blob: 0041d4dc6ff536afb59c5863d21f6ced2b42531f [file] [log] [blame]
Ronald Cron0a78fef2019-09-25 15:16:42 +02001/******************************************************************************
2 * @file mpu_armv8.h
3 * @brief CMSIS MPU API for Armv8-M and Armv8.1-M MPU
4 * @version V5.1.0
5 * @date 08. March 2019
6 ******************************************************************************/
7/*
8 * Copyright (c) 2017-2019 Arm Limited. All rights reserved.
9 *
10 * SPDX-License-Identifier: Apache-2.0
11 *
12 * Licensed under the Apache License, Version 2.0 (the License); you may
13 * not use this file except in compliance with the License.
14 * You may obtain a copy of the License at
15 *
16 * www.apache.org/licenses/LICENSE-2.0
17 *
18 * Unless required by applicable law or agreed to in writing, software
19 * distributed under the License is distributed on an AS IS BASIS, WITHOUT
20 * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
21 * See the License for the specific language governing permissions and
22 * limitations under the License.
23 */
24
25#if defined ( __ICCARM__ )
26 #pragma system_include /* treat file as system include file for MISRA check */
27#elif defined (__clang__)
28 #pragma clang system_header /* treat file as system include file */
29#endif
30
31#ifndef ARM_MPU_ARMV8_H
32#define ARM_MPU_ARMV8_H
33
34/** \brief Attribute for device memory (outer only) */
35#define ARM_MPU_ATTR_DEVICE ( 0U )
36
37/** \brief Attribute for non-cacheable, normal memory */
38#define ARM_MPU_ATTR_NON_CACHEABLE ( 4U )
39
40/** \brief Attribute for normal memory (outer and inner)
41* \param NT Non-Transient: Set to 1 for non-transient data.
42* \param WB Write-Back: Set to 1 to use write-back update policy.
43* \param RA Read Allocation: Set to 1 to use cache allocation on read miss.
44* \param WA Write Allocation: Set to 1 to use cache allocation on write miss.
45*/
46#define ARM_MPU_ATTR_MEMORY_(NT, WB, RA, WA) \
47 (((NT & 1U) << 3U) | ((WB & 1U) << 2U) | ((RA & 1U) << 1U) | (WA & 1U))
48
49/** \brief Device memory type non Gathering, non Re-ordering, non Early Write Acknowledgement */
50#define ARM_MPU_ATTR_DEVICE_nGnRnE (0U)
51
52/** \brief Device memory type non Gathering, non Re-ordering, Early Write Acknowledgement */
53#define ARM_MPU_ATTR_DEVICE_nGnRE (1U)
54
55/** \brief Device memory type non Gathering, Re-ordering, Early Write Acknowledgement */
56#define ARM_MPU_ATTR_DEVICE_nGRE (2U)
57
58/** \brief Device memory type Gathering, Re-ordering, Early Write Acknowledgement */
59#define ARM_MPU_ATTR_DEVICE_GRE (3U)
60
61/** \brief Memory Attribute
62* \param O Outer memory attributes
63* \param I O == ARM_MPU_ATTR_DEVICE: Device memory attributes, else: Inner memory attributes
64*/
65#define ARM_MPU_ATTR(O, I) (((O & 0xFU) << 4U) | (((O & 0xFU) != 0U) ? (I & 0xFU) : ((I & 0x3U) << 2U)))
66
67/** \brief Normal memory non-shareable */
68#define ARM_MPU_SH_NON (0U)
69
70/** \brief Normal memory outer shareable */
71#define ARM_MPU_SH_OUTER (2U)
72
73/** \brief Normal memory inner shareable */
74#define ARM_MPU_SH_INNER (3U)
75
76/** \brief Memory access permissions
77* \param RO Read-Only: Set to 1 for read-only memory.
78* \param NP Non-Privileged: Set to 1 for non-privileged memory.
