##// END OF EJS Templates
delta-find: split the generic part of `_pre_filter_rev` in a method...
delta-find: split the generic part of `_pre_filter_rev` in a method Since `_pre_filter_rev` contains logic from various sources of constraint, we start splitting is in subfunction to clarify and document the grouping.

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deltas.py
1722 lines | 60.7 KiB | text/x-python | PythonLexer
Boris Feld
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r39366 # revlogdeltas.py - Logic around delta computation for revlog
#
Raphaël Gomès
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r47575 # Copyright 2005-2007 Olivia Mackall <olivia@selenic.com>
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r39366 # Copyright 2018 Octobus <contact@octobus.net>
#
# This software may be used and distributed according to the terms of the
# GNU General Public License version 2 or any later version.
"""Helper class to compute deltas stored inside revlogs"""
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r39529 import collections
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r39366 import struct
# import stuff from node for others to import from revlog
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r43346 from ..node import nullrev
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r39366 from ..i18n import _
from .constants import (
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r48245 COMP_MODE_DEFAULT,
COMP_MODE_INLINE,
COMP_MODE_PLAIN,
delta-find: add a delta-reuse policy that blindly accepts incoming deltas...
r50662 DELTA_BASE_REUSE_FORCE,
find-delta: pass the cache-delta usage policy alongside the cache-delta...
r50572 DELTA_BASE_REUSE_NO,
deltas: add code to display information about the result of `finddeltainfo`...
r50121 KIND_CHANGELOG,
KIND_FILELOG,
KIND_MANIFESTLOG,
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r39366 REVIDX_ISCENSORED,
REVIDX_RAWTEXT_CHANGING_FLAGS,
)
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r43346 from ..thirdparty import attr
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from .. import (
error,
mdiff,
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r41141 util,
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r39366 )
Augie Fackler
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r43346 from . import flagutil
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r43262
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r39366 # maximum <delta-chain-data>/<revision-text-length> ratio
LIMIT_DELTA2TEXT = 2
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r43346
Gregory Szorc
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r49801 class _testrevlog:
Boris Feld
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r39366 """minimalist fake revlog to use in doctests"""
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r40677 def __init__(self, data, density=0.5, mingap=0, snapshot=()):
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r39366 """data is an list of revision payload boundaries"""
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r51938 from .. import revlog
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r39366 self._data = data
revlog: use the new Config classes in _testrevlog...
r51938 self.data_config = revlog.DataConfig()
self.data_config.sr_density_threshold = density
self.data_config.sr_min_gap_size = mingap
self.delta_config = revlog.DeltaConfig()
self.feature_config = revlog.FeatureConfig()
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r40677 self._snapshot = set(snapshot)
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r40745 self.index = None
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def start(self, rev):
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r41110 if rev == nullrev:
return 0
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r39366 if rev == 0:
return 0
return self._data[rev - 1]
def end(self, rev):
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r41110 if rev == nullrev:
return 0
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r39366 return self._data[rev]
def length(self, rev):
return self.end(rev) - self.start(rev)
def __len__(self):
return len(self._data)
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r40677 def issnapshot(self, rev):
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r41110 if rev == nullrev:
return True
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r40677 return rev in self._snapshot
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r40640 def slicechunk(revlog, revs, targetsize=None):
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r39366 """slice revs to reduce the amount of unrelated data to be read from disk.
``revs`` is sliced into groups that should be read in one time.
Assume that revs are sorted.
The initial chunk is sliced until the overall density (payload/chunks-span
revlog: remove legacy usage of `_srdensitythreshold`...
r51955 ratio) is above `revlog.data_config.sr_density_threshold`. No gap smaller
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r51956 than `revlog.data_config.sr_min_gap_size` is skipped.
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If `targetsize` is set, no chunk larger than `targetsize` will be yield.
For consistency with other slicing choice, this limit won't go lower than
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r51956 `revlog.data_config.sr_min_gap_size`.
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If individual revisions chunk are larger than this limit, they will still
be raised individually.
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r40678 >>> data = [
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r39366 ... 5, #00 (5)
... 10, #01 (5)
... 12, #02 (2)
... 12, #03 (empty)
... 27, #04 (15)
... 31, #05 (4)
... 31, #06 (empty)
... 42, #07 (11)
... 47, #08 (5)
... 47, #09 (empty)
... 48, #10 (1)
... 51, #11 (3)
... 74, #12 (23)
... 85, #13 (11)
... 86, #14 (1)
... 91, #15 (5)
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r40678 ... ]
>>> revlog = _testrevlog(data, snapshot=range(16))
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>>> list(slicechunk(revlog, list(range(16))))
[[0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15]]
>>> list(slicechunk(revlog, [0, 15]))
[[0], [15]]
>>> list(slicechunk(revlog, [0, 11, 15]))
[[0], [11], [15]]
>>> list(slicechunk(revlog, [0, 11, 13, 15]))
[[0], [11, 13, 15]]
>>> list(slicechunk(revlog, [1, 2, 3, 5, 8, 10, 11, 14]))
[[1, 2], [5, 8, 10, 11], [14]]
Slicing with a maximum chunk size
>>> list(slicechunk(revlog, [0, 11, 13, 15], targetsize=15))
[[0], [11], [13], [15]]
>>> list(slicechunk(revlog, [0, 11, 13, 15], targetsize=20))
[[0], [11], [13, 15]]
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r41110
Slicing involving nullrev
>>> list(slicechunk(revlog, [-1, 0, 11, 13, 15], targetsize=20))
[[-1, 0], [11], [13, 15]]
>>> list(slicechunk(revlog, [-1, 13, 15], targetsize=5))
[[-1], [13], [15]]
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r39366 """
if targetsize is not None:
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r51956 targetsize = max(targetsize, revlog.data_config.sr_min_gap_size)
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r39366 # targetsize should not be specified when evaluating delta candidates:
# * targetsize is used to ensure we stay within specification when reading,
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r40745 densityslicing = getattr(revlog.index, 'slicechunktodensity', None)
if densityslicing is None:
densityslicing = lambda x, y, z: _slicechunktodensity(revlog, x, y, z)
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r43346 for chunk in densityslicing(
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r51956 revs,
revlog.data_config.sr_density_threshold,
revlog.data_config.sr_min_gap_size,
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r43346 ):
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r39366 for subchunk in _slicechunktosize(revlog, chunk, targetsize):
yield subchunk
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r39366 def _slicechunktosize(revlog, revs, targetsize=None):
"""slice revs to match the target size
This is intended to be used on chunk that density slicing selected by that
are still too large compared to the read garantee of revlog. This might
happens when "minimal gap size" interrupted the slicing or when chain are
built in a way that create large blocks next to each other.
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r40678 >>> data = [
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r39366 ... 3, #0 (3)
... 5, #1 (2)
... 6, #2 (1)
... 8, #3 (2)
... 8, #4 (empty)
... 11, #5 (3)
... 12, #6 (1)
... 13, #7 (1)
... 14, #8 (1)
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r40678 ... ]
== All snapshots cases ==
>>> revlog = _testrevlog(data, snapshot=range(9))
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Cases where chunk is already small enough
>>> list(_slicechunktosize(revlog, [0], 3))
[[0]]
>>> list(_slicechunktosize(revlog, [6, 7], 3))
[[6, 7]]
>>> list(_slicechunktosize(revlog, [0], None))
[[0]]
>>> list(_slicechunktosize(revlog, [6, 7], None))
[[6, 7]]
cases where we need actual slicing
>>> list(_slicechunktosize(revlog, [0, 1], 3))
[[0], [1]]
>>> list(_slicechunktosize(revlog, [1, 3], 3))
[[1], [3]]
>>> list(_slicechunktosize(revlog, [1, 2, 3], 3))
[[1, 2], [3]]
>>> list(_slicechunktosize(revlog, [3, 5], 3))
[[3], [5]]
>>> list(_slicechunktosize(revlog, [3, 4, 5], 3))
[[3], [5]]
>>> list(_slicechunktosize(revlog, [5, 6, 7, 8], 3))
[[5], [6, 7, 8]]
>>> list(_slicechunktosize(revlog, [0, 1, 2, 3, 4, 5, 6, 7, 8], 3))
[[0], [1, 2], [3], [5], [6, 7, 8]]
Case with too large individual chunk (must return valid chunk)
>>> list(_slicechunktosize(revlog, [0, 1], 2))
[[0], [1]]
>>> list(_slicechunktosize(revlog, [1, 3], 1))
[[1], [3]]
>>> list(_slicechunktosize(revlog, [3, 4, 5], 2))
[[3], [5]]
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== No Snapshot cases ==
>>> revlog = _testrevlog(data)
Cases where chunk is already small enough
>>> list(_slicechunktosize(revlog, [0], 3))
[[0]]
>>> list(_slicechunktosize(revlog, [6, 7], 3))
[[6, 7]]
>>> list(_slicechunktosize(revlog, [0], None))
[[0]]
>>> list(_slicechunktosize(revlog, [6, 7], None))
[[6, 7]]
cases where we need actual slicing
>>> list(_slicechunktosize(revlog, [0, 1], 3))
[[0], [1]]
>>> list(_slicechunktosize(revlog, [1, 3], 3))
[[1], [3]]
>>> list(_slicechunktosize(revlog, [1, 2, 3], 3))
[[1], [2, 3]]
>>> list(_slicechunktosize(revlog, [3, 5], 3))
[[3], [5]]
>>> list(_slicechunktosize(revlog, [3, 4, 5], 3))
[[3], [4, 5]]
>>> list(_slicechunktosize(revlog, [5, 6, 7, 8], 3))
[[5], [6, 7, 8]]
>>> list(_slicechunktosize(revlog, [0, 1, 2, 3, 4, 5, 6, 7, 8], 3))
[[0], [1, 2], [3], [5], [6, 7, 8]]
Case with too large individual chunk (must return valid chunk)
>>> list(_slicechunktosize(revlog, [0, 1], 2))
[[0], [1]]
>>> list(_slicechunktosize(revlog, [1, 3], 1))
[[1], [3]]
>>> list(_slicechunktosize(revlog, [3, 4, 5], 2))
[[3], [5]]
== mixed case ==
>>> revlog = _testrevlog(data, snapshot=[0, 1, 2])
>>> list(_slicechunktosize(revlog, list(range(9)), 5))
[[0, 1], [2], [3, 4, 5], [6, 7, 8]]
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r39366 """
assert targetsize is None or 0 <= targetsize
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r40678 startdata = revlog.start(revs[0])
enddata = revlog.end(revs[-1])
fullspan = enddata - startdata
if targetsize is None or fullspan <= targetsize:
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r39366 yield revs
return
startrevidx = 0
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r40693 endrevidx = 1
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r39366 iterrevs = enumerate(revs)
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r43346 next(iterrevs) # skip first rev.
