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126 Commits

Author SHA1 Message Date
firestar5683 47e207aa29 accel 2026-02-09 12:15:47 -06:00
firestar5683 163f768ffb User adjustable offsets 2026-02-07 23:33:31 -06:00
firestar5683 d60f4595ff Integrator Smooth On Handoff 2026-02-06 15:47:02 -06:00
firestar5683 6143fe7c87 Lights 2026-02-05 22:40:07 -06:00
firestar5683 c38671aae6 Update frogpilot_acceleration.py 2026-02-05 15:50:08 -06:00
firestar5683 92b6b140cc New Models 2026-02-05 15:08:19 -06:00
firestar5683 fd346ea3ad Revert "merry christmas"
This reverts commit 8a9d0e5e6a.
2026-02-05 13:34:07 -06:00
firestar5683 7ec34af976 Increase Fault Resilience 2026-02-05 13:18:47 -06:00
firestarsdog 14eaee6e80 Stats 2026-02-02 01:05:19 -05:00
firestarsdog 16a8210468 Stats 2026-02-01 22:46:38 -06:00
firestar5683 3fcc4c558d Update interface.py 2026-02-01 20:49:46 -06:00
firestar5683 e292376101 Update interface.py 2026-02-01 18:48:29 -06:00
firestar5683 e79ef1e4c4 Update latcontrol_torque.py 2026-02-01 18:45:24 -06:00
firestar5683 3ff1087662 Update interface.py 2026-02-01 18:43:18 -06:00
firestar5683 cf91ba0d41 Revert "Silverado Update"
This reverts commit 07c2e32ec4.
2026-02-01 18:39:55 -06:00
firestar5683 38cf9c653b Revert "Silverado"
This reverts commit 2e37b1e5ac.
2026-02-01 18:39:51 -06:00
firestar5683 59288e7c43 Revert "Silverado"
This reverts commit 1c9c8fe8e4.
2026-02-01 18:39:45 -06:00
firestar5683 5bed72a2ce silverado 2026-01-30 00:20:24 -06:00
firestar5683 e913cf5cde friction threshold 2026-01-29 11:28:08 -06:00
firestar5683 0b8559f706 tune 2026-01-29 11:28:03 -06:00
firestar5683 de334b2ffd lat updates 2026-01-28 23:52:08 -06:00
firestar5683 1c9c8fe8e4 Silverado 2026-01-25 23:45:52 -06:00
firestar5683 2e37b1e5ac Silverado 2026-01-22 01:20:44 -06:00
firestar5683 07c2e32ec4 Silverado Update 2026-01-21 00:07:38 -06:00
firestar5683 d42cbb8f76 TorqueController 2026-01-20 13:26:13 -06:00
firestar5683 0f58f6a199 Revert "Mac Update"
This reverts commit 0c2b627a1d.
2026-01-19 11:42:20 -06:00
firestarsdog c40a88c048 Add SASCM to vehicle settings detection/stats 2026-01-19 10:38:25 -06:00
firestar5683 0c2b627a1d Mac Update 2026-01-18 22:23:13 -06:00
firestar5683 8cc5592f88 Update redneck 2026-01-15 22:50:37 -06:00
firestar5683 c019f3348d fix redneck v2 2026-01-14 22:55:17 -06:00
firestar5683 5e0ff7b8df Revert "Redneck v1?"
This reverts commit b69f21419e.
2026-01-14 13:58:09 -06:00
firestar5683 18ebdf9502 Remove lat smooth seconds 2026-01-14 13:50:43 -06:00
firestar5683 b69f21419e Redneck v1? 2026-01-13 20:22:26 -06:00
firestar5683 aec5b51020 frogpilot migration 2026-01-13 09:28:31 -05:00
firestar5683 a939da3fa4 More defaults 2026-01-13 09:28:31 -05:00
firestar5683 eddd8ff2a5 Update defaults 2026-01-13 09:28:31 -05:00
firestarsdog 35d399ed72 Upstream sound handling, sound check removal
match upstream for sound handling

Add to sound check removal
2026-01-13 09:28:31 -05:00
firestar5683 16130e7c03 Big Mac 2026-01-11 16:59:19 -06:00
firestar5683 8ad0572903 Try Higher Friction 2026-01-10 14:04:21 -06:00
firestar5683 5f860eb328 Autotune Off 2026-01-09 22:41:59 -06:00
firestar5683 fb672f847e Revert "Pedal Braking Limits"
This reverts commit f0313b8412.
2025-12-31 20:55:54 -06:00
firestar5683 f0313b8412 Pedal Braking Limits 2025-12-30 20:18:11 -06:00
firestar5683 5aee03c725 merry christmas 2025-12-24 22:05:16 -06:00
firestar5683 6f39a74ff6 ds2 2025-12-24 21:30:46 -06:00
firestar5683 6c87878b8c Adjust sport gas acceleration values for precision 2025-12-19 19:43:37 -06:00
firestar5683 40812cd312 Adjust sport gas acceleration values for tuning 2025-12-18 16:05:34 -06:00
firestar5683 1d8399c0ed Adjust sport gas acceleration values for tuning 2025-12-18 12:16:55 -06:00
firestar5683 2a7f160d08 Update frogpilot_acceleration.py 2025-12-17 16:25:57 -06:00
firestar5683 16c366312a Update frogpilot_acceleration.py 2025-12-17 15:29:19 -06:00
firestar5683 76abbf754f Update sport gas acceleration values 2025-12-17 14:28:16 -06:00
firestar5683 c42c2ef805 Try friction adjustment 2025-12-16 14:39:55 -06:00
firestar5683 8edaa33a27 Update frogpilot_tracking.py 2025-12-15 00:55:07 -06:00
firestar5683 843423e871 minsteer speed 2025-12-14 14:47:50 -06:00
firestar5683 69d6977a1b Update Percentages 2025-12-13 19:13:54 -06:00
firestar5683 511a6da0e3 ITS GASSY 2025-12-12 22:59:32 -06:00
firestar5683 69dc9eb6c0 Update frogpilot_acceleration.py 2025-12-12 16:35:46 -06:00
firestar5683 aa6b4d3fdd Revert "Silverado trailer fingerprint"
This reverts commit f97dfeb79d.
2025-12-12 12:05:51 -06:00
firestar5683 9b9f4f7cce Revert "Update substitute.toml"
This reverts commit 60c0c0ee8a.
2025-12-12 12:05:48 -06:00
firestar5683 052f1beda4 Trailer Load Gas Tuning 2025-12-12 10:51:10 -06:00
firestar5683 60c0c0ee8a Update substitute.toml 2025-12-11 20:00:10 -06:00
firestar5683 cfb634a606 Live Friction 2025-12-11 16:56:05 -06:00
firestar5683 f531d34f20 Zero error 2025-12-11 15:12:34 -06:00
firestar5683 f97dfeb79d Silverado trailer fingerprint 2025-12-10 16:28:42 -06:00
firestar5683 9356f9b721 Revert "Update values.py"
This reverts commit 8524406485.
2025-12-10 15:50:45 -06:00
firestar5683 8524406485 Update values.py 2025-12-10 15:48:01 -06:00
firestar5683 ee842127df Updates
Update latcontrol_torque.py

interp friction threshold
2025-12-09 19:59:23 -06:00
firestar5683 c8c50c6a9e Change NoEntryAlert message to 'Reverse Gear' 2025-12-06 16:46:01 -06:00
firestar5683 a6be6867e2 Update events.py 2025-12-05 20:14:03 -06:00
firestar5683 d9f2a62771 LattyBoi2.0 2025-12-03 23:30:41 -06:00
firestar5683 27a3625ee2 Latty Boi
Revert "Latty Boi"

This reverts commit af687e501cc4bdcda7840453d06595d7ea674148.

Reapply "Latty Boi"

This reverts commit ff5566d4439f5e4997fe83f4f21d0be62b75d75d.
2025-12-02 20:31:12 -06:00
firestar5683 e564936f28 Recovery Power 2025-12-02 17:20:08 -06:00
firestar5683 f0b6df65a0 New planplus 2025-12-02 12:10:17 -06:00
Woohyun Rho de1e30bef6 Update 2025-11-28 17:13:02 -06:00
firestar5683 f4d11d19fe New Lateral Changes 2025-11-18 20:50:49 -06:00
firestar5683 dd12f8d655 Update 2025-11-15 14:46:02 -06:00
firestar5683 087ea11142 Accel Tests 2025-11-14 20:33:08 -06:00
firestar5683 1a73798784 Paddle Planner 2025-11-14 01:26:14 -06:00
firestar5683 ac652ebd32 Revert "Upstream Lateral"
This reverts commit e54ab5e3aa.
2025-11-10 18:33:09 -06:00
firestar5683 e54ab5e3aa Upstream Lateral
Revert "Upstream Lateral"

This reverts commit 20f7d6631bb152860781b46533bb0e96223be132.

Reapply "Upstream Lateral"

This reverts commit 2a7a563e219a1b688529d341919fc377fed5038e.

Update latcontrol_torque.py

more lateral

Update ui
2025-11-07 00:15:09 -06:00
firestar5683 724ac83641 Update 2025-10-25 15:43:52 -05:00
firestar5683 21c28cd8c8 Medium Fanta 2025-10-22 22:27:58 -05:00
firestar5683 436a2f0c1a Update interfaces.py 2025-10-20 13:49:14 -05:00
firestar5683 f5b734d6e6 no nnff 2025-10-19 17:59:30 -05:00
firestar5683 424273284a Scene Complexity 2025-10-18 14:26:02 -05:00
firestar5683 48fc133cf9 Update carcontroller.py 2025-10-17 19:10:56 -05:00
firestar5683 e2722dd9ba Update interface.py 2025-10-17 18:14:14 -05:00
firestar5683 96e80fb926 CEM 2025-10-17 17:39:31 -05:00
firestar5683 d81515be22 lite 2025-10-17 17:13:56 -05:00
firestar5683 abe891f971 Redneck 2.0 2025-10-17 16:54:17 -05:00
firestar5683 b45630fd71 Modify torque tuning parameters in interfaces.py
Adjusted torque tuning parameters for improved performance.
2025-10-17 16:54:08 -05:00
firestar5683 559184621b Hurts Donut 2025-10-16 23:58:42 -05:00
firestar5683 2e3b62432c Smoothy Boi 2025-10-16 23:36:34 -05:00
firestar5683 50cb5778bd lat3 2025-10-15 22:21:26 -05:00
firestar5683 dda6f78dcc oopsie doopsie 2025-10-12 00:12:21 -05:00
firestar5683 66df2e23aa New Lateral Changes 2025-10-10 21:00:05 -05:00
firestar5683 69cd237ef4 Fix Standard 2025-10-10 19:24:48 -05:00
firestar5683 938fe7a088 Pedal Panda? 2025-10-10 13:18:20 -05:00
firestar5683 40019815c1 pedal
Revert "pedal"

This reverts commit 164a4ac9ff39c244b23d118f38bedb097867fa2e.

f
2025-10-09 12:22:10 -05:00
firestar5683 5125403753 Update interface.py 2025-10-08 23:25:07 -05:00
firestar5683 7cea8cd192 error? 2025-10-08 23:13:38 -05:00
firestar5683 2bada45e97 Update interface.py 2025-10-08 23:00:27 -05:00
firestar5683 39cdd2f5d3 Fix Pedal 2025-10-08 22:36:11 -05:00
firestar5683 939748dd03 Fix New Devices 2025-10-08 22:19:50 -05:00
firestar5683 20447a47e5 No positive P-response for long control if user-selected parameter set 2025-10-08 07:42:41 -05:00
firestar5683 0282d33d3b Update carstate.py 2025-10-08 07:14:12 -05:00
firestar5683 d452ee2a8d Silverado 2025-10-07 18:13:15 -05:00
firestar5683 bce304c6bc Update values.py 2025-10-07 17:50:23 -05:00
firestar5683 a03826d5fa Update carcontroller.py 2025-10-07 17:03:16 -05:00
firestar5683 0f24b3383e Update carcontroller.py 2025-10-07 15:49:57 -05:00
firestar5683 5c3e33bceb Automatic updates 2025-10-04 16:03:43 -05:00
firestar5683 0b4fd887c8 Steer Alerts 2025-10-04 01:49:03 -05:00
firestar5683 36499deb71 Update frogpilot_acceleration.py 2025-10-03 22:41:54 -05:00
firestar5683 c7464f41da SteerAlerts 2025-10-03 22:13:17 -05:00
firestar5683 cab3268601 Update carcontroller.py 2025-10-03 21:58:18 -05:00
firestar5683 b91119b5e6 Update carcontroller.py 2025-10-03 21:25:35 -05:00
firestar5683 db2cf740fe Donut DM 2025-10-03 20:49:14 -05:00
firestar5683 3da42a78a3 Update gm_global_a_powertrain_generated.dbc 2025-10-03 16:14:27 -05:00
firestar5683 ac72c0e2c0 Cruise Fault? 2025-10-03 16:07:08 -05:00
firestar5683 9b7bef0877 Update 2025-10-03 00:43:33 -05:00
firestar5683 5208dd65aa Reapply "Torque Panda"
This reverts commit d0d28e661b.
2025-10-03 00:17:34 -05:00
firestar5683 bbe340147b Panda 2025-10-03 00:10:38 -05:00
firestar5683 db579b7f3c Cruise Fault?
Revert "Cruise Fault?"

