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branchmap: update cache of 'unserved' filter on new changesets...
branchmap: update cache of 'unserved' filter on new changesets The `commitctx` and `addchangegroup` methods of repo upgrade branchcache after completion. This behavior aims to keep the branchcache in sync for read only process as hgweb. See ee317dbfb9d0 for details. Since changelog filtering is used, those calls only update the cache for unfiltered repo. One of no interest for typical read only process like hgweb. Note: By chance in basic case, `repo.unfiltered() == repo.filtered('unserved')` This changesets have the "unserved" cache updated instead. I think this is the only cache that matter for hgweb. We could imagine updating all possible branchcaches instead but: - I'm not sure it would have any benefit impact. It may even increase the odd of all cache being invalidated. - This is more complicated change. So I'm going for updating a single cache only which is already better that updating a cache nobody cares about. This changeset have a few expected impact on the testsuite are different cache are updated.

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graphmod.py
368 lines | 11.8 KiB | text/x-python | PythonLexer
Dirkjan Ochtman
add graph page to hgweb
r6691 # Revision graph generator for Mercurial
#
# Copyright 2008 Dirkjan Ochtman <dirkjan@ochtman.nl>
# Copyright 2007 Joel Rosdahl <joel@rosdahl.net>
#
Martin Geisler
updated license to be explicit about GPL version 2
r8225 # This software may be used and distributed according to the terms of the
Matt Mackall
Update license to GPLv2+
r10263 # GNU General Public License version 2 or any later version.
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Peter Arrenbrecht
graphmod/graphlog: make dag walks carry data as type, payload
r8840 """supports walking the history as DAGs suitable for graphical output
The most basic format we use is that of::
(id, type, data, [parentids])
The node and parent ids are arbitrary integers which identify a node in the
context of the graph returned. Type is a constant specifying the node type.
Data depends on type.
"""
from mercurial.node import nullrev
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r16132 import util
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r8840
CHANGESET = 'C'
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r14042 def dagwalker(repo, revs):
"""cset DAG generator yielding (id, CHANGESET, ctx, [parentids]) tuples
This generator function walks through revisions (which should be ordered
from bigger to lower). It returns a tuple for each node. The node and parent
ids are arbitrary integers which identify a node in the context of the graph
returned.
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r8836 """
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r14042 if not revs:
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r14087 return
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r14042
cl = repo.changelog
lowestrev = min(revs)
gpcache = {}
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r14088 knownrevs = set(revs)
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r14087 for rev in revs:
ctx = repo[rev]
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r14088 parents = sorted(set([p.rev() for p in ctx.parents()
if p.rev() in knownrevs]))
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r14042 mpars = [p.rev() for p in ctx.parents() if
p.rev() != nullrev and p.rev() not in parents]
for mpar in mpars:
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r14131 gp = gpcache.get(mpar)
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r14042 if gp is None:
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r14131 gp = gpcache[mpar] = grandparent(cl, lowestrev, revs, mpar)
if not gp:
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r14087 parents.append(mpar)
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r14131 else:
parents.extend(g for g in gp if g not in parents)
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r14042
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r14087 yield (ctx.rev(), CHANGESET, ctx, parents)
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r8836
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graphmod/graphlog: extract nodelistwalk
r8837 def nodes(repo, nodes):
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r8840 """cset DAG generator yielding (id, CHANGESET, ctx, [parentids]) tuples
This generator function walks the given nodes. It only returns parents
that are in nodes, too.
"""
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r8837 include = set(nodes)
for node in nodes:
ctx = repo[node]
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r12951 parents = set([p.rev() for p in ctx.parents() if p.node() in include])
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r8840 yield (ctx.rev(), CHANGESET, ctx, sorted(parents))
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r8837
Constantine Linnick
graph: in hgrc specify line width for main branch...
r16129 def colored(dag, repo):
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r8842 """annotates a DAG with colored edge information
For each DAG node this function emits tuples::
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r8842 (id, type, data, (col, color), [(col, nextcol, color)])
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r8842 with the following new elements:
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r8835 - Tuple (col, color) with column and color index for the current node
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r8842 - A list of tuples indicating the edges between the current node and its
parents.