79*/
80#define ARM_MPU_AP_(RO, NP) (((RO & 1U) << 1U) | (NP & 1U))
81
82/** \brief Region Base Address Register value
83* \param BASE The base address bits [31:5] of a memory region. The value is zero extended. Effective address gets 32 byte aligned.
84* \param SH Defines the Shareability domain for this memory region.
85* \param RO Read-Only: Set to 1 for a read-only memory region.
86* \param NP Non-Privileged: Set to 1 for a non-privileged memory region.
87* \oaram XN eXecute Never: Set to 1 for a non-executable memory region.
88*/
89#define ARM_MPU_RBAR(BASE, SH, RO, NP, XN) \
90 ((BASE & MPU_RBAR_BASE_Msk) | \
91 ((SH << MPU_RBAR_SH_Pos) & MPU_RBAR_SH_Msk) | \
92 ((ARM_MPU_AP_(RO, NP) << MPU_RBAR_AP_Pos) & MPU_RBAR_AP_Msk) | \
93 ((XN << MPU_RBAR_XN_Pos) & MPU_RBAR_XN_Msk))
94
95/** \brief Region Limit Address Register value
96* \param LIMIT The limit address bits [31:5] for this memory region. The value is one extended.
97* \param IDX The attribute index to be associated with this memory region.
98*/
99#define ARM_MPU_RLAR(LIMIT, IDX) \
100 ((LIMIT & MPU_RLAR_LIMIT_Msk) | \
101 ((IDX << MPU_RLAR_AttrIndx_Pos) & MPU_RLAR_AttrIndx_Msk) | \
102 (MPU_RLAR_EN_Msk))
103
104#if defined(MPU_RLAR_PXN_Pos)
105
106/** \brief Region Limit Address Register with PXN value
107* \param LIMIT The limit address bits [31:5] for this memory region. The value is one extended.
108* \param PXN Privileged execute never. Defines whether code can be executed from this privileged region.
109* \param IDX The attribute index to be associated with this memory region.
110*/
111#define ARM_MPU_RLAR_PXN(LIMIT, PXN, IDX) \
112 ((LIMIT & MPU_RLAR_LIMIT_Msk) | \
113 ((PXN << MPU_RLAR_PXN_Pos) & MPU_RLAR_PXN_Msk) | \
114 ((IDX << MPU_RLAR_AttrIndx_Pos) & MPU_RLAR_AttrIndx_Msk) | \
115 (MPU_RLAR_EN_Msk))
116
117#endif
118
119/**
120* Struct for a single MPU Region
121*/
122typedef struct {
123 uint32_t RBAR; /*!< Region Base Address Register value */
124 uint32_t RLAR; /*!< Region Limit Address Register value */
125} ARM_MPU_Region_t;
126
127/** Enable the MPU.
128* \param MPU_Control Default access permissions for unconfigured regions.
129*/
130__STATIC_INLINE void ARM_MPU_Enable(uint32_t MPU_Control)
131{
132 MPU->CTRL = MPU_Control | MPU_CTRL_ENABLE_Msk;
133#ifdef SCB_SHCSR_MEMFAULTENA_Msk
134 SCB->SHCSR |= SCB_SHCSR_MEMFAULTENA_Msk;
135#endif
136 __DSB();
137 __ISB();
138}
139
140/** Disable the MPU.
141*/
142__STATIC_INLINE void ARM_MPU_Disable(void)
143{
144 __DMB();
145#ifdef SCB_SHCSR_MEMFAULTENA_Msk
146 SCB->SHCSR &= ~SCB_SHCSR_MEMFAULTENA_Msk;
147#endif
148 MPU->CTRL &= ~MPU_CTRL_ENABLE_Msk;
149}
150
151#ifdef MPU_NS
152/** Enable the Non-secure MPU.
153* \param MPU_Control Default access permissions for unconfigured regions.
