Openport Stand-Alone Logging Beta

Re: Openport Stand-Alone Logging Beta

Postby dolphin » Wed Oct 28, 2009 7:59 am

It's USDM Evo 8 ECU. I haven't tried 15625 baud rate yet, but I can do it for you.

Waiting for 62500 patch! Why use 15625, while you can use 62500 baud :D
dolphin
 
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Re: Openport Stand-Alone Logging Beta

Postby sql_dev » Wed Oct 28, 2009 8:54 am

Sorry to repost, but I still have no solution for this.
OP2 creates many-many files as soon as I try to add a param with long ID (like this: 0xFF6A00).

Please help!
Alex.

sql_dev wrote:
dolphin wrote:
sql_dev wrote:How can I tell if the new firmware was applied? Is there any pop-up window or message?

Just connect the cable to the car and press read or compare, in the ecuflash log will be written, what firmware you are using ;)


So, it flashed something... ;-) But the multi-file issue is still here, not affected by the reflash at all. As soon as I add a parameter with long ID (like this: 0xFF6A00), OP2 starts making many-many files.

...
sql_dev
 
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Re: Openport Stand-Alone Logging Beta

Postby mdedwar » Wed Oct 28, 2009 1:09 pm

What do you have "type" set to?
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Re: Openport Stand-Alone Logging Beta

Postby dolphin » Wed Oct 28, 2009 3:47 pm

Q: Can I add additional parameters to log, such as 2byte MUT Load, like I am using on evoscan soft? Any ideas? I have tried this, but it wasn't working for me:
Code: Select all
paramname=LoadMUT2Byte
paramid=0x00
scalingrpn=x,0.3125,*
dolphin
 
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Re: Openport Stand-Alone Logging Beta

Postby Tephra » Wed Oct 28, 2009 4:23 pm

dont u need to say databits=16 to get 2bytes?
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Re: Openport Stand-Alone Logging Beta

Postby MattS00 » Wed Oct 28, 2009 8:23 pm

I've noticed that when using stand alone logging that the check engine light will not light for a stored code I have. I have a p0420 for a cat inefficiency code that recently started to come up, but I haven't got a chance to fix it. The light will come back up after a couple drive cycles without the logger. However, my pocket logger will show the code even though the light is not lit.
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Location: Illinois

Re: Openport Stand-Alone Logging Beta

Postby dolphin » Thu Oct 29, 2009 12:51 am

Tephra wrote:dont u need to say databits=16 to get 2bytes?

Maybe, how could I know :wink:
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Posts: 10
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Re: Openport Stand-Alone Logging Beta

Postby chaeoz » Thu Oct 29, 2009 7:26 am

Hi, I have tested this out and this is great!

I have all my parameters working except for 1. Innovate. I have my LC-1 plugged into the OP2, but when I checked the log files, I'm getting inno.afr = 0.

This is my logcfg.txt, any insights would be helpful.

Code: Select all
; uncomment the line below to minimize the information written to logcfg.out
; this will greatly decrease the startup time to begin logging if you already
; have a working logcfg.txt without any problems
;
; debug=noout

; sample logging configuration file for openport 2.0
; must be named logcfg.txt and be placed in the root directory of the
; microSD card inserted in the openport in order to work

; this sample logs using the SSM protocol over the K-line, which works
; for both CAN-based and older Subarus

;----------------ssm----------------
; log channel settings

; we are logging SSM via the K-line
type=ssmk            

; each parameter gets a name you chose
paramname = RPM            

; the paramid is used in the SSM request
paramid = 0x00000E      

; how many bits in the returned value (defaults to 8, so you usually don't need to specify this)
databits = 16            

; how to scale the results using a RPN (http://en.wikipedia.org/wiki/Reverse_Polish_notation) notation, with data and operators seperated by commas
; the operators are as following:
;       + : add
;       - : subtract
;       * : multiply
;       / : divide
;
;       x : represents the raw (unscaled) parameter
; 123.456 : example of a constant
;
; if no scaling is specified, the raw value will be used
;
; the OP2 has no FPU - it must do floating point calculations in software which can
; create performance issues, so be efficient in your RPN expressions by doing the following:
;
; * minimize the number of operations; e.g. ((x * 2) + 1) * 2 => x * 4 + 2
; * don't divide by a constant when you can multiply instead; e.g. x / 4 => x * 0.25
; * don't make constant expressions that can instead be pre-calculated; e.g. x * 3 / 4 => x * 0.75

scalingrpn = x,0.25,*   

; continue specifying other parameters
; paramname = load
; paramid = 0x07
; scalingrpn = x,0.3921569,*

; commented out here is an example for reading a direct RAM parameter, a 32-bit float in this case
; paramname = load
; paramid = 0xFF6578
; isfloat = 1 ; the raw data is a 32-bit floating point number (no need to set databits = 32)

; paramname = coolant_temp
; paramid = 0x08
; scalingrpn = x,0.40,-
; priority = 2

; paramname = battery_volts
; paramid = 0x1C
; scalingrpn = x,0.08,*
; priority = 2

; paramname = mrp
; paramid = 0x24
; scalingrpn = x,128,-,0.145098,*

; paramname = IAM
; paramid = 0xF9
; scalingrpn = x,0.0625,*

paramname = speed
paramid = 0x000010
scalingrpn = x

paramname = IAM4
paramid = 0xFF2AD4
; databits = 32
isfloat = 1
scalingrpn = x

paramname = ThrottleOpeningAngle
paramid = 0x000015
scalingrpn = x,0.3921569,*

paramname = CLOLStat
paramid = 0xFF8D69
scalingrpn = x,6,+

paramname = load4grev
paramid = 0xFF6678
; databits = 32
isfloat = 1
scalingrpn = x

paramname = est_afr4
paramid = 0xFF6C08
; databits = 32
isfloat = 1
scalingrpn = 14.7,1,x,+,/
; scaling = 14.7/(1+x)

paramname = AFR2
paramid = 0xFF699E
databits = 16
scalingrpn = 14.7,x,0.0001220703,*,*
; scaling = (x*.0001220703)*14.7

paramname = Pri_OL_Enrich
paramid = 0xFF6982
databits = 16
scalingrpn = 14.7,1,x,0.00003051758,*,+,/
; scaling = 14.7/(1+(x*.00003051758))

