Compare commits

...

199 Commits
4.6.2 ... 5.0.9

Author SHA1 Message Date
Luke D. Jones
03e10610dd Bump version 2024-03-13 14:17:24 +13:00
Luke D. Jones
a6a10a5bc4 Remove a dbg 2024-03-13 14:16:41 +13:00
Luke D. Jones
0985eca7ce Fix fancurves 2024-03-13 14:14:13 +13:00
Luke D. Jones
bb7b3a81fb Bump version 2024-02-24 21:50:52 +13:00
Luke D. Jones
19607d71c3 Prep 5.0.8 release 2024-02-24 17:09:24 +13:00
Luke D. Jones
96f281d789 Remove the use of bytes in zbus signatures 2024-02-23 21:50:53 +13:00
Luke D. Jones
7613eded95 Sane defaults for asusd config 2024-02-23 14:40:00 +13:00
Luke D. Jones
50eccd2b1d Formatting and fixes 2024-02-23 12:36:16 +13:00
Luke Jones
ba54007102 Merge branch 'bugfix/persistent-theme' into 'main'
Reintroduce persistent dark/light mode

See merge request asus-linux/asusctl!180
2024-02-19 19:44:59 +00:00
Filip Binkiewicz
a028f5375f Reintroduce persistent dark/light mode 2024-02-19 19:27:56 +00:00
Luke Jones
9ec02cd727 Merge branch 'dearner-main-patch-22870' into 'main'
Added G814JZ to aura_support.ron (uses G814JI keymap)

See merge request asus-linux/asusctl!179
2024-02-14 01:40:26 +00:00
Chris Dearner
4b46ece09a Added G814JZ to aura_support.ron (uses G814JI keymap) 2024-02-05 12:49:49 +00:00
Luke D. Jones
086bbd0908 Fix the broken pipe error 2024-02-02 23:26:41 +13:00
Luke D. Jones
c94eaa473e Update TS bindings 2024-01-24 22:37:10 +13:00
Luke D. Jones
b1b809834b Reload and apply settings if config file externally changed 2024-01-24 12:19:34 +13:00
Luke D. Jones
84183288ec Fix inotify watch failing thanks to vim idiocy 2024-01-23 22:44:20 +13:00
Luke D. Jones
86cbef83b6 Reload asusd.ron if changed 2024-01-22 21:54:19 +13:00
Luke D. Jones
006fb632c4 Doc and feature fixes 2024-01-22 19:33:40 +13:00
Luke D. Jones
e3636ed8ce Update smithay-client-toolkit 2024-01-22 12:06:42 +13:00
Luke D. Jones
cfd207f251 Remove async-trait crate and set min rustc 1.75 2024-01-15 18:22:41 +13:00
Luke D. Jones
d4c68546e7 Added ability to change what EPP is linked with each throttle profile 2024-01-15 18:00:27 +13:00
Luke D. Jones
6f4a7e16dc Fixes to RCC 2024-01-05 14:21:31 +13:00
Luke D. Jones
f64253d633 Various bugfixes 2024-01-05 13:53:57 +13:00
Luke D. Jones
124c17aadc Add default issue template 2024-01-04 14:30:11 +13:00
Luke D. Jones
ab40f9fcbf Add FX705D led support 2024-01-04 09:23:37 +13:00
Luke D. Jones
5cdfa5a8d4 Fix to suspend process in anime thread to let custom anims run on wake 2023-12-27 11:24:39 +13:00
Luke D. Jones
ce870cd5ed Revert egui update due to a lot of issues arising from window closing 2023-12-27 10:13:26 +13:00
Luke D. Jones
4541d2e1ba Update dbus introspection 2023-12-26 11:56:47 +13:00
Luke D. Jones
b525411fd3 Minor fixes in asusctl 2023-12-25 21:24:05 +13:00
Luke D. Jones
a867496f13 Re-enable ROGCC fan curves 2023-12-24 10:30:33 +13:00
Luke D. Jones
f421b8ee3b Fix to apply led effect in rogcc 2023-12-23 21:45:19 +13:00
Luke D. Jones
82780feb4b Update readme 2023-12-23 10:37:46 +13:00
Luke D. Jones
1e5443e206 Bugfix release 2023-12-22 11:39:17 +13:00
Luke D. Jones
027a591d26 Add cargo-vendor-filterer to pipeline 2023-12-17 21:44:33 +13:00
Luke D. Jones
e90375828d Fix: nuke some async deadlocks in fan-curves 2023-12-17 21:41:07 +13:00
Luke D. Jones
75b4d67072 Fix: force Anime power/wakeup disabled to prevent idiotic random wakes 2023-12-15 19:15:14 +13:00
Luke D. Jones
9aa332de3b New release 2023-12-15 11:50:49 +13:00
Luke D. Jones
5efd7fc6a7 Fix: Corrections to dbus signature for some keyboard power settings
Closes #423
2023-12-15 11:48:20 +13:00
Luke D. Jones
0aafe24a02 Fix: correctiosn to asusd.service
Closes #424
2023-12-15 11:48:20 +13:00
Luke D. Jones
dda6d343d9 Fix: correction to switching next fan profile
Closes #425
2023-12-15 11:48:18 +13:00
Luke D. Jones
6f39307080 remember how to tag releases 2023-12-12 22:00:37 +13:00
Luke Jones
ef63789faa Merge branch 'main' into 'main'
Added missing button, and fixed layout for Strix G18

See merge request asus-linux/asusctl!176
2023-12-12 08:58:31 +00:00
Sunehildeep Singh
c422e77ba6 Added missing button, and fixed layout for Strix G18 2023-12-12 08:58:31 +00:00
Luke D. Jones
3c234dd3c4 Release 5.0.0 2023-12-12 21:54:24 +13:00
Luke Jones
c420dd820a Merge branch '419-support-for-strix-g18-aura-g814ji-already-done-need-merge' into 'main'
Draft: Resolve "Support For Strix G18 AURA (G814JI) - Already Done, need merge"

Closes #419

See merge request asus-linux/asusctl!175
2023-12-10 20:03:55 +00:00
Luke D. Jones
a3e6fec163 Add g814ji and layout 2023-12-11 08:56:17 +13:00
Luke D. Jones
9b4e76be87 Update examples 2023-12-11 08:49:32 +13:00
Luke D. Jones
7b2125cbdf fic async deadlock in platform control 2023-12-08 20:06:22 +13:00
Luke D. Jones
694a644cc6 Revert "Fix: change epp change watch to a loop to prevent deadlock"
This reverts commit c06f78990f.
2023-12-08 20:06:22 +13:00
Luke D. Jones
922aa0c352 platform example testing 2023-12-08 17:33:27 +13:00
Luke D. Jones
c06f78990f Fix: change epp change watch to a loop to prevent deadlock 2023-12-07 20:04:21 +13:00
Luke D. Jones
5c8bb6e6ea Ensure thermal policy is set on resume and relaod 2023-12-05 19:26:49 +13:00
Luke Jones
993131d0a9 Merge branch 'fluke/dbus-refactor' into 'main'
Fluke/dbus refactor

See merge request asus-linux/asusctl!173
2023-12-03 20:44:01 +00:00
Luke Jones
0a69c23288 Fluke/dbus refactor 2023-12-03 20:44:01 +00:00
Luke D. Jones
f6e4cc0626 Cleanup after changes from Platform dbus rework 2023-11-18 22:36:55 +13:00
Luke D. Jones
1f696508e7 rog-platform: refactor all related parts 2023-11-18 21:57:46 +13:00
Luke D. Jones
fa043adc99 rog-platform: add CPU and GPU tunings
rog-platform: add tunables to supported dat

Anime: fixes to how some power options work
2023-11-17 17:16:03 +13:00
Luke D. Jones
b9c2d929b3 anime: rework sleep logic 2023-11-16 13:57:42 +13:00
Luke D. Jones
eda1e920df Update changelog 2023-11-15 18:29:35 +13:00
Luke D. Jones
0de2c9e424 Anime: remove sleep animation config 2023-11-15 18:27:58 +13:00
Luke D. Jones
e88e7be8ae Anime: expose new options in CLI 2023-11-15 17:45:52 +13:00
Luke D. Jones
e470d3acc0 Anime: add dbus methods 2023-11-15 17:23:44 +13:00
Luke D. Jones
f5b3f0bc38 Fix lints on examples 2023-11-15 17:23:35 +13:00
Luke D. Jones
19497c94e0 Anime: fix data struct 2023-11-15 16:56:50 +13:00
Luke D. Jones
670eee23e8 Anime: small cleanup 2023-11-15 16:45:30 +13:00
Luke D. Jones
26309776e9 Fix test 2023-11-15 14:47:52 +13:00
Luke D. Jones
a7d5057976 Anime: propagate property config 2023-11-15 14:46:42 +13:00
Luke D. Jones
8eb9b1d4eb Anime: refactor power stuff 2023-11-15 14:29:38 +13:00
Luke D. Jones
71ee9e43ba Fix gnome-45 extension version 2023-11-14 16:49:17 +13:00
Luke D. Jones
f1b0e1288a Add missing crates 2023-11-13 11:28:34 +13:00
Luke D. Jones
35c7fd10b3 Drop sysfs_class and create dmi_id for getting identifying info with udev 2023-11-08 14:00:35 +13:00
Luke D. Jones
4c50dc259c rog-control-center: ensure brightness slider works correctly 2023-11-08 13:59:07 +13:00
Luke D. Jones
0fd0aeff88 Support Rog Ally LED modes (basic) 2023-11-07 17:24:38 +13:00
Luke Jones
fd37f41ef1 Merge branch 'sctk-0.16.1' into 'main'
cargo update -p smithay-client-toolkit v0.16.0 -> v0.16.1

Closes #407

See merge request asus-linux/asusctl!172
2023-10-11 06:30:37 +00:00
Cole Mickens
1307997122 cargo update -p smithay-client-toolkit v0.16.0 -> v0.16.1 2023-10-11 08:15:04 +02:00
Luke Jones
85187d2d8d Merge branch 'add_laptop_G513RW' into 'main'
Added preliminary support for G513RW

See merge request asus-linux/asusctl!171
2023-09-16 05:51:15 +00:00
Edwin Clement
e29a568195 Added preliminary support for G513RW 2023-09-15 20:03:02 -04:00
Luke D. Jones
6c375a9951 Prep new release 2023-09-08 13:22:15 +12:00
Luke D. Jones
4641e19c43 Fix bad keybaord layout 2023-09-04 10:19:57 +12:00
Luke D. Jones
91f0c2ea14 Fix loading of fan curves
Closes #402

Signed-off-by: Luke D. Jones <luke@ljones.dev>
2023-09-04 10:18:48 +12:00
Luke Jones
b4a8cb9de2 Merge branch 'srivatsarog-main-patch-78688' into 'main'
Update aura_support.ron

See merge request asus-linux/asusctl!169
2023-09-03 08:45:39 +00:00
Luke Jones
67bbcdb964 Merge branch 'main' into 'srivatsarog-main-patch-78688'
# Conflicts:
#   rog-aura/data/aura_support.ron
2023-09-03 08:37:52 +00:00
Luke Jones
8acfe0a9e8 Merge branch 'main' into 'main'
aura: Support for G733PZ

See merge request asus-linux/asusctl!167
2023-09-03 08:36:20 +00:00
Luke D. Jones
5f6e6ec382 gex: rename gnome-44, add gnome-45 2023-08-31 14:36:01 +12:00
Luke D. Jones
cf92526d87 Set cargo resolver 2023-08-31 12:42:31 +12:00
Luke D. Jones
f290594562 Prep release 2023-08-26 21:40:45 +12:00
Luke D. Jones
423bd54f79 Fixes: bugfixes in aura config loading 2023-08-26 21:35:38 +12:00
Luke Jones
ea0eaef8a6 Update README.md 2023-08-24 10:22:26 +00:00
Luke Jones
ef62a26148 Merge branch 'main' into 'main'
add aura support for GU603VV

See merge request asus-linux/asusctl!170
2023-08-20 06:13:20 +00:00
Yifan Zhu
2f916fa4e5 add aura support for GU603VV 2023-08-20 06:13:20 +00:00
Luke D. Jones
e42fd10404 Update deps 2023-08-14 13:20:40 +12:00
Luke D. Jones
93edd1b632 Add gv601v singlezone advanced 2023-08-13 18:22:21 +12:00
Luke D. Jones
6957a08d83 Fix: Corrections in anime detection
Closes #387
2023-08-11 09:48:22 +12:00
Luke D. Jones
98569b98e7 Remove a dbg!() x2 2023-08-10 09:50:01 +12:00
Luke D. Jones
573568d6e2 Remove a dbg!() 2023-08-10 09:49:13 +12:00
Luke D. Jones
3ec37a4dac Fix: For anime look for usbraw device before hidraw device
Closes #387
2023-08-02 14:14:08 +12:00
Luke D. Jones
11483b28a6 Fix: Further refine the CLI for fan curve control
Should close #385
2023-08-01 19:30:33 +12:00
Luke D. Jones
2cce83d164 Fix: asusd should reload defualt fan-curves if the config file fails
Closes #385
2023-08-01 09:30:54 +12:00
Luke D. Jones
42b92f3b87 Fix: reimplement fetching of fan curves on CLI
Partial close of #385
2023-08-01 09:18:27 +12:00
gabi
b652fd15a2 Update aura_support.ron 2023-07-28 06:16:39 +00:00
Luke D. Jones
9154aaa97c Add distro packaging dir + spec file for fedora 2023-07-27 10:13:10 +12:00
Interfector18
9e65921c0a aura: Support for G733PZ 2023-07-24 17:44:59 +02:00
Luke D. Jones
8d8b5e5f51 aura: support GV601V LED modes 2023-07-24 14:07:01 +12:00
Luke D. Jones
9418b63454 Bump new release 2023-07-24 10:23:05 +12:00
Luke D. Jones
2d396a49da Update crate versions 2023-07-24 10:14:24 +12:00
Luke D. Jones
a6d89a622b Various cleanup. Add GA402X LED modes 2023-07-24 10:04:10 +12:00
Luke D. Jones
51bcb0082b profiles: add mid fan curve support 2023-07-24 09:29:56 +12:00
Luke D. Jones
eb54250e4d aura: support FX505G 2023-07-24 09:28:09 +12:00
Luke D. Jones
eafc831231 gex: update xml and aura power parsing 2023-07-12 14:21:57 +12:00
Luke D. Jones
c625e97b7b Update changelog 2023-07-11 21:08:10 +12:00
Luke D. Jones
fea56879d6 Update changelog 2023-07-11 21:06:27 +12:00
Luke D. Jones
03052e129b aura: update dbus xml 2023-07-11 21:02:40 +12:00
Luke D. Jones
3dbc893905 aura: update bindings 2023-07-11 21:00:42 +12:00
Luke D. Jones
50152961c7 aura: refactor modern rog power settings 2023-07-11 20:59:43 +12:00
Luke D. Jones
8be0e7e6bf gex: update laptop feature toggle to switch primary 2023-07-06 22:00:59 +12:00
Luke D. Jones
d6d4a00fc3 gex: add keyboard LED mode setting 2023-07-04 21:22:30 +12:00
Luke D. Jones
611140716c gex: map more of dbus methods and notifs 2023-07-04 20:08:42 +12:00
Luke D. Jones
a09f7b5275 gex: parse led power from dbus 2023-07-04 18:49:52 +12:00
Luke D. Jones
823958492e rename keyboard led power dbus methods 2023-07-04 10:17:11 +12:00
Luke D. Jones
668135eab3 Update readme 2023-07-03 23:06:19 +12:00
Luke D. Jones
622e07505d gex: begin adding aura control dbus 2023-07-03 23:04:06 +12:00
Luke D. Jones
5c159d2294 Set toolchain to stable 2023-07-03 20:14:14 +12:00
Luke D. Jones
6cfa09a02b Update readme 2023-07-03 16:20:46 +12:00
Luke D. Jones
95666cc40b Update deps 2023-07-03 16:07:38 +12:00
Luke D. Jones
458d58c87c Update changelog 2023-07-03 16:05:46 +12:00
Luke D. Jones
7328ebdda3 gex: cleanup and rename 2023-07-03 15:51:26 +12:00
Luke D. Jones
14d043bbc3 RCC: add tray enable/disable, move app settings to page 2023-07-03 15:02:25 +12:00
Luke D. Jones
98dec6403c gex: adjust tsconfig 2023-07-02 21:58:50 +12:00
Luke D. Jones
3546f5bd21 gex: add toggle for anime powersave anim 2023-07-02 21:09:17 +12:00
Luke D. Jones
db1683de46 gex: temporary checking of which primary quicktoggle to use 2023-07-02 19:15:55 +12:00
Luke D. Jones
669c8ac3c7 gex: make quickmenu a module 2023-07-02 17:30:20 +12:00
Luke D. Jones
4f3a6ce1c6 gex: trial of using qucik submenu toggles 2023-07-02 11:37:36 +12:00
Luke Jones
6d3918ccf0 clean up bindings 2023-07-01 12:00:46 +00:00
Luke D. Jones
b002187b39 gex: trial of updating quicktoggle with dbus signal 2023-07-01 23:14:54 +12:00
Luke D. Jones
13965b2261 gex: add eslint, cleanup parsing of some stuff 2023-07-01 21:47:31 +12:00
Luke D. Jones
b182fbd323 gex: add anime power quicktoggle 2023-07-01 20:09:28 +12:00
Luke D. Jones
19b28f202c gex: Add slider for charge control 2023-07-01 19:17:02 +12:00
Luke D. Jones
ed51a7fa14 gex: fix and update 2023-07-01 18:03:05 +12:00
Luke D. Jones
c94358a8f3 gex: itemize the quicks and indicators 2023-07-01 17:18:11 +12:00
Luke D. Jones
2a8ca0a39a asusd: cleanup platform notifs, prevent more duplications 2023-07-01 12:31:40 +12:00
Luke D. Jones
83455a5ba3 Update deps 2023-06-30 15:57:18 +12:00
Luke D. Jones
bc776deb70 gex: more cleanup 2023-06-30 11:30:09 +12:00
Luke D. Jones
59b1059aee gex: cleanup 2023-06-30 10:43:19 +12:00
Luke D. Jones
dbe80d1914 gex: simplify build 2023-06-29 23:05:00 +12:00
Luke D. Jones
e325ebed18 gex: working quicktoggle example 2023-06-29 20:48:15 +12:00
Luke D. Jones
a743bda6e0 gex: cleanup 2023-06-29 17:42:57 +12:00
Luke D. Jones
15e6782e10 gex: map anime dbus data 2023-06-29 15:16:21 +12:00
Luke D. Jones
6b058c9922 gex: trial of dbus mthods 2023-06-29 12:58:11 +12:00
Luke D. Jones
fc8879ac24 gex: dbus class template 2023-06-28 22:50:56 +12:00
Luke D. Jones
4d2d5707a1 Begin reimplement gex to use generated bindings and dbus xml 2023-06-28 21:54:17 +12:00
Luke D. Jones
439c830311 Cleanup rog-aura usb tests 2023-06-28 10:07:11 +12:00
Luke D. Jones
91223d4ced Regenerate dbus xml 2023-06-27 22:19:29 +12:00
Luke D. Jones
7b17a13ce7 ridiculous refactor to allow enums to be dbus strings for better TS generation 2023-06-27 21:16:13 +12:00
Luke D. Jones
fca7d23a31 Update pipeline 2023-06-26 13:54:07 +12:00
Luke D. Jones
0122138b3b Add index.html 2023-06-26 13:43:06 +12:00
Luke D. Jones
7b495e7587 rcc: instant apply keyboard settings 2023-06-26 12:28:48 +12:00
Luke D. Jones
970cf9ae59 Support for G634J LED modes (layout is in progress) 2023-06-26 12:01:21 +12:00
Luke D. Jones
ad990c6ae1 Move G513I* to G513I in arua DB to catch full series of this range
Closes #336
2023-06-26 11:52:14 +12:00
Luke D. Jones
cd8cc013a4 Aura: set the LED brightness if settign a mode
Closes #355
2023-06-26 11:33:05 +12:00
Luke D. Jones
acf41c1783 Add support for mini_led_mode get/set
- asusd get/set, zbus methods
- Rog control center notification, tray menu, UI entry
2023-06-26 10:44:58 +12:00
Luke D. Jones
03c9f06569 asusctl: remove the panics from CLI
closes #364
2023-06-26 09:41:42 +12:00
Luke D. Jones
036a5018e0 Removed a duplication of charge limit notification 2023-06-25 21:15:27 +12:00
Luke D. Jones
81529b7374 Update GL503 led config 2023-06-25 20:59:26 +12:00
Luke D. Jones
2289af3ef6 Update discord link.
Closes #363
2023-06-25 20:51:17 +12:00
Luke D. Jones
633ffdf962 Support for GV601VI LED modes
Closes #370
2023-06-25 20:49:28 +12:00
Luke D. Jones
cb88c9f0e2 Fix: prevent multiple notifications from profile change 2023-06-25 20:43:43 +12:00
Luke D. Jones
8b77078a6f Animatrix: simulators, add features 2023-06-25 18:29:19 +12:00
Luke D. Jones
3d6d92ae7d Animatrix: gu604 sim 2023-06-25 16:36:19 +12:00
Luke D. Jones
55723b7b77 animatrix mapping: gu604 2023-06-25 11:39:56 +12:00
Luke D. Jones
7796ba0603 Animatrix sim: fixxess 2023-06-24 22:02:21 +12:00
Luke D. Jones
d3aababef5 animatrix simulator for ga402 2023-06-24 19:00:25 +12:00
Luke D. Jones
4611c08085 Add the missing dirs, dumbarse 2023-06-24 13:15:11 +12:00
Luke D. Jones
0a008a653a Animatrix: Default to GA402 style if Unknown, use default-workspace.
Also rename daemon crates to the bin names they use to be less confusing.

Signed-off-by: Luke D. Jones <luke@ljones.dev>
2023-06-24 12:57:03 +12:00
Luke D. Jones
cd5daa17d0 Anime: Enabled setting builtin animations 2023-06-21 13:34:08 +12:00
Luke D. Jones
a0529e0efd Better organise anime tests 2023-06-21 10:09:06 +12:00
Luke D. Jones
3e0aeea6c6 Add inotify::WatchMask::MODIFY to inotify watch mask.
Closes #362
2023-06-20 22:23:54 +12:00
Luke D. Jones
e2fb1d44b5 Anime: Diagonal asus gifs done 2023-06-20 21:58:27 +12:00
Luke D. Jones
04543eeca0 Aura: add support for Rear Glow power modes 2023-06-18 19:48:08 +12:00
Luke D. Jones
68ee62fef1 Anime: add base brightness control (dbus, cli) 2023-06-16 11:50:38 +12:00
Luke D. Jones
e523e4e9a2 Anime: GU604 images correct 2023-06-16 10:43:15 +12:00
Luke D. Jones
ea2d80cc44 Anime: incorrect dimensions and pitch 2023-06-16 00:34:45 +12:00
Luke D. Jones
40e00c4739 Anime: fixups, GU604 support 2023-06-15 23:53:24 +12:00
Luke D. Jones
cdc42193d1 Update deps 2023-06-14 20:30:42 +12:00
Luke D. Jones
3a18506510 Add "Unknown" to (not really) supported AniMe list
Intention is to allow users to at least control the power state of the
device (turn off) if the phyciscal display isn't yet supported.

Partial address of #354
2023-06-14 20:25:27 +12:00
Luke D. Jones
fa671e53d8 Add sdl32 to gitlab pipeline 2023-06-14 20:25:27 +12:00
Luke D. Jones
002dc8516d Half-arsed visuals for virtual anime 2023-06-14 20:25:27 +12:00
Luke D. Jones
2a38f69cc4 Begin implementing virtual devices for testing and stuff 2023-06-14 20:25:27 +12:00
Luke Jones
a14a37d0da Merge branch 'optional-stripping' into 'main'
Optional symbol stripping in Makefile

See merge request asus-linux/asusctl!165
2023-06-13 23:17:22 +00:00
Greg Land
b105ff5180 Optional symbol stripping in Makefile
Packaging systems have options to handle symbol stripping.  This lets
the users of the software enable or disable symbol stripping based on
their own preference or need.
2023-06-13 19:01:08 -04:00
Luke Jones
d202fcd97a Merge branch 'fix-install-program-target' into 'main'
Fixed issue preventing debug builds using Makefile

See merge request asus-linux/asusctl!163
2023-06-13 21:41:56 +00:00
Greg Land
15732ecd82 Fixed issue preventing debug builds using Makefile
install-program was always assuming that release was the only target
directory that could exist.  This would cause install-program to fail
with DEBUG=1 passed to the makefile.

DEBUG flag now correctly sets a TARGET and sets the build profile to dev
for debug builds.
2023-06-13 13:30:23 -04:00
Luke Jones
8508110ba0 Merge branch 'fix-g513qy' into 'main'
Fix broken Aura on G513QY

See merge request asus-linux/asusctl!162
2023-06-07 07:09:00 +00:00
CryoByte33
cafb64d57b Fix broken Aura on G513QY 2023-06-07 04:36:38 +02:00
Luke D. Jones
7515eafc45 Rmeove notification handle tracking limit
Fixes issue with KDE profile change notif disappearing.

closes #353
2023-05-20 19:07:40 +12:00
Luke D. Jones
b6c6f10bdf Fix test 2023-05-20 19:05:22 +12:00
Luke D. Jones
35352a8a7c Support for GL503V LED modes 2023-05-20 19:04:18 +12:00
Luke Jones
0c3bebdeb9 Merge branch 'main' into 'main'
Add led modes for GV601VI

See merge request asus-linux/asusctl!161
2023-05-16 22:57:50 +00:00
Mateo Juric
1394c12967 Add led modes for GV601VI 2023-05-17 00:04:36 +02:00
Luke D. Jones
cbc1f6f5bb Modify two TUF aura DB entries to match full range 2023-04-27 19:46:17 +12:00
198 changed files with 18695 additions and 6541 deletions

12
.gitignore vendored
View File

@@ -8,4 +8,14 @@ vendor_*
.vscode-ctags
.vscode
.~lock.*
*.ods#
*.ods#
# gnome extension
node-modules
bindings/ts/*.d.ts
bindings/ts/*.js.map
desktop-extensions/gnome*/dist
desktop-extensions/gnome*/@types/gir-generated
desktop-extensions/gnome*/node_modules
desktop-extensions/gnome*/schemas/gschemas.compiled
desktop-extensions/gnome*/*.zip

View File

@@ -17,7 +17,7 @@ image: rust:latest
- target/release/.cargo-lock
before_script:
- apt-get update -qq && apt-get install -y -qq libudev-dev libgtk-3-dev grep llvm clang libclang-dev
- apt-get update -qq && apt-get install -y -qq libudev-dev libgtk-3-dev grep llvm clang libclang-dev libsdl2-dev libsdl2-gfx-dev
stages:
- format
@@ -52,17 +52,18 @@ test:
<<: *rust_cache
script:
- mkdir -p .git/hooks > /dev/null
- cargo test
- cargo test --all
release:
only:
- tags
<<: *rust_cache
script:
- cargo install cargo-vendor-filterer
- make && make vendor
artifacts:
paths:
- vendor_asusctl_*.tar.xz
- vendor_asusctl*.tar.xz
- cargo-config
pages:
@@ -75,10 +76,10 @@ pages:
- rm -rf public
- mkdir public
- cp -R target/doc/* public
- cp misc/index.html public
- cp extra/index.html public
artifacts:
paths:
- public
variables:
GIT_SUBMODULE_STRATEGY: normal

View File

@@ -0,0 +1,24 @@
## Issue description
(Summarize the bug encountered)
## Steps to reproduce
(How can the issue be reproduced)
## What is the current bug behavior?
(What actually happens)
## What is the expected correct behavior?
(What you should see instead)
## Relevant logs and/or screenshots
(run `journalctl -b -u supergfxd > ~/supergfxd.log` and attach `~/supergfxd.log`)
(Paste any relevant logs - use code blocks (```) to format console output, logs, and code, as
it's very hard to read otherwise.)
/label ~bug ~reproducable ~needs-investigation

View File

@@ -5,8 +5,154 @@ The format is based on [Keep a Changelog](https://keepachangelog.com/en/1.0.0/),
and this project adheres to [Semantic Versioning](https://semver.org/spec/v2.0.0.html).
## [Unreleased]
## [v5.0.8]
### Changed
- Reintroduce persisting dark/light mode in config file
- Added ability to change what EPP is linked with each throttle profile
- Don't change EPP or thermal profile if the battery/ac state hasn't actually changed on resume
- Re-implement the `asusctl -s` command (not fully)
- Add more docs to some parts of code, and dbus interfaces
- Reload asusd.ron if changed. Does not notify any dbus listeners (yet)
- Fix the broken pipe error
- Remove the use of bytes in zbus signatures (another cause of broken pipe)
### Added
- Support for G614J LED modes
## [v5.0.7]
### Changed
- Fix to suspend process in anime thread to let custom anims run on wake.
- Fix to reload the fan curves correctly on boot.
- Add new config option `platform_policy_linked_epp` to set if energy_performance_preference should be paired with platform_profile/throttle_thermal_policy
- Small fixes to rog-control-center
## [v5.0.6]
- Revert egui update due to a lot of issues arising from window closing.
## [v5.0.5]
- Resync. A release was made that was missing some commits.
## [v5.0.4]
### Changed
- Added G834JZ led config
- Fix in ROGCC to apply the actual effect changed
- Re-enable all fan curves (available) in ROGCC
- Update smithay-client-toolkit
## [v5.0.3]
### Changed
- Fix and error in platform ppt value gets
- Fix to asusctl CLI where an incorrect enum variant was used in throttle check
- Turn some error messages in to warning or info to prevent confusion
- Re-add the keyboard power settings in rogcc
- Add two new aura dbus properties for providing some basic info on aura modes/power
## [v5.0.2]
### Changed
- Fan-curves: nuke a few async deadlocks
- Anime: force power/wakeup disabled to prevent idiotic random wakes
## [v5.0.1]
### Changed
- Fix setting next fan profile
- Fix the assud.service
- Fix dbus signature of some power setting types for some keyboards
## [v5.0.0]
### Added
- Gnome 45 plugin
- Support for G513RW LED modes
- Support Rog Ally LED modes (basic)
- Add on_lid_closed and on_external_power_changed events for running certain tasks
- Anime dbus: add:
- SetOffWhenUnplugged, also add asusctl CLI option
- SetOffWhenSuspended, also add asusctl CLI option
- SetOffWhenLidClosed, also add asusctl CLI option
- Anime: add brightness_on_battery config option
- Platform: add `post_animation_sound`, kernel 6.7+ requires patch
- Add changing of CPU energy perfromance preference in relation to throttle_thermal_policy. This means that the CPU correctly behaves according to throttle_thermal_policy (and platform profile use is *removed*)
- Add setting of throttle_thermal_policy on power plug/unplug
### Changed
- asusd: remove set_image_brightness for anime
- asusd: refactor how certain things like display enable/builtins are toggled
- Refactor sleep/shutdown tasks
- rog-control-center: ensure brightness slider works correctly
- Update `smithay-client-toolkit` for fix to issue #407
- Remove the "sleep" animations from Anime to stop preventing the display-off
- Anime:
- Ensure display is off when lid is closed and option is set
- Ensure display is off when on battery and option is set
- Ensure builtin animations run instead of custom animations if option is set
### Breaking
- DBUS stuff. Again. All of it.
## [v4.7.2]
### Added
- Support for G733PZ LED modes
- Support for G713RC LED modes
### Changed
- Fix loading of fan curves from stored settings
## [v4.7.1]
### Changed
- Fixes to asusctl CLI tool to show fan curves
- Fixes to asusd to ensure fan curve defaults are loaded if the config file fails
- Further refine the asusctl CLI for fan-curve control
- Fixes to AniMe detection
- Fixes to aura config creation/loading
### Added
- Support for GV601V LED modes
## [v4.7.0]
### Added
- Support for FX507Z LED modes
- Support for GL503V LED modes
- Support for G733C LED modes
- Support for GV601VI LED modes
- Support for FX505G LED modes
- Support for GA402X LED modes
- Support for G634J LED modes (layout is in progress)
- Support the Rear Glow on some laptops
- Added field to aura_support to determine which LED power zones are supported. This will need folks to contribute data.
- Support M16 matrix display
- Custom images
- Pixel gifs
- Power options
- Builtin animations
- In-progress simulators for GA402, GU604 animatrix, optional build and takes a single arg
- Add `model_override` option to anime config, this is handy for forcing a model for "Unknown" anime, and for simulators
- Add `mini_led_mode` support to asusd and zbus crates (requires kernel patch https://lkml.org/lkml/2023/6/19/1264)
- Add `mini_led_mode` toggle to rog-control-center GUI, tray, notifications
- Add generation of typescript types from the rust types used via dbus using typeshare
- Add generation of introspection XML from asusd dbus
- Add a reworked gnome extension to the main repo under `desktop-extensions/gnome/`. This was done to better keep the extension in sync with work done on asusd, especially around breaking dbus
- Add support for the mid fan custom curves on some laptops
### Changed
- Move FX506HC to FX506H in arua DB to catch full series of this range
- Move FX506LH to FX506L in arua DB to catch full series of this range
- Move G513I* to G513I in arua DB to catch full series of this range
- Remove notification handle tracking limit, fixes KDE issue with profile notif
- Rename daemon and daemon-user crates to asusd and asusd-user to not be confusing in workspace naming
- Prevent the multiple notifications from a profile change from occuring (too many functions with side effects!)
- Apply keyboard brightness when setting a mode
- Update GL503 led config
- Arua LED power control has been heavily refactored for 0x19b6+ devices
- Rog Control Center:
- Added option to enable/disable system tray
- Added button to fully quit app (exits from background)
- Moved application settings to new page
- Aura LED power refactor is now taken advantage of in RCC, exposing all settings
### BREAKING
- All Anime related DBUS methods/notifs are changed
- All dbus interfaces that handled an enum have now been forced to use the enum as String type, not uint or similar, this unfortunately breaks a heap of stuff but has the benefit of allowing asusctl to use crates to generate a typescript (or other) binding to the types being used by zbus for the proxies. The implication here is that there will be an eventual tighter integration with the gnome extension and maybe KDE also.
## [v4.6.2]
- Fix rog-control-center not reopening if `startup_in_background` is set
- Fix rog-control-center not reopening if `startup_in_background` is set
## [v4.6.1]
### Added
@@ -633,4 +779,4 @@ and this project adheres to [Semantic Versioning](https://semver.org/spec/v2.0.0
- Fix small deadlock with awaits
## [1.0.0]
## [1.0.0]

1764
Cargo.lock generated

File diff suppressed because it is too large Load Diff

View File

@@ -1,24 +1,27 @@
[workspace]
members = ["asusctl", "config-traits", "daemon", "daemon-user", "rog-platform", "rog-dbus", "rog-anime", "rog-aura", "rog-profiles", "rog-control-center"]
members = ["asusctl", "asusd", "asusd-user", "config-traits", "cpuctl", "dmi-id", "rog-platform", "rog-dbus", "rog-anime", "rog-aura", "rog-profiles", "rog-control-center", "simulators"]
default-members = ["asusctl", "asusd", "asusd-user", "cpuctl", "rog-control-center"]
resolver = "2"
[workspace.package]
version = "4.6.2"
version = "5.0.9"
rust-version = "1.75"
[workspace.dependencies]
async-trait = "^0.1"
tokio = { version = "^1.23.0", features = ["macros", "rt-multi-thread", "time", "sync"]}
tokio = { version = "^1.23.0", default-features = false, features = ["macros", "sync"]}
concat-idents = "^1.1"
dirs = "^4.0"
smol = "^1.3"
zbus = "^3.6"
logind-zbus = { version = "^3.1.0" } #, default-features = false, features = ["non_blocking"] }
zbus = "~3.14.1"
logind-zbus = { version = "~3.1" } #, default-features = false, features = ["non_blocking"] }
serde = "^1.0"
serde_derive = "^1.0"
serde_json = "^1.0"
toml = "^0.5.10"
ron = "*"
typeshare = "1.0.0"
log = "^0.4"
env_logger = "^0.10.0"
@@ -27,7 +30,6 @@ glam = { version = "^0.22", features = ["serde"] }
gumdrop = "^0.8"
udev = "^0.7"
rusb = "^0.9"
sysfs-class = "^0.1.3"
inotify = "^0.10.0"
png_pong = "^0.8"
@@ -46,6 +48,7 @@ lto = "fat"
debug = false
opt-level = 3
panic = "abort"
#codegen-units = 1
[profile.dev]
debug = true

View File

@@ -19,10 +19,15 @@ LEDCFG := aura_support.ron
SRC := Cargo.toml Cargo.lock Makefile $(shell find -type f -wholename '**/src/*.rs')
STRIP_BINARIES ?= 0
DEBUG ?= 0
ifeq ($(DEBUG),0)
ARGS += --release
TARGET = release
else
ARGS += --profile dev
TARGET = debug
endif
VENDORED ?= 0
@@ -39,11 +44,11 @@ distclean:
rm -rf .cargo vendor vendor.tar.xz
install-program:
$(INSTALL_PROGRAM) "./target/release/$(BIN_ROG)" "$(DESTDIR)$(bindir)/$(BIN_ROG)"
$(INSTALL_PROGRAM) "./target/$(TARGET)/$(BIN_ROG)" "$(DESTDIR)$(bindir)/$(BIN_ROG)"
$(INSTALL_PROGRAM) "./target/release/$(BIN_C)" "$(DESTDIR)$(bindir)/$(BIN_C)"
$(INSTALL_PROGRAM) "./target/release/$(BIN_D)" "$(DESTDIR)$(bindir)/$(BIN_D)"
$(INSTALL_PROGRAM) "./target/release/$(BIN_U)" "$(DESTDIR)$(bindir)/$(BIN_U)"
$(INSTALL_PROGRAM) "./target/$(TARGET)/$(BIN_C)" "$(DESTDIR)$(bindir)/$(BIN_C)"
$(INSTALL_PROGRAM) "./target/$(TARGET)/$(BIN_D)" "$(DESTDIR)$(bindir)/$(BIN_D)"
$(INSTALL_PROGRAM) "./target/$(TARGET)/$(BIN_U)" "$(DESTDIR)$(bindir)/$(BIN_U)"
install-data:
$(INSTALL_DATA) "./rog-control-center/data/$(BIN_ROG).desktop" "$(DESTDIR)$(datarootdir)/applications/$(BIN_ROG).desktop"
@@ -107,18 +112,39 @@ vendor:
echo 'directory = "vendor"' >> .cargo/config
mv .cargo/config ./cargo-config
rm -rf .cargo
rm -rf vendor
cargo vendor-filterer --platform x86_64-unknown-linux-gnu vendor
tar pcfJ vendor_asusctl_$(VERSION).tar.xz vendor
rm -rf vendor
bindings:
typeshare ./rog-anime/src/ --lang=typescript --output-file=bindings/ts/anime.ts
typeshare ./rog-aura/src/ --lang=typescript --output-file=bindings/ts/aura.ts
typeshare ./rog-profiles/src/ --lang=typescript --output-file=bindings/ts/profiles.ts
typeshare ./rog-platform/src/ --lang=typescript --output-file=bindings/ts/platform.ts
introspect:
gdbus introspect --system -d org.asuslinux.Daemon -o /org/asuslinux/Platform -x > bindings/dbus-xml/org-asuslinux-platform-4.xml
gdbus introspect --system -d org.asuslinux.Daemon -o /org/asuslinux/Aura -x > bindings/dbus-xml/org-asuslinux-aura-4.xml
gdbus introspect --system -d org.asuslinux.Daemon -o /org/asuslinux/Anime -x > bindings/dbus-xml/org-asuslinux-anime-4.xml
gdbus introspect --system -d org.asuslinux.Daemon -o /org/asuslinux/FanCurves -x > bindings/dbus-xml/org-asuslinux-fan-curves-4.xml
xmlstarlet ed -L -O -d '//interface[@name="org.freedesktop.DBus.Introspectable"]' bindings/dbus-xml/org-asuslinux-*
xmlstarlet ed -L -O -d '//interface[@name="org.freedesktop.DBus.Properties"]' bindings/dbus-xml/org-asuslinux-*
xmlstarlet ed -L -O -d '//interface[@name="org.freedesktop.DBus.Peer"]' bindings/dbus-xml/org-asuslinux-*
build:
ifeq ($(VENDORED),1)
cargo vendor
@echo "version = $(VERSION)"
tar pxf vendor_asusctl_$(VERSION).tar.xz
endif
cargo build $(ARGS)
strip -s ./target/release/$(BIN_C)
strip -s ./target/release/$(BIN_D)
strip -s ./target/release/$(BIN_U)
strip -s ./target/release/$(BIN_ROG)
ifneq ($(STRIP_BINARIES),0)
strip -s ./target/$(TARGET)/$(BIN_C)
strip -s ./target/$(TARGET)/$(BIN_D)
strip -s ./target/$(TARGET)/$(BIN_U)
strip -s ./target/$(TARGET)/$(BIN_ROG)
endif
.PHONY: all clean distclean install uninstall update build
.PHONY: all clean distclean install uninstall update build bindings

View File

@@ -1,8 +1,8 @@
# `asusctl` for ASUS ROG
[![](https://www.paypalobjects.com/en_US/i/btn/btn_donate_LG.gif)](https://www.paypal.com/donate/?hosted_button_id=4V2DEPS7K6APC) - [Asus Linux Website](https://asus-linux.org/)
[Become a Patron!](https://www.patreon.com/bePatron?u=7602281) - [Asus Linux Website](https://asus-linux.org/)
**WARNING:** Many features are developed in tandem with kernel patches. If you see a feature is missing you either need a patched kernel, or v6.1 which has all my work merged upstream.
**WARNING:** Many features are developed in tandem with kernel patches. If you see a feature is missing you either need a patched kernel or latest release.
`asusd` is a utility for Linux to control many aspects of various ASUS laptops
but can also be used with non-asus laptops with reduced features.
@@ -11,27 +11,27 @@ Now includes a GUI, `rog-control-center`.
## Kernel support
**The minimum supported kernel version is 5.17**
**For TUF laptops, the minimum supported kernel version is 6.1**
**The minimum supported kernel version is 6.6**
## Goals
1. To provide an interface for rootless control of some system functions most users wish to control such as fan speeds, keyboard LEDs, graphics modes.
2. Enable third-party apps to use the above with dbus methods
3. To make the above as easy as possible for new users
4. Respect the users resources: be small, light, and fast
The main goal of this work is to provide a safe and easy to use abstraction over various laptop features via DBUS, and to provide some helpful defaults and other behaviour such as toggling throttle/profile on AC/battery change.
Point 3 means that the list of supported distros is very narrow - fedora is explicitly
supported. All other distros are *not* supported (while asusd might still run fine on them).
For best support use fedora 36+ Workstation.
1. Provide safe dbus interface
2. Respect the users resources: be small, light, and fast
Point 4? asusd currently uses a tiny fraction of cpu time, and less than 1Mb of ram, the way
a system-level daemon should.
a system-level daemon should. Languages such as JS and python should never be used for system level daemons (please stop).
## Keyboard LEDs
The level of support for laptops is dependent on folks submitting data to include in [`./rog-aura/data/layouts/aura_support.ron`](./rog-aura/data/layouts/aura_support.ron), typically installed in `/usr/share/asusd/aura_support.ron`. This is because the controller used for keyboards and LEDs is used across many years and many laptop models, all with different firmware configurations - the only way to track this is with the file mentioned above. Why not just enable all by default? Because it confuses people.
See the [rog-aura readme](./rog-aura/README.md) for more details.
## Discord
[Discord server link](https://discord.gg/4ZKGd7Un5t)
[Discord server link](https://discord.gg/WTHnqabm)
## SUPPORTED LAPTOPS
@@ -41,6 +41,10 @@ to this:
```
Bus 001 Device 002: ID 0b05:1866 ASUSTek Computer, Inc. N-KEY Device
```
or
```
Bus 003 Device 002: ID 0b05:19b6 ASUSTek Computer, Inc. [unknown]
```
then it may work without tweaks. Technically all other functions except the LED
and AniMe parts should work regardless of your latop make.
@@ -48,13 +52,11 @@ and AniMe parts should work regardless of your latop make.
## Implemented
- [X] System daemon
- [X] GUI app
- [X] User notifications daemon
- [X] GUI app (includes tray and notifications)
- [X] Setting/modifying built-in LED modes
- [X] Per-key LED setting
- [X] Fancy LED modes (See examples) (currently being reworked)
- [X] Saving settings for reload
- [X] AniMatrix display on G14 models that include it
- [X] AniMatrix display on G14 and M16 models that include it
- [X] Set battery charge limit (with kernel supporting this)
- [X] Fan curve control on supported laptops (G14/G15, some TUF like FA507)
- [X] Toggle bios setting for boot/POST sound
@@ -70,7 +72,7 @@ A gui is now in the repo - ROG Control Center. At this time it is still a WIP, b
# BUILDING
Requirements are rust >= 1.57 installed from rustup.io if the distro provided version is too old, and `make`.
Requirements are rust >= 1.75 installed from rustup.io if the distro provided version is too old, and `make`.
**Ubuntu (unsuported):**
@@ -81,13 +83,13 @@ Requirements are rust >= 1.57 installed from rustup.io if the distro provided ve
sudo make install
**popos (unsuported):**
sudo apt install cmake libclang-dev libudev-dev libgtk-3-dev libclang-dev libglib2.0-dev libatkmm-1.6-dev libpangomm-1.4-dev librust-gdk-pixbuf-dev
curl --proto '=https' --tlsv1.2 -sSf https://sh.rustup.rs | sh
source "$HOME/.cargo/env"
make
sudo make install
**fedora:**
@@ -130,8 +132,16 @@ Run `sudo make uninstall` in the source repo, and remove `/etc/asusd/`.
See `CONTRIBUTING.md`. Additionally, also do `cargo clean` and `cargo test` on first checkout to ensure the commit hooks are used (via `cargo-husky`).
Generation of the bindings with `make bindings` requires `typeshare` to be installed.
Dbus introsepction XML requires with `make introspection` requires `anime_sim` to be running before starting `asusd`.
# OTHER
## AniMe Matrix simulator
A simulator using SDL2 can be built using `cargo build --package rog_simulators` and run with `./target/debug/anime_sim`. Once started `asusd` will need restarting to pick it up. If running this sim on a laptop *with* the display, the simulated display will be used instead of the physical display.
## Supporting more laptops
Please file a support request.