154*/
155__STATIC_INLINE void ARM_MPU_Enable_NS(uint32_t MPU_Control)
156{
157 MPU_NS->CTRL = MPU_Control | MPU_CTRL_ENABLE_Msk;
158#ifdef SCB_SHCSR_MEMFAULTENA_Msk
159 SCB_NS->SHCSR |= SCB_SHCSR_MEMFAULTENA_Msk;
160#endif
161 __DSB();
162 __ISB();
163}
164
165/** Disable the Non-secure MPU.
166*/
167__STATIC_INLINE void ARM_MPU_Disable_NS(void)
168{
169 __DMB();
170#ifdef SCB_SHCSR_MEMFAULTENA_Msk
171 SCB_NS->SHCSR &= ~SCB_SHCSR_MEMFAULTENA_Msk;
172#endif
173 MPU_NS->CTRL &= ~MPU_CTRL_ENABLE_Msk;
174}
175#endif
176
177/** Set the memory attribute encoding to the given MPU.
178* \param mpu Pointer to the MPU to be configured.
179* \param idx The attribute index to be set [0-7]
180* \param attr The attribute value to be set.
181*/
182__STATIC_INLINE void ARM_MPU_SetMemAttrEx(MPU_Type* mpu, uint8_t idx, uint8_t attr)
183{
184 const uint8_t reg = idx / 4U;
185 const uint32_t pos = ((idx % 4U) * 8U);
186 const uint32_t mask = 0xFFU << pos;
187
188 if (reg >= (sizeof(mpu->MAIR) / sizeof(mpu->MAIR[0]))) {
189 return; // invalid index
190 }
191
192 mpu->MAIR[reg] = ((mpu->MAIR[reg] & ~mask) | ((attr << pos) & mask));
193}
194
195/** Set the memory attribute encoding.
196* \param idx The attribute index to be set [0-7]
197* \param attr The attribute value to be set.
198*/
199__STATIC_INLINE void ARM_MPU_SetMemAttr(uint8_t idx, uint8_t attr)
200{
201 ARM_MPU_SetMemAttrEx(MPU, idx, attr);
202}
203
204#ifdef MPU_NS
205/** Set the memory attribute encoding to the Non-secure MPU.
206* \param idx The attribute index to be set [0-7]
207* \param attr The attribute value to be set.
208*/
209__STATIC_INLINE void ARM_MPU_SetMemAttr_NS(uint8_t idx, uint8_t attr)
210{
211 ARM_MPU_SetMemAttrEx(MPU_NS, idx, attr);
212}
213#endif
214
215/** Clear and disable the given MPU region of the given MPU.
216* \param mpu Pointer to MPU to be used.
217* \param rnr Region number to be cleared.
218*/
219__STATIC_INLINE void ARM_MPU_ClrRegionEx(MPU_Type* mpu, uint32_t rnr)
220{
221 mpu->RNR = rnr;
222 mpu->RLAR = 0U;
223}
224
225/** Clear and disable the given MPU region.
226* \param rnr Region number to be cleared.
227*/
228__STATIC_INLINE void ARM_MPU_ClrRegion(uint32_t rnr)
229{
230 ARM_MPU_ClrRegionEx(MPU, rnr);
231}
232
233#ifdef MPU_NS
234/** Clear and disable the given Non-secure MPU region.
235* \param rnr Region number to be cleared.
236*/
237__STATIC_INLINE void ARM_MPU_ClrRegion_NS(uint32_t rnr)
238{
239 ARM_MPU_ClrRegionEx(MPU_NS, rnr);
240}
241#endif
242
243/** Configure the given MPU region of the given MPU.
244* \param mpu Pointer to MPU to be used.
245* \param rnr Region number to be configured.
246* \param rbar Value for RBAR register.
247* \param rlar Value for RLAR register.
248*/
249__STATIC_INLINE void ARM_MPU_SetRegionEx(MPU_Type* mpu, uint32_t rnr, uint32_t rbar, uint32_t rlar)
250{
251 mpu->RNR = rnr;
252 mpu->RBAR = rbar;
253 mpu->RLAR = rlar;
254}
255
256/** Configure the given MPU region.
257* \param rnr Region number to be configured.
258* \param rbar Value for RBAR register.