paramname = MassAirFlow
paramid = 0x000013
databits = 16            
scalingrpn = x,0.01,*

paramname = MAFv
paramid = 0x00001D
scalingrpn = x,0.02,*

paramname = IAT
paramid = 0x000012
scalingrpn = x,40,-
; priority = 2

paramname = Ign_Tot_Timing
paramid = 0x000011
scalingrpn = x,128,-,0.5,*

paramname =kca4
paramid = 0xFF7398
; databits = 32
isfloat = 1
scalingrpn = x

paramname = FKC4
paramid = 0xFF739C
; databits = 32
isfloat = 1
scalingrpn = x

paramname = FLKC1
paramid = 0xFF69B3
scalingrpn = x,0.3515625,*,45,-
; scaling = (x*.3515625)-45

paramname = WGDC
paramid = 0x000030
scalingrpn = x,0.3921569,*

paramname = tgt_boost4
paramid = 0xFF641C
; databits = 32
isfloat = 1
scalingrpn = 0.001333224,x,760,-,*
; scaling = (x-760)*0.001333224

paramname = MAP
paramid = 0x00000D
scalingrpn = x, 0.01000416, *
; scaling = x*37/255/14.50377

paramname = ATM
paramid = 0x000023
scalingrpn = x, 0.01000416, *
; scaling = x*37/255/14.50377

paramname = IPW ; injector #1 pulse width
paramid = 0x000020
scalingrpn = x,0.256,*

; some samples of logging "bitfield" values that are not whole bytes
; if you want to log more that one of these efficently, group them by
; paramid and the OP2 will only issue a single request to get all of
; the bits within each paramid

; paramname = ignition_sw
; paramid = 0x62
; databits = 1
; offsetbits = 3

; to still acquire a parameter (perhaps for triggering or a calculation)
; but not record it in the log, set isvisible equal to zero (it is 1 by default)
; isvisible = 0

; paramname = AC_sw
; paramid = 0x62
; databits = 1
; offsetbits = 1
; isvisible = 0

; paramname = defogger_sw
; paramid = 0x64
; databits = 1
; offsetbits = 5
; isvisible = 0

; paramname = blower_sw
; paramid = 0x64
; databits = 1
; offsetbits = 4
; isvisible = 0

; paramname = clutch_sw
; paramid = 0x121
; databits = 1
; offsetbits = 7

; paramname = brake_sw
; paramid = 0x121
; databits = 1
; offsetbits = 3

;----------------inno----------------
type=inno
; log from an innovate bus via the 3/32" jack
; currently the LC-1 is the only supported device
; in the "inno" case the parameters are already pre-defined, you just
; need to reference them by name so that they are included in the log
; output. note that these parameters won't become valid until the LC-1
; has been calibrated and the sensor is warmed up.

paramname = inno.afr
; paramname = inno.lambda


;----------------adc----------------
; type=adc       ; log from built in ADC channels

; paramname=battvolts
; paramid=16      ; paramid is pin number on OBD connector
         ; valid pins are 8 and 16
         ; values are pre-scaled to millivolts
; scalingrpn=x,0.001,*    ; here we scale to volts

; paramname=ignvolts   ; on newer subarus pin 8 is connected to the ignition voltage
; paramid=8      ; paramid is pin number on OBD connector
         ; valid pins are 8 and 16
         ; values are pre-scaled to millivolts
; scalingrpn=x,0.001,*    ; here we scale to volts


;-------------calculated parameter---------------
;
; you can derive calculated parameters from other parameters
; using RPN expressions
;
type = calc            

paramname = IDC
scalingrpn = RPM,IPW,*,0.0008333333,*

paramname = MRP_Corrected
scalingrpn = MAP,ATM,-


;-------------triggers---------------
;
; note that parameters must be previously defined
; before defining triggers using them
;
; triggers allow you to control when logging starts and stops
; this example sets up triggers such that logging only occurs
; when the engine is running (RPM > 0)
;
; triggers consist of a condition (a RPN expression using comparison operators)
; and an action. the RPN comparison operators match those in the C language:
;
; > < >= <= == != && ||
;
; if the condition evaluates to a non-zero value, that action is taken

conditionrpn = RPM,0,>   
action = start

conditionrpn = RPM,0,==
action = stop

; here is a second triggering example using the rear defogger switch
; uncomment it and comment out the sample above to use it

