mbed-dev library fork for STM32F100R6 microcontroller (LQFP64, 24MHz, 32kB flash, 4kB ram, 2-channel DAC, HDMI CEC, very cheap) . Use in online compiler (instead mbed library) with selected platform Nucleo F103RB.

Fork of mbed-dev by mbed official




Tested and working:

  • blink
  • system frequency 24Mhz (with external xtal 8Mhz)
  • stdio uart on pins PA_2-PA_3
  • Serial on pins PA_9-PA_10
  • AnalogOut on pins PA_4, PA_5 (DAC)
  • AnalogIn on pins PA_0, PA_1, PA_2, PA_3, PA_4, PA_5, PA_6, PA_7, PB_0, PB_1, PC_0, PC_1, PC_2, PC_3, PC_5, PC_5


    Notes:
  • TIM2 is used for mbed needs (eq Timer, Ticker, wait etc. )




    Simple test program:

    Import programtestF100R6

    simple tests for STM32F100R6 microcontroller with dedicated library

Committer:
mega64
Date:
Sun Mar 19 23:16:34 2017 +0000
Revision:
51:25d18ad142c8
Parent:
50:d2a4a5ee894a
fixed incompatibility with the modified mbed environment Ch.n+1

Who changed what in which revision?

UserRevisionLine numberNew contents of line
bogdanm 0:9b334a45a8ff 1 /* mbed Microcontroller Library
bogdanm 0:9b334a45a8ff 2 * Copyright (c) 2006-2013 ARM Limited
bogdanm 0:9b334a45a8ff 3 *
bogdanm 0:9b334a45a8ff 4 * Licensed under the Apache License, Version 2.0 (the "License");
bogdanm 0:9b334a45a8ff 5 * you may not use this file except in compliance with the License.
bogdanm 0:9b334a45a8ff 6 * You may obtain a copy of the License at
bogdanm 0:9b334a45a8ff 7 *
bogdanm 0:9b334a45a8ff 8 * http://www.apache.org/licenses/LICENSE-2.0
bogdanm 0:9b334a45a8ff 9 *
bogdanm 0:9b334a45a8ff 10 * Unless required by applicable law or agreed to in writing, software
bogdanm 0:9b334a45a8ff 11 * distributed under the License is distributed on an "AS IS" BASIS,
bogdanm 0:9b334a45a8ff 12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
bogdanm 0:9b334a45a8ff 13 * See the License for the specific language governing permissions and
bogdanm 0:9b334a45a8ff 14 * limitations under the License.
bogdanm 0:9b334a45a8ff 15 */
bogdanm 0:9b334a45a8ff 16 #ifndef MBED_SERIAL_API_H
bogdanm 0:9b334a45a8ff 17 #define MBED_SERIAL_API_H
bogdanm 0:9b334a45a8ff 18
bogdanm 0:9b334a45a8ff 19 #include "device.h"
bogdanm 0:9b334a45a8ff 20 #include "buffer.h"
bogdanm 0:9b334a45a8ff 21 #include "dma_api.h"
bogdanm 0:9b334a45a8ff 22
mega64 50:d2a4a5ee894a 23 // for 100F6 not implemented (N.S.)
