Dual CANbus monitor and instrumentation cluster. Presently tuned for the Nissan Leaf EV.

Dependencies:   SPI_TFTx2_ILI9341 TFT_fonts TOUCH_TFTx2_ILI9341 mbed

Fork of CANary_corrupt by Tick Tock

After adding the LPC1768 platform, import as a program and do not select the "update to latest revision" box

User Guide

Eagle Schematic and Board design

/media/uploads/TickTock/canaryr6.zip

/media/uploads/TickTock/canary_sch.jpg

/media/uploads/TickTock/canaryr6brd.jpg

For LCD Rev 1.01:

/media/uploads/TickTock/lcdsch.jpg

For VCD Rev 2.00:

/media/uploads/TickTock/lcdr2.jpg

Parts List

qtyinstancepart #packagesupplierDescription
1BAT3Vhttp://www.ebay.com/itm/10x-CR2032-SMD-Battery-Holder-for-CR2032-Battery-/180938057979?pt=LH_DefaultDomain_0&hash=item2a20bfa8fbLithium 2032 coin battery holder
4C1-C4ECST1DC106R6032Tantalium capacitor 10uF
3FC1-FC3ZF1-20-01-T-WThttp://www.samtec.com/cable-systems/idc-ffc/ffc/zero-insertion.aspx20 conductor 1mm pitch flex cable connector (optional)
1FJ-20-R-08.00-4http://www.samtec.com/cable-systems/idc-ffc/ffc/zero-insertion.aspx8\" 20 conductor 1mm pitch flex connector, end reversed (optional)
2H1-H4(DON'T populate H1-H4 headers - solder mbed directly)
1H5http://www.ebay.com/itm/221186042943?ssPageName=STRK:MEWNX:IT&_trksid=p3984.m1497.l26491x12 .1\" pitch header (optional)
1H62x6 .1\" pitch header (optional)
2IC1,IC2VP230LMDSOP8http://www.ebay.com/itm/130488665247?ssPageName=STRK:MEWNX:IT&_trksid=p3984.m1497.l2649canbus transciever
1IC3LM1117-5VSOT2235V regulator
5JP*2 pin .1\" jumper header
1mbedLPC1768http://www.ebay.com/itm/200830573509?ssPageName=STRK:MEWNX:IT&_trksid=p3984.m1497.l2649mbed uC
2Q1,Q22N2222SOT23General purpose NPN transistor
1R1R393M120639K resistor
1R2R103M120610K resistor
4R4-R6R102M12061K resistor
1R3R500M120650 Ohm resistor
2TR1-TR5ZJYS81R5-2PL51TG01http://www.digikey.com/product-detail/en/ZJYS81R5-2PL51T-G01/445-2223-1-ND/765232CM Choke
1Z11N5340BGC1702-15http://www.ebay.com/itm/150878122425?ssPageName=STRK:MEWNX:IT&_trksid=p3984.m1497.l26496V, 5W Zener Diode
1Z1DC-DC conveterhttp://www.ebay.com/itm/251142727849?ssPageName=STRK:MEWNX:IT&_trksid=p3984.m1497.l264912V-7V, 3W DC-DC converter
1X1USBhttp://www.ebay.com/itm/New-Vertical-USB-2-0-A-pcb-connector-socket-USB-A-Type-/300553895292?pt=LH_DefaultDomain_0&hash=item45fa687d7cvertical USB connector
2LCD0,LCD1TFThttp://www.mikroe.com/add-on-boards/display/tft-proto/320x240 LCD with touch screen
1E0Enclosurehttp://www.shapeways.com/model/1077799/canary.html?li=user-profile&materialId=63d printed enclosure

Assembly

1) LCD Displays

I found ribbon cable is a nice way to organize the wires to the displays. There are two versions of the display and each must be wired differently. The original project used HW REV. 1.01. For that version, you'll need 12 conductors and I connected them in the following order:

1LED+
2LED-
3RST
4SDI
5WR/SCLK
6CS
7X+
8X-
9Y+
10Y-
11VDD
12GND

If, instead, you have HW REV 2.0, you will need 13 conductors with the following order:

1LED+
2LED-
3RST
4SDI
5RS (SCLK)
6WR (DC)
7CS
8X+
9X-
10Y+
11Y-
12VDD
13GND

First I connected all the GND connections (2 GND & IM0, IM1, IM3 for REV1.01 or 2 GND, RD, & IM0 for REV2.00). Do not connect the bottom GND until you have the ribbon cable connected. After making all the ribbon cable connections (connecting the GND of the ribbon cable to the bottom GND pad), solder the GND bar from the previous step to the back of the bottom GND connection. Finally, make a connection from the back side 3.3V pin to IM2 for REV1.01 or to IM1,IM2,&IM3 for REV2.00. Take a break and repeat for the second display.

Examples of REV1.01 boards:

/media/uploads/TickTock/lcdtop.jpg /media/uploads/TickTock/lcdbot.jpg

Examples of REV2.00:

/media/uploads/TickTock/rev2front.jpg /media/uploads/TickTock/rev2back.jpg

Once the two displays are complete combine all wires except CS0, CS1, X+, X-, Y+, and Y-. Connect X- of the left display to X+ of the right. Similarly connect Y- of the left display to Y+ of the right. Insulate any exposed wires.

2) PCB

Refer to the schematics to place all the components on the board. If you plan to install into the CANary 3D enclosure, DO NOT install the battery holder or the socket for the mbed and, instead, connect two wires to the VB and GND pads nearby. You will have to install the battery holder against the back wall to avoid interfering with the right-hand display and the mbed will have to be directly soldered. I have not found a socket with a low enough profile to fit in the space provided (depth of enclosure is limited by the space behind the center console). Also, I recommend keeping as much lead as possible on the Zener diode (bending it as shown to clear the back wall). Although it is operating well within parameters, the Zener gets quite hot during extended operation and the leads help dissipate the heat and keep it away from the PCB and other components.Update: Several Zeners have failed resulting in damage to some users boards so I recommend using a DC-DC converter instead to bring the 12V down to 7V.

/media/uploads/TickTock/pcbtop.jpg /media/uploads/TickTock/pcbbot.jpg

Once the PCB is populated, solder the LCDs to the PCB. CS0 connects to the right display and CS1 connects to the left. /media/uploads/TickTock/brddis.jpg

Update: The Zener diodes tended to fail after a few months so I am recommending removing them and replacing with a DC-DC converter. This will run cooler and waste less energy, too. To install, remove the left display panel to gain access to the Zener. From there, the Zener can be removed and it's pads used to connect to the DC-DC converter. I recommend setting the output voltage on the bench before installing since the trim pot is tricky to reach once installed. Set it to 7V. The input can be connected to the left pad previously occupied by the zener and the output can connect to the right. GND(-) can be connected to the bottom right pad on the 2x6 header below the flex cable connector. Make sure the GND wire lies flat so it doesn't interfere with the connection of the flex cable. /media/uploads/TickTock/dcdcinst2.jpg

Once soldered in place, the DC-DC converter can easily be mounted to the back wall with double sided tape above the battery holder. /media/uploads/TickTock/dcdcinst3.jpg

3) Testing

1)First step is to buzz out all connections from the LCDs to the pins in the main board
2)Next check the touch screen connections. On the main board, place an Ohm meter across X+ and X-. You should read 700 Ohms. Repeat for Y+ and Y-. Then test the resistance from X+ to Y+. With nothing touching the screens, it should read >100K Ohms and <1K when touching either screen.
3)When all connections are checked, solder in the mbed. Download and install the touch2 program http://mbed.org/users/TickTock/code/touch2/ to test the basic operation of the mbed and touch screens.
tips:
Touch screen is sensitive - excess flux on X+,X-,Y+,Y- connection on mbed can result in flakey operation
If touch is not working, double-check the LCD0_CS and LCD1_CS are not swapped. LCD0_CS must connect to the CS of the LCD that has X- & Y- connected to the mbed. LCD1_CS must connect to the CS of the LCD that has X+ & Y+ connected to the mbed.
4)Once touch2 works, it is time to connect to the OBD connector. I highly recommend double checking all connections from the OBD to the PCB with the cable in place before connecting to the Leaf. Buzz out all the pins in the OBS to make sure none are shorting to each other, Check that the 12V goes to the Zener (and nothing else) and the switched 12V to the resistor divider (and nothing else). Test the ground connection properly connects to ground and nothing else.
5)Once you are confident there are no shorts or wrong connections from the OBD connector, take a deep breath and plug it into your leaf. Touch2 program should come up and function. Unplug and install the latest CANary firmware. If you have the REV2.00 LCD boards, you will need to edit the precompile.h file in the TOUCH_TFTx2_w9341 library and set USE_ILI9341 to 1. Test all features before installing into the enclosure (gids, cellpair, menu system, logging) since installing and removing from the enclosure is a PITA.

/media/uploads/TickTock/pcbdone.jpg /media/uploads/TickTock/functioning.jpg

4) Enclosure

The 3D printer leaves a lot of powder behind - I used a strong spray of water to get it out of all the cracks. The enclosure comes with a rather rough finish. I recommend convincing yourself you like it, then simply lightly sand then paint before assembly. Sanding is very difficult - the nylon is very nicely fused and doesn't want to sand. I tried sandblasting and that didn't work either. I had some limited success with filler and then sanding, but only on the outside - it is too difficult to sand the face. /media/uploads/TickTock/enclosure.jpg

5) Final Assembly

Make sure you are well rested with lots of patience before attempting assembly. It is a puzzle figuring out how to get both displays and the PCB in place. Enclosure was too expensive for me to keep iterating to optimize for assembly. I ended up snipping the thin display posts shorter and using various tools to push the displays into place. Also, some USB connectors are taller than others. If you have one of the taller ones, you will have to deflect the back wall a bit while inserting the PCB (being careful not to bend the housing) to get it to it's opening in the back wall. Do use a screw in the provided post to secure the PCB as USB insertion will otherwise dislodge it.

I added an additional safety line which wraps around the center post to prevent the enclosure from becoming a projectile in the event of an accident. /media/uploads/TickTock/safety.jpg Installed: /media/uploads/TickTock/installed.jpg

Committer:
TickTock
Date:
Tue Jul 02 02:57:36 2013 +0000
Branch:
Metric
Revision:
114:3f8c59a8a2b9
Parent:
112:b41b35401eb6
Child:
115:549410af477d
fixed bug in battery log files (pointing to wrong cellpair locations)

Who changed what in which revision?

UserRevisionLine numberNew contents of line
TickTock 13:62e0f7f39ff5 1 // utility.cpp
TickTock 13:62e0f7f39ff5 2 #include "utility.h"
TickTock 13:62e0f7f39ff5 3
TickTock 13:62e0f7f39ff5 4 void mbed_reset();
TickTock 22:a43df3905863 5
TickTock 13:62e0f7f39ff5 6 void RTC_IRQHandler() {
TickTock 13:62e0f7f39ff5 7 timer.reset(); // zero ms at the-seconds-tic
TickTock 20:3bf176d14b14 8 canIdle=(++secsNoMsg>canTimeout)?true:false;
TickTock 20:3bf176d14b14 9 userIdle=(++secsNoTouch>userTimeout)?true:false;
TickTock 13:62e0f7f39ff5 10 LPC_RTC->ILR |= (1<<0); // clear interrupt to prepare for next
TickTock 34:4751a8259b18 11 tick=true;
garygid 69:6bfdfc002036 12 // will use this to generate a logTP() just before the next Message received.
garygid 69:6bfdfc002036 13 if( (time(NULL) % 60) == 0) ZeroSecTick = true; // gg - at 0-second of each minute
TickTock 13:62e0f7f39ff5 14 }
TickTock 13:62e0f7f39ff5 15
TickTock 37:fea2c1d52c5f 16 void RTC_Init (void) {
TickTock 13:62e0f7f39ff5 17 LPC_RTC->ILR=0x00; // set up the RTC interrupts
TickTock 13:62e0f7f39ff5 18 LPC_RTC->CIIR=0x01; // interrupts each second
TickTock 13:62e0f7f39ff5 19 LPC_RTC->CCR = 0x01; // Clock enable
TickTock 92:935adef49ea4 20 //NVIC_SetPriority( RTC_IRQn, 10 );
TickTock 13:62e0f7f39ff5 21 NVIC_EnableIRQ( RTC_IRQn );
TickTock 13:62e0f7f39ff5 22 }
TickTock 13:62e0f7f39ff5 23
TickTock 93:c2402e8cd0e2 24 void printMsg (char *msg) {
TickTock 13:62e0f7f39ff5 25 strcpy(displayLog[displayLoc],msg);
TickTock 13:62e0f7f39ff5 26 displayLoc=displayLoc>17?0:displayLoc+1;
TickTock 13:62e0f7f39ff5 27 }
TickTock 13:62e0f7f39ff5 28
TickTock 13:62e0f7f39ff5 29 void touch_ISR(){
TickTock 37:fea2c1d52c5f 30 //LPC_GPIOINT->IO2IntClr = (LPC_GPIOINT->IO2IntStatR | LPC_GPIOINT->IO2IntStatF); // seems to work without so maybe not necessary (performed inInterruptIn handler?)
TickTock 35:5acbd8a64a89 31 touched=true; // just set flag - touch screen algorythm is long and we don't want to block other interrupts
TickTock 13:62e0f7f39ff5 32 }
TickTock 13:62e0f7f39ff5 33
TickTock 13:62e0f7f39ff5 34 unsigned short getTimeStamp() {
TickTock 13:62e0f7f39ff5 35 unsigned short msec = timer.read_ms() ; // read ms from the timer
TickTock 13:62e0f7f39ff5 36 unsigned long secs = time(NULL); // seconds past 12:00:00 AM 1 Jan 1900
TickTock 13:62e0f7f39ff5 37 unsigned short isecs = secs%60 ; // modulo 60 for 0-59 seconds from RTC
TickTock 13:62e0f7f39ff5 38 return ((isecs<<10)+msec) ; // return the two byte time stamp
TickTock 13:62e0f7f39ff5 39 }
TickTock 13:62e0f7f39ff5 40
TickTock 13:62e0f7f39ff5 41 void logCan (char mType, CANMessage canRXmsg) {
TickTock 85:5c27e88b3fbe 42
TickTock 85:5c27e88b3fbe 43 // re-arranged to put static first
TickTock 85:5c27e88b3fbe 44 static unsigned char ii = 0;
TickTock 85:5c27e88b3fbe 45 static unsigned char lasti = 0; // indexindex
TickTock 85:5c27e88b3fbe 46 static unsigned char bdi=0;
TickTock 85:5c27e88b3fbe 47 static signed short imotorRPM = 0;
TickTock 85:5c27e88b3fbe 48 static unsigned short nLost = 0; // gg - overrun
TickTock 85:5c27e88b3fbe 49
TickTock 83:52b1f330a62d 50 char sTemp[40];
TickTock 92:935adef49ea4 51 unsigned char changed;
TickTock 108:29b5a760adc2 52 unsigned short i,j,k;
TickTock 92:935adef49ea4 53 signed short packV;
TickTock 92:935adef49ea4 54 signed short packA;
TickTock 40:0e6e71a7323f 55 signed long imWs_x4;
garygid 87:46ac3f2519d6 56 unsigned short ts;
TickTock 85:5c27e88b3fbe 57
TickTock 36:dbd39c315258 58 secsNoMsg=0; // reset deadman switch
garygid 87:46ac3f2519d6 59 if(debugMode||(skin==ggSkin)){
garygid 87:46ac3f2519d6 60 // code to insert actual number of dropped frames for overrun debug - skiped in normal mode to keep logcan short
TickTock 85:5c27e88b3fbe 61 if(logOpen){
TickTock 106:f016912a03db 62 // check to see if buffer is already full (read - write) = 1
TickTock 106:f016912a03db 63 // actually the last buffer location cannot be used because then
TickTock 106:f016912a03db 64 // the buffer would look empty after writePointer++
TickTock 106:f016912a03db 65
TickTock 106:f016912a03db 66 //if (((writePointer+maxBufLen-readPointer)%maxBufLen)>(maxBufLen/16)) // modulo is slow?
TickTock 106:f016912a03db 67
TickTock 106:f016912a03db 68 // pointers are 0 through maxBufLen-1
TickTock 106:f016912a03db 69 if( (readPointer - writePointer) == 1 || (writePointer - readPointer) == (maxBufLen - 1)) {
TickTock 106:f016912a03db 70 // the buffer is "full", so Lose this message
TickTock 85:5c27e88b3fbe 71
TickTock 106:f016912a03db 72 // point to the last-stored message
TickTock 106:f016912a03db 73 int tempWritePointer = writePointer - 1 ;
TickTock 106:f016912a03db 74 if( tempWritePointer < 0 ) tempWritePointer = maxBufLen - 1;
TickTock 106:f016912a03db 75 char strLost[9] ;
TickTock 106:f016912a03db 76
TickTock 106:f016912a03db 77 if( nLost == 0 ) {
TickTock 106:f016912a03db 78 // this is the first message lost
TickTock 106:f016912a03db 79 // and we must overwrite the last message with an FFE comment message
TickTock 106:f016912a03db 80 // So, there will be two messages lost as the comment message is laid in.
TickTock 106:f016912a03db 81 nLost = 2;
TickTock 106:f016912a03db 82 sprintf(strLost,"%s","Lost0002"); // indicate two messages lost
TickTock 85:5c27e88b3fbe 83
TickTock 106:f016912a03db 84 // overlay the last message with a "Lost0002" comment
TickTock 106:f016912a03db 85 writeBuffer[tempWritePointer][0]=0;
TickTock 106:f016912a03db 86 // leave the ts of the overlaid message
TickTock 106:f016912a03db 87 //writeBuffer[tempWritePointer][1]=(ts&0xff00)>>8; // Time Stamp (2 bytes_
TickTock 106:f016912a03db 88 //writeBuffer[tempWritePointer][2]=(ts&0x00ff);
TickTock 106:f016912a03db 89 // force the MsgID to an Event Message
TickTock 106:f016912a03db 90 writeBuffer[tempWritePointer][3]=0xfe; // MsgID, low byte
TickTock 106:f016912a03db 91 writeBuffer[tempWritePointer][4]=0xff; // Len nibble, and MsgID high nibble
TickTock 106:f016912a03db 92 // lay in the "Lost0002" text
TickTock 106:f016912a03db 93 for(i=5;i<13;i++){
TickTock 106:f016912a03db 94 writeBuffer[tempWritePointer][i]= strLost[i-5];
TickTock 85:5c27e88b3fbe 95 }
TickTock 85:5c27e88b3fbe 96 } else {
TickTock 106:f016912a03db 97 // at least one message was previously lost
TickTock 106:f016912a03db 98 // increment the loat counter
TickTock 106:f016912a03db 99 nLost += 1;
garygid 87:46ac3f2519d6 100
TickTock 106:f016912a03db 101 // lay the new count into the comment
TickTock 106:f016912a03db 102 sprintf(strLost,"%04d",nLost);
TickTock 106:f016912a03db 103 for(i=9;i<13;i++){
TickTock 106:f016912a03db 104 writeBuffer[tempWritePointer][i]= strLost[i-9];
TickTock 85:5c27e88b3fbe 105 }
TickTock 106:f016912a03db 106 }
TickTock 106:f016912a03db 107 } else {
TickTock 106:f016912a03db 108 // there is room to insert the message
TickTock 106:f016912a03db 109 // get it inserted quickly
TickTock 106:f016912a03db 110 ts=getTimeStamp();
TickTock 106:f016912a03db 111 writeBuffer[writePointer][0]=mType;
TickTock 106:f016912a03db 112 writeBuffer[writePointer][1]=(ts&0xff00)>>8; // Time Stamp (2 bytes_
TickTock 106:f016912a03db 113 writeBuffer[writePointer][2]=(ts&0x00ff);
TickTock 106:f016912a03db 114 writeBuffer[writePointer][3]=canRXmsg.id&0xff; // MsgID, low byte
TickTock 106:f016912a03db 115 char sLen = canRXmsg.len ;
TickTock 106:f016912a03db 116 writeBuffer[writePointer][4]=(canRXmsg.id>>8)+(sLen<<4); // Len nibble, and MsgID high nibble
TickTock 106:f016912a03db 117 for(i=0;i<8;i++){ // Is there a better way to do this? (writeBuffer[writePointer][i]=canRXmsg.data?)
TickTock 106:f016912a03db 118 if(i<sLen)
TickTock 106:f016912a03db 119 writeBuffer[writePointer][i+5]=canRXmsg.data[i];
TickTock 106:f016912a03db 120 else // i>=sLen
TickTock 106:f016912a03db 121 // force unused data bytes to FF for CAN-Do compatibility
TickTock 106:f016912a03db 122 writeBuffer[writePointer][i+5]=0xFF;
TickTock 85:5c27e88b3fbe 123 }
TickTock 106:f016912a03db 124
TickTock 106:f016912a03db 125 //--------------
TickTock 106:f016912a03db 126 // Note, this is not protected from the interrupt.
TickTock 106:f016912a03db 127 // Due to the nLost code above, this no longer
TickTock 106:f016912a03db 128 // overflows to writePointer = readPointer
TickTock 106:f016912a03db 129 // which would make the buffer look empty
TickTock 106:f016912a03db 130 if (++writePointer >= maxBufLen) {
TickTock 106:f016912a03db 131 writePointer = 0;
TickTock 106:f016912a03db 132 led3 = !led3;
TickTock 106:f016912a03db 133 }
TickTock 106:f016912a03db 134 //--------------
TickTock 106:f016912a03db 135 // log a local message if we had lost messages. gg - logcan
TickTock 106:f016912a03db 136 if( nLost > 0 ) {
TickTock 106:f016912a03db 137 // We previously lost messages that did not get into the buffer
TickTock 106:f016912a03db 138 sprintf(sTemp,"-- Lost %d Messages.\n", nLost);
TickTock 106:f016912a03db 139 printMsg(sTemp); // write buffer overrun
TickTock 106:f016912a03db 140 //spkr.beep(500,0.25);
TickTock 106:f016912a03db 141
TickTock 106:f016912a03db 142 nLost = 0 ;
TickTock 106:f016912a03db 143 }
TickTock 106:f016912a03db 144 //--------------
TickTock 83:52b1f330a62d 145 }
TickTock 85:5c27e88b3fbe 146 }
TickTock 92:935adef49ea4 147 }else{ // not debugMode - keep code short
TickTock 85:5c27e88b3fbe 148 if(logOpen){
TickTock 106:f016912a03db 149 NVIC_DisableIRQ(CAN_IRQn); // Block interrupts until write pointer assigned
TickTock 106:f016912a03db 150 int localWritePointer = writePointer++; // create local copy to make logCan reentrant
TickTock 106:f016912a03db 151 // note that the static variables do not prevent safe reentry
TickTock 106:f016912a03db 152 // since they are only used for msgId<0x800 which will never interrupt
TickTock 106:f016912a03db 153 // another msgId<0x800 (both CANbusses are same priority)
TickTock 106:f016912a03db 154 if (writePointer >= maxBufLen) {
TickTock 106:f016912a03db 155 writePointer = 0;
TickTock 106:f016912a03db 156 led3 = !led3;
TickTock 106:f016912a03db 157 }
TickTock 106:f016912a03db 158 NVIC_EnableIRQ(CAN_IRQn); // Unblock interrupts once local pointer set and global pointer incremented
TickTock 106:f016912a03db 159 ts=getTimeStamp();
TickTock 106:f016912a03db 160 writeBuffer[localWritePointer][0]=mType;
TickTock 106:f016912a03db 161 writeBuffer[localWritePointer][1]=(ts&0xff00)>>8;
TickTock 106:f016912a03db 162 writeBuffer[localWritePointer][2]=(ts&0x00ff);
TickTock 106:f016912a03db 163 writeBuffer[localWritePointer][3]=canRXmsg.id&0xff;
TickTock 106:f016912a03db 164 writeBuffer[localWritePointer][4]=(canRXmsg.id>>8)+(canRXmsg.len<<4);
TickTock 106:f016912a03db 165 for(i=5;i<13;i++){ // Is there a better way to do this? (writeBuffer[localWritePointer][5]=canRXmsg.data?)
TickTock 106:f016912a03db 166 writeBuffer[localWritePointer][i]=canRXmsg.data[i-5];
TickTock 106:f016912a03db 167 }
TickTock 106:f016912a03db 168 if (writePointer==readPointer) {
TickTock 106:f016912a03db 169 // Just caught up to read pointer
TickTock 106:f016912a03db 170 sprintf(sTemp,"Write buffer overrun.\n");
TickTock 106:f016912a03db 171 printMsg(sTemp); // write buffer overrun
TickTock 106:f016912a03db 172 spkr.beep(500,0.25);
TickTock 13:62e0f7f39ff5 173 }
TickTock 13:62e0f7f39ff5 174 }
TickTock 37:fea2c1d52c5f 175 }
TickTock 40:0e6e71a7323f 176
TickTock 83:52b1f330a62d 177 if(canRXmsg.id<0x800){ // Block FFE and FFF messages
TickTock 83:52b1f330a62d 178 if(indexLastMsg[canRXmsg.id]==0) { //Check if no entry
TickTock 92:935adef49ea4 179 //ii=ii<99?ii+1:0; // Should never wrap - less than 100 different messages ever used
garygid 87:46ac3f2519d6 180 if(ii<99) {
TickTock 92:935adef49ea4 181 //indexLastMsg[canRXmsg.id]=ii; //Create entry if first message
garygid 87:46ac3f2519d6 182 indexLastMsg[canRXmsg.id]=++ii; //Create entry for first MsgID occurance
garygid 87:46ac3f2519d6 183 // ii max is 99 here
garygid 87:46ac3f2519d6 184 } else {
garygid 87:46ac3f2519d6 185 // the ii array is full, more than 100 MsgIDs found
garygid 87:46ac3f2519d6 186 if(ii==99) {
TickTock 92:935adef49ea4 187 ii++; // step to 100 to log only one error
garygid 87:46ac3f2519d6 188 sprintf(sTemp,"MsgID buffer overrun.\n");
TickTock 93:c2402e8cd0e2 189 printMsg(sTemp); // write buffer overrun
garygid 87:46ac3f2519d6 190 }
garygid 87:46ac3f2519d6 191 }
TickTock 83:52b1f330a62d 192 }
garygid 87:46ac3f2519d6 193
garygid 87:46ac3f2519d6 194 //----------------
TickTock 85:5c27e88b3fbe 195 if(dMode[0]==changedScreen||dMode[1]==changedScreen){// Skip if not using (for execution speed)
TickTock 83:52b1f330a62d 196 changed=msgChanged[indexLastMsg[canRXmsg.id]];
TickTock 85:5c27e88b3fbe 197 // This is cleared in the main loop when reset button is touched
TickTock 92:935adef49ea4 198 for(i=0;i<8;i++){
TickTock 83:52b1f330a62d 199 if(lastMsg[indexLastMsg[canRXmsg.id]].data[i]!=canRXmsg.data[i]){
TickTock 83:52b1f330a62d 200 changed |= 1<<i;
garygid 80:24f1793171e7 201 }
TickTock 13:62e0f7f39ff5 202 }
TickTock 83:52b1f330a62d 203 msgChanged[indexLastMsg[canRXmsg.id]]=changed;
TickTock 13:62e0f7f39ff5 204 }
garygid 80:24f1793171e7 205
TickTock 83:52b1f330a62d 206 lastMsg[indexLastMsg[canRXmsg.id]]=canRXmsg; //Store in table
garygid 87:46ac3f2519d6 207
garygid 87:46ac3f2519d6 208 //-------------------
TickTock 83:52b1f330a62d 209 //Miscellaneous on-recieve operations below
TickTock 93:c2402e8cd0e2 210 if((mType==1)&&(canRXmsg.id==0x7bb)){ // is battery data? Need to store all responses
TickTock 83:52b1f330a62d 211 if(canRXmsg.data[0]<0x20){
garygid 87:46ac3f2519d6 212 if(canRXmsg.data[3]==2){//Group 2 = cellpair data
garygid 87:46ac3f2519d6 213 bdi=BatDataBaseG2; // index offset for CP data (uses 00 - 1C)
TickTock 97:a25940fd7b5b 214 if(debugMode){
TickTock 97:a25940fd7b5b 215 sprintf(sTemp," Getting cell pair data\n");
TickTock 97:a25940fd7b5b 216 printMsg(sTemp);
TickTock 97:a25940fd7b5b 217 }
garygid 87:46ac3f2519d6 218
garygid 87:46ac3f2519d6 219 }else if(canRXmsg.data[3]==4){//Group 4 = temperature data
garygid 87:46ac3f2519d6 220 bdi=BatDataBaseG4; // index offset for Temperature data (uses 20 - 22)
TickTock 97:a25940fd7b5b 221 if(debugMode){
TickTock 97:a25940fd7b5b 222 sprintf(sTemp," Getting temperature data\n");
TickTock 97:a25940fd7b5b 223 printMsg(sTemp);
TickTock 97:a25940fd7b5b 224 }
garygid 87:46ac3f2519d6 225
garygid 87:46ac3f2519d6 226 }else if(canRXmsg.data[3]==1){//Group 1 data
garygid 87:46ac3f2519d6 227 bdi=BatDataBaseG1; // index offset for Group 1 data (uses 20 - 22)
TickTock 97:a25940fd7b5b 228 if(debugMode){
TickTock 97:a25940fd7b5b 229 sprintf(sTemp," Getting Group 1 data\n");
TickTock 97:a25940fd7b5b 230 printMsg(sTemp);
TickTock 97:a25940fd7b5b 231 }
garygid 87:46ac3f2519d6 232
garygid 87:46ac3f2519d6 233 }else if(canRXmsg.data[3]==3){//Group 3 data
garygid 87:46ac3f2519d6 234 bdi=BatDataBaseG3; // index offset for Group 3 data (uses 20 - 22)
TickTock 97:a25940fd7b5b 235 if(debugMode){
TickTock 97:a25940fd7b5b 236 sprintf(sTemp," Getting Group 3 data\n");
TickTock 97:a25940fd7b5b 237 printMsg(sTemp);
TickTock 97:a25940fd7b5b 238 }
garygid 87:46ac3f2519d6 239
garygid 87:46ac3f2519d6 240 }else if(canRXmsg.data[3]==5){//Group 5 data
garygid 87:46ac3f2519d6 241 bdi=BatDataBaseG5; // index offset for Group 5 data (uses 20 - 22)
TickTock 97:a25940fd7b5b 242 if(debugMode){
TickTock 97:a25940fd7b5b 243 sprintf(sTemp," Getting Group 5 data\n");
TickTock 97:a25940fd7b5b 244 printMsg(sTemp);
TickTock 97:a25940fd7b5b 245 }
garygid 87:46ac3f2519d6 246
TickTock 83:52b1f330a62d 247 }else bdi=0xff; // ignore other messages (for now)
TickTock 83:52b1f330a62d 248 lasti=0;
TickTock 83:52b1f330a62d 249 }
garygid 87:46ac3f2519d6 250
TickTock 83:52b1f330a62d 251 if(bdi<0xff){
TickTock 83:52b1f330a62d 252 i=canRXmsg.data[0]&0x0f; //lower nibble of D0 is index
TickTock 83:52b1f330a62d 253 if(lasti>i){ //detect rollover and offset index appropriately
garygid 87:46ac3f2519d6 254 bdi=BatDataBaseG2 + 0x10; // only for CP data
TickTock 83:52b1f330a62d 255 }
TickTock 83:52b1f330a62d 256 lasti=i; //remember the msb to detect rollover next time around
TickTock 83:52b1f330a62d 257 i+=bdi;
garygid 87:46ac3f2519d6 258 //-------
TickTock 102:fd19f777a0b4 259 if(i==BatDataBaseG5){ // Last of Temperature data was loaded last time
TickTock 83:52b1f330a62d 260 logCP=yesBattLog; // Only log if logging enabled
TickTock 83:52b1f330a62d 261 showCP=true; // Always show
TickTock 102:fd19f777a0b4 262 // 2013 models only have three sensors
TickTock 102:fd19f777a0b4 263 // Or =25+(467-ADC)/9.33 (C)
TickTock 108:29b5a760adc2 264 // Find hottest temperature by finding smallest ADC value
TickTock 108:29b5a760adc2 265 k=battData[(BatDataBaseG4*7)+3]*0x100+battData[(BatDataBaseG4*7)+4];
TickTock 107:e9be732c1ad4 266 j=battData[(BatDataBaseG4*7)+6]*0x100+battData[(BatDataBaseG4*7)+7];
TickTock 108:29b5a760adc2 267 if(j<k){
TickTock 108:29b5a760adc2 268 k=j;
TickTock 107:e9be732c1ad4 269 }
TickTock 107:e9be732c1ad4 270 j=battData[(BatDataBaseG4*7)+9]*0x100+battData[(BatDataBaseG4*7)+10];
TickTock 108:29b5a760adc2 271 if(j<k){
TickTock 108:29b5a760adc2 272 k=j;
TickTock 102:fd19f777a0b4 273 }
TickTock 107:e9be732c1ad4 274 j=battData[(BatDataBaseG4*7)+12]*0x100+battData[(BatDataBaseG4*7)+13];
TickTock 108:29b5a760adc2 275 if(j<k){
TickTock 108:29b5a760adc2 276 k=j;
TickTock 102:fd19f777a0b4 277 }
TickTock 108:29b5a760adc2 278 //interpolate from lookup table
TickTock 111:d1559bb25c43 279 unsigned short temp_adc[7] = { 1000, 589, 487, 401, 365, 309, 000};
TickTock 111:d1559bb25c43 280 float temp_C[7] = {-27.0, 13.0, 23.0, 32.0, 36.0, 43.0, 76.0};
TickTock 108:29b5a760adc2 281 char ii=0;
TickTock 108:29b5a760adc2 282 while(k<=temp_adc[++ii]) { } // Find section in table
TickTock 108:29b5a760adc2 283 maxTemp=(float)(k-temp_adc[ii]);
TickTock 108:29b5a760adc2 284 maxTemp/=(float)(temp_adc[ii-1]-temp_adc[ii]);
TickTock 108:29b5a760adc2 285 maxTemp*=(temp_C[ii-1]-temp_C[ii]);
TickTock 108:29b5a760adc2 286 maxTemp+=temp_C[ii];
TickTock 108:29b5a760adc2 287
TickTock 102:fd19f777a0b4 288 SOH_x100=battData[(BatDataBaseG1*7)+29]*0x100+battData[(BatDataBaseG1*7)+30];
TickTock 102:fd19f777a0b4 289 Ah_x10000=battData[(BatDataBaseG1*7)+36]*0x10000+battData[(BatDataBaseG1*7)+37]*0x100+battData[(BatDataBaseG1*7)+38];
TickTock 102:fd19f777a0b4 290 SOC_x10000=battData[(BatDataBaseG1*7)+32]*0x10000+battData[(BatDataBaseG1*7)+33]*0x100+battData[(BatDataBaseG1*7)+34];
TickTock 83:52b1f330a62d 291 }
garygid 87:46ac3f2519d6 292 //-------
TickTock 83:52b1f330a62d 293 i*=7;
garygid 87:46ac3f2519d6 294 if(i+6 < BatDataBufMax) {
TickTock 83:52b1f330a62d 295 battData[i+0]=canRXmsg.data[1];
TickTock 83:52b1f330a62d 296 battData[i+1]=canRXmsg.data[2];
TickTock 83:52b1f330a62d 297 battData[i+2]=canRXmsg.data[3];
TickTock 83:52b1f330a62d 298 battData[i+3]=canRXmsg.data[4];
TickTock 83:52b1f330a62d 299 battData[i+4]=canRXmsg.data[5];
TickTock 83:52b1f330a62d 300 battData[i+5]=canRXmsg.data[6];
TickTock 83:52b1f330a62d 301 battData[i+6]=canRXmsg.data[7];
TickTock 83:52b1f330a62d 302 }
TickTock 83:52b1f330a62d 303 }
TickTock 83:52b1f330a62d 304 }else if((mType==1)&&(canRXmsg.id==0x1db)){ //Battery Volts and Amps
TickTock 83:52b1f330a62d 305 packV=((canRXmsg.data[2]<<2)|(canRXmsg.data[3]>>6)); // 1 LSB = 0.5V
TickTock 83:52b1f330a62d 306 packA=((canRXmsg.data[0]<<3)|(canRXmsg.data[1]>>5)); // 1 LSB = 0.5A
TickTock 83:52b1f330a62d 307 if(packA>0x03ff){
TickTock 83:52b1f330a62d 308 packA|=0xf800;//extend sign;
TickTock 83:52b1f330a62d 309 }
TickTock 83:52b1f330a62d 310 packA -= 1; //Slight correction to value required (unique to my Leaf?)
TickTock 83:52b1f330a62d 311 imWs_x4 = packV; // Volts*milliSeconds*2
TickTock 83:52b1f330a62d 312 imWs_x4 *= -packA; // milliWattseconds*4
TickTock 83:52b1f330a62d 313 mWs_x4 += imWs_x4; // total mWs_x4
TickTock 92:935adef49ea4 314 numWsamples++;
TickTock 83:52b1f330a62d 315 }else if((mType==1)&&(canRXmsg.id==0x1da)){ //Motor Speed
TickTock 83:52b1f330a62d 316 imotorRPM=((canRXmsg.data[4]<<8)|(canRXmsg.data[5]));
TickTock 83:52b1f330a62d 317 if(imotorRPM<0){ // take absolute value
TickTock 83:52b1f330a62d 318 imotorRPM=-imotorRPM;
TickTock 83:52b1f330a62d 319 }
TickTock 83:52b1f330a62d 320 motorRPM+=imotorRPM;
TickTock 92:935adef49ea4 321 numSsamples++;
TickTock 37:fea2c1d52c5f 322 }
TickTock 37:fea2c1d52c5f 323 }
TickTock 13:62e0f7f39ff5 324 }
TickTock 13:62e0f7f39ff5 325
garygid 87:46ac3f2519d6 326 //-----------------------------
TickTock 13:62e0f7f39ff5 327 void logTS () {
TickTock 13:62e0f7f39ff5 328 CANMessage tsMsg;
TickTock 13:62e0f7f39ff5 329 unsigned long secs = time(NULL); // seconds past 12:00:00 AM 1 Jan 1900
garygid 69:6bfdfc002036 330 // NOTE: In Mbed, I believe that this is seconds past start of 1970, not 1900
garygid 69:6bfdfc002036 331 // but this is good, since seconds past 1970 is what CAN-Do expects. GG - Date Time
TickTock 13:62e0f7f39ff5 332 tsMsg.id=0xfff;
TickTock 13:62e0f7f39ff5 333 tsMsg.len=0xf;
garygid 69:6bfdfc002036 334 tsMsg.data[0]=secs&0xff;
TickTock 13:62e0f7f39ff5 335 tsMsg.data[1]=(secs>>8)&0xff;
TickTock 13:62e0f7f39ff5 336 tsMsg.data[2]=(secs>>16)&0xff;
garygid 69:6bfdfc002036 337 tsMsg.data[3]=(secs>>24)&0xff;
garygid 69:6bfdfc002036 338 tsMsg.data[4]=0; // 0xff; gg - Date Time
garygid 69:6bfdfc002036 339 tsMsg.data[5]=0; // 0xff; for CAN-Do
garygid 69:6bfdfc002036 340 tsMsg.data[6]=0; // 0xff;
TickTock 13:62e0f7f39ff5 341 tsMsg.data[7]=0xff;
garygid 69:6bfdfc002036 342 logCan(0,tsMsg); // Date-Time
garygid 69:6bfdfc002036 343 }
garygid 69:6bfdfc002036 344
TickTock 93:c2402e8cd0e2 345 void logEvent (char * errMsg) {
garygid 69:6bfdfc002036 346 // log CAN-Do 8-character Pseudo Message
garygid 69:6bfdfc002036 347 CANMessage tsMsg;
garygid 69:6bfdfc002036 348 tsMsg.id=0xffe; // pseudo Message to CAN-Do log
garygid 69:6bfdfc002036 349 tsMsg.len=0xf;
TickTock 92:935adef49ea4 350 int iMsgLen = strlen(errMsg);
garygid 69:6bfdfc002036 351 // 8 character message compatible with CAN-Do
TickTock 92:935adef49ea4 352 for(int i=0; i<8; i++){
garygid 69:6bfdfc002036 353 tsMsg.data[i]=' ';
TickTock 92:935adef49ea4 354 if( i < iMsgLen ) tsMsg.data[i]=errMsg[i];
garygid 69:6bfdfc002036 355 }
garygid 69:6bfdfc002036 356 logCan(0,tsMsg); // FFE Comment Message
TickTock 13:62e0f7f39ff5 357 }
TickTock 13:62e0f7f39ff5 358
TickTock 78:a383971fe02f 359 void sendReq() {
TickTock 78:a383971fe02f 360 static char data[8] = {0x02, 0x21, 0x01, 0xff, 0xff, 0xff, 0xff, 0xff};
TickTock 78:a383971fe02f 361 if(reqMsgCnt<99){
TickTock 92:935adef49ea4 362 switch (reqMsgCnt){
TickTock 102:fd19f777a0b4 363 case BatDataBaseG1:
TickTock 78:a383971fe02f 364 can1.monitor(false); // set to active mode
TickTock 78:a383971fe02f 365 can1SleepMode = 0; // enable TX
TickTock 83:52b1f330a62d 366 data[0]=0x02; //change to request group 1
TickTock 78:a383971fe02f 367 data[1]=0x21;
TickTock 78:a383971fe02f 368 data[2]=0x01;
TickTock 78:a383971fe02f 369 break;
TickTock 102:fd19f777a0b4 370 case BatDataBaseG2: // group 1 has 6 frames
TickTock 78:a383971fe02f 371 can1.monitor(false); // set to active mode
TickTock 78:a383971fe02f 372 can1SleepMode = 0; // enable TX
TickTock 83:52b1f330a62d 373 data[0]=0x02; //change to request group 2 (cp data)
TickTock 78:a383971fe02f 374 data[1]=0x21;
TickTock 78:a383971fe02f 375 data[2]=0x02;
TickTock 78:a383971fe02f 376 break;
TickTock 102:fd19f777a0b4 377 case BatDataBaseG3: // group 2 has 29 frames
TickTock 83:52b1f330a62d 378 data[0]=0x02; //change to request group 3
TickTock 78:a383971fe02f 379 data[1]=0x21;
TickTock 78:a383971fe02f 380 data[2]=0x03;
TickTock 78:a383971fe02f 381 break;
TickTock 102:fd19f777a0b4 382 case BatDataBaseG4: // group 3 has 5 frames
TickTock 83:52b1f330a62d 383 data[0]=0x02; //change to request group 4 (temperature)
TickTock 78:a383971fe02f 384 data[1]=0x21;
TickTock 78:a383971fe02f 385 data[2]=0x04;
TickTock 78:a383971fe02f 386 break;
TickTock 102:fd19f777a0b4 387 case BatDataBaseG5: // group 4 has 3 frames
TickTock 83:52b1f330a62d 388 data[0]=0x02; //change to request group 5
TickTock 78:a383971fe02f 389 data[1]=0x21;
TickTock 78:a383971fe02f 390 data[2]=0x05;
TickTock 78:a383971fe02f 391 break;
TickTock 102:fd19f777a0b4 392 case BatDataBaseG6: // group 5 has 11 frames
TickTock 78:a383971fe02f 393 reqMsgCnt = 99;
TickTock 78:a383971fe02f 394 can1SleepMode = 1; // disable TX
TickTock 78:a383971fe02f 395 can1.monitor(true); // set to snoop mode
TickTock 83:52b1f330a62d 396 msgReq.detach(); // stop ticker
TickTock 110:ffddff3ad2f2 397 //logCP=true; //LAJ for bench test
TickTock 78:a383971fe02f 398 default:
TickTock 78:a383971fe02f 399 data[0]=0x30; //change to request next line message
TickTock 78:a383971fe02f 400 data[1]=0x01;
TickTock 78:a383971fe02f 401 data[2]=0x00;
TickTock 78:a383971fe02f 402 }
TickTock 78:a383971fe02f 403 can1.write(CANMessage(0x79b, data, 8));
TickTock 92:935adef49ea4 404 reqMsgCnt++;
TickTock 78:a383971fe02f 405 }
TickTock 78:a383971fe02f 406 }
TickTock 78:a383971fe02f 407
TickTock 78:a383971fe02f 408 void autoPollISR(){
TickTock 97:a25940fd7b5b 409 //char sTemp[40]; // just for debug
TickTock 97:a25940fd7b5b 410 //sprintf(sTemp,"Requesting cp data\n"); // just for debug
TickTock 97:a25940fd7b5b 411 //printMsg(sTemp); // just for debug
TickTock 78:a383971fe02f 412 reqMsgCnt = 0; //reset message counter
TickTock 94:c3a14b3975d6 413 msgReq.attach(&sendReq,0.015);
TickTock 78:a383971fe02f 414 }
garygid 87:46ac3f2519d6 415
TickTock 36:dbd39c315258 416 void playbackISR() { //Used for autoplayback
TickTock 36:dbd39c315258 417 step=true;
TickTock 36:dbd39c315258 418 }
TickTock 36:dbd39c315258 419
TickTock 36:dbd39c315258 420 void doNothing(){ //CAN deattach work-around
TickTock 36:dbd39c315258 421 }
TickTock 36:dbd39c315258 422
TickTock 13:62e0f7f39ff5 423 void recieve1() {
TickTock 13:62e0f7f39ff5 424 CANMessage msg1;
TickTock 13:62e0f7f39ff5 425 can1.read(msg1);
garygid 69:6bfdfc002036 426
garygid 69:6bfdfc002036 427 if( ZeroSecTick ) { ZeroSecTick = false; logTS(); } // gg - 0-second EV bus
TickTock 106:f016912a03db 428 if(msg1.id>0) {
TickTock 106:f016912a03db 429 logCan(1, msg1); // EVcan Message Received
TickTock 106:f016912a03db 430 led1 = !led1;
TickTock 106:f016912a03db 431 }
TickTock 13:62e0f7f39ff5 432 }
TickTock 13:62e0f7f39ff5 433
TickTock 13:62e0f7f39ff5 434 void recieve2() {
TickTock 13:62e0f7f39ff5 435 CANMessage msg2;
TickTock 13:62e0f7f39ff5 436 can2.read(msg2);
garygid 69:6bfdfc002036 437
garygid 69:6bfdfc002036 438 if( ZeroSecTick ) { ZeroSecTick = false; logTS(); } // gg - 0-second EV bus
garygid 69:6bfdfc002036 439
TickTock 106:f016912a03db 440 if(msg2.id>0) {
TickTock 106:f016912a03db 441 logCan(2, msg2); // CARcan Message Received
TickTock 106:f016912a03db 442 led2 = !led2;
TickTock 106:f016912a03db 443 }
TickTock 13:62e0f7f39ff5 444 }
TickTock 13:62e0f7f39ff5 445
TickTock 22:a43df3905863 446 unsigned char buttonX(unsigned short X, unsigned char columns) {
TickTock 22:a43df3905863 447 unsigned char val = X*columns/320;
TickTock 22:a43df3905863 448 return val;
TickTock 22:a43df3905863 449 }
TickTock 22:a43df3905863 450
TickTock 22:a43df3905863 451 unsigned char buttonY(unsigned short Y, unsigned char rows) {
TickTock 22:a43df3905863 452 unsigned short val = Y*rows/240;
TickTock 22:a43df3905863 453 return val;
TickTock 22:a43df3905863 454 }
TickTock 23:cd03f9c3395e 455
TickTock 23:cd03f9c3395e 456 void saveConfig(){
TickTock 23:cd03f9c3395e 457 FILE *cfile;
TickTock 99:c05abf8e1cdc 458 cfile = fopen("/local/config.txt", "w");
leafman 98:9f8bab96edff 459 fprintf(cfile,"format 5\r\n");
TickTock 23:cd03f9c3395e 460 fprintf(cfile,"x0_off %d\r\n",tt.x0_off);
TickTock 23:cd03f9c3395e 461 fprintf(cfile,"y0_off %d\r\n",tt.y0_off);
TickTock 23:cd03f9c3395e 462 fprintf(cfile,"x0_pp %d\r\n",tt.x0_pp);
TickTock 23:cd03f9c3395e 463 fprintf(cfile,"y0_pp %d\r\n",tt.y0_pp);
TickTock 23:cd03f9c3395e 464 fprintf(cfile,"x1_off %d\r\n",tt.x1_off);
TickTock 23:cd03f9c3395e 465 fprintf(cfile,"y1_off %d\r\n",tt.y1_off);
TickTock 23:cd03f9c3395e 466 fprintf(cfile,"x1_pp %d\r\n",tt.x1_pp);
TickTock 23:cd03f9c3395e 467 fprintf(cfile,"y1_pp %d\r\n",tt.y1_pp);
TickTock 23:cd03f9c3395e 468 fprintf(cfile,"x_mid %d\r\n",tt.x_mid);
leafman 98:9f8bab96edff 469 if (dMode[0]==configScreen)
TickTock 41:8d4609ea7259 470 fprintf(cfile,"dMode0 %d\r\n",mainScreen);
TickTock 26:462ccb580472 471 else
TickTock 26:462ccb580472 472 fprintf(cfile,"dMode0 %d\r\n",dMode[0]);
leafman 98:9f8bab96edff 473 if (dMode[1]==configScreen)
TickTock 41:8d4609ea7259 474 fprintf(cfile,"dMode1 %d\r\n",mainScreen);
TickTock 26:462ccb580472 475 else
TickTock 26:462ccb580472 476 fprintf(cfile,"dMode1 %d\r\n",dMode[1]);
TickTock 35:5acbd8a64a89 477 fprintf(cfile,"ledHi %4.3f\r\n",ledHi);
TickTock 35:5acbd8a64a89 478 fprintf(cfile,"ledLo %4.3f\r\n",ledLo);
TickTock 35:5acbd8a64a89 479 fprintf(cfile,"pollInt %d\r\n",pollInt);
TickTock 35:5acbd8a64a89 480 fprintf(cfile,"scale12V %4.2f\r\n",scale12V);
TickTock 48:d1ce92104a1f 481 fprintf(cfile,"skin %d\r\n",skin);
TickTock 50:83d5864c64a0 482 fprintf(cfile,"dtePeriod %d\r\n",dtePeriod);
garygid 87:46ac3f2519d6 483 fprintf(cfile,"DebugMode %d\r\n",(debugMode?1:0));
leafman 98:9f8bab96edff 484 fprintf(cfile,"metric %d\r\n",(metric?1:0));
leafman 98:9f8bab96edff 485 fprintf(cfile, "firmware %d\r\n", fwCount );
TickTock 23:cd03f9c3395e 486 fclose(cfile);
TickTock 23:cd03f9c3395e 487 }
TickTock 23:cd03f9c3395e 488
TickTock 111:d1559bb25c43 489 void readConfig(){
TickTock 23:cd03f9c3395e 490 FILE *cfile;
TickTock 23:cd03f9c3395e 491 int ff;
TickTock 23:cd03f9c3395e 492 char sTemp[40];
TickTock 23:cd03f9c3395e 493 cfile = fopen("/local/config.txt", "r");
TickTock 23:cd03f9c3395e 494 if (cfile==NULL){ // if doesn't exist --> create
TickTock 23:cd03f9c3395e 495 sprintf(sTemp,"No config file found.\n");
TickTock 93:c2402e8cd0e2 496 printMsg(sTemp); // no config file
TickTock 23:cd03f9c3395e 497 sprintf(sTemp,"Calibrating touch screen.\n");
TickTock 93:c2402e8cd0e2 498 printMsg(sTemp); // calibrating
TickTock 23:cd03f9c3395e 499 //tt.setcal(5570, 34030, 80, 108, 33700, 5780, 82, 108, 32500);// bypass calibration using my values
TickTock 23:cd03f9c3395e 500 tt.calibrate(); // run touchscreen calibration routine
garygid 58:4d06288d75a2 501 // NOTE: calibrates screen 1 first, then screen 0.
TickTock 23:cd03f9c3395e 502 saveConfig();
TickTock 23:cd03f9c3395e 503 } else {
TickTock 102:fd19f777a0b4 504 ledHi = 0.8;
TickTock 48:d1ce92104a1f 505 ledLo = 0.1;
TickTock 102:fd19f777a0b4 506 pollInt = 60;
TickTock 48:d1ce92104a1f 507 scale12V = 16.2;
TickTock 48:d1ce92104a1f 508 skin = ttSkin;
leafman 98:9f8bab96edff 509 fscanf(cfile, "format %d\r\n", &ff );
leafman 98:9f8bab96edff 510 fscanf(cfile, "x0_off %d\r\n", &tt.x0_off );
leafman 98:9f8bab96edff 511 fscanf(cfile, "y0_off %d\r\n", &tt.y0_off );
leafman 98:9f8bab96edff 512 fscanf(cfile, "x0_pp %d\r\n", &tt.x0_pp );
leafman 98:9f8bab96edff 513 fscanf(cfile, "y0_pp %d\r\n", &tt.y0_pp );
leafman 98:9f8bab96edff 514 fscanf(cfile, "x1_off %d\r\n", &tt.x1_off );
leafman 98:9f8bab96edff 515 fscanf(cfile, "y1_off %d\r\n", &tt.y1_off );
leafman 98:9f8bab96edff 516 fscanf(cfile, "x1_pp %d\r\n", &tt.x1_pp );
leafman 98:9f8bab96edff 517 fscanf(cfile, "y1_pp %d\r\n", &tt.y1_pp );
leafman 98:9f8bab96edff 518 fscanf(cfile, "x_mid %d\r\n", &tt.x_mid );
leafman 98:9f8bab96edff 519 fscanf(cfile, "dMode0 %d\r\n", &dMode[0] );
leafman 98:9f8bab96edff 520 fscanf(cfile, "dMode1 %d\r\n", &dMode[1] );
TickTock 35:5acbd8a64a89 521 if(ff>1){
leafman 98:9f8bab96edff 522 fscanf(cfile, "ledHi %f\r\n", &ledHi );
leafman 98:9f8bab96edff 523 fscanf(cfile, "ledLo %f\r\n", &ledLo );
leafman 98:9f8bab96edff 524 fscanf(cfile, "pollInt %d\r\n", &pollInt );
leafman 98:9f8bab96edff 525 fscanf(cfile, "scale12V %f\r\n", &scale12V );
TickTock 48:d1ce92104a1f 526 }
TickTock 48:d1ce92104a1f 527 if(ff>2){
leafman 98:9f8bab96edff 528 fscanf(cfile, "skin %d\r\n", &skin );
leafman 98:9f8bab96edff 529 fscanf(cfile, "dtePeriod %d\r\n", &dtePeriod );
TickTock 35:5acbd8a64a89 530 }
garygid 87:46ac3f2519d6 531 if(ff>3){
leafman 98:9f8bab96edff 532 int iDebug;
leafman 98:9f8bab96edff 533 fscanf(cfile, "DebugMode %d\r\n", &iDebug );
leafman 98:9f8bab96edff 534 debugMode = (bool)iDebug;
leafman 98:9f8bab96edff 535 }
leafman 98:9f8bab96edff 536 if(ff>4) {
leafman 98:9f8bab96edff 537 int iMetric;
leafman 98:9f8bab96edff 538 fscanf(cfile, "metric %d\r\n", &iMetric );
leafman 98:9f8bab96edff 539 metric = (bool)iMetric;
leafman 98:9f8bab96edff 540 fscanf(cfile, "firmware %d\r\n", &iMetric );
leafman 98:9f8bab96edff 541 fwCount = iMetric;
garygid 87:46ac3f2519d6 542 }
TickTock 23:cd03f9c3395e 543 fclose(cfile);
garygid 87:46ac3f2519d6 544 if(ff<4){//If not latest format, save as latest format
TickTock 35:5acbd8a64a89 545 saveConfig();
TickTock 48:d1ce92104a1f 546 sprintf(sTemp,"Config file format updated.\n");
TickTock 93:c2402e8cd0e2 547 printMsg(sTemp); // config forat updates
TickTock 48:d1ce92104a1f 548 }
TickTock 43:e7f6f80590e3 549 sprintf(sTemp,"Config file loaded.\n");
TickTock 93:c2402e8cd0e2 550 printMsg(sTemp); // config file loaded
TickTock 23:cd03f9c3395e 551 }
TickTock 23:cd03f9c3395e 552 }
TickTock 25:ddf0ec209f03 553
TickTock 25:ddf0ec209f03 554 void upDate(unsigned char field, bool upDownBar){
TickTock 25:ddf0ec209f03 555 struct tm t; // pointer to a static tm structure
TickTock 25:ddf0ec209f03 556 time_t seconds ;
TickTock 25:ddf0ec209f03 557 seconds = time(NULL);
TickTock 25:ddf0ec209f03 558 t = *localtime(&seconds) ;
TickTock 25:ddf0ec209f03 559 switch(field){
TickTock 25:ddf0ec209f03 560 case 0: // year
TickTock 25:ddf0ec209f03 561 if (upDownBar) {
TickTock 25:ddf0ec209f03 562 t.tm_year = t.tm_year+1;
TickTock 25:ddf0ec209f03 563 } else {
TickTock 25:ddf0ec209f03 564 t.tm_year = t.tm_year-1;
TickTock 25:ddf0ec209f03 565 }
TickTock 25:ddf0ec209f03 566 break;
TickTock 25:ddf0ec209f03 567 case 1: // month
TickTock 25:ddf0ec209f03 568 if (upDownBar) {
TickTock 25:ddf0ec209f03 569 t.tm_mon = (t.tm_mon<12)?t.tm_mon+1:1;
TickTock 25:ddf0ec209f03 570 } else {
TickTock 25:ddf0ec209f03 571 t.tm_mon = (t.tm_mon>2)?t.tm_mon-1:12;
TickTock 25:ddf0ec209f03 572 }
TickTock 25:ddf0ec209f03 573 break;
TickTock 25:ddf0ec209f03 574 case 2: // day
TickTock 25:ddf0ec209f03 575 if (upDownBar) {
TickTock 25:ddf0ec209f03 576 t.tm_mday = (t.tm_mday<31)?t.tm_mday+1:1;
TickTock 25:ddf0ec209f03 577 } else {
TickTock 25:ddf0ec209f03 578 t.tm_mday = (t.tm_mday>2)?t.tm_mday-1:31;
TickTock 25:ddf0ec209f03 579 }
TickTock 25:ddf0ec209f03 580 break;
TickTock 25:ddf0ec209f03 581 case 3: // hour
TickTock 25:ddf0ec209f03 582 if (upDownBar) {
TickTock 25:ddf0ec209f03 583 t.tm_hour = (t.tm_hour<23)?t.tm_hour+1:0;
TickTock 25:ddf0ec209f03 584 } else {
TickTock 25:ddf0ec209f03 585 t.tm_hour = (t.tm_hour>1)?t.tm_hour-1:23;
TickTock 25:ddf0ec209f03 586 }
TickTock 25:ddf0ec209f03 587 break;
TickTock 25:ddf0ec209f03 588 case 4: // minute
TickTock 25:ddf0ec209f03 589 if (upDownBar) {
TickTock 25:ddf0ec209f03 590 t.tm_min = (t.tm_min<59)?t.tm_min+1:0;
TickTock 25:ddf0ec209f03 591 } else {
TickTock 25:ddf0ec209f03 592 t.tm_min = (t.tm_min>1)?t.tm_min-1:59;
TickTock 25:ddf0ec209f03 593 }
TickTock 25:ddf0ec209f03 594 break;
TickTock 25:ddf0ec209f03 595 case 5: // second
TickTock 25:ddf0ec209f03 596 if (upDownBar) {
TickTock 25:ddf0ec209f03 597 t.tm_sec = (t.tm_sec<59)?t.tm_sec+1:0;
TickTock 25:ddf0ec209f03 598 } else {
TickTock 25:ddf0ec209f03 599 t.tm_sec = (t.tm_sec>1)?t.tm_sec-1:59;
TickTock 25:ddf0ec209f03 600 }
TickTock 25:ddf0ec209f03 601 break;
TickTock 25:ddf0ec209f03 602 default:
TickTock 25:ddf0ec209f03 603 break;
TickTock 25:ddf0ec209f03 604 }
TickTock 25:ddf0ec209f03 605 set_time(mktime(&t));
TickTock 25:ddf0ec209f03 606 }
TickTock 25:ddf0ec209f03 607
TickTock 39:eef8beac7411 608 void logPackVoltages() { // Turbo3 - routine to dump CP values to text file
TickTock 110:ffddff3ad2f2 609 char sTemp[40];
TickTock 39:eef8beac7411 610 struct tm t; // pointer to a static tm structure
TickTock 39:eef8beac7411 611 short unsigned max, min, jv, i, bd;
TickTock 39:eef8beac7411 612 unsigned avg;
TickTock 39:eef8beac7411 613 unsigned short gids, SOC, packV;
TickTock 39:eef8beac7411 614 signed short packA;
TickTock 39:eef8beac7411 615 time_t seconds ;
TickTock 39:eef8beac7411 616
TickTock 39:eef8beac7411 617 CANMessage msg;
TickTock 39:eef8beac7411 618
TickTock 39:eef8beac7411 619 seconds = time(NULL); // Turbo3
TickTock 39:eef8beac7411 620 t = *localtime(&seconds) ; // Turbo3
TickTock 39:eef8beac7411 621
TickTock 39:eef8beac7411 622 msg = lastMsg[indexLastMsg[0x5bc]]; //Get gids
TickTock 39:eef8beac7411 623 gids = (msg.data[0]<<2)+(msg.data[1]>>6);
TickTock 39:eef8beac7411 624 msg = lastMsg[indexLastMsg[0x55b]]; //Get SOC
TickTock 39:eef8beac7411 625 SOC = (msg.data[0]<<2)+(msg.data[1]>>6);
TickTock 39:eef8beac7411 626 msg = lastMsg[indexLastMsg[0x1db]]; //Get pack volts
TickTock 39:eef8beac7411 627 packV = (msg.data[2]<<2)+(msg.data[3]>>6);
TickTock 39:eef8beac7411 628 packA = (msg.data[0]<<3)+(msg.data[1]>>5);
TickTock 39:eef8beac7411 629 if (packA & 0x400) packA |= 0xf800;
TickTock 39:eef8beac7411 630
TickTock 39:eef8beac7411 631 max=0;
TickTock 39:eef8beac7411 632 min=9999;
TickTock 39:eef8beac7411 633 avg=0;
TickTock 92:935adef49ea4 634 for(i=0; i<96; i++) {
TickTock 114:3f8c59a8a2b9 635 bd=(battData[BatDataBaseG2*7+i*2+3]<<8)+battData[BatDataBaseG2*7+i*2+4];
TickTock 39:eef8beac7411 636 avg+=bd;
TickTock 39:eef8beac7411 637 if(bd>max) max=bd;
TickTock 39:eef8beac7411 638 if(bd<min) min=bd;
TickTock 39:eef8beac7411 639 }
TickTock 39:eef8beac7411 640 avg /= 96;
TickTock 39:eef8beac7411 641 if(min<3713) {
TickTock 39:eef8beac7411 642 jv=avg-(max-avg)*1.5;
TickTock 39:eef8beac7411 643 } else { // Only compute judgement value if min cellpair meets <= 3712mV requirement
TickTock 39:eef8beac7411 644 jv=0;
TickTock 39:eef8beac7411 645 }
TickTock 39:eef8beac7411 646
TickTock 110:ffddff3ad2f2 647 FIL bfile;
TickTock 110:ffddff3ad2f2 648 FRESULT bfr;
TickTock 110:ffddff3ad2f2 649 bfr = f_open(&bfile,"batvolt.txt",FA_WRITE|FA_OPEN_ALWAYS);
TickTock 110:ffddff3ad2f2 650 if(bfr==FR_OK) {
TickTock 110:ffddff3ad2f2 651 f_lseek(&bfile,0xffffffff); // go to end of file to append
TickTock 39:eef8beac7411 652 strftime(sTemp, 40, "%a %m/%d/%Y %X", &t);
TickTock 110:ffddff3ad2f2 653 f_printf(&bfile,"%s,",sTemp);
TickTock 110:ffddff3ad2f2 654 sprintf(sTemp,"%d,%5.1f%%,%5.1f,%5.1f,%d,%d,%d,%d,%d",gids,(float)SOC/10,(float)packV/2,(float)packA/2,max,min,avg,max-min,jv);
TickTock 110:ffddff3ad2f2 655 f_printf(&bfile,"%s,",sTemp);
TickTock 110:ffddff3ad2f2 656 f_printf(&bfile,"%d,%d,%d,%d,",(battData[(BatDataBaseG4*7)+ 3]<<8)+battData[(BatDataBaseG4*7)+ 4],battData[(BatDataBaseG4*7)+ 5],(battData[(BatDataBaseG4*7)+ 6]<<8)+battData[(BatDataBaseG4*7)+ 7],battData[(BatDataBaseG4*7)+ 8]);
TickTock 110:ffddff3ad2f2 657 f_printf(&bfile,"%d,%d,%d,%d", (battData[(BatDataBaseG4*7)+ 9]<<8)+battData[(BatDataBaseG4*7)+10],battData[(BatDataBaseG4*7)+11],(battData[(BatDataBaseG4*7)+12]<<8)+battData[(BatDataBaseG4*7)+13],battData[(BatDataBaseG4*7)+14]);
TickTock 108:29b5a760adc2 658 for(i=0; i<96; i++) {
TickTock 114:3f8c59a8a2b9 659 bd=(battData[BatDataBaseG2*7+i*2+3]<<8)+battData[BatDataBaseG2*7+i*2+4];
TickTock 110:ffddff3ad2f2 660 f_printf(&bfile,",%d",bd);
TickTock 108:29b5a760adc2 661 }
TickTock 110:ffddff3ad2f2 662 f_printf(&bfile,"\r\n");
TickTock 110:ffddff3ad2f2 663 f_close(&bfile);
TickTock 110:ffddff3ad2f2 664 }
TickTock 108:29b5a760adc2 665 logCP=false;
TickTock 108:29b5a760adc2 666 showCP=true;
TickTock 108:29b5a760adc2 667 }
TickTock 108:29b5a760adc2 668
TickTock 108:29b5a760adc2 669 void tripLog() { // Daily log
TickTock 110:ffddff3ad2f2 670 char sTemp[40];
TickTock 108:29b5a760adc2 671 struct tm t; // pointer to a static tm structure
TickTock 108:29b5a760adc2 672 short unsigned max, min, jv, i, bd;
TickTock 108:29b5a760adc2 673 unsigned avg;
TickTock 108:29b5a760adc2 674 unsigned short gids, SOC, packV;
TickTock 108:29b5a760adc2 675 signed short packA;
TickTock 108:29b5a760adc2 676 time_t seconds ;
TickTock 108:29b5a760adc2 677
TickTock 108:29b5a760adc2 678 CANMessage msg;
TickTock 108:29b5a760adc2 679
TickTock 108:29b5a760adc2 680 seconds = time(NULL); // Turbo3
TickTock 108:29b5a760adc2 681 t = *localtime(&seconds) ; // Turbo3
TickTock 108:29b5a760adc2 682
TickTock 108:29b5a760adc2 683 msg = lastMsg[indexLastMsg[0x5bc]]; //Get gids
TickTock 108:29b5a760adc2 684 gids = (msg.data[0]<<2)+(msg.data[1]>>6);
TickTock 108:29b5a760adc2 685 msg = lastMsg[indexLastMsg[0x55b]]; //Get SOC
TickTock 108:29b5a760adc2 686 SOC = (msg.data[0]<<2)+(msg.data[1]>>6);
TickTock 108:29b5a760adc2 687 msg = lastMsg[indexLastMsg[0x1db]]; //Get pack volts
TickTock 108:29b5a760adc2 688 packV = (msg.data[2]<<2)+(msg.data[3]>>6);
TickTock 108:29b5a760adc2 689 packA = (msg.data[0]<<3)+(msg.data[1]>>5);
TickTock 108:29b5a760adc2 690 if (packA & 0x400) packA |= 0xf800;
TickTock 108:29b5a760adc2 691
TickTock 108:29b5a760adc2 692 max=0;
TickTock 108:29b5a760adc2 693 min=9999;
TickTock 108:29b5a760adc2 694 avg=0;
TickTock 108:29b5a760adc2 695 for(i=0; i<96; i++) {
TickTock 114:3f8c59a8a2b9 696 bd=(battData[BatDataBaseG2*7+i*2+3]<<8)+battData[BatDataBaseG2*7+i*2+4];
TickTock 108:29b5a760adc2 697 avg+=bd;
TickTock 108:29b5a760adc2 698 if(bd>max) max=bd;
TickTock 108:29b5a760adc2 699 if(bd<min) min=bd;
TickTock 108:29b5a760adc2 700 }
TickTock 108:29b5a760adc2 701 avg /= 96;
TickTock 108:29b5a760adc2 702 if(min<3713) {
TickTock 108:29b5a760adc2 703 jv=avg-(max-avg)*1.5;
TickTock 108:29b5a760adc2 704 } else { // Only compute judgement value if min cellpair meets <= 3712mV requirement
TickTock 108:29b5a760adc2 705 jv=0;
TickTock 108:29b5a760adc2 706 }
TickTock 108:29b5a760adc2 707
TickTock 110:ffddff3ad2f2 708 FIL bfile;
TickTock 110:ffddff3ad2f2 709 FRESULT bfr;
TickTock 111:d1559bb25c43 710 bfr = f_open(&bfile,"triplog.txt",FA_WRITE|FA_OPEN_ALWAYS);
TickTock 110:ffddff3ad2f2 711 if(bfr==FR_OK) {
TickTock 110:ffddff3ad2f2 712 f_lseek(&bfile,0xffffffff); // go to end of file to append
TickTock 108:29b5a760adc2 713 strftime(sTemp, 40, "%a %m/%d/%Y %X", &t);
TickTock 110:ffddff3ad2f2 714 f_printf(&bfile,"%s,",sTemp);
TickTock 110:ffddff3ad2f2 715 sprintf(sTemp,"%d,%5.1f%%,%5.1f%%, %4.2f, %5.1f,%5.1f,%d,%d,%d,%d,%d",gids,(float)SOC/10, (float)SOH_x100/100,(float)Ah_x10000/10000,(float)packV/2,(float)packA/2,max,min,avg,max-min,jv);
TickTock 110:ffddff3ad2f2 716 f_printf(&bfile,"%s,",sTemp);
TickTock 110:ffddff3ad2f2 717 f_printf(&bfile,"%d,%d,%d,%d,",(battData[(BatDataBaseG4*7)+ 3]<<8)+battData[(BatDataBaseG4*7)+ 4],battData[(BatDataBaseG4*7)+ 5],(battData[(BatDataBaseG4*7)+ 6]<<8)+battData[(BatDataBaseG4*7)+ 7],battData[(BatDataBaseG4*7)+ 8]);
TickTock 110:ffddff3ad2f2 718 f_printf(&bfile,"%d,%d,%d,%d", (battData[(BatDataBaseG4*7)+ 9]<<8)+battData[(BatDataBaseG4*7)+10],battData[(BatDataBaseG4*7)+11],(battData[(BatDataBaseG4*7)+12]<<8)+battData[(BatDataBaseG4*7)+13],battData[(BatDataBaseG4*7)+14]);
TickTock 92:935adef49ea4 719 for(i=0; i<96; i++) {
TickTock 114:3f8c59a8a2b9 720 bd=(battData[BatDataBaseG2*7+i*2+3]<<8)+battData[BatDataBaseG2*7+i*2+4];
TickTock 110:ffddff3ad2f2 721 f_printf(&bfile,",%d",bd);
TickTock 39:eef8beac7411 722 }
TickTock 110:ffddff3ad2f2 723 f_printf(&bfile,"\r\n");
TickTock 110:ffddff3ad2f2 724 f_close(&bfile);
TickTock 110:ffddff3ad2f2 725 }
TickTock 39:eef8beac7411 726 }
TickTock 25:ddf0ec209f03 727
leafman 98:9f8bab96edff 728 //LM - updates firmware off a usb key, eliminating the need to plug
leafman 98:9f8bab96edff 729 //the CANary into a computer for updates.
leafman 98:9f8bab96edff 730 void updateFirmware()
leafman 98:9f8bab96edff 731 {
TickTock 111:d1559bb25c43 732 FIL sfile; // external usb file
TickTock 111:d1559bb25c43 733 FRESULT sfr; // external file access flags
TickTock 111:d1559bb25c43 734 unsigned int bytesRW;
TickTock 111:d1559bb25c43 735 char sTemp[40];
TickTock 111:d1559bb25c43 736 sfr = f_open(&sfile,"firmware.bin",FA_READ|FA_OPEN_EXISTING);
TickTock 111:d1559bb25c43 737 if(sfr != FR_OK)
TickTock 99:c05abf8e1cdc 738 {
TickTock 99:c05abf8e1cdc 739 sprintf(sTemp,"Couldn't find firmware.bin\n");
TickTock 99:c05abf8e1cdc 740 printf(sTemp);
TickTock 108:29b5a760adc2 741 wait(3);
TickTock 100:63a7456fc972 742 lastDMode[whichTouched]=99;//force refresh
TickTock 99:c05abf8e1cdc 743 return;
TickTock 99:c05abf8e1cdc 744 }
leafman 98:9f8bab96edff 745 fwCount ++;
leafman 98:9f8bab96edff 746 saveConfig();
leafman 98:9f8bab96edff 747 tt.cls();
leafman 98:9f8bab96edff 748 printf("Saved Configuration\n");
leafman 98:9f8bab96edff 749 //delete all bin files in /local
leafman 98:9f8bab96edff 750 DIR *dir;
leafman 98:9f8bab96edff 751 struct dirent *ent;
leafman 98:9f8bab96edff 752 printf("Starting update\n");
leafman 98:9f8bab96edff 753 printf("deleting old firmware files\n");
leafman 98:9f8bab96edff 754 if ((dir = opendir ("/local/")) != NULL) {
TickTock 109:3e6f0e8fca0d 755 // print all the files and directories within directory
leafman 98:9f8bab96edff 756 while ((ent = readdir (dir)) != NULL) {
leafman 98:9f8bab96edff 757 //printf("FILE: %s\n",ent->d_name);
leafman 98:9f8bab96edff 758 char dest[4] = "";
leafman 98:9f8bab96edff 759 strncat(dest, &ent->d_name[strlen(ent->d_name)-3],3);
leafman 98:9f8bab96edff 760 dest[0] = tolower(dest[0]);
leafman 98:9f8bab96edff 761 dest[1] = tolower(dest[1]);
leafman 98:9f8bab96edff 762 dest[2] = tolower(dest[2]);
leafman 98:9f8bab96edff 763 if(strcmp(dest,"bin")==0)
leafman 98:9f8bab96edff 764 {
leafman 98:9f8bab96edff 765 sprintf(sTemp,"/local/%s",ent->d_name);
leafman 98:9f8bab96edff 766 int result = remove(sTemp);
leafman 98:9f8bab96edff 767 printf("REMOVED: %s",ent->d_name);
leafman 98:9f8bab96edff 768 }
leafman 98:9f8bab96edff 769 }
leafman 98:9f8bab96edff 770 closedir (dir);
leafman 98:9f8bab96edff 771 } else {
TickTock 109:3e6f0e8fca0d 772 //could not open directory
leafman 98:9f8bab96edff 773 printf("Couldnt open folder");
TickTock 108:29b5a760adc2 774 wait(3);
leafman 98:9f8bab96edff 775 return;
leafman 98:9f8bab96edff 776 }
leafman 98:9f8bab96edff 777 printf("copying new firmware\n");
leafman 98:9f8bab96edff 778 tt.cls();
leafman 98:9f8bab96edff 779 //Copy the new firmware from usb->local
leafman 98:9f8bab96edff 780 //The newest bin file is the one that is used by the mbed
leafman 98:9f8bab96edff 781 const int bufSize = 2048;
leafman 98:9f8bab96edff 782 FILE *destFile;
leafman 98:9f8bab96edff 783 sprintf(sTemp,"/local/fw%d.bin",fwCount);
leafman 98:9f8bab96edff 784 printf("Writing %s\n",sTemp);
leafman 98:9f8bab96edff 785 wait(2);
leafman 98:9f8bab96edff 786 destFile = fopen(sTemp, "wb");
leafman 98:9f8bab96edff 787 if(destFile == NULL)
leafman 98:9f8bab96edff 788 {
leafman 98:9f8bab96edff 789 sprintf(sTemp,"Couldn't Open Destination\n");
leafman 98:9f8bab96edff 790 printf(sTemp);
TickTock 108:29b5a760adc2 791 wait(3);
leafman 98:9f8bab96edff 792 return;
leafman 98:9f8bab96edff 793 }
leafman 98:9f8bab96edff 794 char buffer[bufSize];
TickTock 97:a25940fd7b5b 795
TickTock 111:d1559bb25c43 796 while (!f_eof(&sfile))
leafman 98:9f8bab96edff 797 {
TickTock 111:d1559bb25c43 798 sfr=f_read(&sfile,&buffer,bufSize,&bytesRW);
TickTock 111:d1559bb25c43 799 fwrite(buffer, 1, bytesRW, destFile);
leafman 98:9f8bab96edff 800 }
leafman 98:9f8bab96edff 801
leafman 98:9f8bab96edff 802 fflush(destFile);
leafman 98:9f8bab96edff 803 fclose(destFile);
TickTock 111:d1559bb25c43 804 f_close(&sfile);
leafman 98:9f8bab96edff 805 tt.cls();
leafman 98:9f8bab96edff 806 printf("Succesful\n\n");
TickTock 108:29b5a760adc2 807 printf("Rebooting in 3 seconds\n");
TickTock 108:29b5a760adc2 808 wait(3);
leafman 98:9f8bab96edff 809 //Now run new firmware
TickTock 111:d1559bb25c43 810 mbed_reset();
TickTock 99:c05abf8e1cdc 811 }
TickTock 108:29b5a760adc2 812
TickTock 108:29b5a760adc2 813 bool detectUSB(void){
TickTock 111:d1559bb25c43 814 FIL tfile; // external usb file
TickTock 111:d1559bb25c43 815 bool usbEn = (f_open(&tfile,"usb.det",FA_WRITE|FA_OPEN_ALWAYS)==FR_OK);
TickTock 108:29b5a760adc2 816 if(usbEn){
TickTock 111:d1559bb25c43 817 f_close(&tfile);
TickTock 111:d1559bb25c43 818 f_unlink("usb.det");
TickTock 111:d1559bb25c43 819 }
TickTock 108:29b5a760adc2 820 return(usbEn);
TickTock 108:29b5a760adc2 821 }