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302 Commits

Author SHA1 Message Date
pascallanger
79b09468ac WLV8TX small changes and save few bytes 2026-08-05 00:48:46 +02:00
pascallanger
97fcd0bde0 Update build_release_avr_noboot 2026-08-04 00:32:59 +02:00
pascallanger
463978939b Ares: new protocol
ARES Gamma 370, P-51D Mustang 350, RTF models with 6HPA-Tx and AZS12006-Rx (6 channel).
2026-08-04 00:28:44 +02:00
pascallanger
0a7f74dc06 SLT/SLT6X new subprotocol 2026-08-03 23:51:35 +02:00
pascallanger
3d50a39efb DSM: add XPlus channels
Sent only when number of channels >12
2026-08-03 15:41:23 +02:00
MRC3742
9e0efe321c REALACC/WLV8Tx : WLtoys Cars 284019-A and 284191
Protocol: REALACC
Sub Proto: WL_V8Tx
Ch1: Steering
CH2: Throttle
CH3: GY TRIM (Rate)
CH4: TH TRIM (Rate)
CH5: Steering Trim
2026-08-03 14:36:17 +02:00
pascallanger
3e75c27e95 Update Validate.h
Save Flash space
2026-08-02 23:01:33 +02:00
pascallanger
3151a5a5c6 Update Validate.h
Save Flash space
2026-08-02 22:56:13 +02:00
pascallanger
2348c3c29d Update Validate.h
Save Flash space
2026-08-02 22:54:09 +02:00
pascallanger
968578d59e Update Validate.h
Save flash space
2026-08-02 22:49:00 +02:00
pascallanger
53594ce1a1 Update build_release_avr_optiboot
Disable Radiolink in this build
2026-07-29 09:43:23 +02:00
Eduard
aaaa5f141d RadioLink / DumboRC command packages for P Series (#1164)
* [Codex assisted] RadioLink / DumboRC command packages bridge

Pass "special" packages to and from the module
Allows to replicate "Set Failsafe", "Set Gyro Settings" and "Set Gyro Endpoints" from DDF-350

* RadioLink / DumboRC command packages TX / RX

* RadioLink / DumboRC Helper script channel names

Has max 10 channels
Has no failsafe
Older X series have gyro sense fixed to CH8, also can be used as regular channel

* [Codex] DumboRC P Series settings script

Add script that mimics interaction between DumboRC DDF-350 transmitter and P Series receivers

* [Codex assisted] Split P series into separate subprotocol

Split command exchange into separate subprotocol
Update protocol documentation

* [Codex] Improve LUA script

Clean up, better event handling
2026-07-29 08:18:58 +02:00
pascallanger
1772147e5b Update FQ777_nrf24l01.ino 2026-07-16 20:18:54 +02:00
pascallanger
865f6c1597 FQ777/XBM37: new subprotocol 2026-07-16 18:25:58 +02:00
pascallanger
095acb0975 FX/A570: new subprotocol for VTOL QIDI-570 2026-07-16 17:51:34 +02:00
MRC3742
fc8730976c FX: Add telemetry delay for warnings
* telemetry delay for FX protocol warnings

* Update Protocols_Details.md

---------

Co-authored-by: dellclient <dellclient>
2026-07-16 10:11:51 +02:00
pascallanger
699e796a01 FX/BM26: new subprotocol
Missing files
2026-07-14 22:30:14 +02:00
pascallanger
93bade15d0 FX/BM26: new subprotocol 2026-07-14 22:29:07 +02:00
pascallanger
80d08c25e0 Update Protocols_Details.md 2026-07-14 19:52:07 +02:00
pascallanger
debb17a8fc Update Protocols_Details.md 2026-07-14 19:50:43 +02:00
pascallanger
174efa332b XK2/X4: Stunt flag for the Sky Viper Vector 2026-07-14 19:46:38 +02:00
pascallanger
e5f9f8c840 Hontai/XK170: Optical flag
CH11 enable/disable flow sensor for K270
2026-07-14 19:26:55 +02:00
pascallanger
a23716269b Merge branch 'master' of https://github.com/pascallanger/DIY-Multiprotocol-TX-Module 2026-07-14 18:55:06 +02:00
MRC3742
bfef3364fc Fix for DSM Clone
* fix for DSM clone not working
2026-07-14 18:54:36 +02:00
pascallanger
d62f2d0555 Update Protocols_Details.md 2026-07-14 18:52:32 +02:00
pascallanger
bb59582271 Update XN297Dump_nrf24l01.ino 2026-07-14 18:46:54 +02:00
pascallanger
c6c6fa442b Update WPL_nrf24l01.ino 2026-07-14 18:46:40 +02:00
pascallanger
d95012c30b TRAXXAS: attempt to describe TQi 2026-07-14 18:46:09 +02:00
pascallanger
f71768df39 E129 saving few bytes 2026-07-14 18:44:41 +02:00
pascallanger
7bde06ff50 AFHDS2A: Fix for CROSSOVER-RX
CROSSOVER-RX are sending end of telemetry data despite having sensors after...
2026-07-14 18:44:05 +02:00
pascallanger
51a01d1393 KF606 LED
Add LED channel for KF606 boards
2026-07-14 18:42:14 +02:00
pascallanger
bf38415420 Update SGF22_nrf24l01.ino
Fix tx and freq for none CX10
2025-09-26 17:41:06 +02:00
pascallanger
5ce6c6f544 Update Protocols_Details.md 2025-07-28 11:27:57 +02:00
pascallanger
35f284763a SGF22/CX10 new subprotocol
Only 2 IDs
2025-07-28 11:20:57 +02:00
pascallanger
e35c4d3ce8 WPL 1 ID 2025-07-28 01:06:12 +02:00
pascallanger
ba59605b16 Update WPL_nrf24l01.ino 2025-07-27 19:15:55 +02:00
pascallanger
b88f4d40f4 WPL 5 2025-07-27 18:24:24 +02:00
pascallanger
5ade6bc312 WPL 4th 2025-07-27 16:51:13 +02:00
pascallanger
9e099bc486 WPL 3rd try 2025-07-27 16:42:00 +02:00
pascallanger
48b7430e75 WPL try 2 2025-07-27 16:01:52 +02:00
pascallanger
6385e822c2 MT99xx/SU35: removed autobind 2025-07-27 12:25:14 +02:00
pascallanger
66f8906273 WPL new protocol
Only 1 ID
2025-07-27 12:24:03 +02:00
Jon Sturm
dcbc557bf7 Enable Telemetry on DumbRC receivers (#1111)
Tested with X6FGv1.1, X6FP, X6DC(G)v1.1

I also tested with multiple X6F receivers and some gave RSSI Telem and some gave nothing.
2 of them had the same PCB as the X6FP and neither gave telemetry.
I had a third with the same PCB with the X6FP which did give RSSI
and of my two with an older PCB one gives RSSI telem and the other does not.

Of the receivers I tried only one set packet_in[6] to match the TX packet[1] and it was the
oldest receiver of the ones I own.
2025-05-10 11:51:48 +02:00
pascallanger
e556f5cc40 SGF22 telem improvement? 2025-04-16 07:53:47 +02:00
pascallanger
9ef2415178 Update Protocols_Details.md (#1101) 2025-04-03 18:39:02 +02:00
pascallanger
bc1a809325 Update Protocols_Details.md 2025-04-03 18:36:31 +02:00
pascallanger
082e96e381 DSMR timing 2025-04-02 18:02:44 +02:00
pascallanger
abd26ee113 Update SGF22_nrf24l01.ino 2025-04-02 14:24:18 +02:00
pascallanger
98518b3c92 Update Protocols_Details.md 2025-04-02 14:11:58 +02:00
pascallanger
d19de99172 SGF22 telemetry 2025-04-02 14:10:54 +02:00
pascallanger
13024e3816 Update SGF22_nrf24l01.ino 2025-04-01 23:01:18 +02:00
pascallanger
90fb2d745f Update AFHDS2A_a7105.ino 2025-03-31 22:21:33 +02:00
pascallanger
fa13b67f3a Update Validate.h 2025-03-31 14:56:46 +02:00
pascallanger
10be906bec Update Validate.h 2025-03-31 14:43:42 +02:00
pascallanger
f538884d48 XK2 low batt telemetry 2025-03-28 19:13:13 +01:00
pascallanger
d3e5acf704 Update Protocols_Details.md 2025-03-28 10:33:39 +01:00
pascallanger
2ac4745c62 FX/QF012 telemetry 2025-03-21 21:48:29 +01:00
pascallanger
889e01c7c6 MouldKg update 2025-03-20 17:28:33 +01:00
pascallanger
db5f1f8899 Added AFHDS2A BS4/BS6 support 2025-03-20 14:49:34 +01:00
pascallanger
d091c57e10 MouldKg swap CH5 and CH6 2025-03-14 10:34:15 +01:00
pascallanger
0fcb4b7f1a FX telemetry 2025-03-13 20:15:57 +01:00
pascallanger
432e2e08a4 FX small changes 2025-03-13 19:13:14 +01:00
pascallanger
77efe467ad MouldKg renamed subprotocols 2025-03-13 18:42:34 +01:00
pascallanger
b9c828c878 MouldKg multi 6 ports brick support 2025-03-13 18:29:56 +01:00
pascallanger
99cd4d34d4 MT99xx Trim channels 2025-03-12 17:20:54 +01:00
pascallanger
a9be2a8644 Update MouldKg_nrf24l01.ino 2025-03-12 14:05:53 +01:00
pascallanger
835facd2c3 XK2 Gyro off 2025-03-12 07:45:05 +01:00
pascallanger
9e20e47c5a FX/QF012 details 2 2025-03-12 07:34:47 +01:00
pascallanger
a916275f0d FX/QF012 details 2025-03-12 07:31:32 +01:00
rdba2k
9beade33de Add FX_QF012 subprotocol (#1091) 2025-03-12 07:17:08 +01:00
pascallanger
5ba70c3571 Update Protocols_Details.md 2025-03-10 17:40:46 +01:00
pascallanger
168aa89c57 New SFC protocol WL91x 2025-03-10 17:38:37 +01:00
pascallanger
fa055e991c ASF try 1 2025-02-27 16:56:58 +01:00
pascallanger
5437d88642 DSMR SR6200 test 1 2025-02-26 21:12:34 +01:00
pascallanger
d800f2c333 SLT2 final 2025-02-26 11:31:26 +01:00
pascallanger
78f6af6448 SLT2 last trial? 2025-02-26 00:00:49 +01:00
pascallanger
b04d4a54f7 SLT2 trial 3 2025-02-25 22:08:50 +01:00
pascallanger
ed65c81add SLT2 trial 2 2025-02-25 20:31:46 +01:00
pascallanger
9bdc24c42a SLT2 trial 2025-02-25 15:39:16 +01:00
pascallanger
7107d46d29 SHENQI2 new protocol 2025-02-24 17:04:07 +01:00
pascallanger
825f560cbb Update Protocols_Details.md 2025-02-22 11:51:55 +01:00
pascallanger
ccaec304d5 KAMTOM telemetry 2025-02-22 11:48:03 +01:00
pascallanger
22d45349cc Update Compiling.md (#1078) 2025-02-22 11:36:23 +01:00
pascallanger
5f26d624ad Update Compiling.md 2025-02-22 11:23:49 +01:00
pascallanger
496c07943f KAMTOM new surface protocol
Missing low batt telem
2025-02-21 21:46:18 +01:00
pascallanger
af87b0f6d1 Update UDIRC_ccnrf.ino 2025-02-19 17:16:04 +01:00
pascallanger
2918e63fb4 XN297Emu add ReSendPayload 2025-02-19 11:54:29 +01:00
pascallanger
ed63ef7efe Update UDIRC_ccnrf.ino 2025-02-19 11:33:17 +01:00
pascallanger
36d25c7773 Update UDIRC_ccnrf.ino 2025-02-19 11:21:26 +01:00
pascallanger
a3ef2b94d4 Update MultiChan.txt 2025-02-18 19:32:19 +01:00
pascallanger
ad8b45773d UDIRC new protocol / WIP 2025-02-18 11:18:13 +01:00
pascallanger
b2dec9b331 Update Protocols_Details.md 2025-02-12 11:57:04 +01:00
pascallanger
565aaed0c7 New XK2/P10 sub protocol 2025-02-09 12:01:28 +01:00
pascallanger
2f520f2e91 Update Protocols_Details.md 2025-02-06 12:03:15 +01:00
pascallanger
f1470a80dd Update Protocols_Details.md 2025-02-06 12:00:07 +01:00
pascallanger
b6f78e93a0 Yuxiang multi IDs/Freqs 2025-02-06 11:57:40 +01:00
pascallanger
58bfd3b8b0 New JIABAILE/Gyro subprotocol 2025-02-06 11:56:24 +01:00
pascallanger
9e5e907f4a Hontai/XKK170 new subprotocol 2025-01-30 23:14:15 +01:00
pascallanger
4b68443c8f Update Multiprotocol.h 2025-01-30 10:37:53 +01:00
pascallanger
f092e137c7 Improve DSM telemetry stability? 2025-01-30 10:28:57 +01:00
pascallanger
7b9941e537 Fix DSMR 2025-01-29 19:48:18 +01:00
pascallanger
d03a8787d1 Update Protocols_Details.md 2025-01-29 10:05:23 +01:00
pascallanger
75f79095ae JIABAILE RX ID in EEPROM
Not an autobind protocol anymore.
2025-01-29 09:42:16 +01:00
pascallanger
b901bedad6 Update H36_nrf24l01.ino 2025-01-28 17:51:06 +01:00
pascallanger
dbbef9181a Update H36_nrf24l01.ino 2025-01-28 14:05:45 +01:00
pascallanger
98a54300e0 New H36 protocol - 1 ID 2025-01-28 14:00:38 +01:00
pascallanger
56fa7e788b Update Protocols_Details.md 2025-01-27 17:54:26 +01:00
pascallanger
7af23017ff Update JIABAILE_nrf24l01.ino 2025-01-27 17:37:00 +01:00
pascallanger
a07c23b25f New car protocol JIABAILE 2025-01-27 16:12:21 +01:00
pascallanger
b5b2dc37d4 SGF22 FX922 flags 2025-01-25 17:49:22 +01:00
pascallanger
756af87ec1 SGF22 Flags trial 2025-01-25 11:31:21 +01:00
pascallanger
e5810a2978 QIDI560 new light flag? 2025-01-23 15:49:35 +01:00
pascallanger
eaf71c2f49 XK2 details 2025-01-21 17:06:21 +01:00
pascallanger
546a962d96 XK2 multi IDs 2025-01-20 19:19:31 +01:00
pascallanger
fd150fa109 XK2 2nd ID 2025-01-20 16:28:48 +01:00
pascallanger
9b66711052 MT99X2/SU35 2025-01-19 16:07:45 +01:00
pascallanger
550754c7f9 Merge branch 'master' of https://github.com/pascallanger/DIY-Multiprotocol-TX-Module 2025-01-19 15:59:42 +01:00
rdba2k
729fdd4719 Add MT99xx2/SU35 protocol (#1033)
* Update Multi.txt

* Update Multi_Protos.ino

* Update _Config.h

* Update Multiprotocol.h

* Update MT99xx_ccnrf.ino
2025-01-19 15:59:13 +01:00
pascallanger
2713b18099 Update Protocols_Details.md 2025-01-19 14:57:51 +01:00
pascallanger
5b5e95066a Traxxas TQ2&TQ1 2025-01-19 14:25:41 +01:00
pascallanger
b1f8560509 Update Yuxiang_nrf24l01.ino 2025-01-19 14:25:21 +01:00
Paul
50c18311c9 Update readme and protocol detals with surface/air info (#1034)
* Update readme and protocol detals with surface/air info

* Update Protocols_Details.md

* Update README.md

---------

Co-authored-by: pascallanger <pascal_langer@yahoo.fr>
2025-01-19 14:18:20 +01:00
Arild Langseid
95746f80a1 Add RF_SIM sub-protocol to SLT-protocol (#1061)
* Added sub-protocol RF_SIM to the SLT protocol

* fixed typo

---------

Co-authored-by: Arild Langseid <arild@langseid.no>
2025-01-19 14:14:32 +01:00
pascallanger
bb7685e7a5 Update Yuxiang_nrf24l01.ino 2025-01-18 12:24:26 +01:00
pascallanger
a44126583e Yuxiang telemetry
Offset=7, Ratio=3.5
2025-01-18 12:19:33 +01:00
pascallanger
7fbca99bf3 Yuxiang bind ok 2025-01-18 00:36:33 +01:00
pascallanger
8db90fb6fc Yuxiang remove CH8 2025-01-16 11:34:07 +01:00
pascallanger
406f5feca5 Yuxiang TX2 2025-01-15 19:07:03 +01:00
pascallanger
0e5834a457 Update XN297Dump_nrf24l01.ino 2025-01-15 12:46:28 +01:00
pascallanger
75445ee4a7 Update Yuxiang_nrf24l01.ino 2025-01-13 20:28:25 +01:00
pascallanger
e724d6970e YuXiang E190 protocol
Only 1 ID, bind might not work...
2025-01-13 20:24:04 +01:00
pascallanger
190ebaefd4 Update XN297Dump_nrf24l01.ino 2025-01-13 20:22:14 +01:00
pascallanger
3fdf417ac9 V761 Beeper feature on CH10 2025-01-07 21:37:32 +01:00
pascallanger
e05bc7c447 Update XN297Dump_nrf24l01.ino 2025-01-07 15:11:32 +01:00
pascallanger
e2876c7e8c Update SGF22_nrf24l01.ino 2024-10-09 10:09:21 +02:00
pascallanger
7acfebc30e Update Protocols_Details.md 2024-10-09 10:01:08 +02:00
pascallanger
af12b21899 Merge branch 'master' of https://github.com/pascallanger/DIY-Multiprotocol-TX-Module 2024-09-26 10:14:30 +02:00
pascallanger
68a4285b2a Update Protocols_Details.md 2024-09-26 10:14:26 +02:00
rdba2k
f58f7800d2 Update SGF22_nrf24l01.ino (#1023)
add sub protocol "J20" to "SGF22" protocol
2024-09-26 10:11:19 +02:00
rdba2k
10b230d2dd Update Multiprotocol.h (#1022)
add sub protocol "J20" to "SGF22" protocol
2024-09-26 10:05:12 +02:00
rdba2k
58b19a2130 Update Multi_Protos.ino (#1021)
add sub protocol "J20" to "SGF22" protocol
2024-09-26 10:04:45 +02:00
rdba2k
1b79d7f80f Update Multi.txt (#1020)
add sub protocol "J20" to "SGF22" protocol
2024-09-26 10:04:07 +02:00
rdba2k
e0299f6c7d Update _Config.h (#1019)
add sub protocol "J20" to "SGF22" protocol
2024-09-26 10:03:39 +02:00
pascallanger
64ea7111ac SGF22: new F22S sub protocol 2024-09-02 18:14:25 +02:00
pascallanger
edaee63f16 Revert main.yml to use the old version of arduino_cli 2024-07-24 16:20:16 +02:00
Peter Feerick
b449212c34 chore(ci): bump setup-arduino-ci version to remove nodejs warning (#995)
* chore(ci): bump setup-arduino-ci version to remove nodejs warning

Gets rid of the numerous  "The following actions
uses Node.js version which is deprecated and will
be forced to run on node20" warnings

* chore: bump arduino-cli ver
2024-07-18 12:57:48 +02:00
pascallanger
edaad73290 Update Validate.h 2024-07-12 16:06:32 +02:00
pascallanger
3d5e43da3b Update Validate.h 2024-07-12 16:03:30 +02:00
pascallanger
b8c5929521 XK2: 1 TX ID but multiple RX IDs? 2024-07-12 10:00:21 +02:00
pascallanger
8685fcae7f Update Protocols_Details.md 2024-07-11 16:44:53 +02:00
pascallanger
6edd2a14a7 E129/C185 new debug flag 2024-07-11 16:20:32 +02:00
Ben Lye
600ffe87d7 Disable SCANNER ... (#989) 2024-06-14 12:14:55 +02:00
pascallanger
c6ff0e27d9 New protocol XK2 for the XK A160S 2024-06-07 20:28:15 +02:00
pascallanger
7a7b4b2e74 Update Protocols_Details.md 2024-05-21 13:16:41 +02:00
pascallanger
8a30bf1c0a Update FX/Q560 doc 2024-05-21 07:42:59 +02:00
pascallanger
dd82cbec63 Update Protocols_Details.md 2024-05-17 17:08:01 +02:00
pascallanger
be4595fe67 Update FX_nrf24l01.ino 2024-05-17 14:45:30 +02:00
pascallanger
54ae77ed7f FX/Q560 new sub protocol 2024-05-17 11:01:54 +02:00
pascallanger
2bdbd7088c Traxxas TQ 1st gen: try 5 2024-05-04 11:36:14 +02:00
pascallanger
1d3ed78622 J6Pro update 2024-05-04 11:34:59 +02:00
pascallanger
79b1c54007 Traxxas TQ 1st gen: try 4 2024-05-03 00:15:03 +02:00
pascallanger
81eb5dc6bc Traxxas TQ 1st gen: try 2 2024-04-29 19:43:24 +02:00
pascallanger
85a0e4bde8 Traxxas TQ 1st gen: try 2 2024-04-27 11:23:19 +02:00
pascallanger
63dfa316e8 Traxxas TQ 1st gen: try 1 2024-04-26 19:25:23 +02:00
pascallanger
9d383432a5 Update SGF22_nrf24l01.ino 2024-04-24 07:00:44 +02:00
pascallanger
6b181db629 SLT try 1e 2024-04-18 10:40:37 +02:00
pascallanger
873279dbe9 SLT new sub_protocol V1_4CH 2024-04-15 14:13:37 +02:00
pascallanger
f35be2984a SLT try 1d 2024-04-14 13:29:28 +02:00
pascallanger
7ddeb31e95 SLT try 1c 2024-04-14 13:23:50 +02:00
pascallanger
7444c44b48 SLT try 1b 2024-04-13 10:22:39 +02:00
pascallanger
08d1dcbed2 SLT try 1a 2024-04-12 18:24:50 +02:00
pascallanger
3e4f4e36c1 SLT try 1 2024-04-12 18:20:01 +02:00
pascallanger
902419dd3d Update Protocols_Details.md 2024-04-08 18:36:42 +02:00
pascallanger
038b3b9225 Update Protocols_Details.md 2024-04-04 17:13:35 +02:00
pascallanger
45f0154f4b Update Protocols_Details.md 2024-04-04 16:15:27 +02:00
pascallanger
e03864e35f Traxxas TQ 6 channels 2024-04-04 16:13:35 +02:00
pascallanger
de35ee09f5 Realacc doc update 2024-04-02 16:42:19 +02:00
pascallanger
c88952c35e REALACC: IDs
Any ID
2024-04-02 12:34:04 +02:00
pascallanger
ffae7dda1d Update SGF22_nrf24l01.ino 2024-03-29 16:24:25 +01:00
pascallanger
4f17f76b39 SGF22: new flag 2024-03-29 16:19:20 +01:00
pascallanger
31ef090508 ASF try 4 2024-03-29 15:55:54 +01:00
pascallanger
04d4e39b87 Update _Config.h 2024-03-27 19:34:28 +01:00
pascallanger
b3537ea75a DSM2_SFC try 3 2024-03-26 16:18:34 +01:00
pascallanger
bccc050165 DSM2_SFC try 2 2024-03-26 14:41:19 +01:00
pascallanger
0f0df176de DSM2_SFC try 1
Servo refresh rate -> frame rate 16.5/11ms
2024-03-26 14:37:26 +01:00
pascallanger
5542e7005d ASF try 3 2024-03-26 11:43:42 +01:00
pascallanger
eb35fefd3e ASF try 2 2024-03-25 15:17:51 +01:00
pascallanger
5acc3a8d01 CYRF6936: Findbestchannels flag addition 2024-03-25 15:11:31 +01:00
pascallanger
9e9c3958c6 ASF: try 1 2024-03-23 11:23:42 +01:00
pascallanger
7f3a93ca4c Kyosho3: increase bind time to 2.5s 2024-03-22 18:24:31 +01:00
pascallanger
debc9de11a New protocol Kyosho3/ASF
Only 1 ID and 1 frequency for now
2024-03-22 18:17:21 +01:00
pascallanger
f117105124 SGF22: Fix none working IDs 2024-03-21 16:33:16 +01:00
pascallanger
2e3520acad DSM2SFC timing update 2024-03-19 20:52:50 +01:00
pascallanger
91af921d98 Update Protocols_Details.md 2024-03-19 15:47:56 +01:00
pascallanger
ab45ec6d1c Update Validate.h 2024-03-19 15:44:29 +01:00
pascallanger
26b0b6bd20 Update DSM_cyrf6936.ino 2024-03-19 15:44:21 +01:00
pascallanger
1b9ce32e89 Update DSM_cyrf6936.ino 2024-03-19 14:11:40 +01:00
pascallanger
332e55831c Update Protocols_Details.md 2024-03-18 17:11:23 +01:00
pascallanger
7051438e5d Update Protocols_Details.md 2024-03-18 17:00:40 +01:00
pascallanger
28467fac57 DSM/DSM2SFC new subprotocol 2024-03-18 16:57:54 +01:00
pascallanger
c7513abad8 Update Multiprotocol.h 2024-03-18 09:02:55 +01:00
pascallanger
e6e13c0fdd Docs update 2024-03-17 15:52:42 +01:00
pascallanger
9579a667fc Update REALACC_nrf24l01.ino 2024-03-17 15:28:33 +01:00
pascallanger
cbedda2471 Merge branch 'master' of https://github.com/pascallanger/DIY-Multiprotocol-TX-Module 2024-03-14 20:23:04 +01:00
pascallanger
f8695befe2 REALACC multi IDs 2024-03-14 20:23:02 +01:00
pascallanger
e951e3146b Update Protocols_Details.md (#955) 2024-03-14 20:22:00 +01:00
pascallanger
4c0b46549f EazyRC multi IDs/RFs 2024-02-28 10:46:10 +01:00
pascallanger
188f8ff9ce Radiolink/RC4G: IDs and RFs 2024-02-26 17:20:08 +01:00
pascallanger
bee6e59582 Update EazyRC_nrf24l01.ino 2024-02-24 09:38:42 +01:00
pascallanger
af47462ba7 EazyRC.2 2024-02-23 19:06:20 +01:00
pascallanger
d6ccd4af54 EazyRC.1 2024-02-23 17:51:38 +01:00
pascallanger
0feedc6fa9 New protocol EazyRC 2024-02-23 17:36:02 +01:00
pascallanger
b5bc7c04fb Rename Traxxas/6519 to Traxxas/TQ 2024-02-23 17:19:09 +01:00
pascallanger
a15371d989 Merge branch 'master' of https://github.com/pascallanger/DIY-Multiprotocol-TX-Module 2024-02-23 11:29:35 +01:00
pascallanger
3c82f37e2b Bumping revision 2024-02-23 11:29:19 +01:00
Ben Lye
4f914a18ae Automated build process updates (#950)
* 4-in-1 air and surface builds

* Disable serial and PPM-only builds for STM32 x-in-1

* More air and surface builds

* Fix 5-in-1 tests

* T18 air, surface, and LBT builds

* Remove CFlie from DIY 5-in-1 AIR

* Bump action versions

* v4 artifact merging

* Improve artifact merge

* Fix merge

* DIY 5-in-1 LBT

* Tweak CI job name

* Add T-Lite 5-in-1 LBT

* CI job restructure
2024-02-23 11:26:30 +01:00
pascallanger
1cbce29970 Remove Radiolink/RC4G when MULTI_AIR 2024-02-23 11:06:48 +01:00
pascallanger
e0c44ed5a8 Remove DSMR when MULTI_AIR 2024-02-23 11:05:02 +01:00
pascallanger
390e5dd654 Remove Kyosho/FHSS&SYNC when MULTI_AIR 2024-02-22 17:40:56 +01:00
pascallanger
968293e599 Remove Hisky/HK310 when MULTI_AIR 2024-02-22 17:29:00 +01:00
pascallanger
09ee173e3b Remove Pelikan/SCX24 when MULTI_AIR
Save flash space
2024-02-22 17:14:20 +01:00
pascallanger
babfee0f9e Update RadioLink_cc2500.ino 2024-02-21 13:43:44 +01:00
pascallanger
72da3c5bc5 Create MULTI_AIR / MULTI_SURFACE 2024-02-21 12:31:23 +01:00
Ben Lye
4df1e65a7f Pelikan SCX24 / HPI TF-41 reversed (#917)
* Pelikan SCX24 / HPI TF-41 reversed

* Save some flash and memory

* Save more flash
2024-02-21 12:17:02 +01:00
pascallanger
1459d690d8 Update SGF22_nrf24l01.ino 2024-02-21 11:41:23 +01:00
pascallanger
8d96066215 Merge XK and Tiger protocols 2024-02-21 11:38:31 +01:00
pascallanger
93a5834dd0 Update TRAXXAS_cyrf6936.ino 2024-02-19 21:53:54 +01:00
pascallanger
5f9ac82ed1 SGF22.5 Multiple IDs, 1 set of frequencies 2024-02-19 18:34:27 +01:00
pascallanger
2108912263 Update TRAXXAS_cyrf6936.ino 2024-02-17 11:03:37 +01:00
pascallanger
72f87cade9 XK: new subprotocol Cars
Removed:
 - deadband which was needed on the planes
- force bind since the cars remember the bind info
-
2024-02-17 11:02:52 +01:00
pascallanger
50bd4850fa Radiolink/RC4G
1 ID / 1 set of frequency
2024-02-16 18:03:32 +01:00
pascallanger
dc1490b9b0 SGF22.4 2024-02-16 10:26:48 +01:00
pascallanger
b18adb0efe SGF22.3 2024-02-16 10:24:44 +01:00
pascallanger
53d5684dfd KN: additional trim and flag 2024-02-15 20:52:01 +01:00
pascallanger
724abbc935 SGF22.2 2024-02-15 18:24:58 +01:00
pascallanger
de610b53fc SGF22.1 2024-02-15 16:28:52 +01:00
pascallanger
dd7ee7bdce SGF22 2024-02-15 16:20:37 +01:00
pascallanger
31a9f6860d New protocol SGF22
Only 1 ID!
2024-02-15 15:51:20 +01:00
pascallanger
4a66ae64c6 Update Protocols_Details.md (#940) 2024-02-06 12:06:34 +01:00
pascallanger
11ae26a431 Update Protocols_Details.md 2024-01-31 19:27:54 +01:00
pascallanger
cdabde5d67 Kyosho FHSS and Syncro
Automatically binding a FHSS or a Syncro RX using FHSS
2024-01-31 19:22:36 +01:00
pascallanger
ce75dd3355 Kyosho FHSS/SYNCRO cleanup 2024-01-30 14:53:28 +01:00
pascallanger
69484b5278 Second try 2024-01-30 14:42:24 +01:00
pascallanger
a90e1f2d3a Update Bluefly_ccnrf.ino
Exclude this protocol since it's not working
2024-01-30 14:36:38 +01:00
pascallanger
5af246bba0 Update _Config.h 2024-01-30 12:33:21 +01:00
pascallanger
75a46858da Update Kyosho_a7105.ino 2024-01-30 12:25:25 +01:00
pascallanger
8ac53657ec Kyosho updqte
fixed crash
2024-01-30 12:06:37 +01:00
pascallanger
2888d3e937 TRAXXAS TQ WIP
It still won't work unless you have some luck. I still need to work on the RF frequency.
2024-01-29 18:59:24 +01:00
pascallanger
3d989a47db Typo... 2024-01-29 18:45:32 +01:00
pascallanger
a7d6d12679 Kyosho Syncro
Sub protocol Syncro for KT-331 and KR-331
2024-01-29 17:00:54 +01:00
pascallanger
457703b881 Update Protocols_Details.md 2024-01-18 12:16:59 +01:00
rdba2k
8e663f2531 Update V911S_ccnrf.ino to add 6G/Senior and light for XK A280 (#929) 2024-01-18 12:07:34 +01:00
pascallanger
8c2fe5f65e Traxxas trial 2023-12-24 15:05:13 +01:00
pascallanger
7549783741 Fix Traxxas for any RX 2023-12-22 21:02:10 +01:00
pascallanger
e6bafaabb7 New protocol: BumbleBee 990A
Preliminary
2023-12-22 21:01:15 +01:00
pascallanger
9286ac84f6 Update MultiChan.txt 2023-12-22 20:58:19 +01:00
pascallanger
ede40ac598 Update Protocols_Details.md (#923) 2023-12-21 18:24:08 +01:00
pascallanger
88fad2dc9f Update Protocols_Details.md (#922) 2023-12-21 18:22:50 +01:00
Frankie Arzu
549d3ad653 Fix for DSM-Auto Bind on Lemon-RX Gen2 (#918)
* #916 Fix for Auto-Bind on Lemon-RX Gen2

Tested with multiple brands (Spektrum, OrangeRX, Lemon-Rx, Admiral).  Even some old DSM 2 receivers.
All work with "Auto" now.   Just in case one needs a LONG bind sending period, when not using "Auto" works the same as before.

* Use 1.8s for Bind Send

Removed the short and long bind count logic.
2023-12-18 12:02:57 +01:00
Frankie Arzu
62aa58d32d Forward Prog v0.56 (#919)
1. NEW Black&White Radios new model setup. Now it can setup completely a plane from zero
2. Color version; simplified code for Tail mixes, and fix Taileron setup
2023-12-17 11:12:14 +01:00
Paul
21a06c2925 FX9603 added to protocol details (#914)
* Allow zero and limit range of enterd values

* FX9603 added to protocol details
2023-12-12 22:43:34 +01:00
pascallanger
9acb3b0e2c DSM.ino: Saved a few bytes 2023-12-01 19:06:15 +01:00
pascallanger
785edde659 Update DSM.ino 2023-12-01 18:29:23 +01:00
pascallanger
7da6d52a84 CYRF data codes are always 16
Removed useless function argument
LOSI now points to the DSM data codes = dependency on DSM
2023-12-01 10:58:56 +01:00
Ben Lye
61cbe45ce2 Disabled protocols in Atmega CYRF builds (#911) 2023-11-30 16:17:21 +01:00
pascallanger
23af33e214 LOSI multi IDs 2023-11-30 16:04:43 +01:00
pascallanger
11db967b8a LOSI multi ID 2023-11-30 16:02:58 +01:00
pascallanger
d419e2b344 Update Losi_cyrf6936.ino 2023-11-30 12:15:02 +01:00
pascallanger
2b69c1184e Update Losi_cyrf6936.ino 2023-11-30 12:10:17 +01:00
pascallanger
1ceed87298 Update Losi_cyrf6936.ino 2023-11-30 09:47:28 +01:00
pascallanger
a1737eab46 PELIKAN: new hopping tables 2023-11-30 09:46:18 +01:00
pascallanger
9cbcafe6cf Update Losi_cyrf6936.ino 2023-11-29 15:40:18 +01:00
pascallanger
495706314f Pelikan: 1 more High ID / frequency table 2023-11-29 15:40:08 +01:00
pascallanger
595511979b Update Losi_cyrf6936.ino 2023-11-27 20:07:12 +01:00
pascallanger
b8d30f47be Update Losi_cyrf6936.ino 2023-11-27 16:59:41 +01:00
pascallanger
b7097bdfb7 LOSI 2023-11-27 15:56:50 +01:00
pascallanger
a682b0e604 Update Losi_cyrf6936.ino 2023-11-22 08:26:03 +01:00
pascallanger
7e7b555809 LOSI: dynamic channel 2023-11-22 07:57:54 +01:00
pascallanger
62ecaa8412 Revert J6Pro changes 2023-11-22 07:57:30 +01:00
pascallanger
5ae052317d Update README.md 2023-11-11 11:50:17 +01:00
pascallanger
f3331ca397 Add pointer to Frank DSM Tools page 2023-11-11 11:48:54 +01:00
pascallanger
ffcfd44127 Bluefly fix? 2023-11-11 01:57:45 +01:00
Ben Lye
5ef944241a Add EU/LBT binaries to the build artifacts (#905)
* Add release LBT builds

* Use friendly build names

* Script cleanup
2023-11-10 17:40:30 +01:00
pascallanger
ab5f75b1b3 BlueFly: New protocol 2023-11-09 18:02:21 +01:00
pascallanger
10ec4dd735 Update Protocols_Details.md 2023-11-09 11:57:26 +01:00
pascallanger
a62d1dcd2e Update Protocols_Details.md 2023-11-08 10:53:57 +01:00
pascallanger
2c9e98e341 Update Protocols_Details.md 2023-10-30 22:48:04 +01:00
pascallanger
0bf94e96b5 E129/C186: New flip flag for C129V2 on CH11 2023-10-30 22:36:09 +01:00
Ben Lye
8d84386c7a Fix LUA script zipping (#898) 2023-10-30 14:44:43 +01:00
Paul
cd721e31d8 Allow zero and limit range of enterd values (#896) 2023-10-24 01:32:38 +02:00
pascallanger
1294ad21cf E129/C186 new circular flight flag 2023-10-23 11:24:37 +02:00
pascallanger
01bc08575f Update Protocols_Details.md 2023-10-10 12:07:16 +02:00
pascallanger
ecfe17915f V761 telemetry fix 2023-10-09 16:53:17 +02:00
pascallanger
f97aa3597d Commented out by default E01X protocol and subprotocols to gain flash space 2023-09-27 15:36:53 +02:00
pascallanger
2e1d763d54 V761 telemetry
A1 (4.4V -> 2.2V), RSSI equal to 100 means that all telem packets are received and TQLY indicates the number of lost telem packets.
2023-09-26 20:04:35 +02:00
Frankie Arzu
93a2cc8b7f Version 0.55 (#883) 2023-09-08 14:33:13 +02:00
pascallanger
abfebb3da4 QIDI-550 model
Using FX/9630
Added trims
!! Need to find out the first RF channel calculation !!
2023-09-02 01:11:37 +02:00
johnnym007
ce5f4ec264 Clone subprotocol for DSM (#877)
* Init WIP

* Adding a gitignore

* removing gitignore

* RX routines added

* Finished adding clone and erase

* Update _Config.h

* Update Multiprotocol.ino

* Ready for testing

* Refactor to call init on cloned/normal change

* Remove vscode files

* remove TODO comment

* remove unnecessary brackets

---------

Co-authored-by: john.moore <john.moore@amulethotkey.com>
2023-08-27 16:08:10 +02:00
pascallanger
a41123deb2 FrSky Archer Bind 2023-08-26 00:04:36 +02:00
pascallanger
fabb65a2bb Fix FrSkyX SPORT 2023-08-12 13:17:06 +02:00
pascallanger
eae1329dfe Add flags for KFPLAN Z61 BF109 2023-08-12 13:16:39 +02:00
Ben Lye
a8ae0a2bd1 Fix builds by using older Arduino CLI (#864)
* Used a fixed version of Arduino CLI

* Bump action versions
2023-06-14 14:08:58 +02:00
138 changed files with 9346 additions and 10405 deletions

View File

@@ -1,6 +1,6 @@
# Workflow for testing MULTI-Module firmware builds
name: CI
name: MULTI Test, Build, Deploy, Release
on:
# Trigger the workflow on pushes, except those that are tagged (avoids double-testing releases)
@@ -32,33 +32,43 @@ on:
workflow_dispatch:
jobs:
build:
test:
runs-on: ubuntu-latest
# Configure the board matrix
strategy:
fail-fast: false
matrix:
board: [
"multi4in1:avr:multiatmega328p:bootloader=none",
"multi4in1:avr:multiatmega328p:bootloader=optiboot",
"multi4in1:avr:multixmega32d4",
"multi4in1:STM32F1:multi5in1t18int",
"multi4in1:STM32F1:multistm32f103cb:debug_option=none",
"multi4in1:STM32F1:multistm32f103cb:debug_option=native",
"multi4in1:STM32F1:multistm32f103cb:debug_option=ftdi",
"multi4in1:STM32F1:multistm32f103c8:debug_option=none"
]
include:
- board: "multi4in1:avr:multiatmega328p:bootloader=none"
name: "ATmega328p"
- board: "multi4in1:avr:multiatmega328p:bootloader=optiboot"
name: "ATmega328p (Optiboot)"
- board: "multi4in1:avr:multixmega32d4"
name: "OrangeRX"
- board: "multi4in1:STM32F1:multistm32f103c8:debug_option=none"
name: "STM32F103 (64KB)"
- board: "multi4in1:STM32F1:multistm32f103cb:debug_option=none"
name: "STM32F103 (128KB)"
- board: "multi4in1:STM32F1:multistm32f103cb:debug_option=native"
name: "STM32F103 (128KB, USB Debug)"
- board: "multi4in1:STM32F1:multistm32f103cb:debug_option=ftdi"
name: "STM32F103 (128KB, Serial Debug)"
- board: "multi4in1:STM32F1:multi5in1t18int"
name: "T18 5-in-1 (128KB)"
# Set the build name using the friendly board name
name: "[Test] ${{ matrix.name }}"
# Set the environment variables
env:
BOARD: ${{ matrix.board }}
steps:
- uses: actions/checkout@v3
- uses: actions/checkout@v4
- name: Install Arduino CLI
uses: arduino/setup-arduino-cli@v1.1.2
uses: arduino/setup-arduino-cli@v2
with:
version: "0.32.2"
@@ -151,23 +161,38 @@ jobs:
- name: Build serial only
run: |
# Skip the serial-only build for boards where it's too large now
if [[ "$BOARD" =~ ":STM32F1:multistm32f103cb:debug_option=none" ]] || [[ "$BOARD" =~ ":STM32F1:multi5in1t18int" ]]; then
printf "Not testing serial-only build for $BOARD.";
else
source ./buildroot/bin/buildFunctions;
cp ./_Config.h.bak Multiprotocol/_Config.h
opt_disable ENABLE_PPM;
buildMulti;
fi
- name: Build PPM only
run: |
# Skip the PPM-only build for boards where it's too large now
if [[ "$BOARD" =~ ":STM32F1:multistm32f103cb:debug_option=none" ]] || [[ "$BOARD" =~ ":STM32F1:multi5in1t18int" ]]; then
printf "Not testing PPM-only build for $BOARD.";
else
source ./buildroot/bin/buildFunctions;
cp ./_Config.h.bak Multiprotocol/_Config.h
opt_disable ENABLE_SERIAL;
buildMulti;
fi
- name: Build each RF module individually
run: |
# Skip the per-RF module builds for boards which have fixed modules
if [[ "$BOARD" =~ ":STM32F1:multi5in1t18int" ]]; then
printf "Not testing individual RF module builds for $BOARD.";
else
source ./buildroot/bin/buildFunctions;
cp ./_Config.h.bak Multiprotocol/_Config.h;
buildEachRFModule;
fi
- name: Build each protocol individually
run: |
@@ -175,6 +200,128 @@ jobs:
cp ./_Config.h.bak Multiprotocol/_Config.h;
buildEachProtocol;
build:
runs-on: ubuntu-latest
# Configure the board matrix
strategy:
fail-fast: false
matrix:
include:
- board: "multi4in1:avr:multiatmega328p:bootloader=none"
name: "ATmega328p"
release: "atmega328p"
- board: "multi4in1:avr:multiatmega328p:bootloader=optiboot"
name: "ATmega328p (Optiboot)"
release: "atmega328p-optiboot"
- board: "multi4in1:avr:multixmega32d4"
name: "OrangeRX"
release: "orangerx"
- board: "multi4in1:STM32F1:multistm32f103c8:debug_option=none"
name: "STM32F103 CC2500 (64KB)"
release: "stm32f103-cc2500-64k"
- board: "multi4in1:STM32F1:multistm32f103cb:debug_option=none"
name: "STM32F103 CC2500 (128KB)"
release: "stm32f103-cc2500-128k"
- board: "multi4in1:STM32F1:multistm32f103cb:debug_option=none"
name: "STM32F103 (128KB)"
release: "stm32f103-128k-4in1"
- board: "multi4in1:STM32F1:multistm32f103cb:debug_option=native"
name: "STM32F103 (128KB, USB Debug)"
release: "stm32f103-128k-usb-debug"
- board: "multi4in1:STM32F1:multistm32f103cb:debug_option=ftdi"
name: "STM32F103 (128KB, Serial Debug)"
release: "stm32f103-128k-serial-debug"
- board: "multi4in1:STM32F1:multistm32f103cb:debug_option=none"
name: "STM32F103 5-in-1 (128KB)"
release: "stm32f103-128k-5in1"
- board: "multi4in1:STM32F1:multistm32f103cb:debug_option=none"
name: "T-Lite 5-in-1 (128KB)"
release: "tlite-5in1"
- board: "multi4in1:STM32F1:multi5in1t18int"
name: "T18 5-in-1 (128KB)"
release: "t18-5in1"
- board: "none"
name: "Scripts"
release: "scripts"
# Set the build name using the friendly board name
name: "[Build] ${{ matrix.name }}"
# Set the environment variables
env:
BOARD: ${{ matrix.board }}
RELEASE: ${{ matrix.release }}
steps:
- uses: actions/checkout@v4
- name: Install Arduino CLI
uses: arduino/setup-arduino-cli@v2
with:
version: "0.32.2"
- name: Prepare build environment
run: |
echo "Github Ref: $GITHUB_REF"
echo "Event name: ${{ github.event_name }}"
echo "Event action: ${{ github.event.action }}"
echo "Tag name: ${{ github.event.release.tag_name }}"
arduino-cli config init --additional-urls https://raw.githubusercontent.com/pascallanger/DIY-Multiprotocol-TX-Module-Boards/master/package_multi_4in1_board_index.json,https://raw.githubusercontent.com/pascallanger/DIY-Multiprotocol-TX-Module-Boards/devel/source/package_multi_4in1_board_devel_index.json
arduino-cli core update-index
if [[ "$BOARD" =~ ":avr:" ]]; then
arduino-cli core install arduino:avr;
fi
if [[ "$BOARD" =~ "multi4in1-devel:avr" ]]; then
arduino-cli core install multi4in1-devel:avr
elif [[ "$BOARD" =~ "multi4in1:avr" ]]; then
arduino-cli core install multi4in1:avr
fi
if [[ "$BOARD" =~ "multi4in1-devel:STM32F1:" ]]; then
arduino-cli core install multi4in1-devel:STM32F1
elif [[ "$BOARD" =~ "multi4in1:STM32F1:" ]]; then
arduino-cli core install multi4in1:STM32F1
fi
chmod +x ${GITHUB_WORKSPACE}/buildroot/bin/*
echo "${GITHUB_WORKSPACE}/buildroot/bin" >> $GITHUB_PATH
mkdir ./build
mkdir ./binaries
- name: Configure MULTI-Module firmware options
run: |
# Load the build functions
source ./buildroot/bin/buildFunctions;
# Get the version
getMultiVersion
echo "MULTI_VERSION=$(echo $MULTI_VERSION)" >> $GITHUB_ENV
# Get all the protocols for this board
getAllProtocols
echo "A7105_PROTOCOLS=$(echo $A7105_PROTOCOLS)" >> $GITHUB_ENV
echo "CC2500_PROTOCOLS=$(echo $CC2500_PROTOCOLS)" >> $GITHUB_ENV
echo "CYRF6936_PROTOCOLS=$(echo $CYRF6936_PROTOCOLS)" >> $GITHUB_ENV
echo "NRF24L01_PROTOCOLS=$(echo $NRF24L01_PROTOCOLS)" >> $GITHUB_ENV
echo "SX1276_PROTOCOLS=$(echo $SX1276_PROTOCOLS)" >> $GITHUB_ENV
echo "CCNRF_INO_PROTOCOLS=$(echo $CCNRF_INO_PROTOCOLS)" >> $GITHUB_ENV
echo "ALL_PROTOCOLS=$(echo $ALL_PROTOCOLS)" >> $GITHUB_ENV
# Disable CHECK_FOR_BOOTLOADER when not needed
if [[ "$BOARD" =~ ":avr:multiatmega328p:bootloader=none" ]]; then
opt_disable CHECK_FOR_BOOTLOADER;
fi
- name: Save default firmware configuration
run: |
cat Multiprotocol/_Config.h
cp Multiprotocol/_Config.h ./_Config.h.bak
- name: Build release files
run: |
source ./buildroot/bin/buildFunctions;
@@ -189,16 +336,43 @@ jobs:
echo "HAVE_FILES=false" >> $GITHUB_ENV
fi
- name: Deploy files to release
if: github.event_name == 'release' && github.event.action == 'created' && env.HAVE_FILES == 'true'
uses: AButler/upload-release-assets@v2.0
with:
files: './binaries/*'
repo-token: ${{ secrets.GITHUB_TOKEN }}
- name: 'Upload Artifacts'
if: env.HAVE_FILES == 'true'
uses: actions/upload-artifact@v3
uses: actions/upload-artifact/@v4
with:
name: multi-${{ matrix.release }}
path: ./binaries/
deploy:
name: "[Deploy] Attach Build Artifacts"
runs-on: ubuntu-latest
needs: [test, build]
steps:
- name: Combine and upload build artifacts
uses: actions/upload-artifact/merge@v4
with:
name: multi-test-build
path: ./binaries/
pattern: multi-*
delete-merged: true
retention-days: 90
release:
name: "[Release] Publish Files to Release"
if: github.event_name == 'release' && github.event.action == 'created'
runs-on: ubuntu-latest
needs: deploy
steps:
- name: Download artifacts
uses: actions/download-artifact@v4
with:
name: multi-test-build
path: ./artifacts/
- name: Display downloaded artifacts
run: ls -R ./artifacts/
- name: Deploy artifacts to release
uses: AButler/upload-release-assets@v3.0
with:
files: './artifacts/*'
repo-token: ${{ secrets.GITHUB_TOKEN }}

View File

@@ -1,549 +0,0 @@
local toolName = "TNS|DSM Forward Prog v0.54 (Text B&W) |TNE"
local VERSION = "v0.54"
---- #########################################################################
---- # #
---- # Copyright (C) OpenTX #
-----# #
---- # License GPLv2: http://www.gnu.org/licenses/gpl-2.0.html #
---- # #
---- # This program is free software; you can redistribute it and/or modify #
---- # it under the terms of the GNU General Public License version 2 as #
---- # published by the Free Software Foundation. #
---- # #
---- # This program is distributed in the hope that it will be useful #
---- # but WITHOUT ANY WARRANTY; without even the implied warranty of #
---- # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the #
---- # GNU General Public License for more details. #
---- # #
---- #########################################################################
------------------------------------------------------------------------------
-- This script library is a rewrite of the original DSM forward programming Lua
-- Script. The goal is to make it easier to understand, mantain, and to
-- separate the GUI from the DSM Forward programming engine/logic
-- in this way, GUIs can evolve independent. OpenTX Gui, EdgeTx GUI, Small Radios, etc.
-- Code is based on the code/work by: Pascal Langer (Author of the Multi-Module)
-- Rewrite/Enhancements By: Francisco Arzu
------------------------------------------------------------------------------
local SIMULATION_ON = false -- FALSE: don't show simulation menu (DEFAULT), TRUE: show simulation menu
local DEBUG_ON = 1 -- 0=NO DEBUG, 1=HIGH LEVEL 2=LOW LEVEL (Debug logged into the /LOGS/dsm.log)
local DEBUG_ON_LCD = false -- Interactive Information on LCD of Menu data from RX
local DSMLIB_PATH = "/SCRIPTS/TOOLS/DSMLIB/"
local dsmLib = assert(loadScript(DSMLIB_PATH.."DsmSetupLib.lua"), "Not-Found: DSMLIB/DsmSetupLib.lua")(DEBUG_ON,SIMULATION_ON)
local PHASE = dsmLib.PHASE
local LINE_TYPE = dsmLib.LINE_TYPE
local DISP_ATTR = dsmLib.DISP_ATTR
local DSM_Context = dsmLib.DSM_Context
local IS_EDGETX = false -- DEFAULT until Init changed it
local LCD_W_USABLE = LCD_W-10
-- X for Menu Lines
local LCD_X_LINE_MENU = 10
-- X offsets for (Title: [Value] debugInfo) lines
local LCD_X_LINE_TITLE = 10
local LCD_X_LINE_VALUE = 230
local LCD_X_LINE_DEBUG = 390
-- Line Height: make it smaller debugging info tp LCD (some space buttom)
local LCD_Y_LINE_HEIGHT = (DEBUG_ON_LCD and 23) or 27 -- if DEBUG 23 else 27
-- Y offsets
local LCD_Y_MENU_TITLE = 20
-- Y offet
local LCD_Y_LINE_FIRST = LCD_Y_MENU_TITLE + 30
local LCD_Y_LOWER_BUTTONS = LCD_Y_LINE_FIRST + 7 * LCD_Y_LINE_HEIGHT
local LCD_W_BUTTONS = 47
local LCD_H_BUTTONS = 25
local LCD_X_RIGHT_BUTTONS = LCD_W - LCD_W_BUTTONS - 5
local TEXT_SIZE = 0 -- NORMAL
local lastRefresh=0 -- Last time the screen was refreshed
local REFRESH_GUI_MS = 500/10 -- 500ms.. Screen Refresh Rate.. to not use unneded CPU time (in 10ms units to be compatible with getTime())
local originalValue = nil
local warningScreenON = true
------------------------------------------------------------------------------------------------------------
local function GUI_SwitchToRX()
-- Force to refresh DSM Info in MODEL (dsmLib pointing to the setup Script)
local dsmChannelInfo, description = dsmLib.CreateDSMPortChannelInfo()
dsmLib.ReleaseConnection()
dsmLib.LOG_close()
SIMULATION_ON = false
dsmLib = assert(loadScript(DSMLIB_PATH.."DsmFwPrgLib.lua"),"Not-Found: DSMLIB/DsmFwPrgLib.lua")(DEBUG_ON)
DSM_Context = dsmLib.DSM_Context
dsmLib.Init(toolName) -- Initialize Library
dsmLib.SetDSMChannelInfo(dsmChannelInfo, description) -- send the dsmChannelInfo to new instance library
dsmLib.StartConnection()
DSM_Context.Refresh_Display = true
end
local function GUI_SwitchToSIM()
dsmLib.ReleaseConnection()
dsmLib.LOG_close()
SIMULATION_ON = true
dsmLib = assert(loadScript(DSMLIB_PATH.."DsmFwPrgSIMLib.lua"), "Not-Found: DSMLIB/DsmFwPrgSIMLib.lua")(DEBUG_ON)
DSM_Context = dsmLib.DSM_Context
dsmLib.Init(toolName) -- Initialize Library
dsmLib.StartConnection()
DSM_Context.Refresh_Display = true
end
local function openTx_lcd_sizeText(s)
return string.len(s)*5
end
local function GUI_Diplay_Button(x,y,w,h,text,selected)
local attr = (selected) and INVERS or 0 -- INVERS if line Selected
if (TEXT_SIZE~=SMLSIZE) then
lcd.drawText(x+5,y+2, text, attr + TEXT_SIZE)
lcd.drawRectangle(x, y, w, h, LINE_COLOR)
else -- SMALL Screen
lcd.drawText(x,y, text, attr + TEXT_SIZE)
end
end
local function GUI_Display_Menu(menu)
local ctx = DSM_Context
local w= LCD_W_USABLE - LCD_W_BUTTONS - 10 -- usable Width for the Menu/Lines
-- Center Header
local tw = openTx_lcd_sizeText(menu.Text)
local x = w/2 - tw/2 -- Center of Screen - Center of Text
if (x < 0) then x=0 end -- in case text is too wide
local bold = BOLD
lcd.drawText(x,LCD_Y_MENU_TITLE,menu.Text,bold + TEXT_SIZE)
-- Back
if menu.BackId ~= 0 then
GUI_Diplay_Button(LCD_X_RIGHT_BUTTONS,LCD_Y_MENU_TITLE,LCD_W_BUTTONS,LCD_H_BUTTONS,"Back",ctx.SelLine == dsmLib.BACK_BUTTON)
end
-- Next ?
if menu.NextId ~= 0 then
GUI_Diplay_Button(LCD_X_RIGHT_BUTTONS,LCD_Y_LOWER_BUTTONS,LCD_W_BUTTONS,LCD_H_BUTTONS,"Next",ctx.SelLine == dsmLib.NEXT_BUTTON)
end
-- Prev?
if menu.PrevId ~= 0 then
GUI_Diplay_Button(0,LCD_Y_LOWER_BUTTONS,LCD_W_BUTTONS,LCD_H_BUTTONS,"Prev",ctx.SelLine == dsmLib.PREV_BUTTON)
end
-- Debug into LCD
if (DEBUG_ON_LCD) then lcd.drawText(0,LCD_Y_MENU_TITLE,dsmLib.phase2String(ctx.Phase),TEXT_SIZE + WARNING_COLOR) end -- Phase we are in
if (DEBUG_ON_LCD) then lcd.drawText(LCD_X_LINE_MENU,240,dsmLib.menu2String(menu),TEXT_SIZE + WARNING_COLOR) end -- Menu Info
end
local function GUI_Display_Line_Menu(x,y,w,h,line,selected)
local attr = (selected and INVERS) or 0 -- INVERS if line Selected
local bold = 0
local text = line.Text
if dsmLib.isSelectableLine(line) then
-- Menu Line
text = text .. " >"
else -- SubHeaders and plain text lines
bold = (dsmLib.isDisplayAttr(line.TextAttr,DISP_ATTR._BOLD) and BOLD) or 0
if dsmLib.isDisplayAttr(line.TextAttr,DISP_ATTR._RIGHT) then -- Right Align???
local tw = openTx_lcd_sizeText(line.Text)+4
x = LCD_X_LINE_VALUE - tw -- Right
elseif dsmLib.isDisplayAttr(line.TextAttr,DISP_ATTR._CENTER) then -- Center??
local tw = openTx_lcd_sizeText(line.Text)
x = x + (LCD_X_LINE_VALUE - LCD_X_LINE_MENU)/2 - tw/2 -- Center - 1/2 Text
end
if (x < 0) then x=0 end -- in case text is too wide
end
lcd.drawText(x,y, text, attr + bold + TEXT_SIZE)
end
------------------------------------------------------------------------------------------------------------
local function GUI_Display_Line_Value(lineNum, line, value, selected, editing)
local bold = 0
local y = LCD_Y_LINE_FIRST+(LCD_Y_LINE_HEIGHT*lineNum)
local x = LCD_X_LINE_TITLE
---------- NAME Part
local header = line.Text
-- ONLY do this for Flight Mode (Right Align or Centered)
if (dsmLib.isFlightModeLine(line)) then
-- Display Header + Value together
header = dsmLib.GetFlightModeValue(line)
-- Flight mode display attributes
bold = (dsmLib.isDisplayAttr(line.TextAttr,DISP_ATTR._BOLD) and BOLD) or 0
if dsmLib.isDisplayAttr(line.TextAttr,DISP_ATTR._RIGHT) then -- Right Align
local tw = openTx_lcd_sizeText(header)+4
x = LCD_X_LINE_VALUE - tw -- Right
elseif dsmLib.isDisplayAttr(line.TextAttr,DISP_ATTR._CENTER) then -- Centered
local tw = openTx_lcd_sizeText(header)
x = x + (LCD_X_LINE_VALUE - LCD_X_LINE_TITLE)/2 - tw/2 -- Center - 1/2 Text
end
if (x < 0) then x=0 end -- in case text is too wide
else
-- No Flight Mode, no effects here
header = header .. ":"
end
lcd.drawText(x, y, header, bold + TEXT_SIZE) -- display Line Header
--------- VALUE PART, Skip for Flight Mode since already show the value
if not dsmLib.isFlightModeLine(line) then
local attrib = 0
if selected then
attrib = INVERS
if editing then -- blink editing entry
attrib = attrib + BLINK
value = "[" .. value .. "]"
end
end
value = value .. " " .. (line.Format or "") -- Append % if needed
lcd.drawText(LCD_X_LINE_VALUE,y, value, attrib + TEXT_SIZE) -- display value
end
if (DEBUG_ON_LCD) then lcd.drawText(LCD_X_LINE_DEBUG,y, line.MinMaxDebug or "", TEXT_SIZE + WARNING_COLOR) end -- display debug
end
------------------------------------------------------------------------------------------------------------
local function GUI_ShowBitmap(x,y,imgData)
-- imgData format "bitmap.png|alt message"
local f = string.gmatch(imgData, '([^%|]+)') -- Iterator over values split by '|'
local imgName, imgMsg = f(), f()
if (LCD_W > 128) then
lcd.drawText(x, y, imgMsg or "", TEXT_SIZE) -- Alternate Image MSG
else
local f = string.gmatch(imgMsg, '([^%:]+)') -- Iterator over values split by ':'
local msg1,msg2 = f(), f()
lcd.drawText(x, y, (msg1 or "")..":", TEXT_SIZE) -- Alternate Image MSG
lcd.drawText(x, y+10, msg2 or "", TEXT_SIZE) -- Alternate Image MSG
end
-- NO IMAGES in Text B&W
--local imgPath = IMAGE_PATH .. (imgName or "")
--local bitmap = Bitmap.open(imgPath)
--if (bitmap~=nil) then
-- lcd.drawBitmap(bitmap, x,y+20)
--end
end
------------------------------------------------------------------------------------------------------------
local function GUI_Display()
local ctx = DSM_Context
lcd.clear()
local header = "DSM Fwrd Programming "
if (TEXT_SIZE==SMLSIZE) then -- Small Screen no title
header = ""
end
if ctx.Phase ~= PHASE.RX_VERSION then
header = header .. ctx.RX.Name.." v"..ctx.RX.Version
end
--Draw title
if (TEXT_SIZE~=SMLSIZE) then -- ignore tool title small size screens
lcd.drawFilledRectangle(0, 0, LCD_W, 20, TITLE_BGCOLOR)
lcd.drawText(5, 0, header, MENU_TITLE_COLOR + TEXT_SIZE)
else -- Small Screen
lcd.drawText(20, LCD_Y_LOWER_BUTTONS+1, header, TEXT_SIZE)
end
--Draw RX Menu
if ctx.Phase == PHASE.RX_VERSION then
if (ctx.isReset) then
lcd.drawText(LCD_X_LINE_TITLE,50,dsmLib.Get_Text(0x301), BLINK + TEXT_SIZE) -- Resetting
else
lcd.drawText(LCD_X_LINE_TITLE,50,dsmLib.Get_Text(0x300), BLINK + TEXT_SIZE) -- Waiting for RX Version
end
else
local menu = ctx.Menu
if menu.Text ~= nil then
GUI_Display_Menu(menu)
for i = 0, dsmLib.MAX_MENU_LINES do
local line = ctx.MenuLines[i]
if i == ctx.SelLine then
-- DEBUG: Display Selected Line info for ON SCREEN Debugging
if (DEBUG_ON_LCD) then lcd.drawText(LCD_X_LINE_TITLE,255,dsmLib.menuLine2String(line),TEXT_SIZE + WARNING_COLOR) end
end
if line ~= nil and line.Type ~= 0 then
if line.Type == LINE_TYPE.MENU then
-- Menu Line
GUI_Display_Line_Menu(LCD_X_LINE_MENU,LCD_Y_LINE_FIRST+(LCD_Y_LINE_HEIGHT*i), 350, LCD_Y_LINE_HEIGHT, line, i == ctx.SelLine)
else
-- list/value line
local value = line.Val
if line.Val ~= nil then
if dsmLib.isListLine(line) then -- for Lists of Strings, get the text
value = dsmLib.Get_List_Text(line.Val + line.TextStart) -- TextStart is the initial offset for text
local imgData = dsmLib.Get_List_Text_Img(line.Val + line.TextStart) -- Complentary IMAGE for this value to Display??
if (imgData and i == ctx.SelLine) then -- Optional Image and Msg for selected value
GUI_ShowBitmap(LCD_X_LINE_TITLE,LCD_Y_LINE_FIRST+LCD_Y_LINE_HEIGHT, imgData)
end
end
GUI_Display_Line_Value(i, line, value, i == ctx.SelLine, i == ctx.EditLine)
end
end -- if ~MENU
end -- if Line[i]~=nil
end -- for
end
end
end
-------------------------------------------------------------------------------------------------------------
local function GUI_RotEncVal(dir) -- return encoder speed to inc or dec values
local inc = 0
local Speed = getRotEncSpeed()
if Speed == ROTENC_MIDSPEED then
inc = (5 * dir)
elseif Speed == ROTENC_HIGHSPEED then
inc = (15 * dir)
else
inc = dir
end
return inc
end
------------------------------------------------------------------------------------------------------------
local function GUI_HandleEvent(event, touchState)
local ctx = DSM_Context
local menu = ctx.Menu
local menuLines = ctx.MenuLines
if event == EVT_VIRTUAL_EXIT then
ctx.Refresh_Display=true
if (DEBUG_ON) then dsmLib.LOG_write("%s: EVT_VIRTUAL_EXIT\n",dsmLib.phase2String(ctx.Phase)) end
if ctx.Phase == PHASE.RX_VERSION then
dsmLib.ReleaseConnection()
else
if ctx.isEditing() then -- Editing a Line, need to restore original value
ctx.MenuLines[ctx.EditLine].Val = originalValue
dsmLib.Value_Write_Validate(menuLines[ctx.EditLine])
else
dsmLib.ChangePhase(PHASE.EXIT) -- Exit
end
end
return
end
if event == EVT_VIRTUAL_NEXT then
ctx.Refresh_Display=true
if (DEBUG_ON) then dsmLib.LOG_write("%s: EVT_VIRTUAL_NEXT\n",dsmLib.phase2String(ctx.Phase)) end
if ctx.isEditing() then -- Editing a Line, need to inc the value
local line=ctx.MenuLines[ctx.EditLine]
dsmLib.Value_Add(line, GUI_RotEncVal(1))
else -- not editing, move selected line to NEXT
dsmLib.MoveSelectionLine(1)
end
return
end
if event == EVT_VIRTUAL_PREV then
ctx.Refresh_Display=true
if (DEBUG_ON) then dsmLib.LOG_write("%s: EVT_VIRTUAL_PREV\n",dsmLib.phase2String(ctx.Phase)) end
if ctx.isEditing() then -- Editiing a line, need to dec the value
local line=ctx.MenuLines[ctx.EditLine]
dsmLib.Value_Add(line, GUI_RotEncVal(-1))
else -- not editing, move selected line to PREV
dsmLib.MoveSelectionLine(-1)
end
return
end
if event == EVT_VIRTUAL_ENTER_LONG then
ctx.Refresh_Display=true
if (DEBUG_ON) then dsmLib.LOG_write("%s: EVT_VIRTUAL_ENTER_LONG\n",dsmLib.phase2String(ctx.Phase)) end
if ctx.isEditing() then
-- reset the value to default
dsmLib.Value_Default( menuLines[ctx.EditLine]) -- Update RX value as needed
end
return
end
if event == EVT_VIRTUAL_ENTER then
ctx.Refresh_Display=true
if (DEBUG_ON) then dsmLib.LOG_write("%s: EVT_VIRTUAL_ENTER\n",dsmLib.phase2String(ctx.Phase)) end
if ctx.SelLine == dsmLib.BACK_BUTTON then -- Back
dsmLib.GotoMenu(menu.BackId,0x80)
elseif ctx.SelLine == dsmLib.NEXT_BUTTON then -- Next
dsmLib.GotoMenu(menu.NextId,0x82)
elseif ctx.SelLine == dsmLib.PREV_BUTTON then -- Prev
dsmLib.GotoMenu(menu.PrevId,0x81)
elseif menuLines[ctx.SelLine].ValId ~= 0 then
if menuLines[ctx.SelLine].Type == LINE_TYPE.MENU then -- Next menu exist
if (menuLines[ctx.SelLine].ValId==0xFFF1) then
-- SPECIAL Simulation menu to Simulator
GUI_SwitchToSIM()
elseif (menuLines[ctx.SelLine].ValId==0xFFF2) then
-- SPECIAL Simulation menu to go to RX
GUI_SwitchToRX()
else
dsmLib.GotoMenu(menuLines[ctx.SelLine].ValId, ctx.SelLine) -- ValId is the MenuId to navigate to
end
else
-- Editing a Line????
if ctx.isEditing() then
-- Change the Value and exit edit
dsmLib.Value_Write_Validate(menuLines[ctx.SelLine])
else
-- enter Edit the current line
ctx.EditLine = ctx.SelLine
originalValue = menuLines[ctx.SelLine].Val
dsmLib.ChangePhase(PHASE.VALUE_CHANGING_WAIT)
end
end
end
end
end
local function init_screen_pos()
-- osName in OpenTX is nil, otherwise is EDGETX
local ver, radio, maj, minor, rev, osname = getVersion()
if (osname==nil) then osname = "OpenTX" end -- OTX 2.3.14 and below returns nil
IS_EDGETX = string.sub(osname,1,1) =='E'
if LCD_W == 480 then -- TX16
-- use defaults in the script header
elseif LCD_W == 128 then --TX12 (128x64) -- Still needs some work on the vertical
DEBUG_ON_LCD = false -- no space for this
TEXT_SIZE = SMLSIZE
LCD_W_USABLE = 128
LCD_W_BUTTONS = 16
LCD_H_BUTTONS = 10
LCD_X_RIGHT_BUTTONS = 128 - LCD_W_BUTTONS - 3
LCD_X_LINE_MENU = 0
-- X offsets for (Title: [Value] debugInfo) lines
LCD_X_LINE_TITLE = 0
LCD_X_LINE_VALUE = 75
LCD_X_LINE_DEBUG = 110
LCD_Y_LINE_HEIGHT = 7
LCD_Y_MENU_TITLE = 0
LCD_Y_LINE_FIRST = LCD_Y_MENU_TITLE + 8
LCD_Y_LOWER_BUTTONS = LCD_Y_LINE_FIRST + (7 * LCD_Y_LINE_HEIGHT)
end
end
local function GUI_Warning(event)
lcd.clear()
local header = "DSM Forward Programming "..VERSION.." "
--Draw title
if (LCD_W > 128) then
lcd.drawFilledRectangle(0, 0, LCD_W, 17, TITLE_BGCOLOR)
lcd.drawText(5, 0, header, MENU_TITLE_COLOR + TEXT_SIZE)
lcd.drawText(100,20,"INFO", BOLD)
lcd.drawText(5,40,"DSM Forward programing shares TX Servo/Output settings", TEXT_SIZE)
lcd.drawText(5,60,"with the RX. Make sure you setup your plane first in ", TEXT_SIZE)
lcd.drawText(5,80,"the TX before your start programming your RX.", TEXT_SIZE)
lcd.drawText(5,100,"Wing & Tail type can be configured using this tool.", TEXT_SIZE)
lcd.drawText(5,150,"TX Servo settings are sent to the RX during 'Initial Setup'", TEXT_SIZE)
lcd.drawText(5,170,"as well as when using RX menu 'Relearn Servo Settings'", TEXT_SIZE)
lcd.drawText(5,200,"ALWAYS TEST Gyro reactions after this conditions before flying.", BOLD+TEXT_SIZE)
lcd.drawText(100,250," OK ", INVERS + BOLD + TEXT_SIZE)
else
lcd.drawText(0,15,"Make sure you setup your plane", TEXT_SIZE)
lcd.drawText(0,22,"first. Wing and Tail type.", TEXT_SIZE)
lcd.drawText(0,30,"TX Servo settings are sent to ", TEXT_SIZE)
lcd.drawText(0,37,"the RX during 'Initial Setup' and ", TEXT_SIZE)
lcd.drawText(0,45,"ALWAYS TEST Gyro reactions", TEXT_SIZE)
lcd.drawText(0,52,"before flying!!!", TEXT_SIZE)
lcd.drawText(10,0," OK ", INVERS + BOLD + TEXT_SIZE)
end
if event == EVT_VIRTUAL_EXIT or event == EVT_VIRTUAL_ENTER then
warningScreenON = false
end
return 0
end
------------------------------------------------------------------------------------------------------------
-- Init
local function DSM_Init()
init_screen_pos()
dsmLib.Init(toolName) -- Initialize Library
return dsmLib.StartConnection()
end
------------------------------------------------------------------------------------------------------------
-- Main
local function DSM_Run(event)
local ctx = DSM_Context
if event == nil then
error("Cannot be run as a model script!")
dsmLib.LOG_close()
return 2
end
if (warningScreenON) then
return GUI_Warning(event)
end
GUI_HandleEvent(event)
dsmLib.Send_Receive() -- Handle Send and Receive DSM Forward Programming Messages
local refreshInterval = REFRESH_GUI_MS
-- When using LCD BLINK attribute, we need faster refresh for BLINK to SHOW on LCD
if (ctx.EditLine or (ctx.Phase == PHASE.RX_VERSION)) then -- Editing or Requesting RX Version?
ctx.Refresh_Display=true
refreshInterval = 20 -- 200ms
end
if (not IS_EDGETX) then -- OPENTX NEEDS REFRESH ON EVERY CYCLE
GUI_Display()
-- Refresh display only if needed and no faster than 500ms, utilize more CPU to speedup DSM communications
elseif (ctx.Refresh_Display and (getTime()-lastRefresh) > refreshInterval) then --300ms from last refresh
GUI_Display()
ctx.Refresh_Display=false
lastRefresh=getTime()
end
if ctx.Phase == PHASE.EXIT_DONE then
dsmLib.LOG_close()
return 2
else
return 0
end
end
return { init=DSM_Init, run=DSM_Run }

