Logger to USB stick running on KL25Z

Dependencies:   F401RE-USBHost FastAnalogIn RTC mbed tsi_sensor2 mbed-rtos2

Fork of ReadSendData by Stuart Scott

Homepage for kXX_logger(was kl25x_usb_logger)

2014Nov12 - Added TSI - only works for kl25z, and fails after 4287seconds

Tests sequences for freezing 4287seconds 4287 4287 - Changed to USB write update every two seconds and lasted 4283seconds. Added mbed TSI_sensor - kudos to mbed as it turns out to be complex to do capacitive touch sensing. Kinetis L series Cortex-M0 (kl25z) has simpler capacitive sensing hardware which mbed/TSI_sensor lib uses, but doesn't support Cortex-M4 versions. K20D is older more complex interface. TSS hasn't had an open source support by Freescale in the past however that has changed. Currently I found KDS1.1.1 has a Processor Expert TSSlib that can be imported - but I'm getting a weird compile/include error - and not found any examples of how to make it work.

2014Oct05 - Published simple kl25z_usb_logger

Testing: Version (2:f06fbf86887e) has run over 28days starting 2014Sept07, reading a sensor data every seconds and then on the USB stick open file, write record, close file

This is over 2,419,200seconds ( 28days*24hrs*3600seconds) The stick data reflected 2,447,633 seconds, but only had 1,776,366 data records. After 407,650 data records started missing updates - analysis: the file could not be opened and read to the end in the allocated 1 second, and therefore missed the next ADC deadline.

By the end of the test period with 1,776,366 records on the USB Stick, ever read then write was causing it to miss two/three ADC updates - ie taking longer than two seconds.

Analysis: this was an aggressive test, and normally would not be opening, writing, closing every 1 second. However big plus the file mechanism held up and the program continued to operate, with a graceful failure of a missed ADC readings. The output used JSON, which reads nicely but turns out not to be supported by Excel (2014?) I was using.

Conclusion: Overall the USB Mechanisms and file read is stable. However the USB stack used doesn't have an event based management for stick insertion and removal, or OTG power management . This KL25Z has been a very useful test to prove the configuration of clocks for USB Stack is possible and stable. The target processor being looked at is the MK20 and is similar in clocks, but slightly more comprehensive USB OTG Next step is to investigate the full Freescale Kinetis USB OTG Stack with power management on a custom K20 board, using Kinetis Design Studio, and very low power capability.

Example https://github.com/ErichStyger/mcuoneclipse/tree/master/Examples/FRDM-K20D50M/FRDM-K20_MSD_Host http://mcuoneclipse.com/2014/10/25/usb-cdc-with-the-frdm-k64f-finally/#comment-37727 - Commentary on Freescale USB versions

Committer:
neilh20
Date:
Tue Nov 11 18:01:25 2014 +0000
Revision:
10:b74fa5ec4af4
Parent:
9:f3f7ca1da2a8
Child:
11:fefb12811584
KL25z - has slider enabled. Needs USB plugged in to start

Who changed what in which revision?