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r6691 """
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r8841 seen = []
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r6691 colors = {}
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r8841 newcolor = 1
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r16129 config = {}
for key, val in repo.ui.configitems('graph'):
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r16131 if '.' in key:
branch, setting = key.rsplit('.', 1)
# Validation
if setting == "width" and val.isdigit():
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r16138 config.setdefault(branch, {})[setting] = int(val)
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r16131 elif setting == "color" and val.isalnum():
config.setdefault(branch, {})[setting] = val
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r16129
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r16132 if config:
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r16138 getconf = util.lrucachefunc(
lambda rev: config.get(repo[rev].branch(), {}))
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r16132 else:
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r16138 getconf = lambda rev: {}
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r16129
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r8842 for (cur, type, data, parents) in dag:
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r8841 # Compute seen and next
if cur not in seen:
seen.append(cur) # new head
colors[cur] = newcolor
newcolor += 1
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r8841 col = seen.index(cur)
color = colors.pop(cur)
next = seen[:]
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r8842 # Add parents to next
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r6691 addparents = [p for p in parents if p not in next]
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r8841 next[col:col + 1] = addparents
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# Set colors for the parents
for i, p in enumerate(addparents):
if not i:
colors[p] = color
else:
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r8841 colors[p] = newcolor
newcolor += 1
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# Add edges to the graph
edges = []
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r8841 for ecol, eid in enumerate(seen):
if eid in next:
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r16138 bconf = getconf(eid)
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r16129 edges.append((
ecol, next.index(eid), colors[eid],
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r16138 bconf.get('width', -1),
bconf.get('color', '')))
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r8842 elif eid == cur:
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r6691 for p in parents:
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r16138 bconf = getconf(p)
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r16129 edges.append((
ecol, next.index(p), color,
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r16138 bconf.get('width', -1),
bconf.get('color', '')))
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# Yield and move on
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r8842 yield (cur, type, data, (col, color), edges)
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r8841 seen = next
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r14042
def grandparent(cl, lowestrev, roots, head):
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r14131 """Return all ancestors of head in roots which revision is
greater or equal to lowestrev.
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r14042 """
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r14131 pending = set([head])
seen = set()
kept = set()
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r14042 llowestrev = max(nullrev, lowestrev)
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r14131 while pending:
r = pending.pop()
if r >= llowestrev and r not in seen:
if r in roots:
kept.add(r)
else:
pending.update([p for p in cl.parentrevs(r)])
seen.add(r)
return sorted(kept)
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graphlog: extract ascii drawing code into graphmod
r17179
def asciiedges(type, char, lines, seen, rev, parents):
"""adds edge info to changelog DAG walk suitable for ascii()"""
if rev not in seen:
seen.append(rev)
nodeidx = seen.index(rev)
knownparents = []
newparents = []
for parent in parents:
if parent in seen:
knownparents.append(parent)
else:
newparents.append(parent)
ncols = len(seen)
nextseen = seen[:]
nextseen[nodeidx:nodeidx + 1] = newparents
edges = [(nodeidx, nextseen.index(p)) for p in knownparents]
while len(newparents) > 2:
# ascii() only knows how to add or remove a single column between two
# calls. Nodes with more than two parents break this constraint so we
# introduce intermediate expansion lines to grow the active node list
# slowly.
edges.append((nodeidx, nodeidx))
edges.append((nodeidx, nodeidx + 1))
nmorecols = 1
yield (type, char, lines, (nodeidx, edges, ncols, nmorecols))
char = '\\'
lines = []
nodeidx += 1
ncols += 1
edges = []
del newparents[0]
if len(newparents) > 0:
edges.append((nodeidx, nodeidx))
if len(newparents) > 1:
edges.append((nodeidx, nodeidx + 1))
nmorecols = len(nextseen) - ncols
seen[:] = nextseen
yield (type, char, lines, (nodeidx, edges, ncols, nmorecols))
def _fixlongrightedges(edges):
for (i, (start, end)) in enumerate(edges):
if end > start:
edges[i] = (start, end + 1)
def _getnodelineedgestail(
node_index, p_node_index, n_columns, n_columns_diff, p_diff, fix_tail):
if fix_tail and n_columns_diff == p_diff and n_columns_diff != 0:
