9 |
|
161 | # | o---+ | 9 | |
162 | # | | | | | |
|
162 | # | | | | | | |
163 | # o | | | | 8 |
|
163 | # o | | | | 8 | |
164 | # / / / / |
|
164 | # / / / / | |
165 | # | | o | 7 |
|
165 | # | | o | 7 | |
166 | # | | | | |
|
166 | # | | | | | |
167 | # o---+ | 6 |
|
167 | # o---+ | 6 | |
168 | # / / / |
|
168 | # / / / | |
169 | # | | o 5 |
|
169 | # | | o 5 | |
170 | # | |/ |
|
170 | # | |/ | |
171 | # | o 4 |
|
171 | # | o 4 | |
172 | # | | |
|
172 | # | | | |
173 | # o | 3 |
|
173 | # o | 3 | |
174 | # | | |
|
174 | # | | | |
175 | # | o 2 |
|
175 | # | o 2 | |
176 | # |/ |
|
176 | # |/ | |
177 | # o 1 |
|
177 | # o 1 | |
178 | # | |
|
178 | # | | |
179 | # o 0 |
|
179 | # o 0 | |
180 |
|
180 | |||
181 |
graph = {0: [-1], 1: [0], 2: [1], 3: [1], 4: [2 |
|
181 | graph = {0: [-1, -1], 1: [0, -1], 2: [1, -1], 3: [1, -1], 4: [2, -1], | |
182 | 7: [4], 8: [-1], 9: [6, 7], 10: [5], 11: [3, 7], 12: [9], |
|
182 | 5: [4, -1], 6: [4, -1], 7: [4, -1], 8: [-1, -1], 9: [6, 7], | |
183 | 13: [8]} |
|
183 | 10: [5, -1], 11: [3, 7], 12: [9, -1], 13: [8, -1]} | |
184 |
|
184 | |||
185 | def genlazyancestors(revs, stoprev=0, inclusive=False): |
|
185 | def genlazyancestors(revs, stoprev=0, inclusive=False): | |
186 | print(("%% lazy ancestor set for %s, stoprev = %s, inclusive = %s" % |
|
186 | print(("%% lazy ancestor set for %s, stoprev = %s, inclusive = %s" % | |
187 | (revs, stoprev, inclusive))) |
|
187 | (revs, stoprev, inclusive))) | |
188 | return ancestor.lazyancestors(graph.get, revs, stoprev=stoprev, |
|
188 | return ancestor.lazyancestors(graph.get, revs, stoprev=stoprev, | |
189 | inclusive=inclusive) |
|
189 | inclusive=inclusive) | |
190 |
|
190 | |||
191 | def printlazyancestors(s, l): |
|
191 | def printlazyancestors(s, l): | |
192 | print('membership: %r' % [n for n in l if n in s]) |
|
192 | print('membership: %r' % [n for n in l if n in s]) | |
193 | print('iteration: %r' % list(s)) |
|
193 | print('iteration: %r' % list(s)) | |
194 |
|
194 | |||
195 | def test_lazyancestors(): |
|
195 | def test_lazyancestors(): | |
196 | # Empty revs |
|
196 | # Empty revs | |
197 | s = genlazyancestors([]) |
|
197 | s = genlazyancestors([]) | |
198 | printlazyancestors(s, [3, 0, -1]) |
|
198 | printlazyancestors(s, [3, 0, -1]) | |
199 |
|
199 | |||
200 | # Standard example |
|
200 | # Standard example | |
201 | s = genlazyancestors([11, 13]) |
|
201 | s = genlazyancestors([11, 13]) | |
202 | printlazyancestors(s, [11, 13, 7, 9, 8, 3, 6, 4, 1, -1, 0]) |
|
202 | printlazyancestors(s, [11, 13, 7, 9, 8, 3, 6, 4, 1, -1, 0]) | |
203 |
|
203 | |||
204 | # Standard with ancestry in the initial set (1 is ancestor of 3) |
|
204 | # Standard with ancestry in the initial set (1 is ancestor of 3) | |
205 | s = genlazyancestors([1, 3]) |
|
205 | s = genlazyancestors([1, 3]) | |
206 | printlazyancestors(s, [1, -1, 0]) |
|
206 | printlazyancestors(s, [1, -1, 0]) | |
207 |
|
207 | |||
208 | # Including revs |
|
208 | # Including revs | |
209 | s = genlazyancestors([11, 13], inclusive=True) |
