Sample program on how to use the LIS2MDL sensor on the RAKWirelss iTracker module

Committer:
knaresh89
Date:
Mon Feb 12 05:04:29 2018 +0000
Revision:
0:a8bfd25ff975
Sample program on how to use the BME280 sensor on the RAKWirelss iTracker module

Who changed what in which revision?

UserRevisionLine numberNew contents of line
knaresh89 0:a8bfd25ff975 1 /*********************************************************************
knaresh89 0:a8bfd25ff975 2 * SEGGER MICROCONTROLLER GmbH & Co. KG *
knaresh89 0:a8bfd25ff975 3 * Solutions for real time microcontroller applications *
knaresh89 0:a8bfd25ff975 4 **********************************************************************
knaresh89 0:a8bfd25ff975 5 * *
knaresh89 0:a8bfd25ff975 6 * (c) 2014 - 2016 SEGGER Microcontroller GmbH & Co. KG *
knaresh89 0:a8bfd25ff975 7 * *
knaresh89 0:a8bfd25ff975 8 * www.segger.com Support: support@segger.com *
knaresh89 0:a8bfd25ff975 9 * *
knaresh89 0:a8bfd25ff975 10 **********************************************************************
knaresh89 0:a8bfd25ff975 11 * *
knaresh89 0:a8bfd25ff975 12 * SEGGER RTT * Real Time Transfer for embedded targets *
knaresh89 0:a8bfd25ff975 13 * *
knaresh89 0:a8bfd25ff975 14 **********************************************************************
knaresh89 0:a8bfd25ff975 15 * *
knaresh89 0:a8bfd25ff975 16 * All rights reserved. *
knaresh89 0:a8bfd25ff975 17 * *
knaresh89 0:a8bfd25ff975 18 * SEGGER strongly recommends to not make any changes *
knaresh89 0:a8bfd25ff975 19 * to or modify the source code of this software in order to stay *
knaresh89 0:a8bfd25ff975 20 * compatible with the RTT protocol and J-Link. *
knaresh89 0:a8bfd25ff975 21 * *
knaresh89 0:a8bfd25ff975 22 * Redistribution and use in source and binary forms, with or *
knaresh89 0:a8bfd25ff975 23 * without modification, are permitted provided that the following *
knaresh89 0:a8bfd25ff975 24 * conditions are met: *
knaresh89 0:a8bfd25ff975 25 * *
knaresh89 0:a8bfd25ff975 26 * o Redistributions of source code must retain the above copyright *
knaresh89 0:a8bfd25ff975 27 * notice, this list of conditions and the following disclaimer. *
knaresh89 0:a8bfd25ff975 28 * *
knaresh89 0:a8bfd25ff975 29 * o Redistributions in binary form must reproduce the above *
knaresh89 0:a8bfd25ff975 30 * copyright notice, this list of conditions and the following *
knaresh89 0:a8bfd25ff975 31 * disclaimer in the documentation and/or other materials provided *
knaresh89 0:a8bfd25ff975 32 * with the distribution. *
knaresh89 0:a8bfd25ff975 33 * *
knaresh89 0:a8bfd25ff975 34 * o Neither the name of SEGGER Microcontroller GmbH & Co. KG *
knaresh89 0:a8bfd25ff975 35 * nor the names of its contributors may be used to endorse or *
knaresh89 0:a8bfd25ff975 36 * promote products derived from this software without specific *
knaresh89 0:a8bfd25ff975 37 * prior written permission. *
knaresh89 0:a8bfd25ff975 38 * *
knaresh89 0:a8bfd25ff975 39 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND *
knaresh89 0:a8bfd25ff975 40 * CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, *
knaresh89 0:a8bfd25ff975 41 * INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF *
knaresh89 0:a8bfd25ff975 42 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE *
knaresh89 0:a8bfd25ff975 43 * DISCLAIMED. IN NO EVENT SHALL SEGGER Microcontroller BE LIABLE FOR *
knaresh89 0:a8bfd25ff975 44 * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR *
knaresh89 0:a8bfd25ff975 45 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT *
knaresh89 0:a8bfd25ff975 46 * OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; *
knaresh89 0:a8bfd25ff975 47 * OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF *
knaresh89 0:a8bfd25ff975 48 * LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT *
knaresh89 0:a8bfd25ff975 49 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE *
knaresh89 0:a8bfd25ff975 50 * USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH *
knaresh89 0:a8bfd25ff975 51 * DAMAGE. *
knaresh89 0:a8bfd25ff975 52 * *
knaresh89 0:a8bfd25ff975 53 **********************************************************************
knaresh89 0:a8bfd25ff975 54 ---------------------------END-OF-HEADER------------------------------
knaresh89 0:a8bfd25ff975 55 File : SEGGER_RTT_Conf.h
knaresh89 0:a8bfd25ff975 56 Purpose : Implementation of SEGGER real-time transfer (RTT) which
knaresh89 0:a8bfd25ff975 57 allows real-time communication on targets which support
knaresh89 0:a8bfd25ff975 58 debugger memory accesses while the CPU is running.
knaresh89 0:a8bfd25ff975 59 Revision: $Rev: 5504 $
knaresh89 0:a8bfd25ff975 60 ----------------------------------------------------------------------
knaresh89 0:a8bfd25ff975 61 */
knaresh89 0:a8bfd25ff975 62
knaresh89 0:a8bfd25ff975 63 #ifndef SEGGER_RTT_CONF_H
knaresh89 0:a8bfd25ff975 64 #define SEGGER_RTT_CONF_H
knaresh89 0:a8bfd25ff975 65
knaresh89 0:a8bfd25ff975 66 #ifdef __IAR_SYSTEMS_ICC__
knaresh89 0:a8bfd25ff975 67 #include <intrinsics.h>
knaresh89 0:a8bfd25ff975 68 #endif
knaresh89 0:a8bfd25ff975 69
knaresh89 0:a8bfd25ff975 70 /*********************************************************************
knaresh89 0:a8bfd25ff975 71 *
knaresh89 0:a8bfd25ff975 72 * Defines, configurable
knaresh89 0:a8bfd25ff975 73 *
knaresh89 0:a8bfd25ff975 74 **********************************************************************
knaresh89 0:a8bfd25ff975 75 */
knaresh89 0:a8bfd25ff975 76
knaresh89 0:a8bfd25ff975 77 #define SEGGER_RTT_MAX_NUM_UP_BUFFERS (3) // Max. number of up-buffers (T->H) available on this target (Default: 3)
knaresh89 0:a8bfd25ff975 78 #define SEGGER_RTT_MAX_NUM_DOWN_BUFFERS (3) // Max. number of down-buffers (H->T) available on this target (Default: 3)
knaresh89 0:a8bfd25ff975 79
knaresh89 0:a8bfd25ff975 80 #define BUFFER_SIZE_UP (1024) // Size of the buffer for terminal output of target, up to host (Default: 1k)
knaresh89 0:a8bfd25ff975 81 #define BUFFER_SIZE_DOWN (16) // Size of the buffer for terminal input to target from host (Usually keyboard input) (Default: 16)
knaresh89 0:a8bfd25ff975 82
knaresh89 0:a8bfd25ff975 83 #define SEGGER_RTT_PRINTF_BUFFER_SIZE (64u) // Size of buffer for RTT printf to bulk-send chars via RTT (Default: 64)
knaresh89 0:a8bfd25ff975 84
knaresh89 0:a8bfd25ff975 85 #define SEGGER_RTT_MODE_DEFAULT SEGGER_RTT_MODE_NO_BLOCK_SKIP // Mode for pre-initialized terminal channel (buffer 0)
knaresh89 0:a8bfd25ff975 86
knaresh89 0:a8bfd25ff975 87 //
knaresh89 0:a8bfd25ff975 88 // Target is not allowed to perform other RTT operations while string still has not been stored completely.
knaresh89 0:a8bfd25ff975 89 // Otherwise we would probably end up with a mixed string in the buffer.
knaresh89 0:a8bfd25ff975 90 // If using RTT from within interrupts, multiple tasks or multi processors, define the SEGGER_RTT_LOCK() and SEGGER_RTT_UNLOCK() function here.
knaresh89 0:a8bfd25ff975 91 //
knaresh89 0:a8bfd25ff975 92 // SEGGER_RTT_MAX_INTERRUPT_PRIORITY can be used in the sample lock routines on Cortex-M3/4.
knaresh89 0:a8bfd25ff975 93 // Make sure to mask all interrupts which can send RTT data, i.e. generate SystemView events, or cause task switches.
knaresh89 0:a8bfd25ff975 94 // When high-priority interrupts must not be masked while sending RTT data, SEGGER_RTT_MAX_INTERRUPT_PRIORITY needs to be adjusted accordingly.
knaresh89 0:a8bfd25ff975 95 // (Higher priority = lower priority number)
knaresh89 0:a8bfd25ff975 96 // Default value for embOS: 128u
knaresh89 0:a8bfd25ff975 97 // Default configuration in FreeRTOS: configMAX_SYSCALL_INTERRUPT_PRIORITY: ( configLIBRARY_MAX_SYSCALL_INTERRUPT_PRIORITY << (8 - configPRIO_BITS) )
knaresh89 0:a8bfd25ff975 98 // In case of doubt mask all interrupts: 1 << (8 - BASEPRI_PRIO_BITS) i.e. 1 << 5 when 3 bits are implemented in NVIC
knaresh89 0:a8bfd25ff975 99 // or define SEGGER_RTT_LOCK() to completely disable interrupts.
knaresh89 0:a8bfd25ff975 100 //
knaresh89 0:a8bfd25ff975 101
knaresh89 0:a8bfd25ff975 102 #define SEGGER_RTT_MAX_INTERRUPT_PRIORITY (0x20) // Interrupt priority to lock on SEGGER_RTT_LOCK on Cortex-M3/4 (Default: 0x20)
knaresh89 0:a8bfd25ff975 103
knaresh89 0:a8bfd25ff975 104 /*********************************************************************
knaresh89 0:a8bfd25ff975 105 *
knaresh89 0:a8bfd25ff975 106 * RTT lock configuration for SEGGER Embedded Studio,
knaresh89 0:a8bfd25ff975 107 * Rowley CrossStudio and GCC
knaresh89 0:a8bfd25ff975 108 */
knaresh89 0:a8bfd25ff975 109 #if (defined __SES_ARM) || (defined __CROSSWORKS_ARM) || (defined __GNUC__)
knaresh89 0:a8bfd25ff975 110 #ifdef __ARM_ARCH_6M__
knaresh89 0:a8bfd25ff975 111 #define SEGGER_RTT_LOCK() { \
knaresh89 0:a8bfd25ff975 112 unsigned int LockState; \
knaresh89 0:a8bfd25ff975 113 __asm volatile ("mrs %0, primask \n\t" \
knaresh89 0:a8bfd25ff975 114 "mov r1, $1 \n\t" \
knaresh89 0:a8bfd25ff975 115 "msr primask, r1 \n\t" \
knaresh89 0:a8bfd25ff975 116 : "=r" (LockState) \
knaresh89 0:a8bfd25ff975 117 : \
knaresh89 0:a8bfd25ff975 118 : "r1" \
knaresh89 0:a8bfd25ff975 119 );
knaresh89 0:a8bfd25ff975 120
knaresh89 0:a8bfd25ff975 121 #define SEGGER_RTT_UNLOCK() __asm volatile ("msr primask, %0 \n\t" \
knaresh89 0:a8bfd25ff975 122 : \
knaresh89 0:a8bfd25ff975 123 : "r" (LockState) \
knaresh89 0:a8bfd25ff975 124 : \
knaresh89 0:a8bfd25ff975 125 ); \
knaresh89 0:a8bfd25ff975 126 }
knaresh89 0:a8bfd25ff975 127
knaresh89 0:a8bfd25ff975 128 #elif (defined(__ARM_ARCH_7M__) || defined(__ARM_ARCH_7EM__))
knaresh89 0:a8bfd25ff975 129 #ifndef SEGGER_RTT_MAX_INTERRUPT_PRIORITY
knaresh89 0:a8bfd25ff975 130 #define SEGGER_RTT_MAX_INTERRUPT_PRIORITY (0x20)
knaresh89 0:a8bfd25ff975 131 #endif
knaresh89 0:a8bfd25ff975 132 #define SEGGER_RTT_LOCK() { \
knaresh89 0:a8bfd25ff975 133 unsigned int LockState; \
knaresh89 0:a8bfd25ff975 134 __asm volatile ("mrs %0, basepri \n\t" \
knaresh89 0:a8bfd25ff975 135 "mov r1, %1 \n\t" \
knaresh89 0:a8bfd25ff975 136 "msr basepri, r1 \n\t" \
knaresh89 0:a8bfd25ff975 137 : "=r" (LockState) \
knaresh89 0:a8bfd25ff975 138 : "i"(SEGGER_RTT_MAX_INTERRUPT_PRIORITY) \
knaresh89 0:a8bfd25ff975 139 : "r1" \
knaresh89 0:a8bfd25ff975 140 );
knaresh89 0:a8bfd25ff975 141
knaresh89 0:a8bfd25ff975 142 #define SEGGER_RTT_UNLOCK() __asm volatile ("msr basepri, %0 \n\t" \
knaresh89 0:a8bfd25ff975 143 : \
knaresh89 0:a8bfd25ff975 144 : "r" (LockState) \
knaresh89 0:a8bfd25ff975 145 : \
knaresh89 0:a8bfd25ff975 146 ); \
knaresh89 0:a8bfd25ff975 147 }
knaresh89 0:a8bfd25ff975 148
knaresh89 0:a8bfd25ff975 149 #elif defined(__ARM_ARCH_7A__)
knaresh89 0:a8bfd25ff975 150 #define SEGGER_RTT_LOCK() { \
knaresh89 0:a8bfd25ff975 151 unsigned int LockState; \
knaresh89 0:a8bfd25ff975 152 __asm volatile ("mrs r1, CPSR \n\t" \
knaresh89 0:a8bfd25ff975 153 "mov %0, r1 \n\t" \
knaresh89 0:a8bfd25ff975 154 "orr r1, r1, #0xC0 \n\t" \
knaresh89 0:a8bfd25ff975 155 "msr CPSR_c, r1 \n\t" \
knaresh89 0:a8bfd25ff975 156 : "=r" (LockState) \
knaresh89 0:a8bfd25ff975 157 : \
knaresh89 0:a8bfd25ff975 158 : "r1" \
knaresh89 0:a8bfd25ff975 159 );
knaresh89 0:a8bfd25ff975 160
knaresh89 0:a8bfd25ff975 161 #define SEGGER_RTT_UNLOCK() __asm volatile ("mov r0, %0 \n\t" \
knaresh89 0:a8bfd25ff975 162 "mrs r1, CPSR \n\t" \
knaresh89 0:a8bfd25ff975 163 "bic r1, r1, #0xC0 \n\t" \
knaresh89 0:a8bfd25ff975 164 "and r0, r0, #0xC0 \n\t" \
knaresh89 0:a8bfd25ff975 165 "orr r1, r1, r0 \n\t" \
knaresh89 0:a8bfd25ff975 166 "msr CPSR_c, r1 \n\t" \
knaresh89 0:a8bfd25ff975 167 : \
knaresh89 0:a8bfd25ff975 168 : "r" (LockState) \
knaresh89 0:a8bfd25ff975 169 : "r0", "r1" \
knaresh89 0:a8bfd25ff975 170 ); \
knaresh89 0:a8bfd25ff975 171 }
knaresh89 0:a8bfd25ff975 172 #else
knaresh89 0:a8bfd25ff975 173 #define SEGGER_RTT_LOCK()
knaresh89 0:a8bfd25ff975 174 #define SEGGER_RTT_UNLOCK()
knaresh89 0:a8bfd25ff975 175 #endif
knaresh89 0:a8bfd25ff975 176 #endif
knaresh89 0:a8bfd25ff975 177
knaresh89 0:a8bfd25ff975 178 /*********************************************************************
knaresh89 0:a8bfd25ff975 179 *
knaresh89 0:a8bfd25ff975 180 * RTT lock configuration for IAR EWARM
knaresh89 0:a8bfd25ff975 181 */
knaresh89 0:a8bfd25ff975 182 #ifdef __ICCARM__
knaresh89 0:a8bfd25ff975 183 #if (defined (__ARM6M__) && (__CORE__ == __ARM6M__))
knaresh89 0:a8bfd25ff975 184 #define SEGGER_RTT_LOCK() { \
knaresh89 0:a8bfd25ff975 185 unsigned int LockState; \
knaresh89 0:a8bfd25ff975 186 LockState = __get_PRIMASK(); \
knaresh89 0:a8bfd25ff975 187 __set_PRIMASK(1);
knaresh89 0:a8bfd25ff975 188
knaresh89 0:a8bfd25ff975 189 #define SEGGER_RTT_UNLOCK() __set_PRIMASK(LockState); \
knaresh89 0:a8bfd25ff975 190 }
knaresh89 0:a8bfd25ff975 191 #elif ((defined (__ARM7EM__) && (__CORE__ == __ARM7EM__)) || (defined (__ARM7M__) && (__CORE__ == __ARM7M__)))
knaresh89 0:a8bfd25ff975 192 #ifndef SEGGER_RTT_MAX_INTERRUPT_PRIORITY
knaresh89 0:a8bfd25ff975 193 #define SEGGER_RTT_MAX_INTERRUPT_PRIORITY (0x20)
knaresh89 0:a8bfd25ff975 194 #endif
knaresh89 0:a8bfd25ff975 195 #define SEGGER_RTT_LOCK() { \
knaresh89 0:a8bfd25ff975 196 unsigned int LockState; \
knaresh89 0:a8bfd25ff975 197 LockState = __get_BASEPRI(); \
knaresh89 0:a8bfd25ff975 198 __set_BASEPRI(SEGGER_RTT_MAX_INTERRUPT_PRIORITY);
knaresh89 0:a8bfd25ff975 199
knaresh89 0:a8bfd25ff975 200 #define SEGGER_RTT_UNLOCK() __set_BASEPRI(LockState); \
knaresh89 0:a8bfd25ff975 201 }
knaresh89 0:a8bfd25ff975 202 #endif
knaresh89 0:a8bfd25ff975 203 #endif
knaresh89 0:a8bfd25ff975 204
knaresh89 0:a8bfd25ff975 205 /*********************************************************************
knaresh89 0:a8bfd25ff975 206 *
knaresh89 0:a8bfd25ff975 207 * RTT lock configuration for IAR RX
knaresh89 0:a8bfd25ff975 208 */
knaresh89 0:a8bfd25ff975 209 #ifdef __ICCRX__
knaresh89 0:a8bfd25ff975 210 #define SEGGER_RTT_LOCK() { \
knaresh89 0:a8bfd25ff975 211 unsigned long LockState; \
knaresh89 0:a8bfd25ff975 212 LockState = __get_interrupt_state(); \
knaresh89 0:a8bfd25ff975 213 __disable_interrupt();
knaresh89 0:a8bfd25ff975 214
knaresh89 0:a8bfd25ff975 215 #define SEGGER_RTT_UNLOCK() __set_interrupt_state(LockState); \
knaresh89 0:a8bfd25ff975 216 }
knaresh89 0:a8bfd25ff975 217 #endif
knaresh89 0:a8bfd25ff975 218
knaresh89 0:a8bfd25ff975 219 /*********************************************************************
knaresh89 0:a8bfd25ff975 220 *
knaresh89 0:a8bfd25ff975 221 * RTT lock configuration for KEIL ARM
knaresh89 0:a8bfd25ff975 222 */
knaresh89 0:a8bfd25ff975 223 #ifdef __CC_ARM
knaresh89 0:a8bfd25ff975 224 #if (defined __TARGET_ARCH_6S_M)
knaresh89 0:a8bfd25ff975 225 #define SEGGER_RTT_LOCK() { \
knaresh89 0:a8bfd25ff975 226 unsigned int LockState; \
knaresh89 0:a8bfd25ff975 227 register unsigned char PRIMASK __asm( "primask"); \
knaresh89 0:a8bfd25ff975 228 LockState = PRIMASK; \
knaresh89 0:a8bfd25ff975 229 PRIMASK = 1u; \
knaresh89 0:a8bfd25ff975 230 __schedule_barrier();
knaresh89 0:a8bfd25ff975 231
knaresh89 0:a8bfd25ff975 232 #define SEGGER_RTT_UNLOCK() PRIMASK = LockState; \
knaresh89 0:a8bfd25ff975 233 __schedule_barrier(); \
knaresh89 0:a8bfd25ff975 234 }
knaresh89 0:a8bfd25ff975 235 #elif (defined(__TARGET_ARCH_7_M) || defined(__TARGET_ARCH_7E_M))
knaresh89 0:a8bfd25ff975 236 #ifndef SEGGER_RTT_MAX_INTERRUPT_PRIORITY
knaresh89 0:a8bfd25ff975 237 #define SEGGER_RTT_MAX_INTERRUPT_PRIORITY (0x20)
knaresh89 0:a8bfd25ff975 238 #endif
knaresh89 0:a8bfd25ff975 239 #define SEGGER_RTT_LOCK() { \
knaresh89 0:a8bfd25ff975 240 unsigned int LockState; \
knaresh89 0:a8bfd25ff975 241 register unsigned char BASEPRI __asm( "basepri"); \
knaresh89 0:a8bfd25ff975 242 LockState = BASEPRI; \
knaresh89 0:a8bfd25ff975 243 BASEPRI = SEGGER_RTT_MAX_INTERRUPT_PRIORITY; \
knaresh89 0:a8bfd25ff975 244 __schedule_barrier();
knaresh89 0:a8bfd25ff975 245
knaresh89 0:a8bfd25ff975 246 #define SEGGER_RTT_UNLOCK() BASEPRI = LockState; \
knaresh89 0:a8bfd25ff975 247 __schedule_barrier(); \
knaresh89 0:a8bfd25ff975 248 }
knaresh89 0:a8bfd25ff975 249 #endif
knaresh89 0:a8bfd25ff975 250 #endif
knaresh89 0:a8bfd25ff975 251
knaresh89 0:a8bfd25ff975 252 /*********************************************************************
knaresh89 0:a8bfd25ff975 253 *
knaresh89 0:a8bfd25ff975 254 * RTT lock configuration for TI ARM
knaresh89 0:a8bfd25ff975 255 */
knaresh89 0:a8bfd25ff975 256 #ifdef __TI_ARM__
knaresh89 0:a8bfd25ff975 257 #if defined (__TI_ARM_V6M0__)
knaresh89 0:a8bfd25ff975 258 #define SEGGER_RTT_LOCK() { \
knaresh89 0:a8bfd25ff975 259 unsigned int LockState; \
knaresh89 0:a8bfd25ff975 260 LockState = __get_PRIMASK(); \
knaresh89 0:a8bfd25ff975 261 __set_PRIMASK(1);
knaresh89 0:a8bfd25ff975 262
knaresh89 0:a8bfd25ff975 263 #define SEGGER_RTT_UNLOCK() __set_PRIMASK(LockState); \
knaresh89 0:a8bfd25ff975 264 }
knaresh89 0:a8bfd25ff975 265 #elif (defined (__TI_ARM_V7M3__) || defined (__TI_ARM_V7M4__))
knaresh89 0:a8bfd25ff975 266 #ifndef SEGGER_RTT_MAX_INTERRUPT_PRIORITY
knaresh89 0:a8bfd25ff975 267 #define SEGGER_RTT_MAX_INTERRUPT_PRIORITY (0x20)
knaresh89 0:a8bfd25ff975 268 #endif
knaresh89 0:a8bfd25ff975 269 #define SEGGER_RTT_LOCK() { \
knaresh89 0:a8bfd25ff975 270 unsigned int LockState; \
knaresh89 0:a8bfd25ff975 271 LockState = OS_GetBASEPRI(); \
knaresh89 0:a8bfd25ff975 272 OS_SetBASEPRI(SEGGER_RTT_MAX_INTERRUPT_PRIORITY);
knaresh89 0:a8bfd25ff975 273
knaresh89 0:a8bfd25ff975 274 #define SEGGER_RTT_UNLOCK() OS_SetBASEPRI(LockState); \
knaresh89 0:a8bfd25ff975 275 }
knaresh89 0:a8bfd25ff975 276 #endif
knaresh89 0:a8bfd25ff975 277 #endif
knaresh89 0:a8bfd25ff975 278
knaresh89 0:a8bfd25ff975 279 /*********************************************************************
knaresh89 0:a8bfd25ff975 280 *
knaresh89 0:a8bfd25ff975 281 * RTT lock configuration fallback
knaresh89 0:a8bfd25ff975 282 */
knaresh89 0:a8bfd25ff975 283 #ifndef SEGGER_RTT_LOCK
knaresh89 0:a8bfd25ff975 284 #define SEGGER_RTT_LOCK() // Lock RTT (nestable) (i.e. disable interrupts)
knaresh89 0:a8bfd25ff975 285 #endif
knaresh89 0:a8bfd25ff975 286
knaresh89 0:a8bfd25ff975 287 #ifndef SEGGER_RTT_UNLOCK
knaresh89 0:a8bfd25ff975 288 #define SEGGER_RTT_UNLOCK() // Unlock RTT (nestable) (i.e. enable previous interrupt lock state)
knaresh89 0:a8bfd25ff975 289 #endif
knaresh89 0:a8bfd25ff975 290
knaresh89 0:a8bfd25ff975 291 #endif
knaresh89 0:a8bfd25ff975 292 /*************************** End of file ****************************/