# Still going in the same non-vertical direction.
if n_columns_diff == -1:
start = max(node_index + 1, p_node_index)
tail = ["|", " "] * (start - node_index - 1)
tail.extend(["/", " "] * (n_columns - start))
return tail
else:
return ["\\", " "] * (n_columns - node_index - 1)
else:
return ["|", " "] * (n_columns - node_index - 1)
def _drawedges(edges, nodeline, interline):
for (start, end) in edges:
if start == end + 1:
interline[2 * end + 1] = "/"
elif start == end - 1:
interline[2 * start + 1] = "\\"
elif start == end:
interline[2 * start] = "|"
else:
if 2 * end >= len(nodeline):
continue
nodeline[2 * end] = "+"
if start > end:
(start, end) = (end, start)
for i in range(2 * start + 1, 2 * end):
if nodeline[i] != "+":
nodeline[i] = "-"
def _getpaddingline(ni, n_columns, edges):
line = []
line.extend(["|", " "] * ni)
if (ni, ni - 1) in edges or (ni, ni) in edges:
# (ni, ni - 1) (ni, ni)
# | | | | | | | |
# +---o | | o---+
# | | c | | c | |
# | |/ / | |/ /
# | | | | | |
c = "|"
else:
c = " "
line.extend([c, " "])
line.extend(["|", " "] * (n_columns - ni - 1))
return line
def asciistate():
"""returns the initial value for the "state" argument to ascii()"""
return [0, 0]
def ascii(ui, state, type, char, text, coldata):
"""prints an ASCII graph of the DAG
takes the following arguments (one call per node in the graph):
- ui to write to
- Somewhere to keep the needed state in (init to asciistate())
- Column of the current node in the set of ongoing edges.
- Type indicator of node data, usually 'C' for changesets.
- Payload: (char, lines):
- Character to use as node's symbol.
- List of lines to display as the node's text.
- Edges; a list of (col, next_col) indicating the edges between
the current node and its parents.
- Number of columns (ongoing edges) in the current revision.
- The difference between the number of columns (ongoing edges)
in the next revision and the number of columns (ongoing edges)
in the current revision. That is: -1 means one column removed;
0 means no columns added or removed; 1 means one column added.
"""
idx, edges, ncols, coldiff = coldata
assert -2 < coldiff < 2
if coldiff == -1:
# Transform
#
# | | | | | |
# o | | into o---+
# |X / |/ /
# | | | |
_fixlongrightedges(edges)
# add_padding_line says whether to rewrite
#
# | | | | | | | |
# | o---+ into | o---+
# | / / | | | # <--- padding line
# o | | | / /
# o | |
add_padding_line = (len(text) > 2 and coldiff == -1 and
[x for (x, y) in edges if x + 1 < y])
# fix_nodeline_tail says whether to rewrite
#
# | | o | | | | o | |
# | | |/ / | | |/ /
# | o | | into | o / / # <--- fixed nodeline tail
# | |/ / | |/ /
# o | | o | |
fix_nodeline_tail = len(text) <= 2 and not add_padding_line
# nodeline is the line containing the node character (typically o)
nodeline = ["|", " "] * idx
nodeline.extend([char, " "])
nodeline.extend(
_getnodelineedgestail(idx, state[1], ncols, coldiff,
state[0], fix_nodeline_tail))
# shift_interline is the line containing the non-vertical
# edges between this entry and the next
shift_interline = ["|", " "] * idx
if coldiff == -1:
n_spaces = 1
edge_ch = "/"
elif coldiff == 0:
n_spaces = 2
edge_ch = "|"
else:
n_spaces = 3
edge_ch = "\\"
shift_interline.extend(n_spaces * [" "])
shift_interline.extend([edge_ch, " "] * (ncols - idx - 1))
# draw edges from the current node to its parents
_drawedges(edges, nodeline, shift_interline)
# lines is the list of all graph lines to print
lines = [nodeline]
if add_padding_line:
lines.append(_getpaddingline(idx, ncols, edges))
lines.append(shift_interline)
# make sure that there are as many graph lines as there are
# log strings
while len(text) < len(lines):
text.append("")
if len(lines) < len(text):
extra_interline = ["|", " "] * (ncols + coldiff)
while len(lines) < len(text):
lines.append(extra_interline)
# print lines
indentation_level = max(ncols, ncols + coldiff)
for (line, logstr) in zip(lines, text):
ln = "%-*s %s" % (2 * indentation_level, "".join(line), logstr)
ui.write(ln.rstrip() + '\n')
# ... and start over
state[0] = coldiff
state[1] = idx