|
209 | s = genlazyancestors([11, 13], inclusive=True) | |
210 | printlazyancestors(s, [11, 13, 7, 9, 8, 3, 6, 4, 1, -1, 0]) |
|
210 | printlazyancestors(s, [11, 13, 7, 9, 8, 3, 6, 4, 1, -1, 0]) | |
211 |
|
211 | |||
212 | # Test with stoprev |
|
212 | # Test with stoprev | |
213 | s = genlazyancestors([11, 13], stoprev=6) |
|
213 | s = genlazyancestors([11, 13], stoprev=6) | |
214 | printlazyancestors(s, [11, 13, 7, 9, 8, 3, 6, 4, 1, -1, 0]) |
|
214 | printlazyancestors(s, [11, 13, 7, 9, 8, 3, 6, 4, 1, -1, 0]) | |
215 | s = genlazyancestors([11, 13], stoprev=6, inclusive=True) |
|
215 | s = genlazyancestors([11, 13], stoprev=6, inclusive=True) | |
216 | printlazyancestors(s, [11, 13, 7, 9, 8, 3, 6, 4, 1, -1, 0]) |
|
216 | printlazyancestors(s, [11, 13, 7, 9, 8, 3, 6, 4, 1, -1, 0]) | |
217 |
|
217 | |||
218 | # Test with stoprev >= min(initrevs) |
|
218 | # Test with stoprev >= min(initrevs) | |
219 | s = genlazyancestors([11, 13], stoprev=11, inclusive=True) |
|
219 | s = genlazyancestors([11, 13], stoprev=11, inclusive=True) | |
220 | printlazyancestors(s, [11, 13, 7, 9, 8, 3, 6, 4, 1, -1, 0]) |
|
220 | printlazyancestors(s, [11, 13, 7, 9, 8, 3, 6, 4, 1, -1, 0]) | |
221 | s = genlazyancestors([11, 13], stoprev=12, inclusive=True) |
|
221 | s = genlazyancestors([11, 13], stoprev=12, inclusive=True) | |
222 | printlazyancestors(s, [11, 13, 7, 9, 8, 3, 6, 4, 1, -1, 0]) |
|
222 | printlazyancestors(s, [11, 13, 7, 9, 8, 3, 6, 4, 1, -1, 0]) | |
223 |
|
223 | |||
224 | # The C gca algorithm requires a real repo. These are textual descriptions of |
|
224 | # The C gca algorithm requires a real repo. These are textual descriptions of | |
225 | # DAGs that have been known to be problematic, and, optionally, known pairs |
|
225 | # DAGs that have been known to be problematic, and, optionally, known pairs | |
226 | # of revisions and their expected ancestor list. |
|
226 | # of revisions and their expected ancestor list. | |
227 | dagtests = [ |
|
227 | dagtests = [ | |
228 | (b'+2*2*2/*3/2', {}), |
|
228 | (b'+2*2*2/*3/2', {}), | |
229 | (b'+3*3/*2*2/*4*4/*4/2*4/2*2', {}), |
|
229 | (b'+3*3/*2*2/*4*4/*4/2*4/2*2', {}), | |
230 | (b'+2*2*/2*4*/4*/3*2/4', {(6, 7): [3, 5]}), |
|
230 | (b'+2*2*/2*4*/4*/3*2/4', {(6, 7): [3, 5]}), | |
231 | ] |
|
231 | ] | |
232 | def test_gca(): |
|
232 | def test_gca(): | |
233 | u = uimod.ui.load() |
|
233 | u = uimod.ui.load() | |
234 | for i, (dag, tests) in enumerate(dagtests): |
|
234 | for i, (dag, tests) in enumerate(dagtests): | |
235 | repo = hg.repository(u, b'gca%d' % i, create=1) |
|
235 | repo = hg.repository(u, b'gca%d' % i, create=1) | |
236 | cl = repo.changelog |
|
236 | cl = repo.changelog | |
237 | if not util.safehasattr(cl.index, 'ancestors'): |
|
237 | if not util.safehasattr(cl.index, 'ancestors'): | |
238 | # C version not available |
|
238 | # C version not available | |
239 | return |
|
239 | return | |
240 |
|
240 | |||
241 | debugcommands.debugbuilddag(u, repo, dag) |
|
241 | debugcommands.debugbuilddag(u, repo, dag) | |
