Mercurial > hg-stable
view tests/test-progress.t @ 37054:40206e227412
wireproto: define and implement protocol for issuing requests
The existing HTTP and SSH wire protocols suffer from a host of flaws
and shortcomings. I've been wanting to rewrite the protocol for a while
now. Supporting partial clone - which will require new wire protocol
commands and capabilities - and other advanced server functionality
will be much easier if we start from a clean slate and don't have
to be constrained by limitations of the existing wire protocol.
This commit starts to introduce a new data exchange format for
use over the wire protocol.
The new protocol is built on top of "frames," which are atomic
units of metadata + data. Frames will make it easier to implement
proxies and other mechanisms that want to inspect data without
having to maintain state. The existing frame metadata is very
minimal and it will evolve heavily. (We will eventually support
things like concurrent requests, out-of-order responses,
compression, side-channels for status updates, etc. Some of
these will require additions to the frame header.)
Another benefit of frames is that all reads are of a fixed size.
A reader works by consuming a frame header, extracting the payload
length, then reading that many bytes. No lookahead, buffering, or
memory reallocations are needed.
The new protocol attempts to be transport agnostic. I want all that's
required to use the new protocol to be a pair of unidirectional,
half-duplex pipes. (Yes, we will eventually make use of full-duplex
pipes, but that's for another commit.) Notably, when the SSH
transport switches to this new protocol, stderr will be unused.
This is by design: the lack of stderr on HTTP harms protocol
behavior there. By shoehorning everything into a pair of pipes,
we can have more consistent behavior across transports.
We currently only define the client side parts of the new protocol,
specifically the bits for requesting that a command run. This keeps
the new code and feature small and somewhat easy to review.
We add support to `hg debugwireproto` for writing frames into
HTTP request bodies. Our tests that issue commands to the new
HTTP endpoint have been updated to transmit frames. The server
bits haven't been touched to consume the frames yet. This will
occur in the next commit...
Astute readers may notice that the command name is transmitted in
both the HTTP request URL and the command request frame. This is
partially a kludge from me initially implementing the frame-based
protocol for SSH first. But it is also a feature: I intend to
eventually support issuing multiple commands per HTTP request. This
will allow us to replace the abomination that is the "batch" wire
protocol command with a protocol-level mechanism for performing
multi-dispatch. Because I want the frame-based protocol to be
as similar as possible across transports, I'd rather we (redundantly)
include the command name in the frame than differ behavior between
transports that have out-of-band routing information (like HTTP)
readily available.
Differential Revision: https://phab.mercurial-scm.org/D2851
author | Gregory Szorc <gregory.szorc@gmail.com> |
---|---|
date | Mon, 19 Mar 2018 16:49:53 -0700 |
parents | 12b355964de8 |
children | 34592dd3bfa2 |
line wrap: on
line source
