ADCBufCC26X2.h
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32 /*!****************************************************************************
33  * @file ADCBufCC26X2.h
34  *
35  * @brief ADCBuf driver implementation for a CC26X2 analog-to-digital converter
36  *
37  * # Driver include #
38  * The ADCBuf header file should be included in an application as follows:
39  * @code
40  * #include <ti/drivers/ADCBuf.h>
41  * #include <ti/drivers/adc/ADCBufCC26X2.h>
42  * @endcode
43  *
44  * # Overview #
45  * This is a CC26X2 specific implementation of the generic TI-RTOS ADCBuf driver.
46  * The generic ADCBuf API specified in ti/drivers/ADCBuf.h should be called by the application,
47  * not the device specific implementation in ti/drivers/adcbuf/ADCBufCC26X2.
48  * The board file defines the device specific configuration and casting in the general
49  * API ensures the correct device specific functions are called. You should specify an
50  * ADCBufCC26X2_ParamsExtension in the custom field of the ADCBuf_Params that suits
51  * your application. The default settings work for many, but not all, usecases.
52  *
53  * # General Behavior #
54  * A timer and the DMA are used to trigger the ADC and fill a buffer in the background (in hardware) at a specified frequency.
55  * The application may execute other tasks while the hardware handles the conversions.
56  * In contrast to the standard ti/drivers/ADC driver, this driver allows for precise sampling of waveforms.
57  *
58  * | Driver | Number of samples needed in one call |
59  * |----------------|-----------------------------------------|
60  * | ADC.h | 1 |
61  * | ADCBuf.h | > 1 |
62  *
63  * This ADCBuf driver provides an API interface to using the analog-to-digital converter
64  * directly from the CM3 without going through the sensor controller.
65  * The sensor controller can still use the ADC, support for sharing the ADC resource between the
66  * sensor controller and the CM3 is built into the driver. There is a hardware semaphore that the
67  * driver must acquire before beginning any number of conversions. This same hardware semaphore also
68  * prevents the simultaneous use of this driver and the basic ADC driver.
69  *
70  * The ADC drivers supports making between one and 1024 measurements once or continuous
71  * measuring with returned buffer sizes between one and 1024 measurements.
72  *
73  * The application should call ADCBuf_init() once by the application to set the isOpened
74  * flag to false, indicating that the driver is ready to use.
75  *
76  * The ADC driver is opened by calling ADCBuf_open() which will
77  * set up interrupts and configure the internal components of the driver.
78  * However, the ADC hardware or analog pins are not yet configured, since the sensor
79  * controller or basic ADC driver might be using the ADC.
80  *
81  * In order to perform an ADC conversion, the application should call
82  * ADCBuf_convert(). This call will request the ADC resource, configure the ADC, set up the DMA and GPTimer,
83  * and perform the requested ADC conversions on the selected DIO or internal signal. The DIO or internal signal is defined by the
84  * ADCBuf_Conversion structure in the application code and adcBufCC26x2Objects in the board file.
85  *
86  * @warning If the ADCBUF driver is setup in ADCBuf_RECURRENCE_MODE_CONTINUOUS mode, the user must assure that the provided callback
87  * function is completed before the next conversion completes. If the next conversion completes before the callback function finishes,
88  * the DMA will clobber the previous buffer with new data.
89  *
90  * If the sensor controller is using the ADC when the driver requests it at the start of the ADC_convert() call,
91  * the conversion will fail and return false.
92  * The ADC resource may be pre-acquired by calling the control function ADCBufCC26X2_CMD_ACQUIRE_ADC_SEMAPHORE.
93  * It will be released again automatically after the next conversion completes.
94  *
95  * In both ADCBufCC26X2_SAMPING_MODE_SYNCHRONOUS mode and ADCBufCC26X2_SAMPING_MODE_ASYNCHRONOUS mode, enough sampling
96  * time must be provided between conversions that each measurement may be completed before the next trigger arrives.
97  *
98  * @note The ADCBuf driver requires GPTimer0A to function correctly. It will be unavailable for other uses.
99  *
100  * # Supported ADC pins #
101  * Below is a table of the supported ADC IO pins for each package size, for both CC26x2 and CC13x2.
102  * It maps a DIO to its corresponding driverlib define for the CompBInput that it is hardwired to.
