mirror of
https://github.com/halleysfifthinc/AVCLAN-Mockingboard.git
synced 2026-08-06 17:03:17 +00:00
b538e07577
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
1026 lines
45 KiB
Lua
1026 lines
45 KiB
Lua
--[[
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Copyright (C) 2023 Allen Hill <allenofthehills@gmail.com>
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Portions of the following are based on code from libsigrokdecode PR that is
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copyright (C) 2023 Maciej Grela <enki@fsck.pl>
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <https://www.gnu.org/licenses/>.
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--]]
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local iebusproto = Proto("iebus", "IEBus protocol")
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-- 12-bit IEBus network (bus) addresses. Sourced from:
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-- - Marcin/Soft-service
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-- - the ADDR_* table in GadgetNutt/AVC-LAN-Module-Builder
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-- - lists.py in sigrokproject/libsigrokdecode#106 by @enkiusz
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local known_addresses = {
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[0x1F1] = "XM",
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[0x110] = "EMV",
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[0x120] = "AVX",
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[0x128] = "1DIN TV",
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[0x140] = "AVN",
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[0x144] = "G-BOOK",
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[0x160] = "AUDIO H/U",
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[0x17C] = "MONET",
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[0x17D] = "TEL",
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[0x178] = "NAV_W_CONTROLS",
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[0x180] = "AUDIO_ECU", -- @enkiusz labels as Rr_TV (rear TV)
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[0x190] = "AUDIO_HU",
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[0x1A0] = "DVD_P",
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[0x1AC] = "CAMERA-C",
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[0x1B0] = "REAR_TV",
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[0x1B4] = "SINGLE_DIN_NAV",
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[0x1B8] = "DISPLAY_SW",
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[0x1C0] = "REAR_CTRL_SW",
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[0x1C2] = "EURO_GW_ECU", -- @enkiusz labels as TV_TUNER2
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[0x1C4] = "RUSSIA_GW_ECU", -- @enkiusz labels as PANEL
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[0x1C6] = "GW_ECU",
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[0x1C8] = "FM_MULTI_DISPLAY",
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[0x1CC] = "STEERING_SW",
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[0x1D0] = "MULTI_CD_DECODER",
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[0x1D4] = "DISPLAY",
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[0x1D6] = "CLOCK",
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[0x1D8] = "FR_CONTROLLED_SW", -- @enkiusz labels as GW_TRIP (G/W for Trip)
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[0x1DC] = "NAV_REM_CTRL",
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[0x1E0] = "CD_CH_COMMANDER",
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[0x1E4] = "CONSOLIDATED_SW",
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[0x1E8] = "MD_CH_COMMANDER",
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[0x1EC] = "BODY_COMPUTER",
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[0x1F0] = "AMP_RADIO_TUNER",
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[0x1F2] = "XM_RADIO_TUNER", -- @enkiusz labels as SIRIUS
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[0x1F4] = "RSA",
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[0x1F6] = "RSE_M",
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[0x1FF] = "AUDIO_BROADCAST",
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[0x200] = "NAV_ECU",
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[0x210] = "ATIS",
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[0x220] = "VICS",
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[0x230] = "TV_TUNER",
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[0x240] = "HW_CD_CH",
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[0x250] = "HW_DVD_CH",
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[0x260] = "TEL_INFO_ECU",
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[0x280] = "CAMERA_CTRLR",
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[0x300] = "RADIO",
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[0x320] = "CASSETTE",
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[0x330] = "CASSETTE_NO_CH",
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[0x340] = "CD_P",
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[0x360] = "1DIN_CD_CH",
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[0x380] = "MD_P",
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[0x3A0] = "MD_CH",
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[0x3C0] = "DAT",
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[0x3E0] = "DCC",
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[0x3F8] = "TEL_ECU",
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[0x400] = "EQUALIZER",
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[0x440] = "DSP",
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[0x480] = "HW_AMP",
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[0x500] = "GPS_RECEIVER",
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[0x510] = "ATIS_DECODER",
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[0x520] = "FM_MULTI_DECODER",
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[0x528] = "RADIO_WAVE_BEACON",
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[0x52C] = "OPTICAL_BEACON",
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[0x530] = "ETC",
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[0x540] = "CD_CH",
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[0x560] = "MD_CH_2",
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[0x580] = "CDROM_CH",
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[0x5A0] = "MDROM_CH",
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[0x5C0] = "TEL_INFO",
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[0x5C8] = "MAYDAY",
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[0x600] = "AC_ECU",
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[0x680] = "BODY_ECU",
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[0xD19] = "TURN_SIGNAL",
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[0xFFF] = "BROADCAST",
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}
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local f_unicast = ProtoField.bool("iebus.unicast", "Unicast", base.NONE, { [1] = "true", [2] = "false" })
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local f_controller_addr = ProtoField.uint16("iebus.controller", "Controller address", base.HEX, known_addresses, 0x0FFF)
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local f_peripheral_addr = ProtoField.uint16("iebus.peripheral", "Peripheral address", base.HEX, known_addresses, 0x0FFF)
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local f_control = ProtoField.uint8("iebus.control", "Control field", base.HEX)
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local f_length = ProtoField.uint8("iebus.length", "Data length", base.DEC)
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local f_data = ProtoField.bytes("iebus.data", "Frame data", base.SPACE)
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iebusproto.fields = {
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f_unicast,
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f_controller_addr,
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f_peripheral_addr,
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f_control,
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f_length,
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f_data
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}
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local controlbits = {
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[0x0] = "READ PERIPH STATUS (SSR)",
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[0x1] = "UNDEFINED",
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[0x2] = "UNDEFINED",
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[0x3] = "READ & LOCK DATA",
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[0x4] = "READ LOCK ADDR (lo8)",
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[0x5] = "READ LOCK ADDR (hi4)",
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[0x6] = "READ & UNLOCK PERIPH STATUS (SSR)",
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[0x7] = "READ DATA",
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[0x8] = "UNDEFINED",
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[0x9] = "UNDEFINED",
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[0xA] = "WRITE & LOCK CMD",
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[0xB] = "WRITE & LOCK DATA",
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[0xC] = "UNDEFINED",
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[0xD] = "UNDEFINED",
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[0xE] = "WRITE CMD",
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[0xF] = "WRITE DATA"
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}
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local periphstatusbits = {
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[0] = "TX BUFFER EMPTY",
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[1] = "RX BUFFER EMPTY",
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[2] = "UNIT LOCKED",
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[4] = "TX ENABLED",
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[6] = "IEBUS MODE 1",
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[7] = "IEBUS MODE 2",
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}
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-- Expert info for unknown packet types, set as group PI_UNDECODED, severity PI_NOTE or PI_WARN
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-- Expert info for LAN Check [0x3, SW_ID, 0x01, 0x20] as severity PI_CHAT
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function iebusproto.dissector(buffer, pinfo, tree)
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length = buffer:len()
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if length == 0 then return end
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pinfo.cols.protocol = iebusproto.name
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local subtree = tree:add(iebusproto, buffer(), "IEBus frame")
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subtree:add(f_unicast, buffer(0,1))
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subtree:add(f_controller_addr, buffer(1,2))
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subtree:add(f_peripheral_addr, buffer(3,2))
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pinfo.cols.src = buffer(1,2):bytes():tohex():sub(2,-1)
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pinfo.cols.dst = buffer(3,2):bytes():tohex():sub(2,-1)
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local control_item, control = subtree:add_packet_field(f_control, buffer(5,1), ENC_LITTLE_ENDIAN)
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-- print("control val" .. control)
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control_item:append_text(" (" .. controlbits[buffer(5,1):uint()] .. ")")
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local _, datalen = subtree:add_packet_field(f_length, buffer(6,1), ENC_LITTLE_ENDIAN)
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local data = subtree:add(iebusproto, buffer(), "IEBus message")
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data:add(f_data, buffer(7, datalen))
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end
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local udlt = DissectorTable.get("wtap_encap")
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udlt:add(wtap.USER15, iebusproto)
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local avclanproto = Proto("avclan", "AVCLAN protocol")
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-- Build a reverse {value = key} lookup from a {key = value} table. Lets us keep
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-- a single source-of-truth value->name table (also used as the ProtoField
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-- valuestring) and derive the name->value lookup instead of hand-maintaining two.