UserRevisionLine numberNew contents of line
neilh20 2:f06fbf86887e 1 /* low power data logger. [FRDM-KL25Z]
neilh20 2:f06fbf86887e 2
neilh20 2:f06fbf86887e 3 Periodically read data from ADC and when present write it in JSON format to USB Stick
neilh20 2:f06fbf86887e 4
neilh20 2:f06fbf86887e 5 Copyright http://www.apache.org/licenses/LICENSE-2.0
neilh20 2:f06fbf86887e 6 and all subsystems per their own licenses which are believed to be GPL 2.0
neilh20 2:f06fbf86887e 7
neilh20 2:f06fbf86887e 8 [c]Record an analoge value to an internal buffer
neilh20 2:f06fbf86887e 9 [p]and when a USB stick is plugged in store the values on the USB stick in JSON format
neilh20 2:f06fbf86887e 10 (currently requires USB stick at reset)
neilh20 2:f06fbf86887e 11 [c]Debug output the events as they happen.
neilh20 2:f06fbf86887e 12 [c]The ticker delay sets the sampling rate.
neilh20 2:f06fbf86887e 13 [F]Date is set when user sets it,
neilh20 2:f06fbf86887e 14 [c]or elapsed time used in the beginning
neilh20 2:f06fbf86887e 15
neilh20 2:f06fbf86887e 16 [F]If OpenSDA USB power supplied, then flash LEDs to indicate activity as follows
neilh20 2:f06fbf86887e 17 [c]1) the Blue led when taking a sample
neilh20 2:f06fbf86887e 18 [c]2) the green led when delivering samples to the USB stick
neilh20 2:f06fbf86887e 19 [F]3)no led shall be on at same time for clear colours
neilh20 2:f06fbf86887e 20
neilh20 2:f06fbf86887e 21 [F] when not doing anything else sleep to conserve power.
sas37 0:eb0dc2b5bc51 22
neilh20 2:f06fbf86887e 23 To modify this for your application, assuming a ratiometric input to the Vref=3.3V
neilh20 2:f06fbf86887e 24 1) Determine physical pins ADC performed on and type of conversion,
neilh20 2:f06fbf86887e 25 1) Determine the "multiplier" from the incoming 16bit ADC wrt to 3.3V to your units.
neilh20 2:f06fbf86887e 26 2) Write the output code changing the JSON headers to define your headers, dataConversion and units
neilh20 2:f06fbf86887e 27
neilh20 2:f06fbf86887e 28 Thanks to other authors for setting up KL25z for
neilh20 2:f06fbf86887e 29 * FastAnalogIn Library mbed.org/users/Sissors/code/FastAnalogIn/
neilh20 2:f06fbf86887e 30 * USB Host mbed.org/users/va009039/code/F401RE-USBHost/
neilh20 2:f06fbf86887e 31
neilh20 2:f06fbf86887e 32 [] 1st three character nomeclature.
neilh20 2:f06fbf86887e 33 [x] indicates implemented state of feature
neilh20 2:f06fbf86887e 34 [c] - complete and unit tested
neilh20 2:f06fbf86887e 35 [p] - partial in progress or not unit tested
neilh20 2:f06fbf86887e 36 [f] - future idea
sas37 0:eb0dc2b5bc51 37
neilh20 2:f06fbf86887e 38 Testing: Basic tests performed, see attached file logger_tests.docx
neilh20 2:f06fbf86887e 39
neilh20 2:f06fbf86887e 40 Modifications to Hardware
neilh20 2:f06fbf86887e 41 1) FRDM-KL25z add J21 and R8 per the instruction manual for USB host
sas37 0:eb0dc2b5bc51 42
neilh20 2:f06fbf86887e 43 Issues:
neilh20 2:f06fbf86887e 44 1) FRDM-KL25z hardware not designed to switch the USB power so saving power on a connected USB device.
neilh20 2:f06fbf86887e 45 Solution: Add switched 5V power.
neilh20 2:f06fbf86887e 46 2) FRDM-KL25z Hardware not designed for low power accurate wall time clock - wastes power keeping the 8Mhz going.
