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428 Commits
Author SHA1 Message Date
Unbit ec954b8aa7 fixed v8 RPC 2013-11-17 07:02:21 +01:00
Unbit 95d20e9f48 add rack to gemspec 2013-11-17 06:44:16 +01:00
Unbit 165aad8cd0 Merge branch 'master' of ssh://github.com/unbit/uwsgi 2013-11-17 06:42:04 +01:00
Unbit 29c339a3c3 gemspec for 1.9.20 2013-11-17 06:41:46 +01:00
unbit 12afba035b Merge pull request #460 from Kapishin/master
Fix typos
2013-11-16 09:01:33 -08:00
Pavlo Kapyshin eeb203afd4 Fix typos 2013-11-16 17:41:26 +02:00
Unbit 6a18d10c56 fixed typo in total_tx metric 2013-11-13 21:38:56 +01:00
Unbit d1383d7749 added multiplier and adder collector 2013-11-13 19:53:47 +01:00
Unbit 0abbabbe10 added accumulator metrics collector 2013-11-13 19:51:22 +01:00
Roberto De Ioris ea44525c22 fixed zeromq support 2013-11-15 07:48:49 +01:00
Unbit 2396c7cf31 prepare for 1.9.20 2013-11-13 15:14:51 +01:00
Roberto De Ioris 4805a9c219 added chunked input api to psgi 2013-11-14 07:44:13 +01:00
Roberto De Ioris 882cdcc2b6 added --plshell and Perl uwsgi::rpc 2013-11-14 06:24:56 +01:00
unbit 59c8bb51b4 Merge pull request #454 from xiaost-bytedance/master
fixed master hang when gracefully reloading in lazy mode
2013-11-13 08:50:52 -08:00
xiaost 3c2350f5ad fixed master hang when gracefully reloading in lazy mode 2013-11-14 00:33:49 +08:00
Unbit 422e958fe3 added uwsgi over SSL 2013-11-13 04:46:27 +01:00
Unbit 4d9c7809d6 added support for proxy protocol 2013-11-13 03:20:55 +01:00
Unbit 6b3d8ea146 added avg metrics collector 2013-11-13 02:41:47 +01:00
Unbit b5d8538fe8 added oid metric in stats 2013-11-12 17:48:48 +01:00
Unbit 47796b315e fixed stupid bug in websocket perl example 2013-11-12 12:38:22 +01:00
Unbit 222bcd8fdc another fix for default app 2013-11-12 12:22:54 +01:00
Unbit f92b800a7c fixed default app usage 2013-11-12 12:18:31 +01:00
Unbit dec2b234f8 fixed no default app 2013-11-12 12:14:15 +01:00
Unbit 3dbd7e3115 fixed comments in websockets_chat.pl 2013-11-12 08:50:50 +01:00
Unbit 09d8747918 added tests/websockets_chat.pl 2013-11-12 08:48:49 +01:00
Unbit fa78fd915b force https to on when --https-socket is in place 2013-11-12 05:59:10 +01:00
Unbit db56141485 completed --https-socket 2013-11-12 05:54:47 +01:00
Unbit 7685af4652 pluginized the socket protocols 2013-11-12 05:44:52 +01:00
unbit 21cb62db6c Merge pull request #452 from Kapishin/master
Fix typos
2013-11-11 20:15:07 -08:00
Pavlo Kapyshin c62aa8e7ed Fix typos 2013-11-11 23:05:30 +02:00
unbit 4765965d8e Merge pull request #451 from xrmx/coverity1111
build/coverity: remove broken erlang plugin
2013-11-11 10:14:08 -08:00
Riccardo Magliocchetti 556feaef2c build/coverity: remove broken erlang plugin 2013-11-11 19:11:20 +01:00
Unbit 799b8a22e0 improved content_type detection for rpc-path_info bridge 2013-11-11 15:50:11 +01:00
Unbit 2336580164 more rpc fixes 2013-11-11 15:09:13 +01:00
Unbit ca4f30c003 fixed rpc 64bit networking extension 2013-11-11 14:52:22 +01:00
Unbit d7d0a71d87 completed rpc 64bit network client 2013-11-11 14:42:28 +01:00
Unbit 44b92f1578 implemented 64bit extension for rpc protocol 2013-11-11 14:08:26 +01:00
Unbit abed95362f another series of rpc 64bit fixes 2013-11-11 13:46:00 +01:00
Unbit 72ecc217f7 perl passes the 64bit rpc test 2013-11-11 13:43:21 +01:00
Unbit 1405d01d50 pypy passes 64bit rpc local test 2013-11-11 13:24:08 +01:00
Unbit def65c4793 fixed python, perl and ruby rpc 64bit 2013-11-11 13:06:16 +01:00
Unbit 26386909de first attempt of moving rpc output from 16 to 64 bit 2013-11-11 13:00:20 +01:00
Unbit 2d4e04059a uwsgi.go low-level optimizations and implementation of uwsgi.CacheGet 2013-11-11 12:18:43 +01:00
unbit ac557739c2 allows monolithic gccgo to run on 32bit 2013-11-11 11:00:33 +01:00
Unbit 73bfc20ba1 added connection_fd to rack plugin 2013-11-11 09:12:52 +01:00
Unbit 6d5ae96d50 hack for adding an empty DEBUG section to the uwsgi core binary 2013-11-11 09:04:48 +01:00
Unbit 20b5b7b0dc added support for uwsgi::connection_fd and psgix.io 2013-11-11 08:22:01 +01:00
Unbit 82c5afd0c7 forgot PROFILE in Makefile 2013-11-11 06:12:32 +01:00
Unbit ec14f5b0fe Merge branch 'master' of ssh://github.com/unbit/uwsgi 2013-11-11 05:45:06 +01:00
unbit d93bdcb7b4 Merge pull request #450 from awentzonline/patch-1
Fixed spelling of error message in pyloader.c
2013-11-10 20:55:22 -08:00
Unbit b68ffc842d prepare for gccgo docs 2013-11-11 05:44:51 +01:00
Adam Wentz 0326c1d508 Fixed spelling of error message in pyloader.c 2013-11-10 14:08:41 -06:00
Unbit 42f45bfbf9 erlang plugin is broken 2013-11-10 08:27:44 +01:00
Unbit d018d3af99 pyerl plugin is broken 2013-11-10 08:27:23 +01:00
Unbit 42afc476d7 improved gccgo monolithic build 2013-11-10 08:26:14 +01:00
Unbit b5037d3f0f sanitize gccgo environment 2013-11-10 07:54:13 +01:00
Unbit 065dd7cfff return after grace_them_all 2013-11-10 06:49:02 +01:00
unbit 7909e092b5 Merge pull request #449 from xrmx/coverity0911-2
More coverity fixes
2013-11-09 21:52:49 -08:00
Unbit 9da53f5fd4 improved gccgo signal handling and added --timer and --rbtimer commodity options 2013-11-10 06:42:46 +01:00
Unbit 025cb7744e implemented goroutines timeout 2013-11-10 05:55:54 +01:00
Unbit e48a3ff1b7 added %k magic vars (number of cpu cores) 2013-11-10 04:51:25 +01:00
Unbit 2be371003c added %t and %T magic vars 2013-11-10 04:36:14 +01:00
Unbit 60d940e301 added simple math and concat to placeholders 2013-11-10 04:27:26 +01:00
Unbit 96c56cd8d5 added simple math routing actions 2013-11-10 03:30:33 +01:00
Unbit 4184619f7b removed snapshotting old feature 2013-11-10 02:59:15 +01:00
Unbit 50a8ec8a19 removed matheval flag, added generic matheval plugin and startin 1.9.20 development cycle 2013-11-10 02:53:08 +01:00
Unbit 79c702278a fixed async queue full condition in goroutine mode 2013-11-10 02:42:00 +01:00
Unbit 8fc41a4c85 remove useless gccgo code 2013-11-09 18:45:57 +01:00
Unbit 9c6455252d avoid GC to destroy go request env 2013-11-09 18:22:36 +01:00
Unbit 83e41844f3 first hardcore commit for supporting gccgo coroutines 2013-11-09 17:28:06 +01:00
Riccardo Magliocchetti 2cc17d6b11 core/logging: if we cannot reopen the log exit
This fixes passing negative fds to write and lseek.

Reported by Coverity as CID #1100807.
2013-11-09 16:15:49 +01:00
Riccardo Magliocchetti 14057b72c8 core: fix memory leak
Reported by Coverity as CID #1100813.
2013-11-09 16:08:47 +01:00
Riccardo Magliocchetti faf72b6a77 plugins/corerouter: fix memory leak
While at it reindent the code

Reported by Coverity as CID #1100818.
2013-11-09 16:05:41 +01:00
Riccardo Magliocchetti 963afa5174 core: fix memory leak
Reported by Coverity as CID #1100819
2013-11-09 15:46:05 +01:00
Unbit ce8ff8c45f fixed metric bug discovered by coverity 2013-11-09 15:15:32 +01:00
Riccardo Magliocchetti 5ae742e8e1 plugins/xslt: fail early if content_type is null
Fixes null pointer dereference.

Reported by Coverity as CID #1125161
2013-11-09 15:11:35 +01:00
Riccardo Magliocchetti 60f6572985 plugins/xslt: fix memory leak
Reported by Coverity as CID #1125168
2013-11-09 15:06:46 +01:00
Riccardo Magliocchetti 4ea34c63d2 plugins/servlet: Check uwsgi_jvm_exception return value
Reported vy Coverity as CID #1125169.
2013-11-09 15:04:47 +01:00
Riccardo Magliocchetti 5699d21aa7 metrics: add missing exit on error path
Fixed null pointer dereference.

Reported by Coverity as CID #1127337
2013-11-09 15:00:58 +01:00
Unbit dda8d25495 try to address EAGAIn body read problem 2013-11-09 13:17:17 +01:00
Unbit d4f690322c moved go to broken plugins 2013-11-09 13:01:28 +01:00
Unbit 4f2f30d1e5 improved gccgo plugin 2013-11-09 12:55:52 +01:00
Unbit d3b28e7956 more plugins for coveriti, fixed gccgo 2013-11-09 12:20:32 +01:00
Unbit ab4afdbeaa fixed template plugin 2013-11-09 06:39:29 +01:00
Unbit 54e2d698cb prepare for uWSGI 1.9.19 2013-11-09 04:58:52 +01:00
Unbit 8b0565c0b8 added metric api to ruby 2013-11-09 04:31:14 +01:00
unbit 102d6f25ed Merge pull request #447 from flavour/master
Support HTTP Status 509
2013-11-08 03:05:11 -08:00
Fran Boon d0a53aa976 Support HTTP Status 509
Whilst this isn't an official RFC, it's documented on e.g. Wikipedia. http://en.wikipedia.org/wiki/List_of_HTTP_status_codes#5xx_Server_Error
2013-11-08 10:49:48 +00:00
Unbit f8cf808e47 metrics as objects in stats subsystem 2013-11-07 12:10:56 +01:00
Unbit f8bbd2177e added stats pusher default plugins 2013-11-07 11:27:40 +01:00
Unbit f44c145941 do not destroy the stats pusher loop on EINTR 2013-11-07 09:54:16 +01:00
Unbit f34ac9f6aa completed metric threshold subystem 2013-11-07 09:43:01 +01:00
Unbit b971230fd9 use uwsgi.start_tv for srand instead of recomputing it 2013-11-07 08:56:04 +01:00
Unbit 5c6340caac busy_workers and idle_workers must be GAUGE 2013-11-07 07:45:12 +01:00
Unbit c0b97b47d3 implemented #284 2013-11-07 06:43:13 +01:00
Unbit a6b7f6e5bb added better random initialization and rr/rand hash algos 2013-11-06 18:20:38 +01:00
Unbit 1b99f9a750 added no_content_length to the cache router 2013-11-06 11:44:47 +01:00
Unbit a434195318 transformation_template has been moved to a plugin 2013-11-06 11:39:34 +01:00
Unbit a6a8faea78 added 'uwsgi' transformation 2013-11-06 10:52:19 +01:00
Unbit 31458320ab optimization in sendnl routing 2013-11-06 10:35:39 +01:00
Unbit 037a1f7f77 fixed #404 2013-11-05 09:43:11 +01:00
Unbit 10d4d10ac9 do not register metrics if metrics subsystem is not enabled 2013-11-04 15:12:18 +01:00
Unbit 00e8d509f8 metrics for routed and unrouted signals 2013-11-04 15:07:40 +01:00
Unbit c9ca14df4d fixed rbtimers 2013-11-03 19:31:18 +01:00
unbit 841cdfc62d Merge pull request #443 from prymitive/carbon_no_retry
allow disabling retries in carbon
2013-11-02 11:19:08 -07:00
Łukasz Mierzwa fc7026c076 allow disabling retries in carbon 2013-11-02 18:59:25 +01:00
unbit b96581c183 Merge pull request #442 from xrmx/coverityjvm
Add jvm plugins to coverity build profile
2013-11-02 10:35:24 -07:00
Riccardo Magliocchetti 4fa5d72af6 Add jvm plugins to coverity build profile 2013-11-02 18:13:57 +01:00
unbit f4be581666 Merge pull request #441 from xrmx/jvmarch2
plugins/jvm: let override jvm arch
2013-11-02 10:07:39 -07:00
unbit 24fb5518d8 Merge pull request #440 from Kapishin/master
Fix typos
2013-11-02 10:07:08 -07:00
unbit 2e8061d62a Merge pull request #439 from xrmx/coverity0211
More Coverity fixes
2013-11-02 10:06:42 -07:00
Riccardo Magliocchetti 23d70f6936 plugins/jvm: let override jvm arch
On mixed 64 bit kernel / 32 bit userspace linux systems the jvm
does not get recognized automatically if installed.

Permit to force an arch by exporting JVM_ARCH which is way more
easier than exporting the full path for includes and libraries.
2013-11-02 17:54:20 +01:00
Pavlo Kapyshin 95ea88628a Fix typos 2013-11-02 18:40:05 +02:00
Riccardo Magliocchetti 68b411f487 plugins/xslt: correct logical operator
Fixes a null pointer dereference.

Reported by Coverity as CID #1125160
2013-11-02 16:38:10 +01:00
Riccardo Magliocchetti 40bfbc0a44 plugins/pty: Fix a couple of memory issues
Rpoerted by Coverity as CID #1125163 and #1125162
2013-11-02 16:33:48 +01:00
Riccardo Magliocchetti fc9b6ea275 plugins/xslt: fix memory leaks
Rpeorted by Coverity as CID #1125164
2013-11-02 16:25:50 +01:00
Riccardo Magliocchetti 522f3bb3a1 plugins/xslt: fix xmlfile lifecycle
Fixes an use after free and a memory leak.

Reported by Coverity as CID #1125165, #1125167
2013-11-02 16:17:53 +01:00
Riccardo Magliocchetti 743c7ceaa6 plugins/v8: fix double free
Reported by Coverity as CID #1125166
2013-11-02 16:09:58 +01:00
Riccardo Magliocchetti c780cd47ce Update coverity build profile
Add a few more plugins and remove go that does not build.
2013-11-02 15:53:23 +01:00
unbit 54e7e01c05 Merge pull request #437 from prymitive/stats_pusher_retry
Restore retry handling in carbon
2013-11-01 22:35:22 -07:00
Łukasz Mierzwa 7d422d11e4 port carbon plugin to support retries in stats pusher, replaces old non-functional retry handling 2013-11-01 20:07:08 +01:00
Łukasz Mierzwa 5c35b60d1d add retry support to stats pusher 2013-11-01 19:43:15 +01:00
Unbit 94353efb3f correctly support python2.4 2013-11-01 10:02:35 +01:00
Roberto De Ioris 0586a2ba47 fixed #436 2013-11-01 09:54:01 +01:00
Roberto De Ioris be6081c6f7 port the carbon metric feature to latest api 2013-11-01 09:51:00 +01:00
unbit 955fb6479e Merge pull request #435 from prymitive/carbon_use_metrics
enable switching stats source from carbon's own loop to metrics data
2013-11-01 01:50:09 -07:00
Łukasz Mierzwa 1b334e8cf7 enable switching stats source from carbon's own loop to metrics data, fixes #417 2013-10-31 18:38:54 +01:00
Unbit 718e198ac8 little optimization in master fifo 2013-10-28 22:14:50 +01:00
unbit 3757e5a8bb Merge pull request #433 from xrmx/coverity2810-2
More Coverity fixes
2013-10-28 14:13:25 -07:00
Riccardo Magliocchetti d505964321 plugins/gevent: don't dereference null pointer
We should not pass a NULL pointer to Py_DECREF. This is possible
if wsgi_req->socket->edge_trigger is true.

Reported by Coverity as CID #970981.
2013-10-28 19:38:02 +01:00
Riccardo Magliocchetti 1114c1a429 core/fifo: check array index read before dereferencing uwsgi_master_fifo_manage
Reported by Coverity as CID #1100821
2013-10-28 19:29:25 +01:00
Riccardo Magliocchetti f58a9c6119 plugins/router_hash: don't dereference a null pointer
In case this condition is true:

    if (urhc->items[i] == ';') {

but this is false:

    if (found == hashed_result)

for the latest loop iteration value would be set as NULL

This is a bit unfortunate because later we can:
- use it in arithmetics
- dereference it in uwsgi_req_append

To fix that update vallen only if value is not null.

Reported by Coverity sa CID #1100805.
2013-10-28 19:27:06 +01:00
Riccardo Magliocchetti e791cb2c00 core/utils: cleanup if condition
uwsgi.ksm_mappings_current_size cannot be 0 here.
A couple of lines above:

1219 if (uwsgi.ksm_mappings_current_size <= 0) {
1220     uwsgi_log("[uwsgi-KSM] unable to read /proc/self/maps data\n");
1221     return;
1222 }
2013-10-28 19:26:51 +01:00
Unbit f741dbb01b added options for metric thresholds 2013-10-28 17:18:45 +01:00
Unbit d5f0741e8d metrics threshold structures 2013-10-28 17:16:17 +01:00
Unbit b265ed8313 avoid kevent storm for stats pusher thread 2013-10-28 17:09:27 +01:00
Unbit 6cb160bb26 support for WSGI genrators in tornado 2013-10-28 09:55:06 +01:00
Unbit 009a3f2c0d fixed greenlet memory leaks 2013-10-28 07:59:45 +01:00
Unbit 11b3d1fb94 greenlet plugin still need a bit of checks for reference counting 2013-10-27 19:06:18 +01:00
Unbit 7a39472700 various improvements in greenlet plugin 2013-10-27 18:31:31 +01:00
Unbit 4489b48603 added tornado loop engine 2013-10-27 18:08:34 +01:00
Unbit d2f69af964 fixed #428 2013-10-26 05:47:47 +02:00
unbit 34e9dabffc Merge pull request #430 from xrmx/coverity2510
Fix some leaks reported by coverity
2013-10-25 19:14:19 -07:00
unbit 6a4f46639e Merge pull request #432 from TheRealBill/master
Fixing argument for length of the string 'destroy'
2013-10-25 19:09:56 -07:00
Bill Anderson 0d07ff25f9 Fixing argument for length of the string 'destroy' 2013-10-25 13:20:11 -05:00
Riccardo Magliocchetti c1d9c4ef12 core/utils: fix resource leak in uwsgi_write_intfile
The more error condition you squeeze in one line the more chances
to leak :)

Reported by Coverity as CID #1100812
2013-10-25 19:53:04 +02:00
Riccardo Magliocchetti 0227ff7a9b core/utils: fix resource leak
Reported by Coverity as CID #1100814
2013-10-25 19:45:51 +02:00
Riccardo Magliocchetti 082b178ae3 core/io: Fix resource leak
Reported by Coverity as CID #1100815
2013-10-25 19:41:27 +02:00
Riccardo Magliocchetti 0e695cbd6e core/fsmon: fix memory leak
Reported by Coverity as CID #1100817
2013-10-25 19:35:38 +02:00
Riccardo Magliocchetti be2ed4dc4a core/snmp: fix usage of pointer outside of scope
Reported by Coverity as CID #1112122
2013-10-25 19:30:08 +02:00
Riccardo Magliocchetti 4777666588 plugins/rrdtools: don't leak filename
Reported by coverity as CID #1112121
2013-10-25 19:26:58 +02:00
Unbit 5647057ecc fixed UWSGI_PROFILE usage 2013-10-25 09:27:45 +02:00
Unbit 94cb950058 better error reporting for cgroups 2013-10-25 08:26:51 +02:00
Unbit 8d65371bf6 completely skip cgroups initialization when non-root 2013-10-24 21:34:07 +02:00
Unbit c747a36ae1 added PROFILE to Makefile 2013-10-24 18:55:55 +02:00
Unbit e51cb65857 fixed #427 2013-10-24 18:52:03 +02:00
unbit 8fa4fdb8c8 Merge pull request #426 from apoh/master
set python-bin from enviroment variable in Makefile
2013-10-24 06:16:12 -07:00
apoh d584857c78 set python-bin from enviroment variable in Makefile
currently the Makefile can only deal with the python-binary
wich is link to python. If you like to compile uwsgi with a
different pyhton-version you can just use

export PYTHON_BIN=/path/to/your/python
2013-10-23 17:32:36 +02:00
Unbit f0b1d79f8b added metrics api to pypy 2013-10-22 19:37:21 +02:00
Unbit 28566ad772 threads must be implicit in PyPy 2013-10-22 19:29:12 +02:00
Unbit 40c0e139d4 added metric api to python plugin 2013-10-22 16:25:56 +02:00
Unbit 04f2444ea0 added --zabbix-template 2013-10-22 12:11:19 +02:00
Unbit 9f71d28afa snmp integration with metrics subsystem 2013-10-22 10:18:09 +02:00
Unbit af262fb325 completed metric file collector 2013-10-22 07:08:12 +02:00
Unbit 243657b5aa added pluggables metric collectors 2013-10-22 06:29:01 +02:00
Unbit 032302edaa fixed #425 2013-10-22 05:18:57 +02:00
Unbit d4bd658d84 added restorable metrics 2013-10-21 19:01:06 +02:00
Unbit 78843c3e06 added --vassal-set 2013-10-21 18:21:59 +02:00
Unbit 692ba1f6b3 added shortcut mode for --metric 2013-10-21 16:13:33 +02:00
Unbit 400a9d72ef reimplemented metrics initial_value 2013-10-21 15:59:25 +02:00
Unbit 11f8f0385a added router_metrics plugin 2013-10-21 15:48:37 +02:00
Unbit c40d15981c exposed the metric routing var 2013-10-21 14:32:59 +02:00
Unbit baa1bf21f1 expose metrics to request logging 2013-10-21 10:54:19 +02:00
Unbit 3dd3122236 ported rrdtool to the metric api 2013-10-21 10:37:50 +02:00
Unbit 927ef2ccde added sockets metrics 2013-10-19 18:33:41 +02:00
Unbit af6eaf6737 completed perl metric api 2013-10-19 09:54:28 +02:00
unbit 7c543f5627 Merge pull request #424 from prymitive/daemon_fix
daemon throttle code could pass values < 0 to sleep()
2013-10-18 14:11:52 -07:00
Łukasz Mierzwa b06e35c610 fixed sleep in daemons throttle code, sleep() only accepts unsigned int, but in some cases uWSGI could pass value < 0 2013-10-18 22:33:48 +02:00
unbit 842c2148d7 fixed websocket example 2013-10-18 20:18:51 +02:00
unbit a2a94bd78e fixed websocket example for python3 2013-10-18 19:28:55 +02:00
Unbit 4452c30fc8 fixed typecasting 2013-10-18 18:46:17 +02:00
Unbit f462792c8e fixed uwgsi-docs bug 98 2013-10-18 12:13:02 +02:00
Unbit 03879fdc0c first test for metric api from apps (perl only) 2013-10-18 09:35:04 +02:00
Unbit 389d0b95d5 added the zabbix plugin (metrics based) 2013-10-17 16:30:19 +02:00
Unbit 6ec32e192f added puwsgi protocol 2013-10-17 10:15:34 +02:00
Roberto De Ioris 22c034cdca removed uwsgidump protocol 2013-10-17 05:57:43 +02:00
unbit 396d8c3022 Merge pull request #422 from prymitive/metrics_cast
missing cast to long long in metrics
2013-10-16 15:26:13 -07:00
Łukasz Mierzwa a535ecbe17 missing cast to long long in metrics 2013-10-16 22:56:31 +02:00
Unbit fd436c3e4f starting 1.9.19-dev 2013-10-16 20:59:15 +02:00
Unbit e5c245ea2f fixed stdin and embed configs 2013-10-16 20:51:26 +02:00
Unbit 3008b7c83b fixed #420 2013-10-16 05:39:28 +02:00
Unbit eca6cd3066 added --iprint 2013-10-15 20:11:22 +02:00
Unbit 691a41f290 ignore specific vars with prefix UWSGI_ 2013-10-15 18:16:03 +02:00
Unbit df4cf539a1 automatically enable metrics with stats pushers 2013-10-15 16:11:59 +02:00
Unbit baa1167dfe exposed metric api functions 2013-10-15 16:02:52 +02:00
Unbit d8a83ab7cf added metric aliases 2013-10-15 15:04:10 +02:00
Unbit 8184351b3b implemented SUM metrics and parent/child relationship 2013-10-15 14:46:53 +02:00
Unbit 4a4dbbcf69 ported the stats plugin to the metric subsystem 2013-10-15 14:08:01 +02:00
Unbit 56f79efc74 fixed json format for metrics 2013-10-15 11:13:14 +02:00
Unbit ea073a9bbd exposes metrics to stats 2013-10-15 11:11:18 +02:00
Unbit c5b2ca4b20 added delta_requests and write_errors to metrics 2013-10-15 09:02:43 +02:00
Unbit c0f9d8d2ff prepare for file as metric source 2013-10-14 19:19:05 +02:00
Unbit 497660279f Merge branch 'master' of github.com:unbit/uwsgi 2013-10-14 15:11:09 +02:00
Unbit 625395bd26 preliminary metrics subsystem code 2013-10-14 15:10:53 +02:00
Unbit 79a7797409 fixed #415 2013-10-12 08:05:56 +02:00
Unbit 3b13de3e6e check for NULL dictionary values in python autoreloader 2013-10-12 00:34:31 +02:00
Unbit 7f99855527 1.9.18.1 2013-10-11 14:27:26 +02:00
Unbit 8c29178f81 fixed kFreeBSD support 2013-10-11 16:24:46 +02:00
Unbit ed71000033 fixed FreeBSD compilation 2013-10-11 09:44:50 +02:00
Unbit 20860ed069 fixed python3 build 2013-10-11 14:07:02 +02:00
Unbit 2e62f13917 fixed mono options parsing 2013-10-11 05:59:20 +02:00
Unbit 1b2a83ce70 updated gemspec for 1.9.18 2013-10-11 05:51:19 +02:00
Unbit 113ec5ae9e added minimal profiles 2013-10-11 05:05:07 +02:00
root 68e81828d1 finally fixed the problem with python and arm (raspberrypi/sheevaplug) 2013-10-11 02:50:40 +00:00
Unbit 543790dc83 auto-modifier1 only if modifier1 is 0 2013-10-10 09:29:28 +02:00
unbit be24060578 Merge pull request #414 from arkaitzj/master
Still need to loop again when EAGAIN after a read triggered by an event, Fixes #363
2013-10-09 20:14:05 -07:00
Arkaitz Jimenez bdedc1c94c Still need to loop again when EAGAIN after a read triggered by an event 2013-10-10 00:12:57 +02:00
unbit e2454aa898 Merge pull request #413 from prymitive/backlog2
fixed backlog2 example plugin
2013-10-08 18:55:10 -07:00
Łukasz Mierzwa dfa4834be3 fixed backlog2 example plugin 2013-10-08 23:16:03 +02:00
Unbit f204249110 better fallback for non-zero modifiers 2013-10-07 17:50:43 +02:00
Unbit f4c25a6cd1 prepare for 1.9.18 release 2013-10-07 13:23:05 +02:00
Unbit fbfbacce14 fixed attach.py 2013-10-07 13:03:50 +02:00
Unbit a0eed32b3f move uWSGI 1.9 to GPL2 + linking exception 2013-10-07 12:19:33 +02:00
Unbit 9fe9fe1bb6 fixed data:// scheme 2013-10-07 11:37:52 +02:00
Unbit 192312e3ea avoid crashing on non-conformant PSGI response headers 2013-10-07 10:21:39 +02:00
Unbit ee46fe6ba6 Merge branch 'master' of github.com:unbit/uwsgi 2013-10-07 10:11:59 +02:00
Unbit 58abd07a88 support remote sources for perl scripts 2013-10-07 10:11:50 +02:00
Unbit c246a6008e correctly returns http error on connect 2013-10-07 10:11:23 +02:00
Unbit 706f1b59c3 make clang happy 2013-10-07 09:52:32 +02:00
Unbit ddbc8920f7 use uwsgi_open_and_read for perl files 2013-10-07 09:50:56 +02:00
Roberto De Ioris 7e3bf6868e fixed perl autoreload when under clang 2013-10-06 11:01:12 +02:00
Unbit 4c7ecef577 added perl auto reloader 2013-10-06 10:52:27 +02:00
Unbit e3da0aaad4 automatically returns the default app even if the modifier is wrong 2013-10-06 09:26:08 +02:00
Unbit 99e576e40c support pty on NetBSD 2013-10-06 07:04:12 +02:00
Unbit 7604ce3441 --wsgi-accept-buffers 2013-10-05 12:34:57 +02:00
Unbit a0082b5b98 accepting buffer is an option: --wsgi-accept-buffer 2013-10-05 12:32:49 +02:00
Unbit c90c639348 --wsgi-strict disable string/bytes optimizations too 2013-10-05 09:09:53 +02:00
Unbit 2e188dc25a fixed big endian support for uwsgi protocol 2013-10-05 07:15:36 +02:00
Unbit 312d21cb3f added 'before' variants for vassals templating 2013-10-05 07:07:48 +02:00
unbit 4ee138be7c Merge pull request #411 from thekad/master
updating so jvm plugin can compile in arm
2013-10-04 21:22:01 -07:00
Jorge Gallegos 299aef99b3 updating so jvm plugin can compile in arm
This *should* work for all arm versions so far and still works for i386/x86_64
2013-10-04 16:39:54 -07:00
Unbit 06953e4547 fixed uwsgiconfig.py for embed_config 2013-10-04 17:13:10 +02:00
Unbit 7565ee8740 fixed a memleak spotted by cppcheck 2013-10-04 12:29:16 +02:00
Unbit 10377f02a3 run the autoreloader even in non-apps mode when non-lazy 2013-10-04 06:22:06 +02:00
Unbit a41e6e2c61 added --emperor-cap 2013-10-04 06:11:29 +02:00
Unbit 6b2b909d33 apply PR_SET_PDEATHSIG to vassals on linux 2013-10-03 19:46:33 +02:00
Unbit 70cd18bffb added --unshare2 2013-10-03 19:43:43 +02:00
Unbit d6be4bcad9 added --mountpoint-check 2013-10-03 14:42:52 +02:00
Unbit 85530b5d8e added --exit 2013-10-03 11:38:51 +02:00
Unbit e3848e84d3 expose more clone() flags 2013-10-03 10:42:55 +02:00
Unbit 4ec9312b10 pivot_root improvements 2013-10-02 16:52:14 +02:00
Unbit aedf3b2455 reindented core/utils.c 2013-10-02 13:58:18 +02:00
Unbit 2210ec7f71 added call scheme 2013-10-02 10:58:27 +02:00
Unbit a9bee41707 added UWSGI_ADDITIONAL_SOURCES env var and additional_sources buildconf option 2013-10-02 10:52:53 +02:00
Unbit 3adbfd100f allow overriding schemes 2013-10-02 10:39:41 +02:00
Unbit 8d8de4b8da pluginized uwsgi_open_and_read 2013-10-02 10:37:39 +02:00
Unbit 099403d554 fixed #409 2013-10-02 09:39:33 +02:00
Unbit 13938a6aa7 more consistent placeholders support 2013-10-02 09:31:48 +02:00
Unbit 9be3a4aaf8 various consistency fixes for strict mode + autoload 2013-10-02 08:41:43 +02:00
Unbit 009e42f349 fixed #409 2013-10-02 07:42:41 +02:00
Unbit 207dd3bc77 fixed #407 2013-10-02 07:36:14 +02:00
Unbit feec6b3151 do not set upper magic vars in --inherit or --include mode 2013-10-01 18:42:30 +02:00
Unbit bf8207f0f1 added magic vars for original config file 2013-10-01 18:16:01 +02:00
Unbit 9fcbc6ee68 added --set-placeholder/--set-ph 2013-10-01 15:50:46 +02:00
Unbit dcb58aaa34 added UWSGI_EMBED_CONFIG variable 2013-10-01 15:39:07 +02:00
Unbit 7163d8ddd4 fixed #406 2013-10-01 15:30:39 +02:00
Unbit c7b24eec45 fixed regression in --set as a workaround for broken getopt_long 2013-10-01 15:02:33 +02:00
Unbit 1e7098f787 fixed #405 2013-10-01 13:27:50 +02:00
Unbit b28f0d9863 fixed #405 2013-10-01 12:22:30 +02:00
Unbit b49c4f4af9 chdir at every emperor glob interaction 2013-10-01 11:38:29 +02:00
Unbit 2c39aafb0b honour --force-cwd 2013-10-01 11:32:17 +02:00
unbit 1036d9c18b Merge pull request #402 from xrmx/ia64
Ia64 fixes
2013-09-30 08:31:03 -07:00
Unbit f0c8cbf190 try specified rvm paths first 2013-09-30 17:12:54 +02:00
Unbit f51db4481b added sendfile support to raw mode 2013-09-30 15:45:27 +02:00
Unbit 717eba7ab3 implemented raw response for python 2013-09-30 15:25:00 +02:00
Unbit 3cc971ba55 raw sockets must be undeferred 2013-09-30 15:01:58 +02:00
Unbit 23b3d7483f introducing raw mode 2013-09-30 13:43:13 +02:00
unbit ba03837e29 Merge pull request #297 from prymitive/dfix
fixed dump daemon process termination
2013-09-30 04:41:37 -07:00
Łukasz Mierzwa 06952fbaff wait for deamon pid after SIGTERM to prevent it from becoming zombie 2013-09-30 12:56:01 +02:00
Unbit 27be00b4cc fixed #399 2013-09-30 11:47:14 +02:00
unbit b50a377190 Merge pull request #217 from prymitive/idle_fix
zero pids after worker killed due to --idle usage
2013-09-30 01:51:22 -07:00
Unbit 1ed9cb0bec prepare for 1.9.18 2013-09-30 09:46:17 +02:00
unbit a548ede3c7 Merge pull request #400 from xrmx/config-cleanup
Some uwsgiconfig.py cleanups
2013-09-30 00:44:38 -07:00
unbit de26c09030 Merge pull request #401 from prymitive/cheaper_fix_limit
adapted cheaper algos to work properly with cheaper limits
2013-09-30 00:41:45 -07:00
Unbit 19aa7c2560 clear exception on PyObject_CheckReadBuffer error 2013-09-30 09:40:40 +02:00
Unbit 215e0c4cbc typos 2013-09-30 09:26:58 +02:00
Unbit d484acefa4 use buffer protocol in WSGI response 2013-09-30 09:25:25 +02:00
Riccardo Magliocchetti 4032efd3e8 Add proper ifdefery for namespaces on ia64
Fix #398
2013-09-29 21:45:07 +02:00
Riccardo Magliocchetti f9d412bcca uwsgiconfig: restore obsolete linux check on ia64
Fix #397
2013-09-29 21:35:38 +02:00
Łukasz Mierzwa 5f52063b9e cheaper API change to allow signaling cheaper algo if it can spawn new workers or only cheap them. Fixes #394 2013-09-29 20:30:29 +02:00
Riccardo Magliocchetti 87833abb42 uwsgiconfig: add --debug and --asan options
--debug compiles with debug symbols
--asan adds support for compiling with address sanitizer, see
http://clang.llvm.org/docs/AddressSanitizer.html#usage
Should work with clang and gcc 4.8. Does not find as many issues
as valgrind but having lot less overhead could be enabled in more
situations.