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r40678 # first step: get snapshots out of the way
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r39366 for idx, r in iterrevs:
span = revlog.end(r) - startdata
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r40678 snapshot = revlog.issnapshot(r)
if span <= targetsize and snapshot:
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r40693 endrevidx = idx + 1
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r39366 else:
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r40693 chunk = _trimchunk(revlog, revs, startrevidx, endrevidx)
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r39366 if chunk:
yield chunk
startrevidx = idx
startdata = revlog.start(r)
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r40693 endrevidx = idx + 1
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r40678 if not snapshot:
break
# for the others, we use binary slicing to quickly converge toward valid
# chunks (otherwise, we might end up looking for start/end of many
# revisions). This logic is not looking for the perfect slicing point, it
# focuses on quickly converging toward valid chunks.
nbitem = len(revs)
while (enddata - startdata) > targetsize:
endrevidx = nbitem
if nbitem - startrevidx <= 1:
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r43346 break # protect against individual chunk larger than limit
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r40678 localenddata = revlog.end(revs[endrevidx - 1])
span = localenddata - startdata
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r40690 while span > targetsize:
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r40678 if endrevidx - startrevidx <= 1:
Augie Fackler
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r43346 break # protect against individual chunk larger than limit
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r40678 endrevidx -= (endrevidx - startrevidx) // 2
localenddata = revlog.end(revs[endrevidx - 1])
span = localenddata - startdata
chunk = _trimchunk(revlog, revs, startrevidx, endrevidx)
if chunk:
yield chunk
startrevidx = endrevidx
startdata = revlog.start(revs[startrevidx])
chunk = _trimchunk(revlog, revs, startrevidx)
if chunk:
yield chunk
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Augie Fackler
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r43346
def _slicechunktodensity(revlog, revs, targetdensity=0.5, mingapsize=0):
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r39366 """slice revs to reduce the amount of unrelated data to be read from disk.
``revs`` is sliced into groups that should be read in one time.
Assume that revs are sorted.
The initial chunk is sliced until the overall density (payload/chunks-span
ratio) is above `targetdensity`. No gap smaller than `mingapsize` is
skipped.
>>> revlog = _testrevlog([
... 5, #00 (5)
... 10, #01 (5)
... 12, #02 (2)
... 12, #03 (empty)
... 27, #04 (15)
... 31, #05 (4)
... 31, #06 (empty)
... 42, #07 (11)
... 47, #08 (5)
... 47, #09 (empty)
... 48, #10 (1)
... 51, #11 (3)
... 74, #12 (23)
... 85, #13 (11)
... 86, #14 (1)
... 91, #15 (5)
... ])
>>> list(_slicechunktodensity(revlog, list(range(16))))
[[0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15]]
>>> list(_slicechunktodensity(revlog, [0, 15]))
[[0], [15]]
>>> list(_slicechunktodensity(revlog, [0, 11, 15]))
[[0], [11], [15]]
>>> list(_slicechunktodensity(revlog, [0, 11, 13, 15]))
[[0], [11, 13, 15]]
>>> list(_slicechunktodensity(revlog, [1, 2, 3, 5, 8, 10, 11, 14]))
[[1, 2], [5, 8, 10, 11], [14]]
>>> list(_slicechunktodensity(revlog, [1, 2, 3, 5, 8, 10, 11, 14],
... mingapsize=20))
[[1, 2, 3, 5, 8, 10, 11], [14]]
>>> list(_slicechunktodensity(revlog, [1, 2, 3, 5, 8, 10, 11, 14],
... targetdensity=0.95))
[[1, 2], [5], [8, 10, 11], [14]]
>>> list(_slicechunktodensity(revlog, [1, 2, 3, 5, 8, 10, 11, 14],
... targetdensity=0.95, mingapsize=12))
[[1, 2], [5, 8, 10, 11], [14]]
"""
start = revlog.start
length = revlog.length
if len(revs) <= 1:
yield revs
return
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r40640 deltachainspan = segmentspan(revlog, revs)
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if deltachainspan < mingapsize:
yield revs
return
readdata = deltachainspan
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r40642 chainpayload = sum(length(r) for r in revs)
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if deltachainspan:
density = chainpayload / float(deltachainspan)
else:
density = 1.0
if density >= targetdensity:
yield revs
return
# Store the gaps in a heap to have them sorted by decreasing size
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r40643 gaps = []
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r39366 prevend = None
for i, rev in enumerate(revs):
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r40640 revstart = start(rev)
revlen = length(rev)
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# Skip empty revisions to form larger holes
if revlen == 0:
continue
if prevend is not None:
gapsize = revstart - prevend
# only consider holes that are large enough
if gapsize > mingapsize:
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r40643 gaps.append((gapsize, i))
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prevend = revstart + revlen
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r40643 # sort the gaps to pop them from largest to small
gaps.sort()
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# Collect the indices of the largest holes until the density is acceptable
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r40644 selected = []
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r40643 while gaps and density < targetdensity:
gapsize, gapidx = gaps.pop()
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r40644 selected.append(gapidx)
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# the gap sizes are stored as negatives to be sorted decreasingly
# by the heap
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r40643 readdata -= gapsize
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r39366 if readdata > 0:
density = chainpayload / float(readdata)
else:
density = 1.0
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r40644 selected.sort()
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# Cut the revs at collected indices
previdx = 0
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r40644 for idx in selected:
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chunk = _trimchunk(revlog, revs, previdx, idx)
if chunk:
yield chunk
previdx = idx
chunk = _trimchunk(revlog, revs, previdx)
if chunk:
yield chunk
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r39366 def _trimchunk(revlog, revs, startidx, endidx=None):
"""returns revs[startidx:endidx] without empty trailing revs
Doctest Setup
>>> revlog = _testrevlog([
... 5, #0
... 10, #1
... 12, #2
... 12, #3 (empty)
... 17, #4
... 21, #5
... 21, #6 (empty)
... ])
Contiguous cases:
>>> _trimchunk(revlog, [0, 1, 2, 3, 4, 5, 6], 0)
[0, 1, 2, 3, 4, 5]
>>> _trimchunk(revlog, [0, 1, 2, 3, 4, 5, 6], 0, 5)
[0, 1, 2, 3, 4]
>>> _trimchunk(revlog, [0, 1, 2, 3, 4, 5, 6], 0, 4)
[0, 1, 2]
>>> _trimchunk(revlog, [0, 1, 2, 3, 4, 5, 6], 2, 4)
[2]
>>> _trimchunk(revlog, [0, 1, 2, 3, 4, 5, 6], 3)
[3, 4, 5]
>>> _trimchunk(revlog, [0, 1, 2, 3, 4, 5, 6], 3, 5)
[3, 4]
Discontiguous cases:
>>> _trimchunk(revlog, [1, 3, 5, 6], 0)
[1, 3, 5]
>>> _trimchunk(revlog, [1, 3, 5, 6], 0, 2)
[1]
>>> _trimchunk(revlog, [1, 3, 5, 6], 1, 3)
[3, 5]
>>> _trimchunk(revlog, [1, 3, 5, 6], 1)
[3, 5]
"""
length = revlog.length
if endidx is None:
endidx = len(revs)
# If we have a non-emtpy delta candidate, there are nothing to trim
if revs[endidx - 1] < len(revlog):
# Trim empty revs at the end, except the very first revision of a chain
Augie Fackler
formatting: blacken the codebase...
r43346 while (
endidx > 1 and endidx > startidx and length(revs[endidx - 1]) == 0
):
Boris Feld
revlog: split functionality related to deltas computation in a new module...
r39366 endidx -= 1
return revs[startidx:endidx]
Augie Fackler
formatting: blacken the codebase...
r43346
Boris Feld
sparse-revlog: drop unused deltainfo parameter from segmentspan...
r40641 def segmentspan(revlog, revs):
Boris Feld
revlog: split functionality related to deltas computation in a new module...