103  * This table can be used to create virtual channel entries in the ADCBufCC26X2_adcChannelLut table in the board file.
104  *
105  * | DIO | CC26x2 7x7 AUXIO CompBInput | CC13x2 7x7 AUXIO CompBInput
106  * |--------|-------------------------------|-------------------------------
107  * | 0 | No | No
108  * | 1 | No | No
109  * | 2 | No | No
110  * | 3 | No | No
111  * | 4 | No | No
112  * | 5 | No | No
113  * | 6 | No | No
114  * | 7 | No | No
115  * | 8 | No | No
116  * | 9 | No | No
117  * | 10 | No | No
118  * | 11 | No | No
119  * | 12 | No | No
120  * | 13 | No | No
121  * | 14 | No | No
122  * | 15-22 | No | No
123  * | 23 | ADC_COMPB_IN_AUXIO7 | ADC_COMPB_IN_AUXIO7
124  * | 24 | ADC_COMPB_IN_AUXIO6 | ADC_COMPB_IN_AUXIO6
125  * | 25 | ADC_COMPB_IN_AUXIO5 | ADC_COMPB_IN_AUXIO5
126  * | 26 | ADC_COMPB_IN_AUXIO4 | ADC_COMPB_IN_AUXIO4
127  * | 27 | ADC_COMPB_IN_AUXIO3 | ADC_COMPB_IN_AUXIO3
128  * | 28 | ADC_COMPB_IN_AUXIO2 | ADC_COMPB_IN_AUXIO2
129  * | 29 | ADC_COMPB_IN_AUXIO1 | ADC_COMPB_IN_AUXIO1
130  * | 30 | ADC_COMPB_IN_AUXIO0 | ADC_COMPB_IN_AUXIO0
131  *
132  * # Supported Internal Signals #
133  * Below is a table of internal signals that can be measured using the ADC.
134  * Since we are not connecting to a DIO, there is no DIO to internal signal mapping. The DIO field in the channel lookup table should be marked PIN_UNASSIGNED.
135  * This table can be used to create virtual channel entries in the ADCBufCC26X2_adcChannelLut table in the board file.
136  *
137  * | DIO | Internal Signal CompBInput |
138  * |--------------------|-------------------------------|
139  * | PIN_UNASSIGNED | ADC_COMPB_IN_DCOUPL |
140  * | PIN_UNASSIGNED | ADC_COMPB_IN_VSS |
141  * | PIN_UNASSIGNED | ADC_COMPB_IN_VDDS |
142  *
143  * # Error handling #
144  * The following errors may occur when opening the ADC without assertions enabled:
145  * - The ADC handle is already open.
146  *
147  * The following errors may occur when requesting an ADC conversion:
148  * - The ADC is currently already doing a conversion.
149  * - The ADC was not available (used by sensor controller or basic ADC).
150  *
151  *
152  * # Power Management #
153  * The TI-RTOS power management framework will try to put the device into the most
154  * power efficient mode whenever possible. Please see the technical reference
155  * manual for further details on each power mode.
156  *
157  * While converting, the ADCBufCC26X2 driver sets a power constraint to keep
158  * the device out of standby. When the conversion has finished, the power
159  * constraint is released. The driver also sets a dependency on the DMA to enable
160  * background transfers from the ADC FIFO to memory.
161  * The following statements are valid:
162  * - After ADCBuf_convert(): the device cannot enter standby.
163  * - After ADCBuf_convertCancel(): the device can enter standby again.
164  * - After a conversion finishes: the device can enter standby again.
165  *
166  *
167  * # Supported Functions #
168  * | API function | Description |
169  * |------------------------------------|-----------------------------------------------------------------------|
170  * | ADCBuf_init() | Initialize ADC driver |
171  * | ADCBuf_open() | Open the ADC driver and configure driver |
172  * | ADCBuf_convert() | Perform ADC conversion |
173  * | ADCBuf_convertCancel() | Cancel ongoing ADC conversion |
174  * | ADCBuf_close() | Close ADC driver |
175  * | ADCBuf_Params_init() | Initialise ADCBuf_Params structure to default values |
176  * | ADCBuf_getResolution() | Get the resolution of the ADC of the current device |
177  * | ADCBuf_adjustRawValues() | Adjust the values in a returned buffer for manufacturing tolerances |
178  * | ADCBuf_convertAdjustedToMicroVolts | Convert a buffer of adjusted values to microvolts |
179  * | ADCBuf_control() | Execute device specific functions |
180  *
181  *
182  * # Not Supported Functionality #
183  * - Performing conversions on multiple channels simultaneously is not supported.