View File

@@ -11,16 +11,17 @@ rog_aura = { path = "../rog-aura" }
rog_dbus = { path = "../rog-dbus" }
rog_profiles = { path = "../rog-profiles" }
rog_platform = { path = "../rog-platform" }
daemon = { path = "../daemon" }
asusd = { path = "../asusd" }
dmi_id = { path = "../dmi-id" }
gumdrop.workspace = true
toml.workspace = true
sysfs-class.workspace = true
[dev-dependencies]
gif.workspace = true
tinybmp.workspace = true
glam.workspace = true
rog_dbus = { path = "../rog-dbus" }
tokio = { version = "^1.23.0", default-features = false, features = ["macros", "sync", "rt", "time"]}
cargo-husky.workspace = true

View File

@@ -10,7 +10,7 @@ use rog_dbus::RogDbusClientBlocking;
fn main() -> Result<(), Box<dyn Error>> {
let (client, _) = RogDbusClientBlocking::new().unwrap();
let args: Vec<String> = env::args().into_iter().collect();
let args: Vec<String> = env::args().collect();
if args.len() != 3 {
println!("Usage: <filepath> <brightness>");
println!("e.g, asusctl/examples/doom_large.png 0.8");

View File

@@ -15,13 +15,13 @@ fn main() {
for step in (2..50).rev() {
let mut matrix = AnimeDiagonal::new(AnimeType::GA401, None);
for c in (0..60).into_iter().step_by(step) {
for c in (0..60).step_by(step) {
for i in matrix.get_mut().iter_mut() {
i[c] = 50;
}
}
for c in (0..35).into_iter().step_by(step) {
for c in (0..35).step_by(step) {
for i in &mut matrix.get_mut()[c] {
*i = 50;
}

View File

@@ -9,7 +9,7 @@ use rog_dbus::RogDbusClientBlocking;
fn main() {
let (client, _) = RogDbusClientBlocking::new().unwrap();
let args: Vec<String> = env::args().into_iter().collect();
let args: Vec<String> = env::args().collect();
if args.len() != 3 {
println!("Please supply filepath and brightness");
return;

View File

@@ -11,7 +11,7 @@ use rog_dbus::RogDbusClientBlocking;
fn main() -> Result<(), Box<dyn Error>> {
let (client, _) = RogDbusClientBlocking::new().unwrap();
let args: Vec<String> = env::args().into_iter().collect();
let args: Vec<String> = env::args().collect();
if args.len() != 7 {
println!("Usage: <filepath> <scale> <angle> <x pos> <y pos> <brightness>");
println!("e.g, asusctl/examples/doom_large.png 0.9 0.4 0.0 0.0 0.8");

View File

@@ -14,7 +14,7 @@ use rog_dbus::RogDbusClientBlocking;
fn main() -> Result<(), Box<dyn Error>> {
let (client, _) = RogDbusClientBlocking::new().unwrap();
let args: Vec<String> = env::args().into_iter().collect();
let args: Vec<String> = env::args().collect();
if args.len() != 7 {
println!("Usage: <filepath> <scale> <angle> <x pos> <y pos> <brightness>");
println!("e.g, asusctl/examples/doom_large.png 0.9 0.4 0.0 0.0 0.8");

View File

@@ -32,7 +32,11 @@ fn main() -> Result<(), Box<dyn std::error::Error>> {
let zone = Effect::DoomFlicker(rog_aura::effects::DoomFlicker::new(
LedCode::SingleZone,
Colour(200, 110, 0),
Colour {
r: 200,
g: 110,
b: 0,
},
100,
10,
));
@@ -58,7 +62,7 @@ fn main() -> Result<(), Box<dyn std::error::Error>> {
seq.next_state(&layout);
let packets = seq.create_packets();
client.proxies().led().direct_addressing_raw(packets)?;
client.proxies().aura().direct_addressing_raw(packets)?;
std::thread::sleep(std::time::Duration::from_millis(33));
}
}

View File

@@ -1,23 +1,44 @@
use gumdrop::Options;
use rog_anime::usb::{AnimAwake, AnimBooting, AnimShutdown, AnimSleeping, Brightness};
use rog_anime::AnimeType;
#[derive(Options)]
pub struct AnimeCommand {
#[options(help = "print help message")]
pub help: bool,
#[options(meta = "", help = "override the display type")]
pub override_type: Option<AnimeType>,
#[options(meta = "", help = "enable/disable the display")]
pub enable_display: Option<bool>,
#[options(meta = "", help = "enable/disable the builtin run/powersave animation")]
pub enable_powersave_anim: Option<bool>,
#[options(
meta = "",
help = "enable/disable the panel LEDs (does not erase last image)"
help = "set global base brightness value <Off, Low, Med, High>"
)]
pub enable: Option<bool>,
#[options(
meta = "",
help = "enable/disable system animations (boot/sleep/shutdown)"
)]
pub boot_enable: Option<bool>,
#[options(meta = "", help = "set global AniMe brightness value")]
pub brightness: Option<f32>,
pub brightness: Option<Brightness>,
#[options(help = "clear the display")]
pub clear: bool,
#[options(
no_short,
meta = "",
help = "turn the anime off when external power is unplugged"
)]
pub off_when_unplugged: Option<bool>,
#[options(
no_short,
meta = "",
help = "turn the anime off when the laptop suspends"
)]
pub off_when_suspended: Option<bool>,
#[options(
no_short,
meta = "",
help = "turn the anime off when the lid is closed"
)]
pub off_when_lid_closed: Option<bool>,
#[options(no_short, meta = "", help = "Off with his head!!!")]
pub off_with_his_head: Option<bool>,
#[options(command)]
pub command: Option<AnimeActions>,
}
@@ -32,6 +53,36 @@ pub enum AnimeActions {
Gif(AnimeGif),
#[options(help = "display an animated diagonal/pixel-perfect GIF")]
PixelGif(AnimeGifDiagonal),
#[options(help = "change which builtin animations are shown")]
SetBuiltins(Builtins),
}
#[derive(Options)]
pub struct Builtins {
#[options(help = "print help message")]
pub help: bool,
#[options(
meta = "",
help = "Default is used if unspecified, <default:GlitchConstruction, StaticEmergence>"
)]
pub boot: AnimBooting,
#[options(
meta = "",
help = "Default is used if unspecified, <default:BinaryBannerScroll, RogLogoGlitch>"
)]
pub awake: AnimAwake,
#[options(
meta = "",
help = "Default is used if unspecified, <default:BannerSwipe, Starfield>"
)]
pub sleep: AnimSleeping,
#[options(
meta = "",
help = "Default is used if unspecified, <default:GlitchOut, SeeYa>"
)]
pub shutdown: AnimShutdown,
#[options(meta = "", help = "set/apply the animations <true/false>")]
pub set: Option<bool>,
}
#[derive(Options)]

View File

@@ -4,7 +4,7 @@ use gumdrop::Options;
use rog_aura::error::Error;
use rog_aura::{AuraEffect, AuraModeNum, AuraZone, Colour, Direction, Speed};
#[derive(Options)]
#[derive(Options, Debug)]
pub struct LedPowerCommand1 {
#[options(help = "print help message")]
pub help: bool,
@@ -20,65 +20,53 @@ pub struct LedPowerCommand1 {
pub sleep: Option<bool>,
}
#[derive(Options)]
#[derive(Options, Debug)]
pub struct LedPowerCommand2 {
#[options(help = "print help message")]
pub help: bool,
#[options(command)]
pub command: Option<SetAuraEnabled>,
pub command: Option<SetAuraZoneEnabled>,
}
#[derive(Options)]
pub enum SetAuraEnabled {
#[derive(Options, Debug)]
pub enum SetAuraZoneEnabled {
/// Applies to both old and new models
#[options(help = "set <keyboard, logo, lightbar> to enabled while device is awake")]
Awake(AuraEnabled),
#[options(help = "set <keyboard, logo, lightbar> to enabled while the device is booting")]
Boot(AuraEnabled),
#[options(help = "set <keyboard, logo, lightbar> to animate while the device is suspended")]
Sleep(AuraEnabled),
#[options(help = "set <keyboard, logo, lightbar> to animate while the device is shutdown")]
Shutdown(AuraEnabled),
#[options(help = "")]
Keyboard(AuraPowerStates),
#[options(help = "")]
Logo(AuraPowerStates),
#[options(help = "")]
Lightbar(AuraPowerStates),
#[options(help = "")]
Lid(AuraPowerStates),
#[options(help = "")]
RearGlow(AuraPowerStates),
}
#[derive(Debug, Clone, Default, Options)]
pub struct AuraEnabled {
#[derive(Debug, Clone, Options)]
pub struct AuraPowerStates {
#[options(help = "print help message")]
pub help: bool,
#[options(meta = "", help = "<true/false>")]
pub keyboard: Option<bool>,
#[options(meta = "", help = "<true/false>")]
pub logo: Option<bool>,
#[options(meta = "", help = "<true/false>")]
pub lightbar: Option<bool>,
#[options(meta = "", help = "<true/false>")]
pub lid: Option<bool>,
#[options(help = "defaults to false if option unused")]
pub boot: bool,
#[options(help = "defaults to false if option unused")]
pub awake: bool,
#[options(help = "defaults to false if option unused")]
pub sleep: bool,
#[options(help = "defaults to false if option unused")]
pub shutdown: bool,
}
// impl FromStr for AuraEnabled {
// type Err = Error;
// fn from_str(s: &str) -> Result<Self, Self::Err> {
// let s = s.to_lowercase();
// Ok(Self {
// help: false,
// keyboard: None,
// logo: None,
// lightbar: None,
// })
// }
// }
#[derive(Options)]
pub struct LedBrightness {
level: Option<u32>,
level: Option<u8>,
}
impl LedBrightness {
pub fn new(level: Option<u32>) -> Self {
pub fn new(level: Option<u8>) -> Self {
LedBrightness { level }
}
pub fn level(&self) -> Option<u32> {
pub fn level(&self) -> Option<u8> {
self.level
}
}

View File

@@ -1,8 +1,9 @@
use gumdrop::Options;
use rog_platform::platform::ThrottlePolicy;
use crate::anime_cli::AnimeCommand;
use crate::aura_cli::{LedBrightness, LedPowerCommand1, LedPowerCommand2, SetAuraBuiltin};
use crate::profiles_cli::{FanCurveCommand, ProfileCommand};
use crate::fan_curve_cli::FanCurveCommand;
#[derive(Default, Options)]
pub struct CliStart {
@@ -44,6 +45,24 @@ pub enum CliCommand {
Bios(BiosCommand),
}
#[derive(Debug, Clone, Options)]
pub struct ProfileCommand {
#[options(help = "print help message")]
pub help: bool,
#[options(help = "toggle to next profile in list")]
pub next: bool,
#[options(help = "list available profiles")]
pub list: bool,
#[options(help = "get profile")]
pub profile_get: bool,
#[options(meta = "", help = "set the active profile")]
pub profile_set: Option<ThrottlePolicy>,
}
#[derive(Options)]
pub struct LedModeCommand {
#[options(help = "print help message")]

View File

@@ -0,0 +1,49 @@
use gumdrop::Options;
use rog_platform::platform::ThrottlePolicy;
use rog_profiles::fan_curve_set::CurveData;
use rog_profiles::FanCurvePU;
#[derive(Debug, Clone, Options)]
pub struct FanCurveCommand {
#[options(help = "print help message")]
pub help: bool,
#[options(help = "get enabled fan profiles")]
pub get_enabled: bool,
#[options(help = "set the active profile's fan curve to default")]
pub default: bool,
#[options(
meta = "",
help = "profile to modify fan-curve for. Shows data if no options provided"
)]
pub mod_profile: Option<ThrottlePolicy>,
#[options(
meta = "",
help = "enable or disable <true/false> fan all curves for a profile. `--mod_profile` \
required"
)]
pub enable_fan_curves: Option<bool>,
#[options(
meta = "",
help = "enable or disable <true/false> a single fan curve for a profile. `--mod_profile` \
and `--fan` required"
)]
pub enable_fan_curve: Option<bool>,
#[options(
meta = "",
help = "select fan <cpu/gpu/mid> to modify. `--mod_profile` required"
)]
pub fan: Option<FanCurvePU>,
#[options(
meta = "",
help = "data format = 30c:1%,49c:2%,59c:3%,69c:4%,79c:31%,89c:49%,99c:56%,109c:58%. \
`--mod-profile` required. If '%' is omitted the fan range is 0-255"
)]
pub data: Option<CurveData>,
}

View File

@@ -5,25 +5,29 @@ use std::process::Command;
use std::thread::sleep;
use anime_cli::{AnimeActions, AnimeCommand};
use asusd::ctrl_aura::trait_impls::AURA_ZBUS_NAME;
use asusd::ctrl_fancurves::FAN_CURVE_ZBUS_NAME;
use aura_cli::{LedPowerCommand1, LedPowerCommand2};
use dmi_id::DMIID;
use fan_curve_cli::FanCurveCommand;
use gumdrop::{Opt, Options};
use profiles_cli::{FanCurveCommand, ProfileCommand};
use rog_anime::usb::get_anime_type;
use rog_anime::{AnimTime, AnimeDataBuffer, AnimeDiagonal, AnimeGif, AnimeImage, Vec2};
use rog_aura::usb::{AuraDevRog1, AuraDevRog2, AuraDevTuf, AuraDevice, AuraPowerDev};
use rog_anime::{AnimTime, AnimeDataBuffer, AnimeDiagonal, AnimeGif, AnimeImage, AnimeType, Vec2};
use rog_aura::power::KbAuraPowerState;
use rog_aura::usb::{AuraDevRog1, AuraDevTuf, AuraPowerDev};
use rog_aura::{self, AuraEffect};
use rog_dbus::RogDbusClientBlocking;
use rog_platform::platform::GpuMode;
use rog_platform::supported::*;
use rog_platform::error::PlatformError;
use rog_platform::platform::{GpuMode, Properties, ThrottlePolicy};
use rog_profiles::error::ProfileError;
use crate::aura_cli::LedBrightness;
use crate::aura_cli::{AuraPowerStates, LedBrightness};
use crate::cli_opts::*;
mod anime_cli;
mod aura_cli;
mod cli_opts;
mod profiles_cli;
mod fan_curve_cli;
fn main() {
let args: Vec<String> = args().skip(1).collect();
@@ -36,69 +40,51 @@ fn main() {
..Default::default()
},
Err(err) => {
panic!("source {}", err);
println!("Error: {}", err);
return;
}
};
let (dbus, _) = RogDbusClientBlocking::new()
.map_err(|e| {
print_error_help(&e, None);
panic!("Could not start dbus client");
})
.unwrap();
if let Ok((dbus, _)) = RogDbusClientBlocking::new().map_err(|e| {
check_service("asusd");
println!("\nError: {e}\n");
print_info();
}) {
let supported_properties = dbus.proxies().platform().supported_properties().unwrap();
let supported_interfaces = dbus.proxies().platform().supported_interfaces().unwrap();
let supported = dbus
.proxies()
.supported()
.supported_functions()
.map_err(|e| {
print_error_help(&e, None);
panic!("Could not start dbus proxy");
})
.unwrap();
if parsed.version {
println!("asusctl v{}", env!("CARGO_PKG_VERSION"));
println!();
print_info();
}
if parsed.version {
print_versions();
println!();
print_laptop_info();
}
if let Err(err) = do_parsed(&parsed, &supported, &dbus) {
print_error_help(&*err, Some(&supported));
if let Err(err) = do_parsed(&parsed, &supported_interfaces, &supported_properties, &dbus) {
print_error_help(&*err, &supported_interfaces, &supported_properties);
}
}
}
fn print_error_help(err: &dyn std::error::Error, supported: Option<&SupportedFunctions>) {
fn print_error_help(
err: &dyn std::error::Error,
supported_interfaces: &[String],
supported_properties: &[Properties],
) {
check_service("asusd");
println!("\nError: {}\n", err);
print_versions();
print_info();
println!();
print_laptop_info();
if let Some(supported) = supported {
println!();
println!("Supported laptop functions:\n\n{}", supported);
}
println!("Supported interfaces:\n\n{:#?}\n", supported_interfaces);
println!("Supported properties:\n\n{:#?}\n", supported_properties);
}
fn print_versions() {
println!("App and daemon versions:");
println!(" asusctl v{}", env!("CARGO_PKG_VERSION"));
println!(" asusd v{}", daemon::VERSION);
println!("\nComponent crate versions:");
println!(" rog-anime v{}", rog_anime::VERSION);
println!(" rog-aura v{}", rog_aura::VERSION);
println!(" rog-dbus v{}", rog_dbus::VERSION);
println!(" rog-profiles v{}", rog_profiles::VERSION);
println!("rog-platform v{}", rog_platform::VERSION);
}
fn print_laptop_info() {
let dmi = sysfs_class::DmiId::default();
let board_name = dmi.board_name().expect("Could not get board_name");
let prod_family = dmi.product_family().expect("Could not get product_family");
println!("Product family: {}", prod_family.trim());
println!("Board name: {}", board_name.trim());
fn print_info() {
let dmi = DMIID::new().unwrap_or_default();
let board_name = dmi.board_name;
let prod_family = dmi.product_family;
println!("asusctl version: {}", env!("CARGO_PKG_VERSION"));
println!(" Product family: {}", prod_family.trim());
println!(" Board name: {}", board_name.trim());
}
fn check_service(name: &str) -> bool {
@@ -120,20 +106,21 @@ fn check_service(name: &str) -> bool {
fn do_parsed(
parsed: &CliStart,
supported: &SupportedFunctions,
supported_interfaces: &[String],
supported_properties: &[Properties],
dbus: &RogDbusClientBlocking<'_>,
) -> Result<(), Box<dyn std::error::Error>> {
match &parsed.command {
Some(CliCommand::LedMode(mode)) => handle_led_mode(dbus, &supported.keyboard_led, mode)?,
Some(CliCommand::LedPow1(pow)) => handle_led_power1(dbus, &supported.keyboard_led, pow)?,
Some(CliCommand::LedPow2(pow)) => handle_led_power2(dbus, &supported.keyboard_led, pow)?,
Some(CliCommand::Profile(cmd)) => handle_profile(dbus, &supported.platform_profile, cmd)?,
Some(CliCommand::LedMode(mode)) => handle_led_mode(dbus, supported_interfaces, mode)?,
Some(CliCommand::LedPow1(pow)) => handle_led_power1(dbus, supported_interfaces, pow)?,
Some(CliCommand::LedPow2(pow)) => handle_led_power2(dbus, supported_interfaces, pow)?,
Some(CliCommand::Profile(cmd)) => handle_throttle_profile(dbus, supported_properties, cmd)?,
Some(CliCommand::FanCurve(cmd)) => {
handle_fan_curve(dbus, &supported.platform_profile, cmd)?;
handle_fan_curve(dbus, supported_interfaces, cmd)?;
}
Some(CliCommand::Graphics(_)) => do_gfx(),
Some(CliCommand::Anime(cmd)) => handle_anime(dbus, &supported.anime_ctrl, cmd)?,
Some(CliCommand::Bios(cmd)) => handle_bios_option(dbus, &supported.rog_bios_ctrl, cmd)?,
Some(CliCommand::Anime(cmd)) => handle_anime(dbus, cmd)?,
Some(CliCommand::Bios(cmd)) => handle_platform_properties(dbus, supported_properties, cmd)?,
None => {
if (!parsed.show_supported
&& parsed.kbd_bright.is_none()
@@ -145,21 +132,16 @@ fn do_parsed(
println!("{}", CliStart::usage());
println!();
if let Some(cmdlist) = CliStart::command_list() {
let dev_type = dbus.proxies().aura().device_type()?;
let commands: Vec<String> = cmdlist.lines().map(|s| s.to_owned()).collect();
for command in commands.iter().filter(|command| {
if !matches!(
supported.keyboard_led.dev_id,
AuraDevice::X1854
| AuraDevice::X1869
| AuraDevice::X1866
| AuraDevice::Tuf
) && command.trim().starts_with("led-pow-1")
if !dev_type.is_old_style()
&& !dev_type.is_tuf_style()
&& command.trim().starts_with("led-pow-1")
{
return false;
}
if supported.keyboard_led.dev_id != AuraDevice::X19b6
&& command.trim().starts_with("led-pow-2")
{
if !dev_type.is_new_style() && command.trim().starts_with("led-pow-2") {
return false;
}
true
@@ -178,31 +160,47 @@ fn do_parsed(
if let Some(brightness) = &parsed.kbd_bright {
match brightness.level() {
None => {
let level = dbus.proxies().led().led_brightness()?;
println!("Current keyboard led brightness: {}", level);
let level = dbus.proxies().aura().brightness()?;
println!("Current keyboard led brightness: {level:?}");
}
Some(level) => dbus
.proxies()
.led()
.set_brightness(<rog_aura::LedBrightness>::from(level))?,
.aura()
.set_brightness(rog_aura::LedBrightness::from(level))?,
}
}
if parsed.next_kbd_bright {
dbus.proxies().led().next_led_brightness()?;
let brightness = dbus.proxies().aura().brightness()?;
dbus.proxies().aura().set_brightness(brightness.next())?;
}
if parsed.prev_kbd_bright {
dbus.proxies().led().prev_led_brightness()?;
let brightness = dbus.proxies().aura().brightness()?;
dbus.proxies().aura().set_brightness(brightness.prev())?;
}
if parsed.show_supported {
println!("Supported laptop functions:\n\n{}", supported);
println!("Supported Core Functions:\n{:#?}", supported_interfaces);
println!(
"Supported Platform Properties:\n{:#?}",
supported_properties
);
if supported_interfaces.contains(&"Aura".to_owned()) {
let bright = dbus.proxies().aura().supported_brightness()?;
let modes = dbus.proxies().aura().supported_basic_modes()?;
let zones = dbus.proxies().aura().supported_basic_zones()?;
let power = dbus.proxies().aura().supported_power_zones()?;
println!("Supported Keyboard Brightness:\n{:#?}", bright);
println!("Supported Aura Modes:\n{:#?}", modes);
println!("Supported Aura Zones:\n{:#?}", zones);
println!("Supported Aura Power Zones:\n{:#?}", power);
}
}
if let Some(chg_limit) = parsed.chg_limit {
dbus.proxies()
.charge()
.platform()
.set_charge_control_end_threshold(chg_limit)?;
}
@@ -219,13 +217,17 @@ fn do_gfx() {
fn handle_anime(
dbus: &RogDbusClientBlocking<'_>,
_supported: &AnimeSupportedFunctions,
cmd: &AnimeCommand,
) -> Result<(), Box<dyn std::error::Error>> {
if (cmd.command.is_none()
&& cmd.enable.is_none()
&& cmd.boot_enable.is_none()
&& cmd.brightness.is_none())
&& cmd.enable_display.is_none()
&& cmd.enable_powersave_anim.is_none()
&& cmd.brightness.is_none()
&& cmd.off_when_lid_closed.is_none()
&& cmd.off_when_suspended.is_none()
&& cmd.off_when_unplugged.is_none()
&& cmd.off_with_his_head.is_none()
&& !cmd.clear)
|| cmd.help
{
println!("Missing arg or command\n\n{}", cmd.self_usage());
@@ -233,25 +235,42 @@ fn handle_anime(
println!("\n{}", lst);
}
}
if let Some(anime_turn) = cmd.enable {
dbus.proxies().anime().set_on_off(anime_turn)?;
if let Some(enable) = cmd.enable_display {
dbus.proxies().anime().set_enable_display(enable)?;
}
if let Some(anime_boot) = cmd.boot_enable {
dbus.proxies().anime().set_boot_on_off(anime_boot)?;
if let Some(enable) = cmd.enable_powersave_anim {
dbus.proxies().anime().set_builtins_enabled(enable)?;
}
if let Some(bright) = cmd.brightness {
verify_brightness(bright);
dbus.proxies().anime().set_brightness(bright)?;
}
if let Some(enable) = cmd.off_when_lid_closed {
dbus.proxies().anime().set_off_when_lid_closed(enable)?;
}
if let Some(enable) = cmd.off_when_suspended {
dbus.proxies().anime().set_off_when_suspended(enable)?;
}
if let Some(enable) = cmd.off_when_unplugged {
dbus.proxies().anime().set_off_when_unplugged(enable)?;
}
if cmd.off_with_his_head.is_some() {
println!("Did Alice _really_ make it back from Wonderland?");
}
let mut anime_type = get_anime_type()?;
if let AnimeType::Unknown = anime_type {
if let Some(model) = cmd.override_type {
anime_type = model;
}
}
if cmd.clear {
let anime_type = get_anime_type()?;
let data = vec![0u8; anime_type.data_length()];
let data = vec![255u8; anime_type.data_length()];
let tmp = AnimeDataBuffer::from_vec(anime_type, data)?;
dbus.proxies().anime().write(tmp)?;
}
if let Some(action) = cmd.command.as_ref() {
let anime_type = get_anime_type()?;
match action {
AnimeActions::Image(image) => {
if image.help_requested() || image.path.is_empty() {
@@ -362,6 +381,25 @@ fn handle_anime(
}
}
}
AnimeActions::SetBuiltins(builtins) => {
if builtins.help_requested() || builtins.set.is_none() {
println!("\nAny unspecified args will be set to default (first shown var)\n");
println!("\n{}", builtins.self_usage());
if let Some(lst) = builtins.self_command_list() {
println!("\n{}", lst);
}
return Ok(());
}
dbus.proxies()
.anime()
.set_builtin_animations(rog_anime::Animations {
boot: builtins.boot,
awake: builtins.awake,
sleep: builtins.sleep,
shutdown: builtins.shutdown,
})?;
}
}
}
Ok(())
@@ -378,9 +416,14 @@ fn verify_brightness(brightness: f32) {
fn handle_led_mode(
dbus: &RogDbusClientBlocking<'_>,
supported: &LedSupportedFunctions,
supported: &[String],
mode: &LedModeCommand,
) -> Result<(), Box<dyn std::error::Error>> {
if !supported.contains(&AURA_ZBUS_NAME.to_string()) {
println!("This laptop does not support power options");
return Err(PlatformError::NotSupported.into());
}
if mode.command.is_none() && !mode.prev_mode && !mode.next_mode {
if !mode.help {
println!("Missing arg or command\n");
@@ -390,8 +433,9 @@ fn handle_led_mode(
if let Some(cmdlist) = LedModeCommand::command_list() {
let commands: Vec<String> = cmdlist.lines().map(|s| s.to_owned()).collect();
let modes = dbus.proxies().aura().supported_basic_modes()?;
for command in commands.iter().filter(|command| {
for mode in &supported.basic_modes {
for mode in &modes {
if command
.trim()
.starts_with(&<&str>::from(mode).to_lowercase())
@@ -399,9 +443,10 @@ fn handle_led_mode(
return true;
}
}
if !supported.basic_zones.is_empty() && command.trim().starts_with("multi") {
return true;
}
// TODO
// if !supported.basic_zones.is_empty() && command.trim().starts_with("multi") {
// return true;
// }
false
}) {
println!("{}", command);
@@ -417,17 +462,31 @@ fn handle_led_mode(
return Ok(());
}
if mode.next_mode {
dbus.proxies().led().next_led_mode()?;
let mode = dbus.proxies().aura().led_mode()?;
let modes = dbus.proxies().aura().supported_basic_modes()?;
let mut pos = modes.iter().position(|m| *m == mode).unwrap() + 1;
if pos >= modes.len() {
pos = 0;
}
dbus.proxies().aura().set_led_mode(modes[pos])?;
} else if mode.prev_mode {
dbus.proxies().led().prev_led_mode()?;
let mode = dbus.proxies().aura().led_mode()?;
let modes = dbus.proxies().aura().supported_basic_modes()?;
let mut pos = modes.iter().position(|m| *m == mode).unwrap();
if pos == 0 {
pos = modes.len() - 1;
} else {
pos -= 1;
}
dbus.proxies().aura().set_led_mode(modes[pos])?;
} else if let Some(mode) = mode.command.as_ref() {
if mode.help_requested() {
println!("{}", mode.self_usage());
return Ok(());
}
dbus.proxies()
.led()
.set_led_mode(&<AuraEffect>::from(mode))?;
.aura()
.set_led_mode_data(<AuraEffect>::from(mode))?;
}
Ok(())
@@ -435,9 +494,18 @@ fn handle_led_mode(
fn handle_led_power1(
dbus: &RogDbusClientBlocking<'_>,
supported: &LedSupportedFunctions,
supported: &[String],
power: &LedPowerCommand1,
) -> Result<(), Box<dyn std::error::Error>> {
if !supported.contains(&AURA_ZBUS_NAME.to_string()) {
println!("This laptop does not support power options");
return Err(PlatformError::NotSupported.into());
}
let dev_type = dbus.proxies().aura().device_type()?;
if !dev_type.is_old_style() && !dev_type.is_tuf_style() {
println!("This option applies only to keyboards 2021+");
}
if power.awake.is_none()
&& power.sleep.is_none()
&& power.boot.is_none()
@@ -451,15 +519,12 @@ fn handle_led_power1(
return Ok(());
}
if matches!(
supported.dev_id,
AuraDevice::X1854 | AuraDevice::X1869 | AuraDevice::X1866
) {
if dev_type.is_old_style() {
handle_led_power_1_do_1866(dbus, power)?;
return Ok(());
}
if matches!(supported.dev_id, AuraDevice::Tuf) {
if dev_type.is_tuf_style() {
handle_led_power_1_do_tuf(dbus, power)?;
return Ok(());
}
@@ -492,18 +557,16 @@ fn handle_led_power_1_do_1866(
check(power.lightbar, AuraDevRog1::Lightbar);
let data = AuraPowerDev {
x1866: enabled,
x19b6: vec![],
tuf: vec![],
old_rog: enabled,
..Default::default()
};
dbus.proxies().led().set_leds_power(data, true)?;
dbus.proxies().aura().set_led_power((data, true))?;
let data = AuraPowerDev {
x1866: disabled,
x19b6: vec![],
tuf: vec![],
old_rog: disabled,
..Default::default()
};
dbus.proxies().led().set_leds_power(data, false)?;
dbus.proxies().aura().set_led_power((data, false))?;
Ok(())
}
@@ -531,27 +594,34 @@ fn handle_led_power_1_do_tuf(
check(power.keyboard, AuraDevTuf::Keyboard);
let data = AuraPowerDev {
x1866: vec![],
x19b6: vec![],
tuf: enabled,
..Default::default()
};
dbus.proxies().led().set_leds_power(data, true)?;
dbus.proxies().aura().set_led_power((data, true))?;
let data = AuraPowerDev {
x1866: vec![],
x19b6: vec![],
tuf: disabled,
..Default::default()
};
dbus.proxies().led().set_leds_power(data, false)?;
dbus.proxies().aura().set_led_power((data, false))?;
Ok(())
}
fn handle_led_power2(
dbus: &RogDbusClientBlocking<'_>,
supported: &LedSupportedFunctions,
supported: &[String],
power: &LedPowerCommand2,
) -> Result<(), Box<dyn std::error::Error>> {
if !supported.contains(&AURA_ZBUS_NAME.to_string()) {
println!("This laptop does not support power options");
return Err(PlatformError::NotSupported.into());
}
let dev_type = dbus.proxies().aura().device_type()?;
if !dev_type.is_new_style() {
println!("This option applies only to keyboards 2021+");
}
if power.command().is_none() {
if !power.help {
println!("Missing arg or command\n");
@@ -576,77 +646,36 @@ fn handle_led_power2(
return Ok(());
}
if supported.dev_id != AuraDevice::X19b6 {
println!("This option applies only to keyboards with product ID 0x19b6");
}
let mut enabled: Vec<AuraDevRog2> = Vec::new();
let mut disabled: Vec<AuraDevRog2> = Vec::new();
let mut check = |e: Option<bool>, a: AuraDevRog2| {
if let Some(arg) = e {
if arg {
enabled.push(a);
} else {
disabled.push(a);
}
}
let set = |power: &mut KbAuraPowerState, set_to: &AuraPowerStates| {
power.boot = set_to.boot;
power.awake = set_to.awake;
power.sleep = set_to.sleep;
power.shutdown = set_to.shutdown;
};
match pow {
aura_cli::SetAuraEnabled::Boot(arg) => {
check(arg.keyboard, AuraDevRog2::BootKeyb);
check(arg.logo, AuraDevRog2::BootLogo);
check(arg.lightbar, AuraDevRog2::BootBar);
check(arg.lid, AuraDevRog2::AwakeLid);
}
aura_cli::SetAuraEnabled::Sleep(arg) => {
check(arg.keyboard, AuraDevRog2::SleepKeyb);
check(arg.logo, AuraDevRog2::SleepLogo);
check(arg.lightbar, AuraDevRog2::SleepBar);
check(arg.lid, AuraDevRog2::SleepLid);
}
aura_cli::SetAuraEnabled::Awake(arg) => {
check(arg.keyboard, AuraDevRog2::AwakeKeyb);
check(arg.logo, AuraDevRog2::AwakeLogo);
check(arg.lightbar, AuraDevRog2::AwakeBar);
check(arg.lid, AuraDevRog2::AwakeLid);
}
aura_cli::SetAuraEnabled::Shutdown(arg) => {
check(arg.keyboard, AuraDevRog2::ShutdownKeyb);
check(arg.logo, AuraDevRog2::ShutdownLogo);
check(arg.lightbar, AuraDevRog2::ShutdownBar);
check(arg.lid, AuraDevRog2::ShutdownBar);
let mut enabled = dbus.proxies().aura().led_power()?;
if let Some(cmd) = &power.command {
match cmd {
aura_cli::SetAuraZoneEnabled::Keyboard(k) => set(&mut enabled.rog.keyboard, k),
aura_cli::SetAuraZoneEnabled::Logo(l) => set(&mut enabled.rog.logo, l),
aura_cli::SetAuraZoneEnabled::Lightbar(l) => set(&mut enabled.rog.lightbar, l),
aura_cli::SetAuraZoneEnabled::Lid(l) => set(&mut enabled.rog.lid, l),
aura_cli::SetAuraZoneEnabled::RearGlow(r) => set(&mut enabled.rog.rear_glow, r),
}
}
if !enabled.is_empty() {
let data = AuraPowerDev {
tuf: vec![],
x1866: vec![],
x19b6: enabled,
};
dbus.proxies().led().set_leds_power(data, true)?;
}
if !disabled.is_empty() {
let data = AuraPowerDev {
tuf: vec![],
x1866: vec![],
x19b6: disabled,
};
dbus.proxies().led().set_leds_power(data, false)?;
}
dbus.proxies().aura().set_led_power((enabled, true))?;
}
Ok(())
}
fn handle_profile(
fn handle_throttle_profile(
dbus: &RogDbusClientBlocking<'_>,
supported: &PlatformProfileFunctions,
supported: &[Properties],
cmd: &ProfileCommand,
) -> Result<(), Box<dyn std::error::Error>> {
if !supported.platform_profile {
if !supported.contains(&Properties::ThrottlePolicy) {
println!("Profiles not supported by either this kernel or by the laptop.");
return Err(ProfileError::NotSupported.into());
}
@@ -662,23 +691,27 @@ fn handle_profile(
}
return Ok(());
}
let current = dbus.proxies().platform().throttle_thermal_policy()?;
if cmd.next {
dbus.proxies().profile().next_profile()?;
dbus.proxies()
.platform()
.set_throttle_thermal_policy(current.next())?;
} else if let Some(profile) = cmd.profile_set {
dbus.proxies().profile().set_active_profile(profile)?;
dbus.proxies()
.platform()
.set_throttle_thermal_policy(profile)?;
}
if cmd.list {
let res = dbus.proxies().profile().profiles()?;
let res = ThrottlePolicy::list();
for p in &res {
println!("{:?}", p);
}
}
if cmd.profile_get {
let res = dbus.proxies().profile().active_profile()?;
println!("Active profile is {:?}", res);
println!("Active profile is {current:?}");
}
Ok(())
@@ -686,12 +719,11 @@ fn handle_profile(
fn handle_fan_curve(
dbus: &RogDbusClientBlocking<'_>,
supported: &PlatformProfileFunctions,
supported: &[String],
cmd: &FanCurveCommand,
) -> Result<(), Box<dyn std::error::Error>> {
if !supported.fan_curves {
if !supported.contains(&FAN_CURVE_ZBUS_NAME.to_string()) {
println!("Fan-curves not supported by either this kernel or by the laptop.");
println!("This requires kernel 5.17 or the fan curve patch listed in the readme.");
return Err(ProfileError::NotSupported.into());
}
@@ -707,48 +739,67 @@ fn handle_fan_curve(
return Ok(());
}
if (cmd.enabled.is_some() || cmd.fan.is_some() || cmd.data.is_some())
if (cmd.enable_fan_curves.is_some() || cmd.fan.is_some() || cmd.data.is_some())
&& cmd.mod_profile.is_none()
{
println!("--enabled, --fan, and --data options require --mod-profile");
println!(
"--enable-fan-curves, --enable-fan-curve, --fan, and --data options require \
--mod-profile"
);
return Ok(());
}
if cmd.get_enabled {
let res = dbus.proxies().profile().enabled_fan_profiles()?;
println!("{:?}", res);
let profile = dbus.proxies().platform().throttle_thermal_policy()?;
let curves = dbus.proxies().fan_curves().fan_curve_data(profile)?;
for curve in curves.iter() {
println!("{}", String::from(curve));
}
}
if cmd.default {
dbus.proxies().profile().set_active_curve_to_defaults()?;
dbus.proxies().fan_curves().set_active_curve_to_defaults()?;
}
if let Some(profile) = cmd.mod_profile {
if cmd.enabled.is_none() && cmd.data.is_none() {
let data = dbus.proxies().profile().fan_curve_data(profile)?;
if cmd.enable_fan_curves.is_none() && cmd.data.is_none() {
let data = dbus.proxies().fan_curves().fan_curve_data(profile)?;
let data = toml::to_string(&data)?;
println!("\nFan curves for {:?}\n\n{}", profile, data);
}
if let Some(enabled) = cmd.enabled {
if let Some(enabled) = cmd.enable_fan_curves {
dbus.proxies()
.profile()
.set_fan_curve_enabled(profile, enabled)?;
.fan_curves()
.set_fan_curves_enabled(profile, enabled)?;
}
if let Some(enabled) = cmd.enable_fan_curve {
if let Some(fan) = cmd.fan {
dbus.proxies()
.fan_curves()
.set_profile_fan_curve_enabled(profile, fan, enabled)?;
} else {
println!(
"--enable-fan-curves, --enable-fan-curve, --fan, and --data options require \
--mod-profile"
);
}
}
if let Some(mut curve) = cmd.data.clone() {
let fan = cmd.fan.unwrap_or_default();
curve.set_fan(fan);
dbus.proxies().profile().set_fan_curve(profile, curve)?;
dbus.proxies().fan_curves().set_fan_curve(profile, curve)?;
}
}
Ok(())
}
fn handle_bios_option(
fn handle_platform_properties(
dbus: &RogDbusClientBlocking<'_>,
supported: &RogBiosSupportedFunctions,
supported: &[Properties],
cmd: &BiosCommand,
) -> Result<(), Box<dyn std::error::Error>> {
{
@@ -765,26 +816,26 @@ fn handle_bios_option(
let usage: Vec<String> = BiosCommand::usage().lines().map(|s| s.to_owned()).collect();
for line in usage.iter().filter(|line| {
line.contains("sound") && supported.post_sound
|| line.contains("GPU") && supported.gpu_mux
|| line.contains("panel") && supported.panel_overdrive
line.contains("sound") && supported.contains(&Properties::PostAnimationSound)
|| line.contains("GPU") && supported.contains(&Properties::GpuMuxMode)
|| line.contains("panel") && supported.contains(&Properties::PanelOd)
}) {
println!("{}", line);
}
}
if let Some(opt) = cmd.post_sound_set {
dbus.proxies().rog_bios().set_post_boot_sound(opt)?;
dbus.proxies().platform().set_post_animation_sound(opt)?;
}
if cmd.post_sound_get {
let res = dbus.proxies().rog_bios().post_boot_sound()? == 1;
let res = dbus.proxies().platform().post_animation_sound()?;
println!("Bios POST sound on: {}", res);
}
if let Some(opt) = cmd.gpu_mux_mode_set {
println!("Rebuilding initrd to include drivers");
dbus.proxies()
.rog_bios()
.platform()
.set_gpu_mux_mode(GpuMode::from_mux(opt))?;
println!(
"The mode change is not active until you reboot, on boot the bios will make the \
@@ -792,15 +843,15 @@ fn handle_bios_option(
);
}
if cmd.gpu_mux_mode_get {
let res = dbus.proxies().rog_bios().gpu_mux_mode()?;
let res = dbus.proxies().platform().gpu_mux_mode()?;
println!("Bios GPU MUX: {:?}", res);
}
if let Some(opt) = cmd.panel_overdrive_set {
dbus.proxies().rog_bios().set_panel_od(opt)?;
dbus.proxies().platform().set_panel_od(opt)?;
}
if cmd.panel_overdrive_get {
let res = dbus.proxies().rog_bios().panel_od()?;
let res = dbus.proxies().platform().panel_od()?;
println!("Panel overdrive on: {}", res);
}
}

View File

@@ -1,52 +0,0 @@
use gumdrop::Options;
use rog_profiles::fan_curve_set::CurveData;
use rog_profiles::{FanCurvePU, Profile};
#[derive(Debug, Clone, Options)]
pub struct ProfileCommand {
#[options(help = "print help message")]
pub help: bool,
#[options(help = "toggle to next profile in list")]
pub next: bool,
#[options(help = "list available profiles")]
pub list: bool,
#[options(help = "get profile")]
pub profile_get: bool,
#[options(meta = "", help = "set the active profile")]
pub profile_set: Option<Profile>,
}
#[derive(Debug, Clone, Options)]
pub struct FanCurveCommand {
#[options(help = "print help message")]
pub help: bool,
#[options(help = "get enabled fan profiles")]
pub get_enabled: bool,
#[options(help = "set the active profile's fan curve to default")]
pub default: bool,
#[options(
meta = "",
help = "profile to modify fan-curve for. Shows data if no options provided"
)]
pub mod_profile: Option<Profile>,
#[options(
meta = "",
help = "enable or disable <true/false> fan curve. `mod-profile` required"
)]
pub enabled: Option<bool>,
#[options(
meta = "",
help = "select fan <cpu/gpu> to modify. `mod-profile` required"
)]
pub fan: Option<FanCurvePU>,
#[options(
meta = "",
help = "data format = 30c:1%,49c:2%,59c:3%,69c:4%,79c:31%,89c:49%,99c:56%,109c:58%.
`--mod-profile` required. If '%' is omitted the fan range is 0-255"
)]
pub data: Option<CurveData>,
}

View File

@@ -1,15 +1,11 @@
[package]
name = "daemon-user"
name = "asusd-user"
license = "MPL-2.0"
version.workspace = true
authors = ["Luke D Jones <luke@ljones.dev>"]
edition = "2021"
description = "Usermode daemon for user settings, anime, per-key lighting"
[lib]
name = "rog_user"
path = "src/lib.rs"
[[bin]]
name = "asusd-user"
path = "src/daemon.rs"

View File

@@ -136,8 +136,16 @@ impl Default for ConfigAura {
let mut seq = AuraSequences::new(false);
let mut key = Effect::Breathe(Breathe::new(
LedCode::W,
Colour(255, 0, 20),
Colour(20, 255, 0),
Colour {
r: 255,
g: 0,
b: 20,
},
Colour {
r: 20,
g: 255,
b: 0,
},
Speed::Low,
));
@@ -151,20 +159,25 @@ impl Default for ConfigAura {
let key = Effect::Breathe(Breathe::new(
LedCode::F,
Colour(255, 0, 0),
Colour(255, 0, 0),
Colour { r: 255, g: 0, b: 0 },
Colour { r: 255, g: 0, b: 0 },
Speed::High,
));
seq.push(key);
let mut key = Effect::Static(Static::new(LedCode::RCtrl, Colour(0, 0, 255)));
let mut key = Effect::Static(Static::new(LedCode::RCtrl, Colour { r: 0, g: 0, b: 255 }));
seq.push(key.clone());
key.set_led(LedCode::LCtrl);
seq.push(key.clone());
key.set_led(LedCode::Esc);
seq.push(key);
let key = Effect::DoomFlicker(DoomFlicker::new(LedCode::N9, Colour(0, 0, 255), 80, 40));
let key = Effect::DoomFlicker(DoomFlicker::new(
LedCode::N9,
Colour { r: 0, g: 0, b: 255 },
80,
40,
));
seq.push(key);
Self {