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local function invert(t)
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local r = {}
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for k, v in pairs(t) do
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r[v] = k
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end
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return r
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end
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-- Decode a BCD-encoded byte to a decimal number. Returns nil when either nibble
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-- is out of range (> 9), which means the byte isn't valid BCD -- e.g. a 0xff
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-- "not present" sentinel, or a value the device actually encodes in plain
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-- binary. Callers decide how to present the invalid case.
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local function bcd2dec(b)
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local hi = bit.rshift(b, 4)
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local lo = bit.band(b, 0x0F)
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if hi > 9 or lo > 9 then
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return nil
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end
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return hi * 10 + lo
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end
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-- Format a BCD-encoded mm:ss pair, falling back to raw hex when a byte isn't
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-- valid BCD (e.g. a 0xff sentinel for "time unknown").
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local function bcd_time(min_b, sec_b)
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local m = bcd2dec(min_b)
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local s = bcd2dec(sec_b)
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if m == nil or s == nil then
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return string.format("%02x:%02x (raw)", min_b, sec_b)
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end
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return string.format("%02d:%02d", m, s)
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end
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local known_devices = {
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[0x00] = "LAN",
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[0x01] = "COMM_CTRL",
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-- [0x02] = "COM_EXT", -- @GadgetNutt
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[0x11] = "COMMUNICATION v1", -- @GadgetNutt reads 0x11 as COM_MASTER
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[0x12] = "COMMUNICATION v2",
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[0x21] = "SW_AUDIO", -- @GadgetNutt name
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[0x23] = "SW_NAME", -- @GadgetNutt reads 0x23 as SW_SHIFT
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[0x24] = "SW_CONVERTING",
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[0x25] = "CMD_SW", -- @GadgetNutt reads 0x25 as SW
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[0x31] = "STATUS",
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-- [0x32] corroborated by @GadgetNutt (INFO_DISPLAY2); sends status report f1 to STATUS (32 31 f1 00 00) [CQ-TS7471LC_bootup]
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[0x32] = "INFO_DISPLAY2",
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[0x28] = "BEEP_HU",
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[0x29] = "BEEP_SPEAKERS",
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[0x34] = "FRONT_PSNG_MONITOR",
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-- [0x40] = "TV_TUNER", -- @GadgetNutt
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[0x43] = "CD_CHANGER2",
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-- [0x50] = "CD_50", -- @GadgetNutt (CD variants, unconfirmed)
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-- [0x52] = "CD_52",
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[0x55] = "BLUETOOTH_TEL",
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[0x56] = "INFO_DRAWING",
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[0x58] = "NAV_ECU", -- @GadgetNutt reads 0x58 as NAV_GPS
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-- [0x5A] = "FM_MULTIPLEX_VICS",
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-- [0x5B] = "BEACON", -- @GadgetNutt
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[0x5C] = "CAMERA",
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[0x5D] = "CLIMATE_DRAWING",
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[0x5E] = "AUDIO_DRAWING",
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[0x5F] = "TRIP_INFO_DRAWING",
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[0x60] = "TUNER",
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[0x61] = "TAPE_DECK",
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[0x62] = "CD_SINGLE",
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[0x63] = "CD_CHANGER",
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-- [0x64] = "MD", -- @GadgetNutt (MiniDisc)
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-- [0x65] = "MD_CH",
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[0x74] = "AUDIO_AMP",
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[0x80] = "GPS",
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-- [0x82] = "FM_MULTIPLEX_DATA",
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-- [0x83] = "OPTICAL_BEACON",
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-- [0x84] = "RADIO_WAVE_BEACON", -- @GadgetNutt
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[0x85] = "VOICE_CTRL",
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-- [0x9A] = "FM_MULTIPLEX_TUNER",-- @GadgetNutt (0xA4 also seen in the A4 01 DB heartbeat)
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-- 0xc0 corroborated by @GadgetNutt (XM_TUNER, cf. ADDR XM_RADIO_TUNER); exchanges 0xef/0xff with CMD_SW, sends 0xfe to STATUS [douglasheld2-log.pcap]
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[0xC0] = "XM_TUNER",
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[0xE0] = "CLIMATE_CTRL_DEV",
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[0xE5] = "TRIP_INFO",
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}
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local known_devices_names = invert(known_devices)
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local f_from_device = ProtoField.uint8("avclan.from_device", "From device", base.HEX, known_devices)
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local f_to_device = ProtoField.uint8("avclan.to_device", "To device", base.HEX, known_devices)
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local f_active_device = ProtoField.uint8("avclan.active_device", "Active device", base.HEX, known_devices)
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-- Action conventions:
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-- - REQ/RESP pairs differ by 0x10, where the REQ is the lesser
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-- - Opposite pairs (e.g. disc up/down, enable/disable, etc.) differ by 0x01, where the "enable" like action is the lesser
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-- - Separate pairs are often (but not always) separated by 0x01
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local known_actions = {
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-- LAN related
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[0x01] = "LAN_INIT",
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[0x58] = "LAN_INIT_COMPLETE", -- Probably not fully correct label pair (based on values), but seem related functionally/sequentially
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-- [0x5f] = "??", -- COMM_CTRL self-broadcast (01 01 5f 00), frequent in douglasheld2-log.pcap [but abnormal traffic]
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[0x00] = "LIST_FUNCTIONS_REQ",
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[0x10] = "LIST_FUNCTIONS_RESP",
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-- -- [0x02]/[0x12] REQ/RESP pair, COMM_v2 <-> COMM_CTRL. The 0x12 resp carries a
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-- -- device list, so likely a richer enumeration than 0x00/0x10. (0x12 collides
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-- -- with the COMMUNICATION v2 device id.) [CQ-TS7471LC_bootup]
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-- -- @GadgetNutt corroborates the enumeration reading: 0x02=DEVICES_RESPONSE,
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-- -- 0x12=DEVICES_REQUEST ("devices I want to hear"), 0x13=DEVICES_BROADCAST.
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-- [0x02] = "??_REQ", -- 12 01 02 [19 00 16 06 19 0d]
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-- [0x12] = "??_RESP", -- 01 12 12 60 63 43 64 65 40 32 5e ...
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-- [0x13] = "DEVICES_BROADCAST", -- @GadgetNutt: peripheral broadcasts its logical-device list (b <me> 1FF 01 11 13 ...)