neilh20 2:f06fbf86887e 47 Solution: add an external low power 32KHz oscilator into hardware pin RTC_IN (An osc is the next step up from a raw Xtal)
sas37 0:eb0dc2b5bc51 48
sas37 0:eb0dc2b5bc51 49
sas37 0:eb0dc2b5bc51 50 */
sas37 0:eb0dc2b5bc51 51
neilh20 2:f06fbf86887e 52 #include "mbed.h"
neilh20 2:f06fbf86887e 53 #include "rtc_api.h"
neilh20 2:f06fbf86887e 54 #include "FastAnalogIn.h"
neilh20 2:f06fbf86887e 55 #include "USBHostMSD.h"
neilh20 2:f06fbf86887e 56
neilh20 9:f3f7ca1da2a8 57
neilh20 9:f3f7ca1da2a8 58 #if defined(TARGET_K20D50M)
neilh20 9:f3f7ca1da2a8 59 #define TsiActive 0
neilh20 9:f3f7ca1da2a8 60
neilh20 9:f3f7ca1da2a8 61 #elif defined (TARGET_KL25Z) || defined (TARGET_KL46Z)
neilh20 9:f3f7ca1da2a8 62 #define TsiActive 0
neilh20 9:f3f7ca1da2a8 63 #include "tsi_sensor.h"
neilh20 9:f3f7ca1da2a8 64 #define ELEC0 9
neilh20 9:f3f7ca1da2a8 65 #define ELEC1 10
neilh20 9:f3f7ca1da2a8 66 TSIAnalogSlider tsi(ELEC0, ELEC1, 40);
neilh20 10:b74fa5ec4af4 67 //#define TsiRead() tsi.readDistance()
neilh20 10:b74fa5ec4af4 68 #define TsiRead() tsi.readPercentage()
neilh20 9:f3f7ca1da2a8 69 #elif defined (TARGET_KL05Z)
neilh20 9:f3f7ca1da2a8 70 #define TsiActive 0
neilh20 9:f3f7ca1da2a8 71 #include "TSISensor.h"
neilh20 9:f3f7ca1da2a8 72
neilh20 9:f3f7ca1da2a8 73 #define ELEC0 9
neilh20 9:f3f7ca1da2a8 74 #define ELEC1 8
neilh20 9:f3f7ca1da2a8 75 TSIAnalogSlider tsi(ELEC0, ELEC1, 40);
neilh20 10:b74fa5ec4af4 76 //#define TsiRead(void) tsi.Distance()
neilh20 9:f3f7ca1da2a8 77 #else
neilh20 9:f3f7ca1da2a8 78 #define TsiActive 0
neilh20 9:f3f7ca1da2a8 79 #error TARGET NOT DEFINED
neilh20 9:f3f7ca1da2a8 80 #endif
neilh20 9:f3f7ca1da2a8 81
neilh20 10:b74fa5ec4af4 82 float tsiSlider_dist;
neilh20 2:f06fbf86887e 83 //size of sample buffer
neilh20 2:f06fbf86887e 84 #define BuffSize 16 //16 to test, upto kl25z spare ram of about xxxx?, !2000, linker warns if too large, but also fails
neilh20 2:f06fbf86887e 85 //set the delay used by the ticker
neilh20 2:f06fbf86887e 86 const int sysTockInit_sec = 1; //Test 1, Real life 15minutes or 900sec
sas37 0:eb0dc2b5bc51 87
sas37 0:eb0dc2b5bc51 88 using namespace mbed;
sas37 0:eb0dc2b5bc51 89
neilh20 2:f06fbf86887e 90 //Device Init - per FRDM-KL25Z
neilh20 2:f06fbf86887e 91 DigitalOut ledRed(LED1);
neilh20 2:f06fbf86887e 92 DigitalOut ledGrn(LED2);
neilh20 2:f06fbf86887e 93 DigitalOut ledBlue(LED3);
neilh20 2:f06fbf86887e 94 FastAnalogIn ainPinAA(PTC2); ///AnalogAin pin
sas37 0:eb0dc2b5bc51 95
sas37 0:eb0dc2b5bc51 96 Serial pc(USBTX, USBRX);
sas37 0:eb0dc2b5bc51 97
neilh20 2:f06fbf86887e 98 //Samples stored here - needs to be compact as can use a lot of internal ram
neilh20 2:f06fbf86887e 99 unsigned short sample_u16[BuffSize]; //critical resource for number of samples
neilh20 2:f06fbf86887e 100 unsigned int time_[BuffSize];
sas37 0:eb0dc2b5bc51 101
neilh20 2:f06fbf86887e 102 FILE* fpUsb;
neilh20 2:f06fbf86887e 103 bool UsbPresent=0;
neilh20 2:f06fbf86887e 104 bool warmBoot = rtc_isenabled();
neilh20 2:f06fbf86887e 105 long lp2i =0;
neilh20 2:f06fbf86887e 106 bool sysEventA=0; //Local event