View File

@@ -22,22 +22,18 @@ pub struct Timer {
/// animation loop count
count: u64,
/// Used only for `TimeType::Timer`, milliseonds to fade the image in for
fade_in: Option<u64>,
fade_in: u64,
/// Used only for `TimeType::Timer`, milliseonds to fade the image out for
fade_out: Option<u64>,
fade_out: u64,
}
impl From<Timer> for AnimTime {
fn from(time: Timer) -> Self {
match time.type_of {
TimeType::Timer => {
if time.fade_in.is_some() || time.fade_out.is_some() {
let fade_in = time
.fade_in
.map_or(Duration::from_secs(0), Duration::from_millis);
let fade_out = time
.fade_out
.map_or(Duration::from_secs(0), Duration::from_millis);
if time.fade_in != 0 && time.fade_out != 0 {
let fade_in = Duration::from_millis(time.fade_in);
let fade_out = Duration::from_millis(time.fade_out);
let show_for = if time.count != 0 {
Some(Duration::from_millis(time.count))
} else {
@@ -360,13 +356,13 @@ impl CtrlAnime<'static> {
pub fn set_state(&mut self, on: bool) -> zbus::fdo::Result<()> {
// Operations here need to be in specific order
if on {
self.client.proxies().anime().set_on_off(on).ok();
self.client.proxies().anime().set_enable_display(on).ok();
// Let the inner loop run
self.inner_early_return.store(false, Ordering::SeqCst);
} else {
// Must make the inner run loop return early
self.inner_early_return.store(true, Ordering::SeqCst);
self.client.proxies().anime().set_on_off(on).ok();
self.client.proxies().anime().set_enable_display(on).ok();
}
Ok(())
}

View File

@@ -3,14 +3,13 @@ use std::path::PathBuf;
use std::sync::atomic::AtomicBool;
use std::sync::{Arc, Mutex};
use asusd_user::config::*;
use asusd_user::ctrl_anime::{CtrlAnime, CtrlAnimeInner};
use config_traits::{StdConfig, StdConfigLoad};
use rog_anime::usb::get_anime_type;
use rog_aura::aura_detection::LaptopLedData;
use rog_aura::layouts::KeyLayout;
use rog_dbus::RogDbusClientBlocking;
use rog_user::config::*;
use rog_user::ctrl_anime::{CtrlAnime, CtrlAnimeInner};
use rog_user::DBUS_NAME;
use rog_dbus::{RogDbusClientBlocking, DBUS_NAME};
use smol::Executor;
use zbus::Connection;
@@ -28,21 +27,24 @@ fn main() -> Result<(), Box<dyn std::error::Error>> {
.format(|buf, record| writeln!(buf, "{}: {}", record.level(), record.args()))
.init();
println!(" user daemon v{}", rog_user::VERSION);
println!(" user daemon v{}", asusd_user::VERSION);
println!(" rog-anime v{}", rog_anime::VERSION);
println!(" rog-dbus v{}", rog_dbus::VERSION);
println!("rog-platform v{}", rog_platform::VERSION);
let (client, _) = RogDbusClientBlocking::new()?;
let supported = client.proxies().supported().supported_functions()?;
let supported = client
.proxies()
.platform()
.supported_interfaces()
.unwrap_or_default()
.contains(&"Anime".to_string());
let config = ConfigBase::new().load();
let executor = Executor::new();
let early_return = Arc::new(AtomicBool::new(false));
// Set up the anime data and run loop/thread
if supported.anime_ctrl.0 {
if supported {
if let Some(cfg) = config.active_anime {
let anime_type = get_anime_type()?;
let anime_config = ConfigAnime::new().set_name(cfg).load();
@@ -100,7 +102,7 @@ fn main() -> Result<(), Box<dyn std::error::Error>> {
client
.proxies()
.led()
.aura()
.direct_addressing_raw(packets)
.unwrap();
std::thread::sleep(std::time::Duration::from_millis(33));

View File

@@ -6,6 +6,4 @@ pub mod ctrl_anime;
pub mod zbus_anime;
pub static DBUS_NAME: &str = "org.asuslinux.Daemon";
pub static VERSION: &str = env!("CARGO_PKG_VERSION");

View File

@@ -23,7 +23,10 @@
use zbus::dbus_proxy;
#[dbus_proxy(interface = "org.asuslinux.Daemon")]
#[dbus_proxy(
interface = "org.asuslinux.Daemon",
default_path = "/org/asuslinux/Anime"
)]
trait Daemon {
/// InsertAsusGif method
fn insert_asus_gif(

View File

@@ -1,5 +1,5 @@
[package]
name = "daemon"
name = "asusd"
license = "MPL-2.0"
version.workspace = true
readme = "README.md"
@@ -9,10 +9,6 @@ homepage = "https://gitlab.com/asus-linux/asus-nb-ctrl"
description = "A daemon app for ASUS GX502 and similar laptops to control missing features"
edition = "2021"
[lib]
name = "daemon"
path = "src/lib.rs"
[[bin]]
name = "asusd"
path = "src/daemon.rs"
@@ -23,9 +19,11 @@ rog_anime = { path = "../rog-anime", features = ["dbus"] }
rog_aura = { path = "../rog-aura", features = ["dbus"] }
rog_platform = { path = "../rog-platform" }
rog_profiles = { path = "../rog-profiles" }
rog_dbus = { path = "../rog-dbus" }
dmi_id = { path = "../dmi-id" }
futures-lite = "*"
udev.workspace = true
inotify.workspace = true
async-trait.workspace = true
tokio.workspace = true
# cli and logging
@@ -39,9 +37,6 @@ logind-zbus.workspace = true
serde.workspace = true
serde_derive.workspace = true
# Device control
sysfs-class.workspace = true # used for backlight control and baord ID
concat-idents.workspace = true
systemd-zbus = "*"

224
asusd/src/config.rs Normal file
View File

@@ -0,0 +1,224 @@
use config_traits::{StdConfig, StdConfigLoad3};
use rog_platform::cpu::CPUEPP;
use rog_platform::platform::ThrottlePolicy;
use serde_derive::{Deserialize, Serialize};
const CONFIG_FILE: &str = "asusd.ron";
#[derive(Deserialize, Serialize, Debug, PartialEq, PartialOrd)]
pub struct Config {
/// Save charge limit for restoring on boot/resume
pub charge_control_end_threshold: u8,
pub panel_od: bool,
pub mini_led_mode: bool,
pub disable_nvidia_powerd_on_battery: bool,
/// An optional command/script to run when power is changed to AC
pub ac_command: String,
/// An optional command/script to run when power is changed to battery
pub bat_command: String,
/// Set true if energy_performance_preference should be set if the
/// throttle/platform profile is changed
pub throttle_policy_linked_epp: bool,
/// Which throttle/profile to use on battery power
pub throttle_policy_on_battery: ThrottlePolicy,
/// Which throttle/profile to use on AC power
pub throttle_policy_on_ac: ThrottlePolicy,
/// The energy_performance_preference for this throttle/platform profile
pub throttle_quiet_epp: CPUEPP,
/// The energy_performance_preference for this throttle/platform profile
pub throttle_balanced_epp: CPUEPP,
/// The energy_performance_preference for this throttle/platform profile
pub throttle_performance_epp: CPUEPP,
/// Defaults to `None` if not supported
pub ppt_pl1_spl: Option<u8>,
/// Defaults to `None` if not supported
pub ppt_pl2_sppt: Option<u8>,
/// Defaults to `None` if not supported
pub ppt_fppt: Option<u8>,
/// Defaults to `None` if not supported
pub ppt_apu_sppt: Option<u8>,
/// Defaults to `None` if not supported
pub ppt_platform_sppt: Option<u8>,
/// Defaults to `None` if not supported
pub nv_dynamic_boost: Option<u8>,
/// Defaults to `None` if not supported
pub nv_temp_target: Option<u8>,
/// Temporary state for AC/Batt
#[serde(skip)]
pub last_power_plugged: u8,
}
impl Default for Config {
fn default() -> Self {
Self {
charge_control_end_threshold: 100,
panel_od: false,
mini_led_mode: false,
disable_nvidia_powerd_on_battery: true,
ac_command: Default::default(),
bat_command: Default::default(),
throttle_policy_linked_epp: true,
throttle_policy_on_battery: ThrottlePolicy::Quiet,
throttle_policy_on_ac: ThrottlePolicy::Performance,
throttle_quiet_epp: CPUEPP::Power,
throttle_balanced_epp: CPUEPP::BalancePower,
throttle_performance_epp: CPUEPP::Performance,
ppt_pl1_spl: Default::default(),
ppt_pl2_sppt: Default::default(),
ppt_fppt: Default::default(),
ppt_apu_sppt: Default::default(),
ppt_platform_sppt: Default::default(),
nv_dynamic_boost: Default::default(),
nv_temp_target: Default::default(),
last_power_plugged: Default::default(),
}
}
}
impl StdConfig for Config {
fn new() -> Self {
Config {
charge_control_end_threshold: 100,
disable_nvidia_powerd_on_battery: true,
throttle_policy_on_battery: ThrottlePolicy::Quiet,
throttle_policy_on_ac: ThrottlePolicy::Performance,
ac_command: String::new(),
bat_command: String::new(),
..Default::default()
}
}
fn config_dir() -> std::path::PathBuf {
std::path::PathBuf::from(crate::CONFIG_PATH_BASE)
}
fn file_name(&self) -> String {
CONFIG_FILE.to_owned()
}
}
impl StdConfigLoad3<Config472, Config506, Config507> for Config {}
#[derive(Deserialize, Serialize)]
pub struct Config507 {
/// Save charge limit for restoring on boot
pub charge_control_end_threshold: u8,
pub panel_od: bool,
pub mini_led_mode: bool,
pub disable_nvidia_powerd_on_battery: bool,
pub ac_command: String,
pub bat_command: String,
pub platform_policy_linked_epp: bool,
pub platform_policy_on_battery: ThrottlePolicy,
pub platform_policy_on_ac: ThrottlePolicy,
//
pub ppt_pl1_spl: Option<u8>,
pub ppt_pl2_sppt: Option<u8>,
pub ppt_fppt: Option<u8>,
pub ppt_apu_sppt: Option<u8>,
pub ppt_platform_sppt: Option<u8>,
pub nv_dynamic_boost: Option<u8>,
pub nv_temp_target: Option<u8>,
}
impl From<Config507> for Config {
fn from(c: Config507) -> Self {
Self {
charge_control_end_threshold: c.charge_control_end_threshold,
panel_od: c.panel_od,
disable_nvidia_powerd_on_battery: c.disable_nvidia_powerd_on_battery,
ac_command: c.ac_command,
bat_command: c.bat_command,
mini_led_mode: c.mini_led_mode,
throttle_policy_linked_epp: true,
throttle_policy_on_battery: c.platform_policy_on_battery,
throttle_policy_on_ac: c.platform_policy_on_ac,
throttle_quiet_epp: CPUEPP::Power,
throttle_balanced_epp: CPUEPP::BalancePower,
throttle_performance_epp: CPUEPP::Performance,
ppt_pl1_spl: c.ppt_pl1_spl,
ppt_pl2_sppt: c.ppt_pl2_sppt,
ppt_fppt: c.ppt_fppt,
ppt_apu_sppt: c.ppt_apu_sppt,
ppt_platform_sppt: c.ppt_platform_sppt,
nv_dynamic_boost: c.nv_dynamic_boost,
nv_temp_target: c.nv_temp_target,
last_power_plugged: 0,
}
}
}
#[derive(Deserialize, Serialize)]
pub struct Config506 {
/// Save charge limit for restoring on boot
pub charge_control_end_threshold: u8,
pub panel_od: bool,
pub mini_led_mode: bool,
pub disable_nvidia_powerd_on_battery: bool,
pub ac_command: String,
pub bat_command: String,
/// Restored on boot as well as when power is plugged
#[serde(skip)]
pub platform_policy_to_restore: ThrottlePolicy,
pub platform_policy_on_battery: ThrottlePolicy,
pub platform_policy_on_ac: ThrottlePolicy,
//
pub ppt_pl1_spl: Option<u8>,
pub ppt_pl2_sppt: Option<u8>,
pub ppt_fppt: Option<u8>,
pub ppt_apu_sppt: Option<u8>,
pub ppt_platform_sppt: Option<u8>,
pub nv_dynamic_boost: Option<u8>,
pub nv_temp_target: Option<u8>,
}
impl From<Config506> for Config {
fn from(c: Config506) -> Self {
Self {
charge_control_end_threshold: c.charge_control_end_threshold,
panel_od: c.panel_od,
disable_nvidia_powerd_on_battery: c.disable_nvidia_powerd_on_battery,
ac_command: c.ac_command,
bat_command: c.bat_command,
mini_led_mode: c.mini_led_mode,
throttle_policy_linked_epp: true,
throttle_policy_on_battery: c.platform_policy_on_battery,
throttle_policy_on_ac: c.platform_policy_on_ac,
throttle_quiet_epp: CPUEPP::Power,
throttle_balanced_epp: CPUEPP::BalancePower,
throttle_performance_epp: CPUEPP::Performance,
ppt_pl1_spl: c.ppt_pl1_spl,
ppt_pl2_sppt: c.ppt_pl2_sppt,
ppt_fppt: c.ppt_fppt,
ppt_apu_sppt: c.ppt_apu_sppt,
ppt_platform_sppt: c.ppt_platform_sppt,
nv_dynamic_boost: c.nv_dynamic_boost,
nv_temp_target: c.nv_temp_target,
last_power_plugged: 0,
}
}
}
#[derive(Deserialize, Serialize)]
pub struct Config472 {
/// Save charge limit for restoring on boot
pub bat_charge_limit: u8,
pub panel_od: bool,
pub mini_led_mode: bool,
pub disable_nvidia_powerd_on_battery: bool,
pub ac_command: String,
pub bat_command: String,
}
impl From<Config472> for Config {
fn from(c: Config472) -> Self {
Self {
charge_control_end_threshold: c.bat_charge_limit,
panel_od: c.panel_od,
disable_nvidia_powerd_on_battery: true,
ac_command: c.ac_command,
bat_command: c.bat_command,
..Default::default()
}
}
}

View File

@@ -2,78 +2,14 @@ use std::time::Duration;
use config_traits::{StdConfig, StdConfigLoad2};
use rog_anime::error::AnimeError;
use rog_anime::{ActionData, ActionLoader, AnimTime, AnimeType, Fade, Vec2};
use rog_anime::usb::Brightness;
use rog_anime::{
ActionData, ActionLoader, AnimTime, Animations, AnimeType, DeviceState, Fade, Vec2,
};
use serde_derive::{Deserialize, Serialize};
const CONFIG_FILE: &str = "anime.ron";
#[derive(Deserialize, Serialize)]
pub struct AnimeConfigV341 {
pub system: Option<ActionLoader>,
pub boot: Option<ActionLoader>,
pub suspend: Option<ActionLoader>,
pub shutdown: Option<ActionLoader>,
}
impl From<AnimeConfigV341> for AnimeConfig {
fn from(c: AnimeConfigV341) -> AnimeConfig {
AnimeConfig {
system: if let Some(ani) = c.system {
vec![ani]
} else {
vec![]
},
boot: if let Some(ani) = c.boot {
vec![ani]
} else {
vec![]
},
wake: if let Some(ani) = c.suspend {
vec![ani]
} else {
vec![]
},
shutdown: if let Some(ani) = c.shutdown.clone() {
vec![ani]
} else {
vec![]
},
sleep: if let Some(ani) = c.shutdown.clone() {
vec![ani]
} else {
vec![]
},
brightness: 1.0,
awake_enabled: true,
boot_anim_enabled: true,
}
}
}
#[derive(Deserialize, Serialize)]
pub struct AnimeConfigV352 {
pub system: Vec<ActionLoader>,
pub boot: Vec<ActionLoader>,
pub wake: Vec<ActionLoader>,
pub shutdown: Vec<ActionLoader>,
pub brightness: f32,
}
impl From<AnimeConfigV352> for AnimeConfig {
fn from(c: AnimeConfigV352) -> AnimeConfig {
AnimeConfig {
system: c.system,
boot: c.boot,
wake: c.wake,
sleep: c.shutdown.clone(),
shutdown: c.shutdown,
brightness: 1.0,
awake_enabled: true,
boot_anim_enabled: true,
}
}
}
#[derive(Deserialize, Serialize)]
pub struct AnimeConfigV460 {
pub system: Vec<ActionLoader>,
@@ -90,11 +26,40 @@ impl From<AnimeConfigV460> for AnimeConfig {
system: c.system,
boot: c.boot,
wake: c.wake,
sleep: c.sleep,
shutdown: c.shutdown,
brightness: 1.0,
awake_enabled: true,
boot_anim_enabled: true,
..Default::default()
}
}
}
#[derive(Deserialize, Serialize, Debug)]
pub struct AnimeConfigV472 {
pub model_override: Option<AnimeType>,
pub system: Vec<ActionLoader>,
pub boot: Vec<ActionLoader>,
pub wake: Vec<ActionLoader>,
pub sleep: Vec<ActionLoader>,
pub shutdown: Vec<ActionLoader>,
pub brightness: f32,
pub display_enabled: bool,
pub display_brightness: Brightness,
pub builtin_anims_enabled: bool,
pub builtin_anims: Animations,
}
impl From<AnimeConfigV472> for AnimeConfig {
fn from(c: AnimeConfigV472) -> AnimeConfig {
AnimeConfig {
system: c.system,
boot: c.boot,
wake: c.wake,
shutdown: c.shutdown,
model_override: c.model_override,
display_enabled: c.display_enabled,
display_brightness: c.display_brightness,
builtin_anims_enabled: c.builtin_anims_enabled,
builtin_anims: c.builtin_anims,
..Default::default()
}
}
}
@@ -104,7 +69,6 @@ pub struct AnimeConfigCached {
pub system: Vec<ActionData>,
pub boot: Vec<ActionData>,
pub wake: Vec<ActionData>,
pub sleep: Vec<ActionData>,
pub shutdown: Vec<ActionData>,
}
@@ -132,12 +96,6 @@ impl AnimeConfigCached {
}
self.wake = wake;
let mut sleep = Vec::with_capacity(config.sleep.len());
for ani in &config.sleep {
sleep.push(ActionData::from_anime_action(anime_type, ani)?);
}
self.sleep = sleep;
let mut shutdown = Vec::with_capacity(config.shutdown.len());
for ani in &config.shutdown {
shutdown.push(ActionData::from_anime_action(anime_type, ani)?);
@@ -150,27 +108,39 @@ impl AnimeConfigCached {
/// Config for base system actions for the anime display
#[derive(Deserialize, Serialize, Debug)]
pub struct AnimeConfig {
pub model_override: Option<AnimeType>,
pub system: Vec<ActionLoader>,
pub boot: Vec<ActionLoader>,
pub wake: Vec<ActionLoader>,
pub sleep: Vec<ActionLoader>,
pub shutdown: Vec<ActionLoader>,
pub brightness: f32,
pub awake_enabled: bool,
pub boot_anim_enabled: bool,
// pub brightness: f32,
pub display_enabled: bool,
pub display_brightness: Brightness,
pub builtin_anims_enabled: bool,
pub off_when_unplugged: bool,
pub off_when_suspended: bool,
pub off_when_lid_closed: bool,
pub brightness_on_battery: Brightness,
pub builtin_anims: Animations,
}
impl Default for AnimeConfig {
fn default() -> Self {
AnimeConfig {
model_override: None,
system: Vec::new(),
boot: Vec::new(),
wake: Vec::new(),
sleep: Vec::new(),
shutdown: Vec::new(),
brightness: 1.0,
awake_enabled: true,
boot_anim_enabled: true,
// brightness: 1.0,
display_enabled: true,
display_brightness: Brightness::Med,
builtin_anims_enabled: true,
off_when_unplugged: true,
off_when_suspended: true,
off_when_lid_closed: true,
brightness_on_battery: Brightness::Low,
builtin_anims: Animations::default(),
}
}
}
@@ -189,7 +159,22 @@ impl StdConfig for AnimeConfig {
}
}
impl StdConfigLoad2<AnimeConfigV341, AnimeConfigV352> for AnimeConfig {}
impl StdConfigLoad2<AnimeConfigV460, AnimeConfigV472> for AnimeConfig {}
impl From<&AnimeConfig> for DeviceState {
fn from(config: &AnimeConfig) -> Self {
DeviceState {
display_enabled: config.display_enabled,
display_brightness: config.display_brightness,
builtin_anims_enabled: config.builtin_anims_enabled,
builtin_anims: config.builtin_anims,
off_when_unplugged: config.off_when_unplugged,
off_when_suspended: config.off_when_suspended,
off_when_lid_closed: config.off_when_lid_closed,
brightness_on_battery: config.brightness_on_battery,
}
}
}
impl AnimeConfig {
// fn clamp_config_brightness(mut config: &mut AnimeConfig) {
@@ -230,14 +215,6 @@ impl AnimeConfig {
Duration::from_secs(2),
)),
}],
sleep: vec![ActionLoader::ImageAnimation {
file: "/usr/share/asusd/anime/custom/sonic-wait.gif".into(),
scale: 0.9,
angle: 0.0,
translation: Vec2::new(3.0, 2.0),
brightness: 1.0,
time: AnimTime::Infinite,
}],
shutdown: vec![ActionLoader::ImageAnimation {
file: "/usr/share/asusd/anime/custom/sonic-wait.gif".into(),
scale: 0.9,
@@ -246,9 +223,7 @@ impl AnimeConfig {
brightness: 1.0,
time: AnimTime::Infinite,
}],
brightness: 1.0,
awake_enabled: true,
boot_anim_enabled: true,
..Default::default()
}
}
}

View File

@@ -3,7 +3,6 @@ pub mod config;
pub mod trait_impls;
use std::convert::TryFrom;
use std::error::Error;
use std::sync::atomic::{AtomicBool, Ordering};
use std::sync::Arc;
use std::thread::sleep;
@@ -11,26 +10,47 @@ use std::thread::sleep;
use ::zbus::export::futures_util::lock::Mutex;
use log::{error, info, warn};
use rog_anime::error::AnimeError;
use rog_anime::usb::{get_anime_type, pkt_for_flush, pkts_for_init};
use rog_anime::usb::{
get_anime_type, pkt_flush, pkt_set_brightness, pkt_set_enable_display,
pkt_set_enable_powersave_anim, pkts_for_init, Brightness,
};
use rog_anime::{ActionData, AnimeDataBuffer, AnimePacketType, AnimeType};
use rog_platform::hid_raw::HidRaw;
use rog_platform::supported::AnimeSupportedFunctions;
use rog_platform::usb_raw::USBRaw;
use self::config::{AnimeConfig, AnimeConfigCached};
use crate::error::RogError;
use crate::GetSupported;
impl GetSupported for CtrlAnime {
type A = AnimeSupportedFunctions;
enum Node {
Usb(USBRaw),
Hid(HidRaw),
}
fn get_supported() -> Self::A {
AnimeSupportedFunctions(HidRaw::new("193b").is_ok())
impl Node {
pub fn write_bytes(&self, message: &[u8]) -> Result<(), RogError> {
// TODO: map and pass on errors
match self {
Node::Usb(u) => {
u.write_bytes(message).ok();
}
Node::Hid(h) => {
h.write_bytes(message).ok();
}
}
Ok(())
}
pub fn set_builtins_enabled(&self, enabled: bool, bright: Brightness) -> Result<(), RogError> {
self.write_bytes(&pkt_set_enable_powersave_anim(enabled))?;
self.write_bytes(&pkt_set_enable_display(enabled))?;
self.write_bytes(&pkt_set_brightness(bright))?;
self.write_bytes(&pkt_set_enable_powersave_anim(enabled))
}
}
pub struct CtrlAnime {
node: USBRaw,
// node: HidRaw,
node: Node,
anime_type: AnimeType,
cache: AnimeConfigCached,
config: AnimeConfig,
@@ -42,11 +62,40 @@ pub struct CtrlAnime {
impl CtrlAnime {
#[inline]
pub fn new(config: AnimeConfig) -> Result<CtrlAnime, Box<dyn Error>> {
let node = USBRaw::new(0x193b)?;
let anime_type = get_anime_type()?;
pub fn new(config: AnimeConfig) -> Result<CtrlAnime, RogError> {
let usb = USBRaw::new(0x193b).ok();
let hid = HidRaw::new("193b").ok();
let node = if usb.is_some() {
unsafe { Node::Usb(usb.unwrap_unchecked()) }
} else if hid.is_some() {
unsafe { Node::Hid(hid.unwrap_unchecked()) }
} else {
return Err(RogError::Anime(AnimeError::NoDevice));
};
info!("Device has an AniMe Matrix display");
// TODO: something better to set wakeups disabled
if matches!(node, Node::Usb(_)) {
if let Ok(mut enumerator) = udev::Enumerator::new() {
enumerator.match_subsystem("usb").ok();
enumerator.match_attribute("idProduct", "193b").ok();
if let Ok(mut enumer) = enumerator.scan_devices() {
if let Some(mut dev) = enumer.next() {
dev.set_attribute_value("power/wakeup", "disabled").ok();
}
}
}
}
let mut anime_type = get_anime_type()?;
if let AnimeType::Unknown = anime_type {
if let Some(model) = config.model_override {
warn!("Overriding the Animatrix type as {model:?}");
anime_type = model;
}
}
info!("Device has an AniMe Matrix display: {anime_type:?}");
let mut cache = AnimeConfigCached::default();
cache.init_from_config(&config, anime_type)?;
@@ -70,12 +119,21 @@ impl CtrlAnime {
///
/// Because this also writes to the usb device, other write tries (display
/// only) *must* get the mutex lock and set the `thread_exit` atomic.
fn run_thread(inner: Arc<Mutex<CtrlAnime>>, actions: Vec<ActionData>, mut once: bool) {
async fn run_thread(inner: Arc<Mutex<CtrlAnime>>, actions: Vec<ActionData>, mut once: bool) {
if actions.is_empty() {
warn!("AniMe system actions was empty");
return;
}
if let Some(lock) = inner.try_lock() {
lock.node
.write_bytes(&pkt_set_enable_powersave_anim(false))
.map_err(|err| {
warn!("rog_anime::run_animation:callback {}", err);
})
.ok();
}
// Loop rules:
// - Lock the mutex **only when required**. That is, the lock must be held for
// the shortest duration possible.
@@ -186,6 +244,14 @@ impl CtrlAnime {
})
.ok();
}
lock.node
.write_bytes(&pkt_set_enable_powersave_anim(
lock.config.builtin_anims_enabled,
))
.map_err(|err| {
warn!("rog_anime::run_animation:callback {}", err);
})
.ok();
}
// Loop ended, set the atmonics
thread_running.store(false, Ordering::SeqCst);
@@ -199,7 +265,7 @@ impl CtrlAnime {
/// global brightness set in config.
fn write_data_buffer(&self, mut buffer: AnimeDataBuffer) -> Result<(), RogError> {
for led in buffer.data_mut().iter_mut() {
let mut bright = *led as f32 * self.config.brightness;
let mut bright = *led as f32;
if bright > 254.0 {
bright = 254.0;
}
@@ -209,7 +275,7 @@ impl CtrlAnime {
for row in &data {
self.node.write_bytes(row)?;
}
self.node.write_bytes(&pkt_for_flush())?;
self.node.write_bytes(&pkt_flush())?;
Ok(())
}

View File

@@ -0,0 +1,434 @@
use std::sync::atomic::Ordering;
use std::sync::Arc;
use config_traits::StdConfig;
use log::warn;
use logind_zbus::manager::ManagerProxy;
use rog_anime::usb::{
pkt_set_brightness, pkt_set_builtin_animations, pkt_set_enable_display,
pkt_set_enable_powersave_anim, Brightness,
};
use rog_anime::{Animations, AnimeDataBuffer, DeviceState};
use zbus::export::futures_util::lock::Mutex;
use zbus::{dbus_interface, CacheProperties, Connection, SignalContext};
use super::CtrlAnime;
use crate::error::RogError;
pub const ANIME_ZBUS_NAME: &str = "Anime";
pub const ANIME_ZBUS_PATH: &str = "/org/asuslinux/Anime";
async fn get_logind_manager<'a>() -> ManagerProxy<'a> {
let connection = Connection::system()
.await
.expect("Controller could not create dbus connection");
ManagerProxy::builder(&connection)
.cache_properties(CacheProperties::No)
.build()
.await
.expect("Controller could not create ManagerProxy")
}
#[derive(Clone)]
pub struct CtrlAnimeZbus(pub Arc<Mutex<CtrlAnime>>);
/// The struct with the main dbus methods requires this trait
impl crate::ZbusRun for CtrlAnimeZbus {
async fn add_to_server(self, server: &mut Connection) {
Self::add_to_server_helper(self, ANIME_ZBUS_PATH, server).await;
}
}
// None of these calls can be guarnateed to succeed unless we loop until okay
// If the try_lock *does* succeed then any other thread trying to lock will not
// grab it until we finish.
#[dbus_interface(name = "org.asuslinux.Daemon")]
impl CtrlAnimeZbus {
/// Writes a data stream of length. Will force system thread to exit until
/// it is restarted
async fn write(&self, input: AnimeDataBuffer) -> zbus::fdo::Result<()> {
let lock = self.0.lock().await;
lock.thread_exit.store(true, Ordering::SeqCst);
lock.write_data_buffer(input).map_err(|err| {
warn!("ctrl_anime::run_animation:callback {}", err);
err
})?;
Ok(())
}
/// Set base brightness level
#[dbus_interface(property)]
async fn brightness(&self) -> Brightness {
let lock = self.0.lock().await;
lock.config.display_brightness
}
/// Set base brightness level
#[dbus_interface(property)]
async fn set_brightness(&self, brightness: Brightness) {
let mut lock = self.0.lock().await;
lock.node
.write_bytes(&pkt_set_brightness(brightness))
.map_err(|err| {
warn!("ctrl_anime::set_brightness {}", err);
})
.ok();
lock.node
.write_bytes(&pkt_set_enable_display(brightness != Brightness::Off))
.map_err(|err| {
warn!("ctrl_anime::set_brightness {}", err);
})
.ok();
lock.config.display_enabled = brightness != Brightness::Off;
lock.config.display_brightness = brightness;
lock.config.write();
}
#[dbus_interface(property)]
async fn builtins_enabled(&self) -> bool {
let lock = self.0.lock().await;
lock.config.builtin_anims_enabled
}
/// Enable the builtin animations or not. This is quivalent to "Powersave
/// animations" in Armory crate
#[dbus_interface(property)]
async fn set_builtins_enabled(&self, enabled: bool) {
let mut lock = self.0.lock().await;
lock.node
.set_builtins_enabled(enabled, lock.config.display_brightness)
.map_err(|err| {
warn!("ctrl_anime::set_builtins_enabled {}", err);
})
.ok();
if !enabled {
let data = vec![255u8; lock.anime_type.data_length()];
if let Ok(tmp) = AnimeDataBuffer::from_vec(lock.anime_type, data).map_err(|err| {
warn!("ctrl_anime::set_builtins_enabled {}", err);
}) {
lock.node
.write_bytes(tmp.data())
.map_err(|err| {
warn!("ctrl_anime::set_builtins_enabled {}", err);
})
.ok();
}
}
lock.config.builtin_anims_enabled = enabled;
lock.config.write();
if enabled {
lock.thread_exit.store(true, Ordering::Release);
}
}
#[dbus_interface(property)]
async fn builtin_animations(&self) -> Animations {
let lock = self.0.lock().await;
lock.config.builtin_anims
}
/// Set which builtin animation is used for each stage
#[dbus_interface(property)]
async fn set_builtin_animations(&self, settings: Animations) {
let mut lock = self.0.lock().await;
lock.node
.write_bytes(&pkt_set_builtin_animations(
settings.boot,
settings.awake,
settings.sleep,
settings.shutdown,
))
.map_err(|err| {
warn!("ctrl_anime::run_animation:callback {}", err);
})
.ok();
lock.node
.write_bytes(&pkt_set_enable_powersave_anim(true))
.map_err(|err| {
warn!("ctrl_anime::run_animation:callback {}", err);
})
.ok();
lock.config.display_enabled = true;
lock.config.builtin_anims = settings;
lock.config.write();
}
#[dbus_interface(property)]
async fn enable_display(&self) -> bool {
let lock = self.0.lock().await;
lock.config.display_enabled
}
/// Set whether the AniMe is enabled at all
#[dbus_interface(property)]
async fn set_enable_display(&self, enabled: bool) {
let mut lock = self.0.lock().await;
lock.node
.write_bytes(&pkt_set_enable_display(enabled))
.map_err(|err| {
warn!("ctrl_anime::run_animation:callback {}", err);
})
.ok();
lock.config.display_enabled = enabled;
lock.config.write();
}
#[dbus_interface(property)]
async fn off_when_unplugged(&self) -> bool {
let lock = self.0.lock().await;
lock.config.off_when_unplugged
}
/// Set if to turn the AniMe Matrix off when external power is unplugged
#[dbus_interface(property)]
async fn set_off_when_unplugged(&self, enabled: bool) {
let mut lock = self.0.lock().await;
let manager = get_logind_manager().await;
let pow = manager.on_external_power().await.unwrap_or_default();
lock.node
.write_bytes(&pkt_set_enable_display(!pow && !enabled))
.map_err(|err| {
warn!("create_sys_event_tasks::off_when_lid_closed {}", err);
})
.ok();
lock.config.off_when_unplugged = enabled;
lock.config.write();
}
#[dbus_interface(property)]
async fn off_when_suspended(&self) -> bool {
let lock = self.0.lock().await;
lock.config.off_when_suspended
}
/// Set if to turn the AniMe Matrix off when the laptop is suspended
#[dbus_interface(property)]
async fn set_off_when_suspended(&self, enabled: bool) {
let mut lock = self.0.lock().await;
lock.config.off_when_suspended = enabled;
lock.config.write();
}
#[dbus_interface(property)]
async fn off_when_lid_closed(&self) -> bool {
let lock = self.0.lock().await;
lock.config.off_when_lid_closed
}
/// Set if to turn the AniMe Matrix off when the lid is closed
#[dbus_interface(property)]
async fn set_off_when_lid_closed(&self, enabled: bool) {
let mut lock = self.0.lock().await;
let manager = get_logind_manager().await;
let lid = manager.lid_closed().await.unwrap_or_default();
lock.node
.write_bytes(&pkt_set_enable_display(lid && !enabled))
.map_err(|err| {
warn!("create_sys_event_tasks::off_when_lid_closed {}", err);
})
.ok();
lock.config.off_when_lid_closed = enabled;
lock.config.write();
}
/// The main loop is the base system set action if the user isn't running
/// the user daemon
async fn run_main_loop(&self, start: bool) {
if start {
let lock = self.0.lock().await;
lock.thread_exit.store(true, Ordering::SeqCst);
CtrlAnime::run_thread(self.0.clone(), lock.cache.system.clone(), false).await;
}
}
/// Get the device state as stored by asusd
// #[dbus_interface(property)]
async fn device_state(&self) -> DeviceState {
let lock = self.0.lock().await;
DeviceState::from(&lock.config)
}
}
impl crate::CtrlTask for CtrlAnimeZbus {
fn zbus_path() -> &'static str {
ANIME_ZBUS_PATH
}
async fn create_tasks(&self, _: SignalContext<'static>) -> Result<(), RogError> {
let inner1 = self.0.clone();
let inner2 = self.0.clone();
let inner3 = self.0.clone();
let inner4 = self.0.clone();
self.create_sys_event_tasks(
move |sleeping| {
// on_sleep
let inner = inner1.clone();
async move {
let lock = inner.lock().await;
if lock.config.display_enabled {
lock.thread_exit.store(true, Ordering::Release); // ensure clean slate
lock.node
.write_bytes(&pkt_set_enable_display(
!(sleeping && lock.config.off_when_suspended),
))
.map_err(|err| {
warn!("create_sys_event_tasks::off_when_suspended {}", err);
})
.ok();
if lock.config.builtin_anims_enabled {
lock.node
.write_bytes(&pkt_set_enable_powersave_anim(
!(sleeping && lock.config.off_when_suspended),
))
.map_err(|err| {
warn!("create_sys_event_tasks::off_when_suspended {}", err);
})
.ok();
} else if !sleeping && !lock.config.builtin_anims_enabled {
// Run custom wake animation
lock.node
.write_bytes(&pkt_set_enable_powersave_anim(false))
.ok(); // ensure builtins are disabled
CtrlAnime::run_thread(inner.clone(), lock.cache.wake.clone(), true)
.await;
}
}
}
},
move |shutting_down| {
// on_shutdown
let inner = inner2.clone();
async move {
let lock = inner.lock().await;
if lock.config.display_enabled && !lock.config.builtin_anims_enabled {
if shutting_down {
CtrlAnime::run_thread(inner.clone(), lock.cache.shutdown.clone(), true)
.await;
} else {
CtrlAnime::run_thread(inner.clone(), lock.cache.boot.clone(), true)
.await;
}
}
}
},
move |lid_closed| {
let inner = inner3.clone();
// on lid change
async move {
let lock = inner.lock().await;
if lock.config.off_when_lid_closed {
if lock.config.builtin_anims_enabled {
lock.node
.write_bytes(&pkt_set_enable_powersave_anim(!lid_closed))
.map_err(|err| {
warn!("create_sys_event_tasks::off_when_suspended {}", err);
})
.ok();
}
lock.node
.write_bytes(&pkt_set_enable_display(!lid_closed))
.map_err(|err| {
warn!("create_sys_event_tasks::off_when_lid_closed {}", err);
})
.ok();
}
}
},
move |power_plugged| {
let inner = inner4.clone();
// on power change
async move {
let lock = inner.lock().await;
if lock.config.off_when_unplugged {
if lock.config.builtin_anims_enabled {
lock.node
.write_bytes(&pkt_set_enable_powersave_anim(power_plugged))
.map_err(|err| {
warn!("create_sys_event_tasks::off_when_suspended {}", err);
})
.ok();
}
lock.node
.write_bytes(&pkt_set_enable_display(power_plugged))
.map_err(|err| {
warn!("create_sys_event_tasks::off_when_unplugged {}", err);
})
.ok();
} else {
lock.node
.write_bytes(&pkt_set_brightness(lock.config.brightness_on_battery))
.map_err(|err| {
warn!("create_sys_event_tasks::off_when_unplugged {}", err);
})
.ok();
}
}
},
)
.await;
Ok(())
}
}
impl crate::Reloadable for CtrlAnimeZbus {
async fn reload(&mut self) -> Result<(), RogError> {
if let Some(lock) = self.0.try_lock() {
let anim = &lock.config.builtin_anims;
// Set builtins
if lock.config.builtin_anims_enabled {
lock.node.write_bytes(&pkt_set_builtin_animations(
anim.boot,
anim.awake,
anim.sleep,
anim.shutdown,
))?;
}
// Builtins enabled or na?
lock.node.set_builtins_enabled(
lock.config.builtin_anims_enabled,
lock.config.display_brightness,
)?;
let manager = get_logind_manager().await;
let lid_closed = manager.lid_closed().await.unwrap_or_default();
let power_plugged = manager.on_external_power().await.unwrap_or_default();
let turn_off = (lid_closed && lock.config.off_when_lid_closed)
|| (!power_plugged && lock.config.off_when_unplugged);
lock.node
.write_bytes(&pkt_set_enable_display(!turn_off))
.map_err(|err| {
warn!("create_sys_event_tasks::reload {}", err);
})
.ok();
if turn_off || !lock.config.display_enabled {
lock.node.write_bytes(&pkt_set_enable_display(false))?;
// early return so we don't run animation thread
return Ok(());
}
if !lock.config.builtin_anims_enabled && !lock.cache.boot.is_empty() {
lock.node
.write_bytes(&pkt_set_enable_powersave_anim(false))
.ok();
let action = lock.cache.boot.clone();
CtrlAnime::run_thread(self.0.clone(), action, true).await;
}
}
Ok(())
}
}

View File

@@ -1,9 +1,12 @@
use std::collections::{BTreeMap, HashSet};
use config_traits::{StdConfig, StdConfigLoad};
use rog_aura::aura_detection::LaptopLedData;
use rog_aura::usb::{AuraDevRog1, AuraDevRog2, AuraDevTuf, AuraDevice, AuraPowerDev};
use log::{debug, warn};
use rog_aura::aura_detection::{LaptopLedData, ASUS_KEYBOARD_DEVICES};
use rog_aura::power::AuraPower;
use rog_aura::usb::{AuraDevRog1, AuraDevTuf, AuraDevice, AuraPowerDev};
use rog_aura::{AuraEffect, AuraModeNum, AuraZone, Direction, LedBrightness, Speed, GRADIENT};
use rog_platform::hid_raw::HidRaw;
use serde_derive::{Deserialize, Serialize};
const CONFIG_FILE: &str = "aura.ron";
@@ -15,22 +18,19 @@ const CONFIG_FILE: &str = "aura.ron";
pub enum AuraPowerConfig {
AuraDevTuf(HashSet<AuraDevTuf>),
AuraDevRog1(HashSet<AuraDevRog1>),
AuraDevRog2(HashSet<AuraDevRog2>),
AuraDevRog2(AuraPower),
}
impl AuraPowerConfig {
/// Invalid for TUF laptops
pub fn to_bytes(control: &Self) -> [u8; 3] {
pub fn to_bytes(control: &Self) -> [u8; 4] {
match control {
AuraPowerConfig::AuraDevTuf(_) => [0, 0, 0],
AuraPowerConfig::AuraDevTuf(_) => [0, 0, 0, 0],
AuraPowerConfig::AuraDevRog1(c) => {
let c: Vec<AuraDevRog1> = c.iter().copied().collect();
AuraDevRog1::to_bytes(&c)
}
AuraPowerConfig::AuraDevRog2(c) => {
let c: Vec<AuraDevRog2> = c.iter().copied().collect();
AuraDevRog2::to_bytes(&c)
}
AuraPowerConfig::AuraDevRog2(c) => c.to_bytes(),
}
}
@@ -78,13 +78,9 @@ impl AuraPowerConfig {
}
}
pub fn set_0x19b6(&mut self, power: AuraDevRog2, on: bool) {
pub fn set_0x19b6(&mut self, power: AuraPower) {
if let Self::AuraDevRog2(p) = self {
if on {
p.insert(power);
} else {
p.remove(&power);
}
*p = power;
}
}
}
@@ -94,18 +90,15 @@ impl From<&AuraPowerConfig> for AuraPowerDev {
match config {
AuraPowerConfig::AuraDevTuf(d) => AuraPowerDev {
tuf: d.iter().copied().collect(),
x1866: vec![],
x19b6: vec![],
..Default::default()
},
AuraPowerConfig::AuraDevRog1(d) => AuraPowerDev {
tuf: vec![],
x1866: d.iter().copied().collect(),
x19b6: vec![],
old_rog: d.iter().copied().collect(),
..Default::default()
},
AuraPowerConfig::AuraDevRog2(d) => AuraPowerDev {
tuf: vec![],
x1866: vec![],
x19b6: d.iter().copied().collect(),
rog: d.clone(),
..Default::default()
},
}
}
@@ -123,9 +116,17 @@ pub struct AuraConfig {
}
impl StdConfig for AuraConfig {
/// Detect the keyboard type and load from default DB if data available
fn new() -> Self {
// Self::create_default(AuraDevice::X19b6, &LaptopLedData::get_data())
panic!("AuraConfig::new() should not be used, use AuraConfig::create_default() instead");
warn!("AuraConfig: creating new config");
let mut prod_id = AuraDevice::Unknown;
for prod in ASUS_KEYBOARD_DEVICES {
if HidRaw::new(prod.into()).is_ok() {
prod_id = prod;
break;
}
}
Self::from_default_support(prod_id, &LaptopLedData::get_data())
}
fn config_dir() -> std::path::PathBuf {
@@ -140,24 +141,11 @@ impl StdConfig for AuraConfig {
impl StdConfigLoad for AuraConfig {}
impl AuraConfig {
pub fn create_default(prod_id: AuraDevice, support_data: &LaptopLedData) -> Self {
pub fn from_default_support(prod_id: AuraDevice, support_data: &LaptopLedData) -> Self {
// create a default config here
let enabled = if prod_id == AuraDevice::X19b6 {
AuraPowerConfig::AuraDevRog2(HashSet::from([
AuraDevRog2::BootLogo,
AuraDevRog2::BootKeyb,
AuraDevRog2::SleepLogo,
AuraDevRog2::SleepKeyb,
AuraDevRog2::AwakeLogo,
AuraDevRog2::AwakeKeyb,
AuraDevRog2::ShutdownLogo,
AuraDevRog2::ShutdownKeyb,
AuraDevRog2::BootBar,
AuraDevRog2::AwakeBar,
AuraDevRog2::SleepBar,
AuraDevRog2::ShutdownBar,
]))
} else if prod_id == AuraDevice::Tuf {
let enabled = if prod_id.is_new_style() {
AuraPowerConfig::AuraDevRog2(AuraPower::new_all_on())
} else if prod_id.is_tuf_style() {
AuraPowerConfig::AuraDevTuf(HashSet::from([
AuraDevTuf::Awake,
AuraDevTuf::Boot,
@@ -183,6 +171,7 @@ impl AuraConfig {
};
for n in &support_data.basic_modes {
debug!("AuraConfig: creating default for {n}");
config
.builtins
.insert(*n, AuraEffect::default_with_mode(*n));
@@ -260,10 +249,15 @@ mod tests {
#[test]
fn set_multizone_4key_config() {
let mut config = AuraConfig::create_default(AuraDevice::X19b6, &LaptopLedData::default());
let mut config =
AuraConfig::from_default_support(AuraDevice::X19b6, &LaptopLedData::default());
let effect = AuraEffect {
colour1: Colour(0xff, 0x00, 0xff),
colour1: Colour {
r: 0xff,
g: 0x00,
b: 0xff,
},
zone: AuraZone::Key1,
..Default::default()
};
@@ -272,21 +266,33 @@ mod tests {
assert!(config.multizone.is_some());
let effect = AuraEffect {
colour1: Colour(0x00, 0xff, 0xff),
colour1: Colour {
r: 0x00,
g: 0xff,
b: 0xff,
},
zone: AuraZone::Key2,
..Default::default()
};
config.set_builtin(effect);
let effect = AuraEffect {
colour1: Colour(0xff, 0xff, 0x00),
colour1: Colour {
r: 0xff,
g: 0xff,
b: 0x00,
},
zone: AuraZone::Key3,
..Default::default()
};
config.set_builtin(effect);
let effect = AuraEffect {
colour1: Colour(0x00, 0xff, 0x00),
colour1: Colour {
r: 0x00,
g: 0xff,
b: 0x00,
},
zone: AuraZone::Key4,
..Default::default()
};
@@ -298,15 +304,44 @@ mod tests {
let res = config.multizone.unwrap();
let sta = res.get(&AuraModeNum::Static).unwrap();
assert_eq!(sta.len(), 4);
assert_eq!(sta[0].colour1, Colour(0xff, 0x00, 0xff));
assert_eq!(sta[1].colour1, Colour(0x00, 0xff, 0xff));
assert_eq!(sta[2].colour1, Colour(0xff, 0xff, 0x00));
assert_eq!(sta[3].colour1, Colour(0x00, 0xff, 0x00));
assert_eq!(
sta[0].colour1,
Colour {
r: 0xff,
g: 0x00,
b: 0xff
}
);
assert_eq!(
sta[1].colour1,
Colour {
r: 0x00,
g: 0xff,
b: 0xff
}
);
assert_eq!(
sta[2].colour1,
Colour {
r: 0xff,
g: 0xff,
b: 0x00
}
);
assert_eq!(
sta[3].colour1,
Colour {
r: 0x00,
g: 0xff,
b: 0x00
}
);
}
#[test]
fn set_multizone_multimode_config() {
let mut config = AuraConfig::create_default(AuraDevice::X19b6, &LaptopLedData::default());
let mut config =
AuraConfig::from_default_support(AuraDevice::X19b6, &LaptopLedData::default());
let effect = AuraEffect {
zone: AuraZone::Key1,