;conditionrpn = defogger_sw,1,==
;action = start

;conditionrpn = defogger_sw,0,==
;action = stop



And this is my logcfg.out

Code: Select all
14: type=ssmk            
  : name[type,8] value[ssmk,0,0.000000]
15: ; each parameter gets a name you chose
16: paramname = RPM            
  : name[paramname,16] value[RPM,0,0.000000]
17: ; the paramid is used in the SSM request
18: paramid = 0x00000E      
  : name[paramid,17] value[0x00000E,14,0.000000]
19: ; how many bits in the returned value (defaults to 8, so you usually don't need to specify this)
20: databits = 16            
  : name[databits,22] value[16,16,16.000000]
21: ; how to scale the results using a RPN (http://en.wikipedia.org/wiki/Reverse_Polish_notation) notation, with data and operators seperated by commas
22: ; the operators are as following:
23: ;       + : add
24: ;       - : subtract
25: ;       * : multiply
26: ;       / : divide
27: ;
28: ;       x : represents the raw (unscaled) parameter
29: ; 123.456 : example of a constant
30: ;
31: ; if no scaling is specified, the raw value will be used
32: ;
33: ; the OP2 has no FPU - it must do floating point calculations in software which can
34: ; create performance issues, so be efficient in your RPN expressions by doing the following:
35: ;
36: ; * minimize the number of operations; e.g. ((x * 2) + 1) * 2 => x * 4 + 2
37: ; * don't divide by a constant when you can multiply instead; e.g. x / 4 => x * 0.25
38: ; * don't make constant expressions that can instead be pre-calculated; e.g. x * 3 / 4 => x * 0.75
39: scalingrpn = x,0.25,*   
  : name[scalingrpn,18] value[x,0.25,*,0,0.000000]
40: ; continue specifying other parameters
41: ; paramname = load
42: ; paramid = 0x07
43: ; scalingrpn = x,0.3921569,*
44: ; commented out here is an example for reading a direct RAM parameter, a 32-bit float in this case
45: ; paramname = load
46: ; paramid = 0xFF6578
47: ; isfloat = 1 ; the raw data is a 32-bit floating point number (no need to set databits = 32)
48: ; paramname = coolant_temp
49: ; paramid = 0x08
50: ; scalingrpn = x,0.40,-
51: ; priority = 2
52: ; paramname = battery_volts
53: ; paramid = 0x1C
54: ; scalingrpn = x,0.08,*
55: ; priority = 2
56: ; paramname = mrp
57: ; paramid = 0x24
58: ; scalingrpn = x,128,-,0.145098,*
59: ; paramname = IAM
60: ; paramid = 0xF9
61: ; scalingrpn = x,0.0625,*
62: paramname = speed
  : name[paramname,16] value[speed,0,0.000000]
63: paramid = 0x000010
  : name[paramid,17] value[0x000010,16,0.000000]
64: scalingrpn = x
  : name[scalingrpn,18] value[x,0,0.000000]
65: paramname = IAM4
  : name[paramname,16] value[IAM4,0,0.000000]
66: paramid = 0xFF2AD4
  : name[paramid,17] value[0xFF2AD4,16722644,0.000000]
67: ; databits = 32
68: isfloat = 1
  : name[isfloat,24] value[1,1,1.000000]
69: scalingrpn = x
  : name[scalingrpn,18] value[x,0,0.000000]
70: paramname = ThrottleOpeningAngle
  : name[paramname,16] value[ThrottleOpeningAngle,0,0.000000]
71: paramid = 0x000015
  : name[paramid,17] value[0x000015,21,0.000000]
72: scalingrpn = x,0.3921569,*
  : name[scalingrpn,18] value[x,0.3921569,*,0,0.000000]
73: paramname = CLOLStat
  : name[paramname,16] value[CLOLStat,0,0.000000]
74: paramid = 0xFF8D69
  : name[paramid,17] value[0xFF8D69,16747881,0.000000]
75: scalingrpn = x,6,+
  : name[scalingrpn,18] value[x,6,+,0,0.000000]
76: paramname = load4grev
  : name[paramname,16] value[load4grev,0,0.000000]
77: paramid = 0xFF6678
  : name[paramid,17] value[0xFF6678,16737912,0.000000]
78: ; databits = 32
79: isfloat = 1
  : name[isfloat,24] value[1,1,1.000000]
80: scalingrpn = x
  : name[scalingrpn,18] value[x,0,0.000000]
81: paramname = est_afr4
  : name[paramname,16] value[est_afr4,0,0.000000]
82: paramid = 0xFF6C08
  : name[paramid,17] value[0xFF6C08,16739336,0.000000]
83: ; databits = 32
84: isfloat = 1
  : name[isfloat,24] value[1,1,1.000000]
85: scalingrpn = 14.7,1,x,+,/
  : name[scalingrpn,18] value[14.7,1,x,+,/,14,14.700000]
86: ; scaling = 14.7/(1+x)
87: paramname = AFR2
  : name[paramname,16] value[AFR2,0,0.000000]
88: paramid = 0xFF699E
  : name[paramid,17] value[0xFF699E,16738718,0.000000]
89: databits = 16
  : name[databits,22] value[16,16,16.000000]
90: scalingrpn = 14.7,x,0.0001220703,*,*
  : name[scalingrpn,18] value[14.7,x,0.0001220703,*,*,14,14.700000]
91: ; scaling = (x*.0001220703)*14.7
92: paramname = Pri_OL_Enrich
  : name[paramname,16] value[Pri_OL_Enrich,0,0.000000]
93: paramid = 0xFF6982
  : name[paramid,17] value[0xFF6982,16738690,0.000000]
94: databits = 16
  : name[databits,22] value[16,16,16.000000]
95: scalingrpn = 14.7,1,x,0.00003051758,*,+,/
  : name[scalingrpn,18] value[14.7,1,x,0.00003051758,*,+,/,14,14.700000]
96: ; scaling = 14.7/(1+(x*.00003051758))
97: paramname = MassAirFlow
  : name[paramname,16] value[MassAirFlow,0,0.000000]
98: paramid = 0x000013
  : name[paramid,17] value[0x000013,19,0.000000]
99: databits = 16            
  : name[databits,22] value[16,16,16.000000]
100: scalingrpn = x,0.01,*
  : name[scalingrpn,18] value[x,0.01,*,0,0.000000]
101: paramname = MAFv
  : name[paramname,16] value[MAFv,0,0.000000]
102: paramid = 0x00001D
  : name[paramid,17] value[0x00001D,29,0.000000]
103: scalingrpn = x,0.02,*
  : name[scalingrpn,18] value[x,0.02,*,0,0.000000]
104: paramname = IAT
  : name[paramname,16] value[IAT,0,0.000000]
105: paramid = 0x000012
  : name[paramid,17] value[0x000012,18,0.000000]
106: scalingrpn = x,40,-
  : name[scalingrpn,18] value[x,40,-,0,0.000000]
107: ; priority = 2
108: paramname = Ign_Tot_Timing
  : name[paramname,16] value[Ign_Tot_Timing,0,0.000000]
109: paramid = 0x000011
  : name[paramid,17] value[0x000011,17,0.000000]
110: scalingrpn = x,128,-,0.5,*
  : name[scalingrpn,18] value[x,128,-,0.5,*,0,0.000000]
111: paramname =kca4
  : name[paramname,16] value[kca4,0,0.000000]
112: paramid = 0xFF7398
  : name[paramid,17] value[0xFF7398,16741272,0.000000]
113: ; databits = 32
114: isfloat = 1
  : name[isfloat,24] value[1,1,1.000000]
115: scalingrpn = x
  : name[scalingrpn,18] value[x,0,0.000000]
