blob: 3fda2ef85367a00363c09a290eb2eea80b4aefda [file] [log] [blame]
Dan Handley9df48042015-03-19 18:58:55 +00001/*
2 * Copyright (c) 2015, ARM Limited and Contributors. All rights reserved.
3 *
4 * Redistribution and use in source and binary forms, with or without
5 * modification, are permitted provided that the following conditions are met:
6 *
7 * Redistributions of source code must retain the above copyright notice, this
8 * list of conditions and the following disclaimer.
9 *
10 * Redistributions in binary form must reproduce the above copyright notice,
11 * this list of conditions and the following disclaimer in the documentation
12 * and/or other materials provided with the distribution.
13 *
14 * Neither the name of ARM nor the names of its contributors may be used
15 * to endorse or promote products derived from this software without specific
16 * prior written permission.
17 *
18 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
19 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
20 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
21 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE
22 * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
23 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
24 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
25 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
26 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
27 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
28 * POSSIBILITY OF SUCH DAMAGE.
29 */
30
31#include <arch.h>
32#include <arch_helpers.h>
33#include <arm_def.h>
34#include <arm_gic.h>
35#include <assert.h>
36#include <bl_common.h>
37#include <cci.h>
38#include <console.h>
39#include <debug.h>
40#include <mmio.h>
41#include <plat_arm.h>
42#include <platform.h>
43
44
45/*
46 * The next 3 constants identify the extents of the code, RO data region and the
47 * limit of the BL3-1 image. These addresses are used by the MMU setup code and
48 * therefore they must be page-aligned. It is the responsibility of the linker
49 * script to ensure that __RO_START__, __RO_END__ & __BL31_END__ linker symbols
50 * refer to page-aligned addresses.
51 */
52#define BL31_RO_BASE (unsigned long)(&__RO_START__)
53#define BL31_RO_LIMIT (unsigned long)(&__RO_END__)
54#define BL31_END (unsigned long)(&__BL31_END__)
55
56#if USE_COHERENT_MEM
57/*
58 * The next 2 constants identify the extents of the coherent memory region.
59 * These addresses are used by the MMU setup code and therefore they must be
60 * page-aligned. It is the responsibility of the linker script to ensure that
61 * __COHERENT_RAM_START__ and __COHERENT_RAM_END__ linker symbols
62 * refer to page-aligned addresses.
63 */
64#define BL31_COHERENT_RAM_BASE (unsigned long)(&__COHERENT_RAM_START__)
65#define BL31_COHERENT_RAM_LIMIT (unsigned long)(&__COHERENT_RAM_END__)
66#endif
67
68/*
69 * Placeholder variables for copying the arguments that have been passed to
70 * BL3-1 from BL2.
71 */
72static entry_point_info_t bl32_image_ep_info;
73static entry_point_info_t bl33_image_ep_info;
74
75
76/* Weak definitions may be overridden in specific ARM standard platform */
77#pragma weak bl31_early_platform_setup
78#pragma weak bl31_platform_setup
79#pragma weak bl31_plat_arch_setup
80#pragma weak bl31_plat_get_next_image_ep_info
81#pragma weak plat_get_syscnt_freq
82
83
84/*******************************************************************************
85 * Return a pointer to the 'entry_point_info' structure of the next image for the
86 * security state specified. BL3-3 corresponds to the non-secure image type
87 * while BL3-2 corresponds to the secure image type. A NULL pointer is returned
88 * if the image does not exist.
89 ******************************************************************************/
90entry_point_info_t *bl31_plat_get_next_image_ep_info(uint32_t type)
91{
92 entry_point_info_t *next_image_info;
93
94 assert(sec_state_is_valid(type));
95 next_image_info = (type == NON_SECURE)
96 ? &bl33_image_ep_info : &bl32_image_ep_info;
97 /*
98 * None of the images on the ARM development platforms can have 0x0
99 * as the entrypoint
100 */
101 if (next_image_info->pc)
102 return next_image_info;
103 else
104 return NULL;
105}
106
107/*******************************************************************************
108 * Perform any BL3-1 early platform setup common to ARM standard platforms.
109 * Here is an opportunity to copy parameters passed by the calling EL (S-EL1
110 * in BL2 & S-EL3 in BL1) before they are lost (potentially). This needs to be
111 * done before the MMU is initialized so that the memory layout can be used
112 * while creating page tables. BL2 has flushed this information to memory, so
113 * we are guaranteed to pick up good data.
114 ******************************************************************************/
115void arm_bl31_early_platform_setup(bl31_params_t *from_bl2,
116 void *plat_params_from_bl2)
117{
118 /* Initialize the console to provide early debug support */
119 console_init(PLAT_ARM_BOOT_UART_BASE, PLAT_ARM_BOOT_UART_CLK_IN_HZ,
120 ARM_CONSOLE_BAUDRATE);
121
122#if RESET_TO_BL31
123 /* There are no parameters from BL2 if BL3-1 is a reset vector */
124 assert(from_bl2 == NULL);
125 assert(plat_params_from_bl2 == NULL);
126
127 /* Populate entry point information for BL3-2 and BL3-3 */
128 SET_PARAM_HEAD(&bl32_image_ep_info,
129 PARAM_EP,
130 VERSION_1,
131 0);
132 SET_SECURITY_STATE(bl32_image_ep_info.h.attr, SECURE);
133 bl32_image_ep_info.pc = BL32_BASE;
134 bl32_image_ep_info.spsr = arm_get_spsr_for_bl32_entry();
135
136 SET_PARAM_HEAD(&bl33_image_ep_info,
137 PARAM_EP,
138 VERSION_1,
139 0);
140 /*
141 * Tell BL3-1 where the non-trusted software image
142 * is located and the entry state information
143 */
144 bl33_image_ep_info.pc = plat_get_ns_image_entrypoint();
145 bl33_image_ep_info.spsr = arm_get_spsr_for_bl33_entry();
146 SET_SECURITY_STATE(bl33_image_ep_info.h.attr, NON_SECURE);
147
148#else
149 /*
150 * Check params passed from BL2 should not be NULL,
151 */
152 assert(from_bl2 != NULL);
153 assert(from_bl2->h.type == PARAM_BL31);
154 assert(from_bl2->h.version >= VERSION_1);
155 /*
156 * In debug builds, we pass a special value in 'plat_params_from_bl2'
157 * to verify platform parameters from BL2 to BL3-1.