r39366 """Get the byte span of a segment of revisions
revs is a sorted array of revision numbers
>>> revlog = _testrevlog([
... 5, #0
... 10, #1
... 12, #2
... 12, #3 (empty)
... 17, #4
... ])
>>> segmentspan(revlog, [0, 1, 2, 3, 4])
17
>>> segmentspan(revlog, [0, 4])
17
>>> segmentspan(revlog, [3, 4])
5
>>> segmentspan(revlog, [1, 2, 3,])
7
>>> segmentspan(revlog, [1, 3])
7
"""
if not revs:
return 0
Boris Feld
sparse-revlog: drop unused deltainfo parameter from segmentspan...
r40641 end = revlog.end(revs[-1])
Boris Feld
revlog: split functionality related to deltas computation in a new module...
r39366 return end - revlog.start(revs[0])
Augie Fackler
formatting: blacken the codebase...
r43346
delta-computer: stop explicitly taking file handle...
r51913 def _textfromdelta(revlog, baserev, delta, p1, p2, flags, expectednode):
Boris Feld
revlogdeltas: extra fulltext building in its own function...
r39367 """build full text from a (base, delta) pair and other metadata"""
# special case deltas which replace entire base; no need to decode
# base revision. this neatly avoids censored bases, which throw when
# they're decoded.
Augie Fackler
formatting: byteify all mercurial/ and hgext/ string literals...
r43347 hlen = struct.calcsize(b">lll")
Augie Fackler
formatting: blacken the codebase...
r43346 if delta[:hlen] == mdiff.replacediffheader(
revlog.rawsize(baserev), len(delta) - hlen
):
Boris Feld
revlogdeltas: extra fulltext building in its own function...
r39367 fulltext = delta[hlen:]
else:
# deltabase is rawtext before changed by flag processors, which is
# equivalent to non-raw text
delta-computer: stop explicitly taking file handle...
r51913 basetext = revlog.revision(baserev)
Boris Feld
revlogdeltas: extra fulltext building in its own function...
r39367 fulltext = mdiff.patch(basetext, delta)
try:
flagprocessors: make `processflagsraw` a module level function...
r43262 validatehash = flagutil.processflagsraw(revlog, fulltext, flags)
Boris Feld
revlogdeltas: extra fulltext building in its own function...
r39367 if validatehash:
revlog.checkhash(fulltext, expectednode, p1=p1, p2=p2)
if flags & REVIDX_ISCENSORED:
Augie Fackler
formatting: blacken the codebase...
r43346 raise error.StorageError(
Augie Fackler
formatting: byteify all mercurial/ and hgext/ string literals...
r43347 _(b'node %s is not censored') % expectednode
Augie Fackler
formatting: blacken the codebase...
r43346 )
Gregory Szorc
revlog: drop some more error aliases (API)...
r39810 except error.CensoredNodeError:
Boris Feld
revlogdeltas: extra fulltext building in its own function...
r39367 # must pass the censored index flag to add censored revisions
if not flags & REVIDX_ISCENSORED:
raise
return fulltext
Augie Fackler
formatting: blacken the codebase...
r43346
Boris Feld
revlog: split functionality related to deltas computation in a new module...
r39366 @attr.s(slots=True, frozen=True)
Gregory Szorc
py3: use class X: instead of class X(object):...
r49801 class _deltainfo:
Boris Feld
revlog: split functionality related to deltas computation in a new module...
r39366 distance = attr.ib()
deltalen = attr.ib()
data = attr.ib()
base = attr.ib()
chainbase = attr.ib()
chainlen = attr.ib()
compresseddeltalen = attr.ib()
snapshotdepth = attr.ib()
Augie Fackler
formatting: blacken the codebase...
r43346
revlog: introduce a plain compression mode...
r48027 def drop_u_compression(delta):
"""turn into a "u" (no-compression) into no-compression without header
This is useful for revlog format that has better compression method.
"""
assert delta.data[0] == b'u', delta.data[0]
return _deltainfo(
delta.distance,
delta.deltalen - 1,
(b'', delta.data[1]),
delta.base,
delta.chainbase,
delta.chainlen,
delta.compresseddeltalen,
delta.snapshotdepth,
)
Boris Feld
delta: exclude base candidate much smaller than the target...
r41014 # If a revision's full text is that much bigger than a base candidate full
# text's, it is very unlikely that it will produce a valid delta. We no longer
# consider these candidates.
Boris Feld
revlog: limit base to rev size ratio to 500 instead of 50...
r41062 LIMIT_BASE2TEXT = 500
Boris Feld
delta: exclude base candidate much smaller than the target...
r41014
Augie Fackler
formatting: blacken the codebase...
r43346
delta-find: introduce a _DeltaSearch object...
r52213 class _DeltaSearch:
"""perform the search of a good delta for a single revlog revision
delta-find: assume the target-rev if not specified...
r51330
delta-find: introduce a _DeltaSearch object...
r52213 note: some of the deltacomputer.finddeltainfo logic should probably move
here.
"""
delta-find: never do anything fancy when general delta is off...
r51331
delta-find: introduce a _DeltaSearch object...
r52213 def __init__(
self,
debug: add an option to display statistic about a unbundling operation...
r50506 revlog,
delta-find: feed revinfo to _DeltaSearch...
r52223 revinfo,
debug: add an option to display statistic about a unbundling operation...
r50506 p1,
p2,
cachedelta,
delta-find: introduce a _DeltaSearch object...
r52213 excluded_bases=None,
target_rev=None,
snapshot_cache=None,
):
delta-find: check DELTA_BASE_REUSE_FORCE in the _DeltaSearch.__init__...
r52218 # the DELTA_BASE_REUSE_FORCE case should have been taken care of sooner
# so we should never end up asking such question. Adding the assert as
# a safe-guard to detect anything that would be fishy in this regard.
assert (
cachedelta is None
or cachedelta[2] != DELTA_BASE_REUSE_FORCE
or not revlog.delta_config.general_delta
)
delta-find: introduce a _DeltaSearch object...
r52213 self.revlog = revlog
delta-find: feed revinfo to _DeltaSearch...
r52223 self.revinfo = revinfo
self.textlen = revinfo.textlen
delta-find: introduce a _DeltaSearch object...
r52213 self.p1 = p1
self.p2 = p2
self.cachedelta = cachedelta
self.excluded_bases = excluded_bases
delta-find: move target_rev in the _DeltaSearch.__init__...
r52217 if target_rev is None:
self.target_rev = len(self.revlog)
delta-find: introduce a _DeltaSearch object...
r52213 self.target_rev = target_rev
delta-find: move snapshot_cache in the _DeltaSearch.__init__...
r52216 if snapshot_cache is None:
# map: base-rev: [snapshot-revs]
snapshot_cache = SnapshotCache()
delta-find: introduce a _DeltaSearch object...
r52213 self.snapshot_cache = snapshot_cache
delta-find: move tested in the _DeltaSearch.__init__...
r52219 self.tested = {nullrev}
delta-find: move away from the generator API for _DeltaSearch...
r52227 self._candidates_iterator = self._candidate_groups()
self._last_good = None
self.current_group = self._candidates_iterator.send(self._last_good)
@property
def done(self):
"""True when all possible candidate have been tested"""
return self.current_group is None
def next_group(self, good_delta=None):
"""move to the next group to test
The group of revision to test will be available in
`self.current_group`. If the previous group had any good delta, the
best one can be passed as the `good_delta` parameter to help selecting
the next group.
If not revision remains to be, `self.done` will be True and
`self.current_group` will be None.
"""
if good_delta is not None:
self._last_good = good_delta.base
self.current_group = self._candidates_iterator.send(self._last_good)
def _candidate_groups(self):
delta-find: introduce a _DeltaSearch object...
r52213 """Provides group of revision to be tested as delta base
This top level function focus on emitting groups with unique and
worthwhile content. See _raw_candidate_groups for details about the
group order.
"""
# should we try to build a delta?
if not (len(self.revlog) and self.revlog._storedeltachains):
yield None
return
if not self.revlog.delta_config.general_delta:
# before general delta, there is only one possible delta base
yield (self.target_rev - 1,)
yield None
return
delta-find: add a delta-reuse policy that blindly accepts incoming deltas...
r50662
delta-find: introduce a _DeltaSearch object...
r52213 good = None
group_chunk_size = self.revlog.delta_config.candidate_group_chunk_size
delta-find: move tested in the _DeltaSearch.__init__...
r52219 tested = self.tested # prefetch for speed and code compactness
delta-find: move `_refinedgroups` on the `_DeltaSearch` object...
r52214 candidates = self._refined_groups()
delta-find: introduce a _DeltaSearch object...
r52213 while True:
temptative = candidates.send(good)
if temptative is None:
break
delta-find: move pre-filtering of candidates in its own function...
r52228 group = self._pre_filter_candidate_revs(temptative)
delta-find: introduce a _DeltaSearch object...
r52213 if group:
# When the size of the candidate group is big, it can result in
# a quite significant performance impact. To reduce this, we
# can send them in smaller batches until the new batch does not
# provide any improvements.
#
# This might reduce the overall efficiency of the compression
# in some corner cases, but that should also prevent very
# pathological cases from being an issue. (eg. 20 000
# candidates).
#
# XXX note that the ordering of the group becomes important as
# it now impacts the final result. The current order is
# unprocessed and can be improved.
if group_chunk_size == 0:
tested.update(group)
good = yield tuple(group)
else:
prev_good = good
for start in range(0, len(group), group_chunk_size):
sub_group = group[start : start + group_chunk_size]
tested.update(sub_group)
good = yield tuple(sub_group)
if prev_good == good:
break
yield None
Boris Feld
revlogdeltas: split candidate groups selection from the filtering logic...
r39372
delta-find: move pre-filtering of candidates in its own function...
r52228 def _pre_filter_candidate_revs(self, temptative):
"""filter possible candidate before computing a delta
This function use various criteria to pre-filter candidate delta base
before we compute a delta and evaluate its quality.