While at it handle --cflags and --build together instead of
duplicating code.
2013-09-29 18:29:14 +02:00
Riccardo Magliocchetti 0fcbd5e334 uwsgiconfig: add --verbose switch
Print the whole compilation commandlines

Based on a patch from Jonas Smedegaard
2013-09-29 17:36:26 +02:00
Riccardo Magliocchetti 5b55bf5f5c uwsgiconfig: use optparse for arguments passing
This opens the possibility (if desired) to have multiple options
passed at the same time, the same options repeated, etc...
Also it gives an help for free.
2013-09-29 17:28:45 +02:00
Riccardo Magliocchetti b8cc1d962f uwsgiconfig: cleanup report initialization 2013-09-29 13:57:06 +02:00
Unbit 762c73e2ac close workers sockets in gateways 2013-09-28 12:06:22 +02:00
Unbit 57cd0e9135 closed #391 and #392 2013-09-28 12:01:59 +02:00
Roberto De Ioris 5e0a85bff0 use execv instead of execve 2013-09-28 05:56:13 +02:00
unbit d2eaef524c Merge pull request #393 from prymitive/cheaper_limit_typo
fixed stupid typo in cheaper rss limits options validation
2013-09-27 19:51:18 -07:00
Łukasz Mierzwa a98c5a3931 fixed stupid typo in cheaper rss limits options validation 2013-09-27 23:21:45 +02:00
Unbit 040da07323 added forkptyrouter-rows and forkptyrouter-cols 2013-09-27 16:10:55 +02:00
Unbit 34f43ec97b support pty in Debian kFreeBSD 2013-09-27 08:12:45 +02:00
Unbit 7e3cfe94d6 improved forkptyrouter 2013-09-26 20:29:04 +02:00
Unbit e2c3b650a1 completed --pty-uconnect 2013-09-26 20:03:02 +02:00
Unbit 404dfaeda7 fixed initial logging 2013-09-26 19:59:49 +02:00
Unbit a1ec530945 implemented uwsgi protocol for forkptyrouter 2013-09-26 19:28:09 +02:00
Unbit b8dfd617f2 minor fixes 2013-09-26 10:18:16 +02:00
Unbit f34ed4dc47 added --attach-control-daemon 2013-09-26 09:36:31 +02:00
Unbit cd2ff0e585 emperor proxy 2013-09-26 07:51:13 +02:00
Unbit 449955562f expose 'cursed' field in emperor stats 2013-09-26 07:09:57 +02:00
Unbit 41a4bbccfc added Emperor curse support 2013-09-26 07:04:08 +02:00
Unbit 87b17c001d some typo 2013-09-26 05:32:27 +02:00
Unbit 67b7753814 use MAP_FAILED check for mmap() 2013-09-25 16:24:20 +02:00
Unbit b190744b77 on kFreeBSD python atexit will make mess, disable it for now 2013-09-25 09:20:20 +02:00
Unbit 4b603071d8 preliminary support for Debian kFreeBSD 2013-09-25 07:18:17 +02:00
Unbit 16c55f0217 preliminary libffi plugin 2013-09-24 17:45:34 +02:00
Unbit c989f2fb33 added api func uwsgi_split_quoted 2013-09-24 17:45:03 +02:00
Unbit 6429a47b0d 1.9.17.1 2013-09-24 09:56:40 +02:00
Unbit f8a48a3ae9 fixed a bug with fd 0 2013-09-24 09:52:49 +02:00
Unbit fb3272d165 fixed a stupid bug with router_http 2013-09-23 16:33:41 +02:00
Unbit be5f67906e added --emperor-wrapper 2013-09-23 14:38:42 +02:00
Unbit f730023e88 fixed a typo 2013-09-23 09:18:43 +02:00
Unbit 50954d34db prepare for 1.9.17 2013-09-22 19:32:11 +02:00
Unbit ef2d9e781f implemented fifo slots and fixed chain reloading 2013-09-22 18:36:28 +02:00
Unbit a9bb310a20 various pty improvements 2013-09-19 11:21:10 +02:00
Unbit 86f37556da fixed logpipe 2013-09-19 11:08:28 +02:00
Unbit a57617c09a added fd: logger and routable log encoders 2013-09-19 06:41:09 +02:00
Unbit 63ac62cf1d allows ANSI sequences in config files via %[ 2013-09-19 05:55:20 +02:00
Unbit ac371730fd rename pypyuwsgi.py to pyuwsgi.py 2013-09-19 04:01:31 +02:00
Unbit 4ed6588c80 fixed #99 2013-09-19 03:59:15 +02:00
Unbit 81d20edc4c more cleanup 2013-09-19 03:55:27 +02:00
Unbit a9fc6adccf fixed #386 2013-09-19 03:41:23 +02:00
Unbit 21ad94ba4e implemented C fifo command 2013-09-18 17:40:02 +02:00
Unbit 571b9f27e1 added + and - fifo commands 2013-09-18 14:44:30 +02:00
Unbit cbf9ccf062 more brutal heartbeat emperor management 2013-09-18 12:03:35 +02:00
Unbit dd8fd8f19c implemented fifo command 'W' 2013-09-18 11:38:39 +02:00
Unbit 1535b8ee13 implemented graceful shutdown 2013-09-18 11:33:50 +02:00
Unbit f2491536dd implemented fifo command P 2013-09-18 11:20:55 +02:00
Unbit 88ce0181b3 added master fifo [2] 2013-09-18 11:16:15 +02:00
Unbit 4ad2658090 added master fifo 2013-09-18 11:08:56 +02:00
unbit 8d80c5e84d Merge pull request #388 from xtfxme/patch-1
pty.c: `--pty-exec` should have a `required_argument`
2013-09-17 23:49:29 -07:00
Unbit bae9235103 added the libtcc plugin (only for hooks) 2013-09-18 07:32:12 +02:00
C Anthony Risinger 8ae2d0d00c pty.c: --pty-exec should have a required_argument 2013-09-17 14:57:15 -05:00
Unbit 373b89e70c finally removed strtok() 2013-09-17 16:03:40 +02:00
Unbit c14e18b270 another round of strtok removals 2013-09-17 15:25:06 +02:00
Unbit 68ec3afd1a another round of strtok removal 2013-09-17 15:14:55 +02:00
Unbit 8918e81256 first attempt to change from strtok to strtok_r 2013-09-17 15:00:33 +02:00
Unbit 469fd697cb fixed #383 2013-09-17 14:16:41 +02:00
Unbit 20844ebfca Merge branch 'master' of github.com:unbit/uwsgi 2013-09-17 14:09:44 +02:00
Unbit 38652076d3 fixed #384 2013-09-17 14:09:00 +02:00
unbit f13ae47fc0 Merge pull request #382 from gdamjan/master
improve php build script
2013-09-16 05:17:39 -07:00
Damjan Georgievski ad4ee9d5c3 improve php build script
use UWSGICONFIG_PHPLIBDIR to specify the directory of the php library,
useful for Debian Wheezy which puts php5.so in /usr/lib/php5