116: paramname = FKC4
  : name[paramname,16] value[FKC4,0,0.000000]
117: paramid = 0xFF739C
  : name[paramid,17] value[0xFF739C,16741276,0.000000]
118: ; databits = 32
119: isfloat = 1
  : name[isfloat,24] value[1,1,1.000000]
120: scalingrpn = x
  : name[scalingrpn,18] value[x,0,0.000000]
121: paramname = FLKC1
  : name[paramname,16] value[FLKC1,0,0.000000]
122: paramid = 0xFF69B3
  : name[paramid,17] value[0xFF69B3,16738739,0.000000]
123: scalingrpn = x,0.3515625,*,45,-
  : name[scalingrpn,18] value[x,0.3515625,*,45,-,0,0.000000]
124: ; scaling = (x*.3515625)-45
125: paramname = WGDC
  : name[paramname,16] value[WGDC,0,0.000000]
126: paramid = 0x000030
  : name[paramid,17] value[0x000030,48,0.000000]
127: scalingrpn = x,0.3921569,*
  : name[scalingrpn,18] value[x,0.3921569,*,0,0.000000]
128: paramname = tgt_boost4
  : name[paramname,16] value[tgt_boost4,0,0.000000]
129: paramid = 0xFF641C
  : name[paramid,17] value[0xFF641C,16737308,0.000000]
130: ; databits = 32
131: isfloat = 1
  : name[isfloat,24] value[1,1,1.000000]
132: scalingrpn = 0.001333224,x,760,-,*
  : name[scalingrpn,18] value[0.001333224,x,760,-,*,0,0.001333]
133: ; scaling = (x-760)*0.001333224
134: paramname = MAP
  : name[paramname,16] value[MAP,0,0.000000]
135: paramid = 0x00000D
  : name[paramid,17] value[0x00000D,13,0.000000]
136: scalingrpn = x, 0.01000416, *
  : name[scalingrpn,18] value[x,,0,0.000000]
137: ; scaling = x*37/255/14.50377
138: paramname = ATM
  : name[paramname,16] value[ATM,0,0.000000]
139: paramid = 0x000023
  : name[paramid,17] value[0x000023,35,0.000000]
140: scalingrpn = x, 0.01000416, *
  : name[scalingrpn,18] value[x,,0,0.000000]
141: ; scaling = x*37/255/14.50377
142: paramname = IPW ; injector #1 pulse width
  : name[paramname,16] value[IPW,0,0.000000]
143: paramid = 0x000020
  : name[paramid,17] value[0x000020,32,0.000000]
144: scalingrpn = x,0.256,*
  : name[scalingrpn,18] value[x,0.256,*,0,0.000000]
145: ; some samples of logging "bitfield" values that are not whole bytes
146: ; if you want to log more that one of these efficently, group them by
147: ; paramid and the OP2 will only issue a single request to get all of
148: ; the bits within each paramid
149: ; paramname = ignition_sw
150: ; paramid = 0x62
151: ; databits = 1
152: ; offsetbits = 3
153: ; to still acquire a parameter (perhaps for triggering or a calculation)
154: ; but not record it in the log, set isvisible equal to zero (it is 1 by default)
155: ; isvisible = 0
156: ; paramname = AC_sw
157: ; paramid = 0x62
158: ; databits = 1
159: ; offsetbits = 1
160: ; isvisible = 0
161: ; paramname = defogger_sw
162: ; paramid = 0x64
163: ; databits = 1
164: ; offsetbits = 5
165: ; isvisible = 0
166: ; paramname = blower_sw
167: ; paramid = 0x64
168: ; databits = 1
169: ; offsetbits = 4
170: ; isvisible = 0
171: ; paramname = clutch_sw
172: ; paramid = 0x121
173: ; databits = 1
174: ; offsetbits = 7
175: ; paramname = brake_sw
176: ; paramid = 0x121
177: ; databits = 1
178: ; offsetbits = 3
179: ;----------------inno----------------
180: type=inno
  : name[type,8] value[inno,0,0.000000]
181: ; log from an innovate bus via the 3/32" jack
182: ; currently the LC-1 is the only supported device
183: ; in the "inno" case the parameters are already pre-defined, you just
184: ; need to reference them by name so that they are included in the log
185: ; output. note that these parameters won't become valid until the LC-1
186: ; has been calibrated and the sensor is warmed up.
187: paramname = inno.afr
  : name[paramname,16] value[inno.afr,0,0.000000]
188: ; paramname = inno.lambda
189: ;----------------adc----------------
190: ; type=adc       ; log from built in ADC channels
191: ; paramname=battvolts
192: ; paramid=16      ; paramid is pin number on OBD connector
193:          ; valid pins are 8 and 16
194:          ; values are pre-scaled to millivolts
195: ; scalingrpn=x,0.001,*    ; here we scale to volts
196: ; paramname=ignvolts   ; on newer subarus pin 8 is connected to the ignition voltage
197: ; paramid=8      ; paramid is pin number on OBD connector
198:          ; valid pins are 8 and 16
199:          ; values are pre-scaled to millivolts
200: ; scalingrpn=x,0.001,*    ; here we scale to volts
201: ;-------------calculated parameter---------------
202: ;
203: ; you can derive calculated parameters from other parameters
204: ; using RPN expressions
205: ;
206: type = calc            
  : name[type,8] value[calc,0,0.000000]
207: paramname = IDC
  : name[paramname,16] value[IDC,0,0.000000]
208: scalingrpn = RPM,IPW,*,0.0008333333,*
  : name[scalingrpn,18] value[RPM,IPW,*,0.0008333333,*,0,0.000000]
209: paramname = MRP_Corrected
  : name[paramname,16] value[MRP_Corrected,0,0.000000]
210: scalingrpn = MAP,ATM,-
  : name[scalingrpn,18] value[MAP,ATM,-,0,0.000000]
211: ;-------------triggers---------------
212: ;
213: ; note that parameters must be previously defined
214: ; before defining triggers using them
215: ;
216: ; triggers allow you to control when logging starts and stops
217: ; this example sets up triggers such that logging only occurs
218: ; when the engine is running (RPM > 0)
219: ;
220: ; triggers consist of a condition (a RPN expression using comparison operators)
221: ; and an action. the RPN comparison operators match those in the C language:
222: ;
223: ; > < >= <= == != && ||
224: ;
225: ; if the condition evaluates to a non-zero value, that action is taken
226: conditionrpn = RPM,0,>   
  : name[conditionrpn,48] value[RPM,0,>,0,0.000000]
227: action = start
  : name[action,49] value[start,0,0.000000]
228: conditionrpn = RPM,0,==
  : name[conditionrpn,48] value[RPM,0,==,0,0.000000]
229: action = stop
  : name[action,49] value[stop,0,0.000000]
230: ; here is a second triggering example using the rear defogger switch
231: ; uncomment it and comment out the sample above to use it
232: ;conditionrpn = defogger_sw,1,==
233: ;action = start
234: ;conditionrpn = defogger_sw,0,==
235: ;action = stop