Such pre-filter limit the number of computed delta, an expensive operation.
return the updated list of revision to test
"""
deltalength = self.revlog.length
deltaparent = self.revlog.deltaparent
tested = self.tested
group = []
for rev in temptative:
# skip over empty delta (no need to include them in a chain)
while not (rev == nullrev or rev in tested or deltalength(rev)):
tested.add(rev)
rev = deltaparent(rev)
delta-find: move pre-filtering of individual revision in its own function...
r52229 if self._pre_filter_rev(rev):
group.append(rev)
else:
self.tested.add(rev)
return group
delta-find: split the generic part of `_pre_filter_rev` in a method...
r52231 def _pre_filter_rev_universal(self, rev):
"""pre filtering that is need in all cases.
return True if it seems okay to test a rev, False otherwise.
used by _pre_filter_rev.
"""
delta-find: drop the temporary indent...
r52230 # no need to try a delta against nullrev, this will be done as
# a last resort.
if rev == nullrev:
return False
# filter out revision we tested already
if rev in self.tested:
return False
delta-find: move pre-filtering of candidates in its own function...
r52228
delta-find: drop the temporary indent...
r52230 # an higher authority deamed the base unworthy (e.g. censored)
if self.excluded_bases is not None and rev in self.excluded_bases:
return False
# We are in some recomputation cases and that rev is too high
# in the revlog
if self.target_rev is not None and rev >= self.target_rev:
return False
delta-find: split the generic part of `_pre_filter_rev` in a method...
r52231 # no delta for rawtext-changing revs (see "candelta" for why)
if self.revlog.flags(rev) & REVIDX_RAWTEXT_CHANGING_FLAGS:
return False
return True
def _pre_filter_rev(self, rev):
"""return True if it seems okay to test a rev, False otherwise"""
if not self._pre_filter_rev_universal(rev):
return False
delta-find: move pre-filtering of individual revision in its own function...
r52229
delta-find: drop the temporary indent...
r52230 deltas_limit = self.revinfo.textlen * LIMIT_DELTA2TEXT
# filter out delta base that will never produce good delta
#
# if the delta of that base is already bigger than the limit
# for the delta chain size, doing a delta is hopeless.
if deltas_limit < self.revlog.length(rev):
return False
delta-find: move pre-filtering of candidates in its own function...
r52228
delta-find: drop the temporary indent...
r52230 sparse = self.revlog.delta_config.sparse_revlog
# if the revision we test again is too small, the resulting delta
# will be large anyway as that amount of data to be added is big
if sparse and self.revlog.rawsize(rev) < (
self.textlen // LIMIT_BASE2TEXT
):
return False
delta-find: move pre-filtering of candidates in its own function...
r52228
delta-find: drop the temporary indent...
r52230 # If we reach here, we are about to build and test a delta.
# The delta building process will compute the chaininfo in all
# case, since that computation is cached, it is fine to access
# it here too.
chainlen, chainsize = self.revlog._chaininfo(rev)
# if chain will be too long, skip base
if (
self.revlog.delta_config.max_chain_len
and chainlen >= self.revlog.delta_config.max_chain_len
):
return False
# if chain already have too much data, skip base
if deltas_limit < chainsize:
return False
if sparse and self.revlog.delta_config.upper_bound_comp is not None:
maxcomp = self.revlog.delta_config.upper_bound_comp
basenotsnap = (self.p1, self.p2, nullrev)
if rev not in basenotsnap and self.revlog.issnapshot(rev):
snapshotdepth = self.revlog.snapshotdepth(rev)
# If text is significantly larger than the base, we can
# expect the resulting delta to be proportional to the size
# difference
revsize = self.revlog.rawsize(rev)
rawsizedistance = max(self.textlen - revsize, 0)
# use an estimate of the compression upper bound.
lowestrealisticdeltalen = rawsizedistance // maxcomp
delta-find: move pre-filtering of candidates in its own function...
r52228
delta-find: drop the temporary indent...
r52230 # check the absolute constraint on the delta size
snapshotlimit = self.textlen >> snapshotdepth
if snapshotlimit < lowestrealisticdeltalen:
# delta lower bound is larger than accepted upper
# bound
return False
delta-find: move pre-filtering of candidates in its own function...
r52228
delta-find: drop the temporary indent...
r52230 # check the relative constraint on the delta size
revlength = self.revlog.length(rev)
if revlength < lowestrealisticdeltalen:
# delta probable lower bound is larger than target
# base
return False
delta-find: move pre-filtering of individual revision in its own function...
r52229 return True
delta-find: move pre-filtering of candidates in its own function...
r52228
delta-find: move `_refinedgroups` on the `_DeltaSearch` object...
r52214 def _refined_groups(self):
good = None
# First we try to reuse a the delta contained in the bundle. (or from
# the source revlog)
#
# This logic only applies to general delta repositories and can be
# disabled through configuration. Disabling reuse source delta is
# useful when we want to make sure we recomputed "optimal" deltas.
debug_info = None
if (
self.cachedelta is not None
and self.cachedelta[2] > DELTA_BASE_REUSE_NO
):
# Assume what we received from the server is a good choice
# build delta will reuse the cache
if debug_info is not None:
debug_info['cached-delta.tested'] += 1
good = yield (self.cachedelta[0],)
if good is not None:
if debug_info is not None:
debug_info['cached-delta.accepted'] += 1
yield None
return
delta-find: move `_rawgroups` on the `_DeltaSearch` object...
r52215 groups = self._raw_groups()
delta-find: move `_refinedgroups` on the `_DeltaSearch` object...
r52214 for candidates in groups:
good = yield candidates
if good is not None:
break
Augie Fackler
formatting: blacken the codebase...
r43346
delta-find: move `_refinedgroups` on the `_DeltaSearch` object...
r52214 # If sparse revlog is enabled, we can try to refine the available
# deltas
if not self.revlog.delta_config.sparse_revlog:
Boris Feld
snapshot: make sure we'll never refine delta base from a reused source...
r39537 yield None
return
Boris Feld
sparse-revlog: only refine delta candidates in the sparse case (issue6006)...
r40479
delta-find: move `_refinedgroups` on the `_DeltaSearch` object...
r52214 # if we have a refinable value, try to refine it
if (
good is not None
and good not in (self.p1, self.p2)
and self.revlog.issnapshot(good)
):
# refine snapshot down
previous = None
while previous != good:
previous = good
base = self.revlog.deltaparent(good)
if base == nullrev:
break
good = yield (base,)
# refine snapshot up
if not self.snapshot_cache.snapshots:
self.snapshot_cache.update(self.revlog, good + 1)
previous = None
while good != previous:
previous = good
children = tuple(
sorted(c for c in self.snapshot_cache.snapshots[good])
)
good = yield children
Boris Feld
snapshot: refine candidate snapshot base upward...
r39539
delta-find: move `_refinedgroups` on the `_DeltaSearch` object...
r52214 if debug_info is not None:
if good is None:
debug_info['no-solution'] += 1
debug: add an option to display statistic about a unbundling operation...
r50506
delta-find: move `_refinedgroups` on the `_DeltaSearch` object...
r52214 yield None
Boris Feld
snapshot: introduce an intermediate `_refinedgroups` generator...
r39532
delta-find: move `_rawgroups` on the `_DeltaSearch` object...
r52215 def _raw_groups(self):
"""Provides group of revision to be tested as delta base
Augie Fackler
formatting: blacken the codebase...
r43346
delta-find: move `_rawgroups` on the `_DeltaSearch` object...
r52215 This lower level function focus on emitting delta theorically
interresting without looking it any practical details.
Boris Feld
revlogdeltas: split candidate groups selection from the filtering logic...
r39372
delta-find: move `_rawgroups` on the `_DeltaSearch` object...
r52215 The group order aims at providing fast or small candidates first.
"""
# Why search for delta base if we cannot use a delta base ?
assert self.revlog.delta_config.general_delta
# also see issue6056
sparse = self.revlog.delta_config.sparse_revlog
delta-find: fix the computation of the `prev` value...
r52225 prev = self.target_rev - 1
delta-find: move `_rawgroups` on the `_DeltaSearch` object...
r52215 deltachain = lambda rev: self.revlog._deltachain(rev)[0]
Boris Feld
revlogdeltas: split candidate groups selection from the filtering logic...
r39372
delta-find: move `_rawgroups` on the `_DeltaSearch` object...
r52215 # exclude already lazy tested base if any
parents = [p for p in (self.p1, self.p2) if p != nullrev]
Boris Feld
revlogdeltas: extract _getcandidaterevs in a function...
r39370
delta-find: move `_rawgroups` on the `_DeltaSearch` object...
r52215 if (
not self.revlog.delta_config.delta_both_parents
and len(parents) == 2
):
parents.sort()
# To minimize the chance of having to build a fulltext,
# pick first whichever parent is closest to us (max rev)
yield (parents[1],)
# then the other one (min rev) if the first did not fit
yield (parents[0],)
elif len(parents) > 0:
# Test all parents (1 or 2), and keep the best candidate
yield parents
Boris Feld
revlogdeltas: extract _getcandidaterevs in a function...
r39370
delta-find: move `_rawgroups` on the `_DeltaSearch` object...