View File

@@ -1,55 +1,19 @@
use std::collections::BTreeMap;
use config_traits::{StdConfig, StdConfigLoad};
use dmi_id::DMIID;
use log::{info, warn};
use rog_aura::advanced::{LedUsbPackets, UsbPackets};
use rog_aura::aura_detection::{LaptopLedData, ASUS_KEYBOARD_DEVICES};
use rog_aura::usb::{AuraDevice, LED_APPLY, LED_SET};
use rog_aura::{AuraEffect, AuraZone, Direction, LedBrightness, Speed, GRADIENT, LED_MSG_LEN};
use rog_aura::{AuraEffect, Direction, LedBrightness, Speed, GRADIENT, LED_MSG_LEN};
use rog_platform::hid_raw::HidRaw;
use rog_platform::keyboard_led::KeyboardLed;
use rog_platform::supported::LedSupportedFunctions;
use super::config::{AuraConfig, AuraPowerConfig};
use crate::error::RogError;
use crate::GetSupported;
impl GetSupported for CtrlKbdLed {
type A = LedSupportedFunctions;
fn get_supported() -> Self::A {
// let mode = <&str>::from(&<AuraModes>::from(*mode));
let laptop = LaptopLedData::get_data();
let stock_led_modes = laptop.basic_modes;
let multizone_led_mode = laptop.basic_zones;
let advanced_type = laptop.advanced_type;
let mut prod_id = AuraDevice::Unknown;
for prod in ASUS_KEYBOARD_DEVICES {
if HidRaw::new(prod.into()).is_ok() {
prod_id = prod;
break;
}
}
let rgb = KeyboardLed::new();
if let Ok(p) = rgb.as_ref() {
if p.has_kbd_rgb_mode() {
prod_id = AuraDevice::Tuf;
}
}
LedSupportedFunctions {
dev_id: prod_id,
brightness: rgb.is_ok(),
basic_modes: stock_led_modes,
basic_zones: multizone_led_mode,
advanced_type: advanced_type.into(),
}
}
}
#[derive(Debug, PartialEq, Eq, PartialOrd)]
#[derive(Debug)]
pub enum LEDNode {
KbdLed(KeyboardLed),
Rog(HidRaw),
@@ -60,15 +24,14 @@ pub struct CtrlKbdLed {
// TODO: config stores the keyboard type as an AuraPower, use or update this
pub led_prod: AuraDevice,
pub led_node: LEDNode,
pub kd_brightness: KeyboardLed,
pub supported_modes: LaptopLedData,
pub flip_effect_write: bool,
pub sysfs_node: KeyboardLed,
pub supported_data: LaptopLedData,
pub per_key_mode_active: bool,
pub config: AuraConfig,
}
impl CtrlKbdLed {
pub fn new(supported_modes: LaptopLedData) -> Result<Self, RogError> {
pub fn new(supported_basic_modes: LaptopLedData) -> Result<Self, RogError> {
let mut led_prod = AuraDevice::Unknown;
let mut usb_node = None;
for prod in ASUS_KEYBOARD_DEVICES {
@@ -92,14 +55,12 @@ impl CtrlKbdLed {
let rgb_led = KeyboardLed::new()?;
if usb_node.is_none() && !rgb_led.has_kbd_rgb_mode() {
let dmi = sysfs_class::DmiId::default();
if let Ok(prod_family) = dmi.product_family() {
if prod_family.contains("TUF") {
warn!(
"kbd_rgb_mode was not found in the /sys/. You require a minimum 6.1 \
kernel and a supported TUF laptop"
);
}
let dmi = DMIID::new().unwrap_or_default();
if dmi.dmi_family.contains("TUF") {
warn!(
"kbd_rgb_mode was not found in the /sys/. You require a minimum 6.1 kernel \
and a supported TUF laptop"
);
}
return Err(RogError::NoAuraKeyboard);
}
@@ -114,15 +75,17 @@ impl CtrlKbdLed {
LEDNode::None
};
let mut config_init = AuraConfig::create_default(led_prod, &supported_modes);
// New loads data fromt he DB also
let mut config_init = AuraConfig::new();
let mut config_loaded = config_init.clone().load();
// update the initialised data with what we loaded from disk
for mode in &mut config_init.builtins {
// update init values from loaded values if they exist
if let Some(loaded) = config_loaded.builtins.get(mode.0) {
*mode.1 = loaded.clone();
}
}
// Then replace just incase the initialised data contains new modes added
config_loaded.builtins = config_init.builtins;
if let (Some(mut multizone_init), Some(multizone_loaded)) =
@@ -134,7 +97,7 @@ impl CtrlKbdLed {
let mut new_set = Vec::new();
// only reuse a zone mode if the mode is supported
for mode in loaded {
if supported_modes.basic_modes.contains(&mode.mode) {
if supported_basic_modes.basic_modes.contains(&mode.mode) {
new_set.push(mode.clone());
}
}
@@ -146,50 +109,15 @@ impl CtrlKbdLed {
let ctrl = CtrlKbdLed {
led_prod,
led_node, // on TUF this is the same as rgb_led / kd_brightness
kd_brightness: rgb_led, // If was none then we already returned above
supported_modes,
flip_effect_write: false,
led_node, // on TUF this is the same as rgb_led / kd_brightness
sysfs_node: rgb_led, // If was none then we already returned above
supported_data: supported_basic_modes,
per_key_mode_active: false,
config: config_loaded,
};
Ok(ctrl)
}
pub(super) fn get_brightness(&self) -> Result<u8, RogError> {
self.kd_brightness
.get_brightness()
.map_err(RogError::Platform)
}
pub(super) fn set_brightness(&self, brightness: LedBrightness) -> Result<(), RogError> {
self.kd_brightness
.set_brightness(brightness as u8)
.map_err(RogError::Platform)
}
pub fn next_brightness(&mut self) -> Result<(), RogError> {
let mut bright = (self.config.brightness as u32) + 1;
if bright > 3 {
bright = 0;
}
self.config.brightness = <LedBrightness>::from(bright);
self.config.write();
self.set_brightness(self.config.brightness)
}
pub fn prev_brightness(&mut self) -> Result<(), RogError> {
let mut bright = self.config.brightness as u32;
if bright == 0 {
bright = 3;
} else {
bright -= 1;
}
self.config.brightness = <LedBrightness>::from(bright);
self.config.write();
self.set_brightness(self.config.brightness)
}
/// Set combination state for boot animation/sleep animation/all leds/keys
/// leds/side leds LED active
pub(super) fn set_power_states(&mut self) -> Result<(), RogError> {
@@ -200,7 +128,7 @@ impl CtrlKbdLed {
}
} else if let LEDNode::Rog(hid_raw) = &self.led_node {
let bytes = AuraPowerConfig::to_bytes(&self.config.enabled);
let message = [0x5d, 0xbd, 0x01, bytes[0], bytes[1], bytes[2]];
let message = [0x5d, 0xbd, 0x01, bytes[0], bytes[1], bytes[2], bytes[3]];
hid_raw.write_bytes(&message)?;
hid_raw.write_bytes(&LED_SET)?;
@@ -210,29 +138,15 @@ impl CtrlKbdLed {
Ok(())
}
/// Set an Aura effect if the effect mode or zone is supported.
///
/// On success the aura config file is read to refresh cached values, then
/// the effect is stored and config written to disk.
pub(crate) fn set_effect(&mut self, effect: AuraEffect) -> Result<(), RogError> {
if !self.supported_modes.basic_modes.contains(&effect.mode)
|| effect.zone != AuraZone::None
&& !self.supported_modes.basic_zones.contains(&effect.zone)
{
return Err(RogError::AuraEffectNotSupported);
}
self.write_mode(&effect)?;
self.config.read(); // refresh config if successful
self.config.set_builtin(effect);
self.config.write();
Ok(())
}
/// Write an effect block. This is for per-key, but can be repurposed to
/// write the raw factory mode packets - when doing this it is expected that
/// only the first `Vec` (`effect[0]`) is valid.
pub fn write_effect_block(&mut self, effect: &UsbPackets) -> Result<(), RogError> {
if self.config.brightness == LedBrightness::Off {
self.config.brightness = LedBrightness::Med;
self.config.write();
}
let pkt_type = effect[0][1];
const PER_KEY_TYPE: u8 = 0xbc;
@@ -263,54 +177,18 @@ impl CtrlKbdLed {
tuf.set_kbd_rgb_mode(&[0, 0, r, g, b, 0])?;
}
}
self.flip_effect_write = !self.flip_effect_write;
}
Ok(())
}
pub(super) fn toggle_mode(&mut self, reverse: bool) -> Result<(), RogError> {
let current = self.config.current_mode;
if let Some(idx) = self
.supported_modes
.basic_modes
.iter()
.position(|v| *v == current)
{
let mut idx = idx;
// goes past end of array
if reverse {
if idx == 0 {
idx = self.supported_modes.basic_modes.len() - 1;
} else {
idx -= 1;
}
} else {
idx += 1;
if idx == self.supported_modes.basic_modes.len() {
idx = 0;
}
}
let next = self.supported_modes.basic_modes[idx];
self.config.read();
// if self.config.builtins.contains_key(&next) {
self.config.current_mode = next;
self.write_current_config_mode()?;
// }
self.config.write();
}
Ok(())
}
fn write_mode(&mut self, mode: &AuraEffect) -> Result<(), RogError> {
pub fn write_mode(&mut self, mode: &AuraEffect) -> Result<(), RogError> {
if let LEDNode::KbdLed(platform) = &self.led_node {
let buf = [
1,
mode.mode as u8,
mode.colour1.0,
mode.colour1.1,
mode.colour1.2,
mode.colour1.r,
mode.colour1.g,
mode.colour1.b,
mode.speed as u8,
];
platform.set_kbd_rgb_mode(&buf)?;
@@ -367,7 +245,7 @@ impl CtrlKbdLed {
/// exists.
fn create_multizone_default(&mut self) -> Result<(), RogError> {
let mut default = vec![];
for (i, tmp) in self.supported_modes.basic_zones.iter().enumerate() {
for (i, tmp) in self.supported_data.basic_zones.iter().enumerate() {
default.push(AuraEffect {
mode: self.config.current_mode,
zone: *tmp,
@@ -394,96 +272,32 @@ impl CtrlKbdLed {
#[cfg(test)]
mod tests {
use rog_aura::aura_detection::LaptopLedData;
use rog_aura::aura_detection::{LaptopLedData, PowerZones};
use rog_aura::usb::AuraDevice;
use rog_aura::{AuraEffect, AuraModeNum, AuraZone, Colour};
use rog_aura::{AuraModeNum, AuraZone};
use rog_platform::keyboard_led::KeyboardLed;
use super::CtrlKbdLed;
use crate::ctrl_aura::config::AuraConfig;
use crate::ctrl_aura::controller::LEDNode;
#[test]
// #[ignore = "Must be manually run due to detection stage"]
fn check_set_mode_errors() {
// Checking to ensure set_mode errors when unsupported modes are tried
let config = AuraConfig::create_default(AuraDevice::X19b6, &LaptopLedData::default());
let supported_modes = LaptopLedData {
board_name: String::new(),
layout_name: "ga401".to_owned(),
basic_modes: vec![AuraModeNum::Static],
basic_zones: vec![],
advanced_type: rog_aura::AdvancedAuraType::None,
};
let mut controller = CtrlKbdLed {
led_prod: AuraDevice::X19b6,
led_node: LEDNode::None,
kd_brightness: KeyboardLed::default(),
supported_modes,
flip_effect_write: false,
per_key_mode_active: false,
config,
};
let mut effect = AuraEffect {
colour1: Colour(0xff, 0x00, 0xff),
zone: AuraZone::None,
..Default::default()
};
// This error comes from write_bytes because we don't have a keyboard node
// stored
assert_eq!(
controller
.set_effect(effect.clone())
.unwrap_err()
.to_string(),
"No supported Aura keyboard"
);
effect.mode = AuraModeNum::Laser;
assert_eq!(
controller
.set_effect(effect.clone())
.unwrap_err()
.to_string(),
"Aura effect not supported"
);
effect.mode = AuraModeNum::Static;
effect.zone = AuraZone::Key2;
assert_eq!(
controller
.set_effect(effect.clone())
.unwrap_err()
.to_string(),
"Aura effect not supported"
);
controller.supported_modes.basic_zones.push(AuraZone::Key2);
assert_eq!(
controller.set_effect(effect).unwrap_err().to_string(),
"No supported Aura keyboard"
);
}
#[test]
fn create_multizone_if_no_config() {
// Checking to ensure set_mode errors when unsupported modes are tried
let config = AuraConfig::create_default(AuraDevice::X19b6, &LaptopLedData::default());
let supported_modes = LaptopLedData {
let config = AuraConfig::from_default_support(AuraDevice::X19b6, &LaptopLedData::default());
let supported_basic_modes = LaptopLedData {
board_name: String::new(),
layout_name: "ga401".to_owned(),
basic_modes: vec![AuraModeNum::Static],
basic_zones: vec![],
advanced_type: rog_aura::AdvancedAuraType::None,
power_zones: vec![PowerZones::Keyboard, PowerZones::RearGlow],
};
let mut controller = CtrlKbdLed {
led_prod: AuraDevice::X19b6,
led_node: LEDNode::None,
kd_brightness: KeyboardLed::default(),
supported_modes,
flip_effect_write: false,
sysfs_node: KeyboardLed::default(),
supported_data: supported_basic_modes,
per_key_mode_active: false,
config,
};
@@ -492,8 +306,8 @@ mod tests {
assert!(controller.create_multizone_default().is_err());
assert!(controller.config.multizone.is_none());
controller.supported_modes.basic_zones.push(AuraZone::Key1);
controller.supported_modes.basic_zones.push(AuraZone::Key2);
controller.supported_data.basic_zones.push(AuraZone::Key1);
controller.supported_data.basic_zones.push(AuraZone::Key2);
assert!(controller.create_multizone_default().is_ok());
assert!(controller.config.multizone.is_some());
@@ -508,20 +322,20 @@ mod tests {
#[test]
fn next_mode_create_multizone_if_no_config() {
// Checking to ensure set_mode errors when unsupported modes are tried
let config = AuraConfig::create_default(AuraDevice::X19b6, &LaptopLedData::default());
let supported_modes = LaptopLedData {
let config = AuraConfig::from_default_support(AuraDevice::X19b6, &LaptopLedData::default());
let supported_basic_modes = LaptopLedData {
board_name: String::new(),
layout_name: "ga401".to_owned(),
basic_modes: vec![AuraModeNum::Static],
basic_zones: vec![AuraZone::Key1, AuraZone::Key2],
advanced_type: rog_aura::AdvancedAuraType::None,
power_zones: vec![PowerZones::Keyboard, PowerZones::RearGlow],
};
let mut controller = CtrlKbdLed {
led_prod: AuraDevice::X19b6,
led_node: LEDNode::None,
kd_brightness: KeyboardLed::default(),
supported_modes,
flip_effect_write: false,
sysfs_node: KeyboardLed::default(),
supported_data: supported_basic_modes,
per_key_mode_active: false,
config,
};

View File

@@ -0,0 +1,287 @@
use std::collections::BTreeMap;
use std::sync::Arc;
use config_traits::StdConfig;
use log::{debug, error, info, warn};
use rog_aura::advanced::UsbPackets;
use rog_aura::aura_detection::PowerZones;
use rog_aura::usb::{AuraDevice, AuraPowerDev};
use rog_aura::{AuraEffect, AuraModeNum, AuraZone, LedBrightness};
use zbus::export::futures_util::lock::{Mutex, MutexGuard};
use zbus::export::futures_util::StreamExt;
use zbus::fdo::Error as ZbErr;
use zbus::{dbus_interface, Connection, SignalContext};
use super::controller::CtrlKbdLed;
use crate::error::RogError;
use crate::CtrlTask;
pub const AURA_ZBUS_NAME: &str = "Aura";
pub const AURA_ZBUS_PATH: &str = "/org/asuslinux/Aura";
#[derive(Clone)]
pub struct CtrlAuraZbus(pub Arc<Mutex<CtrlKbdLed>>);
impl CtrlAuraZbus {
fn update_config(lock: &mut CtrlKbdLed) -> Result<(), RogError> {
let bright = lock.sysfs_node.get_brightness()?;
lock.config.read();
lock.config.brightness = bright.into();
lock.config.write();
Ok(())
}
}
impl crate::ZbusRun for CtrlAuraZbus {
async fn add_to_server(self, server: &mut Connection) {
Self::add_to_server_helper(self, AURA_ZBUS_PATH, server).await;
}
}
/// The main interface for changing, reading, or notfying signals
///
/// LED commands are split between Brightness, Modes, Per-Key
#[dbus_interface(name = "org.asuslinux.Daemon")]
impl CtrlAuraZbus {
/// Return the device type for this Aura keyboard
#[dbus_interface(property)]
async fn device_type(&self) -> AuraDevice {
let ctrl = self.0.lock().await;
ctrl.led_prod
}
/// Return the current LED brightness
#[dbus_interface(property)]
async fn brightness(&self) -> Result<LedBrightness, ZbErr> {
let ctrl = self.0.lock().await;
Ok(ctrl.sysfs_node.get_brightness().map(|n| n.into())?)
}
/// Set the keyboard brightness level (0-3)
#[dbus_interface(property)]
async fn set_brightness(&mut self, brightness: LedBrightness) -> Result<(), ZbErr> {
let ctrl = self.0.lock().await;
Ok(ctrl.sysfs_node.set_brightness(brightness.into())?)
}
/// Total levels of brightness available
#[dbus_interface(property)]
async fn supported_brightness(&self) -> Vec<LedBrightness> {
vec![
LedBrightness::Off,
LedBrightness::Low,
LedBrightness::Med,
LedBrightness::High,
]
}
/// The total available modes
#[dbus_interface(property)]
async fn supported_basic_modes(&self) -> Result<Vec<AuraModeNum>, ZbErr> {
let ctrl = self.0.lock().await;
Ok(ctrl.config.builtins.keys().cloned().collect())
}
#[dbus_interface(property)]
async fn supported_basic_zones(&self) -> Result<Vec<AuraZone>, ZbErr> {
let ctrl = self.0.lock().await;
Ok(ctrl.supported_data.basic_zones.clone())
}
#[dbus_interface(property)]
async fn supported_power_zones(&self) -> Result<Vec<PowerZones>, ZbErr> {
let ctrl = self.0.lock().await;
Ok(ctrl.supported_data.power_zones.clone())
}
/// The current mode data
#[dbus_interface(property)]
async fn led_mode(&self) -> Result<AuraModeNum, ZbErr> {
let ctrl = self.0.lock().await;
Ok(ctrl.config.current_mode)
}
/// Set an Aura effect if the effect mode or zone is supported.
///
/// On success the aura config file is read to refresh cached values, then
/// the effect is stored and config written to disk.
#[dbus_interface(property)]
async fn set_led_mode(&mut self, num: AuraModeNum) -> Result<(), ZbErr> {
let mut ctrl = self.0.lock().await;
ctrl.config.current_mode = num;
ctrl.write_current_config_mode()?;
if ctrl.config.brightness == LedBrightness::Off {
ctrl.config.brightness = LedBrightness::Med;
}
ctrl.sysfs_node
.set_brightness(ctrl.config.brightness.into())?;
ctrl.config.write();
Ok(())
}
/// The current mode data
#[dbus_interface(property)]
async fn led_mode_data(&self) -> Result<AuraEffect, ZbErr> {
let ctrl = self.0.lock().await;
let mode = ctrl.config.current_mode;
match ctrl.config.builtins.get(&mode) {
Some(effect) => Ok(effect.clone()),
None => Err(ZbErr::Failed("Could not get the current effect".into())),
}
}
/// Set an Aura effect if the effect mode or zone is supported.
///
/// On success the aura config file is read to refresh cached values, then
/// the effect is stored and config written to disk.
#[dbus_interface(property)]
async fn set_led_mode_data(&mut self, effect: AuraEffect) -> Result<(), ZbErr> {
let mut ctrl = self.0.lock().await;
if !ctrl.supported_data.basic_modes.contains(&effect.mode)
|| effect.zone != AuraZone::None
&& !ctrl.supported_data.basic_zones.contains(&effect.zone)
{
return Err(ZbErr::NotSupported(format!(
"The Aura effect is not supported: {effect:?}"
)));
}
ctrl.write_mode(&effect)?;
if ctrl.config.brightness == LedBrightness::Off {
ctrl.config.brightness = LedBrightness::Med;
}
ctrl.sysfs_node
.set_brightness(ctrl.config.brightness.into())?;
ctrl.config.set_builtin(effect);
ctrl.config.write();
Ok(())
}
/// Get the data set for every mode available
async fn all_mode_data(&self) -> BTreeMap<AuraModeNum, AuraEffect> {
let ctrl = self.0.lock().await;
ctrl.config.builtins.clone()
}
// As property doesn't work for AuraPowerDev (complexity of serialization?)
#[dbus_interface(property)]
async fn led_power(&self) -> AuraPowerDev {
let ctrl = self.0.lock().await;
AuraPowerDev::from(&ctrl.config.enabled)
}
/// Set a variety of states, input is array of enum.
/// `enabled` sets if the sent array should be disabled or enabled
///
/// For Modern ROG devices the "enabled" flag is ignored.
#[dbus_interface(property)]
async fn set_led_power(&mut self, options: (AuraPowerDev, bool)) -> Result<(), ZbErr> {
let enabled = options.1;
let options = options.0;
let mut ctrl = self.0.lock().await;
for p in options.tuf {
ctrl.config.enabled.set_tuf(p, enabled);
}
for p in options.old_rog {
ctrl.config.enabled.set_0x1866(p, enabled);
}
ctrl.config.enabled.set_0x19b6(options.rog);
ctrl.config.write();
Ok(ctrl.set_power_states().map_err(|e| {
warn!("{}", e);
e
})?)
}
/// On machine that have some form of either per-key keyboard or per-zone
/// this can be used to write custom effects over dbus. The input is a
/// nested `Vec<Vec<8>>` where `Vec<u8>` is a raw USB packet
async fn direct_addressing_raw(&self, data: UsbPackets) -> Result<(), ZbErr> {
let mut ctrl = self.0.lock().await;
ctrl.write_effect_block(&data)?;
Ok(())
}
}
impl CtrlTask for CtrlAuraZbus {
fn zbus_path() -> &'static str {
AURA_ZBUS_PATH
}
async fn create_tasks(&self, _: SignalContext<'static>) -> Result<(), RogError> {
let load_save = |start: bool, mut lock: MutexGuard<'_, CtrlKbdLed>| {
// If waking up
if !start {
info!("CtrlKbdLedTask reloading brightness and modes");
lock.sysfs_node
.set_brightness(lock.config.brightness.into())
.map_err(|e| error!("CtrlKbdLedTask: {e}"))
.ok();
lock.write_current_config_mode()
.map_err(|e| error!("CtrlKbdLedTask: {e}"))
.ok();
} else if start {
Self::update_config(&mut lock)
.map_err(|e| error!("CtrlKbdLedTask: {e}"))
.ok();
}
};
let inner1 = self.0.clone();
let inner3 = self.0.clone();
self.create_sys_event_tasks(
move |sleeping| {
let inner1 = inner1.clone();
async move {
let lock = inner1.lock().await;
load_save(sleeping, lock);
}
},
move |_shutting_down| {
let inner3 = inner3.clone();
async move {
let lock = inner3.lock().await;
load_save(false, lock);
}
},
move |_lid_closed| {
// on lid change
async move {}
},
move |_power_plugged| {
// power change
async move {}
},
)
.await;
let ctrl2 = self.0.clone();
let ctrl = self.0.lock().await;
let watch = ctrl.sysfs_node.monitor_brightness()?;
tokio::spawn(async move {
let mut buffer = [0; 32];
watch
.into_event_stream(&mut buffer)
.unwrap()
.for_each(|_| async {
if let Some(lock) = ctrl2.try_lock() {
load_save(true, lock);
}
})
.await;
});
Ok(())
}
}
impl crate::Reloadable for CtrlAuraZbus {
async fn reload(&mut self) -> Result<(), RogError> {
let mut ctrl = self.0.lock().await;
debug!("CtrlKbdLedZbus: reloading keyboard mode");
ctrl.write_current_config_mode()?;
debug!("CtrlKbdLedZbus: reloading power states");
ctrl.set_power_states().map_err(|err| warn!("{err}")).ok();
Ok(())
}
}

292
asusd/src/ctrl_fancurves.rs Normal file
View File

@@ -0,0 +1,292 @@
use std::path::PathBuf;
use std::sync::Arc;
use config_traits::{StdConfig, StdConfigLoad};
use futures_lite::StreamExt;
use log::{debug, error, info, warn};
use rog_platform::platform::{RogPlatform, ThrottlePolicy};
use rog_profiles::error::ProfileError;
use rog_profiles::fan_curve_set::CurveData;
use rog_profiles::{find_fan_curve_node, FanCurvePU, FanCurveProfiles};
use serde_derive::{Deserialize, Serialize};
use tokio::sync::Mutex;
use zbus::{dbus_interface, Connection, SignalContext};
use crate::error::RogError;
use crate::{CtrlTask, CONFIG_PATH_BASE};
const MOD_NAME: &str = "FanCurveZbus";
pub const FAN_CURVE_ZBUS_NAME: &str = "FanCurves";
pub const FAN_CURVE_ZBUS_PATH: &str = "/org/asuslinux/FanCurves";
#[derive(Deserialize, Serialize, Debug, Default)]
pub struct FanCurveConfig {
pub profiles: FanCurveProfiles,
#[serde(skip)]
pub current: u8,
}
impl StdConfig for FanCurveConfig {
/// Create a new config. The defaults are zeroed so the device must be read
/// to get the actual device defaults.
fn new() -> Self {
Self::default()
}
fn file_name(&self) -> String {
"fan_curves.ron".to_owned()
}
fn config_dir() -> std::path::PathBuf {
PathBuf::from(CONFIG_PATH_BASE)
}
}
impl StdConfigLoad for FanCurveConfig {}
#[derive(Debug, Clone)]
pub struct CtrlFanCurveZbus {
config: Arc<Mutex<FanCurveConfig>>,
platform: RogPlatform,
}
// Non-zbus-derive impl
impl CtrlFanCurveZbus {
pub fn new() -> Result<Self, RogError> {
let platform = RogPlatform::new()?;
if platform.has_throttle_thermal_policy() {
info!("{MOD_NAME}: Device has profile control available");
find_fan_curve_node()?;
info!("{MOD_NAME}: Device has fan curves available");
let mut config = FanCurveConfig::new();
let mut fan_curves = FanCurveProfiles::default();
// Only do defaults if the config doesn't already exist\
if config.profiles.balanced.is_empty() || !config.file_path().exists() {
info!("{MOD_NAME}: Fetching default fan curves");
for this in [
ThrottlePolicy::Balanced,
ThrottlePolicy::Performance,
ThrottlePolicy::Quiet,
] {
// For each profile we need to switch to it before we
// can read the existing values from hardware. The ACPI method used
// for this is what limits us.
let next = ThrottlePolicy::next(this);
platform.set_throttle_thermal_policy(next.into())?;
let active = platform
.get_throttle_thermal_policy()
.map_or(ThrottlePolicy::Balanced, |t| t.into());
fan_curves.read_from_dev_profile(active, &find_fan_curve_node()?)?;
info!("{MOD_NAME}: {active:?}:");
for curve in fan_curves.get_fan_curves_for(active) {
info!("{}", String::from(curve));
}
}
config.profiles = fan_curves;
config.write();
} else {
info!("{MOD_NAME}: Fan curves previously stored, loading...");
config = config.load();
}
return Ok(Self {
config: Arc::new(Mutex::new(config)),
platform,
});
}
Err(ProfileError::NotSupported.into())
}
}
#[dbus_interface(name = "org.asuslinux.Daemon")]
impl CtrlFanCurveZbus {
/// Set all fan curves for a profile to enabled status. Will also activate a
/// fan curve if in the same profile mode
async fn set_fan_curves_enabled(
&mut self,
profile: ThrottlePolicy,
enabled: bool,
) -> zbus::fdo::Result<()> {
self.config
.lock()
.await
.profiles
.set_profile_curves_enabled(profile, enabled);
self.config
.lock()
.await
.profiles
.write_profile_curve_to_platform(profile, &mut find_fan_curve_node()?)?;
self.config.lock().await.write();
Ok(())
}
/// Set a single fan curve for a profile to enabled status. Will also
/// activate a fan curve if in the same profile mode
async fn set_profile_fan_curve_enabled(
&mut self,
profile: ThrottlePolicy,
fan: FanCurvePU,
enabled: bool,
) -> zbus::fdo::Result<()> {
self.config
.lock()
.await
.profiles
.set_profile_fan_curve_enabled(profile, fan, enabled);
self.config
.lock()
.await
.profiles
.write_profile_curve_to_platform(profile, &mut find_fan_curve_node()?)?;
self.config.lock().await.write();
Ok(())
}
/// Get the fan-curve data for the currently active ThrottlePolicy
async fn fan_curve_data(
&mut self,
profile: ThrottlePolicy,
) -> zbus::fdo::Result<Vec<CurveData>> {
let curve = self
.config
.lock()
.await
.profiles
.get_fan_curves_for(profile)
.to_vec();
Ok(curve)
}
/// Set the fan curve for the specified profile.
/// Will also activate the fan curve if the user is in the same mode.
async fn set_fan_curve(
&mut self,
profile: ThrottlePolicy,
curve: CurveData,
) -> zbus::fdo::Result<()> {
self.config
.lock()
.await
.profiles
.save_fan_curve(curve, profile)?;
self.config
.lock()
.await
.profiles
.write_profile_curve_to_platform(profile, &mut find_fan_curve_node()?)?;
self.config.lock().await.write();
Ok(())
}
/// Reset the stored (self) and device curve to the defaults of the
/// platform.
///
/// Each platform_profile has a different default and the defualt can be
/// read only for the currently active profile.
async fn set_active_curve_to_defaults(&mut self) -> zbus::fdo::Result<()> {
let active = self.platform.get_throttle_thermal_policy()?;
self.config
.lock()
.await
.profiles
.set_active_curve_to_defaults(active.into(), &mut find_fan_curve_node()?)?;
self.config.lock().await.write();
Ok(())
}
/// Reset the stored (self) and device curve to the defaults of the
/// platform.
///
/// Each platform_profile has a different default and the defualt can be
/// read only for the currently active profile.
async fn reset_profile_curves(&self, profile: ThrottlePolicy) -> zbus::fdo::Result<()> {
let active = self.platform.get_throttle_thermal_policy()?;
self.platform.set_throttle_thermal_policy(profile.into())?;
self.config
.lock()
.await
.profiles
.set_active_curve_to_defaults(active.into(), &mut find_fan_curve_node()?)?;
self.platform.set_throttle_thermal_policy(active)?;
self.config.lock().await.write();
Ok(())
}
}
impl crate::ZbusRun for CtrlFanCurveZbus {
async fn add_to_server(self, server: &mut Connection) {
Self::add_to_server_helper(self, FAN_CURVE_ZBUS_PATH, server).await;
}
}
impl CtrlTask for CtrlFanCurveZbus {
fn zbus_path() -> &'static str {
FAN_CURVE_ZBUS_PATH
}
async fn create_tasks(&self, _signal_ctxt: SignalContext<'static>) -> Result<(), RogError> {
let watch_throttle_thermal_policy = self.platform.monitor_throttle_thermal_policy()?;
let platform = self.platform.clone();
let config = self.config.clone();
let fan_curves = self.config.clone();
tokio::spawn(async move {
let mut buffer = [0; 32];
if let Ok(mut stream) = watch_throttle_thermal_policy.into_event_stream(&mut buffer) {
while (stream.next().await).is_some() {
debug!("watch_throttle_thermal_policy changed");
if let Ok(profile) = platform.get_throttle_thermal_policy().map_err(|e| {
error!("{MOD_NAME}: get_throttle_thermal_policy error: {e}");
}) {
if profile != config.lock().await.current {
fan_curves
.lock()
.await
.profiles
.write_profile_curve_to_platform(
profile.into(),
&mut find_fan_curve_node().unwrap(),
)
.map_err(|e| {
warn!("{MOD_NAME}: write_profile_curve_to_platform, {}", e)
})
.ok();
config.lock().await.current = profile;
}
}
}
}
});
Ok(())
}
}
impl crate::Reloadable for CtrlFanCurveZbus {
/// Fetch the active profile and use that to set all related components up
async fn reload(&mut self) -> Result<(), RogError> {
let active = self.platform.get_throttle_thermal_policy()?.into();
if let Ok(mut device) = find_fan_curve_node() {
// There is a possibility that the curve was default zeroed, so this call
// initialises the data from system read and we need to save it
// after
loop {
if let Ok(mut config) = self.config.try_lock() {
config
.profiles
.write_profile_curve_to_platform(active, &mut device)?;
break;
}
}
}
Ok(())
}
}