neilh20 2:f06fbf86887e 107 unsigned int tmrE_evt; //Elapsed
neilh20 2:f06fbf86887e 108 Ticker tock; //periodic tick
neilh20 2:f06fbf86887e 109
neilh20 2:f06fbf86887e 110 USBHostMSD msd("usbAa"); //defines the file system access
neilh20 2:f06fbf86887e 111
neilh20 6:261c5054fd51 112 #if defined(TARGET_K20D50M)
neilh20 6:261c5054fd51 113 const char meProc[] = "K20D50M";
neilh20 6:261c5054fd51 114 #elif defined(TARGET_KL25Z)
neilh20 6:261c5054fd51 115 const char meProc[]= "KL25Z";
neilh20 6:261c5054fd51 116 #else //#if defined(TARGET_KL46Z)||defined(TARGET_K64F)
neilh20 6:261c5054fd51 117 #error Undef processor
neilh20 6:261c5054fd51 118 #endif //
neilh20 9:f3f7ca1da2a8 119
neilh20 9:f3f7ca1da2a8 120
neilh20 9:f3f7ca1da2a8 121
neilh20 9:f3f7ca1da2a8 122
neilh20 9:f3f7ca1da2a8 123
neilh20 2:f06fbf86887e 124 //--------------------------------------------------------------
neilh20 2:f06fbf86887e 125 void tockEvent()
sas37 0:eb0dc2b5bc51 126 {
neilh20 2:f06fbf86887e 127 tmrE_evt++;
neilh20 2:f06fbf86887e 128 sysEventA=1;
sas37 0:eb0dc2b5bc51 129 }
sas37 0:eb0dc2b5bc51 130
neilh20 2:f06fbf86887e 131 //--------------------------------------------------------------
neilh20 2:f06fbf86887e 132 /* Process output Header to USB,
neilh20 2:f06fbf86887e 133 return !0 if valid USB present
neilh20 2:f06fbf86887e 134 */
neilh20 2:f06fbf86887e 135 bool outputHeaderUsb() {
neilh20 2:f06fbf86887e 136 // JSON {"headings":{"time":{"elapsed":"seconds"}, "adcN":"normalized_to_1.0", "adcV":"Volts"}}
neilh20 2:f06fbf86887e 137
neilh20 2:f06fbf86887e 138 if (!UsbPresent)
neilh20 2:f06fbf86887e 139 {
neilh20 2:f06fbf86887e 140 if (msd.connect()) //Attempt to find a device
neilh20 2:f06fbf86887e 141 {//USB Event: newly connected so attempt write header
neilh20 2:f06fbf86887e 142 if (NULL !=(fpUsb = fopen("/usbAa/test1.txt", "a")))
neilh20 2:f06fbf86887e 143 {
neilh20 2:f06fbf86887e 144 pc.printf("USB File test1.txt opened.\n\r");
neilh20 9:f3f7ca1da2a8 145 fprintf(fpUsb,"{\"headings\":{\"time\":{\"elapsed\":\"seconds\"}, \"adcN\":\"normalized_to_1.0\", \"adcV\":\"Volts\"}"
neilh20 9:f3f7ca1da2a8 146 #if TsiActive
neilh20 9:f3f7ca1da2a8 147 "\"tsi\":\"[0-40]\""
neilh20 9:f3f7ca1da2a8 148 #endif
neilh20 9:f3f7ca1da2a8 149 "}}\n");
neilh20 2:f06fbf86887e 150 UsbPresent=1;
neilh20 2:f06fbf86887e 151 fclose(fpUsb); fpUsb=NULL;
neilh20 2:f06fbf86887e 152 } else {
neilh20 2:f06fbf86887e 153 //Can't find a file for some reason. Could be USB full or failed software
neilh20 2:f06fbf86887e 154 pc.printf(" Error: USB File not opened.\n\r");
neilh20 2:f06fbf86887e 155 UsbPresent=0;
neilh20 2:f06fbf86887e 156 }
neilh20 2:f06fbf86887e 157 } //else //Can't find USB device
neilh20 2:f06fbf86887e 158 } else {
neilh20 2:f06fbf86887e 159 // UsbPresent and assume headers written
neilh20 2:f06fbf86887e 160 if (!msd.connected())
neilh20 2:f06fbf86887e 161 {
neilh20 2:f06fbf86887e 162 pc.printf(" USB Flash drive removed.\n\r");
neilh20 2:f06fbf86887e 163 UsbPresent=0;
neilh20 2:f06fbf86887e 164 }
neilh20 2:f06fbf86887e 165 }
neilh20 2:f06fbf86887e 166
neilh20 2:f06fbf86887e 167 return UsbPresent;
neilh20 2:f06fbf86887e 168 }