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[0x08] = "LANCHECK_END_REQ",
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[0x18] = "LANCHECK_END_RESP",
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[0x0a] = "LANCHECK_SCAN_REQ",
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[0x1a] = "LANCHECK_SCAN_RESP",
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[0x0c] = "LANCHECK_REQ",
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[0x1c] = "LANCHECK_RESP",
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-- [0x0d] = "LANCHECK_??_REQ", -- Observed in @marcin's code; no captured examples
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-- [0x1d] = "LANCHECK_??_RESP",
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[0x20] = "PING_REQ",
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-- [0x21] = "??" -- Observed as [00 11 00 21] incorrect 0xf0/INITIAL_REPORT_RESP message (double leading zeros instead of single unicast leading zero)
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[0x30] = "PING_RESP",
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[0x42] = "ENABLE_FUNCTION_REQ",
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[0x52] = "ENABLE_FUNCTION_RESP",
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[0x43] = "DISABLE_FUNCTION_REQ",
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[0x53] = "DISABLE_FUNCTION_RESP",
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[0x45] = "ADVERTISE_FUNCTION",
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[0x46] = "GENERAL_QUERY",
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-- Physical actions
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[0x50] = "INSERTION",
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[0x51] = "EJECTION",
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[0x59] = "BACKLIGHT_ADJUST",
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[0x60] = "BEEP",
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[0x78] = "SCREEN_PRESS",
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[0x80] = "EJECT",
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-- [0x8e] = "??", -- COMM_v2->CD (12 62 8e, no payload) [CQ-TS7471LC_bootup]
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[0x90] = "DISC_UP",
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[0x91] = "DISC_DOWN",
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[0x94] = "TRACK_SEEK_UP",
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[0x95] = "TRACK_SEEK_DOWN",
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[0x98] = "TRACK_FAST_FORWARD",
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[0x99] = "TRACK_REWIND",
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[0x9c] = "PWRVOL_KNOB_RIGHTHAND_TURN",
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[0x9d] = "PWRVOL_KNOB_LEFTHAND_TURN",
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[0x9f] = "TAPE_NOT_READY", -- Uncertain; observed by @marcin
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[0xa0] = "CD_ENABLE_REPEAT",
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[0xa1] = "CD_DISABLE_REPEAT",
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[0xa3] = "CD_ENABLE_DISK_REPEAT",
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[0xa4] = "CD_DISABLE_DISK_REPEAT",
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[0xa6] = "CD_ENABLE_SCAN",
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[0xa7] = "CD_DISABLE_SCAN",
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[0xa9] = "CD_ENABLE_DISK_SCAN",
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[0xaa] = "CD_DISABLE_DISK_SCAN",
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[0xb0] = "CD_ENABLE_RANDOM",
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[0xb1] = "CD_DISABLE_RANDOM",
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[0xb3] = "CD_ENABLE_DISK_RANDOM",
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[0xb4] = "CD_DISABLE_DISK_RANDOM",
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-- Info-display / trip-computer functions. @GadgetNutt names these; cluster
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-- around TRIP_INFO/INFO_DISPLAY and the A4 01 DB heartbeat. Unconfirmed here.
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-- [0xb7] = "STATUS_B7", -- @GadgetNutt
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-- [0xd9] = "INFO_D9", -- @GadgetNutt (info display, unidentified)
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-- [0xdb] = "AVG_KMH_INFO", -- @GadgetNutt (average km/h)
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-- [0xdc] = "INFO_DC", -- @GadgetNutt (unidentified)
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-- [0xdd] = "FUEL_RANGE_INFO", -- @GadgetNutt
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-- [0xde] = "TRIP_TIME_INFO", -- @GadgetNutt
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-- Peripheral state communication request/response
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[0xe0] = "INITIAL_REPORT_REQ",
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[0xf0] = "INITIAL_REPORT_RESP",
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[0xe2] = "PLAYBACK_REQ",
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[0xf2] = "PLAYBACK_RESP",
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[0xe4] = "LOADING_REQ",
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[0xf4] = "LOADING_RESP",
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[0xed] = "TRACK_NAME_REQ",
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[0xfd] = "TRACK_NAME_RESP",
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-- Numerically goes here, but message length (short) tracks more with a LAN related pair
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-- (Also this was observed early in a capture)
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-- [0xef] = "??_REQ", -- Observed in broadcast(?) message 190 => 1f1 00 25 c0 ef [douglasheld2-log.pcap]
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-- [0xff] = "??_RESP", -- Observed in broadcast(?) message 1f1 => 190 00 c0 25 ff 00 [douglasheld2-log.pcap]
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-- Unprompted peripheral state announcements
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[0xf1] = "PLAYBACK_STATUS",
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[0xf3] = "LOADING_STATUS",
|
|
[0xf9] = "REPORT_TOC",
|
|
-- [0xfe] = "??", -- dev 0xc0->STATUS (c0 31 fe 00), status-announcement-like [douglasheld2-log.pcap]
|
|
}
|
|
local known_actions_names = invert(known_actions)
|
|
|
|
local f_action = ProtoField.uint8("avclan.action", "Action", base.HEX, known_actions)
|
|
local f_functions = ProtoField.bytes("avclan.functions", "Functions", base.SPACE, "Device functions")
|
|
|
|
local f_ping_count = ProtoField.uint8("avclan.ping.count", "Ping count")
|
|
local f_backlight = ProtoField.uint8("avclan.backlight.brightness", "Backlight brightness", base.HEX)
|
|
|
|
-- Beep request (AUDIO_DRAWING -> BEEP_SPEAKERS, action 0x60): duration parameter
|
|
local f_beep_duration = ProtoField.uint8("avclan.beep.duration", "Beep duration", base.DEC)
|
|
|
|
-- Touch-screen press (SW -> SW_CONVERTING, action 0x78): x,y position
|
|
local f_touch_x = ProtoField.uint8("avclan.touch.x", "Touch X", base.HEX)
|
|
local f_touch_y = ProtoField.uint8("avclan.touch.y", "Touch Y", base.HEX)
|
|
|
|
local f_radio_active = ProtoField.bool("avclan.radio.active", "Radio", base.NONE, {"ON", "OFF"})
|
|
local f_radio_status = ProtoField.uint8("avclan.radio.status", "Radio status", base.HEX,
|
|
{
|
|
[0x00] = "OFF",
|
|
[0x01] = "READY",
|
|
[0x06] = "SCAN UP",
|
|
[0x07] = "SCAN DOWN",
|
|
[0x0A] = "AST SEARCH",
|
|
[0x27] = "MANUAL"
|
|
}
|
|
)
|
|
local f_radio_flags = ProtoField.uint8("avclan.radio.flags", "Radio flags")
|
|
local f_radio_flags2 = ProtoField.uint8("avclan.radio.flags2", "Radio flags (byte 2)")
|
|
-- Preset/channel number (0 when not on a stored preset).
|
|
local f_radio_channel = ProtoField.uint8("avclan.radio.channel", "Preset channel", base.DEC)
|
|
|
|
-- NOTE: bit 0x04 is read here as Stereo. @enkiusz (TunerFlags) reads the same
|
|
-- bit as TP (Traffic Programme). One of these is wrong; unresolved.
|
|
local f_radioflag_st = ProtoField.bool("avclan.radio.flags.st", "Stereo", 8, {"Set", "Not set"}, 0x04)
|
|
local f_radioflag_ta = ProtoField.bool("avclan.radio.flags.ta", "TA", 8, {"Set", "Not set"}, 0x08)
|
|
local f_radioflag_reg = ProtoField.bool("avclan.radio.flags.reg", "REG", 8, {"Set", "Not set"}, 0x10)
|
|
local f_radioflag_af = ProtoField.bool("avclan.radio.flags.af", "AF", 8, {"Set", "Not set"}, 0x40)
|
|
|
|
local f_radio_band = ProtoField.uint8("avclan.radio.band", "Radio band", base.HEX,
|
|
{[0x8] = "FM", [0xC] = "AM (Long-wave)", [0x0] = "AM (Medium-wave)"}, 0xF0)
|
|
local f_radio_bandnumber = ProtoField.int8("avclan.radio.bandnumber", "Radio band number", base.DEC, nil, 0x0F)
|
|
local f_radio_freq = ProtoField.uint16("avclan.radio.freq", "Radio frequency")
|
|
|
|
-- Volume is BCD encoded here. NOTE: @enkiusz treats the volume byte as plain
|
|
-- binary (no BCD conversion); the two disagree for values with a nibble > 9.