--- log config dump ---


channel type: ssmk
protocol id: 3
baud: 4800

param name: RPM
param id: 0x0000000E
read width: 2 bytes
data width: 16 bits
data offset: 0 bits
float: 0
low priority: 0
scaling: x,0.250000,*

param name: speed
param id: 0x00000010
read width: 1 bytes
data width: 8 bits
data offset: 0 bits
float: 0
low priority: 0
scaling: x

param name: IAM4
param id: 0x00FF2AD4
read width: 4 bytes
data width: 32 bits
data offset: 0 bits
float: 1
low priority: 0
scaling: x

param name: ThrottleOpeningAngle
param id: 0x00000015
read width: 1 bytes
data width: 8 bits
data offset: 0 bits
float: 0
low priority: 0
scaling: x,0.392157,*

param name: CLOLStat
param id: 0x00FF8D69
read width: 1 bytes
data width: 8 bits
data offset: 0 bits
float: 0
low priority: 0
scaling: x,6.000000,+

param name: load4grev
param id: 0x00FF6678
read width: 4 bytes
data width: 32 bits
data offset: 0 bits
float: 1
low priority: 0
scaling: x

param name: est_afr4
param id: 0x00FF6C08
read width: 4 bytes
data width: 32 bits
data offset: 0 bits
float: 1
low priority: 0
scaling: 14.700000,1.000000,x,+,/

param name: AFR2
param id: 0x00FF699E
read width: 2 bytes
data width: 16 bits
data offset: 0 bits
float: 0
low priority: 0
scaling: 14.700000,x,0.000122,*,*

param name: Pri_OL_Enrich
param id: 0x00FF6982
read width: 2 bytes
data width: 16 bits
data offset: 0 bits
float: 0
low priority: 0
scaling: 14.700000,1.000000,x,0.000031,*,+,/

param name: MassAirFlow
param id: 0x00000013
read width: 2 bytes
data width: 16 bits
data offset: 0 bits
float: 0
low priority: 0
scaling: x,0.010000,*

param name: MAFv
param id: 0x0000001D
read width: 1 bytes
data width: 8 bits
data offset: 0 bits
float: 0
low priority: 0
scaling: x,0.020000,*

param name: IAT
param id: 0x00000012
read width: 1 bytes
data width: 8 bits
data offset: 0 bits
float: 0
low priority: 0
scaling: x,40.000000,-

param name: Ign_Tot_Timing
param id: 0x00000011
read width: 1 bytes
data width: 8 bits
data offset: 0 bits
float: 0
low priority: 0
scaling: x,128.000000,-,0.500000,*

param name: kca4
param id: 0x00FF7398
read width: 4 bytes
data width: 32 bits
data offset: 0 bits
float: 1
low priority: 0
scaling: x

param name: FKC4
param id: 0x00FF739C
read width: 4 bytes
data width: 32 bits
data offset: 0 bits
float: 1
low priority: 0
scaling: x

param name: FLKC1
param id: 0x00FF69B3
read width: 1 bytes
data width: 8 bits
data offset: 0 bits
float: 0
low priority: 0
scaling: x,0.351563,*,45.000000,-

param name: WGDC
param id: 0x00000030
read width: 1 bytes
data width: 8 bits
data offset: 0 bits
float: 0
low priority: 0
scaling: x,0.392157,*

param name: tgt_boost4
param id: 0x00FF641C
read width: 4 bytes
data width: 32 bits
data offset: 0 bits
float: 1
low priority: 0
scaling: 0.001333,x,760.000000,-,*

param name: MAP
param id: 0x0000000D
read width: 1 bytes
data width: 8 bits
data offset: 0 bits
float: 0
low priority: 0
scaling: x

param name: ATM
param id: 0x00000023
read width: 1 bytes
data width: 8 bits
data offset: 0 bits
float: 0
low priority: 0
scaling: x

param name: IPW
param id: 0x00000020
read width: 1 bytes
data width: 8 bits
data offset: 0 bits
float: 0
low priority: 0
scaling: x,0.256000,*

channel type: inno
protocol id: 9
baud: 19200

param name: inno.afr
param id: 0x00000000
read width: 1 bytes
data width: 8 bits
data offset: 0 bits
float: 0
low priority: 0
scaling: x

channel type: calc

param name: IDC
scaling: RPM,IPW,*,0.000833,*

param name: MRP_Corrected
scaling: MAP,ATM,-

trigger action: start condition: RPM,0.000000,>
trigger action: stop condition: RPM,0.000000,==

--- storage info ---
log stringlist: 276 chars
log floatlist: 19 floats
worst case ssm request is 135 bytes long, response 48 bytes long and will be sent every 500000us (381189us is fastest possible)
logging interval will be 100000us
chaeoz
 
Posts: 14
Joined: Tue Jul 03, 2007 5:17 pm

Re: Openport Stand-Alone Logging Beta

Postby CasopoliS » Fri Oct 30, 2009 4:38 am

n00b here, asking for some help with the config file.

I have an 08 LGT specB, and here is what I want to log:

A/F Correction #1 (%)
A/F Learning #1 (%)
A/F Sensor #1 (AFR)
Engine Load (2-byte)** (g/rev)
Engine Speed (rpm)
Knock Sum* (count)
Manifold Relative Pressure (Corrected) (psi)
Innovate LC-1 (AFR)
CL/OL fuel status

Here is what I have found in this thread so far, can someone help fill in the blanks? Thank you in advance.

Code: Select all
paramname = RPM           
paramid = 0x00000E
databits = 16   
scalingrpn = x,0.25,*   

paramname = AF1
paramid = 0x000046
databits = 8
scalingrpn = x

paramname = MAP
paramid = 0x00000D
scalingrpn = x, 0.01000416, *

paramname = MassAirFlow
paramid = 0x000013
databits = 16           
scalingrpn = x,0.01,*

paramname = ATM
paramid = 0x000023
scalingrpn = x, 0.01000416, *

paramname=AFC#1
paramid=0x009
scalingrpn = x,128,-,0.781,*

paramname=AFL#1
paramid=0x00A
scalingrpn = x,128,-,0.781,*

type = calc           

paramname = MRP_Corrected
scalingrpn = MAP,ATM,-

conditionrpn = RPM,0,>,CT,76,>,&&
action = start

conditionrpn = RPM,0,==
action = stop
CasopoliS
 
Posts: 25
Joined: Sun Aug 13, 2006 2:08 pm

Re: Openport Stand-Alone Logging Beta

Postby altaic » Fri Oct 30, 2009 9:54 am

cboles wrote:I hear you on the OSX library. My dev Mac kicked the bucket a couple of weeks back and I need to fix the power supply to get back to that machine. I should be set up for a pretty quick port of op20pt32.dll though. The only big issue on OSX at the moment is that there is some goofiness with USB composite devices that have communication device class (CDC) devices as one of the devices. This means that you can't have the SD card plugged in and have the OP2 work on a Mac right now. I have someone at Apple that has already made a fix to their CDC driver, but it never seems to make it into any of their releases.

