85 lines
2.3 KiB
Plaintext
85 lines
2.3 KiB
Plaintext
-- communication with https://github.com/rusefi/rusefi-hardware/tree/main/GDI-4ch/firmware
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GDI4_BASE_ADDRESS = 0xF0
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hexstr = { 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, "A", "B", "C", "D", "E", "F" }
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function toHexString(num)
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if num == 0 then
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return '0'
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end
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local result = ""
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while num > 0 do
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local n = num % 16
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result = hexstr[n + 1] ..result
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num = math.floor(num / 16)
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end
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return result
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end
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function arrayToString(arr)
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local str = ""
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local index = 1
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while arr[index] ~= nil do
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str = str.." "..toHexString(arr[index])
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index = index + 1
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end
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return str
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end
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function printPacket(bus, id, dlc, data)
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print('Received ' ..arrayToString(data))
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end
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function getTwoBytesLSB(data, offset, factor)
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return (data[offset + 2] * 256 + data[offset + 1]) * factor
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end
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function setTwoBytesLsb(data, offset, value)
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value = math.floor(value)
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data[offset + 2] = value >> 8
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data[offset + 1] = value & 0xff
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end
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function onCanConfiguration(bus, id, dlc, data)
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print('Received configuration ' ..arrayToString(data))
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print ("BoostVoltage " ..getTwoBytesLSB(data, 0, 0.01) )
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print ("BoostCurrent " ..getTwoBytesLSB(data, 2, 0.01) )
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print ("PeakCurrent " ..getTwoBytesLSB(data, 4, 0.01) )
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print ("HoldCurrent " ..getTwoBytesLSB(data, 6, 0.01) )
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end
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canRxAdd(GDI4_BASE_ADDRESS, printPacket)
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canRxAdd(GDI4_BASE_ADDRESS + 1, onCanConfiguration)
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canRxAdd(GDI4_BASE_ADDRESS + 2, printPacket)
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local data_set_voltage = { 0x88, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00 }
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FIXED_POINT = 100
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function onTick()
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boostVoltage = getCalibration("mc33_hvolt")
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boostCurrent = getCalibration("mc33_i_boost") / 1000.0
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peakCurrent = getCalibration("mc33_i_peak") / 1000.0
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print("boostVoltage " .. boostVoltage .." boostCurrent " ..boostCurrent .." peakCurrent " ..peakCurrent)
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holdCurrent = getCalibration("mc33_i_hold")
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peakDuration = getCalibration("mc33_t_peak_tot") / 1000.0
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holdDuration = getCalibration("mc33_t_hold_tot") / 1000.0
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print("holdCurrent " .. holdCurrent .. " peakDuration " .. peakDuration .." hold duration " ..holdDuration)
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setTwoBytesLsb(data_set_voltage, 1, boostVoltage * FIXED_POINT)
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setTwoBytesLsb(data_set_voltage, 3, boostCurrent * FIXED_POINT)
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setTwoBytesLsb(data_set_voltage, 5, peakCurrent * FIXED_POINT)
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print('Sending ' ..arrayToString(data_set_voltage))
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txCan(1, 0x201, 1, data_set_voltage)
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end
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