This reverts commit 8de3739597a6e729b3c55fc053a13add9129a1f4.
2025-10-02 23:25:12 -05:00
firestar5683 07cb470c25 firehose 2025-09-30 20:45:22 -05:00
firestar5683 851f219cef Update tinygrad_modeld.py 2025-09-30 14:30:43 -05:00
firestar5683 2123be2eca Torque 2025-09-30 10:43:37 -05:00
firestar5683 b1bd4d1f27 Dom 2025-09-30 10:30:26 -05:00
36 changed files with 699 additions and 515 deletions
@@ -1 +0,0 @@
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@@ -1 +0,0 @@
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@@ -1 +0,0 @@
{"input_std":[[9.342214],[1.5915664],[0.60113484],[0.048193663],[1.5680411],[1.57577],[1.5836853],[1.5711677],[1.5445132],[1.5007596],[1.4529978],[0.047915205],[0.04800539],[0.04808892],[0.04822398],[0.04817677],[0.047881734],[0.047405947]],"model_test_loss":0.019342588260769844,"input_size":18,"current_date_and_time":"2023-08-05_06-09-11","input_mean":[[22.757933],[-0.016342578],[-0.001405228],[-0.014619173],[-0.018091483],[-0.018382493],[-0.019270267],[-0.018759886],[-0.019559544],[-0.017848592],[-0.020014366],[-0.014564899],[-0.01457757],[-0.014600966],[-0.014757987],[-0.014915743],[-0.015121007],[-0.015359475]],"input_vars":["v_ego","lateral_accel","lateral_jerk","roll","lateral_accel_m03","lateral_accel_m02","lateral_accel_m01","lateral_accel_p03","lateral_accel_p06","lateral_accel_p10","lateral_accel_p15","roll_m03","roll_m02","roll_m01","roll_p03","roll_p06","roll_p10","roll_p15"],"output_size":1,"layers":[{"dense_1_b":[[-0.045577038],[-2.8160777],[-0.21418032],[2.9552083],[-0.06852827],[0.029141279],[-0.053249933]],"dense_1_W":[[0.0010664682,1.3813498,-8.153277,-0.009101015,-0.1484779,1.0008405,-1.5930991,-1.195274,0.6136762,0.3560462,-0.30077773,0.93531257,0.14550218,-0.40074933,-0.21716364,0.13834935,-0.0658936,-0.49427196],[-0.7338253,-0.037501235,-0.49922377,-1.0526338,-0.46141604,-1.3649396,0.7309814,-0.91667104,0.044683233,-0.18628967,-0.20878822,-0.2678598,0.48446324,0.51164204,0.09547851,0.41491362,-0.4524314,0.16594785],[-0.0032175342,3.5451593,-0.11421584,-0.2511033,0.27893174,0.6384996,0.80790603,1.3835542,1.8000495,2.249461,1.4026878,0.7851167,-0.35052946,0.041820426,-0.39790183,0.45703772,-0.30459648,0.18287674],[0.72289664,-0.77138704,-0.5025135,-0.49323097,-0.39893976,-0.8779149,0.6848096,-0.58729875,-0.16643623,-0.14427555,-0.15013328,-0.11467142,-0.27280045,0.48508415,0.52080667,-0.0029569597,-0.28170735,0.06367212],[0.00014026981,-2.0353239,0.0060915067,0.4794941,1.1882906,-1.512865,0.80642134,-0.26044324,-0.56213886,-0.365122,0.55078083,-0.34897435,-0.32031298,0.46106994,0.37792024,-0.14116105,0.15597256,-0.32811671],[0.0011494387,1.9060265,8.3941965,-0.3078165,-0.9530427,0.6589645,-1.2487054,-0.541133,0.13451256,0.2805466,-0.33187166,0.9900705,0.2821258,-0.51270896,-0.5130031,-0.28222615,0.042734932,0.27233443],[-0.0014444552,-1.0933362,0.003359957,-0.15052961,0.37165833,1.7087307,-1.4971043,0.673802,-0.108465396,-0.088505454,0.21561684,0.6252258,-0.15019403,-0.34727478,0.08958758,-0.1723621,-0.25557828,0.29778987]],"activation":"σ"},{"dense_2_W":[[0.20810607,-0.13481373,-0.15003344,-0.6067625,-0.31937903,-0.37380016,0.4666911],[0.71834767,0.15669753,-0.11389502,0.27131546,-0.060118295,0.039282244,0.52961355],[-0.27200606,0.43380752,-0.106262706,-0.49363258,0.35659012,-0.01706296,-1.0807354],[-0.79583454,-0.66428274,-0.42157334,-0.52979547,-0.2803004,-0.57637554,0.084149174],[0.1230394,-0.57023287,0.28639448,-0.506744,-0.9920808,0.7510901,0.8584937],[-0.41256845,0.35423175,0.13009231,0.5198333,0.7576573,-0.7053181,-0.3390053],[-0.15090485,0.33375353,-0.64164793,0.57386595,0.25700107,-0.15245672,-0.49020413],[-0.50120676,0.5210849,-0.3282951,0.4276323,1.0257447,-1.0398436,-0.8911315],[0.11402861,-0.41491523,0.247507,-0.39776865,-0.6089287,0.20646147,0.6692102],[0.09411492,0.31819808,0.41330767,0.024243973,0.2314893,0.08529045,0.14911193],[0.5179265,0.20473345,-0.36762783,-0.009045922,-0.19436747,-0.548099,-0.08656279],[-0.69121784,-0.14201449,0.3887621,0.10787631,1.0371574,-0.64747447,-0.73437464],[-0.07860244,-0.597764,0.019551078,0.010199122,-0.7493642,0.66619915,0.121666186]],"activation":"σ","dense_2_b":[[-0.04259814],[-0.053309314],[-0.28045595],[-0.23801634],[0.00944943],[-0.109921046],[-0.037457183],[0.24627604],[-0.0069056284],[-0.04725389],[-0.03361769],[0.044101644],[-0.0009850285]]},{"dense_3_W":[[-0.19631335,-0.47722518,-0.019853225,-0.29363275,-0.625923,0.35145283,0.62401354,0.14337404,-0.25707108,-0.51310915,0.2565006,0.61742216,-0.07952821],[0.5868974,-0.36786363,-0.0177682,-0.45121866,0.68608487,-0.55178356,-0.35236016,-0.7226455,-0.015394288,-0.10650332,0.5391039,0.17791761,0.34196886],[0.16821232,-0.35580373,0.26906335,0.41736925,-0.6979869,0.41801625,0.34707317,0.7784011,-0.10002936,0.32485273,-0.3644285,0.49092358,-0.43872768]],"activation":"identity","dense_3_b":[[-0.019481273],[0.031026587],[-0.03595322]]},{"dense_4_W":[[-0.72340566,0.21244061,-0.67248434]],"dense_4_b":[[0.026229527]],"activation":"identity"}]}
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+3 -10
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@@ -300,7 +300,7 @@ frogpilot_default_params: list[tuple[str, str | bytes, int, str]] = [
("NavSettingLeftSide", "0", 0, "0"), ("NavSettingLeftSide", "0", 0, "0"),
("NavSettingTime24h", "0", 0, "0"), ("NavSettingTime24h", "0", 0, "0"),
("NewLongAPI", "0", 2, "1"), ("NewLongAPI", "0", 2, "1"),
("NNFF", "1", 2, "0"), ("NNFF", "0", 2, "0"),
("NNFFLite", "0", 2, "0"), ("NNFFLite", "0", 2, "0"),
("NoLogging", "0", 2, "0"), ("NoLogging", "0", 2, "0"),
("NoUploads", "0", 2, "0"), ("NoUploads", "0", 2, "0"),
@@ -626,7 +626,7 @@ class FrogPilotVariables:
toggle.use_custom_steerRatio = bool(round(toggle.steerRatio, 2) != round(steerRatio, 2)) and not toggle.force_auto_tune or toggle.force_auto_tune_off toggle.use_custom_steerRatio = bool(round(toggle.steerRatio, 2) != round(steerRatio, 2)) and not toggle.force_auto_tune or toggle.force_auto_tune_off
advanced_longitudinal_tuning = params.get_bool("AdvancedLongitudinalTune") if tuning_level >= level["AdvancedLongitudinalTune"] else default.get_bool("AdvancedLongitudinalTune") advanced_longitudinal_tuning = params.get_bool("AdvancedLongitudinalTune") if tuning_level >= level["AdvancedLongitudinalTune"] else default.get_bool("AdvancedLongitudinalTune")
ev_vehicle = toggle.car_make == "gm" and not (toggle.car_model.startswith("CHEVROLET_VOLT") and not toggle.car_model.endswith("_CC")) and CP.carFingerprint in GM_EV_CAR or toggle.car_make == "hyundai" and CP.carFingerprint in HYUNDAI_EV_CAR ev_vehicle = toggle.car_make == "gm" and toggle.car_model != "CHEVROLET_VOLT" and CP.carFingerprint in GM_EV_CAR or toggle.car_make == "hyundai" and CP.carFingerprint in HYUNDAI_EV_CAR
ev_vehicle |= CP.transmissionType == TransmissionType.direct ev_vehicle |= CP.transmissionType == TransmissionType.direct
if params.get("EVTuning") == b"": if params.get("EVTuning") == b"":
@@ -1006,14 +1006,7 @@ class FrogPilotVariables:
toggle.lock_doors = toyota_doors and (params.get_bool("LockDoors") if tuning_level >= level["LockDoors"] else default.get_bool("LockDoors")) toggle.lock_doors = toyota_doors and (params.get_bool("LockDoors") if tuning_level >= level["LockDoors"] else default.get_bool("LockDoors"))
toggle.unlock_doors = toyota_doors and (params.get_bool("UnlockDoors") if tuning_level >= level["UnlockDoors"] else default.get_bool("UnlockDoors")) toggle.unlock_doors = toyota_doors and (params.get_bool("UnlockDoors") if tuning_level >= level["UnlockDoors"] else default.get_bool("UnlockDoors"))
volt_models = { toggle.volt_sng = toggle.car_model == "CHEVROLET_VOLT" and (params.get_bool("VoltSNG") if tuning_level >= level["VoltSNG"] else default.get_bool("VoltSNG"))
"CHEVROLET_VOLT",
"CHEVROLET_VOLT_2019",
"CHEVROLET_VOLT_ASCM",
"CHEVROLET_VOLT_CAMERA",
}
toggle.volt_sng = toggle.car_model in volt_models and (params.get_bool("VoltSNG") if tuning_level >= level["VoltSNG"] else default.get_bool("VoltSNG"))
toggle.gm_pedal_longitudinal = params.get_bool("GMPedalLongitudinal") if tuning_level >= level["GMPedalLongitudinal"] else default.get_bool("GMPedalLongitudinal") toggle.gm_pedal_longitudinal = params.get_bool("GMPedalLongitudinal") if tuning_level >= level["GMPedalLongitudinal"] else default.get_bool("GMPedalLongitudinal")
@@ -49,8 +49,8 @@ A_CRUISE_MIN_SPORT = A_CRUISE_MIN * 2
A_CRUISE_MAX_BP_CUSTOM = [0.0, 5., 10., 15., 20., 25., 40.] A_CRUISE_MAX_BP_CUSTOM = [0.0, 5., 10., 15., 20., 25., 40.]
A_CRUISE_MAX_VALS_ECO_EV = [1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0] A_CRUISE_MAX_VALS_ECO_EV = [1.0, 1.0, 1.0, 1.0, 1.0, 1.0, 1.0]
A_CRUISE_MAX_VALS_SPORT_EV = [1.25, 1.25, 1.25, 1.25, 1.5, 1.5, 2.0] A_CRUISE_MAX_VALS_SPORT_EV = [1.25, 1.25, 1.25, 1.25, 1.5, 1.5, 2.0]
A_CRUISE_MAX_VALS_ECO_GAS = [2.0, 1.5, 1.0, 0.8, 0.6, 0.4, 0.2] A_CRUISE_MAX_VALS_ECO_GAS = [6.0, 1.40, 0.90, 0.65, 0.60, 0.55, 0.42]
A_CRUISE_MAX_VALS_SPORT_GAS = [3.0, 2.5, 2.0, 1.5, 1.0, 0.8, 0.6] A_CRUISE_MAX_VALS_SPORT_GAS = [6.0, 1.50, 1.00, 0.72, 0.65, 0.60, 0.45]
def get_max_accel_eco(v_ego, ev_tuning=True): def get_max_accel_eco(v_ego, ev_tuning=True):
cruise_vals = A_CRUISE_MAX_VALS_ECO_EV if ev_tuning else A_CRUISE_MAX_VALS_ECO_GAS cruise_vals = A_CRUISE_MAX_VALS_ECO_EV if ev_tuning else A_CRUISE_MAX_VALS_ECO_GAS
@@ -215,7 +215,6 @@ class LatControlNNFF(LatControl):
def update(self, active, CS, VM, params, steer_limited_by_safety, desired_curvature, curvature_limited, lat_delay, llk, model_data, frogpilot_toggles): def update(self, active, CS, VM, params, steer_limited_by_safety, desired_curvature, curvature_limited, lat_delay, llk, model_data, frogpilot_toggles):
pid_log = log.ControlsState.LateralTorqueState.new_message() pid_log = log.ControlsState.LateralTorqueState.new_message()
pid_log.error = 0.0
if not active: if not active:
output_torque = 0.0 output_torque = 0.0
pid_log.active = False pid_log.active = False
@@ -301,7 +300,7 @@ class LatControlNNFF(LatControl):
torque_from_setpoint = self.lat_torque_nn_model.evaluate(nnff_setpoint_input) torque_from_setpoint = self.lat_torque_nn_model.evaluate(nnff_setpoint_input)
torque_from_measurement = self.lat_torque_nn_model.evaluate(nnff_measurement_input) torque_from_measurement = self.lat_torque_nn_model.evaluate(nnff_measurement_input)
pid_log.error = float(torque_from_setpoint - torque_from_measurement) pid_log.error = torque_from_setpoint - torque_from_measurement
error_blend = interp(abs(desired_lateral_accel), [1.0, 2.0], [0.0, 1.0]) error_blend = interp(abs(desired_lateral_accel), [1.0, 2.0], [0.0, 1.0])
if error_blend > 0.0: # blend in stronger error response when in high lat accel if error_blend > 0.0: # blend in stronger error response when in high lat accel
@@ -317,7 +316,7 @@ class LatControlNNFF(LatControl):
# apply friction override for cars with low NN friction response # apply friction override for cars with low NN friction response
if self.nn_friction_override: if self.nn_friction_override:
pid_log.error += float(self.torque_from_lateral_accel(0.0, self.torque_params)) pid_log.error += self.torque_from_lateral_accel(0.0, self.torque_params)
else: else:
torque_from_measurement = self.torque_from_lateral_accel(measurement, self.torque_params) torque_from_measurement = self.torque_from_lateral_accel(measurement, self.torque_params)
torque_from_setpoint = self.torque_from_lateral_accel(setpoint, self.torque_params) torque_from_setpoint = self.torque_from_lateral_accel(setpoint, self.torque_params)
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+19 -19
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@@ -120,14 +120,14 @@ def get_city_center(latitude, longitude):
def update_branch_commits(now): def update_branch_commits(now):
points = [] points = []
branch = get_build_metadata().channel # Current running branch for branch in ["FrogPilot", "FrogPilot-Staging", "FrogPilot-Testing"]:
try: try:
response = requests.get(f"https://api.github.com/repos/firestar5683/StarPilot/commits/{branch}") response = requests.get(f"https://api.github.com/repos/FrogAi/FrogPilot/commits/{branch}")
response.raise_for_status() response.raise_for_status()
sha = response.json()["sha"] sha = response.json()["sha"]
points.append(Point("branch_commits").field("commit", sha).tag("branch", branch).time(now)) points.append(Point("branch_commits").field("commit", sha).tag("branch", branch).time(now))
except Exception as e: except Exception as e:
print(f"Failed to fetch commit for {branch}: {e}") print(f"Failed to fetch commit for {branch}: {e}")
return points return points
@@ -180,14 +180,19 @@ def send_stats():
user_point = ( user_point = (
Point("user_stats") Point("user_stats")
.tag("car_make", "GM" if frogpilot_toggles.car_make == "gm" else frogpilot_toggles.car_make.title())
.tag("car_model", frogpilot_toggles.car_model)
.tag("city", city)
.tag("country", country)
.tag("device", HARDWARE.get_device_type())
.tag("driving_model", clean_model_name(frogpilot_toggles.model_name))
.tag("state", state)
.tag("theme", selected_theme.title())
.tag("branch", build_metadata.channel)
.tag("dongle_id", params.get("FrogPilotDongleId", encoding="utf-8"))
.field("blocked_user", frogpilot_toggles.block_user) .field("blocked_user", frogpilot_toggles.block_user)
.field("car_make", "GM" if frogpilot_toggles.car_make == "gm" else frogpilot_toggles.car_make.title())
.field("car_model", frogpilot_toggles.car_model)
.field("city", city)
.field("country", country)
.field("current_months_kilometers", int(frogpilot_stats.get("CurrentMonthsKilometers", 0))) .field("current_months_kilometers", int(frogpilot_stats.get("CurrentMonthsKilometers", 0)))
.field("device", HARDWARE.get_device_type())
.field("driving_model", clean_model_name(frogpilot_toggles.model_name))
.field("event", 1) .field("event", 1)
.field("frogpilot_drives", int(frogpilot_stats.get("FrogPilotDrives", 0))) .field("frogpilot_drives", int(frogpilot_stats.get("FrogPilotDrives", 0)))
.field("frogpilot_hours", float(frogpilot_stats.get("FrogPilotSeconds", 0)) / (60 * 60)) .field("frogpilot_hours", float(frogpilot_stats.get("FrogPilotSeconds", 0)) / (60 * 60))
@@ -203,8 +208,6 @@ def send_stats():
.field("longitude", longitude) .field("longitude", longitude)
.field("rainbow_path", frogpilot_toggles.rainbow_path) .field("rainbow_path", frogpilot_toggles.rainbow_path)
.field("random_events", frogpilot_toggles.random_events) .field("random_events", frogpilot_toggles.random_events)
.field("state", state)
.field("theme", selected_theme.title())
.field("total_aol_seconds", float(frogpilot_stats.get("AOLTime", 0))) .field("total_aol_seconds", float(frogpilot_stats.get("AOLTime", 0)))
.field("total_lateral_seconds", float(frogpilot_stats.get("LateralTime", 0))) .field("total_lateral_seconds", float(frogpilot_stats.get("LateralTime", 0)))
.field("total_longitudinal_seconds", float(frogpilot_stats.get("LongitudinalTime", 0))) .field("total_longitudinal_seconds", float(frogpilot_stats.get("LongitudinalTime", 0)))
@@ -213,9 +216,6 @@ def send_stats():
.field("up_to_date", is_up_to_date(build_metadata)) .field("up_to_date", is_up_to_date(build_metadata))
.field("using_stock_acc", not (frogpilot_toggles.has_cc_long or frogpilot_toggles.openpilot_longitudinal)) .field("using_stock_acc", not (frogpilot_toggles.has_cc_long or frogpilot_toggles.openpilot_longitudinal))
.tag("branch", build_metadata.channel)
.tag("dongle_id", params.get("FrogPilotDongleId", encoding="utf-8"))
.time(now) .time(now)
) )
@@ -281,8 +281,7 @@ void FrogPilotSettingsWindow::updateVariables() {
isTorqueCar = CP.getLateralTuning().which() == cereal::CarParams::LateralTuning::TORQUE; isTorqueCar = CP.getLateralTuning().which() == cereal::CarParams::LateralTuning::TORQUE;
isToyota = carMake == "toyota"; isToyota = carMake == "toyota";
isTSK = CP.getSecOcRequired(); isTSK = CP.getSecOcRequired();
isVolt = carFingerprint.find("CHEVROLET_VOLT") == 0; isVolt = carFingerprint == "CHEVROLET_VOLT";
if (isVolt) hasSNG = false;
longitudinalActuatorDelay = CP.getLongitudinalActuatorDelay(); longitudinalActuatorDelay = CP.getLongitudinalActuatorDelay();
startAccel = CP.getStartAccel(); startAccel = CP.getStartAccel();
steerActuatorDelay = CP.getSteerActuatorDelay(); steerActuatorDelay = CP.getSteerActuatorDelay();
+11 -1
View File
@@ -200,7 +200,7 @@ void ignition_can_hook(CANPacket_t *to_push) {
if (bus == 0) { if (bus == 0) {
int addr = GET_ADDR(to_push); int addr = GET_ADDR(to_push);
int len = GET_LEN(to_push); int len = GET_LEN(to_push);
// GM exception // GM exception
if ((addr == 0xC9) && (len == 8)) { if ((addr == 0xC9) && (len == 8)) {
// Matches SystemPowerMode (1=Run, 0=Off) // Matches SystemPowerMode (1=Run, 0=Off)
@@ -220,6 +220,16 @@ void ignition_can_hook(CANPacket_t *to_push) {
ignition_can = (GET_BYTE(to_push, 0) >> 5) == 0x6U; ignition_can = (GET_BYTE(to_push, 0) >> 5) == 0x6U;
ignition_can_cnt = 0U; ignition_can_cnt = 0U;
} }
} else if (bus == 2) {
int addr = GET_ADDR(to_push);
int len = GET_LEN(to_push);
// GM exception, SDGM cars have this message on bus 2
if ((addr == 0x1F1) && (len == 8)) {
// SystemPowerMode (2=Run, 3=Crank Request)
ignition_can = (GET_BYTE(to_push, 0) & 0x2U) != 0U;
ignition_can_cnt = 0U;
}
} }
} }
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+74 -61
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@@ -10,14 +10,14 @@ const SteeringLimits GM_STEERING_LIMITS = {
}; };
const LongitudinalLimits GM_ASCM_LONG_LIMITS = { const LongitudinalLimits GM_ASCM_LONG_LIMITS = {
.max_gas = 8191, .max_gas = 7168,
.min_gas = 5500, .min_gas = 5500,
.inactive_gas = 5500, .inactive_gas = 5500,
.max_brake = 400, .max_brake = 400,
}; };
const LongitudinalLimits GM_CAM_LONG_LIMITS = { const LongitudinalLimits GM_CAM_LONG_LIMITS = {
.max_gas = 8848, .max_gas = 7496,
.min_gas = 5610, .min_gas = 5610,
.inactive_gas = 5650, .inactive_gas = 5650,
.max_brake = 400, .max_brake = 400,
@@ -40,32 +40,35 @@ const CanMsg GM_CAM_TX_MSGS[] = {{0x180, 0, 4}, {0x200, 0, 6}, {0x1E1, 0, 7}, {0
{0x1E1, 2, 7}, {0x184, 2, 8}}; // camera bus {0x1E1, 2, 7}, {0x184, 2, 8}}; // camera bus
const CanMsg GM_CAM_LONG_TX_MSGS[] = {{0x180, 0, 4}, {0x315, 0, 5}, {0x2CB, 0, 8}, {0x370, 0, 6}, {0x200, 0, 6}, {0xBD, 0, 7}, {0x1F5, 0, 8}, // pt bus const CanMsg GM_CAM_LONG_TX_MSGS[] = {{0x180, 0, 4}, {0x315, 0, 5}, {0x2CB, 0, 8}, {0x370, 0, 6}, {0x200, 0, 6}, {0xBD, 0, 7}, {0x1F5, 0, 8}, // pt bus
{0x315, 2, 5}, {0x1E1, 2, 7}, {0x184, 2, 8}}; // camera bus {0x1E1, 2, 7}, {0x184, 2, 8}}; // camera bus
const CanMsg GM_CC_LONG_TX_MSGS[] = {{0x180, 0, 4}, {0x1E1, 0, 7}, {0xBD, 0, 7}, {0x1F5, 0, 8}, // pt bus const CanMsg GM_SDGM_TX_MSGS[] = {{0x180, 0, 4}, {0x1E1, 0, 7}, {0xBD, 0, 7}, {0x1F5, 0, 8}, // pt bus
{0x184, 2, 8}}; // camera bus
const CanMsg GM_CC_LONG_TX_MSGS[] = {{0x180, 0, 4}, {0x1E1, 0, 7}, {0xBD, 0, 7}, {0x1F5, 0, 8}, // pt bus
{0x184, 2, 8}, {0x1E1, 2, 7}}; // camera bus {0x184, 2, 8}, {0x1E1, 2, 7}}; // camera bus
// TODO: do checksum and counter checks. Add correct timestep, 0.1s for now. // TODO: do checksum and counter checks. Add correct timestep, 0.1s for now.
RxCheck gm_rx_checks[] = { RxCheck gm_rx_checks[] = {
{.msg = {{0x184, 0, 8, .frequency = 10U}, { 0 }, { 0 }}}, {.msg = {{0x184, 0, 8, .frequency = 10U}, { 0 }, { 0 }}},
{.msg = {{0x34A, 0, 5, .frequency = 10U}, { 0 }, { 0 }}}, {.msg = {{0x34A, 0, 5, .frequency = 10U}, { 0 }, { 0 }}},
{.msg = {{0x1E1, 0, 7, .frequency = 10U}, { 0 }, { 0 }}}, {.msg = {{0x1E1, 0, 7, .frequency = 10U}, // Non-SDGM Car
{.msg = {{0xF1, 0, 6, .frequency = 10U}, { 0 }, { 0 }}}, {0x1E1, 2, 7, .frequency = 100000U}}}, // SDGM Car
{.msg = {{0xF1, 0, 6, .frequency = 10U}, // Non-SDGM Car
{0xF1, 2, 6, .frequency = 100000U}}}, // SDGM Car
{.msg = {{0x1C4, 0, 8, .frequency = 10U}, { 0 }, { 0 }}}, {.msg = {{0x1C4, 0, 8, .frequency = 10U}, { 0 }, { 0 }}},
{.msg = {{0xC9, 0, 8, .frequency = 10U}, { 0 }, { 0 }}}, {.msg = {{0xC9, 0, 8, .frequency = 10U}, { 0 }, { 0 }}},
}; };
const uint16_t GM_PARAM_HW_CAM = 1; const uint16_t GM_PARAM_HW_CAM = 1;
const uint16_t GM_PARAM_HW_CAM_LONG = 2; const uint16_t GM_PARAM_HW_CAM_LONG = 2;
const uint16_t GM_PARAM_CC_LONG = 4; const uint16_t GM_PARAM_HW_SDGM = 4;
const uint16_t GM_PARAM_HW_ASCM_LONG = 8; const uint16_t GM_PARAM_CC_LONG = 8;
const uint16_t GM_PARAM_NO_CAMERA = 16; const uint16_t GM_PARAM_HW_ASCM_LONG = 16;
const uint16_t GM_PARAM_NO_ACC = 32; const uint16_t GM_PARAM_NO_CAMERA = 32;
const uint16_t GM_PARAM_PEDAL_LONG = 64; // TODO: this can be inferred const uint16_t GM_PARAM_NO_ACC = 64;
const uint16_t GM_PARAM_PEDAL_INTERCEPTOR = 128; const uint16_t GM_PARAM_PEDAL_LONG = 128; // TODO: this can be inferred
const uint16_t GM_PARAM_ASCM_INT = 256; const uint16_t GM_PARAM_PEDAL_INTERCEPTOR = 256;
const uint16_t GM_PARAM_FORCE_BRAKE_C9 = 512;
const uint16_t GM_PARAM_HW_SDGM = 1024;
enum { enum {
GM_BTN_UNPRESS = 1, GM_BTN_UNPRESS = 1,
@@ -87,9 +90,30 @@ bool gm_pedal_long = false;
bool gm_cc_long = false; bool gm_cc_long = false;
bool gm_skip_relay_check = false; bool gm_skip_relay_check = false;
bool gm_force_ascm = false; bool gm_force_ascm = false;
bool gm_force_brake_c9 = false;
static void handle_gm_wheel_buttons(const CANPacket_t *to_push) {
int button = (GET_BYTE(to_push, 5) & 0x70U) >> 4;
// enter controls on falling edge of set or rising edge of resume (avoids fault)
bool set = (button != GM_BTN_SET) && (cruise_button_prev == GM_BTN_SET);
bool res = (button == GM_BTN_RESUME) && (cruise_button_prev != GM_BTN_RESUME);
if (set || res) {
controls_allowed = true;
}
// exit controls on cancel press
if (button == GM_BTN_CANCEL) {
controls_allowed = false;
}
cruise_button_prev = button;
}
static void gm_rx_hook(const CANPacket_t *to_push) { static void gm_rx_hook(const CANPacket_t *to_push) {
if ((GET_BUS(to_push) == 2U) && (GET_ADDR(to_push) == 0x1E1) && (gm_hw == GM_SDGM)) {
// SDGM buttons are on bus 2
handle_gm_wheel_buttons(to_push);
}
if (GET_BUS(to_push) == 0U) { if (GET_BUS(to_push) == 0U) {
int addr = GET_ADDR(to_push); int addr = GET_ADDR(to_push);
@@ -107,34 +131,18 @@ static void gm_rx_hook(const CANPacket_t *to_push) {
vehicle_moving = (left_rear_speed > GM_STANDSTILL_THRSLD) || (right_rear_speed > GM_STANDSTILL_THRSLD); vehicle_moving = (left_rear_speed > GM_STANDSTILL_THRSLD) || (right_rear_speed > GM_STANDSTILL_THRSLD);
} }
// ACC steering wheel buttons (GM_CAM is tied to the PCM) // ACC steering wheel buttons (GM_CAM and GM_SDGM are tied to the PCM)
if ((addr == 0x1E1) && (!gm_pcm_cruise || gm_cc_long)) { if ((addr == 0x1E1) && (!gm_pcm_cruise || gm_cc_long) && (gm_hw != GM_SDGM)) {
