##// END OF EJS Templates
emitrevision: consider ancestors revision to emit as available base...
emitrevision: consider ancestors revision to emit as available base This should make more delta base valid. This notably affects: * case where we skipped some parent with empty delta to directly delta against an ancestors * case where an intermediate snapshots is stored. This change means we could sent largish intermediate snapshots over the wire. However this is actually a sub goal here. Sending snapshots over the wire means the client have a high odd of simply storing the pre-computed delta instead of doing a lengthy process that will… end up doing the same intermediate snapshot. In addition the overall size of snapshot (or any level) is "only" some or the overall delta size. (0.17% for my mercurial clone, 20% for my clone of Mozilla try). So Sending them other the wire is unlikely to change large impact on the bandwidth used. If we decide that minimising the bandwidth is an explicit goal, we should introduce new logic to filter-out snapshot as delta. The current code has no notion explicite of snapshot so far, they just tended to fall into the wobbly filtering options. In some cases, this patch can yield large improvement to the bundling time: ### data-env-vars.name = mozilla-try-2019-02-18-zstd-sparse-revlog # benchmark.name = perf-bundle # benchmark.variants.revs = last-100000 before: 68.787066 seconds after: 47.552677 seconds (-30.87%) That translate to large improvement to the pull time : ### data-env-vars.name = mozilla-try-2019-02-18-zstd-sparse-revlog # benchmark.name = pull # benchmark.variants.issue6528 = disabled # benchmark.variants.revs = last-100000 before: 142.186625 seconds after: 75.897745 seconds (-46.62%) No significant negative impact have been observed.

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parsers.pyi
78 lines | 2.8 KiB | text/x-python | PythonLexer
from typing import (
Callable,
Dict,
Iterator,
List,
Optional,
Set,
Tuple,
Union,
)
version: int
versionerrortext: str
class DirstateItem:
__doc__: str
def __len__(self) -> int: ...
def __getitem__(self, key: int) -> Union[bytes, int]: ...
# From dirs.c
class dirs:
__doc__: str
def __init__(self, source, skipchar: bytes): ...
def __iter__(self) -> Iterator[bytes]: ...
def addpath(self, path: bytes) -> None: ...
def delpath(self, path: bytes) -> None: ...
# From manifest.c
class lazymanifest:
def __init__(self, nodelen: int, data: bytes): ...
def __iter__(self) -> Iterator[bytes]: ...
def __len__(self) -> int: ...
def __getitem__(self, item: bytes) -> Optional[Tuple[bytes, bytes]]: ...
def __setitem__(self, key: bytes, value: Tuple[bytes, bytes]) -> None: ...
def __delitem__(self, key: bytes) -> None: ...
def iterkeys(self) -> Iterator[bytes]: ...
def iterentries(self) -> Iterator[Tuple[bytes, bytes, bytes]]: ...
def copy(self) -> lazymanifest: ...
def filtercopy(self, matchfn: Callable[[bytes], bool]) -> lazymanifest: ...
def diff(self, other: lazymanifest, clean: Optional[bool]) -> Dict[bytes, Tuple[bytes, Tuple]]: ...
def text(self) -> bytes: ...
# From revlog.c
class index:
__doc__: str
nodemap: Dict[bytes, int]
def ancestors(self, *args: int) -> Iterator[int]: ...
def commonancestorsheads(self, *args: int) -> List[int]: ...
def clearcaches(self) -> None: ...
def get(self, value: bytes) -> Optional[int]: ...
def get_rev(self, value: bytes) -> Optional[int]: ...
def has_node(self, value: Union[int, bytes]) -> bool: ...
def rev(self, node: bytes) -> int: ...
def computephasesmapsets(self, root: Dict[int, Set[bytes]]) -> Tuple[int, Dict[int, Set[bytes]]]: ...
def reachableroots2(self, minroot: int, heads: List[int], roots: List[int], includepath: bool) -> List[int]: ...
def headrevs(self, filteredrevs: Optional[List[int]]) -> List[int]: ...
def headrevsfiltered(self, filteredrevs: Optional[List[int]]) -> List[int]: ...
def issnapshot(self, value: int) -> bool: ...
def findsnapshots(self, cache: Dict[int, List[int]], start_rev: int) -> None: ...
def deltachain(self, rev: int, stop: int, generaldelta: bool) -> Tuple[List[int], bool]: ...
def slicechunktodensity(self, revs: List[int], targetdensity: float, mingapsize: int) -> List[List[int]]: ...
def append(self, value: Tuple[int, int, int, int, int, int, int, bytes]) -> None: ...
def partialmatch(self, node: bytes) -> bytes: ...
def shortest(self, value: bytes) -> int: ...
def stats(self) -> Dict[bytes, int]: ...
class nodetree:
__doc__: str
def insert(self, rev: int) -> None: ...
def shortest(self, node: bytes) -> int: ...