mega64 50:d2a4a5ee894a 24 #undef DEVICE_SERIAL_ASYNCH
mega64 50:d2a4a5ee894a 25
mega64 50:d2a4a5ee894a 26
bogdanm 0:9b334a45a8ff 27 #if DEVICE_SERIAL
bogdanm 0:9b334a45a8ff 28
bogdanm 0:9b334a45a8ff 29 #define SERIAL_EVENT_TX_SHIFT (2)
bogdanm 0:9b334a45a8ff 30 #define SERIAL_EVENT_RX_SHIFT (8)
bogdanm 0:9b334a45a8ff 31
bogdanm 0:9b334a45a8ff 32 #define SERIAL_EVENT_TX_MASK (0x00FC)
bogdanm 0:9b334a45a8ff 33 #define SERIAL_EVENT_RX_MASK (0x3F00)
bogdanm 0:9b334a45a8ff 34
bogdanm 0:9b334a45a8ff 35 #define SERIAL_EVENT_ERROR (1 << 1)
bogdanm 0:9b334a45a8ff 36
bogdanm 0:9b334a45a8ff 37 /**
bogdanm 0:9b334a45a8ff 38 * @defgroup SerialTXEvents Serial TX Events Macros
bogdanm 0:9b334a45a8ff 39 *
bogdanm 0:9b334a45a8ff 40 * @{
bogdanm 0:9b334a45a8ff 41 */
bogdanm 0:9b334a45a8ff 42 #define SERIAL_EVENT_TX_COMPLETE (1 << (SERIAL_EVENT_TX_SHIFT + 0))
bogdanm 0:9b334a45a8ff 43 #define SERIAL_EVENT_TX_ALL (SERIAL_EVENT_TX_COMPLETE)
bogdanm 0:9b334a45a8ff 44 /**@}*/
bogdanm 0:9b334a45a8ff 45
bogdanm 0:9b334a45a8ff 46 /**
bogdanm 0:9b334a45a8ff 47 * @defgroup SerialRXEvents Serial RX Events Macros
bogdanm 0:9b334a45a8ff 48 *
bogdanm 0:9b334a45a8ff 49 * @{
bogdanm 0:9b334a45a8ff 50 */
bogdanm 0:9b334a45a8ff 51 #define SERIAL_EVENT_RX_COMPLETE (1 << (SERIAL_EVENT_RX_SHIFT + 0))
bogdanm 0:9b334a45a8ff 52 #define SERIAL_EVENT_RX_OVERRUN_ERROR (1 << (SERIAL_EVENT_RX_SHIFT + 1))
bogdanm 0:9b334a45a8ff 53 #define SERIAL_EVENT_RX_FRAMING_ERROR (1 << (SERIAL_EVENT_RX_SHIFT + 2))
bogdanm 0:9b334a45a8ff 54 #define SERIAL_EVENT_RX_PARITY_ERROR (1 << (SERIAL_EVENT_RX_SHIFT + 3))
bogdanm 0:9b334a45a8ff 55 #define SERIAL_EVENT_RX_OVERFLOW (1 << (SERIAL_EVENT_RX_SHIFT + 4))
bogdanm 0:9b334a45a8ff 56 #define SERIAL_EVENT_RX_CHARACTER_MATCH (1 << (SERIAL_EVENT_RX_SHIFT + 5))
bogdanm 0:9b334a45a8ff 57 #define SERIAL_EVENT_RX_ALL (SERIAL_EVENT_RX_OVERFLOW | SERIAL_EVENT_RX_PARITY_ERROR | \
bogdanm 0:9b334a45a8ff 58 SERIAL_EVENT_RX_FRAMING_ERROR | SERIAL_EVENT_RX_OVERRUN_ERROR | \
bogdanm 0:9b334a45a8ff 59 SERIAL_EVENT_RX_COMPLETE | SERIAL_EVENT_RX_CHARACTER_MATCH)
bogdanm 0:9b334a45a8ff 60 /**@}*/
bogdanm 0:9b334a45a8ff 61
bogdanm 0:9b334a45a8ff 62 #define SERIAL_RESERVED_CHAR_MATCH (255)
bogdanm 0:9b334a45a8ff 63
bogdanm 0:9b334a45a8ff 64 typedef enum {
bogdanm 0:9b334a45a8ff 65 ParityNone = 0,
bogdanm 0:9b334a45a8ff 66 ParityOdd = 1,
bogdanm 0:9b334a45a8ff 67 ParityEven = 2,
bogdanm 0:9b334a45a8ff 68 ParityForced1 = 3,
bogdanm 0:9b334a45a8ff 69 ParityForced0 = 4
bogdanm 0:9b334a45a8ff 70 } SerialParity;
bogdanm 0:9b334a45a8ff 71
bogdanm 0:9b334a45a8ff 72 typedef enum {
bogdanm 0:9b334a45a8ff 73 RxIrq,
bogdanm 0:9b334a45a8ff 74 TxIrq
bogdanm 0:9b334a45a8ff 75 } SerialIrq;
bogdanm 0:9b334a45a8ff 76
bogdanm 0:9b334a45a8ff 77 typedef enum {
bogdanm 0:9b334a45a8ff 78 FlowControlNone,
bogdanm 0:9b334a45a8ff 79 FlowControlRTS,
bogdanm 0:9b334a45a8ff 80 FlowControlCTS,
bogdanm 0:9b334a45a8ff 81 FlowControlRTSCTS
bogdanm 0:9b334a45a8ff 82 } FlowControl;
bogdanm 0:9b334a45a8ff 83
bogdanm 0:9b334a45a8ff 84 typedef void (*uart_irq_handler)(uint32_t id, SerialIrq event);
bogdanm 0:9b334a45a8ff 85