int button = (GET_BYTE(to_push, 5) & 0x70U) >> 4; handle_gm_wheel_buttons(to_push);
// enter controls on falling edge of set or rising edge of resume (avoids fault)
bool set = (button != GM_BTN_SET) && (cruise_button_prev == GM_BTN_SET);
bool res = (button == GM_BTN_RESUME) && (cruise_button_prev != GM_BTN_RESUME);
if (set || res) {
controls_allowed = true;
}
// exit controls on cancel press
if (button == GM_BTN_CANCEL) {
controls_allowed = false;
}
cruise_button_prev = button;
} }
// Reference for brake pressed signals: // Reference for brake pressed signals:
// https://github.com/commaai/openpilot/blob/master/selfdrive/car/gm/carstate.py // https://github.com/commaai/openpilot/blob/master/selfdrive/car/gm/carstate.py
// Prefer 0xC9 (ECMEngineStatus) when gm_force_brake_c9 is set, otherwise keep legacy behavior. if ((addr == 0xBE) && (gm_hw == GM_ASCM)) {
// This allows SDGM/Traverse variants without 0xBE (ECMAcceleratorPos) to report brake correctly.
if ((addr == 0xC9) && gm_force_brake_c9) {
brake_pressed = GET_BIT(to_push, 40U) != 0U;
} else if ((addr == 0xBE) && ((gm_hw == GM_ASCM) || (gm_hw == GM_SDGM))) {
brake_pressed = GET_BYTE(to_push, 1) >= 8U; brake_pressed = GET_BYTE(to_push, 1) >= 8U;
} else if ((addr == 0xC9) && (gm_hw == GM_CAM)) { }
if ((addr == 0xC9) && ((gm_hw == GM_CAM) || (gm_hw == GM_SDGM))) {
brake_pressed = GET_BIT(to_push, 40U) != 0U; brake_pressed = GET_BIT(to_push, 40U) != 0U;
} }
@@ -184,18 +192,6 @@ static void gm_rx_hook(const CANPacket_t *to_push) {
} }
generic_rx_checks(stock_ecu_detected); generic_rx_checks(stock_ecu_detected);
} }
// Cruise check for Gen2 Bolt (ASCMActiveCruiseControlStatus on bus 2)
int addr = GET_ADDR(to_push);
if ((addr == 0x370) && (GET_BUS(to_push) == 2U)) {
bool cruise_engaged = (GET_BYTE(to_push, 2) >> 7) != 0U; // ACCCmdActive
// Align SDGM/camera PCM cruise behavior with ASCM path: when using stock PCM cruise,
// drive controls_allowed via pcm_cruise_check on ACC engaged edges.
if (gm_pcm_cruise && gm_has_acc) {
pcm_cruise_check(cruise_engaged);
} else {
cruise_engaged_prev = cruise_engaged;
}
}
} }
static bool gm_tx_hook(const CANPacket_t *to_send) { static bool gm_tx_hook(const CANPacket_t *to_send) {
@@ -250,8 +246,8 @@ static bool gm_tx_hook(const CANPacket_t *to_send) {
int button = (GET_BYTE(to_send, 5) >> 4) & 0x7U; int button = (GET_BYTE(to_send, 5) >> 4) & 0x7U;
bool allowed_btn = (button == GM_BTN_CANCEL) && cruise_engaged_prev; bool allowed_btn = (button == GM_BTN_CANCEL) && cruise_engaged_prev;
// For CC_LONG or PCM cruise vehicles, allow SET/RESUME when cruise is engaged // For standard CC, allow spamming of SET / RESUME
if (gm_cc_long || gm_pcm_cruise) { if (gm_cc_long) {
allowed_btn |= cruise_engaged_prev && (button == GM_BTN_SET || button == GM_BTN_RESUME || button == GM_BTN_UNPRESS); allowed_btn |= cruise_engaged_prev && (button == GM_BTN_SET || button == GM_BTN_RESUME || button == GM_BTN_UNPRESS);
} }
@@ -259,6 +255,23 @@ static bool gm_tx_hook(const CANPacket_t *to_send) {
tx = false; tx = false;
} }
} }
// REGEN PADDLE
if (addr == 0xBD) {
bool regen_apply = GET_BIT(to_send, 7) || GET_BIT(to_send, 6) || GET_BIT(to_send, 5) || GET_BIT(to_send, 4);
if (!controls_allowed && regen_apply) {
tx = false;
}
}
// PRNDL2 regen check (7 for Gen0, Gen1. 5 For Gen2)
if (addr == 0x1F5) {
uint8_t prndl2 = GET_BYTE(to_send, 3) & 0xF;
bool prndl_apply = (prndl2 == 7) || (prndl2 == 5);
if (!controls_allowed && prndl_apply) {
tx = false;
}
}
return tx; return tx;
} }
@@ -289,10 +302,9 @@ static int gm_fwd_hook(int bus_num, int addr) {
} }
static safety_config gm_init(uint16_t param) { static safety_config gm_init(uint16_t param) {
const bool gm_ascm_int = GET_FLAG(param, GM_PARAM_ASCM_INT); if GET_FLAG(param, GM_PARAM_HW_CAM) {
if (GET_FLAG(param, GM_PARAM_HW_CAM)) {
gm_hw = GM_CAM; gm_hw = GM_CAM;
} else if (GET_FLAG(param, GM_PARAM_HW_SDGM)) { } else if GET_FLAG(param, GM_PARAM_HW_SDGM) {
gm_hw = GM_SDGM; gm_hw = GM_SDGM;
} else { } else {
gm_hw = GM_ASCM; gm_hw = GM_ASCM;
@@ -300,21 +312,20 @@ static safety_config gm_init(uint16_t param) {
gm_force_ascm = GET_FLAG(param, GM_PARAM_HW_ASCM_LONG); gm_force_ascm = GET_FLAG(param, GM_PARAM_HW_ASCM_LONG);
if (gm_hw == GM_ASCM || gm_force_ascm || gm_ascm_int) { if (gm_hw == GM_ASCM || gm_force_ascm) {
gm_long_limits = &GM_ASCM_LONG_LIMITS; gm_long_limits = &GM_ASCM_LONG_LIMITS;
} else if ((gm_hw == GM_CAM) || (gm_hw == GM_SDGM)) { } else if ((gm_hw == GM_CAM) || (gm_hw == GM_SDGM)) {
gm_long_limits = &GM_CAM_LONG_LIMITS; gm_long_limits = &GM_CAM_LONG_LIMITS;
} else { } else {
} }
gm_pedal_long = GET_FLAG(param, GM_PARAM_PEDAL_LONG); gm_pedal_long = GET_FLAG(param, GM_PARAM_PEDAL_LONG);
gm_cc_long = GET_FLAG(param, GM_PARAM_CC_LONG); gm_cc_long = GET_FLAG(param, GM_PARAM_CC_LONG);
gm_cam_long = GET_FLAG(param, GM_PARAM_HW_CAM_LONG) && !gm_cc_long; gm_cam_long = GET_FLAG(param, GM_PARAM_HW_CAM_LONG) && !gm_cc_long;
gm_pcm_cruise = (((gm_hw == GM_CAM) || (gm_hw == GM_SDGM)) && (!gm_cam_long || gm_cc_long) && !gm_force_ascm && !gm_pedal_long); gm_pcm_cruise = ((gm_hw == GM_CAM) && (!gm_cam_long || gm_cc_long) && !gm_force_ascm && !gm_pedal_long) || (gm_hw == GM_SDGM);
gm_skip_relay_check = GET_FLAG(param, GM_PARAM_NO_CAMERA); gm_skip_relay_check = GET_FLAG(param, GM_PARAM_NO_CAMERA);
gm_has_acc = !GET_FLAG(param, GM_PARAM_NO_ACC); gm_has_acc = !GET_FLAG(param, GM_PARAM_NO_ACC);
enable_gas_interceptor = GET_FLAG(param, GM_PARAM_PEDAL_INTERCEPTOR); enable_gas_interceptor = GET_FLAG(param, GM_PARAM_PEDAL_INTERCEPTOR);
gm_force_brake_c9 = GET_FLAG(param, GM_PARAM_FORCE_BRAKE_C9);
safety_config ret = BUILD_SAFETY_CFG(gm_rx_checks, GM_ASCM_TX_MSGS); safety_config ret = BUILD_SAFETY_CFG(gm_rx_checks, GM_ASCM_TX_MSGS);
if (gm_hw == GM_CAM) { if (gm_hw == GM_CAM) {
@@ -325,6 +336,8 @@ static safety_config gm_init(uint16_t param) {
} else { } else {
ret = BUILD_SAFETY_CFG(gm_rx_checks, GM_CAM_TX_MSGS); ret = BUILD_SAFETY_CFG(gm_rx_checks, GM_CAM_TX_MSGS);
} }
} else if (gm_hw == GM_SDGM) {
ret = BUILD_SAFETY_CFG(gm_rx_checks, GM_SDGM_TX_MSGS);
} }
return ret; return ret;
} }
+8 -9
View File
@@ -211,6 +211,7 @@ class Panda:
FLAG_HYUNDAI_ALT_LIMITS = 64 FLAG_HYUNDAI_ALT_LIMITS = 64
FLAG_HYUNDAI_CANFD_HDA2_ALT_STEERING = 128 FLAG_HYUNDAI_CANFD_HDA2_ALT_STEERING = 128
FLAG_HYUNDAI_LFA_BTN = 256 FLAG_HYUNDAI_LFA_BTN = 256
FLAG_HYUNDAI_TACO_TUNE_HACK = 512
FLAG_TESLA_POWERTRAIN = 1 FLAG_TESLA_POWERTRAIN = 1
FLAG_TESLA_LONG_CONTROL = 2 FLAG_TESLA_LONG_CONTROL = 2
@@ -230,15 +231,13 @@ class Panda:
FLAG_GM_HW_CAM = 1 FLAG_GM_HW_CAM = 1
FLAG_GM_HW_CAM_LONG = 2 FLAG_GM_HW_CAM_LONG = 2
FLAG_GM_CC_LONG = 4 FLAG_GM_HW_SDGM = 4
FLAG_GM_HW_ASCM_LONG = 8 FLAG_GM_CC_LONG = 8
FLAG_GM_NO_CAMERA = 16 FLAG_GM_HW_ASCM_LONG = 16
FLAG_GM_NO_ACC = 32 FLAG_GM_NO_CAMERA = 32
FLAG_GM_PEDAL_LONG = 64 # TODO: This can be inferred FLAG_GM_NO_ACC = 64
FLAG_GM_GAS_INTERCEPTOR = 128 FLAG_GM_PEDAL_LONG = 128 # TODO: This can be inferred
FLAG_GM_ASCM_INT = 256 FLAG_GM_GAS_INTERCEPTOR = 256
FLAG_GM_FORCE_BRAKE_C9 = 512
FLAG_GM_HW_SDGM = 1024
FLAG_FORD_LONG_CONTROL = 1 FLAG_FORD_LONG_CONTROL = 1
FLAG_FORD_CANFD = 2 FLAG_FORD_CANFD = 2
+270 -88
View File
@@ -1,5 +1,7 @@
from typing import Tuple
import time
import math import math
from openpilot.common.swaglog import cloudlog
from cereal import car from cereal import car
from openpilot.common.conversions import Conversions as CV from openpilot.common.conversions import Conversions as CV
from openpilot.common.filter_simple import FirstOrderFilter from openpilot.common.filter_simple import FirstOrderFilter
@@ -9,10 +11,11 @@ from openpilot.common.params_pyx import Params
from opendbc.can.packer import CANPacker from opendbc.can.packer import CANPacker
from openpilot.selfdrive.car import apply_driver_steer_torque_limits, create_gas_interceptor_command from openpilot.selfdrive.car import apply_driver_steer_torque_limits, create_gas_interceptor_command
from openpilot.selfdrive.car.gm import gmcan from openpilot.selfdrive.car.gm import gmcan
from openpilot.selfdrive.car.gm.values import DBC, AccState, CanBus, CarControllerParams, CruiseButtons, GMFlags, CC_ONLY_CAR, SDGM_CAR, EV_CAR, CAR from openpilot.selfdrive.car.gm.values import CAR, DBC, AccState, CanBus, CarControllerParams, CruiseButtons, GMFlags, CC_ONLY_CAR, SDGM_CAR, EV_CAR, CC_REGEN_PADDLE_CAR
from openpilot.selfdrive.car.interfaces import CarControllerBase from openpilot.selfdrive.car.interfaces import CarControllerBase
from openpilot.selfdrive.controls.lib.drive_helpers import apply_deadzone from openpilot.selfdrive.controls.lib.drive_helpers import apply_deadzone
from openpilot.selfdrive.controls.lib.vehicle_model import ACCELERATION_DUE_TO_GRAVITY from openpilot.selfdrive.controls.lib.vehicle_model import ACCELERATION_DUE_TO_GRAVITY
from openpilot.common.swaglog import cloudlog
VisualAlert = car.CarControl.HUDControl.VisualAlert VisualAlert = car.CarControl.HUDControl.VisualAlert
NetworkLocation = car.CarParams.NetworkLocation NetworkLocation = car.CarParams.NetworkLocation
@@ -24,7 +27,15 @@ TransmissionType = car.CarParams.TransmissionType
CAMERA_CANCEL_DELAY_FRAMES = 10 CAMERA_CANCEL_DELAY_FRAMES = 10
# Enforce a minimum interval between steering messages to avoid a fault # Enforce a minimum interval between steering messages to avoid a fault
MIN_STEER_MSG_INTERVAL_MS = 15 MIN_STEER_MSG_INTERVAL_MS = 15
# Twosided spacing tuned for ~33 Hz steer; target a 10 ms wide window per interval
# Paddle spoofing and scheduling constants
PADDLE_STEER_GAP_MIN_NS = 5_000_000 # ≥5 ms each side (EPS guard)
PADDLE_STEER_GAP_MAX_NS = 12_000_000 # cap for long intervals
PADDLE_GAP_TARGET_NS = 5_000_000 # aim perside gap even if interval//2 early is larger
PADDLE_NONBLOCK_GAP_NS = 1_000_000 # ≥1 ms since last paddle send
PADDLE_SLOT_EARLY_NS = 1_000_000 # allow firing up to 1 ms before slot
OVERFLOW_THRESH = 1.00 # fire one extra slot whenever credits ≥ 1.0
PADDLE_TARGET_HZ = 42.0 # desired paddle rate (Hz) when regen active; steer is ~33 Hz
# Constants for pitch compensation # Constants for pitch compensation
BRAKE_PITCH_FACTOR_BP = [5., 10.] # [m/s] smoothly revert to planned accel at low speeds BRAKE_PITCH_FACTOR_BP = [5., 10.] # [m/s] smoothly revert to planned accel at low speeds
BRAKE_PITCH_FACTOR_V = [0., 1.] # [unitless in [0,1]]; don't touch BRAKE_PITCH_FACTOR_V = [0., 1.] # [unitless in [0,1]]; don't touch
@@ -40,6 +51,11 @@ class CarController(CarControllerBase):
self.apply_speed = 0 self.apply_speed = 0
self.frame = 0 self.frame = 0
self.last_steer_frame = 0 self.last_steer_frame = 0
self.last_steer_ts_ns = 0
self.last_regen_active = False
self.prev_steer_ts_ns = 0
self.last_spoof_ts_ns = 0
self.last_paddle_ts_ns = 0
self.last_button_frame = 0 self.last_button_frame = 0
self.cancel_counter = 0 self.cancel_counter = 0
self.pedal_steady = 0. self.pedal_steady = 0.
@@ -48,13 +64,15 @@ class CarController(CarControllerBase):
self.lka_icon_status_last = (False, False) self.lka_icon_status_last = (False, False)
self.params = CarControllerParams(self.CP) self.params = CarControllerParams(self.CP)
self.is_volt = self.CP.carFingerprint in (CAR.CHEVROLET_VOLT, CAR.CHEVROLET_VOLT_2019, CAR.CHEVROLET_VOLT_ASCM, CAR.CHEVROLET_VOLT_CAMERA, CAR.CHEVROLET_VOLT_CC) self.params_ = Params()
self.mass = CP.mass self.mass = CP.mass
self.tireRadius = 0.075 * CP.wheelbase + 0.1453 self.tireRadius = 0.075 * CP.wheelbase + 0.1453
self.frontalArea = 1.05 * CP.wheelbase + 0.0679 self.frontalArea = 1.05 * CP.wheelbase + 0.0679
self.coeffDrag = 0.30 self.coeffDrag = 0.30
self.airDensity = 1.225 self.airDensity = 1.225
self.params_ = Params()
self.packer_pt = CANPacker(DBC[self.CP.carFingerprint]['pt']) self.packer_pt = CANPacker(DBC[self.CP.carFingerprint]['pt'])
self.packer_obj = CANPacker(DBC[self.CP.carFingerprint]['radar']) self.packer_obj = CANPacker(DBC[self.CP.carFingerprint]['radar'])
@@ -64,25 +82,85 @@ class CarController(CarControllerBase):
self.accel_g = 0.0 self.accel_g = 0.0
self.pitch = FirstOrderFilter(0., 0.09 * 4, DT_CTRL * 4) # runs at 25 Hz self.pitch = FirstOrderFilter(0., 0.09 * 4, DT_CTRL * 4) # runs at 25 Hz
self.accel_g = 0.0 self.accel_g = 0.0
self.regen_paddle_pressed = False
self.aego = 0.0
self.regen_paddle_timer = 0
self.planner_regen_hold = False
@staticmethod
def calc_pedal_command(accel: float, long_active: bool) -> float:
if not long_active: return 0.
zero = 0.15625 # 40/256
if accel > 0.:
# Scales the accel from 0-1 to 0.156-1
pedal_gas = clip(((1 - zero) * accel + zero), 0., 1.)
else:
# if accel is negative, -0.1 -> 0.015625
pedal_gas = clip(zero + accel, 0., zero) # Make brake the same size as gas, but clip to regen
return pedal_gas # Midpoint + overflow spoof accumulator and flags
self.spoof_accum = 0.0
self.spoof_mid_sent = False
self.spoof_over_sent = False
self.last_interval_ns = 0
def calc_pedal_command(self, accel: float, long_active: bool, car_velocity) -> Tuple[float, bool]:
if not long_active:
self.planner_regen_hold = False
return 0., False
# Regen paddle hysteresis (frame-based): hold 10 frames, with decrement dead-zone
if not hasattr(self, 'regen_paddle_timer'):
self.regen_paddle_timer = 0 # frames
# Regen paddle hysteresis (framebased): count frames when decelerating hard, decrement only when truly released
if self.aego < -0.7:
self.regen_paddle_timer += 1
elif self.aego > -0.3:
self.regen_paddle_timer = max(self.regen_paddle_timer - 1, 0)
# else: hold timer between -0.7 and -0.3
# Base paddle press hysteresis
self.regen_paddle_pressed = self.regen_paddle_timer >= 10 # 10 frames
press_regen_paddle = self.regen_paddle_pressed or self.planner_regen_hold
# Regen gain ratios from bin-averaged 600 deceleration sweep; Calculates stronger decel from paddle
speed_mps = [0.559, 1.678, 2.797, 3.916, 5.035, 6.154, 7.273, 8.392, 9.511, 10.63,
11.749, 12.868, 13.987, 15.106, 16.225, 17.344, 18.463, 19.582, 20.701, 21.820,
22.939, 24.058, 25.177, 26.296]
regen_gain_ratio = [
1.000000, 1.057308, 1.131123, 1.220611, 1.270247, 1.300253, 1.339543, 1.361002,
1.388410, 1.403253, 1.414721, 1.430949, 1.420289, 1.436787, 1.434116, 1.436805,
1.417508, 1.402213, 1.395360, 1.360921, 1.342030, 1.292219, 1.270048, 1.239172
]
gain = interp(car_velocity, speed_mps, regen_gain_ratio)
pedaloffset = interp(car_velocity, [0., 3, 6, 30], [0.10, 0.175, 0.240, 0.240])
# Compute raw pedal gas
raw_pedal_gas = clip((pedaloffset + (accel / gain) * 0.6), 0.0, 1.0) if press_regen_paddle else clip((pedaloffset + accel * 0.6), 0.0, 1.0)
# --- Immediate application of raw pedal gas, no blending ---
pedal_gas = raw_pedal_gas
# Safety cap: ramp from 22% at 0 m/s to 37.25% at 10 mph (4.47 m/s), then allow full throttle
pedal_gas_max = interp(car_velocity, [0.0, 4.47, 4.48], [0.22, 0.3725, 1.0])
pedal_gas = clip(pedal_gas, 0.0, pedal_gas_max)
return pedal_gas, press_regen_paddle
def update(self, CC, CS, now_nanos, frogpilot_toggles): def update(self, CC, CS, now_nanos, frogpilot_toggles):
self.CS = CS
self.aego = CS.out.aEgo
actuators = CC.actuators actuators = CC.actuators
accel = brake_accel = actuators.accel accel = brake_accel = actuators.accel
press_regen_paddle = False
# Planner-driven regen hold: gate by car support and OP long active, use commanded accel thresholds
if (self.CP.enableGasInterceptor and self.CP.carFingerprint in CC_REGEN_PADDLE_CAR
and self.CP.openpilotLongitudinalControl and CC.longActive):
# Match original hysteresis intent: vehicle can usually stop without paddle up to ~1.0 m/s^2
# Use the same thresholds as the aEgo-based hysteresis, but on commanded accel for preemption
planner_press_threshold = -0.7
planner_release_threshold = -0.3
if accel <= planner_press_threshold:
self.planner_regen_hold = True
elif accel >= planner_release_threshold:
self.planner_regen_hold = False
else:
self.planner_regen_hold = False
hud_control = CC.hudControl hud_control = CC.hudControl
hud_alert = hud_control.visualAlert hud_alert = hud_control.visualAlert
hud_v_cruise = hud_control.setSpeed hud_v_cruise = hud_control.setSpeed
@@ -91,6 +169,138 @@ class CarController(CarControllerBase):
# Send CAN commands. # Send CAN commands.
can_sends = [] can_sends = []
paddle_sends = []
raw_regen_active = (
self.CP.carFingerprint in CC_REGEN_PADDLE_CAR and
self.CP.openpilotLongitudinalControl and
CC.longActive and
self.CP.enableGasInterceptor and
(self.regen_paddle_timer >= 10 or self.planner_regen_hold) # hysteresis or planner hint
)
regen_active = raw_regen_active
# === Spoof scheduling: midpoint + overflow (~target Hz) ===
# Rising-edge reset on regen start
if raw_regen_active and not self.last_regen_active:
self.prev_steer_ts_ns = self.last_steer_ts_ns
self.last_spoof_ts_ns = 0
self.spoof_accum = 0.0
self.spoof_mid_sent = False
self.spoof_over_sent = False
if raw_regen_active:
# Interval between last two bus-0 steer sends
interval_ns = self.last_steer_ts_ns - self.prev_steer_ts_ns
# Adaptive twosided gap sized to the current steer interval, but capped to a target so the window stays wide enough
gap_ns = (PADDLE_STEER_GAP_MIN_NS if interval_ns <= 0 else
max(PADDLE_STEER_GAP_MIN_NS,
min(PADDLE_STEER_GAP_MAX_NS,
min((interval_ns // 2) - PADDLE_SLOT_EARLY_NS, PADDLE_GAP_TARGET_NS))))
# New steer interval? clear per-interval flags and add credits to reach target Hz
if interval_ns != self.last_interval_ns:
self.spoof_mid_sent = False
self.spoof_over_sent = False
self.last_interval_ns = interval_ns
# Add credits once per new steer interval to reach the desired paddle rate
if interval_ns > 0:
steer_hz = 1e9 / float(interval_ns)
extra_needed = max(0.0, (PADDLE_TARGET_HZ / steer_hz) - 1.0) # e.g., 42/33 1 ≈ 0.2727
self.spoof_accum += extra_needed
# Midpoint spoof: one per interval
if not self.spoof_mid_sent and interval_ns > 0:
midpoint_ns = self.prev_steer_ts_ns + interval_ns // 2
cloudlog.error("PADDLE MID: Δafter=%.1fms Δbefore=%.1fms credits=%.3f timer=%d",
(now_nanos - self.last_steer_ts_ns) * 1e-6,
(now_nanos - self.prev_steer_ts_ns) * 1e-6,
self.spoof_accum,
self.regen_paddle_timer)
# Compute spacing to last and next steer (two-sided guard)
next_steer_ts_ns = self.last_steer_ts_ns + interval_ns if interval_ns > 0 else 0
delta_after_ns = now_nanos - self.last_steer_ts_ns
delta_before_ns = (next_steer_ts_ns - now_nanos) if interval_ns > 0 else 1_000_000_000
if (CS.out.vEgo > 2.68
and now_nanos >= (midpoint_ns - PADDLE_SLOT_EARLY_NS)
and delta_after_ns >= gap_ns
and delta_before_ns >= gap_ns):
# Non-blocking 1 ms spacing for paddle frames
if now_nanos - self.last_paddle_ts_ns >= PADDLE_NONBLOCK_GAP_NS:
paddle_sends.append(gmcan.create_prndl2_command(self.packer_pt, CanBus.POWERTRAIN, True))
paddle_sends.append(gmcan.create_regen_paddle_command(self.packer_pt, CanBus.POWERTRAIN, True))
self.last_paddle_ts_ns = now_nanos
self.last_spoof_ts_ns = now_nanos
self.spoof_mid_sent = True
# Overflow spoof: insert extra when accumulator allows
if self.spoof_accum >= OVERFLOW_THRESH and not self.spoof_over_sent and interval_ns > 0:
slot2_ns = self.prev_steer_ts_ns + (interval_ns * 2) // 3
cloudlog.error("PADDLE OFL: Δafter=%.1fms Δbefore=%.1fms credits=%.3f thresh=%.1f timer=%d",
(now_nanos - self.last_steer_ts_ns) * 1e-6,
(now_nanos - self.prev_steer_ts_ns) * 1e-6,
self.spoof_accum,
OVERFLOW_THRESH,
self.regen_paddle_timer)
# Two-sided spacing relative to steer
next_steer_ts_ns = self.last_steer_ts_ns + interval_ns if interval_ns > 0 else 0
delta_after_ns = now_nanos - self.last_steer_ts_ns
delta_before_ns = (next_steer_ts_ns - now_nanos) if interval_ns > 0 else 1_000_000_000
if (CS.out.vEgo > 2.68
and now_nanos >= (slot2_ns - PADDLE_SLOT_EARLY_NS)
and delta_after_ns >= gap_ns
and delta_before_ns >= gap_ns):
# Non-blocking 1 ms spacing for paddle frames
if now_nanos - self.last_paddle_ts_ns >= PADDLE_NONBLOCK_GAP_NS:
paddle_sends.append(gmcan.create_prndl2_command(self.packer_pt, CanBus.POWERTRAIN, True))
paddle_sends.append(gmcan.create_regen_paddle_command(self.packer_pt, CanBus.POWERTRAIN, True))
self.last_paddle_ts_ns = now_nanos
self.last_spoof_ts_ns = now_nanos
self.spoof_over_sent = True
self.spoof_accum -= OVERFLOW_THRESH
# === End Spoof scheduling ===
# === Off-pulse scheduling on regen release ===
if not raw_regen_active and self.last_regen_active:
# schedule two off-slots at 1/3 and 2/3 of the last steer interval
if self.prev_steer_ts_ns and self.last_steer_ts_ns:
intv = self.last_steer_ts_ns - self.prev_steer_ts_ns
self.off_schedule_ns = [
self.prev_steer_ts_ns + intv // 3,
self.prev_steer_ts_ns + (2 * intv) // 3
]
self.off_sent = [False, False]
if hasattr(self, "off_schedule_ns"):
for i, t_ns in enumerate(self.off_schedule_ns):
if not self.off_sent[i] and now_nanos >= (t_ns - PADDLE_SLOT_EARLY_NS):
cloudlog.error("PADDLE OFF %d: Δafter=%.1fms Δto_slot=%.1fms timer=%d",
i,
(now_nanos - self.last_steer_ts_ns) * 1e-6,
(now_nanos - t_ns) * 1e-6,
self.regen_paddle_timer)
# Two-sided spacing to steer before sending
interval_ns = self.last_steer_ts_ns - self.prev_steer_ts_ns
gap_ns = (PADDLE_STEER_GAP_MIN_NS if interval_ns <= 0 else
max(PADDLE_STEER_GAP_MIN_NS,
min(PADDLE_STEER_GAP_MAX_NS,
min((interval_ns // 2) - PADDLE_SLOT_EARLY_NS, PADDLE_GAP_TARGET_NS))))
next_steer_ts_ns = self.last_steer_ts_ns + interval_ns if interval_ns > 0 else 0
delta_after_ns = now_nanos - self.last_steer_ts_ns
delta_before_ns = (next_steer_ts_ns - now_nanos) if interval_ns > 0 else 1_000_000_000
if (delta_after_ns >= gap_ns and delta_before_ns >= gap_ns):
# Non-blocking 1 ms spacing for paddle frames
if now_nanos - self.last_paddle_ts_ns >= PADDLE_NONBLOCK_GAP_NS:
paddle_sends.append(gmcan.create_prndl2_command(self.packer_pt, CanBus.POWERTRAIN, False))
paddle_sends.append(gmcan.create_regen_paddle_command(self.packer_pt, CanBus.POWERTRAIN, False))
self.last_paddle_ts_ns = now_nanos
self.off_sent[i] = True
# clean up once both off pulses are sent
if hasattr(self, "off_sent") and all(self.off_sent):
del self.off_schedule_ns
del self.off_sent
# === End off-pulse scheduling ===
# Steering (Active: 50Hz, inactive: 10Hz) # Steering (Active: 50Hz, inactive: 10Hz)
steer_step = self.params.STEER_STEP if CC.latActive else self.params.INACTIVE_STEER_STEP steer_step = self.params.STEER_STEP if CC.latActive else self.params.INACTIVE_STEER_STEP
@@ -123,24 +333,32 @@ class CarController(CarControllerBase):
if (self.CP.flags & GMFlags.CC_LONG.value) and CC.enabled and not CS.out.cruiseState.enabled: # Send 0 so Panda doesn't error if (self.CP.flags & GMFlags.CC_LONG.value) and CC.enabled and not CS.out.cruiseState.enabled: # Send 0 so Panda doesn't error