small change: don't use exceptions for flow control
2013-09-16 12:49:14 +02:00
Unbit 03a4e900ea fixed #378 2013-09-16 11:50:37 +02:00
Unbit b52dbf2aa0 added forkptyrouter 2013-09-16 06:38:29 +02:00
Unbit c7a22c3b53 improved logpipe 2013-09-15 12:02:14 +02:00
unbit 775aae3f1e Merge pull request #380 from KLab/logpipe
Add pipe logger.
2013-09-15 03:09:53 -07:00
INADA Naoki 862731ba91 Add pipe logger. 2013-09-15 16:47:58 +09:00
Unbit 8c302eee51 start 1.9.17 now 2013-09-14 15:30:23 +02:00
Unbit b6d34067c4 support for multiple tuntap devices 2013-09-14 15:15:47 +02:00
Unbit dbe15195b7 support for multiple routers 2013-09-14 15:07:43 +02:00
Unbit 5642aa1eb5 should be enough for 1.9.16... 2013-09-14 14:40:16 +02:00
Unbit 5dd465ccc1 added internal counters to the tuntap router 2013-09-14 14:31:12 +02:00
Unbit ae78c3007e fixed tuntap firewall 2013-09-14 12:05:13 +02:00
Unbit 16211d9439 preliminary tuntap firewall implementation 2013-09-14 11:04:26 +02:00
unbit 515619fe2a Merge pull request #379 from prymitive/cheaper_mem_limit
allow setting cheaper rss memory limits
2013-09-14 01:25:14 -07:00
Unbit a7d550165d still refactoring tuntap 2013-09-14 10:03:41 +02:00
Unbit efceacd9e5 refactored tuntap plugin 2013-09-14 09:54:57 +02:00
Unbit ea5ebc2d15 added preliminary version of the tuntap plugin 2013-09-14 08:43:56 +02:00
Unbit fba82c203c minor improvements 2013-09-14 08:43:09 +02:00
Łukasz Mierzwa a50516af7a allow setting cheaper rss memory limits 2013-09-14 01:04:19 +02:00
Unbit 6056b51653 implemented priority in rsyslog 2013-09-13 06:17:34 +02:00
Unbit 23a3170c59 fixed a typo 2013-09-12 15:31:15 +02:00
Unbit e136128408 added compress and suffix log encoders 2013-09-11 14:04:26 +02:00
Unbit fce94e0f54 cleanup the rados plugin 2013-09-10 23:42:08 +02:00
unbit 06fa65bc5d Merge pull request #377 from javierguerragiraldez/master
new rados plugin
2013-09-11 06:49:04 -07:00
Javier Guerra 571ec5ca72 cleanup old (commented) flags inherited from glusterfs 2013-09-11 08:30:06 -05:00
Unbit 39bc0ecd46 OpenBSD has not strndup 2013-09-10 21:43:24 +02:00
Javier Guerra 7a5373360c strip mountpoint prefix, better check file not found error. 2013-09-10 12:30:59 -05:00
Javier Guerra 15453ffef6 compilation infrastructure 2013-09-10 12:30:59 -05:00
Javier Guerra a25747a096 use official modifier1 2013-09-10 12:30:59 -05:00
Javier Guerra bb1ef59b52 initial draft 2013-09-10 12:30:59 -05:00
Javier Guerra 6bb3af840d initial draft 2013-09-10 12:30:58 -05:00
Unbit 0223c74ecc added json log encoder 2013-09-10 19:24:50 +02:00
Unbit c7004d7ba4 added nl and format log encoders 2013-09-10 19:15:20 +02:00
Unbit 915d2e9192 Merge branch 'master' of github.com:unbit/uwsgi 2013-09-10 11:59:37 +02:00
Unbit df79b9367b report thunder lock status 2013-09-10 11:59:21 +02:00
Unbit ce3d026037 link with -lrt on solaris 2013-09-10 06:31:07 +02:00
Unbit d0f6c4130b fixed #376 2013-09-10 06:26:22 +02:00
Unbit 26bcf28182 improved gevent waiting for greenlets 2013-09-09 17:52:28 +02:00
unbit 272d1ccc03 improved mount/unmount support in freebsd 2013-09-08 18:39:31 +02:00
unbit 6c440af24e support for platform non defining MS_PRIVATE 2013-09-08 12:48:45 +02:00
unbit 8954520cb9 hardcode support for MS_REC 2013-09-08 12:47:07 +02:00
unbit 31bde74fab fixed msgpack on 32bit 2013-09-08 11:23:06 +02:00
Unbit 13c64a383c added response routes 2013-09-08 08:23:44 +02:00
Unbit 809028f11b added date/time support to msgpack encoder 2013-09-07 15:01:29 +02:00
Unbit dee9d2ba1e improved float/double support 2013-09-07 14:52:01 +02:00
Unbit 29d80ce061 added msgpack plugin, it misses int and float support 2013-09-07 13:06:10 +02:00
Unbit abcd3242d8 added log encoders 2013-09-07 10:40:40 +02:00
unbit f4762299f9 added callint/callret hooks 2013-09-06 12:28:04 +02:00
unbit 107f4309a4 first public implementation of the advanced hook subsystem 2013-09-06 11:57:23 +02:00
unbit d2a8df19ea prepare for advanced hooks 2013-09-06 11:03:02 +02:00
unbit 29efd15534 Merge pull request #374 from gdamjan/master
remount to private subtree after unshare
2013-09-06 00:00:03 -07:00
Damjan Georgievski e7fb216a8d remount to private subtree after unshare
systemd will makes the VFS tree 'shared' on boot, so mount
operations would propagate between the namespace and the
parent system.
make sure the whole VFS tree is private to the namespace.
2013-09-06 08:41:00 +02:00
unbit 952b96cdcb added --jail-attach 2013-09-04 14:20:02 +02:00
unbit 8ee82fc296 do not call pre-jail on reload 2013-09-04 12:28:22 +02:00
unbit afe2bfb856 improved support for FreeBSD jails 2013-09-04 11:36:45 +02:00
unbit 5b63e9aea0 added FreeBSD jail support 2013-09-04 00:30:39 +02:00
Unbit 91f70259e2 some garbage... 2013-09-03 20:24:04 +02:00
Unbit f120cacc03 added support for O_TMPFILE 2013-09-03 07:15:22 +02:00
Unbit aff1d782b8 Merge branch 'master' of github.com:unbit/uwsgi 2013-09-02 15:55:27 +02:00
Unbit b489fd8a24 added --disable-sendfile 2013-09-02 15:55:02 +02:00
unbit 47e0eb68c2 Merge pull request #373 from ivanjr0/master
Adding **kwargs to @harakiri
2013-09-02 05:26:57 -07:00
Ivan Júnior 9498e25245 Adding **kwargs to @harakiri
I can't see any reason why this decorator doesn't have `**kwargs`, so I add it.
2013-09-02 09:23:53 -03:00
Unbit a33e18b589 --pivot_root and --pivot-root 2013-09-02 10:39:15 +02:00
Unbit f2dcdf2289 added --pivot-root (linux only) 2013-09-02 10:38:40 +02:00
Unbit 74c53e8a61 added --drop-after-init and --drop-after-apps 2013-09-02 10:12:46 +02:00
Unbit 1feed87c10 improved request_id management in fastcgi parser 2013-08-31 12:25:10 +02:00
Unbit f89742d81a fixed fastcgi bug exposed by apache mod_fastcgi 2013-08-31 12:08:27 +02:00
Unbit 340b9d603e fixed --persistent-ipcsem 2013-08-31 11:22:39 +02:00
Unbit 1c0fc64243 better ipcsem support 2013-08-31 11:20:52 +02:00
Unbit 1d5173d923 better BUG reporting in smart-attach-daemon 2013-08-30 20:03:58 +02:00
Unbit 49a8bf0b9b report missing internal routing support 2013-08-30 14:58:15 +02:00
Unbit 0a7e5a41a2 added the Zeus mode analysis 2013-08-30 11:27:47 +02:00
Unbit 43ff563429 prepare for 1.9.16 2013-08-30 10:10:34 +02:00
Roberto De Ioris 2daf6f1f66 fixed #75 2013-08-30 08:07:50 +02:00
Unbit 985f56768f follow Rack specifications for QUERY_STRING,SCRIPT_NAME,SERVER_NAME and SERVER_PORT 2013-08-29 18:58:08 +02:00
Unbit 35278588f5 improved smart-attach-daemon 2013-08-29 17:40:32 +02:00
Unbit f6545be647 fixed reference counting bug in rpc and signal handlers 2013-08-29 14:45:08 +02:00
Łukasz Mierzwa edbff83fd6 zero pids after worker killed due to --idle usage 2013-04-08 10:32:39 +02:00
192 changed files with 12395 additions and 2671 deletions
+16
View File
@@ -1,3 +1,19 @@
----------------------------------------------------------------------
LINKING EXCEPTION
In addition to the permissions in the GNU General Public License,
the authors give you unlimited permission to link the compiled
version of this library into combinations with other programs,
and to distribute those combinations without any restriction
coming from the use of this file. (The General Public License
restrictions do apply in other respects; for example, they cover
modification of the file, and distribution when not linked into
a combined executable.)
----------------------------------------------------------------------
GNU GENERAL PUBLIC LICENSE
Version 2, June 1991
+11 -3
View File
@@ -1,8 +1,16 @@
PYTHON := python
all:
python uwsgiconfig.py --build
$(PYTHON) uwsgiconfig.py --build $(PROFILE)
clean:
python uwsgiconfig.py --clean
$(PYTHON) uwsgiconfig.py --clean
check:
python uwsgiconfig.py --check
$(PYTHON) uwsgiconfig.py --check
plugin.%:
$(PYTHON) uwsgiconfig.py --plugin plugins/$* $(PROFILE)
%:
$(PYTHON) uwsgiconfig.py --build $@
+2 -2
View File
@@ -7,7 +7,7 @@ filename = sys.argv[1]
size = os.path.getsize(filename)
f = open(filename, 'r')
print(f.read())
os.write(1, f.read())
f.close()
print(struct.pack("<Q", size))
os.write(1, (struct.pack("<Q", size)))
+1 -1
View File
@@ -1,3 +1,3 @@
[uwsgi]
main_plugin = python,gevent,psgi,lua,php,rack,jvm,jwsgi,ring,mono,transformation_toupper,coroae,v8,cgi,xslt,webdav,ssi,ldap
main_plugin = python,gevent,psgi,lua,php,rack,jvm,jwsgi,ring,mono,transformation_toupper,coroae,v8,cgi,xslt,webdav,ssi,ldap,gccgo,rados,pypy
inherit = base
+1 -2
View File
@@ -6,7 +6,6 @@ zeromq = auto
ssl = auto
pcre = auto
routing = auto
matheval = auto
debug = false
unbit = false
xml_implementation = libxml2
@@ -17,7 +16,7 @@ plugins =
bin_name = uwsgi
append_version =
plugin_dir = .
embedded_plugins = %(main_plugin)s, ping, cache, nagios, rrdtool, carbon, rpc, corerouter, fastrouter, http, ugreen, signal, syslog, rsyslog, logsocket, router_uwsgi, router_redirect, router_basicauth, zergpool, redislog, mongodblog, router_rewrite, router_http, logfile, router_cache, rawrouter, router_static, sslrouter, spooler, cheaper_busyness, symcall, transformation_tofile, transformation_gzip, transformation_chunked, transformation_offload, router_memcached, router_redis, router_hash, router_expires
embedded_plugins = %(main_plugin)s, ping, cache, nagios, rrdtool, carbon, rpc, corerouter, fastrouter, http, ugreen, signal, syslog, rsyslog, logsocket, router_uwsgi, router_redirect, router_basicauth, zergpool, redislog, mongodblog, router_rewrite, router_http, logfile, router_cache, rawrouter, router_static, sslrouter, spooler, cheaper_busyness, symcall, transformation_tofile, transformation_gzip, transformation_chunked, transformation_offload, router_memcached, router_redis, router_hash, router_expires, router_metrics, transformation_template, stats_pusher_socket
as_shared_library = false
locking = auto
+1 -2
View File
@@ -1,4 +1,3 @@
[uwsgi]
# pypy,jvm,ring,jwsgi
main_plugin = erlang,psgi,rack,lua,python,gevent,php,cgi,mono,pyerl,go
main_plugin = psgi,rack,lua,python,gevent,php,cgi,glusterfs,pty,xslt,msgpack,geoip,v8,pam,ldap,mono,jvm,ring,jwsgi,servlet,rados,coroae,pypy,gccgo
inherit = base
+3
View File
@@ -0,0 +1,3 @@
[uwsgi]
main_plugin = gccgo
inherit = base
-1
View File
@@ -1,4 +1,3 @@
[uwsgi]
main_plugin = glusterfs
inherit = base
matheval = false
-5
View File
@@ -1,5 +0,0 @@
[uwsgi]
main_plugin = go
inherit = base
bin_name = libuwsgi.so
as_shared_library = true
+32
View File
@@ -0,0 +1,32 @@
[uwsgi]
xml = false
yaml = false
json = false
zeromq = false
ssl = false
pcre = false
routing = false
debug = false
unbit = false
xml_implementation = none
yaml_implementation = none
malloc_implementation = libc
extras =
plugins =
bin_name = uwsgi
append_version =
plugin_dir = .
embedded_plugins = %(main_plugin)s
as_shared_library = false
locking = auto
event = auto
timer = auto
filemonitor = auto
blacklist =
whitelist =
embed_files =
embed_config =
+3
View File
@@ -0,0 +1,3 @@
[uwsgi]
main_plugin = psgi
inherit = minimal
+3
View File
@@ -0,0 +1,3 @@
[uwsgi]
main_plugin = python
inherit = minimal
+3
View File
@@ -0,0 +1,3 @@
[uwsgi]
main_plugin = pypy
inherit = minimal
+3
View File
@@ -0,0 +1,3 @@
[uwsgi]
main_plugin = rados
inherit = base
+3
View File
@@ -0,0 +1,3 @@
[uwsgi]
main_plugin = rack
inherit = minimal
View File
+2 -3
View File
@@ -184,8 +184,8 @@ static int uwsgi_alarm_log_add(char *alarms, char *regexp, int negate) {
// map instances to the log
char *list = uwsgi_str(alarms);
char *p = strtok(list, ",");
while (p) {
char *p, *ctx = NULL;
uwsgi_foreach_token(list, ",", p, ctx) {
struct uwsgi_alarm_instance *uai = uwsgi_alarm_get_instance(p);
if (!uai) {
free(list);
@@ -205,7 +205,6 @@ static int uwsgi_alarm_log_add(char *alarms, char *regexp, int negate) {
else {
ual->alarms = uall;
}
p = strtok(NULL, ",");
}
free(list);
return 0;
+27 -22
View File
@@ -4,18 +4,18 @@ extern struct uwsgi_server uwsgi;
/*
This is a general purpose async loop engine (it expects a coroutine based approach)
This is a general-purpose async loop engine (it expects a coroutine-based approach)
You can see it as an hub holding the following structures:
1) the runqueue, cores ready to be run are appended in this list
1) the runqueue, cores ready to be run are appended to this list
2) the fd list, this is a list of monitored file descriptors, a core can wait for all the file descriptors it needs
3) the timeout value, if set the current core will timeout aftert he specified number of seconds (unless an event cancel it)
3) the timeout value, if set, the current core will timeout after the specified number of seconds (unless an event cancels it)
IMPORTANT: this is not a callback based engine !!!
IMPORTANT: this is not a callback-based engine !!!
*/
@@ -159,7 +159,7 @@ static void async_expire_timeouts(uint64_t now) {
wsgi_req = (struct wsgi_request *) urbt->data;
// timeout expired
wsgi_req->async_timed_out = 1;
// reset teh request
// reset the request
async_reset_request(wsgi_req);
// push it in the runqueue
runqueue_push(wsgi_req);
@@ -308,29 +308,42 @@ end:
async_reset_request(uwsgi.wsgi_req);
uwsgi_close_request(uwsgi.wsgi_req);
uwsgi.wsgi_req->async_status = UWSGI_OK;
uwsgi.async_queue_unused_ptr++;
uwsgi.async_queue_unused[uwsgi.async_queue_unused_ptr] = uwsgi.wsgi_req;
}
void async_schedule_to_req_green(void) {
struct wsgi_request *wsgi_req = uwsgi.wsgi_req;
#ifdef UWSGI_ROUTING
if (uwsgi_apply_routes(uwsgi.wsgi_req) == UWSGI_ROUTE_BREAK) {
if (uwsgi_apply_routes(wsgi_req) == UWSGI_ROUTE_BREAK) {
goto end;
}
#endif
for(;;) {
if (uwsgi.p[uwsgi.wsgi_req->uh->modifier1]->request(uwsgi.wsgi_req) <= UWSGI_OK) {
if (uwsgi.p[wsgi_req->uh->modifier1]->request(wsgi_req) <= UWSGI_OK) {
break;
}
uwsgi.wsgi_req->switches++;
wsgi_req->switches++;
if (uwsgi.schedule_fix) {
uwsgi.schedule_fix(wsgi_req);
}
// switch after each yield
uwsgi.schedule_to_main(uwsgi.wsgi_req);
uwsgi.schedule_to_main(wsgi_req);
}
#ifdef UWSGI_ROUTING
end:
#endif
async_reset_request(uwsgi.wsgi_req);
uwsgi_close_request(uwsgi.wsgi_req);
uwsgi.wsgi_req->async_status = UWSGI_OK;
// re-set the global state
uwsgi.wsgi_req = wsgi_req;
async_reset_request(wsgi_req);
uwsgi_close_request(wsgi_req);
// re-set the global state (routing could have changed it)
uwsgi.wsgi_req = wsgi_req;
wsgi_req->async_status = UWSGI_OK;
uwsgi.async_queue_unused_ptr++;
uwsgi.async_queue_unused[uwsgi.async_queue_unused_ptr] = wsgi_req;
}
void async_loop() {
@@ -511,19 +524,11 @@ void async_loop() {
uwsgi.wsgi_req->switches++;
// request ended ?
if (uwsgi.wsgi_req->async_status <= UWSGI_OK) {
if (uwsgi.wsgi_req->async_status <= UWSGI_OK ||
uwsgi.wsgi_req->waiting_fds || uwsgi.wsgi_req->async_timeout) {
// remove from the runqueue
runqueue_remove(current_request);
// push wsgi_request in the unused stack
uwsgi.async_queue_unused_ptr++;
uwsgi.async_queue_unused[uwsgi.async_queue_unused_ptr] = uwsgi.wsgi_req;
}
else if (uwsgi.wsgi_req->waiting_fds || uwsgi.wsgi_req->async_timeout) {
// remove this request from the runqueue
runqueue_remove(current_request);
}
current_request = next_request;
}
+37
View File
@@ -172,6 +172,16 @@ int uwsgi_buffer_u32be(struct uwsgi_buffer *ub, uint32_t num) {
return uwsgi_buffer_append(ub, (char *) buf, 4);
}
int uwsgi_buffer_f32be(struct uwsgi_buffer *ub, float num) {
uint8_t buf[4];
uint32_t *pnum = (uint32_t *) &num;
buf[3] = (uint8_t) (*pnum & 0xff);
buf[2] = (uint8_t) ((*pnum >> 8) & 0xff);
buf[1] = (uint8_t) ((*pnum >> 16) & 0xff);
buf[0] = (uint8_t) ((*pnum >> 24) & 0xff);
return uwsgi_buffer_append(ub, (char *) buf, 4);
}
int uwsgi_buffer_u32le(struct uwsgi_buffer *ub, uint32_t num) {
uint8_t buf[4];
buf[0] = (uint8_t) (num & 0xff);
@@ -194,6 +204,33 @@ int uwsgi_buffer_u64be(struct uwsgi_buffer *ub, uint64_t num) {
return uwsgi_buffer_append(ub, (char *) buf, 8);
}
int uwsgi_buffer_u64le(struct uwsgi_buffer *ub, uint64_t num) {
uint8_t buf[8];
buf[0] = (uint8_t) (num & 0xff);
buf[1] = (uint8_t) ((num >> 8) & 0xff);
buf[2] = (uint8_t) ((num >> 16) & 0xff);
buf[3] = (uint8_t) ((num >> 24) & 0xff);
buf[4] = (uint8_t) ((num >> 32) & 0xff);
buf[5] = (uint8_t) ((num >> 40) & 0xff);
buf[6] = (uint8_t) ((num >> 48) & 0xff);
buf[7] = (uint8_t) ((num >> 56) & 0xff);
return uwsgi_buffer_append(ub, (char *) buf, 8);
}
int uwsgi_buffer_f64be(struct uwsgi_buffer *ub, double num) {
uint8_t buf[8];
uint64_t *pnum = (uint64_t *) &num;
buf[7] = (uint8_t) (*pnum & 0xff);
buf[6] = (uint8_t) ((*pnum >> 8) & 0xff);
buf[5] = (uint8_t) ((*pnum >> 16) & 0xff);
buf[4] = (uint8_t) ((*pnum >> 24) & 0xff);
buf[3] = (uint8_t) ((*pnum >> 32) & 0xff);
buf[2] = (uint8_t) ((*pnum >> 40) & 0xff);
buf[1] = (uint8_t) ((*pnum >> 48) & 0xff);
buf[0] = (uint8_t) ((*pnum >> 56) & 0xff);
return uwsgi_buffer_append(ub, (char *) buf, 8);
}
int uwsgi_buffer_append_ipv4(struct uwsgi_buffer *ub, void *addr) {
char ip[INET_ADDRSTRLEN];
+13 -16
View File
@@ -7,7 +7,7 @@ extern struct uwsgi_server uwsgi;
/* how the cache bitmap works:
a bitmap is a shared mempry area allocated when requested by the user with --cache2
a bitmap is a shared memory area allocated when requested by the user with --cache2
Each block maps to a bit in the bitmap. If the corresponding bit is cleared
the block is usable otherwise the block scanner will search for the next one.
@@ -325,7 +325,7 @@ void uwsgi_cache_init(struct uwsgi_cache *uc) {
exit(1);
}
uc->items = (struct uwsgi_cache_item *) mmap(NULL, uc->filesize, PROT_READ | PROT_WRITE, MAP_SHARED, cache_fd, 0);
if (!uc->items) {
if (uc->items == MAP_FAILED) {
uwsgi_error("uwsgi_cache_init()/mmap() [with store]");
exit(1);
}
@@ -335,7 +335,7 @@ void uwsgi_cache_init(struct uwsgi_cache *uc) {
}
else {
uc->items = (struct uwsgi_cache_item *) mmap(NULL, uc->filesize, PROT_READ | PROT_WRITE, MAP_SHARED | MAP_ANON, -1, 0);
if (!uc->items) {
if (uc->items == MAP_FAILED) {
uwsgi_error("uwsgi_cache_init()/mmap()");
exit(1);
}
@@ -762,7 +762,7 @@ int uwsgi_cache_set2(struct uwsgi_cache *uc, char *key, uint16_t keylen, char *v
}
// mark used blocks;
uint64_t needed_blocks = cache_mark_blocks(uc, uci->first_block, vallen);
// optimize teh scan
// optimize the scan
if (uc->blocks_bitmap_pos + (needed_blocks+1) > uc->blocks) {
uc->blocks_bitmap_pos = 0;
}
@@ -773,7 +773,7 @@ int uwsgi_cache_set2(struct uwsgi_cache *uc, char *key, uint16_t keylen, char *v
cache_unmark_blocks(uc, uci->first_block, uci->valsize);
}
if ( !(flags & UWSGI_CACHE_FLAG_MATH)) {
memcpy(uc->data + (uci->first_block * uc->blocksize), val, vallen);
memcpy(((char *) uc->data) + (uci->first_block * uc->blocksize), val, vallen);
}
else {
int64_t *num = (int64_t *)(((char *) uc->data) + (uci->first_block * uc->blocksize));
@@ -1191,26 +1191,23 @@ struct uwsgi_cache *uwsgi_cache_create(char *arg) {
uc->store = c_store;
if (c_nodes) {
char *p = strtok(c_nodes, ";");
while(p) {
char *p, *ctx = NULL;
uwsgi_foreach_token(c_nodes, ";", p, ctx) {
uwsgi_string_new_list(&uc->nodes, p);
p = strtok(NULL, ";");
}
}
if (c_sync) {
char *p = strtok(c_sync, ";");
while(p) {
char *p, *ctx = NULL;
uwsgi_foreach_token(c_sync, ";", p, ctx) {
uwsgi_string_new_list(&uc->sync_nodes, p);
p = strtok(NULL, ";");
}
}
if (c_udp_servers) {
char *p = strtok(c_udp_servers, ";");
while(p) {
char *p, *ctx = NULL;
uwsgi_foreach_token(c_udp_servers, ";", p, ctx) {
uwsgi_string_new_list(&uc->udp_servers, p);
p = strtok(NULL, ";");
}
}
@@ -1435,7 +1432,7 @@ static int cache_magic_send_and_manage(int fd, struct uwsgi_buffer *ub, char *st
// ok now wait for the response, using the same buffer of the request
// NOTE: after using a uwsgi_buffer in that way we basically destroy (even if we can safely free it)
size_t rlen = ub->pos;
if (uwsgi_read_with_realloc(fd, &ub->buf, &rlen, timeout)) return -1;
if (uwsgi_read_with_realloc(fd, &ub->buf, &rlen, timeout, NULL, NULL)) return -1;
// try to fix the buffer to maintain size info
ub->pos = rlen;
@@ -1870,7 +1867,7 @@ void uwsgi_cache_sync_from_nodes(struct uwsgi_cache *uc) {
}
size_t rlen = ub->pos;
if (uwsgi_read_with_realloc(fd, &ub->buf, &rlen, uwsgi.shared->options[UWSGI_OPTION_SOCKET_TIMEOUT])) {
if (uwsgi_read_with_realloc(fd, &ub->buf, &rlen, uwsgi.shared->options[UWSGI_OPTION_SOCKET_TIMEOUT], NULL, NULL)) {
uwsgi_buffer_destroy(ub);
uwsgi_log("[cache-sync] unable to read from the cache server\n");
close(fd);
+329 -9
View File
@@ -55,10 +55,9 @@ int uwsgi_logic_opt_if_not_exists(char *key, char *value) {
int uwsgi_logic_opt_for(char *key, char *value) {
char *p = strtok(uwsgi.logic_opt_data, " ");
while (p) {
char *p, *ctx = NULL;
uwsgi_foreach_token(uwsgi.logic_opt_data, " ", p, ctx) {
add_exported_option(key, uwsgi_substitute(value, "%(_)", p), 0);
p = strtok(NULL, " ");
}
return 1;
@@ -294,8 +293,25 @@ int uwsgi_count_options(struct uwsgi_option *uopt) {
return count;
}
int uwsgi_opt_exists(char *name) {
struct uwsgi_option *op = uwsgi.options;
while (op->name) {
if (!strcmp(name, op->name)) return 1;
op++;
}
return 0;
}
/*
avoid loops here !!!
*/
struct uwsgi_option *uwsgi_opt_get(char *name) {
struct uwsgi_option *op = uwsgi.options;
struct uwsgi_option *op;
int round = 0;
retry:
round++;
if (round > 2) goto end;
op = uwsgi.options;
while (op->name) {
if (!strcmp(name, op->name)) {
@@ -304,10 +320,26 @@ struct uwsgi_option *uwsgi_opt_get(char *name) {
op++;
}
if (uwsgi.autoload) {
if (uwsgi_try_autoload(name)) goto retry;
}
end:
if (uwsgi.strict) {
uwsgi_log("[strict-mode] unknown config directive: %s\n", name);
exit(1);
}
return NULL;
}
void add_exported_option(char *key, char *value, int configured) {
add_exported_option_do(key, value, configured, 0);
}
void add_exported_option_do(char *key, char *value, int configured, int placeholder_only) {
struct uwsgi_string_list *blacklist = uwsgi.blacklist;
struct uwsgi_string_list *whitelist = uwsgi.whitelist;
@@ -395,6 +427,15 @@ add:
uwsgi.exported_opts_cnt++;
uwsgi.dirty_config = 1;
if (placeholder_only) {
if (uwsgi_opt_exists(key)) {
uwsgi_log("you cannot use %s as a placeholder, it is already available as an option\n");
exit(1);
}
uwsgi.exported_opts[id]->configured = 1;
return;
}
struct uwsgi_option *op = uwsgi_opt_get(key);
if (op) {
// requires master ?
@@ -452,17 +493,16 @@ add:
if (op->flags & UWSGI_OPT_MIME) {
uwsgi.build_mime_dict = 1;
}
// enable metrics ?
if (op->flags & UWSGI_OPT_METRICS) {
uwsgi.has_metrics = 1;
}
// immediate ?
if (op->flags & UWSGI_OPT_IMMEDIATE) {
op->func(key, value, op->data);
uwsgi.exported_opts[id]->configured = 1;
}
}
else if (uwsgi.strict) {
uwsgi_log("[strict-mode] unknown config directive: %s\n", key);
exit(1);
}
}
void uwsgi_fallback_config() {
@@ -478,3 +518,283 @@ void uwsgi_fallback_config() {
// never here
}
}
int uwsgi_manage_opt(char *key, char *value) {
struct uwsgi_option *op = uwsgi_opt_get(key);
if (op) {
op->func(key, value, op->data);
return 1;
}
return 0;
}
void uwsgi_configure() {
int i;
// and now apply the remaining configs
restart:
for (i = 0; i < uwsgi.exported_opts_cnt; i++) {
if (uwsgi.exported_opts[i]->configured)
continue;
uwsgi.dirty_config = 0;
uwsgi.exported_opts[i]->configured = uwsgi_manage_opt(uwsgi.exported_opts[i]->key, uwsgi.exported_opts[i]->value);
// some option could cause a dirty config tree
if (uwsgi.dirty_config)
goto restart;
}
}
void uwsgi_opt_custom(char *key, char *value, void *data ) {
struct uwsgi_custom_option *uco = (struct uwsgi_custom_option *)data;
size_t i, count = 1;
size_t value_len = 0;
if (value)
value_len = strlen(value);
off_t pos = 0;
char **opt_argv;
char *tmp_val = NULL, *p = NULL;
// now count the number of args
for (i = 0; i < value_len; i++) {
if (value[i] == ' ') {
count++;
}
}
// allocate a tmp array
opt_argv = uwsgi_calloc(sizeof(char *) * count);
//make a copy of the value;
if (value_len > 0) {
tmp_val = uwsgi_str(value);
// fill the array of options
char *p, *ctx = NULL;
uwsgi_foreach_token(tmp_val, " ", p, ctx) {
opt_argv[pos] = p;
pos++;
}
}
else {
// no argument specified
opt_argv[0] = "";
}
#ifdef UWSGI_DEBUG
uwsgi_log("found custom option %s with %d args\n", key, count);
#endif
// now make a copy of the option template
char *tmp_opt = uwsgi_str(uco->value);
// split it
char *ctx = NULL;
uwsgi_foreach_token(tmp_opt, ";", p, ctx) {
char *equal = strchr(p, '=');
if (!equal)
goto clear;
*equal = '\0';
// build the key
char *new_key = uwsgi_str(p);
for (i = 0; i < count; i++) {
char *old_key = new_key;
char *tmp_num = uwsgi_num2str(i + 1);
char *placeholder = uwsgi_concat2((char *) "$", tmp_num);
free(tmp_num);
new_key = uwsgi_substitute(old_key, placeholder, opt_argv[i]);
if (new_key != old_key)
free(old_key);
free(placeholder);
}
// build the value
char *new_value = uwsgi_str(equal + 1);
for (i = 0; i < count; i++) {
char *old_value = new_value;
char *tmp_num = uwsgi_num2str(i + 1);
char *placeholder = uwsgi_concat2((char *) "$", tmp_num);
free(tmp_num);
new_value = uwsgi_substitute(old_value, placeholder, opt_argv[i]);
if (new_value != old_value)
free(old_value);
free(placeholder);
}
// ignore return value here
uwsgi_manage_opt(new_key, new_value);
}
clear:
free(tmp_val);
free(tmp_opt);
free(opt_argv);
}
char *uwsgi_get_exported_opt(char *key) {
int i;
for (i = 0; i < uwsgi.exported_opts_cnt; i++) {
if (!strcmp(uwsgi.exported_opts[i]->key, key)) {
return uwsgi.exported_opts[i]->value;
}
}
return NULL;
}
char *uwsgi_get_optname_by_index(int index) {
struct uwsgi_option *op = uwsgi.options;
while (op->name) {
if (op->shortcut == index) {
return op->name;
}
op++;
}
return NULL;
}
/*
this works as a pipeline
processes = 2
cpu_cores = 8
foobar = %(processes cpu_cores + 2)
translate as:
step1 = proceses cpu_cores = 2 8 = 28 (string concatenation)
step1 + = step1_apply_func_plus (func token)
step1_apply_func_plus 2 = 28 + 2 = 30 (math)
*/
char *uwsgi_manage_placeholder(char *key) {
enum {
concat = 0,
sum,
sub,
mul,
div,
} state;
state = concat;
char *current_value = NULL;
char *space = strchr(key, ' ');
if (!space) {
return uwsgi_get_exported_opt(key);
}
// let's start the heavy metal here
char *tmp_value = uwsgi_str(key);
char *p, *ctx = NULL;
uwsgi_foreach_token(tmp_value, " ", p, ctx) {
char *value = NULL;
if (is_a_number(p)) {
value = uwsgi_str(p);
}
else if (!strcmp(p, "+")) {
state = sum;
continue;
}
else if (!strcmp(p, "-")) {
state = sub;
continue;
}
else if (!strcmp(p, "*")) {
state = mul;
continue;
}
else if (!strcmp(p, "/")) {
state = div;
continue;
}
else if (!strcmp(p, "++")) {
if (current_value) {
int64_t tmp_value = strtoll(current_value, NULL, 10);
free(current_value);
current_value = uwsgi_64bit2str(tmp_value+1);
}
state = concat;
continue;
}
else if (!strcmp(p, "--")) {
if (current_value) {
int64_t tmp_value = strtoll(current_value, NULL, 10);
free(current_value);
current_value = uwsgi_64bit2str(tmp_value-1);
}
state = concat;
continue;
}
// find the option
else {
char *ov = uwsgi_get_exported_opt(p);
if (!ov) ov = "";
value = uwsgi_str(ov);
}
int64_t arg1n = 0, arg2n = 0;
char *arg1 = "", *arg2 = "";
switch(state) {
case concat:
if (current_value) arg1 = current_value;
if (value) arg2 = value;
char *ret = uwsgi_concat2(arg1, arg2);
if (current_value) free(current_value);
current_value = ret;
break;
case sum:
if (current_value) arg1n = strtoll(current_value, NULL, 10);
if (value) arg2n = strtoll(value, NULL, 10);
if (current_value) free(current_value);
current_value = uwsgi_64bit2str(arg1n + arg2n);
break;
case sub:
if (current_value) arg1n = strtoll(current_value, NULL, 10);
if (value) arg2n = strtoll(value, NULL, 10);
if (current_value) free(current_value);
current_value = uwsgi_64bit2str(arg1n - arg2n);
break;
case mul:
if (current_value) arg1n = strtoll(current_value, NULL, 10);
if (value) arg2n = strtoll(value, NULL, 10);
if (current_value) free(current_value);
current_value = uwsgi_64bit2str(arg1n * arg2n);
break;
case div:
if (current_value) arg1n = strtoll(current_value, NULL, 10);
if (value) arg2n = strtoll(value, NULL, 10);
if (current_value) free(current_value);
// avoid division by zero
if (arg2n == 0) {
current_value = uwsgi_64bit2str(0);
}
else {
current_value = uwsgi_64bit2str(arg1n / arg2n);
}
break;
default:
break;
}
// over engineering
if (value)
free(value);
// reset state to concat
state = concat;
}
return current_value;
}
+39 -22
View File
@@ -77,8 +77,14 @@ void uwsgi_daemons_smart_check() {
else {
ud->pidfile_checks++;
if (ud->pidfile_checks >= (unsigned int) ud->freq) {
uwsgi_log("[uwsgi-daemons] found changed pidfile for \"%s\" (old_pid: %d new_pid: %d)\n", ud->command, (int) ud->pid, (int) checked_pid);
uwsgi_spawn_daemon(ud);
if (!ud->has_daemonized) {
uwsgi_log_verbose("[uwsgi-daemons] \"%s\" (pid: %d) did not daemonize !!!\n", ud->command, (int) ud->pid);
ud->pidfile_checks = 0;
}
else {
uwsgi_log("[uwsgi-daemons] found changed pidfile for \"%s\" (old_pid: %d new_pid: %d)\n", ud->command, (int) ud->pid, (int) checked_pid);
uwsgi_spawn_daemon(ud);
}
}
}
}
@@ -99,10 +105,20 @@ void uwsgi_daemons_smart_check() {
int uwsgi_daemon_check_pid_death(pid_t diedpid) {
struct uwsgi_daemon *ud = uwsgi.daemons;
while (ud) {
if (ud->pid == diedpid && !ud->pidfile) {
uwsgi_log("daemon \"%s\" (pid: %d) annihilated\n", ud->command, (int) diedpid);
ud->pid = -1;
return -1;
if (ud->pid == diedpid) {
if (!ud->pidfile) {
uwsgi_log("daemon \"%s\" (pid: %d) annihilated\n", ud->command, (int) diedpid);
ud->pid = -1;
return -1;
}
else {
if (!ud->has_daemonized) {
ud->has_daemonized = 1;
}
else {
uwsgi_log("[uwsgi-daemons] BUG !!! daemon \"%s\" has already daemonized !!!\n", ud->command);
}
}
}
ud = ud->next;
}
@@ -123,6 +139,10 @@ int uwsgi_daemon_check_pid_reload(pid_t diedpid) {
}
#endif
if (ud->pid == diedpid && !ud->pidfile) {
if (ud->control) {
gracefully_kill_them_all(0);
return 0;
}
uwsgi_spawn_daemon(ud);
return 1;
}
@@ -213,13 +233,15 @@ void uwsgi_detach_daemons() {
#endif
uwsgi_log("[uwsgi-daemons] stopping daemon (pid: %d): %s\n", (int) ud->pid, ud->command);
// try to gracefully stop daemon, kill it if it won't die
// if mercy is not set than wait up to 3 seconds
// if mercy is not set then wait up to 3 seconds
time_t timeout = uwsgi_now() + (uwsgi.reload_mercy ? uwsgi.reload_mercy : 3);
int waitpid_status;
while (!kill(ud->pid, 0)) {
kill(-ud->pid, SIGTERM);
sleep(1);
waitpid(-ud->pid, &waitpid_status, WNOHANG);
if (uwsgi_now() >= timeout) {
uwsgi_log("[uwsgi-daemons] daemon did not died in time, killing (pid: %d): %s\n", (int) ud->pid, ud->command);
uwsgi_log("[uwsgi-daemons] daemon did not die in time, killing (pid: %d): %s\n", (int) ud->pid, ud->command);
kill(-ud->pid, SIGKILL);
break;
}
@@ -237,11 +259,12 @@ void uwsgi_spawn_daemon(struct uwsgi_daemon *ud) {
// skip unregistered daemons
if (!ud->registered) return;
int devnull = -1;
int throttle = 0;
if (uwsgi.current_time - ud->last_spawn <= 3) {
throttle = ud->respawns - (uwsgi.current_time - ud->last_spawn);
// if ud->respawns == 0 then we can end up with throttle < 0
if (throttle <= 0) throttle = 1;
}
pid_t pid = uwsgi_fork("uWSGI external daemon");
@@ -251,6 +274,7 @@ void uwsgi_spawn_daemon(struct uwsgi_daemon *ud) {
}
if (pid > 0) {
ud->has_daemonized = 0;
ud->pid = pid;
ud->status = 1;
ud->pidfile_checks = 0;
@@ -282,18 +306,7 @@ void uwsgi_spawn_daemon(struct uwsgi_daemon *ud) {
if (!uwsgi.daemons_honour_stdin) {
// /dev/null will became stdin
devnull = open("/dev/null", O_RDONLY);
if (devnull < 0) {
uwsgi_error("/dev/null open()");
exit(1);
}
if (devnull != 0) {
if (dup2(devnull, 0) < 0) {
uwsgi_error("dup2()");
exit(1);
}
close(devnull);
}
uwsgi_remap_fd(0, "/dev/null");
}
if (setsid() < 0) {
@@ -312,7 +325,7 @@ void uwsgi_spawn_daemon(struct uwsgi_daemon *ud) {
if (throttle) {
uwsgi_log("[uwsgi-daemons] throttling \"%s\" for %d seconds\n", ud->command, throttle);
sleep(throttle);
sleep((unsigned int) throttle);
}
uwsgi_log("[uwsgi-daemons] %sspawning \"%s\"\n", ud->respawns > 0 ? "re" : "", ud->command);
@@ -395,6 +408,10 @@ void uwsgi_opt_add_daemon(char *opt, char *value, void *none) {
uwsgi_ud->last_spawn = 0;
uwsgi_ud->daemonize = daemonize;
uwsgi_ud->pidfile = pidfile;
uwsgi_ud->control = 0;
if (!strcmp(opt, "attach-control-daemon")) {
uwsgi_ud->control = 1;
}
#ifdef UWSGI_SSL
uwsgi_ud->legion = legion;
#endif
+311 -58
View File
@@ -339,8 +339,13 @@ void uwsgi_imperial_monitor_glob(struct uwsgi_emperor_scanner *ues) {
struct stat st;
struct uwsgi_instance *ui_current;
if (chdir(uwsgi.cwd)) {
uwsgi_error("uwsgi_imperial_monitor_glob()/chdir()");
exit(1);
}
if (glob(ues->arg, GLOB_MARK | GLOB_NOCHECK, NULL, &g)) {
uwsgi_error("glob()");
uwsgi_error("uwsgi_imperial_monitor_glob()/glob()");
return;
}
@@ -617,24 +622,38 @@ void emperor_del(struct uwsgi_instance *c_ui) {
}
void emperor_stop(struct uwsgi_instance *c_ui) {
if (c_ui->status == 1) return;
// remove uWSGI instance
if (write(c_ui->pipe[0], "\0", 1) != 1) {
uwsgi_error("write()");
uwsgi_error("emperor_stop()/write()");
}
c_ui->status = 1;
c_ui->cursed_at = uwsgi_now();
uwsgi_log("[emperor] stop the uwsgi instance %s\n", c_ui->name);
}
void emperor_curse(struct uwsgi_instance *c_ui) {
if (c_ui->status == 1) return;
// curse uWSGI instance
c_ui->status = 1;
c_ui->cursed_at = uwsgi_now();
uwsgi_log("[emperor] curse the uwsgi instance %s (pid: %d)\n", c_ui->name, (int) c_ui->pid);
}
void emperor_respawn(struct uwsgi_instance *c_ui, time_t mod) {
struct uwsgi_header uh;
// reload the uWSGI instance
if (write(c_ui->pipe[0], "\1", 1) != 1) {
uwsgi_error("write()");
uwsgi_error("emperor_respawn/write()");
}
// push the config to the config pipe (if needed)
@@ -817,7 +836,7 @@ int uwsgi_emperor_vassal_start(struct uwsgi_instance *n_ui) {
// TODO pre-start hook
// a new uWSGI instance will start
#if defined(__linux__) && !defined(OBSOLETE_LINUX_KERNEL)
#if defined(__linux__) && !defined(OBSOLETE_LINUX_KERNEL) && !defined(__ia64__)
if (uwsgi.emperor_clone) {
char stack[PTHREAD_STACK_MIN];
pid = clone((int (*)(void *))uwsgi_emperor_spawn_vassal, stack + PTHREAD_STACK_MIN, SIGCHLD | uwsgi.emperor_clone, (void *) n_ui);
@@ -825,7 +844,7 @@ int uwsgi_emperor_vassal_start(struct uwsgi_instance *n_ui) {
else {
#endif
pid = fork();
#if defined(__linux__) && !defined(OBSOLETE_LINUX_KERNEL)
#if defined(__linux__) && !defined(OBSOLETE_LINUX_KERNEL) && !defined(__ia64__)
}
#endif
if (pid < 0) {
@@ -862,14 +881,28 @@ int uwsgi_emperor_vassal_start(struct uwsgi_instance *n_ui) {
// once the config is sent we can run hooks (they can fail)
// exec hooks have access to all of the currently defined vars + UWSGI_VASSAL_PID, UWSGI_VASSAL_UID, UWSGI_VASSAL_GID, UWSGI_VASSAL_CONFIG
uwsgi_hooks_run(uwsgi.hook_as_emperor, "as-emperor", 0);
struct uwsgi_string_list *usl;
uwsgi_foreach(usl, uwsgi.mount_as_emperor) {
uwsgi_log("mounting \"%s\" (as-emperor for vassal \"%s\" pid: %d uid: %d gid: %d)...\n", usl->value, n_ui->name, n_ui->pid, n_ui->uid, n_ui->gid);
if (uwsgi_mount_hook(usl->value)) {
exit(1);
}
}
uwsgi_foreach(usl, uwsgi.umount_as_emperor) {
uwsgi_log("un-mounting \"%s\" (as-emperor for vassal \"%s\" pid: %d uid: %d gid: %d)...\n", usl->value, n_ui->name, n_ui->pid, n_ui->uid, n_ui->gid);
if (uwsgi_umount_hook(usl->value)) {
exit(1);
}
}
uwsgi_foreach(usl, uwsgi.exec_as_emperor) {
uwsgi_log("running \"%s\" (as-emperor for vassal \"%s\" pid: %d uid: %d gid: %d)...\n", usl->value, n_ui->name, n_ui->pid, n_ui->uid, n_ui->gid);
char *argv[4];
argv[0] = uwsgi_concat2("UWSGI_VASSAL_CONFIG=", n_ui->name);
char argv_pid[17+11]; snprintf(argv_pid, 17 + 11, "UWSGI_VASSAL_PID=%d", n_ui->pid); argv[1] = argv_pid;
char argv_uid[17+11]; snprintf(argv_uid, 17 + 11, "UWSGI_VASSAL_UID=%d", n_ui->uid); argv[2] = argv_uid;
char argv_gid[17+11]; snprintf(argv_gid, 17 + 11, "UWSGI_VASSAL_GID=%d", n_ui->gid); argv[3] = argv_gid;
char argv_pid[17+11]; snprintf(argv_pid, 17 + 11, "UWSGI_VASSAL_PID=%d", (int) n_ui->pid); argv[1] = argv_pid;
char argv_uid[17+11]; snprintf(argv_uid, 17 + 11, "UWSGI_VASSAL_UID=%d", (int) n_ui->uid); argv[2] = argv_uid;
char argv_gid[17+11]; snprintf(argv_gid, 17 + 11, "UWSGI_VASSAL_GID=%d", (int) n_ui->gid); argv[3] = argv_gid;
int ret = uwsgi_run_command_putenv_and_wait(NULL, usl->value, argv, 4);
uwsgi_log("command \"%s\" exited with code: %d\n", usl->value, ret);
free(argv[0]);
@@ -926,6 +959,61 @@ int uwsgi_emperor_vassal_start(struct uwsgi_instance *n_ui) {
static void uwsgi_emperor_spawn_vassal(struct uwsgi_instance *n_ui) {
#ifdef __linux__
if (prctl(PR_SET_PDEATHSIG, SIGKILL, 0, 0, 0)) {
uwsgi_error("prctl()");
}
#ifdef CLONE_NEWUSER
if (uwsgi.emperor_clone & CLONE_NEWUSER) {
if (setuid(0)) {
uwsgi_error("uwsgi_emperor_spawn_vassal()/setuid(0)");
exit(1);
}
}
#endif
#ifdef UWSGI_CAP
#if defined(CAP_LAST_CAP) && defined(PR_CAPBSET_READ) && defined(PR_CAPBSET_DROP)