259* \param rlar Value for RLAR register.
260*/
261__STATIC_INLINE void ARM_MPU_SetRegion(uint32_t rnr, uint32_t rbar, uint32_t rlar)
262{
263 ARM_MPU_SetRegionEx(MPU, rnr, rbar, rlar);
264}
265
266#ifdef MPU_NS
267/** Configure the given Non-secure MPU region.
268* \param rnr Region number to be configured.
269* \param rbar Value for RBAR register.
270* \param rlar Value for RLAR register.
271*/
272__STATIC_INLINE void ARM_MPU_SetRegion_NS(uint32_t rnr, uint32_t rbar, uint32_t rlar)
273{
274 ARM_MPU_SetRegionEx(MPU_NS, rnr, rbar, rlar);
275}
276#endif
277
278/** Memcopy with strictly ordered memory access, e.g. for register targets.
279* \param dst Destination data is copied to.
280* \param src Source data is copied from.
281* \param len Amount of data words to be copied.
282*/
283__STATIC_INLINE void ARM_MPU_OrderedMemcpy(volatile uint32_t* dst, const uint32_t* __RESTRICT src, uint32_t len)
284{
285 uint32_t i;
286 for (i = 0U; i < len; ++i)
287 {
288 dst[i] = src[i];
289 }
290}
291
292/** Load the given number of MPU regions from a table to the given MPU.
293* \param mpu Pointer to the MPU registers to be used.
294* \param rnr First region number to be configured.
295* \param table Pointer to the MPU configuration table.
296* \param cnt Amount of regions to be configured.
297*/
298__STATIC_INLINE void ARM_MPU_LoadEx(MPU_Type* mpu, uint32_t rnr, ARM_MPU_Region_t const* table, uint32_t cnt)
299{
300 const uint32_t rowWordSize = sizeof(ARM_MPU_Region_t)/4U;
301 if (cnt == 1U) {
302 mpu->RNR = rnr;
303 ARM_MPU_OrderedMemcpy(&(mpu->RBAR), &(table->RBAR), rowWordSize);
304 } else {
305 uint32_t rnrBase = rnr & ~(MPU_TYPE_RALIASES-1U);
306 uint32_t rnrOffset = rnr % MPU_TYPE_RALIASES;
307
308 mpu->RNR = rnrBase;
309 while ((rnrOffset + cnt) > MPU_TYPE_RALIASES) {
310 uint32_t c = MPU_TYPE_RALIASES - rnrOffset;
311 ARM_MPU_OrderedMemcpy(&(mpu->RBAR)+(rnrOffset*2U), &(table->RBAR), c*rowWordSize);
312 table += c;
313 cnt -= c;
314 rnrOffset = 0U;
315 rnrBase += MPU_TYPE_RALIASES;
316 mpu->RNR = rnrBase;
317 }
318
319 ARM_MPU_OrderedMemcpy(&(mpu->RBAR)+(rnrOffset*2U), &(table->RBAR), cnt*rowWordSize);
320 }
321}
322
323/** Load the given number of MPU regions from a table.
324* \param rnr First region number to be configured.
325* \param table Pointer to the MPU configuration table.
326* \param cnt Amount of regions to be configured.
327*/
328__STATIC_INLINE void ARM_MPU_Load(uint32_t rnr, ARM_MPU_Region_t const* table, uint32_t cnt)
329{
330 ARM_MPU_LoadEx(MPU, rnr, table, cnt);
331}
332
333#ifdef MPU_NS
334/** Load the given number of MPU regions from a table to the Non-secure MPU.
335* \param rnr First region number to be configured.
336* \param table Pointer to the MPU configuration table.
337* \param cnt Amount of regions to be configured.
338*/
339__STATIC_INLINE void ARM_MPU_Load_NS(uint32_t rnr, ARM_MPU_Region_t const* table, uint32_t cnt)
340{
341 ARM_MPU_LoadEx(MPU_NS, rnr, table, cnt);
342}
343#endif
344
345#endif
346