158 * In release builds, it's not used.
159 */
160 assert(((unsigned long long)plat_params_from_bl2) ==
161 ARM_BL31_PLAT_PARAM_VAL);
162
163 /*
164 * Copy BL3-2 and BL3-3 entry point information.
165 * They are stored in Secure RAM, in BL2's address space.
166 */
167 bl32_image_ep_info = *from_bl2->bl32_ep_info;
168 bl33_image_ep_info = *from_bl2->bl33_ep_info;
169#endif
170}
171
172void bl31_early_platform_setup(bl31_params_t *from_bl2,
173 void *plat_params_from_bl2)
174{
175 arm_bl31_early_platform_setup(from_bl2, plat_params_from_bl2);
176
177 /*
178 * Initialize CCI for this cluster during cold boot.
179 * No need for locks as no other CPU is active.
180 */
181 arm_cci_init();
Sandrine Bailleuxda797f62015-05-14 14:13:05 +0100182
Dan Handley9df48042015-03-19 18:58:55 +0000183 /*
Sandrine Bailleuxda797f62015-05-14 14:13:05 +0100184 * Enable CCI coherency for the primary CPU's cluster.
185 * Earlier bootloader stages might already do this (e.g. Trusted
186 * Firmware's BL1 does it) but we can't assume so. There is no harm in
187 * executing this code twice anyway.
Dan Handley9df48042015-03-19 18:58:55 +0000188 * Platform specific PSCI code will enable coherency for other
189 * clusters.
190 */
191 cci_enable_snoop_dvm_reqs(MPIDR_AFFLVL1_VAL(read_mpidr()));
Dan Handley9df48042015-03-19 18:58:55 +0000192}
193
194/*******************************************************************************
195 * Perform any BL3-1 platform setup common to ARM standard platforms
196 ******************************************************************************/
197void arm_bl31_platform_setup(void)
198{
199 unsigned int reg_val;
200
201 /* Initialize the gic cpu and distributor interfaces */
202 plat_arm_gic_init();
203 arm_gic_setup();
204
205#if RESET_TO_BL31
206 /*
207 * Do initial security configuration to allow DRAM/device access
208 * (if earlier BL has not already done so).
209 */
210 plat_arm_security_setup();
211
212#endif /* RESET_TO_BL31 */
213
214 /* Enable and initialize the System level generic timer */
215 mmio_write_32(ARM_SYS_CNTCTL_BASE + CNTCR_OFF,
216 CNTCR_FCREQ(0) | CNTCR_EN);
217
218 /* Allow access to the System counter timer module */
219 reg_val = (1 << CNTACR_RPCT_SHIFT) | (1 << CNTACR_RVCT_SHIFT);
220 reg_val |= (1 << CNTACR_RFRQ_SHIFT) | (1 << CNTACR_RVOFF_SHIFT);
221 reg_val |= (1 << CNTACR_RWVT_SHIFT) | (1 << CNTACR_RWPT_SHIFT);
222 mmio_write_32(ARM_SYS_TIMCTL_BASE + CNTACR_BASE(1), reg_val);
223
224 reg_val = (1 << CNTNSAR_NS_SHIFT(1));
225 mmio_write_32(ARM_SYS_TIMCTL_BASE + CNTNSAR, reg_val);
226
227 /* Initialize power controller before setting up topology */
228 plat_arm_pwrc_setup();
Dan Handley9df48042015-03-19 18:58:55 +0000229}
230
231void bl31_platform_setup(void)
232{
233 arm_bl31_platform_setup();
234}
235
236/*******************************************************************************
237 * Perform the very early platform specific architectural setup here. At the
238 * moment this is only intializes the mmu in a quick and dirty way.
239 ******************************************************************************/
240void arm_bl31_plat_arch_setup(void)
241{
242 arm_configure_mmu_el3(BL31_RO_BASE,
243 (BL31_END - BL31_RO_BASE),
244 BL31_RO_BASE,
245 BL31_RO_LIMIT
246#if USE_COHERENT_MEM
247 , BL31_COHERENT_RAM_BASE,
248 BL31_COHERENT_RAM_LIMIT
249#endif
250 );
251}
252
253void bl31_plat_arch_setup(void)
254{
255 arm_bl31_plat_arch_setup();
256}
257
258uint64_t plat_get_syscnt_freq(void)
259{
260 uint64_t counter_base_frequency;
261
262 /* Read the frequency from Frequency modes table */
263 counter_base_frequency = mmio_read_32(ARM_SYS_CNTCTL_BASE + CNTFID_OFF);
264
265 /* The first entry of the frequency modes table must not be 0 */
266 if (counter_base_frequency == 0)
267 panic();
268
269 return counter_base_frequency;
270}