184  * In other words, the parameter channelCount must always be set to 1 when calling ADCBuf_convert().
185  * The ADC on CC26XX devices does not support time-division multiplexing of channels or pins in hardware.
186  *
187  * # Use Cases #
188  * ## Basic one-shot conversion #
189  * Perform one conversion on Board_ADCCHANNEL_A1 in ::ADCBuf_RETURN_MODE_BLOCKING.
190  * @code
191  * #include <ti/drivers/ADCBuf.h>
192  *
193  * #define ADCBUFFERSIZE 100
194  *
195  * ADCBuf_Handle adcBufHandle;
196  * ADCBuf_Params adcBufParams;
197  * ADCBuf_Conversion blockingConversion;
198  * uint16_t sampleBufferOne[ADCBUFFERSIZE];
199  *
200  * ADCBuf_Params_init(&adcBufParams);
201  * adcBufHandle = ADCBuf_open(Board_ADCBuf0, &adcBufParams);
202  * if (adcBufHandle == NULL) {
203  * // handle error
204  * }
205  *
206  * blockingConversion.arg = NULL;
207  * blockingConversion.adcChannel = Board_ADCCHANNEL_A1;
208  * blockingConversion.sampleBuffer = sampleBufferOne;
209  * blockingConversion.sampleBufferTwo = NULL;
210  * blockingConversion.samplesRequestedCount = ADCBUFFERSIZE;
211  *
212  * if (ADCBuf_convert(adcBufHandle, &blockingConversion, 1) != ADCBuf_STATUS_SUCCESS) {
213  * // handle error
214  * }
215  * @endcode
216  *
217  * ## Using ADCBufCC26X2_ParamsExtension #
218  * This specific configuration performs one conversion on Board_ADCCHANNEL_A1 in ::ADCBuf_RETURN_MODE_BLOCKING.
219  * The custom parameters used here are identical to the defaults parameters.
220  * Users can of course define their own parameters.
221  * @code
222  * #include <ti/drivers/ADCBuf.h>
223  *
224  * #define ADCBUFFERSIZE 100
225  *
226  * ADCBuf_Handle adcBufHandle;
227  * ADCBuf_Params adcBufParams;
228  * ADCBuf_Conversion blockingConversion;
229  * uint16_t sampleBufferOne[ADCBUFFERSIZE];
230  * ADCBufCC26X2_ParamsExtension customParams;
231  *
232  * ADCBuf_Params_init(&adcBufParams);
233  * customParams.samplingDuration = ADCBufCC26X2_SAMPLING_DURATION_2P7_US;
234  * customParams.refSource = ADCBufCC26X2_FIXED_REFERENCE;
235  * customParams.samplingMode = ADCBufCC26X2_SAMPING_MODE_SYNCHRONOUS;
236  * customParams.inputScalingEnabled = true;
237  *
238  * adcBufParams.custom = &customParams;
239  *
240  * adcBufHandle = ADCBuf_open(Board_ADCBuf0, &adcBufParams);
241  * if (adcBufHandle == NULL) {
242  * // handle error
243  * }
244  *
245  * blockingConversion.arg = NULL;
246  * blockingConversion.adcChannel = Board_ADCCHANNEL_A1;
247  * blockingConversion.sampleBuffer = sampleBufferOne;
248  * blockingConversion.sampleBufferTwo = NULL;
249  * blockingConversion.samplesRequestedCount = ADCBUFFERSIZE;
250  *
251  * if (ADCBuf_convert(adcBufHandle, &blockingConversion, 1) != ADCBuf_STATUS_SUCCESS) {
252  * // handle error
253  * }
254  * @endcode
255  *
256  * # Instrumentation #
257  * The ADC driver interface produces log statements if instrumentation is
258  * enabled.