|
|
local f_amp_volume = ProtoField.uint8("avclan.amp.volume", "Volume", base.DEC)
|
|
|
|
-- Amp bass, mid, treble, fade, and balance are offset-binary (offset-16) encoded
|
|
local f_amp_bass = ProtoField.uint8("avclan.amp.bass", "Bass", base.HEX, {
|
|
[0x0B] = "-5", [0x0C] = "-4", [0x0D] = "-3", [0x0E] = "-2", [0x0F] = "-1",
|
|
[0x10] = "0",
|
|
[0x11] = "+1", [0x12] = "+2", [0x13] = "+3", [0x14] = "+4", [0x15] = "+5"
|
|
})
|
|
local f_amp_mid = ProtoField.uint8("avclan.amp.mid", "Mid", base.HEX, {
|
|
[0x0B] = "-5", [0x0C] = "-4", [0x0D] = "-3", [0x0E] = "-2", [0x0F] = "-1",
|
|
[0x10] = "0",
|
|
[0x11] = "+1", [0x12] = "+2", [0x13] = "+3", [0x14] = "+4", [0x15] = "+5"
|
|
})
|
|
local f_amp_treble = ProtoField.uint8("avclan.amp.treble", "Treble", base.HEX, {
|
|
[0x0B] = "-5", [0x0C] = "-4", [0x0D] = "-3", [0x0E] = "-2", [0x0F] = "-1",
|
|
[0x10] = "0",
|
|
[0x11] = "+1", [0x12] = "+2", [0x13] = "+3", [0x14] = "+4", [0x15] = "+5"
|
|
})
|
|
local f_amp_fade = ProtoField.uint8("avclan.amp.fade", "Fade (forward/rear)", base.HEX, {
|
|
[0x09] = "-7", [0x0A] = "-6", [0x0B] = "-5", [0x0C] = "-4", [0x0D] = "-3", [0x0E] = "-2", [0x0F] = "-1",
|
|
[0x10] = "0",
|
|
[0x11] = "+1", [0x12] = "+2", [0x13] = "+3", [0x14] = "+4", [0x15] = "+5", [0x16] = "+6", [0x17] = "+7"
|
|
})
|
|
local f_amp_balance = ProtoField.uint8("avclan.amp.balance", "Balance (right/left)", base.HEX, {
|
|
[0x09] = "-7", [0x0A] = "-6", [0x0B] = "-5", [0x0C] = "-4", [0x0D] = "-3", [0x0E] = "-2", [0x0F] = "-1",
|
|
[0x10] = "0",
|
|
[0x11] = "+1", [0x12] = "+2", [0x13] = "+3", [0x14] = "+4", [0x15] = "+5", [0x16] = "+6", [0x17] = "+7"
|
|
})
|
|
|
|
-- Amp status flags (from @enkiusz's AudioAmpFlags). Only MUTE (0x04) is
|
|
-- identified; the rest are unknown. Note this byte (data_bytes[12]) sits past
|
|
-- the end of the 14-byte amp reports in our captures, so it only decodes on
|
|
-- longer report variants.
|
|
local f_amp_flags = ProtoField.uint8("avclan.amp.flags", "Amplifier flags", base.HEX)
|
|
local f_amp_mute = ProtoField.bool("avclan.amp.flags.mute", "MUTE", 8, nil, 0x04)
|
|
|
|
local f_cd_slots = ProtoField.uint8("avclan.cd.slots", "CD player disc slots")
|
|
local f_cd_slot1 = ProtoField.bool("avclan.cd.slot1", "Slot 1", 6, {"Filled", "Empty"}, 0x01)
|
|
local f_cd_slot2 = ProtoField.bool("avclan.cd.slot1", "Slot 2", 6, {"Filled", "Empty"}, 0x02)
|
|
local f_cd_slot3 = ProtoField.bool("avclan.cd.slot1", "Slot 3", 6, {"Filled", "Empty"}, 0x04)
|
|
local f_cd_slot4 = ProtoField.bool("avclan.cd.slot1", "Slot 4", 6, {"Filled", "Empty"}, 0x08)
|
|
local f_cd_slot5 = ProtoField.bool("avclan.cd.slot1", "Slot 5", 6, {"Filled", "Empty"}, 0x10)
|
|
local f_cd_slot6 = ProtoField.bool("avclan.cd.slot1", "Slot 6", 6, {"Filled", "Empty"}, 0x20)
|
|
|
|
local f_cd_state = ProtoField.uint8("avclan.cd.state", "CD player state")
|
|
local f_cd_open = ProtoField.bool("avclan.cd.state.open", "OPEN", 8, nil, 0x01)
|
|
local f_cd_err1 = ProtoField.bool("avclan.cd.state.err1", "ERR1", 8, nil, 0x02)
|
|
local f_cd_seeking = ProtoField.bool("avclan.cd.state.seeking", "SEEKING", 8, nil, 0x08)
|
|
local f_cd_playback = ProtoField.bool("avclan.cd.state.playback", "PLAYBACK", 8, nil, 0x10)
|
|
local f_cd_seeking_track = ProtoField.bool("avclan.cd.state.seeking_track", "SEEKING_TRACK", 8, nil, 0x20)
|
|
local f_cd_loading = ProtoField.bool("avclan.cd.state.loading", "LOADING", 8, nil, 0x80)
|
|
|
|
local f_cd_disc = ProtoField.uint8("avclan.cd.disc", "Current disc", base.DEC)
|
|
local f_cd_track = ProtoField.uint8("avclan.cd.track", "Track number", base.HEX)
|
|
local f_cd_track_count = ProtoField.uint8("avclan.cd.track_count", "Track count", base.DEC)
|
|
local f_cd_title = ProtoField.string("avclan.cd.title", "Track/disc title")
|
|
local f_cd_min = ProtoField.uint8("avclan.cd.mins", "CD track play time, minutes", base.HEX)
|
|
local f_cd_sec = ProtoField.uint8("avclan.cd.secs", "CD track play time, seconds", base.HEX)
|
|
|
|
local f_cd_flags = ProtoField.uint8("avclan.cd.flags", "CD player flags")
|
|
local f_cd_flag_disk_random = ProtoField.bool("avclan.cd.flags.disk_random", "DISK_RANDOM", 8, nil, 0x02)
|
|
local f_cd_flag_random = ProtoField.bool("avclan.cd.flags.random", "RANDOM", 8, nil, 0x04)
|
|
local f_cd_flag_disk_repeat = ProtoField.bool("avclan.cd.flags.disk_repeat", "DISK_REPEAT", 8, nil, 0x08)
|
|
local f_cd_flag_repeat = ProtoField.bool("avclan.cd.flags.repeat", "REPEAT", 8, nil, 0x10)
|
|
local f_cd_flag_disk_scan = ProtoField.bool("avclan.cd.flags.disk_scan", "DISK_SCAN", 8, nil, 0x20)
|
|
local f_cd_flag_scan = ProtoField.bool("avclan.cd.flags.scan", "SCAN", 8, nil, 0x40)
|
|
|
|
local f_tape_present = ProtoField.uint8("avclan.tape.present", "Tape deck slot", base.HEX, {[0x01] = "FILLED", [0x00] = "EMPTY"})
|
|
local f_tape_state = ProtoField.uint8("avclan.tape.state", "Tape deck state")
|
|
local f_tape_seeking_rev = ProtoField.bool("avclan.tape.state.seeking_rev", "SEEKING_REVERSE", 8, nil, 0x01)
|
|
local f_tape_err1 = ProtoField.bool("avclan.tape.state.err1", "ERR1", 8, nil, 0x02)
|
|
local f_tape_playback = ProtoField.bool("avclan.tape.state.playback", "PLAYBACK", 8, nil, 0x04)
|
|
local f_tape_seeking = ProtoField.bool("avclan.tape.state.seeking", "SEEKING", 8, nil, 0x08)
|
|
local f_tape_state1 = ProtoField.bool("avclan.tape.state.unknown1", "UNKOWN1", 8, nil, 0x10)
|
|
local f_tape_random = ProtoField.bool("avclan.tape.state.random", "RANDOM", 8, nil, 0x80)
|
|
|
|
local f_tape_flags = ProtoField.uint16("avclan.tape.flags", "Tape deck flags")
|
|
local f_tape_stereo = ProtoField.bool("avclan.tape.flags.stereo", "STEREO", 16, nil, 0x0004)