apply_steer = 0 apply_steer = 0
# shift previous steer timestamp
self.prev_steer_ts_ns = self.last_steer_ts_ns
self.last_steer_ts_ns = now_nanos
self.last_steer_frame = self.frame self.last_steer_frame = self.frame
self.apply_steer_last = apply_steer self.apply_steer_last = apply_steer
idx = self.lka_steering_cmd_counter % 4 idx = self.lka_steering_cmd_counter % 4
can_sends.append(gmcan.create_steering_control(self.packer_pt, CanBus.POWERTRAIN, apply_steer, idx, CC.latActive)) can_sends.append(gmcan.create_steering_control(self.packer_pt, CanBus.POWERTRAIN, apply_steer, idx, CC.latActive))
# Update regen_active state and last_regen_paddle_pressed for next loop
self.last_regen_active = regen_active
self.last_regen_paddle_pressed = self.regen_paddle_pressed or self.planner_regen_hold
if paddle_sends:
interval_ns = self.last_steer_ts_ns - self.prev_steer_ts_ns
flush_gap_ns = (PADDLE_STEER_GAP_MIN_NS if interval_ns <= 0 else
max(PADDLE_STEER_GAP_MIN_NS,
min(PADDLE_STEER_GAP_MAX_NS,
min((interval_ns // 2) - PADDLE_SLOT_EARLY_NS, PADDLE_GAP_TARGET_NS))))
if now_nanos - self.last_steer_ts_ns >= flush_gap_ns:
can_sends.extend(paddle_sends)
if self.CP.openpilotLongitudinalControl: if self.CP.openpilotLongitudinalControl:
# Gas/regen, brakes, and UI commands - all at 25Hz # Gas/regen, brakes, and UI commands - all at 25Hz
if self.frame % 4 == 0: if self.frame % 4 == 0:
stopping = actuators.longControlState == LongCtrlState.stopping stopping = actuators.longControlState == LongCtrlState.stopping
# Pitch compensated acceleration;
# TODO: include future pitch (sm['modelDataV2'].orientation.y) to account for long actuator delay
if frogpilot_toggles.long_pitch and len(CC.orientationNED) > 1 and not self.is_volt:
self.pitch.update(CC.orientationNED[1])
self.accel_g = ACCELERATION_DUE_TO_GRAVITY * apply_deadzone(self.pitch.x, PITCH_DEADZONE) # driving uphill is positive pitch
accel += self.accel_g
brake_accel = actuators.accel + self.accel_g * interp(CS.out.vEgo, BRAKE_PITCH_FACTOR_BP, BRAKE_PITCH_FACTOR_V)
at_full_stop = CC.longActive and CS.out.standstill at_full_stop = CC.longActive and CS.out.standstill
near_stop = CC.longActive and (CS.out.vEgo < self.params.NEAR_STOP_BRAKE_PHASE) near_stop = CC.longActive and (CS.out.vEgo < self.params.NEAR_STOP_BRAKE_PHASE)
interceptor_gas_cmd = 0 interceptor_gas_cmd = 0
@@ -152,66 +370,33 @@ class CarController(CarControllerBase):
self.apply_gas = self.params.INACTIVE_REGEN self.apply_gas = self.params.INACTIVE_REGEN
self.apply_brake = int(min(-100 * frogpilot_toggles.stopAccel, self.params.MAX_BRAKE)) self.apply_brake = int(min(-100 * frogpilot_toggles.stopAccel, self.params.MAX_BRAKE))
else: else:
# Normal operation if len(CC.orientationNED) == 3 and CS.out.vEgo > self.CP.vEgoStopping:
if self.is_volt: accel_due_to_pitch = math.sin(CC.orientationNED[1]) * ACCELERATION_DUE_TO_GRAVITY
if len(CC.orientationNED) == 3 and CS.out.vEgo > self.CP.vEgoStopping:
volt_pitch_accel = math.sin(CC.orientationNED[1]) * ACCELERATION_DUE_TO_GRAVITY
else:
volt_pitch_accel = 0.0
aero_drag_accel = (0.5 * self.coeffDrag * self.frontalArea * self.airDensity * CS.out.vEgo ** 2) / self.mass
accel += aero_drag_accel + volt_pitch_accel
brake_accel = actuators.accel + aero_drag_accel + volt_pitch_accel * interp(CS.out.vEgo, BRAKE_PITCH_FACTOR_BP, BRAKE_PITCH_FACTOR_V)
accel = clip(accel, self.params.ACCEL_MIN, self.params.ACCEL_MAX)
brake_accel = clip(brake_accel, self.params.ACCEL_MIN, self.params.ACCEL_MAX)
if self.CP.carFingerprint in EV_CAR:
self.params.update_ev_gas_brake_threshold(CS.out.vEgo)
self.apply_gas = int(round(interp(accel, self.params.EV_GAS_LOOKUP_BP, self.params.GAS_LOOKUP_V)))
self.apply_brake = int(round(interp(brake_accel, self.params.EV_BRAKE_LOOKUP_BP, self.params.BRAKE_LOOKUP_V)))
else:
self.apply_gas = int(round(interp(accel, self.params.GAS_LOOKUP_BP, self.params.GAS_LOOKUP_V)))
self.apply_brake = int(round(interp(brake_accel, self.params.BRAKE_LOOKUP_BP, self.params.BRAKE_LOOKUP_V)))
# Clamp within message-valid ranges to avoid ASCM faults from overshoot or rounding
self.apply_gas = int(round(clip(self.apply_gas, self.params.MAX_ACC_REGEN, self.params.MAX_GAS)))
self.apply_brake = int(round(clip(self.apply_brake, 0, self.params.MAX_BRAKE)))
if self.apply_brake > 0:
# Volt should never present positive torque alongside friction braking
self.apply_gas = self.params.INACTIVE_REGEN
else: else:
if len(CC.orientationNED) == 3 and CS.out.vEgo > self.CP.vEgoStopping: accel_due_to_pitch = 0.0
accel_due_to_pitch = math.sin(CC.orientationNED[1]) * ACCELERATION_DUE_TO_GRAVITY
else:
accel_due_to_pitch = 0.0
gas_max = self.params.MAX_GAS gas_max = self.params.MAX_GAS
accel_max = self.params.ACCEL_MAX accel_max = self.params.ACCEL_MAX
accel = clip(actuators.accel + accel_due_to_pitch, self.params.ACCEL_MIN, accel_max)
torque = self.tireRadius * ((self.mass*accel) + (0.5*self.coeffDrag*self.frontalArea*self.airDensity*CS.out.vEgo**2))
scaled_torque = torque + self.params.ZERO_GAS
apply_gas_torque = clip(scaled_torque, self.params.MAX_ACC_REGEN, gas_max)
BRAKE_SWITCH = int(round(interp(CS.out.vEgo, self.params.BRAKE_SWITCH_LOOKUP_BP, self.params.BRAKE_SWITCH_LOOKUP_V)))
brake_accel = min((scaled_torque - BRAKE_SWITCH)/(self.tireRadius*self.mass), 0)
self.apply_gas = int(round(apply_gas_torque))
self.apply_brake = int(round(interp(brake_accel, self.params.BRAKE_LOOKUP_BP, self.params.BRAKE_LOOKUP_V)))
if self.apply_brake > 0:
self.apply_gas = self.params.INACTIVE_REGEN
accel = clip(actuators.accel + accel_due_to_pitch, self.params.ACCEL_MIN, accel_max)
torque = self.tireRadius * ((self.mass * accel) + (0.5 * self.coeffDrag * self.frontalArea * self.airDensity * CS.out.vEgo ** 2))
scaled_torque = torque + self.params.ZERO_GAS
apply_gas_torque = clip(scaled_torque, self.params.MAX_ACC_REGEN, gas_max)
BRAKE_SWITCH = int(round(interp(CS.out.vEgo, self.params.BRAKE_SWITCH_LOOKUP_BP, self.params.BRAKE_SWITCH_LOOKUP_V)))
brake_accel = min((scaled_torque - BRAKE_SWITCH) / (self.tireRadius * self.mass), 0)
self.apply_gas = int(round(apply_gas_torque))
self.apply_brake = int(round(interp(brake_accel, self.params.BRAKE_LOOKUP_BP, self.params.BRAKE_LOOKUP_V)))
# Clamp within message-valid ranges to avoid ASCM faults from overshoot or rounding
self.apply_gas = int(round(clip(self.apply_gas, self.params.MAX_ACC_REGEN, self.params.MAX_GAS)))
self.apply_brake = int(round(clip(self.apply_brake, 0, self.params.MAX_BRAKE)))
if self.apply_brake > 0 and self.apply_gas > self.params.INACTIVE_REGEN:
self.apply_gas = self.params.INACTIVE_REGEN
# Don't allow any gas above inactive regen while stopping # Don't allow any gas above inactive regen while stopping
# FIXME: brakes aren't applied immediately when enabling at a stop # FIXME: brakes aren't applied immediately when enabling at a stop
if stopping: if stopping:
self.apply_gas = self.params.INACTIVE_REGEN self.apply_gas = self.params.INACTIVE_REGEN
if self.CP.carFingerprint in CC_ONLY_CAR: if self.CP.carFingerprint in CC_ONLY_CAR:
# gas interceptor only used for full long control on cars without ACC # gas interceptor only used for full long control on cars without ACC
interceptor_gas_cmd = self.calc_pedal_command(actuators.accel, CC.longActive) interceptor_gas_cmd, press_regen_paddle = self.calc_pedal_command(actuators.accel, CC.longActive, CS.out.vEgo)
if self.CP.enableGasInterceptor and self.apply_gas > self.params.INACTIVE_REGEN and CS.out.cruiseState.standstill: if self.CP.enableGasInterceptor and self.apply_gas > self.params.INACTIVE_REGEN and CS.out.cruiseState.standstill:
# "Tap" the accelerator pedal to re-engage ACC # "Tap" the accelerator pedal to re-engage ACC
@@ -237,8 +422,6 @@ class CarController(CarControllerBase):
if self.CP.networkLocation == NetworkLocation.fwdCamera and self.CP.carFingerprint not in CC_ONLY_CAR: if self.CP.networkLocation == NetworkLocation.fwdCamera and self.CP.carFingerprint not in CC_ONLY_CAR:
at_full_stop = at_full_stop and stopping at_full_stop = at_full_stop and stopping
friction_brake_bus = CanBus.POWERTRAIN friction_brake_bus = CanBus.POWERTRAIN
if self.CP.carFingerprint in SDGM_CAR:
friction_brake_bus = CanBus.CAMERA
if self.CP.autoResumeSng: if self.CP.autoResumeSng:
resume = actuators.longControlState != LongCtrlState.starting or CC.cruiseControl.resume resume = actuators.longControlState != LongCtrlState.starting or CC.cruiseControl.resume
@@ -252,7 +435,7 @@ class CarController(CarControllerBase):
# GasRegenCmdActive needs to be 1 to avoid cruise faults. It describes the ACC state, not actuation # GasRegenCmdActive needs to be 1 to avoid cruise faults. It describes the ACC state, not actuation
can_sends.append(gmcan.create_gas_regen_command(self.packer_pt, CanBus.POWERTRAIN, self.apply_gas, idx, acc_engaged, at_full_stop)) can_sends.append(gmcan.create_gas_regen_command(self.packer_pt, CanBus.POWERTRAIN, self.apply_gas, idx, acc_engaged, at_full_stop))
can_sends.append(gmcan.create_friction_brake_command(self.packer_ch, friction_brake_bus, self.apply_brake, can_sends.append(gmcan.create_friction_brake_command(self.packer_ch, friction_brake_bus, self.apply_brake,
idx, CC.enabled, near_stop, at_full_stop, self.CP)) idx, CC.enabled, near_stop, at_full_stop, self.CP))
# Send dashboard UI commands (ACC status) # Send dashboard UI commands (ACC status)
send_fcw = hud_alert == VisualAlert.fcw send_fcw = hud_alert == VisualAlert.fcw
@@ -263,22 +446,18 @@ class CarController(CarControllerBase):
accel += self.accel_g accel += self.accel_g
# Radar needs to know current speed and yaw rate (50hz), # Radar needs to know current speed and yaw rate (50hz),
# and that ADAS is alive (10hz) # and that ADAS is alive (5hz, previously 10hz)
if not self.CP.radarUnavailable and self.CP.networkLocation != NetworkLocation.fwdCamera and self.CP.carFingerprint not in SDGM_CAR: if not self.CP.radarUnavailable:
tt = self.frame * DT_CTRL tt = self.frame * DT_CTRL
time_and_headlights_step = 10 time_and_headlights_step = 20
if self.frame % time_and_headlights_step == 0: if self.frame % time_and_headlights_step == 0:
idx = (self.frame // time_and_headlights_step) % 4 idx = (self.frame // time_and_headlights_step) % 4
can_sends.append(gmcan.create_adas_time_status(CanBus.OBSTACLE, int((tt - self.start_time) * 60), idx)) can_sends.append(gmcan.create_adas_time_status(CanBus.OBSTACLE, int((tt - self.start_time) * 60), idx))
can_sends.append(gmcan.create_adas_headlights_status(self.packer_obj, CanBus.OBSTACLE)) can_sends.append(gmcan.create_adas_headlights_status(self.packer_obj, CanBus.OBSTACLE))
speed_and_accelerometer_step = 2
if self.frame % speed_and_accelerometer_step == 0:
idx = (self.frame // speed_and_accelerometer_step) % 4
can_sends.append(gmcan.create_adas_steering_status(CanBus.OBSTACLE, idx)) can_sends.append(gmcan.create_adas_steering_status(CanBus.OBSTACLE, idx))
can_sends.append(gmcan.create_adas_accelerometer_speed_status(CanBus.OBSTACLE, CS.out.vEgo, idx)) can_sends.append(gmcan.create_adas_accelerometer_speed_status(CanBus.OBSTACLE, CS.out.vEgo, idx))
if self.CP.networkLocation == NetworkLocation.gateway and self.frame % self.params.ADAS_KEEPALIVE_STEP == 0: if self.CP.networkLocation == NetworkLocation.gateway and self.frame % (self.params.ADAS_KEEPALIVE_STEP * 2) == 0:
can_sends += gmcan.create_adas_keepalive(CanBus.POWERTRAIN) can_sends += gmcan.create_adas_keepalive(CanBus.POWERTRAIN)
# TODO: integrate this with the code block below? # TODO: integrate this with the code block below?
@@ -299,11 +478,14 @@ class CarController(CarControllerBase):
if (self.frame - self.last_button_frame) * DT_CTRL > 0.04: if (self.frame - self.last_button_frame) * DT_CTRL > 0.04:
if self.cancel_counter > CAMERA_CANCEL_DELAY_FRAMES: if self.cancel_counter > CAMERA_CANCEL_DELAY_FRAMES:
self.last_button_frame = self.frame self.last_button_frame = self.frame
can_sends.append(gmcan.create_buttons(self.packer_pt, CanBus.CAMERA, CS.buttons_counter, CruiseButtons.CANCEL)) if self.CP.carFingerprint in SDGM_CAR:
can_sends.append(gmcan.create_buttons(self.packer_pt, CanBus.POWERTRAIN, CS.buttons_counter, CruiseButtons.CANCEL))
else:
can_sends.append(gmcan.create_buttons(self.packer_pt, CanBus.CAMERA, CS.buttons_counter, CruiseButtons.CANCEL))
if self.CP.networkLocation == NetworkLocation.fwdCamera: if self.CP.networkLocation == NetworkLocation.fwdCamera:
# Silence "Take Steering" alert sent by camera, forward PSCMStatus with HandsOffSWlDetectionStatus=1 # Silence "Take Steering" alert sent by camera, forward PSCMStatus with HandsOffSWlDetectionStatus=1
if self.frame % 10 == 0: if self.frame % 20 == 0:
can_sends.append(gmcan.create_pscm_status(self.packer_pt, CanBus.CAMERA, CS.pscm_status)) can_sends.append(gmcan.create_pscm_status(self.packer_pt, CanBus.CAMERA, CS.pscm_status))
new_actuators = actuators.as_builder() new_actuators = actuators.as_builder()
+94 -44
View File
@@ -5,7 +5,7 @@ from openpilot.common.numpy_fast import mean
from opendbc.can.can_define import CANDefine from opendbc.can.can_define import CANDefine
from opendbc.can.parser import CANParser from opendbc.can.parser import CANParser
from openpilot.selfdrive.car.interfaces import CarStateBase from openpilot.selfdrive.car.interfaces import CarStateBase
from openpilot.selfdrive.car.gm.values import DBC, AccState, CanBus, STEER_THRESHOLD, GMFlags, CC_ONLY_CAR, CAMERA_ACC_CAR, SDGM_CAR, ASCM_INT, CAR from openpilot.selfdrive.car.gm.values import DBC, AccState, CanBus, STEER_THRESHOLD, GMFlags, CC_ONLY_CAR, CAMERA_ACC_CAR, SDGM_CAR, CC_REGEN_PADDLE_CAR, CAR
TransmissionType = car.CarParams.TransmissionType TransmissionType = car.CarParams.TransmissionType
NetworkLocation = car.CarParams.NetworkLocation NetworkLocation = car.CarParams.NetworkLocation
@@ -39,15 +39,27 @@ class CarState(CarStateBase):
self.prev_cruise_buttons = self.cruise_buttons self.prev_cruise_buttons = self.cruise_buttons
self.prev_distance_button = self.distance_button self.prev_distance_button = self.distance_button
self.cruise_buttons = pt_cp.vl["ASCMSteeringButton"]["ACCButtons"] if self.CP.carFingerprint not in SDGM_CAR:
self.distance_button = pt_cp.vl["ASCMSteeringButton"]["DistanceButton"] self.cruise_buttons = pt_cp.vl["ASCMSteeringButton"]["ACCButtons"]
self.buttons_counter = pt_cp.vl["ASCMSteeringButton"]["RollingCounter"] self.distance_button = pt_cp.vl["ASCMSteeringButton"]["DistanceButton"]
self.buttons_counter = pt_cp.vl["ASCMSteeringButton"]["RollingCounter"]
else:
self.cruise_buttons = cam_cp.vl["ASCMSteeringButton"]["ACCButtons"]
self.distance_button = cam_cp.vl["ASCMSteeringButton"]["DistanceButton"]
self.buttons_counter = cam_cp.vl["ASCMSteeringButton"]["RollingCounter"]
self.pscm_status = copy.copy(pt_cp.vl["PSCMStatus"]) self.pscm_status = copy.copy(pt_cp.vl["PSCMStatus"])
# This is to avoid a fault where you engage while still moving backwards after shifting to D. # This is to avoid a fault where you engage while still moving backwards after shifting to D.
# An Equinox has been seen with an unsupported status (3), so only check if either wheel is in reverse (2) # An Equinox has been seen with an unsupported status (3), so only check if either wheel is in reverse (2)
self.moving_backward = (pt_cp.vl["EBCMWheelSpdRear"]["RLWheelDir"] == 2) or (pt_cp.vl["EBCMWheelSpdRear"]["RRWheelDir"] == 2) self.moving_backward = (pt_cp.vl["EBCMWheelSpdRear"]["RLWheelDir"] == 2) or (pt_cp.vl["EBCMWheelSpdRear"]["RRWheelDir"] == 2)
# Variables used for avoiding LKAS faults # Variables used for avoiding LKAS faults
# Track timestamps for OEM PRNDL2 and Regen Paddle messages (used to sync spoofing timing)
self.prndl2_ts_nanos = pt_cp.ts_nanos["ECMPRDNL2"]["PRNDL2"]
if self.CP.carFingerprint in CC_REGEN_PADDLE_CAR:
self.regen_paddle_ts_nanos = pt_cp.ts_nanos["EBCMRegenPaddle"]["RegenPaddle"]
else:
self.regen_paddle_ts_nanos = 0
self.loopback_lka_steering_cmd_updated = len(loopback_cp.vl_all["ASCMLKASteeringCmd"]["RollingCounter"]) > 0 self.loopback_lka_steering_cmd_updated = len(loopback_cp.vl_all["ASCMLKASteeringCmd"]["RollingCounter"]) > 0
if self.loopback_lka_steering_cmd_updated: if self.loopback_lka_steering_cmd_updated:
self.loopback_lka_steering_cmd_ts_nanos = loopback_cp.ts_nanos["ASCMLKASteeringCmd"]["RollingCounter"] self.loopback_lka_steering_cmd_ts_nanos = loopback_cp.ts_nanos["ASCMLKASteeringCmd"]["RollingCounter"]
@@ -66,25 +78,20 @@ class CarState(CarStateBase):
# sample rear wheel speeds, standstill=True if ECM allows engagement with brake # sample rear wheel speeds, standstill=True if ECM allows engagement with brake
ret.standstill = ret.wheelSpeeds.rl <= STANDSTILL_THRESHOLD and ret.wheelSpeeds.rr <= STANDSTILL_THRESHOLD ret.standstill = ret.wheelSpeeds.rl <= STANDSTILL_THRESHOLD and ret.wheelSpeeds.rr <= STANDSTILL_THRESHOLD
if pt_cp.vl["ECMPRDNL2"]["ManualMode"] == 1: ret.gearShifter = self.parse_gear_shifter(self.shifter_values.get(pt_cp.vl["ECMPRDNL2"]["PRNDL2"], None))
ret.gearShifter = self.parse_gear_shifter("T")
else:
ret.gearShifter = self.parse_gear_shifter(self.shifter_values.get(pt_cp.vl["ECMPRDNL2"]["PRNDL2"], None))
if self.CP.flags & GMFlags.NO_ACCELERATOR_POS_MSG.value: if self.CP.flags & GMFlags.NO_ACCELERATOR_POS_MSG.value:
ret.brake = pt_cp.vl.get("EBCMBrakePedalPosition", {}).get("BrakePedalPosition", 0) / 0xd0 ret.brake = pt_cp.vl["EBCMBrakePedalPosition"]["BrakePedalPosition"] / 0xd0
else: else:
ret.brake = pt_cp.vl.get("ECMAcceleratorPos", {}).get("BrakePedalPos", 0) ret.brake = pt_cp.vl["ECMAcceleratorPos"]["BrakePedalPos"]
if self.CP.networkLocation == NetworkLocation.fwdCamera:
if (self.CP.flags & GMFlags.FORCE_BRAKE_C9.value) or ((self.CP.networkLocation == NetworkLocation.fwdCamera) and (self.CP.carFingerprint != CAR.CHEVROLET_BLAZER)):
ret.brakePressed = pt_cp.vl["ECMEngineStatus"]["BrakePressed"] != 0 ret.brakePressed = pt_cp.vl["ECMEngineStatus"]["BrakePressed"] != 0
else: else:
# Some Volt 2016-17 have loose brake pedal push rod retainers which causes the ECM to believe # Some Volt 2016-17 have loose brake pedal push rod retainers which causes the ECM to believe
# that the brake is being intermittently pressed without user interaction. # that the brake is being intermittently pressed without user interaction.
# To avoid a cruise fault we need to use a conservative brake position threshold # To avoid a cruise fault we need to use a conservative brake position threshold
# https://static.nhtsa.gov/odi/tsbs/2017/MC-10137629-9999.pdf # https://static.nhtsa.gov/odi/tsbs/2017/MC-10137629-9999.pdf
analog_thresh = 0.07 if (self.CP.flags & GMFlags.NO_ACCELERATOR_POS_MSG.value) else 8 ret.brakePressed = ret.brake >= 8
ret.brakePressed = ret.brake >= analog_thresh
# Regen braking is braking # Regen braking is braking
if self.CP.transmissionType == TransmissionType.direct: if self.CP.transmissionType == TransmissionType.direct:
@@ -110,19 +117,32 @@ class CarState(CarStateBase):
ret.steerFaultTemporary = self.lkas_status == 2 ret.steerFaultTemporary = self.lkas_status == 2
ret.steerFaultPermanent = self.lkas_status == 3 ret.steerFaultPermanent = self.lkas_status == 3
if self.CP.carFingerprint not in SDGM_CAR:
# 1 - open, 0 - closed
ret.doorOpen = (pt_cp.vl["BCMDoorBeltStatus"]["FrontLeftDoor"] == 1 or
pt_cp.vl["BCMDoorBeltStatus"]["FrontRightDoor"] == 1 or
pt_cp.vl["BCMDoorBeltStatus"]["RearLeftDoor"] == 1 or
pt_cp.vl["BCMDoorBeltStatus"]["RearRightDoor"] == 1)
# 1 - open, 0 - closed # 1 - latched
ret.doorOpen = (pt_cp.vl["BCMDoorBeltStatus"]["FrontLeftDoor"] == 1 or ret.seatbeltUnlatched = pt_cp.vl["BCMDoorBeltStatus"]["LeftSeatBelt"] == 0
pt_cp.vl["BCMDoorBeltStatus"]["FrontRightDoor"] == 1 or ret.leftBlinker = pt_cp.vl["BCMTurnSignals"]["TurnSignals"] == 1
pt_cp.vl["BCMDoorBeltStatus"]["RearLeftDoor"] == 1 or ret.rightBlinker = pt_cp.vl["BCMTurnSignals"]["TurnSignals"] == 2
pt_cp.vl["BCMDoorBeltStatus"]["RearRightDoor"] == 1)
# 1 - latched ret.parkingBrake = pt_cp.vl["BCMGeneralPlatformStatus"]["ParkBrakeSwActive"] == 1
ret.seatbeltUnlatched = pt_cp.vl["BCMDoorBeltStatus"]["LeftSeatBelt"] == 0 else:
ret.leftBlinker = pt_cp.vl["BCMTurnSignals"]["TurnSignals"] == 1 # 1 - open, 0 - closed
ret.rightBlinker = pt_cp.vl["BCMTurnSignals"]["TurnSignals"] == 2 ret.doorOpen = (cam_cp.vl["BCMDoorBeltStatus"]["FrontLeftDoor"] == 1 or
cam_cp.vl["BCMDoorBeltStatus"]["FrontRightDoor"] == 1 or
cam_cp.vl["BCMDoorBeltStatus"]["RearLeftDoor"] == 1 or
cam_cp.vl["BCMDoorBeltStatus"]["RearRightDoor"] == 1)
ret.parkingBrake = pt_cp.vl["BCMGeneralPlatformStatus"]["ParkBrakeSwActive"] == 1 # 1 - latched
ret.seatbeltUnlatched = cam_cp.vl["BCMDoorBeltStatus"]["LeftSeatBelt"] == 0
ret.leftBlinker = cam_cp.vl["BCMTurnSignals"]["TurnSignals"] == 1
ret.rightBlinker = cam_cp.vl["BCMTurnSignals"]["TurnSignals"] == 2
ret.parkingBrake = cam_cp.vl["BCMGeneralPlatformStatus"]["ParkBrakeSwActive"] == 1
ret.cruiseState.available = pt_cp.vl["ECMEngineStatus"]["CruiseMainOn"] != 0 ret.cruiseState.available = pt_cp.vl["ECMEngineStatus"]["CruiseMainOn"] != 0
ret.espDisabled = pt_cp.vl["ESPStatus"]["TractionControlOn"] != 1 ret.espDisabled = pt_cp.vl["ESPStatus"]["TractionControlOn"] != 1
ret.accFaulted = (pt_cp.vl["AcceleratorPedal2"]["CruiseState"] == AccState.FAULTED or ret.accFaulted = (pt_cp.vl["AcceleratorPedal2"]["CruiseState"] == AccState.FAULTED or
@@ -133,23 +153,36 @@ class CarState(CarStateBase):
if self.CP.networkLocation == NetworkLocation.fwdCamera and not self.CP.flags & GMFlags.NO_CAMERA.value: if self.CP.networkLocation == NetworkLocation.fwdCamera and not self.CP.flags & GMFlags.NO_CAMERA.value:
if self.CP.carFingerprint not in CC_ONLY_CAR: if self.CP.carFingerprint not in CC_ONLY_CAR:
ret.cruiseState.speed = cam_cp.vl["ASCMActiveCruiseControlStatus"]["ACCSpeedSetpoint"] * CV.KPH_TO_MS ret.cruiseState.speed = cam_cp.vl["ASCMActiveCruiseControlStatus"]["ACCSpeedSetpoint"] * CV.KPH_TO_MS
if self.CP.carFingerprint not in (SDGM_CAR|ASCM_INT): if self.CP.carFingerprint not in SDGM_CAR:
ret.stockAeb = cam_cp.vl["AEBCmd"]["AEBCmdActive"] != 0 ret.stockAeb = cam_cp.vl["AEBCmd"]["AEBCmdActive"] != 0
else:
ret.stockAeb = False
# openpilot controls nonAdaptive when not pcmCruise # openpilot controls nonAdaptive when not pcmCruise
# 2016-2018 Volt won't identify non-adaptive cruise state since switchable cruise state was not introduced till 2019 model year / SDGM Global AAdd commentMore actions if self.CP.pcmCruise:
if self.CP.pcmCruise and self.CP.carFingerprint not in ASCM_INT:
ret.cruiseState.nonAdaptive = cam_cp.vl["ASCMActiveCruiseControlStatus"]["ACCCruiseState"] not in (2, 3) ret.cruiseState.nonAdaptive = cam_cp.vl["ASCMActiveCruiseControlStatus"]["ACCCruiseState"] not in (2, 3)
if self.CP.carFingerprint in CC_ONLY_CAR: if self.CP.carFingerprint in CC_ONLY_CAR:
ret.accFaulted = False ret.accFaulted = False
ret.cruiseState.speed = pt_cp.vl["ECMCruiseControl"]["CruiseSetSpeed"] * CV.KPH_TO_MS ret.cruiseState.speed = pt_cp.vl["ECMCruiseControl"]["CruiseSetSpeed"] * CV.KPH_TO_MS
ret.cruiseState.enabled = pt_cp.vl["ECMCruiseControl"]["CruiseActive"] != 0 # Try ECM first for cars that might have it (like most GMs), fall back to ASCM
try:
ret.cruiseState.enabled = pt_cp.vl["ECMCruiseControl"]["CruiseActive"] != 0
except:
ret.cruiseState.enabled = cam_cp.vl["ASCMActiveCruiseControlStatus"]["ACCCmdActive"] != 0
if self.CP.enableBsm: if self.CP.enableBsm:
ret.leftBlindspot = pt_cp.vl["BCMBlindSpotMonitor"]["LeftBSM"] == 1 if self.CP.carFingerprint not in SDGM_CAR:
ret.rightBlindspot = pt_cp.vl["BCMBlindSpotMonitor"]["RightBSM"] == 1 ret.leftBlindspot = pt_cp.vl["BCMBlindSpotMonitor"]["LeftBSM"] == 1
ret.rightBlindspot = pt_cp.vl["BCMBlindSpotMonitor"]["RightBSM"] == 1
else:
ret.leftBlindspot = cam_cp.vl["BCMBlindSpotMonitor"]["LeftBSM"] == 1
ret.rightBlindspot = cam_cp.vl["BCMBlindSpotMonitor"]["RightBSM"] == 1
# FrogPilot CarState functions
self.lkas_previously_enabled = self.lkas_enabled self.lkas_previously_enabled = self.lkas_enabled
self.lkas_enabled = pt_cp.vl["ASCMSteeringButton"]["LKAButton"] if self.CP.carFingerprint in SDGM_CAR:
self.lkas_enabled = cam_cp.vl["ASCMSteeringButton"]["LKAButton"]
else:
self.lkas_enabled = pt_cp.vl["ASCMSteeringButton"]["LKAButton"]
self.pcm_acc_status = pt_cp.vl["AcceleratorPedal2"]["CruiseState"] self.pcm_acc_status = pt_cp.vl["AcceleratorPedal2"]["CruiseState"]
@@ -164,11 +197,20 @@ class CarState(CarStateBase):
messages += [ messages += [
("ASCMLKASteeringCmd", 10), ("ASCMLKASteeringCmd", 10),
] ]
if CP.carFingerprint not in (SDGM_CAR|ASCM_INT): if CP.carFingerprint in SDGM_CAR:
messages += [
("BCMTurnSignals", 1),
("BCMDoorBeltStatus", 10),
("BCMGeneralPlatformStatus", 10),
("ASCMSteeringButton", 33),
]
if CP.enableBsm:
messages.append(("BCMBlindSpotMonitor", 10))
else:
messages += [ messages += [
("AEBCmd", 10), ("AEBCmd", 10),
] ]
if CP.carFingerprint not in CC_ONLY_CAR: # Include ASCMActiveCruiseControlStatus for all non-SDGM fwdCamera cars
messages += [ messages += [
("ASCMActiveCruiseControlStatus", 25), ("ASCMActiveCruiseControlStatus", 25),
] ]
@@ -178,25 +220,34 @@ class CarState(CarStateBase):
@staticmethod @staticmethod
def get_can_parser(CP, FPCP): def get_can_parser(CP, FPCP):
messages = [ messages = [
("BCMTurnSignals", 1),
("ECMPRDNL2", 10),
("PSCMStatus", 10), ("PSCMStatus", 10),
("ESPStatus", 10), ("ESPStatus", 10),
("BCMDoorBeltStatus", 10),
("BCMGeneralPlatformStatus", 10),
("EBCMWheelSpdFront", 20), ("EBCMWheelSpdFront", 20),
("EBCMWheelSpdRear", 20), ("EBCMWheelSpdRear", 20),
("EBCMFrictionBrakeStatus", 20), ("EBCMFrictionBrakeStatus", 20),
("AcceleratorPedal2", 33),
("ASCMSteeringButton", 33),
("ECMEngineStatus", 100),
("PSCMSteeringAngle", 100), ("PSCMSteeringAngle", 100),
("ECMAcceleratorPos", 80), ("ECMAcceleratorPos", 80),
("SportMode", 0), ("SportMode", 0),
] ]
if CP.enableBsm: if CP.carFingerprint in SDGM_CAR:
messages.append(("BCMBlindSpotMonitor", 10)) messages += [
("ECMPRDNL2", 40),
("AcceleratorPedal2", 40),
("ECMEngineStatus", 80),
]
else:
messages += [
("ECMPRDNL2", 40),
("AcceleratorPedal2", 33),
("ECMEngineStatus", 100),
("BCMTurnSignals", 1),
("BCMDoorBeltStatus", 10),
("BCMGeneralPlatformStatus", 10),
("ASCMSteeringButton", 33),
]
if CP.enableBsm:
messages.append(("BCMBlindSpotMonitor", 10))
# Used to read back last counter sent to PT by camera # Used to read back last counter sent to PT by camera
if CP.networkLocation == NetworkLocation.fwdCamera: if CP.networkLocation == NetworkLocation.fwdCamera:
@@ -209,7 +260,7 @@ class CarState(CarStateBase):
if CP.transmissionType == TransmissionType.direct: if CP.transmissionType == TransmissionType.direct:
messages += [ messages += [
("EBCMRegenPaddle", 50), ("EBCMRegenPaddle", 40),
("EVDriveMode", 0), ("EVDriveMode", 0),
] ]
@@ -223,7 +274,6 @@ class CarState(CarStateBase):
("GAS_SENSOR", 50), ("GAS_SENSOR", 50),
] ]
return CANParser(DBC[CP.carFingerprint]["pt"], messages, CanBus.POWERTRAIN) return CANParser(DBC[CP.carFingerprint]["pt"], messages, CanBus.POWERTRAIN)
@staticmethod @staticmethod
+4 -40
View File
@@ -26,20 +26,6 @@ FINGERPRINTS = {
{ {
170: 8, 171: 8, 189: 7, 190: 6, 193: 8, 197: 8, 199: 4, 201: 8, 209: 7, 211: 2, 241: 6, 288: 5, 298: 8, 304: 1, 308: 4, 309: 8, 311: 8, 313: 8, 320: 3, 328: 1, 352: 5, 381: 6, 384: 4, 386: 8, 388: 8, 389: 2, 390: 7, 417: 7, 419: 1, 426: 7, 451: 8, 452: 8, 453: 6, 454: 8, 456: 8, 479: 3, 481: 7, 485: 8, 489: 8, 493: 8, 495: 4, 497: 8, 499: 3, 500: 6, 501: 8, 508: 8, 528: 4, 532: 6, 546: 7, 550: 8, 554: 3, 558: 8, 560: 8, 562: 8, 563: 5, 564: 5, 565: 5, 566: 5, 567: 3, 568: 1, 573: 1, 577: 8, 608: 8, 609: 6, 610: 6, 611: 6, 612: 8, 613: 8, 647: 3, 707: 8, 711: 6, 717: 5, 761: 7, 800: 6, 810: 8, 840: 5, 842: 5, 844: 8, 866: 4, 869: 4, 961: 8, 967: 4, 969: 8, 977: 8, 979: 7, 988: 6, 989: 8, 995: 7, 1001: 8, 1005: 6, 1009: 8, 1017: 8, 1019: 2, 1020: 8, 1033: 7, 1034: 7, 1105: 6, 1187: 4, 1217: 8, 1221: 5, 1223: 3, 1225: 7, 1227: 4, 1233: 8, 1249: 8, 1257: 6, 1265: 8, 1267: 1, 1273: 3, 1275: 3, 1280: 4, 1300: 8, 1322: 6, 1323: 4, 1328: 4, 1417: 8, 1601: 8, 1905: 7, 1906: 7, 1907: 7, 1910: 7, 1912: 7, 1922: 7, 1927: 7, 1930: 7, 2017: 8, 2020: 8, 2025: 8, 2028: 8 170: 8, 171: 8, 189: 7, 190: 6, 193: 8, 197: 8, 199: 4, 201: 8, 209: 7, 211: 2, 241: 6, 288: 5, 298: 8, 304: 1, 308: 4, 309: 8, 311: 8, 313: 8, 320: 3, 328: 1, 352: 5, 381: 6, 384: 4, 386: 8, 388: 8, 389: 2, 390: 7, 417: 7, 419: 1, 426: 7, 451: 8, 452: 8, 453: 6, 454: 8, 456: 8, 479: 3, 481: 7, 485: 8, 489: 8, 493: 8, 495: 4, 497: 8, 499: 3, 500: 6, 501: 8, 508: 8, 528: 4, 532: 6, 546: 7, 550: 8, 554: 3, 558: 8, 560: 8, 562: 8, 563: 5, 564: 5, 565: 5, 566: 5, 567: 3, 568: 1, 573: 1, 577: 8, 608: 8, 609: 6, 610: 6, 611: 6, 612: 8, 613: 8, 647: 3, 707: 8, 711: 6, 717: 5, 761: 7, 800: 6, 810: 8, 840: 5, 842: 5, 844: 8, 866: 4, 869: 4, 961: 8, 967: 4, 969: 8, 977: 8, 979: 7, 988: 6, 989: 8, 995: 7, 1001: 8, 1005: 6, 1009: 8, 1017: 8, 1019: 2, 1020: 8, 1033: 7, 1034: 7, 1105: 6, 1187: 4, 1217: 8, 1221: 5, 1223: 3, 1225: 7, 1227: 4, 1233: 8, 1249: 8, 1257: 6, 1265: 8, 1267: 1, 1273: 3, 1275: 3, 1280: 4, 1300: 8, 1322: 6, 1323: 4, 1328: 4, 1417: 8, 1601: 8, 1905: 7, 1906: 7, 1907: 7, 1910: 7, 1912: 7, 1922: 7, 1927: 7, 1930: 7, 2017: 8, 2020: 8, 2025: 8, 2028: 8
}], }],
CAR.CHEVROLET_VOLT_ASCM: [
# Causes errors with normal OBD install
# {
# 189: 7, 193: 8, 197: 8, 201: 8, 209: 7, 211: 2, 241: 6, 288: 5, 298: 8, 304: 1, 308: 4, 309: 8, 311: 8, 313: 8, 320: 3, 328: 1, 352: 5, 381: 6, 384: 4, 386: 8, 388: 8, 451: 8, 452: 8, 453: 6, 479: 3, 481: 7, 485: 8, 489: 8, 493: 8, 497: 8, 500: 6, 501: 8, 528: 4, 532: 6, 560: 8, 562: 8, 563: 5, 565: 5, 566: 5, 608: 8, 609: 6, 610: 6, 611: 6, 612: 8, 613: 8, 707: 8, 715: 8, 717: 5, 761: 7, 767: 4, 810: 8, 840: 5, 842: 5, 844: 8, 869: 4, 880: 6, 977: 8, 1001: 8, 1017: 8, 1020: 8, 1033: 7, 1034: 7, 1217: 8, 1221: 5, 1233: 8, 1249: 8, 1265: 8, 1267: 1, 1280: 4, 1296: 4, 1300: 8, 1922: 7, 1930: 7
# }
],
CAR.CHEVROLET_VOLT_CAMERA: [
# Volt Premier 2017 w/ flashed firmware, cam harness + pedal (no 0x170/0x171 on PT bus)
{
# 189: 7, 193: 8, 197: 8, 201: 8, 209: 7, 211: 2, 241: 6, 298: 8, 304: 1, 308: 4, 309: 8, 311: 8, 313: 8, 320: 3, 328: 1, 352: 5, 381: 6, 386: 8, 388: 8, 451: 8, 452: 8, 453: 6, 479: 3, 481: 7, 485: 8, 489: 8, 493: 8, 497: 8, 500: 6, 501: 8, 513: 6, 528: 4, 532: 6, 560: 8, 562: 8, 563: 5, 565: 5, 566: 5, 608: 8, 609: 6, 610: 6, 611: 6, 612: 8, 613: 8, 707: 8, 761: 7, 810: 8, 840: 5, 842: 5, 844: 8, 977: 8, 1001: 8, 1017: 8, 1020: 8, 1217: 8, 1221: 5, 1233: 8, 1249: 8, 1265: 8, 1267: 1, 1280: 4, 1300: 8, 1922: 7
}],
CAR.GMC_ACADIA_ASCM: [
# Causes errors with normal OBD install
],
CAR.BUICK_LACROSSE: [{ CAR.BUICK_LACROSSE: [{
190: 6, 193: 8, 197: 8, 199: 4, 201: 8, 209: 7, 211: 2, 241: 6, 249: 8, 288: 5, 298: 8, 304: 1, 309: 8, 311: 8, 313: 8, 320: 3, 322: 7, 328: 1, 352: 5, 353: 3, 381: 6, 386: 8, 388: 8, 393: 7, 398: 8, 407: 7, 413: 8, 417: 7, 419: 1, 422: 4, 426: 7, 431: 8, 442: 8, 451: 8, 452: 8, 453: 6, 455: 7, 456: 8, 463: 3, 479: 3, 481: 7, 485: 8, 487: 8, 489: 8, 495: 4, 497: 8, 499: 3, 500: 6, 501: 8, 503: 1, 508: 8, 510: 8, 528: 5, 532: 6, 534: 2, 554: 3, 560: 8, 562: 8, 563: 5, 564: 5, 565: 5, 567: 5, 573: 1, 608: 8, 609: 6, 610: 6, 611: 6, 612: 8, 613: 8, 647: 5, 707: 8, 753: 5, 761: 7, 801: 8, 804: 3, 810: 8, 840: 5, 842: 5, 844: 8, 866: 4, 872: 1, 882: 8, 890: 1, 892: 2, 893: 1, 894: 1, 961: 8, 967: 4, 969: 8, 977: 8, 979: 8, 985: 5, 1001: 8, 1005: 6, 1009: 8, 1011: 6, 1013: 3, 1017: 8, 1019: 2, 1020: 8, 1022: 1, 1105: 6, 1217: 8, 1221: 5, 1223: 2, 1225: 7, 1233: 8, 1243: 3, 1249: 8, 1257: 6, 1259: 8, 1261: 7, 1263: 4, 1265: 8, 1267: 1, 1280: 4, 1300: 8, 1322: 6, 1328: 4, 1417: 8, 1609: 8, 1613: 8, 1649: 8, 1792: 8, 1798: 8, 1824: 8, 1825: 8, 1840: 8, 1842: 8, 1858: 8, 1860: 8, 1863: 8, 1872: 8, 1875: 8, 1882: 8, 1888: 8, 1889: 8, 1892: 8, 1904: 7, 1906: 7, 1907: 7, 1912: 7, 1913: 7, 1914: 7, 1916: 7, 1918: 7, 1919: 7, 1937: 8, 1953: 8, 1968: 8, 2001: 8, 2017: 8, 2018: 8, 2020: 8, 2026: 8 190: 6, 193: 8, 197: 8, 199: 4, 201: 8, 209: 7, 211: 2, 241: 6, 249: 8, 288: 5, 298: 8, 304: 1, 309: 8, 311: 8, 313: 8, 320: 3, 322: 7, 328: 1, 352: 5, 353: 3, 381: 6, 386: 8, 388: 8, 393: 7, 398: 8, 407: 7, 413: 8, 417: 7, 419: 1, 422: 4, 426: 7, 431: 8, 442: 8, 451: 8, 452: 8, 453: 6, 455: 7, 456: 8, 463: 3, 479: 3, 481: 7, 485: 8, 487: 8, 489: 8, 495: 4, 497: 8, 499: 3, 500: 6, 501: 8, 503: 1, 508: 8, 510: 8, 528: 5, 532: 6, 534: 2, 554: 3, 560: 8, 562: 8, 563: 5, 564: 5, 565: 5, 567: 5, 573: 1, 608: 8, 609: 6, 610: 6, 611: 6, 612: 8, 613: 8, 647: 5, 707: 8, 753: 5, 761: 7, 801: 8, 804: 3, 810: 8, 840: 5, 842: 5, 844: 8, 866: 4, 872: 1, 882: 8, 890: 1, 892: 2, 893: 1, 894: 1, 961: 8, 967: 4, 969: 8, 977: 8, 979: 8, 985: 5, 1001: 8, 1005: 6, 1009: 8, 1011: 6, 1013: 3, 1017: 8, 1019: 2, 1020: 8, 1022: 1, 1105: 6, 1217: 8, 1221: 5, 1223: 2, 1225: 7, 1233: 8, 1243: 3, 1249: 8, 1257: 6, 1259: 8, 1261: 7, 1263: 4, 1265: 8, 1267: 1, 1280: 4, 1300: 8, 1322: 6, 1328: 4, 1417: 8, 1609: 8, 1613: 8, 1649: 8, 1792: 8, 1798: 8, 1824: 8, 1825: 8, 1840: 8, 1842: 8, 1858: 8, 1860: 8, 1863: 8, 1872: 8, 1875: 8, 1882: 8, 1888: 8, 1889: 8, 1892: 8, 1904: 7, 1906: 7, 1907: 7, 1912: 7, 1913: 7, 1914: 7, 1916: 7, 1918: 7, 1919: 7, 1937: 8, 1953: 8, 1968: 8, 2001: 8, 2017: 8, 2018: 8, 2020: 8, 2026: 8
}], }],
@@ -66,9 +52,6 @@ FINGERPRINTS = {
CAR.CHEVROLET_MALIBU: [{ CAR.CHEVROLET_MALIBU: [{
190: 6, 193: 8, 197: 8, 199: 4, 201: 8, 209: 7, 211: 2, 241: 6, 249: 8, 288: 5, 298: 8, 304: 1, 309: 8, 311: 8, 313: 8, 320: 3, 328: 1, 352: 5, 381: 6, 384: 4, 386: 8, 388: 8, 393: 7, 398: 8, 407: 7, 413: 8, 417: 7, 419: 1, 422: 4, 426: 7, 431: 8, 442: 8, 451: 8, 452: 8, 453: 6, 455: 7, 456: 8, 479: 3, 481: 7, 485: 8, 487: 8, 489: 8, 495: 4, 497: 8, 499: 3, 500: 6, 501: 8, 508: 8, 510: 8, 528: 5, 532: 6, 554: 3, 560: 8, 562: 8, 563: 5, 564: 5, 565: 5, 567: 5, 573: 1, 577: 8, 608: 8, 609: 6, 610: 6, 611: 6, 612: 8, 613: 8, 647: 6, 707: 8, 715: 8, 717: 5, 753: 5, 761: 7, 810: 8, 840: 5, 842: 5, 844: 8, 866: 4, 869: 4, 880: 6, 961: 8, 969: 8, 977: 8, 979: 8, 985: 5, 1001: 8, 1005: 6, 1009: 8, 1013: 3, 1017: 8, 1019: 2, 1020: 8, 1033: 7, 1034: 7, 1105: 6, 1217: 8, 1221: 5, 1223: 2, 1225: 7, 1233: 8, 1249: 8, 1257: 6, 1265: 8, 1267: 1, 1280: 4, 1296: 4, 1300: 8, 1322: 6, 1323: 4, 1328: 4, 1417: 8, 1601: 8, 1906: 7, 1907: 7, 1912: 7, 1919: 7, 1930: 7, 2016: 8, 2024: 8 190: 6, 193: 8, 197: 8, 199: 4, 201: 8, 209: 7, 211: 2, 241: 6, 249: 8, 288: 5, 298: 8, 304: 1, 309: 8, 311: 8, 313: 8, 320: 3, 328: 1, 352: 5, 381: 6, 384: 4, 386: 8, 388: 8, 393: 7, 398: 8, 407: 7, 413: 8, 417: 7, 419: 1, 422: 4, 426: 7, 431: 8, 442: 8, 451: 8, 452: 8, 453: 6, 455: 7, 456: 8, 479: 3, 481: 7, 485: 8, 487: 8, 489: 8, 495: 4, 497: 8, 499: 3, 500: 6, 501: 8, 508: 8, 510: 8, 528: 5, 532: 6, 554: 3, 560: 8, 562: 8, 563: 5, 564: 5, 565: 5, 567: 5, 573: 1, 577: 8, 608: 8, 609: 6, 610: 6, 611: 6, 612: 8, 613: 8, 647: 6, 707: 8, 715: 8, 717: 5, 753: 5, 761: 7, 810: 8, 840: 5, 842: 5, 844: 8, 866: 4, 869: 4, 880: 6, 961: 8, 969: 8, 977: 8, 979: 8, 985: 5, 1001: 8, 1005: 6, 1009: 8, 1013: 3, 1017: 8, 1019: 2, 1020: 8, 1033: 7, 1034: 7, 1105: 6, 1217: 8, 1221: 5, 1223: 2, 1225: 7, 1233: 8, 1249: 8, 1257: 6, 1265: 8, 1267: 1, 1280: 4, 1296: 4, 1300: 8, 1322: 6, 1323: 4, 1328: 4, 1417: 8, 1601: 8, 1906: 7, 1907: 7, 1912: 7, 1919: 7, 1930: 7, 2016: 8, 2024: 8
}], }],
CAR.CHEVROLET_MALIBU_ASCM: [{
190: 6, 193: 8, 197: 8, 199: 4, 201: 8, 209: 7, 211: 2, 241: 6, 249: 8, 288: 5, 298: 8, 304: 1, 309: 8, 311: 8, 313: 8, 320: 3, 328: 1, 352: 5, 381: 6, 384: 4, 386: 8, 388: 8, 393: 7, 398: 8, 407: 7, 413: 8, 417: 7, 419: 1, 422: 4, 426: 7, 431: 8, 442: 8, 451: 8, 452: 8, 453: 6, 455: 7, 456: 8, 479: 3, 481: 7, 485: 8, 487: 8, 489: 8, 495: 4, 497: 8, 499: 3, 500: 6, 501: 8, 508: 8, 510: 8, 528: 5, 532: 6, 554: 3, 560: 8, 562: 8, 563: 5, 564: 5, 565: 5, 567: 5, 573: 1, 577: 8, 608: 8, 609: 6, 610: 6, 611: 6, 612: 8, 613: 8, 647: 6, 707: 8, 715: 8, 717: 5, 753: 5, 761: 7, 810: 8, 840: 5, 842: 5, 844: 8, 866: 4, 869: 4, 880: 6, 961: 8, 969: 8, 977: 8, 979: 8, 985: 5, 1001: 8, 1005: 6, 1009: 8, 1013: 3, 1017: 8, 1019: 2, 1020: 8, 1033: 7, 1034: 7, 1105: 6, 1217: 8, 1221: 5, 1223: 2, 1225: 7, 1233: 8, 1249: 8, 1257: 6, 1265: 8, 1267: 1, 1280: 4, 1296: 4, 1300: 8, 1322: 6, 1323: 4, 1328: 4, 1417: 8, 1601: 8, 1906: 7, 1907: 7, 1912: 7, 1919: 7, 1930: 7, 2016: 8, 2024: 8
}],
CAR.GMC_ACADIA: [{ CAR.GMC_ACADIA: [{
190: 6, 192: 5, 193: 8, 197: 8, 199: 4, 201: 6, 208: 8, 209: 7, 211: 2, 241: 6, 249: 8, 288: 5, 289: 1, 290: 1, 298: 8, 304: 8, 309: 8, 313: 8, 320: 8, 322: 7, 328: 1, 352: 7, 368: 8, 381: 8, 384: 8, 386: 8, 388: 8, 393: 8, 398: 8, 413: 8, 417: 7, 419: 1, 422: 4, 426: 7, 431: 8, 442: 8, 451: 8, 452: 8, 453: 6, 454: 8, 455: 7, 458: 8, 460: 4, 462: 4, 463: 3, 479: 3, 481: 7, 485: 8, 489: 5, 497: 8, 499: 3, 500: 6, 501: 8, 508: 8, 510: 8, 512: 3, 530: 8, 532: 6, 534: 2, 554: 3, 560: 8, 562: 8, 563: 5, 564: 5, 567: 5, 568: 2, 573: 1, 608: 8, 609: 6, 610: 6, 611: 6, 612: 8, 613: 8, 647: 6, 707: 8, 715: 8, 717: 5, 753: 5, 761: 7, 789: 5, 800: 6, 801: 8, 803: 8, 804: 3, 805: 8, 832: 8, 840: 5, 842: 5, 844: 8, 866: 4, 869: 4, 880: 6, 961: 8, 969: 8, 977: 8, 979: 8, 985: 5, 1001: 8, 1003: 5, 1005: 6, 1009: 8, 1017: 8, 1020: 8, 1033: 7, 1034: 7, 1105: 6, 1217: 8, 1221: 5, 1225: 8, 1233: 8, 1249: 8, 1257: 6, 1265: 8, 1267: 1, 1280: 4, 1296: 4, 1300: 8, 1322: 6, 1328: 4, 1417: 8, 1906: 7, 1907: 7, 1912: 7, 1914: 7, 1918: 7, 1919: 7, 1920: 7, 1930: 7 190: 6, 192: 5, 193: 8, 197: 8, 199: 4, 201: 6, 208: 8, 209: 7, 211: 2, 241: 6, 249: 8, 288: 5, 289: 1, 290: 1, 298: 8, 304: 8, 309: 8, 313: 8, 320: 8, 322: 7, 328: 1, 352: 7, 368: 8, 381: 8, 384: 8, 386: 8, 388: 8, 393: 8, 398: 8, 413: 8, 417: 7, 419: 1, 422: 4, 426: 7, 431: 8, 442: 8, 451: 8, 452: 8, 453: 6, 454: 8, 455: 7, 458: 8, 460: 4, 462: 4, 463: 3, 479: 3, 481: 7, 485: 8, 489: 5, 497: 8, 499: 3, 500: 6, 501: 8, 508: 8, 510: 8, 512: 3, 530: 8, 532: 6, 534: 2, 554: 3, 560: 8, 562: 8, 563: 5, 564: 5, 567: 5, 568: 2, 573: 1, 608: 8, 609: 6, 610: 6, 611: 6, 612: 8, 613: 8, 647: 6, 707: 8, 715: 8, 717: 5, 753: 5, 761: 7, 789: 5, 800: 6, 801: 8, 803: 8, 804: 3, 805: 8, 832: 8, 840: 5, 842: 5, 844: 8, 866: 4, 869: 4, 880: 6, 961: 8, 969: 8, 977: 8, 979: 8, 985: 5, 1001: 8, 1003: 5, 1005: 6, 1009: 8, 1017: 8, 1020: 8, 1033: 7, 1034: 7, 1105: 6, 1217: 8, 1221: 5, 1225: 8, 1233: 8, 1249: 8, 1257: 6, 1265: 8, 1267: 1, 1280: 4, 1296: 4, 1300: 8, 1322: 6, 1328: 4, 1417: 8, 1906: 7, 1907: 7, 1912: 7, 1914: 7, 1918: 7, 1919: 7, 1920: 7, 1930: 7
}, },
@@ -195,50 +178,31 @@ FINGERPRINTS = {
CAR.CADILLAC_XT4: [ CAR.CADILLAC_XT4: [
# Cadillac XT4 w/ ACC 2023 # Cadillac XT4 w/ ACC 2023
{ {
190: 6, 193: 8, 197: 8, 199: 4, 201: 8, 209: 7, 211: 2, 241: 6, 249: 8, 257: 8, 288: 5, 289: 8, 292: 2, 298: 8, 304: 3, 309: 8, 313: 8, 320: 4, 322: 7, 328: 1, 331: 3, 352: 5, 353: 3, 368: 3, 381: 8, 384: 4, 386: 8, 388: 8, 393: 7, 398: 8, 401: 8, 407: 7, 413: 8, 417: 7, 419: 1, 422: 4, 426: 7, 431: 8, 442: 8, 451: 8, 452: 8, 453: 6, 455: 7, 479: 3, 481: 7, 485: 8, 489: 8, 497: 8, 499: 3, 500: 6, 501: 8, 503: 2, 508: 8, 532: 6, 554: 3, 560: 8, 562: 8, 563: 5, 564: 5, 565: 5, 567: 5, 573: 1, 577: 8, 608: 8, 609: 6, 610: 6, 611: 6, 612: 8, 613: 8, 647: 6, 707: 8, 715: 8, 717: 5, 719: 5, 761: 7, 767: 4, 806: 1, 840: 5, 842: 5, 844: 8, 866: 4, 869: 4, 872: 1, 880: 6, 961: 8, 969: 8, 975: 2, 977: 8, 979: 8, 985: 5, 1001: 8, 1005: 6, 1009: 8, 1011: 6, 1013: 5, 1017: 8, 1020: 8, 1033: 7, 1034: 7, 1037: 5, 1105: 5, 1187: 5, 1195: 3, 1217: 8, 1221: 5, 1223: 2, 1225: 7, 1233: 8, 1236: 8, 1249: 8, 1257: 6, 1259: 8, 1261: 7, 1263: 4, 1265: 8, 1267: 1, 1268: 2, 1271: 8, 1273: 3, 1276: 2, 1277: 7, 1278: 4, 1279: 4, 1280: 4, 1296: 4, 1300: 8, 1322: 6, 1323: 4, 1328: 4, 1345: 8, 1417: 8, 1512: 8, 1517: 8, 1601: 8, 1609: 8, 1613: 8, 1649: 8, 1792: 8, 1793: 8, 1798: 8, 1824: 8, 1825: 8, 1840: 8, 1842: 8, 1858: 8, 1860: 8, 1863: 8, 1872: 8, 1875: 8, 1882: 8, 1888: 8, 1889: 8, 1892: 8, 1906: 7, 1907: 7, 1912: 7, 1919: 7, 1920: 8, 1924: 8, 1930: 7, 1937: 8, 1953: 8, 1968: 8, 1969: 8, 1971: 8, 1975: 8, 1984: 8, 1988: 8, 2000: 8, 2001: 8, 2002: 8, 2016: 8, 2017: 8, 2018: 8, 2020: 8, 2021: 8, 2024: 8, 2026: 8 }], 190: 6, 193: 8, 197: 8, 199: 4, 201: 8, 209: 7, 211: 2, 241: 6, 249: 8, 257: 8, 288: 5, 289: 8, 292: 2, 298: 8, 304: 3, 309: 8, 313: 8, 320: 4, 322: 7, 328: 1, 331: 3, 352: 5, 353: 3, 368: 3, 381: 8, 384: 4, 386: 8, 388: 8, 393: 7, 398: 8, 401: 8, 407: 7, 413: 8, 417: 7, 419: 1, 422: 4, 426: 7, 431: 8, 442: 8, 451: 8, 452: 8, 453: 6, 455: 7, 479: 3, 481: 7, 485: 8, 489: 8, 497: 8, 499: 3, 500: 6, 501: 8, 503: 2, 508: 8, 532: 6, 554: 3, 560: 8, 562: 8, 563: 5, 564: 5, 565: 5, 567: 5, 573: 1, 577: 8, 608: 8, 609: 6, 610: 6, 611: 6, 612: 8, 613: 8, 647: 6, 707: 8, 715: 8, 717: 5, 719: 5, 761: 7, 806: 1, 840: 5, 842: 5, 844: 8, 866: 4, 869: 4, 872: 1, 880: 6, 961: 8, 969: 8, 975: 2, 977: 8, 979: 8, 985: 5, 1001: 8, 1005: 6, 1009: 8, 1011: 6, 1013: 5, 1017: 8, 1020: 8, 1033: 7, 1034: 7, 1037: 5, 1105: 5, 1187: 5, 1195: 3, 1217: 8, 1221: 5, 1223: 2, 1225: 7, 1233: 8, 1236: 8, 1249: 8, 1257: 6, 1259: 8, 1261: 7, 1263: 4, 1265: 8, 1267: 1, 1268: 2, 1271: 8, 1273: 3, 1276: 2, 1277: 7, 1278: 4, 1279: 4, 1280: 4, 1296: 4, 1300: 8, 1322: 6, 1323: 4, 1328: 4, 1345: 8, 1417: 8, 1512: 8, 1517: 8, 1601: 8, 1609: 8, 1613: 8, 1649: 8, 1792: 8, 1793: 8, 1798: 8, 1824: 8, 1825: 8, 1840: 8, 1842: 8, 1858: 8, 1860: 8, 1863: 8, 1872: 8, 1875: 8, 1882: 8, 1888: 8, 1889: 8, 1892: 8, 1906: 7, 1907: 7, 1912: 7, 1919: 7, 1920: 8, 1924: 8, 1930: 7, 1937: 8, 1953: 8, 1968: 8, 1969: 8, 1971: 8, 1975: 8, 1984: 8, 1988: 8, 2000: 8, 2001: 8, 2002: 8, 2016: 8, 2017: 8, 2018: 8, 2020: 8, 2021: 8, 2024: 8, 2026: 8
}],
CAR.CADILLAC_XT5_CC: [ CAR.CADILLAC_XT5_CC: [
# TRain's 2017 XT5 # TRain's 2017 XT5
{ {
190: 6, 193: 8, 197: 8, 199: 4, 201: 8, 208: 8, 209: 7, 211: 2, 241: 6, 249: 8, 288: 5, 298: 8, 304: 1, 309: 8, 313: 8, 320: 3, 322: 7, 328: 1, 352: 5, 353: 3, 381: 6, 384: 4, 386: 8, 388: 8, 393: 7, 398: 8, 407: 7, 413: 8, 417: 7, 419: 1, 422: 4, 426: 7, 431: 8, 442: 8, 451: 8, 452: 8, 453: 6, 454: 8, 455: 7, 462: 4, 463: 3, 479: 3, 481: 7, 485: 8, 487: 8, 489: 8, 495: 4, 497: 8, 499: 3, 500: 6, 501: 8, 503: 1, 508: 8, 510: 8, 532: 6, 554: 3, 560: 8, 562: 8, 563: 5, 564: 5, 567: 5, 647: 3, 707: 8, 717: 5, 723: 2, 753: 5, 761: 7, 800: 6, 840: 5, 842: 5, 844: 8, 866: 4, 869: 4, 872: 1, 961: 8, 967: 4, 969: 8, 977: 8, 979: 8, 985: 5, 1001: 8, 1005: 6, 1009: 8, 1011: 6, 1013: 3, 1017: 8, 1019: 2, 1020: 8, 1022: 1, 1105: 6, 1217: 8, 1221: 5, 1223: 3, 1225: 7, 1233: 8, 1243: 3, 1249: 8, 1257: 6, 1259: 8, 1261: 7, 1263: 4, 1265: 8, 1267: 1, 1280: 4, 1300: 8, 1322: 6, 1328: 4, 1417: 8, 1904: 7, 1906: 7, 1907: 7, 1912: 7, 1913: 7, 1914: 7, 1919: 7, 1920: 7 190: 6, 193: 8, 197: 8, 199: 4, 201: 8, 208: 8, 209: 7, 211: 2, 241: 6, 249: 8, 288: 5, 298: 8, 304: 1, 309: 8, 313: 8, 320: 3, 322: 7, 328: 1, 352: 5, 353: 3, 381: 6, 384: 4, 386: 8, 388: 8, 393: 7, 398: 8, 407: 7, 413: 8, 417: 7, 419: 1, 422: 4, 426: 7, 431: 8, 442: 8, 451: 8, 452: 8, 453: 6, 454: 8, 455: 7, 462: 4, 463: 3, 479: 3, 481: 7, 485: 8, 487: 8, 489: 8, 495: 4, 497: 8, 499: 3, 500: 6, 501: 8, 503: 1, 508: 8, 510: 8, 532: 6, 554: 3, 560: 8, 562: 8, 563: 5, 564: 5, 567: 5, 647: 3, 707: 8, 717: 5, 723: 2, 753: 5, 761: 7, 800: 6, 840: 5, 842: 5, 844: 8, 866: 4, 869: 4, 872: 1, 961: 8, 967: 4, 969: 8, 977: 8, 979: 8, 985: 5, 1001: 8, 1005: 6, 1009: 8, 1011: 6, 1013: 3, 1017: 8, 1019: 2, 1020: 8, 1022: 1, 1105: 6, 1217: 8, 1221: 5, 1223: 3, 1225: 7, 1233: 8, 1243: 3, 1249: 8, 1257: 6, 1259: 8, 1261: 7, 1263: 4, 1265: 8, 1267: 1, 1280: 4, 1300: 8, 1322: 6, 1328: 4, 1417: 8, 1904: 7, 1906: 7, 1907: 7, 1912: 7, 1913: 7, 1914: 7, 1919: 7, 1920: 7
}], }],
CAR.CADILLAC_XT6: [
#{}
],
CAR.CHEVROLET_BLAZER: [{
190: 6, 193: 8, 197: 8, 201: 8, 208: 8, 209: 7, 211: 2, 241: 6, 249: 8, 289: 8, 298: 8, 304: 3, 309: 8, 313: 8, 322: 7, 352: 5, 381: 8, 384: 4, 386: 8, 388: 8, 413: 8, 451: 8, 452: 8, 453: 6, 455: 7, 479: 3, 481: 7, 485: 8, 489: 8, 497: 8, 500: 6, 501: 8, 510: 8, 532: 6, 560: 8, 562: 8, 608: 8, 609: 6, 610: 6, 611: 6, 612: 8, 613: 8, 707: 8, 715: 8, 717: 5, 753: 5, 761: 7, 767: 4, 840: 5, 842: 5, 844: 8, 869: 4, 880: 6, 977: 8, 1001: 8, 1011: 6, 1017: 8, 1020: 8, 1033: 7, 1034: 7, 1217: 8, 1233: 8, 1249: 8, 1259: 8, 1261: 7, 1263: 4, 1265: 8, 1296: 4
}],
CAR.CHEVROLET_TRAVERSE: [ CAR.CHEVROLET_TRAVERSE: [
# Chevy Traverse w/ ACC 2023 # Chevy Traverse w/ ACC 2023
{ {