...and yes, you can operate all physical buses on the OP2 simultaneously. You can even tee CAN and ISO15765 data and analyze it via both protocols as well.


That's great that it can handle both busses at once. I'd hate to have to go to the dealer twice to have them do the TPMS. :o

Seems like there are a fair number of bugs like the one you mentioned that go under the radar at Apple. At least it's not really a show stopper for the OP2, though, considering the SD logging functionality is just beta right now and most users haven't even tried it.

I hear you about dev machines kicking the bucket... My laptop bit it this week and I had to replace it (it was ~4 years old). If you'd like I can test the mac op20pt32 port for you. I develop a lot for the mac, and I'm happy to offer any assistance towards getting it ported.
altaic
 
Posts: 23
Joined: Mon Nov 12, 2007 12:20 pm

Re: Openport Stand-Alone Logging Beta

Postby sql_dev » Fri Oct 30, 2009 11:21 am

Hi Colby,

I just tried again and I still have the same issue. Please see my cfg file below. My car is 2009 WRX. I verified I have the latest OP2 firmware version 1.10.2702.

Code: Select all
debug=noout

; we are logging SSM via CAN
type = ssmcan            

paramname = RPM            
paramid = 0x0E            
databits = 16            
scalingrpn = x,0.25,*   


; continue specifying other parameters
paramname = Load
paramid = 0x07
scalingrpn = x,0.3921569,*

paramname = Speed
paramid = 0x10
scalingrpn = x,0.621371192,*

paramname = Throttle
paramid = 0x15
scalingrpn = x,0.3921569,*

paramname = Timing
paramid = 0x11
scalingrpn = x,128,-,0.5,*


paramname = AF_Corr_#1
paramid = 0x09
scalingrpn = x,128,-,0.78125,*

paramname = AF_Learn_#1
paramid = 0x0A
scalingrpn = x,128,-,0.78125,*

paramname = AF_Sensor_#1_AFR
paramid = 0x46
scalingrpn = x,0.11484375,* ;AFR
;scalingrpn = x,128,/,14.7,* ;AFR
;scalingrpn = x,0.0078125,* ;Lambda

paramname = Fine_Learning_KC
paramid = 0x000199
scalingrpn = x,0.25,*,32,-

paramname = Manifold_abs_Pressure_PSI
paramid = 0x0D
scalingrpn = x,0.14509804,*

;; any param below causes the issue. OP2 will create multiple small files, two rows in each
;paramname = Engine_Load_1b
;paramid = 0xFF6A06
;scalingrpn = x,0.015625,*

;paramname = Feedback_KC
;paramid = 0xFF6A10
;scalingrpn = x,0.3515625,*,45,-

;paramname = Target_Boost_psi_abs
;paramid = 0xFF6A00
;databits = 16            
;scalingrpn = x,0.01933677,*

;paramname = Turbo_Dynamics_Integral
;paramid = 0xFF5E8C
;isfloat=1
;scalingrpn = x

;paramname = Turbo_Dynamics_Prop
;paramid = 0xFF5E88
;isfloat=1
;scalingrpn = x
;; any param above causes the issue. OP2 will create multiple small files, two rows in each


paramname = IAT
paramid = 0x12
scalingrpn = x,0.40,-
priority = 2

;paramname = coolant_temp
;paramid = 0x08
;scalingrpn = x,0.40,-
;priority = 2

;paramname = battery_volts
;paramid = 0x1C
;scalingrpn = x,0.08,*
;priority = 2

;paramname = mrp
;paramid = 0x24
;scalingrpn = x,128,-,0.145098,*

paramname = MAF
paramid = 0x13
databits = 16            
scalingrpn = x,0.01,*

paramname = WGDC
paramid = 0x30
scalingrpn = x,0.3921569,*

paramname = IPW ; injector #1 pulse width
paramid = 0x11
scalingrpn = x,0.256,*

paramname = IAM
paramid = 0xF9
scalingrpn = x,0.0625,*

; some samples of logging "bitfield" values that are not whole bytes
; if you want to log more that one of these efficently, group them by
; paramid and the OP2 will only issue a single request to get all of
; the bits within each paramid

paramname = ignition_sw
paramid = 0x62
databits = 1
offsetbits = 3
isvisible = 0

; to still acquire a parameter (perhaps for triggering or a calculation)
; but not record it in the log, set isvisible equal to zero (it is 1 by default)
isvisible = 0

paramname = AC_sw
paramid = 0x62
databits = 1
offsetbits = 1
isvisible = 0

paramname = defogger_sw
paramid = 0x64
databits = 1
offsetbits = 5
isvisible = 0

paramname = blower_sw
paramid = 0x64
databits = 1
offsetbits = 4
isvisible = 0

paramname = clutch_sw
paramid = 0x121
databits = 1
offsetbits = 7
isvisible = 0

paramname = brake_sw
paramid = 0x121
databits = 1
offsetbits = 3
isvisible = 0

paramname = coast_sw
paramid = 0x121
databits = 1
offsetbits = 5
isvisible = 0

;-------------calculated parameter---------------
;
;type = calc            

;paramname = IDC
;scalingrpn = RPM,IPW,*,0.0008333333,*

;-------------triggers---------------
;

conditionrpn = RPM,0,>   
action = start

conditionrpn = RPM,0,==
action = stop



sql_dev wrote:Sorry to repost, but I still have no solution for this.
OP2 creates many-many files as soon as I try to add a param with long ID (like this: 0xFF6A00).