|
|
local f_tape_dolby = ProtoField.bool("avclan.tape.flags.dolby", "DOLBY", 16, nil, 0x0002)
|
|
local f_tape_flag1 = ProtoField.bool("avclan.tape.flags.flag1", "UNKNOWN1", 16, nil, 0x0100)
|
|
local f_tape_flag2 = ProtoField.bool("avclan.tape.flags.flag2", "UNKNOWN2", 16, nil, 0x1000)
|
|
local f_tape_flag3 = ProtoField.bool("avclan.tape.flags.flag3", "UNKNOWN3", 16, nil, 0x2000)
|
|
local f_tape_flag4 = ProtoField.bool("avclan.tape.flags.flag4", "UNKNOWN4", 16, nil, 0x8000)
|
|
|
|
avclanproto.fields = {
|
|
f_from_device,
|
|
f_to_device,
|
|
f_active_device,
|
|
f_action,
|
|
f_functions,
|
|
f_ping_count,
|
|
f_backlight,
|
|
f_beep_duration,
|
|
f_touch_x,
|
|
f_touch_y,
|
|
f_radio_active,
|
|
f_radio_status,
|
|
f_radio_flags,
|
|
f_radio_flags2,
|
|
f_radio_band,
|
|
f_radio_bandnumber,
|
|
f_radio_freq,
|
|
f_radio_channel,
|
|
f_radioflag_af,
|
|
f_radioflag_reg,
|
|
f_radioflag_st,
|
|
f_radioflag_ta,
|
|
f_amp_volume,
|
|
f_amp_bass,
|
|
f_amp_mid,
|
|
f_amp_treble,
|
|
f_amp_fade,
|
|
f_amp_balance,
|
|
f_amp_flags,
|
|
f_amp_mute,
|
|
f_cd_slots,
|
|
f_cd_slot1,
|
|
f_cd_slot2,
|
|
f_cd_slot3,
|
|
f_cd_slot4,
|
|
f_cd_slot5,
|
|
f_cd_slot6,
|
|
f_cd_state,
|
|
f_cd_open,
|
|
f_cd_err1,
|
|
f_cd_seeking,
|
|
f_cd_playback,
|
|
f_cd_seeking_track,
|
|
f_cd_loading,
|
|
f_cd_disc,
|
|
f_cd_track,
|
|
f_cd_track_count,
|
|
f_cd_title,
|
|
f_cd_min,
|
|
f_cd_sec,
|
|
f_cd_flags,
|
|
f_cd_flag_disk_random,
|
|
f_cd_flag_random,
|
|
f_cd_flag_disk_repeat,
|
|
f_cd_flag_repeat,
|
|
f_cd_flag_disk_scan,
|
|
f_cd_flag_scan,
|
|
f_tape_present,
|
|
f_tape_state,
|
|
f_tape_seeking_rev,
|
|
f_tape_err1,
|
|
f_tape_playback,
|
|
f_tape_seeking,
|
|
f_tape_state1,
|
|
f_tape_random,
|
|
f_tape_flags,
|
|
f_tape_stereo,
|
|
f_tape_dolby,
|
|
f_tape_flag1,
|
|
f_tape_flag2,
|
|
f_tape_flag3,
|
|
f_tape_flag4,
|
|
}
|
|
|
|
local pe_unhandled_msg = ProtoExpert.new("avclan.expert", "Message not decoded",
|
|
expert.group.UNDECODED, expert.severity.WARN)
|
|
-- Parsed-but-unrecognized header values: the frame structure is understood, only
|
|
-- the device/action byte is absent from our lookup tables. NOTE severity (vs the
|
|
-- WARN above) keeps these distinct from genuinely undecodable payloads, and the
|
|
-- dedicated abbreviations make each independently filterable in Wireshark.
|
|
local pe_unknown_device = ProtoExpert.new("avclan.unknown_device.expert", "Unknown device address",
|
|
expert.group.UNDECODED, expert.severity.NOTE)
|
|
local pe_unknown_action = ProtoExpert.new("avclan.unknown_action.expert", "Unknown action",
|
|
expert.group.UNDECODED, expert.severity.NOTE)
|
|
-- local pe_lan_check = ProtoExpert.new("avclan.lan.expert", "")
|
|
local pe_ping_req = ProtoExpert.new("avclan.ping_req.expert", "Ping request",
|
|
expert.group.SEQUENCE, expert.severity.CHAT)
|
|
local pe_ping_resp = ProtoExpert.new("avclan.ping_resp.expert", "Ping response",
|
|
expert.group.SEQUENCE, expert.severity.CHAT)
|
|
|
|
avclanproto.experts = {
|
|
pe_unhandled_msg,
|
|
pe_unknown_device,
|
|
pe_unknown_action,
|
|
pe_ping_req,
|
|
pe_ping_resp,
|
|
}
|
|
|
|
local field_from_device = Field.new("avclan.from_device")
|
|
local field_to_device = Field.new("avclan.to_device")
|
|
local field_action = Field.new("avclan.action")
|
|
local field_radio_freq = Field.new("avclan.radio.freq")
|
|
local field_radio_band = Field.new("avclan.radio.band")
|
|
local field_cd_disc = Field.new("avclan.cd.disc")
|
|
local field_cd_track = Field.new("avclan.cd.track")
|
|
local field_cd_min = Field.new("avclan.cd.mins")
|
|
local field_cd_sec = Field.new("avclan.cd.secs")
|
|
|
|
-- Attach the "not decoded" expert warning to a specific byte range rather than
|
|
-- the whole message, so Wireshark highlights exactly the bytes we don't yet
|
|
-- understand.
|
|
local function mark_undecoded(tree, range)
|
|
tree:add(range, "Undecoded bytes"):add_proto_expert_info(pe_unhandled_msg)
|
|
end
|
|
|
|
-- Add a device-address field (from/to/active), attaching an expert note when the
|
|
-- byte isn't a known device so the frame is filterable via
|
|
-- `avclan.unknown_device.expert`. Returns the item so callers can chain off it.
|
|
local function add_device(tree, field, range)
|
|
local item = tree:add(field, range)
|
|
if known_devices[range:uint()] == nil then
|
|
item:add_proto_expert_info(pe_unknown_device)
|
|
end
|
|
return item
|
|
end
|
|
|
|
-- Add the action field, attaching an expert note when the byte isn't a known
|
|
-- action (filterable via `avclan.unknown_action.expert`). Returns the item.
|
|
local function add_action(tree, range)
|
|
local item = tree:add(f_action, range)
|
|
if known_actions[range:uint()] == nil then
|
|
item:add_proto_expert_info(pe_unknown_action)
|
|
end
|
|
return item
|
|
end
|
|
|
|
-- ---------------------------------------------------------------------------
|
|
-- Per-message decoders.
|
|
--
|
|
-- Each decoder receives the message `subtree`, the `buffer`, and `offset` (the
|
|
-- index of the `from` byte, accounting for the leading 0x00 on unicast frames).
|
|
-- Device-state decoders also receive the resolved `action`. The dissector body
|
|
-- below is just a router that selects one of these based on from/to/action,
|
|
-- preserving the historical precedence order.
|
|
-- ---------------------------------------------------------------------------
|
|
|
|
-- CMD_SW source. Sub-commands to the amplifier (actions 0x90-0x95) set a
|
|
-- tone/level control; these codes collide with physical-interface actions, so
|
|
-- the CMD_SW -> AUDIO_AMP device pair disambiguates them.