190: 6, 193: 8, 197: 8, 199: 4, 201: 8, 208: 8, 209: 7, 211: 2, 241: 6, 249: 8, 257: 8, 288: 5, 289: 8, 292: 2, 298: 8, 304: 3, 309: 8, 313: 8, 320: 4, 322: 7, 328: 1, 331: 3, 352: 5, 368: 3, 381: 8, 384: 4, 386: 8, 388: 8, 393: 7, 398: 8, 401: 8, 407: 7, 413: 8, 417: 7, 419: 1, 422: 4, 426: 7, 431: 8, 442: 8, 451: 8, 452: 8, 453: 6, 454: 8, 455: 7, 479: 3, 481: 7, 485: 8, 489: 8, 497: 8, 499: 3, 500: 6, 501: 8, 508: 8, 510: 8, 532: 6, 554: 3, 560: 8, 562: 8, 563: 5, 564: 5, 567: 5, 573: 1, 577: 8, 578: 8, 579: 8, 587: 8, 603: 8, 608: 8, 609: 6, 610: 6, 611: 6, 612: 8, 613: 8, 647: 6, 707: 8, 715: 8, 717: 5, 723: 4, 730: 4, 753: 5, 761: 7, 767: 4, 840: 5, 842: 5, 844: 8, 866: 4, 869: 4, 880: 6, 961: 8, 969: 8, 975: 2, 977: 8, 979: 8, 985: 5, 1001: 8, 1005: 6, 1009: 8, 1011: 6, 1013: 5, 1017: 8, 1020: 8, 1033: 7, 1034: 7, 1105: 5, 1217: 8, 1221: 5, 1223: 3, 1225: 7, 1233: 8, 1236: 8, 1249: 8, 1257: 6, 1259: 8, 1261: 7, 1263: 4, 1265: 8, 1267: 1, 1268: 2, 1271: 8, 1279: 4, 1280: 4, 1296: 4, 1300: 8, 1322: 6, 1323: 4, 1328: 4, 1345: 8, 1346: 8, 1347: 8, 1355: 8, 1362: 8, 1417: 8, 1512: 8, 1514: 8, 1601: 8, 1602: 8, 1603: 7, 1609: 8, 1611: 8, 1613: 8, 1618: 8, 1649: 8, 1792: 8, 1793: 8, 1798: 8, 1799: 8, 1810: 8, 1813: 8, 1824: 8, 1825: 8, 1840: 8, 1842: 8, 1856: 8, 1858: 8, 1859: 8, 1860: 8, 1862: 8, 1863: 8, 1871: 8, 1872: 8, 1875: 8, 1879: 8, 1882: 8, 1888: 8, 1889: 8, 1892: 8, 1906: 7, 1907: 7, 1912: 7, 1919: 7, 1920: 7, 1927: 8, 1930: 7, 1937: 8, 1953: 8, 1954: 8, 1955: 8, 1968: 8, 1969: 8, 1971: 8, 1975: 8, 1988: 8, 1990: 8, 2000: 8, 2001: 8, 2004: 8, 2016: 8, 2017: 8, 2018: 8, 2019: 8, 2020: 8, 2024: 8, 2026: 8 190: 6, 193: 8, 197: 8, 199: 4, 201: 8, 208: 8, 209: 7, 211: 2, 241: 6, 249: 8, 257: 8, 288: 5, 289: 8, 292: 2, 298: 8, 304: 3, 309: 8, 313: 8, 320: 4, 322: 7, 328: 1, 331: 3, 352: 5, 368: 3, 381: 8, 384: 4, 386: 8, 388: 8, 393: 7, 398: 8, 401: 8, 407: 7, 413: 8, 417: 7, 419: 1, 422: 4, 426: 7, 431: 8, 442: 8, 451: 8, 452: 8, 453: 6, 454: 8, 455: 7, 479: 3, 481: 7, 485: 8, 489: 8, 497: 8, 499: 3, 500: 6, 501: 8, 508: 8, 510: 8, 532: 6, 554: 3, 560: 8, 562: 8, 563: 5, 564: 5, 567: 5, 573: 1, 577: 8, 578: 8, 579: 8, 587: 8, 603: 8, 608: 8, 609: 6, 610: 6, 611: 6, 612: 8, 613: 8, 647: 6, 707: 8, 715: 8, 717: 5, 723: 4, 730: 4, 753: 5, 761: 7, 840: 5, 842: 5, 844: 8, 866: 4, 869: 4, 880: 6, 961: 8, 969: 8, 975: 2, 977: 8, 979: 8, 985: 5, 1001: 8, 1005: 6, 1009: 8, 1011: 6, 1013: 5, 1017: 8, 1020: 8, 1033: 7, 1034: 7, 1105: 5, 1217: 8, 1221: 5, 1223: 3, 1225: 7, 1233: 8, 1236: 8, 1249: 8, 1257: 6, 1259: 8, 1261: 7, 1263: 4, 1265: 8, 1267: 1, 1268: 2, 1271: 8, 1279: 4, 1280: 4, 1296: 4, 1300: 8, 1322: 6, 1323: 4, 1328: 4, 1345: 8, 1346: 8, 1347: 8, 1355: 8, 1362: 8, 1417: 8, 1512: 8, 1514: 8, 1601: 8, 1602: 8, 1603: 7, 1609: 8, 1611: 8, 1613: 8, 1618: 8, 1649: 8, 1792: 8, 1793: 8, 1798: 8, 1799: 8, 1810: 8, 1813: 8, 1824: 8, 1825: 8, 1840: 8, 1842: 8, 1856: 8, 1858: 8, 1859: 8, 1860: 8, 1862: 8, 1863: 8, 1871: 8, 1872: 8, 1875: 8, 1879: 8, 1882: 8, 1888: 8, 1889: 8, 1892: 8, 1906: 7, 1907: 7, 1912: 7, 1919: 7, 1920: 7, 1927: 8, 1930: 7, 1937: 8, 1953: 8, 1954: 8, 1955: 8, 1968: 8, 1969: 8, 1971: 8, 1975: 8, 1988: 8, 1990: 8, 2000: 8, 2001: 8, 2004: 8, 2016: 8, 2017: 8, 2018: 8, 2019: 8, 2020: 8, 2024: 8, 2026: 8
}],
CAR.CHEVROLET_MALIBU_SDGM: [
# Chevy Malibu w/ SDGM Harness 2019
{
190: 6, 193: 8, 197: 8, 201: 8, 209: 7, 211: 2, 241: 6, 249: 8, 257: 5, 288: 5, 289: 8, 298: 8, 304: 1, 309: 8, 311: 8, 313: 8, 320: 3, 328: 1, 352: 5, 381: 8, 384: 4, 386: 8, 388: 8, 413: 8, 451: 8, 452: 8, 453: 6, 455: 7, 479: 3, 481: 7, 485: 8, 489: 8, 497: 8, 500: 6, 501: 8, 532: 6, 560: 8, 562: 8, 563: 5, 565: 5, 587: 8, 707: 8, 715: 8, 717: 5, 761: 7, 767: 4, 810: 8, 840: 5, 842: 5, 844: 8, 869: 4, 880: 6, 882: 8, 890: 1, 892: 2, 893: 2, 894: 1, 977: 8, 1001: 8, 1011: 6, 1017: 8, 1020: 8, 1217: 8, 1221: 5, 1233: 8, 1249: 8, 1259: 8, 1261: 7, 1263: 4, 1265: 8, 1267: 1, 1271: 8, 1280: 4, 1296: 4, 1300: 8, 1353: 8, 1355: 8, 1611: 8, 1792: 8, 1793: 8, 1798: 8, 1799: 8, 1810: 8, 1813: 8, 1824: 8, 1825: 8, 1840: 8, 1842: 8, 1843: 8, 1856: 8, 1858: 8, 1859: 8, 1860: 8, 1862: 8, 1863: 8, 1871: 8, 1872: 8, 1875: 8, 1879: 8, 1882: 8, 1888: 8, 1889: 8, 1892: 8, 1916: 7, 1920: 8, 1927: 8, 1930: 7, 1937: 8, 1953: 8, 1954: 8, 1955: 8, 1968: 8, 1969: 8, 1971: 8, 1975: 8, 1988: 8, 1990: 8, 2000: 8, 2001: 8, 2002: 8, 2004: 8, 2017: 8, 2018: 8, 2020: 8
}], }],
CAR.BUICK_BABYENCLAVE: [ CAR.BUICK_BABYENCLAVE: [
# Buick Baby Enclave w/ ACC 2020-23 # Buick Baby Enclave w/ ACC 2020-23
{ {
190: 6, 193: 8, 197: 8, 199: 4, 201: 8, 208: 8, 209: 7, 211: 2, 241: 6, 249: 8, 257: 8, 288: 5, 289: 8, 292: 2, 298: 8, 304: 3, 309: 8, 311: 8, 313: 8, 320: 4, 322: 7, 328: 1, 331: 3, 352: 5, 353: 3, 368: 3, 381: 8, 384: 4, 386: 8, 388: 8, 394: 7, 398: 8, 401: 8, 405: 8, 407: 7, 413: 8, 417: 7, 419: 1, 422: 4, 426: 7, 431: 8, 442: 8, 450: 4, 451: 8, 452: 8, 453: 6, 454: 8, 455: 7, 456: 8, 457: 6, 462: 4, 463: 3, 479: 3, 481: 7, 485: 8, 489: 8, 497: 8, 499: 3, 500: 6, 501: 8, 503: 2, 508: 8, 528: 5, 532: 6, 554: 3, 560: 8, 562: 8, 563: 5, 564: 5, 565: 5, 567: 5, 569: 3, 573: 1, 577: 8, 608: 8, 609: 6, 610: 6, 611: 6, 612: 8, 613: 8, 647: 6, 707: 8, 715: 8, 717: 5, 723: 4, 730: 4, 761: 7, 767: 4, 810: 8, 840: 5, 842: 5, 844: 8, 869: 4, 872: 1, 880: 6, 882: 8, 890: 1, 892: 2, 893: 2, 894: 1, 961: 8, 969: 8, 975: 2, 977: 8, 979: 8, 985: 5, 1001: 8, 1005: 6, 1009: 8, 1011: 6, 1013: 6, 1017: 8, 1020: 8, 1033: 7, 1034: 7, 1037: 5, 1105: 5, 1187: 5, 1195: 3, 1201: 3, 1217: 8, 1218: 3, 1221: 5, 1223: 3, 1225: 7, 1233: 8, 1236: 8, 1249: 8, 1257: 6, 1259: 8, 1261: 7, 1263: 4, 1265: 8, 1267: 1, 1268: 2, 1271: 8, 1273: 3, 1276: 2, 1277: 7, 1278: 4, 1279: 4, 1280: 4, 1296: 4, 1300: 8, 1322: 6, 1323: 4, 1328: 4, 1345: 8, 1417: 8, 1512: 8, 1514: 8, 1517: 8, 1601: 8, 1906: 7, 1907: 7, 1910: 7, 1912: 7, 1914: 7, 1916: 7, 1919: 7, 1927: 7, 1930: 7, 2018: 8, 2020: 8, 2021: 8, 2028: 8 190: 6, 193: 8, 197: 8, 199: 4, 201: 8, 208: 8, 209: 7, 211: 2, 241: 6, 249: 8, 257: 8, 288: 5, 289: 8, 292: 2, 298: 8, 304: 3, 309: 8, 311: 8, 313: 8, 320: 4, 322: 7, 328: 1, 331: 3, 352: 5, 353: 3, 368: 3, 381: 8, 384: 4, 386: 8, 388: 8, 394: 7, 398: 8, 401: 8, 405: 8, 407: 7, 413: 8, 417: 7, 419: 1, 422: 4, 426: 7, 431: 8, 442: 8, 450: 4, 451: 8, 452: 8, 453: 6, 454: 8, 455: 7, 456: 8, 457: 6, 462: 4, 463: 3, 479: 3, 481: 7, 485: 8, 489: 8, 497: 8, 499: 3, 500: 6, 501: 8, 503: 2, 508: 8, 528: 5, 532: 6, 554: 3, 560: 8, 562: 8, 563: 5, 564: 5, 565: 5, 567: 5, 569: 3, 573: 1, 577: 8, 608: 8, 609: 6, 610: 6, 611: 6, 612: 8, 613: 8, 647: 6, 707: 8, 715: 8, 717: 5, 723: 4, 730: 4, 761: 7, 810: 8, 840: 5, 842: 5, 844: 8, 869: 4, 872: 1, 880: 6, 882: 8, 890: 1, 892: 2, 893: 2, 894: 1, 961: 8, 969: 8, 975: 2, 977: 8, 979: 8, 985: 5, 1001: 8, 1005: 6, 1009: 8, 1011: 6, 1013: 6, 1017: 8, 1020: 8, 1033: 7, 1034: 7, 1037: 5, 1105: 5, 1187: 5, 1195: 3, 1201: 3, 1217: 8, 1218: 3, 1221: 5, 1223: 3, 1225: 7, 1233: 8, 1236: 8, 1249: 8, 1257: 6, 1259: 8, 1261: 7, 1263: 4, 1265: 8, 1267: 1, 1268: 2, 1271: 8, 1273: 3, 1276: 2, 1277: 7, 1278: 4, 1279: 4, 1280: 4, 1296: 4, 1300: 8, 1322: 6, 1323: 4, 1328: 4, 1345: 8, 1417: 8, 1512: 8, 1514: 8, 1517: 8, 1601: 8, 1906: 7, 1907: 7, 1910: 7, 1912: 7, 1914: 7, 1916: 7, 1919: 7, 1927: 7, 1930: 7, 2018: 8, 2020: 8, 2021: 8, 2028: 8
}], }],
CAR.CHEVROLET_MALIBU_CC: [ CAR.CHEVROLET_MALIBU_CC: [
{ {
190: 6, 193: 8, 197: 8, 199: 4, 201: 8, 209: 7, 211: 2, 241: 6, 249: 8, 257: 8, 288: 5, 298: 8, 304: 3, 309: 8, 311: 8, 313: 8, 320: 4, 328: 1, 352: 5, 368: 3, 381: 8, 384: 4, 386: 8, 388: 8, 393: 7, 398: 8, 401: 8, 407: 7, 409: 8, 413: 8, 417: 7, 419: 1, 422: 4, 426: 7, 431: 8, 442: 8, 451: 8, 452: 8, 453: 6, 455: 7, 479: 3, 481: 7, 485: 8, 489: 8, 497: 8, 499: 3, 500: 6, 501: 8, 508: 8, 532: 6, 554: 3, 560: 8, 562: 8, 563: 5, 564: 5, 565: 5, 567: 5, 573: 1, 577: 8, 608: 8, 609: 6, 610: 6, 611: 6, 612: 8, 613: 8, 647: 6, 707: 8, 717: 5, 730: 4, 761: 7, 800: 6, 810: 8, 840: 5, 842: 5, 844: 8, 866: 4, 869: 4, 961: 8, 969: 8, 975: 2, 977: 8, 979: 8, 985: 5, 1001: 8, 1005: 6, 1009: 8, 1011: 6, 1013: 6, 1017: 8, 1020: 8, 1037: 5, 1105: 5, 1187: 6, 1189: 1, 1195: 3, 1217: 8, 1221: 5, 1223: 3, 1225: 7, 1233: 8, 1236: 8, 1249: 8, 1257: 6, 1259: 8, 1261: 7, 1263: 4, 1265: 8, 1267: 1, 1268: 2, 1271: 8, 1273: 3, 1279: 4, 1280: 4, 1300: 8, 1322: 6, 1323: 4, 1328: 4, 1417: 8, 1601: 8, 1906: 7, 1907: 7, 1912: 7, 1919: 7 190: 6, 193: 8, 197: 8, 199: 4, 201: 8, 209: 7, 211: 2, 241: 6, 249: 8, 257: 8, 288: 5, 298: 8, 304: 3, 309: 8, 311: 8, 313: 8, 320: 4, 328: 1, 352: 5, 368: 3, 381: 8, 384: 4, 386: 8, 388: 8, 393: 7, 398: 8, 401: 8, 407: 7, 409: 8, 413: 8, 417: 7, 419: 1, 422: 4, 426: 7, 431: 8, 442: 8, 451: 8, 452: 8, 453: 6, 455: 7, 479: 3, 481: 7, 485: 8, 489: 8, 497: 8, 499: 3, 500: 6, 501: 8, 508: 8, 532: 6, 554: 3, 560: 8, 562: 8, 563: 5, 564: 5, 565: 5, 567: 5, 573: 1, 577: 8, 608: 8, 609: 6, 610: 6, 611: 6, 612: 8, 613: 8, 647: 6, 707: 8, 717: 5, 730: 4, 761: 7, 800: 6, 810: 8, 840: 5, 842: 5, 844: 8, 866: 4, 869: 4, 961: 8, 969: 8, 975: 2, 977: 8, 979: 8, 985: 5, 1001: 8, 1005: 6, 1009: 8, 1011: 6, 1013: 6, 1017: 8, 1020: 8, 1037: 5, 1105: 5, 1187: 6, 1189: 1, 1195: 3, 1217: 8, 1221: 5, 1223: 3, 1225: 7, 1233: 8, 1236: 8, 1249: 8, 1257: 6, 1259: 8, 1261: 7, 1263: 4, 1265: 8, 1267: 1, 1268: 2, 1271: 8, 1273: 3, 1279: 4, 1280: 4, 1300: 8, 1322: 6, 1323: 4, 1328: 4, 1417: 8, 1601: 8, 1906: 7, 1907: 7, 1912: 7, 1919: 7
}], }],
CAR.CHEVROLET_MALIBU_HYBRID_CC: [
{
193:8, 197:8, 201:8, 209:7, 211:2, 241:6, 249:8, 352:5, 386:8, 451:8, 452:8, 453:6, 481:7, 485:8, 489:8, 493:8, 500:6, 560:8, 562:8, 566:6, 609:6, 610:6, 611:6, 612:8, 613:8, 707:8, 717:5, 761:7, 810:8, 840:5, 842:5, 844:8, 869:4
}],
CAR.CHEVROLET_TRAX: [ CAR.CHEVROLET_TRAX: [
{ {
190: 6, 193: 8, 197: 8, 201: 8, 209: 7, 211: 2, 241: 6, 249: 8, 288: 5, 298: 8, 304: 3, 309: 8, 311: 8, 313: 8, 320: 4, 322: 7, 328: 1, 352: 5, 381: 8, 384: 4, 386: 8, 388: 8, 413: 8, 451: 8, 452: 8, 453: 6, 455: 7, 479: 3, 481: 7, 485: 8, 489: 8, 497: 8, 500: 6, 501: 8, 532: 6, 560: 8, 562: 8, 563: 5, 565: 5, 608: 8, 609: 6, 610: 6, 611: 6, 612: 8, 613: 8, 707: 8, 715: 8, 717: 5, 761: 7, 789: 5, 800: 6, 810: 8, 840: 5, 842: 5, 844: 8, 869: 4, 880: 6, 977: 8, 1001: 8, 1011: 6, 1017: 8, 1020: 8, 1217: 8, 1221: 5, 1233: 8, 1249: 8, 1259: 8, 1261: 7, 1263: 4, 1265: 8, 1267: 1, 1271: 8, 1280: 4, 1296: 4, 1300: 8, 1930: 7 190: 6, 193: 8, 197: 8, 201: 8, 209: 7, 211: 2, 241: 6, 249: 8, 288: 5, 298: 8, 304: 3, 309: 8, 311: 8, 313: 8, 320: 4, 322: 7, 328: 1, 352: 5, 381: 8, 384: 4, 386: 8, 388: 8, 413: 8, 451: 8, 452: 8, 453: 6, 455: 7, 479: 3, 481: 7, 485: 8, 489: 8, 497: 8, 500: 6, 501: 8, 532: 6, 560: 8, 562: 8, 563: 5, 565: 5, 608: 8, 609: 6, 610: 6, 611: 6, 612: 8, 613: 8, 707: 8, 715: 8, 717: 5, 761: 7, 789: 5, 800: 6, 810: 8, 840: 5, 842: 5, 844: 8, 869: 4, 880: 6, 977: 8, 1001: 8, 1011: 6, 1017: 8, 1020: 8, 1217: 8, 1221: 5, 1233: 8, 1249: 8, 1259: 8, 1261: 7, 1263: 4, 1265: 8, 1267: 1, 1271: 8, 1280: 4, 1296: 4, 1300: 8, 1930: 7
}], }],
CAR.CHEVROLET_VOLT_2019: [
# Chevy Volt w/ ACC 2019
{
170: 8, 189: 7, 190: 6, 193: 8, 197: 8, 199: 4, 201: 8, 209: 7, 211: 2, 241: 6, 257: 8, 288: 5, 289: 8, 292: 2, 298: 8, 304: 1, 308: 4, 309: 8, 311: 8, 313: 8, 320: 3, 328: 1, 331: 3, 352: 5, 368: 3, 381: 8, 384: 4, 386: 8, 388: 8, 390: 7, 417: 7, 419: 1, 426: 7, 451: 8, 452: 8, 453: 6, 454: 8, 456: 8, 479: 3, 481: 7, 485: 8, 489: 8, 493: 8, 495: 4, 497: 8, 499: 3, 500: 6, 501: 8, 508: 8, 528: 5, 532: 6, 546: 7, 550: 8, 554: 3, 558: 8, 560: 8, 562: 8, 563: 5, 564: 5, 565: 5, 566: 7, 567: 5, 573: 1, 577: 8, 587: 8, 608: 8, 609: 6, 610: 6, 611: 6, 612: 8, 613: 8, 647: 3, 707: 8, 711: 6, 715: 8, 717: 5, 761: 7, 767: 4, 810: 8, 840: 5, 842: 5, 844: 8, 866: 4, 869: 4, 880: 6, 961: 8, 967: 4, 969: 8, 975: 2, 977: 8, 979: 7, 988: 6, 989: 8, 995: 7, 1001: 8, 1005: 6, 1009: 8, 1017: 8, 1019: 2, 1020: 8, 1033: 7, 1034: 7, 1105: 5, 1187: 4, 1217: 8, 1221: 5, 1223: 3, 1225: 7, 1227: 4, 1233: 8, 1236: 8, 1249: 8, 1257: 6, 1265: 8, 1267: 1, 1268: 2, 1273: 3, 1275: 3, 1279: 4, 1280: 4, 1296: 4, 1300: 8, 1322: 6, 1328: 4, 1345: 8, 1417: 8, 1512: 8, 1513: 8, 1516: 8, 1517: 8, 1601: 8, 1609: 8, 1611: 8, 1618: 8, 1613: 8, 1649: 8, 1792: 8, 1793: 8, 1798: 8, 1799: 8, 1810: 8, 1813: 8, 1824: 8, 1825: 8, 1840: 8, 1842: 8, 1856: 8, 1858: 8, 1859: 8, 1860: 8, 1862: 8, 1863: 8, 1871: 8, 1872: 8, 1875: 8, 1879: 8, 1882: 8, 1888: 8, 1889: 8, 1892: 8, 1905: 7, 1906: 7, 1907: 7, 1910: 7, 1912: 7, 1920: 8, 1922: 7, 1927: 7, 1930: 7, 1937: 8, 1953: 8, 1954: 8, 1955: 8, 1968: 8, 1969: 8, 1971: 8, 1975: 8, 1988: 8, 1990: 8, 2000: 8, 2001: 8, 2004: 8, 2017: 8, 2018: 8, 2020: 8, 2021: 8, 2023: 8, 2025: 8, 2028: 8, 2031: 8
}],
} }
FW_VERSIONS: dict[str, dict[tuple, list[bytes]]] = { FW_VERSIONS: dict[str, dict[tuple, list[bytes]]] = {
+27 -1
View File
@@ -66,7 +66,6 @@ def create_gas_regen_command(packer, bus, throttle, idx, enabled, at_full_stop):
"GasRegenFullStopActive": at_full_stop, "GasRegenFullStopActive": at_full_stop,
"GasRegenAlwaysOne": 1, "GasRegenAlwaysOne": 1,
"GasRegenAlwaysOne2": 1, "GasRegenAlwaysOne2": 1,
"GasRegenAlwaysOne3": 1,
} }
dat = packer.make_can_msg("ASCMGasRegenCmd", bus, values)[2] dat = packer.make_can_msg("ASCMGasRegenCmd", bus, values)[2]
@@ -177,6 +176,33 @@ def create_lka_icon_command(bus, active, critical, steer):
dat = b"\x00\x00\x00" dat = b"\x00\x00\x00"
return make_can_msg(0x104c006c, dat, bus) return make_can_msg(0x104c006c, dat, bus)
def create_regen_paddle_command(packer, bus, press_regen_paddle):
regen_paddle_value = 2 if press_regen_paddle else 0
values = {
"RegenPaddle": regen_paddle_value,
"Byte1": 0,
"Byte2": 0,
"Byte3": 0,
"Byte4": 0,
"Byte5": 0,
"Byte6": 0
}
return packer.make_can_msg("EBCMRegenPaddle", bus, values)
def create_prndl2_command(packer, bus, press_regen_paddle):
prndl2_value = 5 if press_regen_paddle else 6
manual_mode = 1 if press_regen_paddle else 0
values = {
"Byte0": 0x0C,
"Byte1": 0x0C,
"Byte2": 0x00,
"PRNDL2": prndl2_value,
"Byte4": 0x00,
"ManualMode": manual_mode,
"TransmissionState": 1,
"Byte7": 0x00
}
return packer.make_can_msg("ECMPRDNL2", bus, values)
def create_gm_cc_spam_command(packer, controller, CS, actuators, frogpilot_toggles): def create_gm_cc_spam_command(packer, controller, CS, actuators, frogpilot_toggles):
accel = actuators.accel accel = actuators.accel
+88 -109
View File
@@ -7,12 +7,10 @@ from panda import Panda
from openpilot.common.conversions import Conversions as CV from openpilot.common.conversions import Conversions as CV
from openpilot.selfdrive.car import create_button_events, get_safety_config from openpilot.selfdrive.car import create_button_events, get_safety_config
from openpilot.selfdrive.car.gm.radar_interface import RADAR_HEADER_MSG from openpilot.selfdrive.car.gm.radar_interface import RADAR_HEADER_MSG
from openpilot.selfdrive.car.gm.values import CAR, CruiseButtons, CarControllerParams, EV_CAR, CAMERA_ACC_CAR, CanBus, GMFlags, CC_ONLY_CAR, SDGM_CAR, ASCM_INT from openpilot.selfdrive.car.gm.values import CAR, CruiseButtons, CarControllerParams, EV_CAR, CAMERA_ACC_CAR, CanBus, GMFlags, CC_ONLY_CAR, SDGM_CAR
from openpilot.selfdrive.car.interfaces import CarInterfaceBase, TorqueFromLateralAccelCallbackType, FRICTION_THRESHOLD, LateralAccelFromTorqueCallbackType, get_friction_threshold from openpilot.selfdrive.car.interfaces import CarInterfaceBase, TorqueFromLateralAccelCallbackType, FRICTION_THRESHOLD, LateralAccelFromTorqueCallbackType, get_friction_threshold
from openpilot.selfdrive.controls.lib.drive_helpers import get_friction from openpilot.selfdrive.controls.lib.drive_helpers import get_friction
ButtonType = car.CarState.ButtonEvent.Type ButtonType = car.CarState.ButtonEvent.Type
FrogPilotButtonType = custom.FrogPilotCarState.ButtonEvent.Type FrogPilotButtonType = custom.FrogPilotCarState.ButtonEvent.Type
EventName = car.CarEvent.EventName EventName = car.CarEvent.EventName
@@ -28,25 +26,23 @@ CAM_MSG = 0x320 # AEBCmd
# TODO: Is this always linked to camera presence? # TODO: Is this always linked to camera presence?
ACCELERATOR_POS_MSG = 0xbe ACCELERATOR_POS_MSG = 0xbe
VOLT_LIKE_CARS = (
CAR.CHEVROLET_VOLT,
CAR.CHEVROLET_VOLT_2019,
CAR.CHEVROLET_VOLT_CC,
CAR.CHEVROLET_VOLT_CAMERA,
CAR.CHEVROLET_VOLT_ASCM,
CAR.CHEVROLET_MALIBU,
CAR.CHEVROLET_MALIBU_ASCM,
CAR.CHEVROLET_MALIBU_SDGM,
CAR.CHEVROLET_MALIBU_CC,
CAR.CHEVROLET_MALIBU_HYBRID_CC,
)
NON_LINEAR_TORQUE_PARAMS = { NON_LINEAR_TORQUE_PARAMS = {
CAR.CHEVROLET_BOLT_EUV: [2.6531724862969748, 1.0, 0.1919764879840985, 0.009054123646805178], CAR.CHEVROLET_BOLT_EUV: {
CAR.CHEVROLET_BOLT_CC: [2.6531724862969748, 1.0, 0.1919764879840985, 0.009054123646805178], "left": [2.6531724862969748, 1.1, 0.1719764879840985, 0.0],
CAR.GMC_ACADIA: [4.78003305, 1.0, 0.3122, 0.05591772], "right": [2.8531724862969748, 1.0, 0.1469764879840985, 0.0],
CAR.GMC_ACADIA_ASCM: [4.78003305, 1.0, 0.3122, 0.05591772], },
CAR.CHEVROLET_SILVERADO: [3.29974374, 1.0, 0.25571356, 0.0465122] CAR.CHEVROLET_BOLT_CC: {
"left": [2.6531724862969748, 1.1, 0.1719764879840985, 0.0],
"right": [2.8531724862969748, 1.0, 0.1469764879840985, 0.0],
},
CAR.GMC_ACADIA: {
"left": [4.78003305, 1.0, 0.3122, 0.05591772],
"right": [4.78003305, 1.0, 0.3122, 0.05591772],
},
CAR.CHEVROLET_SILVERADO: {
"left": [3.8, 0.81, 0.24, 0.0465122],
"right": [3.8, 0.81, 0.24, 0.0465122],
},
} }
@@ -67,7 +63,7 @@ class CarInterface(CarInterfaceBase):
return 0.10006696 * sigmoid * (v_ego + 3.12485927) return 0.10006696 * sigmoid * (v_ego + 3.12485927)
def get_steer_feedforward_function(self): def get_steer_feedforward_function(self):
if self.CP.carFingerprint in VOLT_LIKE_CARS: if self.CP.carFingerprint in (CAR.CHEVROLET_VOLT, CAR.CHEVROLET_VOLT_CC):
return self.get_steer_feedforward_volt return self.get_steer_feedforward_volt
else: else:
return CarInterfaceBase.get_steer_feedforward_default return CarInterfaceBase.get_steer_feedforward_default
@@ -80,7 +76,9 @@ class CarInterface(CarInterfaceBase):
# This has big effect on the stability about 0 (noise when going straight) # This has big effect on the stability about 0 (noise when going straight)
non_linear_torque_params = NON_LINEAR_TORQUE_PARAMS.get(self.CP.carFingerprint) non_linear_torque_params = NON_LINEAR_TORQUE_PARAMS.get(self.CP.carFingerprint)
assert non_linear_torque_params, "The params are not defined" assert non_linear_torque_params, "The params are not defined"
a, b, c, d = non_linear_torque_params # Left is positive
side_key = "left" if lateral_acceleration >= 0 else "right"
a, b, c, d = non_linear_torque_params[side_key]
sig_input = a * lateral_acceleration sig_input = a * lateral_acceleration
sig = np.sign(sig_input) * (1 / (1 + exp(-fabs(sig_input))) - 0.5) sig = np.sign(sig_input) * (1 / (1 + exp(-fabs(sig_input))) - 0.5)
steer_torque = (sig * b) + (lateral_acceleration * c) + d steer_torque = (sig * b) + (lateral_acceleration * c) + d
@@ -122,8 +120,7 @@ class CarInterface(CarInterfaceBase):
@staticmethod @staticmethod
def _get_params(ret, candidate, fingerprint, car_fw, experimental_long, docs, frogpilot_toggles): def _get_params(ret, candidate, fingerprint, car_fw, experimental_long, docs, frogpilot_toggles):
ret.carName = "gm" ret.carName = "gm"
ret.safetyConfigs = [get_safety_config(car.CarParams.SafetyModel.noOutput), ret.safetyConfigs = [get_safety_config(car.CarParams.SafetyModel.gm)]
get_safety_config(car.CarParams.SafetyModel.gm)]
ret.autoResumeSng = False ret.autoResumeSng = False
ret.enableBsm = 0x142 in fingerprint[CanBus.POWERTRAIN] ret.enableBsm = 0x142 in fingerprint[CanBus.POWERTRAIN]
@@ -133,7 +130,7 @@ class CarInterface(CarInterfaceBase):
if PEDAL_MSG in fingerprint[0]: if PEDAL_MSG in fingerprint[0]:
ret.enableGasInterceptor = True ret.enableGasInterceptor = True
ret.safetyConfigs[-1].safetyParam |= Panda.FLAG_GM_GAS_INTERCEPTOR ret.safetyConfigs[0].safetyParam |= Panda.FLAG_GM_GAS_INTERCEPTOR
# When a pedal interceptor is present, always use normal longitudinal (block stock cruise) # When a pedal interceptor is present, always use normal longitudinal (block stock cruise)
experimental_long = False experimental_long = False
@@ -142,32 +139,24 @@ class CarInterface(CarInterfaceBase):
else: else:
ret.transmissionType = TransmissionType.automatic ret.transmissionType = TransmissionType.automatic
ret.longitudinalTuning.kiBP = [5., 35.] ret.longitudinalTuning.kiBP = [5., 35., 60.]
if candidate in (CAMERA_ACC_CAR | SDGM_CAR | ASCM_INT) or candidate == CAR.CHEVROLET_VOLT_CAMERA: if candidate in CAMERA_ACC_CAR:
ret.experimentalLongitudinalAvailable = candidate not in (CC_ONLY_CAR | ASCM_INT | SDGM_CAR) or 0x2FF in fingerprint[CanBus.POWERTRAIN] # For ACC models with pedal interceptor, behave like CC_ONLY_CAR
ret.experimentalLongitudinalAvailable = (candidate not in CC_ONLY_CAR) and not ret.enableGasInterceptor
ret.networkLocation = NetworkLocation.fwdCamera ret.networkLocation = NetworkLocation.fwdCamera
ret.radarUnavailable = 0x460 not in fingerprint[CanBus.OBSTACLE] ret.radarUnavailable = True # no radar
ret.pcmCruise = True # Only use pcmCruise if no pedal interceptor (bolt_cc style behavior)
ret.pcmCruise = not ret.enableGasInterceptor
ret.safetyConfigs[0].safetyParam |= Panda.FLAG_GM_HW_CAM
# Use default minEnableSpeed for ACC models (will be overridden by pedal interceptor section if present)
ret.minEnableSpeed = 5 * CV.KPH_TO_MS ret.minEnableSpeed = 5 * CV.KPH_TO_MS
ret.minSteerSpeed = 10 * CV.KPH_TO_MS ret.minSteerSpeed = 10 * CV.KPH_TO_MS
if candidate in SDGM_CAR:
ret.safetyConfigs[-1].safetyParam |= Panda.FLAG_GM_HW_SDGM
# Use C9 brake bit only on SDGM variants that lack 0xBE (ECMAcceleratorPos)
if ACCELERATOR_POS_MSG not in fingerprint[CanBus.POWERTRAIN]:
ret.safetyConfigs[-1].safetyParam |= Panda.FLAG_GM_FORCE_BRAKE_C9
ret.flags |= GMFlags.FORCE_BRAKE_C9.value
ret.minEnableSpeed = -1. # engage speed is decided by pcm
ret.minSteerSpeed = 7 * CV.MPH_TO_MS
elif candidate in ASCM_INT:
ret.safetyConfigs[-1].safetyParam |= Panda.FLAG_GM_HW_CAM
ret.minSteerSpeed = 7 * CV.MPH_TO_MS
ret.safetyConfigs[-1].safetyParam |= Panda.FLAG_GM_ASCM_INT
else:
ret.safetyConfigs[-1].safetyParam |= Panda.FLAG_GM_HW_CAM
# Tuning for experimental long # Tuning for experimental long
ret.longitudinalTuning.kiV = [0.5, 0.5] ret.longitudinalTuning.kiV = [0.5, 0.5, 0.5]
ret.vEgoStopping = 0.1
ret.vEgoStarting = 0.1
ret.stoppingDecelRate = 1.0 # reach brake quickly after enabling ret.stoppingDecelRate = 1.0 # reach brake quickly after enabling
ret.vEgoStopping = 0.25 ret.vEgoStopping = 0.25
@@ -177,7 +166,17 @@ class CarInterface(CarInterfaceBase):
if ret.experimentalLongitudinalAvailable and experimental_long: if ret.experimentalLongitudinalAvailable and experimental_long:
ret.pcmCruise = False ret.pcmCruise = False
ret.openpilotLongitudinalControl = True ret.openpilotLongitudinalControl = True
ret.safetyConfigs[-1].safetyParam |= Panda.FLAG_GM_HW_CAM_LONG ret.safetyConfigs[0].safetyParam |= Panda.FLAG_GM_HW_CAM_LONG
elif candidate in SDGM_CAR:
ret.longitudinalTuning.kiV = [0., 0., 0.] # TODO: tuning
ret.experimentalLongitudinalAvailable = False
ret.networkLocation = NetworkLocation.fwdCamera
ret.pcmCruise = True
ret.radarUnavailable = True