View File

@@ -1,708 +0,0 @@
local toolName = "TNS|DSM Forward Prog v0.54 (Color+Touch) |TNE"
local VERSION = "v0.54"
---- #########################################################################
---- # #
---- # Copyright (C) OpenTX #
-----# #
---- # License GPLv2: http://www.gnu.org/licenses/gpl-2.0.html #
---- # #
---- # This program is free software; you can redistribute it and/or modify #
---- # it under the terms of the GNU General Public License version 2 as #
---- # published by the Free Software Foundation. #
---- # #
---- # This program is distributed in the hope that it will be useful #
---- # but WITHOUT ANY WARRANTY; without even the implied warranty of #
---- # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the #
---- # GNU General Public License for more details. #
---- # #
---- #########################################################################
------------------------------------------------------------------------------
-- This script library is a rewrite of the original DSM forward programming Lua
-- Script. The goal is to make it easier to understand, mantain, and to
-- separate the GUI from the DSM Forward programming engine/logic
-- in this way, GUIs can evolve independent. OpenTX Gui, EdgeTx GUI, Small Radios, etc.
-- Code is based on the code/work by: Pascal Langer (Author of the Multi-Module)
-- Rewrite/Enhancements By: Francisco Arzu
------------------------------------------------------------------------------
local SIMULATION_ON = false -- FALSE:don't show simulation memu (DEFAULT), TRUE: show simulation menu
local DEBUG_ON = 1 -- 0=NO DEBUG, 1=HIGH LEVEL 2=LOW LEVEL (Debug logged into the /LOGS/dsm.log)
local DEBUG_ON_LCD = false -- Interactive Information on LCD of Menu data from RX
local USE_SPECKTRUM_COLORS = true -- true: Use spectrum colors, false: use theme colors (default on OpenTX)
local DSMLIB_PATH = "/SCRIPTS/TOOLS/DSMLIB/"
local IMAGE_PATH = DSMLIB_PATH .. "img/"
local dsmLib = assert(loadScript(DSMLIB_PATH.."DsmSetupLib.lua"), "Not-Found: DSMLIB/DsmSetupLib.lua")(DEBUG_ON,SIMULATION_ON)
local PHASE = dsmLib.PHASE
local LINE_TYPE = dsmLib.LINE_TYPE
local DISP_ATTR = dsmLib.DISP_ATTR
local DSM_Context = dsmLib.DSM_Context
local lastRefresh=0 -- Last time the screen was refreshed
local REFRESH_GUI_MS = 300/10 -- 300ms.. Screen Refresh Rate.. to not waste CPU time (in 10ms units to be compatible with getTime())
local originalValue = nil
local touchButtonArea = {}
local EDIT_BUTTON = { DEFAULT=1001, DEC_10=1002, DEC_1=1003, INC_1=1004, INC_10=5, OK=1006, ESC=1007 }
local IS_EDGETX = false -- DEFAULT until Init changed it
local LCD_Y_MENU_TITLE = 20
local LCD_W_MENU_TITLE = LCD_W-100
local LCD_X_LINE_MENU = 30
local LCD_W_LINE_MENU = 350
local LCD_X_LINE_TITLE = 30
local LCD_X_LINE_VALUE = 230
local LCD_X_LINE_DEBUG = 390
local LCD_Y_LINE_START = LCD_Y_MENU_TITLE + 30
local LCD_Y_LINE_HEIGHT = (DEBUG_ON_LCD and 23) or 27 -- if DEBUG 23 else 27
local LCD_Y_LOWER_BUTTONS = LCD_Y_LINE_START + 3 + (7 * LCD_Y_LINE_HEIGHT)
-- TOOL BG COLOR
local LCD_TOOL_BGCOLOR = TEXT_BGCOLOR
-- TOOL HEADER
local LCD_TOOL_HDR_COLOR = MENU_TITLE_COLOR
local LCD_TOOL_HDR_BGCOLOR = TITLE_BGCOLOR
-- MENU HEADER
local LCD_MENU_COLOR = MENU_TITLE_COLOR
local LCD_MENU_BGCOLOR = MENU_TITLE_BGCOLOR
-- LINE SELECTED
local LCD_SELECTED_COLOR = TEXT_INVERTED_COLOR
local LCD_SELECTED_BGCOLOR = TEXT_INVERTED_BGCOLOR
local LCD_EDIT_BGCOLOR = MENU_TITLE_BGCOLOR -- WARNING_COLOR
-- NORMAL TEXT
local LCD_NORMAL_COLOR = TEXT_COLOR
local LCD_DISABLE_COLOR = TEXT_DISABLE_COLOR
local LCD_DEBUG_COLOR = LINE_COLOR
-- NORMAL BOX FRAME COLOR
local LCD_BOX_COLOR = TEXT_DISABLE_COLOR
local warningScreenON = true
--------------------- lcd.sizeText replacement -------------------------------------------------
-- EdgeTx dont have lcd.sizeText, so we do an equivalent one using the string length and 5px per character
local function my_lcd_sizeText(s)
-- return: If IS_EDGETX then lcd.sizeText() else string.len()
return (IS_EDGETX and lcd.sizeText(s)) or (string.len(s)*10)
end
local function GUI_SwitchToRX()
-- Force to refresh DSM Info in MODEL (dsmLib pointing to the setup Script)
local dsmChannelInfo, description = dsmLib.CreateDSMPortChannelInfo()
dsmLib.ReleaseConnection()
dsmLib.LOG_close()
SIMULATION_ON = false
dsmLib = assert(loadScript(DSMLIB_PATH.."DsmFwPrgLib.lua"),"Not-Found: DSMLIB/DsmFwPrgLib.lua")(DEBUG_ON)
DSM_Context = dsmLib.DSM_Context
dsmLib.Init(toolName) -- Initialize Library
dsmLib.SetDSMChannelInfo(dsmChannelInfo, description) -- send the dsmChannelInfo to new instance library
dsmLib.StartConnection()
DSM_Context.Refresh_Display = true
end
local function GUI_SwitchToSIM()
dsmLib.ReleaseConnection()
dsmLib.LOG_close()
SIMULATION_ON = true
dsmLib = assert(loadScript(DSMLIB_PATH.."DsmFwPrgSIMLib.lua"), "Not-Found: DSMLIB/DsmFwPrgSIMLib.lua")(DEBUG_ON)
DSM_Context = dsmLib.DSM_Context
dsmLib.Init(toolName) -- Initialize Library
dsmLib.StartConnection()
DSM_Context.Refresh_Display = true
end
--------------------- Toucch Button Helpers ------------------------------------------------------------
local function GUI_addTouchButton(x,y,w,h,line)
-- Add new button info to end of the array
touchButtonArea[#touchButtonArea+1] = {x=x, y=y, w=w, h=h, line=line}
end
local function GUI_getTouchButton(x,y)
for i = 1, #touchButtonArea do
local button = touchButtonArea[i]
-- is the coordinate inside the button area??
if (x >= button.x and x <= (button.x+button.w) and y >= button.y and (y <= button.y+button.h)) then
return button.line
end
end
return nil
end
local function GUI_clearTouchButtons()
touchButtonArea = {}
end
---------- Return Color to display Menu Lines ----------------------------------------------------------------
local function GUI_GetTextColor(lineNum)
local ctx = DSM_Context
local txtColor = LCD_NORMAL_COLOR
-- Gray Out any other line except the one been edited
if (ctx.isEditing() and ctx.EditLine~=lineNum) then txtColor=LCD_DISABLE_COLOR end
return txtColor
end
local function GUI_GetFrameColor(lineNum) -- Frame Color for Value/Menu Boxes
local ctx = DSM_Context
local txtColor = LCD_BOX_COLOR
-- Gray Out any other line except the one been edited
if (ctx.EditLine~=lineNum) then txtColor=LCD_DISABLE_COLOR end
return txtColor
end
--------------------------------------------------------------------------------------------------------
-- Display Text inside a Rectangle. Inv: true means solid rectangle, false=only perimeter
local function GUI_Display_Boxed_Text(lineNum,x,y,w,h,text,inv, isNumber)
local ctx = DSM_Context
local txtColor = GUI_GetTextColor(lineNum)
local frameColor = GUI_GetFrameColor(lineNum)
-- If editing this lineNum, chose EDIT Color, else SELECTED Color
local selectedBGColor = (ctx.EditLine==lineNum and LCD_EDIT_BGCOLOR) or LCD_SELECTED_BGCOLOR
if (inv) then
txtColor = LCD_SELECTED_COLOR
lcd.drawFilledRectangle(x-5, y-2, w, h, selectedBGColor)
else
lcd.drawRectangle(x-5, y-2, w, h, frameColor)
end
if (isNumber) then
lcd.drawNumber(x+w-10 , y, text, txtColor + RIGHT)
else
lcd.drawText(x , y, text, txtColor)
end
end
------ Display Pre/Next/Back buttons
local function GUI_Diplay_Button(x,y,w,h,text,selected)
GUI_Display_Boxed_Text(-1,x,y,w,h,text,selected, false)
end
------ Display MENU type of lines (Navigation, SubHeaders, and plain text comments)
local function GUI_Display_Line_Menu(lineNum,line,selected)
-- Menu Lines can be navidation to other Menus (if Selectable)
-- Or SubHeaders or Messages
local txtColor = GUI_GetTextColor(lineNum)
local y = LCD_Y_LINE_START+(LCD_Y_LINE_HEIGHT*lineNum)
local x = LCD_X_LINE_MENU
if dsmLib.isSelectableLine(line) then -- Draw Selectable Menus in Boxes
GUI_Display_Boxed_Text(lineNum,x, y, LCD_W_LINE_MENU, LCD_Y_LINE_HEIGHT, line.Text,selected, false)
GUI_addTouchButton(x, y, LCD_W_LINE_MENU, LCD_Y_LINE_HEIGHT,lineNum)
else
-- Non Selectable Menu Lines, plain text
-- Can be use for sub headers or just regular text lines (like warnings)
local bold = (dsmLib.isDisplayAttr(line.TextAttr,DISP_ATTR._BOLD) and BOLD) or 0
if dsmLib.isDisplayAttr(line.TextAttr,DISP_ATTR._RIGHT) then -- Right Align???
local tw = my_lcd_sizeText(line.Text)+4
x = LCD_X_LINE_VALUE - tw -- Right
elseif dsmLib.isDisplayAttr(line.TextAttr,DISP_ATTR._CENTER) then -- Center??
local tw = my_lcd_sizeText(line.Text)
x = x + (LCD_X_LINE_VALUE - LCD_X_LINE_MENU)/2 - tw/2 -- Center - 1/2 Text
end
lcd.drawText(x, y, line.Text, txtColor + bold)
end
end
------ Display NAME : VALUES type of lines
local function GUI_Display_Line_Value(lineNum, line, value, selected, editing)
-- This Displays Name and Value Pairs
local txtColor = GUI_GetTextColor(lineNum)
local bold = 0
local y = LCD_Y_LINE_START+(LCD_Y_LINE_HEIGHT*lineNum)
local x = LCD_X_LINE_TITLE
---------- NAME Part
local header = line.Text
-- ONLY do this for Flight Mode (Right Align or Centered)
if (dsmLib.isFlightModeLine(line)) then
-- Display Header + Value together
header = dsmLib.GetFlightModeValue(line)
-- Bold Text???
bold = (dsmLib.isDisplayAttr(line.TextAttr,DISP_ATTR._BOLD) and BOLD) or 0
if dsmLib.isDisplayAttr(line.TextAttr,DISP_ATTR._RIGHT) then -- Right Align
local tw = my_lcd_sizeText(header)+4
x = LCD_X_LINE_VALUE - tw -- Right
elseif dsmLib.isDisplayAttr(line.TextAttr,DISP_ATTR._CENTER) then -- Centered
local tw = my_lcd_sizeText(header)
x = x + (LCD_X_LINE_VALUE - LCD_X_LINE_TITLE)/2 - tw/2 -- Center - 1/2 Text
end
else
-- No Flight Mode, no effects here
header = header .. ":"
end
lcd.drawText(x, y, header, txtColor + bold) -- display Line Header
--------- VALUE PART, Skip for Flight Mode since already show the value
if not dsmLib.isFlightModeLine(line) then
if dsmLib.isSelectableLine(line) then
--if (editing) then -- Any Special color/effect when editing??
-- value = "["..value .. "]"
--end
-- Can select/edit value, Box it
local tw = math.max(my_lcd_sizeText(value)+10,45) -- Width of the Text in the lcd
GUI_Display_Boxed_Text(lineNum,LCD_X_LINE_VALUE,y,tw,LCD_Y_LINE_HEIGHT,value,selected, not dsmLib.isListLine(line))
GUI_addTouchButton(LCD_X_LINE_VALUE,y,tw,LCD_Y_LINE_HEIGHT,lineNum)
lcd.drawText(LCD_X_LINE_VALUE+tw+5, y, (line.Format or ""), txtColor + bold)
else -- Not Editable, Plain Text
lcd.drawText(LCD_X_LINE_VALUE, y, value, txtColor)
end
end
-- Debug info for line Value RANGE when Debug on LCD
if (DEBUG_ON_LCD) then lcd.drawText(LCD_X_LINE_DEBUG, y, line.MinMaxDebug or "", SMLSIZE + LCD_DEBUG_COLOR) end -- display debug Min/Max
end
local function GUI_Display_Menu(menu)
local ctx = DSM_Context
local w= LCD_W_MENU_TITLE
-- Center Header
local tw = my_lcd_sizeText(menu.Text)
local x = w/2 - tw/2 -- Center of Screen - Center of Text
lcd.drawFilledRectangle(0, LCD_Y_MENU_TITLE-2, w, LCD_Y_LINE_HEIGHT-2, LCD_MENU_BGCOLOR)
lcd.drawText(x,LCD_Y_MENU_TITLE,menu.Text, LCD_MENU_COLOR + BOLD)
-- Back Button
if menu.BackId ~= 0 then
GUI_Diplay_Button(437-5,LCD_Y_MENU_TITLE+3,47,LCD_Y_LINE_HEIGHT,"Back",ctx.SelLine == dsmLib.BACK_BUTTON)
GUI_addTouchButton(437-5,LCD_Y_MENU_TITLE+3,47,LCD_Y_LINE_HEIGHT,dsmLib.BACK_BUTTON)
end
-- Next Button
if menu.NextId ~= 0 then
GUI_Diplay_Button(437-5,LCD_Y_LOWER_BUTTONS,47,LCD_Y_LINE_HEIGHT,"Next",ctx.SelLine == dsmLib.NEXT_BUTTON)
GUI_addTouchButton(437-5,LCD_Y_LOWER_BUTTONS,47,LCD_Y_LINE_HEIGHT,dsmLib.NEXT_BUTTON)
end
-- Prev Button
if menu.PrevId ~= 0 then
GUI_Diplay_Button(10,LCD_Y_LOWER_BUTTONS,47,LCD_Y_LINE_HEIGHT,"Prev",ctx.SelLine == dsmLib.PREV_BUTTON)
GUI_addTouchButton(10,LCD_Y_LOWER_BUTTONS,47,LCD_Y_LINE_HEIGHT,dsmLib.PREV_BUTTON)
end
-- Debug on LCD, Show the menu Indo and Phase we are on
if (DEBUG_ON_LCD) then lcd.drawText(0,LCD_Y_MENU_TITLE,dsmLib.phase2String(ctx.Phase),SMLSIZE+LCD_DEBUG_COLOR) end -- Phase we are in
if (DEBUG_ON_LCD) then lcd.drawText(0,240,dsmLib.menu2String(menu),SMLSIZE+LCD_DEBUG_COLOR) end -- Menu Info
end
------------------------------------------------------------------------------------------------------------
-- Display the EDIT mode buttons when editing a value
local function GUI_Display_Edit_Buttons(line)
GUI_clearTouchButtons() -- Only this buttons can be touched
local x = 15 -- Inittial X position
local w = 55 -- Width of the buttons
local showPrev = line.Val > line.Min
local showNext = line.Val < line.Max
GUI_Diplay_Button(x,LCD_Y_LOWER_BUTTONS,w,LCD_Y_LINE_HEIGHT,"ESC",true)
GUI_addTouchButton(x,LCD_Y_LOWER_BUTTONS,w,LCD_Y_LINE_HEIGHT,EDIT_BUTTON.ESC)
x=x+w+10
GUI_Diplay_Button(x,LCD_Y_LOWER_BUTTONS,w,LCD_Y_LINE_HEIGHT," Def",true)
GUI_addTouchButton(x,LCD_Y_LOWER_BUTTONS,w,LCD_Y_LINE_HEIGHT,EDIT_BUTTON.DEFAULT)
x=x+w+10
if (not dsmLib.isListLine(line)) then
GUI_Diplay_Button(x,LCD_Y_LOWER_BUTTONS,w,LCD_Y_LINE_HEIGHT," << ",showPrev)
GUI_addTouchButton(x,LCD_Y_LOWER_BUTTONS,w,LCD_Y_LINE_HEIGHT,EDIT_BUTTON.DEC_10)
end
x=x+w+10
GUI_Diplay_Button(x,LCD_Y_LOWER_BUTTONS,w,LCD_Y_LINE_HEIGHT," <",showPrev)
GUI_addTouchButton(x,LCD_Y_LOWER_BUTTONS,w,LCD_Y_LINE_HEIGHT,EDIT_BUTTON.DEC_1)
x=x+w+10
GUI_Diplay_Button(x,LCD_Y_LOWER_BUTTONS,w,LCD_Y_LINE_HEIGHT," >",showNext)
GUI_addTouchButton(x,LCD_Y_LOWER_BUTTONS,w,LCD_Y_LINE_HEIGHT,EDIT_BUTTON.INC_1)
x=x+w+10
if (not dsmLib.isListLine(line)) then
GUI_Diplay_Button(x,LCD_Y_LOWER_BUTTONS,w,LCD_Y_LINE_HEIGHT," >>",showNext)
GUI_addTouchButton(x,LCD_Y_LOWER_BUTTONS,w,LCD_Y_LINE_HEIGHT,EDIT_BUTTON.INC_10)
end
x=x+w+10
GUI_Diplay_Button(x,LCD_Y_LOWER_BUTTONS,w,LCD_Y_LINE_HEIGHT," OK",true)
GUI_addTouchButton(x,LCD_Y_LOWER_BUTTONS,w,LCD_Y_LINE_HEIGHT,EDIT_BUTTON.OK)
end
local function GUI_ShowBitmap(x,y,imgData)
-- imgData format "bitmap.png|alt message"
local f = string.gmatch(imgData, '([^%|]+)') -- Iterator over values split by '|'
local imgName, imgMsg = f(), f()
lcd.drawText(x, y, imgMsg or "") -- Alternate Image MSG
local imgPath = IMAGE_PATH .. (imgName or "")
local bitmap = Bitmap.open(imgPath)
if (bitmap~=nil) then
lcd.drawBitmap(bitmap, x,y+20)
end
end
------------------------------------------------------------------------------------------------------------
local function GUI_Display()
local ctx = DSM_Context
lcd.clear(LCD_TOOL_BGCOLOR)
GUI_clearTouchButtons()
if LCD_W == 480 then
local header = "DSM Forward Programming "..VERSION.." "
if ctx.Phase ~= PHASE.RX_VERSION then
header = header .. "RX "..ctx.RX.Name.." v"..ctx.RX.Version
end
--Draw title
lcd.drawFilledRectangle(0, 0, LCD_W, 17, LCD_TOOL_HDR_BGCOLOR)
lcd.drawText(5, 0, header, LCD_TOOL_HDR_COLOR + SMLSIZE)
--Draw RX Menu
if ctx.Phase == PHASE.RX_VERSION then
if (ctx.isReset) then
lcd.drawText(LCD_X_LINE_TITLE,100,dsmLib.Get_Text(0x301), BLINK) -- Waiting for Restart
else
lcd.drawText(LCD_X_LINE_TITLE,100,dsmLib.Get_Text(0x300), BLINK) -- Waiting for RX
end
else
local menu = ctx.Menu
if menu.Text ~= nil then
GUI_Display_Menu(menu)
for i = 0, dsmLib.MAX_MENU_LINES do
local line = ctx.MenuLines[i]
if i == ctx.SelLine then
-- DEBUG: Display Selected Line info for ON SCREEN Debugging
if (DEBUG_ON_LCD) then lcd.drawText(0,255,dsmLib.menuLine2String(line),SMLSIZE + LCD_DEBUG_COLOR) end
end
if line ~= nil and line.Type ~= 0 then
if line.Type == LINE_TYPE.MENU then
GUI_Display_Line_Menu(i, line, i == ctx.SelLine)
else
if line.Val ~= nil then
local value = line.Val
if dsmLib.isListLine(line) then -- for Lists of Strings, get the text
value = dsmLib.Get_List_Text(line.Val + line.TextStart) -- TextStart is the initial offset for text
local imgData = dsmLib.Get_List_Text_Img(line.Val + line.TextStart) -- Complentary IMAGE for this value to Display??
if (imgData and i == ctx.SelLine) then -- Optional Image and Msg for selected value
GUI_ShowBitmap(LCD_X_LINE_TITLE,LCD_Y_LINE_START, imgData)
end
end
GUI_Display_Line_Value(i, line, value, i == ctx.SelLine, i == ctx.EditLine)
end
end -- if ~MENU
end -- if Line[i]~=nil
end -- for
if IS_EDGETX and ctx.isEditing() then
-- Display Touch button for Editing values
GUI_Display_Edit_Buttons(ctx.MenuLines[ctx.EditLine])
end
end
end
else
-- Different Resolution.. Maybe just adjusting some of the constants will work, adjust it in DSM_Init??
-- LCD_X_LINE_TITLE, LCD_Y_LINE_START, etc
lcd.drawText(LCD_X_LINE_TITLE,100,"Only supported in Color Radios of 480 resolution", BLINK)
end
end
-------------------------------------------------------------------------------------------------------------
local function GUI_RotEncVal(dir) -- return encoder speed to inc or dec values
local inc = 0
local Speed = getRotEncSpeed()
if Speed == ROTENC_MIDSPEED then inc = (5 * dir)
elseif Speed == ROTENC_HIGHSPEED then inc = (15 * dir)
else inc = dir end
return inc
end
------------------------------------------------------------------------------------
-- Translate Tap/Touch of EDIT buttons to equivalent Key events
local function GUI_Translate_Edit_Buttons(button)
local event = EVT_TOUCH_TAP
local editInc = nil
if (button==EDIT_BUTTON.ESC) then -- ESC
event = EVT_VIRTUAL_EXIT
elseif (button==EDIT_BUTTON.DEFAULT) then -- Default
event = EVT_VIRTUAL_ENTER_LONG
elseif (button==EDIT_BUTTON.DEC_10) then -- -10
event = EVT_VIRTUAL_PREV
editInc = -10
elseif (button==EDIT_BUTTON.DEC_1) then -- -1
event = EVT_VIRTUAL_PREV
editInc = -1
elseif (button==EDIT_BUTTON.INC_1) then -- +1
event = EVT_VIRTUAL_NEXT
editInc = 1
elseif (button==EDIT_BUTTON.INC_10) then -- + 10
event = EVT_VIRTUAL_NEXT
editInc = 10
elseif (button==EDIT_BUTTON.OK) then -- OK
event = EVT_VIRTUAL_ENTER
else
end
return event, editInc
end
------------------------------------------------------------------------------------------------------------
-- Handle Events comming from the GUI
local function GUI_HandleEvent(event, touchState)
local ctx = DSM_Context
local menu = ctx.Menu
local menuLines = ctx.MenuLines
local editInc = nil
if (IS_EDGETX) then
if (event == EVT_TOUCH_TAP and ctx.isEditing()) then -- Touch and Editing
local button = GUI_getTouchButton(touchState.x, touchState.y)
if (button) then
event, editInc = GUI_Translate_Edit_Buttons(button)
end
end
if (event == EVT_TOUCH_TAP or event == EVT_TOUCH_FIRST) and not ctx.isEditing() then -- Touch and NOT editing
if (DEBUG_ON) then dsmLib.LOG_write("%s: EVT_TOUCH_TAP %d,%d\n",dsmLib.phase2String(ctx.Phase),touchState.x, touchState.y) end
local button = GUI_getTouchButton(touchState.x, touchState.y)
if button then
-- Found a valid line
ctx.SelLine = button
ctx.Refresh_Display=true
if event == EVT_TOUCH_TAP then -- EVT_TOUCH_FIRST only move focus
event = EVT_VIRTUAL_ENTER
end
end
end
end -- IS_EDGETX
if event == EVT_VIRTUAL_EXIT then
ctx.Refresh_Display=true
if (DEBUG_ON) then dsmLib.LOG_write("%s: EVT_VIRTUAL_EXIT\n",dsmLib.phase2String(ctx.Phase)) end
if ctx.Phase == PHASE.RX_VERSION then
dsmLib.ReleaseConnection() -- Just Exit the Script
else
if ctx.isEditing() then -- Editing a Line, need to restore original value
local line = ctx.MenuLines[ctx.EditLine]
line.Val = originalValue
dsmLib.Value_Write_Validate(line)
else
dsmLib.ChangePhase(PHASE.EXIT)
end
end
return
end
if event == EVT_VIRTUAL_NEXT then
ctx.Refresh_Display=true
if (DEBUG_ON) then dsmLib.LOG_write("%s: EVT_VIRTUAL_NEXT\n",dsmLib.phase2String(ctx.Phase)) end
if ctx.isEditing() then -- Editing a Line, need to inc the value
local line=ctx.MenuLines[ctx.EditLine]
dsmLib.Value_Add(line, editInc or GUI_RotEncVal(1))
else -- not editing, move selected line to NEXT
dsmLib.MoveSelectionLine(1)
end
return
end
if event == EVT_VIRTUAL_PREV then
ctx.Refresh_Display=true
if (DEBUG_ON) then dsmLib.LOG_write("%s: EVT_VIRTUAL_PREV\n",dsmLib.phase2String(ctx.Phase)) end
if ctx.isEditing() then -- Editiing a line, need to dec the value
local line=ctx.MenuLines[ctx.EditLine]
dsmLib.Value_Add(line, editInc or GUI_RotEncVal(-1))
else -- not editing, move selected line to PREV
dsmLib.MoveSelectionLine(-1)
end
return
end
if event == EVT_VIRTUAL_ENTER_LONG then
ctx.Refresh_Display=true
if (DEBUG_ON) then dsmLib.LOG_write("%s: EVT_VIRTUAL_ENTER_LONG\n",dsmLib.phase2String(ctx.Phase)) end
if ctx.isEditing() then
-- reset the value to default
dsmLib.Value_Default(menuLines[ctx.EditLine]) -- Update value in RX if needed
end
return
end
if event == EVT_VIRTUAL_ENTER then
ctx.Refresh_Display=true
if (DEBUG_ON) then dsmLib.LOG_write("%s: EVT_VIRTUAL_ENTER, SelLine=%d\n",dsmLib.phase2String(ctx.Phase), ctx.SelLine) end
if ctx.SelLine == dsmLib.BACK_BUTTON then -- Back
dsmLib.GotoMenu(menu.BackId,0x80)
elseif ctx.SelLine == dsmLib.NEXT_BUTTON then -- Next
dsmLib.GotoMenu(menu.NextId,0x82)
elseif ctx.SelLine == dsmLib.PREV_BUTTON then -- Prev
dsmLib.GotoMenu(menu.PrevId,0x81)
elseif menuLines[ctx.SelLine].ValId ~= 0 then -- Menu or Value
if menuLines[ctx.SelLine].Type == LINE_TYPE.MENU then -- Navigate to Menu
if (menuLines[ctx.SelLine].ValId==0xFFF1) then
-- SPECIAL Simulation menu to Simulator
GUI_SwitchToSIM()
elseif (menuLines[ctx.SelLine].ValId==0xFFF2) then
-- SPECIAL Simulation menu to go to RX
GUI_SwitchToRX()
else
dsmLib.GotoMenu(menuLines[ctx.SelLine].ValId, ctx.SelLine) -- ValId is the MenuId to navigate to
end
else -- Enter on a Value
if ctx.isEditing() then -- already editing a Line????
dsmLib.Value_Write_Validate(menuLines[ctx.SelLine])
else -- Edit the current value
ctx.EditLine = ctx.SelLine
originalValue = menuLines[ctx.SelLine].Val
dsmLib.ChangePhase(PHASE.VALUE_CHANGING_WAIT)
end
end
end
end
end
local function init_colors()
-- osName in OpenTX is nil, otherwise is EDGETX
local ver, radio, maj, minor, rev, osname = getVersion()
if (osname==nil) then osname = "OpenTX" end -- OTX 2.3.14 and below returns nil
IS_EDGETX = string.sub(osname,1,1) == 'E'
if (IS_EDGETX and USE_SPECKTRUM_COLORS) then
-- SPECKTRUM COLORS (only works on EDGETX)
LCD_TOOL_BGCOLOR = LIGHTWHITE
-- TOOL HEADER
LCD_TOOL_HDR_COLOR = WHITE
LCD_TOOL_HDR_BGCOLOR = DARKBLUE
-- MENU HEADER
LCD_MENU_COLOR = WHITE
LCD_MENU_BGCOLOR = DARKGREY
-- LINE SELECTED
LCD_SELECTED_COLOR = WHITE
LCD_SELECTED_BGCOLOR = ORANGE
LCD_EDIT_BGCOLOR = RED
-- NORMAL TEXT
LCD_NORMAL_COLOR = BLACK
LCD_DISABLE_COLOR = LIGHTGREY
LCD_DEBUG_COLOR = BLUE
-- NORMAL BOX FRAME COLOR
LCD_BOX_COLOR = LIGHTGREY
end
end
local function GUI_Warning(event,touchState)
lcd.clear(LCD_TOOL_BGCOLOR)
local header = "DSM Forward Programming "..VERSION.." "
--Draw title
lcd.drawFilledRectangle(0, 0, LCD_W, 17, LCD_TOOL_HDR_BGCOLOR)
lcd.drawText(5, 0, header, LCD_TOOL_HDR_COLOR + SMLSIZE)
lcd.drawText(100,20,"INFO", BOLD)
lcd.drawText(5,40,"DSM Forward programing shares TX Servo/Output settings", 0)
lcd.drawText(5,60,"with the RX. Make sure you setup your plane first in ", 0)
lcd.drawText(5,80,"the TX before your start Fwrd programming your RX.", 0)
lcd.drawText(5,100,"Wing & Tail type can be configured using this tool.", 0)
lcd.drawText(5,150,"TX Gyro Servo settings are sent to the RX during 'Initial Setup'", 0)
lcd.drawText(5,170,"as well as when using RX 'Relearn Servo Settings'", 0)
lcd.drawText(5,200,"ALWAYS TEST Gyro reactions after this conditions before flying.", BOLD)
lcd.drawText(100,250," OK ", INVERS + BOLD)
if event == EVT_VIRTUAL_EXIT or event == EVT_VIRTUAL_ENTER or event == EVT_TOUCH_TAP then
warningScreenON = false
end
return 0
end
------------------------------------------------------------------------------------------------------------
-- Init
local function DSM_Init()
init_colors()
dsmLib.Init(toolName) -- Initialize Library
return dsmLib.StartConnection()
end
------------------------------------------------------------------------------------------------------------
-- Main
local function DSM_Run(event,touchState)
local ctx = DSM_Context
if event == nil then
error("Cannot be run as a model script!")
dsmLib.LOG_close()
return 2
end
if (warningScreenON) then
return GUI_Warning(event,touchState)
end
GUI_HandleEvent(event,touchState)
dsmLib.Send_Receive() -- Handle Send and Receive DSM Forward Programming Messages
local refreshInterval = REFRESH_GUI_MS
-- When using LCD BLINK attribute, we need faster refresh for BLINK to SHOW on LCD
if (ctx.Phase == PHASE.RX_VERSION) then -- Requesting RX Message Version usea BLINK?
ctx.Refresh_Display=true
refreshInterval = 20 -- 200ms
end
if (not IS_EDGETX) then -- OPENTX NEEDS REFRESH ON EVERY CYCLE
GUI_Display()
-- Refresh display only if needed and no faster than 300ms, utilize more CPU to speedup DSM communications
elseif (ctx.Refresh_Display and (getTime()-lastRefresh) > refreshInterval) then --300ms from last refresh
GUI_Display()
ctx.Refresh_Display=false
lastRefresh=getTime()
end
if ctx.Phase == PHASE.EXIT_DONE then
dsmLib.LOG_close()
return 2
else
return 0
end
end
return { init=DSM_Init, run=DSM_Run }

View File

@@ -1,932 +0,0 @@
local toolName = "TNS|DSM Frwd Prog v0.54-beta (MIN)|TNE"
--local ModelParam = ...
---- #########################################################################
---- # #
---- # Copyright (C) OpenTX #
-----# #
---- # License GPLv2: http://www.gnu.org/licenses/gpl-2.0.html #
---- # #
---- # This program is free software; you can redistribute it and/or modify #
---- # it under the terms of the GNU General Public License version 2 as #
---- # published by the Free Software Foundation. #
---- # #
---- # This program is distributed in the hope that it will be useful #
---- # but WITHOUT ANY WARRANTY; without even the implied warranty of #
---- # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the #
---- # GNU General Public License for more details. #
---- # #
---- #########################################################################
--###############################################################################
-- Multi buffer for DSM description
-- Multi_Buffer[0..2]=="DSM" -> Lua script is running
-- Multi_Buffer[3]==0x70+len -> TX to RX data ready to be sent
-- Multi_Buffer[4..9]=6 bytes of TX to RX data
-- Multi_Buffer[10..25]=16 bytes of RX to TX data
--
-- To start operation:
-- Write 0x00 at address 3
-- Write 0x00 at address 10
-- Write "DSM" at address 0..2
--###############################################################################
local VERSION = "v0.54-MIN"
local LANGUAGE = "en"
local DSMLIB_PATH = "/SCRIPTS/TOOLS/DSMLIB/"
local LOG_FILE = "/LOGS/dsm_min_log.txt"
local MSG_FILE = DSMLIB_PATH.."msg_fwdp_" .. LANGUAGE .. ".txt"
local MSG_FILE_MIN = DSMLIB_PATH.."MIN_msg_fwdp_" .. LANGUAGE .. ".txt"
-- Phase
local PH_RX_VER, PH_TITLE, PH_TX_INFO, PH_LINES, PH_VALUES = 1, 2, 3, 4, 5
local PH_VAL_CHANGING, PH_VAL_WAIT, PH_VAL_CHNG_END = 6, 7, 8
local PH_WAIT_CMD, PH_EXIT_REQ, PH_EXIT_DONE = 9, 10, 11
-- Line Types
local LT_MENU = 0x1C
local LT_LIST, LT_LIST_VALIDATE, LT_LIST_TOG = 0x6C, 0x0C, 0x4C
local LT_VALUE_NOCHANGING = 0x60
local LT_VALUE_PERCENT, LT_VALUE_DEGREES = 0xC0, 0xE0
local Phase = PH_RX_VER
local Waiting_RX = 0
local Text = {}
local List_Text = {}
local List_Text_Img = {}
local Flight_Mode = { [0] = "Flight Mode" }
local RxName = {}
local InactivityTime = 0
local Value_Change_Step = 0
local TX_Info_Step = 0
local TX_Info_Type = 0
local originalValue = 0
local ctx = {
SelLine = 0, -- Current Selected Line
EditLine = nil, -- Current Editing Line
CurLine = -1, -- Current Line Requested/Parsed via h message protocol
isReset = false -- false when starting from scracts, true when starting from Reset
}
local MODEL = {
modelName = "", -- The name of the model comming from OTX/ETX
modelOutputChannel = {}, -- Output information from OTX/ETX
AirWingTailDesc = "",
--TX_CH_TEXT = {},
--PORT_TEXT = {},
DSM_ChannelInfo = {} -- Data Created by DSM Configuration Script
}
local Menu = { MenuId = 0, Text = "", TextId = 0, PrevId = 0, NextId = 0, BackId = 0 }
local MenuLines = {}
local RX = { Name = "", Version = "" }
local logFile = nil
local logCount = 0
local LCD_X_LINE_TITLE = 0
local LCD_X_LINE_VALUE = 75
local LCD_W_BUTTONS = 19
local LCD_H_BUTTONS = 10
local LCD_X_MAX = 128
local LCD_X_RIGHT_BUTTONS = LCD_X_MAX - LCD_W_BUTTONS - 1
local LCD_Y_LINE_HEIGHT = 7
local LCD_Y_LOWER_BUTTONS = (8 * LCD_Y_LINE_HEIGHT) + 2
local TEXT_ATTR = SMLSIZE
local function LOG_open()
logFile = io.open(LOG_FILE, "w") -- Truncate Log File
end
local function LOG_write(...)
if (logFile == nil) then LOG_open() end
local str = string.format(...)
io.write(logFile, str)
end
local function LOG_close()
if (logFile ~= nil) then io.close(logFile) end
end
---------------- DSM Values <-> Int16 Manipulation --------------------------------------------------------
local function int16_LSB(number) -- Less Significat byte
local r, x = bit32.band(number, 0xFF)
return r
end
local function int16_MSB(number) -- Most signifcant byte
return bit32.rshift(number, 8)
end
local function Dsm_to_Int16(lsb, msb) -- Componse an Int16 value
return bit32.lshift(msb, 8) + lsb
end
local function Dsm_to_SInt16(lsb, msb) -- Componse a SIGNED Int16 value
local value = bit32.lshift(msb, 8) + lsb
if value >= 0x8000 then -- Negative value??
return value - 0x10000
end
return value
end
local function sInt16ToDsm(value) -- Convent to SIGNED DSM Value
if value < 0 then
value = 0x10000 + value
end
return value
end
------------------------------------------------------------------------------------------------------------
local function Get_Text(index)
local out = Text[index] or string.format("Unknown_%X", index)
if (index >= 0x8000) then
out = Flight_Mode[0]
end
return out
end
local function Get_Text_Value(index)
local out = List_Text[index] or Get_Text(index)
return out
end
------------------------------------------------------------------------------------------------------------
local function Get_RxName(index)
local out = RxName[index] or string.format("Unknown_%X", index)
return out
end
------------------------------------------------------------------------------------------------------------
local function DSM_Release()
multiBuffer(0, 0)
Phase = PH_EXIT_DONE
end
------------------------------------------------------------------------------------------------------------
local function DSM_Send(...)
local arg = { ... }
for i = 1, #arg do
multiBuffer(3 + i, arg[i])
end
multiBuffer(3, 0x70 + #arg)
end
------------------------------------------------------------------------------------------------------------
function ChangePhase(newPhase)
Phase = newPhase
Waiting_RX = 0
end
local function Value_Add(dir)
local line = MenuLines[ctx.SelLine]
Speed = getRotEncSpeed()
if Speed == ROTENC_MIDSPEED then
line.Val = line.Val + (5 * dir)
elseif Speed == ROTENC_HIGHSPEED then
line.Val = line.Val + (15 * dir)
else
line.Val = line.Val + dir
end
if line.Val > line.Max then
line.Val = line.Max
elseif line.Val < line.Min then
line.Val = line.Min
end
ChangePhase(PH_VAL_CHANGING)
Value_Change_Step = 0
end
------------------------------------------------------------------------------------------------------------
local function GotoMenu(menuId, lastSelectedLine)
Menu.MenuId = menuId
ctx.SelLine = lastSelectedLine
-- Request to load the menu Again
ChangePhase(PH_TITLE)
end
local function isSelectable(line)
if (line.TextId == 0x00CD) then return true end -- Exceptiom: Level model and capture attitude
if (line.Type == LT_MENU and line.ValId == line.MenuId) then return false end -- Menu to same page
if (line.Type ~= LT_MENU and line.Max == 0) then return false end -- Read only data line
if (line.Type ~= 0 and line.TextId < 0x8000) then return true end -- Not Flight Mode
return false;
end
local function isListLine(line)
return line.Type==LT_LIST or line.Type == LT_LIST_VALIDATE or line.Type == LT_LIST_TOG
end
local function DSM_Menu(event)
if event == EVT_VIRTUAL_EXIT then
if Phase == PH_RX_VER then
DSM_Release() -- Exit program
else
if ctx.EditLine ~= nil then -- Editing a Line, need to restore original value
MenuLines[ctx.EditLine].Val = originalValue
event = EVT_VIRTUAL_ENTER
else
ChangePhase(PH_EXIT_REQ)
end
end
end
if Phase == PH_RX_VER then return end -- nothing else to do
if event == EVT_VIRTUAL_NEXT then
if ctx.EditLine ~= nil then
Value_Add(1)
else
-- not changing a value
if ctx.SelLine < 7 then -- On a regular line
local num = ctx.SelLine -- Find the prev selectable
for i = ctx.SelLine + 1, 6, 1 do
local line = MenuLines[i]
if isSelectable(line) then
ctx.SelLine = i
break
end
end
if num == ctx.SelLine then -- No Selectable Line
if Menu.NextId ~= 0 then
ctx.SelLine = 7 -- Next
elseif Menu.PrevId ~= 0 then
ctx.SelLine = 8 -- Prev
end
end
elseif Menu.PrevId ~= 0 then
ctx.SelLine = 8 -- Prev
end
end
elseif event == EVT_VIRTUAL_PREV then
if ctx.EditLine ~= nil then -- In Edit Mode
Value_Add(-1)
else
if ctx.SelLine == 8 and Menu.NextId ~= 0 then
ctx.SelLine = 7 -- Next
elseif ctx.SelLine > 0 then
if ctx.SelLine > 6 then
ctx.SelLine = 7 --NEXT
end
local num = ctx.SelLine -- Find Prev Selectable line
for i = ctx.SelLine - 1, 0, -1 do
local line = MenuLines[i]
if isSelectable(line) then
ctx.SelLine = i
break
end
end
if num == ctx.SelLine then -- No Selectable Line
if (Menu.BackId > 0) then
ctx.SelLine = -1 -- Back
end
end
else
ctx.SelLine = -1 -- Back
end
end
elseif event == EVT_VIRTUAL_ENTER_LONG then
if ctx.EditLine ~= nil then
-- reset the value to default
--if MenuLines[ctx.SelLine].Type ~= LIST_MENU_NOCHANGING then
MenuLines[ctx.SelLine].Val = MenuLines[ctx.SelLine].Def
ChangePhase(PH_VAL_CHANGING)
Value_Change_Step = 0
--end
end
elseif event == EVT_VIRTUAL_ENTER then
if ctx.SelLine == -1 then -- Back
GotoMenu(Menu.BackId, 0x80)
elseif ctx.SelLine == 7 then -- Next
GotoMenu(Menu.NextId, 0x82)
elseif ctx.SelLine == 8 then -- Prev
GotoMenu(Menu.PrevId, 0x81)
elseif ctx.SelLine >= 0 and MenuLines[ctx.SelLine].Type == LT_MENU then
GotoMenu(MenuLines[ctx.SelLine].ValId, ctx.SelLine) -- ValId is the next menu
else
-- value entry
if ctx.EditLine ~= nil then
ctx.EditLine = nil -- Done Editting
Value_Change_Step = 0
ChangePhase(PH_VAL_CHNG_END)
else -- Start Editing
ctx.EditLine = ctx.SelLine
originalValue = MenuLines[ctx.SelLine].Val
ChangePhase(PH_VAL_WAIT)
end
end
end
end
------------------------------------------------------------------------------------------------------------
local function SendTxInfo(portNo)
-- TxInfo_Type=0 : AR636 Main Menu (Send port/Channel info + SubTrim + Travel)
-- TxInfo_Type=1 : AR630-637 Famly Main Menu (Only Send Port/Channel usage Msg 0x20)
-- TxInfo_Type=1F : AR630-637 Initial Setup/Relearn Servo Settings (Send port/Channel info + SubTrim + Travel +0x24/Unknown)
if (TX_Info_Step == 0) then
-- AR630 family: Both TxInfo_Type (ManinMenu=0x1, Other First Time Configuration = 0x1F)
local info = MODEL.DSM_ChannelInfo[portNo]
DSM_Send(0x20, 0x06, portNo, portNo, info[0],info[1])
LOG_write("DSM_TxInfo_20(Port=#%d, Port Use)\n", portNo)
if (TX_Info_Type == 0x1F) then
TX_Info_Step = 1
elseif (TX_Info_Type == 0x00) then
TX_Info_Step = 2
end
elseif (TX_Info_Step == 1) then
local info = MODEL.modelOutputChannel[portNo]
local leftTravel = math.abs(math.floor(info.min/10))
local rightTravel = math.abs(math.floor(info.max/10))
DSM_Send(0x23, 0x06, 0x00, leftTravel, 0x00, rightTravel)
LOG_write("DSM_TxInfo_23(Port=#%d,ServoTravel(L=%d - R=%d))\n", portNo,leftTravel,rightTravel)
TX_Info_Step = 2
elseif (TX_Info_Step == 2) then
local data = {[0]= -- Start at 0
{[0]= 0x0, 0x00, 0x07, 0xFF }, -- Ch1 Thr: 0 00 07 FF Subtrim ??
{[0]= 0x0, 0x8E, 0x07, 0x72 }, -- Ch2 Ail: 0 8E 07 72 Subtrim 0
{[0]= 0x0, 0x8E, 0x07, 0x72 }, -- Ch3 Elev: 0 8E 07 72 Subtrim 0
{[0]= 0x0, 0x8E, 0x07, 0x72 }, -- Ch4 Rud: 0 8E 07 72 Subtrim 0
{[0]= 0x0, 0x8E, 0x07, 0x72 }, -- Ch5 Gear: 0 8E 07 72 Subtrim 0
{[0]= 0x0, 0x8E, 0x07, 0x72 }, -- Ch6 Aux1: 0 8E 07 72 Subtrim 0
{[0]= 0x0, 0x8E, 0x07, 0x72 }, -- Ch7 Aux2: 0 8E 07 72 Subtrim 0
{[0]= 0x0, 0x8E, 0x07, 0x72 }, -- Ch8 Aux3: 0 8E 07 72 Subtrim 0
{[0]= 0x0, 0x8E, 0x07, 0x72 }, -- Ch9 Aux4: 0 8E 07 72 Subtrim 0
{[0]= 0x0, 0x8E, 0x07, 0x72 }, -- Ch10 Aux5: 0 8E 07 72 Subtrim 0
}
local info = data[portNo]
local b1,b2,b3,b4 = info[0], info[1], info[2], info[3]
DSM_Send(0x21, 0x06, b1,b2,b3,b4) -- Port is not send anywhere, since the previous 0x20 type message have it.
LOG_write("DSM_TxInfo_21(Port=#%d, SubTrim)\n", portNo)
if (TX_Info_Type == 0x00) then
TX_Info_Step = 5 -- End Step
else
TX_Info_Step = 3
end
elseif (TX_Info_Step == 3) then
LOG_write("DSM_TxInfo_24?(Port=#%d)\n", portNo)
DSM_Send(0x24, 0x06, 0x00, 0x83, 0x5A, 0xB5) -- Still Uknown
TX_Info_Step = 4
elseif (TX_Info_Step == 4) then
LOG_write("DSM_TxInfo_24?(Port=#%d)\n", portNo)
DSM_Send(0x24, 0x06, 0x06, 0x80, 0x25, 0x4B) -- Still Uknown
TX_Info_Step = 5
elseif (TX_Info_Step == 5) then
LOG_write("DSM_TxInfo_22(Port=#%d, END of Data)\n", portNo)
DSM_Send(0x22, 0x04, 0x00, 0x00)
TX_Info_Step = 0 -- Done!!
end
if (TX_Info_Step > 0) then
Waiting_RX = 0 -- keep Transmitig
end
end
local function DSM_SendRequest()
--LOG_write("DSM_SendRequest Phase=%d\n",Phase)
-- Need to send a request
if Phase == PH_RX_VER then -- request RX version
DSM_Send(0x11, 0x06, 0x00, 0x14, 0x00, 0x00)
LOG_write("GetVersion()\n")
elseif Phase == PH_WAIT_CMD then -- keep connection open
DSM_Send(0x00, 0x04, 0x00, 0x00)
elseif Phase == PH_TITLE then -- request menu title
local menuId = Menu.MenuId
if menuId == 0 then
DSM_Send(0x12, 0x06, 0x00, 0x14, 0x00, 0x00) -- first menu only
else
DSM_Send(0x16, 0x06, int16_MSB(menuId), int16_LSB(menuId), 0x00, ctx.SelLine)
if (menuId == 0x0001) then -- Executed Save&Reset menu
Phase = PH_RX_VER
ctx.isReset = true
end
end
LOG_write("GetMenu(M=0x%04X,L=%d)\n", menuId, ctx.SelLine)
elseif Phase == PH_TX_INFO then -- TX Info
SendTxInfo(ctx.CurLine)
elseif Phase == PH_LINES then -- request menu lines
local menuId = Menu.MenuId
if ctx.CurLine == -1 then
DSM_Send(0x13, 0x04, int16_MSB(menuId), int16_LSB(menuId)) -- GetFirstLine
else
DSM_Send(0x14, 0x06, int16_MSB(menuId), int16_LSB(menuId), 0x00, ctx.CurLine) -- line X
end
LOG_write("GetLines(LastLine=%d)\n", ctx.CurLine)
elseif Phase == PH_VALUES then -- request menu values
local menuId = Menu.MenuId
local valId = MenuLines[ctx.CurLine].ValId
DSM_Send(0x15, 0x06,
int16_MSB(menuId), int16_LSB(menuId),
int16_MSB(valId), int16_LSB(valId))
LOG_write("GetValues(LastVId=0x%04X)\n", valId)
elseif Phase == PH_VAL_CHANGING then -- send new value: Two steps, Update & Validate
local line = MenuLines[ctx.SelLine]
local valId = line.ValId
if Value_Change_Step == 0 then
local value = sInt16ToDsm(line.Val)
DSM_Send(0x18, 0x06,
int16_MSB(valId), int16_LSB(valId),
int16_MSB(value), int16_LSB(value)) -- send current values
LOG_write("ChangeValue(VId=0x%04X,Val=%d)\n", valId, value)
if line.Type == LT_LIST_VALIDATE then -- Incremental Validation??
Value_Change_Step = 1
Waiting_RX = 0 -- Do SEND in the next step
end
else
-- Validate Value
DSM_Send(0x19, 0x04, int16_MSB(valId), int16_LSB(valId))
Value_Change_Step = 0
Phase = PH_VAL_WAIT
LOG_write("ValidateValue(VId=0x%04X)\n", valId)
end
elseif Phase == PH_VAL_CHNG_END then
DSM_Send(0x1B, 0x04, 0x00, int16_LSB(ctx.SelLine))
Value_Change_Step = 0
Phase = PH_WAIT_CMD
LOG_write("ValueChangeEnd(L=%d)\n", ctx.SelLine)
elseif Phase == PH_VAL_WAIT then
-- Value Changing Wait
DSM_Send(0x1A, 0x04, 0x00, int16_LSB(ctx.SelLine))
LOG_write("ValueChangeWait(L=%d)\n", ctx.SelLine)
elseif Phase == PH_EXIT_REQ then -- EXIT Request
DSM_Send(0x1F, 0x02, 0xAA)
end
end
local function DSM_ProcessResponse()
local cmd = multiBuffer(11)
-- LOG_write("DSM_ProcessResponse BEGIN: Cmd=%x\n",cmd)
if cmd == 0x01 then -- read version
RX.Name = Get_RxName(multiBuffer(13))
RX.Version = multiBuffer(14) .. "." .. multiBuffer(15) .. "." .. multiBuffer(16)
--ctx.isReset = false -- no longer resetting
Menu.MenuId = 0
Phase = PH_TITLE
LOG_write("Version: %s %s\n", RX.Name, RX.Version)
elseif cmd == 0x02 then -- read menu title
local menu = Menu
menu.MenuId = Dsm_to_Int16(multiBuffer(12), multiBuffer(13))
menu.TextId = Dsm_to_Int16(multiBuffer(14), multiBuffer(15))
menu.Text = Get_Text(menu.TextId)
menu.PrevId = Dsm_to_Int16(multiBuffer(16), multiBuffer(17))
menu.NextId = Dsm_to_Int16(multiBuffer(18), multiBuffer(19))
menu.BackId = Dsm_to_Int16(multiBuffer(20), multiBuffer(21))
for i = 0, 6 do -- clear menu
MenuLines[i] = { MenuId = 0, Type = 0, TextId = 0, ValId = 0, Min = 0, Max = 0, Def = 0, Val = nil, Unit, Step }
end
ctx.CurLine = -1
ctx.SelLine = -1 -- highlight Back
LOG_write("Menu: Mid=0x%04X \"%s\"\n", menu.MenuId, menu.Text)
if (menu.MenuId == 0x0001) then -- Still in RESETTING MENU???
--menu.MenuId = 0
Phase = PH_RX_VER
else
Phase = PH_LINES
end
elseif cmd == 0x03 then -- read menu lines
local i = multiBuffer(14)
local type = multiBuffer(15)
local line = MenuLines[i]
ctx.CurLine = i
line.lineNum = i
line.MenuId = Dsm_to_Int16(multiBuffer(12), multiBuffer(13))
line.Type = type
line.TextId = Dsm_to_Int16(multiBuffer(16), multiBuffer(17))
line.Text = Get_Text(line.TextId)
line.ValId = Dsm_to_Int16(multiBuffer(18), multiBuffer(19))
-- Singed int values
line.Min = Dsm_to_SInt16(multiBuffer(20), multiBuffer(21))
line.Max = Dsm_to_SInt16(multiBuffer(22), multiBuffer(23))
line.Def = Dsm_to_SInt16(multiBuffer(24), multiBuffer(25))
if line.Type == LT_MENU then
-- nothing to do on menu entries
elseif isListLine(line) then
line.Val = nil --line.Def - line.Min -- use default value not sure if needed
line.Def = line.Min -- pointer to the start of the list in Text
line.Max = line.Max - line.Min -- max index
line.Min = 0 -- min index
else -- default to numerical value
line.Val = nil --line.Def -- use default value not sure if needed
if (line.Min == 0 and line.Max == 100) or (line.Min == -100 and line.Max == 100) or
(line.Min == 0 and line.Max == 150) or (line.Min == -150 and line.Max == 150) then
line.Type = LT_VALUE_PERCENT -- Override to Value Percent
end
end
if ctx.SelLine == -1 and isSelectable(line) then -- Auto select first selectable line of the menu
ctx.SelLine = ctx.CurLine
end
LOG_write("Line: #%d Vid=0x%04X T=0x%02X \"%s\"\n", i, line.ValId, type, line.Text)
Phase = PH_LINES
elseif cmd == 0x04 then -- read menu values
-- Identify the line and update the value
local valId = Dsm_to_Int16(multiBuffer(14), multiBuffer(15))
local value = Dsm_to_SInt16(multiBuffer(16), multiBuffer(17)) --Signed int
local updatedLine = nil
for i = 0, 6 do -- Find the menu line for this value
local line = MenuLines[i]
if line.Type ~= 0 then
if line.Type ~= LT_MENU and line.ValId == valId then -- identifier of ValueId stored in the line
line.Val = value
ctx.CurLine = i
updatedLine = line
local valueTxt = value
if isListLine(line) then
valueTxt = Get_Text_Value(line.Def + value) .. " [" .. value .. "]"
end
LOG_write("Update Value: #%d VId=0x%04X Value=%s\n", i, valId, valueTxt)
break
end
end
end
if (updatedLine == nil) then
LOG_write("Cannot Find Line for ValueId=%x\n", valId)
end
Phase = PH_VALUES
elseif cmd == 0x05 then -- Request TX info
ctx.CurLine = multiBuffer(12)
TX_Info_Type = multiBuffer(13)
TX_Info_Step = 0
Phase = PH_TX_INFO
LOG_write("TXInfoReq: Port=%d T=0x%02X\n", ctx.CurLine, TX_Info_Type)
elseif cmd == 0xA7 then -- answer to EXIT command
DSM_Release()
elseif cmd == 0x00 and Phase == PH_VAL_CHANGING then
Phase = PH_VAL_WAIT
end
--LOG_write("DSM_ProcessResponse END: Cmd=%x\n",cmd)
return cmd
end
local function DSM_Send_Receive()
if Waiting_RX == 0 then
Waiting_RX = 1
DSM_SendRequest()
multiBuffer(10, 0x00);
InactivityTime = getTime() + 200 -- Reset Inactivity timeout
-- -- -- -- -- -- -- -- -- -- -- -- receive part -- -- -- -- -- -- -- -- -- -- -- -- --
elseif multiBuffer(10) == 0x09 then
local cmd = DSM_ProcessResponse()
-- Data processed
multiBuffer(10, 0x00)
if (cmd > 0x00) then -- Any non NULL response
-- Only change to SEND mode if we received a valid response (Ignore NULL Responses, that are really heartbeat i most cases)
Waiting_RX = 0
InactivityTime = getTime() + 200 -- Reset Inactivity timeout
end
else -- No Send or Receive,
-- Check if enouth time has passed from last transmit/receive activity
if getTime() > InactivityTime then
InactivityTime = getTime() + 200
Waiting_RX = 0 -- Switch to Send mode to send heartbeat
if Phase == PH_EXIT_REQ then
DSM_Release()
end
if Phase ~= PH_RX_VER and Phase ~= PH_VAL_WAIT then
Phase = PH_WAIT_CMD
end
end
end
end
------------------------------------------------------------------------------------------------------------
local function showBitmap(x, y, imgDesc)
local f = string.gmatch(imgDesc, '([^%|]+)') -- Iterator over values split by '|'
local imgName, imgMsg = f(), f()
f = string.gmatch(imgMsg or "", '([^%:]+)') -- Iterator over values split by ':'
local p1, p2 = f(), f()
lcd.drawText(x, y, p1 or "", TEXT_ATTR) -- Alternate Image MSG
lcd.drawText(x, y + LCD_Y_LINE_HEIGHT, p2 or "", TEXT_ATTR) -- Alternate Image MSG
end
local function drawButton(x, y, text, active)
local attr = TEXT_ATTR
if (active) then attr = attr + INVERS end
lcd.drawText(x, y, text, attr)
end
local ver_rx_count = 0
local function DSM_Display()
lcd.clear()
--Draw RX Menu
if Phase == PH_RX_VER then
lcd.drawText(1, 0, "DSM Frwd Prog "..VERSION, INVERS)
local msgId = 0x300 -- Waiting for RX
if (ctx.isReset) then msgId=0x301 end -- Waiting for Reset
lcd.drawText(0, 3 * LCD_Y_LINE_HEIGHT, Get_Text(msgId), BLINK)
return
end
-- display Program version or RX version
local msg = RX.Name .. " v" .. RX.Version
if (ver_rx_count < 100) then
msg = RX.Name .. " v" .. RX.Version
ver_rx_count = ver_rx_count + 1
else
msg = "Frwd Prog "..VERSION
ver_rx_count = ver_rx_count + 1
if (ver_rx_count > 200) then ver_rx_count=0 end
end
lcd.drawText(30, LCD_Y_LOWER_BUTTONS, msg, TEXT_ATTR)
if Menu.MenuId == 0 then return end; -- No Title yet
-- Got a Menu
lcd.drawText(1, 0, Menu.Text, TEXT_ATTR + INVERS)
local y = LCD_Y_LINE_HEIGHT + 2
for i = 0, 6 do
local attrib = TEXT_ATTR
if (i == ctx.SelLine) then attrib = attrib + INVERS end -- Selected Line
local line = MenuLines[i]
if line ~= nil and line.Type ~= 0 then
local heading = Get_Text(line.TextId)
if (line.TextId >= 0x8000) then -- Flight mode
heading = " " .. Flight_Mode[0] .. " "
if (line.Val==nil) then heading = heading .. "--" else heading = heading .. ((line.Val or 0) + 1) end
else
local text = "-"
if line.Type ~= LT_MENU then -- list/value
if line.Val ~= nil then
if isListLine(line) then
local textId = line.Val + line.Def
text = Get_Text_Value(textId)
local imgDesc = List_Text_Img[textId]
if (imgDesc and i == ctx.SelLine) then -- Optional Image and Msg for selected value
showBitmap(0, 20, imgDesc)
end
elseif (line.Type == LT_VALUE_PERCENT) then
text = line.Val .. " %"
elseif (line.Type == LT_VALUE_DEGREES) then
text = line.Val .. " @"
else
text = line.Val
end
end -- if is Value
if (ctx.EditLine == i) then -- Editing a Line
attrib = BLINK + INVERS + TEXT_ATTR
end
lcd.drawText(LCD_X_MAX, y, text, attrib + RIGHT) -- display value
attrib = TEXT_ATTR
end
end -- Flight mode
lcd.drawText(0, y, heading, attrib) -- display text
end
y = y + LCD_Y_LINE_HEIGHT
end -- for
if Menu.BackId ~= 0 then
drawButton(LCD_X_RIGHT_BUTTONS, 0, "Back", ctx.SelLine == -1)
end
if Menu.NextId ~= 0 then
drawButton(LCD_X_RIGHT_BUTTONS, LCD_Y_LOWER_BUTTONS, "Next", ctx.SelLine == 7)
end
if Menu.PrevId ~= 0 then
drawButton(0, LCD_Y_LOWER_BUTTONS, "Prev", ctx.SelLine == 8)
end
end
local function load_msg_from_file(fileName, mem, Text, List_Text, List_Text_Img, RxName, Flight_Mode)
local function rtrim(s)
local n = string.len(s)
while n > 0 and string.find(s, "^%s", n) do n = n - 1 end
return string.sub(s, 1, n)
end
--print(string.format("Loading messages from [%s]",fileName))
local dataFile = io.open(fileName, "r") -- read File
-- cannot read file???
assert(dataFile, "Cannot load Message file:" .. fileName)
local data = io.read(dataFile, mem * 1024) -- read up to 10k characters (newline char also counts!)
io.close(dataFile)
collectgarbage("collect")
local lineNo = 0
for line in string.gmatch(data, "[^\r\n]+") do
lineNo = lineNo + 1
--print(string.format("Line [%d]: %s",lineNo,line))
-- Remove Comments
local s = string.find(line, "--", 1, true)
if (s ~= nil) then
line = string.sub(line, 1, s - 1)
end
line = rtrim(line)
if (string.len(line) > 0) then
local a, b, c = string.match(line, "%s*(%a*)%s*|%s*(%w*)%s*|(.*)%s*")
--print(string.format("[%s] [%s] [%s]",a,b,c))
if (a ~= nil) then
local index = tonumber(b)
if (index == nil) then
assert(false, string.format("%s:%d: Invalid Hex num [%s]", fileName, lineNo, b))
elseif (a == "T") then
Text[index] = c
elseif (a == "LT") then
List_Text[index] = c
elseif (a == "LI") then
List_Text_Img[index] = c
elseif (a == "FM") then
Flight_Mode[0] = c
elseif (a == "RX") then
RxName[index] = c
else
assert(false, string.format("%s:%d: Invalid Line Type [%s]", fileName, lineNo, a))
end
end
end
if (lineNo % 50 == 0) then
collectgarbage("collect")
end
end -- For
--print(string.format("Loaded [%d] messages",lineNo))
data = nil
end
local function clean_msg(Text, Flight_Mode)
local function clean_line(c)
if (c==nil) then return c end
local pos
c, pos = string.gsub(c, "/b$", "")
c, pos = string.gsub(c, "/c$", "")
c, pos = string.gsub(c, "/r$", "")
c, pos = string.gsub(c, "/p$", "")
c, pos = string.gsub(c, "/m$", "")
return c
end
-- Clean the line of special markers that are only used in color vesion
for i = 0, 0x0300 do
Text[i] = clean_line(Text[i])
collectgarbage("collect")
end
for i = 0, #Flight_Mode do
-- Clean the line of special markers that are only used in color vesion
Flight_Mode[i] = clean_line(Flight_Mode[i])
end
end
local function DSM_Init_Model()
MODEL.DSM_ChannelInfo= {[0]= -- Start array at position 0
{[0]= 0x00, 0x40}, -- Ch1 Thr (0x40)
{[0]= 0x00, 0x01}, -- Ch2 Ail (0x01)
{[0]= 0x00, 0x02}, -- Ch2 ElE (0x02)
{[0]= 0x00, 0x04}, -- Ch4 Rud (0x04)
{[0]= 0x00, 0x00}, -- Ch5 Gear (0x00)
{[0]= 0x00, 0x00}, -- Ch6 Aux1 (0x00)
{[0]= 0x00, 0x00}, -- Ch7 Aux2 (0x00)
{[0]= 0x00, 0x00}, -- Ch8 Aux3 (0x00)
{[0]= 0x00, 0x00}, -- Ch9 Aux4 (0x00)
{[0]= 0x00, 0x00} -- Ch10 Aux5 (0x00)
}
MODEL.modelOutputChannel = {[0]=
{min=1000, max=1000}, -- Ch1
{min=1000, max=1000}, -- Ch2
{min=1000, max=1000}, -- Ch3
{min=1000, max=1000}, -- Ch4
{min=1000, max=1000}, -- Ch5
{min=1000, max=1000}, -- Ch6
{min=1000, max=1000}, -- Ch7
{min=1000, max=1000}, -- Ch8
{min=1000, max=1000}, -- Ch9
{min=1000, max=1000} -- Ch10
}
end
------------------------------------------------------------------------------------------------------------
-- Init
local function DSM_Init()
LOG_open()
LOG_write("-------- NEW SESSION --------------------\n")
DSM_Init_Model()
--[[
if (ModelParam~=nil) then
LOG_write("Got MODEL PARAMETER... copying\n")
MODEL.DSM_ChannelInfo = ModelParam.DSM_ChannelInfo
else
LOG_write("NO-PARMETER --- Create DEFAULT")
end
--]]
collectgarbage("collect")
LOG_write("Mem before msg =%d\n",collectgarbage("count"))
load_msg_from_file(MSG_FILE, 10, Text, List_Text, List_Text_Img, RxName, Flight_Mode)
collectgarbage("collect")
LOG_write("Mem after msg =%d\n",collectgarbage("count"))
load_msg_from_file(MSG_FILE_MIN, 4, Text, List_Text, List_Text_Img, RxName, Flight_Mode)
collectgarbage("collect")
LOG_write("Mem after msg2 =%d\n",collectgarbage("count"))
clean_msg(Text,Flight_Mode)
collectgarbage("collect")
--Set protocol to talk to
multiBuffer(0, string.byte('D'))
--test if value has been written
if multiBuffer(0) ~= string.byte('D') then
error("Not enough memory!")
return 2
end
--Init TX buffer
multiBuffer(3, 0x00)
--Init RX buffer
multiBuffer(10, 0x00)
--Init telemetry
multiBuffer(0, string.byte('D'))
multiBuffer(1, string.byte('S'))
multiBuffer(2, string.byte('M'))
if (LCD_W > 128) then
TEXT_ATTR = 0
LCD_Y_LINE_HEIGHT = 25
LCD_X_MAX = 300
LCD_X_RIGHT_BUTTONS = LCD_X_MAX - 30
LCD_Y_LOWER_BUTTONS = (8 * LCD_Y_LINE_HEIGHT) + 2
end
end
------------------------------------------------------------------------------------------------------------
-- Main
local function DSM_Run(event)
if event == nil then
error("Cannot be run as a model script!")
return 2
else
DSM_Display()
DSM_Menu(event)
DSM_Send_Receive()
end
if Phase == PH_EXIT_DONE then
LOG_close()
return 2
else
return 0
end
end
return { init = DSM_Init, run = DSM_Run }

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@@ -1,467 +0,0 @@
# Forward Programing Protocol
## Introduction
DSM, DSMX and DSM Forward Programming are propietary protocol from the **Spektrum** radio brand. Since they don't make this information public, we have to reverse engineer it by analyzing the data exchanged between the RX and TX.
This document descrives what we know so far.
Thanks to **Pascal Langer** (Author of the Multi-Module) for the initial reverse engineering of the protocol and first version of the code that has been used for a while (Version 0.2)
Thanks to **Francisco Arzu** for taking the time to continue the work on reverse engineering, documenting and making the code more understandable.
New Capabilities in Version 0.5
- Log files of the conversation between RX/TX
- Improve the GUI (EdgeTX touch screen)
- Reversed engineer other things to make it work completly.
# Menu Title and Lines
The menu to be displayed is stored at the RX, the GUI only renders the menu title and menu lines received. The tipical conversation with the RX will be to ask for a menu (using the menuId number), and then wait for the data to come. The first thing will be the Menu (header) data, later we request the next 6 lines (one at a time), and optionally the values for each line.
A typical exchange will look like this in the log:
SEND DSM_getMenu(MenuId=0x1010 LastSelectedLine=0)
RESPONSE Menu: M[Id=0x1010 P=0x0 N=0x0 B=0x1000 Text="Gyro settings"[0xF9]]
SEND DSM_getFirstMenuLine(MenuId=0x1010)
RESPONSE MenuLine: L[#0 T=M VId=0x1011 Text="AS3X Settings"[0x1DD] MId=0x1010 ]
SEND DSM_getNextLine(MenuId=0x1010,LastLine=0)
RESPONSE MenuLine: L[#1 T=M VId=0x1019 Text="SAFE Settings"[0x1E2] MId=0x1010 ]
SEND DSM_getNextLine(MenuId=0x1010,LastLine=1)
RESPONSE MenuLine: L[#2 T=M VId=0x1021 Text="F-Mode Setup"[0x87] MId=0x1010 ]
SEND DSM_getNextLine(MenuId=0x1010,LastLine=2)
RESPONSE MenuLine: L[#3 T=M VId=0x1022 Text="System Setup"[0x86] MId=0x1010 ]
## Menu
The menu has the following information:
Menu: M[Id=0x1010 P=0x0 N=0x0 B=0x1000 Text="Gyro settings"[0xF9]]
- `MenuId`: The menu ID number of the menu (hex, 16 bit number)
- `PrevId`: The menu ID of the previous menu (for navigation), Log show as `"P="`
- `NextId`: The menu ID of the next menu (for navigation), Log shows as `"N="`
- `BackId`: The menu ID of the back menu (for navigation), Log shows as `"B="`
- `TextId`: The message number to display (16 bits, Hex). Log shows as [`0xXX`] after the message.
- `Text`: Retrived using the `TextId` from the script message `Text` array.
## Menu Lines
The menu lines has the following information:
L[#0 T=V_nc VId=0x1000 Text="Flight Mode"[0x8001] Val=1 [0->10,0] MId=0x1021 ]
L[#1 T=M VId=0x7CA6 Text="FM Channel"[0x78] MId=0x1021 ]
L[#2 T=LM VId=0x1002 Text="AS3X"[0x1DC] Val=1|"Act" NL=(0->1,0,S=3) [3->4,3] MId=0x1021 ]
- `MenuId`: of the menu they beling to. Log show as `"MId="` at the end.
- `LineNum`: Line number (0..5). The line number in the screen. Log show as # in the beginning
- `Type`: Type of Line, Log shows as `"T="` (explanation later)
- `TextId`: The message number to display (16 bits, Hex). Log shows as [`0xXXXX`] after the message.
- `Text`: Retrived using the `TextId` from the script message `Text` array.
- `ValueId`: The value or menu ID of the line. Log shows as `"VId="` (16 bits, Hex).
- `Value Range`: Shows as [`Min`->`Max`, `Default`]. This is the RAW data comming from the RX
- `NL`: Computed Normalized LIST (0 reference) for List Values. Source is the RAW range. For example, for lines of list of values. `[3->4,3]` is tranlated to `NL=(0->1,0,S=3)` since the value is also normalize to 0. `"S="` means the initial entry in the `List_Text` array
- `Val`: Current value for line who hold data. Relative to 0 for List Values. For List Values, the log will show the translation of the value to display text. example: `Val=1|"Act"` that is coming from `List_Value[4]`
## Type of Menu Lines
- `LINE_TYPE.MENU (Log: "T=M")`: This could be regular text or a navigation to another menu. if `ValueId` is the same as the current MenuId (`MId=`), is a plain text line (navigation to itself). If the `ValueId` is not the current menuId, then `ValueId` is the MenuId to navigate to.
We have found only one exception to the plain text rule, a true navigation to itself, in that case, in the text of the menu, you can use the "/M" flag at the end of the text to force it to be a menu button.
Example, FM_Channel is a navigation to menuId=0x7CA6.
L[#1 T=M VId=0x7CA6 Text="FM Channel"[0x78] MId=0x1021 ]
- `LINE_TYPE.LIST_MENU_NC (Log T=LM_nc)`: This is a line that shows as text in the GUI. The numeric value is translated to the proper text. The range is important, since it descrives the range of posible values. No incremental RX changes, only at the end.
Example: List of Values, List_Text[] starts at 53, ends at 85, with a default of 85. When normalized to 0, is a range from 0->32 for the numeric value. The Display value `Aux1` is retrive from `List_Text[6+53]`.
L[#0 T=LM_nc VId=0x1000 Text="FM Channel"[0x78] Val=6|"Aux1" NL=(0->32,0,S=53) [53->85,53] MId=0x7CA6 ]
- `LINE_TYPE.LIST_MENU_TOG (Log T=L_tog)`: Mostly the same as LIST_MENU_NC, but is just 2 values. (ON/OFF, Ihn/Act, etc). Should be a toggle in the GUI.
L[#2 T=LM_tog VId=0x1002 Text="AS3X"[0x1DC] Val=1|"Act" NL=(0->1,0,S=3) [3->4,3] MId=0x1021 ]
- `LINE_TYPE.LIST_MENU (Log T=LM)`: Mostly the same as LIST_MENU_NC, but incremental changes to the RX. Some times, it comes with a strange range `[0->244,Default]`. Usually this means that the values are not contiguos range; usually Ihn + Range. Still haven't found where in the data the correct range comes from.
Example: Valid Values: 3, 176->177 (Inh, Self-Level/Angle Dem, Envelope)
L[#3 T=LM VId=0x1003 Text="Safe Mode"[0x1F8] Val=176|"Self-Level/Angle Dem" NL=(0->244,3,S=0) [0->244,3] MId=0x1021 ]
- `LINE_TYPE.VALUE_NUM_I8_NC (Log: "T=V_nc")`: This line is editable, but is not updated to the RX incrementally, but only at the end. The Flight Mode line is of this type, so we have to check the TextId to differenciate between Flight mode and an Editable Value.
Fligh Mode TextId is between 0x8000 and 0x8003
Example, Flight mode comes from Variable ValId=0x1000, with current value of 1. Range of the Value is 0..10.
L[#0 T=V_nc VId=0x1000 Text="Flight Mode"[0x8001] Val=1 [0->10,0] MId=0x1021 ]
- `LINE_TYPE.VALUE_NUM_I8 (Log T=V_i8)`: 8 bit number (1 byte)
- `LINE_TYPE.VALUE_NUM_I16' (Log T=V_i16)`: 16 Bit number (2 bytes)
- `LINE_TYPE.VALUE_NUM_SI16 (Log T=V_si16)`: Signed 16 bit number (2 bytes)
- `LINE_TYPE.VALUE_PERCENT (Log T=L_%)`: Shows a Percent Value. 1 Byte value.
- `LINE_TYPE.VALUE_DEGREES (Log T=L_de)`: Shows a Degrees VAlue. 1 Byte value.
## LIST_TYPE Bitmap
TYPE|Sum|Hex|7 Signed|6 Valid Min/Max??|5 No-Inc-Changing|4 Menu|3 List-Menu|2 text / number|1|0 - 16 bits
|-|-|-|-|-|-|-|-|-|-|-
|MENU|Text|0x1C|0|0|0|1|1|1|0|0
|LIST_MENU|Text|0x0C|0|0|0|0|1|1|0|0
|LIST_MENU_TOG|Text|0x4C|0|1|0|0|1|1|0|0
|LIST_MENU_NC|Text, NC|0x6C|0|1|1|0|1|1|0|0
|VALUE_NUM_I8_NC|I8, NC|0x60|0|1|1|0|0|0|0|0
|VALUE_PERCENT|S8|0xC0|1|1|0|0|0|0|0|0
|VALUE_DEGREES|S8 NC|0xE0|1|1|1|0|0|0|0|0
|VALUE_NUM_I8|I8|0x40|0|1|0|0|0|0|0|0
|VALUE_NUM_I16|I16|0x41|0|1|0|0|0|0|0|1
|VALUE_NUM_SI16|S16|0xC1|1|1|0|0|0|0|0|1
## Important Behavioral differences when updating values
Values who are editable, are updated to RX as they change. For example, when changing attitude trims, the servo moves as we change the value in real-time.
LIST_MENU_NC, VALUE_NUM_I8_NC don't update the RX as it changes. It changes only in the GUI, and only update the RX at the end when confirmed the value. (NO-INC-CHANGES Bit)
After finishing updating a value, a validation command is sent. RX can reject the current value, and will change it to the nearest valid value.
## Special Menus
Seems like menuId=0x0001 is special. When you navigate to this menu, the RX reboots.
When this happens, we need to start from the beginning as if it was a new connection.
# Send and Receive messages
To comunicate with the Multi-Module, Lua scripts in OpenTx/EdgeTx has access to the `Multi_Buffer`. Writting to it will send data to RX, received data will be read from it.
For our specific case, this is how the Multi_Buffer is used:
|0..2|3|4..9|10..25
|--|--|--|--
|DSM|0x70+len|TX->RX data|RX->TX Data
To write a new DSM Fwd Programing command, write the data to address 4..9, and later set the address 3 with the length.
When receiving data, address 10 will have the message type we are receiving, or 0 if nothing has been received.
## Starting a new DSM Forward programming Connection
- Write 0x00 at address 3
- Write 0x00 at address 10
- Write "DSM" at address 0..2
## Disconnect
- Write 0x00 at address 0
# Request Messages (TX->RX)
## DSM_sendHeartbeat()
keep connection open.. We need to send it every 2-3 seconds, otherwise the RX will force close the connection by sending the TX an Exit_Confirm message.
|4|5|6|7|8|9|10
|--|--|--|--|--|--|--
Msg| Len? | ?? | ??
0x00|0x04|0x00|0x00
SEND DSM_sendHeartbeat()
DSM_SEND: [00 04 00 00 ]
## DSM_getRxVersion()
Request the RX information
|4|5|6|7|8|9|10
|--|--|--|--|--|--|--
Msg| Len? | ?? | ?? |??|??
0x11|0x06|0x00|0x14|0x00|0x00
SEND DSM_getRxVersion()
DSM_SEND: [11 06 00 14 00 00 ]
## DSM_getMainMenu()
Request data for the main menu of the RX
|4|5|6|7|8|9|10
|--|--|--|--|--|--|--
Msg| Len? | ?? | ?? |??|??
0x12|0x06|0x00|0x14|0x00|0x00
SEND DSM_getMainMenu()
DSM_SEND: [12 06 00 14 00 00 ]
## DSM_getMenu(menuId, lastSelLine)
Request data for Menu with ID=`menuId`. lastSelLine is the line that was selected to navigate to that menu. Most menus works with 0, but for some special "Enter Bind Mode", "Factory Reset", "Save to Backup" they will not work if we send 0, has to be the line who was selected in the confirmation menu line "Apply".
|4|5|6|7|8|9|10
|--|--|--|--|--|--|--
Msg|Len? | MSB (menuId) | LSB (MenuId) | MSB (line#)??| LSB (line#)
0x16|0x06|0x10|0x60|0x00|0x01
SEND DSM_getMenu(MenuId=0x1060 LastSelectedLine=1)
DSM_SEND: [16 06 10 60 00 01 ]
## DSM_getFirstMenuLine(menuId)
Request the first line of a menu identified as `menuId`. The response will be the first line of the menu. Some times, it return lines shown as `'MenuUknownLine_0x05'` that we still are trying to understand what they are for.
|4|5|6|7|8|9|10
|--|--|--|--|--|--|--
Msg|Len? | MSB (menuId) | LSB (MenuId)
0x13|0x04|0x10|0x60
SEND DSM_getFirstMenuLine(MenuId=0x1000)
DSM_SEND: [13 04 10 00 ]
## DSM_getNextMenuLine(menuId, curLine)
Request the retrival of the next line following the current line. Response is either the next line, or the next value, or nothing.
|4|5|6|7|8|9|10
|--|--|--|--|--|--|--
Msg|Len? | MSB (menuId) | LSB (MenuId) | MSB (line#)??| LSB (line#)
0x14|0x06|0x10|0x60|0x00|0x01
SEND DSM_getNextLine(MenuId=0x1000,LastLine=1)
DSM_SEND: [14 06 10 00 00 01 ]
## DSM_getNextMenuValue(menuId, valId, text)
Retrive the next value after the last `ValId` of the current `menuId`. text is just for debugging purposes to show the header of the value been retrived.
The Response is a Menu Value or nothing if no more data.
|4|5|6|7|8|9|10
|--|--|--|--|--|--|--
Msg|Len? | MSB (menuId) | LSB (MenuId) | MSB (ValId)| LSB (ValId)
0x15|0x06|0x10|0x61|0x10|0x00
SEND DSM_getNextMenuValue(MenuId=0x1061, LastValueId=0x1000) Extra: Text="Outputs"
DSM_SEND: [15 06 10 61 10 00 ]
## DSM_updateMenuValue(valId, val, text, line)
Updates the value identified as `valId` with the numeric value `val`. `text` and `line` are there to add debugging info. No response is expected.
If the value is negative, it has to be translated to the proper DSM negative representaion.
|4|5|6|7|8|9|10
|--|--|--|--|--|--|--
Msg|Len? | MSB (ValId) | LSB (ValId) | MSB (Value)| LSB (Value)
0x18|0x06|0x??|0x??|0x??|0x??
DSM_updateMenuValue(valId, val, text, line)
-->DSM_send(0x18, 0x06, int16_MSB(valId), int16_LSB(valId), int16_MSB(value), int16_LSB(value))
## DSM_validateMenuValue(valId, text, line)
Validates the value identified as `valId`. `text` and `line` are there to add debugging info. The RX can response an Update value if the value is not valid and needs to be corrected.
|4|5|6|7|8|9|10
|--|--|--|--|--|--|--
Msg|Len? | MSB (ValId) | LSB (ValId)
0x19|0x06|0x??|0x??
DSM_validateMenuValue(valId, text, line)
-> DSM_send(0x19, 0x06, int16_MSB(valId), int16_LSB(valId))
## DSM_menuValueChangingWait(valId, text, line)
Durin editing, this serves as a heartbeat that we are editing the value. The value identified as `valId`. `text` and `line` are there to add debugging info. The RX can response an Update value or a NUL response.
|4|5|6|7|8|9|10
|--|--|--|--|--|--|--
Msg|Len?? | MSB (ValId) | LSB (ValId)
0x1A|0x06|0x??|0x??
DSM_menuValueChangingWait(valId, text, line)
->DSM_send(0x1A, 0x06, int16_MSB(valId), int16_LSB(valId))
## DSM_exitRequest()
Request to end the DSM Frd Prog connection. Will reponse with an exit confirmation.
|4|5|6|7|8|9|10
|--|--|--|--|--|--|--
Msg|Len?? | ??
0x1F|0x02|0xAA
CALL DSM_exitRequest()
DSM_SEND: [1F 02 AA ]
# Response Messages (RX->TX)
All responses will have the a response byte in Multi_Buffer[10]=0x09, and the type of message in Multi_Buffer[11].
## RX Version Response
Returns the information about the current RX.
The Display text of name name of the RX is retrive from the `RX_Name` array.
|10|11|12|13|14|15|16
|--|--|--|--|--|--|--
|Resp|Msg|?? |RxId|Major|Minor|Patch
|0x09|0x01|0x00|0x1E|0x02|0x26|0x05
RESPONSE RX: 09 01 00 1E 02 26 05
RESPONSE Receiver=AR631 Version 2.38.5
## Menu Response
Returns the menu information to display and navigation.
The Display text for the menu is retrive from the `Text` array.
|10|11|12|13|14|15|16|17|18|19|20|21
|--|--|--|--|--|--|--|--|--|--|--|--
|Resp|Msg|LSB (menuId)|MSB (menuId)|LSB (TextId)|MSB (TextId)|LSB (PrevId)|MSB (PrevId)|LSB (NextId)|MSB (NextId)|LSB (BackId)|MSB (BackId)
|0x09|0x02|0x5E|0x10|0x27|0x02|0x00|0x00|0x00|0x00|0x00|0x10
RESPONSE RX: 09 02 5E 10 27 02 00 00 00 00 00 10 00 00 00 00
RESPONSE Menu: M[Id=0x105E P=0x0 N=0x0 B=0x1000 Text="Other settings"[0x227]]
## Menu Line Response
Returns the menu line information.
The Display text for the menu line is retrive from the `Text` array.
`Min`,`Max` and `Default` can be signed numbers.
|10|11|12|13|14|15|16|17|18|19|20|21|22|23|24|25
|--|--|--|--|--|--|--|--|--|--|--|--|--|--|--|--
|Resp|Msg|LSB (menuId)|MSB (menuId)|Line#|Line Type|LSB (TextId)|MSB (TextId)|LSB (ValId)|MSB (ValId)|LSB (Min)|MSB (Min)|LSB (Max)|MSB (Max)|LSB (Def)|MSB (Def)
|0x09|0x03|0x61|0x10|0x00|0x6C|0x50|0x00|0x00|0x10|0x36|0x00|0x49|0x00|0x36|0x00
RESPONSE RX: 09 03 61 10 00 6C 50 00 00 10 36 00 49 00 36 00
RESPONSE MenuLine: L[#0 T=LM_nc VId=0x1000 Text="Outputs"[0x50] Val=nil NL=(0->19,0,S=54) [54->73,54] MId=0x1061 ]
## Menu Line Value Response
Returns the Value for a line.
The response updates the Value in the line identified by `ValId`.
The Display text for the Value, when it is a list, is retrive from the `List_Text` array.
|10|11|12|13|14|15|16|17
|--|--|--|--|--|--|--|--
|Resp|Msg|LSB (menuId)|MSB (menuId)|LSB (ValId)|MSB (ValId)|LSB (Value)|MSB (Value)
|0x09|0x04|0x61|0x10|0x00|0x10|0x00|0x00
RESPONSE RX: 09 04 61 10 00 10 00 00
RESPONSE MenuValue: UPDATED: L[#0 T=L_m0 VId=0x1000 Text="Outputs"[0x50] Val=0|"Throttle" NL=(0->19,0,S=54) [54->73,54] MId=0x1061 ]
## Exit Response
Response from a Exit Request.
|10|11
|--|--
|Resp|Msg
|0x09|0x07
RESPONSE RX: 09 A7
RESPONSE Exit Confirm
## NULL Response
Can be use as a response, or heartbeat from the RX to keep the connection open.
|10|11
|--|--
|Resp|Msg
|0x09|0x00
RESPONSE RX: 09 00
RESPONSE NULL
# Unknown Lines
TOTALLY UNKNOWN WHAT THIS ARE FOR.. but only works for the Main Menu..
Other menus they just loop on line=0 forever.
## DSM_getNextUknownLine_0x05(menuId, curLine)
Request the retrival of the next Unknown line following the current line. Response is either the next unknow line, next menu line, or the next value, or nothing.
|4|5|6|7|8|9| Comment
|--|--|--|--|--|--|--
Msg|Len? | Line# | Line# | 0x00 | Formula(line#)??
0x20|0x06|0x00|0x00|0x00|0x40 | LastLineLine=0 retrieval
0x20|0x06|0x01|0x01|0x00|0x01| LastLineLine=1 retrieval
0x20|0x06|0x02|0x02|0x00|0x02| LastLineLine=2 retrieval
0x20|0x06|0x03|0x03|0x00|0x04| LastLineLine=3 retrieval
0x20|0x06|0x04|0x04|0x00|0x00| LastLineLine=4 retrieval
0x20|0x06|0x05|0x05|0x00|0x00| LastLineLine=5 retrieval
## Unknown Line Response
We still don't know what is this for, but we have to retrive them and skip then. Works for main menu, but when it happens in another menus, usually we stay in an infinite loop retrieving line=0
|10|11|12|13|14|15|16|17
|--|--|--|--|--|--|--|--
|Resp|Msg|LSB (line#)
|0x09|0x05|0x00|0x01|0x00|0x00|0x00|0x07
|0x09|0x05|0x01|0x01|0x00|0x00|0x00|0x07
## Interaction on Main Menu
This is the normal interaction for the main menu. As you can see, it iterates on the 6 Unknow lines (0..5), and afterwards, it starts sending normal menu lines.
SEND DSM_getFirstMenuLine(MenuId=0x1000)
RESPONSE MenuUknownLine_0x05: LineNum=0 DATA=RX: 09 05 00 01 00 00 00 07 00 00 00 00 00 00 00 00
CALL DSM_getNextUknownLine_0x05(LastLine=0)
RESPONSE MenuUknownLine_0x05: LineNum=1 DATA=RX: 09 05 01 01 00 00 00 07 00 00 00 00 00 00 00 00
CALL DSM_getNextUknownLine_0x05(LastLine=1)
RESPONSE MenuUknownLine_0x05: LineNum=2 DATA=RX: 09 05 02 01 00 00 00 07 00 00 00 00 00 00 00 00
CALL DSM_getNextUknownLine_0x05(LastLine=2)
RESPONSE MenuUknownLine_0x05: LineNum=3 DATA=RX: 09 05 03 01 00 00 00 07 00 00 00 00 00 00 00 00
CALL DSM_getNextUknownLine_0x05(LastLine=3)
RESPONSE MenuUknownLine_0x05: LineNum=4 DATA=RX: 09 05 04 01 00 00 00 07 00 00 00 00 00 00 00 00
CALL DSM_getNextUknownLine_0x05(LastLine=4)
RESPONSE MenuUknownLine_0x05: LineNum=5 DATA=RX: 09 05 05 01 00 00 00 07 00 00 00 00 00 00 00 00
CALL DSM_getNextUknownLine_0x05(LastLine=5)
RESPONSE MenuLine: L[#0 T=M VId=0x1010 Text="Gyro settings"[0xF9] MId=0x1000 ]
## Other menus
If it hapen on other menus. Usualy stays in an infinite loop until it crash/exits.
The screen will show **"Error: Cannot Load Menu Lines from RX"**
The log will look like:
DSM_getMenu(MenuId=0x104F LastSelectedLine=1)
RESPONSE Menu: M[Id=0x104F P=0x0 N=0x0 B=0x1000 Text="First Time Setup"[0x4A]]
SEND DSM_getFirstMenuLine(MenuId=0x104F)
RESPONSE MenuUknownLine_0x05: LineNum=0 DATA=RX: 09 05 00 01 00 00 00 07 00 00 00 00 00 00 00 00
CALL DSM_getNextUknownLine_0x05(LastLine=0)
RESPONSE MenuUknownLine_0x05: LineNum=0 DATA=RX: 09 05 00 01 00 00 00 07 00 00 00 00 00 00 00 00
ERROR: Received Same menu line
CALL DSM_getNextUknownLine_0x05(LastLine=0)
RESPONSE MenuUknownLine_0x05: LineNum=0 DATA=RX: 09 05 00 01 00 00 00 07 00 00 00 00 00 00 00 00
ERROR: Received Same menu line
We found that sometimes, Overriding LastSelectedLine to 0 solves the problem for some specific menus. Not for all (for other, is the oposite (0->1)). But at least no unknown lines are returned with this hack for AR631/AR637. Maybe others also needed.
**Overriding to Zero is not a good solution for every menu. Some menus needs the LastLine to know the behaviour (for example, Factory Reset the RX, Save Backup, Restore Backup, Enter Bind Mode, Some sensor Calibration). Thats why we cannot do it blindly.**
Here is the current code to fix some of this problems in AR631/AR637.
Function `DSM_SelLine_HACK()`
if (ctx.RX.Id == RX.AR637T or ctx.RX.Id == RX.AR637TA or ctx.RX.Id == RX.AR631) then
-- AR631/AR637 Hack for "First time Setup" or
-- "First Time AS3X Setup", use 0 instead of the ctx.SelLine=5
if (ctx.Menu.MenuId == 0x104F or ctx.Menu.MenuId==0x1055) then
LOG_write("First time Setup Menu HACK: Overrideing LastSelectedLine to ZERO\n")
ctx.SelLine = 0
end
-- DID NOT WORK: AR631/AR637 Hack for "Relearn Servo Settings", use 1 instead
-- of the ctx.SelLine=0
--if (ctx.Menu.MenuId == 0x1023) then
-- LOG_write("Relearn Servo Settings HACK: Overrideing LastSelectedLine to 1\n")
-- ctx.SelLine = 1
--end
Now it retrives properly the menu:
Log shows:
First time Setup Menu HACK: Overrideing LastSelectedLine to ZERO
DSM_getMenu(MenuId=0x104F LastSelectedLine=0)
RESPONSE Menu: M[Id=0x104F P=0x0 N=0x0 B=0x105E Text="First Time Setup"[0x4A]]
SEND DSM_getFirstMenuLine(MenuId=0x104F)
.. Good menu data

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-- OVERRIDES Messges for MIN 128x64 screns
-- FORMAT <LineType>|<Msg#>|<Text>
-- Line Type: Text for Menus (T), List_Text Options (LT), List_Text_Image (LI), Flight Mode (FM), RX Name (RX)
-- IMPORTANT: NO EMPTY LINES
--
T |0x0097|DONT USE: Factory Reset
T |0x0098|DONT USE: Factory Reset
T |0x00A5|DONT USE: First Time Setup
T |0x00B0|Self-Lev/Ang Dem
T |0x00CD|Level model & capt attitude
T |0x0190|DONT USE: Relearn Servo Settings
T |0x020D|DONT USE: First Time SAFE Setup
T |0x0254|Pos = Up, Neg = Down
T |0x0267|Pos = Nose Up/Roll Right
T |0x0268|Neg = Nose Down/Roll Left

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-- FORMAT <LineType>|<Msg#>|<Text>
-- Line Type: Text for Menus (T), List_Text Options (LT), List_Text_Image (LI), Flight Mode (FM), RX Name (RX)
-- NO EMPTY LINES
-- Formmatting at end of line: /c=Center, /r=Right, /b=Bold, /m=menu
LT|0x0001|Off
LT|0x0002|On
-- Ihn/Act List Options
LT|0x0003|Inh
LT|0x0004|Act
--
-- Channel selection for SAFE MODE and GAINS on FC6250HX
LT|0x000C|Inhibit?
LT|0x000D|Ch5
LT|0x000E|Ch6
LT|0x000F|Ch7
LT|0x0010|Ch8
LT|0x0011|Ch9
LT|0x0012|Ch10
LT|0x0013|Ch11
LT|0x0014|Ch12
--
-- Servo Output values
LT|0x002D|5.5ms
LT|0x002E|11ms
LT|0x002F|22ms
--
-- Gain Multiplier Values
LT|0x0032|1 X
LT|0x0033|2 X
LT|0x0034|4 X
--
LT|0x0035|Inh?
LT|0x0036|Thr
LT|0x0037|Ail
LT|0x0038|Ele
LT|0x0039|Rud
LT|0x003A|Ch5
LT|0x003B|Ch6
LT|0x003C|Ch7
LT|0x003D|Ch8
LT|0x003E|Ch9
LT|0x003F|Ch10
LT|0x0040|Ch11
LT|0x0041|Ch12
LT|0x0042|Ch13
LT|0x0043|Ch14
LT|0x0044|Ch15
LT|0x0045|Ch16
LT|0x0046|Ch17
LT|0x0047|Ch18
LT|0x0048|Ch19
LT|0x0049|Ch20
--
T |0x0040|Roll
T |0x0041|Pitch
T |0x0042|Yaw
T |0x0043|Gain/c/b
T |0x0045|Differential
T |0x0046|Priority
T |0x0049|Output Setup
T |0x004A|Failsafe
T |0x004B|Main Menu
T |0x004E|Position
--
T |0x0050|Outputs
T |0x0051|Output Channel 1
T |0x0052|Output Channel 2
T |0x0053|Output Channel 3
T |0x0054|Output Channel 4
T |0x0055|Output Channel 5
T |0x0056|Output Channel 6
--
-- FailSafe Options
--LT|0x005E|Inhibit
LT|0x005F|Hold Last
LT|0x0060|Preset
--LT|0x0061|Custom
--
T |0x0071|Proportional
T |0x0072|Integral
T |0x0073|Derivate
--
T |0x0078|FM Channel
--
T |0x0080|Orientation
T |0x0082|Heading
T |0x0085|Frame Rate
T |0x0086|System Setup
T |0x0087|F-Mode Setup
T |0x0088|Enabled F-Modes
T |0x0089|Gain Channel
T |0x008A|Gain Sensitivity/r -- Right Align
T |0x008B|Panic
T |0x008E|Panic Delay
--
LT|0x008D|560hz
--
-- FC6250HX: Callibration Menu -> Begin..Start, Complete, Done
T |0x0091|Begin
T |0x0090|Apply
T |0x0092|Start
T |0x0093|Complete
T |0x0094|Done
--
T |0x0097|Factory Reset
T |0x0098|Factory Reset
--
T |0x0099|Advanced Setup
T |0x009A|Capture Failsafe Positions
T |0x009C|Custom Failsafe
--
T |0x009F|Save Settings -- Save & Reboot RX
--
T |0x00A5|First Time Setup
T |0x00AA|Capture Gyro Gains
T |0x00AD|Gain Channel Select
T |0x00AF|Dynamic
T |0x00B0|Self-Level/Angle Dem
T |0x00B1|Envelope
--
-- Flight Modes List Options
LT|0x00B5|Inhibit
LT|0x00B6|FM1
LT|0x00B7|FM2
LT|0x00B8|FM3
LT|0x00B9|FM4
LT|0x00BA|FM5
LT|0x00BB|FM6
LT|0x00BC|FM7
LT|0x00BD|FM8
LT|0x00BE|FM9
LT|0x00BF|FM10
--
T |0x00BE|Unknown_BE -- Used in Reset menu (0x0001) while the RX is rebooting
--
T |0x00C7|Calibrate Sensor
T |0x00CA|SAFE/Panic Mode Setup
--
T |0x00CD|Level model and capture attitude/m -- SPECIAL MENU to itself who is not a comment
--
-- RX Orientations for AR631/AR637, Optionally attach an Image + Alt Text to display
LT|0x00CB|Pos 1
LI|0x00CB|rx_pos_1.png|Pilot View: RX Label Up, Pins Back
LT|0x00CC|Pos 2
LI|0x00CC|rx_pos_2.png|Pilot View: RX Label Left, Pins Back
LT|0x00CD|Pos 3
LI|0x00CD|rx_pos_3.png|Pilot View: RX Label Down, Pins Back
LT|0x00CE|Pos 4
LI|0x00CE|rx_pos_4.png|Pilot View: RX Label Right, Pins Back
LT|0x00CF|Pos 5
LI|0x00CF|rx_pos_5.png|Pilot View: RX Label UP, Pins to Front
LT|0x00D0|Pos 6
LI|0x00D0|rx_pos_6.png|Pilot View: RX Label Left, Pins Front
LT|0x00D1|Pos 7
LI|0x00D1|rx_pos_7.png|Pilot View: RX Label Down, Pins Front
LT|0x00D2|Pos 8
LI|0x00D2|rx_pos_8.png|Pilot View: RX Label Right, Pins Front
LT|0x00D3|Pos 9
LI|0x00D3|rx_pos_9.png|Pilot View: RX Label Up, Pins Left
LT|0x00D4|Pos 10
LI|0x00D4|rx_pos_10.png|Pilot View: RX Label Back, Pins Left
LT|0x00D5|Pos 11
LI|0x00D5|rx_pos_11.png|Pilot View: RX Label Down, Pins Left
LT|0x00D6|Pos 12
LI|0x00D6|rx_pos_12.png|Pilot View: RX Label Front, Pins Left
LT|0x00D7|Pos 13
LI|0x00D7|rx_pos_13.png|Pilot View: RX Label Up, Pins Right
LT|0x00D8|Pos 14
LI|0x00D8|rx_pos_14.png|Pilot View: RX Label Back, Pins Right
LT|0x00D9|Pos 15
LI|0x00D9|rx_pos_15.png|Pilot View: RX Label Down, Pins Right
LT|0x00DA|Pos 16
LI|0x00DA|rx_pos_16.png|Pilot View: RX Label Front, Pins Right
LT|0x00DB|Pos 17
LI|0x00DB|rx_pos_17.png|Pilot View: RX Label Back, Pins Down
LT|0x00DC|Pos 18
LI|0x00DC|rx_pos_18.png|Pilot View: RX Label Left, Pins Down
LT|0x00DD|Pos 19
LI|0x00DD|rx_pos_19.png|Pilot View: RX Label Front, Pins Down
LT|0x00DE|Pos 20
LI|0x00DE|rx_pos_20.png|Pilot View: RX Label Right, Pins Down
LT|0x00DF|Pos 21
LI|0x00DF|rx_pos_21.png|Pilot View: RX Label Back, Pins Up
LT|0x00E0|Pos 22
LI|0x00E0|rx_pos_22.png|Pilot View: RX Label Left, Pins Up
LT|0x00E1|Pos 23
LI|0x00E1|rx_pos_23.png|Pilot View: RX Label Front, Pins Up
LT|0x00E2|Pos 24
LI|0x00E2|rx_pos_24.png|Pilot View: RX Label Right, Pins Up
LT|0x00E3|Pos Invalid
LI|0x00E3|rx_pos_25.png|Cannot detect orientation of RX
--
T |0x00D1|Receiver will Reboot/b
T |0x00D2|Panic Channel
T |0x00D3|Swashplate
T |0x00D5|Agility
T |0x00D8|Stop
T |0x00DA|SAFE/c/b -- Center + Bold
T |0x00DB|Stability
T |0x00DC|@ per sec
T |0x00DD|Tail rotor
T |0x00DE|Setup
T |0x00DF|AFR
T |0x00E0|Collective
T |0x00E1|Subtrim
T |0x00E2|Phasing
T |0x00E4|E-Ring
T |0x00E5|Swash Type
T |0x00E6|Travel
T |0x00E7|Left
T |0x00E8|Right
--
LT|0x00F2|Fixed
LT|0x00F3|Adjustable
--
T |0x00F6|Direction
T |0x00F8|Settings -- ?? validate on a Spektrum radio
T |0x00F9|Gyro settings
T |0x00FE|Stick Priority/c/b
--
T |0x0100|Make sure the model has been
T |0x0101|configured, including wing type,
T |0x0102|reversing, travel, trimmed, etc.
T |0x0103|before continuing setup.
T |0x0104| -- Blank
--
T |0x0106|Any wing type, channel assignment,
T |0x0107|subtrim, or servo reversing changes
T |0x0108|require running through initial
T |0x0109|setup again.
T |0x010A| -- Blank
--
T |0x0190|Relearn Servo Settings
T |0x019C|Enter Receiver Bind Mode
T |0x01AA|Offset
T |0x01D7|SAFE Select Channel
T |0x01DC|AS3X/c/b -- Center + Bold
T |0x01DD|AS3X Settings
T |0x01DE|AS3X Gains
T |0x01E0|Rate Gains/c/b
T |0x01E2|SAFE Settings
T |0x01E3|SAFE Gains
T |0x01E6|Attitude Trim/c/b
T |0x01E7|Envelope
T |0x01E9|Roll Right
T |0x01EA|Roll Left
T |0x01EB|Pitch Down
T |0x01EC|Pitch Up
T |0x01EE|Thr to Pitch
T |0x01EF|Low Thr to Pitch/c/b
T |0x01F0|High Thr to Pitch/c/b
T |0x01F3|Threshold
T |0x01F4|Angle
T |0x01F6|Failsafe Angles/c/b
T |0x01F8|Safe Mode
T |0x01F9|SAFE Select
T |0x01FC|Panic F-Mode
T |0x01FD|FailSafe Flight Mode -- Safe Flight Mode
T |0x0201|Throttle
T |0x0204|Hover
T |0x0208|Decay
T |0x0209|Save to Backup
T |0x020A|Restore from Backup
T |0x020D|First Time SAFE Setup
--
-- First time safe setup Page 3 :
T |0x020E|AS3X gains must be tuned
T |0x020F|and active in SAFE Flight Modes
T |0x0210|to help reduce wobble.
T |0x0211| -- Blank
T |0x0212| -- Blank
T |0x0213| -- Blank
--
-- AS3X orientation Setting menu (Level)
T |0x021A|Set the model level,
T |0x021B|and press Continue.
T |0x021C| -- Blank
T |0x021D| -- Blank
--
-- AS3X orientation Setting menu (Nose down)
T |0x021F|Set the model on its nose,
T |0x0220|and press Continue. If the
T |0x0221|orientation on the next
T |0x0222|screen is wrong go back
T |0x0223|and try again.
--
T |0x0224|Continue
T |0x0226|Angle Limits/c/b
T |0x0227|Other settings
T |0x0229|Set Orientation Manually
--
-- Factory Default Warning
T |0x022B|WARNING!
T |0x022C|This will reset the
T |0x022D|configuration to factory
T |0x022E|defaults. This does not
T |0x022F|affect the backup config.
T |0x0230| -- Blank
--
-- Backup Warning
T |0x0231|This will overwrite the
T |0x0232|backup memory with your
T |0x0233|current configuartion.
T |0x0234| -- Blank
T |0x0235| -- Blank
--
-- Restore from Backup Warning
T |0x0236|This will overwrite the
T |0x0237|current config with
T |0x0238|that which is in
T |0x0239|the backup memory.
T |0x023A| -- blank line
--
-- Utilities Copy flight modes
T |0x023D|Copy F-Mode Settings
T |0x023E|Source F-Mode
T |0x023F|Target F-Mode
--
T |0x0240|Utilities
--
-- Gain Capture Page
T |0x024C|Gains will be captured on
T |0x024D|Captured gains will be
T |0x024E|Gains on
T |0x024F|were captured and changed
T |0x0250|from Adjustable to Fixed
--
-- Utilities, Copy flight mode (Copy Confirmation, oveerriding FM)
T |0x0251|Are you sure you want to ovewrite the "Target"
T |0x0252|with the "Source" ?
T |0x0253| -- Blank
--
T |0x0254|Postive = Up, Negative = Down
--
-- First time safe setup Page 1 (maybe ask to select Flight Mode cannel)
T |0x0255|Before setting up SAFE
T |0x0256|a Flight Mode channel
T |0x0257|most be configured.
--
-- First time safe setup Page 2 (something related for flight mode)
T |0x025A|Select the desired flight mode
T |0x025B|switch position to adjust settings
T |0x025C|for each flight mode
T |0x025D| -- Blank
T |0x025E| -- Blank
--
-- Utilities, Copy flight mode (Confirm)
T |0x0259|YES
T |0x0260|WARNING: "Target"
T |0x0261|F-Mode will be overwritten
T |0x0262|by "Source"
--
T |0x0263|Fixed/Adjustable Gains/c/b
T |0x0266|Heading Gain/c/b
T |0x0267|Positive = Nose Up/Roll Right
T |0x0268|Negative = Nose Down/Roll Left
T |0x0269|SAFE - Thr to Pitch
T |0x026A|Use CAUTION for Yaw gain!/b
--
T |0x0300|No compatible DSM RX...
T |0x0301|Waiting for RX to Restart
--
FM|0x8000|Flight Mode/c/b
--
RX|0x0001|AR636
RX|0x0014|SPM4651T
RX|0x0015|AR637T
RX|0x0016|AR637TA
RX|0x0018|FC6250HX
RX|0x0019|AR630
RX|0x001A|AR8360T
RX|0x001B|AR8020T
RX|0x001C|AR10360T
RX|0x001E|AR631

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@@ -1,227 +0,0 @@
# Credits
Code is based on the code/work by: Pascal Langer (Author of the Multi-Module)
Rewrite/Enhancements by: Francisco Arzu
Thanks to all the people volunteered to test it.
# Introduction (v0.54)
This script library enhances the original DSM Forward Programming tool. DSM Forward Programming is needed to setup many of the new Spektrum Receivers with Gyro AS3X/SAFE features. For the Gyro (/Safe) to correct the plane in flight, it needs to move the right surfaces therefore the RX needs to know the configuration of the plane (Wing Type, Tail Type, Mixers, Servo Assignments, Servo Reverse). That info tells the RX where the aileron(s) are (one or two), where the elevator(s) are (one or two), V-Tail, Delta Wing, etc.
Since EdgeTx/OpenTx doesnt have an equivalent setup that is stored in the radio, we have to create our own version. This info is stored inside the `/MODELS/DSMDATA` directory/folder (which needs to be created by manually).
During `"Gyro Settings->initial setup"`, the RX asks the TX for model information behind the scenes. After setup, `"Gyro Settings->System Tools-> Relearn Servo Settings"` requests the TX configuration and stores it in the RX.
# Deployment
Make sure to manually create `/MODELS/DSMDATA` . The script will complain at startup if it does not exist. Here the script saves the Spektrun settings for each of your models.
Uncompress the Zip file (ZIP version) into your local computer.
In another window, open your TX SDCard and go to /SCRIPTS/TOOLS.
When upgrading from a previous version of this tool, delete your /SCRIPTS/TOOLS/DSMLIB before copying the new one (if you customized your images, inside "DSMLIB/img" do a backup first)
Copy the entire DSMLIB folder.
Copy the main script you want to use (Color or B&W).
Your TX SDCard should looks like this:
/SCRIPTS/TOOLS
DSM FwdPrg_05_BW.lua -- black/white text only
DSM FwdPrg_05_Color.lua -- Color and touch radios
DSM FwdPrg_05_MIN.lua -- `NEW!` Minimalistic version for radios with LOW memory (cannot setup new planes)
/SCRIPTS/TOOLS/DSMLIB/ -- (ALL CAPITALS) Libraries ane extra files
DsmFwPrgLib.lua -- DSM Protocol Message and Menu engine
DsmFwPrgSIMLib.lua -- Simulation of AR631, FC6250HX (For GUI development)
SetupLib.lua -- Model Setup Screens
msg_fwdp_en.txt -- `NEW!` Messages for forward programing externalized. To support other langs
/SCRIPTS/TOOLS/DSMLIB/img -- Images for RX orientations
Other Directories
/MODELS/DSMDATA --(ALL CAPITALS) Data of model config (Wing Type, Servo Assignments)
/LOGS/dsm_log.txt --Readable log of the last RX/TX session, usefull for debugging problems
When upgrading from a previous version of this tool, delete your /SCRIPTS/TOOLS/DSMLIB before copying the new one (if you customized your images, inside "DSMLIB/img" do a backup first)
# Common Questions
1. `RX not accepting channels higher than Ch6 for Flight-mode o Gains:`
V0.53 and newer: The RX is listening to channel changes for this options. Configure the Switch to the channel, togling once the switch will select the channel on the menu field.
2. `Why Ch1 says Ch1 (TX:Ch3/Thr)?`:
Radios with Multi-Module are usually configured to work the standard AETR convention. Spektrum uses TAER. The multi-module does the conversion when transmitting the signals. So `Spektrum Ch1 (Throttle)` really comes from the `TX Ch3`. We show both information (+name from the TX output). If your multi-module/radio is setup as TAER, the script will not do the re-arrangement.
3. `If i change the model name, the original model settings are lost.` This is correct, the model name is used to generate the file name (inside /MODEL/DSMDATA) who stores the model configuration. Currently EdgeTx and OpenTX has differt features where i could get either the Model Name or the YAML file where the EdgeTX model configuration is stored.. to keep the code compatible, the model name is used.
4. `Reversing a channel in my TX do not reverse the AS3X/SAFE reaction.` Correct, the channel stick direction and the Gyro direction are two separate things.
4.1: First, you have setup your model so that the sticks and switches moves the surfaces in the right direction.
4.2: Go to the script, `Model Setup` and setup your wing type, tail type, and select the channel assigment for each surface. Leave the servo settings the same as the values in the TX to start.
4.3: AR63X family: Go to `Forward programming->Gyro Setting->Initial Setup` (New/factory reset), or `Forward programming->Gyro Setting->System Setup->Relearn Servo Settings` (not new RX). This will load your current Gyro servo settings into the plane's RX.
4.4: Verify that the AS3X and SAFE reacts in the proper direction. You can use the Flight mode confugured as "Safe Mode: Auto-Level" to see if it moves the surfaces in the right direction.
4.5: If a surface don't move in the right direction, go to the `Model Setup->Gyro Channel Reverse` to reverse the Gyro on the channels needed, and do again the `Forward programming->Gyro Setting->System Setup->Relearn Servo Settings` to tranfer the new settings to the RX.
4.6: Specktrum TX always passes the TX servo reverse as the Gyro Reverse, but on many OpenTX/EdgeTX radios, the Rud/Ail are usually reversed by default compared to Specktrum. So far i don't think that i can use this as a rule, that is why the `Gyro Channel Reverse` page exist.
---
---
# Changes and fixes
V0.54:
1. Fix a problem in the Attitude Trim page (`Gyro Settings->System Setup->SAFE/Panic Setup->Attitude Trim`). It was not saving the values after exiting the menu. This is to change what SAFE considers "Level" flying.
2. Wings 2-Ail 2-Flaps had a bug on the 2nd flap.
3. New Minimalistic script (`DsmFwdPrg_05_MIN.lua`): For radios with very low memory (FrSky QX7, RM Zorro, others). It can only change existing settings, but does not have the Plane Setup menus to setup a completly new plane. In some radios, the very first time it runs (compile + run), it might give you a `not enouth memory` error.. try to run it again.
4. External menu message file (DSMLIB/msg_en.txt and msg_MIN_es.txt). Intial work to do localization and different languages.
V0.53:
1. Improved channel selection (Flight mode, Panic Channel, Gains Channel). Now during editing a channel, you can select any channel (>Ch4). Also, of you toggle the switch/channel it will populate the screen.
2. Support for smaller screens (128x64) in B&W. The problem with this older radios is memory. In some, it does not have enouth memory to load the additional DSMLIB libraries.
3. Fix formatting problem with some TX channel names who could affect the screen.. for example, rud channel should show "Ch4/rud", but shows "Ch4ud" because /r is for right justify formatting on messages. Now the formatting is only if it appears at the end of the message.
V0.52:
1. Menus to be able to configure Plane in a similar way as Spektrum Radio (v0.52)
2. Make "Gyro Settings"->"Initial Setup" works (Tested on AR631,AR637xx with PLANE type of aircraft)
3. Properly reset and restart after initial configuration and SAFE changes.
4. Write Log of the conversation between RX/TX. To be used for debugging a problem is reported.
5. Provide a simulation of RX to do GUI development in Companion, and understand patterns of how the data is organized.
# Tested Hardware
- AR631/AR637xx
- FC6250HX (Blade 230S V2 Helicopter)
- AR636 (Blade 230S V1 Heli firmware 4.40)
- Radiomaster TX16S (All versions)
- FrSky QX7, Radimaster Boxter (Minimalistic version)
Please report if you have tested it with other receivers to allow us to update the documentation. Code should work up to 10 channels for the main surfaces (Ail/Ele/etc). All Spektrum RX are internally 20 channels, so you can use Ch7 for Flight Mode even if your RX is only 6 channels (See common Questions)
# Messages Displayed in the GUI
If in a screen you get text that looks like `Unknown_XX` (ex: Unknown_D3), that message has not been setup in the script in english. If you can determine what the proper message is, you can send us a message to be added to the library.
The `XX` represents a Hex Number (0..9,A..F) message ID.
### Version 0.53 and older:
If you want to fix it in your local copy, all messages are towards the end in the file `SCRIPT\TOOS\DSMLIB\DsmFwPrgLib.lua`. Messages for Headers are stored in `Text` and messages for Options are stored in `List_Text`. Lua scripts are text files, and can be edited with Notepad or equivalent.
Portion of DsmFwPrgLib.lua:
Text[0x0097] = "Factory Reset"
Text[0x0098] = "Factory Reset" -- FC6250HX: Title
Text[0x0099] = "Advanced Setup"
Text[0x009A] = "Capture Failsafe Positions"
Text[0x009C] = "Custom Failsafe"
Text[0x009F] = "Save & Reset RX" -- TODO: Find the Proper Spektrum Value ??
Text[0x00A5] = "First Time Setup"
Text[0x00AA] = "Capture Gyro Gains"
Text[0x00AD] = "Gain Channel Select"
-- Safe mode options, Inhibit + the values
local safeModeOptions = {0x0003,0x00B0,0x00B1} -- inh (gap), "Self-Level/Angle Dem, Envelope
List_Text[0x00B0] = "Self-Level/Angle Dem"
List_Text[0x00B1] = "Envelope"
For example, if you get `Unknown_9D` in the GUI and your now that it should say **NEW Text**, you can edit the lua script to look like this:
Text[0x009A] = "Capture Failsafe Positions"
Text[0x009C] = "Custom Failsafe"
Text[0x009D] = "NEW Text" -- NEW Text added for AR98xx
Text[0x009F] = "Save & Reset RX" -- TODO: Find the proper Spektrum text
### Version 0.54 and newer:
The menu messages are stored in DSMLIB/msg_fwdp_en.txt (For english). Just add the message there. MIN_msg_fwdp_en.txt has shorter messages overrides for screens who are smaller (for minimalistic 128x64 version). The reference to the message file is at the file `/DSMLIB/DsmFwPrgLib.lua` if you want to change to use another language.
T |0x0097|Factory Reset
LT|0x00B0|Self-Level/Angle Dem
LT|0x00B1|Envelope
# LOG File
The log file of the last use of the script is located at `/LOGS/dsm_log.txt`. **It is overridden on every start to avoid filling up the SD card**. So if you want to keep it, copy or rename it before starting the script again. (it can be renamed in the TX by browsing the SD card)
The log is human readable. The first number is the number of seconds since the start, and then what is the current state of the Library, and what has been sent and received. The info in the log can be easily used to create a new simulation for that RX in the future.
Example Log:
5.340 WAIT_CMD: DSM_GotoMenu(0x1010,LastSelectedLine=0)
5.350 MENU_TITLE: SEND DSM_getMenu(MenuId=0x1010 LastSelectedLine=0)
5.440 MENU_TITLE: RESPONSE Menu: M[Id=0x1010 P=0x0 N=0x0 B=0x1000 Text="Gyro settings"[0xF9]]
5.490 MENU_LINES: SEND DSM_getFirstMenuLine(MenuId=0x1010)
5.590 MENU_LINES: RESPONSE MenuLine: L[#0 T=M VId=0x1011 Text="AS3X Settings"[0x1DD] MId=0x1010 ]
5.640 MENU_LINES: SEND DSM_getNextLine(MenuId=0x1010,LastLine=0)
5.740 MENU_LINES: RESPONSE MenuLine: L[#1 T=M VId=0x1019 Text="SAFE Settings"[0x1E2] MId=0x1010 ]
5.790 MENU_LINES: SEND DSM_getNextLine(MenuId=0x1010,LastLine=1)
5.850 MENU_LINES: RESPONSE MenuLine: L[#2 T=M VId=0x1021 Text="F-Mode Setup"[0x87] MId=0x1010 ]
5.910 MENU_LINES: SEND DSM_getNextLine(MenuId=0x1010,LastLine=2)
5.970 MENU_LINES: RESPONSE MenuLine: L[#3 T=M VId=0x1022 Text="System Setup"[0x86] MId=0x1010 ]
6.020 MENU_LINES: SEND DSM_getNextLine(MenuId=0x1010,LastLine=3
# Validation of data by the RX
The RX validates the data. if you change to an invalid channel or do a invalid number range, the RX will change it at the end of editing the field.
---
# Version 0.53
- Improve Channel selection in menus
- Support smaller screens 128x64 in the black/white mode.
# Version 0.52
- Fix Reversing of Servos
- Properly detect Multimodule Ch settings AETR
---
# Version 0.51 (volunteer testing version, not for production)
- New Screens to Configure Model (Wing Type/Tail Tail, etc)
- Finally got understanding that the previous unknown 0x05 lines are to send Model/Servo data to RX.
- Fix use of AR636B (Firmware version 4.40.0 for Blade 230 heli, is the only one with Forward Programming)
- Aircraft types: Tested With Plane type only.. Glider and other in progress
### Known Problems:
- 4-Servo Wing type (Dual Ail/Tail) in planes give conflicting servo assignments by defaults.. Solution choose your own Ch.
- Glider, Heli, Drone: Still in development. In glider, only a few wing type works.. needs to restrict menu options for the only valid one.
# Version 0.5
- Make the code more readable and understandable
- Separate the DSM Forwards Programming logic from the GUI
- Log the communication with the RX on a /LOGS/dsm_log.txt to allow to debug it easier
and see the exchange of data between the RX/TX
- Created a black/white Text only version with only Key/Roller Inputs
- Created a nicer GUI for EdgeTX touch screen color Radios
- RX simulation for GUI development: turn on `SIMULATION_ON=true` in the beginning of the lua file
- Test it on AR631, AR637xx, FC6250HX (Helicopter)
### Some settings that can change (top of Lua file):
SIMULATION_ON = false -- FALSE: hide similation menu (DEFAULT), TRUE: show RX simulation menu
DEBUG_ON = 1 -- 0=NO DEBUG, 1=HIGH LEVEL 2=LOW LEVEL (Debug logged into the /LOGS/dsm_log.txt)
USE_SPECKTRUM_COLORS = true -- true: Use spectrum colors, false: use theme colors (default on OpenTX, OpenTX handle colors different)
### Known Problems:
1. **Incorrect List Value Options:** Some Menu List line (`LINE_TYPE.LIST_MENU1` or `L_m1` in logs), the range (min/max) of valid values seems to be incorrect, but the RX corrects the values.
in the MINimalistic version, the RX is doing all the range validation, and will show invalid options temporarilly. In an Spektrum radio, it happens so fast, that you don't notice it, but in LUA scripts who are slower, you can see it in the screen.
In the COLOR version, The code has hardcoded the valid ranges to avoid this problem.
2. Glider/Heli/Drone wing types not ready.
For Helicopter, use airplane normal wing and normal tail
# Version 0.2
Original Version from Pascal Langer

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local toolName = "TNS|DSM AR636 Telemetry|TNE"
---- ######################################################################### #
---- # License GPLv2: http://www.gnu.org/licenses/gpl-2.0.html #
---- # #
---- # This program is free software; you can redistribute it and/or modify #
---- # it under the terms of the GNU General Public License version 2 as #
---- # published by the Free Software Foundation. #
---- # #
---- # This program is distributed in the hope that it will be useful #
---- # but WITHOUT ANY WARRANTY; without even the implied warranty of #
---- # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the #
---- # GNU General Public License for more details. #
---- # #
---- #########################################################################
------------------------------------------------------------------------------
-- Developer: Francisco Arzu
-- Original idea taken from DsmPID.lua.. don't know who is the author
--
local DEBUG_ON = false
--
local TEXT_SIZE = 0 -- NORMAL
local X_COL1_HEADER = 6
local X_COL1_DATA = 60
local X_COL2_HEADER = 170
local X_COL2_DATA = 220
local Y_LINE_HEIGHT = 20
local Y_HEADER = 0
local Y_DATA = Y_HEADER + Y_LINE_HEIGHT*2
local X_DATA_LEN = 80
local X_DATA_SPACE = 5
local function getPage(iParam)
-- get page from 0-based index
-- {0,1,2,3}: cyclic (1), {4,5,6,7}: tail (2)
local res = (math.floor(iParam/4)==0) and 0 or 1
return res
end
local function round(v)
-- round float
local factor = 100
return math.floor(v * factor + 0.5) / factor
end
local function readValue(sensor)
-- read from sensor, round and return
local v = getValue(sensor)
--v = round(v)
return v
end
local function readValueById(sensor)
local i = getFieldInfo(sensor)
if (i==nil) then return nil end
local v = getValue(i.id)
return v
end
local function readBatValue(sensor)
-- read from sensor, round and return
local v = getValue(sensor)
if (v==nil) then return "--" end
return string.format("%2.2f",v)
end
local function readActiveParamValue(sensor)
-- read and return a validated active parameter value
local v = getValue(sensor)
if (v<1 or v>8) then
return -1
end
return v
end
local function drawPIDScreen()
-- draw labels and params on screen
local pageId = getValue("FLss")
lcd.clear()
-- if active gain does not validate then assume
-- Gain Adjustment Mode is disabled
if not (pageId==4401 or pageId==4402) then
lcd.drawText(0,0,"BLADE Gain Adjustment", TEXT_SIZE +INVERS)
lcd.drawText(X_COL1_HEADER,Y_LINE_HEIGHT*1,"Enter Gain Adjustment Mode",TEXT_SIZE)
lcd.drawText(X_COL1_HEADER,Y_LINE_HEIGHT*2,"Stk: Low/R + Low/R + Panic (3 sec)",TEXT_SIZE)
lcd.drawText(X_COL1_HEADER,Y_LINE_HEIGHT*4,"Op: Right Stk: Up/Down to select, Left/Right change value",TEXT_SIZE)
lcd.drawText(X_COL1_HEADER,Y_LINE_HEIGHT*5,"Panic to exit",TEXT_SIZE)
return
end
local activePage = (pageId % 100)-1 --Last 2 digits, make it zero base
lcd.drawText (X_COL1_HEADER, Y_HEADER, "Cyclic (0-200)", TEXT_SIZE + INVERS)
lcd.drawText (X_COL2_HEADER, Y_HEADER, "Tail (0-200)", TEXT_SIZE + INVERS)
local p = readValue("FdeA")
local i = readValue("FdeB")
local d = readValue("FdeL")
local r = readValue("FdeR")
local titles = {[0]="P:", "I:", "D:", "Resp:", "P:","I:","D:", "Filt:"}
local values = {[0]=p,i,d,r,p,i,d,r}
local activeParam = readActiveParamValue("Hold")-1
for iParam=0,7 do
-- highlight selected parameter
local attr = (activeParam==iParam) and INVERS or 0
-- circular index (per page)
local perPageIndx = (iParam % 4)
-- set y draw coord
local y = (perPageIndx+1)*Y_LINE_HEIGHT+Y_DATA
-- check if displaying cyclic params.
local isCyclicPage = (getPage(iParam)==0)
-- labels
local x = isCyclicPage and X_COL1_HEADER or X_COL2_HEADER
-- labels are P,I,D for both pages except for last param
local val = titles[iParam]
lcd.drawText (x, y, val, TEXT_SIZE)
-- gains
-- set all params for non-active page to '--' rather than 'last value'
val = (getPage(iParam)==activePage) and values[iParam] or '--'
x = isCyclicPage and X_COL1_DATA or X_COL2_DATA
if (val~=16384) then -- Active value
lcd.drawText (x, y, val, attr + TEXT_SIZE)
end
end
end
local function drawFlightLogScreen()
-- draw labels and params on screen
local h = getValue("Hold")
local activeParam = h-1 -- H
lcd.clear()
lcd.drawText (X_COL1_HEADER, Y_HEADER, "Flight Log", TEXT_SIZE + INVERS)
-- read and return parameters
local a = getValue("FdeA")
local b = getValue("FdeB")
local l = getValue("FdeL")
local r = getValue("FdeR")
local f = getValue("FLss")
local titles = {[0]="A:", "B:", "L:", "R:", "F:", "H:"}
local values = {[0]=a,b,l,r,f,h}
local y = Y_LINE_HEIGHT+Y_DATA
for iParam=0,3 do -- A,B,L,R
-- highlight selected parameter (rund)
local attr = ((activeParam%4)==iParam) and INVERS or 0
-- labels
local x = X_COL1_HEADER
local val = titles[iParam]
lcd.drawText (x, y, val, TEXT_SIZE)
-- Values
val = values[iParam]
x = X_COL1_DATA + X_DATA_LEN
if (val~=16384) then -- Active value
lcd.drawText (x, y, val, attr + TEXT_SIZE + RIGHT)
end
y = y + Y_LINE_HEIGHT
end
y = Y_LINE_HEIGHT+Y_DATA
for iParam=4,5 do -- F, H
-- labels
local x = X_COL2_HEADER
local val = titles[iParam]
lcd.drawText (x, y, val, TEXT_SIZE + BOLD)
-- Values
val = values[iParam]
x = X_COL2_DATA + X_DATA_LEN
lcd.drawText (x, y, val, TEXT_SIZE + RIGHT + BOLD)
y = y + Y_LINE_HEIGHT
end
-- Bat
y = y + Y_LINE_HEIGHT
local bat = readBatValue("A2") or "--"
lcd.drawText (X_COL2_HEADER, y, "Bat:", TEXT_SIZE)
lcd.drawText (X_COL2_DATA + X_DATA_LEN, y, bat, TEXT_SIZE + RIGHT)
lcd.drawText (X_COL2_DATA + X_DATA_LEN + X_DATA_SPACE, y, "v", TEXT_SIZE)
end
local function servoAdjustScreen()
-- draw labels and params on screen
local pageId = getValue("FLss") -- FLss
local activeParam = getValue("Hold")-1 -- Hold
lcd.clear()
lcd.drawText (0, Y_HEADER, "BLADE Servo SubTrim", TEXT_SIZE + INVERS)
if pageId~=1234 then
lcd.drawText(X_COL1_HEADER,Y_LINE_HEIGHT*1,"Enter Servo Adjustment Mode",TEXT_SIZE)
lcd.drawText(X_COL1_HEADER,Y_LINE_HEIGHT*2,"Stk: Low/L + Low/R + Panic (3 sec)",TEXT_SIZE)
lcd.drawText(X_COL1_HEADER,Y_LINE_HEIGHT*4,"Op: R Stk: Up/Down to select, Left/Right change value",TEXT_SIZE)
lcd.drawText(X_COL1_HEADER,Y_LINE_HEIGHT*5,"Panic to exit",TEXT_SIZE)
return
end
local a = getValue("FdeA")
local b = getValue("FdeB")
local l = getValue("FdeL")
local titles = {[0]="Servo1:", "Servo2:", "Servo3:"}
local values = {[0]=a,b,l}
for iParam=0,#values do -- S1,S2,S3
-- highlight selected parameter
local attr = (activeParam==iParam) and INVERS or 0
-- set y draw coord
local y = (iParam+1)*Y_LINE_HEIGHT+Y_HEADER
-- labels
local x = X_COL1_HEADER
local val = titles[iParam]
lcd.drawText (x, y, val, TEXT_SIZE)
val = values[iParam]
x = X_COL1_DATA
if (val~=16384) then -- Active value
lcd.drawText (x, y, val, attr + TEXT_SIZE)
end
end
end
local function Unsigned_to_SInt16(value)
if value >= 0x8000 then -- Negative value??
return value - 0x10000
end
return value
end
local function getDegreesValue(sensor)
local i = getFieldInfo(sensor)
if (i==nil) then return "-unk-" end
local v = getValue(i.id)
if v==nil then return "---" end
local vs = Unsigned_to_SInt16(v)
return string.format("%0.1f o",vs/10)
end
local function getDecHexValue(sensor)
local i = getFieldInfo(sensor)
if (i==nil) then return "-unk-" end
local v = getValue(i.id)
if v==nil then return "---" end
local vs = Unsigned_to_SInt16(v)
return string.format("%d (0x%04X)",vs,v)
end
local function drawVersionScreen()
local paramV = getValue("FdeA")
local B = getValue("FdeB")
local rxId = getValue("FdeL")
local firmware = getValue("FLss")
local prodId = getValue("Hold")
local bat = readBatValue("A2")
lcd.clear()
lcd.drawText (0, Y_HEADER, "BLADE Version", TEXT_SIZE + INVERS)
--Product ID
local val = "ID_".. prodId
if (prodId==243) then val = "Blade 230 V1"
elseif (prodId==250) then val = "Blade 230 V2 (not Smart)"
elseif (prodId==149) then val = "Blade 250 CFX"
end
local y = Y_DATA
local x_data1 = X_COL1_DATA+X_DATA_LEN
lcd.drawText (X_COL1_HEADER, y, "Prod:", TEXT_SIZE)
lcd.drawText (x_data1, y, val, TEXT_SIZE)
-- RX
val = "ID_"..rxId
if (rxId==1) then val = "AR636"
end
y = y + Y_LINE_HEIGHT
lcd.drawText (X_COL1_HEADER, y, "RX:", TEXT_SIZE)
lcd.drawText (x_data1, y, val, TEXT_SIZE)
-- Firmware
val = string.format("%0.2f",firmware/100)
y = y + Y_LINE_HEIGHT
lcd.drawText (X_COL1_HEADER, y, "Firmware:", TEXT_SIZE)
lcd.drawText (x_data1, y, val, TEXT_SIZE)
-- ParamV
y = y + Y_LINE_HEIGHT
lcd.drawText (X_COL1_HEADER, y, "Params:", TEXT_SIZE)
lcd.drawText (x_data1, y, paramV, TEXT_SIZE)
-- Bat
y = y + Y_LINE_HEIGHT
lcd.drawText (X_COL1_HEADER, y, "Bat:", TEXT_SIZE)
lcd.drawText (x_data1, y, bat, TEXT_SIZE)
y = y + Y_LINE_HEIGHT
lcd.drawText(X_COL1_HEADER,y,"Press Panic for 3s",TEXT_SIZE)
y = y + Y_LINE_HEIGHT
lcd.drawText(X_COL1_HEADER,y,"Usually Panic is Ch7 on a switch and Revesed",TEXT_SIZE)
end
local function parseFlightMode(v)
-- FlightMode (Hex: MMSGG) MM=Flight Mode, S=Status (0= off, 1=init, 2=Hold, 3=Running) GG=???
if v==nil then return "---" end
local fm = bit32.rshift(v, 12)
local status = bit32.band(bit32.rshift(v, 8),0xF)
local res = " "..fm.." "
if (fm==0) then res = res .. " NORMAL"
elseif (fm==1) then res = res .. " INTERMEDIATE"
elseif (fm==2) then res = res .. " ADVANCED"
elseif (fm==5) then res = res .. " PANIC"
end
if (status==2) then res=res .. " HOLD" end
if (DEBUG_ON) then
res = res .. string.format(" (0x%04X)",v)
end
return res
end
local function drawAlpha6Monitor()
lcd.clear()
local RxStatus = readValueById("2402") -- FlightMode (Hex: MMSGG) MM=Flight Mode, S=Status (0=init, 2=Ready, 3=Sensor Fault) GG=???
local ARoll = getDegreesValue("2406") --Att Roll
local APitch = getDegreesValue("2408") --Att Pitch
local AYaw = getDegreesValue("240B") --Att Yaw
lcd.drawText (0,0, "BLADE Alpha6 Monitor", TEXT_SIZE+INVERS)
local y = Y_DATA
local x_data1 = X_COL1_DATA+X_DATA_LEN
local x_data2 = X_COL1_DATA+X_DATA_LEN*2
local x_data3 = X_COL1_DATA+X_DATA_LEN*3
-- Flight Mode
lcd.drawText (0,y, "F-Mode:"..parseFlightMode(RxStatus), TEXT_SIZE)
y = y + Y_LINE_HEIGHT
lcd.drawText (x_data1,y, "Attitude", TEXT_SIZE+BOLD + RIGHT)
lcd.drawText (x_data2,y, "Gyro", TEXT_SIZE+BOLD + RIGHT)
lcd.drawText (x_data3,y, "Gain", TEXT_SIZE+BOLD + RIGHT)
y = y + Y_LINE_HEIGHT
lcd.drawText (X_COL1_HEADER,y, "Rol:", TEXT_SIZE)
lcd.drawText (x_data1,y, ARoll, TEXT_SIZE + RIGHT)
lcd.drawText (x_data2,y, "-", TEXT_SIZE + RIGHT)
lcd.drawText (x_data3,y, "-", TEXT_SIZE + RIGHT)
y = y + Y_LINE_HEIGHT
lcd.drawText (X_COL1_HEADER,y, "Pitch:", TEXT_SIZE)
lcd.drawText (x_data1,y, APitch, TEXT_SIZE + RIGHT)
lcd.drawText (x_data2,y, "-", TEXT_SIZE + RIGHT)
lcd.drawText (x_data3,y, "-", TEXT_SIZE + RIGHT)
y = y + Y_LINE_HEIGHT
lcd.drawText (X_COL1_HEADER,y, "Yaw:", TEXT_SIZE)
lcd.drawText (x_data1,y, AYaw, TEXT_SIZE + RIGHT)
lcd.drawText (x_data2,y, "-", TEXT_SIZE + RIGHT)
lcd.drawText (x_data3,y, "-", TEXT_SIZE + RIGHT)
y = y + Y_LINE_HEIGHT + Y_LINE_HEIGHT
lcd.drawText (0,y, "Bat: "..readBatValue("A2").." v", TEXT_SIZE)
-- Debug Values
if (DEBUG_ON) then
local s2400 = getDecHexValue("2400")
local s2402 = getDecHexValue("2402")
local s2404 = getDecHexValue("2404")
local s240D = getDecHexValue("240D")
local s1G00 = getDecHexValue("1G00")
local s1G02 = getDecHexValue("1G02")
local s1G04 = getDecHexValue("1G04")
local s1G06 = getDecHexValue("1G06")
local s1G08 = getDecHexValue("1G08")
local s1G0B = getDecHexValue("1G0B")
local s1G0D = getDecHexValue("1G0D")
local titles = {[0]=
"2400","2402/FM-S-?",
"2404","240D",
"1G00","1G02","1G04",
"1G06","1G08","1G0B","1G0D"}
local values = {[0]=
s2400,s2402,s2404,s240D,
s1G00,s1G02,s1G04,
s1G06,s1G08,s1G0B,s1G0D}
-- draw labels and params on screen
y = Y_LINE_HEIGHT*2 + Y_HEADER
for iParam=0,#titles do -- ??
-- labels
local x = X_COL1_HEADER+220
local val = titles[iParam]
lcd.drawText (x, y, val, TEXT_SIZE)
val = values[iParam]
x = X_COL1_DATA+250
lcd.drawText (x, y, val, TEXT_SIZE)
y = y + Y_LINE_HEIGHT
end
end
end
local function readAlpha3arameters()
end
local function drawAS3XMonitor()
lcd.clear()
local s1G00 = getDecHexValue("1G00")
local s1G02 = getDecHexValue("1G02")
local s1G04 = getDecHexValue("1G04")
local s1G06 = getDecHexValue("1G06")
local s1G08 = getDecHexValue("1G08")
local s1G0B = getDecHexValue("1G0B")
local s1G0D = getDecHexValue("1G0D")
local s6C00 = getDecHexValue("6C00")
local s6C02 = getDecHexValue("6C02")
local s6C04 = getDecHexValue("6C04")
local RRoll = bit32.rshift(getValue("1G00") or 0,8)
local RPitch = bit32.band(getValue("1G00") or 0,0xFF)
local RYaw = bit32.rshift(getValue("1G02") or 0,8)
local HRoll = bit32.band(getValue("1G02") or 0,0xFF)
local HPitch = bit32.rshift(getValue("1G04") or 0,8)
local HYaw = bit32.band(getValue("1G04") or 0,0xFF)
local ARoll = bit32.rshift(getValue("1G06") or 0,8)
local APitch = bit32.band(getValue("1G06") or 0,0xFF)
local AYaw = bit32.rshift(getValue("1G08") or 0,8)
lcd.drawText (0,0, "Plane AR636 AS3X Gains", TEXT_SIZE+INVERS)
local y = Y_DATA
local x_data1 = X_COL1_DATA+X_DATA_LEN
local x_data2 = X_COL1_DATA+X_DATA_LEN*2
local x_data3 = X_COL1_DATA+X_DATA_LEN*3.1
-- Flight Mode
--lcd.drawText (0,y, "F-Mode: "..(nil or "--"), TEXT_SIZE)
y = y + Y_LINE_HEIGHT
lcd.drawText (x_data1,y, "Rate", TEXT_SIZE+BOLD + RIGHT)
lcd.drawText (x_data2,y, "Head", TEXT_SIZE+BOLD + RIGHT)
lcd.drawText (x_data3+X_DATA_SPACE*3,y, "Actual", TEXT_SIZE+BOLD + RIGHT)
y = y + Y_LINE_HEIGHT
lcd.drawText (X_COL1_HEADER,y, "Roll %:", TEXT_SIZE)
lcd.drawText (x_data1,y, RRoll, TEXT_SIZE + RIGHT)
lcd.drawText (x_data2,y, HRoll, TEXT_SIZE + RIGHT)
lcd.drawText (x_data3,y, ARoll, TEXT_SIZE + RIGHT)
y = y + Y_LINE_HEIGHT
lcd.drawText (X_COL1_HEADER,y, "Pitch %:", TEXT_SIZE)
lcd.drawText (x_data1,y, RPitch, TEXT_SIZE + RIGHT)
lcd.drawText (x_data2,y, HPitch, TEXT_SIZE + RIGHT)
lcd.drawText (x_data3,y, APitch, TEXT_SIZE + RIGHT)
y = y + Y_LINE_HEIGHT
lcd.drawText (X_COL1_HEADER,y, "Yaw %:", TEXT_SIZE)
lcd.drawText (x_data1,y, RYaw, TEXT_SIZE + RIGHT)
lcd.drawText (x_data2,y, HYaw, TEXT_SIZE + RIGHT)
lcd.drawText (x_data3,y, AYaw, TEXT_SIZE + RIGHT)
-- Debug Values
if (DEBUG_ON) then
local Alpha3Tags = {[0]=
"1G00/RA+RE","1G02/RY+HA","1G04R HP+HY","1G06/AR+AP","1G08/AY+?","1G0B","1G0D","6C00","6C02","6C04"}
local params = {[0]=
s1G00,s1G02,s1G04,s1G06,s1G08,s1G0B,s1G0D,s6C00,s6C02,s6C04 }
y = Y_LINE_HEIGHT*2 + Y_HEADER
for iParam=0,#Alpha3Tags do -- ??
-- labels
local x = X_COL1_HEADER+220
local val = Alpha3Tags[iParam]
lcd.drawText (x, y, val, TEXT_SIZE)
val = params[iParam]
x = X_COL1_DATA+250
lcd.drawText (x, y, val, TEXT_SIZE)
y = y + Y_LINE_HEIGHT
end
end
end
local function openTelemetryRaw(i2cId)
--Init telemetry (Spectrun Telemetry Raw STR)
multiBuffer( 0, string.byte('S') )
multiBuffer( 1, string.byte('T') )
multiBuffer( 2, string.byte('R') )
multiBuffer( 3, i2cId ) -- Monitor this teemetry data
multiBuffer( 4, 0 ) -- Allow to get Data
end
local function closeTelemetryRaw()
multiBuffer(0, 0) -- Destroy the STR header
multiBuffer(3, 0) -- Not requesting any Telementry ID
end
local lineText = {nil}
local I2C_TEXT_GEN = 0x0C
local function drawTextGen(event)
if (multiBuffer(0)~=string.byte('S')) then -- First time run???
openTelemetryRaw(I2C_TEXT_GEN) -- I2C_ID for TEXT_GEN
lineText = {nil}
end
-- Proces TEXT GEN Telementry message
if multiBuffer( 4 ) == I2C_TEXT_GEN then -- Specktrum Telemetry ID of data received
local instanceNo = multiBuffer( 5 )
local lineNo = multiBuffer( 6 )
local line = ""
for i=0,13 do
line = line .. string.char(multiBuffer( 7 + i ))
end
multiBuffer( 4, 0 ) -- Clear Semaphore, to notify that we fully process the current message
lineText[lineNo]=line
end
lcd.clear()
-- Header
if (lineText[0]) then
lcd.drawText (X_COL1_HEADER,0, " "..lineText[0].." ", TEXT_SIZE + BOLD + INVERS)
else
lcd.drawText (X_COL1_HEADER,0, "TextGen", TEXT_SIZE+INVERS)
end
-- Menu lines
local y = Y_DATA
for i=1,8 do
if (lineText[i]) then
lcd.drawText (X_COL1_HEADER,y, lineText[i], TEXT_SIZE)
end
y = y + Y_LINE_HEIGHT
end
if event == EVT_VIRTUAL_EXIT then -- Exit?? Clear menu data
closeTelemetryRaw()
end
end
local telPage = 1
local telPageSelected = 0
local pageTitle = {[0]="Main", "Blade Version", "Blade Servo Adjust","Blade Gyro Adjust", "Blade Alpha6 Monitor", "Plane AS3X Monitor", "TextGen", "Flight Log"}
local function drawMainScreen(event)
lcd.clear()
lcd.drawText (X_COL1_HEADER, Y_HEADER, "Main Telemetry (AR636)", TEXT_SIZE + INVERS)
for iParam=1,#pageTitle do
-- highlight selected parameter
local attr = (telPage==iParam) and INVERS or 0
-- set y draw coord
local y = (iParam-1)*Y_LINE_HEIGHT+Y_DATA
-- labels
local x = X_COL1_HEADER
local val = pageTitle[iParam]
lcd.drawText (x, y, val, attr + TEXT_SIZE)
end
if event == EVT_VIRTUAL_PREV then
if (telPage>1) then telPage = telPage - 1 end
elseif event == EVT_VIRTUAL_NEXT then
if (telPage<#pageTitle) then telPage = telPage + 1 end
elseif event == EVT_VIRTUAL_ENTER then
telPageSelected = telPage
end
end
local pageDraw = {[0]=drawMainScreen, drawVersionScreen, servoAdjustScreen,drawPIDScreen, drawAlpha6Monitor, drawAS3XMonitor, drawTextGen, drawFlightLogScreen}
local function run_func(event)
if event == nil then
error("Cannot be run as a model script!")
return 2
end
-- draw specific page
pageDraw[telPageSelected](event)
if event == EVT_VIRTUAL_EXIT then
if (telPageSelected==0) then return 1 end -- on Main?? Exit Script
telPageSelected = 0 -- any page, return to Main
end
return 0
end
local function init_func()
if (LCD_W <= 128 or LCD_H <=64) then -- Smaller Screens
TEXT_SIZE = SMLSIZE
X_COL1_HEADER = 0
X_COL1_DATA = 20
X_COL2_HEADER = 60
X_COL2_DATA = 90
X_DATA_LEN = 28
X_DATA_SPACE = 1
Y_LINE_HEIGHT = 8
Y_DATA = Y_HEADER + Y_LINE_HEIGHT
end
end
return { run=run_func, init=init_func }

View File

@@ -1,603 +0,0 @@
local toolName = "TNS|DSM Smart RX Telemetry|TNE"
---- ######################################################################### #
---- # License GPLv2: http://www.gnu.org/licenses/gpl-2.0.html #
---- # #
---- # This program is free software; you can redistribute it and/or modify #
---- # it under the terms of the GNU General Public License version 2 as #
---- # published by the Free Software Foundation. #
---- # #
---- # This program is distributed in the hope that it will be useful #
---- # but WITHOUT ANY WARRANTY; without even the implied warranty of #
---- # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the #
---- # GNU General Public License for more details. #
---- # #
---- #########################################################################
------------------------------------------------------------------------------
-- Developer: Francisco Arzu
local DEBUG_ON = false
--
local TEXT_SIZE = 0 -- NORMAL
local X_COL1_HEADER = 6
local X_COL1_DATA = 60
local X_COL2_HEADER = 170
local X_COL2_DATA = 220
local Y_LINE_HEIGHT = 20
local Y_HEADER = 0
local Y_DATA = Y_HEADER + Y_LINE_HEIGHT*2
local X_DATA_LEN = 80
local X_DATA_SPACE = 5
local function getPage(iParam)
-- get page from 0-based index
-- {0,1,2,3}: cyclic (1), {4,5,6,7}: tail (2)
local res = (math.floor(iParam/4)==0) and 0 or 1
return res
end
local function round(v)
-- round float
local factor = 100
return math.floor(v * factor + 0.5) / factor
end
local function readValue(sensor)
-- read from sensor, round and return
local v = getValue(sensor)
--v = round(v)
return v
end
local function readValueById(sensor)
local i = getFieldInfo(sensor)
if (i==nil) then return nil end
local v = getValue(i.id)
return v
end
local function readBatValue(sensor)
-- read from sensor, round and return
local v = getValue(sensor)
if (v==nil) then return v end
return string.format("%2.2f",v)
end
local function readActiveParamValue(sensor)
-- read and return a validated active parameter value
local v = getValue(sensor)
if (v<1 or v>8) then
return -1
end
return v
end
local function drawFlightLogScreen(event)
-- draw labels and params on screen
local h = getValue("Hold")
local activeParam = h-1 -- H
lcd.clear()
lcd.drawText (X_COL1_HEADER, Y_HEADER, "Flight Log", TEXT_SIZE + INVERS)
-- read and return parameters
local a = getValue("FdeA")
local b = getValue("FdeB")
local l = getValue("FdeL")
local r = getValue("FdeR")
local f = getValue("FLss")
local titles = {[0]="A:", "B:", "L:", "R:", "F:", "H:"}
local values = {[0]=a,b,l,r,f,h}
local y = Y_LINE_HEIGHT+Y_DATA
for iParam=0,3 do -- A,B,L,R
-- highlight selected parameter (rund)
local attr = ((activeParam%4)==iParam) and INVERS or 0
-- labels
local x = X_COL1_HEADER
local val = titles[iParam]
lcd.drawText (x, y, val, TEXT_SIZE)
-- Values
val = values[iParam]
x = X_COL1_DATA + X_DATA_LEN
if (val~=16384) then -- Active value
lcd.drawText (x, y, val, attr + TEXT_SIZE + RIGHT)
end
y = y + Y_LINE_HEIGHT
end
y = Y_LINE_HEIGHT+Y_DATA
for iParam=4,5 do -- F, H
-- labels
local x = X_COL2_HEADER
local val = titles[iParam]
lcd.drawText (x, y, val, TEXT_SIZE + BOLD)
-- Values
val = values[iParam]
x = X_COL2_DATA + X_DATA_LEN
lcd.drawText (x, y, val, TEXT_SIZE + RIGHT + BOLD)
y = y + Y_LINE_HEIGHT
end
-- Bat
y = y + Y_LINE_HEIGHT
local bat = readBatValue("A2") or "--"
lcd.drawText (X_COL2_HEADER, y, "Bat:", TEXT_SIZE)
lcd.drawText (X_COL2_DATA + X_DATA_LEN, y, bat, TEXT_SIZE + RIGHT)
lcd.drawText (X_COL2_DATA + X_DATA_LEN + X_DATA_SPACE, y, "v", TEXT_SIZE)
end
local function Unsigned_to_SInt16(value)
if value >= 0x8000 then -- Negative value??
return value - 0x10000
end
return value
end
local function getDegreesValue(sensor)
local i = getFieldInfo(sensor)
if (i==nil) then return "-unk-" end
local v = getValue(i.id)
if v==nil then return "---" end
local vs = Unsigned_to_SInt16(v)
return string.format("%0.1f o",vs/10)
end
local function getDecHexValue(sensor)
local i = getFieldInfo(sensor)
if (i==nil) then return "-unk-" end
local v = getValue(i.id)
if v==nil then return "---" end
local vs = Unsigned_to_SInt16(v)
return string.format("%d (0x%04X)",vs,v)
end
local as3xData = {[0]=0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0}
local function drawAS3XSettings(event, page)
local s0500 = getDecHexValue("0500")
local s0502 = getDecHexValue("0502")
local s0504 = getDecHexValue("0504")
local s0506 = getDecHexValue("0506")
local s0508 = getDecHexValue("0508")
local s050B = getDecHexValue("050B")
local s050D = getDecHexValue("050D")
local d0500 = readValueById("0500") or 0
local flags = bit32.rshift(d0500,8)
local state = bit32.band(d0500,0xFF)
local flagsMsg=""
-- flags bits: Safe Envelop, ?, Angle Demand, Stab
if (bit32.band(flags,0x1)~=0) then flagsMsg=flagsMsg.."AS3X Stab" end
-- This one, only one should show
if (bit32.band(flags,0x2)~=0) then flagsMsg=flagsMsg..", Angle Demand"
elseif (bit32.band(flags,0x8)~=0) then flagsMsg=flagsMsg..", Safe Envelope"
elseif (bit32.band(flags,0x4)~=0) then flagsMsg=flagsMsg..", AS3X Heading" end
local d0502 = readValueById("0502") or 0 -- 0x?F?S
local fm = bit32.band(bit32.rshift(d0502,8),0xF) -- 0,1,2
local axis = bit32.band(d0502,0xF) -- 0=Gains,1=Headings,2=Angle Limits (cointinus iterating to provide all values)
local d0504 = readValueById("0504") or 0
local d0506 = readValueById("0506") or 0
local d0508 = readValueById("0508") or 0
local d0 = bit32.rshift(d0504,8)
local d1 = bit32.band(d0504,0xFF)
local d2 = bit32.rshift(d0506,8)
local d3 = bit32.band(d0506,0xFF)
local d4 = bit32.rshift(d0508,8)
local d5 = bit32.band(d0508,0xFF)
--axis: 0=Gains+Headings (RG,PG,YG,RH,PH,YH), 1=Safe Gains (R,P,Y),2=Angle Limits(L,R,U,D)
--Constantly changing from 0..2 to represent different data, thats why we have to store the values
--in a script/global variable, and not local to the function
local s = axis*6
as3xData[s+0] = d0
as3xData[s+1] = d1
as3xData[s+2] = d2
as3xData[s+3] = d3
as3xData[s+4] = d4
as3xData[s+5] = d5
lcd.clear()
lcd.drawText (0,0, "AS3X/SAFE Settings", TEXT_SIZE + INVERS)
local y = Y_DATA
-- Flight Mode
lcd.drawText (X_COL1_HEADER,y, "FM: "..(fm+1), TEXT_SIZE)
lcd.drawText (X_COL1_DATA+X_DATA_LEN*0.3,y, "Flags: "..flags, TEXT_SIZE)
lcd.drawText (X_COL2_HEADER+X_DATA_LEN*0.3,y, "State: "..state, TEXT_SIZE)
y = y + Y_LINE_HEIGHT
lcd.drawText (X_COL1_HEADER,y, flagsMsg, TEXT_SIZE)
y = y + Y_LINE_HEIGHT
if (page==1) then
lcd.drawText (X_COL1_HEADER+X_DATA_LEN*0.3,y, "AS3X Gains", TEXT_SIZE+BOLD)
lcd.drawText (X_COL2_HEADER+X_DATA_LEN*0.3,y, "AS3X Headings", TEXT_SIZE+BOLD)
y = y + Y_LINE_HEIGHT
lcd.drawText (X_COL1_HEADER,y, "Roll:", TEXT_SIZE)
lcd.drawText (X_COL1_DATA+X_DATA_LEN,y, as3xData[0], TEXT_SIZE + RIGHT) -- Roll G
lcd.drawText (X_COL2_DATA+X_DATA_LEN,y, as3xData[3], TEXT_SIZE + RIGHT) -- Roll H
y = y + Y_LINE_HEIGHT
lcd.drawText (X_COL1_HEADER,y, "Pitch:", TEXT_SIZE)
lcd.drawText (X_COL1_DATA+X_DATA_LEN,y,as3xData[1], TEXT_SIZE + RIGHT) -- Pitch G
lcd.drawText (X_COL2_DATA+X_DATA_LEN,y, as3xData[4], TEXT_SIZE + RIGHT) -- Pitch H
y = y + Y_LINE_HEIGHT
lcd.drawText (X_COL1_HEADER,y, "Yaw:", TEXT_SIZE)
lcd.drawText (X_COL1_DATA+X_DATA_LEN,y, as3xData[2], TEXT_SIZE + RIGHT) -- Yaw G
lcd.drawText (X_COL2_DATA+X_DATA_LEN,y, as3xData[5], TEXT_SIZE + RIGHT) -- Yaw H
end
if (page==2) then
local x_data1 = X_COL1_DATA+X_DATA_LEN
local x_data2 = X_COL2_HEADER+X_DATA_LEN*1.6
lcd.drawText (X_COL1_HEADER+X_DATA_LEN*0.3,y, "SAFE Gains", TEXT_SIZE+BOLD)
lcd.drawText (X_COL2_HEADER+X_DATA_LEN*0.1,y, "Angle Limits", TEXT_SIZE+BOLD)
y = y + Y_LINE_HEIGHT
lcd.drawText (X_COL1_HEADER,y, "Roll:", TEXT_SIZE)
lcd.drawText (x_data1,y, as3xData[6], TEXT_SIZE + RIGHT)
lcd.drawText (X_COL2_HEADER,y, "Roll R:", TEXT_SIZE)
lcd.drawText (x_data2,y, as3xData[12], TEXT_SIZE + RIGHT)
y = y + Y_LINE_HEIGHT
lcd.drawText (X_COL1_HEADER,y, "Pitch:", TEXT_SIZE)
lcd.drawText (x_data1,y,as3xData[7], TEXT_SIZE + RIGHT)
lcd.drawText (X_COL2_HEADER,y, "Roll L:", TEXT_SIZE)
lcd.drawText (x_data2,y,as3xData[13], TEXT_SIZE + RIGHT)
y = y + Y_LINE_HEIGHT
lcd.drawText (X_COL1_HEADER,y, "Yaw:", TEXT_SIZE)
lcd.drawText (x_data1,y, as3xData[8], TEXT_SIZE + RIGHT)
lcd.drawText (X_COL2_HEADER,y, "Pitch U:", TEXT_SIZE)
lcd.drawText (x_data2,y, as3xData[14], TEXT_SIZE + RIGHT)
y = y + Y_LINE_HEIGHT
lcd.drawText (X_COL2_HEADER,y, "Pitch D:", TEXT_SIZE)
lcd.drawText (x_data2,y, as3xData[15], TEXT_SIZE + RIGHT)
end
-- Debug Values
if (DEBUG_ON) then
local titles = {[0]=
"0500","0502","0504","0506","0508","050B","050D"}
local values = {[0]=
s0500,s0502,s0504,s0506,s0508,s050B,s050D }
y = Y_LINE_HEIGHT*2 + Y_HEADER
for iParam=0,#titles do -- ??
-- labels
local x = X_COL1_HEADER+250
local val = titles[iParam]
lcd.drawText (x, y, val, TEXT_SIZE)
val = values[iParam] or "--"
x = X_COL1_DATA+250
lcd.drawText (x, y, val, TEXT_SIZE)
y = y + Y_LINE_HEIGHT
end
end
end
local function drawAS3XSettingsP1(event)
drawAS3XSettings(event, 1)
end
local function drawAS3XSettingsP2(event)
drawAS3XSettings(event, 2)
end
local function doFloat(v)
if v==nil then return 0.0 end
local vs = string.format("%1.2f",v)
return vs + 0.0
end
local ESC_Title={[0]="","RPM:","Volts:","Motor:","Mot Out:","Throttle:","FET Temp:", "BEC V:", "BEC T:", "BEC A:"}
local ESC_uom={[0]="","","V","A","%","%","C", "V","C","A"}
local ESC_Status={[0]=0,0,0,0,0,0,0,0,0,0,0}
local ESC_Min={[0]=0,0,0,0,0,0,0,0,0,0,0}
local ESC_Max={[0]=0,0,0,0,0,0,0,0,0,0,0}
local function drawESCStatus(event)
lcd.clear()
ESC_Status[1] = getValue("Erpm") -- RPM
ESC_Status[2] = doFloat(getValue("EVIN")) -- Volts
ESC_Status[3] = doFloat(getValue("ECUR")) -- Current
ESC_Status[4] = doFloat(getValue("EOUT")) -- % Output
ESC_Status[5] = doFloat(getValue("ETHR")) -- Throttle % (EOUT)
ESC_Status[6] = getValue("TFET") -- Temp FET
ESC_Status[7] = doFloat(getValue("VBEC")) -- Volts BEC
ESC_Status[8] = getValue("TBEC") -- Temp BEC
ESC_Status[9] = doFloat(getValue("CBEC")) -- Current BEC
for i=1,9 do
if (ESC_Status~=nil) then
if (ESC_Min[i]==0) then
ESC_Min[i]=ESC_Status[i]
else
ESC_Min[i] = math.min(ESC_Min[i],ESC_Status[i])
end
ESC_Max[i] = math.max(ESC_Max[i],ESC_Status[i])
end
end
lcd.drawText (0,0, "ESC", TEXT_SIZE+INVERS)
local y = 0
local x_data = X_COL1_DATA+X_DATA_LEN*1.5
local x_data2 = X_COL2_DATA+X_DATA_LEN*0.5
local x_data3 = x_data2 + X_DATA_LEN*0.8
lcd.drawText (x_data,y , "Status", TEXT_SIZE+BOLD+RIGHT)
lcd.drawText (x_data2,y, "Min", TEXT_SIZE+BOLD+RIGHT)
lcd.drawText (x_data3,y, "Max", TEXT_SIZE+BOLD+RIGHT)
y = Y_DATA
for i=1,9 do
lcd.drawText (X_COL1_HEADER,y, ESC_Title[i], TEXT_SIZE + BOLD)
lcd.drawText (x_data,y, ESC_Status[i] or "--", TEXT_SIZE + RIGHT)
lcd.drawText (x_data + X_DATA_SPACE,y, ESC_uom[i], TEXT_SIZE)
lcd.drawText (x_data2,y, ESC_Min[i] or "--", TEXT_SIZE + RIGHT)
lcd.drawText (x_data3,y, ESC_Max[i] or "--", TEXT_SIZE + RIGHT)
y = y + Y_LINE_HEIGHT
end
end
local function drawBATStatus(event)
local Title={[0]="","Bat:","Temp:","Rem :","Curr:","Used:","Imbal:","Cycles:", "RX:", "BCpT?:"}
local uom={[0]="","V","C","%","mAh","mAh","mV","", "V",""}
local Values={[0]=0,0,0,0,0,0,0,0,0,0,0}
local CellValues={[0]=0,0,0,0,0,0,0,0,0,0,0}
lcd.clear()
local ESC_Volts = getValue("EVIN") or 0 -- Volts
local ESC_Current = getValue("ECUR") or 0 -- Current
Values[1] = 0 -- compute later
Values[2] = getValue("BTmp") -- Current (C)
Values[3] = nil -- Remaining???
Values[4] = getValue("BCur") -- Current (mAh)
Values[5] = getValue("BUse") -- Current Used (mAh)
Values[6] = getValue("CLMa") -- 0.0 (mV) Imbalance
Values[7] = getValue("Cycl") -- Cycles
Values[8] = readBatValue("A2") -- v
Values[9] = getValue("BCpT") -- Current (mAh) ????
--- Total Voltange Calculation
local VTotal=0
for i=1,10 do
CellValues[i] = getValue("Cel"..i)
VTotal = VTotal + CellValues[i]
end
if (VTotal==0) then -- No Inteligent Battery,use intelligent ESC if any
VTotal = ESC_Volts
Values[4] = string.format("%d",ESC_Current * 1000)
end
Values[1] = string.format("%2.2f",VTotal)
--- SCREEN
lcd.drawText (X_COL1_HEADER,0, "Battery Stats", TEXT_SIZE+INVERS)
local y = Y_DATA
local x_data = X_COL1_DATA+X_DATA_LEN+X_DATA_SPACE*3
for i=2,9 do
lcd.drawText (X_COL1_HEADER, y, Title[i], TEXT_SIZE + BOLD)
lcd.drawText (x_data, y, Values[i] or "--", TEXT_SIZE + RIGHT)
lcd.drawText (x_data+X_DATA_SPACE, y, uom[i], TEXT_SIZE)
y = y + Y_LINE_HEIGHT
end
y = Y_DATA
x_data = X_COL2_DATA+X_DATA_LEN+X_DATA_SPACE*5
for i=1,8 do
if ((CellValues[i] or 0) > 0) then
lcd.drawText (X_COL2_HEADER+X_DATA_LEN/2,y, "Cel "..i..":", TEXT_SIZE + BOLD)
lcd.drawText (x_data,y, string.format("%2.2f",CellValues[i] or 0), TEXT_SIZE + RIGHT)
lcd.drawText (x_data+X_DATA_SPACE,y, "v", TEXT_SIZE)
end
y = y + Y_LINE_HEIGHT
end
lcd.drawText (X_COL2_HEADER+X_DATA_LEN/2,0, Title[1], TEXT_SIZE + INVERS + BOLD)
lcd.drawText (x_data,0, string.format("%2.2f",Values[1] or 0), TEXT_SIZE + INVERS+ RIGHT)
lcd.drawText (x_data+X_DATA_SPACE, 0, uom[1], TEXT_SIZE + INVERS)
end
local function openTelemetryRaw(i2cId)
--Init telemetry (Spectrun Telemetry Raw STR)
multiBuffer( 0, string.byte('S') )
multiBuffer( 1, string.byte('T') )
multiBuffer( 2, string.byte('R') )
multiBuffer( 3, i2cId ) -- Monitor this teemetry data
multiBuffer( 4, 0 ) -- Allow to get Data
end
local function closeTelemetryRaw()
multiBuffer(0, 0) -- Destroy the STR header
multiBuffer(3, 0) -- Not requesting any Telementry ID
end
local lineText = {nil}
local I2C_TEXT_GEN = 0x0C
local function drawTextGen(event)
if (multiBuffer(0)~=string.byte('S')) then -- First time run???
openTelemetryRaw(I2C_TEXT_GEN) -- I2C_ID for TEXT_GEN
lineText = {nil}
end
-- Proces TEXT GEN Telementry message
if multiBuffer( 4 ) == I2C_TEXT_GEN then -- Specktrum Telemetry ID of data received
local instanceNo = multiBuffer( 5 )
local lineNo = multiBuffer( 6 )
local line = ""
for i=0,13 do
line = line .. string.char(multiBuffer( 7 + i ))
end
multiBuffer( 4, 0 ) -- Clear Semaphore, to notify that we fully process the current message
lineText[lineNo]=line
end
lcd.clear()
-- Header
if (lineText[0]) then
lcd.drawText (X_COL1_HEADER,0, " "..lineText[0].." ", TEXT_SIZE + BOLD + INVERS)
else
lcd.drawText (X_COL1_HEADER,0, "TextGen", TEXT_SIZE+INVERS)
end
-- Menu lines
local y = Y_DATA
for i=1,8 do
if (lineText[i]) then
lcd.drawText (X_COL1_HEADER,y, lineText[i], TEXT_SIZE)
end
y = y + Y_LINE_HEIGHT
end
if event == EVT_VIRTUAL_EXIT then -- Exit?? Clear menu data
closeTelemetryRaw()
end
end
local telPage = 1
local telPageSelected = 0
local pageTitle = {[0]="Main", "AS3X Settings", "SAFE Settings", "ESC Status", "Battery Status","TextGen","Flight Log"}
local function drawMainScreen(event)
lcd.clear()
lcd.drawText (X_COL1_HEADER, Y_HEADER, "Main Telemetry (Smart RXs)", TEXT_SIZE + INVERS)
for iParam=1,#pageTitle do
-- highlight selected parameter
local attr = (telPage==iParam) and INVERS or 0
-- set y draw coord
local y = (iParam)*Y_LINE_HEIGHT+Y_DATA
-- labels
local x = X_COL1_HEADER
local val = pageTitle[iParam]
lcd.drawText (x, y, val, attr + TEXT_SIZE)
end
if event == EVT_VIRTUAL_PREV then
if (telPage>1) then telPage = telPage - 1 end
elseif event == EVT_VIRTUAL_NEXT then
if (telPage<#pageTitle) then telPage = telPage + 1 end
elseif event == EVT_VIRTUAL_ENTER then
telPageSelected = telPage
end
end
local pageDraw = {[0]=drawMainScreen, drawAS3XSettingsP1, drawAS3XSettingsP2, drawESCStatus, drawBATStatus, drawTextGen, drawFlightLogScreen}
local function run_func(event)
if event == nil then
error("Cannot be run as a model script!")
return 2
end
-- draw specific page
pageDraw[telPageSelected](event)
if event == EVT_VIRTUAL_EXIT then
if (telPageSelected==0) then return 1 end -- on Main?? Exit Script
telPageSelected = 0 -- any page, return to Main
end
return 0
end
local function init_func()
if (LCD_W <= 128 or LCD_H <=64) then -- Smaller Screens
TEXT_SIZE = SMLSIZE
X_COL1_HEADER = 0
X_COL1_DATA = 20
X_COL2_HEADER = 60
X_COL2_DATA = 90
X_DATA_LEN = 28
X_DATA_SPACE = 1
Y_LINE_HEIGHT = 8
Y_DATA = Y_HEADER + Y_LINE_HEIGHT
end
end
return { run=run_func, init=init_func }

View File

@@ -0,0 +1,305 @@
local toolName = "TNS|DumboRC P series|TNE"
-- EdgeTX/Multi bridge:
-- Multi_Buffer[4] is RF payload length, [5..12] is RF payload.
-- Multi rewrites the 00 00 token and checksum from its hop state.
-- Special1 payload: 18 00 00 arg_l arg_h 00. Args: 1 poll, 2 Set GY EPA, 3 Set FS.
-- Special2 payload: 28 00 00 gyro0 gyro1 gyro2 gyro3 00.
-- Gyro word: bit0 enable, bit1 phase, bits2..5 SEN channel selector
-- (0=NULL, 1..7=CH2..CH8), bits6..13 SEN, bits14..21 PCA,
-- bits22..29 AGS, bits30..31 servo frequency (67HZ,250HZ,50HZ,300HZ).
local PROTO_RLINK = 74
local SUB_DUMBORC_P = 4
local TX_READY = 4
local TX_PAYLOAD = 5
local TX_MAX_PAYLOAD = 8
local RX_READY = 14
local RX_PAYLOAD = 15
local RX_MAX_PAYLOAD = 32
local colorLcd = type(lcd.RGB) == "function"
local servoHz = { "67HZ", "250HZ", "50HZ", "300HZ" }
local gyro = { enable = 0, phase = 0, senCh = 0, sen = 0, pca = 0, ags = 0, flags = 0 }
local lines = {}
local sel = 1
local top = 1
local edit = false
local blink = 0
local moduleOk = false
local haveValues = false
local function limit(v, mn, mx)
if v < mn then return mn end
if v > mx then return mx end
return v
end
local function byte(v)
return limit(math.floor(tonumber(v) or 0), 0, 255)
end
local function gyroRaw(v)
return limit(math.floor(tonumber(v) or 0), 0, 200)
end
local function gyroText(v)
local raw = gyroRaw(v)
return tostring(math.floor(raw / 2)) .. (raw % 2 == 0 and ".0" or ".5")
end
local function screenLines()
if colorLcd then return limit(math.floor(((LCD_H or 272) - 46) / 20), 8, 12) end
return 6
end
local function drawTitle(title)
if colorLcd and lcd.drawFilledRectangle then
lcd.drawFilledRectangle(0, 0, LCD_W, 30, COLOR_THEME_SECONDARY1)
lcd.drawText(3, 5, title, COLOR_THEME_PRIMARY2)
elseif lcd.drawScreenTitle then
lcd.drawScreenTitle(title, 0, 0)
else
lcd.drawText(0, 0, title, INVERS)
end
end
local function findModule()
for i = 0, 1 do
local m = model.getModule(i)
if m and m["Type"] == 6 and m["protocol"] == PROTO_RLINK and m["subProtocol"] == SUB_DUMBORC_P then
return true
end
end
return false
end
local function initBuffer()
multiBuffer(0, string.byte("R"))
if multiBuffer(0) ~= string.byte("R") then
error("Not enough memory!")
return
end
multiBuffer(1, string.byte("L"))
multiBuffer(2, string.byte("n"))
multiBuffer(3, string.byte("k"))
multiBuffer(TX_READY, 0)
multiBuffer(RX_READY, 0)
end
local function release()
for i = 0, RX_PAYLOAD + RX_MAX_PAYLOAD - 1 do
multiBuffer(i, 0)
end
end
local function sendPayload(payload)
local len = #payload
if len < 1 or len > TX_MAX_PAYLOAD or multiBuffer(TX_READY) ~= 0 then
return false
end
for i = 1, TX_MAX_PAYLOAD do
multiBuffer(TX_PAYLOAD + i - 1, 0)
end
for i = 1, #payload do
multiBuffer(TX_PAYLOAD + i - 1, byte(payload[i]))
end
multiBuffer(TX_READY, len)
return true
end
local function sendSpecial1(arg)
return sendPayload({ 0x18, 0, 0, arg % 256, math.floor(arg / 256), 0 })
end
local function gyroSelector()
if gyro.senCh < 2 or gyro.senCh > 8 then return 0 end
return gyro.senCh - 1
end
local function sendGyro()
local sen = gyroRaw(gyro.sen)
local pca = gyroRaw(gyro.pca)
local ags = gyroRaw(gyro.ags)
local b0 = gyro.enable + gyro.phase * 2 + gyroSelector() * 4 + (sen % 4) * 64
local b1 = math.floor(sen / 4) + (pca % 4) * 64
local b2 = math.floor(pca / 4) + (ags % 4) * 64
local b3 = math.floor(ags / 4) + limit(gyro.flags, 0, 3) * 64
sendPayload({ 0x28, 0, 0, b0, b1, b2, b3, 0 })
end
local function decodeGyroBytes(b0, b1, b2, b3)
b0 = byte(b0); b1 = byte(b1); b2 = byte(b2); b3 = byte(b3)
gyro.enable = b0 % 2
gyro.phase = math.floor(b0 / 2) % 2
local selector = math.floor(b0 / 4) % 16
gyro.senCh = selector == 0 and 0 or limit(selector + 1, 2, 8)
gyro.sen = gyroRaw(math.floor(b0 / 64) + (b1 % 64) * 4)
gyro.pca = gyroRaw(math.floor(b1 / 64) + (b2 % 64) * 4)
gyro.ags = gyroRaw(math.floor(b2 / 64) + (b3 % 64) * 4)
gyro.flags = math.floor(b3 / 64) % 4
haveValues = true
end
local function pollRx()
local len = multiBuffer(RX_READY)
if not len or len == 0 then return end
if len > RX_MAX_PAYLOAD then
multiBuffer(RX_READY, 0)
return
end
local p = {}
for i = 1, len do
p[i] = multiBuffer(RX_PAYLOAD + i - 1)
end
multiBuffer(RX_READY, 0)
if len == 7 and p[1] == 0x01 then
decodeGyroBytes(p[3], p[4], p[5], p[6])
end
end
local function chText()
if gyro.senCh == 0 then return "NULL" end
return "CH" .. gyro.senCh
end
local function rebuildLines()
lines = {
{ "Poll RX", "action", function() sendSpecial1(1) end },
{ "Gyro", "toggle", "enable" },
{ "Phase", "toggle", "phase" },
{ "SEN Ch", "channel", "senCh" },
{ "SEN", "percent", "sen" },
{ "PCA", "percent", "pca" },
{ "AGS", "percent", "ags" },
{ "Servo Hz", "flags", "flags" },
{ "Send Gyro", "action", sendGyro },
{ "Set GY EPA", "action", function() sendSpecial1(2) end },
{ "Set FS", "action", function() sendSpecial1(3) end },
}
end
local function lineValue(line)
if line[2] == "action" then return ">" end
if not haveValues then return "--" end
if line[2] == "toggle" then return gyro[line[3]] == 0 and "Off" or "On" end
if line[2] == "channel" then return chText() end
if line[2] == "percent" then return gyroText(gyro[line[3]]) end
if line[2] == "flags" then return servoHz[gyro.flags + 1] or tostring(gyro.flags) end
return ""
end
local function changeValue(dir, fast)
local line = lines[sel]
if not line then return end
local step = fast and 20 or 1
haveValues = true
if line[2] == "toggle" then
gyro[line[3]] = dir > 0 and 1 or 0
elseif line[2] == "channel" then
local vals = { 0, 2, 3, 4, 5, 6, 7, 8 }
local pos = 1
for i = 1, #vals do
if vals[i] == gyro.senCh then pos = i end
end
gyro.senCh = vals[limit(pos + dir, 1, #vals)]
elseif line[2] == "percent" then
gyro[line[3]] = gyroRaw(gyro[line[3]] + dir * step)
elseif line[2] == "flags" then
gyro.flags = limit(gyro.flags + dir, 0, 3)
end
end
local function fastRotary()
return getRotEncSpeed() > 1
end
local function handleEvent(event)
local nextEvent = edit and EVT_VIRTUAL_INC or EVT_VIRTUAL_NEXT
local prevEvent = edit and EVT_VIRTUAL_DEC or EVT_VIRTUAL_PREV
if event == nextEvent then
if edit then changeValue(1, fastRotary()) else sel = limit(sel + 1, 1, #lines) end
elseif event == prevEvent then
if edit then changeValue(-1, fastRotary()) else sel = limit(sel - 1, 1, #lines) end
elseif event == EVT_VIRTUAL_NEXT_PAGE then
if edit then changeValue(1, true) else sel = limit(sel + screenLines(), 1, #lines) end
elseif event == EVT_VIRTUAL_PREV_PAGE then
if edit then changeValue(-1, true) else sel = limit(sel - screenLines(), 1, #lines) end
killEvents(event)
elseif event == EVT_VIRTUAL_ENTER then
local line = lines[sel]
if line and line[2] == "action" then
line[3]()
elseif line then
edit = not edit
end
end
local count = screenLines()
if sel < top then top = sel end
if sel >= top + count then top = sel - count + 1 end
end
local function draw()
lcd.clear()
drawTitle("DumboRC P series")
local font = colorLcd and 0 or SMLSIZE
local x = 2
local y = colorLcd and 34 or 9
local dy = colorLcd and 20 or 8
local valueX = colorLcd and 150 or 82
if not moduleOk then
if colorLcd then
lcd.drawText(x, y + dy, "Select Multi RadLink/Dumbo_P", font + BLINK)
else
lcd.drawText(x, y + dy, "Select RadLink", font + BLINK)
lcd.drawText(x, y + dy * 2, "Dumbo_P", font + BLINK)
end
return
end
for i = top, math.min(#lines, top + screenLines() - 1) do
local attr = font
if i == sel then
attr = attr + INVERS
if edit then
blink = (blink + 1) % 30
if blink > 15 then attr = font end
end
end
local yy = y + (i - top) * dy
lcd.drawText(x, yy, lines[i][1], attr)
lcd.drawText(valueX, yy, lineValue(lines[i]), attr)
end
end
local function init()
moduleOk = type(multiBuffer) == "function" and findModule()
rebuildLines()
if moduleOk then initBuffer() end
end
local function run(event)
if event == nil then
error("Cannot be run as a model script!")
return 2
elseif event == EVT_VIRTUAL_EXIT then
if moduleOk then release() end
return 2
end
if moduleOk then
pollRx()
handleEvent(event)
end
draw()
return 0
end
return { init = init, run = run }

View File

@@ -35,6 +35,7 @@
6,3,DSM,X_2F,0,CH5,CH6,CH7,CH8,CH9,CH10,CH11,CH12,n-a,ThKill
6,4,DSM,AUTO,0,CH5,CH6,CH7,CH8,CH9,CH10,CH11,CH12,n-a,ThKill
6,5,DSM,R_1F,0,AUX3,AUX4,AUX5
6,6,DSM,2SFC,0
70,0,DSM_RX,RX,0,CH5,CH6,CH7,CH8,CH9,CH10,CH11,CH12
70,1,DSM_RX,CPPM,0,CH5,CH6,CH7,CH8,CH9,CH10,CH11,CH12
45,0,E01X,E012,1,n-a,Flip,n-a,HLess,RTH
@@ -53,10 +54,9 @@
28,1,Flysky_AFHDS2A,PPM_IBUS,0,CH5,CH6,CH7,CH8,CH9,CH10,CH11,CH12,CH13,CH14
28,2,Flysky_AFHDS2A,PWM_SBUS,0,CH5,CH6,CH7,CH8,CH9,CH10,CH11,CH12,CH13,CH14
28,3,Flysky_AFHDS2A,PPM_SBUS,0,CH5,CH6,CH7,CH8,CH9,CH10,CH11,CH12,CH13,CH14
28,4,Flysky_AFHDS2A,PWM_IB16,0,CH5,CH6,CH7,CH8,CH9,CH10,CH11,CH12,CH13,CH14,CH15,CH16
28,5,Flysky_AFHDS2A,PPM_IB16,0,CH5,CH6,CH7,CH8,CH9,CH10,CH11,CH12,CH13,CH14,CH15,CH16
28,6,Flysky_AFHDS2A,PWM_SB16,0,CH5,CH6,CH7,CH8,CH9,CH10,CH11,CH12,CH13,CH14,CH15,CH16
28,7,Flysky_AFHDS2A,PPM_SB16,0,CH5,CH6,CH7,CH8,CH9,CH10,CH11,CH12,CH13,CH14,CH15,CH16
28,4,Flysky_AFHDS2A,Gyro_Off,0,CH5,CH6,CH7,CH8,CH9,CH10,CH11,CH12,ST_Ga,TH_Ga,Prio,Calib
28,5,Flysky_AFHDS2A,Gyro_On,0,CH5,CH6,CH7,CH8,CH9,CH10,CH11,CH12,ST_Ga,TH_Ga,Prio,Calib
28,6,Flysky_AFHDS2A,G_On_Rev,0,CH5,CH6,CH7,CH8,CH9,CH10,CH11,CH12,ST_Ga,TH_Ga,Prio,Calib
56,0,Flysky2A_RX,RX,0,CH5,CH6,CH7,CH8,CH9,CH10,CH11,CH12,CH13,CH14
56,1,Flysky2A_RX,CPPM,0,CH5,CH6,CH7,CH8,CH9,CH10,CH11,CH12,CH13,CH14
53,0,Height,5ch,0,Gear
@@ -86,11 +86,17 @@
55,1,FrSkyRX,CloneTX,0
55,2,FrSkyRX,EraseTX,0
55,3,FrSkyRX,CPPM,0,CH5,CH6,CH7,CH8,CH9,CH10,CH11,CH12,CH13,CH14,CH15,CH16
58,0,FX,816,1
58,1,FX,620,1
58,0,FX,FX816,1
58,1,FX,FX620,1
58,2,FX,9630,1,Rate,Gyro,TrimR,TrimA,TrimE
58,3,FX,Q560,1,FLIP,Gyro,LEDs
58,4,FX,QF012,1,FLIP,Gyro,Invert,Reset
58,5,FX,BM26,1,FLIP,Gyro,LEDs,LED,CALIB
58,6,FX,A570,1,STOP,Rate,Color,LED,TrimR,TrimA,TrimE
20,0,FY326,FY326,1,Flip,RTH,HLess,Expert,Calib
20,1,FY326,FY319,1,Flip,RTH,HLess,Expert,Calib
23,0,FY326,FY326,1,Flip,RTH,HLess,Expert
23,0,FQ777,124,1,Flip,RTH,HLess,Expert
23,1,FQ777,XBM37,1,Rate,Flip,HLess,LED,Pict,Video,RTH,OK,ETrim,Atrim
47,0,GD00x,V1,1,Trim,LED,Rate
47,1,GD00x,V2,1,Trim,LED,Rate
32,0,GW008,FY326,1,Flip
@@ -107,6 +113,7 @@
26,1,Hontai,JJRCX1,1,Flip,Arm,Pict,Video,HLess,RTH,Calib
26,2,Hontai,X5C1,1,Flip,Arm,Pict,Video,HLess,RTH,Calib
26,3,Hontai,FQ777_951,1,Flip,Arm,Pict,Video,HLess,RTH,Calib
26,4,Hontai,XKK170,1,Rate,Emerg,TakLan,Calib,TrimA,TrimE,Optic
57,0,HoTT,Sync,0,CH5,CH6,CH7,CH8,CH9,CH10,CH11,CH12,CH13,CH14,CH15,CH16
57,1,HoTT,No_Sync,0,CH5,CH6,CH7,CH8,CH9,CH10,CH11,CH12,CH13,CH14,CH15,CH16
2,0,Hubsan,H107,1,Flip,Light,Pict,Video,HLess
@@ -115,12 +122,13 @@
22,0,J6Pro,Std,0,CH5,CH6,CH7,CH8,CH9,CH10,CH11,CH12
71,0,JJRC345,JJRC345,1,Flip,HLess,RTH,LED,UNK1,UNK2,UNK3
71,1,JJRC345,SkyTmblr,1,Flip,HLess,RTH,LED,UNK1,UNK2,UNK3
49,0,KF606,KF606,1,Trim
49,0,KF606,KF606,1,Trim,LED
49,1,KF606,MIG320,1,Trim,LED
49,2,KF606,ZCZ50,1,Trim,UNK
9,0,KN,WLToys,0,DRate,THold,IdleUp,Gyro,Ttrim,Atrim,Etrim
9,1,KN,Feilun,0,DRate,THold,IdleUp,Gyro,Ttrim,Atrim,Etrim
73,0,Kyosho,Std,0,CH5,CH6,CH7,CH8,CH9,CH10,CH11,CH12,CH13,CH14
9,0,KN,WLToys,0,DRate,THold,IdleUp,Gyro,Ttrim,Atrim,Etrim,Rtrim,Hover
9,1,KN,Feilun,0,DRate,THold,IdleUp,Gyro,Ttrim,Atrim,Etrim,Rtrim,Hover
73,0,Kyosho,FHSS,0,CH5,CH6,CH7,CH8,CH9,CH10,CH11,CH12,CH13,CH14
73,1,Kyosho,Hype,0,CH5,CH6
18,0,MJXQ,WHL08,1,Flip,LED,Pict,Video,HLess,RTH,AuFlip,Pan,Tilt,Rate
18,1,MJXQ,X600,1,Flip,LED,Pict,Video,HLess,RTH,AuFlip,Pan,Tilt,Rate
18,2,MJXQ,X800,1,Flip,LED,Pict,Video,HLess,RTH,AuFlip,Pan,Tilt,Rate
@@ -128,14 +136,16 @@
18,4,MJXQ,E010,1,Flip,LED,Pict,Video,HLess,RTH,AuFlip,Pan,Tilt,Rate
18,5,MJXQ,H26WH,1,Flip,Arm,Pict,Video,HLess,RTH,AuFlip,Pan,Tilt,Rate
18,6,MJXQ,Phoenix,1,Flip,Arm,Pict,Video,HLess,RTH,AuFlip,Pan,Tilt,Rate
17,0,MT99XX,Std,1,Flip,LED,Pict,Video,HLess
17,1,MT99XX,H7,1,Flip,LED,Pict,Video,HLess
17,2,MT99XX,YZ,1,Flip,LED,Pict,Video,HLess
17,3,MT99XX,LS,1,Flip,Invert,Pict,Video,HLess
17,4,MT99XX,FY805,1,Flip,n-a,n-a,n-a,HLess
17,5,MT99XX,A180,0,3D_6G
17,6,MT99XX,Dragon,0,Mode,RTH
17,7,MT99XX,F949G,0,6G_3D,Light
17,0,MT99XX,Std,1,Flip,LED,Pict,Video,HLess,Atrim,Etrim
17,1,MT99XX,H7,1,Flip,LED,Pict,Video,HLess,Atrim,Etrim
17,2,MT99XX,YZ,1,Flip,LED,Pict,Video,HLess,Atrim,Etrim
17,3,MT99XX,LS,1,Flip,Invert,Pict,Video,HLess,Atrim,Etrim
17,4,MT99XX,FY805,1,Flip,n-a,n-a,n-a,HLess,Atrim,Etrim
17,5,MT99XX,A180,0,3D_6G,Rate,3D_6G,n-a,n-a,Atrim,Etrim
17,6,MT99XX,Dragon,0,Mode,RTH,n-a,n-a,n-a,Atrim,Etrim
17,7,MT99XX,F949G,0,6G_3D,Light,Rates,Unk1,Unk2,Atrim,Etrim
92,0,MT99xx2,PA18,0,MODE,FLIP,RTH,n-a,n-a,Atrim,Etrim
92,1,MT99xx2,SU35,0,Mode,LED,LED_FH,Invert,Rate,Atrim,Etrim
44,0,NCC1701,Std,1,Warp
77,0,OMP,M2,0,THold,IdleUp,6G_3D
60,0,Pelikan,PRO_V4,0,CH5,CH6,CH7,CH8
@@ -153,8 +163,11 @@
72,0,Q90C,Std,0,FMode,VTX+
74,0,RadioLink,Surface,0,CH5,CH6,CH7,CH8,FS_CH1,FS_CH2,FS_CH3,FS_CH4,FS_CH5,FS_CH6,FS_CH7,FS_CH8
74,1,RadioLink,Air,0,CH5,CH6,CH7,CH8,FS_CH1,FS_CH2,FS_CH3,FS_CH4,FS_CH5,FS_CH6,FS_CH7,FS_CH8
74,2,RadioLink,DumboRC,0,CH5,CH6,CH7,CH8,FS_CH1,FS_CH2,FS_CH3,FS_CH4,FS_CH5,FS_CH6,FS_CH7,FS_CH8
76,0,Realacc,R11,1,Flip,Light,Calib,HLess,RTH,UNK
74,2,RadioLink,DumboRC,0,CH5,CH6,CH7,CH8GY,CH9,CH10,n-a,n-a,n-a,n-a,n-a,n-a
74,3,RadioLink,RC4G,0,CH5,FS_CH1,FS_CH2,FS_CH3,FS_CH4
74,4,RadioLink,Dumbo_P,0,CH5,CH6,CH7,CH8GY,CH9,CH10,n-a,n-a,n-a,n-a,n-a,n-a
76,0,Realacc,R11,1,Flip,Light,Calib,HLess,RTH,ThCut,Rotat
76,1,Realacc,WLV8TX,0,ST_Tr
50,0,Redpine,Fast,0,sCH5,sCH6,sCH7,sCH8,sCH9,sCH10,sCH11,sCH12,sCH13,sCH14,sCH15,sCH16
50,1,Redpine,Slow,0,sCH5,sCH6,sCH7,sCH8,sCH9,sCH10,sCH11,sCH12,sCH13,sCH14,sCH15,sCH16
21,0,Futaba,SFHSS,0,CH5,CH6,CH7,CH8
@@ -165,14 +178,16 @@
11,2,SLT,Q100,0,Rates,n-a,CH7,CH8,Mode,Flip,n-a,n-a,Calib
11,3,SLT,Q200,0,Rates,n-a,CH7,CH8,Mode,VidOn,VidOff,Calib
11,4,SLT,MR100,0,Rates,n-a,CH7,CH8,Mode,Flip,Video,Pict
11,5,SLT,V1_4CH,0
11,6,SLT,RF_SIM,0,CH5,CH6,CH7,CH8,CH9,CH10
10,0,Symax,Std,1,Flip,Rates,Pict,Video,HLess
10,1,Symax,X5C,1,Flip,Rates,Pict,Video,HLess
61,0,Tiger,Std,1,Flip,Light
43,0,Traxxas,6519,0
43,0,Traxxas,TQ2,0
43,1,Traxxas,TQ1,0
5,0,V2x2,Std,1,Flip,Light,Pict,Video,HLess,CalX,CalY
5,1,V2x2,JXD506,1,Flip,Light,Pict,Video,HLess,StaSto,Emerg,Cam_UD
48,0,V761,3CH,0,Gyro,Calib,Flip,RtnAct,Rtn
48,1,V761,4CH,0,Gyro,Calib,Flip,RtnAct,Rtn
48,0,V761,3CH,0,Gyro,Calib,Flip,RtnAct,Rtn,Beep
48,1,V761,4CH,0,Gyro,Calib,Flip,RtnAct,Rtn,Beep
48,2,V761,TOPRC,0,Gyro,Calib,Flip,RtnAct,Rtn
46,0,V911s,V911s,1,Calib,Rate
46,1,V911s,E119,1,Calib,Rate,6G_3D
@@ -184,7 +199,10 @@
30,4,WK2x01,W6HEL,0,Gear,Col,Gyro
30,5,WK2x01,W6HEL_I,0,Gear,Col,Gyro
62,0,XK,X450,1,FMode,TakeOf,Emerg,3D_6G,Pict,Video
62,1,XK,X420,1,FMode,TakeOf,Emerg,3D_6G,Pict,Video
62,1,XK,X420,1,FMode,TakeOf,Emerg,3D_6G,Pict,Video,Flip,Light
62,2,XK,Cars,0,FMode,TakeOf,Emerg,3D_6G,Pict,Video,Flip,Light
99,0,XK2,X4,0,Rate,Mode,Hover,Light,Stunt
99,1,XK2,P10,0,Rate,Mode,Hover,Light,Stunt
8,0,YD717,Std,1,Flip,Light,Pict,Video,HLess
8,1,YD717,SkyWlkr,1,Flip,Light,Pict,Video,HLess
8,2,YD717,Simax4,1,Flip,Light,Pict,Video,HLess
@@ -197,14 +215,30 @@
81,0,E010r5,E010r5,1,Flip,LED,CALIB,HLess,RTH,GLIDE
82,0,LOLI,Std,0,CH5,CH6,CH7,CH8,1SwSePpPw,2SwSePw,3SwSe,4SwSe,5SwSeSb,6SwSe,7SwSePw,8SwSe
83,0,E129,E129,1,TakLan,EmStop,TrimA,TrimE,TrimR
83,1,E129,C186,1,TakLan,EmStop,TrimA,TrimE,TrimR
83,1,E129,C186,1,TakLan,EmStop,TrimA,TrimE,TrimR,Loop,Flip,Debug
84,0,JOYSWAY,Std,0
85,0,E016H,Std,1,Stop,Flip,n-a,HLess,RTH
87,0,IKEA
89,0,LOSI
90,0,MouldKg,Analog,0
90,1,MouldKg,Digit,0
90,0,MouldKg,A4444,0
90,1,MouldKg,D4444,0
90,2,MouldKg,A664,0
91,0,Xerall,Tank,0,FlTa,TakLan,Rate,HLess,Photo,Video,TrimR,TrimE,TrimA
92,0,MT99xx2,PA18,0,MODE,FLIP,RTH
93,0,Kyosho2,KT-17,0
94,0,Scorpio
95,0,Bluefly,HP100,0,CH5,CH6,CH7,CH8
96,0,BumbleB
97,0,SGF22,F22,1,Mode,Flip,LED,Pict,Video,TrRes,Bal,HiBal
97,1,SGF22,F22S,1,Mode,Flip,LED,Pict,Video,TrRes
97,2,SGF22,J20,1,Mode,Flip,LED,Pict,Video
61,0,EazyRC
98,0,Kyosho3,ASF,0
100,0,YuXiang,Std,0,Lock,Rate,Land,Manual,Flip,Mode,Pitch
102,0,JIABAILE,Std,0,Speed,Light,Flash
102,1,JIABAILE,Gyro,0,Speed,Light,Flash,ST_Tr
103,0,H36,Std,1,Flip,HLess,RTH
104,0,KAMTOM,Std,0,ST_Tr,TH_Tr,TH_DR
105,0,Shenqi2,Std,1
106,0,WL91x,Std,0
107,0,WPL,Std,0,Light,TH_DR,ST_DR
108,0,Ares,6HPA_Tx,0,CH5,CH6

View File

@@ -257,7 +257,7 @@ local function Multi_Init()
stick_names[4] = "Aux3"
elseif ( protocol == 48 and sub_protocol == 0 ) then -- V761 3CH
stick_names[4] = "n-a"
elseif protocol == 47 or protocol == 49 or protocol == 58 then -- GD00x, KF606, FX816
elseif protocol == 47 or protocol == 49 or ( protocol == 58 and sub_protocol < 2 ) then -- GD00x, KF606, FX816
stick_names[1] = "n-a"
stick_names[2] = "n-a"
end
@@ -280,7 +280,7 @@ local function Multi_Init()
end
--Exceptions on first 4 channels...
if ( protocol == 73 or (protocol == 74 and sub_protocol == 0) or (protocol == 60 and sub_protocol == 2) or protocol == 89) then -- Kyosho or RadioLink Surface or Pelikan/SCX24 or Losi
if ( protocol == 73 or (protocol == 74 and (sub_protocol == 0 or sub_protocol == 2 or sub_protocol == 4)) or (protocol == 60 and sub_protocol == 2) or protocol == 89) then -- Kyosho or RadioLink (Surface or DumboRC/P) or Pelikan/SCX24 or Losi
channel_names[1] = "ST"
channel_names[2] = "THR"
channel_names[3] = "CH3"

View File

@@ -135,11 +135,15 @@ local function Config_Draw_Edit( event )
Edit = 0
elseif event == EVT_VIRTUAL_PREV then
-- Change value
if Menu_value[Edit_pos] > 0 then
Menu_value[Edit_pos] = Menu_value[Edit_pos] - 1
end
elseif event == EVT_VIRTUAL_NEXT then
-- Change value
if Menu_value[Edit_pos] < 255 then
Menu_value[Edit_pos] = Menu_value[Edit_pos] + 1
end
end
--Blink
Blink = Blink + 1
if Blink > 30 then
@@ -319,9 +323,6 @@ local function Config_Draw_Menu()
--Read line from buffer
for i = 0, 20-1, 1 do
value=multiBuffer( line*20+13+i )
if value == 0 then
break -- end of line
end
if value > 0x80 and Menu[line].field_type == 0 then
-- Read field type
Menu[line].field_type = bitand(value, 0xF0)
@@ -334,6 +335,9 @@ local function Config_Draw_Menu()
else
if Menu[line].field_type == 0 then
-- Text
if value == 0 then
break -- end of line
end
Menu[line].text = Menu[line].text .. string.char(value)
else
-- Menu specific fields

View File

@@ -58,15 +58,11 @@ This is the Graupner HoTT adapted version of the Model Locator script using RSSI
The OpenTX sensor "RSSI" is populated by the individual OpenTX telemetry protocol implementations and returns a value from 0..100 (percent) originating from the early FrSky implementation. It turns out that FrSky did not really provide a genuine signal strength indicator in units of dbm but a link quality indicator in 0..100%. With Graupner HoTT the link quality indicator is not a good basis for the model locator as it is very non-linear and doesn't change much with distance. Using the Graupner HoTT telemetry sensor "Rssi" which is a true signal strength indicator serves the purpose of locating a model much better as it varies much more with distance.
## DSM Forward Programming
## DSM Tools for EdgeTX and OpenTx
This is a work in progress. It's available for color(+touch) and B&W screens.
Collection of EdgeTx/OpenTX Tools to use with Spektrum Receivers including forward programming. Extract the color or black&white zip version at the root of your SD card.
Work on OpenTX and EdgeTX. Located on the radio SD card under \SCRIPTS\TOOLS, make sure to copy the DSMLIB folder along with DSM FwdPrg_05_Color.lua or DSM FwdPrg_05_BW.lua.
[![DSM Forward Programming](https://img.youtube.com/vi/sjIaDw5j9nE/0.jpg)](https://www.youtube.com/watch?v=sjIaDw5j9nE)
If some text appears as Unknown_xxx, please report xxx and what the exact text display should be.
Frank is maintaining these awesome tools, check out his [repository](https://github.com/frankiearzu/DSMTools). Feel free to ask questions or open issues there.
## DSM PID Flight log gain parameters for Blade micros

Binary file not shown.

Binary file not shown.

View File

@@ -418,10 +418,10 @@ void A7105_Init(void)
#ifdef KYOSHO_A7105_INO
if(protocol==PROTO_KYOSHO)
{
if(sub_protocol==KYOSHO_FHSS)
A7105_Regs=(uint8_t*)KYOSHO_A7105_regs;
else
if(sub_protocol==KYOSHO_HYPE)
A7105_Regs=(uint8_t*)KYOSHO_HYPE_A7105_regs;
else //FHSS && SYNCRO
A7105_Regs=(uint8_t*)KYOSHO_A7105_regs;
}
#endif
}
@@ -446,7 +446,7 @@ void A7105_Init(void)
}
A7105_Strobe(A7105_STANDBY);
if(protocol==PROTO_KYOSHO && sub_protocol==KYOSHO_FHSS)
if(protocol==PROTO_KYOSHO && sub_protocol!=KYOSHO_HYPE)
{//strange calibration...
//IF Filter Bank Calibration
A7105_WriteReg(A7105_02_CALC,0x0F);

View File

@@ -183,8 +183,18 @@ uint16_t AFHDS2A_RX_callback()
case AFHDS2A_RX_DATA:
if (AFHDS2A_RX_data_ready()) {
A7105_ReadData(AFHDS2A_RX_TXPACKET_SIZE);
if (memcmp(&packet[1], rx_id, 4) == 0 && memcmp(&packet[5], rx_tx_addr, 4) == 0) {
if (packet[0] == 0x58 && packet[37] == 0x00 && (telemetry_link&0x7F) == 0) { // standard packet, send channels to TX
if (memcmp(&packet[1], rx_id, 4) == 0 && memcmp(&packet[5], rx_tx_addr, 4) == 0)
{
#if 0
//if(packet[0] == 0xAA)
{
for(uint8_t i=0;i<AFHDS2A_RX_TXPACKET_SIZE;i++)
debug(" %02X",packet[i]);
debugln("");
}
#endif
if (packet[0] == 0x58 && packet[37] == 0x00 && (telemetry_link&0x7F) == 0)
{ // standard packet, send channels to TX
int rssi = min(A7105_ReadReg(A7105_1D_RSSI_THOLD),160);
RX_RSSI = map16b(rssi, 160, 8, 0, 128);
AFHDS2A_RX_build_telemetry_packet();

View File

@@ -93,15 +93,19 @@ static void AFHDS2A_update_telemetry()
if (option & 0x80)
{// forward 0xAA and 0xAC telemetry to TX, skip rx and tx id to save space
packet_in[0]= TX_RSSI;
//Fix for CROSSOVER-RX,
if(packet[17+8]==0xFF && packet[21+8]==0xFC && packet[25+8]==0xFF)
packet[17+8]=0xFE; // RX_ERR_RATE needed for TX to validate the telem
#if 0
debug("T(%02X)=",packet[0]);
for(uint8_t i=9;i < AFHDS2A_RXPACKET_SIZE; i++)
{
packet_in[i-8]=packet[i];
debug(" %02X",packet[i]);
}
debugln("");
#endif
for(uint8_t i=9;i < AFHDS2A_RXPACKET_SIZE; i++)
packet_in[i-8]=packet[i];
packet_in[29]=packet[0]; // 0xAA Normal telemetry, 0xAC Extended telemetry
telemetry_link=2;
debugln("");
return;
}
#endif
@@ -186,16 +190,9 @@ static void AFHDS2A_build_packet(uint8_t type)
case AFHDS2A_PACKET_STICKS:
packet[0] = 0x58;
//16 channels + RX_LQI on channel 17
for(uint8_t ch=0; ch<num_ch; ch++)
for(uint8_t ch=0; ch<17; ch++)
{
if(ch == 16 // CH17=RX_LQI
#ifdef AFHDS2A_LQI_CH
|| ch == (AFHDS2A_LQI_CH-1) // override channel with LQI
#endif
)
val = 2000 - 10*RX_LQI;
else
val = convert_channel_ppm(CH_AETR[ch]);
val = convert_channel_ppm(sub_protocol<AFHDS2A_GYRO_OFF?CH_AETR[ch]:ch); // No remapping for BS receivers
if(ch<14)
{
packet[9 + ch*2] = val;
@@ -203,24 +200,30 @@ static void AFHDS2A_build_packet(uint8_t type)
}
else
{
if(ch == 16) //CH17=RX_LQI
val = 2000 - 10*RX_LQI;
packet[10 + (ch-14)*6] |= (val)<<4;
packet[12 + (ch-14)*6] |= (val)&0xF0;
packet[14 + (ch-14)*6] |= (val>>4)&0xF0;
}
}
{
uint8_t next_hop = (hopping_frequency_no+1)&0x0F;
packet[34] |= next_hop<<4;
packet[36] |= next_hop?0x80:0x90;
}
break;
case AFHDS2A_PACKET_FAILSAFE:
packet[0] = 0x56;
for(uint8_t ch=0; ch<num_ch; ch++)
{
#ifdef FAILSAFE_ENABLE
if(ch<16)
val = Failsafe_data[CH_AETR[ch]];
else
val = FAILSAFE_CHANNEL_NOPULSES;
if(val!=FAILSAFE_CHANNEL_HOLD && val!=FAILSAFE_CHANNEL_NOPULSES)
for(uint8_t ch=0; ch<16; ch++)
{ // Failsafe values
#ifdef FAILSAFE_ENABLE
val = Failsafe_data[protocol==PROTO_AFHDS2A?CH_AETR[ch]:ch]; // No remapping for BS receivers
if(val!=FAILSAFE_CHANNEL_HOLD && val!=FAILSAFE_CHANNEL_NOPULSES)
val = (((val<<2)+val)>>3)+860;
else
#endif
val = 0x0FFF;
if(ch<14)
{
packet[9 + ch*2] = val;
@@ -228,22 +231,11 @@ static void AFHDS2A_build_packet(uint8_t type)
}
else
{
packet[10 + (ch-14)*6] &= 0x0F;
packet[10 + (ch-14)*6] |= (val)<<4;
packet[12 + (ch-14)*6] &= 0x0F;
packet[12 + (ch-14)*6] |= (val)&0xF0;
packet[14 + (ch-14)*6] &= 0x0F;
packet[14 + (ch-14)*6] |= (val>>4)&0xF0;
}
}
else
#endif
if(ch<14)
{ // no values
packet[9 + ch*2] = 0xff;
packet[10+ ch*2] = 0xff;
}
}
break;
case AFHDS2A_PACKET_SETTINGS:
packet[0] = 0xaa;
@@ -253,10 +245,13 @@ static void AFHDS2A_build_packet(uint8_t type)
if(val<50 || val>400) val=50; // default is 50Hz
packet[11]= val;
packet[12]= val >> 8;
memset(&packet[15],0xFF,22);
#ifndef MULTI_AIR
if(sub_protocol < AFHDS2A_GYRO_OFF)
{
#endif
packet[13] = sub_protocol & 0x01; // 1 -> PPM output enabled
packet[14]= 0x00;
for(uint8_t i=15; i<37; i++)
packet[i] = 0xff;
packet[14] = 0x00; // ?
packet[18] = 0x05; // ?
packet[19] = 0xdc; // ?
packet[20] = 0x05; // ?
@@ -264,6 +259,29 @@ static void AFHDS2A_build_packet(uint8_t type)
packet[21] = 0xdd; // SBUS output enabled
else
packet[21] = 0xde; // IBUS
#ifndef MULTI_AIR
}
else
{//BS receivers
if(sub_protocol == AFHDS2A_GYRO_OFF)
{
memset(&packet[15],0x00,4);
packet[22] = 0xFC; // ?
}
else
{//AFHDS2A_GYRO_ON & AFHDS2A_GYRO_ON_REV
packet[15] = convert_channel_16b_limit(CH13,0,100); // ST Gain
packet[16] = convert_channel_16b_limit(CH14,0,100); // TH Gain
packet[17] = convert_channel_16b_limit(CH15,0,100); // Priority
if(sub_protocol == AFHDS2A_GYRO_ON_REV)
packet[17] |= 0x80; // Reverse
packet[18] = CH16_SW?(0x32|0x80):0x32; // Calib|50?
packet[19] = 0x64; // 100?
packet[20] = 0x64; // 100?
packet[22] = 0xFE; // ?
}
}
#endif
break;
}
packet[37] = 0x00;
@@ -283,6 +301,9 @@ uint16_t AFHDS2A_callback()
static uint16_t packet_counter;
uint8_t data_rx=0;
uint16_t start;
#ifndef MULTI_AIR
static uint16_t Prev_Channel[4] = { 0,0,0,0 };
#endif
#ifndef FORCE_AFHDS2A_TUNING
A7105_AdjustLOBaseFreq(1);
#endif
@@ -367,10 +388,39 @@ uint16_t AFHDS2A_callback()
AFHDS2A_build_packet(packet_type);
data_rx=A7105_ReadReg(A7105_00_MODE); // Check if something has been received...
A7105_WriteData(AFHDS2A_TXPACKET_SIZE, hopping_frequency[hopping_frequency_no++]);
if(hopping_frequency_no >= AFHDS2A_NUMFREQ)
hopping_frequency_no = 0;
if(!(packet_counter % 1313))
hopping_frequency_no &= 0x0F; // AFHDS2A_NUMFREQ
#if 0
for(uint8_t i=0; i<AFHDS2A_TXPACKET_SIZE; i++)
debug(" %02X",packet[i]);
debugln("");
#endif
#ifndef MULTI_AIR
if(sub_protocol > AFHDS2A_GYRO_OFF)
{//Gyro is on
//Check if gyro settings have changed
uint16_t val;
for(uint8_t i=0;i<4;i++)
{
val = Channel_data[CH13+i] - Prev_Channel[i];
if(val&0x8000) val ^= 0xFFFF;
if(val > 10)
{//This setting has significantly changed
Prev_Channel[i] = Channel_data[CH13+i];
packet_sent = 5;
}
}
}
if(packet_sent && (packet_counter%5)==0)
{//Inform the RX of the change
packet_type = AFHDS2A_PACKET_SETTINGS;
packet_sent--;
}
else
#endif
if(!(packet_counter % 1313))
{//Send settings every 5s
packet_type = AFHDS2A_PACKET_SETTINGS;
}
else
{
#ifdef FAILSAFE_ENABLE
@@ -448,9 +498,6 @@ void AFHDS2A_init()
rx_id[i]=eeprom_read_byte((EE_ADDR)(addr+i));
}
hopping_frequency_no = 0;
if(sub_protocol&0x04)
num_ch=17;
else
num_ch=14;
packet_sent = 0;
}
#endif

View File

@@ -0,0 +1,254 @@
/*
This project is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
Multiprotocol is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with Multiprotocol. If not, see <http://www.gnu.org/licenses/>.
*/
// Compatible with ARES 6HPA transmitter
#if defined(ARES_CC2500_INO)
#include "iface_cc2500.h"
//#define ARES_FORCE_ID
#define ARES_COARSE 0
#define ARES_PACKET_LEN 17
#define ARES_NUM_FREQUENCIES 60
enum {
ARES_START = 0x00,
ARES_CALIB = 0x01,
ARES_PREP = 0x02,
ARES_DATA = 0x03,
};
// CC2500 register init values captured from the ARES 6HPA transmitter
const PROGMEM uint8_t ARES_init_values[] = {
/* 00 */ 0x06, 0x2E, 0x2E, 0x07, 0x5A, 0x60, 0x30, 0x04,
/* 08 */ 0x05, 0x00, 0x00, 0x06, 0x00, 0x5C, 0xB1, 0x3B + ARES_COARSE,
/* 10 */ 0x6A, 0xF8, 0x03, 0x23, 0x7A, 0x44, 0x07, 0x30,
/* 18 */ 0x18, 0x16, 0x6C, 0x43, 0x40, 0x91, 0x87, 0x6B,
/* 20 */ 0xF8, 0x56, 0x10, 0xA9, 0x0A, 0x00, 0x11
};
// Fixed hopping sequence captured from the ARES 6HPA transmitter.
// This is a permutation of 60 channel values spread across the band.
static const PROGMEM uint8_t ARES_hop[] = {
0xB0, 0x6F, 0x1D, 0xB4, 0x74, 0x20, 0xB8, 0xD8,
0x24, 0xBC, 0xDC, 0x28, 0x48, 0xE0, 0x2C, 0x4C,
0xE4, 0x90, 0x50, 0xE8, 0x94, 0x54, 0xEC, 0x00,
0x98, 0x58, 0x04, 0x9B, 0x5C, 0x08, 0xA0, 0xC0,
0x0C, 0xA4, 0xC3, 0x10, 0x30, 0xC6, 0x14, 0x34,
0xCC, 0x78, 0x38, 0xD0, 0x7C, 0x3C, 0xD4, 0x80,
0x40, 0x60, 0x84, 0x44, 0x64, 0x88, 0xA8, 0x68,
0x8C, 0xAC, 0x6C, 0x18
};
static void __attribute__((unused)) ARES_CC2500_init()
{
CC2500_Strobe(CC2500_SRES);
delayMilliseconds(1);
CC2500_Strobe(CC2500_SIDLE);
for (uint8_t i = 0; i < 39; ++i)
CC2500_WriteReg(i, pgm_read_byte_near(&ARES_init_values[i]));
CC2500_WriteReg(CC2500_0C_FSCTRL0, option);
prev_option = option;
// Write PATABLE to max power (0xFF for all 8 entries) as captured
for (uint8_t i = 0; i < 8; i++)
CC2500_WriteReg(CC2500_3E_PATABLE, 0xFF);
CC2500_SetTxRxMode(TX_EN);
CC2500_SetPower();
}
// Load hopping table
static void __attribute__((unused)) ARES_RF_channels()
{
for (uint8_t i = 0; i < ARES_NUM_FREQUENCIES; i++)
hopping_frequency[i] = pgm_read_byte_near(&ARES_hop[i]);
}
static void __attribute__((unused)) ARES_tune_chan()
{
CC2500_Strobe(CC2500_SIDLE);
CC2500_WriteReg(CC2500_0A_CHANNR, hopping_frequency[hopping_frequency_no]);
CC2500_Strobe(CC2500_SFTX);
CC2500_Strobe(CC2500_SCAL);
}
static void __attribute__((unused)) ARES_change_chan_fast()
{
CC2500_Strobe(CC2500_SIDLE);
CC2500_WriteReg(CC2500_0A_CHANNR, hopping_frequency[hopping_frequency_no]);
CC2500_WriteReg(CC2500_25_FSCAL1, calData[hopping_frequency_no]);
}
// Advance the hop counter: cycles through 0-58 with step, inserting 59 when wrapping through 0
static uint8_t __attribute__((unused)) ARES_next_counter(uint8_t current, uint8_t step)
{
if (current == 59)
return 0;
uint8_t next = (current + step) % 59;
if (next == 0)
return 59;
return next;
}
static void __attribute__((unused)) ARES_build_packet()
{
// Length byte: 16 data bytes follow
packet[0] = 0x10;
// TX ID
packet[1] = rx_tx_addr[1];
packet[2] = rx_tx_addr[2];
packet[3] = rx_tx_addr[3];
// 6 channels encoded as interleaved 12-bit values in bytes 4-12
uint16_t ch[6];
for (uint8_t i = 0; i < 6; i++)
ch[i] = convert_channel_16b_nolimit(i, 1820, 3300, false);
packet[4] = ch[0] >> 4;
packet[5] = ((ch[0] & 0x0F) << 4) | (ch[1] & 0x0F);
packet[6] = ch[1] >> 4;
packet[7] = ch[2] >> 4;
packet[8] = ((ch[2] & 0x0F) << 4) | (ch[3] & 0x0F);
packet[9] = ch[3] >> 4;
packet[10] = ch[4] >> 4;
packet[11] = ((ch[4] & 0x0F) << 4) | (ch[5] & 0x0F);
packet[12] = ch[5] >> 4;
// Byte 16: counter step size (stored in crc, set to 1-58 in ARES_init)
uint8_t step = crc;
// Bytes 13-15: running counter with rotating bit 7 frame indicator
// The counter cycles 0-58 with a step, inserting 59 before wrapping to 0
// Each group of 3 packets has 3 consecutive counter values
// packet_count holds the current counter value
uint8_t c0 = packet_count;
uint8_t c1 = ARES_next_counter(c0, step);
uint8_t c2 = ARES_next_counter(c1, step);
// Frame indicator: each data frame is sent 3 times
// bind_phase tracks position 0/1/2 within the group of 3
packet[13] = c0;
packet[14] = c1;
packet[15] = c2;
packet[16] = step;
// Set the rotating frame bit (bit 7) on one of bytes 13-15
switch (bind_phase)
{
case 0:
packet[13] |= 0x80;
break;
case 1:
packet[14] |= 0x80;
break;
case 2:
packet[15] |= 0x80;
break;
}
}
static void __attribute__((unused)) ARES_send_packet()
{
ARES_change_chan_fast();
CC2500_SetPower();
CC2500_WriteData(packet, ARES_PACKET_LEN);
}
#define ARES_PACKET_PERIOD 6670 // 6.67ms between packets
#define ARES_PREP_TIMING 2000
uint16_t ARES_callback()
{
switch(phase)
{
case ARES_START:
ARES_CC2500_init();
hopping_frequency_no = 0;
bind_phase = 0;
ARES_tune_chan();
phase = ARES_CALIB;
return ARES_PREP_TIMING;
case ARES_CALIB:
calData[hopping_frequency_no] = CC2500_ReadReg(CC2500_25_FSCAL1);
hopping_frequency_no++;
if (hopping_frequency_no < ARES_NUM_FREQUENCIES)
ARES_tune_chan();
else
{
hopping_frequency_no = 0;
phase = ARES_PREP;
}
return ARES_PREP_TIMING;
case ARES_PREP:
if (prev_option != option)
{
phase = ARES_START;
return ARES_PREP_TIMING;
}
#ifdef MULTI_SYNC
telemetry_set_input_sync(ARES_PACKET_PERIOD);
#endif
ARES_build_packet();
phase = ARES_DATA;
// Fall through
case ARES_DATA:
ARES_send_packet();
hopping_frequency_no++;
if (hopping_frequency_no >= ARES_NUM_FREQUENCIES)
hopping_frequency_no = 0;
bind_phase++;
if (bind_phase >= 3)
{
bind_phase = 0;
// Advance counter to start of next group
uint8_t step = crc;
packet_count = ARES_next_counter(packet_count, step);
packet_count = ARES_next_counter(packet_count, step);
packet_count = ARES_next_counter(packet_count, step);
}
phase = ARES_PREP;
return ARES_PACKET_PERIOD;
}
return 0;
}
void ARES_init()
{
BIND_DONE; // Autobind protocol - no TX-initiated bind phase
ARES_RF_channels();
// rx_tx_addr[1] and [2] are already set from MProtocol_id by the framework
// RX_num (0-63) in byte 3 provides model match
rx_tx_addr[3] = RX_num;
// Counter step and start from capture
crc = 23;
packet_count = 35;
#ifdef ARES_FORCE_ID
rx_tx_addr[1] = 0xDC;
rx_tx_addr[2] = 0xCC;
rx_tx_addr[3] = 0x00;
#endif
phase = ARES_START;
}
#endif

View File

@@ -0,0 +1,196 @@
/*
This project is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
Multiprotocol is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with Multiprotocol. If not, see <http://www.gnu.org/licenses/>.
*/
#if defined(BUMBLEB_CCNRF_INO)
#include "iface_xn297.h"
#define FORCE_BUMBLEB_ORIGINAL_ID
#define BUMBLEB_TELEM_DEBUG
#define BUMBLEB_PACKET_PERIOD 10200
#define BUMBLEB_RF_BIND_CHANNEL 42
#define BUMBLEB_RF_NUM_CHANNELS 2
#define BUMBLEB_PAYLOAD_SIZE 7
static void __attribute__((unused)) BUMBLEB_send_packet()
{
packet[6] = 0x00;
if(IS_BIND_IN_PROGRESS)
{
packet[0] = rx_tx_addr[0];
packet[1] = rx_tx_addr[1];
packet[2] = 0x54; //???
packet[3] = 0x58; //???
hopping_frequency_no ^= 0x01;
packet[4] = hopping_frequency[hopping_frequency_no];
}
else
{
//hopping frequency
XN297_Hopping(hopping_frequency_no);
hopping_frequency_no ^= 0x01;
packet[0] = 0x20
|GET_FLAG(CH6_SW,0x80); // High rate
packet[1] = convert_channel_8b_limit_deadband(AILERON,0xBF,0xA0,0x81,40); // Aileron: Max values:BD..A0..82
if(packet[1] < 0xA0)
packet[1] = 0x20 - packet[1]; // Reverse low part of aileron
packet[2] = convert_channel_8b(CH5)>>2; // 01..20..3F
if(CH7_SW) // Drive trim from aileron
{
uint8_t ch=convert_channel_8b(AILERON);
if(ch > 0x5A && ch < 0x80-0x07)
packet[2] = ch - 0x5A;
else if(ch < 0x5A)
{
if(ch < 0x5A-0x20)
packet[2] = 0;
else
packet[2] = ch - (0x5A-0x20);
}
else if(packet[1] == 0x89)
packet[2] = 0x20;
else if(ch > 0xA5)
{
if(ch > 0xA9+0x1F)
packet[2] = 0x3F;
else
packet[2] = ch - 0x89;
}
else if(ch > 0xA5-0x1F)
packet[2] = ch - (0xA5-0x1F-0x20);
}
else
packet[2] = convert_channel_8b(CH5)>>2; // 01..20..3F
packet[3] = convert_channel_8b(THROTTLE)>>2; // 00..3F
packet[4] = hopping_frequency[hopping_frequency_no];
}
packet[5] = packet[0];
for(uint8_t i=1;i<BUMBLEB_PAYLOAD_SIZE-2;i++)
packet[5] += packet[i];
#if 0
debug("P:");
for(uint8_t i=0;i<BUMBLEB_PAYLOAD_SIZE;i++)
debug(" %02X", packet[i]);
debugln("");
#endif
XN297_SetPower(); // Set tx_power
XN297_SetFreqOffset(); // Set frequency offset
XN297_SetTxRxMode(TX_EN);
XN297_WritePayload(packet, BUMBLEB_PAYLOAD_SIZE);
}
static void __attribute__((unused)) BUMBLEB_RF_init()
{
//Config CC2500
XN297_Configure(XN297_CRCEN, XN297_SCRAMBLED, XN297_250K);
XN297_SetTXAddr((uint8_t*)"\x55\x55\x55\x55\x55", 5);
XN297_HoppingCalib(BUMBLEB_RF_NUM_CHANNELS); // Calibrate all channels
XN297_RFChannel(BUMBLEB_RF_BIND_CHANNEL); // Set bind channel
XN297_SetRXAddr(rx_tx_addr, BUMBLEB_PAYLOAD_SIZE);
}
static void __attribute__((unused)) BUMBLEB_initialize_txid()
{
calc_fh_channels(BUMBLEB_RF_NUM_CHANNELS);
rx_tx_addr[0] = rx_tx_addr[2];
rx_tx_addr[1] = rx_tx_addr[3];
#ifdef FORCE_BUMBLEB_ORIGINAL_ID
rx_tx_addr[0] = 0x33;
rx_tx_addr[1] = 0x65;
hopping_frequency[0] = 2;
hopping_frequency[1] = 40;
#endif
rx_tx_addr[2] = rx_tx_addr[3] = rx_tx_addr[4] = 0x55;
}
enum {
BUMBLEB_BIND = 0x00,
BUMBLEB_BINDRX = 0x01,
BUMBLEB_DATA = 0x02,
};
#define BUMBLEB_WRITE_TIME 850
uint16_t BUMBLEB_callback()
{
bool rx;
switch(phase)
{
case BUMBLEB_BIND:
rx = XN297_IsRX(); // Needed for the NRF24L01 since otherwise the bit gets cleared
BUMBLEB_send_packet();
if( rx )
{ // a packet has been received
#ifdef BUMBLEB_TELEM_DEBUG
debug("RX :");
#endif
if(XN297_ReadPayload(packet_in, BUMBLEB_PAYLOAD_SIZE))
{ // packet with good CRC
#ifdef BUMBLEB_TELEM_DEBUG
debug("OK :");
for(uint8_t i=0;i<BUMBLEB_PAYLOAD_SIZE;i++)
debug(" %02X",packet_in[i]);
#endif
// packet_in = 4F 71 55 52 58 61 AA
rx_tx_addr[2] = packet_in[0];
rx_tx_addr[3] = packet_in[1];
//rx_tx_addr[4] = packet_in[2]; // to test with other planes...
XN297_SetTXAddr(rx_tx_addr, 5);
BIND_DONE;
phase = BUMBLEB_DATA;
break;
}
}
phase++;
return BUMBLEB_WRITE_TIME;
case BUMBLEB_BINDRX:
{
uint16_t start=(uint16_t)micros();
while ((uint16_t)((uint16_t)micros()-(uint16_t)start) < 500)
{
if(XN297_IsPacketSent())
break;
}
}
XN297_SetTxRxMode(RX_EN);
phase = BUMBLEB_BIND;
return BUMBLEB_PACKET_PERIOD-BUMBLEB_WRITE_TIME;
case BUMBLEB_DATA:
#ifdef MULTI_SYNC
telemetry_set_input_sync(BUMBLEB_PACKET_PERIOD);
#endif
BUMBLEB_send_packet();
break;
}
return BUMBLEB_PACKET_PERIOD;
}
void BUMBLEB_init()
{
BUMBLEB_initialize_txid();
BUMBLEB_RF_init();
hopping_frequency_no = 0;
BIND_IN_PROGRESS; // autobind protocol
phase = BUMBLEB_BIND;
}
#endif

View File

@@ -0,0 +1,118 @@
/*
This project is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
Multiprotocol is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with Multiprotocol. If not, see <http://www.gnu.org/licenses/>.
*/
// compatible with BLUEFLY HP100
#if defined(BLUEFLY_CCNRF_INO)
#include "iface_nrf250k.h"
#define BLUEFLY_PACKET_PERIOD 6000
#define BLUEFLY_PACKET_SIZE 12
#define BLUEFLY_RF_BIND_CHANNEL 81
#define BLUEFLY_NUM_RF_CHANNELS 15
#define BLUEFLY_BIND_COUNT 800
#define BLUEFLY_TXID_SIZE 5
static void __attribute__((unused)) BLUEFLY_send_packet()
{
if(IS_BIND_IN_PROGRESS)
{
memset(packet, 0x55, BLUEFLY_PACKET_SIZE);
memcpy(packet, rx_tx_addr, BLUEFLY_TXID_SIZE);
packet[5] = hopping_frequency[0];
}
else
{
NRF250K_Hopping(hopping_frequency_no);
hopping_frequency_no++;
if(hopping_frequency_no >= BLUEFLY_NUM_RF_CHANNELS);
hopping_frequency_no = 0;
packet[8] = packet[9] = 0;
for(uint8_t i=0; i<8 ; i++)
{
uint16_t ch = convert_channel_16b_limit(CH_AETR[i], 0, 1000);
packet[ i] = ch;
ch &= 0x300;
ch >>= 2;
packet[8 + (i>3?0:1)] = (packet[8 + (i>3?0:1)] >> 2) | ch;
}
// Checksum
uint8_t l, h, t;
l = h = 0xff;
for (uint8_t i=0; i<10; ++i)
{
h ^= packet[i];
h ^= h >> 4;
t = h;
h = l;
l = t;
t = (l<<4) | (l>>4);
h ^= ((t<<2) | (t>>6)) & 0x1f;
h ^= t & 0xf0;
l ^= ((t<<1) | (t>>7)) & 0xe0;
}
packet[10] = h;
packet[11] = l;
}
NRF250K_WritePayload(packet, BLUEFLY_PACKET_SIZE);
NRF250K_SetPower(); // Set tx_power
NRF250K_SetFreqOffset(); // Set frequency offset
}
static void __attribute__((unused)) BLUEFLY_RF_init()
{
NRF250K_Init();
NRF250K_SetTXAddr((uint8_t *)"\x32\xAA\x45\x45\x78", BLUEFLY_TXID_SIZE); // BLUEFLY Bind address
NRF250K_HoppingCalib(BLUEFLY_NUM_RF_CHANNELS); // Calibrate all channels
NRF250K_RFChannel(BLUEFLY_RF_BIND_CHANNEL); // Set bind channel
}
static void __attribute__((unused)) BLUEFLY_initialize_txid()
{
uint8_t start = (rx_tx_addr[3] % 47) + 2;
for(uint8_t i=0;i<BLUEFLY_NUM_RF_CHANNELS;i++)
hopping_frequency[i] = start + i*2;
hopping_frequency_no=0;
}
uint16_t BLUEFLY_callback()
{
#ifdef MULTI_SYNC
telemetry_set_input_sync(BLUEFLY_PACKET_PERIOD);
#endif
if(bind_counter)
{
bind_counter--;
if (bind_counter == 0)
{
BIND_DONE;
NRF250K_SetTXAddr(rx_tx_addr, BLUEFLY_TXID_SIZE);
}
}
BLUEFLY_send_packet();
return BLUEFLY_PACKET_PERIOD;
}
void BLUEFLY_init(void)
{
BLUEFLY_initialize_txid();
BLUEFLY_RF_init();
bind_counter = IS_BIND_IN_PROGRESS ? BLUEFLY_BIND_COUNT : 1;
}
#endif

View File

@@ -195,11 +195,11 @@ void CYRF_ConfigSOPCode(const uint8_t *sopcodes)
CYRF_WriteRegisterMulti(CYRF_22_SOP_CODE, sopcodes, 8);
}
void CYRF_ConfigDataCode(const uint8_t *datacodes, uint8_t len)
void CYRF_ConfigDataCode(const uint8_t *datacodes)
{
//NOTE: This can also be implemented as:
//for(i = 0; i < len; i++) WriteRegister)0x23, datacodes[i];
CYRF_WriteRegisterMulti(CYRF_23_DATA_CODE, datacodes, len);
//for(i = 0; i < 16; i++) WriteRegister)0x23, datacodes[i];
CYRF_WriteRegisterMulti(CYRF_23_DATA_CODE, datacodes, 16);
}
void CYRF_WritePreamble(uint32_t preamble)
@@ -249,7 +249,7 @@ void CYRF_WriteDataPacket(const uint8_t dpbuffer[])
}
*/
//NOTE: This routine will reset the CRC Seed
void CYRF_FindBestChannels(uint8_t *channels, uint8_t len, uint8_t minspace, uint8_t min, uint8_t max)
void CYRF_FindBestChannels(uint8_t *channels, uint8_t len, uint8_t minspace, uint8_t min, uint8_t max, uint8_t forced)
{
#define NUM_FREQ 80
#define FREQ_OFFSET 4
@@ -269,7 +269,12 @@ void CYRF_FindBestChannels(uint8_t *channels, uint8_t len, uint8_t minspace, uin
delayMilliseconds(1);
for(i = 0; i < NUM_FREQ; i++)
{
CYRF_ConfigRFChannel(protocol==PROTO_LOSI?i|1:i);
if(((i&1) && forced == FIND_CHANNEL_EVEN) || (!(i&1) && forced == FIND_CHANNEL_ODD))
{
rssi[i] = 0xFF;
continue;
}
CYRF_ConfigRFChannel(i); //protocol==PROTO_LOSI?i|1:i);
delayMicroseconds(270); //slow channel require 270usec for synthesizer to settle
if( !(CYRF_ReadRegister(CYRF_05_RX_CTRL) & 0x80)) {
CYRF_WriteRegister(CYRF_05_RX_CTRL, 0x80); //Prepare to receive
@@ -298,7 +303,7 @@ void CYRF_FindBestChannels(uint8_t *channels, uint8_t len, uint8_t minspace, uin
CYRF_WriteRegister(CYRF_29_RX_ABORT, 0x00); // Clear abort RX
}
#if defined(DEVO_CYRF6936_INO) || defined(J6PRO_CYRF6936_INO)
#if defined(DEVO_CYRF6936_INO) || defined(J6PRO_CYRF6936_INO) || defined(TRAXXAS_CYRF6936_INO)
const uint8_t PROGMEM DEVO_j6pro_sopcodes[][8] = {
/* Note these are in order transmitted (LSB 1st) */
{0x3C, 0x37, 0xCC, 0x91, 0xE2, 0xF8, 0xCC, 0x91},
@@ -311,7 +316,7 @@ const uint8_t PROGMEM DEVO_j6pro_sopcodes[][8] = {
{0xB9, 0x8E, 0x19, 0x74, 0x6F, 0x65, 0x18, 0x74},
{0xDF, 0xB1, 0xC0, 0x49, 0x62, 0xDF, 0xC1, 0x49},
{0x97, 0xE5, 0x14, 0x72, 0x7F, 0x1A, 0x14, 0x72},
#if defined(J6PRO_CYRF6936_INO)
#if defined(J6PRO_CYRF6936_INO) || defined(TRAXXAS_CYRF6936_INO)
{0x82, 0xC7, 0x90, 0x36, 0x21, 0x03, 0xFF, 0x17},
{0xE2, 0xF8, 0xCC, 0x91, 0x3C, 0x37, 0xCC, 0x91}, //Note: the '03' was '9E' in the Cypress recommended table
{0xAD, 0x39, 0xA2, 0x0F, 0x9B, 0xC5, 0xA1, 0x0F}, //The following are the same as the 1st 8 above,
@@ -321,6 +326,7 @@ const uint8_t PROGMEM DEVO_j6pro_sopcodes[][8] = {
{0xB6, 0x31, 0xAE, 0x46, 0x5A, 0xCC, 0xAE, 0x46},
{0x9E, 0x82, 0xDC, 0x3C, 0xA1, 0x78, 0xDC, 0x3C},
{0x6F, 0x65, 0x18, 0x74, 0xB9, 0x8E, 0x19, 0x74},
{0x62, 0xDF, 0xC1, 0x49, 0xDF, 0xB1, 0xC0, 0x49}, //j6pro bind
#endif
};
#endif
@@ -328,8 +334,13 @@ const uint8_t PROGMEM DEVO_j6pro_sopcodes[][8] = {
static void __attribute__((unused)) CYRF_PROGMEM_ConfigSOPCode(const uint8_t *data)
{
uint8_t code[8];
//debug("SOP:");
for(uint8_t i=0;i<8;i++)
{
code[i]=pgm_read_byte_near(&data[i]);
//debug(" %02X",code[i]);
}
//debugln("");
CYRF_ConfigSOPCode(code);
}

View File

@@ -4,9 +4,45 @@
uint8_t sop_col;
const uint8_t PROGMEM DSM_pncodes[5][9][8] = {
const uint8_t PROGMEM DSM_pncodes[][8] = {
/* Note these are in order transmitted (LSB 1st) */
{ /* Row 0 */
/* Row 1 */
/* Col 0 */ {0x83, 0xF7, 0xA8, 0x2D, 0x7A, 0x44, 0x64, 0xD3},
/* Col 1 */ {0x3F, 0x2C, 0x4E, 0xAA, 0x71, 0x48, 0x7A, 0xC9},
/* Col 2 */ {0x17, 0xFF, 0x9E, 0x21, 0x36, 0x90, 0xC7, 0x82},
/* Col 3 */ {0xBC, 0x5D, 0x9A, 0x5B, 0xEE, 0x7F, 0x42, 0xEB},
/* Col 4 */ {0x24, 0xF5, 0xDD, 0xF8, 0x7A, 0x77, 0x74, 0xE7},
/* Col 5 */ {0x3D, 0x70, 0x7C, 0x94, 0xDC, 0x84, 0xAD, 0x95},
/* Col 6 */ {0x1E, 0x6A, 0xF0, 0x37, 0x52, 0x7B, 0x11, 0xD4},
/* Col 7 */ {0x62, 0xF5, 0x2B, 0xAA, 0xFC, 0x33, 0xBF, 0xAF},
/* Row 2 */
/* Col 0 */ {0x40, 0x56, 0x32, 0xD9, 0x0F, 0xD9, 0x5D, 0x97},
/* Col 1 */ {0x8E, 0x4A, 0xD0, 0xA9, 0xA7, 0xFF, 0x20, 0xCA},
/* Col 2 */ {0x4C, 0x97, 0x9D, 0xBF, 0xB8, 0x3D, 0xB5, 0xBE},
/* Col 3 */ {0x0C, 0x5D, 0x24, 0x30, 0x9F, 0xCA, 0x6D, 0xBD},
/* Col 4 */ {0x50, 0x14, 0x33, 0xDE, 0xF1, 0x78, 0x95, 0xAD},
/* Col 5 */ {0x0C, 0x3C, 0xFA, 0xF9, 0xF0, 0xF2, 0x10, 0xC9},
/* Col 6 */ {0xF4, 0xDA, 0x06, 0xDB, 0xBF, 0x4E, 0x6F, 0xB3},
/* Col 7 */ {0x9E, 0x08, 0xD1, 0xAE, 0x59, 0x5E, 0xE8, 0xF0},
/* Row 3 */
/* Col 0 */ {0xC0, 0x90, 0x8F, 0xBB, 0x7C, 0x8E, 0x2B, 0x8E},
/* Col 1 */ {0x80, 0x69, 0x26, 0x80, 0x08, 0xF8, 0x49, 0xE7},
/* Col 2 */ {0x7D, 0x2D, 0x49, 0x54, 0xD0, 0x80, 0x40, 0xC1},
/* Col 3 */ {0xB6, 0xF2, 0xE6, 0x1B, 0x80, 0x5A, 0x36, 0xB4},
/* Col 4 */ {0x42, 0xAE, 0x9C, 0x1C, 0xDA, 0x67, 0x05, 0xF6},
/* Col 5 */ {0x9B, 0x75, 0xF7, 0xE0, 0x14, 0x8D, 0xB5, 0x80},
/* Col 6 */ {0xBF, 0x54, 0x98, 0xB9, 0xB7, 0x30, 0x5A, 0x88},
/* Col 7 */ {0x35, 0xD1, 0xFC, 0x97, 0x23, 0xD4, 0xC9, 0x88},
/* Row 4 */
/* Col 0 */ {0xE1, 0xD6, 0x31, 0x26, 0x5F, 0xBD, 0x40, 0x93}, // Wrong values used by Orange TX/RX Row 3 Col 8: {0x88, 0xE1, 0xD6, 0x31, 0x26, 0x5F, 0xBD, 0x40}
/* Col 1 */ {0xDC, 0x68, 0x08, 0x99, 0x97, 0xAE, 0xAF, 0x8C},
/* Col 2 */ {0xC3, 0x0E, 0x01, 0x16, 0x0E, 0x32, 0x06, 0xBA},
/* Col 3 */ {0xE0, 0x83, 0x01, 0xFA, 0xAB, 0x3E, 0x8F, 0xAC},
/* Col 4 */ {0x5C, 0xD5, 0x9C, 0xB8, 0x46, 0x9C, 0x7D, 0x84},
/* Col 5 */ {0xF1, 0xC6, 0xFE, 0x5C, 0x9D, 0xA5, 0x4F, 0xB7},
/* Col 6 */ {0x58, 0xB5, 0xB3, 0xDD, 0x0E, 0x28, 0xF1, 0xB0},
/* Col 7 */ {0x5F, 0x30, 0x3B, 0x56, 0x96, 0x45, 0xF4, 0xA1},
/* Row 0 */
/* Col 0 */ {0x03, 0xBC, 0x6E, 0x8A, 0xEF, 0xBD, 0xFE, 0xF8},
/* Col 1 */ {0x88, 0x17, 0x13, 0x3B, 0x2D, 0xBF, 0x06, 0xD6},
/* Col 2 */ {0xF1, 0x94, 0x30, 0x21, 0xA1, 0x1C, 0x88, 0xA9},
@@ -16,59 +52,15 @@ const uint8_t PROGMEM DSM_pncodes[5][9][8] = {
/* Col 6 */ {0xEF, 0x03, 0x95, 0x89, 0xB4, 0x71, 0x61, 0x9D},
/* Col 7 */ {0x40, 0xBA, 0x97, 0xD5, 0x86, 0x4F, 0xCC, 0xD1},
/* Col 8 */ {0xD7, 0xA1, 0x54, 0xB1, 0x5E, 0x89, 0xAE, 0x86}
},
{ /* Row 1 */
/* Col 0 */ {0x83, 0xF7, 0xA8, 0x2D, 0x7A, 0x44, 0x64, 0xD3},
/* Col 1 */ {0x3F, 0x2C, 0x4E, 0xAA, 0x71, 0x48, 0x7A, 0xC9},
/* Col 2 */ {0x17, 0xFF, 0x9E, 0x21, 0x36, 0x90, 0xC7, 0x82},
/* Col 3 */ {0xBC, 0x5D, 0x9A, 0x5B, 0xEE, 0x7F, 0x42, 0xEB},
/* Col 4 */ {0x24, 0xF5, 0xDD, 0xF8, 0x7A, 0x77, 0x74, 0xE7},
/* Col 5 */ {0x3D, 0x70, 0x7C, 0x94, 0xDC, 0x84, 0xAD, 0x95},
/* Col 6 */ {0x1E, 0x6A, 0xF0, 0x37, 0x52, 0x7B, 0x11, 0xD4},
/* Col 7 */ {0x62, 0xF5, 0x2B, 0xAA, 0xFC, 0x33, 0xBF, 0xAF},
/* Col 8 */ {0x40, 0x56, 0x32, 0xD9, 0x0F, 0xD9, 0x5D, 0x97}
},
{ /* Row 2 */
/* Col 0 */ {0x40, 0x56, 0x32, 0xD9, 0x0F, 0xD9, 0x5D, 0x97},
/* Col 1 */ {0x8E, 0x4A, 0xD0, 0xA9, 0xA7, 0xFF, 0x20, 0xCA},
/* Col 2 */ {0x4C, 0x97, 0x9D, 0xBF, 0xB8, 0x3D, 0xB5, 0xBE},
/* Col 3 */ {0x0C, 0x5D, 0x24, 0x30, 0x9F, 0xCA, 0x6D, 0xBD},
/* Col 4 */ {0x50, 0x14, 0x33, 0xDE, 0xF1, 0x78, 0x95, 0xAD},
/* Col 5 */ {0x0C, 0x3C, 0xFA, 0xF9, 0xF0, 0xF2, 0x10, 0xC9},
/* Col 6 */ {0xF4, 0xDA, 0x06, 0xDB, 0xBF, 0x4E, 0x6F, 0xB3},
/* Col 7 */ {0x9E, 0x08, 0xD1, 0xAE, 0x59, 0x5E, 0xE8, 0xF0},
/* Col 8 */ {0xC0, 0x90, 0x8F, 0xBB, 0x7C, 0x8E, 0x2B, 0x8E}
},
{ /* Row 3 */
/* Col 0 */ {0xC0, 0x90, 0x8F, 0xBB, 0x7C, 0x8E, 0x2B, 0x8E},
/* Col 1 */ {0x80, 0x69, 0x26, 0x80, 0x08, 0xF8, 0x49, 0xE7},
/* Col 2 */ {0x7D, 0x2D, 0x49, 0x54, 0xD0, 0x80, 0x40, 0xC1},
/* Col 3 */ {0xB6, 0xF2, 0xE6, 0x1B, 0x80, 0x5A, 0x36, 0xB4},
/* Col 4 */ {0x42, 0xAE, 0x9C, 0x1C, 0xDA, 0x67, 0x05, 0xF6},
/* Col 5 */ {0x9B, 0x75, 0xF7, 0xE0, 0x14, 0x8D, 0xB5, 0x80},
/* Col 6 */ {0xBF, 0x54, 0x98, 0xB9, 0xB7, 0x30, 0x5A, 0x88},
/* Col 7 */ {0x35, 0xD1, 0xFC, 0x97, 0x23, 0xD4, 0xC9, 0x88},
/* Col 8 */ {0xE1, 0xD6, 0x31, 0x26, 0x5F, 0xBD, 0x40, 0x93}
// Wrong values used by Orange TX/RX
// /* Col 8 */ {0x88, 0xE1, 0xD6, 0x31, 0x26, 0x5F, 0xBD, 0x40}
},
{ /* Row 4 */
/* Col 0 */ {0xE1, 0xD6, 0x31, 0x26, 0x5F, 0xBD, 0x40, 0x93},
/* Col 1 */ {0xDC, 0x68, 0x08, 0x99, 0x97, 0xAE, 0xAF, 0x8C},
/* Col 2 */ {0xC3, 0x0E, 0x01, 0x16, 0x0E, 0x32, 0x06, 0xBA},
/* Col 3 */ {0xE0, 0x83, 0x01, 0xFA, 0xAB, 0x3E, 0x8F, 0xAC},
/* Col 4 */ {0x5C, 0xD5, 0x9C, 0xB8, 0x46, 0x9C, 0x7D, 0x84},
/* Col 5 */ {0xF1, 0xC6, 0xFE, 0x5C, 0x9D, 0xA5, 0x4F, 0xB7},
/* Col 6 */ {0x58, 0xB5, 0xB3, 0xDD, 0x0E, 0x28, 0xF1, 0xB0},
/* Col 7 */ {0x5F, 0x30, 0x3B, 0x56, 0x96, 0x45, 0xF4, 0xA1},
/* Col 8 */ {0x03, 0xBC, 0x6E, 0x8A, 0xEF, 0xBD, 0xFE, 0xF8}
},
};
static void __attribute__((unused)) DSM_read_code(uint8_t *buf, uint8_t row, uint8_t col, uint8_t len)
static void __attribute__((unused)) DSM_read_code(uint8_t *buf, uint8_t row, uint8_t col)
{
for(uint8_t i=0;i<len;i++)
buf[i]=pgm_read_byte_near( &DSM_pncodes[row][col][i] );
row--;
if(row>4)
row = 4;
for(uint8_t i=0;i<8;i++)
buf[i]=pgm_read_byte_near( &DSM_pncodes[row*8+col][i] );
}
const uint8_t PROGMEM DSM_init_vals[][2] = {
@@ -137,11 +129,11 @@ static void __attribute__((unused)) DSM_set_sop_data_crc(bool ch2, bool dsmx)
debug_time();
debug(" crc:%04X,row:%d,col:%d,rf:%02X",(~seed)&0xffff,pn_row,sop_col,hopping_frequency[hopping_frequency_no]);
#endif
DSM_read_code(code,pn_row,sop_col,8); // pn_row between 0 and 4, sop_col between 1 and 7
DSM_read_code(code,pn_row,sop_col); // pn_row between 0 and 4, sop_col between 0 and 7
CYRF_ConfigSOPCode(code);
DSM_read_code(code,pn_row,7 - sop_col,8); // 7-sop_col between 0 and 6
DSM_read_code(code+8,pn_row,7 - sop_col + 1,8); // 7-sop_col+1 between 1 and 7
CYRF_ConfigDataCode(code, 16);
DSM_read_code(code,pn_row,7 - sop_col); // 7-sop_col between 0 and 7
DSM_read_code(code+8,pn_row,7 - sop_col + 1); // 7-sop_col+1 between 1 and 8
CYRF_ConfigDataCode(code);
CYRF_ConfigRFChannel(hopping_frequency[hopping_frequency_no]);
hopping_frequency_no++;

View File

@@ -39,8 +39,8 @@ static void __attribute__((unused)) DSM_RX_RF_init()
{
//64 SDR Mode is configured so only the 8 first values are needed but need to write 16 values...
uint8_t code[16];
DSM_read_code(code,0,8,8);
CYRF_ConfigDataCode(code, 16);
DSM_read_code(code,0,8);
CYRF_ConfigDataCode(code);
CYRF_ConfigRFChannel(1);
CYRF_SetTxRxMode(RX_EN); // Force end state read
CYRF_WriteRegister(CYRF_05_RX_CTRL, 0x83); // Prepare to receive
@@ -214,6 +214,15 @@ uint16_t DSM_RX_callback()
uint8_t rx_status;
static uint8_t read_retry=0;
if(sub_protocol == DSM_ERASE)
{
if(packet_count)
packet_count--;
else
BIND_DONE;
return 10000; // Nothing to do...
}
switch (phase)
{
case DSM_RX_BIND1:
@@ -240,9 +249,13 @@ uint16_t DSM_RX_callback()
{
// store tx info into eeprom
uint16_t temp = DSM_RX_EEPROM_OFFSET;
debug("ID=");
for(uint8_t i=0;i<4;i++)
{
if (sub_protocol == DSM_CLONE && i == 3)
cyrfmfg_id[i]=(packet_in[i]^RX_num)^0xFF;
else
cyrfmfg_id[i]=packet_in[i]^0xFF;
eeprom_write_byte((EE_ADDR)temp++, cyrfmfg_id[i]);
debug(" %02X", cyrfmfg_id[i]);
@@ -254,6 +267,7 @@ uint16_t DSM_RX_callback()
0x01 => 22ms 1024 DSM2 1 packet => number of channels is <8
0x02 => 22ms 1024 DSM2 2 packets => either a number of channel >7
0x12 => 11ms 2048 DSM2 2 packets => can be any number of channels
0x23 => DX3R DSM2 2 surface packets
0xA2 => 22ms 2048 DSMX 1 packet => number of channels is <8
0xB2 => 11ms 2048 DSMX => can be any number of channels
(0x01 or 0xA2) and num_ch < 7 => 22ms else 11ms
@@ -264,7 +278,7 @@ uint16_t DSM_RX_callback()
eeprom_write_byte((EE_ADDR)temp, DSM_rx_type);
CYRF_WriteRegister(CYRF_29_RX_ABORT, 0x20); // Abort RX operation
CYRF_SetTxRxMode(TX_EN); // Force end state TX
CYRF_ConfigDataCode((const uint8_t *)"\x98\x88\x1B\xE4\x30\x79\x03\x84", 16);
CYRF_ConfigDataCode((const uint8_t *)"\x98\x88\x1B\xE4\x30\x79\x03\x84");
CYRF_WriteRegister(CYRF_29_RX_ABORT, 0x00); // Clear abort RX
DSM_RX_build_bind_packet();
bind_counter=500;
@@ -303,6 +317,14 @@ uint16_t DSM_RX_callback()
{
BIND_DONE;
phase++; // DSM_RX_DATA_PREP
//Copy clone values to EEPROM
if (sub_protocol == DSM_CLONE)
{
uint16_t temp = DSM_CLONE_EEPROM_OFFSET;
for(uint8_t i=0; i<4; i++)
eeprom_write_byte((EE_ADDR)temp++, cyrfmfg_id[i]);
eeprom_write_byte((EE_ADDR)temp, 0xF0);
}
}
break;
case DSM_RX_DATA_PREP:
@@ -469,21 +491,35 @@ void DSM_RX_init()
hopping_frequency_no = 0;
if (IS_BIND_IN_PROGRESS)
{
if(sub_protocol == DSM_ERASE)
{
// Clear all cloned addresses
uint16_t addr = DSM_CLONE_EEPROM_OFFSET;
for(uint8_t i=0; i<6; i++)
eeprom_write_byte((EE_ADDR)(addr++), 0xFF);
packet_count = 100;
}
else
{
packet_count=0;
phase = DSM_RX_BIND1;
}
}
else
{
uint16_t temp = DSM_RX_EEPROM_OFFSET;
if (sub_protocol == DSM_CLONE || sub_protocol == DSM_ERASE )
temp = DSM_CLONE_EEPROM_OFFSET;
debug("ID=");
for(uint8_t i=0;i<4;i++)
{
cyrfmfg_id[i]=eeprom_read_byte((EE_ADDR)temp++);
debug(" %02X", cyrfmfg_id[i]);
}
DSM_rx_type=eeprom_read_byte((EE_ADDR)temp);
DSM_rx_type=eeprom_read_byte((EE_ADDR)DSM_RX_EEPROM_OFFSET+4);
debugln(", type=%02X", DSM_rx_type);
phase = DSM_RX_DATA_PREP;
}
}

View File

@@ -18,14 +18,23 @@
#include "iface_cyrf6936.h"
//#define DSM_DEBUG_FWD_PGM
//#define DEBUG_BIND 1
//#define DSM_GR300
#define CLONE_BIT_MASK 0x20
#define MODE_11MS_BIT_MASK 0x40
#define MAX_THROW_BIT_MASK 0x80
#define DSM_BIND_CHANNEL 0x0D //13 This can be any odd channel
#define DSM2_SFC_PERIOD 16500
#define DSM_BIND_CHANNEL 0x0d //13 This can be any odd channel
//During binding we will send BIND_COUNT/2 packets
//During binding we will send BIND_COUNT packets
//One packet each 10msec
#define DSM_BIND_COUNT 300
//
// Most RXs seems to work properly with a long BIND send count (3s): Spektrum, OrangeRX.
// Lemon-RX G2s seems to have a timeout waiting for the channel to get quiet after the
// first good BIND packet.. If using 3s (300), Lemon-RX will not transmit the BIND-Response packet.
#define DSM_BIND_COUNT 180 // About 1.8s
#define DSM_BIND_COUNT_READ 600 // About 4.2s of waiting for Response
enum {
DSM_BIND_WRITE=0,
@@ -44,6 +53,13 @@ enum {
DSM_CH2_READ_B,
};
#if defined(DSM_X_PLUS)
#define XP_CH CH13 // X-Plus channel placeholder in frame
uint8_t x_plus_ch = 0; // X-Plus channel currently multiplexing
#else
#define XP_CH 0xff // No Channel
#endif
//
uint8_t ch_map[14];
const uint8_t PROGMEM DSM_ch_map_progmem[][14] = {
@@ -58,7 +74,7 @@ const uint8_t PROGMEM DSM_ch_map_progmem[][14] = {
{1, 5, 2, 3, 6, 0xff, 0xff, 4, 0, 7, 8, 0xff, 0xff, 0xff}, //9ch - Guess
{1, 5, 2, 3, 6, 0xff, 0xff, 4, 0, 7, 8, 9, 0xff, 0xff}, //10ch - Guess
{1, 5, 2, 3, 6, 10, 0xff, 4, 0, 7, 8, 9, 0xff, 0xff}, //11ch - Guess
{1, 5, 2, 4, 6, 10, 0xff, 0, 7, 3, 8, 9 , 11 , 0xff}, //12ch - DX18/DX8G2
{1, 5, 2, 4, 6, 10, XP_CH, 0, 7, 3, 8, 9 , 11 , 0xff}, //12ch - DX18/DX8G2
//11ms for 8..11 channels
{1, 5, 2, 3, 6, 7, 0xff, 1, 5, 2, 4, 0, 0xff, 0xff}, //8ch - DX7
{1, 5, 2, 3, 6, 7, 0xff, 1, 5, 2, 4, 0, 8, 0xff}, //9ch - Guess
@@ -87,9 +103,12 @@ static void __attribute__((unused)) DSM_build_bind_packet()
packet[11] = 12;
else
packet[11] = num_ch; // DX5 DSMR sends 0x48...
//packet[11] = 3; // DX3R
if (sub_protocol==DSMR)
packet[12] = 0xa2;
else if (sub_protocol==DSM2_SFC)
packet[12] = 0x23; // DX3R
else if (sub_protocol==DSM2_1F)
packet[12] = num_ch<8?0x01:0x02; // DSM2/1024 1 or 2 packets depending on the number of channels
else if(sub_protocol==DSM2_2F)
@@ -103,7 +122,6 @@ static void __attribute__((unused)) DSM_build_bind_packet()
else // DSMX_2F && DSM_AUTO
packet[12] = 0xb2; // DSMX/2048 2 packets
packet[13] = 0x00; //???
for(i = 8; i < 14; i++)
sum += packet[i];
@@ -116,8 +134,8 @@ static void __attribute__((unused)) DSM_initialize_bind_phase()
CYRF_ConfigRFChannel(DSM_BIND_CHANNEL); //This seems to be random?
//64 SDR Mode is configured so only the 8 first values are needed but need to write 16 values...
uint8_t code[16];
DSM_read_code(code,0,8,8);
CYRF_ConfigDataCode(code, 16);
DSM_read_code(code,0,8);
CYRF_ConfigDataCode(code);
DSM_build_bind_packet();
}
@@ -126,15 +144,22 @@ static void __attribute__((unused)) DSM_update_channels()
prev_option=option;
num_ch=option & 0x0F; // Remove flags 0x80=max_throw, 0x40=11ms
if(num_ch<3 || num_ch>12)
if(num_ch<3)
num_ch=6; // Default to 6 channels if invalid choice...
#ifndef MULTI_AIR
if(sub_protocol==DSMR && num_ch>7)
num_ch=7; // Max 7 channels in DSMR
if(sub_protocol==DSM2_SFC && num_ch>5)
num_ch=5; // Max 5 channels in DSM2_SFC
#endif
// Create channel map based on number of channels and refresh rate
uint8_t idx=num_ch-3;
if((option & 0x40) && num_ch>7 && num_ch<12)
if(idx > 9)
idx = 9;
if((option & MODE_11MS_BIT_MASK) && num_ch>7 && num_ch<12)
idx += 5; // In 11ms mode change index only for channels 8..11
for(uint8_t i=0;i<14;i++)
ch_map[i]=pgm_read_byte_near(&DSM_ch_map_progmem[idx][i]);
@@ -144,6 +169,12 @@ static void __attribute__((unused)) DSM_build_data_packet(uint8_t upper)
{
uint8_t bits = 11;
// Check if clone flag has changed
if((prev_option&CLONE_BIT_MASK) != (option&CLONE_BIT_MASK))
{
DSM_init();
prev_option^=CLONE_BIT_MASK;
}
if(prev_option!=option)
DSM_update_channels();
@@ -160,34 +191,41 @@ static void __attribute__((unused)) DSM_build_data_packet(uint8_t upper)
bits=10; // Only DSM2_1F is using a resolution of 1024
}
if(sub_protocol == DSMR)
{
#ifndef MULTI_AIR
if(sub_protocol == DSMR || sub_protocol == DSM2_SFC)
{ // 12 bits, full range, no reassignment
for (uint8_t i = 0; i < 7; i++)
{
uint16_t value = 0x0000;
if(i < num_ch)
{
value=Channel_data[i]<<1;
if(sub_protocol == DSM2_SFC)
value |= i<<12;
}
packet[i*2+2] = (value >> 8) & 0xff;
packet[i*2+3] = (value >> 0) & 0xff;
}
return;
}
#endif
#ifdef DSM_THROTTLE_KILL_CH
#if defined(DSM_THROTTLE_KILL_CH)
uint16_t kill_ch=Channel_data[DSM_THROTTLE_KILL_CH-1];
#endif
for (uint8_t i = 0; i < 7; i++)
{
uint8_t idx = ch_map[(upper?7:0) + i]; // 1,5,2,3,0,4
uint16_t value = 0xffff;
if((option&0x40) == 0 && num_ch < 8 && upper)
if((option & MODE_11MS_BIT_MASK) == 0 && num_ch < 8 && upper)
idx=0xff; // in 22ms do not transmit upper channels if <8, is it the right method???
if (idx != 0xff)
else if (idx != 0xff)
{
/* Spektrum own remotes transmit normal values during bind and actually use this (e.g. Nano CP X) to
select the transmitter mode (e.g. computer vs non-computer radio), so always send normal output */
#ifdef DSM_THROTTLE_KILL_CH
if(idx==CH1 && kill_ch<=604)
#if defined(DSM_THROTTLE_KILL_CH)
if(idx==CH1 && kill_ch<=604 && num_ch<=12)
{//Activate throttle kill only if channel is throttle and DSM_THROTTLE_KILL_CH below -50%
if(kill_ch<CHANNEL_MIN_100) // restrict val to 0...400
kill_ch=0;
@@ -196,18 +234,43 @@ static void __attribute__((unused)) DSM_build_data_packet(uint8_t upper)
value=(kill_ch*21)/25; // kill channel -100%->904us ... -50%->1100us *0x150/400
}
else
#endif
{
#if defined(DSM_X_PLUS)
if (idx==XP_CH) { // X-Plus special channel placeholder
idx = XP_CH + x_plus_ch; // Encode CH13-CH16 instead
}
#endif
#ifdef DSM_MAX_THROW
value=Channel_data[CH_TAER[idx]]; // -100%..+100% => 1024..1976us and -125%..+125% => 904..2096us based on Redcon 6 channel DSM2 RX
#else
if(option & 0x80)
if(option & MAX_THROW_BIT_MASK)
value=Channel_data[CH_TAER[idx]]; // -100%..+100% => 1024..1976us and -125%..+125% => 904..2096us based on Redcon 6 channel DSM2 RX
else
value=convert_channel_16b_nolimit(CH_TAER[idx],0x156,0x6AA,false); // -100%..+100% => 1100..1900us and -125%..+125% => 1000..2000us based on a DX8 G2 dump
#endif
}
#if defined(DSM_X_PLUS)
if (idx >= XP_CH) { // X-Plus Channel
// Multiplexing 4 chanels on the same frame channel placeholder for channel 13 (ID=12) over time (Refresh cycle 88ms)
// CH13-16 lower frame, and Ch17-20 upper. We only do lower right now, since MM cannot handle more than 16ch
// Channel value is 9 bits, and upper 2 bits is the X-Plus channel (CH13..CH16).
if(num_ch>12)
{
value >>= 2; // Convert to 9 bits
value |= (XP_CH << 11) | (x_plus_ch << 9); // constant 12 (4 bits), XPlus Ch (2 bits), Value (9 bits)
x_plus_ch = (x_plus_ch + 1) % 4; // only 0..3
}
else
value = 0xffff;
}
else
#endif
{ // Regular channel
if(bits==10) value>>=1;
value |= (upper && i==0 ? 0x8000 : 0) | (idx << bits);
}
}
packet[i*2+2] = value >> 8;
packet[i*2+3] = value;
}
@@ -250,27 +313,33 @@ static uint8_t __attribute__((unused)) DSM_Check_RX_packet()
uint16_t DSM_callback()
{
#if defined MULTI_EU
if(sub_protocol == DSM2_1F || sub_protocol == DSM2_2F)
if(sub_protocol == DSM2_1F || sub_protocol == DSM2_2F || sub_protocol == DSM2_SFC)
{
SUB_PROTO_INVALID;
return 11000;
}
#endif
#if defined MULTI_AIR
if(sub_protocol == DSMR || sub_protocol == DSM2_SFC)
{
SUB_PROTO_INVALID;
return 11000;
}
#endif
#define DSM_CH1_CH2_DELAY 4010 // Time between write of channel 1 and channel 2
#ifdef STM32_BOARD
#define DSM_WRITE_DELAY 1600 // Time after write to verify write complete
#define DSM_READ_DELAY 300 // Time before write to check read phase, and switch channels.
#else
#define DSM_WRITE_DELAY 1950 // Time after write to verify write complete
#define DSM_READ_DELAY 600 // Time before write to check read phase, and switch channels.
#endif
#define DSM_READ_DELAY 600 // Time before write to check read phase, and switch channels. Was 400 but 600 seems what the 328p needs to read a packet
#if defined DSM_TELEMETRY
uint8_t rx_phase;
uint8_t len;
uint8_t length;
#endif
uint8_t start;
#ifdef DSM_GR300
uint16_t timing=5000+(convert_channel_8b(CH13)*100);
debugln("T=%u",timing);
#endif
//debugln("P=%d",phase);
switch(phase)
{
case DSM_BIND_WRITE:
@@ -284,11 +353,14 @@ uint16_t DSM_callback()
return 10000;
#if defined DSM_TELEMETRY
case DSM_BIND_CHECK:
//64 SDR Mode is configured so only the 8 first values are needed but we need to write 16 values...
CYRF_ConfigDataCode((const uint8_t *)"\x98\x88\x1B\xE4\x30\x79\x03\x84", 16);
#if DEBUG_BIND
debugln("Bind Check");
#endif
//64 SDR Mode is configured so only the 8 first values are needed
CYRF_ConfigDataCode((const uint8_t *)"\x98\x88\x1B\xE4\x30\x79\x03\x84");
CYRF_SetTxRxMode(RX_EN); //Receive mode
CYRF_WriteRegister(CYRF_05_RX_CTRL, 0x87); //Prepare to receive
bind_counter=2*DSM_BIND_COUNT; //Timeout of 4.2s if no packet received
bind_counter=DSM_BIND_COUNT_READ; //Timeout of 4.2s if no packet received
phase++; // change from BIND_CHECK to BIND_READ
return 2000;
case DSM_BIND_READ:
@@ -304,10 +376,12 @@ uint16_t DSM_callback()
CYRF_ReadDataPacketLen(packet_in+1, 10);
if(DSM_Check_RX_packet())
{
#if DEBUG_BIND
debug("Bind");
for(uint8_t i=0;i<10;i++)
debug(" %02X",packet_in[i+1]);
debugln("");
#endif
packet_in[0]=0x80;
packet_in[6]&=0x0F; // It looks like there is a flag 0x40 being added by some receivers
if(packet_in[6]>12) packet_in[6]=12;
@@ -332,6 +406,9 @@ uint16_t DSM_callback()
}
if( --bind_counter == 0 )
{ // Exit if no answer has been received for some time
#if DEBUG_BIND
debugln("Bind Read TIMEOUT");
#endif
phase++; // DSM_CHANSEL
return 7000 ;
}
@@ -343,24 +420,37 @@ uint16_t DSM_callback()
CYRF_SetTxRxMode(TX_EN);
hopping_frequency_no = 0;
phase = DSM_CH1_WRITE_A; // in fact phase++
#ifndef MULTI_AIR
if(sub_protocol == DSMR)
DSM_set_sop_data_crc(false, true);
else
#endif
DSM_set_sop_data_crc(true, sub_protocol==DSMX_2F||sub_protocol==DSMX_1F); //prep CH1
return 10000;
case DSM_CH1_WRITE_A:
#ifdef MULTI_SYNC
if(sub_protocol!=DSM2_SFC || option&0x40) // option&40 in this case is 16.5ms/11ms frame rate for DSM2_SFC
telemetry_set_input_sync(11000); // Always request 11ms spacing even if we don't use half of it in 22ms mode
else
telemetry_set_input_sync(DSM2_SFC_PERIOD);
#endif
#ifndef MULTI_AIR
if(sub_protocol == DSMR)
CYRF_SetPower(0x08); //Keep transmit power in sync
else
#endif
CYRF_SetPower(0x28); //Keep transmit power in sync
case DSM_CH1_WRITE_B:
DSM_build_data_packet(phase == DSM_CH1_WRITE_B); // build lower or upper channels
case DSM_CH2_WRITE_A:
case DSM_CH2_WRITE_B:
CYRF_ReadRegister(CYRF_04_TX_IRQ_STATUS); // clear IRQ flags
//debugln_time("");
#ifndef MULTI_AIR
if(sub_protocol==DSM2_SFC)
CYRF_WriteDataPacketLen(packet,2*(num_ch+1));
else
#endif
CYRF_WriteDataPacket(packet);
#if 0
for(uint8_t i=0;i<16;i++)
@@ -398,41 +488,52 @@ uint16_t DSM_callback()
phase++; // change from CH2_CHECK to CH2_READ
CYRF_SetTxRxMode(RX_EN); //Receive mode
CYRF_WriteRegister(CYRF_05_RX_CTRL, 0x87); //0x80??? //Prepare to receive
if(sub_protocol==DSMR)
#ifndef MULTI_AIR
if(sub_protocol==DSMR || sub_protocol == DSM2_SFC)
{
phase = DSM_CH2_READ_B;
return 11000 - DSM_WRITE_DELAY - DSM_READ_DELAY;
if(sub_protocol == DSM2_SFC)
{
if(option&0x40) // option&40 in this case is 16.5ms/11ms frame rate for DSM2_SFC
return 11000 - DSM_CH1_CH2_DELAY - DSM_WRITE_DELAY - DSM_READ_DELAY;
else
return DSM2_SFC_PERIOD - DSM_CH1_CH2_DELAY - DSM_WRITE_DELAY - DSM_READ_DELAY;
}
return 10900 - DSM_WRITE_DELAY - DSM_READ_DELAY; //Was 11000 but the SR6200A needs 10900 to report telemetry correctly
}
#ifdef DSM_GR300
if(num_ch==3)
return timing - DSM_CH1_CH2_DELAY - DSM_WRITE_DELAY - DSM_READ_DELAY;
#endif
return 11000 - DSM_CH1_CH2_DELAY - DSM_WRITE_DELAY - DSM_READ_DELAY;
case DSM_CH2_READ_A:
case DSM_CH2_READ_B:
//Read telemetry
rx_phase = CYRF_ReadRegister(CYRF_07_RX_IRQ_STATUS);
//debug("ST1:%02X ",rx_phase);
if((rx_phase & 0x03) == 0x02) // RXC=1, RXE=0 then 2nd check is required (debouncing)
rx_phase |= CYRF_ReadRegister(CYRF_07_RX_IRQ_STATUS);
//debug("ST2:%02X ",rx_phase);
if((rx_phase & 0x07) == 0x02)
{ // good data (complete with no errors)
CYRF_WriteRegister(CYRF_07_RX_IRQ_STATUS, 0x80); // need to set RXOW before data read
len=CYRF_ReadRegister(CYRF_09_RX_COUNT);
if(len>TELEMETRY_BUFFER_SIZE-2)
len=TELEMETRY_BUFFER_SIZE-2;
CYRF_ReadDataPacketLen(packet_in+1, len);
length=CYRF_ReadRegister(CYRF_09_RX_COUNT);
//debug("RX(%d)",length);
if(length>TELEMETRY_BUFFER_SIZE-2)
length=TELEMETRY_BUFFER_SIZE-2;
CYRF_ReadDataPacketLen(packet_in+1, length);
#ifdef DSM_DEBUG_FWD_PGM
//debug(" %02X", packet_in[1]);
if(packet_in[1]==9)
{
for(uint8_t i=0;i<len;i++)
for(uint8_t i=0;i<length;i++)
debug(" %02X", packet_in[i+1]);
debugln("");
}
#endif
packet_in[0]=CYRF_ReadRegister(CYRF_13_RSSI)&0x1F;// store RSSI of the received telemetry signal
//for(uint8_t i=0;i<length+1;i++)
// debug(" %02X", packet_in[i]);
telemetry_link=1;
}
//debugln("");
CYRF_WriteRegister(CYRF_29_RX_ABORT, 0x20); // Abort RX operation
if (phase == DSM_CH2_READ_A && (sub_protocol==DSM2_1F || sub_protocol==DSMX_1F) && num_ch < 8) // 22ms mode
{
@@ -440,10 +541,6 @@ uint16_t DSM_callback()
CYRF_WriteRegister(CYRF_29_RX_ABORT, 0x00); // Clear abort RX operation
CYRF_WriteRegister(CYRF_05_RX_CTRL, 0x87); //0x80??? //Prepare to receive
phase = DSM_CH2_READ_B;
#ifdef DSM_GR300
if(num_ch==3)
return timing;
#endif
return 11000;
}
if (phase == DSM_CH2_READ_A)
@@ -464,19 +561,20 @@ uint16_t DSM_callback()
else
{ //Normal mode 22ms
phase = DSM_CH1_WRITE_A; // change from CH2_CHECK_A to CH1_WRITE_A (ie no upper)
#ifdef DSM_GR300
if(num_ch==3)
return timing - DSM_CH1_CH2_DELAY - DSM_WRITE_DELAY ;
#ifndef MULTI_AIR
if(sub_protocol==DSM2_SFC)
{
if(option&0x40) // option&40 in this case is 16.5ms/11ms frame rate for DSM2_SFC
return 11000 - DSM_CH1_CH2_DELAY - DSM_WRITE_DELAY ;
else
return DSM2_SFC_PERIOD - DSM_CH1_CH2_DELAY - DSM_WRITE_DELAY ;
}
#endif
return 22000 - DSM_CH1_CH2_DELAY - DSM_WRITE_DELAY ;
}
}
else
phase = DSM_CH1_WRITE_A; // change from CH2_CHECK_B to CH1_WRITE_A (upper already transmitted so transmit lower)
#ifdef DSM_GR300
if(num_ch==3)
return timing - DSM_CH1_CH2_DELAY - DSM_WRITE_DELAY ;
#endif
return 11000 - DSM_CH1_CH2_DELAY - DSM_WRITE_DELAY;
#endif
}
@@ -484,6 +582,7 @@ uint16_t DSM_callback()
}
#ifndef MULTI_AIR
const uint8_t PROGMEM DSMR_ID_FREQ[][4 + 23] = {
{ 0x71, 0x74, 0x1c, 0xe4, 0x11, 0x2f, 0x17, 0x3d, 0x23, 0x3b, 0x0f, 0x21, 0x25, 0x49, 0x1d, 0x13, 0x4d, 0x1f, 0x41, 0x4b, 0x47, 0x05, 0x27, 0x15, 0x19, 0x3f, 0x07 },
{ 0xfe, 0xfe, 0xfe, 0xfe, 0x45, 0x31, 0x33, 0x4b, 0x11, 0x29, 0x49, 0x3f, 0x09, 0x13, 0x47, 0x21, 0x1d, 0x43, 0x1f, 0x05, 0x41, 0x19, 0x1b, 0x2d, 0x15, 0x4d, 0x0f },
@@ -507,33 +606,74 @@ const uint8_t PROGMEM DSMR_ID_FREQ[][4 + 23] = {
{ 0xff, 0xff, 0x00, 0x00, 0x2b, 0x35, 0x1b, 0x1d, 0x0f, 0x47, 0x09, 0x0d, 0x45, 0x41, 0x21, 0x11, 0x2f, 0x43, 0x27, 0x33, 0x4b, 0x37, 0x13, 0x19, 0x4d, 0x23, 0x17 },
{ 0x00, 0xff, 0x00, 0x00, 0x1b, 0x1d, 0x33, 0x13, 0x2b, 0x27, 0x09, 0x41, 0x25, 0x17, 0x19, 0x2d, 0x4b, 0x37, 0x45, 0x11, 0x21, 0x0d, 0x3d, 0x4d, 0x07, 0x39, 0x43 },
{ 0xff, 0x00, 0x00, 0x00, 0x37, 0x27, 0x43, 0x4b, 0x39, 0x13, 0x07, 0x0d, 0x25, 0x17, 0x29, 0x1b, 0x1d, 0x45, 0x19, 0x2d, 0x0b, 0x3d, 0x15, 0x47, 0x1f, 0x21, 0x4d } };
#endif
void DSM_init()
{
if(sub_protocol == DSMR)
{
#ifndef MULTI_AIR
if(option&CLONE_BIT_MASK)
SUB_PROTO_INVALID;
else
{
//SUB_PROTO_VALID;
uint8_t row = rx_tx_addr[3]%22;
for(uint8_t i=0; i< 4; i++)
cyrfmfg_id[i] = pgm_read_byte_near(&DSMR_ID_FREQ[row][i]);
for(uint8_t i=0; i< 23; i++)
hopping_frequency[i] = pgm_read_byte_near(&DSMR_ID_FREQ[row][i+4]);
}
#endif
}
else
{
if(option&CLONE_BIT_MASK)
{
if(eeprom_read_byte((EE_ADDR)DSM_CLONE_EEPROM_OFFSET+4)==0xF0)
{
//read cloned ID from EEPROM
uint16_t temp = DSM_CLONE_EEPROM_OFFSET;
for(uint8_t i=0;i<4;i++)
cyrfmfg_id[i] = eeprom_read_byte((EE_ADDR)temp++);
cyrfmfg_id[3]^=RX_num; //Model match
#if DEBUG_BIND
debugln("Using cloned ID");
debug("Clone ID=")
for(uint8_t i=0;i<4;i++)
debug("%02x ", cyrfmfg_id[i]);
debugln("");
#endif
}
else
{
SUB_PROTO_INVALID;
#if DEBUG_BIND
debugln("No valid cloned ID");
#endif
}
}
else
{
//SUB_PROTO_VALID;
CYRF_GetMfgData(cyrfmfg_id);
//Model match
cyrfmfg_id[3]^=RX_num;
cyrfmfg_id[3]^=RX_num; //Model match
}
}
//Calc sop_col
sop_col = (cyrfmfg_id[0] + cyrfmfg_id[1] + cyrfmfg_id[2] + 2) & 0x07;
//We cannot manipulate the ID if we are cloning
if(!(option&CLONE_BIT_MASK))
{
//Fix for OrangeRX using wrong DSM_pncodes by preventing access to "Col 8"
if(sop_col==0 && sub_protocol != DSMR)
{
cyrfmfg_id[rx_tx_addr[0]%3]^=0x01; //Change a bit so sop_col will be different from 0
sop_col = (cyrfmfg_id[0] + cyrfmfg_id[1] + cyrfmfg_id[2] + 2) & 0x07;
}
}
//Calc CRC seed
seed = (cyrfmfg_id[0] << 8) + cyrfmfg_id[1];
@@ -544,7 +684,7 @@ void DSM_init()
else if(sub_protocol != DSMR)
{
uint8_t tmpch[10];
CYRF_FindBestChannels(tmpch, 10, 5, 3, 75);
CYRF_FindBestChannels(tmpch, 10, 5, 3, 75, FIND_CHANNEL_ANY);
//
uint8_t idx = random(0xfefefefe) % 10;
hopping_frequency[0] = tmpch[idx];
@@ -568,9 +708,12 @@ void DSM_init()
DSM_initialize_bind_phase();
phase = DSM_BIND_WRITE;
bind_counter=DSM_BIND_COUNT;
#if DEBUG_BIND
debugln("Bind Started: write count=%d",bind_counter);
#endif
}
else
phase = DSM_CHANSEL;//
phase = DSM_CHANSEL;
}
#endif

View File

@@ -365,7 +365,7 @@ static void __attribute__((unused)) DEVO_cyrf_init()
static void __attribute__((unused)) DEVO_set_radio_channels()
{
CYRF_FindBestChannels(hopping_frequency, 3, 4, 4, 80);
CYRF_FindBestChannels(hopping_frequency, 3, 4, 4, 80, FIND_CHANNEL_ANY);
hopping_frequency[3] = hopping_frequency[0];
hopping_frequency[4] = hopping_frequency[1];
}

View File

@@ -41,11 +41,11 @@ static void __attribute__((unused)) E129_build_data_packet()
}
else
{
packet[ 1] = 0xA6;
packet[ 1] = 0xA6; // Set to A5 every few packets??
//Flags
if(sub_protocol == E129_E129)
packet[ 2] = 0xF7; // High rate 0xF7, low 0xF4
else //C186
packet[ 2] = 0xF7; // E129 High rate 0xF7, low 0xF4
if(sub_protocol == E129_C186)
{
packet[ 2] = 0xFA; // High rate 0xFA, medium 0xF7, low 0xF4
packet[13] = bit_reverse(rx_tx_addr[2]);
@@ -53,9 +53,18 @@ static void __attribute__((unused)) E129_build_data_packet()
packet[15] = bit_reverse(rx_tx_addr[0]);
packet[16] = bit_reverse(rx_tx_addr[1]);
}
//packet[ 3] = 0x00; // E129 Mode: short press=0x20->0x00->0x20->..., long press=0x10->0x30->0x10->... => C186 throttle trim is doing the same:up=short press and down=long press
packet[ 3] = GET_FLAG(CH10_SW, 0x40) // C159: loop flight 0x40
| GET_FLAG(CH11_SW, 0x08); // C129V2: flip
//Other flags seen in packet[3]
// Flag 0x04 is set on some helis (C159/C190)
// E129 Mode: short press=0x20->0x00->0x20->..., long press=0x10->0x30->0x10->... => C186 throttle trim is doing the same:up=short press and down=long press
packet[ 4] = GET_FLAG(CH5_SW, 0x20) // Take off/Land 0x20
| GET_FLAG(CH6_SW, 0x04); // Emergency stop 0x04
| GET_FLAG(CH6_SW, 0x04) // Emergency stop 0x04
| GET_FLAG(CH12_SW, 0x80); // C190: debug mode->remote THR trim down sets 0x80
//Other flags seen in packet[4]
// C190 remote LANDING sets 0x10
// C190 remote THR trim down sets 0x80
//Channels and trims
uint16_t val = convert_channel_10b(AILERON,false);
uint8_t trim = convert_channel_8b(CH7) & 0xFC;
@@ -80,12 +89,10 @@ static void __attribute__((unused)) E129_build_data_packet()
packet[12] = val; // channel (0x000...0x200...0x3FF)
}
//Check
if(sub_protocol == E129_E129)
packet[packet_length-2] = packet[0] + packet[1];
else
packet[packet_length-2] = 0x24 + packet[0] + (packet[1]&0x03); // ??
for(uint8_t i=2;i<packet_length-2;i++)
for(uint8_t i=0;i<packet_length-2;i++)
packet[packet_length-2] += packet[i];
if(sub_protocol == E129_C186)
packet[packet_length-2] -= 0x80;
RF2500_BuildPayload(packet);
}

View File

@@ -0,0 +1,166 @@
/*
This project is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
Multiprotocol is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with Multiprotocol. If not, see <http://www.gnu.org/licenses/>.
*/
#if defined(EAZYRC_NRF24L01_INO)
#include "iface_xn297.h"
//#define FORCE_EAZYRC_ORIGINAL_ID
#define EAZYRC_PAYLOAD_SIZE 10
#define EAZYRC_RF_NUM_CHANNELS 4
#define EAZYRC_BIND_CHANNEL 18
#define EAZYRC_PACKET_PERIOD 5000
enum {
EAZYRC_BINDTX=0,
EAZYRC_BINDRX,
EAZYRC_DATA,
};
static void __attribute__((unused)) EAZYRC_send_packet()
{
//Bind:
// TX: C=18 S=Y A= AA BB CC DD EE P(10)= 1A A0 01 00 00 00 1E 00 78 51
// packet[0..2]=tx_addr, packet[6]=first rf channel, packet[8]=unk, packet[9]=sum(packet[0..8])
// RX: C=18 S=Y A= AA BB CC DD EE P(10)= 41 AD 01 1A A0 01 1E 00 87 4F
// packet[0..2]=rx_addr, packet[3..5]=tx_addr, packet[6]=first rf channel, packet[8]=unk but swapped, packet[9]=sum(packet[0..8])
//Normal: C=30 S=Y A= 1A A0 41 AD 02 P(10)= 7F 7F 1F 19 00 00 1E 00 AB FF
// packet[0]=THR, packet[1]=ST, packet[2]=unk, packet[3]=unk, packet[6]=first rf channel, packet[8]=unk, packet[9]=sum(packet[0..8])
//Bound : C=18 S=Y A= AA BB CC DD EE P(10)= 1A A0 01 41 AD 01 1E 00 79 41
// packet[0..2]=tx_addr, packet[3..5]=rx_addr, packet[6]=first rf channel, packet[8]=unk, packet[9]=sum(packet[0..8])
// sent every 12 packets in normal mode, but is it really needed if the car loose power then you need to rebind...
//Packet period around 5ms with a large jitter
memset(&packet[3], 0x00, 7);
if(IS_BIND_IN_PROGRESS)
{
memcpy(&packet,rx_tx_addr,3);
packet[6] = hopping_frequency[0];
packet[8] = 0x78; //??? packet type?
}
else
{
XN297_Hopping(hopping_frequency_no);
hopping_frequency_no++;
hopping_frequency_no &= 3;
packet[0] = convert_channel_8b(THROTTLE);
packet[1] = convert_channel_8b(AILERON);
packet[2] = 0x1F; //??? additional channel?
packet[3] = 0x19; //??? additional channel?
packet[6] = hopping_frequency[0];
packet[8] = 0xAB; //??? packet type?
}
for(uint8_t i=0;i<EAZYRC_PAYLOAD_SIZE-1;i++)
packet[9] += packet[i];
// Send
XN297_SetPower();
XN297_SetTxRxMode(TX_EN);
XN297_WritePayload(packet, EAZYRC_PAYLOAD_SIZE);
#ifdef DEBUG_SERIAL
for(uint8_t i=0; i < len; i++)
debug("%02X ", packet[i]);
debugln();
#endif
}
static void __attribute__((unused)) EAZYRC_initialize_txid()
{
rx_tx_addr[1] = rx_tx_addr[3];
hopping_frequency[0] = (rx_tx_addr[3]%20) + 0x1E; // Wild guess... First channel between 30 and 49so a full range of 30 to 79
#ifdef FORCE_EAZYRC_ORIGINAL_ID
rx_tx_addr[0] = 0x1A;
rx_tx_addr[1] = 0xA0;
rx_tx_addr[2] = 0x01;
hopping_frequency[0] = 0x1E;
#endif
rx_tx_addr[2] = 0x01; // Not sure if this is needed...
for(uint8_t i=1; i<EAZYRC_RF_NUM_CHANNELS; i++)
hopping_frequency[i] = hopping_frequency[0] + 10*i;
}
static void __attribute__((unused)) EAZYRC_RF_init()
{
XN297_Configure(XN297_CRCEN, XN297_SCRAMBLED, XN297_1M);
XN297_SetTXAddr((uint8_t*)"\xAA\xBB\xCC\xDD\xEE", 5);
XN297_SetRXAddr((uint8_t*)"\xAA\xBB\xCC\xDD\xEE", EAZYRC_PAYLOAD_SIZE);
XN297_RFChannel(EAZYRC_BIND_CHANNEL);
}
uint16_t EAZYRC_callback()
{
uint8_t rf,n;
uint16_t addr;
switch(phase)
{
case EAZYRC_BINDTX:
if(XN297_IsRX())
{
//Example: TX: C=18 S=Y A= AA BB CC DD EE P(10)= 1A A0 01 00 00 00 1E 00 78 51
// packet[0..2]=tx_addr, packet[6]=first rf channel, packet[8]=unk, packet[9]=sum(packet[0..8])
// RX: C=18 S=Y A= AA BB CC DD EE P(10)= 41 AD 01 1A A0 01 1E 00 87 4F
// packet[0..2]=rx_addr, packet[3..5]=tx_addr, packet[6]=first rf channel, packet[8]=unk but swapped, packet[9]=sum(packet[0..8])
XN297_ReadPayload(packet_in, EAZYRC_PAYLOAD_SIZE);
#ifdef DEBUG_SERIAL
for(uint8_t i=0; i < EAZYRC_PAYLOAD_SIZE; i++)
debug("%02X ", packet_in[i]);
debugln();
#endif
//could check the validity of the packet by looking at the sum...
if(memcmp(&packet_in[3],&rx_tx_addr,3)==0)
{//TX ID match, TX addr to use: 1A A0 41 AD 02
rx_tx_addr[4] = rx_tx_addr[2] + packet_in[2]; //wild guess
rx_tx_addr[2] = packet_in[0];
rx_tx_addr[3] = packet_in[1];
BIND_DONE;
XN297_SetTxRxMode(TXRX_OFF);
XN297_SetTXAddr(rx_tx_addr, 5);
phase = EAZYRC_DATA;
return 5000;
}
}
XN297_SetTxRxMode(TXRX_OFF);
EAZYRC_send_packet();
phase++;
return 1000;
case EAZYRC_BINDRX:
//Wait for the packet transmission to finish
while(XN297_IsPacketSent()==false);
//Switch to RX
XN297_SetTxRxMode(TXRX_OFF);
XN297_SetTxRxMode(RX_EN);
phase = EAZYRC_BINDTX;
return 10000;
case EAZYRC_DATA:
#ifdef MULTI_SYNC
telemetry_set_input_sync(EAZYRC_PACKET_PERIOD);
#endif
EAZYRC_send_packet();
break;
}
return EAZYRC_PACKET_PERIOD;
}
void EAZYRC_init()
{
BIND_IN_PROGRESS;
EAZYRC_initialize_txid();
EAZYRC_RF_init();
phase = EAZYRC_BINDTX;
packet_count = 0;
hopping_frequency_no = 0;
}
#endif

View File

@@ -31,6 +31,19 @@ enum {
FQ777_FLAG_FLIP = 0x80,
};
enum {
XBM37_B5_OK = 0x80,
XBM37_B6_RATE_LOW = 0x00,
XBM37_B6_RATE_MID = 0x01,
XBM37_B6_RATE_HIGH = 0x02,
XBM37_B6_LED_OFF = 0x04,
XBM37_B6_RTH = 0x08,
XBM37_B6_HEADLESS = 0x10,
XBM37_B6_VIDEO = 0x20,
XBM37_B6_PICTURE = 0x40,
XBM37_B6_FLIP = 0x80,
};
const uint8_t ssv_xor[] = {0x80,0x44,0x64,0x75,0x6C,0x71,0x2A,0x36,0x7C,0xF1,0x6E,0x52,0x9,0x9D,0x1F,0x78,0x3F,0xE1,0xEE,0x16,0x6D,0xE8,0x73,0x9,0x15,0xD7,0x92,0xE7,0x3,0xBA};
uint8_t FQ777_bind_addr [] = {0xe7,0xe7,0xe7,0xe7,0x67};
@@ -87,18 +100,55 @@ static void __attribute__((unused)) FQ777_send_packet()
uint8_t packet_ori[8];
if (IS_BIND_IN_PROGRESS)
{
// 4,5,6 = address fields
// last field is checksum of address fields
// Byte 0 is always 0x20; bytes 1-3 are sub-protocol specific
packet_ori[0] = 0x20;
if (sub_protocol == XBM37)
{
packet_ori[1] = 0x14;
packet_ori[2] = 0x07;
packet_ori[3] = 0x03;
}
else // FQ777
{
packet_ori[1] = 0x15;
packet_ori[2] = 0x05;
packet_ori[3] = 0x06;
}
// Bytes 4-6: address fields, byte 7: checksum of address fields (shared by both protocols)
packet_ori[4] = rx_tx_addr[0];
packet_ori[5] = rx_tx_addr[1];
packet_ori[6] = rx_tx_addr[2];
packet_ori[7] = packet_ori[4] + packet_ori[5] + packet_ori[6];
}
else
{
if (sub_protocol == XBM37)
{
packet_ori[0] = convert_channel_16b_limit(THROTTLE,0xE1,0); // reverse channel
packet_ori[1] = convert_channel_16b_limit(RUDDER,0,0xE1);
packet_ori[2] = convert_channel_16b_limit(AILERON,0xE1,0); // reverse channel
packet_ori[3] = convert_channel_16b_limit(ELEVATOR,0xE1,0); // reverse channel
packet_ori[4] = (convert_channel_8b(CH13) >> 2) + 1; // ele trim (01..20..40) front ^ plus 0x01, back - minus 0x01 per click
packet_ori[5] = 0x3F - (convert_channel_8b(CH14) >> 2) // ail trim (40..20..01) left <- plus 0x01, right -> minus 0x01 per click
| GET_FLAG(CH12_SW, XBM37_B5_OK); // bit7 = OK button ...unknown use for this model?
uint8_t rate_bits;
if (CH5_SW)
rate_bits = XBM37_B6_RATE_HIGH; // high rate
else if (Channel_data[CH5] < CHANNEL_MIN_COMMAND)
rate_bits = XBM37_B6_RATE_LOW; // low rate
else
rate_bits = XBM37_B6_RATE_MID; // medium rate
packet_ori[6] = rate_bits // bits[1:0] = rate
| GET_FLAG(CH8_SW, XBM37_B6_LED_OFF) // bit2 = LED off
| GET_FLAG(CH11_SW, XBM37_B6_RTH) // bit3 = RTH
| GET_FLAG(CH7_SW, XBM37_B6_HEADLESS) // bit4 = headless
| GET_FLAG(CH10_SW, XBM37_B6_VIDEO) // bit5 = video
| GET_FLAG(CH9_SW, XBM37_B6_PICTURE) // bit6 = picture
| GET_FLAG(CH6_SW, XBM37_B6_FLIP); // bit7 = flip
}
else // FQ777
{
// throt, yaw, pitch, roll, trims, flags/left button,00,right button
//0-3 0x00-0x64
@@ -107,7 +157,6 @@ static void __attribute__((unused)) FQ777_send_packet()
//6 00 ??
//7 checksum - add values in other fields
// Trims are usually done through the radio configuration but leaving the code here just in case...
uint8_t trim_mod = packet_count % 144;
uint8_t trim_val = 0;
@@ -129,7 +178,8 @@ static void __attribute__((unused)) FQ777_send_packet()
| GET_FLAG(!CH6_SW, FQ777_FLAG_RETURN)
| GET_FLAG(CH8_SW,FQ777_FLAG_EXPERT);
packet_ori[6] = 0x00;
// calculate checksum
}
// Data packet checksum: sum of bytes 0-6 (not applied to bind packets)
uint8_t checksum = 0;
for (int i = 0; i < 7; ++i)
checksum += packet_ori[i];
@@ -181,12 +231,17 @@ void FQ777_init(void)
BIND_IN_PROGRESS; // autobind protocol
bind_counter = FQ777_BIND_COUNT;
packet_count=0;
hopping_frequency[0] = 0x4D;
hopping_frequency[1] = 0x43;
hopping_frequency[2] = 0x27;
// Sub-protocol hop channel table: first 3 channels differ; channel[3]=0x07 is shared
static const uint8_t hop_ch[2][3] = {
{0x4D, 0x43, 0x27}, // FQ777
{0x49, 0x34, 0x26}, // XBM-37
};
hopping_frequency[0] = hop_ch[sub_protocol][0];
hopping_frequency[1] = hop_ch[sub_protocol][1];
hopping_frequency[2] = hop_ch[sub_protocol][2];
hopping_frequency[3] = 0x07;
hopping_frequency_no=0;
rx_tx_addr[2] = 0x00;
rx_tx_addr[2] = (sub_protocol == XBM37) ? (RX_num & 0x3F) : 0x00; // XBM-37 uses receiver number (0-63) for model match capability
rx_tx_addr[3] = 0xe7;
rx_tx_addr[4] = 0x67;
FQ777_RF_init();

View File

@@ -33,28 +33,54 @@ Multiprotocol is distributed in the hope that it will be useful,
#define FX620_PAYLOAD_SIZE 7
#define FX620_CH_OFFSET 1
#define FX9630_PACKET_PERIOD 8124
#define FX9630_BIND_PACKET_PERIOD 8124
#define FX9630_PACKET_PERIOD 8124 //8156 on QIDI-560
#define FX9630_BIND_CHANNEL 51
#define FX9630_PAYLOAD_SIZE 8
#define FX9630_NUM_CHANNELS 3
#define FX9630_WRITE_TIME 500
#define FX_QF012_PACKET_PERIOD 12194
#define FX_QF012_RX_PAYLOAD_SIZE 3
#define FX_BM26_BIND_CHANNEL 40
#define FX_BM26_PACKET_PERIOD 14066
#define FX_A570_PACKET_PERIOD 10270
//#define FORCE_FX620_ID
//#define FORCE_FX9630_ID
//#define FORCE_QIDI_ID
//#define FORCE_FX_A570_ID
enum
{
FX_DATA=0,
FX_RX,
};
static void __attribute__((unused)) FX_send_packet()
{
static uint8_t trim_ch = 0;
//Hopp
if(IS_BIND_DONE)
{
XN297_Hopping(hopping_frequency_no++);
if(sub_protocol >= FX9630)
{ // FX9630 & FX_Q560 & FX_QF012 & FX_A570
if (hopping_frequency_no >= FX9630_NUM_CHANNELS)
{
hopping_frequency_no = 0;
if(sub_protocol == FX9630)
{
XN297_SetTXAddr(rx_tx_addr, 4);
if (hopping_frequency_no > FX9630_NUM_CHANNELS)
hopping_frequency_no = 0;
trim_ch++;
trim_ch &= 3;
}
else // FX816 and FX620
else // FX_Q560 & FX_QF012 & FX_A570
trim_ch = 0;
}
}
else // FX816 & FX620
{
hopping_frequency_no &= 0x03;
}
@@ -64,17 +90,7 @@ static void __attribute__((unused)) FX_send_packet()
//Channels
uint8_t val;
if (sub_protocol == FX9630)
{
packet[0] = convert_channel_8b(THROTTLE);
packet[1] = convert_channel_8b(AILERON);
packet[2] = 0xFF - convert_channel_8b(ELEVATOR);
packet[3] = convert_channel_8b(RUDDER);
packet[4] = 0x20;
packet[5] = GET_FLAG(CH5_SW, 0x01); // DR toggle swich: 0 small throw, 1 large throw
packet[5] |= (Channel_data[CH6] < CHANNEL_MIN_COMMAND ? 0x00 : (Channel_data[CH6] > CHANNEL_MAX_COMMAND ? 0x02 : 0x01)) << 1; // Mode A(0) : 6D small throw, B(1) : 6D large throw, C(2) : 3D
}
else // FX816 and FX620
if (sub_protocol == FX816 || sub_protocol == FX620)
{
uint8_t offset=sub_protocol == FX816 ? FX816_CH_OFFSET:FX620_CH_OFFSET;
val=convert_channel_8b(AILERON);
@@ -86,6 +102,60 @@ static void __attribute__((unused)) FX_send_packet()
packet[offset] = sub_protocol == FX816 ? 0:0x7F;
packet[offset+1] = convert_channel_16b_limit(THROTTLE,0,100); //FX816:0x00..0x63, FX620:0x00..0x5E but that should work
}
else if (sub_protocol == FX_A570)
{
packet[0] = convert_channel_16b_limit(THROTTLE,0x1C,0xE4);
packet[1] = convert_channel_16b_limit(AILERON,0xE4,0x1C);
packet[2] = convert_channel_16b_limit(ELEVATOR,0xE4,0x1C);
packet[3] = convert_channel_16b_limit(RUDDER,0x1C,0xE4);
// Trims - Ruddder L:01 R:02, Aileron L:03 R:04, Elevator Fwd:05 Back:06
packet[4] = (Channel_data[CH10] < CHANNEL_MIN_COMMAND ? 0x01 : GET_FLAG(CH10_SW, 0x02)) // Rudder trim
| (Channel_data[CH11] < CHANNEL_MIN_COMMAND ? 0x03 : GET_FLAG(CH11_SW, 0x04)) // Aileron trim
| (Channel_data[CH12] < CHANNEL_MIN_COMMAND ? 0x06 : GET_FLAG(CH12_SW, 0x05)); // Elevator trim
packet[5] = GET_FLAG(CH5_SW, 0x40) // motors stop
// A570 flight modes = 0>vertical flight(3 axis mode):00, 1>flat flight(6G):02, 2>vertical flight(2 axis mode):04
| (Channel_data[CH6] < CHANNEL_MIN_COMMAND ? 0x00 : (Channel_data[CH6] > CHANNEL_MAX_COMMAND ? 0x04 : 0x02))
| GET_FLAG(CH7_SW, 0x01) // 0:low rate, 1:high rate
| GET_FLAG(CH8_SW, 0x08) // LED color change
| GET_FLAG(CH9_SW, 0x10); // LED off
}
else
{ // FX9630 & FX_Q560 & FX_QF012 & FX_BM26
packet[0] = convert_channel_8b(THROTTLE);
packet[1] = convert_channel_8b(AILERON);
packet[2] = 0xFF - convert_channel_8b(ELEVATOR);
packet[3] = convert_channel_8b(RUDDER);
if ( sub_protocol == FX_BM26 ) // BM26 Ail, Elev, Rud range between 0x00-0x3F-0x7F
{
packet[1] >>= 1;
packet[2] >>= 1;
packet[3] >>= 1;
}
val = trim_ch==0 ? 0x20 : (convert_channel_8b(trim_ch + CH6) >> 2); // no trim on Throttle
packet[4] = val; // Trim for channel x 0C..20..34
packet[5] = (trim_ch << 4) // channel x << 4
| GET_FLAG(CH5_SW, (sub_protocol == FX_QF012 ? 0x08 : 0x01)) // DR toggle swich: 0 small throw, 1 large throw / Q560 acrobatic / QF012 Special effects
// FX9630 =>0:6G small throw, 1:6G large throw, 2:3D
// QIDI-550=>0:3D, 1:6G, 2:Torque
// QF012=>0:beginner(6G), 1:mid(3D), 2:expert(Gyro off)
| (Channel_data[CH6] < CHANNEL_MIN_COMMAND ? 0x00 : (Channel_data[CH6] > CHANNEL_MAX_COMMAND ? 0x04 : 0x02));
if(sub_protocol == FX_Q560)
packet[5] |= GET_FLAG(CH7_SW, 0x18); // Q560 LED flag 0x10 conflicting with trim_ch... Corrected on new boards using 0x08 instead
else if (sub_protocol == FX_QF012)
packet[5] |= GET_FLAG(CH7_SW, 0x40) // QF012 invert flight
| GET_FLAG(CH8_SW, 0x80); // QF012 Restore fine tunning midpoint
else if ( sub_protocol == FX_BM26 )
{
packet[5] &= 0xC0;
packet[5] += 0x40;
// BM26 P51=>0:beginner(6G), 1:mid(3D), 2:expert(Gyro off)
packet[5] |= (Channel_data[CH6] < CHANNEL_MIN_COMMAND ? 0x08 : (Channel_data[CH6] > CHANNEL_MAX_COMMAND ? 0x0C : 0x0A));
packet[6] = GET_FLAG( CH5_SW, 0x20) // 6G Roll
| GET_FLAG(!CH7_SW, 0x08) // Light control switch, default on
| GET_FLAG(!CH8_SW, 0x10) // Turn signal switch, default on
| GET_FLAG( CH9_SW, 0x01); // Gyro Calibration
}
}
//Bind and specifics
if(sub_protocol == FX816)
@@ -112,7 +182,7 @@ static void __attribute__((unused)) FX_send_packet()
packet[5] = 0xAB; // Is it based on ID??
}
}
else // FX9630
else // FX9630 & FX_Q560 & FX_QF012 & FX_BM26 & FX_A570
{
if(IS_BIND_IN_PROGRESS)
{
@@ -125,15 +195,17 @@ static void __attribute__((unused)) FX_send_packet()
//Check
uint8_t last_packet_idx = packet_length-1;
if (sub_protocol == FX9630 && IS_BIND_IN_PROGRESS)
if (sub_protocol >= FX9630 && IS_BIND_IN_PROGRESS)
last_packet_idx--;
val=0;
for(uint8_t i=0;i<last_packet_idx;i++)
val+=packet[i];
if (sub_protocol == FX9630)
if (sub_protocol >= FX9630)
val = val ^ 0xFF;
packet[last_packet_idx]=val;
if ( IS_BIND_IN_PROGRESS && sub_protocol == FX_BM26 ) packet[7] = packet[6];
//Debug
#if 0
for(uint8_t i=0;i<packet_length;i++)
@@ -150,6 +222,7 @@ static void __attribute__((unused)) FX_send_packet()
static void __attribute__((unused)) FX_RF_init()
{
XN297_Configure(XN297_CRCEN, XN297_SCRAMBLED, XN297_1M);
packet_length = FX9630_PAYLOAD_SIZE; // default
if(sub_protocol == FX816)
{
XN297_SetTXAddr((uint8_t *)"\xcc\xcc\xcc\xcc\xcc", 5);
@@ -164,12 +237,23 @@ static void __attribute__((unused)) FX_RF_init()
packet_period = FX620_BIND_PACKET_PERIOD;
packet_length = FX620_PAYLOAD_SIZE;
}
else // FX9630
else if (sub_protocol == FX_BM26)
{
XN297_SetTXAddr((uint8_t *)"\x12\x34\x10\x10", 4);
XN297_RFChannel(FX_BM26_BIND_CHANNEL);
packet_period = FX_BM26_PACKET_PERIOD;
}
else if(sub_protocol == FX_A570)
{
XN297_SetTXAddr((uint8_t *)"\x56\x78\x92\x13", 4);
XN297_RFChannel(FX9630_BIND_CHANNEL);
packet_period = FX_A570_PACKET_PERIOD;
}
else // FX9630 & FX_Q560 & FX_QF012
{
XN297_SetTXAddr((uint8_t *)"\x56\x78\x90\x12", 4);
XN297_RFChannel(FX9630_BIND_CHANNEL);
packet_period = FX9630_BIND_PACKET_PERIOD;
packet_length = FX9630_PAYLOAD_SIZE;
packet_period = sub_protocol == FX_QF012 ? FX_QF012_PACKET_PERIOD : FX9630_PACKET_PERIOD;
}
}
@@ -196,21 +280,45 @@ static void __attribute__((unused)) FX_initialize_txid()
for(uint8_t i=1;i<FX_NUM_CHANNELS;i++)
hopping_frequency[i] = i*10 + hopping_frequency[0];
}
else // FX9630
else // FX9630 & FX_Q560 & FX_QF012 & FX_BM26 & FX_A570
{
#ifdef FORCE_FX9630_ID
memcpy(rx_tx_addr,(uint8_t*)"\xCE\x31\x9B\x73", 4);
memcpy(hopping_frequency,"\x13\x1A\x38", FX9630_NUM_CHANNELS); //Original dump=19=0x13,26=0x1A,56=0x38
#else
hopping_frequency[0] = 0x13; // constant
//??? Need to find out how the first RF channel is calculated ???
hopping_frequency[0] = sub_protocol == FX_BM26? 0x0C : 0x13;
if (sub_protocol == FX_A570) hopping_frequency[0] = 0x0E;
//Other 2 RF channels are sent during the bind phase so they can be whatever
hopping_frequency[1] = RX_num & 0x0F + 0x1A;
hopping_frequency[2] = rx_tx_addr[3] & 0x0F + 0x38;
#ifdef FORCE_FX9630_ID
memcpy(rx_tx_addr,(uint8_t*)"\xCE\x31\x9B\x73", 4);
memcpy(hopping_frequency,"\x13\x1A\x38", FX9630_NUM_CHANNELS); //Original dump=>19=0x13,26=0x1A,56=0x38
#endif
#ifdef FORCE_QIDI_ID
memcpy(rx_tx_addr,(uint8_t*)"\x23\xDC\x76\xA2", 4);
memcpy(hopping_frequency,"\x08\x25\x33", FX9630_NUM_CHANNELS); //Original dump=>08=0x08,37=0x25,51=0x33
//QIDI-560 #1
//memcpy(rx_tx_addr,(uint8_t*)"\x38\xC7\x6D\x8D", 4);
//memcpy(hopping_frequency,"\x0D\x20\x3A", FX9630_NUM_CHANNELS);
#endif
// BM26 rx_tx_addr: "\x17\x03\x00\x00", hopping_frequency: 0x0C,0x30,0x43(12,48,67)
#ifdef FORCE_FX_A570_ID
memcpy(rx_tx_addr,(uint8_t*)"\xA9\x56\xFC\x1C", 4);
memcpy(hopping_frequency,"\x0E\x1F\x39", FX9630_NUM_CHANNELS); //Original dump=>14=0x0E,31=0x1F,57=0x39
#endif
}
}
uint16_t FX_callback()
{
#ifdef FX_HUB_TELEMETRY
bool rx=false;
static uint8_t telem_count = 0;
switch(phase)
{
case FX_DATA:
rx = XN297_IsRX();
XN297_SetTxRxMode(TXRX_OFF);
#endif
#ifdef MULTI_SYNC
telemetry_set_input_sync(packet_period);
#endif
@@ -223,8 +331,70 @@ uint16_t FX_callback()
XN297_SetTXAddr(rx_tx_addr, 3);
packet_period = FX620_PACKET_PERIOD;
}
else if(sub_protocol >= FX9630)
{ // FX9630 & FX_Q560 & FX_QF012
XN297_SetTXAddr(rx_tx_addr, 4);
#ifdef FX_HUB_TELEMETRY
XN297_SetRXAddr(rx_tx_addr, FX_QF012_RX_PAYLOAD_SIZE);
#endif
}
}
FX_send_packet();
#ifdef FX_HUB_TELEMETRY
if (sub_protocol == FX816 || sub_protocol == FX620 || sub_protocol == FX_A570)
break;
if(rx)
{
debug("RX");
if(XN297_ReadPayload(packet_in, FX_QF012_RX_PAYLOAD_SIZE))
{//Good CRC
telemetry_link = 1;
telemetry_lost = 0;
telem_count = 0;
if ( sub_protocol == FX_BM26 )
v_lipo1 = packet_in[0] < packet_in[2] ? 60:81; // packets: AA 00 55 -> 55 00 AA = low voltage 3.7V
else
v_lipo1 = packet_in[1] ? 60:81; // packets: A5 00 11 -> A5 01 11 = low voltage 3.7V
#if 0
for(uint8_t i=0; i < FX_QF012_RX_PAYLOAD_SIZE; i++)
debug(" %02X", packet_in[i]);
#endif
}
debugln();
}
if(telem_count > 4*63) // Around 3.5 sec with no telemetry
telemetry_lost = 1;
else
{
telem_count++;
if(!telemetry_lost && (telem_count & 0x3F) == 0)
{// Should have received a telem packet but... Send telem to the radio to keep it alive
telemetry_link = 1;
#if 0
debugln("Miss");
#endif
}
}
phase++;
return FX9630_WRITE_TIME;
default: //FX_RX
/* { // Wait for packet to be sent before switching to receive mode
uint16_t start=(uint16_t)micros(), count=0;
while ((uint16_t)((uint16_t)micros()-(uint16_t)start) < 500)
{
if(XN297_IsPacketSent())
break;
count++;
}
debug("%d",count);
} */
//Switch to RX
XN297_SetTxRxMode(TXRX_OFF);
XN297_SetTxRxMode(RX_EN);
phase = FX_DATA;
return packet_period - FX9630_WRITE_TIME;
}
#endif
return packet_period;
}
@@ -235,6 +405,11 @@ void FX_init()
FX_RF_init();
hopping_frequency_no = 0;
bind_counter=FX_BIND_COUNT;
#ifdef FX_HUB_TELEMETRY
RX_RSSI = 100; // Dummy value
telemetry_lost = 1;
phase = FX_DATA;
#endif
}
#endif