Please help!
Alex.
sql_dev
 
Posts: 20
Joined: Thu Oct 26, 2006 7:36 am

Re: Openport Stand-Alone Logging Beta

Postby mdedwar » Fri Oct 30, 2009 11:41 am

sql_dev wrote:Hi Colby,

I just tried again and I still have the same issue. Please see my cfg file below. My car is 2009 WRX. I verified I have the latest OP2 firmware version 1.10.2702.

Code: Select all
debug=noout

; we are logging SSM via CAN
type = ssmcan            

paramname = RPM            
paramid = 0x0E            
databits = 16            
scalingrpn = x,0.25,*   


; continue specifying other parameters
paramname = Load
paramid = 0x07
scalingrpn = x,0.3921569,*

paramname = Speed
paramid = 0x10
scalingrpn = x,0.621371192,*

paramname = Throttle
paramid = 0x15
scalingrpn = x,0.3921569,*

paramname = Timing
paramid = 0x11
scalingrpn = x,128,-,0.5,*


paramname = AF_Corr_#1
paramid = 0x09
scalingrpn = x,128,-,0.78125,*

paramname = AF_Learn_#1
paramid = 0x0A
scalingrpn = x,128,-,0.78125,*

paramname = AF_Sensor_#1_AFR
paramid = 0x46
scalingrpn = x,0.11484375,* ;AFR
;scalingrpn = x,128,/,14.7,* ;AFR
;scalingrpn = x,0.0078125,* ;Lambda

paramname = Fine_Learning_KC
paramid = 0x000199
scalingrpn = x,0.25,*,32,-

paramname = Manifold_abs_Pressure_PSI
paramid = 0x0D
scalingrpn = x,0.14509804,*

;; any param below causes the issue. OP2 will create multiple small files, two rows in each
;paramname = Engine_Load_1b
;paramid = 0xFF6A06
;scalingrpn = x,0.015625,*

;paramname = Feedback_KC
;paramid = 0xFF6A10
;scalingrpn = x,0.3515625,*,45,-

;paramname = Target_Boost_psi_abs
;paramid = 0xFF6A00
;databits = 16            
;scalingrpn = x,0.01933677,*

;paramname = Turbo_Dynamics_Integral
;paramid = 0xFF5E8C
;isfloat=1
;scalingrpn = x

;paramname = Turbo_Dynamics_Prop
;paramid = 0xFF5E88
;isfloat=1
;scalingrpn = x
;; any param above causes the issue. OP2 will create multiple small files, two rows in each


paramname = IAT
paramid = 0x12
scalingrpn = x,0.40,-
priority = 2

;paramname = coolant_temp
;paramid = 0x08
;scalingrpn = x,0.40,-
;priority = 2

;paramname = battery_volts
;paramid = 0x1C
;scalingrpn = x,0.08,*
;priority = 2

;paramname = mrp
;paramid = 0x24
;scalingrpn = x,128,-,0.145098,*

paramname = MAF
paramid = 0x13
databits = 16            
scalingrpn = x,0.01,*

paramname = WGDC
paramid = 0x30
scalingrpn = x,0.3921569,*

paramname = IPW ; injector #1 pulse width
paramid = 0x11
scalingrpn = x,0.256,*

paramname = IAM
paramid = 0xF9
scalingrpn = x,0.0625,*

; some samples of logging "bitfield" values that are not whole bytes
; if you want to log more that one of these efficently, group them by
; paramid and the OP2 will only issue a single request to get all of
; the bits within each paramid

paramname = ignition_sw
paramid = 0x62
databits = 1
offsetbits = 3
isvisible = 0

; to still acquire a parameter (perhaps for triggering or a calculation)
; but not record it in the log, set isvisible equal to zero (it is 1 by default)
isvisible = 0

paramname = AC_sw
paramid = 0x62
databits = 1
offsetbits = 1
isvisible = 0

paramname = defogger_sw
paramid = 0x64
databits = 1
offsetbits = 5
isvisible = 0

paramname = blower_sw
paramid = 0x64
databits = 1
offsetbits = 4
isvisible = 0

paramname = clutch_sw
paramid = 0x121
databits = 1
offsetbits = 7
isvisible = 0

paramname = brake_sw
paramid = 0x121
databits = 1
offsetbits = 3
isvisible = 0

paramname = coast_sw
paramid = 0x121
databits = 1
offsetbits = 5
isvisible = 0

;-------------calculated parameter---------------
;
;type = calc            

;paramname = IDC
;scalingrpn = RPM,IPW,*,0.0008333333,*

;-------------triggers---------------
;

conditionrpn = RPM,0,>   
action = start

conditionrpn = RPM,0,==
action = stop



sql_dev wrote:Sorry to repost, but I still have no solution for this.
OP2 creates many-many files as soon as I try to add a param with long ID (like this: 0xFF6A00).

Please help!
Alex.


You have the type wrong. You need to use type=ssmk if you want to use ram params.
mdedwar
 
Posts: 24
Joined: Sun Oct 04, 2009 3:23 pm

Re: Openport Stand-Alone Logging Beta

Postby dolphin » Fri Oct 30, 2009 4:06 pm

Tephra wrote:dont u need to say databits=16 to get 2bytes?


Just for the fact:
I have tried to insert this in my logcfg file, but without any sucess. :)
Also, I have learned that data in *.csv files is very inconsistent, it's very random :roll: Every time I open csv file, I need ctrl+a -> ctrl+1 -> text, and still many cells show random data, for example:
Code: Select all
ECULoad
63.75
63.75
22767
22767
61875
22767
61.25
61875
60625
60625
60
59375

Code: Select all
RPM
2531.25
2531.25
2531.25
241913
2593.75
2593.75
2593.75
2625
2656.25
2656.25
2656.25

Stand-alone logging is a very nice idea, but it's not very practical yet :D :D
dolphin
 
Posts: 10
Joined: Fri Dec 14, 2007 2:47 am

Re: Openport Stand-Alone Logging Beta

Postby freakin » Sat Oct 31, 2009 5:42 pm

testers wanted for a beta tool for creating the logcfg.txt file
http://forums.openecu.org/viewtopic.php?f=57&t=4396
freakin
 
Posts: 44
Joined: Sat Oct 31, 2009 5:20 pm

Re: Openport Stand-Alone Logging Beta

Postby CasopoliS » Sun Nov 01, 2009 11:48 am

Ok I created a logcfg file and I get no CSV files. I have tried multiple trigger methods and still no CSVs. I do get a logcfg.out file though.