259  *
260  * Diagnostics Mask | Log details |
261  * ---------------- | ----------- |
262  * Diags_USER1 | basic ADCBuf operations performed |
263  * Diags_USER2 | detailed ADCBuf operations performed |
264  *
265  ******************************************************************************
266  */
267 
268 #ifndef ti_drivers_adc_adcbufcc26xx__include
269 #define ti_drivers_adc_adcbufcc26xx__include
270 
271 #ifdef __cplusplus
272 extern "C" {
273 #endif
274 
275 #include <stdint.h>
276 #include <stdbool.h>
277 
278 #include <ti/drivers/ADCBuf.h>
279 #include <ti/drivers/PIN.h>
283 #include <ti/drivers/Power.h>
285 
286 #include <ti/devices/DeviceFamily.h>
287 #include DeviceFamily_constructPath(driverlib/aux_adc.h)
288 
289 #include <ti/drivers/dpl/HwiP.h>
290 #include <ti/drivers/dpl/ClockP.h>
291 #include <ti/drivers/dpl/SemaphoreP.h>
292 #include <ti/drivers/dpl/SwiP.h>
293 
306 /* Add ADCBufCC26X2_CMD_* macros here */
307 
321 #define ADCBufCC26X2_CMD_ACQUIRE_ADC_SEMAPHORE ADCBuf_CMD_RESERVED + 1
322 
336 #define ADCBufCC26X2_CMD_KEEP_ADC_SEMAPHORE ADCBuf_CMD_RESERVED + 2
337 
345 #define ADCBufCC26X2_CMD_KEEP_ADC_SEMAPHORE_DISABLE ADCBuf_CMD_RESERVED + 3
346 
352 #define ADCBufCC26X2_CMD_RELEASE_ADC_SEMAPHORE ADCBuf_CMD_RESERVED + 4
353 
359 #define ADCBufCC26X2_RESOLUTION 12
360 
361 #define ADCBufCC26X2_BYTES_PER_SAMPLE 2
362 
363 /*
364  * =============================================================================
365  * Constants
366  * =============================================================================
367  */
368 
369 /* ADCBuf function table pointer */
371 
372 
373 /*
374  * =============================================================================
375  * Enumerations
376  * =============================================================================
377  */
378 
393 
403  ADCBufCC26X2_SAMPLING_DURATION_2P7_US = AUXADC_SAMPLE_TIME_2P7_US,
404  ADCBufCC26X2_SAMPLING_DURATION_5P3_US = AUXADC_SAMPLE_TIME_5P3_US,
405  ADCBufCC26X2_SAMPLING_DURATION_10P6_US = AUXADC_SAMPLE_TIME_10P6_US,
406  ADCBufCC26X2_SAMPLING_DURATION_21P3_US = AUXADC_SAMPLE_TIME_21P3_US,
407  ADCBufCC26X2_SAMPLING_DURATION_42P6_US = AUXADC_SAMPLE_TIME_42P6_US,
408  ADCBufCC26X2_SAMPLING_DURATION_85P3_US = AUXADC_SAMPLE_TIME_85P3_US,
409  ADCBufCC26X2_SAMPLING_DURATION_170_US = AUXADC_SAMPLE_TIME_170_US,
410  ADCBufCC26X2_SAMPLING_DURATION_341_US = AUXADC_SAMPLE_TIME_341_US,
411  ADCBufCC26X2_SAMPLING_DURATION_682_US = AUXADC_SAMPLE_TIME_682_US,
412  ADCBufCC26X2_SAMPLING_DURATION_1P37_MS = AUXADC_SAMPLE_TIME_1P37_MS,
413  ADCBufCC26X2_SAMPLING_DURATION_2P73_MS = AUXADC_SAMPLE_TIME_2P73_MS,
414  ADCBufCC26X2_SAMPLING_DURATION_5P46_MS = AUXADC_SAMPLE_TIME_5P46_MS,
415  ADCBufCC26X2_SAMPLING_DURATION_10P9_MS = AUXADC_SAMPLE_TIME_10P9_MS
417 
418 
440  ADCBufCC26X2_FIXED_REFERENCE = AUXADC_REF_FIXED,
441  ADCBufCC26X2_VDDS_REFERENCE = AUXADC_REF_VDDS_REL
443 
444 
445 
446 /*
447  * =============================================================================
448  * Structs