ret.minEnableSpeed = -1. # engage speed is decided by ASCM
ret.minSteerSpeed = 30 * CV.MPH_TO_MS
ret.safetyConfigs[0].safetyParam |= Panda.FLAG_GM_HW_SDGM
else: # ASCM, OBD-II harness else: # ASCM, OBD-II harness
ret.openpilotLongitudinalControl = not frogpilot_toggles.disable_openpilot_long ret.openpilotLongitudinalControl = not frogpilot_toggles.disable_openpilot_long
@@ -189,15 +188,11 @@ class CarInterface(CarInterfaceBase):
ret.minSteerSpeed = 7 * CV.MPH_TO_MS ret.minSteerSpeed = 7 * CV.MPH_TO_MS
# Tuning # Tuning
ret.longitudinalTuning.kiV = [0.5, 0.5] ret.longitudinalTuning.kiV = [0.5, 0.5, 0.5]
ret.stoppingDecelRate = 3
ret.vEgoStopping = 0.75
ret.vEgoStarting = 0.75
ret.stopAccel = -1.5
if ret.enableGasInterceptor: if ret.enableGasInterceptor:
# Need to set ASCM long limits when using pedal interceptor, instead of camera ACC long limits # Need to set ASCM long limits when using pedal interceptor, instead of camera ACC long limits
ret.safetyConfigs[-1].safetyParam |= Panda.FLAG_GM_HW_ASCM_LONG ret.safetyConfigs[0].safetyParam |= Panda.FLAG_GM_HW_ASCM_LONG
# Start with a baseline tuning for all GM vehicles. Override tuning as needed in each model section below. # Start with a baseline tuning for all GM vehicles. Override tuning as needed in each model section below.
ret.lateralTuning.pid.kiBP, ret.lateralTuning.pid.kpBP = [[0.], [0.]] ret.lateralTuning.pid.kiBP, ret.lateralTuning.pid.kpBP = [[0.], [0.]]
@@ -211,14 +206,13 @@ class CarInterface(CarInterfaceBase):
ret.radarTimeStep = 0.0667 # GM radar runs at 15Hz instead of standard 20Hz ret.radarTimeStep = 0.0667 # GM radar runs at 15Hz instead of standard 20Hz
ret.longitudinalActuatorDelay = 0.5 # large delay to initially start braking ret.longitudinalActuatorDelay = 0.5 # large delay to initially start braking
if candidate in (CAR.CHEVROLET_VOLT, CAR.CHEVROLET_VOLT_CC, CAR.CHEVROLET_VOLT_CAMERA): if candidate in (CAR.CHEVROLET_VOLT, CAR.CHEVROLET_VOLT_CC):
ret.minEnableSpeed = -1 ret.minEnableSpeed = -1
ret.lateralTuning.pid.kpBP = [0., 40.]
if candidate == CAR.CHEVROLET_VOLT_2019 and not ret.openpilotLongitudinalControl: ret.lateralTuning.pid.kpV = [0., 0.17]
ret.minEnableSpeed = -1 ret.lateralTuning.pid.kiBP = [0.]
ret.lateralTuning.pid.kiV = [0.]
if candidate in VOLT_LIKE_CARS: ret.lateralTuning.pid.kf = 1. # get_steer_feedforward_volt()
CarInterfaceBase.configure_torque_tune(candidate, ret.lateralTuning)
ret.steerActuatorDelay = 0.2 ret.steerActuatorDelay = 0.2
elif candidate == CAR.GMC_ACADIA: elif candidate == CAR.GMC_ACADIA:
@@ -226,11 +220,6 @@ class CarInterface(CarInterfaceBase):
ret.steerActuatorDelay = 0.2 ret.steerActuatorDelay = 0.2
CarInterfaceBase.configure_torque_tune(candidate, ret.lateralTuning) CarInterfaceBase.configure_torque_tune(candidate, ret.lateralTuning)
elif candidate == CAR.GMC_ACADIA_ASCM:
ret.minEnableSpeed = -1. # engage speed is decided by pcm
ret.steerActuatorDelay = 0.2
CarInterfaceBase.configure_torque_tune(candidate, ret.lateralTuning)
elif candidate == CAR.BUICK_LACROSSE: elif candidate == CAR.BUICK_LACROSSE:
CarInterfaceBase.configure_torque_tune(candidate, ret.lateralTuning) CarInterfaceBase.configure_torque_tune(candidate, ret.lateralTuning)
@@ -253,11 +242,19 @@ class CarInterface(CarInterfaceBase):
ret.steerActuatorDelay = 0.2 ret.steerActuatorDelay = 0.2
CarInterfaceBase.configure_torque_tune(candidate, ret.lateralTuning) CarInterfaceBase.configure_torque_tune(candidate, ret.lateralTuning)
if ret.enableGasInterceptor: # Bolt-only lateral tuning overrides
# ACC Bolts use pedal for full longitudinal control, not just sng ret.lateralTuning.torque.kp = 1.03
ret.flags |= GMFlags.PEDAL_LONG.value ret.lateralTuning.torque.ki = 1.07
ret.lateralTuning.torque.kd = 0.93
ret.lateralTuning.torque.kfDEPRECATED = 0.02
elif candidate == CAR.CHEVROLET_SILVERADO: # Enable pedal interceptor for ACC models when detected
if candidate in CAMERA_ACC_CAR and ret.enableGasInterceptor:
# ACC models with pedal interceptor get full pedal longitudinal control
ret.flags |= GMFlags.PEDAL_LONG.value
ret.safetyConfigs[0].safetyParam |= Panda.FLAG_GM_NO_ACC
if candidate == CAR.CHEVROLET_SILVERADO:
# On the Bolt, the ECM and camera independently check that you are either above 5 kph or at a stop # On the Bolt, the ECM and camera independently check that you are either above 5 kph or at a stop
# with foot on brake to allow engagement, but this platform only has that check in the camera. # with foot on brake to allow engagement, but this platform only has that check in the camera.
# TODO: check if this is split by EV/ICE with more platforms in the future # TODO: check if this is split by EV/ICE with more platforms in the future
@@ -280,100 +277,83 @@ class CarInterface(CarInterfaceBase):
ret.steerActuatorDelay = 0.2 ret.steerActuatorDelay = 0.2
CarInterfaceBase.configure_torque_tune(candidate, ret.lateralTuning) CarInterfaceBase.configure_torque_tune(candidate, ret.lateralTuning)
elif candidate == CAR.CADILLAC_XT6:
ret.steerActuatorDelay = 0.2
ret.minSteerSpeed = 7 * CV.MPH_TO_MS
CarInterfaceBase.configure_torque_tune(candidate, ret.lateralTuning)
elif candidate == CAR.CADILLAC_XT4: elif candidate == CAR.CADILLAC_XT4:
ret.steerActuatorDelay = 0.2 ret.steerActuatorDelay = 0.2
if not ret.openpilotLongitudinalControl:
ret.minEnableSpeed = -1. # engage speed is decided by pcm
ret.minSteerSpeed = 30 * CV.MPH_TO_MS
CarInterfaceBase.configure_torque_tune(candidate, ret.lateralTuning) CarInterfaceBase.configure_torque_tune(candidate, ret.lateralTuning)
elif candidate == CAR.CADILLAC_XT5_CC: elif candidate == CAR.CADILLAC_XT5_CC:
ret.steerActuatorDelay = 0.2 ret.steerActuatorDelay = 0.2
CarInterfaceBase.configure_torque_tune(candidate, ret.lateralTuning) CarInterfaceBase.configure_torque_tune(candidate, ret.lateralTuning)
elif candidate in (CAR.CHEVROLET_TRAVERSE, CAR.CHEVROLET_BLAZER): elif candidate == CAR.CHEVROLET_TRAVERSE:
ret.steerActuatorDelay = 0.2 ret.steerActuatorDelay = 0.2
if not ret.openpilotLongitudinalControl: ret.minSteerSpeed = 10 * CV.KPH_TO_MS
ret.minEnableSpeed = -1. # engage speed is decided by pcm
CarInterfaceBase.configure_torque_tune(candidate, ret.lateralTuning) CarInterfaceBase.configure_torque_tune(candidate, ret.lateralTuning)
elif candidate == CAR.CHEVROLET_BLAZER:
ret.minEnableSpeed = 5 * CV.KPH_TO_MS
elif candidate == CAR.BUICK_BABYENCLAVE: elif candidate == CAR.BUICK_BABYENCLAVE:
ret.steerActuatorDelay = 0.2 ret.steerActuatorDelay = 0.2
if not ret.openpilotLongitudinalControl: ret.minSteerSpeed = 10 * CV.KPH_TO_MS
ret.minEnableSpeed = -1. # engage speed is decided by pcm
CarInterfaceBase.configure_torque_tune(candidate, ret.lateralTuning) CarInterfaceBase.configure_torque_tune(candidate, ret.lateralTuning)
elif candidate == CAR.CADILLAC_CT6_CC: elif candidate == CAR.CADILLAC_CT6_CC:
CarInterfaceBase.configure_torque_tune(candidate, ret.lateralTuning) CarInterfaceBase.configure_torque_tune(candidate, ret.lateralTuning)
elif candidate == CAR.CHEVROLET_MALIBU_CC:
ret.steerActuatorDelay = 0.2
CarInterfaceBase.configure_torque_tune(candidate, ret.lateralTuning)
elif candidate == CAR.CHEVROLET_TRAX: elif candidate == CAR.CHEVROLET_TRAX:
CarInterfaceBase.configure_torque_tune(candidate, ret.lateralTuning) CarInterfaceBase.configure_torque_tune(candidate, ret.lateralTuning)
if ret.enableGasInterceptor and frogpilot_toggles.gm_pedal_longitudinal: if ret.enableGasInterceptor and frogpilot_toggles.gm_pedal_longitudinal:
ret.networkLocation = NetworkLocation.fwdCamera ret.networkLocation = NetworkLocation.fwdCamera
ret.safetyConfigs[-1].safetyParam |= Panda.FLAG_GM_HW_CAM ret.safetyConfigs[0].safetyParam |= Panda.FLAG_GM_HW_CAM
ret.minEnableSpeed = -1 ret.minEnableSpeed = -1
ret.pcmCruise = False ret.pcmCruise = False
ret.openpilotLongitudinalControl = not frogpilot_toggles.disable_openpilot_long ret.openpilotLongitudinalControl = not frogpilot_toggles.disable_openpilot_long
ret.stoppingControl = True ret.stoppingControl = True
ret.autoResumeSng = True ret.autoResumeSng = True
if candidate in CC_ONLY_CAR: if candidate in CC_ONLY_CAR or (candidate in CAMERA_ACC_CAR and ret.enableGasInterceptor): #pedal interceptor tuning
ret.flags |= GMFlags.PEDAL_LONG.value ret.flags |= GMFlags.PEDAL_LONG.value
ret.safetyConfigs[-1].safetyParam |= Panda.FLAG_GM_PEDAL_LONG ret.safetyConfigs[0].safetyParam |= Panda.FLAG_GM_PEDAL_LONG
# Note: Low speed, stop and go not tested. Should be fairly smooth on highway # Note: Low speed, stop and go not tested. Should be fairly smooth on highway
ret.longitudinalTuning.kiBP = [0.0, 5., 35.] ret.longitudinalTuning.kiBP = [0., 3., 6., 35.]
ret.longitudinalTuning.kiV = [0.0, 0.35, 0.5] ret.longitudinalTuning.kiV = [0.125, 0.175, 0.225, 0.33]
ret.longitudinalTuning.kfDEPRECATED = 0.15 ret.longitudinalTuning.kfDEPRECATED = 0.25
ret.stoppingDecelRate = 0.8 ret.stoppingDecelRate = 0.8
ret.minEnableSpeed = -1
ret.pcmCruise = False
ret.openpilotLongitudinalControl = not frogpilot_toggles.disable_openpilot_long
else: # Pedal used for SNG, ACC for longitudinal control otherwise else: # Pedal used for SNG, ACC for longitudinal control otherwise
ret.safetyConfigs[-1].safetyParam |= Panda.FLAG_GM_HW_CAM_LONG ret.safetyConfigs[0].safetyParam |= Panda.FLAG_GM_HW_CAM_LONG
ret.startingState = True ret.startingState = True
ret.vEgoStopping = 0.25 ret.vEgoStopping = 0.25
ret.vEgoStarting = 0.25 ret.vEgoStarting = 0.25
elif candidate in CC_ONLY_CAR: elif candidate in CC_ONLY_CAR:
ret.flags |= GMFlags.CC_LONG.value ret.flags |= GMFlags.CC_LONG.value
ret.safetyConfigs[-1].safetyParam |= Panda.FLAG_GM_CC_LONG ret.safetyConfigs[0].safetyParam |= Panda.FLAG_GM_CC_LONG
ret.radarUnavailable = True ret.radarUnavailable = True
ret.experimentalLongitudinalAvailable = False ret.experimentalLongitudinalAvailable = False
ret.minEnableSpeed = 24 * CV.MPH_TO_MS ret.minEnableSpeed = 24 * CV.MPH_TO_MS
ret.openpilotLongitudinalControl = not frogpilot_toggles.disable_openpilot_long ret.openpilotLongitudinalControl = not frogpilot_toggles.disable_openpilot_long
ret.pcmCruise = False ret.pcmCruise = False
ret.stoppingDecelRate = 11.18 if not ret.enableGasInterceptor and candidate in CC_ONLY_CAR: #redneck tuning
if candidate not in (CAR.CHEVROLET_BOLT_CC, CAR.CHEVROLET_MALIBU_HYBRID_CC):
ret.longitudinalTuning.kpBP = [10.7, 10.8, 28.] # 10.7 m/s == 24 mph ret.longitudinalTuning.kpBP = [10.7, 10.8, 28.] # 10.7 m/s == 24 mph
ret.longitudinalTuning.kpV = [0., 5., 2.] # set lower end to 0 since we can't drive below that speed ret.longitudinalTuning.kpV = [0., 5., 2.] # set lower end to 0 since we can't drive below that speed
ret.longitudinalTuning.deadzoneBP = [0., 1.] ret.longitudinalTuning.deadzoneBP = [0., 1.]
ret.longitudinalTuning.deadzoneV = [0.9, 0.9] # == 2 km/h/s, 1.25 mph/s ret.longitudinalTuning.deadzoneV = [0.9, 0.9] # == 2 km/h/s, 1.25 mph/s
ret.longitudinalActuatorDelay = 1. # TODO: measure this ret.longitudinalActuatorDelay = 1. # TODO: measure this
ret.longitudinalTuning.kpBP = [10.7, 10.8, 28.] # 10.7 m/s == 24 mph
ret.longitudinalTuning.kpV = [0., 20., 20.] # set lower end to 0 since we can't drive below that speed
ret.longitudinalTuning.kiBP = [0.] ret.longitudinalTuning.kiBP = [0.]
ret.longitudinalTuning.kiV = [0.1] ret.longitudinalTuning.kiV = [0.1]
ret.stoppingDecelRate = 11.18 # == 25 mph/s (.04 rate)
if candidate in CC_ONLY_CAR: if candidate in CC_ONLY_CAR:
ret.safetyConfigs[-1].safetyParam |= Panda.FLAG_GM_NO_ACC ret.safetyConfigs[0].safetyParam |= Panda.FLAG_GM_NO_ACC
# Exception for flashed cars, or cars whose camera was removed # Exception for flashed cars, or cars whose camera was removed
if (ret.networkLocation == NetworkLocation.fwdCamera or candidate in CC_ONLY_CAR) and CAM_MSG not in fingerprint[CanBus.CAMERA] and not candidate in (SDGM_CAR | ASCM_INT): if (ret.networkLocation == NetworkLocation.fwdCamera or candidate in CC_ONLY_CAR) and CAM_MSG not in fingerprint[CanBus.CAMERA] and not candidate in SDGM_CAR:
ret.flags |= GMFlags.NO_CAMERA.value ret.flags |= GMFlags.NO_CAMERA.value
ret.safetyConfigs[-1].safetyParam |= Panda.FLAG_GM_NO_CAMERA ret.safetyConfigs[0].safetyParam |= Panda.FLAG_GM_NO_CAMERA
if ACCELERATOR_POS_MSG not in fingerprint[CanBus.POWERTRAIN]: if ACCELERATOR_POS_MSG not in fingerprint[CanBus.POWERTRAIN]:
ret.flags |= GMFlags.NO_ACCELERATOR_POS_MSG.value ret.flags |= GMFlags.NO_ACCELERATOR_POS_MSG.value
@@ -407,11 +387,10 @@ class CarInterface(CarInterfaceBase):
# TODO: verify 17 Volt can enable for the first time at a stop and allow for all GMs # TODO: verify 17 Volt can enable for the first time at a stop and allow for all GMs
below_min_enable_speed = ret.vEgo < self.CP.minEnableSpeed or self.CS.moving_backward below_min_enable_speed = ret.vEgo < self.CP.minEnableSpeed or self.CS.moving_backward
if below_min_enable_speed and not (ret.standstill and ret.brake >= 20 and if below_min_enable_speed and not (ret.standstill and ret.brake >= 20 and
self.CP.networkLocation == NetworkLocation.fwdCamera): (self.CP.networkLocation == NetworkLocation.fwdCamera and not self.CP.carFingerprint in SDGM_CAR)):
events.add(EventName.belowEngageSpeed) events.add(EventName.belowEngageSpeed)
if ret.cruiseState.standstill and not self.CP.autoResumeSng: if ret.cruiseState.standstill and not self.CP.autoResumeSng:
events.add(EventName.resumeRequired) events.add(EventName.resumeRequired)
if ret.vEgo < self.CP.minSteerSpeed: if ret.vEgo < self.CP.minSteerSpeed:
events.add(EventName.belowSteerSpeed) events.add(EventName.belowSteerSpeed)
+33 -68
View File
@@ -40,39 +40,43 @@ class CarControllerParams:
# Gas/brake lookups # Gas/brake lookups
self.ZERO_GAS = 6150 # Coasting self.ZERO_GAS = 6150 # Coasting
self.MAX_BRAKE = 400 # ~ -4.0 m/s^2 with regen self.MAX_BRAKE = 400 # ~ -4.0 m/s^2 with regen
self.BRAKE_SWITCH_MAX = self.ZERO_GAS
if CP.carFingerprint in (CAMERA_ACC_CAR | SDGM_CAR) and CP.carFingerprint not in CC_ONLY_CAR and CP.carFingerprint != CAR.CHEVROLET_BOLT_EUV: if CP.carFingerprint in CAMERA_ACC_CAR and CP.carFingerprint not in CC_ONLY_CAR:
self.MAX_GAS = 8848 self.MAX_GAS = 8848
self.MAX_GAS_PLUS = 8848 self.MAX_GAS_PLUS = 8848
self.MAX_ACC_REGEN = 5610 self.MAX_ACC_REGEN = 5610
self.INACTIVE_REGEN = 5650 self.INACTIVE_REGEN = 5650
# Camera ACC vehicles have no regen while enabled. # Camera ACC vehicles have no regen while enabled.
# Camera transitions to MAX_ACC_REGEN from ZERO_GAS and uses friction brakes instantly # Camera transitions to MAX_ACC_REGEN from ZERO_GAS and uses friction brakes instantly
self.max_regen_acceleration = 0. max_regen_acceleration = 0.
self.BRAKE_SWITCH_MAX = self.MAX_ACC_REGEN if CP.carFingerprint in EV_CAR else self.ZERO_GAS
elif CP.carFingerprint in SDGM_CAR:
self.MAX_GAS = 8191
self.MAX_GAS_PLUS = 8191
self.MAX_ACC_REGEN = 5500
self.INACTIVE_REGEN = 5500
max_regen_acceleration = 0.
self.BRAKE_SWITCH = self.ZERO_GAS
else: else:
self.MAX_GAS = 8191 # Safety limit, not ACC max. Stock ACC >8192 from standstill. self.MAX_GAS = 7168 # Safety limit, not ACC max. Stock ACC >8192 from standstill.
self.MAX_GAS_PLUS = 8191 self.MAX_GAS_PLUS = 7168 # 8292 uses new bit, possible but not tested. Matches Twilsonco tw-main max
self.MAX_ACC_REGEN = 5500 # Max ACC regen is slightly less than max paddle regen self.MAX_ACC_REGEN = 5500 # Max ACC regen is slightly less than max paddle regen
self.INACTIVE_REGEN = 5500 self.INACTIVE_REGEN = 5500
# ICE has much less engine braking force compared to regen in EVs, # ICE has much less engine braking force compared to regen in EVs,
# lower threshold removes some braking deadzone # lower threshold removes some braking deadzone
self.max_regen_acceleration = -1. if CP.carFingerprint in EV_CAR else -0.1 max_regen_acceleration = -3. if CP.carFingerprint in EV_CAR else -0.1
if CP.carFingerprint in (CAR.CHEVROLET_VOLT, CAR.CHEVROLET_VOLT_ASCM, CAR.CHEVROLET_VOLT_CAMERA, CAR.CHEVROLET_VOLT_CC):
self.ZERO_GAS = 6150
self.BRAKE_SWITCH_MAX = self.MAX_ACC_REGEN if CP.carFingerprint in EV_CAR else self.ZERO_GAS self.BRAKE_SWITCH_MAX = self.MAX_ACC_REGEN if CP.carFingerprint in EV_CAR else self.ZERO_GAS
self.BRAKE_LOOKUP_BP = [self.ACCEL_MIN, 0.]
else:
self.BRAKE_LOOKUP_BP = [self.ACCEL_MIN, self.max_regen_acceleration]
self.GAS_LOOKUP_BP = [self.max_regen_acceleration, 0., self.ACCEL_MAX] self.GAS_LOOKUP_BP = [max_regen_acceleration, 0., self.ACCEL_MAX]
self.GAS_LOOKUP_BP_PLUS = [self.max_regen_acceleration, 0., self.ACCEL_MAX_PLUS] self.GAS_LOOKUP_BP_PLUS = [max_regen_acceleration, 0., self.ACCEL_MAX_PLUS]
self.GAS_LOOKUP_V = [self.MAX_ACC_REGEN, self.ZERO_GAS, self.MAX_GAS] self.GAS_LOOKUP_V = [self.MAX_ACC_REGEN, self.ZERO_GAS, self.MAX_GAS]
self.GAS_LOOKUP_V_PLUS = [self.MAX_ACC_REGEN, self.ZERO_GAS, self.MAX_GAS_PLUS] self.GAS_LOOKUP_V_PLUS = [self.MAX_ACC_REGEN, self.ZERO_GAS, self.MAX_GAS_PLUS]
self.BRAKE_LOOKUP_BP = [self.ACCEL_MIN, 0.]
self.BRAKE_LOOKUP_V = [self.MAX_BRAKE, 0.] self.BRAKE_LOOKUP_V = [self.MAX_BRAKE, 0.]
self.BRAKE_SWITCH_LOOKUP_BP = [0.5, 10] self.BRAKE_SWITCH_LOOKUP_BP = [0.5, 10]
self.BRAKE_SWITCH_LOOKUP_V = [self.ZERO_GAS, self.BRAKE_SWITCH_MAX] self.BRAKE_SWITCH_LOOKUP_V = [self.ZERO_GAS, self.BRAKE_SWITCH_MAX]
@@ -113,7 +117,8 @@ class GMPlatformConfig(PlatformConfig):
@dataclass @dataclass
class GMASCMPlatformConfig(GMPlatformConfig): class GMASCMPlatformConfig(GMPlatformConfig):
def init(self): def init(self):
pass # ASCM is supported, but due to a janky install and hardware configuration, we are not showing in the car docs
self.car_docs = []
class CAR(Platforms): class CAR(Platforms):
@@ -126,16 +131,6 @@ class CAR(Platforms):
GMCarSpecs(mass=1607, wheelbase=2.69, steerRatio=17.7, centerToFrontRatio=0.45, tireStiffnessFactor=0.469, minEnableSpeed=-1), GMCarSpecs(mass=1607, wheelbase=2.69, steerRatio=17.7, centerToFrontRatio=0.45, tireStiffnessFactor=0.469, minEnableSpeed=-1),
dbc_dict=dbc_dict('gm_global_a_powertrain_volt', 'gm_global_a_object', chassis_dbc='gm_global_a_chassis') dbc_dict=dbc_dict('gm_global_a_powertrain_volt', 'gm_global_a_object', chassis_dbc='gm_global_a_chassis')
) )
CHEVROLET_VOLT_ASCM = GMPlatformConfig(
[GMCarDocs("Chevrolet Volt 2017-18 ASCM Harness", min_enable_speed=0, video_link="https://youtu.be/QeMCN_4TFfQ")],
GMCarSpecs(mass=1607, wheelbase=2.69, steerRatio=17.7, centerToFrontRatio=0.45, tireStiffnessFactor=0.469, minEnableSpeed=-1),
dbc_dict=dbc_dict('gm_global_a_powertrain_volt', 'gm_global_a_object', chassis_dbc='gm_global_a_chassis')
)
CHEVROLET_VOLT_CAMERA = GMPlatformConfig(
[GMCarDocs("Chevrolet Volt 2017-18 Camera Harness", "Flashed camera-forward integration with ACC")],
CHEVROLET_VOLT.specs,
dbc_dict=dbc_dict('gm_global_a_powertrain_volt', 'gm_global_a_object', chassis_dbc='gm_global_a_chassis')
)
CADILLAC_ATS = GMASCMPlatformConfig( CADILLAC_ATS = GMASCMPlatformConfig(
[GMCarDocs("Cadillac ATS Premium Performance 2018")], [GMCarDocs("Cadillac ATS Premium Performance 2018")],
GMCarSpecs(mass=1601, wheelbase=2.78, steerRatio=15.3), GMCarSpecs(mass=1601, wheelbase=2.78, steerRatio=15.3),
@@ -144,19 +139,10 @@ class CAR(Platforms):
[GMCarDocs("Chevrolet Malibu Premier 2017")], [GMCarDocs("Chevrolet Malibu Premier 2017")],
GMCarSpecs(mass=1496, wheelbase=2.83, steerRatio=15.8, centerToFrontRatio=0.4), GMCarSpecs(mass=1496, wheelbase=2.83, steerRatio=15.8, centerToFrontRatio=0.4),
) )
CHEVROLET_MALIBU_ASCM = GMPlatformConfig(
[GMCarDocs("Chevrolet Malibu 2017-19 ASCM Harness")],
CHEVROLET_MALIBU.specs,
)
GMC_ACADIA = GMASCMPlatformConfig( GMC_ACADIA = GMASCMPlatformConfig(
[GMCarDocs("GMC Acadia 2018", video_link="https://www.youtube.com/watch?v=0ZN6DdsBUZo")], [GMCarDocs("GMC Acadia 2018", video_link="https://www.youtube.com/watch?v=0ZN6DdsBUZo")],
GMCarSpecs(mass=1975, wheelbase=2.86, steerRatio=14.4, centerToFrontRatio=0.4), GMCarSpecs(mass=1975, wheelbase=2.86, steerRatio=14.4, centerToFrontRatio=0.4),
) )
GMC_ACADIA_ASCM = GMPlatformConfig(
[GMCarDocs("GMC Acadia 2018 ASCM Harness", video_link="https://www.youtube.com/watch?v=0ZN6DdsBUZo")],
GMCarSpecs(mass=1975, wheelbase=2.86, steerRatio=14.4, centerToFrontRatio=0.4),
dbc_dict=dbc_dict('gm_global_a_powertrain_generated', 'gm_global_a_object', chassis_dbc='gm_global_a_chassis')
)
BUICK_LACROSSE = GMASCMPlatformConfig( BUICK_LACROSSE = GMASCMPlatformConfig(
[GMCarDocs("Buick LaCrosse 2017-19", "Driver Confidence Package 2")], [GMCarDocs("Buick LaCrosse 2017-19", "Driver Confidence Package 2")],
GMCarSpecs(mass=1712, wheelbase=2.91, steerRatio=15.8, centerToFrontRatio=0.4), GMCarSpecs(mass=1712, wheelbase=2.91, steerRatio=15.8, centerToFrontRatio=0.4),
@@ -189,7 +175,7 @@ class CAR(Platforms):
GMCarDocs("Chevrolet Silverado 1500 2020-21", "Safety Package II"), GMCarDocs("Chevrolet Silverado 1500 2020-21", "Safety Package II"),
GMCarDocs("GMC Sierra 1500 2020-21", "Driver Alert Package II", video_link="https://youtu.be/5HbNoBLzRwE"), GMCarDocs("GMC Sierra 1500 2020-21", "Driver Alert Package II", video_link="https://youtu.be/5HbNoBLzRwE"),
], ],
GMCarSpecs(mass=2450, wheelbase=3.75, steerRatio=16.3, tireStiffnessFactor=1.0), GMCarSpecs(mass=2994, wheelbase=3.75, steerRatio=16.3, tireStiffnessFactor=1.0),
) )
CHEVROLET_EQUINOX = GMPlatformConfig( CHEVROLET_EQUINOX = GMPlatformConfig(
[GMCarDocs("Chevrolet Equinox 2019-22")], [GMCarDocs("Chevrolet Equinox 2019-22")],
@@ -244,18 +230,10 @@ class CAR(Platforms):
[GMCarDocs("Cadillac XT5 - No-ACC")], [GMCarDocs("Cadillac XT5 - No-ACC")],
CarSpecs(mass=1810, wheelbase=2.86, steerRatio=16.34, centerToFrontRatio=0.5), CarSpecs(mass=1810, wheelbase=2.86, steerRatio=16.34, centerToFrontRatio=0.5),
) )
CHEVROLET_BLAZER = GMPlatformConfig(
[GMCarDocs("Chevrolet Blazer 2019-2025", "Driver Assist Package")],
CarSpecs(mass=1850, wheelbase=3.10, steerRatio=17.9, centerToFrontRatio=0.4),
)
CHEVROLET_TRAVERSE = GMPlatformConfig( CHEVROLET_TRAVERSE = GMPlatformConfig(
[GMCarDocs("Chevrolet Traverse 2023", "Driver Assist Package")], [GMCarDocs("Chevrolet Traverse 2023", "Driver Assist Package")],
CarSpecs(mass=1955, wheelbase=3.07, steerRatio=17.9, centerToFrontRatio=0.4), CarSpecs(mass=1955, wheelbase=3.07, steerRatio=17.9, centerToFrontRatio=0.4),
) )
CHEVROLET_MALIBU_SDGM = GMPlatformConfig(
[GMCarDocs("Chevrolet Malibu 2019", "SDGM Harness (Optional SASCM)")],
CHEVROLET_MALIBU.specs,
)
BUICK_BABYENCLAVE = GMPlatformConfig( BUICK_BABYENCLAVE = GMPlatformConfig(
[GMCarDocs("Buick Baby Enclave 2020-23", "Driver Assist Package")], [GMCarDocs("Buick Baby Enclave 2020-23", "Driver Assist Package")],
CarSpecs(mass=2050, wheelbase=2.86, steerRatio=16.0, centerToFrontRatio=0.5), CarSpecs(mass=2050, wheelbase=2.86, steerRatio=16.0, centerToFrontRatio=0.5),
