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 Mar 19 04:43:43 2013 +0000
Revision:
33:a277743ebdeb
Parent:
32:c9d9b6cb5de1
Child:
34:4751a8259b18
Added auto dim based on daylight sensor

Who changed what in which revision?

UserRevisionLine numberNew contents of line
TickTock 13:62e0f7f39ff5 1 // main.cpp
TickTock 13:62e0f7f39ff5 2
TickTock 4:8d7759f4fe7a 3 //To Do:
TickTock 33:a277743ebdeb 4 // * Auto-poll cellpair data (user selectable)
TickTock 33:a277743ebdeb 5 // * Log file playback (to enable testing of new passive display modes without having to drive around)
TickTock 33:a277743ebdeb 6 // * USB device detect
TickTock 33:a277743ebdeb 7 // * Ability to update binary from the thumb-drive (requires file timestamp)
TickTock 33:a277743ebdeb 8 // * Cellpair histogram
TickTock 33:a277743ebdeb 9 // * Audible friction brake feedback
TickTock 33:a277743ebdeb 10 // * User-configurable watchpoint
TickTock 33:a277743ebdeb 11 // * Immediately turn off when car is turned off and logging
TickTock 33:a277743ebdeb 12 // * 12V monitor
TickTock 33:a277743ebdeb 13 // * Better graphical DTE display with historic efficiency information considered and displayed
TickTock 33:a277743ebdeb 14 // * Add 50% charge option
TickTock 33:a277743ebdeb 15 // * Tire Pressure Sensor display
TickTock 33:a277743ebdeb 16 // * CSV dump of key parameters on car on/off
TickTock 13:62e0f7f39ff5 17
TickTock 12:8e42d7ba8468 18 #include "mbed.h"
TickTock 12:8e42d7ba8468 19 #include "CAN.h"
TickTock 12:8e42d7ba8468 20 #include "beep.h"
TickTock 12:8e42d7ba8468 21 #include "MSCFileSystem.h"
TickTock 12:8e42d7ba8468 22 #include "PowerControl.h"
TickTock 12:8e42d7ba8468 23 #include "EthernetPowerControl.h"
TickTock 12:8e42d7ba8468 24 #include "utility.h"
TickTock 12:8e42d7ba8468 25 #include "displayModes.h"
TickTock 26:462ccb580472 26 #include "GraphicsDisplay.h"
TickTock 26:462ccb580472 27 #include "SPI_TFTx2.h"
TickTock 23:cd03f9c3395e 28 #include "TOUCH_TFTx2.h"
TickTock 4:8d7759f4fe7a 29
TickTock 13:62e0f7f39ff5 30 LocalFileSystem local("local");
TickTock 13:62e0f7f39ff5 31
TickTock 13:62e0f7f39ff5 32 // to write to USB Flash Drives, or equivalent (SD card in Reader/Writer)
TickTock 13:62e0f7f39ff5 33 MSCFileSystem fs("fs"); // to write to a USB Flash Drive
TickTock 13:62e0f7f39ff5 34
TickTock 13:62e0f7f39ff5 35 time_t seconds ;
TickTock 13:62e0f7f39ff5 36 Beep spkr(p21);
TickTock 13:62e0f7f39ff5 37
TickTock 13:62e0f7f39ff5 38 Ticker ticker;
TickTock 13:62e0f7f39ff5 39 Timer timer;
TickTock 13:62e0f7f39ff5 40
TickTock 13:62e0f7f39ff5 41 DigitalOut led1(LED1);
TickTock 13:62e0f7f39ff5 42 DigitalOut led2(LED2);
TickTock 13:62e0f7f39ff5 43 DigitalOut led3(LED3);
TickTock 13:62e0f7f39ff5 44 DigitalOut led4(LED4);
TickTock 13:62e0f7f39ff5 45