bogdanm 0:9b334a45a8ff 86 #if DEVICE_SERIAL_ASYNCH
bogdanm 0:9b334a45a8ff 87 /** Asynch serial hal structure
bogdanm 0:9b334a45a8ff 88 */
bogdanm 0:9b334a45a8ff 89 typedef struct {
bogdanm 0:9b334a45a8ff 90 struct serial_s serial; /**< Target specific serial structure */
bogdanm 0:9b334a45a8ff 91 struct buffer_s tx_buff; /**< Tx buffer */
bogdanm 0:9b334a45a8ff 92 struct buffer_s rx_buff; /**< Rx buffer */
bogdanm 0:9b334a45a8ff 93 uint8_t char_match; /**< Character to be matched */
bogdanm 0:9b334a45a8ff 94 uint8_t char_found; /**< State of the matched character */
bogdanm 0:9b334a45a8ff 95 } serial_t;
bogdanm 0:9b334a45a8ff 96
bogdanm 0:9b334a45a8ff 97 #else
bogdanm 0:9b334a45a8ff 98 /** Non-asynch serial hal structure
bogdanm 0:9b334a45a8ff 99 */
bogdanm 0:9b334a45a8ff 100 typedef struct serial_s serial_t;
bogdanm 0:9b334a45a8ff 101
bogdanm 0:9b334a45a8ff 102 #endif
bogdanm 0:9b334a45a8ff 103
bogdanm 0:9b334a45a8ff 104 #ifdef __cplusplus
bogdanm 0:9b334a45a8ff 105 extern "C" {
bogdanm 0:9b334a45a8ff 106 #endif
bogdanm 0:9b334a45a8ff 107
bogdanm 0:9b334a45a8ff 108 /**
bogdanm 0:9b334a45a8ff 109 * \defgroup GeneralSerial Serial Configuration Functions
bogdanm 0:9b334a45a8ff 110 * @{
bogdanm 0:9b334a45a8ff 111 */
bogdanm 0:9b334a45a8ff 112
bogdanm 0:9b334a45a8ff 113 /** Initialize the serial peripheral. It sets the default parameters for serial
bogdanm 0:9b334a45a8ff 114 * peripheral, and configure its specifieds pins.
bogdanm 0:9b334a45a8ff 115 *
bogdanm 0:9b334a45a8ff 116 * @param obj The serial object
bogdanm 0:9b334a45a8ff 117 * @param tx The TX pin
bogdanm 0:9b334a45a8ff 118 * @param rx The RX pin
bogdanm 0:9b334a45a8ff 119 */
bogdanm 0:9b334a45a8ff 120 void serial_init(serial_t *obj, PinName tx, PinName rx);
bogdanm 0:9b334a45a8ff 121
bogdanm 0:9b334a45a8ff 122 /** Release the serial peripheral, not currently invoked. It requires further
bogdanm 0:9b334a45a8ff 123 * resource management.
bogdanm 0:9b334a45a8ff 124 *
bogdanm 0:9b334a45a8ff 125 * @param obj The serial object
bogdanm 0:9b334a45a8ff 126 */
bogdanm 0:9b334a45a8ff 127 void serial_free(serial_t *obj);
bogdanm 0:9b334a45a8ff 128
bogdanm 0:9b334a45a8ff 129 /** Configure the baud rate
bogdanm 0:9b334a45a8ff 130 *
bogdanm 0:9b334a45a8ff 131 * @param obj The serial object
bogdanm 0:9b334a45a8ff 132 * @param baudrate The baud rate to be configured
bogdanm 0:9b334a45a8ff 133 */
bogdanm 0:9b334a45a8ff 134 void serial_baud(serial_t *obj, int baudrate);
bogdanm 0:9b334a45a8ff 135
bogdanm 0:9b334a45a8ff 136 /** Configure the format. Set the number of bits, parity and the number of stop bits
bogdanm 0:9b334a45a8ff 137 *
bogdanm 0:9b334a45a8ff 138 * @param obj The serial object
bogdanm 0:9b334a45a8ff 139 * @param data_bits The number of data bits
bogdanm 0:9b334a45a8ff 140 * @param parity The parity
bogdanm 0:9b334a45a8ff 141 * @param stop_bits The number of stop bits
bogdanm 0:9b334a45a8ff 142 */
bogdanm 0:9b334a45a8ff 143 void serial_format(serial_t *obj, int data_bits, SerialParity parity, int stop_bits);
bogdanm 0:9b334a45a8ff 144
bogdanm 0:9b334a45a8ff 145 /** The serial interrupt handler registration.