|
|
local function decode_cmd_sw(subtree, buffer, offset, to_device)
|
|
add_action(subtree, buffer(offset+2,1))
|
|
local action = field_action().value
|
|
if to_device == known_devices_names["AUDIO_AMP"] then
|
|
local amptree = subtree:add(avclanproto, buffer(offset+2,-1), "Device: Audio amplifier control")
|
|
local param = buffer(offset+3,1)
|
|
if action == 0x90 then -- VOLUME (BCD)
|
|
local vol_raw = param:uint()
|
|
amptree:add(f_amp_volume, param, bcd2dec(vol_raw) or vol_raw):append_text(" (VOLUME)")
|
|
elseif action == 0x91 then
|
|
amptree:add(f_amp_balance, param)
|
|
elseif action == 0x92 then
|
|
amptree:add(f_amp_fade, param)
|
|
elseif action == 0x93 then
|
|
amptree:add(f_amp_bass, param)
|
|
elseif action == 0x94 then
|
|
amptree:add(f_amp_mid, param)
|
|
elseif action == 0x95 then
|
|
amptree:add(f_amp_treble, param)
|
|
end
|
|
end
|
|
end
|
|
|
|
-- COMMUNICATION v1/v2 source.
|
|
local function decode_from_comm(subtree, buffer, offset, to_device)
|
|
if to_device == known_devices_names["COMM_CTRL"] then
|
|
add_action(subtree, buffer(offset+2,1))
|
|
local action = field_action().value
|
|
if action == known_actions_names["ADVERTISE_FUNCTION"] then
|
|
add_device(subtree, f_active_device, buffer(offset+3,1))
|
|
elseif action == known_actions_names["PING_REQ"] then
|
|
subtree:add(f_ping_count, buffer(offset+3,1))
|
|
subtree:add_proto_expert_info(pe_ping_req, "Ping request " .. buffer(offset+3,1):uint())
|
|
elseif known_actions[action] then
|
|
else
|
|
subtree:add_proto_expert_info(pe_unhandled_msg)
|
|
end
|
|
else
|
|
-- Control actions addressed to a peripheral rather than COMM_CTRL, e.g.
|
|
-- function enable/disable (COMM_v1/v2 -> CD_CHANGER, 0x42/0x43). These
|
|
-- are understood apart from a trailing 0x01 of unknown meaning.
|
|
add_action(subtree, buffer(offset+2,1))
|
|
end
|
|
end
|
|
|
|
-- COMM_CTRL source.
|
|
local function decode_from_commctrl(subtree, buffer, offset, to_device)
|
|
if to_device == known_devices_names["COMMUNICATION v1"] or
|
|
to_device == known_devices_names["COMMUNICATION v2"] then
|
|
local action_tree = add_action(subtree, buffer(offset+2,1))
|
|
local action = field_action().value
|
|
if action == known_actions_names["PING_RESP"] then
|
|
subtree:add(f_ping_count, buffer(offset+3,1))
|
|
subtree:add_proto_expert_info(pe_ping_resp, "Ping response " .. buffer(offset+3,1):uint())
|
|
elseif action == known_actions_names["LIST_FUNCTIONS_RESP"] then
|
|
local functions = action_tree:add(f_functions, buffer(offset+3))
|
|
functions:append_text(" (")
|
|
for v = 0,(buffer:bytes(offset+3)):len()-1 do
|
|
if known_devices[buffer(offset+3+v,1):uint()] then
|
|
functions:append_text(" " .. known_devices[buffer(offset+3+v,1):uint()])
|
|
else
|
|
functions:append_text(" UNKNOWN_DEVICE")
|
|
end
|
|
end
|
|
functions:append_text(" ) ")
|
|
elseif known_actions[action] then
|
|
else
|
|
subtree:add_proto_expert_info(pe_unhandled_msg)
|
|
end
|
|
elseif to_device == known_devices_names["COMM_CTRL"] then
|
|
local action_tree = add_action(subtree, buffer(offset+2,1))
|
|
local action = field_action().value
|
|
if action == known_actions_names["BACKLIGHT_ADJUST"] then
|
|
local backlight = subtree:add(f_backlight, buffer(offset+3,1))
|
|
backlight:append_text(" (" .. math.floor(100*(63 - buffer(offset+3,1):uint())/63) .. ")")
|
|
end
|
|
elseif to_device == known_actions_names["LANCHECK_SCAN_REQ"] or
|
|
to_device == known_actions_names["LANCHECK_REQ"] or
|
|
to_device == known_actions_names["LANCHECK_END_REQ"] then
|
|
add_action(subtree, buffer(offset+1,1))
|
|
elseif to_device == 0x00 then
|
|
add_action(subtree, buffer(offset+2,1))
|
|
else
|
|
subtree:add_proto_expert_info(pe_unhandled_msg)
|
|
end
|
|
end
|
|
|
|
-- Beep request (any source -> BEEP_SPEAKERS), action 0x60 with a duration byte.
|
|
local function decode_beep(subtree, buffer, offset)
|
|
add_action(subtree, buffer(offset+2,1))
|
|
local action = field_action().value
|
|
if action == known_actions_names["BEEP"] then
|
|
subtree:add(f_beep_duration, buffer(offset+3,1))
|
|
else
|
|
subtree:add_proto_expert_info(pe_unhandled_msg)
|
|
end
|
|
end
|
|
|
|
-- TUNER source: radio state dump (regardless of action).
|
|
local function decode_radio(subtree, buffer, offset, action)
|
|
local radiotree = subtree:add(avclanproto, buffer(offset), "Device: Radio")
|
|
radiotree:add_le(f_radio_active, buffer(offset+3,1))
|
|
radiotree:add_le(f_radio_status, buffer(offset+4,1))
|
|
radiotree:add_le(f_radio_band, buffer(offset+5,1))
|
|
radiotree:add(f_radio_bandnumber, buffer(offset+5,1))
|
|
local freqtree = radiotree:add(f_radio_freq, buffer(offset+6,2))
|
|
local radio_band = buffer(offset+5,1):uint()
|
|
local freq = field_radio_freq().value
|
|
if bit.band(radio_band, 0xF0) == 0x80 then
|
|
freqtree:append_text(" (" .. 87.5+(freq-1)*.05 .. " MHz)")
|
|
elseif bit.band(radio_band, 0xF0) == 0xC0 then
|
|
freqtree:append_text(" (" .. 153+(freq-1)*1 .. " kHz)")
|
|
elseif bit.band(radio_band, 0xF0) == 0x00 then
|
|
freqtree:append_text(" (" .. 522+(freq-1)*9 .. " kHz)")
|
|
end
|
|
|
|
-- Preset channel number (@enkiusz's pd.py byte 6); 0 means "not on a preset".
|
|
if buffer:len() > offset+8 then
|
|
local channel = buffer(offset+8,1)
|
|
radiotree:add(f_radio_channel, channel)
|
|
if channel:uint() > 0 then
|
|
radiotree:append_text(", preset #" .. channel:uint())
|
|
end
|
|
end
|
|
|
|
-- Flags are offset-relative (@enkiusz's pd.py bytes 7 and 8); earlier
|
|
-- versions of this dissector read them at the fixed absolute offsets 15/16.
|
|
if buffer:len() > offset+9 then
|
|
local flags = radiotree:add(f_radio_flags, buffer(offset+9,1))
|
|
flags:add(f_radioflag_st, buffer(offset+9,1))
|
|
flags:add(f_radioflag_ta, buffer(offset+9,1))
|
|
flags:add(f_radioflag_reg, buffer(offset+9,1))
|
|
flags:add(f_radioflag_af, buffer(offset+9,1))
|
|
end
|
|
if buffer:len() > offset+10 then
|
|
radiotree:add(f_radio_flags2, buffer(offset+10,1))
|
|
end
|
|
end
|
|
|
|
-- AUDIO_AMP source: amplifier state dump (regardless of action).