neilh20 2:f06fbf86887e 169 //--------------------------------------------------------------
neilh20 2:f06fbf86887e 170 void outputHeaders(void) {
neilh20 2:f06fbf86887e 171 outputHeaderUsb();
neilh20 2:f06fbf86887e 172 pc.printf(" Time(S) depthR(norm) Volts Idx %d\n\r",(unsigned int) rtc_read());
neilh20 2:f06fbf86887e 173 }//outputHeaders
sas37 0:eb0dc2b5bc51 174
neilh20 2:f06fbf86887e 175
neilh20 2:f06fbf86887e 176
neilh20 2:f06fbf86887e 177 //--------------------------------------------------------------
neilh20 2:f06fbf86887e 178 /* Manage the write to USB stick
neilh20 2:f06fbf86887e 179 [FUT] detect USB stick and if not present write it when inserted
neilh20 2:f06fbf86887e 180
neilh20 2:f06fbf86887e 181 JSON output json.org
neilh20 2:f06fbf86887e 182 {key:value, key:value, key:value}
neilh20 2:f06fbf86887e 183 {time:[elapsed:<secs 0-2**32>, epoch2014:<secs 0-2**32>,wall:[date:<>,clock:<>],],
neilh20 2:f06fbf86887e 184 adcNorm:<float number 0.0-1.0>,
neilh20 2:f06fbf86887e 185 adcV:<Volts 0-VRef>
neilh20 2:f06fbf86887e 186 */
neilh20 2:f06fbf86887e 187 void manageUsbWrite() {
neilh20 2:f06fbf86887e 188 #define ADC_NORMALIZE (1.0f/65535.0f)
neilh20 2:f06fbf86887e 189 #define ADC_NORM_VREF 3.3
neilh20 2:f06fbf86887e 190 float data_n=( ((float)sample_u16[lp2i]) * ADC_NORMALIZE);
neilh20 6:261c5054fd51 191
neilh20 6:261c5054fd51 192 //Future redesign to use USBHALHost::wait_attach()
neilh20 2:f06fbf86887e 193 if (outputHeaderUsb())
neilh20 2:f06fbf86887e 194 {
neilh20 2:f06fbf86887e 195 if (NULL !=(fpUsb = fopen("/usbAa/test1.txt", "a")))
neilh20 2:f06fbf86887e 196 {
neilh20 9:f3f7ca1da2a8 197 #if TsiActive
neilh20 9:f3f7ca1da2a8 198 //del pc.printf("%10d %5.4f (%6.4fV) %i\n\r",time_[lp2i],data_n,(ADC_NORM_VREF*data_n),lp2i);
neilh20 10:b74fa5ec4af4 199 fprintf(fpUsb, "{\"time\":{\"elapsed\":%10d},\"adcN\": %5.4f, \"adcV\":%6.4f, \"tsi\":%4.2f}\n",time_[lp2i],
neilh20 9:f3f7ca1da2a8 200 data_n,(ADC_NORM_VREF*data_n), tsiSlider_dist);
neilh20 9:f3f7ca1da2a8 201 #else
neilh20 2:f06fbf86887e 202 fprintf(fpUsb, "{\"time\":{\"elapsed\":%10d},\"adcN\": %5.4f, \"adcV\":%6.4f}\n",time_[lp2i],data_n,(ADC_NORM_VREF*data_n));
neilh20 9:f3f7ca1da2a8 203 #endif
neilh20 2:f06fbf86887e 204 fclose(fpUsb); fpUsb=NULL;
neilh20 2:f06fbf86887e 205 ledGrn = !ledGrn;
neilh20 2:f06fbf86887e 206 } else {
neilh20 2:f06fbf86887e 207 //Potential Error
neilh20 2:f06fbf86887e 208 UsbPresent=0; //Can't say its dissappeared as will cause USB find problem.
neilh20 2:f06fbf86887e 209 pc.printf(" Error: USB unexpected can't write!!\n\r");
neilh20 2:f06fbf86887e 210 }
neilh20 2:f06fbf86887e 211 }
neilh20 2:f06fbf86887e 212 }
neilh20 2:f06fbf86887e 213 //--------------------------------------------------------------
neilh20 2:f06fbf86887e 214 /* Manage the sample
neilh20 2:f06fbf86887e 215 - store it
neilh20 2:f06fbf86887e 216 - and write it to USB stick
neilh20 2:f06fbf86887e 217 [FUT] detect USB stick and if not present write it when inserted
neilh20 2:f06fbf86887e 218
neilh20 2:f06fbf86887e 219 JSON output json.org
neilh20 2:f06fbf86887e 220 {key:value, key:value, key:value}
neilh20 2:f06fbf86887e 221 {time:[elapsed:<secs 0-2**32>, epoch2014:<secs 0-2**32>,wall:[date:<>,clock:<>],],