bogdanm 0:9b334a45a8ff 146 *
bogdanm 0:9b334a45a8ff 147 * @param obj The serial object
bogdanm 0:9b334a45a8ff 148 * @param handler The interrupt handler which will be invoked when interrupt fires.
bogdanm 0:9b334a45a8ff 149 * @param id The SerialBase object
bogdanm 0:9b334a45a8ff 150 */
bogdanm 0:9b334a45a8ff 151 void serial_irq_handler(serial_t *obj, uart_irq_handler handler, uint32_t id);
bogdanm 0:9b334a45a8ff 152
bogdanm 0:9b334a45a8ff 153 /** Configure serial interrupt. This function is used for word-approach
bogdanm 0:9b334a45a8ff 154 *
bogdanm 0:9b334a45a8ff 155 * @param obj The serial object
bogdanm 0:9b334a45a8ff 156 * @param irq The serial IRQ type (RX or TX)
bogdanm 0:9b334a45a8ff 157 * @param enable Set to non-zero to enable events, or zero to disable them
bogdanm 0:9b334a45a8ff 158 */
bogdanm 0:9b334a45a8ff 159 void serial_irq_set(serial_t *obj, SerialIrq irq, uint32_t enable);
bogdanm 0:9b334a45a8ff 160
bogdanm 0:9b334a45a8ff 161 /** Get character. This is a blocking call, waiting for a character
bogdanm 0:9b334a45a8ff 162 *
bogdanm 0:9b334a45a8ff 163 * @param obj The serial object
bogdanm 0:9b334a45a8ff 164 */
bogdanm 0:9b334a45a8ff 165 int serial_getc(serial_t *obj);
bogdanm 0:9b334a45a8ff 166
bogdanm 0:9b334a45a8ff 167 /** Put a character. This is a blocking call, waiting for a peripheral to be available
bogdanm 0:9b334a45a8ff 168 * for writing
bogdanm 0:9b334a45a8ff 169 *
bogdanm 0:9b334a45a8ff 170 * @param obj The serial object
bogdanm 0:9b334a45a8ff 171 * @param c The character to be sent
bogdanm 0:9b334a45a8ff 172 */
bogdanm 0:9b334a45a8ff 173 void serial_putc(serial_t *obj, int c);
bogdanm 0:9b334a45a8ff 174
bogdanm 0:9b334a45a8ff 175 /** Check if the serial peripheral is readable
bogdanm 0:9b334a45a8ff 176 *
bogdanm 0:9b334a45a8ff 177 * @param obj The serial object
bogdanm 0:9b334a45a8ff 178 * @return Non-zero value if a character can be read, 0 if nothing to read.
bogdanm 0:9b334a45a8ff 179 */
bogdanm 0:9b334a45a8ff 180 int serial_readable(serial_t *obj);
bogdanm 0:9b334a45a8ff 181
bogdanm 0:9b334a45a8ff 182 /** Check if the serial peripheral is writable
bogdanm 0:9b334a45a8ff 183 *
bogdanm 0:9b334a45a8ff 184 * @param obj The serial object
bogdanm 0:9b334a45a8ff 185 * @return Non-zero value if a character can be written, 0 otherwise.
bogdanm 0:9b334a45a8ff 186 */
bogdanm 0:9b334a45a8ff 187 int serial_writable(serial_t *obj);
bogdanm 0:9b334a45a8ff 188
bogdanm 0:9b334a45a8ff 189 /** Clear the serial peripheral
bogdanm 0:9b334a45a8ff 190 *
bogdanm 0:9b334a45a8ff 191 * @param obj The serial object
bogdanm 0:9b334a45a8ff 192 */
bogdanm 0:9b334a45a8ff 193 void serial_clear(serial_t *obj);
bogdanm 0:9b334a45a8ff 194
bogdanm 0:9b334a45a8ff 195 /** Set the break
bogdanm 0:9b334a45a8ff 196 *
bogdanm 0:9b334a45a8ff 197 * @param obj The serial object
bogdanm 0:9b334a45a8ff 198 */
bogdanm 0:9b334a45a8ff 199 void serial_break_set(serial_t *obj);
bogdanm 0:9b334a45a8ff 200
bogdanm 0:9b334a45a8ff 201 /** Clear the break
bogdanm 0:9b334a45a8ff 202 *
bogdanm 0:9b334a45a8ff 203 * @param obj The serial object
bogdanm 0:9b334a45a8ff 204 */
bogdanm 0:9b334a45a8ff 205 void serial_break_clear(serial_t *obj);
bogdanm 0:9b334a45a8ff 206
bogdanm 0:9b334a45a8ff 207 /** Configure the TX pin for UART function.
bogdanm 0:9b334a45a8ff 208 *
bogdanm 0:9b334a45a8ff 209 * @param tx The pin used for TX
bogdanm 0:9b334a45a8ff 210 */
bogdanm 0:9b334a45a8ff 211 void serial_pinout_tx(PinName tx);
bogdanm 0:9b334a45a8ff 212
bogdanm 0:9b334a45a8ff 213 /** Configure the serial for the flow control. It sets flow control in the hardware
bogdanm 0:9b334a45a8ff 214 * if a serial peripheral supports it, otherwise software emulation is used.
bogdanm 0:9b334a45a8ff 215 *
bogdanm 0:9b334a45a8ff 216 * @param obj The serial object
bogdanm 0:9b334a45a8ff 217 * @param type The type of the flow control. Look at the available FlowControl types.
bogdanm 0:9b334a45a8ff 218 * @param rxflow The tx pin
bogdanm 0:9b334a45a8ff 219 * @param txflow The rx pin
bogdanm 0:9b334a45a8ff 220 */
bogdanm 0:9b334a45a8ff 221 void serial_set_flow_control(serial_t *obj, FlowControl type, PinName rxflow, PinName txflow);
bogdanm 0:9b334a45a8ff 222
bogdanm 0:9b334a45a8ff 223 #if DEVICE_SERIAL_ASYNCH
bogdanm 0:9b334a45a8ff 224
bogdanm 0:9b334a45a8ff 225 /**@}*/
bogdanm 0:9b334a45a8ff 226
bogdanm 0:9b334a45a8ff 227 /**
bogdanm 0:9b334a45a8ff 228 * \defgroup AsynchSerial Asynchronous Serial Hardware Abstraction Layer
bogdanm 0:9b334a45a8ff 229 * @{
bogdanm 0:9b334a45a8ff 230 */
bogdanm 0:9b334a45a8ff 231
bogdanm 0:9b334a45a8ff 232 /** Begin asynchronous TX transfer. The used buffer is specified in the serial object,
bogdanm 0:9b334a45a8ff 233 * tx_buff
bogdanm 0:9b334a45a8ff 234 *
bogdanm 0:9b334a45a8ff 235 * @param obj The serial object
bogdanm 0:9b334a45a8ff 236 * @param tx The buffer for sending
bogdanm 0:9b334a45a8ff 237 * @param tx_length The number of words to transmit
bogdanm 0:9b334a45a8ff 238 * @param tx_width The bit width of buffer word
bogdanm 0:9b334a45a8ff 239 * @param handler The serial handler
bogdanm 0:9b334a45a8ff 240 * @param event The logical OR of events to be registered
bogdanm 0:9b334a45a8ff 241 * @param hint A suggestion for how to use DMA with this transfer
bogdanm 0:9b334a45a8ff 242 * @return Returns number of data transfered, or 0 otherwise
bogdanm 0:9b334a45a8ff 243 */
bogdanm 0:9b334a45a8ff 244 int serial_tx_asynch(serial_t *obj, const void *tx, size_t tx_length, uint8_t tx_width, uint32_t handler, uint32_t event, DMAUsage hint);
bogdanm 0:9b334a45a8ff 245
bogdanm 0:9b334a45a8ff 246 /** Begin asynchronous RX transfer (enable interrupt for data collecting)
bogdanm 0:9b334a45a8ff 247 * The used buffer is specified in the serial object - rx_buff
bogdanm 0:9b334a45a8ff 248 *
bogdanm 0:9b334a45a8ff 249 * @param obj The serial object
bogdanm 0:9b334a45a8ff 250 * @param rx The buffer for sending
bogdanm 0:9b334a45a8ff 251 * @param rx_length The number of words to transmit
bogdanm 0:9b334a45a8ff 252 * @param rx_width The bit width of buffer word
bogdanm 0:9b334a45a8ff 253 * @param handler The serial handler
bogdanm 0:9b334a45a8ff 254 * @param event The logical OR of events to be registered
bogdanm 0:9b334a45a8ff 255 * @param handler The serial handler
bogdanm 0:9b334a45a8ff 256 * @param char_match A character in range 0-254 to be matched
bogdanm 0:9b334a45a8ff 257 * @param hint A suggestion for how to use DMA with this transfer
bogdanm 0:9b334a45a8ff 258 */
bogdanm 0:9b334a45a8ff 259 void serial_rx_asynch(serial_t *obj, void *rx, size_t rx_length, uint8_t rx_width, uint32_t handler, uint32_t event, uint8_t char_match, DMAUsage hint);
bogdanm 0:9b334a45a8ff 260
bogdanm 0:9b334a45a8ff 261 /** Attempts to determine if the serial peripheral is already in use for TX
bogdanm 0:9b334a45a8ff 262 *
bogdanm 0:9b334a45a8ff 263 * @param obj The serial object
bogdanm 0:9b334a45a8ff 264 * @return Non-zero if the RX transaction is ongoing, 0 otherwise
bogdanm 0:9b334a45a8ff 265 */
bogdanm 0:9b334a45a8ff 266 uint8_t serial_tx_active(serial_t *obj);
bogdanm 0:9b334a45a8ff 267
bogdanm 0:9b334a45a8ff 268 /** Attempts to determine if the serial peripheral is already in use for RX
bogdanm 0:9b334a45a8ff 269 *
bogdanm 0:9b334a45a8ff 270 * @param obj The serial object
bogdanm 0:9b334a45a8ff 271 * @return Non-zero if the RX transaction is ongoing, 0 otherwise
bogdanm 0:9b334a45a8ff 272 */
bogdanm 0:9b334a45a8ff 273 uint8_t serial_rx_active(serial_t *obj);
bogdanm 0:9b334a45a8ff 274
bogdanm 0:9b334a45a8ff 275 /** The asynchronous TX and RX handler.
bogdanm 0:9b334a45a8ff 276 *
bogdanm 0:9b334a45a8ff 277 * @param obj The serial object
bogdanm 0:9b334a45a8ff 278 * @return Returns event flags if a RX transfer termination condition was met or 0 otherwise
bogdanm 0:9b334a45a8ff 279 */
bogdanm 0:9b334a45a8ff 280 int serial_irq_handler_asynch(serial_t *obj);
bogdanm 0:9b334a45a8ff 281
bogdanm 0:9b334a45a8ff 282 /** Abort the ongoing TX transaction. It disables the enabled interupt for TX and
bogdanm 0:9b334a45a8ff 283 * flush TX hardware buffer if TX FIFO is used
bogdanm 0:9b334a45a8ff 284 *
bogdanm 0:9b334a45a8ff 285 * @param obj The serial object
bogdanm 0:9b334a45a8ff 286 */
bogdanm 0:9b334a45a8ff 287 void serial_tx_abort_asynch(serial_t *obj);
bogdanm 0:9b334a45a8ff 288
bogdanm 0:9b334a45a8ff 289 /** Abort the ongoing RX transaction It disables the enabled interrupt for RX and
bogdanm 0:9b334a45a8ff 290 * flush RX hardware buffer if RX FIFO is used
bogdanm 0:9b334a45a8ff 291 *
bogdanm 0:9b334a45a8ff 292 * @param obj The serial object
bogdanm 0:9b334a45a8ff 293 */
bogdanm 0:9b334a45a8ff 294 void serial_rx_abort_asynch(serial_t *obj);
bogdanm 0:9b334a45a8ff 295
bogdanm 0:9b334a45a8ff 296 /**@}*/
bogdanm 0:9b334a45a8ff 297
bogdanm 0:9b334a45a8ff 298 #endif
bogdanm 0:9b334a45a8ff 299
bogdanm 0:9b334a45a8ff 300 #ifdef __cplusplus
bogdanm 0:9b334a45a8ff 301 }
bogdanm 0:9b334a45a8ff 302 #endif
bogdanm 0:9b334a45a8ff 303
bogdanm 0:9b334a45a8ff 304 #endif
bogdanm 0:9b334a45a8ff 305
bogdanm 0:9b334a45a8ff 306 #endif