|
|
local function decode_amp(subtree, buffer, offset, action)
|
|
-- Span to end of buffer rather than a fixed length: the flags byte (offset+14)
|
|
-- isn't present in every amp frame, and a fixed range would run out of bounds.
|
|
local amptree = subtree:add(avclanproto, buffer(offset), "Device: Audio amplifier")
|
|
|
|
local vol_raw = buffer(offset+4,1):uint()
|
|
amptree:add(f_amp_volume, buffer(offset+4,1), bcd2dec(vol_raw) or vol_raw)
|
|
amptree:add(f_amp_balance, buffer(offset+5,1))
|
|
amptree:add(f_amp_fade, buffer(offset+6,1))
|
|
amptree:add(f_amp_bass, buffer(offset+7,1))
|
|
amptree:add(f_amp_mid, buffer(offset+8,1))
|
|
amptree:add(f_amp_treble, buffer(offset+9,1))
|
|
|
|
-- Status flags (@enkiusz's pd.py byte 11); only MUTE (0x04) is identified.
|
|
if buffer:len() > offset+14 then
|
|
local amp_flags = amptree:add(f_amp_flags, buffer(offset+14,1))
|
|
amp_flags:add(f_amp_mute, buffer(offset+14,1))
|
|
end
|
|
end
|
|
|
|
-- CD / CD_CHANGER source: payload depends on the report action.
|
|
local function decode_cd(subtree, buffer, offset, action)
|
|
if action == known_actions_names["PLAYBACK_STATUS"] or
|
|
action == known_actions_names["PLAYBACK_RESP"] then
|
|
local cdtree = subtree:add(avclanproto, buffer(offset,9), "Device: CD player")
|
|
local cd_slots = cdtree:add(f_cd_slots, buffer(offset+3,1))
|
|
cd_slots:add(f_cd_slot1, buffer(offset+3,1))
|
|
cd_slots:add(f_cd_slot2, buffer(offset+3,1))
|
|
cd_slots:add(f_cd_slot3, buffer(offset+3,1))
|
|
cd_slots:add(f_cd_slot4, buffer(offset+3,1))
|
|
cd_slots:add(f_cd_slot5, buffer(offset+3,1))
|
|
cd_slots:add(f_cd_slot6, buffer(offset+3,1))
|
|
|
|
local cd_state = cdtree:add(f_cd_state, buffer(offset+4,1))
|
|
cd_state:add(f_cd_open, buffer(offset+4,1))
|
|
cd_state:add(f_cd_err1, buffer(offset+4,1))
|
|
cd_state:add(f_cd_seeking, buffer(offset+4,1))
|
|
cd_state:add(f_cd_playback, buffer(offset+4,1))
|
|
cd_state:add(f_cd_seeking_track, buffer(offset+4,1))
|
|
cd_state:add(f_cd_loading, buffer(offset+4,1))
|
|
local cd_status = cdtree:add(avclanproto, buffer(offset+5,-1), "")
|
|
cd_status:add(f_cd_disc, buffer(offset+5,1))
|
|
cd_status:add(f_cd_track, buffer(offset+6,1))
|
|
cd_status:add(f_cd_min, buffer(offset+7,1))
|
|
cd_status:add(f_cd_sec, buffer(offset+8,1))
|
|
cd_status:append_text("Disc " .. field_cd_disc().value .. ", ")
|
|
cd_status:append_text("track " .. tostring(buffer(offset+6,1)):gsub("(.)(.)", "%1%2") .. ", ")
|
|
cd_status:append_text("time " .. bcd_time(buffer(offset+7,1):uint(), buffer(offset+8,1):uint()))
|
|
local cd_flags = cdtree:add(f_cd_flags, buffer(offset+9,1))
|
|
cd_flags:add(f_cd_flag_disk_random, buffer(offset+9,1))
|
|
cd_flags:add(f_cd_flag_random, buffer(offset+9,1))
|
|
cd_flags:add(f_cd_flag_disk_repeat, buffer(offset+9,1))
|
|
cd_flags:add(f_cd_flag_repeat, buffer(offset+9,1))
|
|
cd_flags:add(f_cd_flag_disk_scan, buffer(offset+9,1))
|
|
cd_flags:add(f_cd_flag_scan, buffer(offset+9,1))
|
|
elseif action == known_actions_names["LOADING_STATUS"] or
|
|
action == known_actions_names["LOADING_RESP"] then
|
|
local cdtree = subtree:add(avclanproto, buffer(offset,9), "Device: CD player")
|
|
local available_slots = cdtree:add(f_cd_slots, buffer(offset+4,1))
|
|
available_slots:add(f_cd_slot1, buffer(offset+4,1))
|
|
available_slots:add(f_cd_slot2, buffer(offset+4,1))
|
|
available_slots:add(f_cd_slot3, buffer(offset+4,1))
|
|
available_slots:add(f_cd_slot4, buffer(offset+4,1))
|
|
available_slots:add(f_cd_slot5, buffer(offset+4,1))
|
|
available_slots:add(f_cd_slot6, buffer(offset+4,1))
|
|
|
|
local occupied_slots = cdtree:add(f_cd_slots, buffer(offset+6,1))
|
|
occupied_slots:add(f_cd_slot1, buffer(offset+6,1))
|
|
occupied_slots:add(f_cd_slot2, buffer(offset+6,1))
|
|
occupied_slots:add(f_cd_slot3, buffer(offset+6,1))
|
|
occupied_slots:add(f_cd_slot4, buffer(offset+6,1))
|
|
occupied_slots:add(f_cd_slot5, buffer(offset+6,1))
|
|
occupied_slots:add(f_cd_slot6, buffer(offset+6,1))
|
|
|
|
local redundant_slots = cdtree:add(f_cd_slots, buffer(offset+8,1))
|
|
redundant_slots:add(f_cd_slot1, buffer(offset+8,1))
|
|
redundant_slots:add(f_cd_slot2, buffer(offset+8,1))
|
|
redundant_slots:add(f_cd_slot3, buffer(offset+8,1))
|
|
redundant_slots:add(f_cd_slot4, buffer(offset+8,1))
|
|
redundant_slots:add(f_cd_slot5, buffer(offset+8,1))
|
|
redundant_slots:add(f_cd_slot6, buffer(offset+8,1))
|
|
|
|
local cd_state = cdtree:add(f_cd_state, buffer(offset+9,1))
|
|
cd_state:add(f_cd_open, buffer(offset+9,1))
|
|
cd_state:add(f_cd_err1, buffer(offset+9,1))
|
|
cd_state:add(f_cd_seeking, buffer(offset+9,1))
|
|
cd_state:add(f_cd_playback, buffer(offset+9,1))
|
|
cd_state:add(f_cd_seeking_track, buffer(offset+9,1))
|
|
cd_state:add(f_cd_loading, buffer(offset+9,1))
|
|
elseif action == known_actions_names["REPORT_TOC"] then
|
|
-- Disc table-of-contents (@enkiusz's REPORT_TOC layout).
|
|
local toctree = subtree:add(avclanproto, buffer(offset), "Device: CD player (TOC)")
|
|
toctree:add(f_cd_disc, buffer(offset+3,1))
|
|
toctree:add(f_cd_track, buffer(offset+4,1)):append_text(" (first track)")
|
|
toctree:add(f_cd_track_count, buffer(offset+5,1))
|
|
local total = bcd_time(buffer(offset+6,1):uint(), buffer(offset+7,1):uint())
|
|
toctree:append_text(", total time " .. total)
|
|
elseif action == known_actions_names["TRACK_NAME_RESP"] then
|
|
-- Track-name report: disc/track then an ASCII title (@enkiusz's pd.py:
|
|
-- title starts at data byte 5).