View File

@@ -51,9 +51,9 @@ static void __attribute__((unused)) FrSkyX_build_bind_packet()
//packet 1D 03 01 0E 1C 02 00 00 32 0B 00 00 A8 26 28 01 A1 00 00 00 3E F6 87 C7 00 00 00 00 C9 C9
//Unknown bytes
if(state & 0x01)
memcpy(&packet[7],"\x00\x18\x0A\x00\x00\xE0\x02\x0B\x01\xD3\x08\x00\x00\x4C\xFE\x87\xC7",17);
memcpy(&packet[7],"\x00\xCC\x00\x00\x00\x70\x14\x15\x00\xD3\x08\x00\x00\xCE\xE2\x85\xC7\x00\x00\x00\x00",21);
else
memcpy(&packet[7],"\x27\xAD\x02\x00\x00\x64\xC8\x46\x00\x64\x00\x00\x00\xFB\xF6\x87\xC7",17);
memcpy(&packet[7],"\x27\xFB\x00\x00\x00\xBC\xEF\x19\x00\x26\x07\x00\x00\xB7\xED\x85\xC7\xA7\xA7\xA7\xA7",21);
//ID
packet[5] = rx_tx_addr[1]; // ID
packet[6] = RX_num;
@@ -63,8 +63,9 @@ static void __attribute__((unused)) FrSkyX_build_bind_packet()
if(binding_idx&0x02)
packet[7] |= 0x80; // CH9-16
//Replace the ID
packet[20] ^= 0x0E ^ rx_tx_addr[3]; // Update the ID
packet[21] ^= 0x1C ^ rx_tx_addr[2]; // Update the ID
packet[20] ^= rx_tx_addr[3]; // Update the ID
packet[21] ^= rx_tx_addr[2]; // Update the ID
packet[22] ^= rx_tx_addr[1] & 0x3F; // Update the ID
//Xor
for(uint8_t i=3; i<packet_length-1; i++)
packet[i] ^= 0xA7;
@@ -100,7 +101,7 @@ static void __attribute__((unused)) FrSkyX_build_packet()
FrSkyX_channels(7); // Set packet[7]=failsafe, packet[8]=0?? and packet[9..20]=channels data
//Sequence and send SPort
FrSkyX_seq_sport(21,packet_length-(protocol==PROTO_FRSKYX && (FrSkyFormat & 2 )) ? 4 : 2); //21=RX|TXseq, 22=bytes count, 23..packet_length-2=data
FrSkyX_seq_sport(21,packet_length-((protocol==PROTO_FRSKYX && (FrSkyFormat & 2 )) ? 4 : 2)); //21=RX|TXseq, 22=bytes count, 23..packet_length-2=data
//CRC
uint16_t lcrc = FrSkyX_crc(&packet[3], packet_length-4);

View File

@@ -0,0 +1,132 @@
/*
This project is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
Multiprotocol is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with Multiprotocol. If not, see <http://www.gnu.org/licenses/>.
*/
#if defined(H36_NRF24L01_INO)
#include "iface_xn297.h"
//#define FORCE_H36_ORIGINAL_ID
#define H36_PAYLOAD_SIZE 13
#define H36_RF_NUM_CHANNELS 4
#define H36_BIND_PACKET_PERIOD 10285
#define H36_BIND_COUNT 648 //3sec
enum {
H36_DATA1=0,
H36_DATA2,
H36_DATA3,
H36_DATA4,
};
static void __attribute__((unused)) H36_send_packet()
{
if(IS_BIND_DONE && phase == H36_DATA1)
{
hopping_frequency_no++;
hopping_frequency_no&=3;
XN297_Hopping(hopping_frequency_no);
}
packet[0] = 0x2E; // constant?
memcpy(&packet[2],rx_tx_addr,3);
if(IS_BIND_IN_PROGRESS)
{//Bind
memcpy(&packet[5],hopping_frequency,4);
memset(&packet[9], 0x00, 3);
packet[12] = 0xED; // constant?
bind_counter--;
if(bind_counter == 0)
BIND_DONE;
}
else
{//Normal
packet[5] = convert_channel_8b(THROTTLE);
packet[6] = convert_channel_8b(RUDDER);
packet[7] = convert_channel_8b(ELEVATOR);
packet[8] = convert_channel_8b(AILERON);
packet[9] = GET_FLAG(CH6_SW, 0x02) //Headless
|GET_FLAG(CH7_SW, 0x04); //RTH(temporary)
packet[10] = 0x20; //Trim A centered(0x20)
packet[11] = CH5_SW?0x60:0x20; //Flip(0x40)|Trim E centered(0x20)
packet[12] = 0xA0; //High(0x80)/Low(0x40) rates|Trim R centered(0x20)?
}
//crc
packet[1]=0xAA;
for(uint8_t i=5;i<12;i++)
packet[1] ^= packet[i];
//Send
XN297_SetPower();
XN297_SetTxRxMode(TX_EN);
XN297_WritePayload(packet, H36_PAYLOAD_SIZE);
#ifdef DEBUG_SERIAL
debug("H%d P",hopping_frequency_no);
for(uint8_t i=0; i < H36_PAYLOAD_SIZE; i++)
debug(" %02X", packet[i]);
debugln();
#endif
}
static void __attribute__((unused)) H36_initialize_txid()
{
rx_tx_addr[0] = rx_tx_addr[3];
calc_fh_channels(4);
#ifdef FORCE_H36_ORIGINAL_ID
if(!RX_num)
{
memcpy(rx_tx_addr,(uint8_t *)"\x00\x11\x00",3);
memcpy(hopping_frequency,(uint8_t *)"\x36\x3A\x31\x2B",4); //54, 58, 49, 43
}
#endif
}
static void __attribute__((unused)) H36_RF_init()
{
XN297_Configure(XN297_CRCEN, XN297_SCRAMBLED, XN297_1M);
XN297_SetTXAddr((uint8_t*)"\xCC\x6C\x47\x90\x53", 5);
XN297_RFChannel(50); //Bind channel
}
uint16_t H36_callback()
{
H36_send_packet();
switch(phase)
{
case H36_DATA1:
phase++;
return 1830;
case H36_DATA2:
case H36_DATA3:
phase++;
return 3085;
default://DATA4
#ifdef MULTI_SYNC
telemetry_set_input_sync(18500);
#endif
phase = H36_DATA1;
break;
}
return 10500;
}
void H36_init()
{
BIND_IN_PROGRESS; // Autobind protocol
H36_initialize_txid();
H36_RF_init();
phase = H36_DATA1;
hopping_frequency_no = 0;
bind_counter = H36_BIND_COUNT;
}
#endif

View File

@@ -66,8 +66,10 @@ static void __attribute__((unused)) HISKY_RF_init()
NRF24L01_WriteRegisterMulti(NRF24L01_0A_RX_ADDR_P0, rx_tx_addr, 5);
NRF24L01_WriteRegisterMulti(NRF24L01_10_TX_ADDR, rx_tx_addr, 5);
NRF24L01_WriteReg(NRF24L01_11_RX_PW_P0, 10); // payload size = 10
#ifndef MULTI_AIR
if(sub_protocol==HK310)
NRF24L01_SetBitrate(NRF24L01_BR_250K); // 250Kbps
#endif
}
// HiSky channel sequence: AILE ELEV THRO RUDD GEAR PITCH, channel data value is from 0 to 1000
@@ -92,6 +94,13 @@ static void __attribute__((unused)) HISKY_build_ch_data()
uint16_t HISKY_callback()
{
phase++;
#ifdef MULTI_AIR
if(sub_protocol==HK310)
{
SUB_PROTO_INVALID;
return 10000;
}
#else
if(sub_protocol==HK310)
switch(phase)
{
@@ -132,6 +141,7 @@ uint16_t HISKY_callback()
phase=8;
break;
}
#endif
switch(phase)
{
case 1:
@@ -195,6 +205,7 @@ uint16_t HISKY_callback()
static void __attribute__((unused)) HISKY_initialize_tx_id()
{
//Generate frequency hopping table
#ifndef MULTI_AIR
if(sub_protocol==HK310)
{
// for HiSky surface protocol, the transmitter always generates hop channels in sequential order.
@@ -204,10 +215,11 @@ static void __attribute__((unused)) HISKY_initialize_tx_id()
hopping_frequency[i]=hopping_frequency_no++; // Sequential order hop channels...
}
else
calc_fh_channels(HISKY_FREQUENCE_NUM);
#endif
// HiSky air protocol uses TX id as an address for nRF24L01, and uses frequency hopping sequence
// which does not depend on this id and is passed explicitly in binding sequence. So we are free
// to generate this sequence as we wish. It should be in the range [02..77]
calc_fh_channels(HISKY_FREQUENCE_NUM);
}
void HISKY_init()

View File

@@ -24,6 +24,10 @@
#define HONTAI_BIND_PACKET_SIZE 10
#define HONTAI_PACKET_SIZE 12
#define HONTAI_RF_BIND_CHANNEL 0
#define HONTAI_XKK170_RF_BIND_CHANNEL 20
#define HONTAI_XKK170_PACKET_PERIOD 8085
//#define FORCE_HONTAI_XKK170_ORIGINAL_ID
enum{
HONTAI_FLAG_FLIP = 0x01,
@@ -40,6 +44,8 @@ static void __attribute__((unused)) HONTAI_send_packet()
{
memcpy(packet, rx_tx_addr, 5);
memset(&packet[5], 0, 3);
//if(sub_protocol == HONTAI_XKK170)
// packet[6] = 0xD2;
packet_length = HONTAI_BIND_PACKET_SIZE;
}
else
@@ -50,19 +56,47 @@ static void __attribute__((unused)) HONTAI_send_packet()
XN297_Hopping(hopping_frequency_no++);
hopping_frequency_no %= 3;
memset(packet,0,HONTAI_PACKET_SIZE);
packet[3] = convert_channel_16b_limit(THROTTLE, 0, 127) << 1; // Throttle
packet[4] = convert_channel_16b_limit(AILERON, 63, 0); // Aileron
packet[5] = convert_channel_16b_limit(ELEVATOR, 0, 63); // Elevator
packet[6] = convert_channel_16b_limit(RUDDER, 0, 63); // Rudder
if(sub_protocol == X5C1)
packet[7] = convert_channel_16b_limit(AILERON, 0, 63)-31; // Aileron trim
for(uint8_t i=0; i<4; i++)
packet[i+3] = convert_channel_8b(CH_TAER[i]);
if(sub_protocol != HONTAI_XKK170)
{
//Drive trims
packet[7] = (packet[4]>>3)-16;
packet[8] = (packet[6]>>3)-16;
packet[9] = (packet[5]>>3)-16;
//Reverse aileron
packet[4] ^= 0xFF;
//Limit range
for(uint8_t i=3; i<7; i++)
packet[i] >>= 2; //00..63
}
else
packet[7] = convert_channel_16b_limit(AILERON, 0, 32)-16; // Aileron trim
packet[8] = convert_channel_16b_limit(RUDDER, 0, 32)-16; // Rudder trim
if (sub_protocol == X5C1)
packet[9] = convert_channel_16b_limit(ELEVATOR, 0, 63)-31; // Elevator trim
else
packet[9] = convert_channel_16b_limit(ELEVATOR, 0, 32)-16; // Elevator trim
{//K170
//packet[2] = 0xAB; //This value keeps changing when touching any button... Left over from debug?
//Sticks
for(uint8_t i=1; i<4; i++)
packet[i+3] = convert_channel_16b_limit(CH_TAER[i],0x28,0xD8);
packet[6] ^= 0xFF; //Reverse rudder
//flags
packet[1] = GET_FLAG(CH8_SW, 0x04) //Gyro calibration (momentary)
|GET_FLAG(CH11_SW, 0x10); //XK K270 optical flow switch
// |GET_FLAG(CH_SW, 0x08) //Unk long press second top right button (momentary)
// |GET_FLAG(CH_SW, 0x10) //Unk short press second top right button (toggle)
// |GET_FLAG(CH_SW, 0x40) //Unk short press second top left button (momentary)
// |GET_FLAG(CH_SW, 0x80); //Unk long press second top left button (momentary)
uint8_t rate = 0x80; //Mid rate
if(CH5_SW)
rate = 0xC0; //High rate
else if(Channel_data[CH5] < CHANNEL_MIN_COMMAND)
rate = 0x40; //Low rate
packet[8] = rate
|GET_FLAG(CH7_SW, 0x04) //Take-off/Landing (momentary)
|GET_FLAG(CH6_SW, 0x10); //Emergency (momentary)
//Trims
packet[7] = ((convert_channel_8b(CH9)^0xFF)>>2)-31; // Trim Aileron
packet[9] = ( convert_channel_8b(CH10) >>2)-32; // Trim Elevator
}
switch(sub_protocol)
{
case HONTAI:
@@ -93,9 +127,11 @@ static void __attribute__((unused)) HONTAI_send_packet()
packet[5] |= GET_FLAG(CH11_SW, 0x80) // Calibrate
| GET_FLAG(CH5_SW, 0x40); // Flip
packet[6] |= GET_FLAG(CH8_SW, 0x80); // Video
packet[7] <<= 1; // Aileron trim
packet[8] = 0xC0 // high rate, no rudder trim
| GET_FLAG(CH10_SW, 0x02) // RTH
| GET_FLAG(CH9_SW, 0x01); // Headless
packet[9] <<= 1; // Elevator trim
break;
case FQ777_951:
packet[0] = GET_FLAG(CH7_SW, 0x01) // Picture
@@ -109,6 +145,8 @@ static void __attribute__((unused)) HONTAI_send_packet()
packet_length = HONTAI_PACKET_SIZE;
}
if(sub_protocol != HONTAI_XKK170)
{
// CRC 16 bits reflected in and out
crc=0xFFFF;
for(uint8_t i=0; i< packet_length-2; i++)
@@ -116,6 +154,9 @@ static void __attribute__((unused)) HONTAI_send_packet()
crc ^= 0xFFFF;
packet[packet_length-2]=bit_reverse(crc>>8);
packet[packet_length-1]=bit_reverse(crc);
}
else
memset(&packet[packet_length-2], 0xAA, 2);
// Power on, TX mode, 2byte CRC
/*if(sub_protocol == JJRCX1)
@@ -135,6 +176,11 @@ static void __attribute__((unused)) HONTAI_send_packet()
NRF24L01_WritePayload(packet, packet_length);
else
XN297_WritePayload(packet, packet_length);
#ifdef DEBUG_SERIAL
for(uint8_t i=0; i < packet_length; i++)
debug("%02X ", packet[i]);
debugln();
#endif
}
static void __attribute__((unused)) HONTAI_RF_init()
@@ -152,15 +198,16 @@ static void __attribute__((unused)) HONTAI_RF_init()
}
else
{
XN297_SetTXAddr((const uint8_t*)"\xd2\xb5\x99\xb3\x4a", 5);
memcpy(rx_id,(const uint8_t*)"\xD2\xB5\x99\xB3\x41",5);
if(sub_protocol == HONTAI_XKK170)
rx_id[4] = 0x4A;
XN297_SetTXAddr(rx_id, 5);
//XN297_HoppingCalib(3);
}
XN297_RFChannel(HONTAI_RF_BIND_CHANNEL);
XN297_RFChannel(sub_protocol==HONTAI_XKK170?HONTAI_XKK170_RF_BIND_CHANNEL:HONTAI_RF_BIND_CHANNEL);
}
const uint8_t PROGMEM HONTAI_hopping_frequency_nonels[][3] = {
{0x05, 0x19, 0x28}, // Hontai
{0x0a, 0x1e, 0x2d}}; // JJRC X1
const uint8_t PROGMEM HONTAI_hopping_frequency[3] = { 0x05, 0x19, 0x28 };
const uint8_t PROGMEM HONTAI_addr_vals[4][16] = {
{0x24, 0x26, 0x2a, 0x2c, 0x32, 0x34, 0x36, 0x4a, 0x4c, 0x4e, 0x54, 0x56, 0x5a, 0x64, 0x66, 0x6a},
@@ -178,32 +225,69 @@ static void __attribute__((unused)) HONTAI_init2()
data_tx_addr[2] = pgm_read_byte_near( &HONTAI_addr_vals[2][ rx_tx_addr[4] & 0x0f]);
data_tx_addr[3] = pgm_read_byte_near( &HONTAI_addr_vals[3][(rx_tx_addr[4] >> 4) & 0x0f]);
data_tx_addr[4] = 0x24;
#ifdef DEBUG_SERIAL
debug("A N");
for(uint8_t i=0; i < 5; i++)
debug(" %02X", data_tx_addr[i]);
debugln();
#endif
if(sub_protocol == JJRCX1)
NRF24L01_WriteRegisterMulti(NRF24L01_10_TX_ADDR, data_tx_addr, 5);
else
XN297_SetTXAddr(data_tx_addr, 5);
//Hopping frequency table
uint8_t val;
for(uint8_t i=0;i<3;i++)
hopping_frequency[i]=pgm_read_byte_near( &HONTAI_hopping_frequency_nonels[sub_protocol == JJRCX1?1:0][i] );
{
if(sub_protocol==HONTAI_XKK170)
val = 60+10*i;
else
{
val = pgm_read_byte_near( &HONTAI_hopping_frequency[i] );
if(sub_protocol == JJRCX1)
val += 5;
}
hopping_frequency[i] = val;
}
hopping_frequency_no=0;
#ifdef DEBUG_SERIAL
debug("H");
for(uint8_t i=0; i < 3; i++)
debug(" %d(%02X)", hopping_frequency[i], hopping_frequency[i]);
debugln();
#endif
}
static void __attribute__((unused)) HONTAI_initialize_txid()
{
rx_tx_addr[4] = rx_tx_addr[2];
if(sub_protocol == HONTAI || sub_protocol == FQ777_951)
{
rx_tx_addr[0] = 0x4c; // first three bytes some kind of model id? - set same as stock tx
rx_tx_addr[1] = 0x4b;
rx_tx_addr[2] = 0x3a;
// First three bytes some kind of model id? - set same as stock tx
if(sub_protocol == JJRCX1 || sub_protocol == X5C1)
{//JJRCX1 & X5C1
rx_tx_addr[0] = 0x4B;
rx_tx_addr[1] = 0x59;
rx_tx_addr[2] = 0x3A;
}
else
{//HONTAI, FQ777_951, HONTAI_XKK170
rx_tx_addr[0] = 0x4C;
rx_tx_addr[1] = 0x4B;
rx_tx_addr[2] = 0x3A;
#ifdef FORCE_HONTAI_XKK170_ORIGINAL_ID
if(sub_protocol == HONTAI_XKK170)
{
rx_tx_addr[0] = 0x4b; // JJRC X1
rx_tx_addr[1] = 0x59;
rx_tx_addr[2] = 0x3a;
rx_tx_addr[3] = 0x5A;
rx_tx_addr[4] = 0x06;
}
#endif
}
#ifdef DEBUG_SERIAL
debug("A B");
for(uint8_t i=0; i < 5; i++)
debug(" %02X", rx_tx_addr[i]);
debugln();
#endif
}
uint16_t HONTAI_callback()
@@ -228,8 +312,14 @@ void HONTAI_init()
{
BIND_IN_PROGRESS; // autobind protocol
bind_counter = HONTAI_BIND_COUNT;
HONTAI_initialize_txid();
HONTAI_RF_init();
packet_period = sub_protocol == FQ777_951 ? FQ777_951_PACKET_PERIOD : HONTAI_PACKET_PERIOD;
HONTAI_initialize_txid();
if(sub_protocol == FQ777_951)
packet_period = FQ777_951_PACKET_PERIOD;
else if(sub_protocol == HONTAI_XKK170)
packet_period = HONTAI_XKK170_PACKET_PERIOD;
else
packet_period = HONTAI_PACKET_PERIOD;
}
#endif

View File

@@ -35,8 +35,7 @@ enum PktState {
J6PRO_CHAN_4,
};
const uint8_t PROGMEM j6pro_bind_sop_code[] = {0x62, 0xdf, 0xc1, 0x49, 0xdf, 0xb1, 0xc0, 0x49};
//const uint8_t j6pro_data_code[] = {0x02, 0xf9, 0x93, 0x97, 0x02, 0xfa, 0x5c, 0xe3, 0x01, 0x2b, 0xf1, 0xdb, 0x01, 0x32, 0xbe, 0x6f}; // unneeded since this is the default table after a reset
const uint8_t j6pro_data_code[] = {0x02, 0xf9, 0x93, 0x97, 0x02, 0xfa, 0x5c, 0xe3, 0x01, 0x2b, 0xf1, 0xdb, 0x01, 0x32, 0xbe, 0x6f}; // unneeded since this is the default table after a reset
static void __attribute__((unused)) j6pro_build_bind_packet()
{
@@ -84,7 +83,9 @@ static void __attribute__((unused)) j6pro_cyrf_init()
CYRF_WriteRegister(CYRF_10_FRAMING_CFG, 0xee);
CYRF_WriteRegister(CYRF_1F_TX_OVERRIDE, 0x00);
CYRF_WriteRegister(CYRF_1E_RX_OVERRIDE, 0x00);
//CYRF_ConfigDataCode(j6pro_data_code, 16);
//Same as default reset but issues if not configured...
CYRF_ConfigDataCode(j6pro_data_code);
CYRF_WritePreamble(0x333302);
CYRF_GetMfgData(cyrfmfg_id);
@@ -97,7 +98,7 @@ static void __attribute__((unused)) cyrf_bindinit()
/* Use when binding */
CYRF_SetPower(0x28); //Deviation using max power, replaced by bind power...
//CYRF_ConfigRFChannel(0x52);
CYRF_PROGMEM_ConfigSOPCode(j6pro_bind_sop_code);
CYRF_PROGMEM_ConfigSOPCode(DEVO_j6pro_sopcodes[19]);
CYRF_ConfigCRCSeed(0x0000);
//CYRF_WriteRegister(CYRF_06_RX_CFG, 0x4a);
//CYRF_WriteRegister(CYRF_05_RX_CTRL, 0x80);
@@ -122,7 +123,7 @@ static void __attribute__((unused)) j6pro_set_radio_channels()
{
//FIXME: Query free channels
//lowest channel is 0x08, upper channel is 0x4d?
CYRF_FindBestChannels(hopping_frequency, 3, 5, 8, 77);
CYRF_FindBestChannels(hopping_frequency, 3, 5, 8, 77, FIND_CHANNEL_ANY);
hopping_frequency[3] = hopping_frequency[0];
}

View File

@@ -0,0 +1,450 @@
/*
This project is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
Multiprotocol is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with Multiprotocol. If not, see <http://www.gnu.org/licenses/>.
*/
#if defined(JIABAILE_NRF24L01_INO)
#include "iface_xn297.h"
//#define FORCE_JIABAILE_ORIGINAL_ID
//#define FORCE_JIABAILE_GYRO_ORIGINAL_ID
#define JIABAILE_PAYLOAD_SIZE 8
#define JIABAILE_RX_PAYLOAD_SIZE 7
#define JIABAILE_RF_NUM_CHANNELS 3
#define JIABAILE_BIND_PACKET_PERIOD 12700
#define JIABAILE_PACKET_PERIOD 2408
#define JIABAILE_GYRO_PACKET_PERIOD 8205
#define JIABAILE_BIND_COUNT 160 //2 sec
#define JIABAILE_WRITE_TIME 1000
enum {
JIABAILE_BIND=0,
JIABAILE_RX,
JIABAILE_PREP_DATA,
JIABAILE_DATA,
};
static uint8_t __attribute__((unused)) JIABAILE_channel(uint8_t num)
{
uint8_t val=convert_channel_16b_limit(num,0,100);
if(val > 50+num)
{
packet[3] |= 0x01;
return val-50;
}
if(val < 50-num)
{
packet[3] |= 0x02;
return 50-val;
}
return 0;
}
static void __attribute__((unused)) JIABAILE_send_packet()
{
if(!(sub_protocol == JIABAILE_GYRO && IS_BIND_IN_PROGRESS))
{
hopping_frequency_no++;
if(hopping_frequency_no > 2)
hopping_frequency_no = 0;
XN297_Hopping(hopping_frequency_no);
}
if(sub_protocol == JIABAILE_STD)
{//Std
memcpy(packet,rx_tx_addr,3);
memset(&packet[3], 0x00, 4);
if(IS_BIND_DONE)
{//Normal
packet[4] = convert_channel_16b_limit(RUDDER,0,50)-25; //ST Trim
packet[6] = JIABAILE_channel(AILERON); //ST
packet[3] ^= 0x03; //Reverse ST channel
packet[3] <<= 2; //Move ST channel where it should be
packet[5] = JIABAILE_channel(ELEVATOR); //TH
packet[3] |= GET_FLAG(CH5_SW, 0x20) //Low speed
|GET_FLAG(CH7_SW, 0x40) //Flash light
|GET_FLAG(!CH6_SW, 0x80); //Light
if(!CH5_SW && Channel_data[CH5] > CHANNEL_MIN_COMMAND)
packet[3] |= 0x10; //Mid speed
}
else
{
bind_counter--;
if(!bind_counter)
{
BIND_DONE;
phase = JIABAILE_PREP_DATA;
}
}
packet[7] = 0x55 + hopping_frequency[hopping_frequency_no];
for(uint8_t i=0;i<JIABAILE_PAYLOAD_SIZE-1;i++)
packet[7] += packet[i];
}
else
{//Gyro
if(bind_counter)
{
bind_counter--;
if(!bind_counter)
{
BIND_DONE;
XN297_SetTXAddr(rx_tx_addr, 4);
}
}
uint8_t crc_pos;
if(IS_BIND_IN_PROGRESS)
{
memcpy(packet,rx_tx_addr,4);
packet[4] = hopping_frequency[1];
packet[5] = hopping_frequency[2];
crc_pos = 6;
packet[7] = 0x55;
}
else
{
packet[0] = convert_channel_16b_limit(CH2,0x60,0xA0); //Throttle
packet[1] = convert_channel_16b_limit(CH1,0x40,0xC0); //Steering
if(Channel_data[CH5] < CHANNEL_MIN_COMMAND)
packet[2] = 0x02; //High speed
else if(CH5_SW)
packet[2] = 0x00; //Low speed
else
packet[2] = 0x01; //Mid speed
packet[3] = convert_channel_8b(CH3) ^0xFF; //Gyro
uint8_t val = GET_FLAG(CH6_SW, 0x04) //Light
|GET_FLAG(CH7_SW, 0x08); //Flash
if(Channel_data[CH4] > CHANNEL_MAX_COMMAND)
val |= 0x01; //Trim right
else if(Channel_data[CH4] < CHANNEL_MIN_COMMAND)
val |= 0x02; //Trim left
packet[4] = val;
packet[5] = packet[6] = 0x00; //?
crc_pos = 7;
}
uint8_t sum=0;
for(uint8_t i=0; i<crc_pos; i++)
sum += packet[i];
sum ^= 0xFF;
packet[crc_pos] = sum;
}
// Send
XN297_SetPower();
XN297_SetTxRxMode(TX_EN);
XN297_WritePayload(packet, JIABAILE_PAYLOAD_SIZE);
#if 0
debug("B%d ",bind_counter);
debug("H%d RF%d",hopping_frequency_no,hopping_frequency[hopping_frequency_no]);
for(uint8_t i=0; i < JIABAILE_PAYLOAD_SIZE; i++)
debug(" %02X", packet[i]);
debugln();
#endif
}
static void __attribute__((unused)) JIABAILE_initialize_txid()
{
if(sub_protocol == JIABAILE_STD)
{//Std
rx_tx_addr[0] = rx_tx_addr[3];
#ifdef FORCE_JIABAILE_ORIGINAL_ID
memcpy(rx_tx_addr,(uint8_t *)"\xCB\x03\xA5",3);
//memcpy(rx_tx_addr,(uint8_t *)"\x3D\x08\xA2",3);
//Normal frequencies are calculated from the car ID...
//memcpy(&hopping_frequency[3],(uint8_t *)"\x23\x2D\x4B",3); //35,45,75
memcpy(&hopping_frequency[3],(uint8_t *)"\x24\x43\x4C",3); //36,67,76
#endif
//Bind frequencies
memcpy(hopping_frequency,(uint8_t *)"\x07\x27\x45",3); //7,39,69
}
else
{//Gyro
rx_tx_addr[0] += RX_num;
uint8_t val = (rx_tx_addr[0] & 0x0F) + 5; //5..20
for(uint8_t i=0; i<3; i++)
hopping_frequency[i] = val+ 20*i; //hopping_frequency[1,2] could be whatever but...
#ifdef FORCE_JIABAILE_GYRO_ORIGINAL_ID
if(RX_num)
{
memcpy(rx_tx_addr,(uint8_t *)"\x7D\x82\x28\xC2",4);
memcpy(hopping_frequency,(uint8_t *)"\x12\x1B\x35",3); //18,27,53
}
else
{
memcpy(rx_tx_addr,(uint8_t *)"\x0C\xF3\x59\xB3",4);
memcpy(hopping_frequency,(uint8_t *)"\x11\x1C\x36",3); //17,28,54
}
#endif
debugln("ID: %02X %02X %02X %02X, HOP: %2d %2d %2d",rx_tx_addr[0],rx_tx_addr[1],rx_tx_addr[2],rx_tx_addr[3],hopping_frequency[0],hopping_frequency[1],hopping_frequency[2]);
}
}
static void __attribute__((unused)) JIABAILE_RF_init()
{
XN297_Configure(XN297_CRCEN, XN297_SCRAMBLED, XN297_1M);
//Bind address
if(sub_protocol == JIABAILE_STD)
{//Std
memcpy(rx_id,(uint8_t*)"\xA7\x07\x57\xA7\x26", 5);
XN297_SetTXAddr(rx_id, 5);
XN297_SetRXAddr(rx_id, JIABAILE_RX_PAYLOAD_SIZE);
}
else
{//Gyro
XN297_SetTXAddr((uint8_t*)"\x14\x41\x11\x13", 4);
XN297_RFChannel(0x29); //41
}
}
uint16_t JIABAILE_callback()
{
uint8_t sum;
uint16_t addr;
switch(phase)
{
case JIABAILE_BIND:
phase++; // JIABAILE_RX but is overwritten if RX or bind timeout
if(XN297_IsRX())
{
if(XN297_ReadPayload(packet_in, JIABAILE_RX_PAYLOAD_SIZE))
{//CRC OK
#ifdef DEBUG_SERIAL
debug("RX");
for(uint8_t i=0; i < JIABAILE_RX_PAYLOAD_SIZE; i++)
debug(" %02X", packet_in[i]);
debugln();
#endif
//RX: CB 03 A5 9D 05 A2 68
if(memcmp(packet_in,rx_tx_addr,3)==0)
{//TX ID match
//Check packet
sum=0xAA + hopping_frequency[hopping_frequency_no];
for(uint8_t i=0; i < JIABAILE_RX_PAYLOAD_SIZE-1; i++)
sum+=packet_in[i];
if(sum==packet_in[6])
{
//Write the RXID
#ifdef DEBUG_SERIAL
debug("RXID ");
for(uint8_t i=0; i < 3; i++)
debug(" %02X", packet_in[3+i]);
debugln();
#endif
addr=JIABAILE_EEPROM_OFFSET+RX_num*3;
for(uint8_t i=0;i<3;i++)
eeprom_write_byte((EE_ADDR)(addr+i),packet_in[3+i]);
//Switch to normal mode
BIND_DONE;
phase = JIABAILE_PREP_DATA;
}
#ifdef DEBUG_SERIAL
else
debug("Wrong Sum");
}
else
debug("Wrong TX ID");
}
else
debug("Bad CRC");
debugln("");
#else
}
}
#endif
}
XN297_SetTxRxMode(TXRX_OFF);
JIABAILE_send_packet();
return JIABAILE_WRITE_TIME;
case JIABAILE_RX:
//Wait for the packet transmission to finish
while(XN297_IsPacketSent()==false);
//Switch to RX
XN297_SetTxRxMode(TXRX_OFF);
XN297_SetTxRxMode(RX_EN);
phase = JIABAILE_BIND;
return JIABAILE_BIND_PACKET_PERIOD - JIABAILE_WRITE_TIME;
case JIABAILE_PREP_DATA:
//Read the RXID
addr=JIABAILE_EEPROM_OFFSET+RX_num*3;
for(uint8_t i=0;i<3;i++)
rx_id[i+1] = eeprom_read_byte((EE_ADDR)(addr+i));
#ifdef DEBUG_SERIAL
debug("RXID ");
for(uint8_t i=0; i < 3; i++)
debug(" %02X", rx_id[i+1]);
#endif
XN297_SetTxRxMode(TXRX_OFF);
XN297_SetTXAddr(rx_id, 5);
//Set the normal frequencies
sum=rx_id[1]&0x07;
hopping_frequency[0] = (sum>4?30:8) + sum;
if(sum==4 || sum ==7)
hopping_frequency[0]++;
hopping_frequency[1] = 40 + sum;
if((sum & 0x06) == 0x06)
hopping_frequency[1] += 21;
hopping_frequency[2] = 70 + sum;
#ifdef DEBUG_SERIAL
debug(" RF");
for(uint8_t i=0; i < 3; i++)
debug(" %d", hopping_frequency[i]);
debugln();
#endif
phase++;
default: //JIABAILE_DATA
#ifdef MULTI_SYNC
telemetry_set_input_sync(packet_period);
#endif
JIABAILE_send_packet();
break;
}
return packet_period;
}
void JIABAILE_init()
{
JIABAILE_initialize_txid();
JIABAILE_RF_init();
if(sub_protocol == JIABAILE_STD)
{//Std
if(IS_BIND_IN_PROGRESS)
{
phase = JIABAILE_BIND;
bind_counter = JIABAILE_BIND_COUNT;
}
else
phase = JIABAILE_PREP_DATA;
packet_period = JIABAILE_PACKET_PERIOD;
}
else
{//Gyro
phase = JIABAILE_DATA;
bind_counter = IS_BIND_IN_PROGRESS?JIABAILE_BIND_COUNT>>2:1;
packet_period = JIABAILE_GYRO_PACKET_PERIOD;
}
hopping_frequency_no = 0;
}
#endif
/*
// CAR RX debug code
static void __attribute__((unused)) JIABAILE_RF_init()
{
XN297_Configure(XN297_CRCEN, XN297_SCRAMBLED, XN297_1M);
//Bind address
memcpy(rx_id,(uint8_t*)"\xA7\x07\x57\xA7\x26", 5);
XN297_SetTXAddr(rx_id, 5);
XN297_SetRXAddr(rx_id, JIABAILE_PAYLOAD_SIZE);
XN297_RFChannel(7);
rx_tx_addr[0] = 0x00;
rx_tx_addr[1] = RX_num;
rx_tx_addr[2] = 0x00;
}
uint16_t JIABAILE_callback()
{
switch(phase)
{
case JIABAILE_BIND:
if(XN297_IsRX())
{
if(XN297_ReadPayload(packet_in, JIABAILE_PAYLOAD_SIZE))
{//CRC OK
XN297_SetTxRxMode(TXRX_OFF);
#ifdef DEBUG_SERIAL
debug("RX Bind");
for(uint8_t i=0; i < JIABAILE_PAYLOAD_SIZE; i++)
debug(" %02X", packet_in[i]);
debugln();
#endif
memcpy(packet,packet_in,3);
memcpy(&packet[3],rx_tx_addr,3);
packet[6]=0xAA + 7;
for(uint8_t i=0; i < JIABAILE_RX_PAYLOAD_SIZE-1; i++)
packet[6]+=packet[i];
XN297_SetTxRxMode(TX_EN);
memcpy(&rx_id[1],rx_tx_addr,3);
bind_counter = 10;
phase = JIABAILE_RX;
}
}
return JIABAILE_WRITE_TIME;
case JIABAILE_RX:
if(bind_counter)
{
bind_counter--;
XN297_WritePayload(packet, JIABAILE_RX_PAYLOAD_SIZE);
#ifdef DEBUG_SERIAL
debug("TX Bind");
for(uint8_t i=0; i < JIABAILE_RX_PAYLOAD_SIZE; i++)
debug(" %02X", packet[i]);
debugln();
#endif
return JIABAILE_PACKET_PERIOD;
}
//Wait for the packet transmission to finish
//while(XN297_IsPacketSent()==false);
//Switch to RX
XN297_SetTxRxMode(TXRX_OFF);
XN297_SetRXAddr(rx_id, JIABAILE_PAYLOAD_SIZE);
hopping_frequency_no++;
if(hopping_frequency_no>84)
hopping_frequency_no = 0;
debug(".");
XN297_RFChannel(hopping_frequency_no);
XN297_SetTxRxMode(RX_EN);
phase = JIABAILE_DATA;
return JIABAILE_BIND_PACKET_PERIOD;
case JIABAILE_DATA:
if(XN297_IsRX())
{
debugln("");
if(XN297_ReadPayload(packet_in, JIABAILE_PAYLOAD_SIZE))
{//CRC OK
#ifdef DEBUG_SERIAL
debug("CH=%d=%02X P:",hopping_frequency_no,hopping_frequency_no);
for(uint8_t i=0; i < JIABAILE_PAYLOAD_SIZE; i++)
debug(" %02X", packet_in[i]);
#endif
//Check packet
uint8_t sum=0x55 + hopping_frequency_no;
for(uint8_t i=0; i < JIABAILE_PAYLOAD_SIZE-1; i++)
sum+=packet_in[i];
if(sum==packet_in[7])
{
debug("Good channel");
}
else
debug("Wrong Sum");
}
else
debug("Bad CRC");
debugln("");
}
phase = JIABAILE_RX;
break;
}
return JIABAILE_PACKET_PERIOD;
}
void JIABAILE_init()
{
JIABAILE_RF_init();
XN297_SetTxRxMode(TXRX_OFF);
XN297_SetTxRxMode(RX_EN);
phase = JIABAILE_BIND;
hopping_frequency_no = 7;
}
*/

View File

@@ -48,32 +48,19 @@ static void __attribute__((unused)) KF606_send_packet()
hopping_frequency_no ^= 1; // 2 RF channels
packet[0] = 0x55;
packet[1] = convert_channel_8b(THROTTLE); // 0..255
if(sub_protocol == KF606_ZCZ50) len--;
packet[len-3] = convert_channel_8b(THROTTLE); // 0..255
// Deadband is needed on aileron, 40 gives +-6%
switch(sub_protocol)
{
case KF606_KF606:
packet[2] = convert_channel_8b_limit_deadband(AILERON,0x20,0x80,0xE0,40); // Aileron: Max values:20..80..E0, Low rates:50..80..AF, High rates:3E..80..C1
packet[3] = convert_channel_16b_limit(CH5,0xC1,0xDF); // Aileron trim must be on a separated channel C1..D0..DF
break;
case KF606_MIG320:
packet[2] = convert_channel_8b_limit_deadband(AILERON,0x00,0x80,0xFF,40); // Aileron: High rate:2B..80..DA
packet[3] = convert_channel_16b_limit(CH5,0x01,0x1F); // Aileron trim must be on a separated channel 01..10..1F
packet[3] += (packet[2]-0x80)>>3; // Drive trims for more aileron authority
if(packet[3] > 0x80)
packet[3] = 0x01;
else if(packet[3] > 0x1F)
packet[3] = 0x1F;
packet[3] |= GET_FLAG(CH6_SW, 0xC0); // 0xC0 and 0xE0 are both turning the LED off, not sure if there is another hidden feature
break;
case KF606_ZCZ50:
len--; // uses only 3 bytes of payload
packet[0] = packet[1]; // Throttle: 0x00..0xFF
packet[1] = convert_channel_8b_limit_deadband(AILERON,0x20,0x80,0xE0,40); // Aileron: Max values:20..80..E0, low rate 0x52..0x80..0xB1, high rate: 0x41..0x80..0xC3.
packet[2] = convert_channel_16b_limit(CH5,0x01,0x1F); // Trim: 0x01..0x10..0x1F
packet[2] |= GET_FLAG(CH6_SW, 0xC0); // Unknown: 0x00 or 0xC0. Left top switch on original TX changes nothing on my plane. Maybe ON/OFF for main motor?
break;
}
packet[len-2] = convert_channel_8b_limit_deadband(AILERON,0x00,0x80,0xFF,40); // Aileron: High rate:2B..80..DA
uint8_t p3;
p3 = convert_channel_8b(CH5)>>3; // Aileron trim must be on a separated channel 01..10..1F
p3 += (packet[2]-0x80)>>3; // Drive trims for more aileron authority
if(p3 > 0x80)
p3 = 0x01;
else if(p3 > 0x1F)
p3 = 0x1F;
p3 |= GET_FLAG(CH6_SW, 0xC0); // 0xC0 and 0xE0 are both turning the LED off, not sure if there is another hidden feature
packet[len-1] = p3;
}
if(sub_protocol == KF606_MIG320)

View File

@@ -63,7 +63,7 @@ enum {
KN_FLAG_DR = 0x01, // Dual Rate: 1 - full range
KN_FLAG_TH = 0x02, // Throttle Hold: 1 - hold
KN_FLAG_IDLEUP = 0x04, // Idle up: 1 - 3D
KN_FLAG_RES1 = 0x08,
KN_FLAG_RES1 = 0x08, // HoverDebugging
KN_FLAG_RES2 = 0x10,
KN_FLAG_RES3 = 0x20,
KN_FLAG_GYRO3 = 0x40, // 0 - 6G mode, 1 - 3G mode
@@ -141,19 +141,13 @@ static void __attribute__((unused)) kn_update_packet_control_data()
packet[8] = convert_channel_16b_limit(CH9,0,200); // 0x64; // T
packet[9] = convert_channel_16b_limit(CH10,0,200); // 0x64; // A
packet[10] = convert_channel_16b_limit(CH11,0,200); // 0x64; // E
packet[11] = 0x64; // R
packet[11] = convert_channel_16b_limit(CH12,0,200); // 0x64; // R
flags=0;
if (CH5_SW)
flags = KN_FLAG_DR;
if (CH6_SW)
flags |= KN_FLAG_TH;
if (CH7_SW)
flags |= KN_FLAG_IDLEUP;
if (CH8_SW)
flags |= KN_FLAG_GYRO3;
packet[12] = flags;
packet[12] = GET_FLAG(CH5_SW, KN_FLAG_DR)
|GET_FLAG(CH6_SW, KN_FLAG_TH)
|GET_FLAG(CH7_SW, KN_FLAG_IDLEUP)
|GET_FLAG(CH8_SW, KN_FLAG_GYRO3)
|GET_FLAG(CH13_SW, KN_FLAG_RES1); //Hover debugging
packet[13] = 0x00;
if(sub_protocol==WLTOYS)

View File

@@ -0,0 +1,185 @@
/*
This project is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
Multiprotocol is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with Multiprotocol. If not, see <http://www.gnu.org/licenses/>.
*/
#if defined(KAMTOM_NRF24L01_INO)
#include "iface_xn297.h"
//#define FORCE_KAMTOM_ORIGINAL_ID
#define KAMTOM_PAYLOAD_SIZE 16
#define KAMTOM_RF_NUM_CHANNELS 4
#define KAMTOM_BIND_COUNT 2000
#define KAMTOM_WRITE_TIME 650
#define KAMTOM_BIND_CHANNEL 0x28 //40
#define KAMTOM_PACKET_PERIOD 3585
enum {
KAMTOM_DATA,
KAMTOM_RX,
};
static void __attribute__((unused)) KAMTOM_send_packet()
{
if(bind_counter)
{
bind_counter--;
if(!bind_counter)
BIND_DONE;
}
memset(packet, 0x00, 16);
if(IS_BIND_DONE)
{//Normal
XN297_Hopping(hopping_frequency_no);
hopping_frequency_no++;
hopping_frequency_no &= 3;
//RXID
packet[0] = rx_tx_addr[0];
packet[2] = rx_tx_addr[1];
//Next RF channel
packet[1] = hopping_frequency[hopping_frequency_no];
//Channels and trims
for(uint8_t i=0; i<6; i++)
{
packet[4+i] = convert_channel_s8b(CH_TAER[i]);
if(i>3) //ST_TR and TH_TR
packet[4+i] >>= 2;
}
//packet[11] = 0x00; //??
//TH_DR
packet[12] = convert_channel_16b_limit(CH7,0x25,0x64);
}
else
{
packet[1] = KAMTOM_BIND_CHANNEL;
memcpy(&packet[4],hopping_frequency,4);
packet[12] = 0xA5;
}
packet[10] = 0x40; //??
//Checksum
uint16_t sum = packet[1];
for(uint8_t i=4;i<13;i++)
sum += packet[i];
packet[13] = sum;
packet[3] = (sum>>6) & 0xFC;
//TXID
packet[14] = rx_tx_addr[2];
packet[15] = rx_tx_addr[3];
// Send
XN297_SetPower();
XN297_SetTxRxMode(TX_EN);
XN297_WriteEnhancedPayload(packet, KAMTOM_PAYLOAD_SIZE,false);
#if 0
//def DEBUG_SERIAL
for(uint8_t i=0; i < KAMTOM_PAYLOAD_SIZE; i++)
debug("%02X ", packet[i]);
debugln();
#endif
}
static void __attribute__((unused)) KAMTOM_initialize_txid()
{
calc_fh_channels(4);
#ifdef FORCE_KAMTOM_ORIGINAL_ID
rx_tx_addr[0] = 0xC7;
rx_tx_addr[1] = 0x78;
rx_tx_addr[2] = 0x2C;
rx_tx_addr[3] = 0x25;
hopping_frequency[0] = 59;
hopping_frequency[1] = 59;
hopping_frequency[2] = 71;
hopping_frequency[3] = 65;
#endif
}
static void __attribute__((unused)) KAMTOM_RF_init()
{
XN297_Configure(XN297_CRCEN, XN297_SCRAMBLED, XN297_1M);
//Address
XN297_SetTXAddr((uint8_t*)"\xCC\xDD\xEE\xDD", 4);
XN297_SetRXAddr((uint8_t*)"\xCC\xDD\xEE\xDD", KAMTOM_PAYLOAD_SIZE);
XN297_RFChannel(KAMTOM_BIND_CHANNEL);
}
uint16_t KAMTOM_callback()
{
static bool rx=false;
switch(phase)
{
case KAMTOM_DATA:
rx = XN297_IsRX();
XN297_SetTxRxMode(TXRX_OFF);
#ifdef MULTI_SYNC
telemetry_set_input_sync(KAMTOM_PACKET_PERIOD);
#endif
KAMTOM_send_packet();
if(rx)
{
uint8_t val=XN297_ReadEnhancedPayload(packet_in, KAMTOM_PAYLOAD_SIZE);
if(val==KAMTOM_PAYLOAD_SIZE)
{
BIND_DONE;
if(packet_in[0] == 0xA0 && packet_in[14] == rx_tx_addr[2] && packet_in[15] == rx_tx_addr[3])
{//Good packet with our TXID
rx_tx_addr[0] = packet_in[9];
rx_tx_addr[1] = packet_in[10];
#ifdef KAMTOM_HUB_TELEMETRY
v_lipo1 = packet_in[1] == 0x03 ? 0x00:0xFF; // low voltage
telemetry_link = 1;
#endif
}
#if 0
for(uint8_t i=0; i < KAMTOM_PAYLOAD_SIZE; i++)
debug(" %02X", packet_in[i]);
debugln();
#endif
}
}
phase++;
return KAMTOM_WRITE_TIME;
default: //KAMTOM_RX
//{ // Wait for packet to be sent before switching to receive mode
// uint16_t start=(uint16_t)micros();
// while ((uint16_t)((uint16_t)micros()-(uint16_t)start) < 500)
// if(XN297_IsPacketSent())
// break;
//}
//Switch to RX
XN297_SetTxRxMode(TXRX_OFF);
XN297_SetTxRxMode(RX_EN);
phase = KAMTOM_DATA;
return KAMTOM_PACKET_PERIOD - KAMTOM_WRITE_TIME;
}
return 0;
}
void KAMTOM_init()
{
KAMTOM_initialize_txid();
KAMTOM_RF_init();
bind_counter = KAMTOM_BIND_COUNT;
phase = KAMTOM_DATA;
hopping_frequency_no = 0;
#ifdef KAMTOM_HUB_TELEMETRY
RX_RSSI = 100; // Dummy value
#endif
}
#endif

View File

@@ -0,0 +1,124 @@
/*
This project is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
Multiprotocol is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with Multiprotocol. If not, see <http://www.gnu.org/licenses/>.
*/
#if defined(KYOSHO3_CYRF6936_INO)
#include "iface_cyrf6936.h"
//#define KYOSHO3_FORCE_ID
//#define KYOSHO3_DEBUG
#define KYOSHO3_BIND_PACKET_SIZE 4
#define KYOSHO3_PACKET_SIZE 9
const uint8_t PROGMEM KYOSHO3_init_vals[][2] = {
//Init from dump
{CYRF_0B_PWR_CTRL, 0x00}, // PMU
{CYRF_32_AUTO_CAL_TIME, 0x3C}, // Default init value
{CYRF_35_AUTOCAL_OFFSET, 0x14}, // Default init value
{CYRF_03_TX_CFG, 0x28 | CYRF_BIND_POWER}, // 8DR Mode, 64 chip codes
{CYRF_10_FRAMING_CFG, 0xA4}, // SOP and LEN enable
{CYRF_1F_TX_OVERRIDE, 0x05}, // Disable CRC, Data invert
{CYRF_1E_RX_OVERRIDE, 0x04}, // CRC check disabled
//{CYRF_11_DATA32_THOLD, 0x04}, // ???Using 64 chip...
{CYRF_12_DATA64_THOLD, 0x0E}, // Default
{CYRF_06_RX_CFG, 0x52}, // AGC disabled, LNA enabled, override enabled
};
static uint16_t __attribute__((unused)) KYOSHO3_send_packet()
{
CYRF_SetPower(0x28);
if(IS_BIND_IN_PROGRESS)
{
if(--bind_counter==0)
BIND_DONE;
packet[0] = 0xAA;
//ID
memcpy(&packet[1],&rx_tx_addr[1],3);
CYRF_WriteDataPacketLen(packet, KYOSHO3_BIND_PACKET_SIZE);
#ifdef KYOSHO3_DEBUG
debug("P:");
for(uint8_t i=0;i<KYOSHO3_BIND_PACKET_SIZE;i++)
debug(" %02X",packet[i]);
debugln("");
#endif
return 2434;
}
else
{
//ID
memcpy(packet,&rx_tx_addr[1],3);
//Channels
for(uint8_t i=0;i<4;i++)
{
packet[3] >>= 2;
packet[3] |= Channel_data[i]<<6;
packet[4+i] = Channel_data[i]>>3;
}
//Checksum
packet[8] = packet[3];
for(uint8_t i=4;i<8;i++)
packet[8] += packet[i];
//Timing
phase ^= 0x01;
CYRF_WriteDataPacketLen(packet, KYOSHO3_PACKET_SIZE);
#ifdef KYOSHO3_DEBUG
debug("P:");
for(uint8_t i=0;i<KYOSHO3_PACKET_SIZE;i++)
debug(" %02X",packet[i]);
debugln("");
#endif
if(phase)
return 9047;
}
return 6957;
}
uint16_t KYOSHO3_callback()
{
return KYOSHO3_send_packet();
}
void KYOSHO3_init()
{
//Config CYRF registers
for(uint8_t i = 0; i < sizeof(KYOSHO3_init_vals) / 2; i++)
CYRF_WriteRegister(pgm_read_byte_near(&KYOSHO3_init_vals[i][0]), pgm_read_byte_near(&KYOSHO3_init_vals[i][1]));
CYRF_WritePreamble(0x333304);
//Find a free even channel
CYRF_FindBestChannels(hopping_frequency,1,1,0x04,0x50, FIND_CHANNEL_EVEN);
#ifdef KYOSHO3_FORCE_ID // data taken from TX dump
rx_tx_addr[1] = 0x01;
rx_tx_addr[2] = 0xAB;
rx_tx_addr[3] = 0x31;
hopping_frequency[0] = 0x04;
#endif
#ifdef KYOSHO3_DEBUG
debugln("ID: %02X %02X %02X",rx_tx_addr[1],rx_tx_addr[2],rx_tx_addr[3]);
debugln("RF CH: %02X",hopping_frequency[0]);
#endif
if(IS_BIND_IN_PROGRESS)
CYRF_ConfigRFChannel(0x04);
else
CYRF_ConfigRFChannel(hopping_frequency[0]);
bind_counter = 8217;
phase = 0;
}
#endif

View File

@@ -19,10 +19,12 @@
//#define KYOSHO_FORCE_ID_FHSS
//#define KYOSHO_FORCE_ID_HYPE
//#define KYOSHO_FORCE_ID_SYNCRO
//Kyosho constants & variables
#define KYOSHO_BIND_COUNT 2500
#ifndef MULTI_AIR
static void __attribute__((unused)) KYOSHO_send_packet()
{
//ID
@@ -42,8 +44,9 @@ static void __attribute__((unused)) KYOSHO_send_packet()
//RF table
for(uint8_t i=0; i<16;i++)
packet[i+11]=hopping_frequency[i+(packet[9]<<4)];
//unknwon
packet[27] = 0x05;
//TX type
packet[27] = (bind_counter & 0x40) ? 0x05:0x07; // FHSS is 5 and Syncro is 7
//Unknown
packet[28] = 0x00;
memset(packet+29,0xFF,8);
//frequency hop during bind
@@ -55,13 +58,23 @@ static void __attribute__((unused)) KYOSHO_send_packet()
else
{
packet[ 0] = 0x58; // normal packet
//14 channels: steering, throttle, ...
for(uint8_t i = 0; i < 14; i++)
//FHSS 14 channels: steering, throttle, ...
//Syncro 6 channels: steering, throttle, ...
for(uint8_t i = 0; i < 14; i++) //needed? i < (sub_protocol==KYOSHO_FHSS?14:6); i++)
{
uint16_t temp = convert_channel_ppm(i);
packet[ 9 + i*2] = temp&0xFF; // low byte of servo timing(1000-2000us)
packet[10 + i*2] = (temp>>8)&0xFF; // high byte of servo timing(1000-2000us)
}
// if(sub_protocol==KYOSHO_SYNCRO) // needed?
// {
// memcpy(&packet[21],&hopping_frequency[11],6);
// packet[27] = 0x07;
// packet[28] = 0x00;
// memset(packet+29,0xFF,8);
// packet[34] = 0x0F;
// packet[36] = 0x0F;
// }
rf_ch_num=hopping_frequency[hopping_frequency_no];
hopping_frequency_no++;
packet[34] |= (hopping_frequency_no&0x0F)<<4;
@@ -76,6 +89,7 @@ static void __attribute__((unused)) KYOSHO_send_packet()
#endif
A7105_WriteData(37, rf_ch_num);
}
#endif //MULTI_AIR
static void __attribute__((unused)) KYOSHO_hype_send_packet()
{
@@ -150,10 +164,14 @@ uint16_t KYOSHO_callback()
telemetry_set_input_sync(packet_period);
#endif
}
if(sub_protocol==KYOSHO_FHSS)
KYOSHO_send_packet();
else//HYPE
if(sub_protocol==KYOSHO_HYPE)
KYOSHO_hype_send_packet();
else //FHSS && SYNCRO
#ifndef MULTI_AIR
KYOSHO_send_packet();
#else
SUB_PROTO_INVALID;
#endif
return packet_period;
}
@@ -162,7 +180,7 @@ void KYOSHO_init()
A7105_Init();
// compute channels from ID
calc_fh_channels(sub_protocol==KYOSHO_FHSS?32:15);
calc_fh_channels(sub_protocol==KYOSHO_HYPE?15:32);
hopping_frequency_no=0;
#ifdef KYOSHO_FORCE_ID_FHSS
@@ -172,6 +190,13 @@ void KYOSHO_init()
memcpy(hopping_frequency,"\x29\x4C\x67\x92\x31\x1C\x77\x18\x23\x6E\x81\x5C\x8F\x5A\x51\x94\x7A\x12\x45\x6C\x7F\x1E\x0D\x88\x63\x8C\x4F\x37\x26\x61\x2C\x8A",32);
}
#endif
#ifdef KYOSHO_FORCE_ID_SYNCRO
if(sub_protocol==KYOSHO_FHSS)
{
memcpy(rx_tx_addr,"\x00\xC2\x24\x00",4);
memcpy(hopping_frequency,"\x73\x12\x7D\x88\x63\x4A\x8D\x60\x57\x16\x5D\x8B\x25\x53\x6E\x3C\x41\x70\x20\x83\x2A\x19\x94\x2F\x91\x4C\x47\x36\x78\x10\x5A\x31",32);
}
#endif
if(sub_protocol==KYOSHO_HYPE)
{
MProtocol_id &= 0x00FF00FF;

View File

@@ -17,25 +17,63 @@
#include "iface_cyrf6936.h"
#define LOSI_FORCE_ID
//#define LOSI_FORCE_ID
const uint8_t PROGMEM LOSI_bind_sop_code[] = {0x62, 0xdf, 0xc1, 0x49, 0xdf, 0xb1, 0xc0, 0x49};
const uint8_t LOSI_data_code[][16] = {
{ 0xD7, 0xA1, 0x54, 0xB1, 0x5E, 0x89, 0xAE, 0x86, 0xC9, 0x2C, 0x06, 0x93, 0x86, 0xB9, 0x9E, 0xD7 }, //bind
/* { 0xE1, 0xD6, 0x31, 0x26, 0x5F, 0xBD, 0x40, 0x93, 0xDC, 0x68, 0x08, 0x99, 0x97, 0xAE, 0xAF, 0x8C },
{ 0xDC, 0x68, 0x08, 0x99, 0x97, 0xAE, 0xAF, 0x8C, 0xC3, 0x0E, 0x01, 0x16, 0x0E, 0x32, 0x06, 0xBA },
{ 0xC3, 0x0E, 0x01, 0x16, 0x0E, 0x32, 0x06, 0xBA, 0xE0, 0x83, 0x01, 0xFA, 0xAB, 0x3E, 0x8F, 0xAC },
{ 0xE0, 0x83, 0x01, 0xFA, 0xAB, 0x3E, 0x8F, 0xAC, 0x5C, 0xD5, 0x9C, 0xB8, 0x46, 0x9C, 0x7D, 0x84 },
{ 0x5C, 0xD5, 0x9C, 0xB8, 0x46, 0x9C, 0x7D, 0x84, 0xF1, 0xC6, 0xFE, 0x5C, 0x9D, 0xA5, 0x4F, 0xB7 },
{ 0xF1, 0xC6, 0xFE, 0x5C, 0x9D, 0xA5, 0x4F, 0xB7, 0x58, 0xB5, 0xB3, 0xDD, 0x0E, 0x28, 0xF1, 0xB0 },
{ 0x58, 0xB5, 0xB3, 0xDD, 0x0E, 0x28, 0xF1, 0xB0, 0x5F, 0x30, 0x3B, 0x56, 0x96, 0x45, 0xF4, 0xA1 },*/
{ 0x5F, 0x30, 0x3B, 0x56, 0x96, 0x45, 0xF4, 0xA1, 0x03, 0xBC, 0x6E, 0x8A, 0xEF, 0xBD, 0xFE, 0xF8 } //normal
};
/* Using DSM.ino data codes since they are the same
const uint8_t LOSI_data_code[][8] = {
//(Freq-1)%5=0
{ 0x83, 0xF7, 0xA8, 0x2D, 0x7A, 0x44, 0x64, 0xD3 },
{ 0x3F, 0x2C, 0x4E, 0xAA, 0x71, 0x48, 0x7A, 0xC9 },
{ 0x17, 0xFF, 0x9E, 0x21, 0x36, 0x90, 0xC7, 0x82 },
{ 0xBC, 0x5D, 0x9A, 0x5B, 0xEE, 0x7F, 0x42, 0xEB },
{ 0x24, 0xF5, 0xDD, 0xF8, 0x7A, 0x77, 0x74, 0xE7 },
{ 0x3D, 0x70, 0x7C, 0x94, 0xDC, 0x84, 0xAD, 0x95 },
{ 0x1E, 0x6A, 0xF0, 0x37, 0x52, 0x7B, 0x11, 0xD4 },
{ 0x62, 0xF5, 0x2B, 0xAA, 0xFC, 0x33, 0xBF, 0xAF },
//(Freq-1)%5=1
{ 0x40, 0x56, 0x32, 0xD9, 0x0F, 0xD9, 0x5D, 0x97 },
{ 0x8E, 0x4A, 0xD0, 0xA9, 0xA7, 0xFF, 0x20, 0xCA },
{ 0x4C, 0x97, 0x9D, 0xBF, 0xB8, 0x3D, 0xB5, 0xBE },
{ 0x0C, 0x5D, 0x24, 0x30, 0x9F, 0xCA, 0x6D, 0xBD },
{ 0x50, 0x14, 0x33, 0xDE, 0xF1, 0x78, 0x95, 0xAD },
{ 0x0C, 0x3C, 0xFA, 0xF9, 0xF0, 0xF2, 0x10, 0xC9 },
{ 0xF4, 0xDA, 0x06, 0xDB, 0xBF, 0x4E, 0x6F, 0xB3 },
{ 0x9E, 0x08, 0xD1, 0xAE, 0x59, 0x5E, 0xE8, 0xF0 },
//(Freq-1)%5=2
{ 0xC0, 0x90, 0x8F, 0xBB, 0x7C, 0x8E, 0x2B, 0x8E },
{ 0x80, 0x69, 0x26, 0x80, 0x08, 0xF8, 0x49, 0xE7 },
{ 0x7D, 0x2D, 0x49, 0x54, 0xD0, 0x80, 0x40, 0xC1 },
{ 0xB6, 0xF2, 0xE6, 0x1B, 0x80, 0x5A, 0x36, 0xB4 },
{ 0x42, 0xAE, 0x9C, 0x1C, 0xDA, 0x67, 0x05, 0xF6 },
{ 0x9B, 0x75, 0xF7, 0xE0, 0x14, 0x8D, 0xB5, 0x80 },
{ 0xBF, 0x54, 0x98, 0xB9, 0xB7, 0x30, 0x5A, 0x88 },
{ 0x35, 0xD1, 0xFC, 0x97, 0x23, 0xD4, 0xC9, 0x88 },
//(Freq-1)%5=3
{ 0xE1, 0xD6, 0x31, 0x26, 0x5F, 0xBD, 0x40, 0x93 },
{ 0xDC, 0x68, 0x08, 0x99, 0x97, 0xAE, 0xAF, 0x8C },
{ 0xC3, 0x0E, 0x01, 0x16, 0x0E, 0x32, 0x06, 0xBA },
{ 0xE0, 0x83, 0x01, 0xFA, 0xAB, 0x3E, 0x8F, 0xAC },
{ 0x5C, 0xD5, 0x9C, 0xB8, 0x46, 0x9C, 0x7D, 0x84 },
{ 0xF1, 0xC6, 0xFE, 0x5C, 0x9D, 0xA5, 0x4F, 0xB7 },
{ 0x58, 0xB5, 0xB3, 0xDD, 0x0E, 0x28, 0xF1, 0xB0 },
{ 0x5F, 0x30, 0x3B, 0x56, 0x96, 0x45, 0xF4, 0xA1 },
//(Freq-1)%5=4
{ 0x03, 0xBC, 0x6E, 0x8A, 0xEF, 0xBD, 0xFE, 0xF8 },
{ 0x88, 0x17, 0x13, 0x3B, 0x2D, 0xBF, 0x06, 0xD6 },
{ 0xF1, 0x94, 0x30, 0x21, 0xA1, 0x1C, 0x88, 0xA9 },
{ 0xD0, 0xD2, 0x8E, 0xBC, 0x82, 0x2F, 0xE3, 0xB4 },
{ 0x8C, 0xFA, 0x47, 0x9B, 0x83, 0xA5, 0x66, 0xD0 },
{ 0x07, 0xBD, 0x9F, 0x26, 0xC8, 0x31, 0x0F, 0xB8 },
{ 0xEF, 0x03, 0x95, 0x89, 0xB4, 0x71, 0x61, 0x9D },
{ 0x40, 0xBA, 0x97, 0xD5, 0x86, 0x4F, 0xCC, 0xD1 },
//Bind
{ 0xD7, 0xA1, 0x54, 0xB1, 0x5E, 0x89, 0xAE, 0x86 }
};*/
static uint16_t __attribute__((unused)) LOSI_check(uint16_t val)
{
const uint8_t PROGMEM tab[] = { 0xF1, 0xDA, 0xB6, 0xC8 };
uint8_t res = 0x0B, tmp;
uint8_t res = crc8, tmp;
uint16_t calc = val>>2; // don't care about the 2 first bits
for(uint8_t i=0; i<5; i++)
{
@@ -56,8 +94,11 @@ static void __attribute__((unused)) LOSI_send_packet()
if(IS_BIND_IN_PROGRESS)
{
memcpy(&packet[4], rx_tx_addr, 4);
packet[8] = 0x05; // CRC?
packet[9] = 0x52; // CRC?
crc = 0x0170;
for(uint8_t i=0; i < 8; i++)
crc += packet[i];
packet[8] = crc >> 8;
packet[9] = crc;
}
else
{
@@ -88,7 +129,7 @@ static void __attribute__((unused)) LOSI_cyrf_init()
CYRF_WriteRegister(CYRF_1B_TX_OFFSET_LSB, 0x55);
CYRF_WriteRegister(CYRF_1C_TX_OFFSET_MSB, 0x05);
//CYRF_WriteRegister(CYRF_0F_XACT_CFG, 0x24);
CYRF_SetPower(0x38);
CYRF_SetPower(0x38); // 64 SDR mode -> 8 bytes data code
CYRF_WriteRegister(CYRF_12_DATA64_THOLD, 0x0A);
CYRF_WriteRegister(CYRF_39_ANALOG_CTRL, 0x01);
CYRF_WritePreamble(0x333304);
@@ -97,51 +138,79 @@ static void __attribute__((unused)) LOSI_cyrf_init()
CYRF_WriteRegister(CYRF_1F_TX_OVERRIDE, 0x04); // No CRC
//CYRF_WriteRegister(CYRF_1E_RX_OVERRIDE, 0x14);
//CYRF_WriteRegister(CYRF_14_EOP_CTRL, 0x02);
uint8_t code[16];
DSM_read_code(code,0,8); // Load bind data code by default
CYRF_ConfigDataCode(code);
}
uint16_t LOSI_callback()
{
#ifdef MULTI_SYNC
telemetry_set_input_sync(19738);
telemetry_set_input_sync(packet_period);
#endif
LOSI_send_packet();
if(bind_counter)
{
bind_counter--;
if(bind_counter==0)
{
BIND_DONE;
CYRF_ConfigDataCode(LOSI_data_code[1], 16); // Load normal data code
// Load normal data code
uint8_t code[16];
DSM_read_code(code,hopping_frequency[0] % 5,(rx_tx_addr[0] + rx_tx_addr[1] + rx_tx_addr[2]) % 8);
CYRF_ConfigDataCode(code);
packet_period = 19738;
}
return 8763;
}
return 19738;
LOSI_send_packet();
return packet_period;
}
void LOSI_init()
{
LOSI_cyrf_init();
//CYRF_FindBestChannels(hopping_frequency, 1, 0, 0x13, 75); // 75 is unknown since dump stops at 0x27, this routine resets the CRC Seed to 0
//CYRF_ConfigRFChannel(hopping_frequency[0] | 1); // Only odd channels
CYRF_FindBestChannels(hopping_frequency, 1, 0, 0x07, 0x4F, FIND_CHANNEL_ODD); // 0x07 and 0x4F are unknown limits, this routine resets the CRC Seed to 0
crc8 = 0;
crc8 = (uint16_t)LOSI_check(((rx_tx_addr[2]&0x0F) << 8) + rx_tx_addr[3]) >> 12;
#ifdef LOSI_FORCE_ID
/*
rx_tx_addr[0] = 0x47;
rx_tx_addr[1] = 0x52;
rx_tx_addr[2] = 0xAE;
rx_tx_addr[3] = 0xAA;
CYRF_ConfigRFChannel(0x27);
crc8 = 0x0B;
num_ch = 0x07;
//Data codes for hopping_frequency[0] % 5
//{ 0x40, 0xBA, 0x97, 0xD5, 0x86, 0x4F, 0xCC, 0xD1, 0xD7, 0xA1, 0x54, 0xB1, 0x5E, 0x89, 0xAE, 0x86 },
//{ 0x62, 0xF5, 0x2B, 0xAA, 0xFC, 0x33, 0xBF, 0xAF, 0x40, 0x56, 0x32, 0xD9, 0x0F, 0xD9, 0x5D, 0x97 },
//{ 0x9E, 0x08, 0xD1, 0xAE, 0x59, 0x5E, 0xE8, 0xF0, 0xC0, 0x90, 0x8F, 0xBB, 0x7C, 0x8E, 0x2B, 0x8E },
//{ 0x35, 0xD1, 0xFC, 0x97, 0x23, 0xD4, 0xC9, 0x88, 0xE1, 0xD6, 0x31, 0x26, 0x5F, 0xBD, 0x40, 0x93 },
//{ 0x5F, 0x30, 0x3B, 0x56, 0x96, 0x45, 0xF4, 0xA1, 0x03, 0xBC, 0x6E, 0x8A, 0xEF, 0xBD, 0xFE, 0xF8 }
*/
rx_tx_addr[0] = 0x56;
rx_tx_addr[1] = 0x52;
rx_tx_addr[2] = 0x22;
rx_tx_addr[3] = 0x8A;
crc8 = 0x0F;
num_ch = 0x02;
//Data codes for hopping_frequency[0] % 5
//{ 0xF1, 0x94, 0x30, 0x21, 0xA1, 0x1C, 0x88, 0xA9, 0xD0, 0xD2, 0x8E, 0xBC, 0x82, 0x2F, 0xE3, 0xB4 },
//{ 0x17, 0xFF, 0x9E, 0x21, 0x36, 0x90, 0xC7, 0x82, 0xBC, 0x5D, 0x9A, 0x5B, 0xEE, 0x7F, 0x42, 0xEB },
//{ 0x4C, 0x97, 0x9D, 0xBF, 0xB8, 0x3D, 0xB5, 0xBE, 0x0C, 0x5D, 0x24, 0x30, 0x9F, 0xCA, 0x6D, 0xBD },
//{ 0x7D, 0x2D, 0x49, 0x54, 0xD0, 0x80, 0x40, 0xC1, 0xB6, 0xF2, 0xE6, 0x1B, 0x80, 0x5A, 0x36, 0xB4 },
//{ 0xC3, 0x0E, 0x01, 0x16, 0x0E, 0x32, 0x06, 0xBA, 0xE0, 0x83, 0x01, 0xFA, 0xAB, 0x3E, 0x8F, 0xAC }
// Note: crc8=00..0F and num_ch=00..07
// num_ch = (rx_tx_addr[0] + rx_tx_addr[1] + rx_tx_addr[2]) % 8;
// crc8 = (uint16_t)LOSI_check(((rx_tx_addr[2]&0x0F) << 8) + rx_tx_addr[3]) >> 12;
#endif
if(IS_BIND_IN_PROGRESS)
{
bind_counter = 300;
CYRF_ConfigDataCode(LOSI_data_code[0], 16); // Load bind data code
}
else
{
CYRF_ConfigDataCode(LOSI_data_code[1], 16); // Load normal data code
bind_counter = 0;
}
CYRF_ConfigRFChannel(hopping_frequency[0]);
bind_counter = IS_BIND_IN_PROGRESS?300:1;
packet_period = 8763;
}
#endif

View File

@@ -421,7 +421,7 @@ uint16_t MLINK_callback()
case MLINK_PREP_DATA:
CYRF_ConfigDataCode(MLINK_Data_Code,16);
CYRF_ConfigDataCode(MLINK_Data_Code);
MLINK_CRC_Init += 0xED;
hopping_frequency_no = 0x00;
CYRF_ConfigRFChannel(hopping_frequency[hopping_frequency_no]);
@@ -597,7 +597,7 @@ void MLINK_init()
{
packet_count = 0;
bind_counter = MLINK_BIND_COUNT;
CYRF_ConfigDataCode((uint8_t*)"\x6F\xBE\x32\x01\xDB\xF1\x2B\x01\xE3\x5C\xFA\x02\x97\x93\xF9\x02",16); //Bind data code
CYRF_ConfigDataCode((uint8_t*)"\x6F\xBE\x32\x01\xDB\xF1\x2B\x01\xE3\x5C\xFA\x02\x97\x93\xF9\x02"); //Bind data code
CYRF_ConfigRFChannel(MLINK_BIND_CHANNEL);
phase = MLINK_BIND_TX;
}

View File

@@ -12,7 +12,7 @@
You should have received a copy of the GNU General Public License
along with Multiprotocol. If not, see <http://www.gnu.org/licenses/>.
*/
// compatible with MT99xx, Eachine H7, Yi Zhan i6S and LS114/124
// compatible with MT99xx, Eachine H7, Yi Zhan i6S, LS114/124, QF009 Su35
// Last sync with Goebish mt99xx_nrf24l01.c dated 2016-01-29
#if defined(MT99XX_CCNRF_INO)
@@ -83,7 +83,12 @@ enum{
enum{
// flags going to packet[6] (F949G)
FLAG_F949G_LIGHT = 0x01,
FLAG_F949G_RATES = 0x02,
FLAG_F949G_3D6G = 0x20,
FLAG_BF109_RATES = 0x01, // short press right
FLAG_BF109_LIGHT = 0x02, // short press left
FLAG_BF109_UNK1 = 0x08, // long press right
FLAG_BF109_UNK2 = 0x10, // long press left
};
enum{
// flags going to packet[6] (PA18)
@@ -91,6 +96,16 @@ enum{
FLAG_PA18_FLIP = 0x80,
};
enum{
// flags going to packet[6] (QF009 Su35)
FLAG_SU35_6G = 0x00,
FLAG_SU35_3D = 0x40,
FLAG_SU35_HIRATE = 0x01,
FLAG_SU35_LED = 0x02,
FLAG_SU35_FLASH = 0x04,
FLAG_SU35_INVERT = 0x08,
};
const uint8_t h7_mys_byte[] = {
0x01, 0x11, 0x02, 0x12, 0x03, 0x13, 0x04, 0x14,
0x05, 0x15, 0x06, 0x16, 0x07, 0x17, 0x00, 0x10
@@ -174,8 +189,8 @@ static void __attribute__((unused)) MT99XX_send_packet()
packet[1] = convert_channel_16b_limit(RUDDER ,0x00,0xE1); // rudder
packet[2] = convert_channel_16b_limit(AILERON ,0xE1,0x00); // aileron
packet[3] = convert_channel_16b_limit(ELEVATOR,0x00,0xE1); // elevator
packet[4] = 0x20; // pitch trim (0x3f-0x20-0x00)
packet[5] = 0x20; // roll trim (0x00-0x20-0x3f)
packet[4] = (convert_channel_8b(CH10) ^ 0xFF) >> 2; // aileron trim (3F..20..00)
packet[5] = convert_channel_8b(CH11) >> 2; // elevator trim (00..20..3F)
packet[6] = GET_FLAG( CH5_SW, FLAG_MT_FLIP );
if(sub_protocol != PA18+8)
packet[7] = h7_mys_byte[hopping_frequency_no]; // next rf channel index ?
@@ -248,9 +263,11 @@ static void __attribute__((unused)) MT99XX_send_packet()
#endif
break;
case F949G:
packet[6] = 0x02
| GET_FLAG( CH5_SW, FLAG_F949G_3D6G )
| GET_FLAG( CH6_SW, FLAG_F949G_LIGHT );
packet[6] = GET_FLAG( CH5_SW, FLAG_F949G_3D6G )
| GET_FLAG( CH6_SW, FLAG_F949G_LIGHT ) //FLAG_BF109_RATES
| GET_FLAG(!CH7_SW, FLAG_F949G_RATES ) //FLAG_BF109_LIGHT
| GET_FLAG( CH8_SW, FLAG_BF109_UNK1 ) //BF109 long press right, temporary flag
| GET_FLAG( CH9_SW, FLAG_BF109_UNK2 ); //BF109 long press left, temporary flag
packet[7] = 0x00;
break;
case PA18+8:
@@ -264,6 +281,14 @@ static void __attribute__((unused)) MT99XX_send_packet()
if(hopping_frequency_no == 0)
packet[7] ^= 0x40;
break;
case SU35+8:
packet[6] = FLAG_SU35_6G
| GET_FLAG( CH5_SW, FLAG_SU35_3D )
| GET_FLAG( !CH6_SW, FLAG_SU35_LED )
| GET_FLAG( CH7_SW, FLAG_SU35_FLASH )
| GET_FLAG( CH8_SW, FLAG_SU35_INVERT )
| GET_FLAG( CH9_SW, FLAG_SU35_HIRATE );
break;
}
uint8_t result=crc8;
for(uint8_t i=0; i<8; i++)
@@ -312,7 +337,7 @@ static void __attribute__((unused)) MT99XX_send_packet()
XN297_SetTxRxMode(TX_EN);
XN297_WritePayload(packet, MT99XX_PACKET_SIZE);
#if 0
#if 1
for(uint8_t i=0; i<MT99XX_PACKET_SIZE; i++)
debug(" %02X",packet[i]);
debugln();
@@ -505,7 +530,7 @@ void MT99XX_init(void)
bind_counter = MT99XX_BIND_COUNT;
if(IS_BIND_DONE)
{
if(sub_protocol != A180 && sub_protocol != DRAGON && sub_protocol != F949G && sub_protocol != PA18+8)
if(sub_protocol != A180 && sub_protocol != DRAGON && sub_protocol != F949G && sub_protocol != PA18+8 && sub_protocol != SU35+8)
BIND_IN_PROGRESS; // autobind protocol
else
bind_counter = 1;

View File

@@ -50,12 +50,19 @@ static void __attribute__((unused)) MOULDKG_send_packet()
else
{
uint8_t n = num_ch<<2;
if(sub_protocol == MOULDKG_ANALOG)
if(sub_protocol == MOULDKG_ANALOG4 || sub_protocol == MOULDKG_ANALOG6 )
{
packet[0] = 0x36;
uint8_t ch[]={ 1,0,2,3 };
for(uint8_t i=0;i<4;i++)
const uint8_t ch[]={ 1,0,2,3,5,4 };
if(sub_protocol == MOULDKG_ANALOG6)
n += num_ch<<1;
for(uint8_t i=0;i<6;i++)
{
if( (i > 3 && sub_protocol == MOULDKG_ANALOG4) || i + n > 15)
packet[i+4] = 0x80; //Centered channel
else
packet[i+4] = convert_channel_8b(ch[i]+n);
}
len = MOULDKG_PAYLOAD_SIZE_ANALOG;
}
else

View File

@@ -3,12 +3,12 @@
3,FrskyD,D8,Cloned
4,Hisky,Hisky,HK310
5,V2x2,V2x2,JXD506,MR101
6,DSM,DSM2_1F,DSM2_2F,DSMX_1F,DSMX_2F,AUTO,DSMR_1F
6,DSM,DSM2_1F,DSM2_2F,DSMX_1F,DSMX_2F,AUTO,DSMR_1F,DSMR,DSM2_SFC
7,Devo,8CH,10CH,12CH,6CH,7CH
8,YD717,YD717,SKYWLKR,SYMAX4,XINXUN,NIHUI
9,KN,WLTOYS,FEILUN
10,SymaX,SYMAX,SYMAX5C
11,SLT,SLT_V1,SLT_V2,Q100,Q200,MR100
11,SLT,SLT_V1,SLT_V2,Q100,Q200,MR100,V1_4CH,RF_SIM,SLT6TX
12,CX10,GREEN,BLUE,DM007,---,J3015_1,J3015_2,MK33041
13,CG023,CG023,YD829
14,Bayang,Bayang,H8S3D,X16_AH,IRDRONE,DHD_D4,QX100
@@ -20,12 +20,12 @@
20,FY326,FY326,FY319
21,Futaba,SFHSS
22,J6PRO
23,FQ777
23,FQ777,124,XBM37
24,ASSAN
25,FrskyV
26,HONTAI,HONTAI,JJRCX1,X5C1,FQ777_951
26,HONTAI,HONTAI,JJRCX1,X5C1,FQ777_951,XKK170
27,OpnLrs
28,AFHDS2A,PWM_IBUS,PPM_IBUS,PWM_SBUS,PPM_SBUS,PWM_IB16,PPM_IB16,PWM_SB16,PPM_SB16
28,AFHDS2A,PWM_IBUS,PPM_IBUS,PWM_SBUS,PPM_SBUS,Gyro_Off,Gyro_On,G_On_Rev
29,Q2X2,Q222,Q242,Q282
30,WK2x01,WK2801,WK2401,W6_5_1,W6_6_1,W6_HEL,W6_HEL_I
31,Q303,Q303,CX35,CX10D,CX10WD
@@ -40,7 +40,7 @@
40,WFLY,WFR0x
41,BUGS
42,BUGSMINI,BUGSMINI,BUGS3H
43,Traxxas,RX6519
43,Traxxas,TQ
44,NCC1701
45,E01X,E012,E015
46,V911S,V911S,E119
@@ -55,11 +55,11 @@
55,Frsky_RX,Multi,CloneTX,EraseTX,CPPM
56,AFHDS2A_RX,Multi,CPPM
57,HoTT,Sync,No_Sync
58,FX,816,620,9630
58,FX,FX816,FX620,9630,Q560,QF012,BM26,A570
59,Bayang_RX,Multi,CPPM
60,Pelikan,Pro,Lite,SCX24
61,Tiger
62,XK,X450,X420
61,EazyRC
62,XK,X450,X420,Cars
63,XN_DUMP,250K,1M,2M,AUTO
64,FrskyX2,CH_16,CH_8,EU_16,EU_8,Cloned
65,FrSkyR9,915MHz,868MHz,915_8ch,868_8ch,FCC,--,FCC_8ch,--_8ch
@@ -67,13 +67,13 @@
67,LR12,LR12,LR12_6ch
68,Skyartec
69,ESKYv2,150V2
70,DSM_RX,Multi,CPPM
70,DSM_RX,Multi,CloneTX,EraseTX,CPPM
71,JJRC345,JJRC345,SkyTmblr
72,Q90C
73,Kyosho,FHSS,Hype
74,RadioLink,Surface,Air,DumboRC
74,RadioLink,Surface,Air,DumboRC,RC4G,Dumbo_P
75,---
76,Realacc,R11
76,Realacc,R11,WLV8TX
77,OMP
78,M-Link
79,WFLY,RF20x
@@ -86,8 +86,21 @@
87,IKEA
88,WILLIFM
89,Losi
90,MouldKg,Analog,Digit
90,MouldKg,A4444,D4444,A664
91,Xerall
92,MT99xx,PA18
92,MT99xx,PA18,SU35
93,Kyosho2,KT-17
94,Scorpio
95,BlueFly
96,BumbleB
97,SGF22,F22,F22S,J20
98,Kyosho3
99,XK2,X4,P10
100,YuXiang
102,JIABAILE,STD,GYRO
103,H36
104,KAMTOM
105,Shenqi2
106,WL91x
107,WPL
108,0,Ares

View File

@@ -36,6 +36,7 @@ const char STR_MT99XX[] ="MT99XX";
const char STR_MT99XX2[] ="MT99XX2";
const char STR_MJXQ[] ="MJXq";
const char STR_SHENQI[] ="Shenqi";
const char STR_SHENQI2[] ="Shenqi2";
const char STR_FY326[] ="FY326";
const char STR_FUTABA[] ="Futaba";
const char STR_J6PRO[] ="J6 Pro";
@@ -55,6 +56,7 @@ const char STR_DM002[] ="DM002";
const char STR_CABELL[] ="Cabell";
const char STR_ESKY150[] ="Esky150";
const char STR_ESKY150V2[] ="EskyV2";
const char STR_H36[] ="H36";
const char STR_H8_3D[] ="H8 3D";
const char STR_CORONA[] ="Corona";
const char STR_CFLIE[] ="CFlie";
@@ -81,8 +83,8 @@ const char STR_HOTT[] ="HoTT";
const char STR_FX[] ="FX";
const char STR_BAYANG_RX[] ="BayanRX";
const char STR_PELIKAN[] ="Pelikan";
const char STR_TIGER[] ="Tiger";
const char STR_XK[] ="XK";
const char STR_XK2[] ="XK2";
const char STR_XN297DUMP[] ="XN297DP";
const char STR_FRSKYR9[] ="FrSkyR9";
const char STR_PROPEL[] ="Propel";
@@ -106,6 +108,18 @@ const char STR_LOSI[] ="Losi";
const char STR_MOULDKG[] ="MouldKg";
const char STR_XERALL[] ="Xerall";
const char STR_SCORPIO[] ="Scorpio";
const char STR_BLUEFLY[] ="BlueFly";
const char STR_BUMBLEB[] ="BumbleB";
const char STR_SGF22[] ="SGF22";
const char STR_EAZYRC[] ="EazyRC";
const char STR_KYOSHO3[] ="Kyosho3";
const char STR_YUXIANG[] ="YuXiang";
const char STR_UDIRC[] ="UDIRC";
const char STR_JIABAILE[] ="JIABAILE";
const char STR_KAMTOM[] ="KAMTOM";
const char STR_WL91X[] ="WL91x";
const char STR_WPL[] ="WPL";
const char STR_ARES[] ="ARES";
const char STR_SUBTYPE_FLYSKY[] = "\x04""Std\0""V9x9""V6x6""V912""CX20";
const char STR_SUBTYPE_HUBSAN[] = "\x04""H107""H301""H501";
@@ -118,24 +132,25 @@ const char STR_SUBTYPE_FRSKYD[] = "\x06""D8\0 ""Cloned";
const char STR_SUBTYPE_HISKY[] = "\x05""Std\0 ""HK310";
const char STR_SUBTYPE_V2X2[] = "\x06""Std\0 ""JXD506""MR101\0";
#ifndef MULTI_EU
const char STR_SUBTYPE_DSM[] = "\x04""2 1F""2 2F""X 1F""X 2F""Auto""R 1F";
const char STR_SUBTYPE_DSM[] = "\x04""2 1F""2 2F""X 1F""X 2F""Auto""R 1F""2SFC";
#else
const char STR_SUBTYPE_DSM[] = "\x04""--->""--->""X 1F""X 2F""Auto""R 1F";
const char STR_SUBTYPE_DSM[] = "\x04""--->""--->""X 1F""X 2F""Auto""R 1F""----";
#endif
const char STR_SUBTYPE_DEVO[] = "\x04""8ch\0""10ch""12ch""6ch\0""7ch\0";
const char STR_SUBTYPE_YD717[] = "\x07""Std\0 ""SkyWlkr""Syma X4""XINXUN\0""NIHUI\0 ";
const char STR_SUBTYPE_KN[] = "\x06""WLtoys""FeiLun";
const char STR_SUBTYPE_SYMAX[] = "\x03""Std""X5C";
const char STR_SUBTYPE_SLT[] = "\x06""V1_6ch""V2_8ch""Q100\0 ""Q200\0 ""MR100\0";
const char STR_SUBTYPE_SLT[] = "\x06""V1_6ch""V2_8ch""Q100\0 ""Q200\0 ""MR100\0""V1_4ch""RF_SIM""SLT6TX";
const char STR_SUBTYPE_CX10[] = "\x07""Green\0 ""Blue\0 ""DM007\0 ""-\0 ""JC3015a""JC3015b""MK33041";
const char STR_SUBTYPE_CG023[] = "\x05""Std\0 ""YD829";
const char STR_SUBTYPE_BAYANG[] = "\x07""Std\0 ""H8S3D\0 ""X16 AH\0""IRDrone""DHD D4\0""QX100\0 ";
const char STR_SUBTYPE_MT99[] = "\x06""MT99\0 ""H7\0 ""YZ\0 ""LS\0 ""FY805\0""A180\0 ""Dragon""F949G\0";
const char STR_SUBTYPE_MT992[] = "\x04""PA18";
const char STR_SUBTYPE_MT992[] = "\x04""PA18""SU35";
const char STR_SUBTYPE_MJXQ[] = "\x07""WLH08\0 ""X600\0 ""X800\0 ""H26D\0 ""E010\0 ""H26WH\0 ""Phoenix";
const char STR_SUBTYPE_FY326[] = "\x05""Std\0 ""FY319";
const char STR_SUBTYPE_HONTAI[] = "\x07""Std\0 ""JJRC X1""X5C1\0 ""FQ_951";
const char STR_SUBTYPE_AFHDS2A[] = "\x08""PWM,IBUS""PPM,IBUS""PWM,SBUS""PPM,SBUS""PWM,IB16""PPM,IB16""PWM,SB16""PPM,SB16";
const char STR_SUBTYPE_FQ777[] = "\x05""124\0 ""XBM37";
const char STR_SUBTYPE_HONTAI[] = "\x06""Std\0 ""JJRCX1""X5C1\0 ""FQ_951""XKK170";
const char STR_SUBTYPE_AFHDS2A[] = "\x08""PWM,IBUS""PPM,IBUS""PWM,SBUS""PPM,SBUS""Gyro_Off""Gyro_On\0""G_On_Rev";
const char STR_SUBTYPE_Q2X2[] = "\x04""Q222""Q242""Q282";
const char STR_SUBTYPE_WK2x01[] = "\x06""WK2801""WK2401""W6_5_1""W6_6_1""W6_HeL""W6_HeI";
const char STR_SUBTYPE_Q303[] = "\x06""Std\0 ""CX35\0 ""CX10D\0""CX10WD";
@@ -144,18 +159,19 @@ const char STR_SUBTYPE_H83D[] = "\x07""Std\0 ""H20H\0 ""H20Mini""H30Min
const char STR_SUBTYPE_CORONA[] = "\x05""V1\0 ""V2\0 ""FD V3";
const char STR_SUBTYPE_HITEC[] = "\x07""Optima\0""Opt Hub""Minima\0";
const char STR_SUBTYPE_BUGS_MINI[] = "\x06""Std\0 ""Bugs3H";
const char STR_SUBTYPE_TRAXXAS[] = "\x04""6519";
const char STR_SUBTYPE_TRAXXAS[] = "\x03""TQ2""TQ1";
const char STR_SUBTYPE_E01X[] = "\x05""E012\0""E015\0";
const char STR_SUBTYPE_GD00X[] = "\x05""GD_V1""GD_V2";
const char STR_SUBTYPE_REDPINE[] = "\x04""Fast""Slow";
const char STR_SUBTYPE_POTENSIC[] = "\x03""A20";
const char STR_SUBTYPE_ZSX[] = "\x07""280JJRC";
const char STR_SUBTYPE_HEIGHT[] = "\x03""5ch""8ch";
const char STR_SUBTYPE_XN297DUMP[] = "\x07""250Kbps""1Mbps\0 ""2Mbps\0 ""Auto\0 ""NRF\0 ""CC2500\0";
const char STR_SUBTYPE_XN297DUMP[] = "\x07""250Kbps""1Mbps\0 ""2Mbps\0 ""Auto\0 ""NRF\0 ""CC2500\0""XN297\0 ";
const char STR_SUBTYPE_ESKY150[] = "\x03""4ch""7ch";
const char STR_SUBTYPE_ESKY150V2[] = "\x05""150V2";
const char STR_SUBTYPE_V911S[] = "\x05""V911S""E119\0";
const char STR_SUBTYPE_XK[] = "\x04""X450""X420";
const char STR_SUBTYPE_XK[] = "\x04""X450""X420""Cars";
const char STR_SUBTYPE_XK2[] = "\x03""X4\0""P10";
const char STR_SUBTYPE_FRSKYR9[] = "\x07""915MHz\0""868MHz\0""915 8ch""868 8ch""FCC\0 ""--\0 ""FCC 8ch""-- 8ch\0";
const char STR_SUBTYPE_ESKY[] = "\x03""Std""ET4";
const char STR_SUBTYPE_PROPEL[] = "\x04""74-Z";
@@ -165,26 +181,33 @@ const char STR_SUBTYPE_WFLY2[] = "\x05""RF20x";
const char STR_SUBTYPE_HOTT[] = "\x07""Sync\0 ""No_Sync";
const char STR_SUBTYPE_PELIKAN[] = "\x05""Pro\0 ""Lite\0""SCX24";
const char STR_SUBTYPE_V761[] = "\x05""3ch\0 ""4ch\0 ""TOPRC";
const char STR_SUBTYPE_RLINK[] = "\x07""Surface""Air\0 ""DumboRC";
const char STR_SUBTYPE_REALACC[] = "\x03""R11";
const char STR_SUBTYPE_RLINK[] = "\x07""Surface""Air\0 ""DumboRC""RC4G\0 ""Dumbo_P";
const char STR_SUBTYPE_REALACC[] = "\x06""R11\0 ""WLV8TX";
const char STR_SUBTYPE_KYOSHO[] = "\x04""FHSS""Hype";
const char STR_SUBTYPE_KYOSHO2[] = "\x05""KT-17";
const char STR_SUBTYPE_KYOSHO3[] = "\x03""ASF";
const char STR_SUBTYPE_FUTABA[] = "\x05""SFHSS";
const char STR_SUBTYPE_JJRC345[] = "\x08""JJRC345\0""SkyTmblr";
const char STR_SUBTYPE_MOULKG[] = "\x06""Analog""Digit\0";
const char STR_SUBTYPE_MOULDKG[] = "\x05""A4444""D4444""A664\0";
const char STR_SUBTYPE_KF606[] = "\x06""KF606\0""MIG320""ZCZ50\0";
const char STR_SUBTYPE_E129[] = "\x04""E129""C186";
const char STR_SUBTYPE_FX[] = "\x04""816\0""620\0""9630";
const char STR_SUBTYPE_FX[] = "\x05""FX816""FX620""9630\0""Q560\0""QF012""BM26\0""A570\0";
const char STR_SUBTYPE_SGF22[] = "\x04""F22\0""F22S""J20\0""CX10";
const char STR_SUBTYPE_JIABAILE[] = "\x04""Std\0""Gyro";
#define NO_SUBTYPE nullptr
#ifdef SEND_CPPM
const char STR_SUB_FRSKY_RX[] = "\x07""Multi\0 ""CloneTX""EraseTX""CPPM\0 ";
const char STR_SUB_DSM_RX[] = "\x07""Multi\0 ""CloneTX""EraseTX""CPPM\0 ";
#define FRCPPM 4
#define DSMCPPM 4
const char STR_CPPM[] = "\x05""Multi""CPPM\0";
#define NBR_CPPM 2
#else
const char STR_SUB_FRSKY_RX[] = "\x07""Multi\0 ""CloneTX""EraseTX";
const char STR_SUB_DSM_RX[] = "\x07""Multi\0 ""CloneTX""EraseTX";
#define FRCPPM 3
#define DSMCPPM 3
#define STR_CPPM NO_SUBTYPE
#define NBR_CPPM 0
#endif
@@ -209,6 +232,9 @@ const mm_protocol_definition multi_protocols[] = {
#if defined(MULTI_CONFIG_INO)
{PROTO_CONFIG, STR_CONFIG, NO_SUBTYPE, 0, OPTION_NONE, 0, 0, 0, CONFIG_init, CONFIG_callback },
#endif
#if defined(ARES_CC2500_INO)
{PROTO_ARES, STR_ARES, NO_SUBTYPE, 0, OPTION_RFTUNE, 0, 0, SW_CC2500, ARES_init, ARES_callback },
#endif
#if defined(ASSAN_NRF24L01_INO)
{PROTO_ASSAN, STR_ASSAN, NO_SUBTYPE, 0, OPTION_NONE, 0, 0, SW_NRF, ASSAN_init, ASSAN_callback },
#endif
@@ -218,6 +244,12 @@ const mm_protocol_definition multi_protocols[] = {
#if defined(BAYANG_RX_NRF24L01_INO)
{PROTO_BAYANG_RX, STR_BAYANG_RX, STR_CPPM, NBR_CPPM, OPTION_NONE, 0, 0, SW_NRF, BAYANG_RX_init, BAYANG_RX_callback },
#endif
#if defined(BLUEFLY_CCNRF_INO)
{PROTO_BLUEFLY, STR_BLUEFLY, NO_SUBTYPE, 0, OPTION_RFTUNE, 0, 0, SW_NRF, BLUEFLY_init, BLUEFLY_callback },
#endif
#if defined(BUMBLEB_CCNRF_INO)
{PROTO_BUMBLEB, STR_BUMBLEB, NO_SUBTYPE, 0, OPTION_RFTUNE, 0, 0, SW_NRF, BUMBLEB_init, BUMBLEB_callback },
#endif
#if defined(BUGS_A7105_INO)
{PROTO_BUGS, STR_BUGS, NO_SUBTYPE, 0, OPTION_NONE, 0, 0, SW_A7105, BUGS_init, BUGS_callback },
#endif
@@ -246,10 +278,10 @@ const mm_protocol_definition multi_protocols[] = {
{PROTO_DM002, STR_DM002, NO_SUBTYPE, 0, OPTION_NONE, 0, 0, SW_NRF, DM002_init, DM002_callback },
#endif
#if defined(DSM_CYRF6936_INO)
{PROTO_DSM, STR_DSM, STR_SUBTYPE_DSM, 6, OPTION_MAXTHR, 0, 1, SW_CYRF, DSM_init, DSM_callback },
{PROTO_DSM, STR_DSM, STR_SUBTYPE_DSM, 7, OPTION_MAXTHR, 0, 1, SW_CYRF, DSM_init, DSM_callback },
#endif
#if defined(DSM_RX_CYRF6936_INO)
{PROTO_DSM_RX, STR_DSM_RX, STR_CPPM, NBR_CPPM, OPTION_NONE, 0, 1, SW_CYRF, DSM_RX_init, DSM_RX_callback },
{PROTO_DSM_RX, STR_DSM_RX, STR_SUB_DSM_RX, DSMCPPM, OPTION_NONE, 0, 1, SW_CYRF, DSM_RX_init, DSM_RX_callback },
#endif
#if defined(E010R5_CYRF6936_INO)
{PROTO_E010R5, STR_E010R5, NO_SUBTYPE, 0, OPTION_NONE, 0, 0, SW_CYRF, E010R5_init, E010R5_callback },
@@ -266,6 +298,9 @@ const mm_protocol_definition multi_protocols[] = {
#if defined(E129_CYRF6936_INO)
{PROTO_E129, STR_E129, STR_SUBTYPE_E129, 2, OPTION_NONE, 0, 0, SW_CYRF, E129_init, E129_callback },
#endif
#if defined(EAZYRC_NRF24L01_INO)
{PROTO_EAZYRC, STR_EAZYRC, NO_SUBTYPE, 0, OPTION_NONE, 0, 0, SW_NRF, EAZYRC_init, EAZYRC_callback },
#endif
#if defined(ESKY_NRF24L01_INO)
{PROTO_ESKY, STR_ESKY, STR_SUBTYPE_ESKY, 2, OPTION_NONE, 0, 1, SW_NRF, ESKY_init, ESKY_callback },
#endif
@@ -279,13 +314,13 @@ const mm_protocol_definition multi_protocols[] = {
{PROTO_FLYSKY, STR_FLYSKY, STR_SUBTYPE_FLYSKY, 5, OPTION_NONE, 0, 1, SW_A7105, FLYSKY_init, FLYSKY_callback },
#endif
#if defined(AFHDS2A_A7105_INO)
{PROTO_AFHDS2A, STR_AFHDS2A, STR_SUBTYPE_AFHDS2A, 8, OPTION_SRVFREQ, 1, 1, SW_A7105, AFHDS2A_init, AFHDS2A_callback },
{PROTO_AFHDS2A, STR_AFHDS2A, STR_SUBTYPE_AFHDS2A, 7, OPTION_SRVFREQ, 1, 1, SW_A7105, AFHDS2A_init, AFHDS2A_callback },
#endif
#if defined(AFHDS2A_RX_A7105_INO)
{PROTO_AFHDS2A_RX, STR_AFHDS2A_RX,STR_CPPM, NBR_CPPM, OPTION_NONE, 0, 0, SW_A7105, AFHDS2A_RX_init, AFHDS2A_RX_callback },
#endif
#if defined(FQ777_NRF24L01_INO)
{PROTO_FQ777, STR_FQ777, NO_SUBTYPE, 0, OPTION_NONE, 0, 0, SW_NRF, FQ777_init, FQ777_callback },
{PROTO_FQ777, STR_FQ777, STR_SUBTYPE_FQ777, 2, OPTION_NONE, 0, 0, SW_NRF, FQ777_init, FQ777_callback },
#endif
//OpenTX 2.3.x issue: DO NOT CHANGE ORDER below
#if defined(FRSKY_RX_CC2500_INO)
@@ -316,7 +351,7 @@ const mm_protocol_definition multi_protocols[] = {
{PROTO_FUTABA, STR_FUTABA, STR_SUBTYPE_FUTABA, 1, OPTION_RFTUNE, 1, 1, SW_CC2500, SFHSS_init, SFHSS_callback },
#endif
#if defined(FX_NRF24L01_INO)
{PROTO_FX, STR_FX, STR_SUBTYPE_FX, 3, OPTION_NONE, 0, 0, SW_NRF, FX_init, FX_callback },
{PROTO_FX, STR_FX, STR_SUBTYPE_FX, 7, OPTION_NONE, 0, 0, SW_NRF, FX_init, FX_callback },
#endif
#if defined(FY326_NRF24L01_INO)
{PROTO_FY326, STR_FY326, STR_SUBTYPE_FY326, 2, OPTION_NONE, 0, 0, SW_NRF, FY326_init, FY326_callback },
@@ -327,6 +362,9 @@ const mm_protocol_definition multi_protocols[] = {
#if defined(GW008_NRF24L01_INO)
{PROTO_GW008, STR_GW008, NO_SUBTYPE, 0, OPTION_NONE, 0, 0, SW_NRF, GW008_init, GW008_callback },
#endif
#if defined(H36_NRF24L01_INO)
{PROTO_H36, STR_H36, NO_SUBTYPE, 0, OPTION_NONE, 0, 0, SW_NRF, H36_init, H36_callback },
#endif
#if defined(H8_3D_NRF24L01_INO)
{PROTO_H8_3D, STR_H8_3D, STR_SUBTYPE_H83D, 4, OPTION_NONE, 0, 0, SW_NRF, H8_3D_init, H8_3D_callback },
#endif
@@ -340,7 +378,7 @@ const mm_protocol_definition multi_protocols[] = {
{PROTO_HITEC, STR_HITEC, STR_SUBTYPE_HITEC, 3, OPTION_RFTUNE, 0, 0, SW_CC2500, HITEC_init, HITEC_callback },
#endif
#if defined(HONTAI_NRF24L01_INO)
{PROTO_HONTAI, STR_HONTAI, STR_SUBTYPE_HONTAI, 4, OPTION_NONE, 0, 0, SW_NRF, HONTAI_init, HONTAI_callback },
{PROTO_HONTAI, STR_HONTAI, STR_SUBTYPE_HONTAI, 5, OPTION_NONE, 0, 0, SW_NRF, HONTAI_init, HONTAI_callback },
#endif
#if defined(HOTT_CC2500_INO)
{PROTO_HOTT, STR_HOTT, STR_SUBTYPE_HOTT, 2, OPTION_RFTUNE, 1, 0, SW_CC2500, HOTT_init, HOTT_callback },
@@ -354,12 +392,18 @@ const mm_protocol_definition multi_protocols[] = {
#if defined(J6PRO_CYRF6936_INO)
{PROTO_J6PRO, STR_J6PRO, NO_SUBTYPE, 0, OPTION_NONE, 0, 1, SW_CYRF, J6PRO_init, J6PRO_callback },
#endif
#if defined(JIABAILE_NRF24L01_INO)
{PROTO_JIABAILE, STR_JIABAILE, STR_SUBTYPE_JIABAILE, 2, OPTION_NONE, 0, 0, SW_NRF, JIABAILE_init, JIABAILE_callback },
#endif
#if defined(JJRC345_NRF24L01_INO)
{PROTO_JJRC345, STR_JJRC345, STR_SUBTYPE_JJRC345, 2, OPTION_NONE, 0, 0, SW_NRF, JJRC345_init, JJRC345_callback },
#endif
#if defined(JOYSWAY_A7105_INO)
{PROTO_JOYSWAY, STR_JOYSWAY, NO_SUBTYPE, 0, OPTION_NONE, 0, 0, SW_A7105, JOYSWAY_init, JOYSWAY_callback },
#endif
#if defined(KAMTOM_NRF24L01_INO)
{PROTO_KAMTOM, STR_KAMTOM, NO_SUBTYPE, 0, OPTION_NONE, 0, 0, SW_NRF, KAMTOM_init, KAMTOM_callback },
#endif
#if defined(KF606_CCNRF_INO)
{PROTO_KF606, STR_KF606, STR_SUBTYPE_KF606, 3, OPTION_RFTUNE, 0, 0, SW_NRF, KF606_init, KF606_callback },
#endif
@@ -372,6 +416,9 @@ const mm_protocol_definition multi_protocols[] = {
#if defined(KYOSHO2_NRF24L01_INO)
{PROTO_KYOSHO2, STR_KYOSHO2, STR_SUBTYPE_KYOSHO2, 1, OPTION_NONE, 0, 0, SW_NRF, KYOSHO2_init, KYOSHO2_callback },
#endif
#if defined(KYOSHO3_CYRF6936_INO)
{PROTO_KYOSHO3, STR_KYOSHO3, STR_SUBTYPE_KYOSHO3, 1, OPTION_NONE, 0, 0, SW_CYRF, KYOSHO3_init, KYOSHO3_callback },
#endif
#if defined(LOLI_NRF24L01_INO)
{PROTO_LOLI, STR_LOLI, NO_SUBTYPE, 0, OPTION_NONE, 1, 0, SW_NRF, LOLI_init, LOLI_callback },
#endif
@@ -385,13 +432,13 @@ const mm_protocol_definition multi_protocols[] = {
{PROTO_MLINK, STR_MLINK, NO_SUBTYPE, 0, OPTION_NONE, 1, 0, SW_CYRF, MLINK_init, MLINK_callback },
#endif
#if defined(MOULDKG_NRF24L01_INO)
{PROTO_MOULDKG, STR_MOULDKG, STR_SUBTYPE_MOULKG, 2, OPTION_OPTION, 0, 0, SW_NRF, MOULDKG_init, MOULDKG_callback },
{PROTO_MOULDKG, STR_MOULDKG, STR_SUBTYPE_MOULDKG, 3, OPTION_OPTION, 0, 0, SW_NRF, MOULDKG_init, MOULDKG_callback },
#endif
#if defined(MT99XX_CCNRF_INO)
{PROTO_MT99XX, STR_MT99XX, STR_SUBTYPE_MT99, 8, OPTION_NONE, 0, 0, SW_NRF, MT99XX_init, MT99XX_callback },
#endif
#if defined(MT99XX_CCNRF_INO)
{PROTO_MT99XX2, STR_MT99XX2, STR_SUBTYPE_MT992, 1, OPTION_NONE, 0, 0, SW_NRF, MT99XX_init, MT99XX_callback },
{PROTO_MT99XX2, STR_MT99XX2, STR_SUBTYPE_MT992, 2, OPTION_NONE, 0, 0, SW_NRF, MT99XX_init, MT99XX_callback },
#endif
#if defined(NCC1701_NRF24L01_INO)
{PROTO_NCC1701, STR_NCC1701, NO_SUBTYPE, 0, OPTION_NONE, 0, 0, SW_NRF, NCC_init, NCC_callback },
@@ -418,10 +465,10 @@ const mm_protocol_definition multi_protocols[] = {
{PROTO_Q90C, STR_Q90C, NO_SUBTYPE, 0, OPTION_RFTUNE, 0, 0, SW_NRF, Q90C_init, Q90C_callback },
#endif
#if defined(RLINK_CC2500_INO)
{PROTO_RLINK, STR_RLINK, STR_SUBTYPE_RLINK, 3, OPTION_RFTUNE, 0, 0, SW_CC2500, RLINK_init, RLINK_callback },
{PROTO_RLINK, STR_RLINK, STR_SUBTYPE_RLINK, 5, OPTION_RFTUNE, 0, 0, SW_CC2500, RLINK_init, RLINK_callback },
#endif
#if defined(REALACC_NRF24L01_INO)
{PROTO_REALACC, STR_REALACC, STR_SUBTYPE_REALACC, 1, OPTION_NONE, 0, 0, SW_NRF, REALACC_init, REALACC_callback },
{PROTO_REALACC, STR_REALACC, STR_SUBTYPE_REALACC, 2, OPTION_NONE, 0, 0, SW_NRF, REALACC_init, REALACC_callback },
#endif
#if defined(REDPINE_CC2500_INO)
{PROTO_REDPINE, STR_REDPINE, STR_SUBTYPE_REDPINE, 2, OPTION_RFTUNE, 0, 0, SW_CC2500, REDPINE_init, REDPINE_callback },
@@ -432,23 +479,29 @@ const mm_protocol_definition multi_protocols[] = {
#if defined(SCORPIO_CYRF6936_INO)
{PROTO_SCORPIO, STR_SCORPIO, NO_SUBTYPE, 0, OPTION_NONE, 0, 0, SW_CYRF, SCORPIO_init, SCORPIO_callback },
#endif
#if defined(SGF22_NRF24L01_INO)
{PROTO_SGF22, STR_SGF22, STR_SUBTYPE_SGF22, 4, OPTION_NONE, 0, 0, SW_NRF, SGF22_init, SGF22_callback },
#endif
#if defined(SHENQI_NRF24L01_INO)
{PROTO_SHENQI, STR_SHENQI, NO_SUBTYPE, 0, OPTION_NONE, 0, 0, SW_NRF, SHENQI_init, SHENQI_callback },
#endif
#if defined(SHENQI2_NRF24L01_INO)
{PROTO_SHENQI2, STR_SHENQI2, NO_SUBTYPE, 0, OPTION_NONE, 0, 0, SW_NRF, SHENQI2_init, SHENQI2_callback },
#endif
#if defined(SKYARTEC_CC2500_INO)
{PROTO_SKYARTEC, STR_SKYARTEC, NO_SUBTYPE, 0, OPTION_RFTUNE, 0, 1, SW_CC2500, SKYARTEC_init, SKYARTEC_callback },
#endif
#if defined(SLT_CCNRF_INO)
{PROTO_SLT, STR_SLT, STR_SUBTYPE_SLT, 5, OPTION_RFTUNE, 0, 1, SW_NRF, SLT_init, SLT_callback },
{PROTO_SLT, STR_SLT, STR_SUBTYPE_SLT, 8, OPTION_RFTUNE, 0, 1, SW_NRF, SLT_init, SLT_callback },
#endif
#if defined(SYMAX_NRF24L01_INO)
{PROTO_SYMAX, STR_SYMAX, STR_SUBTYPE_SYMAX, 2, OPTION_NONE, 0, 0, SW_NRF, SYMAX_init, SYMAX_callback },
#endif
#if defined(TIGER_NRF24L01_INO)
{PROTO_TIGER, STR_TIGER, NO_SUBTYPE, 0, OPTION_NONE, 0, 0, SW_NRF, TIGER_init, TIGER_callback },
#endif
#if defined(TRAXXAS_CYRF6936_INO)
{PROTO_TRAXXAS, STR_TRAXXAS, STR_SUBTYPE_TRAXXAS, 1, OPTION_NONE, 0, 0, SW_CYRF, TRAXXAS_init, TRAXXAS_callback },
{PROTO_TRAXXAS, STR_TRAXXAS, STR_SUBTYPE_TRAXXAS, 2, OPTION_NONE, 0, 0, SW_CYRF, TRAXXAS_init, TRAXXAS_callback },
#endif
#if defined(UDIRC_CCNRF_INO)
{PROTO_UDIRC, STR_UDIRC, NO_SUBTYPE, 0, OPTION_NONE, 0, 0, SW_NRF, UDIRC_init, UDIRC_callback },
#endif
#if defined(V2X2_NRF24L01_INO)
{PROTO_V2X2, STR_V2X2, STR_SUBTYPE_V2X2, 3, OPTION_NONE, 0, 0, SW_NRF, V2X2_init, V2X2_callback },
@@ -459,9 +512,6 @@ const mm_protocol_definition multi_protocols[] = {
#if defined(V911S_CCNRF_INO)
{PROTO_V911S, STR_V911S, STR_SUBTYPE_V911S, 2, OPTION_RFTUNE, 0, 0, SW_NRF, V911S_init, V911S_callback },
#endif
#if defined(WK2x01_CYRF6936_INO)
{PROTO_WK2x01, STR_WK2x01, STR_SUBTYPE_WK2x01, 6, OPTION_NONE, 1, 1, SW_CYRF, WK_init, WK_callback },
#endif
#if defined(WFLY_CYRF6936_INO)
{PROTO_WFLY, STR_WFLY, STR_SUBTYPE_WFLY, 1, OPTION_NONE, 1, 0, SW_CYRF, WFLY_init, WFLY_callback },
#endif
@@ -469,18 +519,33 @@ const mm_protocol_definition multi_protocols[] = {
{PROTO_WFLY2, STR_WFLY2, STR_SUBTYPE_WFLY2, 1, OPTION_OPTION, 1, 0, SW_A7105, WFLY2_init, WFLY2_callback },
// {PROTO_WFLY2, STR_WFLY2, STR_SUBTYPE_WFLY2, 1, OPTION_WBUS, 1, 0, SW_A7105, WFLY2_init, WFLY2_callback },// crash OpenTX...
#endif
#if defined(WK2x01_CYRF6936_INO)
{PROTO_WK2x01, STR_WK2x01, STR_SUBTYPE_WK2x01, 6, OPTION_NONE, 1, 1, SW_CYRF, WK_init, WK_callback },
#endif
#if defined(WL91X_CCNRF_INO)
{PROTO_WL91X, STR_WL91X, NO_SUBTYPE, 0, OPTION_NONE, 0, 0, SW_NRF, WL91X_init, WL91X_callback },
#endif
#if defined(WPL_NRF24L01_INO)
{PROTO_WPL, STR_WPL, NO_SUBTYPE, 0, OPTION_NONE, 0, 0, SW_NRF, WPL_init, WPL_callback },
#endif
#if defined(XERALL_NRF24L01_INO)
{PROTO_XERALL, STR_XERALL, NO_SUBTYPE, 0, OPTION_NONE, 0, 0, SW_NRF, XERALL_init, XERALL_callback },
#endif
#if defined(XK_CCNRF_INO)
{PROTO_XK, STR_XK, STR_SUBTYPE_XK, 2, OPTION_RFTUNE, 0, 0, SW_NRF, XK_init, XK_callback },
{PROTO_XK, STR_XK, STR_SUBTYPE_XK, 3, OPTION_RFTUNE, 0, 0, SW_NRF, XK_init, XK_callback },
#endif
#if defined(XK2_CCNRF_INO)
{PROTO_XK2, STR_XK2, STR_SUBTYPE_XK2, 2, OPTION_RFTUNE, 0, 0, SW_NRF, XK2_init, XK2_callback },
#endif
#if defined(XN297DUMP_NRF24L01_INO)
{PROTO_XN297DUMP, STR_XN297DUMP, STR_SUBTYPE_XN297DUMP, 6, OPTION_RFCHAN, 0, 0, SW_NRF, XN297Dump_init, XN297Dump_callback },
{PROTO_XN297DUMP, STR_XN297DUMP, STR_SUBTYPE_XN297DUMP, 7, OPTION_RFCHAN, 0, 0, SW_NRF, XN297Dump_init, XN297Dump_callback },
#endif
#if defined(YD717_NRF24L01_INO)
{PROTO_YD717, STR_YD717, STR_SUBTYPE_YD717, 5, OPTION_NONE, 0, 0, SW_NRF, YD717_init, YD717_callback },
#endif
#if defined(YUXIANG_NRF24L01_INO)
{PROTO_YUXIANG, STR_YUXIANG, NO_SUBTYPE, 0, OPTION_NONE, 0, 0, SW_NRF, YUXIANG_init, YUXIANG_callback },
#endif
#if defined(ZSX_NRF24L01_INO)
{PROTO_ZSX, STR_ZSX, STR_SUBTYPE_ZSX, 1, OPTION_NONE, 0, 0, SW_NRF, ZSX_init, ZSX_callback },
#endif
@@ -535,7 +600,10 @@ uint16_t PROTOLIST_callback()
Serial_write(multi_protocols[option].protocol);
//Protocol name
for(uint8_t i=0;i<proto_len;i++)
{
Serial_write(multi_protocols[option].ProtoString[i]);
//debug("%c",multi_protocols[option].ProtoString[i]);
}
//Flags
uint8_t flags=0;
#ifdef FAILSAFE_ENABLE
@@ -545,15 +613,20 @@ uint16_t PROTOLIST_callback()
if(multi_protocols[option].chMap)
flags |= 0x02; //Disable_ch_mapping supported
Serial_write( flags | (multi_protocols[option].optionType<<4)); // flags && option type
//debug(" Flag=%02X",flags | (multi_protocols[option].optionType<<4));
//Number of sub protocols
Serial_write(nbr_sub);
//debug(" NSub=%02X ",nbr_sub);
if(nbr_sub !=0 )
{//Sub protocols length and texts
for(uint8_t i=0;i<=nbr_sub*sub_len;i++)
{
Serial_write(multi_protocols[option].SubProtoString[i]);
//debug("%c",multi_protocols[option].SubProtoString[i]);
}
}
//debugln("");
}
}
return 1000;
}

View File

@@ -18,8 +18,8 @@
//******************
#define VERSION_MAJOR 1
#define VERSION_MINOR 3
#define VERSION_REVISION 3
#define VERSION_PATCH_LEVEL 27
#define VERSION_REVISION 4
#define VERSION_PATCH_LEVEL 63
#define MODE_SERIAL 0
@@ -75,7 +75,7 @@ enum PROTOCOLS
PROTO_NCC1701 = 44, // =>NRF24L01
PROTO_E01X = 45, // =>CYRF6936
PROTO_V911S = 46, // =>NRF24L01
PROTO_GD00X = 47, // =>NRF24L01
PROTO_GD00X = 47, // =>CC2500 & NRF24L01
PROTO_V761 = 48, // =>NRF24L01
PROTO_KF606 = 49, // =>NRF24L01
PROTO_REDPINE = 50, // =>CC2500
@@ -89,7 +89,7 @@ enum PROTOCOLS
PROTO_FX = 58, // =>NRF24L01
PROTO_BAYANG_RX = 59, // =>NRF24L01
PROTO_PELIKAN = 60, // =>A7105
PROTO_TIGER = 61, // =>NRF24L01
PROTO_EAZYRC = 61, // =>NRF24L01
PROTO_XK = 62, // =>NRF24L01
PROTO_XN297DUMP = 63, // =>NRF24L01
PROTO_FRSKYX2 = 64, // =>CC2500
@@ -122,6 +122,20 @@ enum PROTOCOLS
PROTO_MT99XX2 = 92, // =>NRF24L01, extension of MT99XX protocol
PROTO_KYOSHO2 = 93, // =>NRF24L01
PROTO_SCORPIO = 94, // =>CYRF6936
PROTO_BLUEFLY = 95, // =>CC2500 & NRF24L01
PROTO_BUMBLEB = 96, // =>CC2500 & NRF24L01
PROTO_SGF22 = 97, // =>NRF24L01
PROTO_KYOSHO3 = 98, // =>CYRF6936
PROTO_XK2 = 99, // =>CC2500 & NRF24L01
PROTO_YUXIANG = 100, // =>NRF24L01
PROTO_UDIRC = 101, // =>CC2500 & NRF24L01
PROTO_JIABAILE = 102, // =>NRF24L01
PROTO_H36 = 103, // =>NRF24L01
PROTO_KAMTOM = 104, // =>NRF24L01
PROTO_SHENQI2 = 105, // =>NRF24L01
PROTO_WL91X = 106, // =>CC2500 & NRF24L01
PROTO_WPL = 107, // =>NRF24L01
PROTO_ARES = 108, // =>CC2500
PROTO_NANORF = 126, // =>NRF24L01
PROTO_TEST = 127, // =>CC2500
@@ -151,10 +165,9 @@ enum AFHDS2A
PPM_IBUS = 1,
PWM_SBUS = 2,
PPM_SBUS = 3,
PWM_IB16 = 4,
PPM_IB16 = 5,
PWM_SB16 = 6,
PPM_SB16 = 7,
AFHDS2A_GYRO_OFF = 4,
AFHDS2A_GYRO_ON = 5,
AFHDS2A_GYRO_ON_REV = 6,
};
enum Hisky
{
@@ -169,6 +182,13 @@ enum DSM
DSMX_2F = 3,
DSM_AUTO = 4,
DSMR = 5,
DSM2_SFC = 6,
};
enum DSM_RX
{
DSM_RX = 0,
DSM_CLONE = 1,
DSM_ERASE = 2,
};
enum YD717
{
@@ -195,6 +215,9 @@ enum SLT
Q100 = 2,
Q200 = 3,
MR100 = 4,
SLT_V1_4 = 5,
RF_SIM = 6,
SLT6TX = 7,
};
enum CX10
{
@@ -242,6 +265,7 @@ enum MT99XX
enum MT99XX2
{
PA18 = 0,
SU35 = 1,
};
enum MJXQ
{
@@ -273,6 +297,7 @@ enum HONTAI
JJRCX1 = 1,
X5C1 = 2,
FQ777_951 = 3,
HONTAI_XKK170 = 4,
};
enum V2X2
{
@@ -350,7 +375,8 @@ enum REDPINE
};
enum TRAXXAS
{
RX6519 = 0,
TRAXXAS_TQ2 = 0,
TRAXXAS_TQ1 = 1,
};
enum ESKY150
{
@@ -366,6 +392,7 @@ enum XK
{
X450 = 0,
X420 = 1,
XK_CARS = 2,
};
enum XN297DUMP
{
@@ -375,6 +402,7 @@ enum XN297DUMP
XN297DUMP_AUTO = 3,
XN297DUMP_NRF = 4,
XN297DUMP_CC2500 = 5,
XN297DUMP_XN297 = 6,
};
enum FRSKY_R9
{
@@ -392,6 +420,11 @@ enum ESKY
ESKY_STD = 0,
ESKY_ET4 = 1,
};
enum FQ777
{
FQ777 = 0,
XBM37 = 1,
};
enum FRSKY_RX
{
FRSKY_RX = 0,
@@ -441,11 +474,19 @@ enum RLINK
RLINK_SURFACE = 0,
RLINK_AIR = 1,
RLINK_DUMBORC = 2,
RLINK_RC4G = 3,
RLINK_DUMBORC_P = 4,
};
enum REALACC
{
REALACC_R11 = 0,
REALACC_WLV8TX = 1,
};
enum MOULDKG
{
MOULDKG_ANALOG = 0,
MOULDKG_DIGIT = 1,
MOULDKG_ANALOG4 = 0,
MOULDKG_DIGIT4 = 1,
MOULDKG_ANALOG6 = 2,
};
enum KF606
{
@@ -463,6 +504,27 @@ enum FX
FX816 = 0,
FX620 = 1,
FX9630 = 2,
FX_Q560 = 3,
FX_QF012 = 4,
FX_BM26 = 5,
FX_A570 = 6,
};
enum SGF22
{
SGF22_F22 = 0,
SGF22_F22S = 1,
SGF22_J20 = 2,
SGF22_CX10 = 3,
};
enum JIABAILE
{
JIABAILE_STD = 0,
JIABAILE_GYRO = 1,
};
enum XK2
{
XK2_X4 = 0,
XK2_P10 = 1,
};
#define NONE 0
@@ -530,6 +592,7 @@ enum MultiPacketTypes
MULTI_TELEMETRY_MLINK = 15,
MULTI_TELEMETRY_CONFIG = 16,
MULTI_TELEMETRY_PROTO = 17,
MULTI_TELEMETRY_RLINK = 18,
};
// Macros
@@ -823,7 +886,11 @@ enum {
#define FRSKYX2_CLONE_EEPROM_OFFSET 873 // (1) format + (3) TX ID, 4 bytes, end is 877
#define DSM_RX_EEPROM_OFFSET 877 // (4) TX ID + format, 5 bytes, end is 882
#define MOULDKG_EEPROM_OFFSET 882 // RX ID, 3 bytes per model, end is 882+64*3=1074
//#define CONFIG_EEPROM_OFFSET 1074 // Current configuration of the multimodule
#define DSM_CLONE_EEPROM_OFFSET 1074 // (4) TX ID, (1) Initialized, end is 1079
#define TRAXXAS_EEPROM_OFFSET 1079 // RX ID and SOP index, 3 bytes per model id, end is 1079+192=1271
#define XK2_EEPROM_OFFSET 1271 // RX ID checksum, 1 byte per model, end is 1271+64=1335
#define JIABAILE_EEPROM_OFFSET 1335 // RX ID, 3 bytes per model, end is 1335+64*3=1527
//#define CONFIG_EEPROM_OFFSET 1527 // Current configuration of the multimodule
/* STM32 Flash Size */
#ifndef DISABLE_FLASH_SIZE_CHECK
@@ -912,7 +979,6 @@ Serial: 100000 Baud 8e2 _ xxxx xxxx p --
FX 58
BAYANG_RX 59
PELIKAN 60
TIGER 61
XK 62
XN297DUMP 63
FRSKYX2 64
@@ -962,6 +1028,10 @@ Serial: 100000 Baud 8e2 _ xxxx xxxx p --
DSMX_1F 2
DSMX_2F 3
DSM_AUTO 4
sub_protocol==DSM_RX
DSM_RX 0
DSM_CLONE 1
DSM_ERASE 2
sub_protocol==YD717
YD717 0
SKYWLKR 1
@@ -1079,6 +1149,9 @@ Serial: 100000 Baud 8e2 _ xxxx xxxx p --
Q100 2
Q200 3
MR100 4
SLT_V1_4CH 5
RF_SIM 6
SLT6TX 7
sub_protocol==E01X
E012 0
E015 1
@@ -1089,7 +1162,7 @@ Serial: 100000 Baud 8e2 _ xxxx xxxx p --
RED_FAST 0
RED_SLOW 1
sub_protocol==TRAXXAS
RX6519 0
TQ 0
sub_protocol==ESKY150
ESKY150_4CH 0
ESKY150_7CH 1
@@ -1137,6 +1210,8 @@ Serial: 100000 Baud 8e2 _ xxxx xxxx p --
RLINK_SURFACE 0
RLINK_AIR 1
RLINK_DUMBORC 2
RLINK_RC4G 3
RLINK_DUMBORC_P 4
Power value => 0x80 0=High/1=Low
Stream[3] = option_protocol;
@@ -1164,6 +1239,7 @@ Serial: 100000 Baud 8e2 _ xxxx xxxx p --
FrSkyX and FrSkyX2: Stream[27..34] during normal operation unstuffed SPort data to be sent
HoTT: Stream[27] 1 byte for telemetry type
DSM: Stream[27..33] Forward Programming
RadioLink/DumboRC P: Stream[27..35] raw command payload, used to send failsafe and gyro settings
*/
/*
Multiprotocol telemetry/command definition for OpenTX and erskyTX
@@ -1315,4 +1391,8 @@ Serial: 100000 Baud 8e2 _ xxxx xxxx p --
data[n+3] = sub protocols text length, only sent if nbr_sub != 0
data[n+4..] = sub protocol names, only sent if nbr_sub != 0
Type 0x12 RadioLink/DumboRC P raw command payload
length: variable
data[0..] = raw command payload, used to send failsafe and gyro settings
*/

View File

@@ -104,7 +104,7 @@ uint16_t packet_period;
uint8_t packet_count;
uint8_t packet_sent;
uint8_t packet_length;
#if defined(HOTT_CC2500_INO) || defined(ESKY150V2_CC2500_INO) || defined(MLINK_CYRF6936_INO)
#if defined(HOTT_CC2500_INO) || defined(ESKY150V2_CC2500_INO) || defined(MLINK_CYRF6936_INO) || defined(ARES_CC2500_INO)
uint8_t hopping_frequency[78];
#else
uint8_t hopping_frequency[50];
@@ -130,7 +130,7 @@ uint16_t pps_counter;
#ifdef CC2500_INSTALLED
#ifdef SCANNER_CC2500_INO
uint8_t calData[255];
#elif defined(HOTT_CC2500_INO) || defined(ESKY150V2_CC2500_INO)
#elif defined(HOTT_CC2500_INO) || defined(ESKY150V2_CC2500_INO) || defined(ARES_CC2500_INO)
uint8_t calData[75];
#else
uint8_t calData[50];
@@ -265,6 +265,11 @@ uint8_t packet_in[TELEMETRY_BUFFER_SIZE];//telemetry receiving packets
uint8_t CONFIG_SerialRX_val[7];
bool CONFIG_SerialRX=false;
#endif
#ifdef RLINK_HUB_TELEMETRY
uint8_t RLINK_SerialRX_val[8];
uint8_t RLINK_SerialRX_len=0;
bool RLINK_SerialRX=false;
#endif
#endif // TELEMETRY
uint8_t multi_protocols_index=0xFF;
@@ -630,7 +635,11 @@ void setup()
option = FORCE_HOTT_TUNING; // Use config-defined tuning value for HOTT
else
#endif
option = (uint8_t)PPM_prot_line->option; // Use radio-defined option value
#if defined(FORCE_ARES_TUNING) && defined(ARES_CC2500_INO)
if (protocol==PROTO_ARES)
option = FORCE_ARES_TUNING; // Use config-defined tuning value for ARES
else
#endif option = (uint8_t)PPM_prot_line->option; // Use radio-defined option value
if(PPM_prot_line->power) POWER_FLAG_on;
if(PPM_prot_line->autobind)
@@ -1371,6 +1380,11 @@ void update_serial_data()
if (protocol==PROTO_HOTT)
option=FORCE_HOTT_TUNING; // Use config-defined tuning value for HOTT
else
#endif
#if defined(FORCE_ARES_TUNING) && defined(ARES_CC2500_INO)
if (protocol==PROTO_ARES)
option=FORCE_ARES_TUNING; // Use config-defined tuning value for ARES
else
#endif
option=rx_ok_buff[3]; // Use radio-defined option value
@@ -1577,6 +1591,15 @@ void update_serial_data()
CONFIG_SerialRX=true;
}
#endif
#ifdef RLINK_HUB_TELEMETRY
if(protocol==PROTO_RLINK && sub_protocol==RLINK_DUMBORC_P
&& rx_len>27 && rx_len<=27+sizeof(RLINK_SerialRX_val))
{//DumboRC P raw command payload from Lua/multiBuffer bridge
RLINK_SerialRX_len=rx_len-27;
memcpy(RLINK_SerialRX_val, (const void *)&rx_ok_buff[27], RLINK_SerialRX_len);
RLINK_SerialRX=true;
}
#endif
}
RX_DONOTUPDATE_off;

View File

@@ -16,13 +16,25 @@
#include "iface_nrf250k.h"
#if defined(CC2500_INSTALLED) && defined(NRF24L01_INSTALLED)
extern bool xn297_rf;
#endif
uint8_t cc2500_nrf_tx_addr[5], cc2500_nrf_addr_len;
static void __attribute__((unused)) NRF250K_SetTXAddr(uint8_t* addr, uint8_t len)
{
if (len > 5) len = 5;
if (len < 3) len = 3;
#if defined(CC2500_INSTALLED)
#if defined(CC2500_INSTALLED) && defined(NRF24L01_INSTALLED)
cc2500_nrf_addr_len = len;
memcpy(cc2500_nrf_tx_addr, addr, len);
if(xn297_rf == XN297_NRF)
{
NRF24L01_WriteReg(NRF24L01_03_SETUP_AW, len-2);
NRF24L01_WriteRegisterMulti(NRF24L01_10_TX_ADDR, addr, len);
}
#elif defined(CC2500_INSTALLED)
cc2500_nrf_addr_len = len;
memcpy(cc2500_nrf_tx_addr, addr, len);
#elif defined(NRF24L01_INSTALLED)
@@ -33,6 +45,22 @@ static void __attribute__((unused)) NRF250K_SetTXAddr(uint8_t* addr, uint8_t len
static void __attribute__((unused)) NRF250K_WritePayload(uint8_t* msg, uint8_t len)
{
#if defined(NRF24L01_INSTALLED)
#if defined(CC2500_INSTALLED)
if(xn297_rf == XN297_NRF)
#endif
{
if(len<=32)
{
NRF24L01_FlushTx();
NRF24L01_WriteReg(NRF24L01_07_STATUS, _BV(NRF24L01_07_TX_DS) | _BV(NRF24L01_07_RX_DR) | _BV(NRF24L01_07_MAX_RT));
NRF24L01_WritePayload(msg, len);
}
#if defined(CC2500_INSTALLED)
return;
#endif
}
#endif
#if defined(CC2500_INSTALLED)
#if defined(ESKY150V2_CC2500_INO)
uint8_t buf[158];
@@ -106,13 +134,6 @@ static void __attribute__((unused)) NRF250K_WritePayload(uint8_t* msg, uint8_t l
CC2500_WriteRegisterMulti(CC2500_3F_TXFIFO, buff, last);
CC2500_Strobe(CC2500_STX);
}
#elif defined(NRF24L01_INSTALLED)
if(len<=32)
{
NRF24L01_FlushTx();
NRF24L01_WriteReg(NRF24L01_07_STATUS, _BV(NRF24L01_07_TX_DS) | _BV(NRF24L01_07_RX_DR) | _BV(NRF24L01_07_MAX_RT));
NRF24L01_WritePayload(msg, len);
}
#endif
}

View File

@@ -22,7 +22,7 @@
//#define PELIKAN_LITE_FORCE_ID
#define PELIKAN_LITE_FORCE_HOP // hop sequence creation is unknown
//#define PELIKAN_SCX24_FORCE_ID
#define PELIKAN_SCX24_FORCE_HOP // hop sequence creation is unknown
//#define PELIKAN_SCX24_FORCE_HOP // hop sequence creation is unknown
#define PELIKAN_BIND_COUNT 400 // 3sec
#define PELIKAN_BIND_RF 0x3C
@@ -30,6 +30,7 @@
#define PELIKAN_PACKET_PERIOD 7980
#define PELIKAN_LITE_PACKET_PERIOD 18000
#define PELIKAN_SCX24_PACKET_PERIOD 15069
#define PELIKAN_SCX_HOP_LIMIT 90
static void __attribute__((unused)) pelikan_build_packet()
{
@@ -37,9 +38,11 @@ static void __attribute__((unused)) pelikan_build_packet()
uint8_t sum;
uint16_t channel;
#ifndef MULTI_AIR
if(sub_protocol == PELIKAN_SCX24)
packet[0] = 0x11;
else //PELIKAN_PRO & PELIKAN_LITE
#endif
packet[0] = 0x15;
if(IS_BIND_IN_PROGRESS)
{
@@ -48,6 +51,7 @@ static void __attribute__((unused)) pelikan_build_packet()
packet[4] = rx_tx_addr[2];
packet[5] = rx_tx_addr[3];
#ifndef MULTI_AIR
if(sub_protocol == PELIKAN_SCX24)
{
packet[1] = 0x65; //??
@@ -55,6 +59,7 @@ static void __attribute__((unused)) pelikan_build_packet()
packet[7] = 0xAA; //??
}
else
#endif
{//PELIKAN_PRO & PELIKAN_LITE
packet[1] = 0x04; //version??
if(sub_protocol==PELIKAN_PRO)
@@ -70,6 +75,7 @@ static void __attribute__((unused)) pelikan_build_packet()
{
//ID
packet[1] = rx_tx_addr[0];
#ifndef MULTI_AIR
if(sub_protocol == PELIKAN_SCX24)
{
//ID
@@ -95,6 +101,7 @@ static void __attribute__((unused)) pelikan_build_packet()
packet_length = 14;
}
else
#endif
{//PELIKAN_PRO & PELIKAN_LITE
//ID
packet[7] = rx_tx_addr[1];
@@ -158,6 +165,13 @@ static void __attribute__((unused)) pelikan_build_packet()
uint16_t PELIKAN_callback()
{
#ifdef MULTI_AIR
if(sub_protocol == PELIKAN_SCX24)
{
SUB_PROTO_INVALID;
return 10000;
}
#endif
if(phase==0)
{
#ifndef FORCE_PELIKAN_TUNING
@@ -172,10 +186,12 @@ uint16_t PELIKAN_callback()
A7105_Strobe(A7105_STANDBY);
if(sub_protocol==PELIKAN_PRO)
A7105_WriteReg(A7105_03_FIFOI,0x28); //????
else if(sub_protocol==PELIKAN_SCX24)
A7105_WriteReg(A7105_03_FIFOI,0x0D);
else//PELIKAN_LITE
else if(sub_protocol==PELIKAN_LITE)
A7105_WriteID(MProtocol_id);
#ifndef MULTI_AIR
else // PELIKAN_SCX24
A7105_WriteReg(A7105_03_FIFOI,0x0D);
#endif
}
}
#ifdef MULTI_SYNC
@@ -216,6 +232,82 @@ static uint8_t pelikan_firstCh(uint8_t u, uint8_t l)
return 0;
}
static uint8_t pelikan_firstCh_scx(uint8_t i, uint8_t j)
{
uint8_t ch;
switch (j) {
case 0:
ch = 30;
break;
case 1:
case 2:
ch = (i * 4) + 42;
break;
case 3:
ch = (i * 2) + 36;
break;
case 4:
ch = (i * 8) + 54;
break;
case 5:
ch = 30;
break;
}
if (ch > PELIKAN_SCX_HOP_LIMIT)
{
do
{
ch -= 62;
} while (ch > PELIKAN_SCX_HOP_LIMIT);
}
switch (ch) {
case 48:
if (j == 3)
ch += 18;
else if (j == 4)
ch += 20;
else
ch += 40;
break;
case 40:
if (j == 4)
ch += 18;
break;
case 52:
if (j < 3)
ch -= 20;
else if (j == 4)
ch -= 10;
break;
case 66:
if (j < 3)
ch += 18;
else if (j == 4)
ch -= 22;
break;
case 72:
if (j < 3)
ch -= 10;
else if (j ==3)
ch -= 20;
else if (j == 4)
ch -= 36;
break;
case 74:
if (j == 4)
ch -= 20;
break;
case 86:
if (j == 4)
ch -= 48;
break;
}
return ch;
}
static uint8_t pelikan_adjust_value(uint8_t value, uint8_t addition, uint8_t limit)
{
uint8_t i;
@@ -234,6 +326,10 @@ static uint8_t pelikan_adjust_value(uint8_t value, uint8_t addition, uint8_t lim
value += addition;
i++;
}
if (value == 72) {
value += addition;
i++;
}
}
while (i > 0);
@@ -278,6 +374,121 @@ static void __attribute__((unused)) pelikan_init_hop()
debugln("");
}
#ifndef MULTI_AIR
const uint8_t PROGMEM scx_ch_map[4][PELIKAN_NUM_RF_CHAN] =
{
{0,1,2,26,27,28,23,24,25,20,21,22,17,18,19,14,15,16,11,12,13,8,9,10,5,6,7,4,3},
{0,1,2,28,25,26,27,24,21,22,23,20,17,18,19,16,13,14,15,12,9,10,11,8,5,6,7,3,4},
{0,1,27,28,25,26,23,24,21,22,19,20,17,18,15,16,13,14,11,12,9,10,7,8,5,6,3,4,2},
{0,1,28,1,4,2,23,26,22,24,27,25,17,20,16,18,21,19,11,14,10,12,15,13,27,8,6,7,9}
};
static void pelikan_shuffle(uint8_t j)
{
uint8_t temp[PELIKAN_NUM_RF_CHAN];
for (uint8_t i = 0; i < PELIKAN_NUM_RF_CHAN; i++)
temp[i] = hopping_frequency[pgm_read_byte_near(&scx_ch_map[j-1][i])];
for (uint8_t i = 0; i < PELIKAN_NUM_RF_CHAN; i++)
hopping_frequency[i] = temp[i];
}
static void __attribute__((unused)) pelikan_init_hop_scx()
{
rx_tx_addr[0] = 0x10;
rx_tx_addr[1] = (rx_tx_addr[1] + RX_num) % 192;
debugln("TX[0]: %02X TX[1]: %02X", rx_tx_addr[0], rx_tx_addr[1]);
uint8_t high = (rx_tx_addr[1]>>4);
uint8_t low = rx_tx_addr[1] & 0x0F;
int16_t i = (high * 10) + low - 23;
uint8_t j = 0;
if (i > 0)
j = 1;
if (i > 24)
{
do
{
i -= 24;
j++;
} while (i > 24);
}
debugln("H: %02X L: %02X I: %02X J: %02X", high, low, i, j);
uint8_t first_channel;
uint8_t last_channel;
uint8_t addition;
first_channel = pelikan_firstCh_scx(i, j);
if (j == 0)
last_channel = 42 - (high * 10) - low;
else
last_channel = 42 - i + 1;
if (last_channel == 24)
last_channel += 9;
if (last_channel == 36)
last_channel -= 10;
if (j == 0)
addition = (2 * i) + 54;
else if (j == 5)
addition = (2 * i) + 6;
else
addition = 56 - (2 * i);
hopping_frequency[0] = first_channel;
for (uint8_t i = 1; i < PELIKAN_NUM_RF_CHAN; i++)
{
hopping_frequency[i] = pelikan_add(hopping_frequency[i-1], addition, PELIKAN_SCX_HOP_LIMIT);
}
if (j > 0 && j < 5)
pelikan_shuffle(j);
if (j == 2)
{
hopping_frequency[PELIKAN_NUM_RF_CHAN - 2] = last_channel;
} else if (j == 4)
{
uint8_t t = (2 * i) + 36;
if (t == 48)
t += 18;
if (t == 72)
t -= 20;
hopping_frequency[1] = t;
hopping_frequency[PELIKAN_NUM_RF_CHAN - 5] = last_channel;
}
else
{
hopping_frequency[PELIKAN_NUM_RF_CHAN - 1] = last_channel;
}
#ifdef DEBUG_SERIAL
for (uint8_t i = 0; i < PELIKAN_NUM_RF_CHAN; i++)
debug("%02X ", hopping_frequency[i]);
debugln("");
#endif
}
#ifdef PELIKAN_SCX24_FORCE_HOP
const uint8_t PROGMEM pelikan_scx24_hopp[][PELIKAN_NUM_RF_CHAN] = {
/*TX1*/ { 0x1E,0x32,0x46,0x5A,0x44,0x58,0x2E,0x42,0x56,0x2C,0x40,0x54,0x2A,0x3E,0x52,0x28,0x3C,0x50,0x26,0x3A,0x4E,0x24,0x38,0x4C,0x22,0x36,0x4A,0x20,0x1A },
/*TX2*/ { 0x2C,0x44,0x1E,0x52,0x56,0x22,0x3A,0x3E,0x34,0x4C,0x26,0x5A,0x50,0x2A,0x42,0x38,0x2E,0x46,0x20,0x54,0x4A,0x24,0x3C,0x32,0x28,0x40,0x58,0x1B,0x4E },
/*TX3*/ { 0x3C,0x4C,0x1E,0x4A,0x5A,0x2C,0x58,0x2A,0x3A,0x56,0x28,0x38,0x26,0x36,0x46,0x34,0x44,0x54,0x42,0x52,0x24,0x50,0x22,0x32,0x4E,0x20,0x40,0x3E,0x17 },
/*TX4*/ { 0x46,0x32,0x1E,0x58,0x44,0x5A,0x56,0x42,0x2E,0x54,0x40,0x2C,0x52,0x3E,0x2A,0x50,0x3C,0x28,0x4E,0x3A,0x26,0x4C,0x38,0x24,0x4A,0x36,0x22,0x20,0x1A }
};
#endif //PELIKAN_SCX24_FORCE_HOP
#endif //MULTI_AIR
#ifdef PELIKAN_FORCE_ID
const uint8_t PROGMEM pelikan_hopp[][PELIKAN_NUM_RF_CHAN] = {
{ 0x5A,0x46,0x32,0x6E,0x6C,0x58,0x44,0x42,0x40,0x6A,0x56,0x54,0x52,0x3E,0x68,0x66,0x64,0x50,0x3C,0x3A,0x38,0x62,0x4E,0x4C,0x5E,0x4A,0x36,0x5C,0x34 }
@@ -289,12 +500,6 @@ const uint8_t PROGMEM pelikan_lite_hopp[][PELIKAN_NUM_RF_CHAN] = {
{ 0x46,0x2A,0x3E,0x5A,0x5C,0x24,0x4E,0x32,0x54,0x26,0x2C,0x34,0x56,0x1E,0x3A,0x3C,0x50,0x4A,0x2E,0x42,0x20,0x52,0x28,0x22,0x44,0x58,0x36,0x38,0x4C }
};
#endif
#ifdef PELIKAN_SCX24_FORCE_HOP
const uint8_t PROGMEM pelikan_scx24_hopp[][PELIKAN_NUM_RF_CHAN] = {
{ 0x1E,0x32,0x46,0x5A,0x44,0x58,0x2E,0x42,0x56,0x2C,0x40,0x54,0x2A,0x3E,0x52,0x28,0x3C,0x50,0x26,0x3A,0x4E,0x24,0x38,0x4C,0x22,0x36,0x4A,0x20,0x1A },
{ 0x2C,0x44,0x1E,0x52,0x56,0x22,0x3A,0x3E,0x34,0x4C,0x26,0x5A,0x50,0x2A,0x42,0x38,0x2E,0x46,0x20,0x54,0x4A,0x24,0x3C,0x32,0x28,0x40,0x58,0x1B,0x4E }
};
#endif
void PELIKAN_init()
{
@@ -341,22 +546,32 @@ void PELIKAN_init()
A7105_WriteID(MProtocol_id);
packet_period = PELIKAN_LITE_PACKET_PERIOD;
}
#ifndef MULTI_AIR
else// if(sub_protocol==PELIKAN_SCX24)
{
pelikan_init_hop_scx();
#if defined(PELIKAN_SCX24_FORCE_HOP)
// Hop frequency table
uint8_t num=rx_tx_addr[3] & 0x01;
if(num)
{//1
uint8_t num=rx_tx_addr[3] & 0x03;
switch(num)
{
case 1:
rx_tx_addr[0]=0x10; // hopping freq TX2
rx_tx_addr[1]=0x63; // hopping freq TX2
}
else
{//0
break;
case 2:
rx_tx_addr[0]=0x81; // hopping freq TX3
rx_tx_addr[1]=0x63; // hopping freq TX3
break;
case 3:
rx_tx_addr[0]=0x36; // hopping freq TX4
rx_tx_addr[1]=0x5C; // hopping freq TX4
break;
default:
rx_tx_addr[0]=0x12; // hopping freq TX1
rx_tx_addr[1]=0x46; // hopping freq TX1
break;
}
for(uint8_t i=0;i<PELIKAN_NUM_RF_CHAN;i++)
hopping_frequency[i]=pgm_read_byte_near(&pelikan_scx24_hopp[num][i]);
#endif
@@ -366,12 +581,17 @@ void PELIKAN_init()
rx_tx_addr[3]=0x19; // TX1
rx_tx_addr[2]=0x80; // TX2
rx_tx_addr[3]=0x22; // TX2
rx_tx_addr[2]=0x30; // TX3
rx_tx_addr[3]=0x18; // TX3
rx_tx_addr[2]=0x30; // TX4
rx_tx_addr[3]=0x17; // TX4
#endif
A7105_WriteReg(A7105_0E_DATA_RATE,0x03);
if(IS_BIND_DONE)
A7105_WriteReg(A7105_03_FIFOI,0x0D);
packet_period = PELIKAN_SCX24_PACKET_PERIOD;
}
#endif //MULTI_AIR
}
hopping_frequency_no = PELIKAN_NUM_RF_CHAN;