neilh20 2:f06fbf86887e 222 adcNorm:<float number 0.0-1.0>,
neilh20 2:f06fbf86887e 223 adcV:<Volts 0-VRef>}
neilh20 2:f06fbf86887e 224 */
neilh20 2:f06fbf86887e 225 void manageSample() {
neilh20 2:f06fbf86887e 226 float data_n=( ((float)sample_u16[lp2i]) * ADC_NORMALIZE);
neilh20 10:b74fa5ec4af4 227 pc.printf("\n\r%10d %5.4f (%6.4fV) %4.2f %i",time_[lp2i],data_n,(ADC_NORM_VREF*data_n),tsiSlider_dist, lp2i);
neilh20 2:f06fbf86887e 228 ledBlue = !ledBlue;
neilh20 2:f06fbf86887e 229
neilh20 2:f06fbf86887e 230 manageUsbWrite();
neilh20 2:f06fbf86887e 231
neilh20 2:f06fbf86887e 232 }//end manageSample
neilh20 2:f06fbf86887e 233
neilh20 2:f06fbf86887e 234 //--------------------------------------------------------------
neilh20 2:f06fbf86887e 235 /* Manage the sample
neilh20 2:f06fbf86887e 236 - take an ADC sample and
neilh20 2:f06fbf86887e 237 */
neilh20 2:f06fbf86887e 238 void manageAdcIn(void){
neilh20 2:f06fbf86887e 239 //Take samples and store in buffer
neilh20 2:f06fbf86887e 240 if (++lp2i >= BuffSize) lp2i=0;
neilh20 2:f06fbf86887e 241 sample_u16[lp2i]=ainPinAA.read_u16();
neilh20 2:f06fbf86887e 242 time_[lp2i]=(unsigned int)tmrE_evt; //TODO - replace with wall time
neilh20 9:f3f7ca1da2a8 243 tsiSlider_dist = TsiRead();
neilh20 2:f06fbf86887e 244 }//manageAdcIn
neilh20 2:f06fbf86887e 245
neilh20 2:f06fbf86887e 246 //--------------------------------------------------------------
neilh20 3:d94384ab6f12 247 int main() {
neilh20 2:f06fbf86887e 248
neilh20 2:f06fbf86887e 249 //TODO: check RCM_SRS0 &RS1
neilh20 2:f06fbf86887e 250 warmBoot = rtc_isenabled();
neilh20 2:f06fbf86887e 251 if (!warmBoot) {
neilh20 2:f06fbf86887e 252 //TODO figure out how to manage wall time
neilh20 2:f06fbf86887e 253 rtc_init(); //Assumes external clock - TODO: options int32Khz RTC_CLKIN ext32KhzXtal
neilh20 2:f06fbf86887e 254 rtc_write(0x0); //Init to some default;
neilh20 2:f06fbf86887e 255 }
neilh20 4:a3692e095388 256
neilh20 4:a3692e095388 257 ledRed =0;//ON
neilh20 4:a3692e095388 258 ledGrn =1; //off
neilh20 4:a3692e095388 259 ledBlue = 1; //on
neilh20 6:261c5054fd51 260 wait_ms(5000);
neilh20 4:a3692e095388 261 //Thread::wait(2000);
neilh20 2:f06fbf86887e 262 ledRed =1;//Off
neilh20 2:f06fbf86887e 263 ledGrn =1; //off
neilh20 2:f06fbf86887e 264 ledBlue = 0; //on
neilh20 2:f06fbf86887e 265 pc.baud(115200);//Opt 57600
neilh20 6:261c5054fd51 266
neilh20 6:261c5054fd51 267 pc.printf("\n\r%s Logger v0.1 \n\r Sample [time=%dsec, size=%d] Clock=%d\n\r",meProc, sysTockInit_sec,BuffSize,SystemCoreClock);
neilh20 2:f06fbf86887e 268
neilh20 2:f06fbf86887e 269 outputHeaders();
neilh20 2:f06fbf86887e 270
neilh20 2:f06fbf86887e 271 tock.attach(&tockEvent,sysTockInit_sec);
neilh20 2:f06fbf86887e 272
sas37 0:eb0dc2b5bc51 273 while (true) {
neilh20 2:f06fbf86887e 274 if(sysEventA)
neilh20 2:f06fbf86887e 275 {
neilh20 2:f06fbf86887e 276 sysEventA=0;
neilh20 2:f06fbf86887e 277 manageAdcIn();
neilh20 2:f06fbf86887e 278 manageSample();
neilh20 2:f06fbf86887e 279 }//else
neilh20 2:f06fbf86887e 280 // TODO go into power down till next event
sas37 0:eb0dc2b5bc51 281 }
neilh20 2:f06fbf86887e 282
sas37 0:eb0dc2b5bc51 283 }