r52215 if sparse and parents:
# See if we can use an existing snapshot in the parent chains to
# use as a base for a new intermediate-snapshot
#
# search for snapshot in parents delta chain map: snapshot-level:
# snapshot-rev
parents_snaps = collections.defaultdict(set)
candidate_chains = [deltachain(p) for p in parents]
for chain in candidate_chains:
for idx, s in enumerate(chain):
if not self.revlog.issnapshot(s):
break
parents_snaps[idx].add(s)
snapfloor = min(parents_snaps[0]) + 1
self.snapshot_cache.update(self.revlog, snapfloor)
# search for the highest "unrelated" revision
#
# Adding snapshots used by "unrelated" revision increase the odd we
# reuse an independant, yet better snapshot chain.
#
# XXX instead of building a set of revisions, we could lazily
# enumerate over the chains. That would be more efficient, however
# we stick to simple code for now.
all_revs = set()
for chain in candidate_chains:
all_revs.update(chain)
other = None
for r in self.revlog.revs(prev, snapfloor):
if r not in all_revs:
other = r
Boris Feld
snapshot: consider all snapshots in the parents' chains...
r39530 break
delta-find: move `_rawgroups` on the `_DeltaSearch` object...
r52215 if other is not None:
# To avoid unfair competition, we won't use unrelated
# intermediate snapshot that are deeper than the ones from the
# parent delta chain.
max_depth = max(parents_snaps.keys())
chain = deltachain(other)
for depth, s in enumerate(chain):
if s < snapfloor:
continue
if max_depth < depth:
break
if not self.revlog.issnapshot(s):
break
parents_snaps[depth].add(s)
# Test them as possible intermediate snapshot base We test them
# from highest to lowest level. High level one are more likely to
# result in small delta
floor = None
for idx, snaps in sorted(parents_snaps.items(), reverse=True):
siblings = set()
for s in snaps:
siblings.update(self.snapshot_cache.snapshots[s])
# Before considering making a new intermediate snapshot, we
# check if an existing snapshot, children of base we consider,
# would be suitable.
#
# It give a change to reuse a delta chain "unrelated" to the
# current revision instead of starting our own. Without such
# re-use, topological branches would keep reopening new chains.
# Creating more and more snapshot as the repository grow.
if floor is not None:
# We only do this for siblings created after the one in our
# parent's delta chain. Those created before has less
# chances to be valid base since our ancestors had to
# create a new snapshot.
siblings = [r for r in siblings if floor < r]
yield tuple(sorted(siblings))
# then test the base from our parent's delta chain.
yield tuple(sorted(snaps))
floor = min(snaps)
# No suitable base found in the parent chain, search if any full
# snapshots emitted since parent's base would be a suitable base
# for an intermediate snapshot.
Boris Feld
snapshot: consider unrelated snapshots at a similar level first...
r39531 #
delta-find: move `_rawgroups` on the `_DeltaSearch` object...
r52215 # It give a chance to reuse a delta chain unrelated to the current
# revisions instead of starting our own. Without such re-use,
# topological branches would keep reopening new full chains.
Boris Feld
snapshot: consider unrelated snapshots at a similar level first...
r39531 # Creating more and more snapshot as the repository grow.
delta-find: move `_rawgroups` on the `_DeltaSearch` object...
r52215 full = [
r
for r in self.snapshot_cache.snapshots[nullrev]
if snapfloor <= r
]
yield tuple(sorted(full))
Boris Feld
snapshot: consider unrelated snapshots at a similar level first...
r39531
delta-find: move `_rawgroups` on the `_DeltaSearch` object...
r52215 if not sparse:
# other approach failed try against prev to hopefully save us a
# fulltext.
yield (prev,)
Boris Feld
revlogdeltas: extract _getcandidaterevs in a function...
r39370
delta-find: move is_good_delta_info on the _DeltaSearch class...
r52224 def is_good_delta_info(self, deltainfo):
"""Returns True if the given delta is good. Good means that it is
within the disk span, disk size, and chain length bounds that we know
to be performant."""
if deltainfo is None:
return False
# the DELTA_BASE_REUSE_FORCE case should have been taken care of sooner
# so we should never end up asking such question. Adding the assert as
# a safe-guard to detect anything that would be fishy in this regard.
assert (
self.revinfo.cachedelta is None
or self.revinfo.cachedelta[2] != DELTA_BASE_REUSE_FORCE
or not self.revlog.delta_config.general_delta
)
# - 'deltainfo.distance' is the distance from the base revision --
# bounding it limits the amount of I/O we need to do.
# - 'deltainfo.compresseddeltalen' is the sum of the total size of
# deltas we need to apply -- bounding it limits the amount of CPU
# we consume.
textlen = self.revinfo.textlen
defaultmax = textlen * 4
maxdist = self.revlog.delta_config.max_deltachain_span
if not maxdist:
maxdist = deltainfo.distance # ensure the conditional pass
maxdist = max(maxdist, defaultmax)
# Bad delta from read span:
#
# If the span of data read is larger than the maximum allowed.
#
# In the sparse-revlog case, we rely on the associated "sparse
# reading" to avoid issue related to the span of data. In theory, it
# would be possible to build pathological revlog where delta pattern
# would lead to too many reads. However, they do not happen in
# practice at all. So we skip the span check entirely.
if (
not self.revlog.delta_config.sparse_revlog
and maxdist < deltainfo.distance
):
return False
# Bad delta from new delta size:
#
# If the delta size is larger than the target text, storing the delta
# will be inefficient.
if textlen < deltainfo.deltalen:
return False
# Bad delta from cumulated payload size:
#
# If the sum of delta get larger than K * target text length.
if textlen * LIMIT_DELTA2TEXT < deltainfo.compresseddeltalen:
return False
# Bad delta from chain length:
#
# If the number of delta in the chain gets too high.
if (
self.revlog.delta_config.max_chain_len
and self.revlog.delta_config.max_chain_len < deltainfo.chainlen
):
return False
# bad delta from intermediate snapshot size limit
#
# If an intermediate snapshot size is higher than the limit. The
# limit exist to prevent endless chain of intermediate delta to be
# created.
if (
deltainfo.snapshotdepth is not None
and (textlen >> deltainfo.snapshotdepth) < deltainfo.deltalen
):
return False
# bad delta if new intermediate snapshot is larger than the previous
# snapshot
if (
deltainfo.snapshotdepth
and self.revlog.length(deltainfo.base) < deltainfo.deltalen
):
return False
return True
Augie Fackler
formatting: blacken the codebase...
r43346
delta-find: use a smarter object for snapshot caching...
r50573 class SnapshotCache:
__slots__ = ('snapshots', '_start_rev', '_end_rev')
def __init__(self):
delta-find: use sets instead of list in the snapshot cache...
r50574 self.snapshots = collections.defaultdict(set)
delta-find: use a smarter object for snapshot caching...
r50573 self._start_rev = None
self._end_rev = None
def update(self, revlog, start_rev=0):
"""find snapshots from start_rev to tip"""
nb_revs = len(revlog)
end_rev = nb_revs - 1
if start_rev > end_rev:
return # range is empty
if self._start_rev is None:
assert self._end_rev is None
self._update(revlog, start_rev, end_rev)
elif not (self._start_rev <= start_rev and end_rev <= self._end_rev):
if start_rev < self._start_rev:
self._update(revlog, start_rev, self._start_rev - 1)
if self._end_rev < end_rev:
self._update(revlog, self._end_rev + 1, end_rev)
if self._start_rev is None:
assert self._end_rev is None
self._end_rev = end_rev
self._start_rev = start_rev
else:
self._start_rev = min(self._start_rev, start_rev)
self._end_rev = max(self._end_rev, end_rev)
assert self._start_rev <= self._end_rev, (
self._start_rev,
self._end_rev,
)
def _update(self, revlog, start_rev, end_rev):
"""internal method that actually do update content"""
assert self._start_rev is None or (
start_rev < self._start_rev or start_rev > self._end_rev
), (self._start_rev, self._end_rev, start_rev, end_rev)
assert self._start_rev is None or (
end_rev < self._start_rev or end_rev > self._end_rev
), (self._start_rev, self._end_rev, start_rev, end_rev)
cache = self.snapshots
safehasattr: drop usage in favor of hasattr...
r51821 if hasattr(revlog.index, 'findsnapshots'):
delta-find: use a smarter object for snapshot caching...
r50573 revlog.index.findsnapshots(cache, start_rev, end_rev)
else:
deltaparent = revlog.deltaparent
issnapshot = revlog.issnapshot
for rev in revlog.revs(start_rev, end_rev):
if issnapshot(rev):
delta-find: use sets instead of list in the snapshot cache...
r50574 cache[deltaparent(rev)].add(rev)
delta-find: use a smarter object for snapshot caching...
r50573
Gregory Szorc
py3: use class X: instead of class X(object):...
r49801 class deltacomputer:
delta-find: add a small docstring to deltacomputer...
r52212 """object capable of computing delta and finding delta for multiple revision
This object is meant to compute and find multiple delta applied to the same
revlog.