$ cat > loop.py <<EOF > from __future__ import absolute_import > import time > from mercurial import commands, registrar > > cmdtable = {} > command = registrar.command(cmdtable) > > class incrementingtime(object): > def __init__(self): > self._time = 0.0 > def __call__(self): > self._time += 0.25 > return self._time > time.time = incrementingtime() > > @command(b'loop', > [('', 'total', '', 'override for total'), > ('', 'nested', False, 'show nested results'), > ('', 'parallel', False, 'show parallel sets of results')], > 'hg loop LOOPS', > norepo=True) > def loop(ui, loops, **opts): > loops = int(loops) > total = None > if loops >= 0: > total = loops > if opts.get('total', None): > total = int(opts.get('total')) > nested = False > if opts.get('nested', None): > nested = True > loops = abs(loops) > > for i in range(loops): > ui.progress(topiclabel, i, getloopitem(i), 'loopnum', total) > if opts.get('parallel'): > ui.progress('other', i, 'other.%d' % i, 'othernum', total) > if nested: > nested_steps = 2 > if i and i % 4 == 0: > nested_steps = 5 > for j in range(nested_steps): > ui.progress( > 'nested', j, 'nested.%d' % j, 'nestnum', nested_steps) > ui.progress( > 'nested', None, 'nested.done', 'nestnum', nested_steps) > ui.progress(topiclabel, None, 'loop.done', 'loopnum', total) > > topiclabel = 'loop' > def getloopitem(i): > return 'loop.%d' % i > > EOF $ cp $HGRCPATH $HGRCPATH.orig $ echo "[extensions]" >> $HGRCPATH $ echo "progress=" >> $HGRCPATH $ echo "loop=`pwd`/loop.py" >> $HGRCPATH $ echo "[progress]" >> $HGRCPATH $ echo "format = topic bar number" >> $HGRCPATH $ echo "assume-tty=1" >> $HGRCPATH $ echo "width=60" >> $HGRCPATH test default params, display nothing because of delay $ hg -y loop 3 $ echo "delay=0" >> $HGRCPATH $ echo "refresh=0" >> $HGRCPATH test with delay=0, refresh=0 $ hg -y loop 3 \r (no-eol) (esc) loop [ ] 0/3\r (no-eol) (esc) loop [===============> ] 1/3\r (no-eol) (esc) loop [===============================> ] 2/3\r (no-eol) (esc) \r (no-eol) (esc) no progress with --quiet $ hg -y loop 3 --quiet test plain mode exception $ HGPLAINEXCEPT=progress hg -y loop 1 \r (no-eol) (esc) loop [ ] 0/1\r (no-eol) (esc) \r (no-eol) (esc) test nested short-lived topics (which shouldn't display with nestdelay): $ hg -y loop 3 --nested \r (no-eol) (esc) loop [ ] 0/3\r (no-eol) (esc) loop [===============> ] 1/3\r (no-eol) (esc) loop [===============================> ] 2/3\r (no-eol) (esc) \r (no-eol) (esc) Test nested long-lived topic which has the same name as a short-lived peer. We shouldn't get stuck showing the short-lived inner steps, and should go back to skipping the inner steps when the slow nested step finishes. $ hg -y loop 7 --nested \r (no-eol) (esc) loop [ ] 0/7\r (no-eol) (esc) loop [=====> ] 1/7\r (no-eol) (esc) loop [============> ] 2/7\r (no-eol) (esc) loop [===================> ] 3/7\r (no-eol) (esc) loop [==========================> ] 4/7\r (no-eol) (esc) nested [==========================> ] 3/5\r (no-eol) (esc) nested [===================================> ] 4/5\r (no-eol) (esc) loop [=================================> ] 5/7\r (no-eol) (esc) loop [========================================> ] 6/7\r (no-eol) (esc) \r (no-eol) (esc) $ hg --config progress.changedelay=0 -y loop 3 --nested \r (no-eol) (esc) loop [ ] 0/3\r (no-eol) (esc) nested [ ] 0/2\r (no-eol) (esc) nested [======================> ] 1/2\r (no-eol) (esc) loop [===============> ] 1/3\r (no-eol) (esc) nested [ ] 0/2\r (no-eol) (esc) nested [======================> ] 1/2\r (no-eol) (esc) loop [===============================> ] 2/3\r (no-eol) (esc) nested [ ] 0/2\r (no-eol) (esc) nested [======================> ] 1/2\r (no-eol) (esc) \r (no-eol) (esc) test two topics being printed in parallel (as when we're doing a local --pull