968
asusd/src/ctrl_platform.rs Normal file
View File

@@ -0,0 +1,968 @@
use std::path::Path;
use std::process::Command;
use std::sync::Arc;
use config_traits::StdConfig;
use log::{debug, error, info, warn};
use rog_platform::cpu::{CPUControl, CPUGovernor, CPUEPP};
use rog_platform::platform::{GpuMode, Properties, RogPlatform, ThrottlePolicy};
use rog_platform::power::AsusPower;
use zbus::export::futures_util::lock::Mutex;
use zbus::fdo::Error as FdoErr;
use zbus::{dbus_interface, Connection, ObjectServer, SignalContext};
use crate::config::Config;
use crate::ctrl_anime::trait_impls::{CtrlAnimeZbus, ANIME_ZBUS_NAME, ANIME_ZBUS_PATH};
use crate::ctrl_aura::trait_impls::{CtrlAuraZbus, AURA_ZBUS_NAME, AURA_ZBUS_PATH};
use crate::ctrl_fancurves::{CtrlFanCurveZbus, FAN_CURVE_ZBUS_NAME, FAN_CURVE_ZBUS_PATH};
use crate::error::RogError;
use crate::{task_watch_item, task_watch_item_notify, CtrlTask, ReloadAndNotify};
const PLATFORM_ZBUS_NAME: &str = "Platform";
const PLATFORM_ZBUS_PATH: &str = "/org/asuslinux/Platform";
macro_rules! platform_get_value {
($self:ident, $property:tt, $prop_name:literal) => {
concat_idents::concat_idents!(has = has_, $property {
if $self.platform.has() {
concat_idents::concat_idents!(get = get_, $property {
$self.platform
.get()
.map_err(|err| {
warn!("RogPlatform: {}: {}", $prop_name, err);
FdoErr::Failed(format!("RogPlatform: {}: {}", $prop_name, err))
})
})
} else {
info!("RogPlatform: {} not supported", $prop_name);
return Err(FdoErr::NotSupported(format!("RogPlatform: {} not supported", $prop_name)));
}
})
}
}
macro_rules! platform_get_value_if_some {
($self:ident, $property:tt, $prop_name:literal, $default:expr) => {
concat_idents::concat_idents!(has = has_, $property {
if $self.platform.has() {
let lock = $self.config.lock().await;
Ok(lock.$property.unwrap_or($default))
} else {
info!("RogPlatform: {} not supported", $prop_name);
return Err(FdoErr::NotSupported(format!("RogPlatform: {} not supported", $prop_name)));
}
})
}
}
macro_rules! platform_set_bool {
($self:ident, $property:tt, $prop_name:literal, $new_value:expr) => {
concat_idents::concat_idents!(has = has_, $property {
if $self.platform.has() {
concat_idents::concat_idents!(set = set_, $property {
$self.platform.set($new_value).map_err(|err| {
error!("RogPlatform: {} {err}", $prop_name);
FdoErr::NotSupported(format!("RogPlatform: {} {err}", $prop_name))
})?;
});
let mut lock = $self.config.lock().await;
lock.$property = $new_value;
lock.write();
Ok(())
} else {
info!("RogPlatform: {} not supported", $prop_name);
Err(FdoErr::NotSupported(format!("RogPlatform: {} not supported", $prop_name)))
}
})
}
}
/// Intended only for setting platform object values where the value isn't
/// retained across boots
macro_rules! platform_set_with_min_max {
($self:ident, $property:tt, $prop_name:literal, $new_value:expr, $min_value:expr, $max_value:expr) => {
if !($min_value..=$max_value).contains(&$new_value) {
Err(FdoErr::Failed(
format!("RogPlatform: {} value not in range {}=..={}", $prop_name, $min_value, $max_value)
))
} else {
concat_idents::concat_idents!(has = has_, $property {
if $self.platform.has() {
concat_idents::concat_idents!(set = set_, $property {
$self.platform.set($new_value).map_err(|err| {
error!("RogPlatform: {} {err}", $prop_name);
FdoErr::NotSupported(format!("RogPlatform: {} {err}", $prop_name))
})?;
});
let mut lock = $self.config.lock().await;
lock.$property = Some($new_value);
lock.write();
} else {
error!("RogPlatform: {} not supported", $prop_name);
return Err(FdoErr::NotSupported(format!("RogPlatform: {} not supported", $prop_name)));
}
});
Ok(())
}
}
}
#[derive(Clone)]
pub struct CtrlPlatform {
power: AsusPower,
platform: RogPlatform,
cpu_control: Option<CPUControl>,
config: Arc<Mutex<Config>>,
}
impl CtrlPlatform {
pub fn new(
config: Arc<Mutex<Config>>,
config_path: &Path,
signal_context: SignalContext<'static>,
) -> Result<Self, RogError> {
let platform = RogPlatform::new()?;
let power = AsusPower::new()?;
if !platform.has_gpu_mux_mode() {
info!("G-Sync Switchable Graphics or GPU MUX not detected");
info!("Standard graphics switching will still work.");
}
let config1 = config.clone();
let config_path = config_path.to_owned();
let ret_self = CtrlPlatform {
power,
platform,
config,
cpu_control: CPUControl::new()
.map_err(|e| error!("Couldn't get CPU control sysfs: {e}"))
.ok(),
};
let mut inotify_self = ret_self.clone();
tokio::spawn(async move {
use zbus::export::futures_util::StreamExt;
info!("Starting inotify watch for asusd config file");
let mut buffer = [0; 32];
loop {
// vi and vim do stupid shit causing the file watch to be removed
let inotify = inotify::Inotify::init().unwrap();
inotify
.watches()
.add(
&config_path,
inotify::WatchMask::MODIFY
| inotify::WatchMask::CLOSE_WRITE
| inotify::WatchMask::ATTRIB
| inotify::WatchMask::CREATE,
)
.map_err(|e| {
if e.kind() == std::io::ErrorKind::NotFound {
error!("Not found: {:?}", config_path);
} else {
error!("Could not set asusd config inotify: {:?}", config_path);
}
e
})
.ok();
let mut events = inotify.into_event_stream(&mut buffer).unwrap();
while let Some(ev) = events.next().await {
if let Ok(ev) = ev {
if ev.mask == inotify::EventMask::IGNORED {
warn!(
"Something modified asusd.ron vi/vim style. Now need to reload \
inotify watch"
);
break;
}
}
let res = config1.lock().await.read_new();
if let Some(new_cfg) = res {
inotify_self
.reload_and_notify(&signal_context, new_cfg)
.await
.unwrap();
}
}
}
});
Ok(ret_self)
}
fn set_gfx_mode(&self, mode: GpuMode) -> Result<(), RogError> {
self.platform.set_gpu_mux_mode(mode.to_mux_attr())?;
// self.update_initramfs(enable)?;
if mode == GpuMode::Discrete {
info!("Set system-level graphics mode: Dedicated Nvidia");
} else {
info!("Set system-level graphics mode: Optimus");
}
Ok(())
}
async fn run_ac_or_bat_cmd(&self, power_plugged: bool) {
let prog: Vec<String> = if power_plugged {
// AC ONLINE
self.config
.lock()
.await
.ac_command
.split_whitespace()
.map(|s| s.to_string())
.collect()
} else {
// BATTERY
self.config
.lock()
.await
.bat_command
.split_whitespace()
.map(|s| s.to_string())
.collect()
};
if prog.len() > 1 {
let mut cmd = Command::new(&prog[0]);
for arg in prog.iter().skip(1) {
cmd.arg(arg);
}
if let Err(e) = cmd.spawn() {
if power_plugged {
error!("AC power command error: {e}");
} else {
error!("Battery power command error: {e}");
}
}
}
}
fn check_and_set_epp(&self, enegy_pref: CPUEPP, change_epp: bool) {
if !change_epp {
info!("ThrottlePolicy unlinked from EPP");
return;
}
info!("ThrottlePolicy setting EPP");
if let Some(cpu) = self.cpu_control.as_ref() {
if let Ok(epp) = cpu.get_available_epp() {
debug!("Available EPP: {epp:?}");
if epp.contains(&enegy_pref) {
debug!("Setting {enegy_pref:?}");
cpu.set_epp(enegy_pref).ok();
} else if let Ok(gov) = cpu.get_governor() {
if gov != CPUGovernor::Powersave {
warn!("powersave governor is not is use, you should use it.");
}
}
}
}
}
async fn get_config_epp_for_throttle(&self, throttle: ThrottlePolicy) -> CPUEPP {
match throttle {
ThrottlePolicy::Balanced => self.config.lock().await.throttle_balanced_epp,
ThrottlePolicy::Performance => self.config.lock().await.throttle_performance_epp,
ThrottlePolicy::Quiet => self.config.lock().await.throttle_quiet_epp,
}
}
async fn update_policy_ac_or_bat(&self, power_plugged: bool, change_epp: bool) {
let throttle = if power_plugged {
self.config.lock().await.throttle_policy_on_ac
} else {
self.config.lock().await.throttle_policy_on_battery
};
debug!("Setting {throttle:?} before EPP");
let epp = self.get_config_epp_for_throttle(throttle).await;
self.platform
.set_throttle_thermal_policy(throttle.into())
.ok();
self.check_and_set_epp(epp, change_epp);
}
}
#[dbus_interface(name = "org.asuslinux.Daemon")]
impl CtrlPlatform {
/// Returns a list of property names that this system supports
async fn supported_properties(&self) -> Vec<Properties> {
let mut supported = Vec::new();
macro_rules! platform_name {
($property:tt, $prop_name:ty) => {
concat_idents::concat_idents!(has = has_, $property {
if self.platform.has() {
supported.push($prop_name.to_owned());
}
})
}
}
macro_rules! power_name {
($property:tt, $prop_name:ty) => {
concat_idents::concat_idents!(has = has_, $property {
if self.power.has() {
supported.push($prop_name.to_owned());
}
})
}
}
// TODO: automate this
power_name!(
charge_control_end_threshold,
Properties::ChargeControlEndThreshold
);
platform_name!(dgpu_disable, Properties::DgpuDisable);
platform_name!(gpu_mux_mode, Properties::GpuMuxMode);
platform_name!(post_animation_sound, Properties::PostAnimationSound);
platform_name!(panel_od, Properties::PanelOd);
platform_name!(mini_led_mode, Properties::MiniLedMode);
platform_name!(egpu_enable, Properties::EgpuEnable);
platform_name!(throttle_thermal_policy, Properties::ThrottlePolicy);
platform_name!(ppt_pl1_spl, Properties::PptPl1Spl);
platform_name!(ppt_pl2_sppt, Properties::PptPl2Sppt);
platform_name!(ppt_fppt, Properties::PptFppt);
platform_name!(ppt_apu_sppt, Properties::PptApuSppt);
platform_name!(ppt_platform_sppt, Properties::PptPlatformSppt);
platform_name!(nv_dynamic_boost, Properties::NvDynamicBoost);
platform_name!(nv_temp_target, Properties::NvTempTarget);
supported
}
async fn supported_interfaces(
&self,
#[zbus(object_server)] server: &ObjectServer,
) -> Vec<String> {
let mut interfaces = Vec::default();
if server
.interface::<_, CtrlAnimeZbus>(ANIME_ZBUS_PATH)
.await
.is_ok()
{
interfaces.push(ANIME_ZBUS_NAME.to_owned());
}
if server
.interface::<_, CtrlAuraZbus>(AURA_ZBUS_PATH)
.await
.is_ok()
{
interfaces.push(AURA_ZBUS_NAME.to_owned());
}
if server
.interface::<_, CtrlFanCurveZbus>(FAN_CURVE_ZBUS_PATH)
.await
.is_ok()
{
interfaces.push(FAN_CURVE_ZBUS_NAME.to_owned());
}
if server
.interface::<_, CtrlPlatform>(PLATFORM_ZBUS_PATH)
.await
.is_ok()
{
interfaces.push(PLATFORM_ZBUS_NAME.to_owned());
}
interfaces
}
#[dbus_interface(property)]
fn charge_control_end_threshold(&self) -> Result<u8, FdoErr> {
let limit = self.power.get_charge_control_end_threshold()?;
Ok(limit)
}
#[dbus_interface(property)]
async fn set_charge_control_end_threshold(&mut self, limit: u8) -> Result<(), FdoErr> {
if !(20..=100).contains(&limit) {
return Err(RogError::ChargeLimit(limit))?;
}
self.power.set_charge_control_end_threshold(limit)?;
self.config.lock().await.charge_control_end_threshold = limit;
Ok(())
}
#[dbus_interface(property)]
fn gpu_mux_mode(&self) -> Result<u8, FdoErr> {
self.platform.get_gpu_mux_mode().map_err(|err| {
warn!("RogPlatform: set_gpu_mux_mode {err}");
FdoErr::NotSupported("RogPlatform: set_gpu_mux_mode not supported".to_owned())
})
}
#[dbus_interface(property)]
async fn set_gpu_mux_mode(&mut self, mode: u8) -> Result<(), FdoErr> {
if self.platform.has_gpu_mux_mode() {
self.set_gfx_mode(mode.into()).map_err(|err| {
warn!("RogPlatform: set_gpu_mux_mode {}", err);
FdoErr::Failed(format!("RogPlatform: set_gpu_mux_mode: {err}"))
})
} else {
Err(FdoErr::NotSupported(
"RogPlatform: set_gpu_mux_mode not supported".to_owned(),
))
}
}
/// Toggle to next platform_profile. Names provided by `Profiles`.
/// If fan-curves are supported will also activate a fan curve for profile.
async fn next_throttle_thermal_policy(
&mut self,
#[zbus(signal_context)] ctxt: SignalContext<'_>,
) -> Result<(), FdoErr> {
let policy: ThrottlePolicy =
platform_get_value!(self, throttle_thermal_policy, "throttle_thermal_policy")
.map(|n| n.into())?;
let policy = ThrottlePolicy::next(policy);
if self.platform.has_throttle_thermal_policy() {
let change_epp = self.config.lock().await.throttle_policy_linked_epp;
let epp = self.get_config_epp_for_throttle(policy).await;
self.check_and_set_epp(epp, change_epp);
self.platform
.set_throttle_thermal_policy(policy.into())
.map_err(|err| {
warn!("RogPlatform: throttle_thermal_policy {}", err);
FdoErr::Failed(format!("RogPlatform: throttle_thermal_policy: {err}"))
})?;
Ok(self.throttle_thermal_policy_changed(&ctxt).await?)
} else {
Err(FdoErr::NotSupported(
"RogPlatform: throttle_thermal_policy not supported".to_owned(),
))
}
}
#[dbus_interface(property)]
fn throttle_thermal_policy(&self) -> Result<ThrottlePolicy, FdoErr> {
platform_get_value!(self, throttle_thermal_policy, "throttle_thermal_policy")
.map(|n| n.into())
}
#[dbus_interface(property)]
async fn set_throttle_thermal_policy(&mut self, policy: ThrottlePolicy) -> Result<(), FdoErr> {
// TODO: watch for external changes
if self.platform.has_throttle_thermal_policy() {
let change_epp = self.config.lock().await.throttle_policy_linked_epp;
let epp = self.get_config_epp_for_throttle(policy).await;
self.check_and_set_epp(epp, change_epp);
self.platform
.set_throttle_thermal_policy(policy.into())
.map_err(|err| {
warn!("RogPlatform: throttle_thermal_policy {}", err);
FdoErr::Failed(format!("RogPlatform: throttle_thermal_policy: {err}"))
})
} else {
Err(FdoErr::NotSupported(
"RogPlatform: throttle_thermal_policy not supported".to_owned(),
))
}
}
#[dbus_interface(property)]
async fn throttle_policy_linked_epp(&self) -> Result<bool, FdoErr> {
Ok(self.config.lock().await.throttle_policy_linked_epp)
}
#[dbus_interface(property)]
async fn set_throttle_policy_linked_epp(&self, linked: bool) -> Result<(), zbus::Error> {
self.config.lock().await.throttle_policy_linked_epp = linked;
Ok(())
}
#[dbus_interface(property)]
async fn throttle_policy_on_battery(&self) -> Result<ThrottlePolicy, FdoErr> {
Ok(self.config.lock().await.throttle_policy_on_battery)
}
#[dbus_interface(property)]
async fn set_throttle_policy_on_battery(
&mut self,
policy: ThrottlePolicy,
) -> Result<(), FdoErr> {
self.config.lock().await.throttle_policy_on_battery = policy;
self.set_throttle_thermal_policy(policy).await?;
Ok(())
}
#[dbus_interface(property)]
async fn throttle_policy_on_ac(&self) -> Result<ThrottlePolicy, FdoErr> {
Ok(self.config.lock().await.throttle_policy_on_ac)
}
#[dbus_interface(property)]
async fn set_throttle_policy_on_ac(&mut self, policy: ThrottlePolicy) -> Result<(), FdoErr> {
self.config.lock().await.throttle_policy_on_ac = policy;
self.set_throttle_thermal_policy(policy).await?;
Ok(())
}
/// The energy_performance_preference for the quiet throttle/platform
/// profile
#[dbus_interface(property)]
async fn throttle_quiet_epp(&self) -> Result<CPUEPP, FdoErr> {
Ok(self.config.lock().await.throttle_quiet_epp)
}
#[dbus_interface(property)]
async fn set_throttle_quiet_epp(&mut self, epp: CPUEPP) -> Result<(), FdoErr> {
let change_pp = self.config.lock().await.throttle_policy_linked_epp;
self.config.lock().await.throttle_quiet_epp = epp;
self.check_and_set_epp(epp, change_pp);
Ok(())
}
/// The energy_performance_preference for the balanced throttle/platform
/// profile
#[dbus_interface(property)]
async fn throttle_balanced_epp(&self) -> Result<CPUEPP, FdoErr> {
Ok(self.config.lock().await.throttle_balanced_epp)
}
#[dbus_interface(property)]
async fn set_throttle_balanced_epp(&mut self, epp: CPUEPP) -> Result<(), FdoErr> {
let change_pp = self.config.lock().await.throttle_policy_linked_epp;
self.config.lock().await.throttle_balanced_epp = epp;
self.check_and_set_epp(epp, change_pp);
Ok(())
}
/// The energy_performance_preference for the performance throttle/platform
/// profile
#[dbus_interface(property)]
async fn throttle_performance_epp(&self) -> Result<CPUEPP, FdoErr> {
Ok(self.config.lock().await.throttle_performance_epp)
}
#[dbus_interface(property)]
async fn set_throttle_performance_epp(&mut self, epp: CPUEPP) -> Result<(), FdoErr> {
let change_pp = self.config.lock().await.throttle_policy_linked_epp;
self.config.lock().await.throttle_performance_epp = epp;
self.check_and_set_epp(epp, change_pp);
Ok(())
}
/// ***********************************************************************
#[dbus_interface(property)]
fn post_animation_sound(&self) -> Result<bool, FdoErr> {
platform_get_value!(self, post_animation_sound, "post_animation_sound")
}
#[dbus_interface(property)]
async fn set_post_animation_sound(&mut self, on: bool) -> Result<(), FdoErr> {
if self.platform.has_post_animation_sound() {
self.platform.set_post_animation_sound(on).map_err(|err| {
warn!("RogPlatform: set_post_animation_sound {}", err);
FdoErr::Failed(format!("RogPlatform: set_post_animation_sound: {err}"))
})
} else {
Err(FdoErr::NotSupported(
"RogPlatform: set_post_animation_sound not supported".to_owned(),
))
}
}
/// Get the `panel_od` value from platform. Updates the stored value in
/// internal config also.
#[dbus_interface(property)]
fn panel_od(&self) -> Result<bool, FdoErr> {
platform_get_value!(self, panel_od, "panel_od")
}
#[dbus_interface(property)]
async fn set_panel_od(&mut self, overdrive: bool) -> Result<(), FdoErr> {
platform_set_bool!(self, panel_od, "panel_od", overdrive)
}
/// Get the `panel_od` value from platform. Updates the stored value in
/// internal config also.
#[dbus_interface(property)]
fn mini_led_mode(&self) -> Result<bool, FdoErr> {
platform_get_value!(self, mini_led_mode, "mini_led_mode")
}
#[dbus_interface(property)]
async fn set_mini_led_mode(&mut self, on: bool) -> Result<(), FdoErr> {
platform_set_bool!(self, mini_led_mode, "mini_led_mode", on)
}
#[dbus_interface(property)]
fn dgpu_disable(&self) -> Result<bool, FdoErr> {
platform_get_value!(self, dgpu_disable, "dgpu_disable")
}
#[dbus_interface(property)]
fn egpu_enable(&self) -> Result<bool, FdoErr> {
platform_get_value!(self, egpu_enable, "egpu_enable")
}
/// ***********************************************************************
/// Set the Package Power Target total of CPU: PL1 on Intel, SPL on AMD.
/// Shown on Intel+Nvidia or AMD+Nvidia based systems:
/// * min=5, max=250
#[dbus_interface(property)]
async fn ppt_pl1_spl(&self) -> Result<u8, FdoErr> {
platform_get_value_if_some!(self, ppt_pl1_spl, "ppt_pl1_spl", 5)
}
#[dbus_interface(property)]
async fn set_ppt_pl1_spl(&mut self, value: u8) -> Result<(), FdoErr> {
platform_set_with_min_max!(self, ppt_pl1_spl, "ppt_pl1_spl", value, 5, 250)
}
/// Set the Slow Package Power Tracking Limit of CPU: PL2 on Intel, SPPT,
/// on AMD. Shown on Intel+Nvidia or AMD+Nvidia based systems:
/// * min=5, max=250
#[dbus_interface(property)]
async fn ppt_pl2_sppt(&self) -> Result<u8, FdoErr> {
platform_get_value_if_some!(self, ppt_pl2_sppt, "ppt_pl2_sppt", 5)
}
#[dbus_interface(property)]
async fn set_ppt_pl2_sppt(&mut self, value: u8) -> Result<(), FdoErr> {
platform_set_with_min_max!(self, ppt_pl2_sppt, "ppt_pl2_sppt", value, 5, 250)
}
/// Set the Fast Package Power Tracking Limit of CPU. AMD+Nvidia only:
/// * min=5, max=250
#[dbus_interface(property)]
async fn ppt_fppt(&self) -> Result<u8, FdoErr> {
platform_get_value_if_some!(self, ppt_fppt, "ppt_fppt", 5)
}
#[dbus_interface(property)]
async fn set_ppt_fppt(&mut self, value: u8) -> Result<(), FdoErr> {
platform_set_with_min_max!(self, ppt_fppt, "ppt_fppt", value, 5, 250)
}
/// Set the APU SPPT limit. Shown on full AMD systems only:
/// * min=5, max=130
#[dbus_interface(property)]
async fn ppt_apu_sppt(&self) -> Result<u8, FdoErr> {
platform_get_value_if_some!(self, ppt_apu_sppt, "ppt_apu_sppt", 5)
}
#[dbus_interface(property)]
async fn set_ppt_apu_sppt(&mut self, value: u8) -> Result<(), FdoErr> {
platform_set_with_min_max!(self, ppt_apu_sppt, "ppt_apu_sppt", value, 5, 130)
}
/// Set the platform SPPT limit. Shown on full AMD systems only:
/// * min=5, max=130
#[dbus_interface(property)]
async fn ppt_platform_sppt(&self) -> Result<u8, FdoErr> {
platform_get_value_if_some!(self, ppt_platform_sppt, "ppt_platform_sppt", 5)
}
#[dbus_interface(property)]
async fn set_ppt_platform_sppt(&mut self, value: u8) -> Result<(), FdoErr> {
platform_set_with_min_max!(self, ppt_platform_sppt, "ppt_platform_sppt", value, 5, 130)
}
/// Set the dynamic boost limit of the Nvidia dGPU:
/// * min=5, max=25
#[dbus_interface(property)]
async fn nv_dynamic_boost(&self) -> Result<u8, FdoErr> {
platform_get_value_if_some!(self, nv_dynamic_boost, "nv_dynamic_boost", 5)
}
#[dbus_interface(property)]
async fn set_nv_dynamic_boost(&mut self, value: u8) -> Result<(), FdoErr> {
platform_set_with_min_max!(self, nv_dynamic_boost, "nv_dynamic_boost", value, 5, 25)
}
/// Set the target temperature limit of the Nvidia dGPU:
/// * min=75, max=87
#[dbus_interface(property)]
async fn nv_temp_target(&self) -> Result<u8, FdoErr> {
platform_get_value_if_some!(self, nv_temp_target, "nv_temp_target", 5)
}
#[dbus_interface(property)]
async fn set_nv_temp_target(&mut self, value: u8) -> Result<(), FdoErr> {
platform_set_with_min_max!(self, nv_temp_target, "nv_temp_target", value, 5, 87)
}
}
impl crate::ZbusRun for CtrlPlatform {
async fn add_to_server(self, server: &mut Connection) {
Self::add_to_server_helper(self, PLATFORM_ZBUS_PATH, server).await;
}
}
impl ReloadAndNotify for CtrlPlatform {
type Data = Config;
async fn reload_and_notify(
&mut self,
signal_context: &SignalContext<'static>,
data: Self::Data,
) -> Result<(), RogError> {
let mut config = self.config.lock().await;
if *config != data {
info!("asusd.ron updated externally, reloading and updating internal copy");
if self.power.has_charge_control_end_threshold() {
self.power
.set_charge_control_end_threshold(data.charge_control_end_threshold)?;
self.charge_control_end_threshold_changed(signal_context)
.await?;
}
if self.platform.has_panel_od() && config.panel_od != data.panel_od {
self.platform.set_panel_od(data.panel_od)?;
self.panel_od_changed(signal_context).await?;
}
if self.platform.has_mini_led_mode() && config.mini_led_mode != data.mini_led_mode {
self.platform.set_mini_led_mode(data.mini_led_mode)?;
self.mini_led_mode_changed(signal_context).await?;
}
if self.platform.has_throttle_thermal_policy()
&& config.throttle_policy_linked_epp != data.throttle_policy_linked_epp
{
// TODO: extra stuff
}
macro_rules! ppt_reload_and_notify {
($property:tt, $prop_name:literal) => {
concat_idents::concat_idents!(has = has_, $property {
if self.platform.has() && config.$property != data.$property {
concat_idents::concat_idents!(set = set_, $property {
self.platform
.set_ppt_pl1_spl(data.$property.unwrap_or_default())?;});
concat_idents::concat_idents!(changed = $property, _changed {
self.ppt_pl1_spl_changed(signal_context).await?;});
}
})
}
}
ppt_reload_and_notify!(ppt_pl1_spl, "ppt_pl1_spl");
ppt_reload_and_notify!(ppt_pl2_sppt, "ppt_pl2_sppt");
ppt_reload_and_notify!(ppt_fppt, "ppt_fppt");
ppt_reload_and_notify!(ppt_apu_sppt, "ppt_apu_sppt");
ppt_reload_and_notify!(ppt_platform_sppt, "ppt_platform_sppt");
ppt_reload_and_notify!(nv_dynamic_boost, "nv_dynamic_boost");
ppt_reload_and_notify!(nv_temp_target, "nv_temp_target");
*config = data;
}
Ok(())
}
}
impl crate::Reloadable for CtrlPlatform {
async fn reload(&mut self) -> Result<(), RogError> {
if self.platform.has_panel_od() {
self.platform
.set_panel_od(self.config.lock().await.panel_od)?;
}
if self.platform.has_mini_led_mode() {
self.platform
.set_mini_led_mode(self.config.lock().await.mini_led_mode)?;
}
if self.power.has_charge_control_end_threshold() {
self.power.set_charge_control_end_threshold(
self.config.lock().await.charge_control_end_threshold,
)?;
}
if let Ok(power_plugged) = self.power.get_online() {
self.config.lock().await.last_power_plugged = power_plugged;
if self.platform.has_throttle_thermal_policy() {
let change_epp = self.config.lock().await.throttle_policy_linked_epp;
self.update_policy_ac_or_bat(power_plugged > 0, change_epp)
.await;
}
self.run_ac_or_bat_cmd(power_plugged > 0).await;
}
Ok(())
}
}
impl CtrlPlatform {
task_watch_item!(panel_od platform);
task_watch_item!(mini_led_mode platform);
task_watch_item!(charge_control_end_threshold power);
task_watch_item_notify!(post_animation_sound platform);
task_watch_item_notify!(dgpu_disable platform);
task_watch_item_notify!(egpu_enable platform);
// NOTE: see note further below
task_watch_item_notify!(gpu_mux_mode platform);
task_watch_item_notify!(ppt_pl1_spl platform);
task_watch_item_notify!(ppt_pl2_sppt platform);
task_watch_item_notify!(ppt_fppt platform);
task_watch_item_notify!(ppt_apu_sppt platform);
task_watch_item_notify!(ppt_platform_sppt platform);
task_watch_item_notify!(nv_dynamic_boost platform);
task_watch_item_notify!(nv_temp_target platform);
}
impl CtrlTask for CtrlPlatform {
fn zbus_path() -> &'static str {
PLATFORM_ZBUS_PATH
}
async fn create_tasks(&self, signal_ctxt: SignalContext<'static>) -> Result<(), RogError> {
let platform1 = self.clone();
let platform2 = self.clone();
let platform3 = self.clone();
self.create_sys_event_tasks(
move |sleeping| {
let platform1 = platform1.clone();
async move {
info!("RogPlatform reloading panel_od");
if !sleeping && platform1.platform.has_panel_od() {
platform1
.platform
.set_panel_od(platform1.config.lock().await.panel_od)
.map_err(|err| {
warn!("CtrlCharge: panel_od {}", err);
err
})
.ok();
}
if sleeping && platform1.power.has_charge_control_end_threshold() {
platform1.config.lock().await.charge_control_end_threshold = platform1
.power
.get_charge_control_end_threshold()
.unwrap_or(100);
} else if !sleeping && platform1.power.has_charge_control_end_threshold() {
platform1
.power
.set_charge_control_end_threshold(
platform1.config.lock().await.charge_control_end_threshold,
)
.ok();
}
if let Ok(power_plugged) = platform1.power.get_online() {
if platform1.config.lock().await.last_power_plugged != power_plugged {
if !sleeping && platform1.platform.has_throttle_thermal_policy() {
let change_epp =
platform1.config.lock().await.throttle_policy_linked_epp;
platform1
.update_policy_ac_or_bat(power_plugged > 0, change_epp)
.await;
}
if !sleeping {
platform1.run_ac_or_bat_cmd(power_plugged > 0).await;
}
platform1.config.lock().await.last_power_plugged = power_plugged;
}
}
}
},
move |shutting_down| {
let platform2 = platform2.clone();
async move {
info!("RogPlatform reloading panel_od");
let lock = platform2.config.lock().await;
if !shutting_down && platform2.platform.has_panel_od() {
platform2
.platform
.set_panel_od(lock.panel_od)
.map_err(|err| {
warn!("CtrlCharge: panel_od {}", err);
err
})
.ok();
}
}
},
move |_lid_closed| {
// on lid change
async move {}
},
move |power_plugged| {
let platform3 = platform3.clone();
// power change
async move {
if platform3.platform.has_throttle_thermal_policy() {
let change_epp = platform3.config.lock().await.throttle_policy_linked_epp;
platform3
.update_policy_ac_or_bat(power_plugged, change_epp)
.await;
}
platform3.run_ac_or_bat_cmd(power_plugged).await;
}
},
)
.await;
// This spawns a new task for every item.
// TODO: find a better way to manage this
self.watch_panel_od(signal_ctxt.clone()).await?;
self.watch_mini_led_mode(signal_ctxt.clone()).await?;
self.watch_charge_control_end_threshold(signal_ctxt.clone())
.await?;
self.watch_dgpu_disable(signal_ctxt.clone()).await?;
self.watch_egpu_enable(signal_ctxt.clone()).await?;
// NOTE: Can't have this as a watch because on a write to it, it reverts back to
// booted-with value as it does not actually change until reboot.
self.watch_gpu_mux_mode(signal_ctxt.clone()).await?;
self.watch_post_animation_sound(signal_ctxt.clone()).await?;
self.watch_ppt_pl1_spl(signal_ctxt.clone()).await?;
self.watch_ppt_pl2_sppt(signal_ctxt.clone()).await?;
self.watch_ppt_fppt(signal_ctxt.clone()).await?;
self.watch_ppt_apu_sppt(signal_ctxt.clone()).await?;
self.watch_ppt_platform_sppt(signal_ctxt.clone()).await?;
self.watch_nv_dynamic_boost(signal_ctxt.clone()).await?;
self.watch_nv_temp_target(signal_ctxt.clone()).await?;
let watch_throttle_thermal_policy = self.platform.monitor_throttle_thermal_policy()?;
let ctrl = self.clone();
tokio::spawn(async move {
use futures_lite::StreamExt;
let mut buffer = [0; 32];
if let Ok(mut stream) = watch_throttle_thermal_policy.into_event_stream(&mut buffer) {
while (stream.next().await).is_some() {
// this blocks
debug!("Platform: watch_throttle_thermal_policy changed");
if let Ok(profile) = ctrl
.platform
.get_throttle_thermal_policy()
.map(ThrottlePolicy::from)
.map_err(|e| {
error!("Platform: get_throttle_thermal_policy error: {e}");
})
{
let change_epp = ctrl.config.lock().await.throttle_policy_linked_epp;
let epp = ctrl.get_config_epp_for_throttle(profile).await;
ctrl.check_and_set_epp(epp, change_epp);
}
}
}
});
Ok(())
}
}

View File

@@ -6,24 +6,18 @@ use std::time::Duration;
use ::zbus::export::futures_util::lock::Mutex;
use ::zbus::Connection;
use config_traits::{StdConfig, StdConfigLoad, StdConfigLoad2};
use daemon::config::Config;
use daemon::ctrl_anime::config::AnimeConfig;
use daemon::ctrl_anime::trait_impls::CtrlAnimeZbus;
use daemon::ctrl_anime::CtrlAnime;
use daemon::ctrl_aura::controller::CtrlKbdLed;
use daemon::ctrl_aura::trait_impls::CtrlKbdLedZbus;
use daemon::ctrl_platform::CtrlPlatform;
use daemon::ctrl_power::CtrlPower;
use daemon::ctrl_profiles::config::ProfileConfig;
use daemon::ctrl_profiles::controller::CtrlPlatformProfile;
use daemon::ctrl_profiles::trait_impls::ProfileZbus;
use daemon::ctrl_supported::SupportedFunctions;
use daemon::{print_board_info, CtrlTask, GetSupported, Reloadable, ZbusRun};
use asusd::config::Config;
use asusd::ctrl_anime::config::AnimeConfig;
use asusd::ctrl_anime::trait_impls::CtrlAnimeZbus;
use asusd::ctrl_anime::CtrlAnime;
use asusd::ctrl_aura::controller::CtrlKbdLed;
use asusd::ctrl_aura::trait_impls::CtrlAuraZbus;
use asusd::ctrl_fancurves::CtrlFanCurveZbus;
use asusd::ctrl_platform::CtrlPlatform;
use asusd::{print_board_info, CtrlTask, Reloadable, ZbusRun, DBUS_NAME};
use config_traits::{StdConfig, StdConfigLoad2, StdConfigLoad3};
use log::{error, info, warn};
use rog_aura::aura_detection::LaptopLedData;
use rog_dbus::DBUS_NAME;
use rog_profiles::Profile;
use tokio::time::sleep;
use zbus::SignalContext;
@@ -50,10 +44,9 @@ async fn main() -> Result<(), Box<dyn std::error::Error>> {
return Ok(());
}
info!(" daemon v{}", daemon::VERSION);
info!(" daemon v{}", asusd::VERSION);
info!(" rog-anime v{}", rog_anime::VERSION);
info!(" rog-aura v{}", rog_aura::VERSION);
info!(" rog-dbus v{}", rog_dbus::VERSION);
info!(" rog-profiles v{}", rog_profiles::VERSION);
info!("rog-platform v{}", rog_platform::VERSION);
@@ -63,19 +56,24 @@ async fn main() -> Result<(), Box<dyn std::error::Error>> {
/// The actual main loop for the daemon
async fn start_daemon() -> Result<(), Box<dyn Error>> {
let supported = SupportedFunctions::get_supported();
// let supported = SupportedFunctions::get_supported();
print_board_info();
println!("{}", supported.supported_functions());
// println!("{:?}", supported.supported_functions());
// Start zbus server
let mut connection = Connection::system().await?;
let config = Config::new().load();
let cfg_path = config.file_path();
let config = Arc::new(Mutex::new(config));
supported.add_to_server(&mut connection).await;
// supported.add_to_server(&mut connection).await;
match CtrlPlatform::new(config.clone()) {
match CtrlPlatform::new(
config.clone(),
&cfg_path,
CtrlPlatform::signal_context(&connection)?,
) {
Ok(ctrl) => {
let sig_ctx = CtrlPlatform::signal_context(&connection)?;
start_tasks(ctrl, &mut connection, sig_ctx).await?;
@@ -85,32 +83,16 @@ async fn start_daemon() -> Result<(), Box<dyn Error>> {
}
}
match CtrlPower::new(config.clone()) {
match CtrlFanCurveZbus::new() {
Ok(ctrl) => {
let sig_ctx = CtrlPower::signal_context(&connection)?;
let sig_ctx = CtrlFanCurveZbus::signal_context(&connection)?;
start_tasks(ctrl, &mut connection, sig_ctx).await?;
}
Err(err) => {
error!("CtrlPower: {}", err);
error!("FanCurves: {}", err);
}
}
if Profile::is_platform_profile_supported() {
let profile_config = ProfileConfig::new().load();
match CtrlPlatformProfile::new(profile_config) {
Ok(ctrl) => {
let zbus = ProfileZbus(Arc::new(Mutex::new(ctrl)));
let sig_ctx = ProfileZbus::signal_context(&connection)?;
start_tasks(zbus, &mut connection, sig_ctx).await?;
}
Err(err) => {
error!("Profile control: {}", err);
}
}
} else {
warn!("platform_profile support not found");
}
match CtrlAnime::new(AnimeConfig::new().load()) {
Ok(ctrl) => {
let zbus = CtrlAnimeZbus(Arc::new(Mutex::new(ctrl)));
@@ -127,8 +109,8 @@ async fn start_daemon() -> Result<(), Box<dyn Error>> {
// detection first
match CtrlKbdLed::new(laptop) {
Ok(ctrl) => {
let zbus = CtrlKbdLedZbus(Arc::new(Mutex::new(ctrl)));
let sig_ctx = CtrlKbdLedZbus::signal_context(&connection)?;
let zbus = CtrlAuraZbus(Arc::new(Mutex::new(ctrl)));
let sig_ctx = CtrlAuraZbus::signal_context(&connection)?;
start_tasks(zbus, &mut connection, sig_ctx).await?;
}
Err(err) => {

300
asusd/src/lib.rs Normal file
View File

@@ -0,0 +1,300 @@
#![deny(unused_must_use)]
/// Configuration loading, saving
pub mod config;
/// Control of anime matrix display
pub mod ctrl_anime;
/// Keyboard LED brightness control, RGB, and LED display modes
pub mod ctrl_aura;
/// Control platform profiles + fan-curves if available
pub mod ctrl_fancurves;
/// Control ASUS bios function such as boot sound, Optimus/Dedicated gfx mode
pub mod ctrl_platform;
pub mod error;
use std::future::Future;
use std::time::Duration;
use dmi_id::DMIID;
use futures_lite::stream::StreamExt;
use log::{debug, info, warn};
use logind_zbus::manager::ManagerProxy;
use tokio::time::sleep;
use zbus::zvariant::ObjectPath;
use zbus::{CacheProperties, Connection, SignalContext};
use crate::error::RogError;
const CONFIG_PATH_BASE: &str = "/etc/asusd/";
pub static DBUS_NAME: &str = "org.asuslinux.Daemon";
pub static DBUS_PATH: &str = "/org/asuslinux/Daemon";
pub static DBUS_IFACE: &str = "org.asuslinux.Daemon";
/// This macro adds a function which spawns an `inotify` task on the passed in
/// `Executor`.
///
/// The generated function is `watch_<name>()`. Self requires the following
/// methods to be available:
/// - `<name>() -> SomeValue`, functionally is a getter, but is allowed to have
/// side effects.
/// - `notify_<name>(SignalContext, SomeValue)`
///
/// In most cases if `SomeValue` is stored in a config then `<name>()` getter is
/// expected to update it. The getter should *never* write back to the path or
/// attribute that is being watched or an infinite loop will occur.
///
/// # Example
///
/// ```ignore
/// impl RogPlatform {
/// task_watch_item!(panel_od platform);
/// task_watch_item!(gpu_mux_mode platform);
/// }
/// ```
/// // TODO: this is kind of useless if it can't trigger some action
#[macro_export]
macro_rules! task_watch_item {
($name:ident $self_inner:ident) => {
concat_idents::concat_idents!(fn_name = watch_, $name {
async fn fn_name(
&self,
signal_ctxt: SignalContext<'static>,
) -> Result<(), RogError> {
use zbus::export::futures_util::StreamExt;
let ctrl = self.clone();
concat_idents::concat_idents!(watch_fn = monitor_, $name {
match self.$self_inner.watch_fn() {
Ok(watch) => {
tokio::spawn(async move {
let mut buffer = [0; 32];
watch.into_event_stream(&mut buffer).unwrap().for_each(|_| async {
if let Ok(value) = ctrl.$name() { // get new value from zbus method
concat_idents::concat_idents!(notif_fn = $name, _changed {
ctrl.notif_fn(&signal_ctxt).await.ok();
});
let mut lock = ctrl.config.lock().await;
lock.$name = value;
lock.write();
}
}).await;
});
}
Err(e) => info!("inotify watch failed: {}. You can ignore this if your device does not support the feature", e),
}
});
Ok(())
}
});
};
}
#[macro_export]
macro_rules! task_watch_item_notify {
($name:ident $self_inner:ident) => {
concat_idents::concat_idents!(fn_name = watch_, $name {
async fn fn_name(
&self,
signal_ctxt: SignalContext<'static>,
) -> Result<(), RogError> {
use zbus::export::futures_util::StreamExt;
let ctrl = self.clone();
concat_idents::concat_idents!(watch_fn = monitor_, $name {
match self.$self_inner.watch_fn() {
Ok(watch) => {
tokio::spawn(async move {
let mut buffer = [0; 32];
watch.into_event_stream(&mut buffer).unwrap().for_each(|_| async {
concat_idents::concat_idents!(notif_fn = $name, _changed {
ctrl.notif_fn(&signal_ctxt).await.ok();
});
}).await;
});
}
Err(e) => info!("inotify watch failed: {}. You can ignore this if your device does not support the feature", e),
}
});
Ok(())
}
});
};
}
pub const VERSION: &str = env!("CARGO_PKG_VERSION");
pub fn print_board_info() {
let dmi = DMIID::new().unwrap_or_default();
info!("Product family: {}", dmi.product_family);
info!("Board name: {}", dmi.board_name);
}
pub trait Reloadable {
fn reload(&mut self) -> impl std::future::Future<Output = Result<(), RogError>> + Send;
}
pub trait ReloadAndNotify {
type Data: Send;
fn reload_and_notify(
&mut self,
signal_context: &SignalContext<'static>,
data: Self::Data,
) -> impl std::future::Future<Output = Result<(), RogError>> + Send;
}
pub trait ZbusRun {
fn add_to_server(self, server: &mut Connection)
-> impl std::future::Future<Output = ()> + Send;
fn add_to_server_helper(
iface: impl zbus::Interface,
path: &str,
server: &mut Connection,
) -> impl std::future::Future<Output = ()> + Send {
async move {
server
.object_server()
.at(&ObjectPath::from_str_unchecked(path), iface)
.await
.map_err(|err| {
warn!("{}: add_to_server {}", path, err);
err
})
.ok();
}
}
}
/// Set up a task to run on the async executor
pub trait CtrlTask {
fn zbus_path() -> &'static str;
fn signal_context(connection: &Connection) -> Result<SignalContext<'static>, zbus::Error> {
SignalContext::new(connection, Self::zbus_path())
}
/// Implement to set up various tasks that may be required, using the
/// `Executor`. No blocking loops are allowed, or they must be run on a
/// separate thread.
fn create_tasks(
&self,
signal: SignalContext<'static>,
) -> impl std::future::Future<Output = Result<(), RogError>> + Send;
// /// Create a timed repeating task
// async fn repeating_task(&self, millis: u64, mut task: impl FnMut() + Send +
// 'static) { use std::time::Duration;
// use tokio::time;
// let mut timer = time::interval(Duration::from_millis(millis));
// tokio::spawn(async move {
// timer.tick().await;
// task();
// });
// }
/// Free helper method to create tasks to run on: sleep, wake, shutdown,
/// boot
///
/// The closures can potentially block, so execution time should be the
/// minimal possible such as save a variable.
fn create_sys_event_tasks<
Fut1,
Fut2,
Fut3,
Fut4,
F1: Send + 'static,
F2: Send + 'static,
F3: Send + 'static,
F4: Send + 'static,
>(
&self,
mut on_prepare_for_sleep: F1,
mut on_prepare_for_shutdown: F2,
mut on_lid_change: F3,
mut on_external_power_change: F4,
) -> impl std::future::Future<Output = ()> + Send
where
F1: FnMut(bool) -> Fut1,
F2: FnMut(bool) -> Fut2,
F3: FnMut(bool) -> Fut3,
F4: FnMut(bool) -> Fut4,
Fut1: Future<Output = ()> + Send,
Fut2: Future<Output = ()> + Send,
Fut3: Future<Output = ()> + Send,
Fut4: Future<Output = ()> + Send,
{
async {
let connection = Connection::system()
.await
.expect("Controller could not create dbus connection");
let manager = ManagerProxy::builder(&connection)
.cache_properties(CacheProperties::No)
.build()
.await
.expect("Controller could not create ManagerProxy");
let manager1 = manager.clone();
tokio::spawn(async move {
if let Ok(mut notif) = manager1.receive_prepare_for_shutdown().await {
while let Some(event) = notif.next().await {
// blocks thread :|
if let Ok(args) = event.args() {
debug!("Doing on_prepare_for_shutdown({})", args.start);
on_prepare_for_shutdown(args.start).await;
}
}
}
});
let manager2 = manager.clone();
tokio::spawn(async move {
if let Ok(mut notif) = manager2.receive_prepare_for_sleep().await {
while let Some(event) = notif.next().await {
// blocks thread :|
if let Ok(args) = event.args() {
debug!("Doing on_prepare_for_sleep({})", args.start);
on_prepare_for_sleep(args.start).await;
}
}
}
});
let manager3 = manager.clone();
tokio::spawn(async move {
let mut last_power = manager3.on_external_power().await.unwrap_or_default();
loop {
if let Ok(next) = manager3.on_external_power().await {
if next != last_power {
last_power = next;
on_external_power_change(next).await;
}
}
sleep(Duration::from_secs(2)).await;
}
});
tokio::spawn(async move {
let mut last_lid = manager.lid_closed().await.unwrap_or_default();
// need to loop on these as they don't emit signals
loop {
if let Ok(next) = manager.lid_closed().await {
if next != last_lid {
last_lid = next;
on_lid_change(next).await;
}
}
sleep(Duration::from_secs(2)).await;
}
});
}
}
}
pub trait GetSupported {
type A;
fn get_supported() -> Self::A;
}

View File

@@ -0,0 +1,57 @@
<!DOCTYPE node PUBLIC "-//freedesktop//DTD D-BUS Object Introspection 1.0//EN" "http://www.freedesktop.org/standards/dbus/1.0/introspect.dtd">
<node>
<interface name="org.asuslinux.Daemon">
<!--
Writes a data stream of length. Will force system thread to exit until
it is restarted
-->
<method name="Write">
<arg name="input" type="(ays)" direction="in"/>
</method>
<!--
The main loop is the base system set action if the user isn't running
the user daemon
-->
<method name="RunMainLoop">
<arg name="start" type="b" direction="in"/>
</method>
<!--
Get the device state as stored by asusd
-->
<method name="DeviceState">
<arg type="(bub(ssss)bbbu)" direction="out"/>
</method>
<!--
Set base brightness level
-->
<!--
Set base brightness level
-->
<property name="Brightness" type="u" access="readwrite"/>
<!--
Set which builtin animation is used for each stage
-->
<property name="BuiltinAnimations" type="(ssss)" access="readwrite"/>
<!--
Enable the builtin animations or not. This is quivalent to "Powersave
animations" in Armory crate
-->
<property name="BuiltinsEnabled" type="b" access="readwrite"/>
<!--
Set whether the AniMe is enabled at all
-->
<property name="EnableDisplay" type="b" access="readwrite"/>
<!--
Set if to turn the AniMe Matrix off when the lid is closed
-->
<property name="OffWhenLidClosed" type="b" access="readwrite"/>
<!--
Set if to turn the AniMe Matrix off when the laptop is suspended
-->
<property name="OffWhenSuspended" type="b" access="readwrite"/>
<!--
Set if to turn the AniMe Matrix off when external power is unplugged
-->
<property name="OffWhenUnplugged" type="b" access="readwrite"/>
</interface>
</node>

View File

@@ -0,0 +1,67 @@
<!DOCTYPE node PUBLIC "-//freedesktop//DTD D-BUS Object Introspection 1.0//EN" "http://www.freedesktop.org/standards/dbus/1.0/introspect.dtd">
<node>
<interface name="org.asuslinux.Daemon">
<!--
Get the data set for every mode available
-->
<method name="AllModeData">
<arg type="a{u(uu(yyy)(yyy)ss)}" direction="out"/>
</method>
<!--
On machine that have some form of either per-key keyboard or per-zone
this can be used to write custom effects over dbus. The input is a
nested `Vec<Vec<8>>` where `Vec<u8>` is a raw USB packet
-->
<method name="DirectAddressingRaw">
<arg name="data" type="aay" direction="in"/>
</method>
<!--
Return the current LED brightness
-->
<!--
Set the keyboard brightness level (0-3)
-->
<property name="Brightness" type="u" access="readwrite"/>
<!--
Return the device type for this Aura keyboard
-->
<property name="DeviceType" type="s" access="read"/>
<!--
The current mode data
-->
<!--
Set an Aura effect if the effect mode or zone is supported.
On success the aura config file is read to refresh cached values, then
the effect is stored and config written to disk.
-->
<property name="LedMode" type="u" access="readwrite"/>
<!--
The current mode data
-->
<!--
Set an Aura effect if the effect mode or zone is supported.
On success the aura config file is read to refresh cached values, then
the effect is stored and config written to disk.
-->
<property name="LedModeData" type="(uu(yyy)(yyy)ss)" access="readwrite"/>
<!--
Set a variety of states, input is array of enum.
`enabled` sets if the sent array should be disabled or enabled
For Modern ROG devices the "enabled" flag is ignored.
-->
<property name="LedPower" type="(ayay((ubbbb)(ubbbb)(ubbbb)(ubbbb)(ubbbb)))" access="readwrite"/>
<!--
The total available modes
-->
<property name="SupportedBasicModes" type="au" access="read"/>
<property name="SupportedBasicZones" type="au" access="read"/>
<!--
Total levels of brightness available
-->
<property name="SupportedBrightness" type="au" access="read"/>
<property name="SupportedPowerZones" type="au" access="read"/>
</interface>
</node>

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@@ -0,0 +1,56 @@
<!DOCTYPE node PUBLIC "-//freedesktop//DTD D-BUS Object Introspection 1.0//EN" "http://www.freedesktop.org/standards/dbus/1.0/introspect.dtd">
<node>
<interface name="org.asuslinux.Daemon">
<!--
Set all fan curves for a profile to enabled status. Will also activate a
fan curve if in the same profile mode
-->
<method name="SetFanCurvesEnabled">
<arg name="profile" type="s" direction="in"/>
<arg name="enabled" type="b" direction="in"/>
</method>
<!--
Set a single fan curve for a profile to enabled status. Will also
activate a fan curve if in the same profile mode
-->
<method name="SetProfileFanCurveEnabled">
<arg name="profile" type="s" direction="in"/>
<arg name="fan" type="s" direction="in"/>
<arg name="enabled" type="b" direction="in"/>
</method>
<!--
Get the fan-curve data for the currently active ThrottlePolicy
-->
<method name="FanCurveData">
<arg name="profile" type="s" direction="in"/>
<arg type="a(s(yyyyyyyy)(yyyyyyyy)b)" direction="out"/>
</method>
<!--
Set the fan curve for the specified profile.
Will also activate the fan curve if the user is in the same mode.
-->
<method name="SetFanCurve">
<arg name="profile" type="s" direction="in"/>
<arg name="curve" type="(s(yyyyyyyy)(yyyyyyyy)b)" direction="in"/>
</method>
<!--
Reset the stored (self) and device curve to the defaults of the
platform.
Each platform_profile has a different default and the defualt can be
read only for the currently active profile.
-->
<method name="SetActiveCurveToDefaults">
</method>
<!--
Reset the stored (self) and device curve to the defaults of the
platform.
Each platform_profile has a different default and the defualt can be
read only for the currently active profile.
-->
<method name="ResetProfileCurves">
<arg name="profile" type="s" direction="in"/>
</method>
</interface>
</node>

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@@ -0,0 +1,46 @@
<!DOCTYPE node PUBLIC "-//freedesktop//DTD D-BUS Object Introspection 1.0//EN" "http://www.freedesktop.org/standards/dbus/1.0/introspect.dtd">
<node>
<interface name="org.asuslinux.Daemon">
<!--
Returns a list of property names that this system supports
-->
<method name="SupportedProperties">
<arg type="as" direction="out"/>
</method>
<method name="SupportedInterfaces">
<arg type="as" direction="out"/>
</method>
<!--
Toggle to next platform_profile. Names provided by `Profiles`.
If fan-curves are supported will also activate a fan curve for profile.
-->
<method name="NextThrottleThermalPolicy">
</method>
<property name="ChargeControlEndThreshold" type="y" access="readwrite"/>
<property name="DgpuDisable" type="b" access="read"/>
<property name="EgpuEnable" type="b" access="read"/>
<property name="GpuMuxMode" type="y" access="readwrite"/>
<!--
Get the `panel_od` value from platform. Updates the stored value in
internal config also.
-->
<property name="MiniLedMode" type="b" access="readwrite"/>
<property name="NvDynamicBoost" type="y" access="readwrite"/>
<property name="NvTempTarget" type="y" access="readwrite"/>
<!--
Get the `panel_od` value from platform. Updates the stored value in
internal config also.
-->
<property name="PanelOd" type="b" access="readwrite"/>
<property name="PostAnimationSound" type="b" access="readwrite"/>
<property name="PptApuSppt" type="y" access="readwrite"/>
<property name="PptFppt" type="y" access="readwrite"/>
<!--
************************************************************************
-->
<property name="PptPl1Spl" type="y" access="readwrite"/>
<property name="PptPl2Sppt" type="y" access="readwrite"/>
<property name="PptPlatformSppt" type="y" access="readwrite"/>
<property name="ThrottleThermalPolicy" type="s" access="readwrite"/>
</interface>
</node>

57
bindings/ts/anime.ts Normal file
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/*
Generated by typeshare 1.7.0
*/
export enum AnimBooting {
GlitchConstruction = "GlitchConstruction",
StaticEmergence = "StaticEmergence",
}
export enum AnimAwake {
BinaryBannerScroll = "BinaryBannerScroll",
RogLogoGlitch = "RogLogoGlitch",
}
export enum AnimSleeping {
BannerSwipe = "BannerSwipe",
Starfield = "Starfield",
}
export enum AnimShutdown {
GlitchOut = "GlitchOut",
SeeYa = "SeeYa",
}
export interface Animations {
boot: AnimBooting;
awake: AnimAwake;
sleep: AnimSleeping;
shutdown: AnimShutdown;
}
/** Base LED brightness of the display */
export enum Brightness {
Off = "Off",
Low = "Low",
Med = "Med",
High = "High",
}
export interface DeviceState {
display_enabled: boolean;
display_brightness: Brightness;
builtin_anims_enabled: boolean;
builtin_anims: Animations;
off_when_unplugged: boolean;
off_when_suspended: boolean;
off_when_lid_closed: boolean;
brightness_on_battery: Brightness;
}
export enum AnimeType {
GA401 = "GA401",
GA402 = "GA402",
GU604 = "GU604",
Unknown = "Unknown",
}