"""
debug: add an option to display statistic about a unbundling operation...
r50506 def __init__(
self,
revlog,
write_debug=None,
debug_search=False,
debug_info=None,
):
Boris Feld
revlog: split functionality related to deltas computation in a new module...
r39366 self.revlog = revlog
deltas: add code to display information about the result of `finddeltainfo`...
r50121 self._write_debug = write_debug
delta-fine: use the `_debug_search` attribute directly...
r51542 if write_debug is None:
self._debug_search = False
else:
self._debug_search = debug_search
debug: add an option to display statistic about a unbundling operation...
r50506 self._debug_info = debug_info
delta-find: use a single snapshot cache when applying a group to an object...
r50576 self._snapshot_cache = SnapshotCache()
Boris Feld
revlog: split functionality related to deltas computation in a new module...
r39366
delta-find: move the `gather_debug` logic in a property...
r51541 @property
def _gather_debug(self):
return self._write_debug is not None or self._debug_info is not None
delta-computer: stop explicitly taking file handle...
r51913 def buildtext(self, revinfo):
Boris Feld
revlog: split functionality related to deltas computation in a new module...
r39366 """Builds a fulltext version of a revision
revlog: move `revisioninfo` in `revlogutils`...
r48191 revinfo: revisioninfo instance that contains all needed info
Boris Feld
revlog: split functionality related to deltas computation in a new module...
r39366 """
btext = revinfo.btext
if btext[0] is not None:
return btext[0]
revlog = self.revlog
cachedelta = revinfo.cachedelta
baserev = cachedelta[0]
delta = cachedelta[1]
Augie Fackler
formatting: blacken the codebase...
r43346 fulltext = btext[0] = _textfromdelta(
revlog,
baserev,
delta,
revinfo.p1,
revinfo.p2,
revinfo.flags,
revinfo.node,
)
Boris Feld
revlogdeltas: extra fulltext building in its own function...
r39367 return fulltext
Boris Feld
revlog: split functionality related to deltas computation in a new module...
r39366
delta-computer: stop explicitly taking file handle...
r51913 def _builddeltadiff(self, base, revinfo):
Boris Feld
revlog: split functionality related to deltas computation in a new module...
r39366 revlog = self.revlog
delta-computer: stop explicitly taking file handle...
r51913 t = self.buildtext(revinfo)
Boris Feld
revlog: split functionality related to deltas computation in a new module...
r39366 if revlog.iscensored(base):
# deltas based on a censored revision must replace the
# full content in one patch, so delta works everywhere
header = mdiff.replacediffheader(revlog.rawsize(base), len(t))
delta = header + t
else:
delta-computer: stop explicitly taking file handle...
r51913 ptext = revlog.rawdata(base)
Boris Feld
revlog: split functionality related to deltas computation in a new module...
r39366 delta = mdiff.textdiff(ptext, t)
return delta
delta-computer: stop explicitly taking file handle...
r51913 def _builddeltainfo(self, revinfo, base, target_rev=None):
Boris Feld
revlog: split functionality related to deltas computation in a new module...
r39366 # can we use the cached delta?
Valentin Gatien-Baron
delta: move some delta chain related computation earlier in deltainfo...
r42665 revlog = self.revlog
chainbase = revlog.chainbase(base)
revlog: remove legacy usage of `_generaldelta`...
r51939 if revlog.delta_config.general_delta:
Valentin Gatien-Baron
delta: move some delta chain related computation earlier in deltainfo...
r42665 deltabase = base
else:
delta-find: add a simple safeguard to prevent bad non-general-delta...
r51332 if target_rev is not None and base != target_rev - 1:
msg = (
b'general delta cannot use delta for something else '
b'than `prev`: %d<-%d'
)
msg %= (base, target_rev)
raise error.ProgrammingError(msg)
Valentin Gatien-Baron
delta: move some delta chain related computation earlier in deltainfo...
r42665 deltabase = chainbase
snapshotdepth = None
revlog: remove legacy usage of `_sparserevlog`...
r51953 if revlog.delta_config.sparse_revlog and deltabase == nullrev:
Valentin Gatien-Baron
delta: move some delta chain related computation earlier in deltainfo...
r42665 snapshotdepth = 0
revlog: remove legacy usage of `_sparserevlog`...
r51953 elif revlog.delta_config.sparse_revlog and revlog.issnapshot(deltabase):
Valentin Gatien-Baron
delta: move some delta chain related computation earlier in deltainfo...
r42665 # A delta chain should always be one full snapshot,
# zero or more semi-snapshots, and zero or more deltas
p1, p2 = revlog.rev(revinfo.p1), revlog.rev(revinfo.p2)
if deltabase not in (p1, p2) and revlog.issnapshot(deltabase):
snapshotdepth = len(revlog._deltachain(deltabase)[0])
Boris Feld
revlog: reuse cached delta for identical base revision (issue5975)...
r39631 delta = None
if revinfo.cachedelta:
find-delta: minor preparatory change...
r50570 cachebase = revinfo.cachedelta[0]
Augie Fackler
formatting: blacken the codebase...
r43346 # check if the diff still apply
Boris Feld
revlog: reuse cached delta for identical base revision (issue5975)...
r39631 currentbase = cachebase
Augie Fackler
formatting: blacken the codebase...
r43346 while (
currentbase != nullrev
and currentbase != base
and self.revlog.length(currentbase) == 0
):
Boris Feld
revlog: reuse cached delta for identical base revision (issue5975)...
r39631 currentbase = self.revlog.deltaparent(currentbase)
revlog: remove legacy usage of `_lazydeltabase`...
r51960 if self.revlog.delta_config.lazy_delta and currentbase == base:
Boris Feld
revlog: reuse cached delta for identical base revision (issue5975)...
r39631 delta = revinfo.cachedelta[1]
if delta is None:
delta-computer: stop explicitly taking file handle...
r51913 delta = self._builddeltadiff(base, revinfo)
delta-fine: use the `_debug_search` attribute directly...
r51542 if self._debug_search:
deltas: add a debug-delta-find command to analyse delta search...
r50123 msg = b"DBG-DELTAS-SEARCH: uncompressed-delta-size=%d\n"
msg %= len(delta)
self._write_debug(msg)
Valentin Gatien-Baron
deltas: skip if projected compressed size does not match text size constraint...
r42667 # snapshotdept need to be neither None nor 0 level snapshot
revlog: also migrates `revlog.upperboundcomp` to ConfigClass...
r51976 if revlog.delta_config.upper_bound_comp is not None and snapshotdepth:
lowestrealisticdeltalen = (
len(delta) // revlog.delta_config.upper_bound_comp
)
Valentin Gatien-Baron
deltas: skip if projected compressed size does not match text size constraint...
r42667 snapshotlimit = revinfo.textlen >> snapshotdepth
delta-fine: use the `_debug_search` attribute directly...
r51542 if self._debug_search:
deltas: add a debug-delta-find command to analyse delta search...
r50123 msg = b"DBG-DELTAS-SEARCH: projected-lower-size=%d\n"
msg %= lowestrealisticdeltalen
self._write_debug(msg)
Valentin Gatien-Baron
deltas: skip if projected compressed size does not match text size constraint...
r42667 if snapshotlimit < lowestrealisticdeltalen:
delta-fine: use the `_debug_search` attribute directly...
r51542 if self._debug_search:
deltas: add a debug-delta-find command to analyse delta search...
r50123 msg = b"DBG-DELTAS-SEARCH: DISCARDED (snapshot limit)\n"
self._write_debug(msg)
Valentin Gatien-Baron
deltas: skip if projected compressed size does not match text size constraint...
r42667 return None
Valentin Gatien-Baron
deltas: skip if projected compressed size is bigger than previous snapshot...
r42668 if revlog.length(base) < lowestrealisticdeltalen:
delta-fine: use the `_debug_search` attribute directly...
r51542 if self._debug_search:
deltas: add a debug-delta-find command to analyse delta search...
r50123 msg = b"DBG-DELTAS-SEARCH: DISCARDED (prev size)\n"
self._write_debug(msg)
Valentin Gatien-Baron
deltas: skip if projected compressed size is bigger than previous snapshot...
r42668 return None
revlog: move the compression/decompression logic on the inner object...
r51984 header, data = revlog._inner.compress(delta)
Boris Feld
revlog: split functionality related to deltas computation in a new module...
r39366 deltalen = len(header) + len(data)
offset = revlog.end(len(revlog) - 1)
dist = deltalen + offset - revlog.start(chainbase)
chainlen, compresseddeltalen = revlog._chaininfo(base)
chainlen += 1
compresseddeltalen += deltalen
Augie Fackler
formatting: blacken the codebase...
r43346 return _deltainfo(
dist,
deltalen,
(header, data),
deltabase,
chainbase,
chainlen,
compresseddeltalen,
snapshotdepth,
)
Boris Feld
revlog: split functionality related to deltas computation in a new module...
r39366
delta-computer: stop explicitly taking file handle...
r51913 def _fullsnapshotinfo(self, revinfo, curr):
rawtext = self.buildtext(revinfo)
revlog: move the compression/decompression logic on the inner object...
r51984 data = self.revlog._inner.compress(rawtext)
Boris Feld
revlogdeltas: always return a delta info object in finddeltainfo...
r39369 compresseddeltalen = deltalen = dist = len(data[1]) + len(data[0])
deltabase = chainbase = curr
snapshotdepth = 0
chainlen = 1
Augie Fackler
formatting: blacken the codebase...
r43346 return _deltainfo(
dist,
deltalen,
data,
deltabase,
chainbase,
chainlen,
compresseddeltalen,
snapshotdepth,
)
Boris Feld
revlogdeltas: always return a delta info object in finddeltainfo...
r39369
delta-computer: stop explicitly taking file handle...
r51913 def finddeltainfo(self, revinfo, excluded_bases=None, target_rev=None):
Boris Feld
revlog: split functionality related to deltas computation in a new module...
r39366 """Find an acceptable delta against a candidate revision
revinfo: information about the revision (instance of _revisioninfo)
Returns the first acceptable candidate revision, as ordered by
Boris Feld
revlogdeltas: extract _getcandidaterevs in a function...
r39370 _candidategroups
Boris Feld
revlogdeltas: always return a delta info object in finddeltainfo...
r39369
If no suitable deltabase is found, we return delta info for a full
snapshot.
revlog: add a ways to blacklist some revision when searching for a delta...
r48193
`excluded_bases` is an optional set of revision that cannot be used as
a delta base. Use this to recompute delta suitable in censor or strip
context.
