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Varun Wadekarb316e242015-05-19 16:48:04 +05301/*
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 <assert.h>
34#include <bl31.h>
35#include <bl_common.h>
36#include <console.h>
37#include <cortex_a57.h>
38#include <cortex_a53.h>
39#include <debug.h>
Varun Wadekarbaf903e2015-09-22 15:00:06 +053040#include <denver.h>
Varun Wadekar7a269e22015-06-10 14:04:32 +053041#include <errno.h>
Varun Wadekarb316e242015-05-19 16:48:04 +053042#include <memctrl.h>
43#include <mmio.h>
44#include <platform.h>
45#include <platform_def.h>
46#include <stddef.h>
47#include <tegra_private.h>
48
49/*******************************************************************************
50 * Declarations of linker defined symbols which will help us find the layout
51 * of trusted SRAM
52 ******************************************************************************/
53extern unsigned long __RO_START__;
54extern unsigned long __RO_END__;
55extern unsigned long __BL31_END__;
56
Varun Wadekarb316e242015-05-19 16:48:04 +053057extern uint64_t tegra_bl31_phys_base;
58
59/*
60 * The next 3 constants identify the extents of the code, RO data region and the
61 * limit of the BL3-1 image. These addresses are used by the MMU setup code and
62 * therefore they must be page-aligned. It is the responsibility of the linker
63 * script to ensure that __RO_START__, __RO_END__ & __BL31_END__ linker symbols
64 * refer to page-aligned addresses.
65 */
66#define BL31_RO_BASE (unsigned long)(&__RO_START__)
67#define BL31_RO_LIMIT (unsigned long)(&__RO_END__)
68#define BL31_END (unsigned long)(&__BL31_END__)
69
Varun Wadekar52a15982015-06-05 12:57:27 +053070static entry_point_info_t bl33_image_ep_info, bl32_image_ep_info;
Varun Wadekarb316e242015-05-19 16:48:04 +053071static plat_params_from_bl2_t plat_bl31_params_from_bl2 = {
Varun Wadekarc8bfe2e2015-07-31 10:03:01 +053072 .tzdram_size = (uint64_t)TZDRAM_SIZE
Varun Wadekarb316e242015-05-19 16:48:04 +053073};
74
75/*******************************************************************************
76 * This variable holds the non-secure image entry address
77 ******************************************************************************/
78extern uint64_t ns_image_entrypoint;
79
80/*******************************************************************************
81 * Return a pointer to the 'entry_point_info' structure of the next image for
82 * security state specified. BL33 corresponds to the non-secure image type
83 * while BL32 corresponds to the secure image type.
84 ******************************************************************************/
85entry_point_info_t *bl31_plat_get_next_image_ep_info(uint32_t type)
86{
87 if (type == NON_SECURE)
88 return &bl33_image_ep_info;
89
Varun Wadekar52a15982015-06-05 12:57:27 +053090 if (type == SECURE)
91 return &bl32_image_ep_info;
92
Varun Wadekarb316e242015-05-19 16:48:04 +053093 return NULL;
94}
95
96/*******************************************************************************
97 * Return a pointer to the 'plat_params_from_bl2_t' structure. The BL2 image
98 * passes this platform specific information.
99 ******************************************************************************/
100plat_params_from_bl2_t *bl31_get_plat_params(void)
101{
102 return &plat_bl31_params_from_bl2;
103}
104
105/*******************************************************************************
106 * Perform any BL31 specific platform actions. Populate the BL33 and BL32 image
107 * info.
108 ******************************************************************************/
109void bl31_early_platform_setup(bl31_params_t *from_bl2,
110 void *plat_params_from_bl2)
111{
112 plat_params_from_bl2_t *plat_params =
113 (plat_params_from_bl2_t *)plat_params_from_bl2;
Varun Wadekarbaf903e2015-09-22 15:00:06 +0530114#if DEBUG
115 int impl = (read_midr() >> MIDR_IMPL_SHIFT) & MIDR_IMPL_MASK;
116#endif
Varun Wadekarb316e242015-05-19 16:48:04 +0530117 /*
118 * Configure the UART port to be used as the console
119 */
120 console_init(TEGRA_BOOT_UART_BASE, TEGRA_BOOT_UART_CLK_IN_HZ,
121 TEGRA_CONSOLE_BAUDRATE);
122
123 /* Initialise crash console */
124 plat_crash_console_init();
125
Varun Wadekarbaf903e2015-09-22 15:00:06 +0530126 INFO("BL3-1: Boot CPU: %s Processor [%lx]\n", (impl == DENVER_IMPL) ?
127 "Denver" : "ARM", read_mpidr());
128
Varun Wadekarb316e242015-05-19 16:48:04 +0530129 /*
Varun Wadekar52a15982015-06-05 12:57:27 +0530130 * Copy BL3-3, BL3-2 entry point information.
Varun Wadekarb316e242015-05-19 16:48:04 +0530131 * They are stored in Secure RAM, in BL2's address space.
132 */
Varun Wadekarbaf903e2015-09-22 15:00:06 +0530133 if (from_bl2->bl33_ep_info)
134 bl33_image_ep_info = *from_bl2->bl33_ep_info;
135
136 if (from_bl2->bl32_ep_info)
137 bl32_image_ep_info = *from_bl2->bl32_ep_info;
Varun Wadekarb316e242015-05-19 16:48:04 +0530138
139 /*
Varun Wadekarc8bfe2e2015-07-31 10:03:01 +0530140 * Parse platform specific parameters - TZDRAM aperture size
Varun Wadekarb316e242015-05-19 16:48:04 +0530141 */
Varun Wadekarc8bfe2e2015-07-31 10:03:01 +0530142 if (plat_params)
Varun Wadekarb316e242015-05-19 16:48:04 +0530143 plat_bl31_params_from_bl2.tzdram_size = plat_params->tzdram_size;
Varun Wadekarb316e242015-05-19 16:48:04 +0530144}
145
146/*******************************************************************************
147 * Initialize the gic, configure the SCR.