233
bindings/ts/aura.ts Normal file
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@@ -0,0 +1,233 @@
/*
Generated by typeshare 1.7.0
*/
/** Represents the per-key raw USB packets */
export type UsbPackets = number[][];
/**
* A `UsbPackets` contains all data to change the full set of keyboard
* key colours individually.
*
* Each row of the internal array is a full HID packet that can be sent
* to the keyboard EC. One row controls one group of keys, these keys are not
* necessarily all on the same row of the keyboard, with some splitting between
* two rows.
*/
export interface LedUsbPackets {
/** The packet data used to send data to the USB keyboard */
usb_packets: UsbPackets;
/**
* Wether or not this packet collection is zoned. The determines which
* starting bytes are used and what the indexing is for lightbar RGB
* colours
*/
zoned: boolean;
}
export interface Colour {
r: number;
g: number;
b: number;
}
/** Enum of modes that convert to the actual number required by a USB HID packet */
export enum AuraModeNum {
Static = "Static",
Breathe = "Breathe",
Strobe = "Strobe",
Rainbow = "Rainbow",
Star = "Star",
Rain = "Rain",
Highlight = "Highlight",
Laser = "Laser",
Ripple = "Ripple",
Pulse = "Pulse",
Comet = "Comet",
Flash = "Flash",
}
/** Base effects have no zoning, while multizone is 1-4 */
export enum AuraZone {
/** Used if keyboard has no zones, or if setting all */
None = "None",
/** Leftmost zone */
Key1 = "Key1",
/** Zone after leftmost */
Key2 = "Key2",
/** Zone second from right */
Key3 = "Key3",
/** Rightmost zone */
Key4 = "Key4",
/** Logo on the lid (or elsewhere?) */
Logo = "Logo",
/** The left part of a lightbar (typically on the front of laptop) */
BarLeft = "BarLeft",
/** The right part of a lightbar */
BarRight = "BarRight",
}
export enum Speed {
Low = "Low",
Med = "Med",
High = "High",
}
/**
* Used for Rainbow mode.
*
* Enum corresponds to the required integer value
*/
export enum Direction {
Right = "Right",
Left = "Left",
Up = "Up",
Down = "Down",
}
/**
* Default factory modes structure. This easily converts to an USB HID packet
* with:
* ```rust
* // let bytes: [u8; LED_MSG_LEN] = mode.into();
* ```
*/
export interface AuraEffect {
/** The effect type */
mode: AuraModeNum;
/** `AuraZone::None` for no zone or zoneless keyboards */
zone: AuraZone;
/** Primary colour for all modes */
colour1: Colour;
/** Secondary colour in some modes like Breathing or Stars */
colour2: Colour;
/** One of three speeds for modes that support speed (most that animate) */
speed: Speed;
/** Up, down, left, right. Only Rainbow mode seems to use this */
direction: Direction;
}
/** The powerr zones this laptop supports */
export enum PowerZones {
/** The logo on some laptop lids */
Logo = "Logo",
/** The full keyboard (not zones) */
Keyboard = "Keyboard",
/** The lightbar, typically on the front of the laptop */
Lightbar = "Lightbar",
/** The leds that may be placed around the edge of the laptop lid */
Lid = "Lid",
/** The led strip on the rear of some laptops */
RearGlow = "RearGlow",
}
export interface KbAuraPowerState {
zone: PowerZones;
boot: boolean;
awake: boolean;
sleep: boolean;
shutdown: boolean;
}
/**
* Track and control the Aura keyboard power state
*
* # Bits for newer 0x18c6, 0x19B6, 0x1a30, keyboard models
*
* | Byte 1 | Byte 2 | Byte 3 | Byte 4 | Label |
* |--------|---------|---------|---------|----------|
* |00000001| 00000000| 00000000| 00000000|boot_logo_|
* |00000010| 00000000| 00000000| 00000000|boot_keyb_|
* |00000100| 00000000| 00000000| 00000000|awake_logo|
* |00001000| 00000000| 00000000| 00000000|awake_keyb|
* |00010000| 00000000| 00000000| 00000000|sleep_logo|
* |00100000| 00000000| 00000000| 00000000|sleep_keyb|
* |01000000| 00000000| 00000000| 00000000|shut_logo_|
* |10000000| 00000000| 00000000| 00000000|shut_keyb_|
* |00000000| 00000010| 00000000| 00000000|boot_bar__|
* |00000000| 00000100| 00000000| 00000000|awake_bar_|
* |00000000| 00001000| 00000000| 00000000|sleep_bar_|
* |00000000| 00010000| 00000000| 00000000|shut_bar__|
* |00000000| 00000000| 00000001| 00000000|boot_lid__|
* |00000000| 00000000| 00000010| 00000000|awkae_lid_|
* |00000000| 00000000| 00000100| 00000000|sleep_lid_|
* |00000000| 00000000| 00001000| 00000000|shut_lid__|
* |00000000| 00000000| 00000000| 00000001|boot_rear_|
* |00000000| 00000000| 00000000| 00000010|awake_rear|
* |00000000| 00000000| 00000000| 00000100|sleep_rear|
* |00000000| 00000000| 00000000| 00001000|shut_rear_|
*/
export interface AuraPower {
keyboard: KbAuraPowerState;
logo: KbAuraPowerState;
lightbar: KbAuraPowerState;
lid: KbAuraPowerState;
rear_glow: KbAuraPowerState;
}
export enum AuraDevTuf {
Boot = "Boot",
Awake = "Awake",
Sleep = "Sleep",
Keyboard = "Keyboard",
}
/**
* # Bits for older 0x1866 keyboard model
*
* Keybord and Lightbar require Awake, Boot and Sleep apply to both
* Keybord and Lightbar regardless of if either are enabled (or Awake is
* enabled)
*
* | Byte 1 | Byte 2 | Byte 3 | function | hex |
* |------------|------------|------------|----------|----------|
* | 0000, 0000 | 0000, 0000 | 0000, 0010 | Awake | 00,00,02 |
* | 0000, 1000 | 0000, 0000 | 0000, 0000 | Keyboard | 08,00,00 |
* | 0000, 0100 | 0000, 0101 | 0000, 0000 | Lightbar | 04,05,00 |
* | 1100, 0011 | 0001, 0010 | 0000, 1001 | Boot/Sht | c3,12,09 |
* | 0011, 0000 | 0000, 1000 | 0000, 0100 | Sleep | 30,08,04 |
* | 1111, 1111 | 0001, 1111 | 0000, 1111 | all on | |
*/
export enum AuraDevRog1 {
Awake = "Awake",
Keyboard = "Keyboard",
Lightbar = "Lightbar",
Boot = "Boot",
Sleep = "Sleep",
}
/** This struct is intended as a helper to pass args to generic dbus interface */
export interface AuraPowerDev {
/**
* TUF laptops use a similar style of control to the older ROG devices but
* through WMI
*/
tuf: AuraDevTuf[];
/**
* Pre-0x19b6 devices use a different smaller scheme to the newer ROG
* devices
*/
old_rog: AuraDevRog1[];
/** ASUS standardised control scheme from 2020 onwards */
rog: AuraPower;
}
export enum LedBrightness {
Off = "Off",
Low = "Low",
Med = "Med",
High = "High",
}
export enum AuraDevice {
Tuf = "Tuf",
X1854 = "X1854",
X1869 = "X1869",
X1866 = "X1866",
X18c6 = "X18c6",
X19b6 = "X19b6",
X1a30 = "X1a30",
X1abe = "X1abe",
Unknown = "Unknown",
}

55
bindings/ts/platform.ts Normal file
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@@ -0,0 +1,55 @@
/*
Generated by typeshare 1.7.0
*/
export enum CPUGovernor {
Performance = "Performance",
Powersave = "Powersave",
BadValue = "BadValue",
}
export enum CPUEPP {
Default = "Default",
Performance = "Performance",
BalancePerformance = "BalancePerformance",
BalancePower = "BalancePower",
Power = "Power",
}
export enum GpuMode {
Discrete = "Discrete",
Optimus = "Optimus",
Integrated = "Integrated",
Egpu = "Egpu",
Vfio = "Vfio",
Ultimate = "Ultimate",
Error = "Error",
NotSupported = "NotSupported",
}
/** `throttle_thermal_policy` in asus_wmi */
export enum ThrottlePolicy {
Balanced = "Balanced",
Performance = "Performance",
Quiet = "Quiet",
}
/** CamelCase names of the properties. Intended for use with DBUS */
export enum Properties {
ChargeControlEndThreshold = "ChargeControlEndThreshold",
DgpuDisable = "DgpuDisable",
GpuMuxMode = "GpuMuxMode",
PostAnimationSound = "PostAnimationSound",
PanelOd = "PanelOd",
MiniLedMode = "MiniLedMode",
EgpuEnable = "EgpuEnable",
ThrottlePolicy = "ThrottlePolicy",
PptPl1Spl = "PptPl1Spl",
PptPl2Sppt = "PptPl2Sppt",
PptFppt = "PptFppt",
PptApuSppt = "PptApuSppt",
PptPlatformSppt = "PptPlatformSppt",
NvDynamicBoost = "NvDynamicBoost",
NvTempTarget = "NvTempTarget",
}

24
bindings/ts/profiles.ts Normal file
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@@ -0,0 +1,24 @@
/*
Generated by typeshare 1.7.0
*/
export enum FanCurvePU {
CPU = "CPU",
GPU = "GPU",
MID = "MID",
}
export interface CurveData {
fan: FanCurvePU;
pwm: [number, number, number, number, number, number, number, number];
temp: [number, number, number, number, number, number, number, number];
enabled: boolean;
}
/** Main purpose of `FanCurves` is to enable restoring state on system boot */
export interface FanCurveProfiles {
balanced: CurveData[];
performance: CurveData[];
quiet: CurveData[];
}

View File

@@ -109,6 +109,20 @@ where
}
}
/// Open and parse the config file to self from ron format
fn read_new(&self) -> Option<Self> {
if let Ok(data) = fs::read_to_string(self.file_path()) {
if data.is_empty() {
warn!("File is empty {:?}", self.file_path());
} else if let Ok(data) = ron::from_str(&data) {
return Some(data);
} else {
warn!("Could not deserialise {:?}", self.file_path());
}
}
None
}
/// Write the config file data to pretty ron format
fn write(&self) {
let mut file = match File::create(self.file_path()) {

7
cpuctl/Cargo.toml Normal file
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@@ -0,0 +1,7 @@
[package]
name = "cpuctl"
license = "MPL-2.0"
edition = "2021"
version.workspace = true
[dependencies]

14
cpuctl/src/lib.rs Normal file
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@@ -0,0 +1,14 @@
pub fn add(left: usize, right: usize) -> usize {
left + right
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn it_works() {
let result = add(2, 2);
assert_eq!(result, 4);
}
}

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@@ -1,77 +0,0 @@
use config_traits::{StdConfig, StdConfigLoad2};
use serde_derive::{Deserialize, Serialize};
const CONFIG_FILE: &str = "asusd.ron";
#[derive(Deserialize, Serialize, Default, Debug)]
pub struct Config {
/// Save charge limit for restoring on boot
pub bat_charge_limit: u8,
pub panel_od: bool,
pub disable_nvidia_powerd_on_battery: bool,
pub ac_command: String,
pub bat_command: String,
}
impl StdConfig for Config {
fn new() -> Self {
Config {
bat_charge_limit: 100,
panel_od: false,
disable_nvidia_powerd_on_battery: true,
ac_command: String::new(),
bat_command: String::new(),
}
}
fn config_dir() -> std::path::PathBuf {
std::path::PathBuf::from(crate::CONFIG_PATH_BASE)
}
fn file_name(&self) -> String {
CONFIG_FILE.to_owned()
}
}
impl StdConfigLoad2<Config455, Config458> for Config {}
#[derive(Deserialize, Serialize, Default)]
#[serde(default)]
pub struct Config455 {
/// Save charge limit for restoring on boot
pub bat_charge_limit: u8,
pub panel_od: bool,
}
impl From<Config455> for Config {
fn from(c: Config455) -> Self {
Self {
bat_charge_limit: c.bat_charge_limit,
panel_od: c.panel_od,
disable_nvidia_powerd_on_battery: true,
ac_command: String::new(),
bat_command: String::new(),
}
}
}
#[derive(Deserialize, Serialize, Default)]
pub struct Config458 {
/// Save charge limit for restoring on boot
pub bat_charge_limit: u8,
pub panel_od: bool,
pub ac_command: String,
pub bat_command: String,
}
impl From<Config458> for Config {
fn from(c: Config458) -> Self {
Self {
bat_charge_limit: c.bat_charge_limit,
panel_od: c.panel_od,
disable_nvidia_powerd_on_battery: true,
ac_command: c.ac_command,
bat_command: c.bat_command,
}
}
}

View File

@@ -1,212 +0,0 @@
use std::sync::atomic::Ordering;
use std::sync::Arc;
use async_trait::async_trait;
use config_traits::StdConfig;
use log::warn;
use rog_anime::usb::{pkt_for_apply, pkt_for_set_boot, pkt_for_set_on};
use rog_anime::{AnimeDataBuffer, AnimePowerStates};
use zbus::export::futures_util::lock::Mutex;
use zbus::{dbus_interface, Connection, SignalContext};
use super::CtrlAnime;
use crate::error::RogError;
pub(super) const ZBUS_PATH: &str = "/org/asuslinux/Anime";
#[derive(Clone)]
pub struct CtrlAnimeZbus(pub Arc<Mutex<CtrlAnime>>);
/// The struct with the main dbus methods requires this trait
#[async_trait]
impl crate::ZbusRun for CtrlAnimeZbus {
async fn add_to_server(self, server: &mut Connection) {
Self::add_to_server_helper(self, ZBUS_PATH, server).await;
}
}
// None of these calls can be guarnateed to succeed unless we loop until okay
// If the try_lock *does* succeed then any other thread trying to lock will not
// grab it until we finish.
#[dbus_interface(name = "org.asuslinux.Daemon")]
impl CtrlAnimeZbus {
/// Writes a data stream of length. Will force system thread to exit until
/// it is restarted
async fn write(&self, input: AnimeDataBuffer) -> zbus::fdo::Result<()> {
let lock = self.0.lock().await;
lock.thread_exit.store(true, Ordering::SeqCst);
lock.write_data_buffer(input).map_err(|err| {
warn!("rog_anime::run_animation:callback {}", err);
err
})?;
Ok(())
}
/// Set the global AniMe brightness
async fn set_brightness(&self, bright: f32) {
let mut lock = self.0.lock().await;
let mut bright = bright;
if bright < 0.0 {
bright = 0.0;
} else if bright > 1.0 {
bright = 1.0;
}
lock.config.brightness = bright;
lock.config.write();
}
/// Set whether the AniMe is displaying images/data
async fn set_on_off(&self, #[zbus(signal_context)] ctxt: SignalContext<'_>, status: bool) {
let mut lock = self.0.lock().await;
lock.node
.write_bytes(&pkt_for_set_on(status))
.map_err(|err| {
warn!("rog_anime::run_animation:callback {}", err);
})
.ok();
lock.config.awake_enabled = status;
lock.config.write();
Self::notify_power_states(
&ctxt,
AnimePowerStates {
brightness: lock.config.brightness.floor() as u8,
enabled: lock.config.awake_enabled,
boot_anim_enabled: lock.config.boot_anim_enabled,
},
)
.await
.ok();
}
/// Set whether the AniMe will show boot, suspend, or off animations
async fn set_boot_on_off(&self, #[zbus(signal_context)] ctxt: SignalContext<'_>, on: bool) {
let mut lock = self.0.lock().await;
lock.node
.write_bytes(&pkt_for_set_boot(on))
.map_err(|err| {
warn!("rog_anime::run_animation:callback {}", err);
})
.ok();
lock.node
.write_bytes(&pkt_for_apply())
.map_err(|err| {
warn!("rog_anime::run_animation:callback {}", err);
})
.ok();
lock.config.boot_anim_enabled = on;
lock.config.write();
Self::notify_power_states(
&ctxt,
AnimePowerStates {
brightness: lock.config.brightness.floor() as u8,
enabled: lock.config.awake_enabled,
boot_anim_enabled: lock.config.boot_anim_enabled,
},
)
.await
.ok();
}
/// The main loop is the base system set action if the user isn't running
/// the user daemon
async fn run_main_loop(&self, start: bool) {
if start {
let lock = self.0.lock().await;
lock.thread_exit.store(true, Ordering::SeqCst);
CtrlAnime::run_thread(self.0.clone(), lock.cache.system.clone(), false);
}
}
/// Get status of if the AniMe LEDs are on/displaying while system is awake
#[dbus_interface(property)]
async fn awake_enabled(&self) -> bool {
let lock = self.0.lock().await;
lock.config.awake_enabled
}
/// Get the status of if factory system-status animations are enabled
#[dbus_interface(property)]
async fn boot_enabled(&self) -> bool {
let lock = self.0.lock().await;
lock.config.boot_anim_enabled
}
/// Notify listeners of the status of AniMe LED power and factory
/// system-status animations
#[dbus_interface(signal)]
async fn notify_power_states(
ctxt: &SignalContext<'_>,
data: AnimePowerStates,
) -> zbus::Result<()>;
}
#[async_trait]
impl crate::CtrlTask for CtrlAnimeZbus {
fn zbus_path() -> &'static str {
ZBUS_PATH
}
async fn create_tasks(&self, _: SignalContext<'static>) -> Result<(), RogError> {
let inner1 = self.0.clone();
let inner2 = self.0.clone();
let inner3 = self.0.clone();
let inner4 = self.0.clone();
self.create_sys_event_tasks(
move || {
// on_sleep
let inner1 = inner1.clone();
async move {
let lock = inner1.lock().await;
CtrlAnime::run_thread(inner1.clone(), lock.cache.sleep.clone(), true);
}
},
move || {
// on_wake
let inner2 = inner2.clone();
async move {
let lock = inner2.lock().await;
CtrlAnime::run_thread(inner2.clone(), lock.cache.wake.clone(), true);
}
},
move || {
// on_shutdown
let inner3 = inner3.clone();
async move {
let lock = inner3.lock().await;
CtrlAnime::run_thread(inner3.clone(), lock.cache.shutdown.clone(), true);
}
},
move || {
// on_boot
let inner4 = inner4.clone();
async move {
let lock = inner4.lock().await;
CtrlAnime::run_thread(inner4.clone(), lock.cache.boot.clone(), true);
}
},
)
.await;
Ok(())
}
}
#[async_trait]
impl crate::Reloadable for CtrlAnimeZbus {
async fn reload(&mut self) -> Result<(), RogError> {
if let Some(lock) = self.0.try_lock() {
lock.node
.write_bytes(&pkt_for_set_on(lock.config.awake_enabled))?;
lock.node.write_bytes(&pkt_for_apply())?;
lock.node
.write_bytes(&pkt_for_set_boot(lock.config.boot_anim_enabled))?;
lock.node.write_bytes(&pkt_for_apply())?;
let action = lock.cache.boot.clone();
CtrlAnime::run_thread(self.0.clone(), action, true);
}
Ok(())
}
}

View File

@@ -1,327 +0,0 @@
use std::collections::BTreeMap;
use std::sync::Arc;
use async_trait::async_trait;
use config_traits::StdConfig;
use log::{error, info, warn};
use rog_aura::advanced::UsbPackets;
use rog_aura::usb::AuraPowerDev;
use rog_aura::{AuraEffect, AuraModeNum, LedBrightness};
use zbus::export::futures_util::lock::{Mutex, MutexGuard};
use zbus::export::futures_util::StreamExt;
use zbus::{dbus_interface, Connection, SignalContext};
use super::controller::CtrlKbdLed;
use crate::error::RogError;
use crate::CtrlTask;
pub(super) const ZBUS_PATH: &str = "/org/asuslinux/Aura";
#[derive(Clone)]
pub struct CtrlKbdLedZbus(pub Arc<Mutex<CtrlKbdLed>>);
impl CtrlKbdLedZbus {
fn update_config(lock: &mut CtrlKbdLed) -> Result<(), RogError> {
let bright = lock.kd_brightness.get_brightness()?;
lock.config.read();
lock.config.brightness = (bright as u32).into();
lock.config.write();
Ok(())
}
}
#[async_trait]
impl crate::ZbusRun for CtrlKbdLedZbus {
async fn add_to_server(self, server: &mut Connection) {
Self::add_to_server_helper(self, ZBUS_PATH, server).await;
}
}
/// The main interface for changing, reading, or notfying signals
///
/// LED commands are split between Brightness, Modes, Per-Key
#[dbus_interface(name = "org.asuslinux.Daemon")]
impl CtrlKbdLedZbus {
/// Set the keyboard brightness level (0-3)
async fn set_brightness(&mut self, brightness: LedBrightness) {
let ctrl = self.0.lock().await;
ctrl.set_brightness(brightness)
.map_err(|err| warn!("{}", err))
.ok();
}
/// Set a variety of states, input is array of enum.
/// `enabled` sets if the sent array should be disabled or enabled
///
/// ```text
/// pub struct AuraPowerDev {
/// pub x1866: Vec<AuraDev1866>,
/// pub x19b6: Vec<AuraDev19b6>,
/// }
/// pub enum AuraDev1866 {
/// Awake,
/// Keyboard,
/// Lightbar,
/// Boot,
/// Sleep,
/// }
/// enum AuraDev19b6 {
/// BootLogo,
/// BootKeyb,
/// AwakeLogo,
/// AwakeKeyb,
/// SleepLogo,
/// SleepKeyb,
/// ShutdownLogo,
/// ShutdownKeyb,
/// AwakeBar,
/// BootBar,
/// SleepBar,
/// ShutdownBar,
/// }
/// ```
async fn set_leds_power(
&mut self,
#[zbus(signal_context)] ctxt: SignalContext<'_>,
options: AuraPowerDev,
enabled: bool,
) -> zbus::fdo::Result<()> {
let mut ctrl = self.0.lock().await;
for p in options.tuf {
ctrl.config.enabled.set_tuf(p, enabled);
}
for p in options.x1866 {
ctrl.config.enabled.set_0x1866(p, enabled);
}
for p in options.x19b6 {
ctrl.config.enabled.set_0x19b6(p, enabled);
}
ctrl.config.write();
ctrl.set_power_states().map_err(|e| {
warn!("{}", e);
e
})?;
Self::notify_power_states(&ctxt, &AuraPowerDev::from(&ctrl.config.enabled))
.await
.unwrap_or_else(|err| warn!("{}", err));
Ok(())
}
async fn set_led_mode(
&mut self,
#[zbus(signal_context)] ctxt: SignalContext<'_>,
effect: AuraEffect,
) -> zbus::fdo::Result<()> {
let mut ctrl = self.0.lock().await;
ctrl.set_effect(effect).map_err(|e| {
warn!("{}", e);
e
})?;
if let Some(mode) = ctrl.config.builtins.get(&ctrl.config.current_mode) {
Self::notify_led(&ctxt, mode.clone())
.await
.unwrap_or_else(|err| warn!("{}", err));
}
Ok(())
}
async fn next_led_mode(
&self,
#[zbus(signal_context)] ctxt: SignalContext<'_>,
) -> zbus::fdo::Result<()> {
let mut ctrl = self.0.lock().await;
ctrl.toggle_mode(false).map_err(|e| {
warn!("{}", e);
e
})?;
if let Some(mode) = ctrl.config.builtins.get(&ctrl.config.current_mode) {
Self::notify_led(&ctxt, mode.clone())
.await
.unwrap_or_else(|err| warn!("{}", err));
}
Ok(())
}
async fn prev_led_mode(
&self,
#[zbus(signal_context)] ctxt: SignalContext<'_>,
) -> zbus::fdo::Result<()> {
let mut ctrl = self.0.lock().await;
ctrl.toggle_mode(true).map_err(|e| {
warn!("{}", e);
e
})?;
if let Some(mode) = ctrl.config.builtins.get(&ctrl.config.current_mode) {
Self::notify_led(&ctxt, mode.clone())
.await
.unwrap_or_else(|err| warn!("{}", err));
}
Ok(())
}
async fn next_led_brightness(&self) -> zbus::fdo::Result<()> {
let mut ctrl = self.0.lock().await;
ctrl.next_brightness().map_err(|e| {
warn!("{}", e);
e
})?;
Ok(())
}
async fn prev_led_brightness(&self) -> zbus::fdo::Result<()> {
let mut ctrl = self.0.lock().await;
ctrl.prev_brightness().map_err(|e| {
warn!("{}", e);
e
})?;
Ok(())
}
// As property doesn't work for AuraPowerDev (complexity of serialization?)
// #[dbus_interface(property)]
async fn leds_enabled(&self) -> AuraPowerDev {
let ctrl = self.0.lock().await;
AuraPowerDev::from(&ctrl.config.enabled)
}
/// Return the current mode data
async fn led_mode(&self) -> AuraModeNum {
let ctrl = self.0.lock().await;
ctrl.config.current_mode
}
/// Return a list of available modes
async fn led_modes(&self) -> BTreeMap<AuraModeNum, AuraEffect> {
let ctrl = self.0.lock().await;
ctrl.config.builtins.clone()
}
/// On machine that have some form of either per-key keyboard or per-zone
/// this can be used to write custom effects over dbus. The input is a
/// nested `Vec<Vec<8>>` where `Vec<u8>` is a raw USB packet
async fn direct_addressing_raw(&self, data: UsbPackets) -> zbus::fdo::Result<()> {
let mut ctrl = self.0.lock().await;
ctrl.write_effect_block(&data)?;
Ok(())
}
/// Return the current LED brightness
#[dbus_interface(property)]
async fn led_brightness(&self) -> i8 {
let ctrl = self.0.lock().await;
ctrl.get_brightness().map(|n| n as i8).unwrap_or(-1)
}
#[dbus_interface(signal)]
async fn notify_led(signal_ctxt: &SignalContext<'_>, data: AuraEffect) -> zbus::Result<()>;
#[dbus_interface(signal)]
async fn notify_power_states(
signal_ctxt: &SignalContext<'_>,
data: &AuraPowerDev,
) -> zbus::Result<()>;
}
#[async_trait]
impl CtrlTask for CtrlKbdLedZbus {
fn zbus_path() -> &'static str {
ZBUS_PATH
}
async fn create_tasks(&self, _: SignalContext<'static>) -> Result<(), RogError> {
let load_save = |start: bool, mut lock: MutexGuard<'_, CtrlKbdLed>| {
// If waking up
if !start {
info!("CtrlKbdLedTask reloading brightness and modes");
lock.set_brightness(lock.config.brightness)
.map_err(|e| error!("CtrlKbdLedTask: {e}"))
.ok();
lock.write_current_config_mode()
.map_err(|e| error!("CtrlKbdLedTask: {e}"))
.ok();
} else if start {
info!("CtrlKbdLedTask saving last brightness");
Self::update_config(&mut lock)
.map_err(|e| error!("CtrlKbdLedTask: {e}"))
.ok();
}
};
let inner1 = self.0.clone();
let inner2 = self.0.clone();
let inner3 = self.0.clone();
let inner4 = self.0.clone();
self.create_sys_event_tasks(
// Loop so that we do aquire the lock but also don't block other
// threads (prevents potential deadlocks)
move || {
let inner1 = inner1.clone();
async move {
let lock = inner1.lock().await;
load_save(true, lock);
}
},
move || {
let inner2 = inner2.clone();
async move {
let lock = inner2.lock().await;
load_save(false, lock);
}
},
move || {
let inner3 = inner3.clone();
async move {
let lock = inner3.lock().await;
load_save(false, lock);
}
},
move || {
let inner4 = inner4.clone();
async move {
let lock = inner4.lock().await;
load_save(false, lock);
}
},
)
.await;
let ctrl2 = self.0.clone();
let ctrl = self.0.lock().await;
let mut watch = ctrl.kd_brightness.monitor_brightness()?;
tokio::spawn(async move {
let mut buffer = [0; 32];
watch
.event_stream(&mut buffer)
.unwrap()
.for_each(|_| async {
if let Some(lock) = ctrl2.try_lock() {
load_save(true, lock);
}
})
.await;
});
Ok(())
}
}
#[async_trait]
impl crate::Reloadable for CtrlKbdLedZbus {
async fn reload(&mut self) -> Result<(), RogError> {
let mut ctrl = self.0.lock().await;
ctrl.write_current_config_mode()?;
ctrl.set_power_states().map_err(|err| warn!("{err}")).ok();
Ok(())
}
}

View File

@@ -1,382 +0,0 @@
use std::fs::OpenOptions;
use std::io::{Read, Write};
use std::path::Path;
use std::process::Command;
use std::sync::Arc;
use async_trait::async_trait;
use config_traits::StdConfig;
use log::{info, warn};
use rog_platform::platform::{AsusPlatform, GpuMode};
use rog_platform::supported::RogBiosSupportedFunctions;
use zbus::export::futures_util::lock::Mutex;
use zbus::{dbus_interface, Connection, SignalContext};
use crate::config::Config;
use crate::error::RogError;
use crate::{task_watch_item, CtrlTask, GetSupported};
const ZBUS_PATH: &str = "/org/asuslinux/Platform";
const ASUS_POST_LOGO_SOUND: &str =
"/sys/firmware/efi/efivars/AsusPostLogoSound-607005d5-3f75-4b2e-98f0-85ba66797a3e";
#[derive(Clone)]
pub struct CtrlPlatform {
platform: AsusPlatform,
config: Arc<Mutex<Config>>,
}
impl GetSupported for CtrlPlatform {
type A = RogBiosSupportedFunctions;
fn get_supported() -> Self::A {
let mut panel_overdrive = false;
let mut dgpu_disable = false;
let mut egpu_enable = false;
let mut gpu_mux = false;
if let Ok(platform) = AsusPlatform::new() {
panel_overdrive = platform.has_panel_od();
dgpu_disable = platform.has_dgpu_disable();
egpu_enable = platform.has_egpu_enable();
gpu_mux = platform.has_gpu_mux_mode();
}
RogBiosSupportedFunctions {
post_sound: Path::new(ASUS_POST_LOGO_SOUND).exists(),
gpu_mux,
panel_overdrive,
dgpu_disable,
egpu_enable,
}
}
}
impl CtrlPlatform {
pub fn new(config: Arc<Mutex<Config>>) -> Result<Self, RogError> {
let platform = AsusPlatform::new()?;
if !platform.has_gpu_mux_mode() {
info!("G-Sync Switchable Graphics or GPU MUX not detected");
info!("Standard graphics switching will still work.");
}
if Path::new(ASUS_POST_LOGO_SOUND).exists() {
CtrlPlatform::set_path_mutable(ASUS_POST_LOGO_SOUND)?;
} else {
info!("Switch for POST boot sound not detected");
}
Ok(CtrlPlatform { platform, config })
}
fn set_path_mutable(path: &str) -> Result<(), RogError> {
let output = Command::new("/usr/bin/chattr")
.arg("-i")
.arg(path)
.output()
.map_err(|err| RogError::Path(path.into(), err))?;
info!("Set {} writeable: status: {}", path, output.status);
Ok(())
}
fn set_gfx_mode(&self, mode: GpuMode) -> Result<(), RogError> {
self.platform.set_gpu_mux_mode(mode.to_mux_attr())?;
// self.update_initramfs(enable)?;
if mode == GpuMode::Discrete {
info!("Set system-level graphics mode: Dedicated Nvidia");
} else {
info!("Set system-level graphics mode: Optimus");
}
Ok(())
}
pub fn get_boot_sound() -> Result<i8, RogError> {
let data = std::fs::read(ASUS_POST_LOGO_SOUND)
.map_err(|err| RogError::Read(ASUS_POST_LOGO_SOUND.into(), err))?;
let idx = data.len() - 1;
Ok(data[idx] as i8)
}
pub(super) fn set_boot_sound(on: bool) -> Result<(), RogError> {
let path = ASUS_POST_LOGO_SOUND;
let mut file = OpenOptions::new()
.read(true)
.write(true)
.open(path)
.map_err(|err| RogError::Path(path.into(), err))?;
let mut data = Vec::new();
#[allow(clippy::verbose_file_reads)]
file.read_to_end(&mut data)
.map_err(|err| RogError::Read(path.into(), err))?;
let idx = data.len() - 1;
if on {
data[idx] = 1;
info!("Set boot POST sound on");
} else {
data[idx] = 0;
info!("Set boot POST sound off");
}
file.write_all(&data)
.map_err(|err| RogError::Path(path.into(), err))?;
Ok(())
}
fn set_panel_overdrive(&self, enable: bool) -> Result<(), RogError> {
self.platform.set_panel_od(enable).map_err(|err| {
warn!("CtrlRogBios: set_panel_overdrive {}", err);
err
})?;
Ok(())
}
}
#[dbus_interface(name = "org.asuslinux.Daemon")]
impl CtrlPlatform {
async fn set_gpu_mux_mode(
&mut self,
#[zbus(signal_context)] ctxt: SignalContext<'_>,
mode: GpuMode,
) {
self.set_gfx_mode(mode)
.map_err(|err| {
warn!("CtrlRogBios: set_gpu_mux_mode {}", err);
err
})
.ok();
Self::notify_gpu_mux_mode(&ctxt, mode).await.ok();
}
fn gpu_mux_mode(&self) -> GpuMode {
match self.platform.get_gpu_mux_mode() {
Ok(m) => GpuMode::from_mux(m as u8),
Err(e) => {
warn!("CtrlRogBios: get_gfx_mode {}", e);
GpuMode::Error
}
}
}
#[dbus_interface(signal)]
async fn notify_gpu_mux_mode(
signal_ctxt: &SignalContext<'_>,
mode: GpuMode,
) -> zbus::Result<()> {
}
async fn set_post_boot_sound(
&mut self,
#[zbus(signal_context)] ctxt: SignalContext<'_>,
on: bool,
) {
Self::set_boot_sound(on)
.map_err(|err| {
warn!("CtrlRogBios: set_post_boot_sound {}", err);
err
})
.ok();
Self::notify_post_boot_sound(&ctxt, on).await.ok();
}
fn post_boot_sound(&self) -> i8 {
Self::get_boot_sound()
.map_err(|err| {
warn!("CtrlRogBios: get_boot_sound {}", err);
err
})
.unwrap_or(-1)
}
#[dbus_interface(signal)]
async fn notify_post_boot_sound(ctxt: &SignalContext<'_>, on: bool) -> zbus::Result<()> {}
async fn set_panel_od(
&mut self,
#[zbus(signal_context)] ctxt: SignalContext<'_>,
overdrive: bool,
) {
match self.platform.set_panel_od(overdrive) {
Ok(_) => {
if let Some(mut lock) = self.config.try_lock() {
lock.panel_od = overdrive;
lock.write();
}
Self::notify_panel_od(&ctxt, overdrive).await.ok();
}
Err(err) => warn!("CtrlRogBios: set_panel_overdrive {}", err),
};
}
/// Get the `panel_od` value from platform. Updates the stored value in
/// internal config also.
fn panel_od(&self) -> bool {
let od = self
.platform
.get_panel_od()
.map_err(|err| {
warn!("CtrlRogBios: get_panel_od {}", err);
err
})
.unwrap_or(false);
if let Some(mut lock) = self.config.try_lock() {
lock.panel_od = od;
lock.write();
}
od
}
#[dbus_interface(signal)]
async fn notify_panel_od(signal_ctxt: &SignalContext<'_>, overdrive: bool) -> zbus::Result<()> {
}
async fn set_dgpu_disable(
&mut self,
#[zbus(signal_context)] ctxt: SignalContext<'_>,
disable: bool,
) {
match self.platform.set_dgpu_disable(disable) {
Ok(_) => {
Self::notify_dgpu_disable(&ctxt, disable).await.ok();
}
Err(err) => warn!("CtrlRogBios: set_dgpu_disable {}", err),
};
}
fn dgpu_disable(&self) -> bool {
self.platform
.get_dgpu_disable()
.map_err(|err| {
warn!("CtrlRogBios: get_dgpu_disable {}", err);
err
})
.unwrap_or(false)
}
#[dbus_interface(signal)]
async fn notify_dgpu_disable(
signal_ctxt: &SignalContext<'_>,
disable: bool,
) -> zbus::Result<()> {
}
async fn set_egpu_enable(
&mut self,
#[zbus(signal_context)] ctxt: SignalContext<'_>,
enable: bool,
) {
match self.platform.set_egpu_enable(enable) {
Ok(_) => {
Self::notify_egpu_enable(&ctxt, enable).await.ok();
}
Err(err) => warn!("CtrlRogBios: set_egpu_enable {}", err),
};
}
fn egpu_enable(&self) -> bool {
self.platform
.get_egpu_enable()
.map_err(|err| {
warn!("CtrlRogBios: get_egpu_enable {}", err);
err
})
.unwrap_or(false)
}
#[dbus_interface(signal)]
async fn notify_egpu_enable(signal_ctxt: &SignalContext<'_>, enable: bool) -> zbus::Result<()> {
}
}
#[async_trait]
impl crate::ZbusRun for CtrlPlatform {
async fn add_to_server(self, server: &mut Connection) {
Self::add_to_server_helper(self, "/org/asuslinux/Platform", server).await;
}
}
#[async_trait]
impl crate::Reloadable for CtrlPlatform {
async fn reload(&mut self) -> Result<(), RogError> {
if self.platform.has_panel_od() {
let p = if let Some(lock) = self.config.try_lock() {
lock.panel_od
} else {
false
};
self.set_panel_overdrive(p)?;
}
Ok(())
}
}
impl CtrlPlatform {
task_watch_item!(panel_od platform);
task_watch_item!(dgpu_disable platform);
task_watch_item!(egpu_enable platform);
// NOTE: see note further below
// task_watch_item!(gpu_mux_mode platform);
}
#[async_trait]
impl CtrlTask for CtrlPlatform {
fn zbus_path() -> &'static str {
ZBUS_PATH
}
async fn create_tasks(&self, signal_ctxt: SignalContext<'static>) -> Result<(), RogError> {
let platform1 = self.clone();
let platform2 = self.clone();
self.create_sys_event_tasks(
move || async { {} },
move || {
let platform1 = platform1.clone();
async move {
info!("CtrlRogBios reloading panel_od");
let lock = platform1.config.lock().await;
if platform1.platform.has_panel_od() {
platform1
.set_panel_overdrive(lock.panel_od)
.map_err(|err| {
warn!("CtrlCharge: set_limit {}", err);
err
})
.ok();
}
}
},
move || async { {} },
move || {
let platform2 = platform2.clone();
async move {
info!("CtrlRogBios reloading panel_od");
let lock = platform2.config.lock().await;
if platform2.platform.has_panel_od() {
platform2
.set_panel_overdrive(lock.panel_od)
.map_err(|err| {
warn!("CtrlCharge: set_limit {}", err);
err
})
.ok();
}
}
},
)
.await;
self.watch_panel_od(signal_ctxt.clone()).await?;
self.watch_dgpu_disable(signal_ctxt.clone()).await?;
self.watch_egpu_enable(signal_ctxt.clone()).await?;
// NOTE: Can't have this as a watch because on a write to it, it reverts back to
// booted-with value as it does not actually change until reboot.
// self.watch_gpu_mux_mode(signal_ctxt.clone()).await?;
Ok(())
}
}

View File

@@ -1,287 +0,0 @@
use std::process::Command;
use std::sync::Arc;
use std::time::Duration;
use async_trait::async_trait;
use config_traits::StdConfig;
use log::{error, info, warn};
use rog_platform::power::AsusPower;
use rog_platform::supported::ChargeSupportedFunctions;
use systemd_zbus::{ManagerProxy as SystemdProxy, Mode, UnitFileState};
use tokio::time::sleep;
use zbus::export::futures_util::lock::Mutex;
use zbus::{dbus_interface, Connection, SignalContext};
use crate::config::Config;
use crate::error::RogError;
use crate::{task_watch_item, CtrlTask, GetSupported};
const ZBUS_PATH: &str = "/org/asuslinux/Power";
const NVIDIA_POWERD: &str = "nvidia-powerd.service";
impl GetSupported for CtrlPower {
type A = ChargeSupportedFunctions;
fn get_supported() -> Self::A {
ChargeSupportedFunctions {
charge_level_set: if let Ok(power) = AsusPower::new() {
power.has_charge_control_end_threshold()
} else {
false
},
}
}
}
#[derive(Clone)]
pub struct CtrlPower {
power: AsusPower,
config: Arc<Mutex<Config>>,
}
#[dbus_interface(name = "org.asuslinux.Daemon")]
impl CtrlPower {
async fn set_charge_control_end_threshold(
&mut self,
#[zbus(signal_context)] ctxt: SignalContext<'_>,
limit: u8,
) -> zbus::fdo::Result<()> {
if !(20..=100).contains(&limit) {
return Err(RogError::ChargeLimit(limit))?;
}
self.set(limit)
.map_err(|err| {
warn!("CtrlCharge: set_limit {}", err);
err
})
.ok();
Self::notify_charge_control_end_threshold(&ctxt, limit)
.await
.ok();
Ok(())
}
fn charge_control_end_threshold(&self) -> u8 {
loop {
if let Some(mut config) = self.config.try_lock() {
let limit = self
.power
.get_charge_control_end_threshold()
.map_err(|err| {
warn!("CtrlCharge: get_charge_control_end_threshold {}", err);
err
})
.unwrap_or(100);
config.read();
config.bat_charge_limit = limit;
config.write();
return config.bat_charge_limit;
}
}
}
fn mains_online(&self) -> bool {
if self.power.has_online() {
if let Ok(v) = self.power.get_online() {
return v == 1;
}
}
false
}
#[dbus_interface(signal)]
async fn notify_charge_control_end_threshold(
ctxt: &SignalContext<'_>,
limit: u8,
) -> zbus::Result<()>;
#[dbus_interface(signal)]
async fn notify_mains_online(ctxt: &SignalContext<'_>, on: bool) -> zbus::Result<()>;
}
#[async_trait]
impl crate::ZbusRun for CtrlPower {
async fn add_to_server(self, server: &mut Connection) {
Self::add_to_server_helper(self, ZBUS_PATH, server).await;
}
}
#[async_trait]
impl crate::Reloadable for CtrlPower {
async fn reload(&mut self) -> Result<(), RogError> {
if let Some(mut config) = self.config.try_lock() {
config.read();
self.set(config.bat_charge_limit)?;
}
Ok(())
}
}
impl CtrlPower {
task_watch_item!(charge_control_end_threshold power);
pub fn new(config: Arc<Mutex<Config>>) -> Result<Self, RogError> {
Ok(CtrlPower {
power: AsusPower::new()?,
config,
})
}
pub(super) fn set(&self, limit: u8) -> Result<(), RogError> {
if !(20..=100).contains(&limit) {
return Err(RogError::ChargeLimit(limit));
}
self.power.set_charge_control_end_threshold(limit)?;
info!("Battery charge limit: {}", limit);
if let Some(mut config) = self.config.try_lock() {
config.read();
config.bat_charge_limit = limit;
config.write();
}
Ok(())
}
}
#[async_trait]
impl CtrlTask for CtrlPower {
fn zbus_path() -> &'static str {
ZBUS_PATH
}
async fn create_tasks(&self, signal_ctxt: SignalContext<'static>) -> Result<(), RogError> {
let conn = zbus::Connection::system().await?;
let sysd1 = SystemdProxy::new(&conn).await?;
let sysd2 = sysd1.clone();
let sysd3 = sysd1.clone();
let power1 = self.clone();
let power2 = self.clone();
self.create_sys_event_tasks(
move || async {},
move || {
let power = power1.clone();
let sysd = sysd1.clone();
async move {
info!("CtrlCharge reloading charge limit");
let lock = power.config.lock().await;
power
.set(lock.bat_charge_limit)
.map_err(|err| {
warn!("CtrlCharge: set_limit {}", err);
err
})
.ok();
if lock.disable_nvidia_powerd_on_battery {
if let Ok(value) = power.power.get_online() {
do_nvidia_powerd_action(&sysd, value == 1).await;
}
}
}
},
move || async {},
move || {
let power = power2.clone();
let sysd = sysd2.clone();
async move {
info!("CtrlCharge reloading charge limit");
let lock = power.config.lock().await;
power
.set(lock.bat_charge_limit)
.map_err(|err| {
warn!("CtrlCharge: set_limit {}", err);
err
})
.ok();
if lock.disable_nvidia_powerd_on_battery {
if let Ok(value) = power.power.get_online() {
do_nvidia_powerd_action(&sysd, value == 1).await;
}
}
}
},
)
.await;
let config = self.config.clone();
self.watch_charge_control_end_threshold(signal_ctxt.clone())
.await?;
let ctrl = self.clone();
tokio::spawn(async move {
let mut online = 10;
loop {
if let Ok(value) = ctrl.power.get_online() {
if online != value {
online = value;
let mut config = config.lock().await;
config.read();
if config.disable_nvidia_powerd_on_battery {
do_nvidia_powerd_action(&sysd3, value == 1).await;
}
Self::notify_mains_online(&signal_ctxt, value == 1)
.await
.unwrap();
let mut prog: Vec<&str> = Vec::new();
if value == 1 {
// AC ONLINE
prog = config.ac_command.split_whitespace().collect();
} else if value == 0 {
// BATTERY
prog = config.bat_command.split_whitespace().collect();
}
if prog.len() > 1 {
let mut cmd = Command::new(prog[0]);
for arg in prog.iter().skip(1) {
cmd.arg(*arg);
}
if let Err(e) = cmd.spawn() {
if value == 1 {
error!("AC power command error: {e}");
} else {
error!("Battery power command error: {e}");
}
}
}
}
}
// The inotify doesn't pick up events when the kernel changes internal value
// so we need to watch it with a thread and sleep unfortunately
sleep(Duration::from_secs(1)).await;
}
});
Ok(())
}
}
async fn do_nvidia_powerd_action(proxy: &SystemdProxy<'_>, ac_on: bool) {
if let Ok(res) = proxy.get_unit_file_state(NVIDIA_POWERD).await {
if res == UnitFileState::Enabled {
if ac_on {
proxy
.start_unit(NVIDIA_POWERD, Mode::Replace)
.await
.map_err(|e| error!("Error stopping {NVIDIA_POWERD}, {e:?}"))
.ok();
} else {
proxy
.stop_unit(NVIDIA_POWERD, Mode::Replace)
.await
.map_err(|e| error!("Error stopping {NVIDIA_POWERD}, {e:?}"))
.ok();
}
}
}
}