Boris Feld
revlog: split functionality related to deltas computation in a new module...
r39366 """
deltas: at a `target_rev` parameter to finddeltainfo...
r48249 if target_rev is None:
censor: implement censoring for revlogv2...
r48250 target_rev = len(self.revlog)
deltas: at a `target_rev` parameter to finddeltainfo...
r48249
delta-find: initialize the debug information much sooner (when possible)...
r51546 gather_debug = self._gather_debug
cachedelta = revinfo.cachedelta
revlog = self.revlog
delta-find: fix pulled-delta-reuse-policy=forced behavior...
r51550 p1r = p2r = None
delta-find: initialize the debug information much sooner (when possible)...
r51546
delta-find: fix pulled-delta-reuse-policy=forced behavior...
r51550 if excluded_bases is None:
excluded_bases = set()
delta-find: initialize the debug information much sooner (when possible)...
r51546
if gather_debug:
start = util.timer()
dbg = self._one_dbg_data()
dbg['revision'] = target_rev
p1r = revlog.rev(revinfo.p1)
p2r = revlog.rev(revinfo.p2)
if p1r != nullrev:
p1_chain_len = revlog._chaininfo(p1r)[0]
else:
p1_chain_len = -1
if p2r != nullrev:
p2_chain_len = revlog._chaininfo(p2r)[0]
else:
p2_chain_len = -1
dbg['p1-chain-len'] = p1_chain_len
dbg['p2-chain-len'] = p2_chain_len
delta-find: gather the condition to blindly use a full snapshot together...
r51547 # 1) if the revision is empty, no amount of delta can beat it
#
# 2) no delta for flag processor revision (see "candelta" for why)
# not calling candelta since only one revision needs test, also to
# avoid overhead fetching flags again.
if not revinfo.textlen or revinfo.flags & REVIDX_RAWTEXT_CHANGING_FLAGS:
delta-computer: stop explicitly taking file handle...
r51913 deltainfo = self._fullsnapshotinfo(revinfo, target_rev)
deltafind: issue debug information when we fast-path rivial case too...
r51548 if gather_debug:
end = util.timer()
dbg['duration'] = end - start
dbg[
'delta-base'
] = deltainfo.base # pytype: disable=attribute-error
dbg['search_round_count'] = 0
delta-find: fix pulled-delta-reuse-policy=forced behavior...
r51550 dbg['using-cached-base'] = False
deltafind: issue debug information when we fast-path rivial case too...
r51548 dbg['delta_try_count'] = 0
dbg['type'] = b"full"
dbg['snapshot-depth'] = 0
self._dbg_process_data(dbg)
return deltainfo
Boris Feld
revlog: split functionality related to deltas computation in a new module...
r39366
delta-find: fix pulled-delta-reuse-policy=forced behavior...
r51550 deltainfo = None
# If this source delta are to be forcibly reuse, let us comply early.
if (
revlog: remove legacy usage of `_generaldelta`...
r51939 revlog.delta_config.general_delta
delta-find: fix pulled-delta-reuse-policy=forced behavior...
r51550 and revinfo.cachedelta is not None
and revinfo.cachedelta[2] == DELTA_BASE_REUSE_FORCE
):
base = revinfo.cachedelta[0]
if base == nullrev:
dbg_type = b"full"
delta-computer: stop explicitly taking file handle...
r51913 deltainfo = self._fullsnapshotinfo(revinfo, target_rev)
delta-find: fix pulled-delta-reuse-policy=forced behavior...
r51550 if gather_debug:
snapshotdepth = 0
elif base not in excluded_bases:
delta = revinfo.cachedelta[1]
header, data = revlog.compress(delta)
deltalen = len(header) + len(data)
if gather_debug:
offset = revlog.end(len(revlog) - 1)
chainbase = revlog.chainbase(base)
distance = deltalen + offset - revlog.start(chainbase)
chainlen, compresseddeltalen = revlog._chaininfo(base)
chainlen += 1
compresseddeltalen += deltalen
if base == p1r or base == p2r:
dbg_type = b"delta"
snapshotdepth = None
elif not revlog.issnapshot(base):
snapshotdepth = None
else:
dbg_type = b"snapshot"
snapshotdepth = revlog.snapshotdepth(base) + 1
else:
distance = None
chainbase = None
chainlen = None
compresseddeltalen = None
snapshotdepth = None
deltainfo = _deltainfo(
distance=distance,
deltalen=deltalen,
data=(header, data),
base=base,
chainbase=chainbase,
chainlen=chainlen,
compresseddeltalen=compresseddeltalen,
snapshotdepth=snapshotdepth,
)
if deltainfo is not None:
if gather_debug:
end = util.timer()
dbg['duration'] = end - start
dbg[
'delta-base'
] = deltainfo.base # pytype: disable=attribute-error
dbg['search_round_count'] = 0
dbg['using-cached-base'] = True
dbg['delta_try_count'] = 0
dbg['type'] = b"full"
if snapshotdepth is None:
delta-find: use "-1" as depth snapshot-dept for non snapshot in debug...
r52226 dbg['snapshot-depth'] = -1
delta-find: fix pulled-delta-reuse-policy=forced behavior...
r51550 else:
dbg['snapshot-depth'] = snapshotdepth
self._dbg_process_data(dbg)
return deltainfo
revlog: add a ways to blacklist some revision when searching for a delta...
r48193
deltas: add code to display information about the result of `finddeltainfo`...
r50121 # count the number of different delta we tried (for debug purpose)
dbg_try_count = 0
# count the number of "search round" we did. (for debug purpose)
dbg_try_rounds = 0
dbg_type = b'unknown'
delta-find: initialize the debug information much sooner (when possible)...
r51546 if p1r is None:
p1r = revlog.rev(revinfo.p1)
p2r = revlog.rev(revinfo.p2)
deltas: add code to display information about the result of `finddeltainfo`...
r50121
delta-fine: use the `_debug_search` attribute directly...
r51542 if self._debug_search:
deltas: add a debug-delta-find command to analyse delta search...
r50123 msg = b"DBG-DELTAS-SEARCH: SEARCH rev=%d\n"
msg %= target_rev
self._write_debug(msg)
deltas: add code to display information about the result of `finddeltainfo`...
r50121
delta-find: introduce a _DeltaSearch object...
r52213 search = _DeltaSearch(
delta-find: expand a function definition and call before extendin it...
r50507 self.revlog,
delta-find: feed revinfo to _DeltaSearch...
r52223 revinfo,
delta-find: expand a function definition and call before extendin it...
r50507 p1r,
p2r,
cachedelta,
delta-find: move pre-filtering with other pre-filtering logic...
r50508 excluded_bases,
target_rev,
delta-find: use a single snapshot cache when applying a group to an object...
r50576 snapshot_cache=self._snapshot_cache,
Augie Fackler
formatting: blacken the codebase...
r43346 )
delta-find: introduce a _DeltaSearch object...
r52213
delta-find: move away from the generator API for _DeltaSearch...
r52227 while not search.done:
current_group = search.current_group
# current_group can be `None`, but not is search.done is False
# We add this assert to help pytype
assert current_group is not None
candidaterevs = current_group
deltas: add code to display information about the result of `finddeltainfo`...
r50121 dbg_try_rounds += 1
delta-fine: use the `_debug_search` attribute directly...
r51542 if self._debug_search:
deltas: add a debug-delta-find command to analyse delta search...
r50123 prev = None
if deltainfo is not None:
prev = deltainfo.base
delta-find: add debug information about reuse of cached data...
r50504 if (
cachedelta is not None
and len(candidaterevs) == 1
and cachedelta[0] in candidaterevs
):
round_type = b"cached-delta"
delta-find: fix `parents` round detection...
r51545 elif p1r in candidaterevs or p2r in candidaterevs:
deltas: add a debug-delta-find command to analyse delta search...
r50123 round_type = b"parents"
elif prev is not None and all(c < prev for c in candidaterevs):
round_type = b"refine-down"
elif prev is not None and all(c > prev for c in candidaterevs):
round_type = b"refine-up"
else:
round_type = b"search-down"
msg = b"DBG-DELTAS-SEARCH: ROUND #%d - %d candidates - %s\n"
msg %= (dbg_try_rounds, len(candidaterevs), round_type)
self._write_debug(msg)
Boris Feld
revlog: split functionality related to deltas computation in a new module...
r39366 nominateddeltas = []
Boris Feld
snapshot: add refining logic at the findeltainfo level...
r39534 if deltainfo is not None:
delta-fine: use the `_debug_search` attribute directly...
r51542 if self._debug_search:
deltas: add a debug-delta-find command to analyse delta search...
r50123 msg = (
b"DBG-DELTAS-SEARCH: CONTENDER: rev=%d - length=%d\n"
)
msg %= (deltainfo.base, deltainfo.deltalen)
self._write_debug(msg)
Boris Feld
snapshot: add refining logic at the findeltainfo level...