449  * =============================================================================
450  */
451 
459  uint8_t dio;
460  uint8_t compBInput;
462 
472  ADCBufCC26X2_Sampling_Duration samplingDuration;
474  ADCBufCC26X2_Sampling_Mode samplingMode;
476  ADCBufCC26X2_Reference_Source refSource;
494 
513 typedef struct ADCBufCC26X2_HWAttrs{
519  uint32_t swiPriority;
533  uint8_t intPriority;
537  uint8_t gpTimerUnit;
539 
540 
541 
547 typedef struct ADCBufCC26X2_Object{
548  /* ADC control variables */
549  bool isOpen;
554  uint8_t currentChannel;
555  ADCBufCC26X2_Reference_Source refSource;
556  ADCBufCC26X2_Sampling_Mode samplingMode;
557  ADCBufCC26X2_Sampling_Duration samplingDuration;
561  uint16_t *activeSampleBuffer;
563  /* ADC SYS/BIOS objects */
564  HwiP_Struct hwi;
565  SwiP_Struct swi;
566  SemaphoreP_Struct conversionComplete;
570  /* PIN driver state object and handle */
574  /* UDMA driver handle */
577  /* GPTimer driver handle */
580  uint32_t semaphoreTimeout;
581  uint32_t samplingFrequency;
583 
584 /*
585  * =============================================================================
586  * Functions
587  * =============================================================================
588  */
589 
590 
591 #ifdef __cplusplus
592 }
593 #endif
594 
595 #endif /* ti_drivers_adc_ADCBufCC26XX__include */
Power manager interface for CC26X2.
ADCBufCC26X2 Hardware Attributes.
Definition: ADCBufCC26X2.h:513
Definition: ADCBufCC26X2.h:406
SemaphoreP_Struct conversionComplete
Definition: ADCBufCC26X2.h:566
Definition: ADCBufCC26X2.h:391
struct ADCBufCC26X2_ParamsExtension ADCBufCC26X2_ParamsExtension
CC26X2 specfic extension to ADCBuf_Params.
GPTimer driver implementation for CC26XX/CC13XX.
Definition: ADCBufCC26X2.h:408
ADCBufCC26X2_Reference_Source refSource
Definition: ADCBufCC26X2.h:476
ADCBufCC26X2_AdcChannelLutEntry const * adcChannelLut
Definition: ADCBufCC26X2.h:535
uint32_t samplingFrequency
Definition: ADCBufCC26X2.h:581
ADCBuf_Recurrence_Mode recurrenceMode
Definition: ADCBufCC26X2.h:559
ADCBuf_Return_Mode returnMode
Definition: ADCBufCC26X2.h:560
Table entry that maps a virtual adc channel to a dio and its corresponding internal analogue signal...
Definition: ADCBufCC26X2.h:458
Power Manager.
Analog to Digital Conversion Buffer (ADCBuf) Input Driver.
UDMACC26XX Global configuration.
Definition: UDMACC26XX.h:231
PIN_State pinState
Definition: ADCBufCC26X2.h:571
HwiP_Struct hwi
Definition: ADCBufCC26X2.h:564
ADCBuf_Callback callbackFxn
Definition: ADCBufCC26X2.h:558
ADCBufCC26X2_Sampling_Mode samplingMode
Definition: ADCBufCC26X2.h:556
Definition: ADCBufCC26X2.h:405
uint8_t currentChannel
Definition: ADCBufCC26X2.h:554
Definition: ADCBufCC26X2.h:404
struct ADCBufCC26X2_HWAttrs ADCBufCC26X2_HWAttrs
ADCBufCC26X2 Hardware Attributes.
Definition: ADCBufCC26X2.h:390
PIN_Handle pinHandle
Definition: ADCBufCC26X2.h:572
ADCBufCC26X2_Sampling_Duration
Amount of time the ADC spends sampling the analogue input.
Definition: ADCBufCC26X2.h:402
Definition: ADCBufCC26X2.h:412
Device-specific pin & GPIO driver for CC26xx family [def].