if (uwsgi.emperor_cap && uwsgi.emperor_cap_count > 0) {
int i;
for(i=0;i<=CAP_LAST_CAP;i++) {
int has_cap = prctl(PR_CAPBSET_READ, i, 0, 0, 0);
if (has_cap == 1) {
if (i == CAP_SETPCAP) continue;
int j;int found = 0;
for(j=0;j<uwsgi.emperor_cap_count;j++) {
if (uwsgi.emperor_cap[j] == (int) i) {
found = 1; break;
}
}
if (found) continue;
if (prctl(PR_CAPBSET_DROP, i, 0, 0, 0)) {
uwsgi_error("uwsgi_emperor_spawn_vassal()/prctl()");
uwsgi_log_verbose("unable to drop capability %lu\n", i);
exit(1);
}
}
}
// just for being paranoid
#ifdef SECBIT_KEEP_CAPS
if (prctl(SECBIT_KEEP_CAPS, 1, 0, 0, 0) < 0) {
uwsgi_error("prctl()");
exit(1);
}
#else
if (prctl(PR_SET_KEEPCAPS, 1, 0, 0, 0) < 0) {
uwsgi_error("prctl()");
exit(1);
}
#endif
uwsgi_log("capabilities applied for vassal %s (pid: %d)\n", n_ui->name, (int) getpid());
}
#endif
#endif
#endif
if (uwsgi.emperor_tyrant) {
uwsgi_log("[emperor-tyrant] dropping privileges to %d %d for instance %s\n", (int) n_ui->uid, (int) n_ui->gid, n_ui->name);
if (setgid(n_ui->gid)) {
@@ -1011,18 +1099,39 @@ static void uwsgi_emperor_spawn_vassal(struct uwsgi_instance *n_ui) {
}
int counter = 4;
struct uwsgi_string_list *uct = uwsgi.vassals_templates;
while (uct) {
counter += 2;
uct = uct->next;
}
struct uwsgi_string_list *uct;
uwsgi_foreach(uct, uwsgi.vassals_templates_before) counter += 2;
uwsgi_foreach(uct, uwsgi.vassals_includes_before) counter += 2;
uwsgi_foreach(uct, uwsgi.vassals_set) counter += 2;
uwsgi_foreach(uct, uwsgi.vassals_templates) counter += 2;
uwsgi_foreach(uct, uwsgi.vassals_includes) counter += 2;
char **vassal_argv = uwsgi_malloc(sizeof(char *) * counter);
// set args
vassal_argv[0] = uwsgi.binary_path;
vassal_argv[0] = uwsgi.emperor_wrapper ? uwsgi.emperor_wrapper: uwsgi.binary_path;
// reset counter
counter = 1;
uwsgi_foreach(uct, uwsgi.vassals_templates_before) {
vassal_argv[counter] = "--inherit";
vassal_argv[counter + 1] = uct->value;
counter += 2;
}
uwsgi_foreach (uct, uwsgi.vassals_includes_before) {
vassal_argv[counter] = "--include";
vassal_argv[counter + 1] = uct->value;
counter += 2;
}
uwsgi_foreach (uct, uwsgi.vassals_set) {
vassal_argv[counter] = "--set";
vassal_argv[counter + 1] = uct->value;
counter += 2;
}
char *colon = NULL;
if (uwsgi.emperor_broodlord) {
colon = strchr(n_ui->name, ':');
if (colon) {
@@ -1030,55 +1139,60 @@ static void uwsgi_emperor_spawn_vassal(struct uwsgi_instance *n_ui) {
}
}
// initialize to a default value
vassal_argv[1] = "--inherit";
vassal_argv[counter] = "--inherit";
if (!strcmp(n_ui->name + (strlen(n_ui->name) - 4), ".xml"))
vassal_argv[1] = "--xml";
vassal_argv[counter] = "--xml";
if (!strcmp(n_ui->name + (strlen(n_ui->name) - 4), ".ini"))
vassal_argv[1] = "--ini";
vassal_argv[counter] = "--ini";
if (!strcmp(n_ui->name + (strlen(n_ui->name) - 4), ".yml"))
vassal_argv[1] = "--yaml";
vassal_argv[counter] = "--yaml";
if (!strcmp(n_ui->name + (strlen(n_ui->name) - 5), ".yaml"))
vassal_argv[1] = "--yaml";
vassal_argv[counter] = "--yaml";
if (!strcmp(n_ui->name + (strlen(n_ui->name) - 3), ".js"))
vassal_argv[1] = "--json";
vassal_argv[counter] = "--json";
if (!strcmp(n_ui->name + (strlen(n_ui->name) - 5), ".json"))
vassal_argv[1] = "--json";
vassal_argv[counter] = "--json";
struct uwsgi_string_list *usl = uwsgi.emperor_extra_extension;
while(usl) {
if (uwsgi_endswith(n_ui->name, usl->value)) {
vassal_argv[1] = "--config";
vassal_argv[counter] = "--config";
break;
}
usl = usl->next;
}
if (colon) colon[0] = ':';
if (colon) {
colon[0] = ':';
}
// start config filename...
counter++;
vassal_argv[2] = n_ui->name;
vassal_argv[counter] = n_ui->name;
if (uwsgi.emperor_magic_exec) {
if (!access(n_ui->name, R_OK | X_OK)) {
vassal_argv[2] = uwsgi_concat2("exec://", n_ui->name);
vassal_argv[counter] = uwsgi_concat2("exec://", n_ui->name);
}
}
if (n_ui->use_config) {
vassal_argv[2] = uwsgi_concat2("emperor://", n_ui->name);
vassal_argv[counter] = uwsgi_concat2("emperor://", n_ui->name);
}
counter = 3;
uct = uwsgi.vassals_templates;
while (uct) {
// start templates,includes,inherit...
counter++;
uwsgi_foreach(uct, uwsgi.vassals_templates) {
vassal_argv[counter] = "--inherit";
vassal_argv[counter + 1] = uct->value;
counter += 2;
uct = uct->next;
}
uwsgi_foreach (uct, uwsgi.vassals_includes) {
vassal_argv[counter] = "--include";
vassal_argv[counter + 1] = uct->value;
counter += 2;
}
vassal_argv[counter] = NULL;
// disable stdin OR map it to the "on demand" socket
@@ -1092,18 +1206,7 @@ static void uwsgi_emperor_spawn_vassal(struct uwsgi_instance *n_ui) {
}
}
else {
int stdin_fd = open("/dev/null", O_RDONLY);
if (stdin_fd < 0) {
uwsgi_error_open("/dev/null");
exit(1);
}
if (stdin_fd != 0) {
if (dup2(stdin_fd, 0) < 0) {
uwsgi_error("dup2()");
exit(1);
}
close(stdin_fd);
}
uwsgi_remap_fd(0, "/dev/null");
}
// close all of the unneded fd
@@ -1131,6 +1234,22 @@ static void uwsgi_emperor_spawn_vassal(struct uwsgi_instance *n_ui) {
uwsgi_log("[emperor] %s start-hook returned %d\n", n_ui->name, start_hook_ret);
}
uwsgi_hooks_run(uwsgi.hook_as_vassal, "as-vassal", 1);
uwsgi_foreach(usl, uwsgi.mount_as_vassal) {
uwsgi_log("mounting \"%s\" (as-vassal)...\n", usl->value);
if (uwsgi_mount_hook(usl->value)) {
exit(1);
}
}
uwsgi_foreach(usl, uwsgi.umount_as_vassal) {
uwsgi_log("un-mounting \"%s\" (as-vassal)...\n", usl->value);
if (uwsgi_umount_hook(usl->value)) {
exit(1);
}
}
// run exec hooks (cannot fail)
uwsgi_foreach(usl, uwsgi.exec_as_vassal) {
uwsgi_log("running \"%s\" (as-vassal)...\n", usl->value);
@@ -1426,7 +1545,8 @@ void emperor_loop() {
ssize_t rlen = read(interesting_fd, &byte, 1);
if (rlen <= 0) {
// SAFE
emperor_del(ui_current);
event_queue_del_fd(uwsgi.emperor_queue, interesting_fd, event_queue_read());
emperor_curse(ui_current);
}
else {
if (byte == 17) {
@@ -1476,10 +1596,14 @@ void emperor_loop() {
while (ui_current) {
if (ui_current->last_heartbeat > 0) {
if ((ui_current->last_heartbeat + uwsgi.emperor_heartbeat) < uwsgi_now()) {
uwsgi_log("[emperor] vassal %s sent no heartbeat in last %d seconds, respawning it...\n", ui_current->name, uwsgi.emperor_heartbeat);
uwsgi_log("[emperor] vassal %s sent no heartbeat in last %d seconds, brutally respawning it...\n", ui_current->name, uwsgi.emperor_heartbeat);
// set last_heartbeat to 0 avoiding races
ui_current->last_heartbeat = 0;
emperor_respawn(ui_current, uwsgi_now());
if (ui_current->pid > 0) {
if (kill(ui_current->pid, SIGKILL)) {
uwsgi_error("[emperor] kill()");
}
}
}
}
ui_current = ui_current->ui_next;
@@ -1528,14 +1652,8 @@ void emperor_loop() {
ui_current = ui;
while (ui_current->ui_next) {
ui_current = ui_current->ui_next;
if (ui_current->status == 1) {
if (ui_current->config)
free(ui_current->config);
// SAFE
emperor_del(ui_current);
break;
}
else if (ui_current->pid == diedpid) {
time_t now = uwsgi_now();
if (ui_current->pid == diedpid) {
if (ui_current->status == 0) {
// respawn an accidentally dead instance if its exit code is not UWSGI_EXILE_CODE
if (WIFEXITED(waitpid_status) && WEXITSTATUS(waitpid_status) == UWSGI_EXILE_CODE) {
@@ -1558,6 +1676,13 @@ void emperor_loop() {
break;
}
}
else if (ui_current->cursed_at > 0 && now - ui_current->cursed_at >= uwsgi.emperor_curse_tolerance) {
ui_current->cursed_at = now;
if (kill(ui_current->pid, SIGKILL)) {
uwsgi_error("[emperor] kill");
}
break;
}
}
@@ -1654,6 +1779,8 @@ void emperor_send_stats(int fd) {
goto end0;
if (uwsgi_stats_keylong_comma(us, "last_run", (unsigned long long) c_ui->last_run))
goto end0;
if (uwsgi_stats_keylong_comma(us, "cursed", (unsigned long long) c_ui->cursed_at))
goto end0;
if (uwsgi_stats_keylong_comma(us, "zerg", (unsigned long long) c_ui->zerg))
goto end0;
@@ -1797,6 +1924,46 @@ void uwsgi_emperor_start() {
}
void uwsgi_check_emperor() {
char *emperor_fd_pass = getenv("UWSGI_EMPEROR_PROXY");
if (emperor_fd_pass) {
for(;;) {
int proxy_fd = uwsgi_connect(emperor_fd_pass, 30, 0);
if (proxy_fd < 0) {
uwsgi_error("uwsgi_check_emperor()/uwsgi_connect()");
sleep(1);
continue;
}
int count = 2;
int *fds = uwsgi_attach_fd(proxy_fd, &count, "uwsgi-emperor", 13);
if (fds && count > 0) {
char *env_emperor_fd = uwsgi_num2str(fds[0]);
if (setenv("UWSGI_EMPEROR_FD", env_emperor_fd, 1)) {
uwsgi_error("uwsgi_check_emperor()/setenv(UWSGI_EMPEROR_FD)");
free(env_emperor_fd);
int i; for(i=0;i<count;i++) close(fds[i]);
goto next;
}
free(env_emperor_fd);
if (count > 1) {
char *env_emperor_fd_config = uwsgi_num2str(fds[1]);
if (setenv("UWSGI_EMPEROR_FD_CONFIG", env_emperor_fd_config, 1)) {
uwsgi_error("uwsgi_check_emperor()/setenv(UWSGI_EMPEROR_FD_CONFIG)");
free(env_emperor_fd_config);
int i; for(i=0;i<count;i++) close(fds[i]);
goto next;
}
free(env_emperor_fd_config);
}
break;
}
next:
if (fds) free(fds);
close(proxy_fd);
sleep(1);
}
unsetenv("UWSGI_EMPEROR_PROXY");
}
char *emperor_env = getenv("UWSGI_EMPEROR_FD");
if (emperor_env) {
uwsgi.has_emperor = 1;
@@ -1852,3 +2019,89 @@ void uwsgi_emperor_simple_do(struct uwsgi_emperor_scanner *ues, char *name, char
emperor_add(ues, name, ts, new_config, new_config_len, uid, gid, socket_name);
}
}
void uwsgi_master_manage_emperor() {
char byte;
ssize_t rlen = read(uwsgi.emperor_fd, &byte, 1);
if (rlen > 0) {
uwsgi_log_verbose("received message %d from emperor\n", byte);
// remove me
if (byte == 0) {
close(uwsgi.emperor_fd);
if (!uwsgi.status.brutally_reloading)
kill_them_all(0);
}
// reload me
else if (byte == 1) {
// un-lazy the stack to trigger a real reload
uwsgi.lazy = 0;
uwsgi_block_signal(SIGHUP);
grace_them_all(0);
uwsgi_unblock_signal(SIGHUP);
}
}
else {
uwsgi_log("lost connection with my emperor !!!\n");
close(uwsgi.emperor_fd);
if (!uwsgi.status.brutally_reloading)
kill_them_all(0);
sleep(2);
exit(1);
}
}
void uwsgi_master_manage_emperor_proxy() {
struct sockaddr_un epsun;
socklen_t epsun_len = sizeof(struct sockaddr_un);
int ep_client = accept(uwsgi.emperor_fd_proxy, (struct sockaddr *) &epsun, &epsun_len);
if (ep_client < 0) {
uwsgi_error("uwsgi_master_manage_emperor_proxy()/accept()");
return;
}
int num_fds = 1;
if (uwsgi.emperor_fd_config > -1) num_fds++;
struct msghdr ep_msg;
void *ep_msg_control = uwsgi_malloc(CMSG_SPACE(sizeof(int) * num_fds));
struct iovec ep_iov[2];
struct cmsghdr *cmsg;
ep_iov[0].iov_base = "uwsgi-emperor";
ep_iov[0].iov_len = 13;
ep_iov[1].iov_base = &num_fds;
ep_iov[1].iov_len = sizeof(int);
ep_msg.msg_name = NULL;
ep_msg.msg_namelen = 0;
ep_msg.msg_iov = ep_iov;
ep_msg.msg_iovlen = 2;
ep_msg.msg_flags = 0;
ep_msg.msg_control = ep_msg_control;
ep_msg.msg_controllen = CMSG_SPACE(sizeof(int) * num_fds);
cmsg = CMSG_FIRSTHDR(&ep_msg);
cmsg->cmsg_len = CMSG_LEN(sizeof(int) * num_fds);
cmsg->cmsg_level = SOL_SOCKET;
cmsg->cmsg_type = SCM_RIGHTS;
unsigned char *ep_fd_ptr = CMSG_DATA(cmsg);
memcpy(ep_fd_ptr, &uwsgi.emperor_fd, sizeof(int));
if (num_fds > 1) {
memcpy(ep_fd_ptr + sizeof(int), &uwsgi.emperor_fd_config, sizeof(int));
}
if (sendmsg(ep_client, &ep_msg, 0) < 0) {
uwsgi_error("uwsgi_master_manage_emperor_proxy()/sendmsg()");
}
free(ep_msg_control);
close(ep_client);
}
+122
View File
@@ -0,0 +1,122 @@
#include <uwsgi.h>
extern struct uwsgi_server uwsgi;
/*
the --master-fifo option create a unix named pipe (fifo) you can use to send management
commands to the master:
echo r > myfifo
*/
// this var can be accessed by plugins and hooks
void (*uwsgi_fifo_table[256])(int);
static char *uwsgi_fifo_by_slot() {
int count = 0;
struct uwsgi_string_list *usl;
uwsgi_foreach(usl, uwsgi.master_fifo) {
if (count == uwsgi.master_fifo_slot) return usl->value;
count++;
}
return uwsgi.master_fifo->value;
}
static void uwsgi_fifo_set_slot_zero() { uwsgi.master_fifo_slot = 0; }
static void uwsgi_fifo_set_slot_one() { uwsgi.master_fifo_slot = 1; }
static void uwsgi_fifo_set_slot_two() { uwsgi.master_fifo_slot = 2; }
static void uwsgi_fifo_set_slot_three() { uwsgi.master_fifo_slot = 3; }
static void uwsgi_fifo_set_slot_four() { uwsgi.master_fifo_slot = 4; }
static void uwsgi_fifo_set_slot_five() { uwsgi.master_fifo_slot = 5; }
static void uwsgi_fifo_set_slot_six() { uwsgi.master_fifo_slot = 6; }
static void uwsgi_fifo_set_slot_seven() { uwsgi.master_fifo_slot = 7; }
static void uwsgi_fifo_set_slot_eight() { uwsgi.master_fifo_slot = 8; }
static void uwsgi_fifo_set_slot_nine() { uwsgi.master_fifo_slot = 9; }
/*
this is called as soon as possibile allowing plugins (or hooks) to override it
*/
void uwsgi_master_fifo_prepare() {
int i;
for(i=0;i<256;i++) {
uwsgi_fifo_table[i] = NULL;
}
uwsgi_fifo_table['0'] = uwsgi_fifo_set_slot_zero;
uwsgi_fifo_table['1'] = uwsgi_fifo_set_slot_one;
uwsgi_fifo_table['2'] = uwsgi_fifo_set_slot_two;
uwsgi_fifo_table['3'] = uwsgi_fifo_set_slot_three;
uwsgi_fifo_table['4'] = uwsgi_fifo_set_slot_four;
uwsgi_fifo_table['5'] = uwsgi_fifo_set_slot_five;
uwsgi_fifo_table['6'] = uwsgi_fifo_set_slot_six;
uwsgi_fifo_table['7'] = uwsgi_fifo_set_slot_seven;
uwsgi_fifo_table['8'] = uwsgi_fifo_set_slot_eight;
uwsgi_fifo_table['9'] = uwsgi_fifo_set_slot_nine;
uwsgi_fifo_table['-'] = uwsgi_cheaper_decrease;
uwsgi_fifo_table['+'] = uwsgi_cheaper_increase;
uwsgi_fifo_table['c'] = uwsgi_chain_reload;
uwsgi_fifo_table['C'] = uwsgi_go_cheap;
uwsgi_fifo_table['f'] = uwsgi_refork_master;
uwsgi_fifo_table['l'] = uwsgi_log_reopen;
uwsgi_fifo_table['L'] = uwsgi_log_rotate;
uwsgi_fifo_table['p'] = suspend_resume_them_all;
uwsgi_fifo_table['P'] = uwsgi_update_pidfiles;
uwsgi_fifo_table['q'] = gracefully_kill_them_all;
uwsgi_fifo_table['Q'] = kill_them_all;
uwsgi_fifo_table['r'] = grace_them_all;
uwsgi_fifo_table['R'] = reap_them_all;
uwsgi_fifo_table['s'] = stats;
uwsgi_fifo_table['w'] = uwsgi_reload_workers;
uwsgi_fifo_table['W'] = uwsgi_brutally_reload_workers;
}
int uwsgi_master_fifo() {
char *path = uwsgi_fifo_by_slot();
unlink(path);
if (mkfifo(path, S_IRUSR|S_IWUSR)) {
uwsgi_error("uwsgi_master_fifo()/mkfifo()");
exit(1);
}
int fd = open(path, O_RDONLY|O_NONBLOCK);
if (fd < 0) {
uwsgi_error("uwsgi_master_fifo()/open()");
exit(1);
}
uwsgi_socket_nb(fd);
return fd;
}
int uwsgi_master_fifo_manage(int fd) {
unsigned char cmd;
ssize_t rlen = read(fd, &cmd, 1);
if (rlen < 0) {
if (uwsgi_is_again()) return 0;
uwsgi_error("uwsgi_master_fifo_manage()/read()");
exit(1);
}
// fifo destroyed, recreate it
else if (rlen == 0) {
close(fd);
uwsgi.master_fifo_fd = uwsgi_master_fifo();
event_queue_add_fd_read(uwsgi.master_queue, uwsgi.master_fifo_fd);
return 0;
}
if (uwsgi_fifo_table[(int) cmd]) {
uwsgi_fifo_table[(int) cmd](0);
}
return 0;
}
+1
View File
@@ -38,6 +38,7 @@ void uwsgi_fsmon_setup() {
char *space = strchr(copy, ' ');
if (!space) {
uwsgi_log("[uwsgi-fsmon] invalid syntax: \"%s\"\n", usl->value);
free(copy);
goto next;
}
*space = 0;
+1
View File
@@ -70,6 +70,7 @@ void gateway_respawn(int id) {
if (gw_pid == 0) {
uwsgi_fixup_fds(0, 0, ug);
uwsgi_close_all_sockets();
if (uwsgi.master_as_root)
uwsgi_as_root();
#ifdef __linux__
+21 -1
View File
@@ -17,7 +17,7 @@ uint32_t djb33x_hash(char *key, uint64_t keylen) {
// Murmur2 hash Copyright (C) Austin Appleby
// adapted from nginx
uint32_t murmur2_hash(char *key, uint64_t keylen) {
static uint32_t murmur2_hash(char *key, uint64_t keylen) {
uint32_t h, k;
uint8_t *ukey = (uint8_t *) key;
@@ -56,6 +56,23 @@ uint32_t murmur2_hash(char *key, uint64_t keylen) {
return h;
}
static uint32_t random_hash(char *key, uint64_t keylen) {
return (uint32_t) rand();
}
/*
not atomic, avoid its use in multithreaded modes
*/
static uint32_t rr_hash(char *key, uint64_t keylen) {
static uint32_t rr = 0;
uint32_t max_value = uwsgi_str_num(key, keylen);
uint32_t ret = rr;
rr++;
if (rr > max_value) {
rr = 0;
}
return ret;
}
struct uwsgi_hash_algo *uwsgi_hash_algo_get(char *name) {
struct uwsgi_hash_algo *uha = uwsgi.hash_algos;
@@ -90,4 +107,7 @@ void uwsgi_hash_algo_register(char *name, uint32_t (*func)(char *, uint64_t)) {
void uwsgi_hash_algo_register_all() {
uwsgi_hash_algo_register("djb33x", djb33x_hash);
uwsgi_hash_algo_register("murmur2", murmur2_hash);
uwsgi_hash_algo_register("random", random_hash);
uwsgi_hash_algo_register("rand", random_hash);
uwsgi_hash_algo_register("rr", rr_hash);
}
+217
View File
@@ -0,0 +1,217 @@
#include <uwsgi.h>
extern struct uwsgi_server uwsgi;
/*
advanced (pluggable) hooks
they are executed before the other hooks, and can be extended by plugins
if a plugin tries to register an hook with a name already available in the list, its function
will be overridden
*/
struct uwsgi_hook *uwsgi_hook_by_name(char *name) {
struct uwsgi_hook *uh = uwsgi.hooks;
while(uh) {
if (!strcmp(uh->name, name)) {
return uh;
}
uh = uh->next;
}
return NULL;
}
void uwsgi_register_hook(char *name, int (*func)(char *)) {
struct uwsgi_hook *old_uh = NULL, *uh = uwsgi.hooks;
while(uh) {
if (!strcmp(uh->name, name)) {
uh->func = func;
return;
}
old_uh = uh;
uh = uh->next;
}
uh = uwsgi_calloc(sizeof(struct uwsgi_hook));
uh->name = name;
uh->func = func;
if (old_uh) {
old_uh->next = uh;
}
else {
uwsgi.hooks = uh;
}
}
static int uwsgi_hook_chdir(char *arg) {
int ret = chdir(arg);
if (ret) {
uwsgi_error("uwsgi_hook_chdir()");
}
return ret;
}
static int uwsgi_hook_exec(char *arg) {
int ret = uwsgi_run_command_and_wait(NULL, arg);
if (ret != 0) {
uwsgi_log("command \"%s\" exited with non-zero code: %d\n", arg, ret);
}
return ret;
}
static int uwsgi_hook_exit(char *arg) {
int exit_code = 0;
if (strlen(arg) > 1) {
exit_code = atoi(arg);
}
exit(exit_code);
}
static int uwsgi_hook_print(char *arg) {
char *line = uwsgi_concat2(arg, "\n");
uwsgi_log(line);
free(line);
return 0;
}
static int uwsgi_hook_callint(char *arg) {
char *space = strchr(arg, ' ');
if (space) {
*space = 0;
int num = atoi(space+1);
void (*func)(int) = dlsym(RTLD_DEFAULT, arg);
if (!func) {
uwsgi_log("unable to call function \"%s(%d)\"\n", arg, num);
*space = ' ';
return -1;
}
*space = ' ';
func(num);
}
else {
void (*func)(void) = dlsym(RTLD_DEFAULT, arg);
if (!func) {
uwsgi_log("unable to call function \"%s\"\n", arg);
return -1;
}
func();
}
return 0;
}
static int uwsgi_hook_call(char *arg) {
char *space = strchr(arg, ' ');
if (space) {
*space = 0;
void (*func)(char *) = dlsym(RTLD_DEFAULT, arg);
if (!func) {
uwsgi_log("unable to call function \"%s(%s)\"\n", arg, space + 1);
*space = ' ';
return -1;
}
*space = ' ';
func(space + 1);
}
else {
void (*func)(void) = dlsym(RTLD_DEFAULT, arg);
if (!func) {
uwsgi_log("unable to call function \"%s\"\n", arg);
return -1;
}
func();
}
return 0;
}
static int uwsgi_hook_callintret(char *arg) {
char *space = strchr(arg, ' ');
if (space) {
*space = 0;
int num = atoi(space+1);
int (*func)(int) = dlsym(RTLD_DEFAULT, arg);
if (!func) {
uwsgi_log("unable to call function \"%s(%d)\"\n", arg, num);
*space = ' ';
return -1;
}
*space = ' ';
return func(num);
}
int (*func)(void) = dlsym(RTLD_DEFAULT, arg);
if (!func) {
uwsgi_log("unable to call function \"%s\"\n", arg);
return -1;
}
return func();
}
static int uwsgi_hook_callret(char *arg) {
char *space = strchr(arg, ' ');
if (space) {
*space = 0;
int (*func)(char *) = dlsym(RTLD_DEFAULT, arg);
if (!func) {
uwsgi_log("unable to call function \"%s(%s)\"\n", arg, space + 1);
*space = ' ';
return -1;
}
*space = ' ';
return func(space + 1);
}
int (*func)(void) = dlsym(RTLD_DEFAULT, arg);
if (!func) {
uwsgi_log("unable to call function \"%s\"\n", arg);
return -1;
}
return func();
}
void uwsgi_register_base_hooks() {
uwsgi_register_hook("cd", uwsgi_hook_chdir);
uwsgi_register_hook("exec", uwsgi_hook_exec);
uwsgi_register_hook("mount", uwsgi_mount_hook);
uwsgi_register_hook("umount", uwsgi_umount_hook);
uwsgi_register_hook("call", uwsgi_hook_call);
uwsgi_register_hook("callret", uwsgi_hook_callret);
uwsgi_register_hook("callint", uwsgi_hook_callint);
uwsgi_register_hook("callintret", uwsgi_hook_callintret);
// for testing
uwsgi_register_hook("exit", uwsgi_hook_exit);
uwsgi_register_hook("print", uwsgi_hook_print);
}
void uwsgi_hooks_run(struct uwsgi_string_list *l, char *phase, int fatal) {
struct uwsgi_string_list *usl = NULL;
uwsgi_foreach(usl, l) {
char *colon = strchr(usl->value, ':');
if (!colon) {
uwsgi_log("invalid hook syntax, must be hook:args\n");
exit(1);
}
*colon = 0;
struct uwsgi_hook *uh = uwsgi_hook_by_name(usl->value);
if (!uh) {
uwsgi_log("hook not found: %s\n", usl->value);
exit(1);
}
*colon = ':';
uwsgi_log("running \"%s\" (%s)...\n", usl->value, phase);
int ret = uh->func(colon+1);
if (fatal && ret != 0) {
exit(1);
}
}
}
+27 -12
View File
@@ -51,6 +51,7 @@ struct http_status_codes hsc[] = {
{"503", "Service Unavailable"},
{"504", "Gateway Timeout"},
{"505", "HTTP Version Not Supported"},
{"509", "Bandwidth Limit Exceeded"},
{"", NULL},
};
@@ -75,10 +76,12 @@ void uwsgi_init_default() {
uwsgi.original_log_fd = -1;
uwsgi.emperor_fd_config = -1;
uwsgi.emperor_fd_proxy = -1;
// default emperor scan frequency
uwsgi.emperor_freq = 3;
uwsgi.emperor_throttle = 1000;
uwsgi.emperor_heartbeat = 30;
uwsgi.emperor_curse_tolerance = 30;
// max 3 minutes throttling
uwsgi.emperor_max_throttle = 1000 * 180;
uwsgi.emperor_pid = -1;
@@ -172,6 +175,12 @@ void uwsgi_init_default() {
// 1 MB default limit
uwsgi.chunked_input_limit = 1024*1024;
// clear reforked status
uwsgi.master_is_reforked = 0;
uwsgi.master_fifo_fd = -1;
uwsgi_master_fifo_prepare();
}
void uwsgi_setup_reload() {
@@ -216,21 +225,19 @@ void uwsgi_autoload_plugins_by_name(char *argv_zero) {
p = original_proc_name;
p = strstr(p, "uwsgi_");
if (p != NULL) {
plugins_requested = strtok(uwsgi_str(p + 6), "_");
while (plugins_requested) {
char *ctx = NULL;
uwsgi_foreach_token(uwsgi_str(p + 6), "_", plugins_requested, ctx) {
uwsgi_log("[uwsgi] implicit plugin requested %s\n", plugins_requested);
uwsgi_load_plugin(-1, plugins_requested, NULL);
plugins_requested = strtok(NULL, "_");
}
}
plugins_requested = getenv("UWSGI_PLUGINS");
if (plugins_requested) {
plugins_requested = uwsgi_concat2(plugins_requested, "");
char *p = strtok(plugins_requested, ",");
while (p != NULL) {
char *p, *ctx = NULL;
uwsgi_foreach_token(plugins_requested, ",", p, ctx) {
uwsgi_load_plugin(-1, p, NULL);
p = strtok(NULL, ",");
}
}
@@ -339,7 +346,6 @@ void uwsgi_setup_workers() {
uwsgi.workers[i].signal_pipe[0] = -1;
uwsgi.workers[i].signal_pipe[1] = -1;
snprintf(uwsgi.workers[i].name, 0xff, "uWSGI worker %d", i);
snprintf(uwsgi.workers[i].snapshot_name, 0xff, "uWSGI snapshot %d", i);
}
uint64_t total_memory = (sizeof(struct uwsgi_app) * uwsgi.max_apps) + (sizeof(struct uwsgi_core) * uwsgi.cores) + (sizeof(void *) * uwsgi.max_apps * uwsgi.cores) + (uwsgi.buffer_size * uwsgi.cores) + (sizeof(struct iovec) * uwsgi.vec_size * uwsgi.cores);
@@ -357,6 +363,7 @@ void uwsgi_setup_workers() {
#ifdef UWSGI_ROUTING
uwsgi_fixup_routes(uwsgi.routes);
uwsgi_fixup_routes(uwsgi.error_routes);
uwsgi_fixup_routes(uwsgi.response_routes);
uwsgi_fixup_routes(uwsgi.final_routes);
#endif
@@ -440,17 +447,25 @@ void sanitize_args() {
}
}
if (uwsgi.auto_snapshot > 0 && uwsgi.auto_snapshot > uwsgi.numproc) {
uwsgi_log("invalid auto-snapshot value: must be <= than processes\n");
exit(1);
}
if (uwsgi.shared->options[UWSGI_OPTION_MAX_WORKER_LIFETIME] > 0 && uwsgi.shared->options[UWSGI_OPTION_MIN_WORKER_LIFETIME] >= uwsgi.shared->options[UWSGI_OPTION_MAX_WORKER_LIFETIME]) {
uwsgi_log("invalid min-worker-lifetime value (%d), must be lower than max-worker-lifetime (%d)\n",
uwsgi.shared->options[UWSGI_OPTION_MIN_WORKER_LIFETIME], uwsgi.shared->options[UWSGI_OPTION_MAX_WORKER_LIFETIME]);
exit(1);
}
if (uwsgi.cheaper_rss_limit_soft && uwsgi.shared->options[UWSGI_OPTION_MEMORY_DEBUG] != 1 && uwsgi.force_get_memusage != 1) {
uwsgi_log("enabling cheaper-rss-limit-soft requires enabling also memory-report\n");
exit(1);
}
if (uwsgi.cheaper_rss_limit_hard && !uwsgi.cheaper_rss_limit_soft) {
uwsgi_log("enabling cheaper-rss-limit-hard requires setting also cheaper-rss-limit-soft\n");
exit(1);
}
if ( uwsgi.cheaper_rss_limit_hard && uwsgi.cheaper_rss_limit_hard <= uwsgi.cheaper_rss_limit_soft) {
uwsgi_log("cheaper-rss-limit-hard value must be higher than cheaper-rss-limit-soft value\n");
exit(1);
}
/* here we try to choose if thunder lock is a good thing */
#ifdef UNBIT
if (uwsgi.numproc > 1 && !uwsgi.map_socket) {
+309 -191
View File
@@ -116,48 +116,31 @@ end:
}
/*
extremely complex function for reading resources (files, url...)
need a lot of refactoring...
*/
char *uwsgi_open_and_read(char *url, size_t *size, int add_zero, char *magic_table[]) {
static char *uwsgi_scheme_fd(char *url, size_t *size, int add_zero) {
int fd = atoi(url);
return uwsgi_read_fd(fd, size, add_zero);
}
int fd;
struct stat sb;
char *buffer = NULL;
static char *uwsgi_scheme_exec(char *url, size_t *size, int add_zero) {
int cpipe[2];
if (pipe(cpipe)) {
uwsgi_error("pipe()");
exit(1);
}
uwsgi_run_command(url, NULL, cpipe[1]);
char *buffer = uwsgi_read_fd(cpipe[0], size, add_zero);
close(cpipe[0]);
close(cpipe[1]);
return buffer;
}
static char *uwsgi_scheme_http(char *url, size_t *size, int add_zero) {
char byte;
ssize_t len;
char *uri, *colon;
char *domain;
char *ip;
int body = 0;
char *magic_buf;
int body = 0;
char *buffer = NULL;
// stdin ?
if (!strcmp(url, "-")) {
buffer = uwsgi_read_fd(0, size, add_zero);
}
// fd ?
else if (!strncmp("fd://", url, 5)) {
fd = atoi(url + 5);
buffer = uwsgi_read_fd(fd, size, add_zero);
}
// exec ?
else if (!strncmp("exec://", url, 5)) {
int cpipe[2];
if (pipe(cpipe)) {
uwsgi_error("pipe()");
exit(1);
}
uwsgi_run_command(url + 7, NULL, cpipe[1]);
buffer = uwsgi_read_fd(cpipe[0], size, add_zero);
close(cpipe[0]);
close(cpipe[1]);
}
// http url ?
else if (!strncmp("http://", url, 7)) {
domain = url + 7;
uri = strchr(domain, '/');
char *domain = url;
char *uri = strchr(domain, '/');
if (!uri) {
uwsgi_log("invalid http url\n");
exit(1);
@@ -165,14 +148,14 @@ char *uwsgi_open_and_read(char *url, size_t *size, int add_zero, char *magic_tab
uri[0] = 0;
uwsgi_log("domain: %s\n", domain);
colon = uwsgi_get_last_char(domain, ':');
char *colon = uwsgi_get_last_char(domain, ':');
if (colon) {
colon[0] = 0;
}
ip = uwsgi_resolve_ip(domain);
char *ip = uwsgi_resolve_ip(domain);
if (!ip) {
uwsgi_log("unable to resolve address %s\n", domain);
exit(1);
@@ -186,9 +169,10 @@ char *uwsgi_open_and_read(char *url, size_t *size, int add_zero, char *magic_tab
ip = uwsgi_concat2(ip, ":80");
}
fd = uwsgi_connect(ip, 0, 0);
int fd = uwsgi_connect(ip, 0, 0);
if (fd < 0) {
uwsgi_error("uwsgi_scheme_http()/connect()");
exit(1);
}
@@ -196,18 +180,18 @@ char *uwsgi_open_and_read(char *url, size_t *size, int add_zero, char *magic_tab
uri[0] = '/';
len = write(fd, "GET ", 4);
len = write(fd, uri, strlen(uri));
len = write(fd, " HTTP/1.0\r\n", 11);
len = write(fd, "Host: ", 6);
if (write(fd, "GET ", 4) != 4) { uwsgi_error("uwsgi_scheme_http()/write()"); exit(1);}
if (write(fd, uri, strlen(uri)) != (ssize_t) strlen(uri)) { uwsgi_error("uwsgi_scheme_http()/write()"); exit(1);}
if (write(fd, " HTTP/1.0\r\n", 11) != 11) { uwsgi_error("uwsgi_scheme_http()/write()"); exit(1);}
if (write(fd, "Host: ", 6) != 6) { uwsgi_error("uwsgi_scheme_http()/write()"); exit(1);}
uri[0] = 0;
len = write(fd, domain, strlen(domain));
if (write(fd, domain, strlen(domain)) != (ssize_t) strlen(domain)) { uwsgi_error("uwsgi_scheme_http()/write()"); exit(1);}
uri[0] = '/';
len = write(fd, "\r\nUser-Agent: uWSGI on ", 23);
len = write(fd, uwsgi.hostname, uwsgi.hostname_len);
len = write(fd, "\r\n\r\n", 4);
if (write(fd, "\r\nUser-Agent: uWSGI on ", 23) != 23) { uwsgi_error("uwsgi_scheme_http()/write()"); exit(1);}
if (write(fd, uwsgi.hostname, uwsgi.hostname_len) != uwsgi.hostname_len) { uwsgi_error("uwsgi_scheme_http()/write()"); exit(1);}
if (write(fd, "\r\n\r\n", 4) != 4) { uwsgi_error("uwsgi_scheme_http()/write()"); exit(1);}
int http_status_code_ptr = 0;
@@ -264,57 +248,233 @@ char *uwsgi_open_and_read(char *url, size_t *size, int add_zero, char *magic_tab
buffer[*size - 1] = 0;
}
return buffer;
}
static char *uwsgi_scheme_emperor(char *url, size_t *size, int add_zero) {
if (uwsgi.emperor_fd_config < 0) {
uwsgi_log("this is not a vassal instance\n");
exit(1);
}
else if (!strncmp("emperor://", url, 10)) {
if (uwsgi.emperor_fd_config < 0) {
uwsgi_log("this is not a vassal instance\n");
ssize_t rlen;
struct uwsgi_header uh;
size_t remains = 4;
char *ptr = (char *) &uh;
while(remains) {
int ret = uwsgi_waitfd(uwsgi.emperor_fd_config, 5);
if (ret <= 0) {
uwsgi_log("[uwsgi-vassal] error waiting for config header %s !!!\n", url);
exit(1);
}
ssize_t rlen;
*size = 0;
struct uwsgi_header uh;
size_t remains = 4;
char *ptr = (char *) &uh;
while(remains) {
int ret = uwsgi_waitfd(uwsgi.emperor_fd_config, 5);
if (ret <= 0) {
uwsgi_log("[uwsgi-vassal] error waiting for config header %s !!!\n", url);
exit(1);
}
rlen = read(uwsgi.emperor_fd_config, ptr, remains);
if (rlen <= 0) {
uwsgi_log("[uwsgi-vassal] error reading config header from !!!\n", url);
exit(1);
}
ptr+=rlen;
remains-=rlen;
rlen = read(uwsgi.emperor_fd_config, ptr, remains);
if (rlen <= 0) {
uwsgi_log("[uwsgi-vassal] error reading config header from %s !!!\n", url);
exit(1);
}
ptr+=rlen;
remains-=rlen;
}
remains = uh.pktsize;
if (!remains) {
uwsgi_log("[uwsgi-vassal] invalid config from %s\n", url);
remains = uh.pktsize;
if (!remains) {
uwsgi_log("[uwsgi-vassal] invalid config from %s\n", url);
exit(1);
}
char *buffer = uwsgi_calloc(remains + add_zero);
ptr = buffer;
while (remains) {
int ret = uwsgi_waitfd(uwsgi.emperor_fd_config, 5);
if (ret <= 0) {
uwsgi_log("[uwsgi-vassal] error waiting for config %s !!!\n", url);
exit(1);
}
rlen = read(uwsgi.emperor_fd_config, ptr, remains);
if (rlen <= 0) {
uwsgi_log("[uwsgi-vassal] error reading config from %s !!!\n", url);
exit(1);
}
ptr+=rlen;
remains-=rlen;
}
*size = uh.pktsize + add_zero;
return buffer;
}
static char *uwsgi_scheme_data(char *url, size_t *size, int add_zero) {
char *buffer = NULL;
int fd = open(uwsgi.binary_path, O_RDONLY);
if (fd < 0) {
uwsgi_error_open(uwsgi.binary_path);
exit(1);
}
int slot = atoi(url);
if (slot < 0) {
uwsgi_log("invalid binary data slot requested\n");
exit(1);
}
uwsgi_log("requesting binary data slot %d\n", slot);
off_t fo = lseek(fd, 0, SEEK_END);
if (fo < 0) {
uwsgi_error("lseek()");
uwsgi_log("invalid binary data slot requested\n");
exit(1);
}
int i = 0;
uint64_t datasize = 0;
for (i = 0; i <= slot; i++) {
fo = lseek(fd, -8, SEEK_CUR);
if (fo < 0) {
uwsgi_error("lseek()");
uwsgi_log("invalid binary data slot requested\n");
exit(1);
}
ssize_t len = read(fd, &datasize, 8);
if (len != 8) {
uwsgi_error("read()");
uwsgi_log("invalid binary data slot requested\n");
exit(1);
}
if (datasize == 0) {
uwsgi_log("0 size binary data !!!\n");
exit(1);
}
fo = lseek(fd, -(datasize + 8), SEEK_CUR);
if (fo < 0) {
uwsgi_error("lseek()");
uwsgi_log("invalid binary data slot requested\n");
exit(1);
}
buffer = uwsgi_calloc(remains + add_zero);
ptr = buffer;
while (remains) {
int ret = uwsgi_waitfd(uwsgi.emperor_fd_config, 5);
if (ret <= 0) {
uwsgi_log("[uwsgi-vassal] error waiting for config %s !!!\n", url);
exit(1);
}
rlen = read(uwsgi.emperor_fd_config, ptr, remains);
if (rlen <= 0) {
uwsgi_log("[uwsgi-vassal] error reading config from !!!\n", url);
exit(1);
}
ptr+=rlen;
remains-=rlen;
if (i == slot) {
*size = datasize;
if (add_zero) {
*size += 1;
}
buffer = uwsgi_malloc(*size);
memset(buffer, 0, *size);
len = read(fd, buffer, datasize);
if (len != (ssize_t) datasize) {
uwsgi_error("read()");
uwsgi_log("invalid binary data slot requested\n");
exit(1);
}
}
*size = uh.pktsize + add_zero;
}
close(fd);
return buffer;
}
static char *uwsgi_scheme_call(char *url, size_t *size, int add_zero) {
char *(*func)(void) = dlsym(RTLD_DEFAULT, url);
if (!func) {
uwsgi_log("unable to find symbol %s\n", url);
exit(1);
}
char *s = func();
if (!s) {
uwsgi_log("called symbol %s did not return a string\n", url);
exit(1);
}
*size = strlen(s);
if (add_zero) {
*size += 1;
}
char *buffer = uwsgi_malloc(*size);
memset(buffer, 0, *size);
memcpy(buffer, s, strlen(s));
return buffer;
}
static char *uwsgi_scheme_sym(char *url, size_t *size, int add_zero) {
void *sym_start_ptr = NULL, *sym_end_ptr = NULL;
char **raw_symbol = dlsym(RTLD_DEFAULT, url);
if (raw_symbol) {
sym_start_ptr = *raw_symbol;
sym_end_ptr = sym_start_ptr + strlen(sym_start_ptr);
goto found;
}
char *symbol = uwsgi_concat3("_binary_", url, "_start");
sym_start_ptr = dlsym(RTLD_DEFAULT, symbol);
if (!sym_start_ptr) {
uwsgi_log("unable to find symbol %s\n", symbol);
exit(1);
}
free(symbol);
symbol = uwsgi_concat3("_binary_", url, "_end");
sym_end_ptr = dlsym(RTLD_DEFAULT, symbol);
if (!sym_end_ptr) {
uwsgi_log("unable to find symbol %s\n", symbol);
exit(1);
}
free(symbol);
found:
*size = sym_end_ptr - sym_start_ptr;
if (add_zero) {
*size += 1;
}
char *buffer = uwsgi_malloc(*size);
memset(buffer, 0, *size);
memcpy(buffer, sym_start_ptr, sym_end_ptr - sym_start_ptr);
return buffer;
}
static char *uwsgi_scheme_section(char *url, size_t *size, int add_zero) {
#ifdef UWSGI_ELF
size_t s_len = 0;
char *buffer = uwsgi_elf_section(uwsgi.binary_path, url, &s_len);
if (!buffer) {
uwsgi_log("unable to find section %s in %s\n", url + 10, uwsgi.binary_path);
exit(1);
}
*size = s_len;
if (add_zero)
*size += 1;
return buffer;
#else
uwsgi_log("section:// scheme not supported on this platform\n");
exit(1);
#endif
}
struct uwsgi_string_list *uwsgi_register_scheme(char *name, char * (*func)(char *, size_t *, int)) {
struct uwsgi_string_list *usl = NULL;
uwsgi_foreach(usl, uwsgi.schemes) {
if (!strcmp(usl->value, name)) goto found;
}
usl = uwsgi_string_new_list(&uwsgi.schemes, name);
found:
usl->custom_ptr = func;
return usl;
}
char *uwsgi_open_and_read(char *url, size_t *size, int add_zero, char *magic_table[]) {
struct stat sb;
char *buffer = NULL;
ssize_t len;
char *magic_buf;
int fd;
*size = 0;
// stdin ?
if (!strcmp(url, "-")) {
buffer = uwsgi_read_fd(0, size, add_zero);
goto end;
}
#ifdef UWSGI_EMBED_CONFIG
else if (url[0] == 0) {
*size = &UWSGI_EMBED_CONFIG_END - &UWSGI_EMBED_CONFIG;
@@ -324,108 +484,22 @@ char *uwsgi_open_and_read(char *url, size_t *size, int add_zero, char *magic_tab
buffer = uwsgi_malloc(*size);
memset(buffer, 0, *size);
memcpy(buffer, &UWSGI_EMBED_CONFIG, &UWSGI_EMBED_CONFIG_END - &UWSGI_EMBED_CONFIG);
goto end;
}
#endif
else if (!strncmp("data://", url, 7)) {
fd = open(uwsgi.binary_path, O_RDONLY);
if (fd < 0) {
uwsgi_error_open(uwsgi.binary_path);
exit(1);
}
int slot = atoi(url + 7);
if (slot < 0) {
uwsgi_log("invalid binary data slot requested\n");
exit(1);
}
uwsgi_log("requesting binary data slot %d\n", slot);
off_t fo = lseek(fd, 0, SEEK_END);
if (fo < 0) {
uwsgi_error("lseek()");
uwsgi_log("invalid binary data slot requested\n");
exit(1);
}
int i = 0;
uint64_t datasize = 0;
for (i = 0; i <= slot; i++) {
fo = lseek(fd, -9, SEEK_CUR);
if (fo < 0) {
uwsgi_error("lseek()");
uwsgi_log("invalid binary data slot requested\n");
exit(1);
}
ssize_t len = read(fd, &datasize, 8);
if (len != 8) {
uwsgi_error("read()");
uwsgi_log("invalid binary data slot requested\n");
exit(1);
}
if (datasize == 0) {
uwsgi_log("0 size binary data !!!\n");
exit(1);
}
fo = lseek(fd, -(datasize + 9), SEEK_CUR);
if (fo < 0) {
uwsgi_error("lseek()");
uwsgi_log("invalid binary data slot requested\n");
exit(1);
}
if (i == slot) {
*size = datasize;
if (add_zero) {
*size += 1;
}
buffer = uwsgi_malloc(*size);
memset(buffer, 0, *size);
len = read(fd, buffer, datasize);
if (len != (ssize_t) datasize) {
uwsgi_error("read()");
uwsgi_log("invalid binary data slot requested\n");
exit(1);
}
}
}
}
else if (!strncmp("sym://", url, 6)) {
char *symbol = uwsgi_concat3("_binary_", url + 6, "_start");
void *sym_start_ptr = dlsym(RTLD_DEFAULT, symbol);
if (!sym_start_ptr) {
uwsgi_log("unable to find symbol %s\n", symbol);
exit(1);
}
free(symbol);
symbol = uwsgi_concat3("_binary_", url + 6, "_end");
void *sym_end_ptr = dlsym(RTLD_DEFAULT, symbol);
if (!sym_end_ptr) {
uwsgi_log("unable to find symbol %s\n", symbol);
exit(1);
}
free(symbol);
struct uwsgi_string_list *usl = uwsgi_check_scheme(url);
if (!usl) goto fallback;
*size = sym_end_ptr - sym_start_ptr;
if (add_zero) {
*size += 1;
}
buffer = uwsgi_malloc(*size);
memset(buffer, 0, *size);
memcpy(buffer, sym_start_ptr, sym_end_ptr - sym_start_ptr);
}
#ifdef UWSGI_ELF
else if (!strncmp("section://", url, 10)) {
size_t s_len = 0;
buffer = uwsgi_elf_section(uwsgi.binary_path, url + 10, &s_len);
if (!buffer) {
uwsgi_log("unable to find section %s in %s\n", url + 10, uwsgi.binary_path);
exit(1);
}
*size = s_len;
if (add_zero)
*size += 1;
}