|
|
local nametree = subtree:add(avclanproto, buffer(offset,-1), "Device: CD player (track name)")
|
|
nametree:add(f_cd_disc, buffer(offset+3,1))
|
|
nametree:add(f_cd_track, buffer(offset+4,1))
|
|
if buffer:len() > offset+7 then
|
|
local title = nametree:add(f_cd_title, buffer(offset+7))
|
|
title:append_text(" (\"" .. buffer(offset+7):string() .. "\")")
|
|
end
|
|
elseif action == known_actions_names["ENABLE_FUNCTION_RESP"] or
|
|
action == known_actions_names["DISABLE_FUNCTION_RESP"] then
|
|
-- Understood apart from a trailing 0x01 of unknown meaning; not flagged.
|
|
elseif buffer:len() > offset+3 then
|
|
-- Recognized CD action (initial report 0xf0, TOC 0xf9, track name
|
|
-- 0xfd, ...) whose payload layout isn't understood yet. Flag just the
|
|
-- undecoded bytes, not the whole (correctly-named) message.
|
|
mark_undecoded(subtree, buffer(offset+3))
|
|
end
|
|
end
|
|
|
|
-- CD / CD_CHANGER destination: requests addressed to a CD player. Only the
|
|
-- track-name request carries a decodable payload (@enkiusz's pkt_to_cd_player);
|
|
-- other request actions are identified by their action byte alone.
|
|
local function decode_to_cd(subtree, buffer, offset, action)
|
|
if action == known_actions_names["TRACK_NAME_REQ"] then
|
|
subtree:add(f_cd_disc, buffer(offset+3,1))
|
|
subtree:add(f_cd_track, buffer(offset+4,1))
|
|
end
|
|
end
|
|
|
|
-- TAPE_DECK source: tape state dump on PLAYBACK_STATUS
|
|
local function decode_tape(subtree, buffer, offset, action)
|
|
if action == known_actions_names["PLAYBACK_STATUS"] then
|
|
local tapetree = subtree:add(avclanproto, buffer(offset,4), "Device: Tape deck")
|
|
tapetree:add(f_tape_present, buffer(offset+3,1))
|
|
|
|
local tape_state = tapetree:add(f_tape_state, buffer(offset+4,1))
|
|
tape_state:add(f_tape_seeking_rev, buffer(offset+4,1))
|
|
tape_state:add(f_tape_err1, buffer(offset+4,1))
|
|
tape_state:add(f_tape_playback, buffer(offset+4,1))
|
|
tape_state:add(f_tape_seeking, buffer(offset+4,1))
|
|
tape_state:add(f_tape_state1, buffer(offset+4,1))
|
|
tape_state:add(f_tape_random, buffer(offset+4,1))
|
|
|
|
local tape_flags = tapetree:add(f_tape_flags, buffer(offset+5,2))
|
|
tape_flags:add(f_tape_stereo, buffer(offset+5,2))
|
|
tape_flags:add(f_tape_dolby, buffer(offset+5,2))
|
|
tape_flags:add(f_tape_flag1, buffer(offset+5,2))
|
|
tape_flags:add(f_tape_flag2, buffer(offset+5,2))
|
|
tape_flags:add(f_tape_flag3, buffer(offset+5,2))
|
|
tape_flags:add(f_tape_flag4, buffer(offset+5,2))
|
|
end
|
|
end
|
|
|
|
-- SW source: touch-screen press (action 0x78) with x,y position pairs.
|
|
local function decode_touch(subtree, buffer, offset, action)
|
|
if action == known_actions_names["SCREEN_PRESS"] then
|
|
subtree:add(f_touch_x, buffer(offset+3,1))
|
|
subtree:add(f_touch_y, buffer(offset+4,1))
|
|
if buffer:len() > offset+6 then
|
|
subtree:add(f_touch_x, buffer(offset+5,1)):append_text(" (2)")
|
|
subtree:add(f_touch_y, buffer(offset+6,1)):append_text(" (2)")
|
|
end
|
|
else
|
|
subtree:add_proto_expert_info(pe_unhandled_msg)
|
|
end
|
|
end
|
|
|
|
-- Device-state report decoders, keyed by the originating device. For these,
|
|
-- the from_device determines the payload format; the action (passed through)
|
|
-- only matters within CD/tape/touch.
|
|
local device_decoders = {
|
|
[known_devices_names["TUNER"]] = decode_radio,
|
|
[known_devices_names["AUDIO_AMP"]] = decode_amp,
|
|
[known_devices_names["CD"]] = decode_cd,
|
|
[known_devices_names["CD_CHANGER"]] = decode_cd,
|
|
[known_devices_names["TAPE_DECK"]] = decode_tape,
|
|
[known_devices_names["SW"]] = decode_touch,
|
|
}
|
|
|
|
function avclanproto.dissector(buffer, pinfo, tree)
|
|
local length = buffer:len()
|
|
if length == 0 then
|
|
return
|
|
end
|
|
|
|
iebusproto.dissector(buffer, pinfo, tree)
|
|
|
|
local subtree = tree:add(avclanproto, buffer(7,-1), "AVCLAN message")
|
|
-- Unicast device-to-device frames carry a leading 0x00 before the from/to
|
|
-- bytes; skip it so `offset` always points at the `from` byte.
|
|
local offset = 7
|
|
if buffer(7,1):uint() == 0 then
|
|
offset = 8
|
|
elseif buffer(0,1):uint() ~= 0 then
|
|
-- Unicast frame whose leading byte isn't the expected 0x00 pad (e.g.
|
|
-- 0xff). @enkiusz notes both 0x00 and 0xff occur here, but under the
|
|
-- current protocol understanding a non-0x00 prefix is unusual; rather
|
|
-- than risk misaligning every downstream field, treat it conservatively
|
|
-- as undecoded.
|
|
subtree:add_proto_expert_info(pe_unhandled_msg)
|
|
return
|
|
end
|
|
add_device(subtree, f_from_device, buffer(offset+0,1))
|
|
add_device(subtree, f_to_device, buffer(offset+1,1))
|
|
|
|
local from_device = field_from_device().value
|
|
local to_device = field_to_device().value
|
|
|
|
if from_device == known_devices_names["CMD_SW"] then
|
|
decode_cmd_sw(subtree, buffer, offset, to_device)
|
|
elseif from_device == known_devices_names["COMMUNICATION v1"] or
|
|
from_device == known_devices_names["COMMUNICATION v2"] then
|
|
decode_from_comm(subtree, buffer, offset, to_device)
|
|
elseif from_device == known_devices_names["COMM_CTRL"] then
|
|
decode_from_commctrl(subtree, buffer, offset, to_device)
|
|
elseif to_device == known_devices_names["BEEP_SPEAKERS"] then
|
|
decode_beep(subtree, buffer, offset)
|
|
elseif from_device == known_devices_names["STATUS"] and
|
|
known_devices[to_device] ~= nil then
|
|
add_action(subtree, buffer(offset+2,1))
|
|
elseif device_decoders[from_device] then
|
|
add_action(subtree, buffer(offset+2,1))
|
|
device_decoders[from_device](subtree, buffer, offset, field_action().value)
|
|
elseif to_device == known_devices_names["CD"] or
|
|
to_device == known_devices_names["CD_CHANGER"] then
|
|
add_action(subtree, buffer(offset+2,1))
|
|
decode_to_cd(subtree, buffer, offset, field_action().value)
|
|
else
|
|
-- Unknown source/dest: the [from, to, action] header layout still holds
|
|
-- even when we can't decode the body, so surface the action.
|
|
if buffer:len() > offset+2 then
|
|
add_action(subtree, buffer(offset+2,1))
|
|
end
|
|
subtree:add_proto_expert_info(pe_unhandled_msg)
|
|
end
|
|
end
|
|
|
|
-- for i,v in ipairs(DissectorTable.list()) do print(v) end
|
|
udlt:add(wtap.USER15, avclanproto)
|