View File

@@ -1,60 +0,0 @@
use std::path::PathBuf;
use config_traits::{StdConfig, StdConfigLoad};
use rog_profiles::fan_curve_set::FanCurveSet;
use rog_profiles::Profile;
use serde_derive::{Deserialize, Serialize};
use crate::CONFIG_PATH_BASE;
const CONFIG_FILE: &str = "profile.ron";
const CONFIG_FAN_FILE: &str = "fan_curves.ron";
#[derive(Deserialize, Serialize, Debug)]
pub struct ProfileConfig {
/// For restore on boot
pub active_profile: Profile,
}
impl StdConfig for ProfileConfig {
fn new() -> Self {
Self {
active_profile: Profile::Balanced,
}
}
fn config_dir() -> std::path::PathBuf {
PathBuf::from(CONFIG_PATH_BASE)
}
fn file_name(&self) -> String {
CONFIG_FILE.to_owned()
}
}
impl StdConfigLoad for ProfileConfig {}
#[derive(Deserialize, Serialize, Debug, Default)]
pub struct FanCurveConfig {
pub balanced: FanCurveSet,
pub performance: FanCurveSet,
pub quiet: FanCurveSet,
}
impl StdConfig for FanCurveConfig {
/// Create a new config. The defaults are zeroed so the device must be read
/// to get the actual device defaults.
fn new() -> Self {
Self::default()
}
fn config_dir() -> std::path::PathBuf {
PathBuf::from(CONFIG_PATH_BASE)
}
fn file_name(&self) -> String {
CONFIG_FAN_FILE.to_owned()
}
}
impl StdConfigLoad for FanCurveConfig {}

View File

@@ -1,191 +0,0 @@
use config_traits::{StdConfig, StdConfigLoad};
use log::{info, warn};
use rog_platform::platform::AsusPlatform;
use rog_platform::supported::PlatformProfileFunctions;
use rog_profiles::error::ProfileError;
use rog_profiles::{FanCurveProfiles, Profile};
use super::config::{FanCurveConfig, ProfileConfig};
use crate::error::RogError;
use crate::GetSupported;
// TODO: macro wrapper for warn/info/error log macros to add module name
const MOD_NAME: &str = "CtrlPlatformProfile";
pub struct FanCurves {
config_file: FanCurveConfig,
profiles: FanCurveProfiles,
}
impl FanCurves {
pub fn update_profiles_from_config(&mut self) {
self.profiles.balanced = self.config_file.balanced.clone();
self.profiles.performance = self.config_file.performance.clone();
self.profiles.quiet = self.config_file.quiet.clone();
}
pub fn update_config_from_profiles(&mut self) {
self.config_file.balanced = self.profiles.balanced.clone();
self.config_file.performance = self.profiles.performance.clone();
self.config_file.quiet = self.profiles.quiet.clone();
}
pub fn profiles(&self) -> &FanCurveProfiles {
&self.profiles
}
pub fn profiles_mut(&mut self) -> &mut FanCurveProfiles {
&mut self.profiles
}
}
pub struct CtrlPlatformProfile {
pub profile_config: ProfileConfig,
pub fan_curves: Option<FanCurves>,
pub platform: AsusPlatform,
}
impl GetSupported for CtrlPlatformProfile {
type A = PlatformProfileFunctions;
fn get_supported() -> Self::A {
if !Profile::is_platform_profile_supported() {
warn!(
"platform_profile kernel interface not found, your laptop does not support this, \
or the interface is missing."
);
}
let res = FanCurveProfiles::is_supported();
let mut fan_curve_supported = res.is_err();
if let Ok(r) = res {
fan_curve_supported = r;
};
if !fan_curve_supported {
info!(
"fan curves kernel interface not found, your laptop does not support this, or the \
interface is missing."
);
}
PlatformProfileFunctions {
platform_profile: Profile::is_platform_profile_supported(),
fan_curves: fan_curve_supported,
}
}
}
impl CtrlPlatformProfile {
pub fn new(config: ProfileConfig) -> Result<Self, RogError> {
let platform = AsusPlatform::new()?;
if platform.has_platform_profile() || platform.has_throttle_thermal_policy() {
info!("{MOD_NAME}: Device has profile control available");
let mut controller = CtrlPlatformProfile {
profile_config: config,
fan_curves: None,
platform,
};
if FanCurveProfiles::get_device().is_ok() {
info!("{MOD_NAME}: Device has fan curves available");
let fan_config = FanCurveConfig::new();
// Only do defaults if the config doesn't already exist
if !fan_config.file_path().exists() {
info!("{MOD_NAME}: Fetching default fan curves");
controller.fan_curves = Some(FanCurves {
config_file: fan_config,
profiles: FanCurveProfiles::default(),
});
for _ in [Profile::Balanced, Profile::Performance, Profile::Quiet] {
// For each profile we need to switch to it before we
// can read the existing values from hardware. The ACPI method used
// for this is what limits us.
controller.set_next_profile()?;
// Make sure to set the baseline to default
controller.set_active_curve_to_defaults()?;
let active = Profile::get_active_profile().unwrap_or(Profile::Balanced);
if let Some(curves) = controller.fan_curves.as_ref() {
info!(
"{MOD_NAME}: {active:?}: {}",
String::from(curves.profiles().get_fan_curves_for(active))
);
}
}
if let Some(curves) = controller.fan_curves.as_ref() {
curves.config_file.write();
}
} else {
info!("{MOD_NAME}: Fan curves previously stored, loading...");
let mut fan_curves = FanCurves {
config_file: fan_config.load(),
profiles: FanCurveProfiles::default(),
};
fan_curves.update_profiles_from_config();
controller.fan_curves = Some(fan_curves);
}
}
return Ok(controller);
}
Err(ProfileError::NotSupported.into())
}
pub fn save_config(&mut self) {
self.profile_config.write();
if let Some(fans) = self.fan_curves.as_mut() {
fans.update_config_from_profiles();
fans.config_file.write(); // config write
}
}
/// Toggle to next profile in list. This will first read the config, switch,
/// then write out
pub(super) fn set_next_profile(&mut self) -> Result<(), RogError> {
// Read first just incase the user has modified the config before calling this
match self.profile_config.active_profile {
Profile::Balanced => {
Profile::set_profile(Profile::Performance)?;
self.profile_config.active_profile = Profile::Performance;
}
Profile::Performance => {
Profile::set_profile(Profile::Quiet)?;
self.profile_config.active_profile = Profile::Quiet;
}
Profile::Quiet => {
Profile::set_profile(Profile::Balanced)?;
self.profile_config.active_profile = Profile::Balanced;
}
}
self.write_profile_curve_to_platform()?;
Ok(())
}
/// Set the curve for the active profile active
pub(super) fn write_profile_curve_to_platform(&mut self) -> Result<(), RogError> {
if let Some(curves) = &mut self.fan_curves {
if let Ok(mut device) = FanCurveProfiles::get_device() {
curves.profiles_mut().write_profile_curve_to_platform(
self.profile_config.active_profile,
&mut device,
)?;
}
}
Ok(())
}
pub(super) fn set_active_curve_to_defaults(&mut self) -> Result<(), RogError> {
if let Some(curves) = self.fan_curves.as_mut() {
if let Ok(mut device) = FanCurveProfiles::get_device() {
curves.profiles_mut().set_active_curve_to_defaults(
self.profile_config.active_profile,
&mut device,
)?;
curves.update_config_from_profiles();
}
}
Ok(())
}
}

View File

@@ -1,4 +0,0 @@
pub mod config;
pub mod controller;
/// Implements `CtrlTask`, Reloadable, `ZbusRun`
pub mod trait_impls;

View File

@@ -1,311 +0,0 @@
use std::str::FromStr;
use std::sync::Arc;
use async_trait::async_trait;
use config_traits::StdConfig;
use log::{error, info, warn};
use rog_profiles::fan_curve_set::{CurveData, FanCurveSet};
use rog_profiles::{FanCurveProfiles, Profile};
use zbus::export::futures_util::lock::Mutex;
use zbus::export::futures_util::StreamExt;
use zbus::fdo::Error;
use zbus::{dbus_interface, Connection, SignalContext};
use super::controller::CtrlPlatformProfile;
use crate::error::RogError;
use crate::CtrlTask;
const MOD_NAME: &str = "ProfileZbus";
const ZBUS_PATH: &str = "/org/asuslinux/Profile";
const UNSUPPORTED_MSG: &str =
"Fan curves are not supported on this laptop or you require a patched kernel";
#[derive(Clone)]
pub struct ProfileZbus(pub Arc<Mutex<CtrlPlatformProfile>>);
#[dbus_interface(name = "org.asuslinux.Daemon")]
impl ProfileZbus {
/// Fetch profile names
fn profiles(&mut self) -> zbus::fdo::Result<Vec<Profile>> {
if let Ok(profiles) = Profile::get_profile_names() {
return Ok(profiles);
}
Err(Error::Failed(
"Failed to get all profile details".to_owned(),
))
}
/// Toggle to next platform_profile. Names provided by `Profiles`.
/// If fan-curves are supported will also activate a fan curve for profile.
async fn next_profile(&mut self, #[zbus(signal_context)] ctxt: SignalContext<'_>) {
let mut ctrl = self.0.lock().await;
ctrl.set_next_profile()
.unwrap_or_else(|err| warn!("{MOD_NAME}: {}", err));
ctrl.save_config();
Self::notify_profile(&ctxt, ctrl.profile_config.active_profile)
.await
.ok();
}
/// Fetch the active profile name
async fn active_profile(&mut self) -> zbus::fdo::Result<Profile> {
let mut ctrl = self.0.lock().await;
ctrl.profile_config.read();
Ok(ctrl.profile_config.active_profile)
}
/// Set this platform_profile name as active
async fn set_active_profile(
&self,
#[zbus(signal_context)] ctxt: SignalContext<'_>,
profile: Profile,
) {
let mut ctrl = self.0.lock().await;
// Read first just incase the user has modified the config before calling this
ctrl.profile_config.read();
Profile::set_profile(profile)
.map_err(|e| warn!("{MOD_NAME}: set_profile, {}", e))
.ok();
ctrl.profile_config.active_profile = profile;
ctrl.write_profile_curve_to_platform()
.map_err(|e| warn!("{MOD_NAME}: write_profile_curve_to_platform, {}", e))
.ok();
ctrl.save_config();
Self::notify_profile(&ctxt, ctrl.profile_config.active_profile)
.await
.ok();
}
/// Get a list of profiles that have fan-curves enabled.
async fn enabled_fan_profiles(&mut self) -> zbus::fdo::Result<Vec<Profile>> {
let mut ctrl = self.0.lock().await;
ctrl.profile_config.read();
if let Some(curves) = &mut ctrl.fan_curves {
return Ok(curves.profiles().get_enabled_curve_profiles());
}
Err(Error::Failed(UNSUPPORTED_MSG.to_owned()))
}
/// Set a profile fan curve enabled status. Will also activate a fan curve
/// if in the same profile mode
async fn set_fan_curve_enabled(
&mut self,
profile: Profile,
enabled: bool,
) -> zbus::fdo::Result<()> {
let mut ctrl = self.0.lock().await;
ctrl.profile_config.read();
if let Some(curves) = &mut ctrl.fan_curves {
curves
.profiles_mut()
.set_profile_curve_enabled(profile, enabled);
ctrl.write_profile_curve_to_platform()
.map_err(|e| warn!("{MOD_NAME}: write_profile_curve_to_platform, {}", e))
.ok();
ctrl.save_config();
Ok(())
} else {
Err(Error::Failed(UNSUPPORTED_MSG.to_owned()))
}
}
/// Get the fan-curve data for the currently active Profile
async fn fan_curve_data(&mut self, profile: Profile) -> zbus::fdo::Result<FanCurveSet> {
let mut ctrl = self.0.lock().await;
ctrl.profile_config.read();
if let Some(curves) = &mut ctrl.fan_curves {
let curve = curves.profiles().get_fan_curves_for(profile);
return Ok(curve.clone());
}
Err(Error::Failed(UNSUPPORTED_MSG.to_owned()))
}
/// Set the fan curve for the specified profile.
/// Will also activate the fan curve if the user is in the same mode.
async fn set_fan_curve(&self, profile: Profile, curve: CurveData) -> zbus::fdo::Result<()> {
let mut ctrl = self.0.lock().await;
ctrl.profile_config.read();
if let Some(curves) = &mut ctrl.fan_curves {
curves
.profiles_mut()
.save_fan_curve(curve, profile)
.map_err(|err| zbus::fdo::Error::Failed(err.to_string()))?;
} else {
return Err(Error::Failed(UNSUPPORTED_MSG.to_owned()));
}
ctrl.write_profile_curve_to_platform()
.map_err(|e| warn!("{MOD_NAME}: Profile::set_profile, {}", e))
.ok();
ctrl.save_config();
Ok(())
}
/// Reset the stored (self) and device curve to the defaults of the
/// platform.
///
/// Each platform_profile has a different default and the defualt can be
/// read only for the currently active profile.
async fn set_active_curve_to_defaults(&self) -> zbus::fdo::Result<()> {
let mut ctrl = self.0.lock().await;
ctrl.profile_config.read();
ctrl.set_active_curve_to_defaults()
.map_err(|e| warn!("{MOD_NAME}: Profile::set_active_curve_to_defaults, {}", e))
.ok();
ctrl.save_config();
Ok(())
}
/// Reset the stored (self) and device curve to the defaults of the
/// platform.
///
/// Each platform_profile has a different default and the defualt can be
/// read only for the currently active profile.
async fn reset_profile_curves(&self, profile: Profile) -> zbus::fdo::Result<()> {
let mut ctrl = self.0.lock().await;
ctrl.profile_config.read();
let active = Profile::get_active_profile().unwrap_or(Profile::Balanced);
Profile::set_profile(profile)
.map_err(|e| warn!("{MOD_NAME}: set_profile, {}", e))
.ok();
ctrl.set_active_curve_to_defaults()
.map_err(|e| warn!("{MOD_NAME}: Profile::set_active_curve_to_defaults, {}", e))
.ok();
Profile::set_profile(active)
.map_err(|e| warn!("{MOD_NAME}: set_profile, {}", e))
.ok();
ctrl.save_config();
Ok(())
}
#[dbus_interface(signal)]
async fn notify_profile(signal_ctxt: &SignalContext<'_>, profile: Profile) -> zbus::Result<()> {
}
}
#[async_trait]
impl crate::ZbusRun for ProfileZbus {
async fn add_to_server(self, server: &mut Connection) {
Self::add_to_server_helper(self, ZBUS_PATH, server).await;
}
}
#[async_trait]
impl CtrlTask for ProfileZbus {
fn zbus_path() -> &'static str {
ZBUS_PATH
}
async fn create_tasks(&self, signal_ctxt: SignalContext<'static>) -> Result<(), RogError> {
let ctrl = self.0.clone();
let sig_ctx = signal_ctxt.clone();
let mut watch = self
.0
.lock()
.await
.platform
.monitor_throttle_thermal_policy()?;
tokio::spawn(async move {
let mut buffer = [0; 32];
if let Ok(stream) = watch.event_stream(&mut buffer) {
stream
.for_each(|_| async {
let mut lock = ctrl.lock().await;
if let Ok(profile) =
lock.platform.get_throttle_thermal_policy().map_err(|e| {
error!("{MOD_NAME}: get_throttle_thermal_policy error: {e}");
})
{
let new_profile = Profile::from_throttle_thermal_policy(profile);
if new_profile != lock.profile_config.active_profile {
info!("{MOD_NAME}: platform_profile changed to {new_profile}");
lock.profile_config.active_profile = new_profile;
lock.write_profile_curve_to_platform().unwrap();
lock.save_config();
Profile::set_profile(lock.profile_config.active_profile)
.map_err(|e| {
error!("Profile::set_profile() error: {e}");
})
.ok();
}
Self::notify_profile(&sig_ctx, lock.profile_config.active_profile)
.await
.ok();
}
})
.await;
}
});
let ctrl = self.0.clone();
let mut watch = self.0.lock().await.platform.monitor_platform_profile()?;
tokio::spawn(async move {
let mut buffer = [0; 32];
if let Ok(stream) = watch.event_stream(&mut buffer) {
stream
.for_each(|_| async {
let mut lock = ctrl.lock().await;
if let Ok(profile) = lock.platform.get_platform_profile().map_err(|e| {
error!("get_platform_profile error: {e}");
}) {
if let Ok(new_profile) = Profile::from_str(&profile).map_err(|e| {
error!("Profile::from_str(&profile) error: {e}");
}) {
if new_profile != lock.profile_config.active_profile {
info!("{MOD_NAME}: platform_profile changed to {new_profile}");
lock.profile_config.active_profile = new_profile;
lock.write_profile_curve_to_platform().unwrap();
lock.save_config();
Profile::set_profile(lock.profile_config.active_profile)
.map_err(|e| {
error!("Profile::set_profile() error: {e}");
})
.ok();
}
Self::notify_profile(
&signal_ctxt,
lock.profile_config.active_profile,
)
.await
.ok();
}
}
})
.await;
}
});
Ok(())
}
}
#[async_trait]
impl crate::Reloadable for ProfileZbus {
/// Fetch the active profile and use that to set all related components up
async fn reload(&mut self) -> Result<(), RogError> {
let mut ctrl = self.0.lock().await;
let active = ctrl.profile_config.active_profile;
if let Some(curves) = &mut ctrl.fan_curves {
if let Ok(mut device) = FanCurveProfiles::get_device() {
// There is a possibility that the curve was default zeroed, so this call
// initialises the data from system read and we need to save it
// after
curves
.profiles_mut()
.write_profile_curve_to_platform(active, &mut device)?;
ctrl.profile_config.write();
}
}
Ok(())
}
}

View File

@@ -1,42 +0,0 @@
use async_trait::async_trait;
use serde_derive::{Deserialize, Serialize};
use zbus::zvariant::Type;
use zbus::{dbus_interface, Connection};
use crate::ctrl_anime::CtrlAnime;
use crate::ctrl_aura::controller::CtrlKbdLed;
use crate::ctrl_platform::CtrlPlatform;
use crate::ctrl_power::CtrlPower;
use crate::ctrl_profiles::controller::CtrlPlatformProfile;
use crate::GetSupported;
#[derive(Serialize, Deserialize, Debug, Type)]
pub struct SupportedFunctions(rog_platform::supported::SupportedFunctions);
#[dbus_interface(name = "org.asuslinux.Daemon")]
impl SupportedFunctions {
pub fn supported_functions(&self) -> &rog_platform::supported::SupportedFunctions {
&self.0
}
}
#[async_trait]
impl crate::ZbusRun for SupportedFunctions {
async fn add_to_server(self, server: &mut Connection) {
Self::add_to_server_helper(self, "/org/asuslinux/Supported", server).await;
}
}
impl GetSupported for SupportedFunctions {
type A = SupportedFunctions;
fn get_supported() -> Self::A {
Self(rog_platform::supported::SupportedFunctions {
anime_ctrl: CtrlAnime::get_supported(),
keyboard_led: CtrlKbdLed::get_supported(),
charge_ctrl: CtrlPower::get_supported(),
platform_profile: CtrlPlatformProfile::get_supported(),
rog_bios_ctrl: CtrlPlatform::get_supported(),
})
}
}

View File

@@ -1,229 +0,0 @@
#![deny(unused_must_use)]
/// Configuration loading, saving
pub mod config;
/// Control of anime matrix display
pub mod ctrl_anime;
/// Keyboard LED brightness control, RGB, and LED display modes
pub mod ctrl_aura;
/// Control ASUS bios function such as boot sound, Optimus/Dedicated gfx mode
pub mod ctrl_platform;
/// Control of battery charge level
pub mod ctrl_power;
/// Control platform profiles + fan-curves if available
pub mod ctrl_profiles;
/// Fetch all supported functions for the laptop
pub mod ctrl_supported;
pub mod error;
use std::future::Future;
use async_trait::async_trait;
use log::{debug, info, warn};
use logind_zbus::manager::ManagerProxy;
use zbus::export::futures_util::StreamExt;
use zbus::zvariant::ObjectPath;
use zbus::{Connection, SignalContext};
use crate::error::RogError;
const CONFIG_PATH_BASE: &str = "/etc/asusd/";
/// This macro adds a function which spawns an `inotify` task on the passed in
/// `Executor`.
///
/// The generated function is `watch_<name>()`. Self requires the following
/// methods to be available:
/// - `<name>() -> SomeValue`, functionally is a getter, but is allowed to have
/// side effects.
/// - `notify_<name>(SignalContext, SomeValue)`
///
/// In most cases if `SomeValue` is stored in a config then `<name>()` getter is
/// expected to update it. The getter should *never* write back to the path or
/// attribute that is being watched or an infinite loop will occur.
///
/// # Example
///
/// ```ignore
/// impl CtrlRogBios {
/// task_watch_item!(panel_od platform);
/// task_watch_item!(gpu_mux_mode platform);
/// }
/// ```
#[macro_export]
macro_rules! task_watch_item {
($name:ident $self_inner:ident) => {
concat_idents::concat_idents!(fn_name = watch_, $name {
async fn fn_name(
&self,
signal_ctxt: SignalContext<'static>,
) -> Result<(), RogError> {
use zbus::export::futures_util::StreamExt;
let ctrl = self.clone();
concat_idents::concat_idents!(watch_fn = monitor_, $name {
match self.$self_inner.watch_fn() {
Ok(mut watch) => {
tokio::spawn(async move {
let mut buffer = [0; 32];
watch.event_stream(&mut buffer).unwrap().for_each(|_| async {
let value = ctrl.$name();
concat_idents::concat_idents!(notif_fn = notify_, $name {
Self::notif_fn(&signal_ctxt, value).await.ok();
});
}).await;
});
}
Err(e) => info!("inotify watch failed: {}. You can ignore this if your device does not support the feature", e),
}
});
Ok(())
}
});
};
}
pub const VERSION: &str = env!("CARGO_PKG_VERSION");
pub fn print_board_info() {
let dmi = sysfs_class::DmiId::default();
let board_name = dmi.board_name().expect("Could not get board_name");
let prod_family = dmi.product_family().expect("Could not get product_family");
info!("Product family: {}", prod_family.trim());
info!("Board name: {}", board_name.trim());
}
#[async_trait]
pub trait Reloadable {
async fn reload(&mut self) -> Result<(), RogError>;
}
#[async_trait]
pub trait ZbusRun {
async fn add_to_server(self, server: &mut Connection);
async fn add_to_server_helper(
iface: impl zbus::Interface,
path: &str,
server: &mut Connection,
) {
server
.object_server()
.at(&ObjectPath::from_str_unchecked(path), iface)
.await
.map_err(|err| {
warn!("{}: add_to_server {}", path, err);
err
})
.ok();
}
}
/// Set up a task to run on the async executor
#[async_trait]
pub trait CtrlTask {
fn zbus_path() -> &'static str;
fn signal_context(connection: &Connection) -> Result<SignalContext<'static>, zbus::Error> {
SignalContext::new(connection, Self::zbus_path())
}
/// Implement to set up various tasks that may be required, using the
/// `Executor`. No blocking loops are allowed, or they must be run on a
/// separate thread.
async fn create_tasks(&self, signal: SignalContext<'static>) -> Result<(), RogError>;
// /// Create a timed repeating task
// async fn repeating_task(&self, millis: u64, mut task: impl FnMut() + Send +
// 'static) { use std::time::Duration;
// use tokio::time;
// let mut timer = time::interval(Duration::from_millis(millis));
// tokio::spawn(async move {
// timer.tick().await;
// task();
// });
// }
/// Free helper method to create tasks to run on: sleep, wake, shutdown,
/// boot
///
/// The closures can potentially block, so execution time should be the
/// minimal possible such as save a variable.
async fn create_sys_event_tasks<
Fut1,
Fut2,
Fut3,
Fut4,
F1: Send + 'static,
F2: Send + 'static,
F3: Send + 'static,
F4: Send + 'static,
>(
&self,
mut on_sleep: F1,
mut on_wake: F2,
mut on_shutdown: F3,
mut on_boot: F4,
) where
F1: FnMut() -> Fut1,
F2: FnMut() -> Fut2,
F3: FnMut() -> Fut3,
F4: FnMut() -> Fut4,
Fut1: Future<Output = ()> + Send,
Fut2: Future<Output = ()> + Send,
Fut3: Future<Output = ()> + Send,
Fut4: Future<Output = ()> + Send,
{
let connection = Connection::system()
.await
.expect("Controller could not create dbus connection");
let manager = ManagerProxy::new(&connection)
.await
.expect("Controller could not create ManagerProxy");
tokio::spawn(async move {
if let Ok(mut notif) = manager.receive_prepare_for_sleep().await {
while let Some(event) = notif.next().await {
if let Ok(args) = event.args() {
if args.start {
debug!("Doing on_sleep()");
on_sleep().await;
} else if !args.start() {
debug!("Doing on_wake()");
on_wake().await;
}
}
}
}
});
let manager = ManagerProxy::new(&connection)
.await
.expect("Controller could not create ManagerProxy");
tokio::spawn(async move {
if let Ok(mut notif) = manager.receive_prepare_for_shutdown().await {
while let Some(event) = notif.next().await {
if let Ok(args) = event.args() {
if args.start {
debug!("Doing on_shutdown()");
on_shutdown().await;
} else if !args.start() {
debug!("Doing on_boot()");
on_boot().await;
}
}
}
}
});
}
}
pub trait GetSupported {
type A;
fn get_supported() -> Self::A;
}

View File

@@ -1,6 +1,3 @@
#ACTION=="add|change", SUBSYSTEM=="input", ENV{ID_VENDOR_ID}=="0b05", ENV{ID_MODEL_ID}=="1[89][a-zA-Z0-9][a-zA-Z0-9]|193b", ENV{ID_TYPE}=="hid", TAG+="systemd", ENV{SYSTEMD_WANTS}="asusd.service"
#ACTION=="add|remove", SUBSYSTEM=="input", ENV{ID_VENDOR_ID}=="0b05", ENV{ID_MODEL_ID}=="1[89][a-zA-Z0-9][a-zA-Z0-9]|193b", RUN+="systemctl restart asusd.service"
ENV{DMI_VENDOR}="$attr{[dmi/id]sys_vendor}"
ENV{DMI_VENDOR}!="ASUSTeK COMPUTER INC.", GOTO="asusd_end"

View File

@@ -1,15 +1,13 @@
[Unit]
Description=ASUS Notebook Control
StartLimitInterval=200
StartLimitBurst=2
Before=multi-user.target
After=power-profiles-daemon.service
After=nvidia-powerd.service
StartLimitInterval=500
StartLimitBurst=5
After=nvidia-powerd.service systemd-udevd.service
[Service]
Environment=IS_SERVICE=1
Environment=RUST_LOG="info"
ExecStartPre=/bin/sleep 2
# ExecStartPre=/bin/sleep 2 # was required only for slow devices
ExecStart=/usr/bin/asusd
Restart=on-failure
RestartSec=1

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/* eslint-env node */
module.exports = {
extends: ["eslint:recommended", "plugin:@typescript-eslint/recommended"],
parser: "@typescript-eslint/parser",
plugins: ["@typescript-eslint"],
root: true,
rules: {
// enable additional rules
indent: ["error", 4],
"linebreak-style": ["error", "unix"],
quotes: ["error", "double"],
semi: ["error", "always"],
// override configuration set by extending "eslint:recommended"
"no-empty": "warn",
"no-cond-assign": ["error", "always"],
// disable rules from base configurations
"for-direction": "off",
"@typescript-eslint/no-explicit-any": "warn",
"@typescript-eslint/ban-ts-comment": "off",
},
};

View File

@@ -0,0 +1,13 @@
# Generated files
/@types/gir-generated/*
# Build outputes
/dist/
/build/
# Node configuration and modules
/package.json
/node_modules/
# Files I prefer not to be formatted
*.md

View File

@@ -0,0 +1,9 @@
{
"printWidth": 100,
"useTabs": false,
"semi": true,
"singleQuote": false,
"trailingComma": "all",
"bracketSpacing": true,
"arrowParens": "always"
}

View File

@@ -0,0 +1,373 @@
Mozilla Public License Version 2.0
==================================
1. Definitions
--------------
1.1. "Contributor"
means each individual or legal entity that creates, contributes to
the creation of, or owns Covered Software.
1.2. "Contributor Version"
means the combination of the Contributions of others (if any) used
by a Contributor and that particular Contributor's Contribution.
1.3. "Contribution"
means Covered Software of a particular Contributor.
1.4. "Covered Software"
means Source Code Form to which the initial Contributor has attached
the notice in Exhibit A, the Executable Form of such Source Code
Form, and Modifications of such Source Code Form, in each case
including portions thereof.
1.5. "Incompatible With Secondary Licenses"
means
(a) that the initial Contributor has attached the notice described
in Exhibit B to the Covered Software; or
(b) that the Covered Software was made available under the terms of
version 1.1 or earlier of the License, but not also under the
terms of a Secondary License.
1.6. "Executable Form"
means any form of the work other than Source Code Form.
1.7. "Larger Work"
means a work that combines Covered Software with other material, in
a separate file or files, that is not Covered Software.
1.8. "License"
means this document.
1.9. "Licensable"
means having the right to grant, to the maximum extent possible,
whether at the time of the initial grant or subsequently, any and
all of the rights conveyed by this License.
1.10. "Modifications"
means any of the following:
(a) any file in Source Code Form that results from an addition to,
deletion from, or modification of the contents of Covered
Software; or
(b) any new file in Source Code Form that contains any Covered
Software.
1.11. "Patent Claims" of a Contributor
means any patent claim(s), including without limitation, method,
process, and apparatus claims, in any patent Licensable by such
Contributor that would be infringed, but for the grant of the
License, by the making, using, selling, offering for sale, having
made, import, or transfer of either its Contributions or its
Contributor Version.
1.12. "Secondary License"
means either the GNU General Public License, Version 2.0, the GNU
Lesser General Public License, Version 2.1, the GNU Affero General
Public License, Version 3.0, or any later versions of those
licenses.
1.13. "Source Code Form"
means the form of the work preferred for making modifications.
1.14. "You" (or "Your")
means an individual or a legal entity exercising rights under this
License. For legal entities, "You" includes any entity that
controls, is controlled by, or is under common control with You. For
purposes of this definition, "control" means (a) the power, direct
or indirect, to cause the direction or management of such entity,
whether by contract or otherwise, or (b) ownership of more than
fifty percent (50%) of the outstanding shares or beneficial
ownership of such entity.
2. License Grants and Conditions
--------------------------------
2.1. Grants
Each Contributor hereby grants You a world-wide, royalty-free,
non-exclusive license:
(a) under intellectual property rights (other than patent or trademark)
Licensable by such Contributor to use, reproduce, make available,
modify, display, perform, distribute, and otherwise exploit its
Contributions, either on an unmodified basis, with Modifications, or
as part of a Larger Work; and
(b) under Patent Claims of such Contributor to make, use, sell, offer
for sale, have made, import, and otherwise transfer either its
Contributions or its Contributor Version.
2.2. Effective Date
The licenses granted in Section 2.1 with respect to any Contribution
become effective for each Contribution on the date the Contributor first
distributes such Contribution.
2.3. Limitations on Grant Scope
The licenses granted in this Section 2 are the only rights granted under
this License. No additional rights or licenses will be implied from the
distribution or licensing of Covered Software under this License.
Notwithstanding Section 2.1(b) above, no patent license is granted by a
Contributor:
(a) for any code that a Contributor has removed from Covered Software;
or
(b) for infringements caused by: (i) Your and any other third party's
modifications of Covered Software, or (ii) the combination of its
Contributions with other software (except as part of its Contributor
Version); or
(c) under Patent Claims infringed by Covered Software in the absence of
its Contributions.
This License does not grant any rights in the trademarks, service marks,
or logos of any Contributor (except as may be necessary to comply with
the notice requirements in Section 3.4).
2.4. Subsequent Licenses
No Contributor makes additional grants as a result of Your choice to
distribute the Covered Software under a subsequent version of this
License (see Section 10.2) or under the terms of a Secondary License (if
permitted under the terms of Section 3.3).
2.5. Representation
Each Contributor represents that the Contributor believes its
Contributions are its original creation(s) or it has sufficient rights
to grant the rights to its Contributions conveyed by this License.
2.6. Fair Use
This License is not intended to limit any rights You have under
applicable copyright doctrines of fair use, fair dealing, or other
equivalents.
2.7. Conditions
Sections 3.1, 3.2, 3.3, and 3.4 are conditions of the licenses granted
in Section 2.1.
3. Responsibilities
-------------------
3.1. Distribution of Source Form
All distribution of Covered Software in Source Code Form, including any
Modifications that You create or to which You contribute, must be under
the terms of this License. You must inform recipients that the Source
Code Form of the Covered Software is governed by the terms of this
License, and how they can obtain a copy of this License. You may not
attempt to alter or restrict the recipients' rights in the Source Code
Form.
3.2. Distribution of Executable Form
If You distribute Covered Software in Executable Form then:
(a) such Covered Software must also be made available in Source Code
Form, as described in Section 3.1, and You must inform recipients of
the Executable Form how they can obtain a copy of such Source Code
Form by reasonable means in a timely manner, at a charge no more
than the cost of distribution to the recipient; and
(b) You may distribute such Executable Form under the terms of this
License, or sublicense it under different terms, provided that the
license for the Executable Form does not attempt to limit or alter
the recipients' rights in the Source Code Form under this License.
3.3. Distribution of a Larger Work
You may create and distribute a Larger Work under terms of Your choice,
provided that You also comply with the requirements of this License for
the Covered Software. If the Larger Work is a combination of Covered
Software with a work governed by one or more Secondary Licenses, and the
Covered Software is not Incompatible With Secondary Licenses, this
License permits You to additionally distribute such Covered Software
under the terms of such Secondary License(s), so that the recipient of
the Larger Work may, at their option, further distribute the Covered
Software under the terms of either this License or such Secondary
License(s).
3.4. Notices
You may not remove or alter the substance of any license notices
(including copyright notices, patent notices, disclaimers of warranty,
or limitations of liability) contained within the Source Code Form of
the Covered Software, except that You may alter any license notices to
the extent required to remedy known factual inaccuracies.
3.5. Application of Additional Terms
You may choose to offer, and to charge a fee for, warranty, support,
indemnity or liability obligations to one or more recipients of Covered
Software. However, You may do so only on Your own behalf, and not on
behalf of any Contributor. You must make it absolutely clear that any
such warranty, support, indemnity, or liability obligation is offered by
You alone, and You hereby agree to indemnify every Contributor for any
liability incurred by such Contributor as a result of warranty, support,
indemnity or liability terms You offer. You may include additional
disclaimers of warranty and limitations of liability specific to any
jurisdiction.
4. Inability to Comply Due to Statute or Regulation
---------------------------------------------------
If it is impossible for You to comply with any of the terms of this
License with respect to some or all of the Covered Software due to
statute, judicial order, or regulation then You must: (a) comply with
the terms of this License to the maximum extent possible; and (b)
describe the limitations and the code they affect. Such description must
be placed in a text file included with all distributions of the Covered
Software under this License. Except to the extent prohibited by statute
or regulation, such description must be sufficiently detailed for a
recipient of ordinary skill to be able to understand it.
5. Termination
--------------
5.1. The rights granted under this License will terminate automatically
if You fail to comply with any of its terms. However, if You become
compliant, then the rights granted under this License from a particular
Contributor are reinstated (a) provisionally, unless and until such
Contributor explicitly and finally terminates Your grants, and (b) on an
ongoing basis, if such Contributor fails to notify You of the
non-compliance by some reasonable means prior to 60 days after You have
come back into compliance. Moreover, Your grants from a particular
Contributor are reinstated on an ongoing basis if such Contributor
notifies You of the non-compliance by some reasonable means, this is the
first time You have received notice of non-compliance with this License
from such Contributor, and You become compliant prior to 30 days after
Your receipt of the notice.
5.2. If You initiate litigation against any entity by asserting a patent
infringement claim (excluding declaratory judgment actions,
counter-claims, and cross-claims) alleging that a Contributor Version
directly or indirectly infringes any patent, then the rights granted to
You by any and all Contributors for the Covered Software under Section
2.1 of this License shall terminate.
5.3. In the event of termination under Sections 5.1 or 5.2 above, all
end user license agreements (excluding distributors and resellers) which
have been validly granted by You or Your distributors under this License
prior to termination shall survive termination.
************************************************************************
* *
* 6. Disclaimer of Warranty *
* ------------------------- *
* *
* Covered Software is provided under this License on an "as is" *
* basis, without warranty of any kind, either expressed, implied, or *
* statutory, including, without limitation, warranties that the *
* Covered Software is free of defects, merchantable, fit for a *
* particular purpose or non-infringing. The entire risk as to the *
* quality and performance of the Covered Software is with You. *
* Should any Covered Software prove defective in any respect, You *
* (not any Contributor) assume the cost of any necessary servicing, *
* repair, or correction. This disclaimer of warranty constitutes an *
* essential part of this License. No use of any Covered Software is *
* authorized under this License except under this disclaimer. *
* *
************************************************************************
************************************************************************
* *
* 7. Limitation of Liability *
* -------------------------- *
* *
* Under no circumstances and under no legal theory, whether tort *
* (including negligence), contract, or otherwise, shall any *
* Contributor, or anyone who distributes Covered Software as *
* permitted above, be liable to You for any direct, indirect, *
* special, incidental, or consequential damages of any character *
* including, without limitation, damages for lost profits, loss of *
* goodwill, work stoppage, computer failure or malfunction, or any *
* and all other commercial damages or losses, even if such party *
* shall have been informed of the possibility of such damages. This *
* limitation of liability shall not apply to liability for death or *
* personal injury resulting from such party's negligence to the *
* extent applicable law prohibits such limitation. Some *
* jurisdictions do not allow the exclusion or limitation of *
* incidental or consequential damages, so this exclusion and *
* limitation may not apply to You. *
* *
************************************************************************
8. Litigation
-------------
Any litigation relating to this License may be brought only in the
courts of a jurisdiction where the defendant maintains its principal
place of business and such litigation shall be governed by laws of that
jurisdiction, without reference to its conflict-of-law provisions.
Nothing in this Section shall prevent a party's ability to bring
cross-claims or counter-claims.
9. Miscellaneous
----------------
This License represents the complete agreement concerning the subject
matter hereof. If any provision of this License is held to be
unenforceable, such provision shall be reformed only to the extent
necessary to make it enforceable. Any law or regulation which provides
that the language of a contract shall be construed against the drafter
shall not be used to construe this License against a Contributor.
10. Versions of the License
---------------------------
10.1. New Versions
Mozilla Foundation is the license steward. Except as provided in Section
10.3, no one other than the license steward has the right to modify or
publish new versions of this License. Each version will be given a
distinguishing version number.
10.2. Effect of New Versions
You may distribute the Covered Software under the terms of the version
of the License under which You originally received the Covered Software,
or under the terms of any subsequent version published by the license
steward.
10.3. Modified Versions
If you create software not governed by this License, and you want to
create a new license for such software, you may create and use a
modified version of this License if you rename the license and remove
any references to the name of the license steward (except to note that
such modified license differs from this License).
10.4. Distributing Source Code Form that is Incompatible With Secondary
Licenses
If You choose to distribute Source Code Form that is Incompatible With
Secondary Licenses under the terms of this version of the License, the
notice described in Exhibit B of this License must be attached.
Exhibit A - Source Code Form License Notice
-------------------------------------------
This Source Code Form is subject to the terms of the Mozilla Public
License, v. 2.0. If a copy of the MPL was not distributed with this
file, You can obtain one at http://mozilla.org/MPL/2.0/.
If it is not possible or desirable to put the notice in a particular
file, then You may include the notice in a location (such as a LICENSE
file in a relevant directory) where a recipient would be likely to look
for such a notice.
You may add additional accurate notices of copyright ownership.
Exhibit B - "Incompatible With Secondary Licenses" Notice
---------------------------------------------------------
This Source Code Form is "Incompatible With Secondary Licenses", as
defined by the Mozilla Public License, v. 2.0.