View File

@@ -18,7 +18,8 @@ Multiprotocol is distributed in the hope that it will be useful,
#include "iface_xn297.h"
#define FORCE_REALACC_ORIGINAL_ID
//#define FORCE_REALACC_ORIGINAL_ID
//#define FORCE_REALACC_WLV8TX_ID
#define REALACC_INITIAL_WAIT 500
#define REALACC_PACKET_PERIOD 2268
@@ -28,9 +29,45 @@ Multiprotocol is distributed in the hope that it will be useful,
#define REALACC_BIND_COUNT 50
#define REALACC_RF_NUM_CHANNELS 5
#ifndef MULTI_AIR
#define WLV8TX_PACKET_PERIOD 16279
#define WLV8TX_BIND2_PAYLOAD_SIZE 12
#define WLV8TX_RX_PAYLOAD_SIZE 6
enum
{
REALACC_WLV8TX_BIND_TX = 0,
REALACC_WLV8TX_BIND_RX_SETUP,
REALACC_WLV8TX_BIND_RX_CHECK,
REALACC_WLV8TX_DATA
};
#endif
static uint8_t realacc_bind_packet[REALACC_BIND_PAYLOAD_SIZE];
static void __attribute__((unused)) REALACC_send_packet()
{
packet[ 0]= 0xDC;
#ifndef MULTI_AIR
if(sub_protocol == REALACC_WLV8TX)
{
packet[ 0]= 0xDC; // DC
packet[ 1]= 0x80; // not used
packet[ 2]= 0x80; // not used
packet[ 3]= convert_channel_16b_limit(CH2,0x0F,0xF1); // Throttle 0F..80..F7 (spring center)
packet[ 4]= convert_channel_16b_limit(CH1,0xE7,0x19); // Steering E7..80..1F (reversed)
packet[ 5]=(convert_channel_8b(CH3) >> 2); // GY Trim (Rate) 02..20..3D
packet[ 6]= 0x20; // Constant?
packet[ 7]= (convert_channel_8b(CH4) >> 2); // TH Trim (Rate) 02..20..3D
packet[ 8]=((convert_channel_8b(CH5) >> 2) ^ 0x3F); // ST Trim (R..C..L) 3F..20..01 (reversed)
packet[ 9]= 0x77; // Change at each power up? 07 0D 25 50 77 82 89 A5 E4
packet[10]= 0x0C; // WL-V8Tx: fixed value = 0C
packet[11]= 0x00; // Constant?
packet[12]= 0x00; // Constant?
}
else
#endif
{
packet[ 0]= 0xDC; // DC/D6/DE
packet[ 1]= convert_channel_8b(AILERON); // 00..80..FF
packet[ 2]= convert_channel_8b(ELEVATOR); // 00..80..FF
packet[ 3]= convert_channel_8b(THROTTLE); // 00..FF
@@ -39,18 +76,19 @@ static void __attribute__((unused)) REALACC_send_packet()
packet[ 6]= 0x20; // Trim
packet[ 7]= 0x20; // Trim
packet[ 8]= 0x20; // Trim
packet[ 9]= num_ch; // Change at each power up
packet[10]= 0x04 // Flag1
packet[ 9]= 0x88; // Change at each power up: C5 A2 77 F0 84 58, fixed for the E017 = 88
packet[10]= 0x04 // Flag1: R11=04, E017=0C
| 0x02 // Rate1=0, Rate2=1, Rate3=2
| GET_FLAG(CH8_SW, 0x20); // Headless
packet[11]= 0x00 // Flag2
| GET_FLAG(CH7_SW, 0x01) // Calib
| GET_FLAG(CH9_SW, 0x20) // Return
| GET_FLAG(CH10_SW,0x80); // Unknown
| GET_FLAG(CH10_SW,0x80); // Throttle cut
packet[12]= 0x00 // Flag3
| GET_FLAG(CH5_SW, 0x01) // Flip
| GET_FLAG(CH11_SW,0x02) // Rotating
| GET_FLAG(CH6_SW, 0x80); // Light
}
XN297_Hopping(hopping_frequency_no);
hopping_frequency_no++;
hopping_frequency_no %= REALACC_RF_NUM_CHANNELS;
@@ -59,30 +97,75 @@ static void __attribute__((unused)) REALACC_send_packet()
static void __attribute__((unused)) REALACC_send_bind_packet()
{
packet[0] = 0xB1;
memcpy(&packet[1],rx_tx_addr,4);
memcpy(&packet[5],hopping_frequency,5);
#ifndef MULTI_AIR
if(sub_protocol == REALACC_WLV8TX && rx_id[0])
{ // WLV8TX bind sent after RX packet B3 acknowledged
packet[0] = 0xB4;
packet[1] = rx_id[1];
packet[2] = rx_id[2];
memcpy(&packet[3], realacc_bind_packet, 4); // Original TX ID before XOR
memcpy(&packet[7], hopping_frequency, 5); // RF frequencies
XN297_WriteEnhancedPayload(packet, WLV8TX_BIND2_PAYLOAD_SIZE,1);
}
else
#endif
{ // initial bind sent for all models
packet[0] = 0xB1; // B0/B1
memcpy(&packet[1],realacc_bind_packet,4); // Address
memcpy(&packet[5],hopping_frequency,5); // RF frequencies
XN297_WriteEnhancedPayload(packet, REALACC_BIND_PAYLOAD_SIZE,1);
}
}
static void __attribute__((unused)) REALACC_initialize_txid()
{
rx_tx_addr[3] &= 0x3F;
calc_fh_channels(REALACC_RF_NUM_CHANNELS);
num_ch=random(0xfefefefe); // 00..FF
#ifdef FORCE_REALACC_ORIGINAL_ID
//Dump
if(RX_num==0)
{//TX1
rx_tx_addr[0]=0x99;
rx_tx_addr[1]=0x06;
rx_tx_addr[2]=0x00;
rx_tx_addr[3]=0x00;
rx_tx_addr[3]=0x00; // 00..3F:OK, 40..:NOK
hopping_frequency[0]=0x55;
hopping_frequency[1]=0x59;
hopping_frequency[2]=0x5A;
hopping_frequency[3]=0x5A;
hopping_frequency[4]=0x62;
num_ch=0xC5; // Value in dumps: C5 A2 77 F0 84 58
}
else
{//TX2
rx_tx_addr[0]=0x4F;
rx_tx_addr[1]=0xB9;
rx_tx_addr[2]=0xA1;
rx_tx_addr[3]=0x17;
hopping_frequency[0]=0x45;
hopping_frequency[1]=0x38;
hopping_frequency[2]=0x3C;
hopping_frequency[3]=0x41;
hopping_frequency[4]=0x3F;
}
#endif
#ifdef FORCE_REALACC_WLV8TX_ID
{
rx_tx_addr[0]=0x32;
rx_tx_addr[1]=0xE9;
rx_tx_addr[2]=0xDE;
rx_tx_addr[3]=0x0A;
hopping_frequency[0]=0x45;
hopping_frequency[1]=0x42;
hopping_frequency[2]=0x38;
hopping_frequency[3]=0x3C;
hopping_frequency[4]=0x4A;
}
#endif
memcpy(realacc_bind_packet, rx_tx_addr, 4);
#if 0
debug("ID: %02X %02X %02X %02X, C: ",rx_tx_addr[0],rx_tx_addr[1],rx_tx_addr[2],rx_tx_addr[3]);
for(uint8_t i=0; i<REALACC_RF_NUM_CHANNELS; i++)
debug(" %02X",hopping_frequency[i]);
debugln("");
#endif
}
@@ -93,12 +176,82 @@ static void __attribute__((unused)) REALACC_RF_init()
XN297_RFChannel(REALACC_BIND_RF_CHANNEL); // Set bind channel
}
#ifndef MULTI_AIR
static void __attribute__((unused)) REALACC_wlv8tx_process_rx()
{
if(!XN297_IsRX())
return;
uint8_t len = XN297_ReadEnhancedPayload(packet_in, WLV8TX_RX_PAYLOAD_SIZE);
if(len != 3)
return;
if(packet_in[0] == 0xB3 && !rx_id[0])
{
rx_id[0] = 0x01;
rx_id[1] = packet_in[1];
rx_id[2] = packet_in[2];
rx_tx_addr[2] ^= packet_in[1];
rx_tx_addr[3] ^= packet_in[2];
rx_tx_addr[3] |= 0x80;
}
else if(packet_in[0] == 0xB5 && rx_id[0])
{
BIND_DONE;
XN297_SetTXAddr(rx_tx_addr, 4);
XN297_SetTxRxMode(TXRX_OFF);
bind_phase = REALACC_WLV8TX_DATA;
}
}
#endif
uint16_t REALACC_callback()
{
#ifdef MULTI_SYNC
telemetry_set_input_sync(REALACC_PACKET_PERIOD);
#endif
XN297_SetPower();
#ifdef MULTI_AIR
if(sub_protocol == REALACC_WLV8TX)
{
SUB_PROTO_INVALID;
return 10000;
}
#else
if(sub_protocol == REALACC_WLV8TX)
{
if(bind_phase == REALACC_WLV8TX_DATA)
{
XN297_SetTxRxMode(TX_EN);
REALACC_send_packet();
return WLV8TX_PACKET_PERIOD;
}
if(bind_phase == REALACC_WLV8TX_BIND_RX_SETUP)
{
XN297_SetTxRxMode(TXRX_OFF);
XN297_SetTxRxMode(RX_EN);
bind_phase = REALACC_WLV8TX_BIND_RX_CHECK;
return WLV8TX_PACKET_PERIOD/3;
}
if(bind_phase == REALACC_WLV8TX_BIND_RX_CHECK)
{
REALACC_wlv8tx_process_rx();
if(bind_phase == REALACC_WLV8TX_DATA)
return WLV8TX_PACKET_PERIOD;
bind_phase = REALACC_WLV8TX_BIND_TX;
return WLV8TX_PACKET_PERIOD/3;
}
//Bind Phase
XN297_SetTxRxMode(TXRX_OFF);
XN297_SetTxRxMode(TX_EN);
REALACC_send_bind_packet();
bind_phase = REALACC_WLV8TX_BIND_RX_SETUP;
return WLV8TX_PACKET_PERIOD/3;
}
#endif
XN297_SetTxRxMode(TX_EN);
if(IS_BIND_IN_PROGRESS)
{
@@ -119,6 +272,19 @@ void REALACC_init()
BIND_IN_PROGRESS; // autobind protocol
REALACC_initialize_txid();
REALACC_RF_init();
#ifndef MULTI_AIR
if(sub_protocol == REALACC_WLV8TX)
{
rx_id[0] = 0; // realacc_wlv8tx_rx_b3
rx_id[1] = 0;
rx_id[2] = 0;
bind_phase = REALACC_WLV8TX_BIND_TX;
memcpy(packet, realacc_bind_packet, 4);
packet[3] |= 0x80;
XN297_SetRXAddr(packet, 4);
}
else
#endif
bind_counter=REALACC_BIND_COUNT;
hopping_frequency_no=0;
}
@@ -129,18 +295,63 @@ void REALACC_init()
// Bind
// Address = 4D 41 49 4E = 'MAIN'
// Channel = 80 (most likely from dump)
// TX1
// ---
// P(10) = B1 99 06 00 00 55 59 5A 5A 62
// B1 indicates bind packet
// Bx indicates bind packet, why x=1?
// 99 06 00 00 = ID = address of normal packets
// 55 59 5A 5A 62 = 85, 89, 90, 90, 98 = RF channels to be used (kind of match previous dumps)// Normal
// 55 59 5A 5A 62 = 85, 89, 90, 90, 98 = RF channels to be used (kind of match previous dumps)
// TX2
// ---
// P(10) = B0 4F B9 A1 17 45 38 3C 41 3F
// Bx indicates bind packet, why x=0?
// 4F B9 A1 17 = ID = address of normal packets
// 45 38 3C 41 3F = 69, 56, 60, 65, 63 = RF channels to be used
// WLtoys Car 284019A V8-Tx
// ------> TX sends
// P(10)= B1 32 E9 DE 0A 45 42 38 3C 4A
// B1 indicates bind packet
// 32 E9 DE 0A = ID -> address of normal TX packets before bind
// 45 42 38 3C 4A = 69, 66, 56, 60, 74 -> RF channels to be used
// P(12)= B4 D4 E9 32 E9 DE 0A 45 42 38 3C 4A -> B4 designates TX found RX?, P(10) to P(12), TX inserts packet[1] and [2] from RX
// 32 E9 0A E3 = ID -> address of normal TX packets after bind (XOR rx_tx_addr[2],[3] with values from RX)
// ------> RX returns
// 32 E9 DE 8A = -> RX ID address returning bind info, same as TX address except (packet[3]|0x80)
// P(3)= B3 D4 E9 = B3=bind initiates Tx found, D4=XOR with rx_tx_addr[2], E9=XOR with rx_tx_addr[3]
// P(3)= B5 D4 E9 = B5=bind completed
// P(6)= 40 83 00 00 00 00 = RX returns on some hopping channels - unknown? telemetry? not used on this model?
// Normal
// TX1
// ---
// Address = 99 06 00 00
// Channels = 84, 89, 90, 90, 98 (guess from bind)
// P(13)= DC 80 80 32 80 20 20 20 20 58 04 00 00
// DC = normal packet
// Dx = normal packet, why C ?
// 80 80 32 80 : AETR 00..80..FF
// 20 20 20 20 : Trims
// 58 : changing every time the TX restart
// 04 : |0x20=headless, |0x01=rate2, |0x02=rate3
// 00 : |0x01=calib, |0x20=return, |0x80=unknown
// 00 : |0x80=light, |0x01=flip
// TX2
// ---
// Address = 4F B9 A1 17
// P(13)= D6/DE 80 80 80 80 20 20 20 20 88 0C 00 00
// Dx = normal packet, why 6/E ?
// 80 80 32 80 : AETR 00..80..FF
// 20 20 20 20 : Trims
// 88 : not changing unknown
// 0C : |0x20=headless, |0x01=rate2, |0x02=rate3
// 00 : |0x01=calib, |0x20=return, |0x80=unknown
// 00 : |0x80=light, |0x01=flip, |0x02=Rotating
// WLtoys Car 284019A V8-Tx
// ---
// Address = 32 E9 DE 0A (before bind), 32 E9 0A E3 (after bind and XOR)
// P(13)= DC 80 80 80 80 20 20 20 20 77 0C 00 00
// Dx = normal packet, why C ?
// 80 80 80 80 : AE=80 TR 00..80..FF
// 20 20 20 20 : Gyro Rate, Constant?, Throttle Rate, Steer Trim
// 77 : changing every time the TX restart
// 0C : Constant?
// 00 : Constant?
// 00 : Constant?

View File

@@ -18,7 +18,11 @@
#include "iface_cc2500.h"
//#define RLINK_DEBUG
//#define RLINK_DEBUG_TELEM
//#define RLINK_FORCE_ID
//#define RLINK_RC4G_FORCE_ID
#define RLINK_TX_PACKET_LEN 33
#define RLINK_RX_PACKET_LEN 15
@@ -33,6 +37,7 @@ enum {
uint32_t RLINK_rand1;
uint32_t RLINK_rand2;
uint32_t RLINK_pseudo;
static uint32_t __attribute__((unused)) RLINK_prng_next(uint32_t r)
{
@@ -89,24 +94,103 @@ static void __attribute__((unused)) RLINK_hop()
RLINK_shuffle_freqs(RLINK_compute_start_id(rx_tx_addr[0] + (rx_tx_addr[1] << 8)));
RLINK_shuffle_freqs(RLINK_compute_start_id(rx_tx_addr[2] + (rx_tx_addr[3] << 8)));
// replace one of the channel randomely
// replace one of the channel randomly
rf_ch_num=random(0xfefefefe)%0x11; // 0x00..0x10
if(inc==9) inc=6; // frequency exception
hopping_frequency[rf_ch_num]=12*16+inc;
}
static void __attribute__((unused)) RLINK_hop_RC4G()
{
// Find 2 unused channels
// first channel is a multiple of 3 between 00 and 5D
// second channel is a multiple of 3 between 63 and BD
CC2500_Strobe(CC2500_SIDLE);
CC2500_WriteReg(CC2500_17_MCSM1,0x3C);
CC2500_Strobe(CC2500_SFRX);
CC2500_SetTxRxMode(RX_EN);
CC2500_Strobe(CC2500_SRX);
delayMilliseconds(1); //wait for RX mode
uint16_t val;
uint8_t val_low = 0xFF;
hopping_frequency[0] = 0x00;
hopping_frequency[1] = 0x63;
for(uint8_t ch=0; ch<=0xBD; ch+=3)
{
if(ch==0x63)
val_low = 0xFF; //init for second block
if(ch==0x60)
continue; //skip channel
CC2500_WriteReg(CC2500_0A_CHANNR, ch); //switch channel
delayMicroseconds(370); //wait to read
val = 0;
for(uint8_t i=0;i<16;i++)
val += CC2500_ReadReg(CC2500_34_RSSI | CC2500_READ_BURST);
val >>= 4;
debug("C:%02X RSSI:%02X",ch,val);
if(val_low > val)
{
debug(" OK");
val_low = val;
hopping_frequency[ch<0x63?0:1]=ch; //save best channel
}
debugln("");
}
CC2500_WriteReg(CC2500_17_MCSM1,0x30);
CC2500_Strobe(CC2500_SIDLE);
CC2500_SetTxRxMode(TX_EN);
#ifdef RLINK_RC4G_FORCE_ID
hopping_frequency[0] = 0x03;
hopping_frequency[1] = 0x6F;
#endif
}
// calc next pseudo random value
static void __attribute__((unused)) RLINK_next_pseudo()
{
RLINK_pseudo = ((RLINK_pseudo * 0xAA) + 0x03) % 0x7673;
}
static void __attribute__((unused)) RLINK_set_next_channel()
{
CC2500_WriteReg(CC2500_0A_CHANNR, hopping_frequency[RLINK_pseudo & 0x0F]);
}
static uint8_t __attribute__((unused)) RLINK_checksum(const uint8_t *data, uint8_t payload_len, bool include_id=false)
{
uint8_t sum=0;
for(uint8_t i=0;i<payload_len;i++)
sum+=data[i];
if(include_id)
for(uint8_t i=0;i<RLINK_TX_ID_LEN;i++)
sum+=rx_tx_addr[i];
return sum;
}
static void __attribute__((unused)) RLINK_TXID_init()
{
#ifdef RLINK_RC4G_FORCE_ID
//TODO: test any ID
if(sub_protocol==RLINK_RC4G)
{
rx_tx_addr[1]=0x77;
rx_tx_addr[2]=0x00;
rx_tx_addr[3]=0x00;
}
#endif
#ifdef RLINK_FORCE_ID
//surface RC6GS
memcpy(rx_tx_addr,"\x3A\x99\x22\x3A",RLINK_TX_ID_LEN);
//air T8FB
//memcpy(rx_tx_addr,"\xFC\x11\x0D\x20",RLINK_TX_ID_LEN);
if(sub_protocol==RLINK_SURFACE)
memcpy(rx_tx_addr,"\x3A\x99\x22\x3A",RLINK_TX_ID_LEN); //surface RC6GS
else
memcpy(rx_tx_addr,"\xFC\x11\x0D\x20",RLINK_TX_ID_LEN); //air T8FB
#endif
// channels order depend on ID
if(sub_protocol==RLINK_RC4G)
RLINK_hop_RC4G();
else
RLINK_hop();
#if 0
#ifdef RLINK_DEBUG
debug("ID:");
for(uint8_t i=0;i<RLINK_TX_ID_LEN;i++)
debug(" 0x%02X",rx_tx_addr[i]);
@@ -133,11 +217,13 @@ static void __attribute__((unused)) RLINK_rf_init()
for (uint8_t i = 0; i < 39; ++i)
CC2500_WriteReg(i, pgm_read_byte_near(&RLINK_init_values[i]));
if(sub_protocol==RLINK_DUMBORC)
if(sub_protocol == RLINK_DUMBORC || sub_protocol == RLINK_DUMBORC_P)
{
CC2500_WriteReg(4, 0xBA);
CC2500_WriteReg(5, 0xDC);
}
else if(sub_protocol==RLINK_RC4G)
CC2500_WriteReg(5, 0xA5);
CC2500_WriteReg(CC2500_0C_FSCTRL0, option);
@@ -146,7 +232,6 @@ static void __attribute__((unused)) RLINK_rf_init()
static void __attribute__((unused)) RLINK_send_packet()
{
static uint32_t pseudo=0;
uint32_t bits = 0;
uint8_t bitsavailable = 0;
uint8_t idx = 6;
@@ -165,14 +250,15 @@ static void __attribute__((unused)) RLINK_send_packet()
{
case RLINK_SURFACE:
packet[1] |= 0x01;
//radiolink additionnal ID which is working only on a small set of RXs
//radiolink additional ID which is working only on a small set of RXs
//if(RX_num) packet[1] |= ((RX_num+2)<<4)+4; // RX number limited to 10 values, 0 is a wildcard
break;
case RLINK_AIR:
packet[1] |= 0x21; //air 0x21 on dump but it looks to support telemetry at least RSSI
break;
case RLINK_DUMBORC:
packet[1] = 0x00; //always 0x00 on dump
case RLINK_DUMBORC_P:
packet[1] |= 0x01; //always 0x00 on dump but does appear to support telemtry on newer transmitters
break;
}
@@ -198,19 +284,16 @@ static void __attribute__((unused)) RLINK_send_packet()
}
// hop
pseudo=((pseudo * 0xAA) + 0x03) % 0x7673; // calc next pseudo random value
CC2500_WriteReg(CC2500_0A_CHANNR, hopping_frequency[pseudo & 0x0F]);
packet[28]= pseudo;
packet[29]= pseudo >> 8;
RLINK_next_pseudo();
RLINK_set_next_channel();
packet[28]= RLINK_pseudo;
packet[29]= RLINK_pseudo >> 8;
packet[30]= 0x00; // unknown
packet[31]= 0x00; // unknown
packet[32]= rf_ch_num; // index of value changed in the RF table
// check
uint8_t sum=0;
for(uint8_t i=1;i<33;i++)
sum+=packet[i];
packet[33]=sum;
packet[33]=RLINK_checksum(&packet[1], RLINK_TX_PACKET_LEN-1);
// send packet
CC2500_WriteData(packet, RLINK_TX_PACKET_LEN+1);
@@ -219,18 +302,156 @@ static void __attribute__((unused)) RLINK_send_packet()
packet_count++;
if(packet_count>5) packet_count=0;
//debugln("C= 0x%02X",hopping_frequency[pseudo & 0x0F]);
//debug("P=");
//for(uint8_t i=1;i<RLINK_TX_PACKET_LEN+1;i++)
// debug(" 0x%02X",packet[i]);
//debugln("");
#ifdef RLINK_DEBUG
debugln("C= 0x%02X",hopping_frequency[RLINK_pseudo & 0x0F]);
debug("P=");
for(uint8_t i=1;i<RLINK_TX_PACKET_LEN+1;i++)
debug(" 0x%02X",packet[i]);
debugln("");
#endif
}
#ifdef RLINK_HUB_TELEMETRY
static bool __attribute__((unused)) RLINK_DUMBORC_send_command()
{
if(!RLINK_SerialRX || sub_protocol != RLINK_DUMBORC_P)
return false;
RLINK_SerialRX=false;
if(RLINK_SerialRX_len > sizeof(RLINK_SerialRX_val))
return false;
CC2500_Strobe(CC2500_SIDLE);
RLINK_next_pseudo();
RLINK_set_next_channel();
packet[0] = RLINK_SerialRX_len;
memcpy(&packet[1], RLINK_SerialRX_val, RLINK_SerialRX_len);
packet[2] = RLINK_pseudo;
packet[3] = RLINK_pseudo >> 8;
// special packages have id check embedded in checksum
packet[RLINK_SerialRX_len] = RLINK_checksum(&packet[1], RLINK_SerialRX_len - 1, true);
CC2500_WriteData(packet, RLINK_SerialRX_len + 1);
packet_count++;
if(packet_count>5) packet_count=0;
#ifdef RLINK_DEBUG
debugln("C= 0x%02X",hopping_frequency[RLINK_pseudo & 0x0F]);
debug("DumboRC P command=");
for(uint8_t i=1;i<packet[0]+1;i++)
debug(" 0x%02X",packet[i]);
debugln("");
#endif
return true;
}
#endif
// logic is rougly copied from ddf-350, which in itself seems to be based on cc2500 docs
static uint8_t __attribute__((unused)) RLINK_DUMBORC_tele_rssi_as_percent(uint8_t rssi)
{
if(rssi < 15)
rssi=15;
else if(rssi > 90)
rssi=90;
return ((90 - rssi) * 100) / 75;
}
static bool __attribute__((unused)) RLINK_DUMBORC_validate_telemetry_packet(const uint8_t *data)
{
const uint8_t declaredLen = data[0];
if(data[1] == 0x00)
{
// telemetry package follows base radiolink procotol with slightly less rules
if(declaredLen != RLINK_RX_PACKET_LEN || memcmp(&data[2], rx_tx_addr, RLINK_TX_ID_LEN) != 0)
return false;
// telemetry packages do not have id check embeeded in checksum, just like base RadioLink
return data[RLINK_RX_PACKET_LEN] == RLINK_checksum(&data[1], RLINK_RX_PACKET_LEN - 1);
}
if(sub_protocol != RLINK_DUMBORC_P)
return false;
// special packages have id check embedded in checksum
return data[declaredLen] == RLINK_checksum(&data[1], declaredLen - 1, true);
}
#ifndef MULTI_AIR
static void __attribute__((unused)) RLINK_RC4G_send_packet()
{
uint32_t val;
//hop
CC2500_WriteReg(CC2500_0A_CHANNR, hopping_frequency[packet_count>>1]);
#ifdef RLINK_DEBUG
debug("C= 0x%02X ",hopping_frequency[packet_count>>1]);
#endif
// packet length
packet[0] = 0x0F;
//address
memcpy(&packet[1], &rx_tx_addr[1], 3);
//channels
for(uint8_t i=0;i<2;i++)
{
val = Channel_data[2*i ] +400 -24;
packet[4+i*2] = val;
packet[8+i ] = val>>8;
val = Channel_data[2*i+1] +400 -24;
packet[5+i*2] = val;
packet[8+i ] |= (val>>4) & 0xF0;
}
//special channel which is linked to gyro on the original TX but allocating it on CH5 here
packet[10] = convert_channel_16b_limit(CH5,0,100);
//failsafe
for(uint8_t i=0;i<4;i++)
packet[11+i] = convert_channel_16b_limit(CH6+i,0,200);
//next hop
packet_count++;
packet_count &= 0x03;
packet[15] = hopping_frequency[packet_count>>1];
// send packet
CC2500_WriteData(packet, 16);
#ifdef RLINK_DEBUG
debug("P=");
for(uint8_t i=1;i<16;i++)
debug(" 0x%02X",packet[i]);
debugln("");
#endif
}
#endif
#if defined RLINK_HUB_TELEMETRY
uint16_t RLINK_timing_last_rfsend = 0;
#endif
#define RLINK_TIMING_PROTO 20000-100 // -100 for compatibility with R8EF
#define RLINK_TIMING_RFSEND 10500
#define RLINK_TIMING_CHECK 2000
#define RLINK_RC4G_TIMING_PROTO 14460
#define RLINK_DUMBORC_COMMAND_RFSEND 5000
uint16_t RLINK_callback()
{
if(sub_protocol == RLINK_RC4G)
{
#ifndef MULTI_AIR
#ifdef MULTI_SYNC
telemetry_set_input_sync(RLINK_RC4G_TIMING_PROTO);
#endif
CC2500_SetPower();
CC2500_SetFreqOffset();
RLINK_RC4G_send_packet();
#else
SUB_PROTO_INVALID;
#endif
return RLINK_RC4G_TIMING_PROTO;
}
switch(phase)
{
case RLINK_DATA:
@@ -239,46 +460,96 @@ uint16_t RLINK_callback()
#endif
CC2500_SetPower();
CC2500_SetFreqOffset();
RLINK_send_packet();
#if not defined RLINK_HUB_TELEMETRY
return RLINK_TIMING_PROTO;
RLINK_send_packet();
return RLINK_TIMING_PROTO; // RLINK_DATA
#else
if(RLINK_DUMBORC_send_command())
{
phase++; // RX1
RLINK_timing_last_rfsend = RLINK_DUMBORC_COMMAND_RFSEND;
return RLINK_timing_last_rfsend;
}
RLINK_send_packet();
if(!(packet[1]&0x02))
return RLINK_TIMING_PROTO; //Normal packet
return RLINK_TIMING_PROTO; // Normal packet -> RLINK_DATA
// Telemetry packet
phase++; // RX1
return RLINK_TIMING_RFSEND;
RLINK_timing_last_rfsend = RLINK_TIMING_RFSEND;
return RLINK_timing_last_rfsend;
case RLINK_RX1:
CC2500_Strobe(CC2500_SIDLE);
CC2500_Strobe(CC2500_SFRX);
CC2500_SetTxRxMode(RX_EN);
CC2500_Strobe(CC2500_SRX);
phase++; // RX2
return RLINK_TIMING_PROTO-RLINK_TIMING_RFSEND-RLINK_TIMING_CHECK;
return RLINK_TIMING_PROTO-RLINK_timing_last_rfsend-RLINK_TIMING_CHECK;
case RLINK_RX2:
len = CC2500_ReadReg(CC2500_3B_RXBYTES | CC2500_READ_BURST) & 0x7F;
if (len == RLINK_RX_PACKET_LEN + 1 + 2) //Telemetry frame is 15 bytes + 1 byte for length + 2 bytes for RSSI&LQI&CRC
const bool dumborc_family = sub_protocol == RLINK_DUMBORC || sub_protocol == RLINK_DUMBORC_P;
//Telemetry frame is 15 bytes + 1 byte for length + 2 bytes for RSSI&LQI&CRC
const bool rlink_telem_len = !dumborc_family && len == RLINK_RX_PACKET_LEN + 1 + 2;
// length byte + type byte + checksum byte + RSSI/LQI/CRC
const bool dumborc_len = dumborc_family && len >= 5 && len <= sizeof(packet_in);
if (rlink_telem_len || dumborc_len)
{
//debug("Telem:");
#ifdef RLINK_DEBUG_TELEM
debug("Telem:");
#endif
CC2500_ReadData(packet_in, len);
if(packet_in[0]==RLINK_RX_PACKET_LEN && (packet_in[len-1] & 0x80) && memcmp(&packet[2],rx_tx_addr,RLINK_TX_ID_LEN)==0 && packet_in[6]==packet[1])
{//Correct telemetry received: length, CRC, ID and type
//Debug
//for(uint8_t i=0;i<len;i++)
// debug(" %02X",packet_in[i]);
if(len >= 3 && packet_in[0] == len - 3 && (packet_in[len-1] & 0x80))
{//Telemetry received with correct length and CC2500 CRC
#ifdef RLINK_DEBUG_TELEM
for(uint8_t i=0;i<len;i++)
debug(" %02X",packet_in[i]);
#endif
bool valid_telem=false;
if(dumborc_family)
{
if(RLINK_DUMBORC_validate_telemetry_packet(packet_in))
{
if(packet_in[1] == 0x00)
{
uint8_t tele_rssi = RLINK_DUMBORC_tele_rssi_as_percent(packet_in[7]);
uint16_t ext_v = packet_in[9] | (((uint16_t)packet_in[10]) << 8);
uint16_t direct_rssi = packet_in[11] | (((uint16_t)packet_in[12]) << 8);
direct_rssi = direct_rssi > 100 ? 100 : direct_rssi;
RX_RSSI = direct_rssi ? direct_rssi : tele_rssi;
v_lipo1 = 0; //Has no RX batt
v_lipo2 = ext_v > 255 ? 255 : ext_v; //Batt in same position as base radiolink
valid_telem=true;
}
else if(sub_protocol == RLINK_DUMBORC_P)
{
telemetry_link=2; // Raw DumboRC P packet to Lua/multiBuffer handling.
pps_counter++;
}
}
}
else if(packet_in[0] == RLINK_RX_PACKET_LEN && memcmp(&packet[2],rx_tx_addr,RLINK_TX_ID_LEN)==0 && packet_in[6]==packet[1])
{
RX_RSSI=packet_in[7]&0x7F; //Should be packet_in[7]-256 but since it's an uint8_t...
v_lipo1=packet_in[8]<<1; //RX Batt
v_lipo2=packet_in[9]; //Batt
valid_telem=true;
}
if(valid_telem)
{
TX_RSSI = packet_in[len-2];
if(TX_RSSI >=128)
TX_RSSI -= 128;
else
TX_RSSI += 128;
RX_RSSI=packet_in[7]&0x7F; //Should be packet_in[7]-256 but since it's an uint8_t...
v_lipo1=packet_in[8]<<1; //RX Batt
v_lipo2=packet_in[9]; //Batt
telemetry_link=1; //Send telemetry out
pps_counter++;
packet_count=0;
}
//debugln("");
}
#ifdef RLINK_DEBUG_TELEM
debugln("");
#endif
}
if (millis() - pps_timer >= 2000)
{//1 telemetry packet every 100ms

View File

@@ -0,0 +1,308 @@
/*
This project is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
Multiprotocol is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with Multiprotocol. If not, see <http://www.gnu.org/licenses/>.
*/
// Compatible with SGF22, ParkTen F22S, KF700 J20
#if defined(SGF22_NRF24L01_INO)
#include "iface_xn297.h"
//#define FORCE_SGF22_ORIGINAL_ID
#define FORCE_SGF22_CX10_ORIGINAL_ID
#define SGF22_PACKET_PERIOD 11950 //10240
#define SGF22_PAYLOAD_SIZE 12
#define SGF22_BIND_COUNT 50
#define SGF22_RF_NUM_CHANNELS 4
#define SGF22_BIND_RF_CHANNEL 78
#define SGF22_F22S_BIND_RF_CHANNEL 10
#define SGF22_J20_BIND_RF_CHANNEL 28
#define SGF22_CX10_BIND_RF_CHANNEL 48
//packet[8]
#define SGF22_FLAG_3D 0x00
#define SGF22_FLAG_LIGHT 0x04
#define SGF22_FLAG_ROLL 0x08
#define SGF22_FLAG_VIDEO 0x10
#define SGF22_FLAG_6G 0x40
#define SGF22_FLAG_VERTICAL 0xC0
#define SGF22_J20_FLAG_HORIZONTAL 0x80
//#define SGF22_J20_FLAG_SPEED 0x01 // Up/Down trim, not implemented
#define SGF22_FX922_FLAG_BALANCEHIGH 0x01
#define SGF22_FX922_FLAG_BALANCE 0x02
//packet[9]
#define SGF22_FLAG_TRIMRESET 0x04
#define SGF22_FLAG_PHOTO 0x40 // #define SGF22_J20_FLAG_INVERT 0x40
#define SGF22_J20_FLAG_FIXHEIGHT 0x80
#define SGF22_WRITE_TIME 1000
enum {
SGF22_DATA1,
SGF22_DATA2,
SGF22_DATA3,
SGF22_RX,
};
static void __attribute__((unused)) SGF22_send_packet()
{
if(IS_BIND_IN_PROGRESS)
{
packet[ 0] = 0x5B;
packet[ 8] = 0x00; // ??? do they have to be 0 for bind to succeed ?
packet[ 9] = 0x00; // ??? do they have to be 0 for bind to succeed ?
packet[10] = 0xAA;
packet[11] = 0x55;
}
else
{
//hop
XN297_Hopping(packet_sent & 0x03); // ??? from the dumps I can't really say how hop and seq are sync, there could be an offset (0,1,2,3)...
//sequence from 02 to 7A by increments of 4, sometimes with a flag 0x80 from 82 to FA, I can't tell from the dumps when the switch happens
if( (packet_sent & 0x03) == 0x02)
packet_count = packet_sent;
packet_sent++;
if(packet_sent > 0x7B)
packet_sent = 0;
//packet
packet[0] = 0x1B;
if (sub_protocol != SGF22_CX10)
{//SGF22_F22,SGF22_F22S,SGF22_J20
packet[8] = SGF22_FLAG_3D // CH5 -100%, F22 & F22S - 3D mode, J20 - Gyro off
| GET_FLAG(CH6_SW, SGF22_FLAG_ROLL) // roll
| GET_FLAG(CH7_SW, SGF22_FLAG_LIGHT) // push up throttle trim for light in the stock TX
| GET_FLAG(CH9_SW, SGF22_FLAG_VIDEO) // push down throttle trim for video in the stock TX
| GET_FLAG(CH11_SW, SGF22_FX922_FLAG_BALANCE)
| GET_FLAG(CH12_SW, SGF22_FX922_FLAG_BALANCEHIGH);
if(Channel_data[CH5] > CHANNEL_MAX_COMMAND)
packet[8] |= SGF22_FLAG_VERTICAL; // CH5 100%, vertical mode (torque)
else if(Channel_data[CH5] > CHANNEL_MIN_COMMAND )
packet[8] |= ( sub_protocol == SGF22_J20 ? SGF22_J20_FLAG_HORIZONTAL : SGF22_FLAG_6G ); // CH5 0%, F22 & F22S - 6G mode, J20 - Horizontal mode
}
else //SGF22_CX10 114548
{
if(CH6_SW)
flags = 0x06; // high rate
else
if(Channel_data[CH6] < CHANNEL_MIN_COMMAND)
flags = 0x04; // low rate
else
flags = 0x05; // mid rate
packet[8] = flags
| GET_FLAG(CH5_SW, 0x08); // flip
}
packet[9] = GET_FLAG(CH8_SW, SGF22_FLAG_PHOTO) // F22: photo, press in throttle trim in the stock TX, J20: invert flight
| GET_FLAG(CH10_SW, ( sub_protocol == SGF22_J20 ? SGF22_J20_FLAG_FIXHEIGHT : SGF22_FLAG_TRIMRESET )) ; // F22: Both sticks down inwards in the stock TX, J20: Altitude hold
packet[10] = 0x42; // no fine tune
packet[11] = 0x10; // no fine tune
}
if(sub_protocol == SGF22_F22S)
packet[0] += 6;
else if (sub_protocol == SGF22_J20)
packet[0] += 3;
else if (sub_protocol == SGF22_CX10)
packet[0] += 0x6A;
packet[1] = packet_count; // sequence
packet[2] = rx_tx_addr[2];
packet[3] = rx_tx_addr[3];
packet[4] = convert_channel_8b(THROTTLE);
packet[5] = convert_channel_8b(RUDDER);
packet[6] = convert_channel_8b(ELEVATOR);
packet[7] = convert_channel_8b(AILERON);
XN297_SetPower();
XN297_SetTxRxMode(TX_EN);
if (sub_protocol != SGF22_CX10)
XN297_WriteEnhancedPayload(packet, SGF22_PAYLOAD_SIZE,0);
else
XN297_WritePayload(packet, SGF22_PAYLOAD_SIZE);
#if 0
debug_time("");
for(uint8_t i=0; i<SGF22_PAYLOAD_SIZE; i++)
debug(" %02X",packet[i]);
debugln("");
#endif
}
static void __attribute__((unused)) SGF22_initialize_txid()
{
uint16_t val = ( rx_tx_addr[2] << 8 ) | rx_tx_addr[3];
if ( rx_tx_addr[2] > ( 0xFF - rx_tx_addr[3]) )
val--;
val %= 5;
const uint8_t hop[5][4] =
{ { 0x0C, 0x2A, 0x1B, 0x39 },
{ 0x0F, 0x2D, 0x1E, 0x3D },
{ 0x12, 0x31, 0x21, 0x41 },
{ 0x15, 0x34, 0x24, 0x44 },
{ 0x18, 0x37, 0x27, 0x47 } };
memcpy(hopping_frequency, &hop[val], SGF22_RF_NUM_CHANNELS);
/*//Same code size...
hopping_frequency[0] = 0x0C + 3 * val;
hopping_frequency[1] = hopping_frequency[0] + 0x1E;
if(val > 1) hopping_frequency[1]++;
hopping_frequency[2] = hopping_frequency[0] + 0x0F;
hopping_frequency[3] = hopping_frequency[1] + 0x0F;
if(val ) hopping_frequency[3]++;*/
#ifdef FORCE_SGF22_ORIGINAL_ID
rx_tx_addr[2] = 0x1F; // TX2:27 TX3:2B
rx_tx_addr[3] = 0x61; // TX2:51 TX3:0C
memcpy(hopping_frequency,"\x15\x34\x24\x44", SGF22_RF_NUM_CHANNELS); //Original dump=>21=0x15,52=0x34,36=0x24,68=0x44
#endif
#ifdef FORCE_SGF22_CX10_ORIGINAL_ID
if(sub_protocol == SGF22_CX10)
{
if(rx_tx_addr[3] & 1)
{
rx_tx_addr[2] = 0x4C;
rx_tx_addr[3] = 0xD7;
memcpy(hopping_frequency, "\x37\x42\x47\x3c", SGF22_RF_NUM_CHANNELS);
}
else
{
rx_tx_addr[2] = 0x50;
rx_tx_addr[3] = 0xE1;
memcpy(hopping_frequency, "\x3b\x4b\x46\x41", SGF22_RF_NUM_CHANNELS);
}
}
#endif
#if 0
debug("ID: %02X %02X, C: ",rx_tx_addr[2],rx_tx_addr[3]);
for(uint8_t i=0; i<SGF22_RF_NUM_CHANNELS; i++)
debug(" %02X",hopping_frequency[i]);
debugln("");
#endif
}
static void __attribute__((unused)) SGF22_RF_init()
{
XN297_Configure(XN297_CRCEN, XN297_SCRAMBLED, XN297_1M);
XN297_SetTXAddr((uint8_t*)"\xC7\x95\x3C\xBB\xA5", 5);
#ifdef SGF22_HUB_TELEMETRY
XN297_SetRXAddr((uint8_t*)"\xC7\x95\x3C\xBB\xA5", SGF22_PAYLOAD_SIZE);
#endif
const uint8_t bind_chan[] = {SGF22_BIND_RF_CHANNEL, SGF22_F22S_BIND_RF_CHANNEL, SGF22_J20_BIND_RF_CHANNEL, SGF22_CX10_BIND_RF_CHANNEL};
XN297_RFChannel(bind_chan[sub_protocol]); // Set bind channel
}
uint16_t SGF22_callback()
{
#ifdef SGF22_HUB_TELEMETRY
bool rx = false;
static uint8_t telem_count = 0;
#endif
switch(phase)
{
case SGF22_DATA1:
#ifdef MULTI_SYNC
telemetry_set_input_sync(SGF22_PACKET_PERIOD);
#endif
#ifdef SGF22_HUB_TELEMETRY
rx = XN297_IsRX();
XN297_SetTxRxMode(TXRX_OFF);
#endif
SGF22_send_packet();
if(IS_BIND_IN_PROGRESS)
{
if(--bind_counter==0)
BIND_DONE;
}
#ifdef SGF22_HUB_TELEMETRY
if(rx)
{
uint8_t p_len = XN297_ReadEnhancedPayload(packet_in, SGF22_PAYLOAD_SIZE);
if(p_len == 3 && packet_in[0] == rx_tx_addr[2] && packet_in[1] == rx_tx_addr[3])
{//packets: 00 0B 00 -> 00 0B 01
telemetry_link = 1;
v_lipo1 = packet_in[2] ? 0 : 255; //2.9V for 1S, 7.0V for 2S
telemetry_lost = 0;
telem_count = 0;
}
#if 0
debug("L %d ",p_len);
debug("RX");
for(uint8_t i=0; i<SGF22_PAYLOAD_SIZE; i++)
debug(" %02X",packet_in[i]);
debugln("");
#endif
}
if(telem_count > 4*63) // Around 3.5sec with no telemetry
telemetry_lost = 1;
else
{
telem_count++;
if(!telemetry_lost && (telem_count & 0x3F) == 0)
{// Should have received a telem packet but... Send telem to the radio to keep it alive
telemetry_link = 1;
#if 0
debugln("Miss");
#endif
}
}
#endif
phase++;
break;
case SGF22_DATA2:
case SGF22_DATA3:
//send 3 times in total the same packet
XN297_ReSendPayload();
phase++;
break;
default: //SGF22_RX
#ifdef SGF22_HUB_TELEMETRY
/*{ // Wait for packet to be sent before switching to receive mode
uint16_t start=(uint16_t)micros(), count=0;
while ((uint16_t)((uint16_t)micros()-(uint16_t)start) < 500)
{
if(XN297_IsPacketSent())
break;
count++;
}
debugln("%d",count);
}*/
//Switch to RX
XN297_SetTxRxMode(TXRX_OFF);
XN297_SetTxRxMode(RX_EN);
#endif
phase = SGF22_DATA1;
return SGF22_PACKET_PERIOD - 3*1550;
}
return 1550;
}
void SGF22_init()
{
BIND_IN_PROGRESS; // autobind protocol
SGF22_initialize_txid();
SGF22_RF_init();
bind_counter=SGF22_BIND_COUNT;
packet_sent = packet_count = 0x26; // TX2:26 TX3:26
phase = SGF22_DATA1;
#ifdef SGF22_HUB_TELEMETRY
RX_RSSI = 100; // Dummy value
telemetry_lost = 1;
#endif
}
#endif

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@@ -0,0 +1,232 @@
/*
This project is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
Multiprotocol is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with Multiprotocol. If not, see <http://www.gnu.org/licenses/>.
*/
#if defined(SHENQI2_NRF24L01_INO)
#include "iface_xn297.h"
//#define FORCE_SHENQI2_ORIGINAL_ID
#define SHENQI2_PAYLOAD_SIZE 8
#define SHENQI2_RF_NUM_CHANNELS 16
#define SHENQI2_BIND_COUNT 2000
#define SHENQI2_WRITE_TIME 650
#define SHENQI2_BIND_CHANNEL 44
#define SHENQI2_PACKET_PERIOD 8210
enum {
SHENQI2_BIND = 0,
SHENQI2_BIND_RX,
SHENQI2_DATA,
};
static void __attribute__((unused)) SHENQI2_send_packet()
{
if(bind_counter)
{
bind_counter--;
if(!bind_counter)
BIND_DONE;
}
memset(packet, 0x00, SHENQI2_PAYLOAD_SIZE);
packet_count &= 0x0F;
packet[0] = packet_count;
memcpy(&packet[1],rx_tx_addr,5);
if(IS_BIND_DONE)
{//Normal
uint8_t val = convert_channel_8b(CH2);
if(val < 0x70)
val = 0x30;
else if(val < 0x80)
val = 0x00;
else
{
val &= 0x7F;
val >>= 2;
}
if(Channel_data[CH1] > 1024+50)
val |= 0x40;
else if(Channel_data[CH1] < 1024-50)
val |= 0x80;
packet[6] = val;
//packet[7] = 0x00; // ??
}
else
packet[0] |= 0x30;
// Send
XN297_SetPower();
XN297_SetTxRxMode(TX_EN);
XN297_WriteEnhancedPayload(packet, SHENQI2_PAYLOAD_SIZE, false);
#ifdef DEBUG_SERIAL
for(uint8_t i=0; i < SHENQI2_PAYLOAD_SIZE; i++)
debug("%02X ", packet[i]);
debugln();
#endif
}
static void __attribute__((unused)) SHENQI2_initialize_txid()
{
#ifdef FORCE_SHENQI2_ORIGINAL_ID
//TXID
rx_tx_addr[0] = 0x51;
rx_tx_addr[1] = 0x70;
rx_tx_addr[2] = 0x02;
//RXID
rx_tx_addr[3] = 0x46;
rx_tx_addr[4] = 0xBE;
#endif
rx_tx_addr[3] = 0x00;
rx_tx_addr[4] = 0x00;
//Freq
memcpy(hopping_frequency,(uint8_t*)"\x05\x09\x0E\x0F\x17\x1C\x21\x27\x2A\x2C\x33\x39\x3D\x42\x48\x4C",16);
}
static void __attribute__((unused)) SHENQI2_RF_init()
{
XN297_Configure(XN297_CRCEN, XN297_SCRAMBLED, XN297_1M);
//Address
XN297_SetTXAddr((uint8_t*)"\x74\xD1\x3A\xF5\x6C", 5);
XN297_SetRXAddr((uint8_t*)"\x74\xD1\x3A\xF5\x6C", SHENQI2_PAYLOAD_SIZE);
XN297_RFChannel(SHENQI2_BIND_CHANNEL);
}
uint16_t SHENQI2_callback()
{
static bool rx=false;
switch(phase)
{
case SHENQI2_BIND:
rx = XN297_IsRX();
XN297_SetTxRxMode(TXRX_OFF);
SHENQI2_send_packet();
packet_count++;
if(rx)
{
uint8_t val=XN297_ReadEnhancedPayload(packet_in, SHENQI2_PAYLOAD_SIZE);
if(val == SHENQI2_PAYLOAD_SIZE)
{
if(memcmp(rx_tx_addr, packet_in, 3) == 0)
{//Good packet with our TXID
BIND_DONE;
rx_tx_addr[3] = packet_in[3];
rx_tx_addr[4] = packet_in[4];
packet_count = 0;
phase = SHENQI2_DATA;
}
#ifdef DEBUG_SERIAL
for(uint8_t i=0; i < SHENQI2_PAYLOAD_SIZE; i++)
debug(" %02X", packet_in[i]);
debugln();
#endif
}
}
phase++;
return SHENQI2_WRITE_TIME;
case SHENQI2_BIND_RX:
XN297_SetTxRxMode(TXRX_OFF);
XN297_SetTxRxMode(RX_EN);
phase = SHENQI2_BIND;
return SHENQI2_PACKET_PERIOD - SHENQI2_WRITE_TIME;
default: //SHENQI2_DATA
//Since I don't know the order of the channels, I'm hopping on all the channels quickly
//Refresh rate from the motorcycle perspective is 32ms instead of 8ms...
XN297_Hopping(hopping_frequency_no);
hopping_frequency_no++;
hopping_frequency_no &= 0x0F;
SHENQI2_send_packet();
if(hopping_frequency_no%4 == 0)
packet_count++;
return SHENQI2_PACKET_PERIOD/4;
}
return 0;
}
void SHENQI2_init()
{
BIND_IN_PROGRESS;
SHENQI2_initialize_txid();
SHENQI2_RF_init();
bind_counter = SHENQI2_BIND_COUNT;
phase = SHENQI2_BIND;
hopping_frequency_no = 0;
}
#endif
/*
XN297 1Mb Enhanced,Acked,Scrambled
Bind
---
RX on channel: 44, Time: 2890us P: 34 51 70 02 00 00 00 00
RX on channel: 44, Time: 1780us P: 34 51 70 02 00 00 00 00
RX on channel: 44, Time: 1773us P: 34 51 70 02 00 00 00 00
RX on channel: 44, Time: 1772us P: 34 51 70 02 00 00 00 00
RX on channel: 44, Time: 2889us P: 35 51 70 02 00 00 00 00
RX on channel: 44, Time: 1769us P: 35 51 70 02 00 00 00 00
RX on channel: 44, Time: 1774us P: 35 51 70 02 00 00 00 00
RX on channel: 44, Time: 1771us P: 35 51 70 02 00 00 00 00
RX on channel: 44, Time: 2894us P: 36 51 70 02 00 00 00 00
A= 74 D1 3A F5 6C
RF:44
Timing: 1772µs between the same 4 packets, 2892µs to the next packet, 8208µs between 2 packets
Request ack, if no ack repeat the packet 4 times
P[0] = counter 00..0F | 30 bind
P[1] = TXID[0]
P[2] = TXID[1]
P[3] = TXID[2]
P[4] = RXID[0]
P[5] = RXID[1]
P[6] = TH 00..1F, Break 30, 40 ST_right, 80 ST_left
P[7] = 00?
Answer from motorcycle:
P: 51 70 02 46 BE 00 00 00
P[0] = TXID[0]
P[1] = TXID[1]
P[2] = TXID[2]
P[3] = RXID[0]
P[4] = RXID[1]
P[5] = 00
P[6] = 00
P[7] = 00
Normal packets
---
A= 74 D1 3A F5 6C
RF:5,9,14,15,23,28,33,39,42,44,51,57,61,66,72,76
RF:\x05\x09\x0E\x0F\x17\x1C\x21\x27\x2A\x2C\x33\x39\x3D\x42\x48\x4C
- order of the channels is unknown and vary over time
- send 16 times on each channel and switch (counter 00..0F)
Timing:1772µs between the same 4 packets, 2892µs to the next packet, 8208µs between 2 packets
Timing:8208 between packets if acked
P: 00 51 70 02 46 BE 00 00
P[0] = counter 00..0F
P[1] = TXID[0]
P[2] = TXID[1]
P[3] = TXID[2]
P[4] = RXID[0]
P[5] = RXID[1]
P[6] = TH 00..1F, Break 30, 40 ST_right, 80 ST_left
P[7] = 00?
*/

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@@ -19,13 +19,18 @@
#include "iface_nrf250k.h"
//#define SLT_Q200_FORCE_ID
//#define SLT_V1_4_FORCE_ID
// For code readability
#define SLT_PAYLOADSIZE_V1 7
#define SLT_PAYLOADSIZE_V1_4 5
#define SLT_PAYLOADSIZE_V2 11
#define SLT_NFREQCHANNELS 15
#define SLT_TXID_SIZE 4
#define SLT_BIND_CHANNEL 0x50
#define SLT6_CH_MIN 182 // 10-bit AETR minimum (captures: 180-185, symmetric around 512)
#define SLT6_CH_MAX 842 // 10-bit AETR maximum (captures: 829-843, symmetric around 512)
#define SLT6_SW_THRESHOLD 273 // ~33% of half-range (820/3) for 3-position switch zones
enum{
// flags going to packet[6] (Q200)
@@ -52,9 +57,32 @@ enum {
SLT_BIND2,
};
// SLT6 sub-cycle states: 3 sub-cycles per triple, each with 2 copies
enum {
SLT6_BUILD_A=0, // Build packet, configure for 7B sub-cycle
SLT6_DATA_A1, // Send 7B copy 1
SLT6_DATA_A2, // Send 7B copy 2, configure for 6B sub-cycle
SLT6_DATA_B1, // Send 6B copy 1
SLT6_DATA_B2, // Send 6B copy 2, configure for 5B sub-cycle
SLT6_DATA_C1, // Send 5B copy 1
SLT6_DATA_C2, // Send 5B copy 2
SLT6_BIND, // Send bind packet
};
// SLT6 address XOR values for the 3 sub-cycles
#define SLT6_ADDR_XOR_A 0x00 // 7B sub-cycle: base address
#define SLT6_ADDR_XOR_B 0x06 // 6B sub-cycle: byte[0] XOR 0x06
#define SLT6_ADDR_XOR_C 0x09 // 5B sub-cycle: byte[0] XOR 0x09
// SLT6 timing (from capture 12b, in microseconds)
#define SLT6_TIMING_SUBCYCLE 5994 // ~6000us between sub-cycle starts
#define SLT6_TIMING_PAIR 1633 // ~1633us between the two copies within a sub-cycle
#define SLT6_TIMING_BUILD 1000 // Build+config time at start of each triple
#define SLT6_TIMING_TRIPLE (3 * SLT6_TIMING_SUBCYCLE) // ~18ms triple period
static void __attribute__((unused)) SLT_RF_init()
{
NRF250K_Init();
NRF250K_Init(option == 0); // SLT: option==0 uses NRF24L01, option!=0 uses CC2500 with freq tuning
NRF250K_SetTXAddr(rx_tx_addr, SLT_TXID_SIZE);
}
@@ -93,6 +121,12 @@ static void __attribute__((unused)) SLT_set_freq(void)
}
}
}
#ifdef DEBUG_SERIAL
debug("CH:");
for (uint8_t i = 0; i < SLT_NFREQCHANNELS; ++i)
debug(" %02X(%d)", hopping_frequency[i], hopping_frequency[i]);
debugln();
#endif
//Bind channel
hopping_frequency[SLT_NFREQCHANNELS] = SLT_BIND_CHANNEL;
@@ -129,19 +163,21 @@ static void __attribute__((unused)) SLT_build_packet()
uint8_t e = 0; // byte where extension 2 bits for every 10-bit channel are packed
for (uint8_t i = 0; i < 4; ++i)
{
uint16_t v = convert_channel_10b(CH_AETR[i], false);
if(sub_protocol>SLT_V2 && (i==CH2 || i==CH3) )
uint16_t v = convert_channel_10b(sub_protocol != SLT_V1_4 ? CH_AETR[i] : i, false);
if(sub_protocol>SLT_V2 && (i==CH2 || i==CH3) && sub_protocol != SLT_V1_4 && sub_protocol != RF_SIM)
v=1023-v; // reverse throttle and elevator channels for Q100/Q200/MR100 protocols
packet[i] = v;
e = (e >> 2) | (uint8_t) ((v >> 2) & 0xC0);
}
// Extra bits for AETR
packet[4] = e;
//->V1_4CH stops here
// 8-bit channels
packet[5] = convert_channel_8b(CH5);
packet[6] = convert_channel_8b(CH6);
if(sub_protocol!=SLT_V1)
{
if(sub_protocol == Q200)
packet[6] = GET_FLAG(CH9_SW , FLAG_Q200_FMODE)
|GET_FLAG(CH10_SW, FLAG_Q200_FLIP)
@@ -154,8 +190,16 @@ static void __attribute__((unused)) SLT_build_packet()
|GET_FLAG(CH12_SW, FLAG_MR100_PICTURE); // Does not exist on the Q100 but...
packet[7] = convert_channel_8b(CH7);
packet[8] = convert_channel_8b(CH8);
if(sub_protocol == RF_SIM)
{
packet[9] = convert_channel_8b(CH9);
packet[10] = convert_channel_8b(CH10);
}
else
{
packet[9] = 0xAA; //normal mode for Q100/Q200, unknown for V2/MR100
packet[10] = 0x00; //normal mode for Q100/Q200, unknown for V2/MR100
}
if((sub_protocol == Q100 || sub_protocol == Q200) && CH13_SW)
{//Calibrate
packet[9] = 0x77; //enter calibration
@@ -167,6 +211,46 @@ static void __attribute__((unused)) SLT_build_packet()
else
calib_counter = 0;
}
// SLT6: build 7-byte data packet from current channel values
static void __attribute__((unused)) SLT6_build_packet()
{
// aileron, elevator, throttle, rudder (10-bit, limited range)
uint8_t e = 0;
for (uint8_t i = 0; i < 4; ++i)
{
uint16_t v = convert_channel_16b_limit(CH_AETR[i], SLT6_CH_MIN, SLT6_CH_MAX);
packet[i] = v;
e = (e >> 2) | (uint8_t) ((v >> 2) & 0xC0);
}
packet[4] = e;
// Flight mode: 3 positions at ~33% each
if(Channel_data[CH5] > CHANNEL_MID + SLT6_SW_THRESHOLD)
packet[5] = 0xD0;
else if(Channel_data[CH5] < CHANNEL_MID - SLT6_SW_THRESHOLD)
packet[5] = 0x30;
else
packet[5] = 0x80;
// Panic: only active when CH6 is below -33%, center and up = no panic
if(Channel_data[CH6] < CHANNEL_MID - SLT6_SW_THRESHOLD)
packet[6] = 0x30;
else
packet[6] = 0xD0;
}
// SLT6: configure radio for a sub-cycle (set address and channel)
static void __attribute__((unused)) SLT6_configure_radio(uint8_t addr_xor, uint8_t hop_offset)
{
SLT_wait_radio();
// Set TX address with XOR on byte[0]
uint8_t addr[SLT_TXID_SIZE];
memcpy(addr, rx_tx_addr, SLT_TXID_SIZE);
addr[0] ^= addr_xor;
NRF250K_SetTXAddr(addr, SLT_TXID_SIZE);
// Set RF channel
NRF250K_Hopping((hopping_frequency_no + hop_offset) % SLT_NFREQCHANNELS);
}
static void __attribute__((unused)) SLT_send_bind_packet()
@@ -178,7 +262,7 @@ static void __attribute__((unused)) SLT_send_bind_packet()
BIND_DONE;
NRF250K_SetTXAddr((uint8_t *)"\x7E\xB8\x63\xA9", SLT_TXID_SIZE);
memcpy((void*)packet, (void*)rx_tx_addr, SLT_TXID_SIZE);
if(phase==SLT_BIND2)
if(phase == SLT_BIND2 || phase == SLT6_BIND)
SLT_send_packet(SLT_TXID_SIZE);
else // SLT_BIND1
SLT_send_packet(SLT_PAYLOADSIZE_V2);
@@ -186,17 +270,82 @@ static void __attribute__((unused)) SLT_send_bind_packet()
#define SLT_TIMING_BUILD 1000
#define SLT_V1_TIMING_PACKET 1000
#define SLT_V1_4_TIMING_PACKET 1643
#define SLT_V2_TIMING_PACKET 2042
#define SLT_V1_TIMING_BIND2 1000
#define SLT_V2_TIMING_BIND1 6507
#define SLT_V2_TIMING_BIND2 2112
uint16_t SLT_callback()
// SLT6 callback: triple-address state machine
// Each triple: 3 sub-cycles (7B, 6B, 5B), each sent twice, with different addresses and channels
static uint16_t __attribute__((unused)) SLT6_callback()
{
switch (phase)
{
case SLT_BUILD:
case SLT6_BUILD_A:
#ifdef MULTI_SYNC
telemetry_set_input_sync(sub_protocol==SLT_V1?20000:13730);
telemetry_set_input_sync(SLT6_TIMING_TRIPLE);
#endif
SLT6_build_packet();
NRF250K_SetPower();
SLT6_configure_radio(SLT6_ADDR_XOR_A, 0); // 7B sub-cycle: base address, hop+0
phase = SLT6_DATA_A1;
return SLT6_TIMING_BUILD;
case SLT6_DATA_A1:
SLT_send_packet(7);
phase = SLT6_DATA_A2;
return SLT6_TIMING_PAIR; // 1633us between copies
case SLT6_DATA_A2:
SLT_send_packet(7);
SLT6_configure_radio(SLT6_ADDR_XOR_B, 3); // 6B sub-cycle: XOR 0x06 address, hop+3
phase = SLT6_DATA_B1;
return SLT6_TIMING_SUBCYCLE - SLT6_TIMING_PAIR; // 4361us to next sub-cycle TX
case SLT6_DATA_B1:
SLT_send_packet(6);
phase = SLT6_DATA_B2;
return SLT6_TIMING_PAIR;
case SLT6_DATA_B2:
SLT_send_packet(6);
SLT6_configure_radio(SLT6_ADDR_XOR_C, 6); // 5B sub-cycle: XOR 0x09 address, hop+6
phase = SLT6_DATA_C1;
return SLT6_TIMING_SUBCYCLE - SLT6_TIMING_PAIR; // 4361us
case SLT6_DATA_C1:
SLT_send_packet(5);
phase = SLT6_DATA_C2;
return SLT6_TIMING_PAIR;
case SLT6_DATA_C2:
SLT_send_packet(5);
// Advance hopping for next triple
if (++hopping_frequency_no >= SLT_NFREQCHANNELS)
hopping_frequency_no = 0;
if (++packet_count >= 100)
{// Send bind packet periodically
packet_count = 0;
phase = SLT6_BIND;
return SLT_V1_TIMING_BIND2;
}
phase = SLT6_BUILD_A;
return SLT6_TIMING_SUBCYCLE - SLT6_TIMING_PAIR - SLT6_TIMING_BUILD; // Gap before next build
case SLT6_BIND:
SLT_send_bind_packet();
phase = SLT6_BUILD_A;
return SLT6_TIMING_SUBCYCLE - SLT6_TIMING_PAIR - SLT6_TIMING_BUILD;
}
return SLT6_TIMING_TRIPLE;
}
uint16_t SLT_callback()
{
// SLT6 has its own state machine
if(sub_protocol == SLT6TX)
return SLT6_callback();
switch (phase)
{
case SLT_BUILD:
//debugln_time("b ");
#ifdef MULTI_SYNC
telemetry_set_input_sync(packet_period);
#endif
SLT_build_packet();
NRF250K_SetPower(); //Change power level
@@ -206,41 +355,38 @@ uint16_t SLT_callback()
case SLT_DATA1:
case SLT_DATA2:
phase++;
SLT_send_packet(packet_length);
if(sub_protocol == SLT_V1)
{
SLT_send_packet(SLT_PAYLOADSIZE_V1);
return SLT_V1_TIMING_PACKET;
}
else //V2
if(sub_protocol == SLT_V1_4)
{
SLT_send_packet(SLT_PAYLOADSIZE_V2);
return SLT_V2_TIMING_PACKET;
phase++; //Packets are sent two times only
return SLT_V1_4_TIMING_PACKET;
}
//V2
return SLT_V2_TIMING_PACKET;
case SLT_DATA3:
if(sub_protocol==SLT_V1)
SLT_send_packet(SLT_PAYLOADSIZE_V1);
else //V2
SLT_send_packet(SLT_PAYLOADSIZE_V2);
SLT_send_packet(packet_length);
if (++packet_count >= 100)
{// Send bind packet
packet_count = 0;
if(sub_protocol==SLT_V1)
if(sub_protocol == SLT_V1 || sub_protocol == SLT_V1_4)
{
phase = SLT_BIND2;
return SLT_V1_TIMING_BIND2;
}
else //V2
{
//V2
phase = SLT_BIND1;
return SLT_V2_TIMING_BIND1;
}
}
else
{// Continue to send normal packets
phase = SLT_BUILD;
if(sub_protocol == SLT_V1)
return 20000 - SLT_TIMING_BUILD;
else //V2
if(sub_protocol==SLT_V1_4)
return 18000 - SLT_TIMING_BUILD - SLT_V1_4_TIMING_PACKET;
//V2
return 13730 - SLT_TIMING_BUILD;
}
case SLT_BIND1:
@@ -252,7 +398,9 @@ uint16_t SLT_callback()
phase = SLT_BUILD;
if(sub_protocol == SLT_V1)
return 20000 - SLT_TIMING_BUILD - SLT_V1_TIMING_BIND2;
else //V2
if(sub_protocol == SLT_V1_4)
return 18000 - SLT_TIMING_BUILD - SLT_V1_TIMING_BIND2 - SLT_V1_4_TIMING_PACKET;
//V2
return 13730 - SLT_TIMING_BUILD - SLT_V2_TIMING_BIND1 - SLT_V2_TIMING_BIND2;
}
return 19000;
@@ -264,6 +412,43 @@ void SLT_init()
packet_count = 0;
packet_sent = 0;
hopping_frequency_no = 0;
if(sub_protocol == SLT6TX)
{
hopping_frequency_no = 1; // SLT6 starts hopping at index 1 (verified from captures)
// packet_length not used for SLT6 (lengths vary per sub-cycle)
#ifdef MULTI_SYNC
packet_period = SLT6_TIMING_TRIPLE;
#endif
}
else if(sub_protocol == SLT_V1)
{
packet_length = SLT_PAYLOADSIZE_V1;
#ifdef MULTI_SYNC
packet_period = 20000+2*SLT_V1_TIMING_PACKET; //22ms
#endif
}
else if(sub_protocol == SLT_V1_4)
{
packet_length = SLT_PAYLOADSIZE_V1_4;
#ifdef MULTI_SYNC
packet_period = 18000; //18ms
#endif
//Force high part of the ID otherwise the RF frequencies do not match, only tested the 2 last bytes...
rx_tx_addr[0]=0xF4;
rx_tx_addr[1]=0x71;
#ifdef SLT_V1_4_FORCE_ID // ID taken from TX dumps
memcpy(rx_tx_addr,"\xF4\x71\x8D\x01",SLT_TXID_SIZE);
#endif
}
else //V2
{
packet_length = SLT_PAYLOADSIZE_V2;
#ifdef MULTI_SYNC
packet_period = 13730+2*SLT_V2_TIMING_PACKET; //~18ms
#endif
}
if(sub_protocol == Q200)
{ //Q200: Force high part of the ID otherwise it won't bind
rx_tx_addr[0]=0x01;
@@ -273,9 +458,16 @@ void SLT_init()
/* rx_tx_addr[0]=0x01;rx_tx_addr[1]=0x02;rx_tx_addr[2]=0x0B;rx_tx_addr[3]=0x57;*/
#endif
}
SLT_RF_init();
SLT_set_freq();
if(sub_protocol == SLT6TX)
phase = SLT6_BUILD_A;
else
phase = SLT_BUILD;
}
#endif
//SLT v1_4ch timing
//268363 + 1643 / 15 = 18000

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