Code: Select all
01: type = ssmcan
  : name[type,8] value[ssmcan,0,0.000000]
02: paramname = rpm
  : name[paramname,16] value[rpm,0,0.000000]
03: paramid = 0x00000E
  : name[paramid,17] value[0x00000E,14,0.000000]
04: databits = 16
  : name[databits,22] value[16,16,16.000000]
05: scalingrpn = x,4,/
  : name[scalingrpn,18] value[x,4,/,0,0.000000]
06: paramname = Front_O2_Sensor_#1(V)
  : name[paramname,16] value[Front_O2_Sensor_#1(V),0,0.000000]
07: paramid = 0x000016
  : name[paramid,17] value[0x000016,22,0.000000]
08: databits = 16
  : name[databits,22] value[16,16,16.000000]
09: scalingrpn = x,200,/
  : name[scalingrpn,18] value[x,200,/,0,0.000000]
10: paramname = A/F_Sensor_#1(AFR)
  : name[paramname,16] value[A/F_Sensor_#1(AFR),0,0.000000]
11: paramid = 0x000046
  : name[paramid,17] value[0x000046,70,0.000000]
12: databits = 8
  : name[databits,22] value[8,8,8.000000]
13: scalingrpn = x,128,/,14.7,*
  : name[scalingrpn,18] value[x,128,/,14.7,*,0,0.000000]
14: paramname = Engine_Load_(4-Byte)*(g/rev)
  : name[paramname,16] value[Engine_Load_(4-Byte)*(g/rev),0,0.000000]
15: paramid = 0xFF6C40
  : name[paramid,17] value[0xFF6C40,16739392,0.000000]
16: isfloat = 1
  : name[isfloat,24] value[1,1,1.000000]
17: scalingrpn = x
  : name[scalingrpn,18] value[x,0,0.000000]
18: paramname = A/F_Learning_#1_(4-byte)*(%)
  : name[paramname,16] value[A/F_Learning_#1_(4-byte)*(%),0,0.000000]
19: paramid = 0xFF793D
  : name[paramid,17] value[0xFF793D,16742717,0.000000]
20: isfloat = 1
  : name[isfloat,24] value[1,1,1.000000]
21: scalingrpn = x,100,*
  : name[scalingrpn,18] value[x,100,*,0,0.000000]
22: paramname = A/F_Correction_#1_(4-byte)*(%)
  : name[paramname,16] value[A/F_Correction_#1_(4-byte)*(%),0,0.000000]
23: paramid = 0xFF764C
  : name[paramid,17] value[0xFF764C,16741964,0.000000]
24: isfloat = 1
  : name[isfloat,24] value[1,1,1.000000]
25: scalingrpn = x,100,*,100,-
  : name[scalingrpn,18] value[x,100,*,100,-,0,0.000000]
26: paramname = Manifold_Relative_Pressure_(4-byte)*(psi_relative)
  : name[paramname,16] value[Manifold_Relative_Pressure_(4-byte)*(psi_relative),0,0.000000]
27: paramid = 0xFF6A78
  : name[paramid,17] value[0xFF6A78,16738936,0.000000]
28: isfloat = 1
  : name[isfloat,24] value[1,1,1.000000]
29: scalingrpn = x,0.01933677,*
  : name[scalingrpn,18] value[x,0.01933677,*,0,0.000000]
30: paramname = Knock_Sum*(count)
  : name[paramname,16] value[Knock_Sum*(count),0,0.000000]
31: paramid = 0xFF7FEC
  : name[paramid,17] value[0xFF7FEC,16744428,0.000000]
32: databits = 8
  : name[databits,22] value[8,8,8.000000]
33: scalingrpn = x
  : name[scalingrpn,18] value[x,0,0.000000]
34: conditionrpn = rpm,0,>
  : name[conditionrpn,48] value[rpm,0,>,0,0.000000]
35: action = start
  : name[action,49] value[start,0,0.000000]
36: conditionrpn = rpm,0,==
  : name[conditionrpn,48] value[rpm,0,==,0,0.000000]
37: action = stop
  : name[action,49] value[stop,0,0.000000]

--- log config dump ---


channel type: ssmcan
protocol id: 6
baud: 500000

param name: rpm
param id: 0x0000000E
read width: 2 bytes
data width: 16 bits
data offset: 0 bits
float: 0
low priority: 0
scaling: x,4.000000,/

param name: Front_O2_Sensor_#1(V)
param id: 0x00000016
read width: 2 bytes
data width: 16 bits
data offset: 0 bits
float: 0
low priority: 0
scaling: x,200.000000,/

param name: A/F_Sensor_#1(AFR)
param id: 0x00000046
read width: 1 bytes
data width: 8 bits
data offset: 0 bits
float: 0
low priority: 0
scaling: x,128.000000,/,14.700000,*

param name: Engine_Load_(4-Byte)*(g/rev)
param id: 0x00FF6C40
read width: 4 bytes
data width: 32 bits
data offset: 0 bits
float: 1
low priority: 0
scaling: x

param name: A/F_Learning_#1_(4-byte)*(%)
param id: 0x00FF793D
read width: 4 bytes
data width: 32 bits
data offset: 0 bits
float: 1
low priority: 0
scaling: x,100.000000,*

param name: A/F_Correction_#1_(4-byte)*(%)
param id: 0x00FF764C
read width: 4 bytes
data width: 32 bits
data offset: 0 bits
float: 1
low priority: 0
scaling: x,100.000000,*,100.000000,-

param name: Manifold_Relative_Pressure_(4-byte)*(psi_relative)
param id: 0x00FF6A78
read width: 4 bytes
data width: 32 bits
data offset: 0 bits
float: 1
low priority: 0
scaling: x,0.019337,*

param name: Knock_Sum*(count)
param id: 0x00FF7FEC
read width: 1 bytes
data width: 8 bits
data offset: 0 bits
float: 0
low priority: 0
scaling: x

trigger action: start condition: rpm,0.000000,>
trigger action: stop condition: rpm,0.000000,==

--- storage info ---
log stringlist: 241 chars
log floatlist: 7 floats
worst case ssm request is 72 bytes long, response 27 bytes long and will be sent every 50000us (30000us is fastest possible)
logging interval will be 50000us
Attachments
LogCfg.txt
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CasopoliS
 
Posts: 25
Joined: Sun Aug 13, 2006 2:08 pm

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