clone, where you get the unbundle and bundle progress at the same time): $ hg loop 3 --parallel \r (no-eol) (esc) loop [ ] 0/3\r (no-eol) (esc) loop [===============> ] 1/3\r (no-eol) (esc) loop [===============================> ] 2/3\r (no-eol) (esc) \r (no-eol) (esc) test refresh is taken in account $ hg -y --config progress.refresh=100 loop 3 test format options 1 $ hg -y --config 'progress.format=number topic item+2' loop 2 \r (no-eol) (esc) 0/2 loop lo\r (no-eol) (esc) 1/2 loop lo\r (no-eol) (esc) \r (no-eol) (esc) test format options 2 $ hg -y --config 'progress.format=number item-3 bar' loop 2 \r (no-eol) (esc) 0/2 p.0 [ ]\r (no-eol) (esc) 1/2 p.1 [=======================> ]\r (no-eol) (esc) \r (no-eol) (esc) test format options and indeterminate progress $ hg -y --config 'progress.format=number item bar' loop -- -2 \r (no-eol) (esc) 0 loop.0 [ <=> ]\r (no-eol) (esc) 1 loop.1 [ <=> ]\r (no-eol) (esc) \r (no-eol) (esc) make sure things don't fall over if count > total $ hg -y loop --total 4 6 \r (no-eol) (esc) loop [ ] 0/4\r (no-eol) (esc) loop [===========> ] 1/4\r (no-eol) (esc) loop [=======================> ] 2/4\r (no-eol) (esc) loop [===================================> ] 3/4\r (no-eol) (esc) loop [===============================================>] 4/4\r (no-eol) (esc) loop [ <=> ] 5/4\r (no-eol) (esc) \r (no-eol) (esc) test immediate progress completion $ hg -y loop 0 test delay time estimates #if no-chg $ cp $HGRCPATH.orig $HGRCPATH $ echo "[extensions]" >> $HGRCPATH $ echo "mocktime=$TESTDIR/mocktime.py" >> $HGRCPATH $ echo "progress=" >> $HGRCPATH $ echo "loop=`pwd`/loop.py" >> $HGRCPATH $ echo "[progress]" >> $HGRCPATH $ echo "assume-tty=1" >> $HGRCPATH $ echo "delay=25" >> $HGRCPATH $ echo "width=60" >> $HGRCPATH $ MOCKTIME=11 hg -y loop 8 \r (no-eol) (esc) loop [=========> ] 2/8 1m07s\r (no-eol) (esc) loop [===============> ] 3/8 56s\r (no-eol) (esc) loop [=====================> ] 4/8 45s\r (no-eol) (esc) loop [==========================> ] 5/8 34s\r (no-eol) (esc) loop [================================> ] 6/8 23s\r (no-eol) (esc) loop [=====================================> ] 7/8 12s\r (no-eol) (esc) \r (no-eol) (esc) $ MOCKTIME=10000 hg -y loop 4 \r (no-eol) (esc) loop [ ] 0/4\r (no-eol) (esc) loop [=========> ] 1/4 8h21m\r (no-eol) (esc) loop [====================> ] 2/4 5h34m\r (no-eol) (esc) loop [==============================> ] 3/4 2h47m\r (no-eol) (esc) \r (no-eol) (esc) $ MOCKTIME=1000000 hg -y loop 4 \r (no-eol) (esc) loop [ ] 0/4\r (no-eol) (esc) loop [=========> ] 1/4 5w00d\r (no-eol) (esc) loop [====================> ] 2/4 3w03d\r (no-eol) (esc) loop [=============================> ] 3/4 11d14h\r (no-eol) (esc) \r (no-eol) (esc) $ MOCKTIME=14000000 hg -y loop 4 \r (no-eol) (esc) loop [ ] 0/4\r (no-eol) (esc) loop [=========> ] 1/4 1y18w\r (no-eol) (esc) loop [===================> ] 2/4 46w03d\r (no-eol) (esc) loop [=============================> ] 3/4 23w02d\r (no-eol) (esc) \r (no-eol) (esc) Non-linear progress: $ MOCKTIME='20 20 20 20 20 20 20 20 20 20 500 500 500 500 500 20 20 20 20 20' hg -y loop 20 \r (no-eol) (esc) loop [=> ] 1/20 6m21s\r (no-eol) (esc) loop [===> ] 2/20 6m01s\r (no-eol) (esc) loop [=====> ] 3/20 5m41s\r (no-eol) (esc) loop [=======> ] 4/20 5m21s\r (no-eol) (esc) loop [=========> ] 5/20 5m01s\r (no-eol) (esc) loop [===========> ] 6/20 4m41s\r (no-eol) (esc) loop [=============> ] 7/20 4m21s\r (no-eol) (esc) loop [===============> ] 8/20 4m01s\r (no-eol) (esc) loop [================> ] 9/20 25m40s\r (no-eol) (esc) loop [===================> ] 10/20 1h06m\r (no-eol) (esc) loop [=====================> ] 11/20 1h13m\r (no-eol) (esc) loop [=======================> ] 12/20 1h07m\r (no-eol) (esc) loop [========================> ] 13/20 58m19s\r (no-eol) (esc) loop [===========================> ] 14/20 7m09s\r (no-eol) (esc) loop [=============================> ] 15/20 3m38s\r (no-eol) (esc) loop [===============================> ] 16/20 2m15s\r (no-eol) (esc) loop [=================================> ] 17/20 1m27s\r (no-eol) (esc) loop [====================================> ] 18/20 52s\r (no-eol) (esc) loop [======================================> ] 19/20 25s\r (no-eol) (esc) \r (no-eol) (esc) Time estimates should not fail when there's no end point: $ MOCKTIME=11 hg -y loop -- -4 \r (no-eol) (esc) loop [ <=> ] 2\r (no-eol) (esc) loop [ <=> ] 3\r (no-eol) (esc) \r (no-eol) (esc) #endif test line trimming by '[progress] width', when progress topic contains multi-byte characters, of which length of byte sequence and columns in display are different from each other. $ cp $HGRCPATH.orig $HGRCPATH $ cat >> $HGRCPATH <<EOF > [extensions] > progress= > loop=`pwd`/loop.py > [progress] > assume-tty = 1 > delay = 0 > refresh = 0 > EOF $ rm -f loop.pyc $ cat >> loop.py <<EOF > # use non-ascii characters as topic label of progress > # 2 x 4 = 8 columns, but 3 x 4 = 12 bytes > topiclabel = u'\u3042\u3044\u3046\u3048'.encode('utf-8') > EOF $ cat >> $HGRCPATH <<EOF > [progress] > format = topic number > width= 12 > EOF $ hg --encoding utf-8 -y loop --total 3 3 \r (no-eol) (esc) \xe3\x81\x82\xe3\x81\x84\xe3\x81\x86\xe3\x81\x88 0/3\r (no-eol) (esc) \xe3\x81\x82\xe3\x81\x84\xe3\x81\x86\xe3\x81\x88 1/3\r (no-eol) (esc) \xe3\x81\x82\xe3\x81\x84\xe3\x81\x86\xe3\x81\x88 2/3\r (no-eol) (esc) \r (no-eol) (esc) test calculation of bar width, when progress topic contains multi-byte characters, of which length of byte sequence and columns in display are different from each other. $ cat >> $HGRCPATH <<EOF > [progress] > format = topic bar > width= 21 > # progwidth should be 9 (= 21 - (8+1) - 3) > EOF $ hg --encoding utf-8 -y loop --total 3 3 \r (no-eol) (esc) \xe3\x81\x82\xe3\x81\x84\xe3\x81\x86\xe3\x81\x88 [ ]\r (no-eol) (esc) \xe3\x81\x82\xe3\x81\x84\xe3\x81\x86\xe3\x81\x88 [==> ]\r (no-eol) (esc) \xe3\x81\x82\xe3\x81\x84\xe3\x81\x86\xe3\x81\x88 [=====> ]\r (no-eol) (esc) \r (no-eol) (esc) test trimming progress items, when they contain multi-byte characters, of which length of byte sequence and columns in display are different from each other. $ rm -f loop.pyc $ rm -Rf __pycache__ $ cat >> loop.py <<EOF > # use non-ascii characters as loop items of progress > loopitems = [ > u'\u3042\u3044'.encode('utf-8'), # 2 x 2 = 4 columns > u'\u3042\u3044\u3046'.encode('utf-8'), # 2 x 3 = 6 columns > u'\u3042\u3044\u3046\u3048'.encode('utf-8'), # 2 x 4 = 8 columns > ] > def getloopitem(i): > return loopitems[i % len(loopitems)] > EOF $ cat >> $HGRCPATH <<EOF > [progress] > # trim at tail side > format = item+6 > EOF $ hg --encoding utf-8 -y loop --total 3 3 \r (no-eol) (esc) \xe3\x81\x82\xe3\x81\x84 \r (no-eol) (esc) \xe3\x81\x82\xe3\x81\x84\xe3\x81\x86\r (no-eol) (esc) \xe3\x81\x82\xe3\x81\x84\xe3\x81\x86\r (no-eol) (esc) \r (no-eol) (esc) $ cat >> $HGRCPATH <<EOF > [progress] > # trim at left side > format = item-6 > EOF $ hg --encoding utf-8 -y loop --total 3 3 \r (no-eol) (esc) \xe3\x81\x82\xe3\x81\x84 \r (no-eol) (esc) \xe3\x81\x82\xe3\x81\x84\xe3\x81\x86\r (no-eol) (esc) \xe3\x81\x84\xe3\x81\x86\xe3\x81\x88\r (no-eol) (esc) \r (no-eol) (esc)