#endif
char *(*func)(char *, size_t *, int) = (char *(*)(char *, size_t *, int)) usl->custom_ptr;
buffer = func(url + usl->len + 3, size, add_zero);
if (buffer) goto end;
// never here !!!
uwsgi_log("unable to parse config file %s\n", url);
exit(1);
// fallback to file
else {
fallback:
fd = open(url, O_RDONLY);
if (fd < 0) {
uwsgi_error_open(url);
@@ -457,7 +531,6 @@ char *uwsgi_open_and_read(char *url, size_t *size, int add_zero, char *magic_tab
if (add_zero)
buffer[sb.st_size] = 0;
}
end:
@@ -870,12 +943,12 @@ int uwsgi_read_whole_true_nb(int fd, char *buf, size_t remains, int timeout) {
}
/*
this is a pretty magic function used for read a full uwsgi response
this is a pretty magic function used for reading a full uwsgi response
it is true non blocking, so you can use it in request plugins
buffer is expected to be at least 4 bytes, rlen is a get/set value
*/
int uwsgi_read_with_realloc(int fd, char **buffer, size_t *rlen, int timeout) {
int uwsgi_read_with_realloc(int fd, char **buffer, size_t *rlen, int timeout, uint8_t *modifier1, uint8_t *modifier2) {
if (*rlen < 4) return -1;
char *buf = *buffer;
int ret;
@@ -906,6 +979,10 @@ readok:
struct uwsgi_header *uh = (struct uwsgi_header *) buf;
uint16_t pktsize = uh->pktsize;
if (modifier1)
*modifier1 = uh->modifier1;
if (modifier2)
*modifier2 = uh->modifier2;
if (pktsize > *rlen) {
char *tmp_buf = realloc(buf, pktsize);
@@ -1097,3 +1174,44 @@ int uwsgi_ready_fd(struct wsgi_request *wsgi_req) {
if (wsgi_req->async_ready_fd) return wsgi_req->async_last_ready_fd;
return -1;
}
void uwsgi_setup_schemes() {
uwsgi_register_scheme("emperor", uwsgi_scheme_emperor);
uwsgi_register_scheme("http", uwsgi_scheme_http);
uwsgi_register_scheme("data", uwsgi_scheme_data);
uwsgi_register_scheme("sym", uwsgi_scheme_sym);
uwsgi_register_scheme("section", uwsgi_scheme_section);
uwsgi_register_scheme("fd", uwsgi_scheme_fd);
uwsgi_register_scheme("exec", uwsgi_scheme_exec);
uwsgi_register_scheme("call", uwsgi_scheme_call);
}
struct uwsgi_string_list *uwsgi_check_scheme(char *file) {
struct uwsgi_string_list *usl;
uwsgi_foreach(usl, uwsgi.schemes) {
char *url = uwsgi_concat2(usl->value, "://");
int ret = uwsgi_startswith(file, url, strlen(url));
free(url);
if (!ret) return usl;
}
return NULL;
}
void uwsgi_remap_fd(int fd, char *filename) {
int fdin = open(filename, O_RDWR);
if (fdin < 0) {
uwsgi_error_open(filename);
exit(1);
}
/* stdin */
if (fdin != fd) {
if (dup2(fdin, fd) < 0) {
uwsgi_error("uwsgi_remap_fd()/dup2()");
exit(1);
}
close(fdin);
}
}
+2
View File
@@ -106,6 +106,8 @@ void uwsgi_json_config(char *file, char *magic_table[]) {
config_iter = json_object_iter_next(config, config_iter);
}
if (colon) colon[0] = ':';
}
#endif
+35 -6
View File
@@ -493,7 +493,7 @@ struct uwsgi_lock_item *uwsgi_lock_ipcsem_init(char *id) {
if (uwsgi.ftok) {
myKey = ftok(uwsgi.ftok, counter);
if (myKey < 0) {
uwsgi_error("ftok()");
uwsgi_error("uwsgi_lock_ipcsem_init()/ftok()");
exit(1);
}
counter++;
@@ -504,7 +504,7 @@ struct uwsgi_lock_item *uwsgi_lock_ipcsem_init(char *id) {
}
if (semid < 0) {
uwsgi_error("semget()");
uwsgi_error("uwsgi_lock_ipcsem_init()/semget()");
exit(1);
}
// do this now, to allows triggering of atexit hook in case of problems
@@ -512,7 +512,7 @@ struct uwsgi_lock_item *uwsgi_lock_ipcsem_init(char *id) {
semu.val = 1;
if (semctl(semid, 0, SETVAL, semu)) {
uwsgi_error("semctl()");
uwsgi_error("uwsgi_lock_ipcsem_init()/semctl()");
exit(1);
}
@@ -532,7 +532,13 @@ void uwsgi_lock_ipcsem(struct uwsgi_lock_item *uli) {
retry:
if (semop(semid, &sb, 1)) {
if (errno == EINTR) goto retry;
uwsgi_error("semop()");
uwsgi_error("uwsgi_lock_ipcsem()/semop()");
#ifdef EIDRM
if (errno == EIDRM) {
exit(UWSGI_BRUTAL_RELOAD_CODE);
}
#endif
exit(1);
}
}
@@ -549,7 +555,13 @@ void uwsgi_unlock_ipcsem(struct uwsgi_lock_item *uli) {
retry:
if (semop(semid, &sb, 1)) {
if (errno == EINTR) goto retry;
uwsgi_error("semop()");
uwsgi_error("uwsgi_unlock_ipcsem()/semop()");
#ifdef EIDRM
if (errno == EIDRM) {
exit(UWSGI_BRUTAL_RELOAD_CODE);
}
#endif
exit(1);
}
}
@@ -574,6 +586,8 @@ pid_t uwsgi_lock_ipcsem_check(struct uwsgi_lock_item *uli) {
void uwsgi_ipcsem_clear(void) {
if (uwsgi.persistent_ipcsem) return;
struct uwsgi_lock_item *uli = uwsgi.registered_locks;
if (!uwsgi.workers)
@@ -594,12 +608,27 @@ clear:
#ifdef UWSGI_DEBUG
uwsgi_log("removing sysvipc semaphores...\n");
#endif
#ifdef GETPID
while (uli) {
int semid = 0;
memcpy(&semid, uli->lock_ptr, sizeof(int));
int ret = semctl(semid, 0, GETPID);
if (ret > 0) {
if (ret != (int) getpid() && !kill((pid_t) ret, 0)) {
uwsgi_log("found ipcsem mapped to alive pid %d. skipping ipcsem removal.\n", ret);
return;
}
}
uli = uli->next;
}
uli = uwsgi.registered_locks;
#endif
while (uli) {
int semid = 0;
memcpy(&semid, uli->lock_ptr, sizeof(int));
if (semctl(semid, 0, IPC_RMID)) {
uwsgi_error("semctl()");
uwsgi_error("uwsgi_ipcsem_clear()/semctl()");
}
uli = uli->next;
}
+556 -75
View File
@@ -120,17 +120,54 @@ void uwsgi_log_verbose(const char *fmt, ...) {
static void fix_logpipe_buf(int *fd) {
int so_bufsize;
socklen_t so_bufsize_len = sizeof(int);
if (getsockopt(fd[0], SOL_SOCKET, SO_RCVBUF, &so_bufsize, &so_bufsize_len)) {
uwsgi_error("fix_logpipe_buf()/getsockopt()");
return;
}
if ((size_t)so_bufsize < uwsgi.log_master_bufsize) {
so_bufsize = uwsgi.log_master_bufsize;
if (setsockopt(fd[0], SOL_SOCKET, SO_RCVBUF, &so_bufsize, so_bufsize_len)) {
uwsgi_error("fix_logpipe_buf()/setsockopt()");
}
}
if (getsockopt(fd[1], SOL_SOCKET, SO_SNDBUF, &so_bufsize, &so_bufsize_len)) {
uwsgi_error("fix_logpipe_buf()/getsockopt()");
return;
}
if ((size_t)so_bufsize < uwsgi.log_master_bufsize) {
so_bufsize = uwsgi.log_master_bufsize;
if (setsockopt(fd[1], SOL_SOCKET, SO_SNDBUF, &so_bufsize, so_bufsize_len)) {
uwsgi_error("fix_logpipe_buf()/setsockopt()");
}
}
}
// create the logpipe
void create_logpipe(void) {
if (uwsgi.log_master_stream) {
if (socketpair(AF_UNIX, SOCK_STREAM, 0, uwsgi.shared->worker_log_pipe)) {
uwsgi_error("create_logpipe()/socketpair()\n");
exit(1);
}
}
else {
#if defined(SOCK_SEQPACKET) && defined(__linux__)
if (socketpair(AF_UNIX, SOCK_SEQPACKET, 0, uwsgi.shared->worker_log_pipe)) {
if (socketpair(AF_UNIX, SOCK_SEQPACKET, 0, uwsgi.shared->worker_log_pipe)) {
#else
if (socketpair(AF_UNIX, SOCK_DGRAM, 0, uwsgi.shared->worker_log_pipe)) {
if (socketpair(AF_UNIX, SOCK_DGRAM, 0, uwsgi.shared->worker_log_pipe)) {
#endif
uwsgi_error("socketpair()\n");
exit(1);
uwsgi_error("create_logpipe()/socketpair()\n");
exit(1);
}
fix_logpipe_buf(uwsgi.shared->worker_log_pipe);
}
uwsgi_socket_nb(uwsgi.shared->worker_log_pipe[0]);
@@ -149,13 +186,22 @@ void create_logpipe(void) {
}
if (uwsgi.req_log_master) {
if (uwsgi.log_master_req_stream) {
if (socketpair(AF_UNIX, SOCK_STREAM, 0, uwsgi.shared->worker_req_log_pipe)) {
uwsgi_error("create_logpipe()/socketpair()\n");
exit(1);
}
}
else {
#if defined(SOCK_SEQPACKET) && defined(__linux__)
if (socketpair(AF_UNIX, SOCK_SEQPACKET, 0, uwsgi.shared->worker_req_log_pipe)) {
if (socketpair(AF_UNIX, SOCK_SEQPACKET, 0, uwsgi.shared->worker_req_log_pipe)) {
#else
if (socketpair(AF_UNIX, SOCK_DGRAM, 0, uwsgi.shared->worker_req_log_pipe)) {
if (socketpair(AF_UNIX, SOCK_DGRAM, 0, uwsgi.shared->worker_req_log_pipe)) {
#endif
uwsgi_error("socketpair()\n");
exit(1);
uwsgi_error("create_logpipe()/socketpair()\n");
exit(1);
}
fix_logpipe_buf(uwsgi.shared->worker_req_log_pipe);
}
uwsgi_socket_nb(uwsgi.shared->worker_req_log_pipe[0]);
@@ -287,6 +333,8 @@ void logto(char *logfile) {
void uwsgi_setup_log() {
uwsgi_setup_log_encoders();
if (uwsgi.daemonize) {
if (uwsgi.has_emperor) {
@@ -440,7 +488,6 @@ void uwsgi_logvar_add(struct wsgi_request *wsgi_req, char *key, uint8_t keylen,
void uwsgi_check_logrotate(void) {
char message[1024];
int need_rotation = 0;
int need_reopen = 0;
@@ -451,7 +498,7 @@ void uwsgi_check_logrotate(void) {
uwsgi.shared->logsize = lseek(2, 0, SEEK_CUR);
}
if (uwsgi.log_maxsize > 0 && uwsgi.shared->logsize > uwsgi.log_maxsize) {
if (uwsgi.log_maxsize > 0 && (uint64_t) uwsgi.shared->logsize > uwsgi.log_maxsize) {
need_rotation = 1;
}
@@ -464,70 +511,82 @@ void uwsgi_check_logrotate(void) {
}
if (need_rotation) {
char *rot_name = uwsgi.log_backupname;
int need_free = 0;
if (rot_name == NULL) {
char *ts_str = uwsgi_num2str((int) uwsgi_now());
rot_name = uwsgi_concat3(uwsgi.logfile, ".", ts_str);
free(ts_str);
need_free = 1;
}
int ret = snprintf(message, 1024, "[%d] logsize: %llu, triggering rotation to %s...\n", (int) uwsgi_now(), (unsigned long long) uwsgi.shared->logsize, rot_name);
if (ret > 0) {
if (write(uwsgi.original_log_fd, message, ret) != ret) {
// very probably this will never be printed
uwsgi_error("write()");
}
}
if (rename(uwsgi.logfile, rot_name) == 0) {
// reopen logfile dup'it and eventually gracefully reload workers;
int fd = open(uwsgi.logfile, O_RDWR | O_CREAT | O_TRUNC, S_IRUSR | S_IWUSR | S_IRGRP);
if (fd < 0) {
uwsgi_error_open(uwsgi.logfile);
grace_them_all(0);
}
else {
if (dup2(fd, uwsgi.original_log_fd) < 0) {
uwsgi_error("dup2()");
grace_them_all(0);
}
close(fd);
}
}
else {
uwsgi_error("unable to rotate log: rename()");
}
if (need_free)
free(rot_name);
uwsgi_log_rotate();
}
else if (need_reopen) {
int ret = snprintf(message, 1024, "[%d] logsize: %llu, triggering log-reopen...\n", (int) uwsgi_now(), (unsigned long long) uwsgi.shared->logsize);
if (ret > 0) {
if (write(uwsgi.original_log_fd, message, ret) != ret) {
// very probably this will never be printed
uwsgi_error("write()");
}
}
// reopen logfile;
close(uwsgi.original_log_fd);
uwsgi.original_log_fd = open(uwsgi.logfile, O_RDWR | O_CREAT | O_APPEND, S_IRUSR | S_IWUSR | S_IRGRP);
if (uwsgi.original_log_fd < 0) {
uwsgi_error_open(uwsgi.logfile);
grace_them_all(0);
}
ret = snprintf(message, 1024, "[%d] %s reopened.\n", (int) uwsgi_now(), uwsgi.logfile);
if (ret > 0) {
if (write(uwsgi.original_log_fd, message, ret) != ret) {
// very probably this will never be printed
uwsgi_error("write()");
}
}
uwsgi.shared->logsize = lseek(uwsgi.original_log_fd, 0, SEEK_CUR);
uwsgi_log_reopen();
}
}
void uwsgi_log_rotate() {
char message[1024];
if (!uwsgi.logfile) return;
char *rot_name = uwsgi.log_backupname;
int need_free = 0;
if (rot_name == NULL) {
char *ts_str = uwsgi_num2str((int) uwsgi_now());
rot_name = uwsgi_concat3(uwsgi.logfile, ".", ts_str);
free(ts_str);
need_free = 1;
}
int ret = snprintf(message, 1024, "[%d] logsize: %llu, triggering rotation to %s...\n", (int) uwsgi_now(), (unsigned long long) uwsgi.shared->logsize, rot_name);
if (ret > 0) {
if (write(uwsgi.original_log_fd, message, ret) != ret) {
// very probably this will never be printed
uwsgi_error("write()");
}
}
if (rename(uwsgi.logfile, rot_name) == 0) {
// reopen logfile dup'it and eventually gracefully reload workers;
int fd = open(uwsgi.logfile, O_RDWR | O_CREAT | O_TRUNC, S_IRUSR | S_IWUSR | S_IRGRP);
if (fd < 0) {
uwsgi_error_open(uwsgi.logfile);
grace_them_all(0);
}
else {
if (dup2(fd, uwsgi.original_log_fd) < 0) {
uwsgi_error("dup2()");
grace_them_all(0);
}
close(fd);
}
}
else {
uwsgi_error("unable to rotate log: rename()");
}
if (need_free)
free(rot_name);
}
void uwsgi_log_reopen() {
char message[1024];
if (!uwsgi.logfile) return;
int ret = snprintf(message, 1024, "[%d] logsize: %llu, triggering log-reopen...\n", (int) uwsgi_now(), (unsigned long long) uwsgi.shared->logsize);
if (ret > 0) {
if (write(uwsgi.original_log_fd, message, ret) != ret) {
// very probably this will never be printed
uwsgi_error("write()");
}
}
// reopen logfile;
close(uwsgi.original_log_fd);
uwsgi.original_log_fd = open(uwsgi.logfile, O_RDWR | O_CREAT | O_APPEND, S_IRUSR | S_IWUSR | S_IRGRP);
if (uwsgi.original_log_fd < 0) {
uwsgi_error_open(uwsgi.logfile);
grace_them_all(0);
return;
}
ret = snprintf(message, 1024, "[%d] %s reopened.\n", (int) uwsgi_now(), uwsgi.logfile);
if (ret > 0) {
if (write(uwsgi.original_log_fd, message, ret) != ret) {
// very probably this will never be printed
uwsgi_error("write()");
}
}
uwsgi.shared->logsize = lseek(uwsgi.original_log_fd, 0, SEEK_CUR);
}
void log_request(struct wsgi_request *wsgi_req) {
@@ -922,6 +981,12 @@ void uwsgi_logit_lf(struct wsgi_request *wsgi_req) {
uwsgi.logvectors[wsgi_req->async_id][pos].iov_len = 0;
}
}
// metric
else if (logchunk->type == 4) {
int64_t metric = uwsgi_metric_get(logchunk->ptr, NULL);
uwsgi.logvectors[wsgi_req->async_id][pos].iov_base = uwsgi_64bit2str(metric);
uwsgi.logvectors[wsgi_req->async_id][pos].iov_len = strlen(uwsgi.logvectors[wsgi_req->async_id][pos].iov_base);
}
if (uwsgi.logvectors[wsgi_req->async_id][pos].iov_len == 0 && logchunk->type != 0) {
uwsgi.logvectors[wsgi_req->async_id][pos].iov_base = (char *) empty_var;
@@ -1173,6 +1238,7 @@ void uwsgi_add_logchunk(int variable, int pos, char *ptr, size_t len) {
1 -> offsetof variable
2 -> logvar
3 -> func
4 -> metric
*/
logchunk->type = variable;
@@ -1339,6 +1405,11 @@ void uwsgi_add_logchunk(int variable, int pos, char *ptr, size_t len) {
logchunk->func = uwsgi_lf_headers;
logchunk->free = 1;
}
else if (!uwsgi_starts_with(ptr, len, "metric.", 7)) {
logchunk->type = 4;
logchunk->ptr = uwsgi_concat2n(ptr+7, len - 7, "", 0);
logchunk->free = 1;
}
// logvar
else {
logchunk->type = 2;
@@ -1346,6 +1417,45 @@ void uwsgi_add_logchunk(int variable, int pos, char *ptr, size_t len) {
}
}
static void uwsgi_log_func_do(struct uwsgi_string_list *encoders, struct uwsgi_logger *ul, char *msg, size_t len) {
struct uwsgi_string_list *usl = encoders;
// note: msg must not be freed !!!
char *new_msg = msg;
size_t new_msg_len = len;
while(usl) {
struct uwsgi_log_encoder *ule = (struct uwsgi_log_encoder *) usl->custom_ptr;
if (ule->use_for) {
if (ul && ul->id) {
if (strcmp(ule->use_for, ul->id)) {
goto next;
}
}
else {
goto next;
}
}
size_t rlen = 0;
char *buf = ule->func(ule, new_msg, new_msg_len, &rlen);
if (new_msg != msg) {
free(new_msg);
}
new_msg = buf;
new_msg_len = rlen;
next:
usl = usl->next;
}
if (ul) {
ul->func(ul, new_msg, new_msg_len);
}
else {
new_msg_len = (size_t) write(uwsgi.original_log_fd, new_msg, new_msg_len);
}
if (new_msg != msg) {
free(new_msg);
}
}
int uwsgi_master_log(void) {
ssize_t rlen = read(uwsgi.shared->worker_log_pipe[0], uwsgi.log_master_buf, uwsgi.log_master_bufsize);
@@ -1379,7 +1489,7 @@ int uwsgi_master_log(void) {
if (uwsgi_regexp_match(url->pattern, url->pattern_extra, uwsgi.log_master_buf, rlen) >= 0) {
struct uwsgi_logger *ul_route = (struct uwsgi_logger *) url->custom_ptr;
if (ul_route) {
ul_route->func(ul_route, uwsgi.log_master_buf, rlen);
uwsgi_log_func_do(uwsgi.requested_log_encoders, ul_route, uwsgi.log_master_buf, rlen);
finish = 1;
}
}
@@ -1397,14 +1507,14 @@ int uwsgi_master_log(void) {
if (ul->id) {
goto next;
}
ul->func(ul, uwsgi.log_master_buf, rlen);
uwsgi_log_func_do(uwsgi.requested_log_encoders, ul, uwsgi.log_master_buf, rlen);
raw_log = 0;
next:
ul = ul->next;
}
if (raw_log) {
rlen = write(uwsgi.original_log_fd, uwsgi.log_master_buf, rlen);
uwsgi_log_func_do(uwsgi.requested_log_encoders, NULL, uwsgi.log_master_buf, rlen);
}
return 0;
}
@@ -1423,7 +1533,7 @@ int uwsgi_master_req_log(void) {
if (uwsgi_regexp_match(url->pattern, url->pattern_extra, uwsgi.log_master_buf, rlen) >= 0) {
struct uwsgi_logger *ul_route = (struct uwsgi_logger *) url->custom_ptr;
if (ul_route) {
ul_route->func(ul_route, uwsgi.log_master_buf, rlen);
uwsgi_log_func_do(uwsgi.requested_log_req_encoders, ul_route, uwsgi.log_master_buf, rlen);
finish = 1;
}
}
@@ -1441,14 +1551,14 @@ int uwsgi_master_req_log(void) {
if (ul->id) {
goto next;
}
ul->func(ul, uwsgi.log_master_buf, rlen);
uwsgi_log_func_do(uwsgi.requested_log_req_encoders, ul, uwsgi.log_master_buf, rlen);
raw_log = 0;
next:
ul = ul->next;
}
if (raw_log) {
rlen = write(uwsgi.original_log_fd, uwsgi.log_master_buf, rlen);
uwsgi_log_func_do(uwsgi.requested_log_req_encoders, NULL, uwsgi.log_master_buf, rlen);
}
return 0;
}
@@ -1511,3 +1621,374 @@ void uwsgi_threaded_logger_spawn() {
}
}
void uwsgi_register_log_encoder(char *name, char *(*func)(struct uwsgi_log_encoder *, char *, size_t, size_t *)) {
struct uwsgi_log_encoder *old_ule = NULL, *ule = uwsgi.log_encoders;
while(ule) {
if (!strcmp(ule->name, name)) {
ule->func = func;
return;
}
old_ule = ule;
ule = ule->next;
}
ule = uwsgi_calloc(sizeof(struct uwsgi_log_encoder));
ule->name = name;
ule->func = func;
if (old_ule) {
old_ule->next = ule;
}
else {
uwsgi.log_encoders = ule;
}
}
struct uwsgi_log_encoder *uwsgi_log_encoder_by_name(char *name) {
struct uwsgi_log_encoder *ule = uwsgi.log_encoders;
while(ule) {
if (!strcmp(name, ule->name)) return ule;
ule = ule->next;
}
return NULL;
}
void uwsgi_setup_log_encoders() {
struct uwsgi_string_list *usl = NULL;
uwsgi_foreach(usl, uwsgi.requested_log_encoders) {
char *space = strchr(usl->value, ' ');
if (space) *space = 0;
char *use_for = strchr(usl->value, ':');
if (use_for) *use_for = 0;
struct uwsgi_log_encoder *ule = uwsgi_log_encoder_by_name(usl->value);
if (!ule) {
uwsgi_log("log encoder \"%s\" not found\n", usl->value);
exit(1);
}
struct uwsgi_log_encoder *ule2 = uwsgi_malloc(sizeof(struct uwsgi_log_encoder));
memcpy(ule2, ule, sizeof(struct uwsgi_log_encoder));
if (use_for) {
ule2->use_for = uwsgi_str(use_for+1);
*use_for = ':';
}
// we use a copy
if (space) {
*space = ' ';
ule2->args = uwsgi_str(space+1);
}
else {
ule2->args = uwsgi_str("");
}
usl->custom_ptr = ule2;
uwsgi_log("[log-encoder] registered %s\n", usl->value);
}
uwsgi_foreach(usl, uwsgi.requested_log_req_encoders) {
char *space = strchr(usl->value, ' ');
if (space) *space = 0;
char *use_for = strchr(usl->value, ':');
if (use_for) *use_for = 0;
struct uwsgi_log_encoder *ule = uwsgi_log_encoder_by_name(usl->value);
if (!ule) {
uwsgi_log("log encoder \"%s\" not found\n", usl->value);
exit(1);
}
struct uwsgi_log_encoder *ule2 = uwsgi_malloc(sizeof(struct uwsgi_log_encoder));
memcpy(ule2, ule, sizeof(struct uwsgi_log_encoder));
if (use_for) {
ule2->use_for = uwsgi_str(use_for+1);
*use_for = ':';
}
// we use a copy
if (space) {
*space = ' ';
ule2->args = uwsgi_str(space+1);
}
else {
ule2->args = uwsgi_str("");
}
usl->custom_ptr = ule2;
uwsgi_log("[log-req-encoder] registered %s\n", usl->value);
}
}
#ifdef UWSGI_ZLIB
static char *uwsgi_log_encoder_gzip(struct uwsgi_log_encoder *ule, char *msg, size_t len, size_t *rlen) {
struct uwsgi_buffer *ub = uwsgi_gzip(msg, len);
if (!ub) return NULL;
*rlen = ub->pos;
// avoid destruction
char *buf = ub->buf;
ub->buf = NULL;
uwsgi_buffer_destroy(ub);
return buf;
}
static char *uwsgi_log_encoder_compress(struct uwsgi_log_encoder *ule, char *msg, size_t len, size_t *rlen) {
size_t c_len = (size_t) compressBound(len);
uLongf destLen = c_len;
char *buf = uwsgi_malloc(c_len);
if (compress((Bytef *) buf, &destLen, (Bytef *)msg, (uLong) len) == Z_OK) {
*rlen = destLen;
return buf;
}
free(buf);
return NULL;
}
#endif
/*
really fast encoder adding only a prefix
*/
static char *uwsgi_log_encoder_prefix(struct uwsgi_log_encoder *ule, char *msg, size_t len, size_t *rlen) {
char *buf = NULL;
struct uwsgi_buffer *ub = uwsgi_buffer_new(len + strlen(ule->args));
if (uwsgi_buffer_append(ub, ule->args, strlen(ule->args))) goto end;
if (uwsgi_buffer_append(ub, msg, len)) goto end;
*rlen = ub->pos;
buf = ub->buf;
ub->buf = NULL;
end:
uwsgi_buffer_destroy(ub);
return buf;
}
/*
really fast encoder adding only a newline
*/
static char *uwsgi_log_encoder_nl(struct uwsgi_log_encoder *ule, char *msg, size_t len, size_t *rlen) {
char *buf = NULL;
struct uwsgi_buffer *ub = uwsgi_buffer_new(len + 1);
if (uwsgi_buffer_append(ub, msg, len)) goto end;
if (uwsgi_buffer_byte(ub, '\n')) goto end;
*rlen = ub->pos;
buf = ub->buf;
ub->buf = NULL;
end:
uwsgi_buffer_destroy(ub);
return buf;
}
/*
really fast encoder adding only a suffix
*/
static char *uwsgi_log_encoder_suffix(struct uwsgi_log_encoder *ule, char *msg, size_t len, size_t *rlen) {
char *buf = NULL;
struct uwsgi_buffer *ub = uwsgi_buffer_new(len + strlen(ule->args));
if (uwsgi_buffer_append(ub, msg, len)) goto end;
if (uwsgi_buffer_append(ub, ule->args, strlen(ule->args))) goto end;
*rlen = ub->pos;
buf = ub->buf;
ub->buf = NULL;
end:
uwsgi_buffer_destroy(ub);
return buf;
}
void uwsgi_log_encoder_parse_vars(struct uwsgi_log_encoder *ule) {
char *ptr = ule->args;
size_t remains = strlen(ptr);
char *base = ptr;
size_t base_len = 0;
char *var = NULL;
size_t var_len = 0;
int status = 0; // 1 -> $ 2-> { end -> }
while(remains--) {
char b = *ptr++;
if (status == 1) {
if (b == '{') {
status = 2;
continue;
}
base_len+=2;
status = 0;
continue;
}
else if (status == 2) {
if (b == '}') {
status = 0;
uwsgi_string_new_list((struct uwsgi_string_list **) &ule->data, uwsgi_concat2n(base, base_len, "", 0));
struct uwsgi_string_list *usl = uwsgi_string_new_list((struct uwsgi_string_list **) &ule->data, uwsgi_concat2n(var, var_len, "", 0));
usl->custom = 1;
var = NULL;
var_len = 0;
base = NULL;
base_len = 0;
continue;
}
if (!var) var = (ptr-1);
var_len++;
continue;
}
// status == 0
if (b == '$') {
status = 1;
}
else {
if (!base) base = (ptr-1);
base_len++;
}
}
if (base) {
if (status == 1) {
base_len+=2;
}
else if (status == 2) {
base_len+=3;
}
uwsgi_string_new_list((struct uwsgi_string_list **) &ule->data, uwsgi_concat2n(base, base_len, "", 0));
}
}
/*
// format: foo ${var} bar
msg (the logline)
msgnl (the logline with newline)
unix (the time_t value)
micros (current microseconds)
strftime (strftime)
*/
static char *uwsgi_log_encoder_format(struct uwsgi_log_encoder *ule, char *msg, size_t len, size_t *rlen) {
if (!ule->configured) {
uwsgi_log_encoder_parse_vars(ule);
ule->configured = 1;
}
struct uwsgi_buffer *ub = uwsgi_buffer_new(strlen(ule->args) + len);
struct uwsgi_string_list *usl = (struct uwsgi_string_list *) ule->data;
char *buf = NULL;
while(usl) {
if (usl->custom) {
if (!uwsgi_strncmp(usl->value, usl->len, "msg", 3)) {
if (msg[len-1] == '\n') {
if (uwsgi_buffer_append(ub, msg, len-1)) goto end;
}
else {
if (uwsgi_buffer_append(ub, msg, len)) goto end;
}
}
else if (!uwsgi_strncmp(usl->value, usl->len, "msgnl", 5)) {
if (uwsgi_buffer_append(ub, msg, len)) goto end;
}
else if (!uwsgi_strncmp(usl->value, usl->len, "unix", 4)) {
if (uwsgi_buffer_num64(ub, uwsgi_now())) goto end;
}
else if (!uwsgi_strncmp(usl->value, usl->len, "micros", 6)) {
if (uwsgi_buffer_num64(ub, uwsgi_micros())) goto end;
}
else if (!uwsgi_starts_with(usl->value, usl->len, "strftime:", 9)) {
char sftime[64];
time_t now = uwsgi_now();
char *buf = uwsgi_concat2n(usl->value+9, usl->len-9,"", 0);
int strftime_len = strftime(sftime, 64, buf, localtime(&now));
free(buf);
if (strftime_len > 0) {
if (uwsgi_buffer_append(ub, sftime, strftime_len)) goto end;
}
}
}
else {
if (uwsgi_buffer_append(ub, usl->value, usl->len)) goto end;
}
usl = usl->next;
}
buf = ub->buf;
*rlen = ub->pos;
ub->buf = NULL;
end:
uwsgi_buffer_destroy(ub);
return buf;
}
static char *uwsgi_log_encoder_json(struct uwsgi_log_encoder *ule, char *msg, size_t len, size_t *rlen) {
if (!ule->configured) {
uwsgi_log_encoder_parse_vars(ule);
ule->configured = 1;
}
struct uwsgi_buffer *ub = uwsgi_buffer_new(strlen(ule->args) + len);
struct uwsgi_string_list *usl = (struct uwsgi_string_list *) ule->data;
char *buf = NULL;
while(usl) {
if (usl->custom) {
if (!uwsgi_strncmp(usl->value, usl->len, "msg", 3)) {
size_t msg_len = len;
if (msg[len-1] == '\n') msg_len--;
char *e_json = uwsgi_malloc(msg_len * 2);
escape_json(msg, msg_len, e_json);
if (uwsgi_buffer_append(ub, e_json, strlen(e_json))){
free(e_json);
goto end;
}
free(e_json);
}
else if (!uwsgi_strncmp(usl->value, usl->len, "msgnl", 5)) {
char *e_json = uwsgi_malloc(len * 2);
escape_json(msg, len, e_json);
if (uwsgi_buffer_append(ub, e_json, strlen(e_json))){
free(e_json);
goto end;
}
free(e_json);
}
else if (!uwsgi_strncmp(usl->value, usl->len, "unix", 4)) {
if (uwsgi_buffer_num64(ub, uwsgi_now())) goto end;
}
else if (!uwsgi_strncmp(usl->value, usl->len, "micros", 6)) {
if (uwsgi_buffer_num64(ub, uwsgi_micros())) goto end;
}
else if (!uwsgi_starts_with(usl->value, usl->len, "strftime:", 9)) {
char sftime[64];
time_t now = uwsgi_now();
char *buf = uwsgi_concat2n(usl->value+9, usl->len-9, "", 0);
int strftime_len = strftime(sftime, 64, buf, localtime(&now));
free(buf);
if (strftime_len > 0) {
char *e_json = uwsgi_malloc(strftime_len * 2);
escape_json(sftime, strftime_len, e_json);
if (uwsgi_buffer_append(ub, e_json, strlen(e_json))){
free(e_json);
goto end;
}
free(e_json);
}
}
}
else {
if (uwsgi_buffer_append(ub, usl->value, usl->len)) goto end;
}
usl = usl->next;
}
buf = ub->buf;
*rlen = ub->pos;
ub->buf = NULL;
end:
uwsgi_buffer_destroy(ub);
return buf;
}
void uwsgi_log_encoders_register_embedded() {
uwsgi_register_log_encoder("prefix", uwsgi_log_encoder_prefix);
uwsgi_register_log_encoder("suffix", uwsgi_log_encoder_suffix);
uwsgi_register_log_encoder("nl", uwsgi_log_encoder_nl);
uwsgi_register_log_encoder("format", uwsgi_log_encoder_format);
uwsgi_register_log_encoder("json", uwsgi_log_encoder_json);
#ifdef UWSGI_ZLIB
uwsgi_register_log_encoder("gzip", uwsgi_log_encoder_gzip);
uwsgi_register_log_encoder("compress", uwsgi_log_encoder_compress);
#endif
}
+164 -140
View File
@@ -2,15 +2,30 @@
extern struct uwsgi_server uwsgi;
void uwsgi_restore_auto_snapshot(int signum) {
void uwsgi_update_load_counters() {
if (uwsgi.workers[1].snapshot > 0) {
uwsgi.restore_snapshot = 1;
}
else {
uwsgi_log("[WARNING] no snapshot available\n");
int i;
uint64_t busy_workers = 0;
uint64_t idle_workers = 0;
for (i = 1; i <= uwsgi.numproc; i++) {
if (uwsgi.workers[i].cheaped == 0 && uwsgi.workers[i].pid > 0) {
if (uwsgi_worker_is_busy(i) == 0) {
idle_workers++;
}
else {
busy_workers++;
}
}
}
if (busy_workers >= (uint64_t) uwsgi.numproc) {
ushared->overloaded++;
}
ushared->busy_workers = busy_workers;
ushared->idle_workers = idle_workers;
}
void uwsgi_block_signal(int signum) {
@@ -32,24 +47,25 @@ void uwsgi_unblock_signal(int signum) {
}
void uwsgi_master_manage_udp(int udp_fd) {
char buf[4096];
struct sockaddr_in udp_client;
char udp_client_addr[16];
int i;
socklen_t udp_len = sizeof(udp_client);
ssize_t rlen = recvfrom(udp_fd, uwsgi.wsgi_req->buffer, uwsgi.buffer_size, 0, (struct sockaddr *) &udp_client, &udp_len);
ssize_t rlen = recvfrom(udp_fd, buf, 4096, 0, (struct sockaddr *) &udp_client, &udp_len);
if (rlen < 0) {
uwsgi_error("recvfrom()");
uwsgi_error("uwsgi_master_manage_udp()/recvfrom()");
}
else if (rlen > 0) {
memset(udp_client_addr, 0, 16);
if (inet_ntop(AF_INET, &udp_client.sin_addr.s_addr, udp_client_addr, 16)) {
if (uwsgi.wsgi_req->buffer[0] == UWSGI_MODIFIER_MULTICAST_ANNOUNCE) {
if (buf[0] == UWSGI_MODIFIER_MULTICAST_ANNOUNCE) {
}
else if (uwsgi.wsgi_req->buffer[0] == 0x30 && uwsgi.snmp) {
manage_snmp(udp_fd, (uint8_t *) uwsgi.wsgi_req->buffer, rlen, &udp_client);
else if (buf[0] == 0x30 && uwsgi.snmp) {
manage_snmp(udp_fd, (uint8_t *) buf, rlen, &udp_client);
}
else {
@@ -57,7 +73,7 @@ void uwsgi_master_manage_udp(int udp_fd) {
int udp_managed = 0;
for (i = 0; i < 256; i++) {
if (uwsgi.p[i]->manage_udp) {
if (uwsgi.p[i]->manage_udp(udp_client_addr, udp_client.sin_port, uwsgi.wsgi_req->buffer, rlen)) {
if (uwsgi.p[i]->manage_udp(udp_client_addr, udp_client.sin_port, buf, rlen)) {
udp_managed = 1;
break;
}
@@ -66,74 +82,17 @@ void uwsgi_master_manage_udp(int udp_fd) {
// else a simple udp logger
if (!udp_managed) {
uwsgi_log("[udp:%s:%d] %.*s", udp_client_addr, ntohs(udp_client.sin_port), (int) rlen, uwsgi.wsgi_req->buffer);
uwsgi_log("[udp:%s:%d] %.*s", udp_client_addr, ntohs(udp_client.sin_port), (int) rlen, buf);
}
}
}
else {
uwsgi_error("inet_ntop()");
uwsgi_error("uwsgi_master_manage_udp()/inet_ntop()");
}
}
}
void uwsgi_master_manage_emperor() {
char byte;
ssize_t rlen = read(uwsgi.emperor_fd, &byte, 1);
if (rlen > 0) {
uwsgi_log_verbose("received message %d from emperor\n", byte);
// remove me
if (byte == 0) {
close(uwsgi.emperor_fd);
if (!uwsgi.status.brutally_reloading)
kill_them_all(0);
}
// reload me
else if (byte == 1) {
// un-lazy the stack to trigger a real reload
uwsgi.lazy = 0;
uwsgi_block_signal(SIGHUP);
grace_them_all(0);
uwsgi_unblock_signal(SIGHUP);
}
}
else {
uwsgi_log("lost connection with my emperor !!!\n");
close(uwsgi.emperor_fd);
if (!uwsgi.status.brutally_reloading)
kill_them_all(0);
sleep(2);
exit(1);
}
}
void uwsgi_master_restore_snapshot() {
int i, waitpid_status;
uwsgi_log("[snapshot] restoring workers...\n");
for (i = 1; i <= uwsgi.numproc; i++) {
if (uwsgi.workers[i].pid == 0)
continue;
kill(uwsgi.workers[i].pid, SIGKILL);
if (waitpid(uwsgi.workers[i].pid, &waitpid_status, 0) < 0) {
uwsgi_error("waitpid()");
}
if (uwsgi.auto_snapshot > 0 && i > uwsgi.auto_snapshot) {
uwsgi.workers[i].pid = 0;
uwsgi.workers[i].snapshot = 0;
}
else {
uwsgi.workers[i].pid = uwsgi.workers[i].snapshot;
uwsgi.workers[i].snapshot = 0;
kill(uwsgi.workers[i].pid, SIGURG);
uwsgi_log("Restored uWSGI worker %d (pid: %d)\n", i, (int) uwsgi.workers[i].pid);
}
}
uwsgi.restore_snapshot = 0;
}
void suspend_resume_them_all(int signum) {
int i;
@@ -222,8 +181,8 @@ int uwsgi_get_tcp_info(int fd) {
#elif defined(__FreeBSD__)
if (!uwsgi.shared->ti.__tcpi_sacked) {
#endif
return 0;
}
return 0;
}
#if defined(__linux__)
uwsgi.shared->load = (uint64_t) uwsgi.shared->ti.tcpi_unacked;
@@ -242,12 +201,12 @@ int uwsgi_get_tcp_info(int fd) {
uwsgi_error("write()");
}
else {
uwsgi_log("asking emperor for reinforcements (backlog: %llu)...\n", (unsigned long long ) uwsgi.shared->load);
uwsgi_log("asking emperor for reinforcements (backlog: %llu)...\n", (unsigned long long) uwsgi.shared->load);
}
}
}
if (uwsgi.shared->load >= uwsgi.shared->max_load) {
uwsgi_log_verbose("*** uWSGI listen queue of socket %d full !!! (%llu/%llu) ***\n", fd, (unsigned long long ) uwsgi.shared->load, (unsigned long long ) uwsgi.shared->max_load);
uwsgi_log_verbose("*** uWSGI listen queue of socket %d full !!! (%llu/%llu) ***\n", fd, (unsigned long long) uwsgi.shared->load, (unsigned long long) uwsgi.shared->max_load);
uwsgi.shared->options[UWSGI_OPTION_BACKLOG_ERRORS]++;
}
@@ -306,7 +265,6 @@ int master_loop(char **argv, char **environ) {
struct uwsgi_rb_timer *min_timeout;
struct uwsgi_rbtree *rb_timers = uwsgi_init_rb_timer();
if (uwsgi.procname_master) {
uwsgi_set_processname(uwsgi.procname_master);
}
@@ -332,9 +290,6 @@ int master_loop(char **argv, char **environ) {
}
uwsgi_unix_signal(SIGINT, kill_them_all);
uwsgi_unix_signal(SIGUSR1, stats);
if (uwsgi.auto_snapshot) {
uwsgi_unix_signal(SIGURG, uwsgi_restore_auto_snapshot);
}
atexit(uwsgi_master_cleanup_hooks);
@@ -346,6 +301,11 @@ int master_loop(char **argv, char **environ) {
#endif
event_queue_add_fd_read(uwsgi.master_queue, uwsgi.shared->worker_signal_pipe[0]);
if (uwsgi.master_fifo) {
uwsgi.master_fifo_fd = uwsgi_master_fifo();
event_queue_add_fd_read(uwsgi.master_queue, uwsgi.master_fifo_fd);
}
if (uwsgi.spoolers) {
event_queue_add_fd_read(uwsgi.master_queue, uwsgi.shared->spooler_signal_pipe[0]);
}
@@ -374,6 +334,7 @@ int master_loop(char **argv, char **environ) {
#ifdef UWSGI_SSL
uwsgi_start_legions();
#endif
uwsgi_metrics_start_collector();
uwsgi_add_reload_fds();
@@ -383,7 +344,18 @@ int master_loop(char **argv, char **environ) {
uwsgi.wsgi_req->buffer = uwsgi.workers[0].cores[0].buffer;
if (uwsgi.has_emperor) {
event_queue_add_fd_read(uwsgi.master_queue, uwsgi.emperor_fd);
if (uwsgi.emperor_proxy) {
uwsgi.emperor_fd_proxy = bind_to_unix(uwsgi.emperor_proxy, uwsgi.listen_queue, 0, 0);
if (uwsgi.emperor_fd_proxy < 0) exit(1);
if (chmod(uwsgi.emperor_proxy, S_IRUSR|S_IWUSR)) {
uwsgi_error("[emperor-proxy] chmod()");
exit(1);
}
event_queue_add_fd_read(uwsgi.master_queue, uwsgi.emperor_fd_proxy);
}
else {
event_queue_add_fd_read(uwsgi.master_queue, uwsgi.emperor_fd);
}
}
if (uwsgi.zerg_server) {
@@ -477,7 +449,7 @@ int master_loop(char **argv, char **environ) {
uwsgi_check_touches(uwsgi.touch_gracefully_stop);
// update exec touches
struct uwsgi_string_list *usl = uwsgi.touch_exec;
while(usl) {
while (usl) {
char *space = strchr(usl->value, ' ');
if (space) {
*space = 0;
@@ -489,20 +461,42 @@ int master_loop(char **argv, char **environ) {
uwsgi_check_touches(uwsgi.touch_exec);
// update signal touches
usl = uwsgi.touch_signal;
while(usl) {
char *space = strchr(usl->value, ' ');
if (space) {
*space = 0;
usl->len = strlen(usl->value);
usl->custom_ptr = space + 1;
}
usl = usl->next;
}
uwsgi_check_touches(uwsgi.touch_signal);
while (usl) {
char *space = strchr(usl->value, ' ');
if (space) {
*space = 0;
usl->len = strlen(usl->value);
usl->custom_ptr = space + 1;
}
usl = usl->next;
}
uwsgi_check_touches(uwsgi.touch_signal);
// fsmon
uwsgi_fsmon_setup();
uwsgi_foreach(usl, uwsgi.signal_timers) {
char *space = strchr(usl->value, ' ');
if (!space) {
uwsgi_log("invalid signal timer syntax, must be: <signal> <seconds>\n");
exit(1);
}
*space = 0;
uwsgi_add_timer(atoi(usl->value), atoi(space+1));
*space = ' ';
}
uwsgi_foreach(usl, uwsgi.rb_signal_timers) {
char *space = strchr(usl->value, ' ');
if (!space) {
uwsgi_log("invalid redblack signal timer syntax, must be: <signal> <seconds>\n");
exit(1);
}
*space = 0;
uwsgi_signal_add_rb_timer(atoi(usl->value), atoi(space+1), 0);
*space = ' ';
}
// setup cheaper algos (can be stacked)
uwsgi.cheaper_algo = uwsgi_cheaper_algo_spare;
if (uwsgi.requested_cheaper_algo) {
@@ -556,21 +550,6 @@ int master_loop(char **argv, char **environ) {
// check for daemons (smart and dumb)
uwsgi_daemons_smart_check();
if (uwsgi.respawn_snapshots) {
for (i = 1; i <= uwsgi.respawn_snapshots; i++) {
if (uwsgi_respawn_worker(i))
return 0;
}
uwsgi.respawn_snapshots = 0;
}
if (uwsgi.restore_snapshot) {
uwsgi_master_restore_snapshot();
continue;
}
// cheaper management
if (uwsgi.cheaper && !uwsgi.status.is_cheap && !uwsgi_instance_is_reloading && !uwsgi_instance_is_dying && !uwsgi.workers[0].suspended) {
if (!uwsgi_calc_cheaper())
@@ -600,8 +579,10 @@ int master_loop(char **argv, char **environ) {
/* all processes ok, doing status scan after N seconds */
check_interval = uwsgi.shared->options[UWSGI_OPTION_MASTER_INTERVAL];
if (!check_interval)
if (!check_interval) {
check_interval = 1;
uwsgi.shared->options[UWSGI_OPTION_MASTER_INTERVAL] = 1;
}
// add unregistered file monitors
@@ -636,14 +617,14 @@ int master_loop(char **argv, char **environ) {
if (ushared->rb_timers_cnt > 0) {
min_timeout = uwsgi_min_rb_timer(rb_timers, NULL);
if (min_timeout == NULL) {
check_interval = uwsgi.shared->options[UWSGI_OPTION_MASTER_INTERVAL];
}
else {
check_interval = min_timeout->value - uwsgi_now();
if (check_interval <= 0) {
if (min_timeout) {
int delta = min_timeout->value - uwsgi_now();
if (delta <= 0) {
expire_rb_timeouts(rb_timers);
check_interval = 0;
}
// if the timer expires before the check_interval, override it
else if (delta < check_interval) {
check_interval = delta;
}
}
}
@@ -657,6 +638,9 @@ int master_loop(char **argv, char **environ) {
}
}
// update load counter
uwsgi_update_load_counters();
// check uwsgi-cron table
if (ushared->cron_cnt) {
@@ -697,8 +681,10 @@ int master_loop(char **argv, char **environ) {
uwsgi_master_check_idle();
check_interval = uwsgi.shared->options[UWSGI_OPTION_MASTER_INTERVAL];
if (!check_interval)
if (!check_interval) {
check_interval = 1;
uwsgi.shared->options[UWSGI_OPTION_MASTER_INTERVAL] = 1;
}
// get listen_queue status
@@ -731,6 +717,7 @@ int master_loop(char **argv, char **environ) {
uwsgi_master_check_mules_deadline();
uwsgi_master_check_spoolers_deadline();
uwsgi_master_check_crons_deadline();
uwsgi_master_check_mountpoints();
#ifdef __linux__
#ifdef MADV_MERGEABLE
@@ -741,7 +728,7 @@ int master_loop(char **argv, char **environ) {
#endif
// resubscribe every 10 cycles by default
if (( (uwsgi.subscriptions || uwsgi.subscriptions2) && ((uwsgi.master_cycles % uwsgi.subscribe_freq) == 0 || uwsgi.master_cycles == 1)) && !uwsgi_instance_is_reloading && !uwsgi_instance_is_dying && !uwsgi.workers[0].suspended) {
if (((uwsgi.subscriptions || uwsgi.subscriptions2) && ((uwsgi.master_cycles % uwsgi.subscribe_freq) == 0 || uwsgi.master_cycles == 1)) && !uwsgi_instance_is_reloading && !uwsgi_instance_is_dying && !uwsgi.workers[0].suspended) {
uwsgi_subscribe_all(0, 0);
}
@@ -765,40 +752,34 @@ int master_loop(char **argv, char **environ) {
}
touched = uwsgi_check_touches(uwsgi.touch_workers_reload);
if (touched) {
uwsgi_log_verbose("*** %s has been touched... workers reload !!! ***\n", touched);
uwsgi_block_signal(SIGHUP);