TickTock 22:a43df3905863 46 PwmOut dled(p23);
TickTock 13:62e0f7f39ff5 47
TickTock 13:62e0f7f39ff5 48 InterruptIn touchpad(p17);
TickTock 13:62e0f7f39ff5 49 CAN can1(p9, p10); // CAN1 (EV) uses pins 9 and 10 (rx, tx) and pin 8 (rs)
TickTock 13:62e0f7f39ff5 50 DigitalOut can1SleepMode(p8); // Use pin 8 to control the sleep mode of can2
TickTock 13:62e0f7f39ff5 51 CAN can2(p30, p29); // CAN2 (CAR) uses pins 30 and 29 (rx, tx) and pin 28 (rs)
TickTock 13:62e0f7f39ff5 52 DigitalOut can2SleepMode(p28); // Use pin 28 to control the sleep mode of can1
TickTock 13:62e0f7f39ff5 53
TickTock 13:62e0f7f39ff5 54 TOUCH_TFTx2 tt(p16, p17, p19, p20, p11, p12, p13, p6, p7, p5, "TFT"); // x+,x-,y+,y-,mosi, miso, sclk, cs0, cs1, reset
TickTock 13:62e0f7f39ff5 55
TickTock 23:cd03f9c3395e 56 bool logEn = false,logOpen = false;
TickTock 15:a359fecf85ba 57 FILE *cfile;
TickTock 13:62e0f7f39ff5 58 FILE *file;
TickTock 13:62e0f7f39ff5 59 char fileName[35] = "" ;
TickTock 13:62e0f7f39ff5 60 char writeBuffer[maxBufLen][13]; // buffer for USB write
TickTock 13:62e0f7f39ff5 61 char indexLastMsg[0x800]={0}; // index table for last message
TickTock 13:62e0f7f39ff5 62 CANMessage lastMsg[100]; // table to store last message of eachtype
TickTock 13:62e0f7f39ff5 63 unsigned char battData[256]={0};
TickTock 13:62e0f7f39ff5 64 unsigned char msgChanged[100]; // inidcates which bytes changed
TickTock 13:62e0f7f39ff5 65 char c;
TickTock 13:62e0f7f39ff5 66 volatile int writePointer = 0;
TickTock 20:3bf176d14b14 67 volatile int secsNoMsg = 0;
TickTock 20:3bf176d14b14 68 volatile int secsNoTouch = 0;
TickTock 20:3bf176d14b14 69 volatile bool canIdle;
TickTock 20:3bf176d14b14 70 volatile bool userIdle;
TickTock 26:462ccb580472 71 bool touched=false; //flag to read touchscreen
TickTock 13:62e0f7f39ff5 72 char counter = 0;
TickTock 33:a277743ebdeb 73 unsigned char dMode[2] = {dteScreen,brakeScreen}; //display mode
TickTock 13:62e0f7f39ff5 74 unsigned char sMode = 0; // setup mode
TickTock 13:62e0f7f39ff5 75 unsigned char lastDMode[2] = {0,0}; //last screen mode
TickTock 25:ddf0ec209f03 76 unsigned char dtMode = 6;
TickTock 13:62e0f7f39ff5 77 char displayLog[20][40];
TickTock 13:62e0f7f39ff5 78 unsigned char displayLoc = 0;
TickTock 13:62e0f7f39ff5 79 unsigned char indexOffset = 1;
TickTock 13:62e0f7f39ff5 80 bool showCP = false;
TickTock 33:a277743ebdeb 81 bool pollCP = false;
TickTock 33:a277743ebdeb 82 bool repeatPoll = false;
TickTock 33:a277743ebdeb 83 bool daylight = false;
TickTock 13:62e0f7f39ff5 84
TickTock 0:1596b8644523 85 int main() {
TickTock 2:71b1999a8ea5 86 int readPointer=0;
TickTock 4:8d7759f4fe7a 87 char sTemp[40];
TickTock 2:71b1999a8ea5 88 unsigned long secs;
TickTock 23:cd03f9c3395e 89 char i,j,display=0;
TickTock 22:a43df3905863 90 point lastTouch;
TickTock 7:17bf9ceaf0aa 91
TickTock 8:67eed72f3e10 92 can1.monitor(true); // set to snoop mode
TickTock 8:67eed72f3e10 93 can2.monitor(true); // set to snoop mode
TickTock 2:71b1999a8ea5 94 can1.frequency(500000);
TickTock 2:71b1999a8ea5 95 can2.frequency(500000);
TickTock 7:17bf9ceaf0aa 96 can1SleepMode = 1; // Turn on Monitor_only Mode
TickTock 7:17bf9ceaf0aa 97 can2SleepMode = 1; // Turn on Monitor_only Mode
TickTock 0:1596b8644523 98 can1.attach(&recieve1);
TickTock 0:1596b8644523 99 can2.attach(&recieve2);
TickTock 4:8d7759f4fe7a 100
TickTock 3:3e879b043bc5 101 tt.set_orientation(1);
TickTock 4:8d7759f4fe7a 102 tt.background(Black);
TickTock 19:d576298c46f3 103 tt.set_display(2); // select both displays
TickTock 3:3e879b043bc5 104 tt.cls();
TickTock 1:9dcd70c32180 105 tt.claim(stdout); // send stdout to the TFT display
TickTock 12:8e42d7ba8468 106 touchpad.rise(&touch_ISR);
TickTock 4:8d7759f4fe7a 107 tt.wfi(); // enable interrupt on touch
TickTock 7:17bf9ceaf0aa 108 dled = 0.8; // turn on display LED 80%
TickTock 26:462ccb580472 109
TickTock 2:71b1999a8ea5 110 timer.start() ;
TickTock 2:71b1999a8ea5 111 RTC_Init(); // start the RTC Interrupts that sync the timer
TickTock 1:9dcd70c32180 112 struct tm t; // pointer to a static tm structure
TickTock 19:d576298c46f3 113 NVIC_SetPriority(TIMER3_IRQn, 1); //set ticker priority
TickTock 19:d576298c46f3 114 NVIC_SetPriority(CAN_IRQn, 2); //higher than can (so RTC sync works)
TickTock 33:a277743ebdeb 115
TickTock 26:462ccb580472 116
TickTock 1:9dcd70c32180 117 seconds = time(NULL);
TickTock 1:9dcd70c32180 118 t = *localtime(&seconds) ;
TickTock 1:9dcd70c32180 119 // is it a date before 2012 ?
TickTock 26:462ccb580472 120 if ((t.tm_year + 1900) < 2012 ) {
TickTock 26:462ccb580472 121 // before 2013 so update year to make date entry easier
TickTock 26:462ccb580472 122 t.tm_year = 2013 - 1900;
TickTock 1:9dcd70c32180 123 // set the RTC
TickTock 1:9dcd70c32180 124 set_time(mktime(&t));
TickTock 1:9dcd70c32180 125 seconds = time(NULL);
TickTock 26:462ccb580472 126 }
TickTock 20:3bf176d14b14 127 t = *localtime(&seconds) ;
TickTock 20:3bf176d14b14 128 strftime(sTemp, 32, "%a %m/%d/%Y %X\n", &t);
TickTock 20:3bf176d14b14 129 logMsg(sTemp);
TickTock 15:a359fecf85ba 130
TickTock 26:462ccb580472 131 // Look for new binary on thumbdrive
TickTock 17:e32324a2678d 132 // Can't make this work right now since USB doesn't attach the right timestamp (so new binary isn't loaded)
TickTock 18:999401f359a5 133 /*cfile = fopen("/fs/CANary.bin", "rb");
TickTock 17:e32324a2678d 134 if (cfile!=NULL){ //found a new binary on the thumbdrive so copy it over
TickTock 17:e32324a2678d 135 sprintf(sTemp,"New binary found.\n");
TickTock 17:e32324a2678d 136 logMsg(sTemp);
TickTock 17:e32324a2678d 137 file = fopen("/local/CANary.bin", "wb");
TickTock 17:e32324a2678d 138 if (file==NULL){ //failed to open destination
TickTock 17:e32324a2678d 139 sprintf(sTemp,"Unable to open destination file.\n");
TickTock 17:e32324a2678d 140 logMsg(sTemp);
TickTock 17:e32324a2678d 141 } else {
TickTock 18:999401f359a5 142 tt.set_display(2);
TickTock 18:999401f359a5 143 tt.foreground(White);
TickTock 18:999401f359a5 144 tt.background(Black);
TickTock 18:999401f359a5 145 tt.cls();
TickTock 18:999401f359a5 146 tt.locate(1,40);
TickTock 18:999401f359a5 147 printf("%s\n","Copying binary - Do no remove power.");
TickTock 18:999401f359a5 148 tt.locate(1,80);
TickTock 18:999401f359a5 149 printf("CANary will reset when complete.\n");
TickTock 18:999401f359a5 150 wait(1); //Wait 1 sec for display DMA to finish before writing file
TickTock 17:e32324a2678d 151 while ( int size = fread( writeBuffer, sizeof(char), maxBufLen*13, cfile )){
TickTock 17:e32324a2678d 152 fwrite( writeBuffer, sizeof(char), size, file );
TickTock 18:999401f359a5 153 led4=led3;
TickTock 18:999401f359a5 154 led3=led2;
TickTock 18:999401f359a5 155 led2=led1;
TickTock 18:999401f359a5 156 led1=!led4;
TickTock 17:e32324a2678d 157 }
TickTock 17:e32324a2678d 158 fclose(cfile);
TickTock 17:e32324a2678d 159 fclose(file);
TickTock 17:e32324a2678d 160 remove("/fs/CANary.bin"); // delete original
TickTock 17:e32324a2678d 161 mbed_reset(); //restart
TickTock 17:e32324a2678d 162 }
TickTock 18:999401f359a5 163 }*/
TickTock 17:e32324a2678d 164
TickTock 26:462ccb580472 165 secsNoMsg = 0;
TickTock 26:462ccb580472 166 secsNoTouch = 0;
TickTock 26:462ccb580472 167
TickTock 26:462ccb580472 168 // Read config file
TickTock 23:cd03f9c3395e 169 readConfig();
TickTock 26:462ccb580472 170 touched=false;
TickTock 26:462ccb580472 171 secsNoTouch=2;
TickTock 15:a359fecf85ba 172
TickTock 2:71b1999a8ea5 173 while (true) {
TickTock 4:8d7759f4fe7a 174 if (!logOpen) { // Open new file if one is not already open
TickTock 7:17bf9ceaf0aa 175 if(logEn){ //logging enable
TickTock 7:17bf9ceaf0aa 176 seconds = time(NULL);
TickTock 7:17bf9ceaf0aa 177 t = *localtime(&seconds) ;
TickTock 7:17bf9ceaf0aa 178 strftime(fileName, 32, "/fs/%m%d%H%M.alc", &t); //mmddhhmm.alc
TickTock 16:2a6ca248e1cb 179 //sprintf(sTemp,"Using file %s\n",fileName);
TickTock 16:2a6ca248e1cb 180 //logMsg(sTemp);
TickTock 7:17bf9ceaf0aa 181 file = fopen(fileName, "ab");
TickTock 7:17bf9ceaf0aa 182
TickTock 7:17bf9ceaf0aa 183 if(file==NULL){
TickTock 7:17bf9ceaf0aa 184 sprintf(sTemp,"\nUnable to open %s\n\n\n\n",fileName);
TickTock 7:17bf9ceaf0aa 185 logMsg(sTemp);
TickTock 7:17bf9ceaf0aa 186 logEn=false;
TickTock 26:462ccb580472 187 spkr.beep(1000,0.25);
TickTock 7:17bf9ceaf0aa 188 } else {
TickTock 7:17bf9ceaf0aa 189 logOpen = true;
TickTock 7:17bf9ceaf0aa 190 readPointer=writePointer;
TickTock 7:17bf9ceaf0aa 191 sprintf(sTemp,"Starting Can Log %s\n",fileName);
TickTock 7:17bf9ceaf0aa 192 logMsg(sTemp);
TickTock 7:17bf9ceaf0aa 193 logTS();
TickTock 26:462ccb580472 194 spkr.beep(2000,0.25);
TickTock 7:17bf9ceaf0aa 195 }
TickTock 7:17bf9ceaf0aa 196 }//logging enabled
TickTock 15:a359fecf85ba 197 } else { // if (logOpen)
TickTock 30:e633a63eb257 198 if (((writePointer+maxBufLen-readPointer)%maxBufLen)>(maxBufLen/16)||canIdle||!logEn) {
TickTock 7:17bf9ceaf0aa 199 // Dump buffer if > 1/16 full or canbus has stopped
TickTock 7:17bf9ceaf0aa 200 if (file == NULL) {
TickTock 7:17bf9ceaf0aa 201 logOpen = false;
TickTock 7:17bf9ceaf0aa 202 sprintf(sTemp,"Failed to append log file.\n\n");
TickTock 26:462ccb580472 203 spkr.beep(1000,0.25);
TickTock 7:17bf9ceaf0aa 204 logMsg(sTemp);
TickTock 7:17bf9ceaf0aa 205 logEn=false;
TickTock 7:17bf9ceaf0aa 206 } else {
TickTock 7:17bf9ceaf0aa 207 while (readPointer != writePointer) {
TickTock 7:17bf9ceaf0aa 208 for (j = 0; j<13; j++){
TickTock 7:17bf9ceaf0aa 209 fprintf(file,"%c",writeBuffer[readPointer][j]);
TickTock 4:8d7759f4fe7a 210 }
TickTock 7:17bf9ceaf0aa 211 if(++readPointer >= maxBufLen)
TickTock 7:17bf9ceaf0aa 212 readPointer=0;
TickTock 4:8d7759f4fe7a 213 }
TickTock 7:17bf9ceaf0aa 214 led4 = !led4;
TickTock 7:17bf9ceaf0aa 215 }
TickTock 30:e633a63eb257 216 } // if > 1/16 full, canbus has stopped, or logging stopped
TickTock 30:e633a63eb257 217 if (!logEn) {
TickTock 30:e633a63eb257 218 fclose(file);
TickTock 30:e633a63eb257 219 logOpen=false;
TickTock 30:e633a63eb257 220 }
TickTock 4:8d7759f4fe7a 221 } // if logOpen
TickTock 4:8d7759f4fe7a 222 if (canIdle&&userIdle) { // canbus idle --> sleep to save power
TickTock 26:462ccb580472 223 if (logOpen){
TickTock 7:17bf9ceaf0aa 224 fclose(file);
TickTock 7:17bf9ceaf0aa 225 } // if (logOpen)*/
TickTock 20:3bf176d14b14 226 seconds = time(NULL);
TickTock 20:3bf176d14b14 227 t = *localtime(&seconds) ;
TickTock 21:22bdce9efcb5 228 strftime(sTemp, 40, "Sleeping: %a %m/%d/%Y %X\n", &t);
TickTock 4:8d7759f4fe7a 229 logMsg(sTemp);
TickTock 25:ddf0ec209f03 230 updateDisplay(0); //Added for turbo3 who has a display override and wants to see the sleep message before going to sleep
TickTock 25:ddf0ec209f03 231 updateDisplay(1);
TickTock 4:8d7759f4fe7a 232 //LPC_RTC->CIIR=0x00; // block RTC interrupts
TickTock 4:8d7759f4fe7a 233 led1=0;
TickTock 4:8d7759f4fe7a 234 led2=0;
TickTock 4:8d7759f4fe7a 235 led3=0;
TickTock 4:8d7759f4fe7a 236 led4=0;
TickTock 4:8d7759f4fe7a 237 dled=0; // turn off display
TickTock 4:8d7759f4fe7a 238 secs = time(NULL); // seconds past 12:00:00 AM 1 Jan 1900
TickTock 22:a43df3905863 239 while (secsNoMsg>canTimeout && !touched) {
TickTock 4:8d7759f4fe7a 240 //DeepPowerDown();
TickTock 12:8e42d7ba8468 241 tt.wfi(); //enable touch interrupt
TickTock 21:22bdce9efcb5 242 //__wfi(); // freeze CPU and wait for interrupt (from canbus or touch)
TickTock 21:22bdce9efcb5 243 Sleep();
TickTock 4:8d7759f4fe7a 244 }
TickTock 25:ddf0ec209f03 245 secsNoTouch=0;
TickTock 4:8d7759f4fe7a 246 canIdle=secsNoMsg>canTimeout;
TickTock 20:3bf176d14b14 247 userIdle=secsNoTouch>userTimeout;
TickTock 7:17bf9ceaf0aa 248 dled=0.8; // turn on display LED
TickTock 20:3bf176d14b14 249 seconds = time(NULL);
TickTock 20:3bf176d14b14 250 t = *localtime(&seconds) ;
TickTock 21:22bdce9efcb5 251 strftime(sTemp, 40, "Waking: %a %m/%d/%Y %X\n", &t);
TickTock 4:8d7759f4fe7a 252 logMsg(sTemp);
TickTock 4:8d7759f4fe7a 253 if (time(NULL)>(secs+1800)) {
TickTock 4:8d7759f4fe7a 254 logOpen = false; // Start new file if asleep for more than 30 minutes
TickTock 4:8d7759f4fe7a 255 if (secsNoTouch>100) secsNoTouch = 100; // also mostly reset user Idle counter
TickTock 7:17bf9ceaf0aa 256 } else if (false){ // insert timestamp on each wake if logging enabled (disabled for now)
TickTock 7:17bf9ceaf0aa 257 file = fopen(fileName, "ab");
TickTock 4:8d7759f4fe7a 258 logTS();
TickTock 4:8d7759f4fe7a 259 }
TickTock 4:8d7759f4fe7a 260 } // if idle
TickTock 4:8d7759f4fe7a 261
TickTock 15:a359fecf85ba 262 if(touched){ // call touchscreen procedure if touch interrupt detected
TickTock 7:17bf9ceaf0aa 263 lastTouch = tt.get_touch();
TickTock 7:17bf9ceaf0aa 264 lastTouch = tt.to_pixel(lastTouch); // convert to pixel pos
TickTock 22:a43df3905863 265 if((lastTouch.x!=639)&&(lastTouch.x!=319)&&(lastTouch.y!=239)){
TickTock 22:a43df3905863 266 secsNoTouch=0; //debounce
TickTock 22:a43df3905863 267 }
TickTock 22:a43df3905863 268 //sprintf(sTemp,"%d,%d ",lastTouch.x,lastTouch.y);
TickTock 22:a43df3905863 269 //logMsg(sTemp);
TickTock 12:8e42d7ba8468 270 touched = false; // clear interrupt flag
TickTock 7:17bf9ceaf0aa 271 }
TickTock 4:8d7759f4fe7a 272 if (!userIdle) {
TickTock 4:8d7759f4fe7a 273 if (secsNoTouch<2) {// Recently touched
TickTock 4:8d7759f4fe7a 274 secsNoTouch +=2; // increment to prevent double touch
TickTock 4:8d7759f4fe7a 275 if (lastTouch.x>320){
TickTock 4:8d7759f4fe7a 276 i=1;
TickTock 4:8d7759f4fe7a 277 } else {
TickTock 4:8d7759f4fe7a 278 i=0;
TickTock 4:8d7759f4fe7a 279 }
TickTock 23:cd03f9c3395e 280 if (sMode==0) sMode = 1;
TickTock 22:a43df3905863 281 //sprintf(sTemp,"button %d %d,%d %d\n",i,buttonX(lastTouch.x,3),buttonY(lastTouch.y,3),lastTouch.x);
TickTock 22:a43df3905863 282 //logMsg(sTemp);
TickTock 23:cd03f9c3395e 283 switch (sMode) {
TickTock 23:cd03f9c3395e 284 case 0: // no select
TickTock 23:cd03f9c3395e 285 break;
TickTock 23:cd03f9c3395e 286 case 1: // select screen
TickTock 23:cd03f9c3395e 287 switch (buttonX(lastTouch.x,3)*10+buttonY(lastTouch.y,3)) {
TickTock 23:cd03f9c3395e 288 case 00:
TickTock 23:cd03f9c3395e 289 case 30:
TickTock 23:cd03f9c3395e 290 if (dMode[i]==monitorScreen||dMode[i]==changedScreen) {
TickTock 23:cd03f9c3395e 291 indexOffset=indexOffset>4?indexOffset-4:1;
TickTock 25:ddf0ec209f03 292 } else if (dMode[i]==config1Screen) {
TickTock 23:cd03f9c3395e 293 wait_ms(500);
TickTock 23:cd03f9c3395e 294 tt.calibrate();
TickTock 23:cd03f9c3395e 295 }
TickTock 23:cd03f9c3395e 296 break;
TickTock 23:cd03f9c3395e 297 case 10:
TickTock 23:cd03f9c3395e 298 case 40:
TickTock 23:cd03f9c3395e 299 if (dMode[i]==changedScreen) {
TickTock 23:cd03f9c3395e 300 for(j=0;j<100;j++) msgChanged[j]=0; // clear changed data
TickTock 23:cd03f9c3395e 301 lastDMode[i]=99;//force refresh
TickTock 23:cd03f9c3395e 302 } else if (dMode[i]==cpScreen) {
TickTock 33:a277743ebdeb 303 pollCP=true;
TickTock 25:ddf0ec209f03 304 } else if (dMode[i]==config1Screen) {
TickTock 23:cd03f9c3395e 305 mbed_reset();
TickTock 23:cd03f9c3395e 306 }
TickTock 23:cd03f9c3395e 307 break;
TickTock 23:cd03f9c3395e 308 case 20:
TickTock 23:cd03f9c3395e 309 case 50:
TickTock 23:cd03f9c3395e 310 if (dMode[i]==monitorScreen||dMode[i]==changedScreen) {
TickTock 23:cd03f9c3395e 311 indexOffset=indexOffset<77?indexOffset+4:80;
TickTock 25:ddf0ec209f03 312 } else if (dMode[i]==config1Screen) {
TickTock 23:cd03f9c3395e 313 sprintf(sTemp,"Saving config file.\n");
TickTock 23:cd03f9c3395e 314 logMsg(sTemp);
TickTock 25:ddf0ec209f03 315 saveConfig();
TickTock 26:462ccb580472 316 spkr.beep(2000,0.25);
TickTock 23:cd03f9c3395e 317 }
TickTock 23:cd03f9c3395e 318 break;
TickTock 23:cd03f9c3395e 319 case 01:
TickTock 23:cd03f9c3395e 320 case 31:
TickTock 25:ddf0ec209f03 321 if (dMode[i]==config1Screen) {
TickTock 23:cd03f9c3395e 322 logEn = !logEn;
TickTock 33:a277743ebdeb 323 if (!logEn) repeatPoll=false;
TickTock 25:ddf0ec209f03 324 } else if (dMode[i]==config2Screen){
TickTock 25:ddf0ec209f03 325 dtMode=(dtMode<6)?dtMode+1:0;
TickTock 25:ddf0ec209f03 326 lastDMode[i]=99;
TickTock 23:cd03f9c3395e 327 }
TickTock 23:cd03f9c3395e 328 break;
TickTock 23:cd03f9c3395e 329 case 11:
TickTock 23:cd03f9c3395e 330 case 41:
TickTock 33:a277743ebdeb 331 if (dMode[i]==config1Screen) {
TickTock 33:a277743ebdeb 332 repeatPoll = !repeatPoll&&logEn;
TickTock 33:a277743ebdeb 333 if (repeatPoll) {
TickTock 33:a277743ebdeb 334 ticker.attach(&tickerISR,300);
TickTock 33:a277743ebdeb 335 } else {
TickTock 33:a277743ebdeb 336 ticker.detach();
TickTock 33:a277743ebdeb 337 }
TickTock 33:a277743ebdeb 338 } else if (dMode[i]==config2Screen){
TickTock 25:ddf0ec209f03 339 upDate(dtMode,true);
TickTock 25:ddf0ec209f03 340 lastDMode[i]=99;
TickTock 25:ddf0ec209f03 341 }
TickTock 23:cd03f9c3395e 342 break;
TickTock 23:cd03f9c3395e 343 case 21:
TickTock 23:cd03f9c3395e 344 case 51:
TickTock 25:ddf0ec209f03 345 if (dMode[i]==config2Screen){
TickTock 25:ddf0ec209f03 346 upDate(dtMode,false);
TickTock 25:ddf0ec209f03 347 lastDMode[i]=99;
TickTock 25:ddf0ec209f03 348 }
TickTock 23:cd03f9c3395e 349 break;
TickTock 23:cd03f9c3395e 350 case 02:
TickTock 23:cd03f9c3395e 351 case 32:
TickTock 22:a43df3905863 352 dMode[i]=dMode[i]>0?dMode[i]-1:maxScreens;
TickTock 22:a43df3905863 353 break;
TickTock 23:cd03f9c3395e 354 case 12:
TickTock 23:cd03f9c3395e 355 case 42:
TickTock 22:a43df3905863 356 secsNoTouch = userTimeout; // immediately exit config mode
TickTock 25:ddf0ec209f03 357 if (dMode[i]==config1Screen) mbed_reset();
TickTock 22:a43df3905863 358 break;
TickTock 23:cd03f9c3395e 359 case 22:
TickTock 23:cd03f9c3395e 360 case 52:
TickTock 22:a43df3905863 361 dMode[i]=dMode[i]<maxScreens?dMode[i]+1:0;
TickTock 22:a43df3905863 362 break;
TickTock 22:a43df3905863 363 default:
TickTock 25:ddf0ec209f03 364 break;
TickTock 25:ddf0ec209f03 365 }
TickTock 23:cd03f9c3395e 366 break;
TickTock 23:cd03f9c3395e 367 case 2: // numpad
TickTock 23:cd03f9c3395e 368 break;
TickTock 23:cd03f9c3395e 369 case 3:
TickTock 23:cd03f9c3395e 370 break;
TickTock 23:cd03f9c3395e 371 default:
TickTock 23:cd03f9c3395e 372 break;
TickTock 23:cd03f9c3395e 373 } // case sMode
TickTock 22:a43df3905863 374 } //recently touched
TickTock 4:8d7759f4fe7a 375 } else { // userIdle
TickTock 8:67eed72f3e10 376 if(sMode==1){
TickTock 8:67eed72f3e10 377 sMode=0;
TickTock 8:67eed72f3e10 378 lastDMode[0]=99;
TickTock 8:67eed72f3e10 379 lastDMode[1]=99;
TickTock 8:67eed72f3e10 380 }
TickTock 4:8d7759f4fe7a 381 }
TickTock 15:a359fecf85ba 382
TickTock 33:a277743ebdeb 383 display=display<1?display+1:0; // toggle display
TickTock 33:a277743ebdeb 384 updateDisplay(display);
TickTock 33:a277743ebdeb 385 if(pollCP){ // We do this inside main loop instead of ticker so CAN RX will not be blocked
TickTock 33:a277743ebdeb 386 sendCPreq(); // send cellpair data request.
TickTock 33:a277743ebdeb 387 wait_ms(16);
TickTock 33:a277743ebdeb 388 sendTreq(); //send temperature request
TickTock 33:a277743ebdeb 389 wait_ms(16);
TickTock 33:a277743ebdeb 390 pollCP=false;
TickTock 33:a277743ebdeb 391 showCP=true;
TickTock 32:c9d9b6cb5de1 392 }
TickTock 33:a277743ebdeb 393 if(daylight){
TickTock 33:a277743ebdeb 394 dled = 0.75;
TickTock 33:a277743ebdeb 395 }else{
TickTock 33:a277743ebdeb 396 dled = 0.1;
TickTock 33:a277743ebdeb 397 }
TickTock 33:a277743ebdeb 398
TickTock 2:71b1999a8ea5 399 } //while (true)
TickTock 0:1596b8644523 400 }