r39534 # if we already found a good delta,
# challenge it against refined candidates
nominateddeltas.append(deltainfo)
Boris Feld
revlog: split functionality related to deltas computation in a new module...
r39366 for candidaterev in candidaterevs:
delta-fine: use the `_debug_search` attribute directly...
r51542 if self._debug_search:
deltas: add a debug-delta-find command to analyse delta search...
r50123 msg = b"DBG-DELTAS-SEARCH: CANDIDATE: rev=%d\n"
msg %= candidaterev
self._write_debug(msg)
candidate_type = None
delta-find: fix `parents` round detection...
r51545 if candidaterev == p1r:
deltas: add a debug-delta-find command to analyse delta search...
r50123 candidate_type = b"p1"
delta-find: fix `parents` round detection...
r51545 elif candidaterev == p2r:
deltas: add a debug-delta-find command to analyse delta search...
r50123 candidate_type = b"p2"
elif self.revlog.issnapshot(candidaterev):
candidate_type = b"snapshot-%d"
candidate_type %= self.revlog.snapshotdepth(
candidaterev
)
if candidate_type is not None:
msg = b"DBG-DELTAS-SEARCH: type=%s\n"
msg %= candidate_type
self._write_debug(msg)
msg = b"DBG-DELTAS-SEARCH: size=%d\n"
msg %= self.revlog.length(candidaterev)
self._write_debug(msg)
msg = b"DBG-DELTAS-SEARCH: base=%d\n"
msg %= self.revlog.deltaparent(candidaterev)
self._write_debug(msg)
delta-find: move pre-filtering with other pre-filtering logic...
r50508
deltas: add code to display information about the result of `finddeltainfo`...
r50121 dbg_try_count += 1
deltas: add a debug-delta-find command to analyse delta search...
r50123
delta-fine: use the `_debug_search` attribute directly...
r51542 if self._debug_search:
deltas: add a debug-delta-find command to analyse delta search...
r50123 delta_start = util.timer()
delta-find: add a simple safeguard to prevent bad non-general-delta...
r51332 candidatedelta = self._builddeltainfo(
revinfo,
candidaterev,
target_rev=target_rev,
)
delta-fine: use the `_debug_search` attribute directly...
r51542 if self._debug_search:
deltas: add a debug-delta-find command to analyse delta search...
r50123 delta_end = util.timer()
msg = b"DBG-DELTAS-SEARCH: delta-search-time=%f\n"
msg %= delta_end - delta_start
self._write_debug(msg)
Valentin Gatien-Baron
deltas: accept and skip None return for delta info...
r42666 if candidatedelta is not None:
delta-find: move is_good_delta_info on the _DeltaSearch class...
r52224 if search.is_good_delta_info(candidatedelta):
delta-fine: use the `_debug_search` attribute directly...
r51542 if self._debug_search:
deltas: add a debug-delta-find command to analyse delta search...
r50123 msg = b"DBG-DELTAS-SEARCH: DELTA: length=%d (GOOD)\n"
msg %= candidatedelta.deltalen
self._write_debug(msg)
Valentin Gatien-Baron
deltas: accept and skip None return for delta info...
r42666 nominateddeltas.append(candidatedelta)
delta-fine: use the `_debug_search` attribute directly...
r51542 elif self._debug_search:
deltas: add a debug-delta-find command to analyse delta search...
r50123 msg = b"DBG-DELTAS-SEARCH: DELTA: length=%d (BAD)\n"
msg %= candidatedelta.deltalen
self._write_debug(msg)
delta-fine: use the `_debug_search` attribute directly...
r51542 elif self._debug_search:
deltas: add a debug-delta-find command to analyse delta search...
r50123 msg = b"DBG-DELTAS-SEARCH: NO-DELTA\n"
self._write_debug(msg)
Boris Feld
revlog: split functionality related to deltas computation in a new module...
r39366 if nominateddeltas:
deltainfo = min(nominateddeltas, key=lambda x: x.deltalen)
delta-find: move away from the generator API for _DeltaSearch...
r52227 search.next_group(deltainfo)
Boris Feld
revlog: split functionality related to deltas computation in a new module...
r39366
Boris Feld
revlogdeltas: always return a delta info object in finddeltainfo...
r39369 if deltainfo is None:
deltas: add code to display information about the result of `finddeltainfo`...
r50121 dbg_type = b"full"
delta-computer: stop explicitly taking file handle...
r51913 deltainfo = self._fullsnapshotinfo(revinfo, target_rev)
deltas: add a debug-delta-find command to analyse delta search...
r50123 elif deltainfo.snapshotdepth: # pytype: disable=attribute-error
deltas: add code to display information about the result of `finddeltainfo`...
r50121 dbg_type = b"snapshot"
else:
dbg_type = b"delta"
debug: add an option to display statistic about a unbundling operation...
r50506 if gather_debug:
deltas: add code to display information about the result of `finddeltainfo`...
r50121 end = util.timer()
delta-find: properly report full snapshot used from cache as such...
r50676 if dbg_type == b'full':
used_cached = (
cachedelta is not None
and dbg_try_rounds == 0
and dbg_try_count == 0
and cachedelta[0] == nullrev
)
else:
used_cached = (
cachedelta is not None
and dbg_try_rounds == 1
and dbg_try_count == 1
and deltainfo.base == cachedelta[0]
)
delta-find: intrduce a `_one_dbg_data` method...
r51544 dbg['duration'] = end - start
dbg[
'delta-base'
] = deltainfo.base # pytype: disable=attribute-error
dbg['search_round_count'] = dbg_try_rounds
dbg['using-cached-base'] = used_cached
dbg['delta_try_count'] = dbg_try_count
dbg['type'] = dbg_type
deltas: add a debug-delta-find command to analyse delta search...
r50123 if (
deltainfo.snapshotdepth # pytype: disable=attribute-error
is not None
):
dbg[
'snapshot-depth'
] = deltainfo.snapshotdepth # pytype: disable=attribute-error
deltas: add code to display information about the result of `finddeltainfo`...
r50121 else:
delta-find: use "-1" as depth snapshot-dept for non snapshot in debug...
r52226 dbg['snapshot-depth'] = -1
delta-find: move final debug processing in a `_dbg_process_data` method...
r51543 self._dbg_process_data(dbg)
return deltainfo
deltas: add code to display information about the result of `finddeltainfo`...
r50121
delta-find: intrduce a `_one_dbg_data` method...
r51544 def _one_dbg_data(self):
delta-find: move filing of some debug data in `_one_dbg_data`...
r52221 dbg = {
delta-find: intrduce a `_one_dbg_data` method...
r51544 'duration': None,
'revision': None,
'delta-base': None,
'search_round_count': None,
'using-cached-base': None,
'delta_try_count': None,
'type': None,
'p1-chain-len': None,
'p2-chain-len': None,
'snapshot-depth': None,
'target-revlog': None,
}
delta-find: move filing of some debug data in `_one_dbg_data`...
r52221 target_revlog = b"UNKNOWN"
target_type = self.revlog.target[0]
target_key = self.revlog.target[1]
if target_type == KIND_CHANGELOG:
target_revlog = b'CHANGELOG:'
elif target_type == KIND_MANIFESTLOG:
target_revlog = b'MANIFESTLOG:'
if target_key:
target_revlog += b'%s:' % target_key
elif target_type == KIND_FILELOG:
target_revlog = b'FILELOG:'
if target_key:
target_revlog += b'%s:' % target_key
dbg['target-revlog'] = target_revlog
return dbg
delta-find: intrduce a `_one_dbg_data` method...
r51544
delta-find: move final debug processing in a `_dbg_process_data` method...
r51543 def _dbg_process_data(self, dbg):
if self._debug_info is not None:
self._debug_info.append(dbg)
debug: add an option to display statistic about a unbundling operation...
r50506
delta-find: move final debug processing in a `_dbg_process_data` method...
r51543 if self._write_debug is not None:
msg = (
b"DBG-DELTAS:"
b" %-12s"
b" rev=%d:"
b" delta-base=%d"
b" is-cached=%d"
b" - search-rounds=%d"
b" try-count=%d"
b" - delta-type=%-6s"
b" snap-depth=%d"
b" - p1-chain-length=%d"
b" p2-chain-length=%d"
b" - duration=%f"
b"\n"
)
msg %= (
dbg["target-revlog"],
dbg["revision"],
dbg["delta-base"],
dbg["using-cached-base"],
dbg["search_round_count"],
dbg["delta_try_count"],
dbg["type"],
dbg["snapshot-depth"],
dbg["p1-chain-len"],
dbg["p2-chain-len"],
dbg["duration"],
)
self._write_debug(msg)
revlog: factor the logic to determine the delta compression out...
r48245
def delta_compression(default_compression_header, deltainfo):
"""return (COMPRESSION_MODE, deltainfo)
used by revlog v2+ format to dispatch between PLAIN and DEFAULT
compression.
"""
h, d = deltainfo.data
compression_mode = COMP_MODE_INLINE
if not h and not d:
# not data to store at all... declare them uncompressed
compression_mode = COMP_MODE_PLAIN
elif not h:
t = d[0:1]
if t == b'\0':
compression_mode = COMP_MODE_PLAIN
elif t == default_compression_header:
compression_mode = COMP_MODE_DEFAULT
elif h == b'u':
# we have a more efficient way to declare uncompressed
h = b''
compression_mode = COMP_MODE_PLAIN
deltainfo = drop_u_compression(deltainfo)
return compression_mode, deltainfo