for(i=1;i<=uwsgi.numproc;i++) {
if (uwsgi.workers[i].pid > 0) {
uwsgi_curse(i, SIGHUP);
}
}
uwsgi_unblock_signal(SIGHUP);
continue;
}
uwsgi_log_verbose("*** %s has been touched... workers reload !!! ***\n", touched);
uwsgi_reload_workers();
continue;
}
touched = uwsgi_check_touches(uwsgi.touch_chain_reload);
if (touched) {
if (uwsgi.status.chain_reloading == 0) {
uwsgi_log_verbose("*** %s has been touched... chain reload !!! ***\n", touched);
uwsgi_log_verbose("*** %s has been touched... chain reload !!! ***\n", touched);
uwsgi.status.chain_reloading = 1;
}
else {
uwsgi_log_verbose("*** %s has been touched... but chain reload is already running ***\n", touched);
uwsgi_log_verbose("*** %s has been touched... but chain reload is already running ***\n", touched);
}
}
// be sure to run it as the last touch check
touched = uwsgi_check_touches(uwsgi.touch_exec);
if (touched) {
if (uwsgi_run_command( touched , NULL, -1) >= 0) {
if (uwsgi_run_command(touched, NULL, -1) >= 0) {
uwsgi_log_verbose("[uwsgi-touch-exec] running %s\n", touched);
}
}
touched = uwsgi_check_touches(uwsgi.touch_signal);
if (touched) {
if (touched) {
uint8_t signum = atoi(touched);
uwsgi_route_signal(signum);
uwsgi_log_verbose("[uwsgi-touch-signal] raising %u\n", signum);
}
uwsgi_log_verbose("[uwsgi-touch-signal] raising %u\n", signum);
}
}
continue;
@@ -815,12 +796,18 @@ int master_loop(char **argv, char **environ) {
// reload gateways and daemons only on normal workflow (+outworld status)
if (!uwsgi_instance_is_reloading && !uwsgi_instance_is_dying) {
if (uwsgi_master_check_emperor_death(diedpid)) continue;
if (uwsgi_master_check_spoolers_death(diedpid)) continue;
if (uwsgi_master_check_mules_death(diedpid)) continue;
if (uwsgi_master_check_gateways_death(diedpid)) continue;
if (uwsgi_master_check_daemons_death(diedpid)) continue;
if (uwsgi_master_check_cron_death(diedpid)) continue;
if (uwsgi_master_check_emperor_death(diedpid))
continue;
if (uwsgi_master_check_spoolers_death(diedpid))
continue;
if (uwsgi_master_check_mules_death(diedpid))
continue;
if (uwsgi_master_check_gateways_death(diedpid))
continue;
if (uwsgi_master_check_daemons_death(diedpid))
continue;
if (uwsgi_master_check_cron_death(diedpid))
continue;
}
@@ -885,8 +872,9 @@ next:
// ok, if we are reloading or dying, just continue the master loop
// as soon as all of the workers have pid == 0, the action (exit, or reload) is triggered
if (uwsgi_instance_is_reloading || uwsgi_instance_is_dying) {
if (!uwsgi.workers[thewid].cursed_at) uwsgi.workers[thewid].cursed_at = uwsgi_now();
uwsgi_log("worker %d buried after %d seconds\n", thewid, (int) (uwsgi_now()-uwsgi.workers[thewid].cursed_at));
if (!uwsgi.workers[thewid].cursed_at)
uwsgi.workers[thewid].cursed_at = uwsgi_now();
uwsgi_log("worker %d buried after %d seconds\n", thewid, (int) (uwsgi_now() - uwsgi.workers[thewid].cursed_at));
uwsgi.workers[thewid].cursed_at = 0;
continue;
}
@@ -905,6 +893,11 @@ next:
else if (WIFEXITED(waitpid_status) && WEXITSTATUS(waitpid_status) == UWSGI_QUIET_CODE) {
// noop
}
else if (WIFEXITED(waitpid_status) && WEXITSTATUS(waitpid_status) == UWSGI_BRUTAL_RELOAD_CODE) {
uwsgi_log("!!! inconsistent state reported by worker %d (pid: %d) !!!\n", thewid, (int) diedpid);
reap_them_all(0);
continue;
}
else if (uwsgi.workers[thewid].manage_next_request) {
if (WIFSIGNALED(waitpid_status)) {
uwsgi_log("DAMN ! worker %d (pid: %d) died, killed by signal %d :( trying respawn ...\n", thewid, (int) diedpid, (int) WTERMSIG(waitpid_status));
@@ -959,3 +952,34 @@ next:
// never here
}
void uwsgi_reload_workers() {
int i;
uwsgi_block_signal(SIGHUP);
for (i = 1; i <= uwsgi.numproc; i++) {
if (uwsgi.workers[i].pid > 0) {
uwsgi_curse(i, SIGHUP);
}
}
uwsgi_unblock_signal(SIGHUP);
}
void uwsgi_chain_reload() {
if (!uwsgi.status.chain_reloading) {
uwsgi_log_verbose("chain reload starting...\n");
uwsgi.status.chain_reloading = 1;
}
else {
uwsgi_log_verbose("chain reload already running...\n");
}
}
void uwsgi_brutally_reload_workers() {
int i;
for (i = 1; i <= uwsgi.numproc; i++) {
if (uwsgi.workers[i].pid > 0) {
uwsgi_log_verbose("killing worker %d (pid: %d)\n", i, (int) uwsgi.workers[i].pid);
uwsgi_curse(i, SIGINT);
}
}
}
+22 -2
View File
@@ -35,11 +35,17 @@ int uwsgi_master_check_reload(char **argv) {
// check for chain reload
void uwsgi_master_check_chain() {
if (!uwsgi.status.chain_reloading) return;
if (uwsgi.status.chain_reloading > uwsgi.numproc) {
int i;
int needed_procs = 0;
for(i=1;i<=uwsgi.numproc;i++) {
if (uwsgi.workers[i].pid > 0 && uwsgi.workers[i].cheaped == 0) {
needed_procs++;
}
}
if (uwsgi.status.chain_reloading > needed_procs) {
uwsgi.status.chain_reloading = 0;
uwsgi_log_verbose("chain reloading complete\n");
}
int i;
uwsgi_block_signal(SIGHUP);
for(i=1;i<=uwsgi.numproc;i++) {
if (uwsgi.workers[i].pid > 0 && uwsgi.workers[i].cheaped == 0 && uwsgi.workers[i].cursed_at == 0 && i == uwsgi.status.chain_reloading) {
@@ -112,6 +118,9 @@ void uwsgi_master_check_idle() {
if (errno != ECHILD)
uwsgi_error("uwsgi_master_check_idle()/waitpid()");
}
else {
uwsgi.workers[i].pid = 0;
}
}
uwsgi_add_sockets_to_queue(uwsgi.master_queue, -1);
uwsgi_log("cheap mode enabled: waiting for socket connection...\n");
@@ -316,3 +325,14 @@ void uwsgi_master_check_crons_deadline() {
}
}
void uwsgi_master_check_mountpoints() {
struct uwsgi_string_list *usl;
uwsgi_foreach(usl, uwsgi.mountpoints_check) {
if (uwsgi_check_mountpoint(usl->value)) {
uwsgi_log_verbose("mountpoint %s failed, triggering detonation...\n", usl->value);
uwsgi_nuclear_blast();
//never here
exit(1);
}
}
}
+10
View File
@@ -18,6 +18,10 @@ int uwsgi_master_manage_events(int interesting_fd) {
}
}
if (uwsgi.master_fifo_fd > -1 && interesting_fd == uwsgi.master_fifo_fd) {
return uwsgi_master_fifo_manage(uwsgi.master_fifo_fd);
}
// stats server ?
if (uwsgi.stats && uwsgi.stats_fd > -1) {
if (interesting_fd == uwsgi.stats_fd) {
@@ -36,6 +40,11 @@ int uwsgi_master_manage_events(int interesting_fd) {
// emperor event ?
if (uwsgi.has_emperor) {
if (uwsgi.emperor_fd_proxy > -1 && interesting_fd == uwsgi.emperor_fd_proxy) {
uwsgi_master_manage_emperor_proxy();
return 0;
}
if (interesting_fd == uwsgi.emperor_fd) {
uwsgi_master_manage_emperor();
return 0;
@@ -109,6 +118,7 @@ int uwsgi_master_manage_events(int interesting_fd) {
reap_them_all(0);
uwsgi_unblock_signal(SIGTERM);
}
if (usl->custom2 > 8) free(tmp);
return 0;
}
usl = usl->next;
+190 -21
View File
@@ -115,7 +115,49 @@ int uwsgi_calc_cheaper(void) {
last_check = now;
int needed_workers = uwsgi.cheaper_algo();
int ignore_algo = 0;
int needed_workers = 0;
// first check if memory usage is not exceeded
if (uwsgi.cheaper_rss_limit_soft) {
unsigned long long total_rss = 0;
int i;
int active_workers = 0;
for(i=1;i<=uwsgi.numproc;i++) {
if (!uwsgi.workers[i].cheaped) {
total_rss += uwsgi.workers[i].rss_size;
active_workers++;
}
}
if (uwsgi.cheaper_rss_limit_hard && active_workers > 1 && total_rss >= uwsgi.cheaper_rss_limit_hard) {
uwsgi_log("cheaper hard rss memory limit exceeded, cheap one of %d workers\n", active_workers);
needed_workers = -1;
ignore_algo = 1;
}
else if (total_rss >= uwsgi.cheaper_rss_limit_soft) {
#ifdef UWSGI_DEBUG
uwsgi_log("cheaper soft rss memory limit exceeded, can't spawn more workers\n");
#endif
ignore_algo = 1;
}
}
// then check for fifo
if (uwsgi.cheaper_fifo_delta != 0) {
if (!ignore_algo) {
needed_workers = uwsgi.cheaper_fifo_delta;
ignore_algo = 1;
}
uwsgi.cheaper_fifo_delta = 0;
}
// if cheaper limits wants to change worker count, then skip cheaper algo
if (!needed_workers) needed_workers = uwsgi.cheaper_algo(!ignore_algo);
// safe check to verify if cheaper algo obeyed ignore_algo value
if (ignore_algo && needed_workers > 0) {
uwsgi_log("BUG! cheaper algo returned %d but it cannot spawn any worker at this time!\n", needed_workers);
needed_workers = 0;
}
if (needed_workers > 0) {
for (i = 1; i <= uwsgi.numproc; i++) {
@@ -152,6 +194,11 @@ int uwsgi_calc_cheaper(void) {
return 1;
}
// fake algo to allow control with the fifo
int uwsgi_cheaper_algo_manual(int can_spawn) {
return 0;
}
/*
-- Cheaper, spare algorithm, adapted from old-fashioned spare system --
@@ -187,7 +234,7 @@ int uwsgi_calc_cheaper(void) {
*/
int uwsgi_cheaper_algo_spare(void) {
int uwsgi_cheaper_algo_spare(int can_spawn) {
int i;
static uint64_t overload_count = 0;
@@ -211,7 +258,7 @@ int uwsgi_cheaper_algo_spare(void) {
healthy:
// are we overloaded ?
if (overload_count > uwsgi.cheaper_overload) {
if (can_spawn && overload_count > uwsgi.cheaper_overload) {
#ifdef UWSGI_DEBUG
uwsgi_log("overloaded !!!\n");
@@ -279,7 +326,7 @@ healthy:
*/
int uwsgi_cheaper_algo_backlog(void) {
int uwsgi_cheaper_algo_backlog(int can_spawn) {
int i;
#ifdef __linux__
@@ -288,7 +335,7 @@ int uwsgi_cheaper_algo_backlog(void) {
int backlog = 0;
#endif
if (backlog > (int) uwsgi.cheaper_overload) {
if (can_spawn && backlog > (int) uwsgi.cheaper_overload) {
// activate the first available worker (taking step into account)
int decheaped = 0;
// search for cheaped workers
@@ -326,23 +373,30 @@ void uwsgi_reload(char **argv) {
int i;
int waitpid_status;
// call a series of waitpid to ensure all processes (gateways, mules and daemons) are dead
for (i = 0; i < (ushared->gateways_cnt + uwsgi.daemons_cnt + uwsgi.mules_cnt); i++) {
waitpid(WAIT_ANY, &waitpid_status, WNOHANG);
if (!uwsgi.master_is_reforked) {
// call a series of waitpid to ensure all processes (gateways, mules and daemons) are dead
for (i = 0; i < (ushared->gateways_cnt + uwsgi.daemons_cnt + uwsgi.mules_cnt); i++) {
waitpid(WAIT_ANY, &waitpid_status, WNOHANG);
}
// call master cleanup hooks
uwsgi_master_cleanup_hooks();
// call atexit user exec
uwsgi_exec_atexit();
if (uwsgi.exit_on_reload) {
uwsgi_log("uWSGI: GAME OVER (insert coin)\n");
exit(0);
}
uwsgi_log("binary reloading uWSGI...\n");
}
else {
uwsgi_log("fork()'ing uWSGI...\n");
}
// call master cleanup hooks
uwsgi_master_cleanup_hooks();
// call atexit user exec
uwsgi_exec_atexit();
if (uwsgi.exit_on_reload) {
uwsgi_log("uWSGI: GAME OVER (insert coin)\n");
exit(0);
}
uwsgi_log("binary reloading uWSGI...\n");
uwsgi_log("chdir() to %s\n", uwsgi.cwd);
if (chdir(uwsgi.cwd)) {
uwsgi_error("chdir()");
@@ -529,6 +583,7 @@ void uwsgi_fixup_fds(int wid, int muleid, struct uwsgi_gateway *ug) {
}
}
if (uwsgi.master_fifo_fd > -1) close(uwsgi.master_fifo_fd);
}
@@ -816,6 +871,70 @@ struct uwsgi_stats *uwsgi_master_generate_stats() {
goto end;
}
if (uwsgi.has_metrics) {
if (uwsgi_stats_key(us, "metrics"))
goto end;
if (uwsgi_stats_object_open(us))
goto end;
uwsgi_rlock(uwsgi.metrics_lock);
struct uwsgi_metric *um = uwsgi.metrics;
while(um) {
int64_t um_val = *um->value;
if (uwsgi_stats_key(us, um->name)) {
uwsgi_rwunlock(uwsgi.metrics_lock);
goto end;
}
if (uwsgi_stats_object_open(us)) {
uwsgi_rwunlock(uwsgi.metrics_lock);
goto end;
}
if (uwsgi_stats_keylong(us, "type", (long long) um->type)) {
uwsgi_rwunlock(uwsgi.metrics_lock);
goto end;
}
if (uwsgi_stats_comma(us)) {
uwsgi_rwunlock(uwsgi.metrics_lock);
goto end;
}
if (uwsgi_stats_keyval_comma(us, "oid", um->oid ? um->oid : "")) {
uwsgi_rwunlock(uwsgi.metrics_lock);
goto end;
}
if (uwsgi_stats_keyslong(us, "value", (long long) um_val)) {
uwsgi_rwunlock(uwsgi.metrics_lock);
goto end;
}
if (uwsgi_stats_object_close(us)) {
uwsgi_rwunlock(uwsgi.metrics_lock);
goto end;
}
um = um->next;
if (um) {
if (uwsgi_stats_comma(us)) {
uwsgi_rwunlock(uwsgi.metrics_lock);
goto end;
}
}
}
uwsgi_rwunlock(uwsgi.metrics_lock);
if (uwsgi_stats_object_close(us))
goto end;
if (uwsgi_stats_comma(us))
goto end;
}
if (uwsgi_stats_key(us, "sockets"))
goto end;
@@ -1296,7 +1415,7 @@ end:
return NULL;
}
void uwsgi_register_cheaper_algo(char *name, int (*func) (void)) {
void uwsgi_register_cheaper_algo(char *name, int (*func) (int)) {
struct uwsgi_cheaper_algo *uca = uwsgi.cheaper_algos;
@@ -1485,3 +1604,53 @@ void uwsgi_add_reload_fds() {
add_reload_fds(uwsgi.reload_on_fd, "graceful");
add_reload_fds(uwsgi.brutal_reload_on_fd, "brutal");
}
void uwsgi_refork_master() {
pid_t pid = fork();
if (pid < 0) {
uwsgi_error("uwsgi_refork_master()/fork()");
return;
}
if (pid > 0) {
uwsgi_log_verbose("new master copy spawned with pid %d\n", (int) pid);
return;
}
// detach from the old master
setsid();
uwsgi.master_is_reforked = 1;
uwsgi_reload(uwsgi.argv);
// never here
exit(1);
}
void uwsgi_cheaper_increase() {
uwsgi.cheaper_fifo_delta++;
}
void uwsgi_cheaper_decrease() {
uwsgi.cheaper_fifo_delta--;
}
void uwsgi_go_cheap() {
int i;
int waitpid_status;
if (uwsgi.status.is_cheap) return;
uwsgi_log_verbose("going cheap...\n");
uwsgi.status.is_cheap = 1;
for (i = 1; i <= uwsgi.numproc; i++) {
uwsgi.workers[i].cheaped = 1;
if (uwsgi.workers[i].pid == 0)
continue;
uwsgi_log("killing worker %d (pid: %d)\n", i, (int) uwsgi.workers[i].pid);
kill(uwsgi.workers[i].pid, SIGKILL);
if (waitpid(uwsgi.workers[i].pid, &waitpid_status, 0) < 0) {
if (errno != ECHILD)
uwsgi_error("uwsgi_go_cheap()/waitpid()");
}
}
uwsgi_add_sockets_to_queue(uwsgi.master_queue, -1);
uwsgi_log("cheap mode enabled: waiting for socket connection...\n");
}
+970 -63
View File
File diff suppressed because it is too large Load Diff
+254
View File
@@ -0,0 +1,254 @@
#include <uwsgi.h>
/*
jail systems (Linux namespaces, FreeBSD jails...) heavily rely on mount/umount
to simplify setups (expecially because the mount command could not be available in
the initial phase of jailing, we need an api to mount/umount filesystems
int uwsgi_mount(char *fs, char *what, char *where, int flags);
int uwsgi_umount(char *where, int flags);
*/
#ifdef __linux__
#ifndef MS_REC
#define MS_REC 16384
#endif
#include <sys/statfs.h>
#endif
struct uwsgi_mount_flag {
char *key;
uint64_t value;
};
static struct uwsgi_mount_flag umflags[] = {
#ifdef MS_BIND
{"bind", MS_BIND},
#endif
#ifdef MS_DIRSYNC
{"dirsync", MS_DIRSYNC},
#endif
#ifdef MS_MANDLOCK
{"mandlock", MS_MANDLOCK},
#endif
#ifdef MS_MOVE
{"move", MS_MOVE},
#endif
#ifdef MS_NOATIME
{"noatime", MS_NOATIME},
#endif
#ifdef MS_NODEV
{"nodev", MS_NODEV},
#endif
#ifdef MS_NOEXEC
{"noexec", MS_NOEXEC},
#endif
#ifdef MS_RDONLY
{"rdonly", MS_RDONLY},
{"readonly", MS_RDONLY},
{"ro", MS_RDONLY},
#endif
#ifdef MS_REMOUNT
{"remount", MS_REMOUNT},
#endif
#ifdef MS_SYNCHRONOUS
{"sync", MS_SYNCHRONOUS},
#endif
#ifdef MNT_FORCE
{"force", MNT_FORCE},
#endif
#ifdef MNT_DETACH
{"detach", MNT_DETACH},
#endif
#ifdef MS_REC
{"rec", MS_REC},
{"recursive", MS_REC},
#endif
#ifdef MS_PRIVATE
{"private", MS_PRIVATE},
#endif
#ifdef MS_SHARED
{"shared", MS_SHARED},
#endif
#ifdef MNT_RDONLY
{"rdonly", MNT_RDONLY},
{"readonly", MNT_RDONLY},
{"ro", MNT_RDONLY},
#endif
#ifdef MNT_NOEXEC
{"noexec", MNT_NOEXEC},
#endif
#ifdef MNT_NOSUID
{"nosuid", MNT_NOSUID},
#endif
#ifdef MNT_NOATIME
{"noatime", MNT_NOATIME},
#endif
#ifdef MNT_SNAPSHOT
{"snapshot", MNT_SNAPSHOT},
#endif
{NULL, 0},
};
uint64_t uwsgi_mount_flag(char *mflag) {
struct uwsgi_mount_flag *umf = umflags;
while(umf->key) {
if (!strcmp(umf->key, mflag)) return umf->value;
umf++;
}
return 0;
}
int uwsgi_mount(char *fs, char *what, char *where, char *flags) {
#if defined(__FreeBSD__) || defined(__GNU_kFreeBSD__)
struct iovec iov[6];
#endif
unsigned long mountflags = 0;
if (!flags) goto parsed;
char *mflags = uwsgi_str(flags);
char *p, *ctx = NULL;
uwsgi_foreach_token(mflags, ",", p, ctx) {
unsigned long flag = (unsigned long) uwsgi_mount_flag(p);
if (!flag) {
uwsgi_log("unknown mount flag \"%s\"\n", p);
exit(1);
}
mountflags |= flag;
}
free(mflags);
parsed:
#ifdef __linux__
return mount(what, where, fs, mountflags, NULL);
#elif defined(__FreeBSD__) || defined(__GNU_kFreeBSD__)
iov[0].iov_base = "fstype";
iov[0].iov_len = 7;
iov[1].iov_base = fs;
iov[1].iov_len = strlen(fs) + 1;
iov[2].iov_base = "fspath";
iov[2].iov_len = 7;
iov[3].iov_base = where;
iov[3].iov_len = strlen(where) + 1;
iov[4].iov_base = "target";
iov[4].iov_len = 7;
iov[5].iov_base = what;
iov[5].iov_len = strlen(what) + 1;
return nmount(iov, 6, (int) mountflags);
#endif
return -1;
}
int uwsgi_umount(char *where, char *flags) {
unsigned long mountflags = 0;
if (!flags) goto parsed;
char *mflags = uwsgi_str(flags);
char *p, *ctx = NULL;
uwsgi_foreach_token(mflags, ",", p, ctx) {
unsigned long flag = (unsigned long) uwsgi_mount_flag(p);
if (!flag) {
uwsgi_log("unknown umount flag \"%s\"\n", p);
exit(1);
}
mountflags |= flag;
}
free(mflags);
parsed:
#ifdef __linux__
// we need a special case for recursive umount
if (mountflags & MS_REC) {
mountflags &= ~MS_REC;
int unmounted = 1;
char *slashed = uwsgi_concat2(where, "/");
while (unmounted) {
unmounted = 0;
FILE *procmounts = fopen("/proc/self/mounts", "r");
if (!procmounts) {
uwsgi_log("the /proc filesystem must be mounted for recursive umount\n");
uwsgi_error("open()");
exit(1);
}
char line[1024];
while (fgets(line, 1024, procmounts) != NULL) {
char *delim0 = strchr(line, ' ');
if (!delim0) continue;
delim0++;
char *delim1 = strchr(delim0, ' ');
if (!delim1) continue;
*delim1 = 0;
if (!uwsgi_starts_with(delim0, strlen(delim0), slashed, strlen(slashed))) goto unmountable;
continue;
unmountable:
if (!umount2(delim0, mountflags)) unmounted++;
}
fclose(procmounts);
}
free(slashed);
}
return umount2(where, mountflags);
#elif defined(__FreeBSD__) || defined(__GNU_kFreeBSD__)
return unmount(where, mountflags);
#endif
return -1;
}
int uwsgi_mount_hook(char *arg) {
char *tmp_arg = uwsgi_str(arg);
char *fs = tmp_arg;
char *what = strchr(fs, ' ');
if (!what) goto error;
*what = 0; what++;
char *where = strchr(what, ' ');
if (!where) goto error;
*where = 0; where++;
char *flags = strchr(where, ' ');
if (flags) {
*flags = 0; flags++;
}
if (uwsgi_mount(fs, what, where, flags)) {
uwsgi_error("uwsgi_mount()");
free(tmp_arg);
return -1;
}
free(tmp_arg);
return 0;
error:
free(tmp_arg);
uwsgi_log("uwsgi_mount_hook() invalid syntax\n");
return -1;
}
int uwsgi_umount_hook(char *arg) {
char *tmp_arg = uwsgi_str(arg);
char *where = tmp_arg;
char *flags = strchr(where, ' ');
if (flags) {
*flags = 0; flags++;
}
if (uwsgi_umount(where, flags)) {
uwsgi_error("uwsgi_umount()");
free(tmp_arg);
return -1;
}
free(tmp_arg);
return 0;
}
int uwsgi_check_mountpoint(char *mountpoint) {
#ifdef __linux__
struct statfs sfs;
int ret = statfs(mountpoint, &sfs);
if (ret) {
uwsgi_error("uwsgi_check_mountpoint()/statfs()");
return -1;
}
return 0;
#else
uwsgi_log("this platform does not support mountpoints check !!!\n");
return -1;
#endif
}
+2 -4
View File
@@ -453,8 +453,8 @@ void uwsgi_setup_mules_and_farms() {
create_signal_pipe(uwsgi.farms[i].signal_pipe);
create_msg_pipe(uwsgi.farms[i].queue_pipe, uwsgi.mule_msg_size);
char *p = strtok(mules_list, ",");
while (p != NULL) {
char *p, *ctx = NULL;
uwsgi_foreach_token(mules_list, ",", p, ctx) {
struct uwsgi_mule *um = get_mule_by_id(atoi(p));
if (!um) {
uwsgi_log("invalid mule id: %s\n", p);
@@ -462,8 +462,6 @@ void uwsgi_setup_mules_and_farms() {
}
uwsgi_mule_farm_new(&uwsgi.farms[i].mules, um);
p = strtok(NULL, ",");
}
uwsgi_log("created farm %d name: %s mules:%s\n", i + 1, uwsgi.farms[i].name, strchr(farm_name->value, ':') + 1);
+1 -1
View File
@@ -323,7 +323,7 @@ static int u_offload_sendfile_do(struct uwsgi_thread *ut, struct uwsgi_offload_r
if (event_queue_add_fd_write(ut->queue, uor->fd2)) return -1;
return 0;
}
#if defined(__linux__) || defined(__sun__)
#if defined(__linux__) || defined(__sun__) || defined(__GNU_kFreeBSD__)
ssize_t len = sendfile(uor->fd2, uor->fd, &uor->pos, 128 * 1024);
if (len > 0) {
uor->written += len;
+3 -1
View File
@@ -14,7 +14,9 @@ static void uwsgi_plugin_parse_section(char *filename) {
if (equal) {
*equal = 0;
if (!strcmp(p, "requires")) {
uwsgi_load_plugin(-1, equal + 1, NULL);
if (!plugin_already_loaded(equal+1)) {
uwsgi_load_plugin(-1, equal + 1, NULL);
}
}
}
p = strtok_r(NULL, "\n", &ctx);
+1 -1
View File
@@ -57,7 +57,7 @@ void uwsgi_init_queue() {
uwsgi.queue_header->pos = 0;
uwsgi.queue_header->pull_pos = 0;
}
if (!uwsgi.queue) {
if (uwsgi.queue == MAP_FAILED) {
uwsgi_error("mmap()");
exit(1);
}
+2
View File
@@ -389,6 +389,8 @@ wait:
remains -= len;
*rlen += len;
continue;
}else if (len < 0 && (errno == EAGAIN || errno == EWOULDBLOCK || errno == EINPROGRESS)) {
goto wait;
}
*rlen = -1;
if (len == 0) {
+190 -50
View File
@@ -180,6 +180,10 @@ int uwsgi_apply_routes_do(struct uwsgi_route *routes, struct wsgi_request *wsgi_
r_goto = &wsgi_req->error_route_goto;
r_pc = &wsgi_req->error_route_pc;
}
else if (routes == uwsgi.response_routes) {
r_goto = &wsgi_req->response_route_goto;
r_pc = &wsgi_req->response_route_pc;
}
else if (routes == uwsgi.final_routes) {
r_goto = &wsgi_req->final_route_goto;
r_pc = &wsgi_req->final_route_pc;
@@ -306,6 +310,20 @@ int uwsgi_apply_error_routes(struct wsgi_request *wsgi_req) {
return uwsgi_apply_routes_do(uwsgi.error_routes, wsgi_req, NULL, 0);
}
int uwsgi_apply_response_routes(struct wsgi_request *wsgi_req) {
if (!uwsgi.response_routes) return 0;
if (wsgi_req->response_routes_applied) return 0;
// do not forget to check it !!!
if (wsgi_req->is_response_routing) return 0;
wsgi_req->is_response_routing = 1;
int ret = uwsgi_apply_routes_do(uwsgi.response_routes, wsgi_req, NULL, 0);
wsgi_req->response_routes_applied = 1;
return ret;
}
static void *uwsgi_route_get_condition_func(char *name) {
struct uwsgi_route_condition *urc = uwsgi.route_conditions;
@@ -337,6 +355,9 @@ void uwsgi_opt_add_route(char *opt, char *value, void *foobar) {
else if (!uwsgi_starts_with(opt, strlen(opt), "error", 5)) {
ur = uwsgi.error_routes;
}
else if (!uwsgi_starts_with(opt, strlen(opt), "response", 8)) {
ur = uwsgi.response_routes;
}
uint64_t pos = 0;
while(ur) {
old_ur = ur;
@@ -354,6 +375,9 @@ void uwsgi_opt_add_route(char *opt, char *value, void *foobar) {
else if (!uwsgi_starts_with(opt, strlen(opt), "error", 5)) {
uwsgi.error_routes = ur;
}
else if (!uwsgi_starts_with(opt, strlen(opt), "response", 8)) {
uwsgi.response_routes = ur;
}
else {
uwsgi.routes = ur;
}
@@ -558,6 +582,88 @@ static int uwsgi_router_break(struct uwsgi_route *ur, char *arg) {
return 0;
}
// simple math router
static int uwsgi_router_simple_math_func(struct wsgi_request *wsgi_req, struct uwsgi_route *ur) {
char **subject = (char **) (((char *)(wsgi_req))+ur->subject);
uint16_t *subject_len = (uint16_t *) (((char *)(wsgi_req))+ur->subject_len);
uint16_t var_vallen = 0;
char *var_value = uwsgi_get_var(wsgi_req, ur->data, ur->data_len, &var_vallen);
if (!var_value) return UWSGI_ROUTE_BREAK;
int64_t base_value = uwsgi_str_num(var_value, var_vallen);
int64_t value = 1;
if (ur->data2_len) {
struct uwsgi_buffer *ub = uwsgi_routing_translate(wsgi_req, ur, *subject, *subject_len, ur->data2, ur->data2_len);
if (!ub) return UWSGI_ROUTE_BREAK;
value = uwsgi_str_num(ub->buf, ub->pos);
uwsgi_buffer_destroy(ub);
}
char out[sizeof(UMAX64_STR)+1];
int64_t total = 0;
switch(ur->custom) {
// -
case 1:
total = base_value - value;
break;
// *
case 2:
total = base_value * value;
break;
// /
case 3:
if (value == 0) total = 0;
else {
total = base_value/value;
}
break;
default:
total = base_value + value;
break;
}
int ret = uwsgi_long2str2n(total, out, sizeof(UMAX64_STR)+1);
if (ret <= 0) return UWSGI_ROUTE_BREAK;
if (!uwsgi_req_append(wsgi_req, ur->data, ur->data_len, out, ret)) {
return UWSGI_ROUTE_BREAK;
}
return UWSGI_ROUTE_NEXT;
}
static int uwsgi_router_simple_math_plus(struct uwsgi_route *ur, char *arg) {
ur->func = uwsgi_router_simple_math_func;
char *comma = strchr(arg, ',');
if (comma) {
ur->data = arg;
ur->data_len = comma - arg;
ur->data2 = comma+1;
ur->data2_len = strlen(ur->data);
}
else {
ur->data = arg;
ur->data_len = strlen(arg);
}
return 0;
}
static int uwsgi_router_simple_math_minus(struct uwsgi_route *ur, char *arg) {
ur->custom = 1;
return uwsgi_router_simple_math_plus(ur, arg);
}
static int uwsgi_router_simple_math_multiply(struct uwsgi_route *ur, char *arg) {
ur->custom = 2;
return uwsgi_router_simple_math_plus(ur, arg);
}
static int uwsgi_router_simple_math_divide(struct uwsgi_route *ur, char *arg) {
ur->custom = 2;
return uwsgi_router_simple_math_plus(ur, arg);
}
// harakiri router
static int uwsgi_router_harakiri_func(struct wsgi_request *wsgi_req, struct uwsgi_route *route) {
@@ -616,7 +722,6 @@ static int uwsgi_router_fixcl(struct uwsgi_route *ur, char *arg) {
return 0;
}
// log route
static int uwsgi_router_log_func(struct wsgi_request *wsgi_req, struct uwsgi_route *ur) {
@@ -701,6 +806,11 @@ static int uwsgi_router_goto_func(struct wsgi_request *wsgi_req, struct uwsgi_ro
r_goto = &wsgi_req->final_route_goto;
r_pc = &wsgi_req->final_route_pc;
}
else if (wsgi_req->is_response_routing) {
routes = uwsgi.response_routes;
r_goto = &wsgi_req->response_route_goto;
r_pc = &wsgi_req->response_route_pc;
}
while(routes) {
if (!routes->label) goto next;
if (!uwsgi_strncmp(routes->label, routes->label_len, ub->buf, ub->pos)) {
@@ -806,6 +916,31 @@ static int uwsgi_router_remheader(struct uwsgi_route *ur, char *arg) {
return 0;
}
// clearheaders route
static int uwsgi_router_clearheaders_func(struct wsgi_request *wsgi_req, struct uwsgi_route *ur) {
char **subject = (char **) (((char *)(wsgi_req))+ur->subject);
uint16_t *subject_len = (uint16_t *) (((char *)(wsgi_req))+ur->subject_len);
struct uwsgi_buffer *ub = uwsgi_routing_translate(wsgi_req, ur, *subject, *subject_len, ur->data, ur->data_len);
if (!ub) return UWSGI_ROUTE_BREAK;
if (uwsgi_response_prepare_headers(wsgi_req, ub->buf, ub->pos)) {
uwsgi_buffer_destroy(ub);
return UWSGI_ROUTE_BREAK;
}
uwsgi_buffer_destroy(ub);
return UWSGI_ROUTE_NEXT;
}
static int uwsgi_router_clearheaders(struct uwsgi_route *ur, char *arg) {
ur->func = uwsgi_router_clearheaders_func;
ur->data = arg;
ur->data_len = strlen(arg);
return 0;
}
// signal route
@@ -1145,10 +1280,21 @@ static int uwsgi_router_alarm(struct uwsgi_route *ur, char *arg) {
// send route
static int uwsgi_router_send_func(struct wsgi_request *wsgi_req, struct uwsgi_route *route) {
uwsgi_response_write_body_do(wsgi_req, route->data, route->data_len);
char **subject = (char **) (((char *)(wsgi_req))+route->subject);
uint16_t *subject_len = (uint16_t *) (((char *)(wsgi_req))+route->subject_len);
struct uwsgi_buffer *ub = uwsgi_routing_translate(wsgi_req, route, *subject, *subject_len, route->data, route->data_len);
if (!ub) {
return UWSGI_ROUTE_BREAK;
}
if (route->custom) {
uwsgi_response_write_body_do(wsgi_req, "\r\n", 2);
if (uwsgi_buffer_append(ub, "\r\n", 2)) {
uwsgi_buffer_destroy(ub);
return UWSGI_ROUTE_BREAK;
}
}
uwsgi_response_write_body_do(wsgi_req, ub->buf, ub->pos);
uwsgi_buffer_destroy(ub);
return UWSGI_ROUTE_NEXT;
}
static int uwsgi_router_send(struct uwsgi_route *ur, char *arg) {
@@ -1575,48 +1721,6 @@ static char *uwsgi_route_var_hex(struct wsgi_request *wsgi_req, char *key, uint1
return ret;
}
#ifdef UWSGI_MATHEVAL
static char *uwsgi_route_var_math(struct wsgi_request *wsgi_req, char *key, uint16_t keylen, uint16_t *vallen) {
char *ret = NULL;
// avoid crash
if (!wsgi_req->var_cnt) return NULL;
// we make a bit of fun here, we do a copy of the vars buffer (+1 byte for final zero) and zeor-pad all of the strings
char *vars_buf = uwsgi_malloc(wsgi_req->uh->pktsize + keylen + 1);
char **names = uwsgi_malloc(sizeof(char *) * (wsgi_req->var_cnt/2));
double *values = uwsgi_calloc(sizeof(double) * (wsgi_req->var_cnt/2));
int i,j = 0;
char *ptr = vars_buf;
for (i = wsgi_req->var_cnt-1; i > 0; i -= 2) {
memcpy(ptr, wsgi_req->hvec[i-1].iov_base, wsgi_req->hvec[i-1].iov_len);
names[j] = ptr;
ptr += wsgi_req->hvec[i-1].iov_len;
*ptr++=0;
char *num = ptr;
memcpy(ptr, wsgi_req->hvec[i].iov_base, wsgi_req->hvec[i].iov_len);
ptr += wsgi_req->hvec[i].iov_len;
*ptr++=0;
values[j] = strtod(num, NULL);
j++;
}
char *expr = ptr;
memcpy(ptr, key, keylen); ptr += keylen;
*ptr++=0;
void *e = evaluator_create(expr);
if (!e) goto end;
double n = evaluator_evaluate(e, j, names, values);
evaluator_destroy(e);
ret = uwsgi_num2str((int)n);
*vallen = strlen(ret);
end:
free(vars_buf);
free(names);
free(values);
return ret;
}
#endif
// register embedded routers
void uwsgi_register_embedded_routers() {
uwsgi_register_router("continue", uwsgi_router_continue);
@@ -1630,6 +1734,8 @@ void uwsgi_register_embedded_routers() {
uwsgi_register_router("addheader", uwsgi_router_addheader);
uwsgi_register_router("delheader", uwsgi_router_remheader);
uwsgi_register_router("remheader", uwsgi_router_remheader);
uwsgi_register_router("clearheaders", uwsgi_router_clearheaders);
uwsgi_register_router("resetheaders", uwsgi_router_clearheaders);
uwsgi_register_router("signal", uwsgi_router_signal);
uwsgi_register_router("send", uwsgi_router_send);
uwsgi_register_router("send-crnl", uwsgi_router_send_crnl);
@@ -1647,6 +1753,11 @@ void uwsgi_register_embedded_routers() {
uwsgi_register_router("setprocname", uwsgi_router_setprocname);
uwsgi_register_router("alarm", uwsgi_router_alarm);
uwsgi_register_router("+", uwsgi_router_simple_math_plus);
uwsgi_register_router("-", uwsgi_router_simple_math_minus);
uwsgi_register_router("*", uwsgi_router_simple_math_multiply);
uwsgi_register_router("/", uwsgi_router_simple_math_divide);
uwsgi_register_router("flush", uwsgi_router_flush);
uwsgi_register_router("fixcl", uwsgi_router_fixcl);
@@ -1690,10 +1801,6 @@ void uwsgi_register_embedded_routers() {
urv->need_free = 1;
urv = uwsgi_register_route_var("httptime", uwsgi_route_var_httptime);
urv->need_free = 1;
#ifdef UWSGI_MATHEVAL
urv = uwsgi_register_route_var("math", uwsgi_route_var_math);
urv->need_free = 1;
#endif
urv = uwsgi_register_route_var("base64", uwsgi_route_var_base64);
urv->need_free = 1;
@@ -1750,6 +1857,7 @@ struct uwsgi_route_condition *uwsgi_register_route_condition(char *name, int (*f
}
void uwsgi_routing_dump() {
struct uwsgi_string_list *usl = NULL;
struct uwsgi_route *routes = uwsgi.routes;
if (!routes) goto next;
uwsgi_log("*** dumping internal routing table ***\n");
@@ -1784,8 +1892,25 @@ next:
}
uwsgi_log("*** end of the internal error routing table ***\n");
next2:
routes = uwsgi.response_routes;
if (!routes) goto next3;
uwsgi_log("*** dumping internal response routing table ***\n");
while(routes) {
if (routes->label) {
uwsgi_log("[rule: %llu] label: %s\n", (unsigned long long ) routes->pos, routes->label);
}
else if (!routes->subject_str && !routes->if_func) {
uwsgi_log("[rule: %llu] action: %s\n", (unsigned long long ) routes->pos, routes->action);
}
else {
uwsgi_log("[rule: %llu] subject: %s %s: %s%s action: %s\n", (unsigned long long ) routes->pos, routes->subject_str, routes->if_func ? "func" : "regexp", routes->if_negate ? "!" : "", routes->regexp, routes->action);
}
routes = routes->next;
}
uwsgi_log("*** end of the internal response routing table ***\n");
next3:
routes = uwsgi.final_routes;
if (!routes) return;
if (!routes) goto next4;
uwsgi_log("*** dumping internal final routing table ***\n");
while(routes) {
if (routes->label) {
@@ -1800,5 +1925,20 @@ next2:
routes = routes->next;
}
uwsgi_log("*** end of the internal final routing table ***\n");
next4:
uwsgi_foreach(usl, uwsgi.collect_headers) {
char *space = strchr(usl->value, ' ');
if (!space) {
uwsgi_log("invalid collect header syntax, must be <header> <var>\n");
exit(1);
}
*space = 0;
usl->custom = strlen(usl->value);
*space = ' ';
usl->custom_ptr = space+1;
usl->custom2 = strlen(space+1);
uwsgi_log("collecting header %.*s to var %s\n", usl->custom, usl->value, usl->custom_ptr);
}
}
#endif
+36 -8
View File
@@ -59,11 +59,11 @@ already:
return ret;
}
uint16_t uwsgi_rpc(char *name, uint8_t argc, char *argv[], uint16_t argvs[], char *output) {
uint64_t uwsgi_rpc(char *name, uint8_t argc, char *argv[], uint16_t argvs[], char **output) {
struct uwsgi_rpc *urpc = NULL;
uint64_t i;
uint16_t ret = 0;
uint64_t ret = 0;
int pos = (uwsgi.mywid * uwsgi.rpc_max);
@@ -85,8 +85,15 @@ uint16_t uwsgi_rpc(char *name, uint8_t argc, char *argv[], uint16_t argvs[], cha
return ret;
}
static void rpc_context_hook(char *key, uint16_t kl, char *value, uint16_t vl, void *data) {
size_t *r = (size_t *) data;
char *uwsgi_do_rpc(char *node, char *func, uint8_t argc, char *argv[], uint16_t argvs[], uint16_t * len) {
if (!uwsgi_strncmp(key, kl, "CONTENT_LENGTH", 14)) {
*r = uwsgi_str_num(value, vl);
}
}
char *uwsgi_do_rpc(char *node, char *func, uint8_t argc, char *argv[], uint16_t argvs[], uint64_t * len) {
uint8_t i;
uint16_t ulen;
@@ -97,9 +104,10 @@ char *uwsgi_do_rpc(char *node, char *func, uint8_t argc, char *argv[], uint16_t
if (node == NULL || !strcmp(node, "")) {
// allocate the whole buffer
buffer = uwsgi_malloc(UMAX16);
*len = uwsgi_rpc(func, argc, argv, argvs, buffer);
return buffer;
*len = uwsgi_rpc(func, argc, argv, argvs, &buffer);
if (*buffer)
return buffer;
return NULL;
}
@@ -147,17 +155,37 @@ char *uwsgi_do_rpc(char *node, char *func, uint8_t argc, char *argv[], uint16_t
bufptr += ulen;
}
// ok the reuqest is ready, let's send it in non blocking way
// ok the request is ready, let's send it in non blocking way
if (uwsgi_write_true_nb(fd, buffer, buffer_size+4, uwsgi.shared->options[UWSGI_OPTION_SOCKET_TIMEOUT])) {
goto error;
}
// ok time to wait for the response in non blocking way
size_t rlen = buffer_size+4;
if (uwsgi_read_with_realloc(fd, &buffer, &rlen, uwsgi.shared->options[UWSGI_OPTION_SOCKET_TIMEOUT])) {
uint8_t modifier2 = 0;
if (uwsgi_read_with_realloc(fd, &buffer, &rlen, uwsgi.shared->options[UWSGI_OPTION_SOCKET_TIMEOUT], NULL, &modifier2)) {
goto error;
}
// 64bit response ?
if (modifier2 == 5) {
size_t content_len = 0;
if (uwsgi_hooked_parse(buffer, rlen, rpc_context_hook, &content_len )) goto error;
if (content_len > rlen) {
char *tmp_buf = realloc(buffer, content_len);
if (!tmp_buf) goto error;
buffer = tmp_buf;
}
rlen = content_len;
// read the raw value from the socket
if (uwsgi_read_whole_true_nb(fd, buffer, rlen, uwsgi.shared->options[UWSGI_OPTION_SOCKET_TIMEOUT])) {
goto error;
}
}
close(fd);
*len = rlen;
if (*len == 0) {
+10 -7
View File
@@ -4,6 +4,11 @@ extern struct uwsgi_server uwsgi;
// sendfile() abstraction
ssize_t uwsgi_sendfile_do(int sockfd, int filefd, size_t pos, size_t len) {
// for platform not supporting sendfile we need to rely on boring read/write
// generally that platforms have very low memory, so use a 8k buffer
char buf[8192];
if (uwsgi.disable_sendfile) goto no_sendfile;
#if defined(__FreeBSD__) || defined(__DragonFly__)
off_t sf_len = len;
@@ -15,15 +20,14 @@ ssize_t uwsgi_sendfile_do(int sockfd, int filefd, size_t pos, size_t len) {
int sf_ret = sendfile(filefd, sockfd, pos, &sf_len, NULL, 0);
if (sf_ret == 0 || (sf_ret == -1 && errno == EAGAIN)) return sf_len;
return -1;
#elif defined(__linux__) || defined(__sun__)
#elif defined(__linux__) || defined(__sun__) || defined(__GNU_kFreeBSD__)
off_t off = pos;
return sendfile(sockfd, filefd, &off, len);
#else
// for platform not supporting sendfile we need to rely on boring read/write
// generally that platforms have very low memory, so use a 8k buffer
char buf[8192];
#endif
no_sendfile:
if (pos > 0) {
if (lseek(filefd, pos, SEEK_SET)) {
if (lseek(filefd, pos, SEEK_SET) < 0) {
uwsgi_error("uwsgi_sendfile_do()/seek()");
return -1;
}
@@ -34,7 +38,6 @@ ssize_t uwsgi_sendfile_do(int sockfd, int filefd, size_t pos, size_t len) {
return -1;
}
return write(sockfd, buf, rlen);
#endif
}
+2
View File
@@ -301,8 +301,10 @@ int uwsgi_signal_send(int fd, uint8_t sig) {
else {
uwsgi_error("uwsgi_signal_send()");
}
uwsgi.shared->unrouted_signals++;
return -1;
}
uwsgi.shared->routed_signals++;
return 0;
}
+55 -14
View File
@@ -23,6 +23,7 @@ static uint64_t get_uwsgi_custom_snmp_value(uint64_t, uint8_t *);
static uint8_t snmp_int_to_snmp(uint64_t, uint8_t, uint8_t *);
static ssize_t build_snmp_response(uint8_t, uint8_t, uint8_t *, int, uint8_t *, uint8_t *, uint8_t *);
static ssize_t build_snmp_metric_response(int64_t, uint8_t, uint8_t *, int, uint8_t *, uint8_t *, uint8_t *);
void manage_snmp(int fd, uint8_t * buffer, int size, struct sockaddr_in *client_addr) {
@@ -71,7 +72,7 @@ void manage_snmp(int fd, uint8_t * buffer, int size, struct sockaddr_in *client_
uwsgi_debug("SNMP version: %d\n", version);
#endif
// check for community string (this must be set from the python vm using uwsgi.snmp_community or with --snmp-community arg)
// check for community string (this must be set from the api using uwsgi.snmp_community or with --snmp-community arg)
if (*ptr != SNMP_STRING)
return;
ptr++;
@@ -196,7 +197,7 @@ void manage_snmp(int fd, uint8_t * buffer, int size, struct sockaddr_in *client_