View File

@@ -0,0 +1,21 @@
# asusctl
Requires `asusd` to be installed and running.
## build and install
```
npm install
npm run build && gnome-extensions install asusctl-gnome@asus-linux.org.zip --force
npm run build && gnome-extensions enable asusctl-gnome@asus-linux.org.zip
```
You will need to restart Gnome after installing or updating
## development
```
npm run build
gnome-extensions install asusctl-gnome@asus-linux.org.zip --force
MUTTER_DEBUG_DUMMY_MODE_SPECS=1366x768 dbus-run-session -- gnome-shell --nested --wayland
```

View File

@@ -0,0 +1,67 @@
import { build } from "esbuild";
import { exec } from "child_process";
import { copyFileSync, cpSync } from "fs";
import { resolve, dirname } from "path";
import { fileURLToPath } from "url";
import AdmZip from "adm-zip";
import metadata from "./src/metadata.json" assert { type: "json" };
build({
entryPoints: ["src/extension.ts"],
outdir: "dist",
bundle: true,
// Do not remove the functions `enable()`, `disable()` and `init()`
treeShaking: false,
// firefox60 // Since GJS 1.53.90
// firefox68 // Since GJS 1.63.90
// firefox78 // Since GJS 1.65.90
// firefox91 // Since GJS 1.71.1
// firefox102 // Since GJS 1.73.2
target: "firefox102",
//platform: "neutral",
platform: "node",
// mainFields: ['main'],
// conditions: ['require', 'default'],
format: "esm",
external: ["gi://*", "resource://*", "system", "gettext", "cairo"],
}).then(() => {
const __filename = fileURLToPath(import.meta.url);
const __dirname = dirname(__filename);
const metaSrc = resolve(__dirname, "src/metadata.json");
const metaDist = resolve(__dirname, "dist/metadata.json");
const schemaSrc = resolve(__dirname, "schemas");
const schemaDist = resolve(__dirname, "dist/schemas");
const dbusXmlSrc = resolve(__dirname, "../../bindings/dbus-xml");
const dbusXmlDist = resolve(__dirname, "dist/resources/dbus");
const zipFilename = `${metadata.uuid}.zip`;
const zipDist = resolve(__dirname, zipFilename);
exec("glib-compile-schemas schemas/", (error, stdout, stderr) => {
console.log("stdout: " + stdout);
console.log("stderr: " + stderr);
});
copyFileSync(metaSrc, metaDist);
cpSync(schemaSrc, schemaDist, { recursive: true }, (err) => {
if (err) {
console.error(err);
}
});
cpSync(dbusXmlSrc, dbusXmlDist, { recursive: true }, (err) => {
if (err) {
console.error(err);
}
});
const zip = new AdmZip();
zip.addLocalFolder(resolve(__dirname, "dist"));
zip.writeZip(zipDist);
console.log(`Build complete. Zip file: ${zipFilename}\n`);
console.log(`Install with: gnome-extensions install ${zipFilename}`);
console.log(`Update with: gnome-extensions install ${zipFilename} --force`);
console.log(`Enable with: gnome-extensions enable ${metadata.uuid} --user`);
});

View File

@@ -0,0 +1,51 @@
#!/bin/bash
## Script to initialise dev-environment (types)
gv="44"
wd=${PWD}
# cleanup
rm -rf @types
# generate GJS from gir (this does not include the extensions)
echo "Generating GJS types from gir.."
npx ts-for-gir generate Shell-12 St-12 Gtk-4.0 \
-g /usr/share/gir-1.0 \
-g /usr/share/gnome-shell \
-g /usr/share/gnome-shell/gir-1.0 \
-g /usr/lib64/mutter-12 \
-t esm -o @types/Gjs
# get latest js (44) in this case and create the types for it
echo "Generating GJS Extension (Gex) types from extension source.."
mkdir -p ./_tmp/
cd ./_tmp
wget -q -O gnome-shell-js-${gv}.tar.gz https://gitlab.gnome.org/GNOME/gnome-shell/-/archive/gnome-${gv}/gnome-shell-gnome-${gv}.tar.gz?path=js
tar xf gnome-shell-js-${gv}.tar.gz
cd gnome-shell-gnome-${gv}-js
cat >tsconfig.json <<EOL
{
"include": ["js/ui/*"],
"exclude": [
"js/ui/shellDBus.js",
"node_modules",
"**/node_modules/*"
],
"compilerOptions": {
"allowJs": true,
"declaration": true,
"emitDeclarationOnly": true,
"outDir": "gex-types",
"declarationMap": true,
"lib": ["es2019"]
}
}
EOL
npx tsc
cd ${wd}
mv ./_tmp/gnome-shell-gnome-${gv}-js/gex-types @types/Gex
# rm -rf ./_tmp/
echo "done."
exit 0

File diff suppressed because it is too large Load Diff

View File

@@ -0,0 +1,55 @@
{
"name": "asusctl-gnome",
"version": "5.0.0-RC1",
"description": "asusctl-gnome a gnome extension exposing some of the base features of asusd in a helpful and easy to use way",
"type": "module",
"main": "dist/extension.js",
"scripts": {
"clear": "rm -rf dist",
"compile": "tsc --build tsconfig.json",
"build:app": "node esbuild.js",
"build": "yarn run clear && yarn run build:app",
"validate": "tsc --noEmit",
"generate:gir-types": "ts-for-gir generate",
"check:types": "tsc --build tsconfig.types.json",
"lint": "eslint .",
"format": "prettier . -w"
},
"devDependencies": {
"@girs/gnome-shell": "^45.0.0-beta2",
"@typescript-eslint/eslint-plugin": "^5.60.1",
"@typescript-eslint/parser": "^5.60.1",
"adm-zip": "^0.5.10",
"esbuild": "^0.19.5",
"eslint": "^8.51.0",
"eslint-config-prettier": "^9.0.0",
"eslint-plugin-promise": "^6.1.1",
"prettier": "^3.0.3",
"typescript": "^5.2.2"
},
"dependencies": {
"@girs/gjs": "^3.2.5",
"@girs/gobject-2.0": "^2.78.0-3.2.5",
"@girs/st-13": "^13.0.0-3.2.5"
},
"repository": {
"type": "git",
"url": "git+ssh://git@gitlab.com/asus-linux/asusctl.git"
},
"keywords": [
"gnome-shell",
"extension",
"asusctl",
"asus",
"rog",
"gnome",
"gjs",
"typescript"
],
"author": "Armas Spann, Marco Laux, Luke Jones",
"license": "MPL-2",
"bugs": {
"url": "https://gitlab.com/asus-linux/asusctl/issues"
},
"homepage": "https://gitlab.com/asus-linux/asusctl/desktop-extensions/gnome#readme"
}

View File

@@ -0,0 +1,24 @@
<?xml version="1.0" encoding="UTF-8"?>
<schemalist gettext-domain="AsusctlGnomeExtension">
<schema id="org.gnome.shell.extensions.asusctl-gnome" path="/org/gnome/shell/extensions/asusctl-gnome/" >
<key type="b" name="mini-led-enabled">
<default>false</default>
</key>
<key type="b" name="panel-od-enabled">
<default>false</default>
</key>
<key type="b" name="anime-power">
<default>false</default>
</key>
<key type="b" name="anime-builtins">
<default>false</default>
</key>
<key name="charge-level" type="u">
<range min="20" max="100"/>
<default>100</default>
</key>
<key type="s" name="primary-quickmenu-toggle">
<default>"mini-led"</default>
</key>
</schema>
</schemalist>

View File

@@ -0,0 +1 @@
../../../bindings/ts

View File

@@ -0,0 +1,127 @@
import { Extension, gettext as _ } from "@girs/gnome-shell/extensions/extension";
import * as platform from "./bindings/platform";
import { AsusQuickToggle } from "./modules/rog_quick_toggle";
import { AsusMenuToggle } from "./modules/rog_menu_toggle";
import { AsusIndicator } from "./modules/rog_indicator";
import { AsusSlider } from "./modules/rog_slider_100pc";
import { FeatureMenuToggle } from "./modules/quick_menus/laptop_features";
import { DbusBase } from "./modules/dbus_proxy";
import { main } from "@girs/gnome-shell/ui";
export const uuid = "asusctl-gnome@asus-linux.org";
export default class AsusExtension extends Extension {
// public dbus_aura: AuraDbus = new AuraDbus;
// public dbus_anime: AnimeDbus = new AnimeDbus;
public dbus_platform: DbusBase | undefined;
public dbus_anime: DbusBase | undefined;
private individual = false;
public supported_properties!: platform.Properties;
public supported_interfaces: string[] = [];
private feature_menu = null;
private panel_od = null;
private mini_led = null;
private anime_display = null;
private anime_builtins = null;
private charge_thres = null;
// private _feature: typeof FeatureMenuToggle;
async enable() {
log(this.path);
if (this.dbus_platform == undefined) {
this.dbus_platform = new DbusBase("org-asuslinux-platform-4.xml", "/org/asuslinux/Platform");
await this.dbus_platform.start();
}
if (this.dbus_anime == undefined) {
this.dbus_anime = new DbusBase("org-asuslinux-anime-4.xml", "/org/asuslinux/Anime");
await this.dbus_anime.start();
}
this.supported_interfaces = this.dbus_platform?.proxy.SupportedInterfacesSync()[0];
this.supported_properties = this.dbus_platform?.proxy.SupportedPropertiesSync()[0];
log(this.supported_interfaces);
log(this.supported_properties);
// new AsusIndicator("selection-mode-symbolic", "mini-led-enabled");
// new AsusIndicator("selection-mode-symbolic", "panel-od-enabled");
if (!this.individual) {
if (this.feature_menu == null)
this.feature_menu = new FeatureMenuToggle(this.dbus_platform, this.dbus_anime);
} else {
if (this.supported_properties.includes("PanelOd") && this.dbus_platform.proxy.PanelOd != null)
if (this.panel_od == null) {
this.panel_od = new AsusQuickToggle(
this.dbus_platform,
"PanelOd",
"panel-od-enabled",
"Panel Overdrive",
);
}
if (this.supported_properties.includes("MiniLed") && this.dbus_platform.proxy.MiniLed != null)
if (this.mini_led == null) {
this.mini_led = new AsusQuickToggle(
this.dbus_platform,
"MiniLed",
"mini-led-enabled",
"Mini-LED",
);
}
if (
this.supported_interfaces.includes("Anime") &&
this.dbus_anime.proxy.EnableDisplay != null
)
if (this.anime_display == null) {
this.anime_display = new AsusQuickToggle(
this.dbus_anime,
"EnableDisplay",
"anime-power",
"AniMe Display",
);
}
if (
this.supported_interfaces.includes("Anime") &&
this.dbus_anime.proxy.BuiltinsEnabled != null
)
if (this.anime_builtins == null) {
this.anime_builtins = new AsusQuickToggle(
this.dbus_anime,
"BuiltinsEnabled",
"anime-builtins",
"Use builtins",
);
}
}
if (
this.supported_properties.includes("ChargeControlEndThreshold") &&
this.dbus_platform.proxy.ChargeControlEndThreshold != null
)
if (this.charge_thres == null) {
this.charge_thres = new AsusSlider(
this.dbus_platform,
"ChargeControlEndThreshold",
"charge-level",
"Charge Level",
);
}
}
disable() {
this.dbus_platform?.stop();
this.dbus_anime?.stop();
this.feature_menu?.destroy();
feature_menu?.destroy();
panel_od?.destroy();
mini_led?.destroy();
anime_display?.destroy();
anime_builtins?.destroy();
charge_thres?.destroy();
}
}

View File

@@ -0,0 +1,9 @@
{
"name": "asusctl-gnome",
"description": "asusctl-gnome a gnome extension exposing some of the base features of asusd in a helpful and easy to use way",
"uuid": "asusctl-gnome@asus-linux.org",
"uuid-dev": "asusctl-gnome-dev@asus-linux.org",
"settings-schema": "org.gnome.shell.extensions.asusctl-gnome",
"version": "4.3.2",
"shell-version": ["45"]
}

View File

@@ -0,0 +1,98 @@
import { DbusBase } from "../dbus_proxy";
import {
DeviceState,
AnimBooting,
Brightness,
AnimAwake,
AnimSleeping,
AnimShutdown,
} from "../../bindings/anime";
export class AnimeDbus extends DbusBase {
deviceState: DeviceState = {
display_enabled: false,
display_brightness: Brightness.Med,
builtin_anims_enabled: false,
builtin_anims: {
boot: AnimBooting.GlitchConstruction,
awake: AnimAwake.BinaryBannerScroll,
sleep: AnimSleeping.BannerSwipe,
shutdown: AnimShutdown.GlitchOut,
},
off_when_unplugged: false,
off_when_suspended: false,
off_when_lid_closed: false,
};
// TODO: interface or something to enforce requirement of "sync()" method
public notifyAnimeStateSubscribers: any[] = [];
constructor() {
super("org-asuslinux-anime-4", "/org/asuslinux/Anime");
}
_parseData(data: any) {
if (data.length > 0) {
this.deviceState.display_enabled = data[0];
this.deviceState.display_brightness = Brightness[data[1] as Brightness];
this.deviceState.builtin_anims_enabled = data[2];
this.deviceState.builtin_anims.boot = AnimBooting[data[3][0] as AnimBooting];
this.deviceState.builtin_anims.awake = AnimAwake[data[3][1] as AnimAwake];
this.deviceState.builtin_anims.sleep = AnimSleeping[data[3][2] as AnimSleeping];
this.deviceState.builtin_anims.shutdown = AnimShutdown[data[3][3] as AnimShutdown];
this.deviceState.off_when_unplugged = data[4];
this.deviceState.off_when_suspended = data[5];
this.deviceState.off_when_lid_closed = data[6];
}
}
public getDeviceState() {
if (this.isRunning()) {
try {
// janky shit going on with DeviceStateSync
this._parseData(this.dbus_proxy.DeviceStateSync());
//@ts-ignore
log("Anime Matrix: display_enabled: " + this.deviceState.display_enabled);
//@ts-ignore
log("Anime Matrix: display_brightness: " + this.deviceState.display_brightness);
//@ts-ignore
log("Anime Matrix: builtin_anims_enabled: " + this.deviceState.builtin_anims_enabled);
//@ts-ignore
log("Anime Matrix: builtin_anims: " + this.deviceState.builtin_anims);
//@ts-ignore
log("Anime Matrix: off_when_unplugged: " + this.deviceState.off_when_unplugged);
//@ts-ignore
log("Anime Matrix: off_when_suspended: " + this.deviceState.off_when_suspended);
//@ts-ignore
log("Anime Matrix: off_when_lid_closed: " + this.deviceState.off_when_lid_closed);
} catch (e) {
//@ts-ignore
log("Failed to fetch DeviceState!", e);
}
}
return this.deviceState;
}
async start() {
await super.start();
this.getDeviceState();
this.dbus_proxy.connectSignal(
"NotifyDeviceState",
// eslint-disable-next-line @typescript-eslint/no-explicit-any
(proxy: any = null, name: string, data: string) => {
if (proxy) {
// idiot xml parsing mneans the get is not nested while this is
this._parseData(data[0]);
this.notifyAnimeStateSubscribers.forEach((sub) => {
sub.sync();
});
}
},
);
}
async stop() {
await super.stop();
}
}

View File

@@ -0,0 +1,300 @@
import {
AuraDevRog1,
AuraDevTuf,
AuraDevice,
AuraEffect,
AuraModeNum,
AuraPower,
AuraPowerDev,
AuraZone,
Direction,
PowerZones,
Speed,
} from "../../bindings/aura";
import { DbusBase } from "./base";
export class AuraDbus extends DbusBase {
public device: AuraDevice = AuraDevice.Unknown;
public current_aura_mode: AuraModeNum = AuraModeNum.Static;
public aura_modes: Map<AuraModeNum, AuraEffect> = new Map();
public leds_powered: AuraPowerDev = {
tuf: [],
old_rog: [],
rog: {
keyboard: {
zone: PowerZones.Keyboard,
boot: false,
awake: false,
sleep: false,
shutdown: false,
},
logo: {
zone: PowerZones.Logo,
boot: false,
awake: false,
sleep: false,
shutdown: false,
},
lightbar: {
zone: PowerZones.Lightbar,
boot: false,
awake: false,
sleep: false,
shutdown: false,
},
lid: {
zone: PowerZones.Lid,
boot: false,
awake: false,
sleep: false,
shutdown: false,
},
rear_glow: {
zone: PowerZones.RearGlow,
boot: false,
awake: false,
sleep: false,
shutdown: false,
},
},
};
// TODO: interface or something to enforce requirement of "sync()" method
public notifyAuraModeSubscribers: any[] = [];
public notifyAuraPowerSubscribers: any[] = [];
constructor() {
super("org-asuslinux-aura-4", "/org/asuslinux/Aura");
}
public getDevice() {
if (this.isRunning()) {
try {
this.device = AuraDevice[this.dbus_proxy.DeviceTypeSync() as AuraDevice];
//@ts-ignore
log("LED device: " + this.device);
} catch (e) {
//@ts-ignore
log("Failed to fetch supported functionalities", e);
}
}
}
_parsePowerStates(data: any[]) {
const power: AuraPowerDev = this.leds_powered;
power.tuf = data[0].map((value: string) => {
return AuraDevTuf[value as AuraDevTuf];
});
power.old_rog = data[1].map((value: string) => {
return AuraDevRog1[value as AuraDevRog1];
});
power.rog = {
keyboard: {
zone: PowerZones[data[2][0][0] as PowerZones],
boot: data[2][0][1],
awake: data[2][0][2],
sleep: data[2][0][3],
shutdown: data[2][0][4],
},
logo: {
zone: PowerZones[data[2][1][0] as PowerZones],
boot: data[2][1][1],
awake: data[2][1][2],
sleep: data[2][1][3],
shutdown: data[2][1][4],
},
lightbar: {
zone: PowerZones[data[2][2][0] as PowerZones],
boot: data[2][2][1],
awake: data[2][2][2],
sleep: data[2][2][3],
shutdown: data[2][2][4],
},
lid: {
zone: PowerZones[data[2][3][0] as PowerZones],
boot: data[2][3][1],
awake: data[2][3][2],
sleep: data[2][3][3],
shutdown: data[2][3][4],
},
rear_glow: {
zone: PowerZones[data[2][4][0] as PowerZones],
boot: data[2][4][1],
awake: data[2][4][2],
sleep: data[2][4][3],
shutdown: data[2][4][4],
},
};
return power;
}
public getLedPower() {
if (this.isRunning()) {
try {
const data = this.dbus_proxy.LedPowerSync();
this.leds_powered = this._parsePowerStates(data);
//@ts-ignore
log("LED power tuf: " + this.leds_powered.tuf);
//@ts-ignore
log("LED power x1866: " + this.leds_powered.old_rog);
//@ts-ignore
log("LED power x19b6: " + this.leds_powered.rog);
} catch (e) {
//@ts-ignore
log("Failed to fetch supported functionalities", e);
}
}
}
public getLedMode() {
if (this.isRunning()) {
try {
this.current_aura_mode = AuraModeNum[this.dbus_proxy.LedModeSync() as AuraModeNum];
//@ts-ignore
log("Current LED mode:", this.current_aura_mode);
} catch (e) {
//@ts-ignore
log("Failed to fetch supported functionalities", e);
}
}
}
public setLedMode(mode: AuraEffect) {
if (this.isRunning()) {
try {
this.dbus_proxy.SetLedModeSync([
mode.mode,
mode.zone,
[mode.colour1.r, mode.colour1.g, mode.colour1.b],
[mode.colour2.r, mode.colour2.g, mode.colour2.b],
mode.speed,
mode.direction,
]);
} catch (e) {
//@ts-ignore
log("Failed to fetch supported functionalities", e);
}
}
}
_parseAuraEffect(data: any[]) {
const aura: AuraEffect = {
mode: AuraModeNum[data[0] as AuraModeNum],
zone: AuraZone[data[1] as AuraZone],
colour1: {
r: parseInt(data[2][0]),
g: parseInt(data[2][1]),
b: parseInt(data[2][2]),
},
colour2: {
r: parseInt(data[3][0]),
g: parseInt(data[3][1]),
b: parseInt(data[3][2]),
},
speed: Speed[data[4] as Speed],
direction: Direction[data[5] as Direction],
};
return aura;
}
// Return a list of the available modes, and the current settings for each
public getLedModes() {
// {'Breathe': ('Breathe', 'None', (166, 0, 0), (0, 0, 0), 'Med', 'Right'),
// 'Comet': ('Comet', 'None', (166, 0, 0), (0, 0, 0), 'Med', 'Right'),
// 'Static': ('Static', 'None', (78, 0, 0), (0, 0, 0), 'Med', 'Right'),
// 'Strobe': ('Strobe', 'None', (166, 0, 0), (0, 0, 0), 'Med', 'Right')}
if (this.isRunning()) {
try {
const _data = this.dbus_proxy.LedModesSync();
for (const key in _data[0]) {
const data = _data[0][key];
const aura: AuraEffect = this._parseAuraEffect(data);
this.aura_modes.set(AuraModeNum[key as AuraModeNum], aura);
}
for (const [key, value] of this.aura_modes) {
//@ts-ignore
log(key, value.zone, value.colour1.r, value.speed, value.direction);
}
} catch (e) {
//@ts-ignore
log("Failed to fetch supported functionalities", e);
}
}
}
async start() {
try {
await super.start();
this.getDevice();
this.getLedPower();
this.getLedMode();
this.getLedModes();
//@ts-ignore
log("Current LED mode data:", this.aura_modes.get(this.current_aura_mode)?.speed);
this.dbus_proxy.connectSignal("NotifyLed", (proxy: any = null, name: string, data: any) => {
if (proxy) {
const aura: AuraEffect = this._parseAuraEffect(data[0]);
this.current_aura_mode = aura.mode;
this.aura_modes.set(aura.mode, aura);
//@ts-ignore
log(
"LED data has changed to ",
aura.mode,
aura.zone,
aura.colour1.r,
aura.speed,
aura.direction,
);
this.notifyAuraModeSubscribers.forEach((sub) => {
sub.sync();
});
}
});
this.dbus_proxy.connectSignal(
"NotifyPowerStates",
(proxy: any = null, name: string, data: any) => {
if (proxy) {
const power: AuraPowerDev = this._parsePowerStates(data[0]);
this.leds_powered = power;
switch (this.device) {
case AuraDevice.Tuf:
//@ts-ignore
log("LED power has changed to ", this.leds_powered.tuf);
break;
case AuraDevice.X1854:
case AuraDevice.X1869:
case AuraDevice.X18c6:
//@ts-ignore
log("LED power has changed to ", this.leds_powered.old_rog);
break;
case AuraDevice.X19b6:
case AuraDevice.X1a30:
//@ts-ignore
log("LED power has changed to ", this.leds_powered.rog);
break;
default:
break;
}
//@ts-ignore
log("LED power has changed to ", this.leds_powered.rog);
this.notifyAuraPowerSubscribers.forEach((sub) => {
sub.sync();
});
}
},
);
} catch (e) {
//@ts-ignore
log("Supported DBus initialization failed!", e);
}
}
async stop() {
await super.stop();
}
}

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import { Extension, gettext as _ } from "@girs/gnome-shell/extensions/extension";
import { Gio } from "@girs/gio-2.0";
import { GLib } from "@girs/glib-2.0";
import { imports } from "@girs/gjs";
// Reads the contents of a file contained in the global resources archive. The data
// is returned as a string.
export function getStringResource(path: string | null) {
const data = Gio.resources_lookup_data(path, 0);
return new TextDecoder().decode(data.get_data()?.buffer);
}
export class DbusBase {
proxy!: Gio.DBusProxy;
connected = false;
ifaceXml = "";
dbus_path = "";
constructor(file_name: string, dbus_path: string) {
let extensionObject = Extension.lookupByUUID("asusctl-gnome@asus-linux.org");
const path = extensionObject?.path + "/resources/dbus/" + file_name;
const [ok, data] = GLib.file_get_contents(path);
if (!ok) {
throw new Error("could not read interface file");
}
this.ifaceXml = imports.byteArray.toString(data);
this.dbus_path = dbus_path;
}
async start() {
//@ts-ignore
log(`Starting ${this.dbus_path} dbus module`);
try {
log(this.ifaceXml);
this.proxy = Gio.DBusProxy.makeProxyWrapper(this.ifaceXml)(
Gio.DBus.system,
"org.asuslinux.Daemon",
this.dbus_path,
);
this.connected = true;
//@ts-ignore
log(`${this.dbus_path} client started successfully.`);
} catch (e) {
//@ts-ignore
logError(`${this.xml_resource} dbus init failed!`, e);
}
}
async stop() {
//@ts-ignore
log(`Stopping ${this.xml_resource} dbus module`);
if (this.connected && this.proxy != undefined) {
this.proxy.run_dispose();
this.proxy = undefined;
this.connected = false;
}
}
isRunning(): boolean {
return this.connected;
}
}

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import * as Main from "resource:///org/gnome/shell/ui/main.js";
import { QuickToggle } from "resource:///org/gnome/shell/ui/quickSettings.js";
export function addQuickSettingsItems(items: [typeof QuickToggle], width = 1) {
const QuickSettingsMenu = Main.panel.statusArea.quickSettings;
items.forEach((item) => QuickSettingsMenu.menu.addItem(item, width));
// Ensure the tile(s) are above the background apps menu
for (const item of items) {
QuickSettingsMenu.menu._grid.set_child_below_sibling(
item,
QuickSettingsMenu._backgroundApps.quickSettingsItems[0],
);
}
}

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import { addQuickSettingsItems } from "../helpers";
import { AuraDbus } from "../dbus/aura";
import { AuraEffect, AuraModeNum } from "../../bindings/aura";
import GObject from "gi://GObject";
import * as PopupMenu from "resource:///org/gnome/shell/ui/popupMenu.js";
import * as QuickSettings from "resource:///org/gnome/shell/ui/quickSettings.js";
export const AuraMenuToggle = GObject.registerClass(
class AuraMenuToggle extends QuickSettings.QuickMenuToggle {
private _dbus_aura: AuraDbus;
private _last_mode: AuraModeNum = AuraModeNum.Static;
constructor(dbus_aura: AuraDbus) {
super({
title: "Aura Modes",
iconName: "selection-mode-symbolic",
toggleMode: true,
});
this._dbus_aura = dbus_aura;
this.connectObject(this);
this.menu.setHeader("selection-mode-symbolic", this._dbus_aura.current_aura_mode);
this._itemsSection = new PopupMenu.PopupMenuSection();
this._dbus_aura.aura_modes.forEach((mode, key) => {
this._itemsSection.addAction(
key,
() => {
this._dbus_aura.setLedMode(mode);
this.sync();
},
"",
);
});
this.menu.addMenuItem(this._itemsSection);
// Add an entry-point for more settings
// this.menu.addMenuItem(new PopupMenu.PopupSeparatorMenuItem());
// const settingsItem = this.menu.addAction("More Settings",
// () => ExtensionUtils.openPrefs());
// // Ensure the settings are unavailable when the screen is locked
// settingsItem.visible = Main.sessionMode.allowSettings;
// this.menu._settingsActions[Me.uuid] = settingsItem;
this.connectObject(
"clicked",
() => {
let mode: AuraEffect | undefined;
if (this._dbus_aura.current_aura_mode == AuraModeNum.Static) {
mode = this._dbus_aura.aura_modes.get(this._last_mode);
} else {
mode = this._dbus_aura.aura_modes.get(AuraModeNum.Static);
}
if (mode != undefined) {
this._dbus_aura.setLedMode(mode);
this.sync();
}
},
this,
);
this._dbus_aura.notifyAuraModeSubscribers.push(this);
this.sync();
addQuickSettingsItems([this]);
}
sync() {
const checked = this._dbus_aura.current_aura_mode != AuraModeNum.Static;
this.title = this._dbus_aura.current_aura_mode;
if (
this._last_mode != this._dbus_aura.current_aura_mode &&
this._dbus_aura.current_aura_mode != AuraModeNum.Static
) {
this._last_mode = this._dbus_aura.current_aura_mode;
}
if (this.checked !== checked) this.set({ checked });
}
},
);

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import { Extension, gettext as _ } from "@girs/gnome-shell/extensions/extension";
import { quickSettings, popupMenu } from "@girs/gnome-shell/ui";
import { GObject } from "@girs/gobject-2.0";
import { DbusBase } from "../../modules/dbus_proxy";
import { addQuickSettingsItems } from "../helpers";
import * as AsusExtension from "../../extension";
import * as platform from "../../bindings/platform";
import { uuid } from "../../extension";
import { AsusMenuToggle } from "../rog_menu_toggle";
export const FeatureMenuToggle = GObject.registerClass(
class FeatureMenuToggle extends quickSettings.QuickMenuToggle {
private dbus_platform: DbusBase;
private dbus_anime: DbusBase;
private last_selection = "mini-led";
private supported_properties!: platform.Properties;
private supported_interfaces: string[] = [];
private miniLed?: typeof AsusMenuToggle;
private panelOd?: typeof AsusMenuToggle;
private animeDisplayPower?: typeof AsusMenuToggle;
private animePowersaveAnim?: typeof AsusMenuToggle;
_itemsSection: popupMenu.PopupMenuSection;
constructor(dbus_platform: DbusBase, dbus_anime: DbusBase) {
super({
label: "Laptop",
toggle_mode: true,
icon_name: "selection-mode-symbolic",
});
this.label = "Laptop";
this.title = "Laptop";
this.dbus_platform = dbus_platform;
this.dbus_anime = dbus_anime;
this.menu.setHeader("selection-mode-symbolic", "Laptop features");
this.last_selection = Extension.lookupByUUID(AsusExtension.uuid)
?.getSettings()
.get_string("primary-quickmenu-toggle")!;
this.supported_interfaces = this.dbus_platform?.proxy.SupportedInterfacesSync()[0];
this.supported_properties = this.dbus_platform?.proxy.SupportedPropertiesSync()[0];
// TODO: temporary block
if (this.last_selection == "mini-led" && !this.supported_properties.includes("MiniLed")) {
this.last_selection = "panel-od";
} else if (
this.last_selection == "panel-od" &&
!this.supported_properties.includes("PanelOd")
) {
this.last_selection = "anime-power";
} else if (
this.last_selection == "anime-power" &&
!this.supported_interfaces.includes("Anime")
) {
this.last_selection = "mini-led";
} else if (this.last_selection.length == 0) {
this.last_selection = "panel-od";
}
// AsusExtension.extension._settings.connect('changed::primary-quickmenu-toggle', this.sync);
Extension.lookupByUUID(uuid)
?.getSettings()
.set_string("primary-quickmenu-toggle", this.last_selection);
this._itemsSection = new popupMenu.PopupMenuSection();
if (this.supported_properties.includes("MiniLed")) {
if (this.miniLed == null) {
this.miniLed = new AsusMenuToggle(
this.dbus_platform,
"MiniLed",
"mini-led-enabled",
"Mini-LED Enabled",
);
this._itemsSection.addMenuItem(this.miniLed, 0);
this.miniLed.toggle_callback = () => {
this.last_selection = "mini-led";
};
}
}
if (this.supported_properties.includes("PanelOd")) {
if (this.panelOd == null) {
this.panelOd = new AsusMenuToggle(
this.dbus_platform,
"PanelOd",
"panel-od-enabled",
"Panel Overdrive Enabled",
);
this._itemsSection.addMenuItem(this.panelOd, 1);
this.panelOd.toggle_callback = () => {
this.last_selection = "panel-od";
};
}
}
if (this.supported_interfaces.includes("Anime")) {
if (this.animeDisplayPower == null) {
this.animeDisplayPower = new AsusMenuToggle(
this.dbus_anime,
"EnableDisplay",
"anime-power",
"AniMe Display Enabled",
);
this._itemsSection.addMenuItem(this.animeDisplayPower, 2);
this.animeDisplayPower.toggle_callback = () => {
this.last_selection = "anime-power";
};
}
if (this.animePowersaveAnim == null) {
this.animePowersaveAnim = new AsusMenuToggle(
this.dbus_anime,
"BuiltinsEnabled",
"anime-builtins",
"AniMe Built-in Animations",
);
this._itemsSection.addMenuItem(this.animePowersaveAnim, 3);
this.animePowersaveAnim.toggle_callback = () => {
this.last_selection = "anime-builtins";
};
}
}
this.connectObject(
"clicked",
() => {
this._toggle();
},
this,
);
this.menu.addMenuItem(this._itemsSection, 0);
this.dbus_platform?.proxy.connect("g-properties-changed", (_proxy, changed, invalidated) => {
//const properties = changed.deepUnpack();
this.sync();
});
this.dbus_anime?.proxy.connect("g-properties-changed", (_proxy, changed, invalidated) => {
//const properties = changed.deepUnpack();
this.sync();
});
// // Add an entry-point for more extension._settings
// this.menu.addMenuItem(new PopupMenu.PopupSeparatorMenuItem());
// const settingsItem = this.menu.addAction("More Settings",
// () => ExtensionUtils.openPrefs());
// // Ensure the extension._settings are unavailable when the screen is locked
// settingsItem.visible = Main.sessionMode.allowSettings;
// this.menu._settingsActions[Me.uuid] = settingsItem;
this.sync();
addQuickSettingsItems([this]);
}
_toggle() {
if (this.last_selection == "mini-led" && this.miniLed != null) {
if (this.checked !== this.dbus_platform.proxy.MiniLed)
this.dbus_platform.proxy.MiniLed = this.checked;
}
if (this.last_selection == "panel-od" && this.panelOd != null) {
if (this.checked !== this.dbus_platform.proxy.PanelOd) {
this.dbus_platform.proxy.PanelOd = this.checked;
}
}
if (this.last_selection == "anime-power" && this.animeDisplayPower != null) {
if (this.checked !== this.dbus_anime.proxy.EnableDisplay)
this.dbus_anime.proxy.EnableDisplay = this.checked;
}
if (this.last_selection == "anime-builtins" && this.animePowersaveAnim != null) {
if (this.checked !== this.dbus_anime.proxy.BuiltinsEnabled)
this.dbus_anime.proxy.BuiltinsEnabled = this.checked;
}
}
sync() {
let checked = false;
if (this.last_selection == "mini-led" && this.miniLed != null) {
this.title = this.miniLed.title;
checked = this.dbus_platform.proxy.MiniLed;
}
if (this.last_selection == "panel-od" && this.panelOd != null) {
this.title = this.panelOd.title;
checked = this.dbus_platform.proxy.PanelOd;
}
if (this.last_selection == "anime-power" && this.animeDisplayPower != null) {
this.title = this.animeDisplayPower.title;
checked = this.dbus_anime.proxy.EnableDisplay;
}
if (this.last_selection == "anime-builtins" && this.animePowersaveAnim != null) {
this.title = this.animePowersaveAnim.title;
checked = this.dbus_anime.proxy.BuiltinsEnabled;
}
// if (this.animePowersaveAnim != null) {
// }
if (this.checked !== checked) this.set({ checked });
}
destroy() {
// this.panelOd?.destroy();
}
},
);

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import { Extension, gettext as _ } from "@girs/gnome-shell/extensions/extension";
import { quickSettings, main } from "@girs/gnome-shell/ui";
import { Gio } from "@girs/gio-2.0";
import { GObject } from "@girs/gobject-2.0";
import { uuid } from "../extension";
//import { DbusBase } from '../dbus_proxy';
export const AsusIndicator = GObject.registerClass(
class AsusIndicator extends quickSettings.SystemIndicator {
private _indicator: any;
private _settings: Gio.Settings | undefined;
constructor(icon_name: string, setting_name: string) {
super();
// Create an icon for the indicator
this._indicator = this._addIndicator();
this._indicator.icon_name = icon_name;
// Showing an indicator when the feature is enabled
this._settings = Extension.lookupByUUID(uuid)?.getSettings();
this._settings?.bind(setting_name, this._indicator, "visible", Gio.SettingsBindFlags.DEFAULT);
main.panel.statusArea.quickSettings.addExternalIndicator(this);
}
},
);

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import { popupMenu } from "@girs/gnome-shell/ui";
import { GObject } from "@girs/gobject-2.0";
import { DbusBase } from "./dbus_proxy";
export const AsusMenuToggle = GObject.registerClass(
class AsusMenuToggle extends popupMenu.PopupSwitchMenuItem {
public title: string = "";
dbus!: DbusBase;
prop_name: string = "";
public toggle_callback = () => {};
constructor(dbus: DbusBase, prop_name: string, setting: string, title: string) {
super(title, true);
this.prop_name = prop_name;
this.dbus = dbus;
this.title = title;
this.dbus?.proxy.connect("g-properties-changed", (_proxy, changed, invalidated) => {
const properties = changed.deepUnpack();
// .find() fails on some shit for some reason
for (const v of Object.entries(properties)) {
if (v[0] == this.prop_name) {
this.sync();
break;
}
}
});
this.connectObject("toggled", () => this._toggleMode(), this);
this.connect("destroy", () => {
this.destroy();
});
this.sync();
}
_toggleMode() {
// hacky shit, index to get base object property and set it
const state = this.dbus.proxy[this.prop_name];
if (this.state !== state) this.dbus.proxy[this.prop_name] = this.state;
this.toggle_callback();
}
sync() {
const state = this.dbus.proxy[this.prop_name];
if (this.state !== state) this.setToggleState(state);
}
},
);

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import { Extension, gettext as _ } from "@girs/gnome-shell/extensions/extension";
import { addQuickSettingsItems } from "./helpers";
import { quickSettings } from "@girs/gnome-shell/ui";
import { Gio } from "@girs/gio-2.0";
import { GObject } from "@girs/gobject-2.0";
import { uuid } from "../extension";
import { DbusBase } from "./dbus_proxy";
export const AsusQuickToggle = GObject.registerClass(
class AsusQuickToggle extends quickSettings.QuickToggle {
dbus!: DbusBase;
prop_name: string = "";
public toggle_callback = () => {};
constructor(dbus: DbusBase, prop_name: string, setting: string, title: string) {
super({
label: title,
icon_name: "selection-mode-symbolic",
toggle_mode: true,
});
this.prop_name = prop_name;
this.label = title;
this.dbus = dbus;
this.dbus?.proxy.connect("g-properties-changed", (_proxy, changed, invalidated) => {
const properties = changed.deepUnpack();
// .find() fails on some shit for some reason
for (const v of Object.entries(properties)) {
if (v[0] == this.prop_name) {
const checked = v[1].unpack();
if (this.checked !== checked) this.checked = checked;
break;
}
}
});
this.connectObject("clicked", () => this._toggleMode(), this);
this.connect("destroy", () => {
this.destroy();
});
Extension.lookupByUUID(uuid)
?.getSettings()
.bind(setting, this, "checked", Gio.SettingsBindFlags.DEFAULT);
this.sync();
addQuickSettingsItems([this]);
}
_toggleMode() {
// hacky shit, index to get base object property and set it
const checked = this.dbus.proxy[this.prop_name];
if (this.checked !== checked) this.dbus.proxy[this.prop_name] = this.checked;
this.toggle_callback();
}
sync() {
const checked = this.dbus.proxy[this.prop_name];
if (this.checked !== checked) this.set({ checked });
}
},
);

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import { Extension, gettext as _ } from "@girs/gnome-shell/extensions/extension";
import { addQuickSettingsItems } from "./helpers";
import { quickSettings } from "@girs/gnome-shell/ui";
import { Gio } from "@girs/gio-2.0";
import { GObject } from "@girs/gobject-2.0";
import { uuid } from "../extension";
import { DbusBase } from "./dbus_proxy";
export const AsusSlider = GObject.registerClass(
class AsusSlider extends quickSettings.QuickSlider {
private dbus: DbusBase;
private settings: any = undefined;
private setting = "";
private prop_name = "";
constructor(dbus: DbusBase, prop_name: string, setting: string, title: string) {
super({
label: title,
icon_name: "selection-mode-symbolic",
});
this.label = title;
this.dbus = dbus;
this.setting = setting;
this.prop_name = prop_name;
this.settings = Extension.lookupByUUID(uuid)?.getSettings();
this._sliderChangedId = this.slider.connect("drag-end", this._onSliderChanged.bind(this));
// Binding the slider to a GSettings key
this.settings.connect(`changed::${this.setting}`, this._onSettingsChanged.bind(this));
// Set an accessible name for the slider
this.slider.accessible_name = title;
this.dbus?.proxy.connect("g-properties-changed", (_proxy, changed, invalidated) => {
const properties = changed.deepUnpack();
// .find() fails on some shit for some reason
for (const v of Object.entries(properties)) {
if (v[0] == this.prop_name) {
const checked = v[1].unpack();
this._sync();
break;
}
}
});
this._sync();
this._onSettingsChanged();
addQuickSettingsItems([this], 2);
}
_onSettingsChanged() {
// Prevent the slider from emitting a change signal while being updated
this.slider.block_signal_handler(this._sliderChangedId);
this.slider.value = this.settings.get_uint(this.setting) / 100.0;
this.slider.unblock_signal_handler(this._sliderChangedId);
}
_onSliderChanged() {
// Assuming our GSettings holds values between 0..100, adjust for the
// slider taking values between 0..1
const percent = Math.floor(this.slider.value * 100);
const stored = Math.floor(this.settings.get_uint(this.setting) / 100.0);
if (this.slider.value !== stored) this.dbus.proxy[this.prop_name] = percent;
this.settings.set_uint(this.setting, percent);
}
_sync() {
const value = this.dbus.proxy[this.prop_name];
if (this.slider.value !== value / 100) this.settings.set_uint(this.setting, value);
}
},
);

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{
// "extends": "@tsconfig/strictest/tsconfig.json",
"compilerOptions": {
"lib": ["ESNext"],
"types": [],
"target": "ESNext",
"module": "ESNext",
"moduleResolution": "Bundler",
"declaration": true,
"removeComments": true,
"strict": true,
"allowJs": true,
"paths": {},
"skipLibCheck": true
},
"files": ["./src/extension.ts"],
"include": ["src/*.ts"],
"exclude": [".ts-for-girrc.js", ".eslintrc.cjs"]
}

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128
distro-packaging/asusctl.spec Executable file
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@@ -0,0 +1,128 @@
#
# spec file for package asus-nb-ctrl
#
# Copyright (c) 2020-2021 Luke Jones <luke@ljones.dev>
#
# All modifications and additions to the file contributed by third parties
# remain the property of their copyright owners, unless otherwise agreed
# upon. The license for this file, and modifications and additions to the
# file, is the same license as for the pristine package itself (unless the
# license for the pristine package is not an Open Source License, in which
# case the license is the MIT License). An "Open Source License" is a
# license that conforms to the Open Source Definition (Version 1.9)
# published by the Open Source Initiative.
# This Source Code Form is subject to the terms of the Mozilla Public
# License, v. 2.0. If a copy of the MPL was not distributed with this
# file, You can obtain one at https://mozilla.org/MPL/2.0/.
%if %{defined fedora}
%global debug_package %{nil}
%endif
%global rpm_dkms_opt 1
# Use hardening ldflags.
%global rustflags -Clink-arg=-Wl,-z,relro,-z,now
Name: asusctl
Version: 4.7.0
Release: 2
Summary: Control fan speeds, LEDs, graphics modes, and charge levels for ASUS notebooks
License: MPLv2
Group: System Environment/Kernel
URL: https://gitlab.com/asus-linux/asusctl
Source: %{name}-%{version}.tar.gz
Source1: vendor-%{name}-%{version}.tar.gz
Source2: cargo_config
BuildRequires: cargo
BuildRequires: rust-packaging
BuildRequires: systemd-rpm-macros
BuildRequires: clang-devel
BuildRequires: cmake
BuildRequires: rust
BuildRequires: rust-std-static
BuildRequires: pkgconfig(dbus-1)
BuildRequires: pkgconfig(libudev)
BuildRequires: pkgconfig(gtk+-3.0)
BuildRequires: pkgconfig(gdk-3.0)
BuildRequires: desktop-file-utils
Requires: libappindicator-gtk3
%description
asus-nb-ctrl is a utility for Linux to control many aspects of various
ASUS laptops but can also be used with non-Asus laptops with reduced features.
It provides an interface for rootless control of some system functions such as
fan speeds, keyboard LEDs, battery charge level, and graphics modes.
asus-nb-ctrl enables third-party apps to use the above with dbus methods.
%package rog-gui
Summary: An experimental GUI for %{name}
%description rog-gui
A one-stop-shop GUI tool for asusd/asusctl. It aims to provide most controls,
a notification service, and ability to run in the background.
%prep
%autosetup
%setup -D -T -a 1 -c -n %{name}-%{version}/vendor
cd ..
mv Cargo.lock{,.bak}
%cargo_prep
mv Cargo.lock{.bak,}
sed -i 's|replace-with = "local-registry"|replace-with = "vendored-sources"|' .cargo/config
cat %{SOURCE2} >> .cargo/config
%build
export RUSTFLAGS="%{rustflags}"
%cargo_build
#cargo build --release --frozen --offline --config .cargo/config.toml
%install
export RUSTFLAGS="%{rustflags}"
mkdir -p "%{buildroot}/%{_bindir}" "%{buildroot}%{_docdir}"
%make_install
install -D -m 0644 README.md %{buildroot}/%{_docdir}/%{name}/README.md
install -D -m 0644 rog-anime/README.md %{buildroot}/%{_docdir}/%{name}/README-anime.md
install -D -m 0644 rog-anime/data/diagonal-template.png %{buildroot}/%{_docdir}/%{name}/diagonal-template.png
desktop-file-validate %{buildroot}/%{_datadir}/applications/rog-control-center.desktop
%files
%license LICENSE
%{_bindir}/asusd
%{_bindir}/asusd-user
%{_bindir}/asusctl
%{_unitdir}/asusd.service
%{_userunitdir}/asusd-user.service
%{_udevrulesdir}/99-asusd.rules
#%dir %{_sysconfdir}/asusd/
%{_datadir}/asusd/aura_support.ron
%{_datadir}/dbus-1/system.d/asusd.conf
%{_datadir}/icons/hicolor/512x512/apps/asus_notif_yellow.png
%{_datadir}/icons/hicolor/512x512/apps/asus_notif_green.png
%{_datadir}/icons/hicolor/512x512/apps/asus_notif_red.png
%{_datadir}/icons/hicolor/512x512/apps/asus_notif_blue.png
%{_datadir}/icons/hicolor/512x512/apps/asus_notif_orange.png
%{_datadir}/icons/hicolor/512x512/apps/asus_notif_white.png
%{_datadir}/icons/hicolor/scalable/status/gpu-compute.svg
%{_datadir}/icons/hicolor/scalable/status/gpu-hybrid.svg
%{_datadir}/icons/hicolor/scalable/status/gpu-integrated.svg
%{_datadir}/icons/hicolor/scalable/status/gpu-nvidia.svg
%{_datadir}/icons/hicolor/scalable/status/gpu-vfio.svg
%{_datadir}/icons/hicolor/scalable/status/notification-reboot.svg
%{_docdir}/%{name}/
%{_datadir}/asusd/
%files rog-gui
%{_bindir}/rog-control-center
%{_datadir}/applications/rog-control-center.desktop
%{_datadir}/icons/hicolor/512x512/apps/rog-control-center.png
%{_datadir}/rog-gui
%changelog

8
dmi-id/Cargo.toml Normal file
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[package]
name = "dmi_id"
edition = "2021"
version.workspace = true
[dependencies]
log.workspace = true
udev.workspace = true

113
dmi-id/src/lib.rs Normal file
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@@ -0,0 +1,113 @@
use log::{info, warn};
#[derive(Debug, Default, PartialEq, Eq, PartialOrd, Clone)]
pub struct DMIID {
pub id_model: String,
pub dmi_family: String,
pub dmi_vendor: String,
pub board_name: String,
pub board_vendor: String,
pub bios_date: String,
pub bios_release: String,
pub bios_vendor: String,
pub bios_version: String,
pub product_family: String,
pub product_name: String,
}
impl DMIID {
pub fn new() -> Result<Self, String> {
let mut enumerator = udev::Enumerator::new().map_err(|err| {
warn!("{}", err);
format!("dmi enumerator failed: {err}")
})?;
enumerator.match_subsystem("dmi").map_err(|err| {
warn!("{}", err);
format!("dmi match_subsystem failed: {err}")
})?;
let mut result = enumerator.scan_devices().map_err(|err| {
warn!("{}", err);
format!("dmi scan_devices failed: {err}")
})?;
if let Some(device) = (result).next() {
info!("Found dmi ID info at {:?}", device.sysname());
return Ok(Self {
id_model: device
.property_value("ID_MODEL")
.map(|s| s.to_string_lossy().to_string())
.unwrap_or("Unknown".to_string()),
dmi_family: device
.property_value("DMI_FAMILY")
.map(|s| s.to_string_lossy().to_string())
.unwrap_or("Unknown".to_string()),
dmi_vendor: device
.property_value("DMI_VENDOR")
.map(|s| s.to_string_lossy().to_string())
.unwrap_or("Unknown".to_string()),
board_name: device
.attribute_value("board_name")
.map(|s| s.to_string_lossy().to_string())
.unwrap_or("Unknown".to_string()),
board_vendor: device
.attribute_value("board_vendor")
.map(|s| s.to_string_lossy().to_string())
.unwrap_or("Unknown".to_string()),
bios_date: device
.attribute_value("bios_date")
.map(|s| s.to_string_lossy().to_string())
.unwrap_or("Unknown".to_string()),
bios_release: device
.attribute_value("bios_release")
.map(|s| s.to_string_lossy().to_string())
.unwrap_or("Unknown".to_string()),
bios_vendor: device
.attribute_value("bios_vendor")
.map(|s| s.to_string_lossy().to_string())
.unwrap_or("Unknown".to_string()),
bios_version: device
.attribute_value("bios_version")
.map(|s| s.to_string_lossy().to_string())
.unwrap_or("Unknown".to_string()),
product_family: device
.attribute_value("product_family")
.map(|s| s.to_string_lossy().to_string())
.unwrap_or("Unknown".to_string()),
product_name: device
.attribute_value("product_name")
.map(|s| s.to_string_lossy().to_string())
.unwrap_or("Unknown".to_string()),
});
}
Err("dmi not found".into())
}
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
#[ignore = "Does not run in docker images"]
fn dmi_sysfs_properties_not_unknown() {
let dmi = DMIID::new().unwrap();
assert_ne!(dmi.id_model, "Unknown".to_string());
dbg!(dmi.id_model);
assert_ne!(dmi.dmi_family, "Unknown".to_string());
dbg!(dmi.dmi_family);
assert_ne!(dmi.dmi_vendor, "Unknown".to_string());
dbg!(dmi.dmi_vendor);
assert_ne!(dmi.board_name, "Unknown".to_string());
dbg!(dmi.board_name);
assert_ne!(dmi.board_vendor, "Unknown".to_string());
dbg!(dmi.board_vendor);
assert_ne!(dmi.product_family, "Unknown".to_string());
dbg!(dmi.product_family);
assert_ne!(dmi.product_name, "Unknown".to_string());
dbg!(dmi.product_name);
}
}

12
extra/index.html Executable file
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<!DOCTYPE html>
<html>
<body>
<script language="javascript" type="text/javascript">
<!--
window.setTimeout('window.location="room4doom/index.html"; ', 0);
// -->
</script>
</body>
</html>

View File

@@ -15,7 +15,11 @@ exclude = ["data"]
[features]
default = ["dbus", "detect"]
dbus = ["zbus"]
detect = ["sysfs-class"]
detect = ["dmi_id"]
[lib]
name = "rog_anime"
path = "src/lib.rs"
[dependencies]
png_pong.workspace = true
@@ -27,12 +31,11 @@ serde.workspace = true
serde_derive.workspace = true
glam.workspace = true
typeshare.workspace = true
zbus = { workspace = true, optional = true }
sysfs-class = { workspace = true, optional = true }
uhid-virt = "^0.0.6"
dmi_id = { path = "../dmi-id", optional = true }
[dev-dependencies]
cargo-husky.workspace = true

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