242 | # Compare the results of the Python and C versions. This does not |
|
242 | # Compare the results of the Python and C versions. This does not | |
243 | # include choosing a winner when more than one gca exists -- we make |
|
243 | # include choosing a winner when more than one gca exists -- we make | |
244 | # sure both return exactly the same set of gcas. |
|
244 | # sure both return exactly the same set of gcas. | |
245 | # Also compare against expected results, if available. |
|
245 | # Also compare against expected results, if available. | |
246 | for a in cl: |
|
246 | for a in cl: | |
247 | for b in cl: |
|
247 | for b in cl: | |
248 | cgcas = sorted(cl.index.ancestors(a, b)) |
|
248 | cgcas = sorted(cl.index.ancestors(a, b)) | |
249 | pygcas = sorted(ancestor.ancestors(cl.parentrevs, a, b)) |
|
249 | pygcas = sorted(ancestor.ancestors(cl.parentrevs, a, b)) | |
250 | expected = None |
|
250 | expected = None | |
251 | if (a, b) in tests: |
|
251 | if (a, b) in tests: | |
252 | expected = tests[(a, b)] |
|
252 | expected = tests[(a, b)] | |
253 | if cgcas != pygcas or (expected and cgcas != expected): |
|
253 | if cgcas != pygcas or (expected and cgcas != expected): | |
254 | print("test_gca: for dag %s, gcas for %d, %d:" |
|
254 | print("test_gca: for dag %s, gcas for %d, %d:" | |
255 | % (dag, a, b)) |
|
255 | % (dag, a, b)) | |
256 | print(" C returned: %s" % cgcas) |
|
256 | print(" C returned: %s" % cgcas) | |
257 | print(" Python returned: %s" % pygcas) |
|
257 | print(" Python returned: %s" % pygcas) | |
258 | if expected: |
|
258 | if expected: | |
259 | print(" expected: %s" % expected) |
|
259 | print(" expected: %s" % expected) | |
260 |
|
260 | |||
261 | def main(): |
|
261 | def main(): | |
262 | seed = None |
|
262 | seed = None | |
263 | opts, args = getopt.getopt(sys.argv[1:], 's:', ['seed=']) |
|
263 | opts, args = getopt.getopt(sys.argv[1:], 's:', ['seed=']) | |
264 | for o, a in opts: |
|
264 | for o, a in opts: | |
265 | if o in ('-s', '--seed'): |
|
265 | if o in ('-s', '--seed'): | |
266 | seed = long(a, base=0) # accepts base 10 or 16 strings |
|
266 | seed = long(a, base=0) # accepts base 10 or 16 strings | |
267 |
|
267 | |||
268 | if seed is None: |
|
268 | if seed is None: | |
269 | try: |
|
269 | try: | |
270 | seed = long(binascii.hexlify(os.urandom(16)), 16) |
|
270 | seed = long(binascii.hexlify(os.urandom(16)), 16) | |
271 | except AttributeError: |
|
271 | except AttributeError: | |
272 | seed = long(time.time() * 1000) |
|
272 | seed = long(time.time() * 1000) | |
273 |
|
273 | |||
274 | rng = random.Random(seed) |
|
274 | rng = random.Random(seed) | |
275 | test_missingancestors(seed, rng) |
|
275 | test_missingancestors(seed, rng) | |
276 | test_lazyancestors() |
|
276 | test_lazyancestors() | |
277 | test_gca() |
|
277 | test_gca() | |
278 |
|
278 | |||
279 | if __name__ == '__main__': |
|
279 | if __name__ == '__main__': | |
280 | main() |
|
280 | main() |
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