148 ******************************************************************************/
149void bl31_platform_setup(void)
150{
151 uint32_t tmp_reg;
152
153 /*
Varun Wadekarbc74fec2015-07-16 15:47:03 +0530154 * Initialize delay timer
155 */
156 tegra_delay_timer_init();
157
158 /*
Varun Wadekarb316e242015-05-19 16:48:04 +0530159 * Setup secondary CPU POR infrastructure.
160 */
161 plat_secondary_setup();
162
163 /*
164 * Initial Memory Controller configuration.
165 */
166 tegra_memctrl_setup();
167
168 /*
169 * Do initial security configuration to allow DRAM/device access.
170 */
171 tegra_memctrl_tzdram_setup(tegra_bl31_phys_base,
172 plat_bl31_params_from_bl2.tzdram_size);
173
174 /* Set the next EL to be AArch64 */
175 tmp_reg = SCR_RES1_BITS | SCR_RW_BIT;
176 write_scr(tmp_reg);
177
178 /* Initialize the gic cpu and distributor interfaces */
179 tegra_gic_setup();
Varun Wadekarbaf903e2015-09-22 15:00:06 +0530180
181 INFO("BL3-1: Tegra platform setup complete\n");
Varun Wadekarb316e242015-05-19 16:48:04 +0530182}
183
184/*******************************************************************************
185 * Perform the very early platform specific architectural setup here. At the
186 * moment this only intializes the mmu in a quick and dirty way.
187 ******************************************************************************/
188void bl31_plat_arch_setup(void)
189{
190 unsigned long bl31_base_pa = tegra_bl31_phys_base;
191 unsigned long total_base = bl31_base_pa;
Varun Wadekare1eaf8e2015-08-11 14:20:14 +0530192 unsigned long total_size = BL32_BASE - BL31_RO_BASE;
Varun Wadekarb316e242015-05-19 16:48:04 +0530193 unsigned long ro_start = bl31_base_pa;
194 unsigned long ro_size = BL31_RO_LIMIT - BL31_RO_BASE;
Varun Wadekarb316e242015-05-19 16:48:04 +0530195 const mmap_region_t *plat_mmio_map = NULL;
Varun Wadekarb316e242015-05-19 16:48:04 +0530196#if USE_COHERENT_MEM
Varun Wadekar207cc732015-07-08 12:57:50 +0530197 unsigned long coh_start, coh_size;
Varun Wadekarb316e242015-05-19 16:48:04 +0530198#endif
199
200 /* add memory regions */
201 mmap_add_region(total_base, total_base,
202 total_size,
203 MT_MEMORY | MT_RW | MT_SECURE);
204 mmap_add_region(ro_start, ro_start,
205 ro_size,
206 MT_MEMORY | MT_RO | MT_SECURE);
Varun Wadekar207cc732015-07-08 12:57:50 +0530207
Varun Wadekarb316e242015-05-19 16:48:04 +0530208#if USE_COHERENT_MEM
Masahiro Yamada0fac5af2016-12-28 16:11:41 +0900209 coh_start = total_base + (BL_COHERENT_RAM_BASE - BL31_RO_BASE);
210 coh_size = BL_COHERENT_RAM_END - BL_COHERENT_RAM_BASE;
Varun Wadekar207cc732015-07-08 12:57:50 +0530211
Varun Wadekarb316e242015-05-19 16:48:04 +0530212 mmap_add_region(coh_start, coh_start,
213 coh_size,
214 MT_DEVICE | MT_RW | MT_SECURE);
215#endif
216
217 /* add MMIO space */
218 plat_mmio_map = plat_get_mmio_map();
219 if (plat_mmio_map)
220 mmap_add(plat_mmio_map);
221 else
222 WARN("MMIO map not available\n");
223
224 /* set up translation tables */
225 init_xlat_tables();
226
227 /* enable the MMU */
228 enable_mmu_el3(0);
Varun Wadekarbaf903e2015-09-22 15:00:06 +0530229
230 INFO("BL3-1: Tegra: MMU enabled\n");
Varun Wadekarb316e242015-05-19 16:48:04 +0530231}
Varun Wadekar7a269e22015-06-10 14:04:32 +0530232
233/*******************************************************************************
234 * Check if the given NS DRAM range is valid
235 ******************************************************************************/
236int bl31_check_ns_address(uint64_t base, uint64_t size_in_bytes)
237{
238 uint64_t end = base + size_in_bytes - 1;
239
240 /*
241 * Check if the NS DRAM address is valid
242 */
243 if ((base < TEGRA_DRAM_BASE) || (end > TEGRA_DRAM_END) ||
244 (base >= end)) {
245 ERROR("NS address is out-of-bounds!\n");
246 return -EFAULT;
247 }
248
249 /*
250 * TZDRAM aperture contains the BL31 and BL32 images, so we need
251 * to check if the NS DRAM range overlaps the TZDRAM aperture.
252 */
253 if ((base < TZDRAM_END) && (end > tegra_bl31_phys_base)) {
254 ERROR("NS address overlaps TZDRAM!\n");
255 return -ENOTSUP;
256 }
257
258 /* valid NS address */
259 return 0;
260}