@@ -264,22 +242,10 @@ class CAR(Platforms):
[GMCarDocs("Chevrolet Malibu 2023 - No-ACC")], [GMCarDocs("Chevrolet Malibu 2023 - No-ACC")],
CarSpecs(mass=1450, wheelbase=2.8, steerRatio=15.8, centerToFrontRatio=0.4), CarSpecs(mass=1450, wheelbase=2.8, steerRatio=15.8, centerToFrontRatio=0.4),
) )
CHEVROLET_MALIBU_HYBRID_CC = GMPlatformConfig(
[GMCarDocs("Chevrolet Malibu Hybrid 2017 - No-ACC")],
CarSpecs(mass=1450, wheelbase=2.8, steerRatio=15.8, centerToFrontRatio=0.4),
)
CHEVROLET_TRAX = GMPlatformConfig( CHEVROLET_TRAX = GMPlatformConfig(
[GMCarDocs("Chevrolet TRAX 2024")], [GMCarDocs("Chevrolet TRAX 2024")],
CarSpecs(mass=1365, wheelbase=2.7, steerRatio=16.4, centerToFrontRatio=0.4), CarSpecs(mass=1365, wheelbase=2.7, steerRatio=16.4, centerToFrontRatio=0.4),
) )
CHEVROLET_VOLT_2019 = GMPlatformConfig(
[GMCarDocs("Chevrolet Volt 2019")],
GMCarSpecs(mass=1607, wheelbase=2.69, steerRatio=15.7, centerToFrontRatio=0.45),
)
CADILLAC_XT6 = GMPlatformConfig(
[GMCarDocs("Cadillac XT6 2020", "Driver Assist Package")],
GMCarSpecs(mass=2050, wheelbase=2.86, steerRatio=16.5, centerToFrontRatio=0.4),
)
class CruiseButtons: class CruiseButtons:
@@ -297,12 +263,12 @@ class AccState:
STANDSTILL = 4 STANDSTILL = 4
class CanBus: class CanBus:
POWERTRAIN = 4 POWERTRAIN = 0
OBSTACLE = 5 OBSTACLE = 1
CAMERA = 6 CAMERA = 2
CHASSIS = 6 CHASSIS = 2
LOOPBACK = 132 LOOPBACK = 128
DROPPED = 196 DROPPED = 192
class GMFlags(IntFlag): class GMFlags(IntFlag):
PEDAL_LONG = 1 PEDAL_LONG = 1
@@ -362,18 +328,17 @@ FW_QUERY_CONFIG = FwQueryConfig(
extra_ecus=[(Ecu.fwdCamera, 0x24b, None)], extra_ecus=[(Ecu.fwdCamera, 0x24b, None)],
) )
EV_CAR = {CAR.CHEVROLET_VOLT, CAR.CHEVROLET_VOLT_2019, CAR.CHEVROLET_BOLT_EUV, CAR.CHEVROLET_VOLT_CC, CAR.CHEVROLET_VOLT_CAMERA, CAR.CHEVROLET_BOLT_CC, CAR.CHEVROLET_VOLT_ASCM, CAR.CHEVROLET_MALIBU_HYBRID_CC} EV_CAR = {CAR.CHEVROLET_VOLT, CAR.CHEVROLET_BOLT_EUV, CAR.CHEVROLET_VOLT_CC, CAR.CHEVROLET_BOLT_CC}
CC_ONLY_CAR = {CAR.CHEVROLET_VOLT_CC, CAR.CHEVROLET_BOLT_CC, CAR.CHEVROLET_EQUINOX_CC, CAR.CHEVROLET_SUBURBAN_CC, CAR.GMC_YUKON_CC, CAR.CADILLAC_CT6_CC, CAR.CHEVROLET_TRAILBLAZER_CC, CAR.CADILLAC_XT5_CC, CAR.CHEVROLET_MALIBU_CC, CAR.CHEVROLET_MALIBU_HYBRID_CC} CC_ONLY_CAR = {CAR.CHEVROLET_VOLT_CC, CAR.CHEVROLET_BOLT_CC, CAR.CHEVROLET_EQUINOX_CC, CAR.CHEVROLET_SUBURBAN_CC, CAR.GMC_YUKON_CC, CAR.CADILLAC_CT6_CC, CAR.CHEVROLET_TRAILBLAZER_CC, CAR.CADILLAC_XT5_CC, CAR.CHEVROLET_MALIBU_CC}
# CC_ONLY_CAR = set(c for c in CAR if str(c).endswith('_CC')) # CC_ONLY_CAR = set(c for c in CAR if str(c).endswith('_CC'))
CC_REGEN_PADDLE_CAR = {CAR.CHEVROLET_BOLT_CC, CAR.CHEVROLET_BOLT_EUV}
# We're integrated at the Safety Data Gateway Module on these cars # We're integrated at the Safety Data Gateway Module on these cars
SDGM_CAR = {CAR.CADILLAC_XT4, CAR.CADILLAC_XT6, CAR.CHEVROLET_TRAVERSE, CAR.CHEVROLET_BLAZER, CAR.CHEVROLET_MALIBU_SDGM, CAR.BUICK_BABYENCLAVE, CAR.CHEVROLET_VOLT_2019} SDGM_CAR = {CAR.CADILLAC_XT4, CAR.CHEVROLET_TRAVERSE, CAR.BUICK_BABYENCLAVE}
ASCM_INT = {CAR.CHEVROLET_VOLT_ASCM, CAR.GMC_ACADIA_ASCM, CAR.CHEVROLET_MALIBU_ASCM}
# We're integrated at the camera with VOACC on these cars (instead of ASCM w/ OBD-II harness) # We're integrated at the camera with VOACC on these cars (instead of ASCM w/ OBD-II harness)
CAMERA_ACC_CAR = {CAR.CHEVROLET_BOLT_EUV, CAR.CHEVROLET_SILVERADO, CAR.CHEVROLET_EQUINOX, CAR.CHEVROLET_TRAILBLAZER, CAR.CHEVROLET_TRAX, CAR.CHEVROLET_VOLT_CAMERA, CAR.CHEVROLET_BLAZER} CAMERA_ACC_CAR = {CAR.CHEVROLET_BOLT_EUV, CAR.CHEVROLET_SILVERADO, CAR.CHEVROLET_EQUINOX, CAR.CHEVROLET_TRAILBLAZER, CAR.CHEVROLET_TRAX}
CAMERA_ACC_CAR.update({CAR.CHEVROLET_VOLT_CC, CAR.CHEVROLET_BOLT_CC, CAR.CHEVROLET_EQUINOX_CC, CAR.GMC_YUKON_CC, CAR.CADILLAC_CT6_CC, CAR.CHEVROLET_TRAILBLAZER_CC, CAR.CADILLAC_XT5_CC, CAR.CHEVROLET_MALIBU_CC, CAR.CHEVROLET_MALIBU_HYBRID_CC}) CAMERA_ACC_CAR.update({CAR.CHEVROLET_VOLT_CC, CAR.CHEVROLET_BOLT_CC, CAR.CHEVROLET_EQUINOX_CC, CAR.GMC_YUKON_CC, CAR.CADILLAC_CT6_CC, CAR.CHEVROLET_TRAILBLAZER_CC, CAR.CADILLAC_XT5_CC, CAR.CHEVROLET_MALIBU_CC})
# CAMERA_ACC_CAR.update(CC_ONLY_CAR) # CAMERA_ACC_CAR.update(CC_ONLY_CAR)
STEER_THRESHOLD = 1.0 STEER_THRESHOLD = 1.0
+3 -3
View File
@@ -37,12 +37,12 @@ EventName = car.CarEvent.EventName
MAX_CTRL_SPEED = (V_CRUISE_MAX + 4) * CV.KPH_TO_MS MAX_CTRL_SPEED = (V_CRUISE_MAX + 4) * CV.KPH_TO_MS
ACCEL_MAX = 2.0 ACCEL_MAX = 2.0
ACCEL_MIN = -3.5 ACCEL_MIN = -3.5
FRICTION_THRESHOLD = 0.09 FRICTION_THRESHOLD = 0.12
def get_friction_threshold(v_ego): def get_friction_threshold(v_ego):
# Interpolate friction threshold from 0.09 at 50 mph to 0.15 at 75 mph # Interpolate friction threshold
from openpilot.common.numpy_fast import interp from openpilot.common.numpy_fast import interp
return interp(v_ego, [1 * CV.MPH_TO_MS, 75 * CV.MPH_TO_MS], [0.12, 0.25]) return interp(v_ego, [1 * CV.MPH_TO_MS, 75 * CV.MPH_TO_MS], [0.12, 0.3])
TORQUE_PARAMS_PATH = os.path.join(BASEDIR, 'selfdrive/car/torque_data/params.toml') TORQUE_PARAMS_PATH = os.path.join(BASEDIR, 'selfdrive/car/torque_data/params.toml')
TORQUE_OVERRIDE_PATH = os.path.join(BASEDIR, 'selfdrive/car/torque_data/override.toml') TORQUE_OVERRIDE_PATH = os.path.join(BASEDIR, 'selfdrive/car/torque_data/override.toml')
+3 -4
View File
@@ -43,10 +43,9 @@ legend = ["LAT_ACCEL_FACTOR", "MAX_LAT_ACCEL_MEASURED", "FRICTION"]
"CADILLAC_ESCALADE" = [1.899999976158142, 1.842270016670227, 0.1120000034570694] "CADILLAC_ESCALADE" = [1.899999976158142, 1.842270016670227, 0.1120000034570694]
"CADILLAC_ESCALADE_ESV_2019" = [1.15, 1.3, 0.2] "CADILLAC_ESCALADE_ESV_2019" = [1.15, 1.3, 0.2]
"CADILLAC_XT4" = [1.45, 1.6, 0.2] "CADILLAC_XT4" = [1.45, 1.6, 0.2]
"CADILLAC_XT6" = [1.33, 1.9, 0.16] "CHEVROLET_BOLT_EUV" = [2.0, 2.0, 0.09]
"CHEVROLET_BOLT_EUV" = [1.0, 2.0, 0.175] "CHEVROLET_MALIBU_CC" = [1.85, 1.85, 0.075]
"CHEVROLET_SILVERADO" = [1.9, 1.9, 0.112] "CHEVROLET_SILVERADO" = [2.014, 1.9, 0.125]
"CHEVROLET_BLAZER" = [1.33, 1.33, 0.18]
"CHEVROLET_TRAILBLAZER" = [1.33, 1.9, 0.16] "CHEVROLET_TRAILBLAZER" = [1.33, 1.9, 0.16]
"CHEVROLET_TRAVERSE" = [1.33, 1.33, 0.18] "CHEVROLET_TRAVERSE" = [1.33, 1.33, 0.18]
"CHEVROLET_EQUINOX" = [2.5, 2.5, 0.05] "CHEVROLET_EQUINOX" = [2.5, 2.5, 0.05]
-1
View File
@@ -5,7 +5,6 @@ legend = ["LAT_ACCEL_FACTOR", "MAX_LAT_ACCEL_MEASURED", "FRICTION"]
"AUDI_A3_MK3" = [1.5122414863077502, 1.7443517531719404, 0.15194151892450905] "AUDI_A3_MK3" = [1.5122414863077502, 1.7443517531719404, 0.15194151892450905]
"AUDI_Q3_MK2" = [1.4439223359448605, 1.2254955789112076, 0.1413798895978097] "AUDI_Q3_MK2" = [1.4439223359448605, 1.2254955789112076, 0.1413798895978097]
"CHEVROLET_VOLT" = [1.5961527626411784, 1.8422651988094612, 0.1572393918005158] "CHEVROLET_VOLT" = [1.5961527626411784, 1.8422651988094612, 0.1572393918005158]
"CHEVROLET_MALIBU_HYBRID_CC" = [1.5961527626411784, 1.8422651988094612, 0.1572393918005158]
"CHRYSLER_PACIFICA_2018" = [2.07140, 1.3366521181047952, 0.13776367250652022] "CHRYSLER_PACIFICA_2018" = [2.07140, 1.3366521181047952, 0.13776367250652022]
"CHRYSLER_PACIFICA_2020" = [1.86206, 1.509076559398423, 0.14328246159386085] "CHRYSLER_PACIFICA_2020" = [1.86206, 1.509076559398423, 0.14328246159386085]
"CHRYSLER_PACIFICA_2017_HYBRID" = [1.79422, 1.06831764583744, 0.116237] "CHRYSLER_PACIFICA_2017_HYBRID" = [1.79422, 1.06831764583744, 0.116237]
+1 -7
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@@ -56,15 +56,8 @@ legend = ["LAT_ACCEL_FACTOR", "MAX_LAT_ACCEL_MEASURED", "FRICTION"]
"CADILLAC_ESCALADE_ESV" = "CHEVROLET_VOLT" "CADILLAC_ESCALADE_ESV" = "CHEVROLET_VOLT"
"CADILLAC_ATS" = "CHEVROLET_VOLT" "CADILLAC_ATS" = "CHEVROLET_VOLT"
"CHEVROLET_MALIBU" = "CHEVROLET_VOLT" "CHEVROLET_MALIBU" = "CHEVROLET_VOLT"
"CHEVROLET_MALIBU_ASCM" = "CHEVROLET_VOLT"
"CHEVROLET_MALIBU_SDGM" = "CHEVROLET_VOLT"
"CHEVROLET_MALIBU_CC" = "CHEVROLET_VOLT"
"HOLDEN_ASTRA" = "CHEVROLET_VOLT" "HOLDEN_ASTRA" = "CHEVROLET_VOLT"
"CHEVROLET_VOLT_CC" = "CHEVROLET_VOLT" "CHEVROLET_VOLT_CC" = "CHEVROLET_VOLT"
"CHEVROLET_VOLT_CAMERA" = "CHEVROLET_VOLT"
"CHEVROLET_VOLT_ASCM" = "CHEVROLET_VOLT"
"GMC_ACADIA_ASCM" = "GMC_ACADIA"
"CHEVROLET_VOLT_2019" = "CHEVROLET_VOLT"
"CHEVROLET_BOLT_CC" = "CHEVROLET_BOLT_EUV" "CHEVROLET_BOLT_CC" = "CHEVROLET_BOLT_EUV"
"CHEVROLET_EQUINOX_CC" = "CHEVROLET_EQUINOX" "CHEVROLET_EQUINOX_CC" = "CHEVROLET_EQUINOX"
"CHEVROLET_SUBURBAN" = "CHEVROLET_SILVERADO" "CHEVROLET_SUBURBAN" = "CHEVROLET_SILVERADO"
@@ -73,6 +66,7 @@ legend = ["LAT_ACCEL_FACTOR", "MAX_LAT_ACCEL_MEASURED", "FRICTION"]
"CHEVROLET_TRAX" = "CHEVROLET_VOLT" "CHEVROLET_TRAX" = "CHEVROLET_VOLT"
"CADILLAC_CT6_CC" = "CHEVROLET_VOLT" "CADILLAC_CT6_CC" = "CHEVROLET_VOLT"
"CADILLAC_XT5_CC" = "GMC_ACADIA" "CADILLAC_XT5_CC" = "GMC_ACADIA"
"SKODA_FABIA_MK4" = "VOLKSWAGEN_GOLF_MK7" "SKODA_FABIA_MK4" = "VOLKSWAGEN_GOLF_MK7"
"SKODA_OCTAVIA_MK3" = "SKODA_SUPERB_MK3" "SKODA_OCTAVIA_MK3" = "SKODA_SUPERB_MK3"
"SKODA_KODIAQ_MK1" = "SKODA_SUPERB_MK3" "SKODA_KODIAQ_MK1" = "SKODA_SUPERB_MK3"
+1 -6
View File
@@ -44,7 +44,7 @@ CAMERA_OFFSET = 0.04
REPLAY = "REPLAY" in os.environ REPLAY = "REPLAY" in os.environ
SIMULATION = "SIMULATION" in os.environ SIMULATION = "SIMULATION" in os.environ
TESTING_CLOSET = "TESTING_CLOSET" in os.environ TESTING_CLOSET = "TESTING_CLOSET" in os.environ
IGNORE_PROCESSES = {"loggerd", "encoderd", "statsd"} IGNORE_PROCESSES = {"loggerd", "encoderd", "statsd", "micd", "soundd"}
ThermalStatus = log.DeviceState.ThermalStatus ThermalStatus = log.DeviceState.ThermalStatus
State = log.ControlsState.OpenpilotState State = log.ControlsState.OpenpilotState
@@ -117,9 +117,6 @@ class Controls:
self.is_metric = self.params.get_bool("IsMetric") self.is_metric = self.params.get_bool("IsMetric")
self.is_ldw_enabled = self.params.get_bool("IsLdwEnabled") self.is_ldw_enabled = self.params.get_bool("IsLdwEnabled")
# detect sound card presence and ensure successful init
sounds_available = HARDWARE.get_sound_card_online()
car_recognized = self.CP.carName != 'mock' car_recognized = self.CP.carName != 'mock'
# cleanup old params # cleanup old params
@@ -173,8 +170,6 @@ class Controls:
else: else:
self.startup_event = get_startup_event(car_recognized, not self.CP.passive, len(self.CP.carFw) > 0) self.startup_event = get_startup_event(car_recognized, not self.CP.passive, len(self.CP.carFw) > 0)
if not sounds_available:
self.events.add(EventName.soundsUnavailable, static=True)
if not car_recognized: if not car_recognized:
self.events.add(EventName.carUnrecognized, static=True) self.events.add(EventName.carUnrecognized, static=True)
if len(self.CP.carFw) > 0: if len(self.CP.carFw) > 0:
+1 -6
View File
@@ -779,11 +779,6 @@ EVENTS: dict[int, dict[str, Alert | AlertCallbackType]] = {
Priority.LOWER, VisualAlert.none, AudibleAlert.none, .2, creation_delay=600.) Priority.LOWER, VisualAlert.none, AudibleAlert.none, .2, creation_delay=600.)
}, },
EventName.soundsUnavailable: {
ET.PERMANENT: NormalPermanentAlert("Speaker not found", "Reboot your Device"),
ET.NO_ENTRY: NoEntryAlert("Speaker not found"),
},
EventName.tooDistracted: { EventName.tooDistracted: {
ET.NO_ENTRY: NoEntryAlert("Distraction Level Too High"), ET.NO_ENTRY: NoEntryAlert("Distraction Level Too High"),
}, },
@@ -982,7 +977,7 @@ EVENTS: dict[int, dict[str, Alert | AlertCallbackType]] = {
"", "",
AlertStatus.normal, AlertSize.full, AlertStatus.normal, AlertSize.full,
Priority.LOWEST, VisualAlert.none, AudibleAlert.none, .2, creation_delay=0.5), Priority.LOWEST, VisualAlert.none, AudibleAlert.none, .2, creation_delay=0.5),
ET.USER_DISABLE: ImmediateDisableAlert("Reverse Gear"), ET.USER_DISABLE: ImmediateDisableAlert("Wrong Gear"),
ET.NO_ENTRY: NoEntryAlert("Reverse Gear"), ET.NO_ENTRY: NoEntryAlert("Reverse Gear"),
}, },
+51 -4
View File
@@ -7,6 +7,7 @@ from openpilot.selfdrive.car.interfaces import FRICTION_THRESHOLD, get_friction_
from openpilot.selfdrive.controls.lib.drive_helpers import MIN_SPEED, get_friction from openpilot.selfdrive.controls.lib.drive_helpers import MIN_SPEED, get_friction
from openpilot.common.filter_simple import FirstOrderFilter from openpilot.common.filter_simple import FirstOrderFilter
from openpilot.selfdrive.controls.lib.latcontrol import LatControl, MIN_LATERAL_CONTROL_SPEED from openpilot.selfdrive.controls.lib.latcontrol import LatControl, MIN_LATERAL_CONTROL_SPEED
from openpilot.selfdrive.car.gm.values import CAR as GM_CAR
from openpilot.selfdrive.controls.lib.pid import PIDController from openpilot.selfdrive.controls.lib.pid import PIDController
from openpilot.selfdrive.controls.lib.vehicle_model import ACCELERATION_DUE_TO_GRAVITY from openpilot.selfdrive.controls.lib.vehicle_model import ACCELERATION_DUE_TO_GRAVITY
@@ -21,8 +22,8 @@ from openpilot.selfdrive.controls.lib.vehicle_model import ACCELERATION_DUE_TO_G
# Additionally, there is friction in the steering wheel that needs # Additionally, there is friction in the steering wheel that needs
# to be overcome to move it at all, this is compensated for too. # to be overcome to move it at all, this is compensated for too.
KP = 0.6 KP = 0.7
KI = 0.3 KI = 0.35
INTERP_SPEEDS = [1, 1.5, 2.0, 3.0, 5, 7.5, 10, 15, 30] INTERP_SPEEDS = [1, 1.5, 2.0, 3.0, 5, 7.5, 10, 15, 30]
KP_INTERP = [250, 120, 65, 30, 11.5, 5.5, 3.5, 2.0, KP] KP_INTERP = [250, 120, 65, 30, 11.5, 5.5, 3.5, 2.0, KP]
@@ -36,6 +37,12 @@ JERK_LOOKAHEAD_SECONDS = 0.19
JERK_GAIN = 0.22 JERK_GAIN = 0.22
LAT_ACCEL_REQUEST_BUFFER_SECONDS = 1.0 LAT_ACCEL_REQUEST_BUFFER_SECONDS = 1.0
VERSION = 2 VERSION = 2
DEBUG_TORQUE_TUNE = False
FF_SCALE_BLEND_LAT_ACCEL = 0.05
DEADZONE_BOOST_LAT_ACCEL = 0.08
UNWIND_D_DES_THRESHOLD = -1.0
UNWIND_LAT_ACCEL_NEAR_ZERO = 0.3
BOLT_CARS = (GM_CAR.CHEVROLET_BOLT_EUV, GM_CAR.CHEVROLET_BOLT_CC)
class LatControlTorque(LatControl): class LatControlTorque(LatControl):
def __init__(self, CP, CI, dt): def __init__(self, CP, CI, dt):
@@ -55,6 +62,21 @@ class LatControlTorque(LatControl):
self.previous_measurement = 0.0 self.previous_measurement = 0.0
self.measurement_rate_filter = FirstOrderFilter(0.0, 1 / (2 * np.pi * (MAX_LAT_JERK_UP - 0.5)), self.dt) self.measurement_rate_filter = FirstOrderFilter(0.0, 1 / (2 * np.pi * (MAX_LAT_JERK_UP - 0.5)), self.dt)
self.low_speed_reset_threshold = max(CP.minSteerSpeed, MIN_LATERAL_CONTROL_SPEED) self.low_speed_reset_threshold = max(CP.minSteerSpeed, MIN_LATERAL_CONTROL_SPEED)
self.debug_counter = 0
self.prev_desired_lateral_accel = 0.0
self.is_bolt = CP.carFingerprint in BOLT_CARS
self.torque_ff_scale_pos = 1.0
self.torque_ff_scale_neg = 1.0
self.torque_deadzone_boost_neg = 0.0
self.torque_ki_mult = 1.0
if self.is_bolt:
self.torque_ff_scale_pos = float(self.torque_params.kp)
self.torque_ff_scale_neg = float(self.torque_params.ki)
self.torque_ki_mult = float(self.torque_params.kd)
self.torque_deadzone_boost_neg = float(getattr(self.torque_params, "kfDEPRECATED", 0.0))
if self.torque_ki_mult > 0.0 and self.torque_ki_mult != 1.0:
self.pid._k_i = [self.pid._k_i[0], [k * self.torque_ki_mult for k in self.pid._k_i[1]]]
def update_live_torque_params(self, latAccelFactor, latAccelOffset, friction): def update_live_torque_params(self, latAccelFactor, latAccelOffset, friction):
self.torque_params.latAccelFactor = latAccelFactor self.torque_params.latAccelFactor = latAccelFactor
@@ -76,6 +98,7 @@ class LatControlTorque(LatControl):
self.previous_measurement = 0.0 self.previous_measurement = 0.0
self.measurement_rate_filter.x = 0.0 self.measurement_rate_filter.x = 0.0
self.lat_accel_request_buffer = deque([0.] * self.lat_accel_request_buffer_len , maxlen=self.lat_accel_request_buffer_len) self.lat_accel_request_buffer = deque([0.] * self.lat_accel_request_buffer_len , maxlen=self.lat_accel_request_buffer_len)
self.prev_desired_lateral_accel = 0.0
else: else:
if self.prev_steering_pressed and not CS.steeringPressed: if self.prev_steering_pressed and not CS.steeringPressed:
self.pid.i *= self.steer_release_i_decay self.pid.i *= self.steer_release_i_decay
@@ -94,6 +117,10 @@ class LatControlTorque(LatControl):
desired_lateral_jerk = np.clip(self.jerk_filter.update(raw_lateral_jerk), -MAX_LAT_JERK_UP, MAX_LAT_JERK_UP) desired_lateral_jerk = np.clip(self.jerk_filter.update(raw_lateral_jerk), -MAX_LAT_JERK_UP, MAX_LAT_JERK_UP)
gravity_adjusted_future_lateral_accel = future_desired_lateral_accel - roll_compensation gravity_adjusted_future_lateral_accel = future_desired_lateral_accel - roll_compensation
setpoint = expected_lateral_accel + desired_lateral_jerk * lat_delay setpoint = expected_lateral_accel + desired_lateral_jerk * lat_delay
desired_lateral_accel_rate = (setpoint - self.prev_desired_lateral_accel) / self.dt
unwind_detected = (desired_lateral_accel_rate < UNWIND_D_DES_THRESHOLD and
abs(setpoint) < UNWIND_LAT_ACCEL_NEAR_ZERO)
self.prev_desired_lateral_accel = setpoint
measurement = measured_curvature * CS.vEgo ** 2 measurement = measured_curvature * CS.vEgo ** 2
measurement_rate = self.measurement_rate_filter.update((measurement - self.previous_measurement) / self.dt) measurement_rate = self.measurement_rate_filter.update((measurement - self.previous_measurement) / self.dt)
@@ -110,11 +137,25 @@ class LatControlTorque(LatControl):
ff = gravity_adjusted_future_lateral_accel ff = gravity_adjusted_future_lateral_accel
# latAccelOffset corrects roll compensation bias from device roll misalignment relative to car roll # latAccelOffset corrects roll compensation bias from device roll misalignment relative to car roll
ff -= self.torque_params.latAccelOffset ff -= self.torque_params.latAccelOffset
ff += get_friction(error_with_lsf + JERK_GAIN * desired_lateral_jerk, lateral_accel_deadzone, get_friction_threshold(CS.vEgo), self.torque_params) ff_scale = 1.0
if self.is_bolt:
ff_scale = np.interp(ff, [-FF_SCALE_BLEND_LAT_ACCEL, 0.0, FF_SCALE_BLEND_LAT_ACCEL],
[self.torque_ff_scale_neg, 1.0, self.torque_ff_scale_pos])
ff *= ff_scale
friction = get_friction(error_with_lsf + JERK_GAIN * desired_lateral_jerk, lateral_accel_deadzone,
get_friction_threshold(CS.vEgo), self.torque_params)
ff += friction
deadzone_boost_active = False
if self.is_bolt and self.torque_deadzone_boost_neg > 0.0 and gravity_adjusted_future_lateral_accel < 0.0:
if abs(gravity_adjusted_future_lateral_accel) < DEADZONE_BOOST_LAT_ACCEL:
boost_scale = np.interp(abs(gravity_adjusted_future_lateral_accel), [0.0, DEADZONE_BOOST_LAT_ACCEL], [1.0, 0.0])
ff -= self.torque_deadzone_boost_neg * boost_scale
deadzone_boost_active = True
if CS.vEgo < self.low_speed_reset_threshold: if CS.vEgo < self.low_speed_reset_threshold:
self.pid.reset() self.pid.reset()
freeze_integrator = steer_limited_by_safety or CS.steeringPressed or CS.vEgo < self.low_speed_reset_threshold freeze_integrator = (steer_limited_by_safety or CS.steeringPressed or
CS.vEgo < self.low_speed_reset_threshold or unwind_detected)
output_lataccel = self.pid.update(pid_log.error, error_rate=-measurement_rate, speed=CS.vEgo, feedforward=ff, freeze_integrator=freeze_integrator) output_lataccel = self.pid.update(pid_log.error, error_rate=-measurement_rate, speed=CS.vEgo, feedforward=ff, freeze_integrator=freeze_integrator)
output_torque = self.torque_from_lateral_accel(output_lataccel, self.torque_params) output_torque = self.torque_from_lateral_accel(output_lataccel, self.torque_params)
@@ -129,6 +170,12 @@ class LatControlTorque(LatControl):
pid_log.desiredLateralJerk = float(desired_lateral_jerk) pid_log.desiredLateralJerk = float(desired_lateral_jerk)
pid_log.saturated = bool(self._check_saturation(self.steer_max - abs(output_torque) < 1e-3, CS, steer_limited_by_safety, curvature_limited)) pid_log.saturated = bool(self._check_saturation(self.steer_max - abs(output_torque) < 1e-3, CS, steer_limited_by_safety, curvature_limited))
if DEBUG_TORQUE_TUNE and self.is_bolt:
self.debug_counter += 1
if self.debug_counter % 50 == 0:
print(f"bolt_torque ff_scale={ff_scale:.3f} pos={self.torque_ff_scale_pos:.3f} "
f"neg={self.torque_ff_scale_neg:.3f} deadzone_boost_active={deadzone_boost_active}")
self.prev_steering_pressed = CS.steeringPressed self.prev_steering_pressed = CS.steeringPressed
# TODO left is positive in this convention # TODO left is positive in this convention
@@ -17,9 +17,9 @@ from openpilot.selfdrive.controls.lib.drive_helpers import V_CRUISE_UNSET, CONTR
from openpilot.common.swaglog import cloudlog from openpilot.common.swaglog import cloudlog
LON_MPC_STEP = 0.2 # first step is 0.2s LON_MPC_STEP = 0.2 # first step is 0.2s
A_CRUISE_MIN = -1.2 A_CRUISE_MIN = -1.0
A_CRUISE_MAX_VALS = [1.6, 1.2, 0.8, 0.6] A_CRUISE_MAX_BP = [0.0, 5., 10., 15., 20., 25., 40.]
A_CRUISE_MAX_BP = [0., 10.0, 25., 40.] A_CRUISE_MAX_VALS = [1.125, 1.125, 1.125, 1.125, 1.25, 1.25, 1.5]
CONTROL_N_T_IDX = ModelConstants.T_IDXS[:CONTROL_N] CONTROL_N_T_IDX = ModelConstants.T_IDXS[:CONTROL_N]
ALLOW_THROTTLE_THRESHOLD = 0.5 ALLOW_THROTTLE_THRESHOLD = 0.5
MIN_ALLOW_THROTTLE_SPEED = 2.5 MIN_ALLOW_THROTTLE_SPEED = 2.5
-18
View File
@@ -144,16 +144,6 @@ def manager_init() -> None:
with open(nnfflite_migration_flag_file, "w") as f: with open(nnfflite_migration_flag_file, "w") as f:
f.write("migrated") f.write("migrated")
# One-time migration to force NNFF + NNFFLite off
nnff_reset_flag_file = "/data/media/0/frogpilot_nnff_reset.flag"
if not os.path.exists(nnff_reset_flag_file):
if params.get_bool("NNFF"):
params.put_bool("NNFF", False)
if params.get_bool("NNFFLite"):
params.put_bool("NNFFLite", False)
with open(nnff_reset_flag_file, "w") as f:
f.write("reset")
# One-time migration for CEM settings # One-time migration for CEM settings
cem_migration_flag_file = "/data/media/0/frogpilot_cem_migrated.flag" cem_migration_flag_file = "/data/media/0/frogpilot_cem_migrated.flag"
if not os.path.exists(cem_migration_flag_file): if not os.path.exists(cem_migration_flag_file):
@@ -190,14 +180,6 @@ def manager_init() -> None:
with open(lateral_tuning_migration_flag_file, "w") as f: with open(lateral_tuning_migration_flag_file, "w") as f:
f.write("migrated") f.write("migrated")
# One-time migration for MaxDesiredAcceleration to 4
max_desired_acceleration_migration_flag_file = "/data/media/0/frogpilot_max_desired_acceleration_migrated.flag"
if not os.path.exists(max_desired_acceleration_migration_flag_file):
if params.get_float("MaxDesiredAcceleration") != 4.0:
params.put_float("MaxDesiredAcceleration", 4.0)
with open(max_desired_acceleration_migration_flag_file, "w") as f:
f.write("migrated")
# set dongle id # set dongle id
reg_res = register(show_spinner=True) reg_res = register(show_spinner=True)
if reg_res: if reg_res: