mbed library sources. Supersedes mbed-src.

Dependents:   Nucleo_Hello_Encoder BLE_iBeaconScan AM1805_DEMO DISCO-F429ZI_ExportTemplate1 ... more

Committer:
Kojto
Date:
Wed Jul 19 17:31:21 2017 +0100
Revision:
169:e3b6fe271b81
Parent:
167:e84263d55307
This updates the lib to the mbed lib v 147

Who changed what in which revision?

UserRevisionLine numberNew contents of line
AnnaBridge 167:e84263d55307 1 /**************************************************************************//**
AnnaBridge 167:e84263d55307 2 * @file cmsis_armcc.h
AnnaBridge 167:e84263d55307 3 * @brief CMSIS compiler ARMCC (ARM compiler V5) header file
AnnaBridge 167:e84263d55307 4 * @version V5.0.2
AnnaBridge 167:e84263d55307 5 * @date 13. February 2017
AnnaBridge 167:e84263d55307 6 ******************************************************************************/
AnnaBridge 167:e84263d55307 7 /*
AnnaBridge 167:e84263d55307 8 * Copyright (c) 2009-2017 ARM Limited. All rights reserved.
AnnaBridge 167:e84263d55307 9 *
AnnaBridge 167:e84263d55307 10 * SPDX-License-Identifier: Apache-2.0
AnnaBridge 167:e84263d55307 11 *
AnnaBridge 167:e84263d55307 12 * Licensed under the Apache License, Version 2.0 (the License); you may
AnnaBridge 167:e84263d55307 13 * not use this file except in compliance with the License.
AnnaBridge 167:e84263d55307 14 * You may obtain a copy of the License at
AnnaBridge 167:e84263d55307 15 *
AnnaBridge 167:e84263d55307 16 * www.apache.org/licenses/LICENSE-2.0
AnnaBridge 167:e84263d55307 17 *
AnnaBridge 167:e84263d55307 18 * Unless required by applicable law or agreed to in writing, software
AnnaBridge 167:e84263d55307 19 * distributed under the License is distributed on an AS IS BASIS, WITHOUT
AnnaBridge 167:e84263d55307 20 * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
AnnaBridge 167:e84263d55307 21 * See the License for the specific language governing permissions and
AnnaBridge 167:e84263d55307 22 * limitations under the License.
AnnaBridge 167:e84263d55307 23 */
AnnaBridge 167:e84263d55307 24
AnnaBridge 167:e84263d55307 25 #ifndef __CMSIS_ARMCC_H
AnnaBridge 167:e84263d55307 26 #define __CMSIS_ARMCC_H
AnnaBridge 167:e84263d55307 27
AnnaBridge 167:e84263d55307 28
AnnaBridge 167:e84263d55307 29 #if defined(__ARMCC_VERSION) && (__ARMCC_VERSION < 400677)
AnnaBridge 167:e84263d55307 30 #error "Please use ARM Compiler Toolchain V4.0.677 or later!"
AnnaBridge 167:e84263d55307 31 #endif
AnnaBridge 167:e84263d55307 32
AnnaBridge 167:e84263d55307 33 /* CMSIS compiler control architecture macros */
AnnaBridge 167:e84263d55307 34 #if ((defined (__TARGET_ARCH_6_M ) && (__TARGET_ARCH_6_M == 1)) || \
AnnaBridge 167:e84263d55307 35 (defined (__TARGET_ARCH_6S_M ) && (__TARGET_ARCH_6S_M == 1)) )
AnnaBridge 167:e84263d55307 36 #define __ARM_ARCH_6M__ 1
AnnaBridge 167:e84263d55307 37 #endif
AnnaBridge 167:e84263d55307 38
AnnaBridge 167:e84263d55307 39 #if (defined (__TARGET_ARCH_7_M ) && (__TARGET_ARCH_7_M == 1))
AnnaBridge 167:e84263d55307 40 #define __ARM_ARCH_7M__ 1
AnnaBridge 167:e84263d55307 41 #endif
AnnaBridge 167:e84263d55307 42
AnnaBridge 167:e84263d55307 43 #if (defined (__TARGET_ARCH_7E_M) && (__TARGET_ARCH_7E_M == 1))
AnnaBridge 167:e84263d55307 44 #define __ARM_ARCH_7EM__ 1
AnnaBridge 167:e84263d55307 45 #endif
AnnaBridge 167:e84263d55307 46
AnnaBridge 167:e84263d55307 47 /* __ARM_ARCH_8M_BASE__ not applicable */
AnnaBridge 167:e84263d55307 48 /* __ARM_ARCH_8M_MAIN__ not applicable */
AnnaBridge 167:e84263d55307 49
AnnaBridge 167:e84263d55307 50
AnnaBridge 167:e84263d55307 51 /* CMSIS compiler specific defines */
AnnaBridge 167:e84263d55307 52 #ifndef __ASM
AnnaBridge 167:e84263d55307 53 #define __ASM __asm
AnnaBridge 167:e84263d55307 54 #endif
AnnaBridge 167:e84263d55307 55 #ifndef __INLINE
AnnaBridge 167:e84263d55307 56 #define __INLINE __inline
AnnaBridge 167:e84263d55307 57 #endif
AnnaBridge 167:e84263d55307 58 #ifndef __STATIC_INLINE
AnnaBridge 167:e84263d55307 59 #define __STATIC_INLINE static __inline
AnnaBridge 167:e84263d55307 60 #endif
AnnaBridge 167:e84263d55307 61 #ifndef __NO_RETURN
AnnaBridge 167:e84263d55307 62 #define __NO_RETURN __declspec(noreturn)
AnnaBridge 167:e84263d55307 63 #endif
AnnaBridge 167:e84263d55307 64 #ifndef __USED
AnnaBridge 167:e84263d55307 65 #define __USED __attribute__((used))
AnnaBridge 167:e84263d55307 66 #endif
AnnaBridge 167:e84263d55307 67 #ifndef __WEAK
AnnaBridge 167:e84263d55307 68 #define __WEAK __attribute__((weak))
AnnaBridge 167:e84263d55307 69 #endif
AnnaBridge 167:e84263d55307 70 #ifndef __PACKED
AnnaBridge 167:e84263d55307 71 #define __PACKED __attribute__((packed))
AnnaBridge 167:e84263d55307 72 #endif
AnnaBridge 167:e84263d55307 73 #ifndef __PACKED_STRUCT
AnnaBridge 167:e84263d55307 74 #define __PACKED_STRUCT __packed struct
AnnaBridge 167:e84263d55307 75 #endif
AnnaBridge 167:e84263d55307 76 #ifndef __UNALIGNED_UINT32 /* deprecated */
AnnaBridge 167:e84263d55307 77 #define __UNALIGNED_UINT32(x) (*((__packed uint32_t *)(x)))
AnnaBridge 167:e84263d55307 78 #endif
AnnaBridge 167:e84263d55307 79 #ifndef __UNALIGNED_UINT16_WRITE
AnnaBridge 167:e84263d55307 80 #define __UNALIGNED_UINT16_WRITE(addr, val) ((*((__packed uint16_t *)(addr))) = (val))
AnnaBridge 167:e84263d55307 81 #endif
AnnaBridge 167:e84263d55307 82 #ifndef __UNALIGNED_UINT16_READ
AnnaBridge 167:e84263d55307 83 #define __UNALIGNED_UINT16_READ(addr) (*((const __packed uint16_t *)(addr)))
AnnaBridge 167:e84263d55307 84 #endif
AnnaBridge 167:e84263d55307 85 #ifndef __UNALIGNED_UINT32_WRITE
AnnaBridge 167:e84263d55307 86 #define __UNALIGNED_UINT32_WRITE(addr, val) ((*((__packed uint32_t *)(addr))) = (val))
AnnaBridge 167:e84263d55307 87 #endif
AnnaBridge 167:e84263d55307 88 #ifndef __UNALIGNED_UINT32_READ
AnnaBridge 167:e84263d55307 89 #define __UNALIGNED_UINT32_READ(addr) (*((const __packed uint32_t *)(addr)))
AnnaBridge 167:e84263d55307 90 #endif
AnnaBridge 167:e84263d55307 91 #ifndef __ALIGNED
AnnaBridge 167:e84263d55307 92 #define __ALIGNED(x) __attribute__((aligned(x)))
AnnaBridge 167:e84263d55307 93 #endif
AnnaBridge 167:e84263d55307 94
AnnaBridge 167:e84263d55307 95
AnnaBridge 167:e84263d55307 96 /* ########################### Core Function Access ########################### */
AnnaBridge 167:e84263d55307 97 /** \ingroup CMSIS_Core_FunctionInterface
AnnaBridge 167:e84263d55307 98 \defgroup CMSIS_Core_RegAccFunctions CMSIS Core Register Access Functions
AnnaBridge 167:e84263d55307 99 @{
AnnaBridge 167:e84263d55307 100 */
AnnaBridge 167:e84263d55307 101
AnnaBridge 167:e84263d55307 102 /**
AnnaBridge 167:e84263d55307 103 \brief Enable IRQ Interrupts
AnnaBridge 167:e84263d55307 104 \details Enables IRQ interrupts by clearing the I-bit in the CPSR.
AnnaBridge 167:e84263d55307 105 Can only be executed in Privileged modes.
AnnaBridge 167:e84263d55307 106 */
AnnaBridge 167:e84263d55307 107 /* intrinsic void __enable_irq(); */
AnnaBridge 167:e84263d55307 108
AnnaBridge 167:e84263d55307 109
AnnaBridge 167:e84263d55307 110 /**
AnnaBridge 167:e84263d55307 111 \brief Disable IRQ Interrupts
AnnaBridge 167:e84263d55307 112 \details Disables IRQ interrupts by setting the I-bit in the CPSR.
AnnaBridge 167:e84263d55307 113 Can only be executed in Privileged modes.
AnnaBridge 167:e84263d55307 114 */
AnnaBridge 167:e84263d55307 115 /* intrinsic void __disable_irq(); */
AnnaBridge 167:e84263d55307 116
AnnaBridge 167:e84263d55307 117 /**
AnnaBridge 167:e84263d55307 118 \brief Get Control Register
AnnaBridge 167:e84263d55307 119 \details Returns the content of the Control Register.
AnnaBridge 167:e84263d55307 120 \return Control Register value
AnnaBridge 167:e84263d55307 121 */
AnnaBridge 167:e84263d55307 122 __STATIC_INLINE uint32_t __get_CONTROL(void)
AnnaBridge 167:e84263d55307 123 {
AnnaBridge 167:e84263d55307 124 register uint32_t __regControl __ASM("control");
AnnaBridge 167:e84263d55307 125 return(__regControl);
AnnaBridge 167:e84263d55307 126 }
AnnaBridge 167:e84263d55307 127
AnnaBridge 167:e84263d55307 128
AnnaBridge 167:e84263d55307 129 /**
AnnaBridge 167:e84263d55307 130 \brief Set Control Register
AnnaBridge 167:e84263d55307 131 \details Writes the given value to the Control Register.
AnnaBridge 167:e84263d55307 132 \param [in] control Control Register value to set
AnnaBridge 167:e84263d55307 133 */
AnnaBridge 167:e84263d55307 134 __STATIC_INLINE void __set_CONTROL(uint32_t control)
AnnaBridge 167:e84263d55307 135 {
AnnaBridge 167:e84263d55307 136 register uint32_t __regControl __ASM("control");
AnnaBridge 167:e84263d55307 137 __regControl = control;
AnnaBridge 167:e84263d55307 138 }
AnnaBridge 167:e84263d55307 139
AnnaBridge 167:e84263d55307 140
AnnaBridge 167:e84263d55307 141 /**
AnnaBridge 167:e84263d55307 142 \brief Get IPSR Register
AnnaBridge 167:e84263d55307 143 \details Returns the content of the IPSR Register.
AnnaBridge 167:e84263d55307 144 \return IPSR Register value
AnnaBridge 167:e84263d55307 145 */
AnnaBridge 167:e84263d55307 146 __STATIC_INLINE uint32_t __get_IPSR(void)
AnnaBridge 167:e84263d55307 147 {
AnnaBridge 167:e84263d55307 148 register uint32_t __regIPSR __ASM("ipsr");
AnnaBridge 167:e84263d55307 149 return(__regIPSR);
AnnaBridge 167:e84263d55307 150 }
AnnaBridge 167:e84263d55307 151
AnnaBridge 167:e84263d55307 152
AnnaBridge 167:e84263d55307 153 /**
AnnaBridge 167:e84263d55307 154 \brief Get APSR Register
AnnaBridge 167:e84263d55307 155 \details Returns the content of the APSR Register.
AnnaBridge 167:e84263d55307 156 \return APSR Register value
AnnaBridge 167:e84263d55307 157 */
AnnaBridge 167:e84263d55307 158 __STATIC_INLINE uint32_t __get_APSR(void)
AnnaBridge 167:e84263d55307 159 {
AnnaBridge 167:e84263d55307 160 register uint32_t __regAPSR __ASM("apsr");
AnnaBridge 167:e84263d55307 161 return(__regAPSR);
AnnaBridge 167:e84263d55307 162 }
AnnaBridge 167:e84263d55307 163
AnnaBridge 167:e84263d55307 164
AnnaBridge 167:e84263d55307 165 /**
AnnaBridge 167:e84263d55307 166 \brief Get xPSR Register
AnnaBridge 167:e84263d55307 167 \details Returns the content of the xPSR Register.
AnnaBridge 167:e84263d55307 168 \return xPSR Register value
AnnaBridge 167:e84263d55307 169 */
AnnaBridge 167:e84263d55307 170 __STATIC_INLINE uint32_t __get_xPSR(void)
AnnaBridge 167:e84263d55307 171 {
AnnaBridge 167:e84263d55307 172 register uint32_t __regXPSR __ASM("xpsr");
AnnaBridge 167:e84263d55307 173 return(__regXPSR);
AnnaBridge 167:e84263d55307 174 }
AnnaBridge 167:e84263d55307 175
AnnaBridge 167:e84263d55307 176
AnnaBridge 167:e84263d55307 177 /**
AnnaBridge 167:e84263d55307 178 \brief Get Process Stack Pointer
AnnaBridge 167:e84263d55307 179 \details Returns the current value of the Process Stack Pointer (PSP).
AnnaBridge 167:e84263d55307 180 \return PSP Register value
AnnaBridge 167:e84263d55307 181 */
AnnaBridge 167:e84263d55307 182 __STATIC_INLINE uint32_t __get_PSP(void)
AnnaBridge 167:e84263d55307 183 {
AnnaBridge 167:e84263d55307 184 register uint32_t __regProcessStackPointer __ASM("psp");
AnnaBridge 167:e84263d55307 185 return(__regProcessStackPointer);
AnnaBridge 167:e84263d55307 186 }
AnnaBridge 167:e84263d55307 187
AnnaBridge 167:e84263d55307 188
AnnaBridge 167:e84263d55307 189 /**
AnnaBridge 167:e84263d55307 190 \brief Set Process Stack Pointer
AnnaBridge 167:e84263d55307 191 \details Assigns the given value to the Process Stack Pointer (PSP).
AnnaBridge 167:e84263d55307 192 \param [in] topOfProcStack Process Stack Pointer value to set
AnnaBridge 167:e84263d55307 193 */
AnnaBridge 167:e84263d55307 194 __STATIC_INLINE void __set_PSP(uint32_t topOfProcStack)
AnnaBridge 167:e84263d55307 195 {
AnnaBridge 167:e84263d55307 196 register uint32_t __regProcessStackPointer __ASM("psp");
AnnaBridge 167:e84263d55307 197 __regProcessStackPointer = topOfProcStack;
AnnaBridge 167:e84263d55307 198 }
AnnaBridge 167:e84263d55307 199
AnnaBridge 167:e84263d55307 200
AnnaBridge 167:e84263d55307 201 /**
AnnaBridge 167:e84263d55307 202 \brief Get Main Stack Pointer
AnnaBridge 167:e84263d55307 203 \details Returns the current value of the Main Stack Pointer (MSP).
AnnaBridge 167:e84263d55307 204 \return MSP Register value
AnnaBridge 167:e84263d55307 205 */
AnnaBridge 167:e84263d55307 206 __STATIC_INLINE uint32_t __get_MSP(void)
AnnaBridge 167:e84263d55307 207 {
AnnaBridge 167:e84263d55307 208 register uint32_t __regMainStackPointer __ASM("msp");
AnnaBridge 167:e84263d55307 209 return(__regMainStackPointer);
AnnaBridge 167:e84263d55307 210 }
AnnaBridge 167:e84263d55307 211
AnnaBridge 167:e84263d55307 212
AnnaBridge 167:e84263d55307 213 /**
AnnaBridge 167:e84263d55307 214 \brief Set Main Stack Pointer
AnnaBridge 167:e84263d55307 215 \details Assigns the given value to the Main Stack Pointer (MSP).
AnnaBridge 167:e84263d55307 216 \param [in] topOfMainStack Main Stack Pointer value to set
AnnaBridge 167:e84263d55307 217 */
AnnaBridge 167:e84263d55307 218 __STATIC_INLINE void __set_MSP(uint32_t topOfMainStack)
AnnaBridge 167:e84263d55307 219 {
AnnaBridge 167:e84263d55307 220 register uint32_t __regMainStackPointer __ASM("msp");
AnnaBridge 167:e84263d55307 221 __regMainStackPointer = topOfMainStack;
AnnaBridge 167:e84263d55307 222 }
AnnaBridge 167:e84263d55307 223
AnnaBridge 167:e84263d55307 224
AnnaBridge 167:e84263d55307 225 /**
AnnaBridge 167:e84263d55307 226 \brief Get Priority Mask
AnnaBridge 167:e84263d55307 227 \details Returns the current state of the priority mask bit from the Priority Mask Register.
AnnaBridge 167:e84263d55307 228 \return Priority Mask value
AnnaBridge 167:e84263d55307 229 */
AnnaBridge 167:e84263d55307 230 __STATIC_INLINE uint32_t __get_PRIMASK(void)
AnnaBridge 167:e84263d55307 231 {
AnnaBridge 167:e84263d55307 232 register uint32_t __regPriMask __ASM("primask");
AnnaBridge 167:e84263d55307 233 return(__regPriMask);
AnnaBridge 167:e84263d55307 234 }
AnnaBridge 167:e84263d55307 235
AnnaBridge 167:e84263d55307 236
AnnaBridge 167:e84263d55307 237 /**
AnnaBridge 167:e84263d55307 238 \brief Set Priority Mask
AnnaBridge 167:e84263d55307 239 \details Assigns the given value to the Priority Mask Register.
AnnaBridge 167:e84263d55307 240 \param [in] priMask Priority Mask
AnnaBridge 167:e84263d55307 241 */
AnnaBridge 167:e84263d55307 242 __STATIC_INLINE void __set_PRIMASK(uint32_t priMask)
AnnaBridge 167:e84263d55307 243 {
AnnaBridge 167:e84263d55307 244 register uint32_t __regPriMask __ASM("primask");
AnnaBridge 167:e84263d55307 245 __regPriMask = (priMask);
AnnaBridge 167:e84263d55307 246 }
AnnaBridge 167:e84263d55307 247
AnnaBridge 167:e84263d55307 248
AnnaBridge 167:e84263d55307 249 #if ((defined (__ARM_ARCH_7M__ ) && (__ARM_ARCH_7M__ == 1)) || \
AnnaBridge 167:e84263d55307 250 (defined (__ARM_ARCH_7EM__) && (__ARM_ARCH_7EM__ == 1)) )
AnnaBridge 167:e84263d55307 251
AnnaBridge 167:e84263d55307 252 /**
AnnaBridge 167:e84263d55307 253 \brief Enable FIQ
AnnaBridge 167:e84263d55307 254 \details Enables FIQ interrupts by clearing the F-bit in the CPSR.
AnnaBridge 167:e84263d55307 255 Can only be executed in Privileged modes.
AnnaBridge 167:e84263d55307 256 */
AnnaBridge 167:e84263d55307 257 #define __enable_fault_irq __enable_fiq
AnnaBridge 167:e84263d55307 258
AnnaBridge 167:e84263d55307 259
AnnaBridge 167:e84263d55307 260 /**
AnnaBridge 167:e84263d55307 261 \brief Disable FIQ
AnnaBridge 167:e84263d55307 262 \details Disables FIQ interrupts by setting the F-bit in the CPSR.
AnnaBridge 167:e84263d55307 263 Can only be executed in Privileged modes.
AnnaBridge 167:e84263d55307 264 */
AnnaBridge 167:e84263d55307 265 #define __disable_fault_irq __disable_fiq
AnnaBridge 167:e84263d55307 266
AnnaBridge 167:e84263d55307 267
AnnaBridge 167:e84263d55307 268 /**
AnnaBridge 167:e84263d55307 269 \brief Get Base Priority
AnnaBridge 167:e84263d55307 270 \details Returns the current value of the Base Priority register.
AnnaBridge 167:e84263d55307 271 \return Base Priority register value
AnnaBridge 167:e84263d55307 272 */
AnnaBridge 167:e84263d55307 273 __STATIC_INLINE uint32_t __get_BASEPRI(void)
AnnaBridge 167:e84263d55307 274 {
AnnaBridge 167:e84263d55307 275 register uint32_t __regBasePri __ASM("basepri");
AnnaBridge 167:e84263d55307 276 return(__regBasePri);
AnnaBridge 167:e84263d55307 277 }
AnnaBridge 167:e84263d55307 278
AnnaBridge 167:e84263d55307 279
AnnaBridge 167:e84263d55307 280 /**
AnnaBridge 167:e84263d55307 281 \brief Set Base Priority
AnnaBridge 167:e84263d55307 282 \details Assigns the given value to the Base Priority register.
AnnaBridge 167:e84263d55307 283 \param [in] basePri Base Priority value to set
AnnaBridge 167:e84263d55307 284 */
AnnaBridge 167:e84263d55307 285 __STATIC_INLINE void __set_BASEPRI(uint32_t basePri)
AnnaBridge 167:e84263d55307 286 {
AnnaBridge 167:e84263d55307 287 register uint32_t __regBasePri __ASM("basepri");
AnnaBridge 167:e84263d55307 288 __regBasePri = (basePri & 0xFFU);
AnnaBridge 167:e84263d55307 289 }
AnnaBridge 167:e84263d55307 290
AnnaBridge 167:e84263d55307 291
AnnaBridge 167:e84263d55307 292 /**
AnnaBridge 167:e84263d55307 293 \brief Set Base Priority with condition
AnnaBridge 167:e84263d55307 294 \details Assigns the given value to the Base Priority register only if BASEPRI masking is disabled,
AnnaBridge 167:e84263d55307 295 or the new value increases the BASEPRI priority level.
AnnaBridge 167:e84263d55307 296 \param [in] basePri Base Priority value to set
AnnaBridge 167:e84263d55307 297 */
AnnaBridge 167:e84263d55307 298 __STATIC_INLINE void __set_BASEPRI_MAX(uint32_t basePri)
AnnaBridge 167:e84263d55307 299 {
AnnaBridge 167:e84263d55307 300 register uint32_t __regBasePriMax __ASM("basepri_max");
AnnaBridge 167:e84263d55307 301 __regBasePriMax = (basePri & 0xFFU);
AnnaBridge 167:e84263d55307 302 }
AnnaBridge 167:e84263d55307 303
AnnaBridge 167:e84263d55307 304
AnnaBridge 167:e84263d55307 305 /**
AnnaBridge 167:e84263d55307 306 \brief Get Fault Mask
AnnaBridge 167:e84263d55307 307 \details Returns the current value of the Fault Mask register.
AnnaBridge 167:e84263d55307 308 \return Fault Mask register value
AnnaBridge 167:e84263d55307 309 */
AnnaBridge 167:e84263d55307 310 __STATIC_INLINE uint32_t __get_FAULTMASK(void)
AnnaBridge 167:e84263d55307 311 {
AnnaBridge 167:e84263d55307 312 register uint32_t __regFaultMask __ASM("faultmask");
AnnaBridge 167:e84263d55307 313 return(__regFaultMask);
AnnaBridge 167:e84263d55307 314 }
AnnaBridge 167:e84263d55307 315
AnnaBridge 167:e84263d55307 316
AnnaBridge 167:e84263d55307 317 /**
AnnaBridge 167:e84263d55307 318 \brief Set Fault Mask
AnnaBridge 167:e84263d55307 319 \details Assigns the given value to the Fault Mask register.
AnnaBridge 167:e84263d55307 320 \param [in] faultMask Fault Mask value to set
AnnaBridge 167:e84263d55307 321 */
AnnaBridge 167:e84263d55307 322 __STATIC_INLINE void __set_FAULTMASK(uint32_t faultMask)
AnnaBridge 167:e84263d55307 323 {
AnnaBridge 167:e84263d55307 324 register uint32_t __regFaultMask __ASM("faultmask");
AnnaBridge 167:e84263d55307 325 __regFaultMask = (faultMask & (uint32_t)1U);
AnnaBridge 167:e84263d55307 326 }
AnnaBridge 167:e84263d55307 327
AnnaBridge 167:e84263d55307 328 #endif /* ((defined (__ARM_ARCH_7M__ ) && (__ARM_ARCH_7M__ == 1)) || \
AnnaBridge 167:e84263d55307 329 (defined (__ARM_ARCH_7EM__) && (__ARM_ARCH_7EM__ == 1)) ) */
AnnaBridge 167:e84263d55307 330
AnnaBridge 167:e84263d55307 331
AnnaBridge 167:e84263d55307 332 #if ((defined (__ARM_ARCH_7EM__) && (__ARM_ARCH_7EM__ == 1)) )
AnnaBridge 167:e84263d55307 333
AnnaBridge 167:e84263d55307 334 /**
AnnaBridge 167:e84263d55307 335 \brief Get FPSCR
AnnaBridge 167:e84263d55307 336 \details Returns the current value of the Floating Point Status/Control register.
AnnaBridge 167:e84263d55307 337 \return Floating Point Status/Control register value
AnnaBridge 167:e84263d55307 338 */
AnnaBridge 167:e84263d55307 339 __STATIC_INLINE uint32_t __get_FPSCR(void)
AnnaBridge 167:e84263d55307 340 {
AnnaBridge 167:e84263d55307 341 #if ((defined (__FPU_PRESENT) && (__FPU_PRESENT == 1U)) && \
AnnaBridge 167:e84263d55307 342 (defined (__FPU_USED ) && (__FPU_USED == 1U)) )
AnnaBridge 167:e84263d55307 343 register uint32_t __regfpscr __ASM("fpscr");
AnnaBridge 167:e84263d55307 344 return(__regfpscr);
AnnaBridge 167:e84263d55307 345 #else
AnnaBridge 167:e84263d55307 346 return(0U);
AnnaBridge 167:e84263d55307 347 #endif
AnnaBridge 167:e84263d55307 348 }
AnnaBridge 167:e84263d55307 349
AnnaBridge 167:e84263d55307 350
AnnaBridge 167:e84263d55307 351 /**
AnnaBridge 167:e84263d55307 352 \brief Set FPSCR
AnnaBridge 167:e84263d55307 353 \details Assigns the given value to the Floating Point Status/Control register.
AnnaBridge 167:e84263d55307 354 \param [in] fpscr Floating Point Status/Control value to set
AnnaBridge 167:e84263d55307 355 */
AnnaBridge 167:e84263d55307 356 __STATIC_INLINE void __set_FPSCR(uint32_t fpscr)
AnnaBridge 167:e84263d55307 357 {
AnnaBridge 167:e84263d55307 358 #if ((defined (__FPU_PRESENT) && (__FPU_PRESENT == 1U)) && \
AnnaBridge 167:e84263d55307 359 (defined (__FPU_USED ) && (__FPU_USED == 1U)) )
AnnaBridge 167:e84263d55307 360 register uint32_t __regfpscr __ASM("fpscr");
AnnaBridge 167:e84263d55307 361 __regfpscr = (fpscr);
AnnaBridge 167:e84263d55307 362 #else
AnnaBridge 167:e84263d55307 363 (void)fpscr;
AnnaBridge 167:e84263d55307 364 #endif
AnnaBridge 167:e84263d55307 365 }
AnnaBridge 167:e84263d55307 366
AnnaBridge 167:e84263d55307 367 #endif /* ((defined (__ARM_ARCH_7EM__) && (__ARM_ARCH_7EM__ == 1)) ) */
AnnaBridge 167:e84263d55307 368
AnnaBridge 167:e84263d55307 369
AnnaBridge 167:e84263d55307 370
AnnaBridge 167:e84263d55307 371 /*@} end of CMSIS_Core_RegAccFunctions */
AnnaBridge 167:e84263d55307 372
AnnaBridge 167:e84263d55307 373
AnnaBridge 167:e84263d55307 374 /* ########################## Core Instruction Access ######################### */
AnnaBridge 167:e84263d55307 375 /** \defgroup CMSIS_Core_InstructionInterface CMSIS Core Instruction Interface
AnnaBridge 167:e84263d55307 376 Access to dedicated instructions
AnnaBridge 167:e84263d55307 377 @{
AnnaBridge 167:e84263d55307 378 */
AnnaBridge 167:e84263d55307 379
AnnaBridge 167:e84263d55307 380 /**
AnnaBridge 167:e84263d55307 381 \brief No Operation
AnnaBridge 167:e84263d55307 382 \details No Operation does nothing. This instruction can be used for code alignment purposes.
AnnaBridge 167:e84263d55307 383 */
AnnaBridge 167:e84263d55307 384 #define __NOP __nop
AnnaBridge 167:e84263d55307 385
AnnaBridge 167:e84263d55307 386
AnnaBridge 167:e84263d55307 387 /**
AnnaBridge 167:e84263d55307 388 \brief Wait For Interrupt
AnnaBridge 167:e84263d55307 389 \details Wait For Interrupt is a hint instruction that suspends execution until one of a number of events occurs.
AnnaBridge 167:e84263d55307 390 */
AnnaBridge 167:e84263d55307 391 #define __WFI __wfi
AnnaBridge 167:e84263d55307 392
AnnaBridge 167:e84263d55307 393
AnnaBridge 167:e84263d55307 394 /**
AnnaBridge 167:e84263d55307 395 \brief Wait For Event
AnnaBridge 167:e84263d55307 396 \details Wait For Event is a hint instruction that permits the processor to enter
AnnaBridge 167:e84263d55307 397 a low-power state until one of a number of events occurs.
AnnaBridge 167:e84263d55307 398 */
AnnaBridge 167:e84263d55307 399 #define __WFE __wfe
AnnaBridge 167:e84263d55307 400
AnnaBridge 167:e84263d55307 401
AnnaBridge 167:e84263d55307 402 /**
AnnaBridge 167:e84263d55307 403 \brief Send Event
AnnaBridge 167:e84263d55307 404 \details Send Event is a hint instruction. It causes an event to be signaled to the CPU.
AnnaBridge 167:e84263d55307 405 */
AnnaBridge 167:e84263d55307 406 #define __SEV __sev
AnnaBridge 167:e84263d55307 407
AnnaBridge 167:e84263d55307 408
AnnaBridge 167:e84263d55307 409 /**
AnnaBridge 167:e84263d55307 410 \brief Instruction Synchronization Barrier
AnnaBridge 167:e84263d55307 411 \details Instruction Synchronization Barrier flushes the pipeline in the processor,
AnnaBridge 167:e84263d55307 412 so that all instructions following the ISB are fetched from cache or memory,
AnnaBridge 167:e84263d55307 413 after the instruction has been completed.
AnnaBridge 167:e84263d55307 414 */
AnnaBridge 167:e84263d55307 415 #define __ISB() do {\
AnnaBridge 167:e84263d55307 416 __schedule_barrier();\
AnnaBridge 167:e84263d55307 417 __isb(0xF);\
AnnaBridge 167:e84263d55307 418 __schedule_barrier();\
AnnaBridge 167:e84263d55307 419 } while (0U)
AnnaBridge 167:e84263d55307 420
AnnaBridge 167:e84263d55307 421 /**
AnnaBridge 167:e84263d55307 422 \brief Data Synchronization Barrier
AnnaBridge 167:e84263d55307 423 \details Acts as a special kind of Data Memory Barrier.
AnnaBridge 167:e84263d55307 424 It completes when all explicit memory accesses before this instruction complete.
AnnaBridge 167:e84263d55307 425 */
AnnaBridge 167:e84263d55307 426 #define __DSB() do {\
AnnaBridge 167:e84263d55307 427 __schedule_barrier();\
AnnaBridge 167:e84263d55307 428 __dsb(0xF);\
AnnaBridge 167:e84263d55307 429 __schedule_barrier();\
AnnaBridge 167:e84263d55307 430 } while (0U)
AnnaBridge 167:e84263d55307 431
AnnaBridge 167:e84263d55307 432 /**
AnnaBridge 167:e84263d55307 433 \brief Data Memory Barrier
AnnaBridge 167:e84263d55307 434 \details Ensures the apparent order of the explicit memory operations before
AnnaBridge 167:e84263d55307 435 and after the instruction, without ensuring their completion.
AnnaBridge 167:e84263d55307 436 */
AnnaBridge 167:e84263d55307 437 #define __DMB() do {\
AnnaBridge 167:e84263d55307 438 __schedule_barrier();\
AnnaBridge 167:e84263d55307 439 __dmb(0xF);\
AnnaBridge 167:e84263d55307 440 __schedule_barrier();\
AnnaBridge 167:e84263d55307 441 } while (0U)
AnnaBridge 167:e84263d55307 442
AnnaBridge 167:e84263d55307 443 /**
AnnaBridge 167:e84263d55307 444 \brief Reverse byte order (32 bit)
AnnaBridge 167:e84263d55307 445 \details Reverses the byte order in integer value.
AnnaBridge 167:e84263d55307 446 \param [in] value Value to reverse
AnnaBridge 167:e84263d55307 447 \return Reversed value
AnnaBridge 167:e84263d55307 448 */
AnnaBridge 167:e84263d55307 449 #define __REV __rev
AnnaBridge 167:e84263d55307 450
AnnaBridge 167:e84263d55307 451
AnnaBridge 167:e84263d55307 452 /**
AnnaBridge 167:e84263d55307 453 \brief Reverse byte order (16 bit)
AnnaBridge 167:e84263d55307 454 \details Reverses the byte order in two unsigned short values.
AnnaBridge 167:e84263d55307 455 \param [in] value Value to reverse
AnnaBridge 167:e84263d55307 456 \return Reversed value
AnnaBridge 167:e84263d55307 457 */
AnnaBridge 167:e84263d55307 458 #ifndef __NO_EMBEDDED_ASM
AnnaBridge 167:e84263d55307 459 __attribute__((section(".rev16_text"))) __STATIC_INLINE __ASM uint32_t __REV16(uint32_t value)
AnnaBridge 167:e84263d55307 460 {
AnnaBridge 167:e84263d55307 461 rev16 r0, r0
AnnaBridge 167:e84263d55307 462 bx lr
AnnaBridge 167:e84263d55307 463 }
AnnaBridge 167:e84263d55307 464 #endif
AnnaBridge 167:e84263d55307 465
AnnaBridge 167:e84263d55307 466
AnnaBridge 167:e84263d55307 467 /**
AnnaBridge 167:e84263d55307 468 \brief Reverse byte order in signed short value
AnnaBridge 167:e84263d55307 469 \details Reverses the byte order in a signed short value with sign extension to integer.
AnnaBridge 167:e84263d55307 470 \param [in] value Value to reverse
AnnaBridge 167:e84263d55307 471 \return Reversed value
AnnaBridge 167:e84263d55307 472 */
AnnaBridge 167:e84263d55307 473 #ifndef __NO_EMBEDDED_ASM
AnnaBridge 167:e84263d55307 474 __attribute__((section(".revsh_text"))) __STATIC_INLINE __ASM int32_t __REVSH(int32_t value)
AnnaBridge 167:e84263d55307 475 {
AnnaBridge 167:e84263d55307 476 revsh r0, r0
AnnaBridge 167:e84263d55307 477 bx lr
AnnaBridge 167:e84263d55307 478 }
AnnaBridge 167:e84263d55307 479 #endif
AnnaBridge 167:e84263d55307 480
AnnaBridge 167:e84263d55307 481
AnnaBridge 167:e84263d55307 482 /**
AnnaBridge 167:e84263d55307 483 \brief Rotate Right in unsigned value (32 bit)
AnnaBridge 167:e84263d55307 484 \details Rotate Right (immediate) provides the value of the contents of a register rotated by a variable number of bits.
AnnaBridge 167:e84263d55307 485 \param [in] op1 Value to rotate
AnnaBridge 167:e84263d55307 486 \param [in] op2 Number of Bits to rotate
AnnaBridge 167:e84263d55307 487 \return Rotated value
AnnaBridge 167:e84263d55307 488 */
AnnaBridge 167:e84263d55307 489 #define __ROR __ror
AnnaBridge 167:e84263d55307 490
AnnaBridge 167:e84263d55307 491
AnnaBridge 167:e84263d55307 492 /**
AnnaBridge 167:e84263d55307 493 \brief Breakpoint
AnnaBridge 167:e84263d55307 494 \details Causes the processor to enter Debug state.
AnnaBridge 167:e84263d55307 495 Debug tools can use this to investigate system state when the instruction at a particular address is reached.
AnnaBridge 167:e84263d55307 496 \param [in] value is ignored by the processor.
AnnaBridge 167:e84263d55307 497 If required, a debugger can use it to store additional information about the breakpoint.
AnnaBridge 167:e84263d55307 498 */
AnnaBridge 167:e84263d55307 499 #define __BKPT(value) __breakpoint(value)
AnnaBridge 167:e84263d55307 500
AnnaBridge 167:e84263d55307 501
AnnaBridge 167:e84263d55307 502 /**
AnnaBridge 167:e84263d55307 503 \brief Reverse bit order of value
AnnaBridge 167:e84263d55307 504 \details Reverses the bit order of the given value.
AnnaBridge 167:e84263d55307 505 \param [in] value Value to reverse
AnnaBridge 167:e84263d55307 506 \return Reversed value
AnnaBridge 167:e84263d55307 507 */
AnnaBridge 167:e84263d55307 508 #if ((defined (__ARM_ARCH_7M__ ) && (__ARM_ARCH_7M__ == 1)) || \
AnnaBridge 167:e84263d55307 509 (defined (__ARM_ARCH_7EM__) && (__ARM_ARCH_7EM__ == 1)) )
AnnaBridge 167:e84263d55307 510 #define __RBIT __rbit
AnnaBridge 167:e84263d55307 511 #else
AnnaBridge 167:e84263d55307 512 __attribute__((always_inline)) __STATIC_INLINE uint32_t __RBIT(uint32_t value)
AnnaBridge 167:e84263d55307 513 {
AnnaBridge 167:e84263d55307 514 uint32_t result;
AnnaBridge 167:e84263d55307 515 int32_t s = (4 /*sizeof(v)*/ * 8) - 1; /* extra shift needed at end */
AnnaBridge 167:e84263d55307 516
AnnaBridge 167:e84263d55307 517 result = value; /* r will be reversed bits of v; first get LSB of v */
AnnaBridge 167:e84263d55307 518 for (value >>= 1U; value; value >>= 1U)
AnnaBridge 167:e84263d55307 519 {
AnnaBridge 167:e84263d55307 520 result <<= 1U;
AnnaBridge 167:e84263d55307 521 result |= value & 1U;
AnnaBridge 167:e84263d55307 522 s--;
AnnaBridge 167:e84263d55307 523 }
AnnaBridge 167:e84263d55307 524 result <<= s; /* shift when v's highest bits are zero */
AnnaBridge 167:e84263d55307 525 return(result);
AnnaBridge 167:e84263d55307 526 }
AnnaBridge 167:e84263d55307 527 #endif
AnnaBridge 167:e84263d55307 528
AnnaBridge 167:e84263d55307 529
AnnaBridge 167:e84263d55307 530 /**
AnnaBridge 167:e84263d55307 531 \brief Count leading zeros
AnnaBridge 167:e84263d55307 532 \details Counts the number of leading zeros of a data value.
AnnaBridge 167:e84263d55307 533 \param [in] value Value to count the leading zeros
AnnaBridge 167:e84263d55307 534 \return number of leading zeros in value
AnnaBridge 167:e84263d55307 535 */
AnnaBridge 167:e84263d55307 536 #define __CLZ __clz
AnnaBridge 167:e84263d55307 537
AnnaBridge 167:e84263d55307 538
AnnaBridge 167:e84263d55307 539 #if ((defined (__ARM_ARCH_7M__ ) && (__ARM_ARCH_7M__ == 1)) || \
AnnaBridge 167:e84263d55307 540 (defined (__ARM_ARCH_7EM__) && (__ARM_ARCH_7EM__ == 1)) )
AnnaBridge 167:e84263d55307 541
AnnaBridge 167:e84263d55307 542 /**
AnnaBridge 167:e84263d55307 543 \brief LDR Exclusive (8 bit)
AnnaBridge 167:e84263d55307 544 \details Executes a exclusive LDR instruction for 8 bit value.
AnnaBridge 167:e84263d55307 545 \param [in] ptr Pointer to data
AnnaBridge 167:e84263d55307 546 \return value of type uint8_t at (*ptr)
AnnaBridge 167:e84263d55307 547 */
AnnaBridge 167:e84263d55307 548 #if defined(__ARMCC_VERSION) && (__ARMCC_VERSION < 5060020)
AnnaBridge 167:e84263d55307 549 #define __LDREXB(ptr) ((uint8_t ) __ldrex(ptr))
AnnaBridge 167:e84263d55307 550 #else
AnnaBridge 167:e84263d55307 551 #define __LDREXB(ptr) _Pragma("push") _Pragma("diag_suppress 3731") ((uint8_t ) __ldrex(ptr)) _Pragma("pop")
AnnaBridge 167:e84263d55307 552 #endif
AnnaBridge 167:e84263d55307 553
AnnaBridge 167:e84263d55307 554
AnnaBridge 167:e84263d55307 555 /**
AnnaBridge 167:e84263d55307 556 \brief LDR Exclusive (16 bit)
AnnaBridge 167:e84263d55307 557 \details Executes a exclusive LDR instruction for 16 bit values.
AnnaBridge 167:e84263d55307 558 \param [in] ptr Pointer to data
AnnaBridge 167:e84263d55307 559 \return value of type uint16_t at (*ptr)
AnnaBridge 167:e84263d55307 560 */
AnnaBridge 167:e84263d55307 561 #if defined(__ARMCC_VERSION) && (__ARMCC_VERSION < 5060020)
AnnaBridge 167:e84263d55307 562 #define __LDREXH(ptr) ((uint16_t) __ldrex(ptr))
AnnaBridge 167:e84263d55307 563 #else
AnnaBridge 167:e84263d55307 564 #define __LDREXH(ptr) _Pragma("push") _Pragma("diag_suppress 3731") ((uint16_t) __ldrex(ptr)) _Pragma("pop")
AnnaBridge 167:e84263d55307 565 #endif
AnnaBridge 167:e84263d55307 566
AnnaBridge 167:e84263d55307 567
AnnaBridge 167:e84263d55307 568 /**
AnnaBridge 167:e84263d55307 569 \brief LDR Exclusive (32 bit)
AnnaBridge 167:e84263d55307 570 \details Executes a exclusive LDR instruction for 32 bit values.
AnnaBridge 167:e84263d55307 571 \param [in] ptr Pointer to data
AnnaBridge 167:e84263d55307 572 \return value of type uint32_t at (*ptr)
AnnaBridge 167:e84263d55307 573 */
AnnaBridge 167:e84263d55307 574 #if defined(__ARMCC_VERSION) && (__ARMCC_VERSION < 5060020)
AnnaBridge 167:e84263d55307 575 #define __LDREXW(ptr) ((uint32_t ) __ldrex(ptr))
AnnaBridge 167:e84263d55307 576 #else
AnnaBridge 167:e84263d55307 577 #define __LDREXW(ptr) _Pragma("push") _Pragma("diag_suppress 3731") ((uint32_t ) __ldrex(ptr)) _Pragma("pop")
AnnaBridge 167:e84263d55307 578 #endif
AnnaBridge 167:e84263d55307 579
AnnaBridge 167:e84263d55307 580
AnnaBridge 167:e84263d55307 581 /**
AnnaBridge 167:e84263d55307 582 \brief STR Exclusive (8 bit)
AnnaBridge 167:e84263d55307 583 \details Executes a exclusive STR instruction for 8 bit values.
AnnaBridge 167:e84263d55307 584 \param [in] value Value to store
AnnaBridge 167:e84263d55307 585 \param [in] ptr Pointer to location
AnnaBridge 167:e84263d55307 586 \return 0 Function succeeded
AnnaBridge 167:e84263d55307 587 \return 1 Function failed
AnnaBridge 167:e84263d55307 588 */
AnnaBridge 167:e84263d55307 589 #if defined(__ARMCC_VERSION) && (__ARMCC_VERSION < 5060020)
AnnaBridge 167:e84263d55307 590 #define __STREXB(value, ptr) __strex(value, ptr)
AnnaBridge 167:e84263d55307 591 #else
AnnaBridge 167:e84263d55307 592 #define __STREXB(value, ptr) _Pragma("push") _Pragma("diag_suppress 3731") __strex(value, ptr) _Pragma("pop")
AnnaBridge 167:e84263d55307 593 #endif
AnnaBridge 167:e84263d55307 594
AnnaBridge 167:e84263d55307 595
AnnaBridge 167:e84263d55307 596 /**
AnnaBridge 167:e84263d55307 597 \brief STR Exclusive (16 bit)
AnnaBridge 167:e84263d55307 598 \details Executes a exclusive STR instruction for 16 bit values.
AnnaBridge 167:e84263d55307 599 \param [in] value Value to store
AnnaBridge 167:e84263d55307 600 \param [in] ptr Pointer to location
AnnaBridge 167:e84263d55307 601 \return 0 Function succeeded
AnnaBridge 167:e84263d55307 602 \return 1 Function failed
AnnaBridge 167:e84263d55307 603 */
AnnaBridge 167:e84263d55307 604 #if defined(__ARMCC_VERSION) && (__ARMCC_VERSION < 5060020)
AnnaBridge 167:e84263d55307 605 #define __STREXH(value, ptr) __strex(value, ptr)
AnnaBridge 167:e84263d55307 606 #else
AnnaBridge 167:e84263d55307 607 #define __STREXH(value, ptr) _Pragma("push") _Pragma("diag_suppress 3731") __strex(value, ptr) _Pragma("pop")
AnnaBridge 167:e84263d55307 608 #endif
AnnaBridge 167:e84263d55307 609
AnnaBridge 167:e84263d55307 610
AnnaBridge 167:e84263d55307 611 /**
AnnaBridge 167:e84263d55307 612 \brief STR Exclusive (32 bit)
AnnaBridge 167:e84263d55307 613 \details Executes a exclusive STR instruction for 32 bit values.
AnnaBridge 167:e84263d55307 614 \param [in] value Value to store
AnnaBridge 167:e84263d55307 615 \param [in] ptr Pointer to location
AnnaBridge 167:e84263d55307 616 \return 0 Function succeeded
AnnaBridge 167:e84263d55307 617 \return 1 Function failed
AnnaBridge 167:e84263d55307 618 */
AnnaBridge 167:e84263d55307 619 #if defined(__ARMCC_VERSION) && (__ARMCC_VERSION < 5060020)
AnnaBridge 167:e84263d55307 620 #define __STREXW(value, ptr) __strex(value, ptr)
AnnaBridge 167:e84263d55307 621 #else
AnnaBridge 167:e84263d55307 622 #define __STREXW(value, ptr) _Pragma("push") _Pragma("diag_suppress 3731") __strex(value, ptr) _Pragma("pop")
AnnaBridge 167:e84263d55307 623 #endif
AnnaBridge 167:e84263d55307 624
AnnaBridge 167:e84263d55307 625
AnnaBridge 167:e84263d55307 626 /**
AnnaBridge 167:e84263d55307 627 \brief Remove the exclusive lock
AnnaBridge 167:e84263d55307 628 \details Removes the exclusive lock which is created by LDREX.
AnnaBridge 167:e84263d55307 629 */
AnnaBridge 167:e84263d55307 630 #define __CLREX __clrex
AnnaBridge 167:e84263d55307 631
AnnaBridge 167:e84263d55307 632
AnnaBridge 167:e84263d55307 633 /**
AnnaBridge 167:e84263d55307 634 \brief Signed Saturate
AnnaBridge 167:e84263d55307 635 \details Saturates a signed value.
AnnaBridge 167:e84263d55307 636 \param [in] value Value to be saturated
AnnaBridge 167:e84263d55307 637 \param [in] sat Bit position to saturate to (1..32)
AnnaBridge 167:e84263d55307 638 \return Saturated value
AnnaBridge 167:e84263d55307 639 */
AnnaBridge 167:e84263d55307 640 #define __SSAT __ssat
AnnaBridge 167:e84263d55307 641
AnnaBridge 167:e84263d55307 642
AnnaBridge 167:e84263d55307 643 /**
AnnaBridge 167:e84263d55307 644 \brief Unsigned Saturate
AnnaBridge 167:e84263d55307 645 \details Saturates an unsigned value.
AnnaBridge 167:e84263d55307 646 \param [in] value Value to be saturated
AnnaBridge 167:e84263d55307 647 \param [in] sat Bit position to saturate to (0..31)
AnnaBridge 167:e84263d55307 648 \return Saturated value
AnnaBridge 167:e84263d55307 649 */
AnnaBridge 167:e84263d55307 650 #define __USAT __usat
AnnaBridge 167:e84263d55307 651
AnnaBridge 167:e84263d55307 652
AnnaBridge 167:e84263d55307 653 /**
AnnaBridge 167:e84263d55307 654 \brief Rotate Right with Extend (32 bit)
AnnaBridge 167:e84263d55307 655 \details Moves each bit of a bitstring right by one bit.
AnnaBridge 167:e84263d55307 656 The carry input is shifted in at the left end of the bitstring.
AnnaBridge 167:e84263d55307 657 \param [in] value Value to rotate
AnnaBridge 167:e84263d55307 658 \return Rotated value
AnnaBridge 167:e84263d55307 659 */
AnnaBridge 167:e84263d55307 660 #ifndef __NO_EMBEDDED_ASM
AnnaBridge 167:e84263d55307 661 __attribute__((section(".rrx_text"))) __STATIC_INLINE __ASM uint32_t __RRX(uint32_t value)
AnnaBridge 167:e84263d55307 662 {
AnnaBridge 167:e84263d55307 663 rrx r0, r0
AnnaBridge 167:e84263d55307 664 bx lr
AnnaBridge 167:e84263d55307 665 }
AnnaBridge 167:e84263d55307 666 #endif
AnnaBridge 167:e84263d55307 667
AnnaBridge 167:e84263d55307 668
AnnaBridge 167:e84263d55307 669 /**
AnnaBridge 167:e84263d55307 670 \brief LDRT Unprivileged (8 bit)
AnnaBridge 167:e84263d55307 671 \details Executes a Unprivileged LDRT instruction for 8 bit value.
AnnaBridge 167:e84263d55307 672 \param [in] ptr Pointer to data
AnnaBridge 167:e84263d55307 673 \return value of type uint8_t at (*ptr)
AnnaBridge 167:e84263d55307 674 */
AnnaBridge 167:e84263d55307 675 #define __LDRBT(ptr) ((uint8_t ) __ldrt(ptr))
AnnaBridge 167:e84263d55307 676
AnnaBridge 167:e84263d55307 677
AnnaBridge 167:e84263d55307 678 /**
AnnaBridge 167:e84263d55307 679 \brief LDRT Unprivileged (16 bit)
AnnaBridge 167:e84263d55307 680 \details Executes a Unprivileged LDRT instruction for 16 bit values.
AnnaBridge 167:e84263d55307 681 \param [in] ptr Pointer to data
AnnaBridge 167:e84263d55307 682 \return value of type uint16_t at (*ptr)
AnnaBridge 167:e84263d55307 683 */
AnnaBridge 167:e84263d55307 684 #define __LDRHT(ptr) ((uint16_t) __ldrt(ptr))
AnnaBridge 167:e84263d55307 685
AnnaBridge 167:e84263d55307 686
AnnaBridge 167:e84263d55307 687 /**
AnnaBridge 167:e84263d55307 688 \brief LDRT Unprivileged (32 bit)
AnnaBridge 167:e84263d55307 689 \details Executes a Unprivileged LDRT instruction for 32 bit values.
AnnaBridge 167:e84263d55307 690 \param [in] ptr Pointer to data
AnnaBridge 167:e84263d55307 691 \return value of type uint32_t at (*ptr)
AnnaBridge 167:e84263d55307 692 */
AnnaBridge 167:e84263d55307 693 #define __LDRT(ptr) ((uint32_t ) __ldrt(ptr))
AnnaBridge 167:e84263d55307 694
AnnaBridge 167:e84263d55307 695
AnnaBridge 167:e84263d55307 696 /**
AnnaBridge 167:e84263d55307 697 \brief STRT Unprivileged (8 bit)
AnnaBridge 167:e84263d55307 698 \details Executes a Unprivileged STRT instruction for 8 bit values.
AnnaBridge 167:e84263d55307 699 \param [in] value Value to store
AnnaBridge 167:e84263d55307 700 \param [in] ptr Pointer to location
AnnaBridge 167:e84263d55307 701 */
AnnaBridge 167:e84263d55307 702 #define __STRBT(value, ptr) __strt(value, ptr)
AnnaBridge 167:e84263d55307 703
AnnaBridge 167:e84263d55307 704
AnnaBridge 167:e84263d55307 705 /**
AnnaBridge 167:e84263d55307 706 \brief STRT Unprivileged (16 bit)
AnnaBridge 167:e84263d55307 707 \details Executes a Unprivileged STRT instruction for 16 bit values.
AnnaBridge 167:e84263d55307 708 \param [in] value Value to store
AnnaBridge 167:e84263d55307 709 \param [in] ptr Pointer to location
AnnaBridge 167:e84263d55307 710 */
AnnaBridge 167:e84263d55307 711 #define __STRHT(value, ptr) __strt(value, ptr)
AnnaBridge 167:e84263d55307 712
AnnaBridge 167:e84263d55307 713
AnnaBridge 167:e84263d55307 714 /**
AnnaBridge 167:e84263d55307 715 \brief STRT Unprivileged (32 bit)
AnnaBridge 167:e84263d55307 716 \details Executes a Unprivileged STRT instruction for 32 bit values.
AnnaBridge 167:e84263d55307 717 \param [in] value Value to store
AnnaBridge 167:e84263d55307 718 \param [in] ptr Pointer to location
AnnaBridge 167:e84263d55307 719 */
AnnaBridge 167:e84263d55307 720 #define __STRT(value, ptr) __strt(value, ptr)
AnnaBridge 167:e84263d55307 721
AnnaBridge 167:e84263d55307 722 #endif /* ((defined (__ARM_ARCH_7M__ ) && (__ARM_ARCH_7M__ == 1)) || \
AnnaBridge 167:e84263d55307 723 (defined (__ARM_ARCH_7EM__) && (__ARM_ARCH_7EM__ == 1)) ) */
AnnaBridge 167:e84263d55307 724
AnnaBridge 167:e84263d55307 725 /*@}*/ /* end of group CMSIS_Core_InstructionInterface */
AnnaBridge 167:e84263d55307 726
AnnaBridge 167:e84263d55307 727
AnnaBridge 167:e84263d55307 728 /* ################### Compiler specific Intrinsics ########################### */
AnnaBridge 167:e84263d55307 729 /** \defgroup CMSIS_SIMD_intrinsics CMSIS SIMD Intrinsics
AnnaBridge 167:e84263d55307 730 Access to dedicated SIMD instructions
AnnaBridge 167:e84263d55307 731 @{
AnnaBridge 167:e84263d55307 732 */
AnnaBridge 167:e84263d55307 733
AnnaBridge 167:e84263d55307 734 #if ((defined (__ARM_ARCH_7EM__) && (__ARM_ARCH_7EM__ == 1)) )
AnnaBridge 167:e84263d55307 735
AnnaBridge 167:e84263d55307 736 #define __SADD8 __sadd8
AnnaBridge 167:e84263d55307 737 #define __QADD8 __qadd8
AnnaBridge 167:e84263d55307 738 #define __SHADD8 __shadd8
AnnaBridge 167:e84263d55307 739 #define __UADD8 __uadd8
AnnaBridge 167:e84263d55307 740 #define __UQADD8 __uqadd8
AnnaBridge 167:e84263d55307 741 #define __UHADD8 __uhadd8
AnnaBridge 167:e84263d55307 742 #define __SSUB8 __ssub8
AnnaBridge 167:e84263d55307 743 #define __QSUB8 __qsub8
AnnaBridge 167:e84263d55307 744 #define __SHSUB8 __shsub8
AnnaBridge 167:e84263d55307 745 #define __USUB8 __usub8
AnnaBridge 167:e84263d55307 746 #define __UQSUB8 __uqsub8
AnnaBridge 167:e84263d55307 747 #define __UHSUB8 __uhsub8
AnnaBridge 167:e84263d55307 748 #define __SADD16 __sadd16
AnnaBridge 167:e84263d55307 749 #define __QADD16 __qadd16
AnnaBridge 167:e84263d55307 750 #define __SHADD16 __shadd16
AnnaBridge 167:e84263d55307 751 #define __UADD16 __uadd16
AnnaBridge 167:e84263d55307 752 #define __UQADD16 __uqadd16
AnnaBridge 167:e84263d55307 753 #define __UHADD16 __uhadd16
AnnaBridge 167:e84263d55307 754 #define __SSUB16 __ssub16
AnnaBridge 167:e84263d55307 755 #define __QSUB16 __qsub16
AnnaBridge 167:e84263d55307 756 #define __SHSUB16 __shsub16
AnnaBridge 167:e84263d55307 757 #define __USUB16 __usub16
AnnaBridge 167:e84263d55307 758 #define __UQSUB16 __uqsub16
AnnaBridge 167:e84263d55307 759 #define __UHSUB16 __uhsub16
AnnaBridge 167:e84263d55307 760 #define __SASX __sasx
AnnaBridge 167:e84263d55307 761 #define __QASX __qasx
AnnaBridge 167:e84263d55307 762 #define __SHASX __shasx
AnnaBridge 167:e84263d55307 763 #define __UASX __uasx
AnnaBridge 167:e84263d55307 764 #define __UQASX __uqasx
AnnaBridge 167:e84263d55307 765 #define __UHASX __uhasx
AnnaBridge 167:e84263d55307 766 #define __SSAX __ssax
AnnaBridge 167:e84263d55307 767 #define __QSAX __qsax
AnnaBridge 167:e84263d55307 768 #define __SHSAX __shsax
AnnaBridge 167:e84263d55307 769 #define __USAX __usax
AnnaBridge 167:e84263d55307 770 #define __UQSAX __uqsax
AnnaBridge 167:e84263d55307 771 #define __UHSAX __uhsax
AnnaBridge 167:e84263d55307 772 #define __USAD8 __usad8
AnnaBridge 167:e84263d55307 773 #define __USADA8 __usada8
AnnaBridge 167:e84263d55307 774 #define __SSAT16 __ssat16
AnnaBridge 167:e84263d55307 775 #define __USAT16 __usat16
AnnaBridge 167:e84263d55307 776 #define __UXTB16 __uxtb16
AnnaBridge 167:e84263d55307 777 #define __UXTAB16 __uxtab16
AnnaBridge 167:e84263d55307 778 #define __SXTB16 __sxtb16
AnnaBridge 167:e84263d55307 779 #define __SXTAB16 __sxtab16
AnnaBridge 167:e84263d55307 780 #define __SMUAD __smuad
AnnaBridge 167:e84263d55307 781 #define __SMUADX __smuadx
AnnaBridge 167:e84263d55307 782 #define __SMLAD __smlad
AnnaBridge 167:e84263d55307 783 #define __SMLADX __smladx
AnnaBridge 167:e84263d55307 784 #define __SMLALD __smlald
AnnaBridge 167:e84263d55307 785 #define __SMLALDX __smlaldx
AnnaBridge 167:e84263d55307 786 #define __SMUSD __smusd
AnnaBridge 167:e84263d55307 787 #define __SMUSDX __smusdx
AnnaBridge 167:e84263d55307 788 #define __SMLSD __smlsd
AnnaBridge 167:e84263d55307 789 #define __SMLSDX __smlsdx
AnnaBridge 167:e84263d55307 790 #define __SMLSLD __smlsld
AnnaBridge 167:e84263d55307 791 #define __SMLSLDX __smlsldx
AnnaBridge 167:e84263d55307 792 #define __SEL __sel
AnnaBridge 167:e84263d55307 793 #define __QADD __qadd
AnnaBridge 167:e84263d55307 794 #define __QSUB __qsub
AnnaBridge 167:e84263d55307 795
AnnaBridge 167:e84263d55307 796 #define __PKHBT(ARG1,ARG2,ARG3) ( ((((uint32_t)(ARG1)) ) & 0x0000FFFFUL) | \
AnnaBridge 167:e84263d55307 797 ((((uint32_t)(ARG2)) << (ARG3)) & 0xFFFF0000UL) )
AnnaBridge 167:e84263d55307 798
AnnaBridge 167:e84263d55307 799 #define __PKHTB(ARG1,ARG2,ARG3) ( ((((uint32_t)(ARG1)) ) & 0xFFFF0000UL) | \
AnnaBridge 167:e84263d55307 800 ((((uint32_t)(ARG2)) >> (ARG3)) & 0x0000FFFFUL) )
AnnaBridge 167:e84263d55307 801
AnnaBridge 167:e84263d55307 802 #define __SMMLA(ARG1,ARG2,ARG3) ( (int32_t)((((int64_t)(ARG1) * (ARG2)) + \
AnnaBridge 167:e84263d55307 803 ((int64_t)(ARG3) << 32U) ) >> 32U))
AnnaBridge 167:e84263d55307 804
AnnaBridge 167:e84263d55307 805 #endif /* ((defined (__ARM_ARCH_7EM__) && (__ARM_ARCH_7EM__ == 1)) ) */
AnnaBridge 167:e84263d55307 806 /*@} end of group CMSIS_SIMD_intrinsics */
AnnaBridge 167:e84263d55307 807
AnnaBridge 167:e84263d55307 808
AnnaBridge 167:e84263d55307 809 #endif /* __CMSIS_ARMCC_H */