ptr++;
oidlen = *ptr;
if (oidlen != 11)
if (oidlen < 11)
return;
ptr++;
@@ -208,21 +209,33 @@ void manage_snmp(int fd, uint8_t * buffer, int size, struct sockaddr_in *client_
oid_part[0] = *ptr;
if (oid_part[0] != 1 && oid_part[0] != 2)
return;
ptr++;
// old-style SNMP metrics
if (oid_part[0] == 1 || oid_part[0] == 2) {
ptr++;
oid_part[1] = *ptr;
if (oid_part[1] < 1 || oid_part[1] > 100)
return;
ptr++;
oid_part[1] = *ptr;
if (oid_part[1] < 1 || oid_part[1] > 100)
return;
ptr++;
// check for null
if (memcmp((char *) ptr, "\x05\x00", 2))
return;
ptr += 2;
// check for null
if (memcmp((char *) ptr, "\x05\x00", 2))
return;
ptr += 2;
size = build_snmp_response(oid_part[0], oid_part[1], buffer, size, seq1, seq2, seq3);
}
// metrics subsystem
else {
size_t metric_asn_len = oidlen - 9;
char *metric_asn = (char *) ptr;
struct uwsgi_metric *um = uwsgi_metric_find_by_asn(metric_asn, metric_asn_len);
if (!um) return;
uwsgi_rlock(uwsgi.metrics_lock);
int64_t value = *um->value;
uwsgi_rwunlock(uwsgi.metrics_lock);
size = build_snmp_metric_response(value, um->type, buffer, size, seq1, seq2, seq3);
}
size = build_snmp_response(oid_part[0], oid_part[1], buffer, size, seq1, seq2, seq3);
if (size > 0) {
if (sendto(fd, buffer, size, 0, (struct sockaddr *) client_addr, sizeof(struct sockaddr_in)) < 0) {
@@ -292,6 +305,7 @@ static uint8_t snmp_int_to_snmp(uint64_t snmp_val, uint8_t oid_type, uint8_t * b
uint8_t tlen;
int i, j;
uint8_t *ptr = (uint8_t *) & snmp_val;
int32_t val32 = (int32_t) snmp_val;
// check for counter, counter64 or gauge
@@ -303,6 +317,7 @@ static uint8_t snmp_int_to_snmp(uint64_t snmp_val, uint8_t oid_type, uint8_t * b
}
else {
tlen = 4;
ptr = (uint8_t *) &val32;
}
buffer[0] = tlen;
@@ -352,6 +367,32 @@ static ssize_t build_snmp_response(uint8_t oid1, uint8_t oid2, uint8_t * buffer,
}
static ssize_t build_snmp_metric_response(int64_t value, uint8_t type, uint8_t * buffer, int size, uint8_t * seq1, uint8_t * seq2, uint8_t * seq3) {
uint8_t oid_sz;
if (type == UWSGI_METRIC_GAUGE) {
buffer[size - 2] = SNMP_GAUGE;
oid_sz = snmp_int_to_snmp(value, SNMP_GAUGE, buffer + (size - 1));
}
else {
buffer[size - 2] = SNMP_COUNTER64;
oid_sz = snmp_int_to_snmp(value, SNMP_COUNTER64, buffer + (size - 1));
}
if (oid_sz < 1)
return -1;
oid_sz--;
buffer[1] += oid_sz;
*seq1 += oid_sz;
*seq2 += oid_sz;
*seq3 += oid_sz;
return size + oid_sz;
}
void uwsgi_opt_snmp(char *opt, char *value, void *foobar) {
uwsgi.snmp = 1;
if (value) {
+97 -107
View File
@@ -6,6 +6,22 @@ static int connect_to_unix(char *, int, int);
static int connect_to_tcp(char *, int, int, int);
static int connect_to_udp(char *, int);
void uwsgi_socket_setup_protocol(struct uwsgi_socket *uwsgi_sock, char *protocol) {
if (!protocol) protocol = "uwsgi";
struct uwsgi_protocol *up = uwsgi.protocols;
while(up) {
if (!strcmp(protocol, up->name)) {
up->func(uwsgi_sock);
return;
}
up = up->next;
}
uwsgi_log("unable to find protocol %s\n", protocol);
exit(1);
}
static int uwsgi_socket_strcmp(char *sock1, char *sock2) {
size_t sock1_len = strlen(sock1);
size_t sock2_len = strlen(sock2);
@@ -187,6 +203,14 @@ int bind_to_unix(char *socket_name, int listen_queue, int chmod_socket, int abst
return -1;
}
#ifdef __linux__
long somaxconn = uwsgi_num_from_file("/proc/sys/net/core/somaxconn", 1);
if (somaxconn > 0 && uwsgi.listen_queue > somaxconn) {
uwsgi_log("Listen queue size is greater than the system max net.core.somaxconn (%li).\n", somaxconn);
uwsgi_nuclear_blast();
return -1;
}
#endif
if (listen(serverfd, listen_queue) != 0) {
uwsgi_error("listen()");
@@ -1358,7 +1382,7 @@ void uwsgi_add_sockets_to_queue(int queue, int async_id) {
struct uwsgi_socket *uwsgi_sock = uwsgi.sockets;
while (uwsgi_sock) {
if (uwsgi_sock->fd_threads && async_id > -1) {
if (uwsgi_sock->fd_threads && async_id > -1 && uwsgi_sock->fd_threads[async_id] > -1) {
event_queue_add_fd_read(queue, uwsgi_sock->fd_threads[async_id]);
}
else if (uwsgi_sock->fd > -1) {
@@ -1645,8 +1669,8 @@ void uwsgi_map_sockets() {
}
if ((int) uwsgi_str_num(usl->value, colon - usl->value) == uwsgi_get_socket_num(uwsgi_sock)) {
enabled = 0;
char *p = strtok(colon + 1, ",");
while (p != NULL) {
char *p, *ctx = NULL;
uwsgi_foreach_token(colon + 1, ",", p, ctx) {
int w = atoi(p);
if (w < 1 || w > uwsgi.numproc) {
uwsgi_log("invalid worker num: %d\n", w);
@@ -1657,7 +1681,6 @@ void uwsgi_map_sockets() {
uwsgi_log("mapped socket %d (%s) to worker %d\n", uwsgi_get_socket_num(uwsgi_sock), uwsgi_sock->name, uwsgi.mywid);
break;
}
p = strtok(NULL, ",");
}
}
@@ -1666,18 +1689,7 @@ void uwsgi_map_sockets() {
if (!enabled) {
close(uwsgi_sock->fd);
int fd = open("/dev/null", O_RDONLY);
if (fd < 0) {
uwsgi_error_open("/dev/null");
exit(1);
}
if (fd != uwsgi_sock->fd) {
if (dup2(fd, uwsgi_sock->fd) < 0) {
uwsgi_error("dup2()");
exit(1);
}
close(fd);
}
uwsgi_remap_fd(uwsgi_sock->fd, "/dev/null");
uwsgi_sock->disabled = 1;
}
@@ -1707,6 +1719,10 @@ void uwsgi_bind_sockets() {
while (uwsgi_sock) {
if (!uwsgi_sock->bound && !uwsgi_socket_is_already_bound(uwsgi_sock->name)) {
char *tcp_port = strrchr(uwsgi_sock->name, ':');
int current_defer_accept = uwsgi.no_defer_accept;
if (uwsgi_sock->no_defer) {
uwsgi.no_defer_accept = 1;
}
if (tcp_port == NULL) {
uwsgi_sock->fd = bind_to_unix(uwsgi_sock->name, uwsgi.listen_queue, uwsgi.chmod_socket, uwsgi.abstract_socket);
uwsgi_sock->family = AF_UNIX;
@@ -1740,6 +1756,7 @@ void uwsgi_bind_sockets() {
uwsgi_log("unable to create server socket on: %s\n", uwsgi_sock->name);
exit(1);
}
uwsgi.no_defer_accept = current_defer_accept;
}
uwsgi_sock->bound = 1;
uwsgi_sock = uwsgi_sock->next;
@@ -1785,7 +1802,8 @@ void uwsgi_bind_sockets() {
int fd = open("/dev/null", O_RDONLY);
if (fd < 0) {
uwsgi_error_open("/dev/null");
exit(1);
uwsgi_log("WARNING: unable to remap stdin, /dev/null not available\n");
goto stdin_done;
}
if (fd != 0) {
if (dup2(fd, 0) < 0) {
@@ -1803,6 +1821,8 @@ void uwsgi_bind_sockets() {
}
stdin_done:
// check for auto_port socket
uwsgi_sock = uwsgi.sockets;
while (uwsgi_sock) {
@@ -1849,96 +1869,8 @@ void uwsgi_set_sockets_protocols() {
setup_proto:
if (!requested_protocol) {
requested_protocol = uwsgi.protocol;
}
if (requested_protocol && !strcmp("http", requested_protocol)) {
uwsgi_sock->proto = uwsgi_proto_http_parser;
uwsgi_sock->proto_accept = uwsgi_proto_base_accept;
uwsgi_sock->proto_prepare_headers = uwsgi_proto_base_prepare_headers;
uwsgi_sock->proto_add_header = uwsgi_proto_base_add_header;
uwsgi_sock->proto_fix_headers = uwsgi_proto_base_fix_headers;
uwsgi_sock->proto_read_body = uwsgi_proto_base_read_body;
uwsgi_sock->proto_write = uwsgi_proto_base_write;
uwsgi_sock->proto_write_headers = uwsgi_proto_base_write;
uwsgi_sock->proto_sendfile = uwsgi_proto_base_sendfile;
uwsgi_sock->proto_close = uwsgi_proto_base_close;
if (uwsgi.offload_threads > 0)
uwsgi_sock->can_offload = 1;
}
else if (requested_protocol && (!strcmp("fastcgi", requested_protocol) || !strcmp("fcgi", requested_protocol))) {
uwsgi_sock->proto = uwsgi_proto_fastcgi_parser;
uwsgi_sock->proto_accept = uwsgi_proto_base_accept;
uwsgi_sock->proto_prepare_headers = uwsgi_proto_base_cgi_prepare_headers;
uwsgi_sock->proto_add_header = uwsgi_proto_base_add_header;
uwsgi_sock->proto_fix_headers = uwsgi_proto_base_fix_headers;
uwsgi_sock->proto_read_body = uwsgi_proto_fastcgi_read_body;
uwsgi_sock->proto_write = uwsgi_proto_fastcgi_write;
uwsgi_sock->proto_write_headers = uwsgi_proto_fastcgi_write;
uwsgi_sock->proto_sendfile = uwsgi_proto_fastcgi_sendfile;
uwsgi_sock->proto_close = uwsgi_proto_fastcgi_close;
}
else if (requested_protocol && (!strcmp("fastcgi-nph", requested_protocol) || !strcmp("fcgi-nph", requested_protocol))) {
uwsgi_sock->proto = uwsgi_proto_fastcgi_parser;
uwsgi_sock->proto_accept = uwsgi_proto_base_accept;
uwsgi_sock->proto_prepare_headers = uwsgi_proto_base_prepare_headers;
uwsgi_sock->proto_add_header = uwsgi_proto_base_add_header;
uwsgi_sock->proto_fix_headers = uwsgi_proto_base_fix_headers;
uwsgi_sock->proto_read_body = uwsgi_proto_fastcgi_read_body;
uwsgi_sock->proto_write = uwsgi_proto_fastcgi_write;
uwsgi_sock->proto_write_headers = uwsgi_proto_fastcgi_write;
uwsgi_sock->proto_sendfile = uwsgi_proto_fastcgi_sendfile;
uwsgi_sock->proto_close = uwsgi_proto_fastcgi_close;
}
else if (requested_protocol && (!strcmp("scgi", requested_protocol) || !strcmp("scgi", requested_protocol))) {
uwsgi_sock->proto = uwsgi_proto_scgi_parser;
uwsgi_sock->proto_accept = uwsgi_proto_base_accept;
uwsgi_sock->proto_prepare_headers = uwsgi_proto_base_cgi_prepare_headers;
uwsgi_sock->proto_add_header = uwsgi_proto_base_add_header;
uwsgi_sock->proto_fix_headers = uwsgi_proto_base_fix_headers;
uwsgi_sock->proto_read_body = uwsgi_proto_base_read_body;
uwsgi_sock->proto_write = uwsgi_proto_base_write;
uwsgi_sock->proto_write_headers = uwsgi_proto_base_write;
uwsgi_sock->proto_sendfile = uwsgi_proto_base_sendfile;
uwsgi_sock->proto_close = uwsgi_proto_base_close;
}
else if (requested_protocol && (!strcmp("scgi-nph", requested_protocol) || !strcmp("scgi-nph", requested_protocol))) {
uwsgi_sock->proto = uwsgi_proto_scgi_parser;
uwsgi_sock->proto_accept = uwsgi_proto_base_accept;
uwsgi_sock->proto_prepare_headers = uwsgi_proto_base_prepare_headers;
uwsgi_sock->proto_add_header = uwsgi_proto_base_add_header;
uwsgi_sock->proto_fix_headers = uwsgi_proto_base_fix_headers;
uwsgi_sock->proto_read_body = uwsgi_proto_base_read_body;
uwsgi_sock->proto_write = uwsgi_proto_base_write;
uwsgi_sock->proto_write_headers = uwsgi_proto_base_write;
uwsgi_sock->proto_sendfile = uwsgi_proto_base_sendfile;
uwsgi_sock->proto_close = uwsgi_proto_base_close;
}
#ifdef UWSGI_ZEROMQ
else if (requested_protocol && !strcmp("zmq", requested_protocol)) {
uwsgi.zeromq = 1;
}
#endif
else {
uwsgi_sock->proto = uwsgi_proto_uwsgi_parser;
uwsgi_sock->proto_accept = uwsgi_proto_base_accept;
uwsgi_sock->proto_prepare_headers = uwsgi_proto_base_prepare_headers;
uwsgi_sock->proto_add_header = uwsgi_proto_base_add_header;
uwsgi_sock->proto_fix_headers = uwsgi_proto_base_fix_headers;
uwsgi_sock->proto_read_body = uwsgi_proto_base_read_body;
uwsgi_sock->proto_write = uwsgi_proto_base_write;
uwsgi_sock->proto_write_headers = uwsgi_proto_base_write;
uwsgi_sock->proto_sendfile = uwsgi_proto_base_sendfile;
uwsgi_sock->proto_close = uwsgi_proto_base_close;
if (uwsgi.offload_threads > 0)
uwsgi_sock->can_offload = 1;
}
if (!requested_protocol) requested_protocol = uwsgi.protocol;
uwsgi_socket_setup_protocol(uwsgi_sock, requested_protocol);
nextsock:
uwsgi_sock = uwsgi_sock->next;
}
@@ -1955,3 +1887,61 @@ void uwsgi_tcp_nodelay(int fd) {
#endif
}
int uwsgi_accept(int server_fd) {
struct sockaddr_un client_src;
memset(&client_src, 0, sizeof(struct sockaddr_un));
socklen_t client_src_len = 0;
#if defined(__linux__) && defined(SOCK_NONBLOCK) && !defined(OBSOLETE_LINUX_KERNEL)
return accept4(server_fd, (struct sockaddr *) &client_src, &client_src_len, SOCK_NONBLOCK);
#elif defined(__linux__)
int client_fd = accept(server_fd, (struct sockaddr *) &client_src, &client_src_len);
if (client_fd >= 0) {
uwsgi_socket_nb(client_fd);
}
return client_fd;
#else
return accept(server_fd, (struct sockaddr *) &client_src, &client_src_len);
#endif
}
struct uwsgi_protocol *uwsgi_register_protocol(char *name, void (*func)(struct uwsgi_socket *)) {
struct uwsgi_protocol *old_up = NULL, *up = uwsgi.protocols;
while(up) {
if (!strcmp(name, up->name)) {
goto found;
}
old_up = up;
up = up->next;
}
up = uwsgi_calloc(sizeof(struct uwsgi_protocol));
up->name = name;
if (old_up) {
old_up->next = up;
}
else {
uwsgi.protocols = up;
}
found:
up->func = func;
return up;
}
void uwsgi_protocols_register() {
uwsgi_register_protocol("uwsgi", uwsgi_proto_uwsgi_setup);
uwsgi_register_protocol("puwsgi", uwsgi_proto_puwsgi_setup);
uwsgi_register_protocol("http", uwsgi_proto_http_setup);
#ifdef UWSGI_SSL
uwsgi_register_protocol("suwsgi", uwsgi_proto_suwsgi_setup);
uwsgi_register_protocol("https", uwsgi_proto_https_setup);
#endif
uwsgi_register_protocol("fastcgi", uwsgi_proto_fastcgi_setup);
uwsgi_register_protocol("fastcgi-nph", uwsgi_proto_fastcgi_nph_setup);
uwsgi_register_protocol("scgi", uwsgi_proto_scgi_setup);
uwsgi_register_protocol("scgi-nph", uwsgi_proto_scgi_nph_setup);
#ifdef UWSGI_ZEROMQ
uwsgi_register_protocol("zmq", uwsgi_proto_zmq_setup);
#endif
uwsgi_register_protocol("raw", uwsgi_proto_raw_setup);
}
+4
View File
@@ -71,7 +71,11 @@ SSL_SESSION *uwsgi_ssl_session_get_cb(SSL *ssl, unsigned char *key, int keylen,
}
return NULL;
}
#if (OPENSSL_VERSION_NUMBER >= 0x0090800fL)
SSL_SESSION *sess = d2i_SSL_SESSION(NULL, (const unsigned char **)&value, valsize);
#else
SSL_SESSION *sess = d2i_SSL_SESSION(NULL, (unsigned char **)&value, valsize);
#endif
uwsgi_rwunlock(uwsgi.ssl_sessions_cache->lock);
return sess;
}
+18 -45
View File
@@ -440,6 +440,11 @@ void uwsgi_stats_pusher_loop(struct uwsgi_thread *ut) {
void *events = event_queue_alloc(1);
for (;;) {
int nevents = event_queue_wait_multi(ut->queue, 1, events, 1);
if (nevents < 0) {
if (errno == EINTR) continue;
uwsgi_log_verbose("ending the stats pusher thread...\n");
return;
}
if (nevents > 0) {
int interesting_fd = event_queue_interesting_fd(events, 0);
char buf[4096];
@@ -457,7 +462,8 @@ void uwsgi_stats_pusher_loop(struct uwsgi_thread *ut) {
struct uwsgi_stats *us = NULL;
while (uspi) {
int delta = uspi->freq ? uspi->freq : uwsgi.stats_pusher_default_freq;
if ((uspi->last_run + delta) <= now) {
if (((uspi->last_run + delta) <= now) || (uspi->needs_retry && (uspi->next_retry <= now))) {
if (uspi->needs_retry) uspi->retries++;
if (uspi->raw) {
uspi->pusher->func(uspi, now, NULL, 0);
}
@@ -470,6 +476,17 @@ void uwsgi_stats_pusher_loop(struct uwsgi_thread *ut) {
uspi->pusher->func(uspi, now, us->base, us->pos);
}
uspi->last_run = now;
if (uspi->needs_retry && uspi->max_retries > 0 && uspi->retries < uspi->max_retries) {
uwsgi_log("[uwsgi-stats-pusher] %s failed (%d), retry in %ds\n", uspi->pusher->name, uspi->retries, uspi->retry_delay);
uspi->next_retry = now + uspi->retry_delay;
} else if (uspi->needs_retry && uspi->retries >= uspi->max_retries) {
uwsgi_log("[uwsgi-stats-pusher] %s failed and maximum number of retries was reached (%d)\n", uspi->pusher->name, uspi->retries);
uspi->needs_retry = 0;
uspi->retries = 0;
} else if (uspi->retries) {
uwsgi_log("[uwsgi-stats-pusher] retry succeeded for %s\n", uspi->pusher->name);
uspi->retries = 0;
}
}
next:
uspi = uspi->next;
@@ -531,50 +548,6 @@ struct uwsgi_stats_pusher *uwsgi_register_stats_pusher(char *name, void (*func)
return pusher;
}
struct uwsgi_stats_pusher_file_conf {
char *path;
char *freq;
char *separator;
};
void uwsgi_stats_pusher_file(struct uwsgi_stats_pusher_instance *uspi, time_t now, char *json, size_t json_len) {
struct uwsgi_stats_pusher_file_conf *uspic = (struct uwsgi_stats_pusher_file_conf *) uspi->data;
if (!uspi->configured) {
uspic = uwsgi_calloc(sizeof(struct uwsgi_stats_pusher_file_conf));
if (uspi->arg) {
if (uwsgi_kvlist_parse(uspi->arg, strlen(uspi->arg), ',', '=', "path", &uspic->path, "separator", &uspic->separator, "freq", &uspic->freq, NULL)) {
free(uspi);
return;
}
}
if (!uspic->path)
uspic->path = "uwsgi.stats";
if (!uspic->separator)
uspic->separator = "\n\n";
if (uspic->freq)
uspi->freq = atoi(uspic->freq);
uspi->configured = 1;
uspi->data = uspic;
}
int fd = open(uspic->path, O_RDWR | O_CREAT | O_APPEND, S_IRUSR | S_IWUSR | S_IRGRP);
if (fd < 0) {
uwsgi_error_open(uspic->path);
return;
}
ssize_t rlen = write(fd, json, json_len);
if (rlen != (ssize_t) json_len) {
uwsgi_error("uwsgi_stats_pusher_file() -> write()\n");
}
rlen = write(fd, uspic->separator, strlen(uspic->separator));
if (rlen != (ssize_t) strlen(uspic->separator)) {
uwsgi_error("uwsgi_stats_pusher_file() -> write()\n");
}
close(fd);
}
static void stats_dump_var(char *k, uint16_t kl, char *v, uint16_t vl, void *data) {
struct uwsgi_stats *us = (struct uwsgi_stats *) data;
if (us->dirty) return;
+104
View File
@@ -379,3 +379,107 @@ char *uwsgi_cheap_string(char *buf, int len) {
return buf - 1;
}
/*
status 0: append mode
status 1: single quote found
status 2: double quote found
status 3: backslash found (on 0)
status 4: backslash found (on 1)
status 5: backslash found (on 2)
*/
char ** uwsgi_split_quoted(char *what, size_t what_len, char *sep, size_t *rlen) {
size_t i;
int status = 0;
char *base = uwsgi_concat2n(what, what_len, "", 0);
char *item = NULL;
char *ptr = NULL;
*rlen = 0;
char **ret = (char **) uwsgi_malloc(sizeof(char *) * (what_len+1));
for(i=0;i<what_len;i++) {
if (!item) {
item = uwsgi_malloc((what_len - i)+1);
ptr = item;
}
if (status == 0) {
if (base[i] == '\\') {
status = 3;
}
else if (base[i] == '"') {
status = 2;
}
else if (base[i] == '\'') {
status = 1;
}
else if (strchr(sep, base[i])) {
*ptr++= 0;
ret[(*rlen)] = item; (*rlen)++;
item = NULL;
}
else {
*ptr++= base[i];
}
continue;
}
// backslash
if (status == 3) {
*ptr++= base[i];
status = 0;
continue;
}
// single quote
if (status == 1) {
if (base[i] == '\\') {
status = 4;
}
else if (base[i] == '\'') {
status = 0;
}
else {
*ptr++= base[i];
}
continue;
}
// double quote
if (status == 2) {
if (base[i] == '\\') {
status = 5;
}
else if (base[i] == '"') {
status = 0;
}
else {
*ptr++= base[i];
}
continue;
}
// backslash single quote
if (status == 4) {
*ptr++= base[i];
status = 1;
continue;
}
// backslash double quote
if (status == 5) {
*ptr++= base[i];
status = 2;
continue;
}
}
if (item) {
*ptr++= 0;
ret[(*rlen)] = item; (*rlen)++;
}
free(base);
return ret;
}
+1157 -680
View File
File diff suppressed because it is too large Load Diff
+541 -286
View File
File diff suppressed because it is too large Load Diff
+1 -1
View File
@@ -59,7 +59,7 @@ static int uwsgi_websockets_check_pingpong(struct wsgi_request *wsgi_req) {
}
return 0;
}
// pong received, send anther ping
// pong received, send another ping
if (now - wsgi_req->websocket_last_ping >= uwsgi.websockets_ping_freq) {
return uwsgi_websockets_ping(wsgi_req);
}
+36
View File
@@ -120,6 +120,19 @@ error:
//each protocol has its header generator
static int uwsgi_response_add_header_do(struct wsgi_request *wsgi_req, char *key, uint16_t key_len, char *value, uint16_t value_len) {
// collect the header ?
struct uwsgi_string_list *usl = NULL;
uwsgi_foreach(usl, uwsgi.collect_headers) {
if (!uwsgi_strnicmp(key, key_len, usl->value, usl->custom)) {
if (!uwsgi_req_append(wsgi_req, usl->custom_ptr, usl->custom2, value, value_len)) {
wsgi_req->write_errors++ ; return -1;
}
}
}
if (!wsgi_req->headers) {
wsgi_req->headers = uwsgi_buffer_new(uwsgi.page_size);
wsgi_req->headers->limit = UMAX16;
@@ -171,6 +184,16 @@ int uwsgi_response_write_headers_do(struct wsgi_request *wsgi_req) {
return UWSGI_OK;
}
#ifdef UWSGI_ROUTING
// apply response routes
if (uwsgi_apply_response_routes(wsgi_req) == UWSGI_ROUTE_BREAK) {
// from now on ignore write body requests...
wsgi_req->ignore_body = 1;
return -1;
}
wsgi_req->is_response_routing = 0;
#endif
struct uwsgi_string_list *ah = uwsgi.additional_headers;
while(ah) {
if (uwsgi_response_add_header(wsgi_req, NULL, 0, ah->value, ah->len)) return -1;
@@ -221,6 +244,19 @@ int uwsgi_response_write_body_do(struct wsgi_request *wsgi_req, char *buf, size_
if (wsgi_req->write_errors) return -1;
if (wsgi_req->ignore_body) return UWSGI_OK;
#ifdef UWSGI_ROUTING
// special case here, we could need to set transformations before
if (!wsgi_req->headers_sent) {
// apply response routes
if (uwsgi_apply_response_routes(wsgi_req) == UWSGI_ROUTE_BREAK) {
// from now on ignore write body requests...
wsgi_req->ignore_body = 1;
return -1;
}
wsgi_req->is_response_routing = 0;
}
#endif
// if the transformation chain returns 1, we are in buffering mode
if (wsgi_req->transformed_chunk_len == 0 && wsgi_req->transformations) {
int t_ret = uwsgi_apply_transformations(wsgi_req, buf, len);
+3
View File
@@ -151,6 +151,8 @@ void uwsgi_xml_config(char *filename, struct wsgi_request *wsgi_req, char *magic
}
/* We can safely free resources */
if (colon) colon[0] = ':';
xmlFreeDoc(doc);
xmlCleanupParser();
@@ -267,6 +269,7 @@ void uwsgi_xml_config(char *filename, struct wsgi_request *wsgi_req, char *magic
} while (!done);
if (colon) colon[0] = ':';
// we can safely free, as we have a copy of datas
XML_ParserFree(parser);
+1
View File
@@ -280,6 +280,7 @@ next:
}
#endif
if (colon) colon[0] = ':';
}
+66
View File
@@ -0,0 +1,66 @@
/*
*** WORK IN PROGRESS ***
Zeus mode
A Zeus instance can load all of the available imperial monitor plugins, but instead of spawning
vassals it delegates actions to Emperors connected to it.
The Zeus instance try to distribute vassals evenly between Emperors.
Emperors register to one (ore more, maybe...) Zeus instance, passing various informations (like the maximum number
of vassals it can manage)
to spawn a Zeus:
# unencrypted mode
uwsgi --zeus "192.168.173.17:4040 /etc/uwsgi/vassals"
# crypted mode
uwsgi --zeus "192.168.173.17:4040,foobar.crt,foobar.key /etc/uwsgi/vassals"
# crypted + authentication mode
uwsgi --zeus "192.168.173.17:4040,foobar.crt,foobar.key,clients.pem /etc/uwsgi/vassals"
to connect an Emperor to Zeus
# unencrypted mode
uwsgi --emperor zeus:192.168.173.17:4040
# crypted mode
uwsgi --emperor zeus-ssl:192.168.173.17:4040
# crypted + authentication mode
uwsgi --emperor zeus-ssl:192.168.173.17:4040,myself.key
Protocol
(each message is a basic uwsgi packet: modifier1 pktsize modifier2 payload)
modifier2 identifies the type of the message
0 -> I_AM_ALIVE {node: 'node001', max_vassals: '100', running_vassals: '17'} [ emperor -> zeus ]
1 -> NEW_VASSAL {name: 'foobar.ini'} [ zeus -> the choosen emperor ]
2 -> ACCEPTED_VASSAL {name: 'foobar.ini'} [ emperor -> zeus ]
3 -> CONFIG_CHUNK {name: 'foobar.ini', body: '[uwsgi].....'} [ zeus -> the choosen emperor ]
4 -> CONFIG_END {name: 'foobar.ini'} [ zeus -> the choosen emperor ]
5 -> VASSAL_SPAWNED {name: 'foobar.ini'} [the choosen emperor -> zeus]
6 -> VASSAL_REJECTED {name: 'foobar.ini'} [the choosen emperor -> zeus]
7 -> VASSAL_RELOAD {name: 'foobar.ini'} [ zeus -> the choosen emperor ]
8 -> VASSAL_UPDATE {name: 'foobar.ini'} [ zeus -> the choosen emperor ]
9 -> VASSAL_DESTROY {name: 'foobar.ini'} [ zeus -> the choosen emperor ]
10 -> VASSAL_RELOADED {name: 'foobar.ini'} [the choosen emperor -> zeus]
11 -> VASSAL_DESTROYED {name: 'foobar.ini'} [the choosen emperor -> zeus]
*/
+3 -2
View File
@@ -123,12 +123,13 @@ int uwsgi_gzip_fix(z_stream *z, uint32_t crc32, struct uwsgi_buffer *ub, size_t
if (!gzipped0) goto end;
if (uwsgi_buffer_append(ub, gzipped0, dlen0)) goto end;
free(gzipped0);
if (uwsgi_buffer_u32le(ub, crc32)) goto end;
if (uwsgi_buffer_u32le(ub, len)) goto end;
if (uwsgi_buffer_u32le(ub, crc32)) goto end2;
if (uwsgi_buffer_u32le(ub, len)) goto end2;
deflateEnd(z);
return 0;
end:
if (gzipped0) free(gzipped0);
end2:
deflateEnd(z);
return -1;
}
View File
+10 -2
View File
@@ -66,11 +66,17 @@ void linux_namespace_start(void *argv) {
uwsgi_error("clone()");
exit(1);
}
#if defined(MS_REC) && defined(MS_PRIVATE)
if (mount(NULL, "/", NULL, MS_REC|MS_PRIVATE, NULL)) {
uwsgi_error("mount()");
exit(1);
}
#endif
// run the post-jail scripts
if (setenv("UWSGI_JAIL_PID", uwsgi_num2str((int) pid), 1)) {
uwsgi_error("setenv()");
}
uwsgi_hooks_run(uwsgi.hook_post_jail, "post-jail", 1);
struct uwsgi_string_list *usl = uwsgi.exec_post_jail;
while(usl) {
uwsgi_log("running \"%s\" (post-jail)...\n", usl->value);
@@ -84,7 +90,8 @@ void linux_namespace_start(void *argv) {
uwsgi_foreach(usl, uwsgi.call_post_jail) {
if (uwsgi_call_symbol(usl->value)) {
uwsgi_log("unaable to call function \"%s\"\n", usl->value);
uwsgi_log("unable to call function \"%s\"\n", usl->value);
exit(1);
}
}
@@ -173,6 +180,7 @@ void linux_namespace_jail() {
uwsgi_log("remounting /proc\n");
if (mount("proc", "/proc", "proc", 0, NULL)) {
uwsgi_error("mount()");
exit(1);
}
struct uwsgi_string_list *usl = uwsgi.ns_keep_mount;
+29 -36
View File
@@ -26,9 +26,6 @@ struct uwsgi_carbon {
unsigned long long *last_busyness_values;
unsigned long long *current_busyness_values;
int *was_busy;
int need_retry;
time_t last_update;
time_t next_retry;
int max_retries;
int retry_delay;
char *root_node;
@@ -40,6 +37,7 @@ struct uwsgi_carbon {
int zero_avg;
uint64_t last_requests;
struct uwsgi_stats_pusher *pusher;
int use_metrics;
} u_carbon;
static struct uwsgi_option carbon_options[] = {
@@ -55,6 +53,7 @@ static struct uwsgi_option carbon_options[] = {
{"carbon-name-resolve", no_argument, 0, "allow using hostname as carbon server address (default disabled)", uwsgi_opt_true, &u_carbon.resolve_hostname, 0},
{"carbon-resolve-names", no_argument, 0, "allow using hostname as carbon server address (default disabled)", uwsgi_opt_true, &u_carbon.resolve_hostname, 0},
{"carbon-idle-avg", required_argument, 0, "average values source during idle period (no requests), can be \"last\", \"zero\", \"none\" (default is last)", uwsgi_opt_set_str, &u_carbon.idle_avg, 0},
{"carbon-use-metrics", no_argument, 0, "don't compute all statistics, use metrics subsystem data instead (warning! key names will be different)", uwsgi_opt_true, &u_carbon.use_metrics, 0},
{0, 0, 0, 0, 0, 0, 0},
};
@@ -71,8 +70,8 @@ static void carbon_post_init() {
u_server->healthy = 1;
u_server->errors = 0;
char *p = strtok(usl->value, ":");
while (p) {
char *p, *ctx = NULL;
uwsgi_foreach_token(usl->value, ":", p, ctx) {
if (!u_server->hostname) {
u_server->hostname = uwsgi_str(p);
}
@@ -81,7 +80,6 @@ static void carbon_post_init() {
}
else
break;
p = strtok(NULL, ":");
}
if (!u_server->hostname || !u_server->port) {
uwsgi_log("[carbon] invalid carbon server address (%s)\n", usl->value);
@@ -109,7 +107,7 @@ static void carbon_post_init() {
if (u_carbon.freq < 1) u_carbon.freq = 60;
if (u_carbon.timeout < 1) u_carbon.timeout = 3;
if (u_carbon.max_retries <= 0) u_carbon.max_retries = 1;
if (u_carbon.max_retries < 0) u_carbon.max_retries = 0;
if (u_carbon.retry_delay <= 0) u_carbon.retry_delay = 7;
if (!u_carbon.id) {
u_carbon.id = uwsgi_str(uwsgi.sockets->name);
@@ -154,14 +152,13 @@ static void carbon_post_init() {
u_carbon.was_busy = uwsgi_calloc(sizeof(int) * uwsgi.numproc);
}
// set next update to now()+retry_delay, this way we will have first flush just after start
u_carbon.last_update = uwsgi_now() - u_carbon.freq + u_carbon.retry_delay;
uwsgi_log("[carbon] carbon plugin started, %is frequency, %is timeout, max retries %i, retry delay %is\n",
u_carbon.freq, u_carbon.timeout, u_carbon.max_retries, u_carbon.retry_delay);
struct uwsgi_stats_pusher_instance *uspi = uwsgi_stats_pusher_add(u_carbon.pusher, NULL);
uspi->freq = u_carbon.freq;
uspi->retry_delay = u_carbon.retry_delay;
uspi->max_retries = u_carbon.max_retries;
// no need to generate the json
uspi->raw=1;
}
@@ -186,14 +183,15 @@ static int carbon_write(int fd, char *fmt,...) {
return 1;
}
static void carbon_push_stats(int retry_cycle, time_t now) {
static int carbon_push_stats(int retry_cycle, time_t now) {
struct carbon_server_list *usl = u_carbon.servers_data;
if (!u_carbon.servers_data) return;
if (!u_carbon.servers_data) return 0;
int i;
int fd;
int wok;
char *ip;
char *carbon_address = NULL;
int needs_retry;
for (i = 0; i < uwsgi.numproc; i++) {
u_carbon.current_busyness_values[i] = uwsgi.workers[i+1].running_time - u_carbon.last_busyness_values[i];
@@ -201,7 +199,7 @@ static void carbon_push_stats(int retry_cycle, time_t now) {
u_carbon.was_busy[i-1] += uwsgi_worker_is_busy(i+1);
}
u_carbon.need_retry = 0;
needs_retry = 0;
while(usl) {
if (retry_cycle && usl->healthy)
// skip healthy servers during retry cycle
@@ -229,15 +227,7 @@ static void carbon_push_stats(int retry_cycle, time_t now) {
fd = uwsgi_connect(carbon_address, u_carbon.timeout, 0);
if (fd < 0) {
uwsgi_log("[carbon] Could not connect to carbon server at %s\n", carbon_address);
if (usl->errors < u_carbon.max_retries) {
u_carbon.need_retry = 1;
u_carbon.next_retry = uwsgi_now() + u_carbon.retry_delay;
} else {
uwsgi_log("[carbon] Maximum number of retries for %s (%d)\n",
carbon_address, u_carbon.max_retries);
usl->healthy = 0;
usl->errors = 0;
}
needs_retry = 1;
usl->healthy = 0;
usl->errors++;
free(carbon_address);
@@ -247,6 +237,8 @@ static void carbon_push_stats(int retry_cycle, time_t now) {
// put the socket in non-blocking mode
uwsgi_socket_nb(fd);
if (u_carbon.use_metrics) goto metrics_loop;
unsigned long long total_rss = 0;
unsigned long long total_vsz = 0;
unsigned long long total_tx = 0;
@@ -381,6 +373,18 @@ static void carbon_push_stats(int retry_cycle, time_t now) {
wok = carbon_write(fd, "%s%s.%s.harakiri %llu %llu\n", u_carbon.root_node, u_carbon.hostname, u_carbon.id, (unsigned long long) total_harakiri, (unsigned long long) now);
if (!wok) goto clear;
metrics_loop:
if (u_carbon.use_metrics) {
struct uwsgi_metric *um = uwsgi.metrics;
while(um) {
uwsgi_rlock(uwsgi.metrics_lock);
wok = carbon_write(fd, "%s%s.%s.%.*s %llu %llu\n", u_carbon.root_node, u_carbon.hostname, u_carbon.id, um->name_len, um->name, (unsigned long long) *um->value, (unsigned long long) now);
uwsgi_rwunlock(uwsgi.metrics_lock);
if (!wok) goto clear;
um = um->next;
}
}
usl->healthy = 1;
usl->errors = 0;
@@ -391,23 +395,12 @@ clear:
nxt:
usl = usl->next;
}
if (!retry_cycle) u_carbon.last_update = uwsgi_now();
if (u_carbon.need_retry)
// timeouts and retries might cause additional lags in carbon cycles, we will adjust timer to fix that
u_carbon.last_update -= u_carbon.timeout;
return needs_retry;
}
static void carbon_push(struct uwsgi_stats_pusher_instance *uspi, time_t now, char *json, size_t json_len) {
if (u_carbon.need_retry && now >= u_carbon.next_retry) {
carbon_push_stats(1, now);
}
else {
// update
u_carbon.need_retry = 0;
carbon_push_stats(0, now);
}
uspi->needs_retry = carbon_push_stats(uspi->retries, now);
}
static void carbon_cleanup() {
+2 -3
View File
@@ -828,8 +828,8 @@ clear2:
// set the start position of args in argv
i = 1;
if (helper) i = 2;
char *p = strtok(qs, "+");
while(p) {
char *p, *ctx = NULL;
uwsgi_foreach_token(qs, "+", p, ctx) {
// create a copy for the url_decoded string
char *arg_copy = uwsgi_str(p);
uint16_t arg_copy_len = strlen(p);
@@ -838,7 +838,6 @@ clear2:
argv[i] = uwsgi_malloc( (arg_copy_len * 2) +1);
escape_shell_arg(arg_copy, arg_copy_len, argv[i]);
i++;
p = strtok(NULL, "+");
}
free(qs);
}
+4 -2
View File
@@ -13,7 +13,7 @@
extern struct uwsgi_server uwsgi;
int cheaper_backlog2_algo(void) {
int cheaper_backlog2_algo(int can_spawn) {
int i;
#ifdef __linux__
@@ -22,7 +22,9 @@ int cheaper_backlog2_algo(void) {
int backlog = 0;
#endif
if (backlog > (int)uwsgi.cheaper_overload) {
// if can_spawn == 0 we cannot spawn any new worker
// this is set to 1 if --cheaper-rss-limit-* options are used and running workers are exceeding resources limit
if (can_spawn && backlog > (int)uwsgi.cheaper_overload) {
// activate the first available worker (taking step into account)
int decheaped = 0;
// search for cheaped workers
+12 -12
View File
@@ -142,7 +142,7 @@ int spawn_emergency_worker(int backlog) {
#endif
int cheaper_busyness_algo(void) {
int cheaper_busyness_algo(int can_spawn) {
int i;
// we use microseconds
@@ -243,11 +243,12 @@ int cheaper_busyness_algo(void) {
uwsgi_cheaper_busyness_global.tolerance_counter = 0;
int decheaped = 0;
for (i = 1; i <= uwsgi.numproc; i++) {
if (uwsgi.workers[i].cheaped == 1 && uwsgi.workers[i].pid == 0) {
decheaped++;
if (decheaped >= uwsgi.cheaper_step) break;
if (can_spawn) {
for (i = 1; i <= uwsgi.numproc; i++) {
if (uwsgi.workers[i].cheaped == 1 && uwsgi.workers[i].pid == 0) {
decheaped++;
if (decheaped >= uwsgi.cheaper_step) break;
}
}
}
@@ -271,15 +272,15 @@ int cheaper_busyness_algo(void) {
uwsgi_log("[busyness] %llus average busyness is at %llu%%, will spawn %d new worker(s)\n",
uwsgi.cheaper_overload, avg_busyness, decheaped);
} else {
uwsgi_log("[busyness] %llus average busyness is at %llu%% but we already started maximum number of workers (%d)\n",
uwsgi.cheaper_overload, avg_busyness, uwsgi.numproc);
uwsgi_log("[busyness] %llus average busyness is at %llu%% but we already started maximum number of workers available with current limits (%d)\n",
uwsgi.cheaper_overload, avg_busyness, active_workers);
}
// return the maximum number of workers to spawn
return decheaped;
#ifdef __linux__
} else if (backlog > uwsgi_cheaper_busyness_global.backlog_alert && active_workers < uwsgi.numproc) {
} else if (can_spawn && backlog > uwsgi_cheaper_busyness_global.backlog_alert && active_workers < uwsgi.numproc) {
return spawn_emergency_worker(backlog);
#endif
@@ -347,14 +348,14 @@ int cheaper_busyness_algo(void) {
}
#ifdef __linux__
else if (backlog > uwsgi_cheaper_busyness_global.backlog_alert && active_workers < uwsgi.numproc) {
else if (can_spawn && backlog > uwsgi_cheaper_busyness_global.backlog_alert && active_workers < uwsgi.numproc) {
// we check for backlog overload every cycle
return spawn_emergency_worker(backlog);
}
else if (backlog > 0) {
if (uwsgi_cheaper_busyness_global.backlog_is_nonzero) {
// backlog was > 0 last time, check timestamp and spawn workers if needed
if ((now - uwsgi_cheaper_busyness_global.backlog_nonzero_since)/1000000 >= uwsgi_cheaper_busyness_global.backlog_nonzero_alert) {
if (can_spawn && (now - uwsgi_cheaper_busyness_global.backlog_nonzero_since)/1000000 >= uwsgi_cheaper_busyness_global.backlog_nonzero_alert) {
uwsgi_log("[busyness] backlog was non-zero for %llu second(s), spawning new worker(s)\n", (now - uwsgi_cheaper_busyness_global.backlog_nonzero_since)/1000000);
uwsgi_cheaper_busyness_global.backlog_nonzero_since = now;
return spawn_emergency_worker(backlog);
@@ -391,4 +392,3 @@ struct uwsgi_plugin cheaper_busyness_plugin = {
.options = uwsgi_cheaper_busyness_options,
};
+6 -5
View File
@@ -187,11 +187,12 @@ void uwsgi_opt_corerouter_zerg(char *opt, char *value, void *cr) {
close(zerg_fd);
for(j=0;j<count;j++) {
if (zerg[j] == -1) break;
ugs = uwsgi_new_gateway_socket_from_fd(zerg[j], ucr->name);
ugs->zerg = optarg;
}
for(j=0;j<count;j++) {
if (zerg[j] == -1) break;
ugs = uwsgi_new_gateway_socket_from_fd(zerg[j], ucr->name);
ugs->zerg = optarg;
}
free(zerg);
}
+1 -1
View File
@@ -166,7 +166,7 @@ static void uwsgi_imperial_monitor_zeromq_cmd(struct uwsgi_emperor_scanner *ues)
}
}
// destroy an instance
else if (!uwsgi_strncmp(ez_cmd, ez_cmd_len, "destroy", 6)) {
else if (!uwsgi_strncmp(ez_cmd, ez_cmd_len, "destroy", 7)) {
struct uwsgi_instance *ui = emperor_get(name);
if (!ui) {
uwsgi_log("[emperor-zeromq] unknown instance \"%s\"\n", name);
+6 -4
View File
@@ -190,21 +190,23 @@ static ssize_t fr_instance_connected(struct corerouter_peer *peer) {
// called after receaving the uwsgi header (read vars)
static ssize_t fr_recv_uwsgi_vars(struct corerouter_peer *main_peer) {
struct uwsgi_header *uh = (struct uwsgi_header *) main_peer->in->buf;
// better to store it as the original buf address could change
uint16_t pktsize = uh->pktsize;
// increase buffer if needed
if (uwsgi_buffer_fix(main_peer->in, uh->pktsize+4))
if (uwsgi_buffer_fix(main_peer->in, pktsize+4))
return -1;
ssize_t len = cr_read_exact(main_peer, uh->pktsize+4, "fr_recv_uwsgi_vars()");
ssize_t len = cr_read_exact(main_peer, pktsize+4, "fr_recv_uwsgi_vars()");
if (!len) return 0;
// headers received, ready to choose the instance
if (main_peer->in->pos == (size_t)(uh->pktsize+4)) {
if (main_peer->in->pos == (size_t)(pktsize+4)) {
struct uwsgi_corerouter *ucr = main_peer->session->corerouter;
struct corerouter_peer *new_peer = uwsgi_cr_peer_add(main_peer->session);
new_peer->last_hook_read = fr_instance_read;
// find the hostname
if (uwsgi_hooked_parse(main_peer->in->buf+4, uh->pktsize, fr_get_hostname, (void *) new_peer)) {
if (uwsgi_hooked_parse(main_peer->in->buf+4, pktsize, fr_get_hostname, (void *) new_peer)) {
return -1;
}
+296
View File
@@ -0,0 +1,296 @@
/*
uWSGI forkpty-router
can use the uwsgi protocol, modifier2 means:
0 -> stdin
1-99 -> UNIX signal
100 -> window rows (pktsize is the window size)
101 -> window cols (pktsize is the window size)
*/
#include <uwsgi.h>
#include "../corerouter/cr.h"
extern struct uwsgi_server uwsgi;
#if defined(__linux__) || defined(__GNU_kFreeBSD__)
#include <pty.h>
#elif defined(__APPLE__) || defined(__OpenBSD__) || defined(__NetBSD__)
#include <util.h>
#elif defined(__FreeBSD__)
#include <libutil.h>
#endif
#ifndef __FreeBSD__
#include <utmp.h>
#endif