ADCBufCC26X2_Sampling_Duration samplingDuration
Definition: ADCBufCC26X2.h:557
bool conversionInProgress
Definition: ADCBufCC26X2.h:550
Definition: ADCBufCC26X2.h:440
bool inputScalingEnabled
Definition: ADCBufCC26X2.h:492
ADCBufCC26X2_Reference_Source refSource
Definition: ADCBufCC26X2.h:555
uint8_t compBInput
Definition: ADCBufCC26X2.h:460
ADCBufCC26X2 Object.
Definition: ADCBufCC26X2.h:547
The definition of an ADCBuf function table that contains the required set of functions to control a s...
Definition: ADCBuf.h:600
UDMACC26XX driver implementation.
Definition: ADCBufCC26X2.h:410
CC26X2 specfic extension to ADCBuf_Params.
Definition: ADCBufCC26X2.h:470
ADCBufCC26X2_Sampling_Duration samplingDuration
Definition: ADCBufCC26X2.h:472
ADCBuf_Conversion * currentConversion
Definition: ADCBufCC26X2.h:568
uint32_t semaphoreTimeout
Definition: ADCBufCC26X2.h:580
UDMACC26XX_Handle udmaHandle
Definition: ADCBufCC26X2.h:575
Definition: ADCBufCC26X2.h:409
struct ADCBufCC26X2_Object ADCBufCC26X2_Object
ADCBufCC26X2 Object.
uint8_t dio
Definition: ADCBufCC26X2.h:459
Definition: ADCBufCC26X2.h:411
GPTimer Global configuration.
Definition: GPTimerCC26XX.h:406
underlying data structure for type PIN_State
Definition: PIN.h:707
const ADCBuf_FxnTable ADCBufCC26X2_fxnTable
ADCBufCC26X2_Sampling_Mode samplingMode
Definition: ADCBufCC26X2.h:474
ADCBuf_Recurrence_Mode
Recurrence behavior of a ADCBuf_Conversion specified in the ADCBuf_Params.
Definition: ADCBuf.h:404
Definition: ADCBufCC26X2.h:407
ADCBuf_Return_Mode
Return behavior for ADCBuf_convert() specified in the ADCBuf_Params.
Definition: ADCBuf.h:446
struct ADCBufCC26X2_AdcChannelLutEntry ADCBufCC26X2_AdcChannelLutEntry
Table entry that maps a virtual adc channel to a dio and its corresponding internal analogue signal...
GPTimerCC26XX_Handle timerHandle
Definition: ADCBufCC26X2.h:578
Definition: ADCBufCC26X2.h:441
Definition: ADCBufCC26X2.h:415
void(* ADCBuf_Callback)(ADCBuf_Handle handle, ADCBuf_Conversion *conversion, void *completedADCBuffer, uint32_t completedChannel)
The definition of a callback function.
Definition: ADCBuf.h:391
uint32_t swiPriority
ADC SWI priority. The higher the number, the higher the priority. The minimum is 0 and the maximum is...
Definition: ADCBufCC26X2.h:519
bool adcSemaphoreInPossession
Definition: ADCBufCC26X2.h:553
uint8_t intPriority
ADC peripheral&#39;s interrupt priority.
Definition: ADCBufCC26X2.h:533
Definition: ADCBufCC26X2.h:413
Defines a conversion to be used with ADCBuf_convert().
Definition: ADCBuf.h:315
bool keepADCSemaphore
Definition: ADCBufCC26X2.h:552
Definition: ADCBufCC26X2.h:403
SwiP_Struct swi
Definition: ADCBufCC26X2.h:565
bool isOpen
Definition: ADCBufCC26X2.h:549
Definition: ADCBufCC26X2.h:414
bool inputScalingEnabled
Definition: ADCBufCC26X2.h:551
ADCBufCC26X2_Reference_Source
Specifies whether the internal reference of the ADC is sourced from the battery voltage or a fixed in...
Definition: ADCBufCC26X2.h:439
struct ADCBufCC26X2_Object * ADCBufCC26X2_Handle
Generic PIN & GPIO driver.
uint16_t * activeSampleBuffer
Definition: ADCBufCC26X2.h:561
ADCBufCC26X2_Sampling_Mode
Specifies whether the internal reference of the ADC is sourced from the battery voltage or a fixed in...
Definition: ADCBufCC26X2.h:389
uint8_t gpTimerUnit
Definition: ADCBufCC26X2.h:537
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