static struct uwsgi_forkptyrouter {
struct uwsgi_corerouter cr;
char *cmd;
uint16_t win_rows;
uint16_t win_cols;
} ufpty;
extern struct uwsgi_server uwsgi;
struct forkptyrouter_session {
struct corerouter_session session;
// use the uwsgi protocol ?
int uwsgi;
size_t restore_size;
struct winsize w;
pid_t pid;
};
static void uwsgi_opt_forkpty_urouter(char *opt, char *value, void *cr) {
struct uwsgi_corerouter *ucr = (struct uwsgi_corerouter *) cr;
struct uwsgi_gateway_socket *ugs = uwsgi_new_gateway_socket(value, ucr->name);
ugs->no_defer = 1;
ugs->mode = 1;
ucr->has_sockets++;
}
static struct uwsgi_option forkptyrouter_options[] = {
{"forkptyrouter", required_argument, 0, "run the forkptyrouter on the specified address", uwsgi_opt_undeferred_corerouter, &ufpty, 0},
{"forkpty-router", required_argument, 0, "run the forkptyrouter on the specified address", uwsgi_opt_undeferred_corerouter, &ufpty, 0},
{"forkptyurouter", required_argument, 0, "run the forkptyrouter on the specified address", uwsgi_opt_forkpty_urouter, &ufpty, 0},
{"forkpty-urouter", required_argument, 0, "run the forkptyrouter on the specified address", uwsgi_opt_forkpty_urouter, &ufpty, 0},
{"forkptyrouter-command", required_argument, 0, "run the specified command on every connection (default: /bin/sh)", uwsgi_opt_set_str, &ufpty.cmd, 0},
{"forkpty-router-command", required_argument, 0, "run the specified command on every connection (default: /bin/sh)", uwsgi_opt_set_str, &ufpty.cmd, 0},
{"forkptyrouter-cmd", required_argument, 0, "run the specified command on every connection (default: /bin/sh)", uwsgi_opt_set_str, &ufpty.cmd, 0},
{"forkpty-router-cmd", required_argument, 0, "run the specified command on every connection (default: /bin/sh)", uwsgi_opt_set_str, &ufpty.cmd, 0},
{"forkptyrouter-rows", required_argument, 0, "set forkptyrouter default pty window rows", uwsgi_opt_set_16bit, &ufpty.win_rows, 0},
{"forkptyrouter-cols", required_argument, 0, "set forkptyrouter default pty window cols", uwsgi_opt_set_16bit, &ufpty.win_cols, 0},
{"forkptyrouter-processes", required_argument, 0, "prefork the specified number of forkptyrouter processes", uwsgi_opt_set_int, &ufpty.cr.processes, 0},
{"forkptyrouter-workers", required_argument, 0, "prefork the specified number of forkptyrouter processes", uwsgi_opt_set_int, &ufpty.cr.processes, 0},
{"forkptyrouter-zerg", required_argument, 0, "attach the forkptyrouter to a zerg server", uwsgi_opt_corerouter_zerg, &ufpty, 0},
{"forkptyrouter-fallback", required_argument, 0, "fallback to the specified node in case of error", uwsgi_opt_add_string_list, &ufpty.cr.fallback, 0},
{"forkptyrouter-events", required_argument, 0, "set the maximum number of concufptyent events", uwsgi_opt_set_int, &ufpty.cr.nevents, 0},
{"forkptyrouter-cheap", no_argument, 0, "run the forkptyrouter in cheap mode", uwsgi_opt_true, &ufpty.cr.cheap, 0},
{"forkptyrouter-timeout", required_argument, 0, "set forkptyrouter timeout", uwsgi_opt_set_int, &ufpty.cr.socket_timeout, 0},
{"forkptyrouter-stats", required_argument, 0, "run the forkptyrouter stats server", uwsgi_opt_set_str, &ufpty.cr.stats_server, 0},
{"forkptyrouter-stats-server", required_argument, 0, "run the forkptyrouter stats server", uwsgi_opt_set_str, &ufpty.cr.stats_server, 0},
{"forkptyrouter-ss", required_argument, 0, "run the forkptyrouter stats server", uwsgi_opt_set_str, &ufpty.cr.stats_server, 0},
{"forkptyrouter-harakiri", required_argument, 0, "enable forkptyrouter harakiri", uwsgi_opt_set_int, &ufpty.cr.harakiri, 0},
{0, 0, 0, 0, 0, 0, 0},
};
// write to backend
static ssize_t fpty_instance_write(struct corerouter_peer *peer) {
struct forkptyrouter_session *fpty_session = (struct forkptyrouter_session *) peer->session;
ssize_t len = cr_write(peer, "fpty_instance_write()");
// end on empty write
if (!len) return 0;
// the chunk has been sent, start (again) reading from client and instances
if (cr_write_complete(peer)) {
// reset the buffer
if (fpty_session->uwsgi) {
if (uwsgi_buffer_decapitate(peer->out, peer->out->pos)) return -1;
peer->out->pos = fpty_session->restore_size;
}
else {
peer->out->pos = 0;
}
cr_reset_hooks(peer);
}
return len;
}
// write to client
static ssize_t fpty_write(struct corerouter_peer *main_peer) {
ssize_t len = cr_write(main_peer, "fpty_write()");
// end on empty write
if (!len) return 0;
// ok this response chunk is sent, let's start reading again
if (cr_write_complete(main_peer)) {
// reset the buffer
main_peer->out->pos = 0;
cr_reset_hooks(main_peer);
}
return len;
}
static ssize_t fpty_parse_uwsgi(struct corerouter_peer *peer) {
struct forkptyrouter_session *fpty_session = (struct forkptyrouter_session *) peer->session;
for(;;) {
if (peer->in->pos < 4) return 0;
struct uwsgi_header *uh = (struct uwsgi_header *) peer->in->buf;
uint16_t pktsize = uh->pktsize;
switch(uh->modifier2) {
case 0:
// stdin
if ((size_t) (pktsize+4) > peer->in->pos) return 0;
if (uwsgi_buffer_decapitate(peer->in, 4)) return -1;
return pktsize;
case 100:
if (uwsgi_buffer_decapitate(peer->in, 4)) return -1;
fpty_session->w.ws_row = pktsize;
ioctl(peer->session->peers->fd, TIOCSWINSZ, &fpty_session->w);
// rows
break;
case 101:
if (uwsgi_buffer_decapitate(peer->in, 4)) return -1;
fpty_session->w.ws_col = pktsize;
ioctl(peer->session->peers->fd, TIOCSWINSZ, &fpty_session->w);
// cols
break;
default:
if (uwsgi_buffer_decapitate(peer->in, 4)) return -1;
// send signal
kill(fpty_session->pid, uh->modifier2);
break;
}
}
return 0;
}
// read from backend
static ssize_t fpty_instance_read(struct corerouter_peer *peer) {
ssize_t len = cr_read(peer, "fpty_instance_read()");
if (!len) return 0;
// set the input buffer as the main output one
peer->session->main_peer->out = peer->in;
peer->session->main_peer->out_pos = 0;
cr_write_to_main(peer, fpty_write);
return len;
}
// read from client
static ssize_t fpty_read(struct corerouter_peer *main_peer) {
struct forkptyrouter_session *fpty_session = (struct forkptyrouter_session *) main_peer->session;
ssize_t len = cr_read(main_peer, "fpty_read()");
if (!len) return 0;
if (fpty_session->uwsgi) {
ssize_t rlen = fpty_parse_uwsgi(main_peer);
if (rlen < 0) return -1;
if (rlen == 0) return 1;
fpty_session->restore_size = main_peer->in->pos - rlen;
main_peer->session->peers->out = main_peer->in;
main_peer->session->peers->out->pos = rlen;
}
else {
main_peer->session->peers->out = main_peer->in;
}
main_peer->session->peers->out_pos = 0;
cr_write_to_backend(main_peer->session->peers, fpty_instance_write);
return len;
}
static void fpty_session_close(struct corerouter_session *cs) {
struct forkptyrouter_session *fpty_session = (struct forkptyrouter_session *) cs;
if (fpty_session->pid > 0) {
int waitpid_status = 0;
if (waitpid(fpty_session->pid, &waitpid_status, WNOHANG) < 0) {
uwsgi_error("fpty_session_close()/waitpid()");
}
}
}
// allocate a new session
static int forkptyrouter_alloc_session(struct uwsgi_corerouter *ucr, struct uwsgi_gateway_socket *ugs, struct corerouter_session *cs, struct sockaddr *sa, socklen_t s_len) {
// set default read hook
cs->main_peer->last_hook_read = fpty_read;
// wait4() on close
cs->close = fpty_session_close;
struct forkptyrouter_session *fpty_session = (struct forkptyrouter_session *) cs;
if (ugs->mode == 1) {
fpty_session->uwsgi = 1;
}
// default terminal size
fpty_session->w.ws_row = ufpty.win_rows ? ufpty.win_rows : 24;
fpty_session->w.ws_col = ufpty.win_cols ? ufpty.win_cols : 80;
// add a new peer
struct corerouter_peer *peer = uwsgi_cr_peer_add(cs);
// on new connection generate a new pty
fpty_session->pid = forkpty(&peer->fd, NULL, NULL, &fpty_session->w);
if (fpty_session->pid < 0) {
uwsgi_error("forkpty()");
return -1;
}
else if (fpty_session->pid == 0) {
if (ufpty.cmd) {
char *space = strchr(ufpty.cmd, ' ');
if (space) {
char *argv[4];
argv[0] = uwsgi_binsh();
argv[1] = "-c";
argv[2] = ufpty.cmd;
argv[3] = NULL;
execv(argv[0], argv);
}
else {
char *argv[2];
argv[0] = ufpty.cmd;
argv[1] = NULL;
execv(argv[0], argv);
}
}
else {
char *argv[2];
argv[0] = "/bin/sh";
argv[1] = NULL;
execv(argv[0], argv);
}
// never here;
uwsgi_error("forkptyrouter_alloc_session()/execv()");
exit(1);
}
ucr->cr_table[peer->fd] = peer;
cr_reset_hooks_and_read(peer, fpty_instance_read);
return 0;
}
static int forkptyrouter_init() {
ufpty.cr.session_size = sizeof(struct forkptyrouter_session);
ufpty.cr.alloc_session = forkptyrouter_alloc_session;
uwsgi_corerouter_init((struct uwsgi_corerouter *) &ufpty);
return 0;
}
static void forkptyrouter_setup() {
ufpty.cr.name = uwsgi_str("uWSGI forkptyrouter");
ufpty.cr.short_name = uwsgi_str("forkptyrouter");
}
struct uwsgi_plugin forkptyrouter_plugin = {
.name = "forkptyrouter",
.options = forkptyrouter_options,
.init = forkptyrouter_init,
.on_load = forkptyrouter_setup
};
+8
View File
@@ -0,0 +1,8 @@
NAME='forkptyrouter'
CFLAGS = []
LDFLAGS = []
LIBS = []
REQUIRES = ['corerouter']
GCC_LIST = ['forkptyrouter']
+275 -19
View File
@@ -2,7 +2,7 @@
/*
Soon before official Go 1.1, we understand supporting Go in a fork() heavy
Soon before official Go 1.1, we understood supporting Go in a fork() heavy
environment was not blessed by the Go community.
Instead of completely dropping support for Go, we studied how the gccgo project works and we
@@ -16,8 +16,31 @@
the uwsgi.Run() go function directly calls the uwsgi_takeover() function (it automatically
manages mules, spoolers and workers)
As well as before each core maps to a goroutine mapped to a real pthread. (goroutines called
from your apps are native goroutines)
The plugin implements goroutines too.
On startup a goroutine is created for each socket and signals file descriptors.
For every request a new goroutine is created too.
The wsgi_request * structure is attached to the "closure" field of the goroutine (PAY ATTENTION)
even if the loop engine makes use of the async mode, pthreads could be spawned all over the place.
For such a reason a mutex is created avoiding the global wsgi_req structures to be clobbered
Contrary to the standard way Go apps are deployed, the plugin supports loading shared libraries.
While this is a common approach in other environments, the Go community prefers monolithic binaries.
As always, choose the model that best suite for you. Eventually building a single uWSGI binary with your Go
app embedded is pretty easy:
CFLAGS=-DUWSGI_GCCGO_MONOLITHIC UWSGI_ADDITIONAL_SOURCES=t/go/uploadtest.go UWSGI_PROFILE=gccgo make
or you can add the following two directives in a build profile:
cflags = -DUWSGI_GCCGO_MONOLITHIC
additional_sources = t/go/uploadtest.go
*/
@@ -25,25 +48,29 @@ extern struct uwsgi_server uwsgi;
struct uwsgi_plugin gccgo_plugin;
struct uwsgi_gccgo{
// 1 if a main is loaded
int initialized;
struct uwsgi_string_list *libs;
char *args;
pthread_mutex_t wsgi_req_lock;
} ugccgo;
/*
shortcut for enabling the "goroutines" loop engine
*/
static void uwsgi_opt_setup_goroutines(char *opt, char *value, void *foobar) {
// set async mode
uwsgi_opt_set_int(opt, value, &uwsgi.async);
// set loop engine
uwsgi.loop = "goroutines";
}
*/
struct uwsgi_option uwsgi_gccgo_options[] = {
{"go-load", required_argument, 0, "load a go shared library in the process address space, eventually patching main.main and __go_init_main", uwsgi_opt_add_string_list, &ugccgo.libs, 0},
{"gccgo-load", required_argument, 0, "load a go shared library in the process address space, eventually patching main.main and __go_init_main", uwsgi_opt_add_string_list, &ugccgo.libs, 0},
{"go-args", required_argument, 0, "set go commandline arguments", uwsgi_opt_set_str, &ugccgo.args, 0},
{"gccgo-args", required_argument, 0, "set go commandline arguments", uwsgi_opt_set_str, &ugccgo.args, 0},
// {"goroutines", required_argument, 0, "a shortcut setting optimal options for goroutine-based apps, takes the number of goroutines to spawn as argument", uwsgi_opt_setup_goroutines, NULL, UWSGI_OPT_THREADS},
{"goroutines", required_argument, 0, "a shortcut setting optimal options for goroutine-based apps, takes the number of max goroutines to spawn as argument", uwsgi_opt_setup_goroutines, NULL, UWSGI_OPT_THREADS},
{0, 0, 0, 0, 0, 0, 0},
};
@@ -51,27 +78,46 @@ struct uwsgi_option uwsgi_gccgo_options[] = {
// no_split_stack is the key to avoid crashing !!!
void* runtime_m(void) __attribute__ ((noinline, no_split_stack));
// initialize runtime
void runtime_check(void);
void runtime_args(int, char **);
void runtime_osinit(void);
void runtime_schedinit(void);
void *__go_go(void *, void *);
void runtime_main(void);
void runtime_mstart(void *);
// spawn a goroutine
void *__go_go(void *, void *);
// api functions exposed
extern void uwsgigo_request(void *, void *) __asm__ ("go.uwsgi.RequestHandler");
extern void* uwsgigo_env(void *) __asm__ ("go.uwsgi.Env");
extern void* uwsgigo_env_add(void *, void *, uint16_t, void *, uint16_t) __asm__ ("go.uwsgi.EnvAdd");
extern void uwsgigo_run_core(int) __asm__ ("go.uwsgi.RunCore");
extern void uwsgigo_signal_handler(void *, uint8_t) __asm__ ("go.uwsgi.SignalHandler");
//extern void uwsgigo_loop(void) __asm__ ("go.uwsgi.Loop");
// for goroutines
void runtime_netpollinit(void);
void runtime_starttheworld(void);
void *runtime_pollOpen(int) __asm__ ("net.runtime_pollOpen");
void runtime_pollClose(void *) __asm__ ("net.runtime_pollClose");
void runtime_pollUnblock(void *) __asm__ ("net.runtime_pollUnblock");
int runtime_pollWait(void *, int) __asm__ ("net.runtime_pollWait");
void runtime_pollSetDeadline(void *, int64_t, int) __asm__ ("net.runtime_pollSetDeadline");
void runtime_gosched(void);
// the current goroutine
void *runtime_g(void);
// we use the closure field to store the wsgi_req structure
void __go_set_closure(void *);
void *__go_get_closure(void);
static void mainstart(void *arg __attribute__((unused))) {
runtime_main();
}
#ifndef UWSGI_GCCGO_MONOLITHIC
void uwsgigo_main_main(void) __asm__ ("main.main");
void uwsgigo_main_init(void) __asm__ ("__go_init_main");
#endif
void (*uwsgigo_hook_init)(void);
void (*uwsgigo_hook_main)(void);
@@ -102,6 +148,14 @@ int uwsgi_gccgo_helper_register_signal(uint8_t signum, char *receiver, void *han
}
static void uwsgi_gccgo_initialize() {
if (uwsgi.threads > 1) {
uwsgi_log("!!! the Go runtime cannot work in multithreaded modes !!!\n");
exit(1);
}
#ifdef UWSGI_GCCGO_MONOLITHIC
uwsgigo_hook_init = dlsym(RTLD_DEFAULT, "__go_init_main");
uwsgigo_hook_main = dlsym(RTLD_DEFAULT, "main.main");
#endif
struct uwsgi_string_list *usl = ugccgo.libs;
while(usl) {
void *handle = dlopen(usl->value, RTLD_NOW | RTLD_GLOBAL);
@@ -109,9 +163,16 @@ static void uwsgi_gccgo_initialize() {
uwsgi_log("unable to open go shared library: %s\n", dlerror());
exit(1);
}
uwsgi_log("[uwsgi-gccgo] loaded %s\n", usl->value);
uwsgigo_hook_init = dlsym(handle, "__go_init_main");
uwsgigo_hook_main = dlsym(handle, "main.main");
void *g_init = dlsym(handle, "__go_init_main");
void *g_main = dlsym(handle, "main.main");
if (g_init && g_main) {
uwsgigo_hook_init = g_init;
uwsgigo_hook_main = g_main;
uwsgi_log("[uwsgi-gccgo] loaded %s as main\n", usl->value);
}
else {
uwsgi_log("[uwsgi-gccgo] loaded %s\n", usl->value);
}
usl = usl->next;
}
@@ -119,27 +180,27 @@ static void uwsgi_gccgo_initialize() {
return;
}
ugccgo.initialized = 1;
// Go runtime initialization
int argc = 0;
if (ugccgo.args) {
char *argv_list = uwsgi_str(ugccgo.args);
char *p = strtok(argv_list, " ");
while(p) {
char *p, *ctx = NULL;
uwsgi_foreach_token(argv_list, " ", p, ctx) {
argc++;
p = strtok(NULL, " ");
}
free(argv_list);
}
runtime_check();
if (argc > 0) {
char **argv = uwsgi_calloc(sizeof(char *) * (argc + 1));
char **argv = uwsgi_calloc(sizeof(char *) * (argc + 2));
char *argv_list = uwsgi_str(ugccgo.args);
char *p = strtok(argv_list, " ");
char *p, *ctx = NULL;
int n = 0;
while(p) {
uwsgi_foreach_token(argv_list, " ", p, ctx) {
argv[n] = p;
n++;
p = strtok(NULL, " ");
}
runtime_args(argc, argv);
}
@@ -147,6 +208,7 @@ static void uwsgi_gccgo_initialize() {
char *argv[2] = {0,0};
runtime_args(0, argv);
}
runtime_osinit();
runtime_schedinit();
__go_go(mainstart, NULL);
@@ -155,6 +217,10 @@ static void uwsgi_gccgo_initialize() {
}
static int uwsgi_gccgo_request(struct wsgi_request *wsgi_req) {
if (!ugccgo.initialized) {
uwsgi_log("!!! Go runtime not initialized !!!\n");
goto end;
}
/* Standard GO request */
if (!wsgi_req->uh->pktsize) {
uwsgi_log("Empty GO request. skip.\n");
@@ -172,6 +238,7 @@ static int uwsgi_gccgo_request(struct wsgi_request *wsgi_req) {
i++;
}
uwsgigo_request(wsgi_req->async_environ, wsgi_req);
end:
return UWSGI_OK;
}
@@ -180,15 +247,204 @@ static void uwsgi_gccgo_after_request(struct wsgi_request *wsgi_req) {
}
static int uwsgi_gccgo_signal_handler(uint8_t signum, void *handler) {
if (!ugccgo.initialized) return -1;
uwsgigo_signal_handler(handler, signum);
return 0;
}
#define free_req_queue pthread_mutex_lock(&ugccgo.wsgi_req_lock);uwsgi.async_queue_unused_ptr++; uwsgi.async_queue_unused[uwsgi.async_queue_unused_ptr] = wsgi_req; pthread_mutex_unlock(&ugccgo.wsgi_req_lock)
static void uwsgi_gccgo_request_goroutine(void *arg) {
struct wsgi_request *wsgi_req = (struct wsgi_request *) arg;
// map wsgi_req to the goroutine
__go_set_closure(wsgi_req);
int ret,status;
for(;;) {
ret = uwsgi.wait_read_hook(wsgi_req->fd, uwsgi.shared->options[UWSGI_OPTION_SOCKET_TIMEOUT]);
wsgi_req->switches++;
if (ret <= 0) {
goto end;
}
retry:
status = wsgi_req->socket->proto(wsgi_req);
if (status < 0) {
goto end;
}
else if (status == 0) {
break;
}
if (uwsgi_is_again()) continue;
goto retry;
}
#ifdef UWSGI_ROUTING
if (uwsgi_apply_routes(wsgi_req) == UWSGI_ROUTE_BREAK) {
goto end;
}
#endif
for(;;) {
if (uwsgi.p[wsgi_req->uh->modifier1]->request(wsgi_req) <= UWSGI_OK) {
goto end;
}
wsgi_req->switches++;
// yield
runtime_gosched();
}
end:
uwsgi_close_request(wsgi_req);
free_req_queue;
}
static struct wsgi_request *uwsgi_gccgo_current_wsgi_req(void) {
return (struct wsgi_request *) __go_get_closure();
}
static int uwsgi_gccgo_wait_read_hook(int fd, int timeout) {
void *pdesc = runtime_pollOpen(fd);
int64_t t = (uwsgi_micros() * 1000LL) + (((int64_t)timeout) * 1000LL * 1000LL * 1000LL);
runtime_pollSetDeadline(pdesc, t, 'r');
int ret = runtime_pollWait(pdesc, 'r');
runtime_pollUnblock(pdesc);
runtime_pollClose(pdesc);
if (ret == 0) return 1;
// timeout
if (ret == 2) return 0;
return -1;
}
static int uwsgi_gccgo_wait_write_hook(int fd, int timeout) {
void *pdesc = runtime_pollOpen(fd);
int64_t t = (uwsgi_micros() * 1000LL) + (((int64_t)timeout) * 1000LL * 1000LL * 1000LL);
runtime_pollSetDeadline(pdesc, t, 'w');
int ret = runtime_pollWait(pdesc, 'w');
runtime_pollUnblock(pdesc);
runtime_pollClose(pdesc);
if (ret == 0) return 1;
// timeout
if (ret == 2) return 0;
return -1;
}
/*
this goroutine manages signals
*/
static void uwsgi_gccgo_signal_goroutine(void *arg) {
int *fd = (int *) arg;
void *pdesc = runtime_pollOpen(*fd);
for(;;) {
runtime_pollWait(pdesc, 'r');
retry:
uwsgi_receive_signal(*fd, "worker", uwsgi.mywid);
if (uwsgi_is_again()) continue;
goto retry;
}
}
static void uwsgi_gccgo_socket_goroutine(void *arg) {
struct uwsgi_socket *uwsgi_sock = (struct uwsgi_socket *) arg;
struct wsgi_request *wsgi_req = NULL;
void *pdesc = runtime_pollOpen(uwsgi_sock->fd);
// wait for connection
for(;;) {
runtime_pollWait(pdesc, 'r');
retry:
pthread_mutex_lock(&ugccgo.wsgi_req_lock);
wsgi_req = find_first_available_wsgi_req();
pthread_mutex_unlock(&ugccgo.wsgi_req_lock);
if (wsgi_req == NULL) {
uwsgi_async_queue_is_full(uwsgi_now());
// try rescheduling...
// we do not use runtime_gosched() as we want to call the netpoll loop too
runtime_pollUnblock(pdesc);
runtime_pollClose(pdesc);
pdesc = runtime_pollOpen(uwsgi_sock->fd);
continue;
}
// fill wsgi_request structure
wsgi_req_setup(wsgi_req, wsgi_req->async_id, uwsgi_sock );
// mark core as used
uwsgi.workers[uwsgi.mywid].cores[wsgi_req->async_id].in_request = 1;
// accept the connection (since uWSGI 1.5 all of the sockets are non-blocking)
if (wsgi_req_simple_accept(wsgi_req, uwsgi_sock->fd)) {
uwsgi.workers[uwsgi.mywid].cores[wsgi_req->async_id].in_request = 0;
free_req_queue;
if (uwsgi_is_again()) continue;
goto retry;
}
wsgi_req->start_of_request = uwsgi_micros();
wsgi_req->start_of_request_in_sec = wsgi_req->start_of_request/1000000;
// enter harakiri mode
if (uwsgi.shared->options[UWSGI_OPTION_HARAKIRI] > 0) {
set_harakiri(uwsgi.shared->options[UWSGI_OPTION_HARAKIRI]);
}
// spawn the new goroutine
__go_go(uwsgi_gccgo_request_goroutine, wsgi_req);
goto retry;
}
}
static void uwsgi_gccgo_loop() {
if (!ugccgo.initialized) {
uwsgi_log("no go.main code loaded !!!\n");
exit(1);
}
// initialize the log protecting the wsgi_req structures
pthread_mutex_init(&ugccgo.wsgi_req_lock, NULL);
// hooks
uwsgi.current_wsgi_req = uwsgi_gccgo_current_wsgi_req;
uwsgi.wait_write_hook = uwsgi_gccgo_wait_write_hook;
uwsgi.wait_read_hook = uwsgi_gccgo_wait_read_hook;
// ininitialize Go I/O loop
runtime_netpollinit();
if (uwsgi.signal_socket > -1) {
__go_go(uwsgi_gccgo_signal_goroutine, &uwsgi.signal_socket);
__go_go(uwsgi_gccgo_signal_goroutine, &uwsgi.my_signal_socket);
}
// start a goroutine for each socket
struct uwsgi_socket *uwsgi_sock = uwsgi.sockets;
while(uwsgi_sock) {
if (!uwsgi_sock->next) {
uwsgi_gccgo_socket_goroutine(uwsgi_sock);
}
else {
__go_go(uwsgi_gccgo_socket_goroutine, uwsgi_sock);
}
uwsgi_sock = uwsgi_sock->next;
}
// never here
}
static void uwsgi_gccgo_on_load() {
uwsgi_register_loop( (char *) "go", uwsgi_gccgo_loop);
uwsgi_register_loop( (char *) "goroutine", uwsgi_gccgo_loop);
uwsgi_register_loop( (char *) "goroutines", uwsgi_gccgo_loop);
}
struct uwsgi_plugin gccgo_plugin = {
.name = "gccgo",
.modifier1 = 11,
.options = uwsgi_gccgo_options,
//.on_load = uwsgi_gccgo_on_load,
.on_load = uwsgi_gccgo_on_load,
.request = uwsgi_gccgo_request,
.after_request = uwsgi_gccgo_after_request,
.post_fork = uwsgi_gccgo_initialize,
+45 -2
View File
@@ -1,5 +1,12 @@
package uwsgi
/*
this is a very low-level module, full of performance hacks
do not take it as a good example of go coding...
*/
import (
"strings"
"net/http"
@@ -20,17 +27,27 @@ func uwsgi_response_add_header(*interface{}, *byte, uint16, *byte, uint16) int
func uwsgi_request_body_read(*interface{}, *byte, uint64) int
//extern uwsgi_gccgo_helper_register_signal
func uwsgi_register_signal(uint8, *byte, func(uint8)) int
//extern uwsgi_cache_magic_get
func uwsgi_cache_magic_get(*byte, uint16, *uint64, *uint64, *byte) *byte;
//extern __go_byte_array_to_string
func __go_byte_array_to_string(*byte, int) string
//extern free
func free(* byte)
var uwsgi_signals_gc [256]func(uint8)
var uwsgi_env_gc map[interface{}]interface{}
func Env(wsgi_req *interface{}) *map[string]string {
var env map[string]string
env = make(map[string]string)
uwsgi_env_gc[wsgi_req] = &env
return &env
}
func EnvAdd(env *map[string]string, k *[65536]byte, kl uint16, v *[65536]byte, vl uint16) {
(*env)[ string((*k)[0:kl]) ] = string((*v)[0:vl])
func EnvAdd(env *map[string]string, k *byte, kl uint16, v *byte, vl uint16) {
s_k := __go_byte_array_to_string(k, int(kl))
s_v := __go_byte_array_to_string(v, int(vl))
(*env)[ s_k ] = s_v
}
type ResponseWriter struct {
@@ -98,9 +115,13 @@ func RequestHandler(env *map[string]string, wsgi_req *interface{}) {
w := ResponseWriter{httpReq, wsgi_req,http.Header{},false}
http.DefaultServeMux.ServeHTTP(&w, httpReq)
}
delete(uwsgi_env_gc, wsgi_req)
}
func RegisterSignal(signum uint8, receiver string, handler func(uint8)) bool {
if (receiver == "") {
receiver = "worker"
}
var b []byte = []byte(receiver)
if (uwsgi_register_signal(signum, &b[0], handler) < 0) {
return false
@@ -109,10 +130,32 @@ func RegisterSignal(signum uint8, receiver string, handler func(uint8)) bool {
return true
}
// get an item from the cache
func CacheGet(key string, cache string) string {
var b_key []byte = []byte(key)
var v_len uint64 = 0
var expires uint64 = 0
var value *byte
if (cache == "") {
value = uwsgi_cache_magic_get(&b_key[0], uint16(len(b_key)), &v_len, &expires, nil)
} else {
b_cache := []byte(cache)
value = uwsgi_cache_magic_get(&b_key[0], uint16(len(b_key)), &v_len, &expires, &b_cache[0])
}
ret := __go_byte_array_to_string(value, int(v_len))
free(value)
return ret
}
func SignalHandler(handler func(uint8), signum uint8) {
handler(signum)
}
func Run() {
uwsgi_env_gc = make(map[interface{}]interface{})
uwsgi_takeover()
}
+13
View File
@@ -0,0 +1,13 @@
import os
NAME='gccgo'
CFLAGS = ['-g']
LDFLAGS = []
LIBS = ['-lgo']
GCC_LIST = ['gccgo_plugin', 'uwsgi.go']
def post_build(config):
if os.path.exists('plugins/gccgo/uwsgi.go.o'):
if os.system("objcopy -j .go_export plugins/gccgo/uwsgi.go.o plugins/gccgo/uwsgi.gox") != 0:
os._exit(1)
print("*** uwsgi.gox available in %s/plugins/gccgo ***" % os.getcwd())
+72 -16
View File
@@ -19,14 +19,40 @@ static void uwsgi_opt_setup_gevent(char *opt, char *value, void *null) {
static struct uwsgi_option gevent_options[] = {
{"gevent", required_argument, 0, "a shortcut enabling gevent loop engine with the specified number of async cores and optimal parameters", uwsgi_opt_setup_gevent, NULL, UWSGI_OPT_THREADS},
{"gevent-monkey-patch", no_argument, 0, "call gevent.monkey.patch_all() automatically on startup", uwsgi_opt_true, &ugevent.monkey, 0},
{"gevent-wait-for-hub", no_argument, 0, "wait for gevent hub's death instead of the control greenlet", uwsgi_opt_true, &ugevent.wait_for_hub, 0},
{0, 0, 0, 0, 0, 0, 0},
};
/*
Dumb greenlet used for controlling the shutdown (originally uWSGI only wait for the hub)
*/
PyObject *py_uwsgi_gevent_ctrl_gl(PyObject *self, PyObject *args) {
for(;;) {
PyObject *gevent_sleep_args = PyTuple_New(1);
PyTuple_SetItem(gevent_sleep_args, 0, PyInt_FromLong(60));
PyObject *gswitch = PyEval_CallObject(ugevent.greenlet_switch, gevent_sleep_args);
// could be NULL on exception
if (!gswitch) {
// just for being paranid
if (PyErr_Occurred()) {
PyErr_Clear();
break;
}
}
Py_XDECREF(gswitch);
Py_DECREF(gevent_sleep_args);
}
Py_INCREF(Py_None);
return Py_None;
}
PyObject *py_uwsgi_gevent_graceful(PyObject *self, PyObject *args) {
int running_cores = 0;
int rounds = 0;
uwsgi_log("Gracefully killing worker %d (pid: %d)...\n", uwsgi.mywid, uwsgi.mypid);
uwsgi.workers[uwsgi.mywid].manage_next_request = 0;
@@ -41,29 +67,34 @@ PyObject *py_uwsgi_gevent_graceful(PyObject *self, PyObject *args) {
}
uwsgi_log_verbose("main gevent watchers stopped for worker %d (pid: %d)...\n", uwsgi.mywid, uwsgi.mypid);
int running_cores = 0;
retry:
running_cores = 0;
for(i=0;i<uwsgi.async;i++) {
if (uwsgi.workers[uwsgi.mywid].cores[i].in_request) {
struct wsgi_request *wsgi_req = &uwsgi.workers[uwsgi.mywid].cores[i].req;
uwsgi_log_verbose("worker %d (pid: %d) core %d is managing \"%.*s %.*s\" for %.*s\n", uwsgi.mywid, uwsgi.mypid, i,
wsgi_req->method_len, wsgi_req->method, wsgi_req->uri_len, wsgi_req->uri,
wsgi_req->remote_addr_len, wsgi_req->remote_addr);
if (!rounds) {
uwsgi_log_verbose("worker %d (pid: %d) core %d is managing \"%.*s %.*s\" for %.*s\n", uwsgi.mywid, uwsgi.mypid, i,
wsgi_req->method_len, wsgi_req->method, wsgi_req->uri_len, wsgi_req->uri,
wsgi_req->remote_addr_len, wsgi_req->remote_addr);
}
running_cores++;
}
}
if (running_cores > 0) {
uwsgi_log_verbose("waiting for %d running requests on worker %d (pid: %d)...\n", running_cores, uwsgi.mywid, uwsgi.mypid);
} else {
// no need to worry about freeing memory
PyObject *uwsgi_dict = get_uwsgi_pydict("uwsgi");
if (uwsgi_dict) {
PyObject *ae = PyDict_GetItemString(uwsgi_dict, "atexit");
if (ae) {
python_call(ae, PyTuple_New(0), 0, NULL);
}
}
}
PyObject *gevent_sleep_args = PyTuple_New(1);
PyTuple_SetItem(gevent_sleep_args, 0, PyInt_FromLong(1));
PyObject *gswitch = python_call(ugevent.greenlet_switch, gevent_sleep_args, 0, NULL);
Py_DECREF(gswitch);
Py_DECREF(gevent_sleep_args);
rounds++;
goto retry;
}
if (!ugevent.wait_for_hub) {
PyObject_CallMethod(ugevent.ctrl_gl, "kill", NULL);
}
Py_INCREF(Py_None);
return Py_None;
@@ -260,7 +291,9 @@ request:
}
end:
Py_DECREF(greenlet_switch);
if (greenlet_switch) {
Py_DECREF(greenlet_switch);
}
end2:
Py_DECREF(current_greenlet);
@@ -300,6 +333,7 @@ PyMethodDef uwsgi_gevent_signal_def[] = { {"uwsgi_gevent_signal", py_uwsgi_geven
PyMethodDef uwsgi_gevent_my_signal_def[] = { {"uwsgi_gevent_my_signal", py_uwsgi_gevent_my_signal, METH_VARARGS, ""} };
PyMethodDef uwsgi_gevent_signal_handler_def[] = { {"uwsgi_gevent_signal_handler", py_uwsgi_gevent_signal_handler, METH_VARARGS, ""} };
PyMethodDef uwsgi_gevent_unix_signal_handler_def[] = { {"uwsgi_gevent_unix_signal_handler", py_uwsgi_gevent_graceful, METH_VARARGS, ""} };
PyMethodDef uwsgi_gevent_ctrl_gl_def[] = { {"uwsgi_gevent_ctrl_gl_handler", py_uwsgi_gevent_ctrl_gl, METH_VARARGS, ""} };
static void gil_gevent_get() {
pthread_setspecific(up.upt_gil_key, (void *) PyGILState_Ensure());
@@ -450,8 +484,21 @@ static void gevent_loop() {
python_call(ugevent.signal, ge_signal_tuple, 0, NULL);
PyObject *wait_for_me = ugevent.hub;
if (!ugevent.wait_for_hub) {
// spawn the control greenlet
PyObject *uwsgi_greenlet_ctrl_gl_handler = PyCFunction_New(uwsgi_gevent_ctrl_gl_def, NULL);
Py_INCREF(uwsgi_greenlet_ctrl_gl_handler);
PyObject *ctrl_gl_args = PyTuple_New(1);
PyTuple_SetItem(ctrl_gl_args, 0, uwsgi_greenlet_ctrl_gl_handler);
ugevent.ctrl_gl = python_call(ugevent.spawn, ctrl_gl_args, 0, NULL);
Py_INCREF(ugevent.ctrl_gl);
wait_for_me = ugevent.ctrl_gl;
}
for(;;) {
if (!PyObject_CallMethod(ugevent.hub, "join", NULL)) {
if (!PyObject_CallMethod(wait_for_me, "join", NULL)) {
PyErr_Print();
}
else {
@@ -459,6 +506,15 @@ static void gevent_loop() {
}
}
// no need to worry about freeing memory
PyObject *uwsgi_dict = get_uwsgi_pydict("uwsgi");
if (uwsgi_dict) {
PyObject *ae = PyDict_GetItemString(uwsgi_dict, "atexit");
if (ae) {
python_call(ae, PyTuple_New(0), 0, NULL);
}
}
if (uwsgi.workers[uwsgi.mywid].manage_next_request == 0) {
uwsgi_log("goodbye to the gevent Hub on worker %d (pid: %d)\n", uwsgi.mywid, uwsgi.mypid);
if (ugevent.destroy) {
+2
View File
@@ -51,7 +51,9 @@ struct uwsgi_gevent {
PyObject *my_signal_watcher;
PyObject *signal_watcher;
PyObject **watchers;
PyObject *ctrl_gl;
int destroy;
int monkey;
int wait_for_hub;
};
+2 -7
View File
@@ -1,10 +1,6 @@
#include <uwsgi.h>
#include <api/glfs.h>
#ifdef UWSGI_MATHEVAL
#error currently the glusterfs plugins is not compatible with uWSGI built with matheval support
#endif
extern struct uwsgi_server uwsgi;
/*
@@ -117,13 +113,12 @@ connect:
static void uwsgi_glusterfs_connect_do(struct uwsgi_app *ua) {
char *servers = uwsgi_str(ua->callable);
char *p = strtok(servers, ";");
while(p) {
char *p, *ctx = NULL;
uwsgi_foreach_token(servers, ";", p, ctx) {
uwsgi_log("[glusterfs] try connect to %s for mountpoint %.*s on worker %d ...\n", p, ua->mountpoint_len, ua->mountpoint, uwsgi.mywid);
if (uwsgi_glusterfs_try(ua, p)) {
goto end;
}
p = strtok(NULL, ";");
}
end:
free(servers);
+40 -4
View File
@@ -16,6 +16,22 @@ static struct uwsgi_option greenlet_options[] = {
{ 0, 0, 0, 0, 0, 0, 0 }
};
struct wsgi_request *uwsgi_greenlet_current_wsgi_req(void) {
struct wsgi_request *wsgi_req = NULL;
PyObject *current_greenlet = (PyObject *)PyGreenlet_GetCurrent();
PyObject *py_wsgi_req = PyObject_GetAttrString(current_greenlet, "uwsgi_wsgi_req");
// not in greenlet
if (!py_wsgi_req) {
uwsgi_log("[BUG] current_wsgi_req NOT FOUND !!!\n");
goto end;
}
wsgi_req = (struct wsgi_request*) PyLong_AsLong(py_wsgi_req);
Py_DECREF(py_wsgi_req);
end:
Py_DECREF(current_greenlet);
return wsgi_req;
}
static void gil_greenlet_get() {
pthread_setspecific(up.upt_gil_key, (void *) PyGILState_Ensure());
}
@@ -26,9 +42,11 @@ static void gil_greenlet_release() {
static PyObject *py_uwsgi_greenlet_request(PyObject * self, PyObject *args) {
struct wsgi_request *wsgi_req = uwsgi.wsgi_req;
async_schedule_to_req_green();
Py_DECREF(ugl.gl[uwsgi.wsgi_req->async_id]);
Py_DECREF(ugl.gl[wsgi_req->async_id]);
Py_INCREF(Py_None);
return Py_None;
@@ -46,6 +64,7 @@ static void greenlet_schedule_to_req() {
if (!uwsgi.wsgi_req->suspended) {
ugl.gl[id] = PyGreenlet_New(ugl.callable, NULL);
PyObject_SetAttrString((PyObject *)ugl.gl[id], "uwsgi_wsgi_req", PyLong_FromLong((long) uwsgi.wsgi_req));
uwsgi.wsgi_req->suspended = 1;
}
@@ -54,7 +73,13 @@ static void greenlet_schedule_to_req() {
uwsgi.p[modifier1]->suspend(NULL);
}
PyGreenlet_Switch(ugl.gl[id], NULL, NULL);
PyObject *ret = PyGreenlet_Switch(ugl.gl[id], NULL, NULL);
if (!ret) {
PyErr_Print();
uwsgi_log_verbose("[BUG] unable to switch greenlet !!!\n");
exit(1);
}
Py_DECREF(ret);
if (uwsgi.p[modifier1]->resume) {
uwsgi.p[modifier1]->resume(NULL);
@@ -71,7 +96,13 @@ static void greenlet_schedule_to_main(struct wsgi_request *wsgi_req) {
if (uwsgi.p[wsgi_req->uh->modifier1]->suspend) {
uwsgi.p[wsgi_req->uh->modifier1]->suspend(wsgi_req);
}
PyGreenlet_Switch(ugl.main, NULL, NULL);
PyObject *ret = PyGreenlet_Switch(ugl.main, NULL, NULL);
if (!ret) {
PyErr_Print();
uwsgi_log_verbose("[BUG] unable to switch greenlet !!!\n");
exit(1);
}
Py_DECREF(ret);
if (uwsgi.p[wsgi_req->uh->modifier1]->resume) {
uwsgi.p[wsgi_req->uh->modifier1]->resume(wsgi_req);
}
@@ -93,7 +124,10 @@ static void greenlet_init_apps(void) {
up.gil_release = gil_greenlet_release;
}
// blindy call it as the stackless gil engine is already set
// map wsgi_req to greenlet object
uwsgi.current_wsgi_req = uwsgi_greenlet_current_wsgi_req;
// blindly call it as the stackless gil engine is already set
UWSGI_GET_GIL
@@ -101,7 +135,9 @@ static void greenlet_init_apps(void) {
ugl.gl = uwsgi_malloc( sizeof(PyGreenlet *) * uwsgi.async );
ugl.main = PyGreenlet_GetCurrent();
Py_INCREF(ugl.main);
ugl.callable = PyCFunction_New(uwsgi_greenlet_request_method, NULL);
Py_INCREF(ugl.callable);
uwsgi_log("enabled greenlet engine\n");
uwsgi.schedule_to_main = greenlet_schedule_to_main;
+1 -1
View File
@@ -139,7 +139,7 @@ void uwsgi_opt_https2(char *opt, char *value, void *cr) {
#ifdef UWSGI_SPDY
spdyerror:
uwsgi_log("unable to inizialize SPDY settings buffers\n");
uwsgi_log("unable to initialize SPDY settings buffers\n");
exit(1);
#endif
}
+5 -4
View File
@@ -127,7 +127,7 @@ JNIEXPORT jobject JNICALL uwsgi_jvm_api_rpc(JNIEnv *env, jclass c, jobject j_arg
char *argv[256];
uint16_t argvs[256];
jobject argvj[256];
uint16_t size = 0;
uint64_t size = 0;
size_t args = uwsgi_jvm_array_len(j_args);
if (args < 2) return NULL;
@@ -1277,7 +1277,7 @@ void uwsgi_jvm_release_bytearray(jobject o, char *str) {
(*ujvm_env)->ReleaseByteArrayElements(ujvm_env, o, (jbyte *)str, 0);
}
static uint16_t uwsgi_jvm_rpc(void *func, uint8_t argc, char **argv, uint16_t argvs[], char *buffer) {
static uint64_t uwsgi_jvm_rpc(void *func, uint8_t argc, char **argv, uint16_t argvs[], char **buffer) {
jvalue args[1];
jobject str_array = (*ujvm_env)->NewObjectArray(ujvm_env, argc, ujvm.str_class, NULL);
if (!str_array) return 0;
@@ -1294,9 +1294,10 @@ static uint16_t uwsgi_jvm_rpc(void *func, uint8_t argc, char **argv, uint16_t ar
return 0;
}
size_t rlen = uwsgi_jvm_strlen(ret);
if (rlen <= 0xffff) {
if (rlen > 0) {
*buffer = uwsgi_malloc(rlen);
char *b = uwsgi_jvm_str2c(ret);
memcpy(buffer, b, rlen);
memcpy(*buffer, b, rlen);
uwsgi_jvm_release_chars(ret, b);
uwsgi_jvm_local_unref(ret);
return rlen;
+7 -1
View File
@@ -7,12 +7,18 @@ JVM_INCPATH = None
JVM_LIBPATH = None
operating_system = os.uname()[0].lower()
arch = os.uname()[4]
try:
arch = os.environ['JVM_ARCH']
except:
arch = os.uname()[4].lower()
if arch in ('i686', 'x86', 'x86_32'):
arch = 'i386'
elif arch in ('x86_64',):
arch = 'amd64'
elif arch.startswith('arm'):
arch = 'arm'
# try to detect the JVM
if operating_system == 'darwin':
+4 -6
View File
@@ -181,10 +181,9 @@ static void uwsgi_opt_ldap_dump_ldif(char *opt, char *foo, void *bar) {
entry = &ule[i];
char *list2 = uwsgi_concat2(entry->names + 1, "");
char *p = strtok(list2, " ");
while (p != NULL) {
char *p, *ctx = NULL;
uwsgi_foreach_token(list2, " ", p, ctx) {
uwsgi_log("%.*s $ ", strlen(p) - 2, p + 1);
p = strtok(NULL, " ");
}
free(list2);
@@ -228,10 +227,9 @@ static void uwsgi_opt_ldap_dump(char *opt, char *foo, void *bar) {
entry = &ule[i];
char *list2 = uwsgi_concat2(entry->names + 1, "");
char *p = strtok(list2, " ");
while (p != NULL) {
char *p, *ctx = NULL;
uwsgi_foreach_token(list2, " ", p, ctx) {
uwsgi_log("%.*s $ ", strlen(p) - 2, p + 1);
p = strtok(NULL, " ");
}
free(list2);

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