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wdenk2262cfe2002-11-18 00:14:45 +00001/*
Graeme Russdbf71152011-04-13 19:43:26 +10002 * (C) Copyright 2008-2011
3 * Graeme Russ, <graeme.russ@gmail.com>
wdenk8bde7f72003-06-27 21:31:46 +00004 *
wdenk2262cfe2002-11-18 00:14:45 +00005 * (C) Copyright 2002
Albert ARIBAUDfa82f872011-08-04 18:45:45 +02006 * Daniel Engström, Omicron Ceti AB, <daniel@omicron.se>
Graeme Russdbf71152011-04-13 19:43:26 +10007 *
8 * (C) Copyright 2002
9 * Wolfgang Denk, DENX Software Engineering, <wd@denx.de>
wdenk8bde7f72003-06-27 21:31:46 +000010 *
wdenk2262cfe2002-11-18 00:14:45 +000011 * (C) Copyright 2002
12 * Sysgo Real-Time Solutions, GmbH <www.elinos.com>
13 * Marius Groeger <mgroeger@sysgo.de>
14 *
15 * See file CREDITS for list of people who contributed to this
16 * project.
17 *
18 * This program is free software; you can redistribute it and/or
19 * modify it under the terms of the GNU General Public License as
20 * published by the Free Software Foundation; either version 2 of
21 * the License, or (at your option) any later version.
22 *
23 * This program is distributed in the hope that it will be useful,
24 * but WITHOUT ANY WARRANTY; without even the implied warranty of
25 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
26 * GNU General Public License for more details.
27 *
28 * You should have received a copy of the GNU General Public License
29 * along with this program; if not, write to the Free Software
30 * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
31 * MA 02111-1307 USA
32 */
33
34#include <common.h>
Simon Glassf697d522013-02-28 19:26:15 +000035#include <fdtdec.h>
wdenk2262cfe2002-11-18 00:14:45 +000036#include <watchdog.h>
Jean-Christophe PLAGNIOL-VILLARD52cb4d42009-05-16 12:14:54 +020037#include <stdio_dev.h>
Graeme Russfea25722011-04-13 19:43:28 +100038#include <asm/u-boot-x86.h>
Graeme Russa1d57b72011-12-23 21:14:22 +110039#include <asm/relocate.h>
Graeme Russ8d616252012-11-27 15:38:36 +000040#include <asm/processor.h>
wdenk2262cfe2002-11-18 00:14:45 +000041
Graeme Russd47ab0e2011-12-23 16:51:29 +110042#include <asm/init_helpers.h>
43#include <asm/init_wrappers.h>
wdenk2262cfe2002-11-18 00:14:45 +000044
wdenk2262cfe2002-11-18 00:14:45 +000045/*
46 * Breath some life into the board...
47 *
Graeme Russa1d57b72011-12-23 21:14:22 +110048 * Getting the board up and running is a three-stage process:
49 * 1) Execute from Flash, SDRAM Uninitialised
50 * At this point, there is a limited amount of non-SDRAM memory
51 * (typically the CPU cache, but can also be SRAM or even a buffer of
52 * of some peripheral). This limited memory is used to hold:
53 * - The initial copy of the Global Data Structure
54 * - A temporary stack
55 * - A temporary x86 Global Descriptor Table
56 * - The pre-console buffer (if enabled)
wdenk2262cfe2002-11-18 00:14:45 +000057 *
Graeme Russa1d57b72011-12-23 21:14:22 +110058 * The following is performed during this phase of execution:
59 * - Core low-level CPU initialisation
60 * - Console initialisation
61 * - SDRAM initialisation
62 *
63 * 2) Execute from Flash, SDRAM Initialised
64 * At this point we copy Global Data from the initial non-SDRAM
65 * memory and set up the permanent stack in SDRAM. The CPU cache is no
66 * longer being used as temporary memory, so we can now fully enable
67 * it.
68 *
69 * The following is performed during this phase of execution:
70 * - Create final stack in SDRAM
71 * - Copy Global Data from temporary memory to SDRAM
72 * - Enabling of CPU cache(s),
73 * - Copying of U-Boot code and data from Flash to RAM
74 * - Clearing of the BSS
75 * - ELF relocation adjustments
76 *
77 * 3) Execute from SDRAM
78 * The following is performed during this phase of execution:
79 * - All remaining initialisation
wdenk2262cfe2002-11-18 00:14:45 +000080 */
81
82/*
Graeme Russa1d57b72011-12-23 21:14:22 +110083 * The requirements for any new initalization function is simple: it is
84 * a function with no parameters which returns an integer return code,
85 * where 0 means "continue" and != 0 means "fatal error, hang the system"
wdenk2262cfe2002-11-18 00:14:45 +000086 */
87typedef int (init_fnc_t) (void);
88
Graeme Russa1d57b72011-12-23 21:14:22 +110089/*
90 * init_sequence_f is the list of init functions which are run when U-Boot
91 * is executing from Flash with a limited 'C' environment. The following
92 * limitations must be considered when implementing an '_f' function:
93 * - 'static' variables are read-only
94 * - Global Data (gd->xxx) is read/write
95 * - Stack space is limited
96 *
97 * The '_f' sequence must, as a minimum, initialise SDRAM. It _should_
98 * also initialise the console (to provide early debug output)
99 */
Graeme Russe4f78d72011-02-12 15:12:10 +1100100init_fnc_t *init_sequence_f[] = {
101 cpu_init_f,
102 board_early_init_f,
Gabe Blackb208c7f2012-11-03 11:41:30 +0000103#ifdef CONFIG_OF_CONTROL
104 find_fdt,
105 fdtdec_check_fdt,
106#endif
Graeme Russe4f78d72011-02-12 15:12:10 +1100107 env_init,
Graeme Russd47ab0e2011-12-23 16:51:29 +1100108 init_baudrate_f,
Graeme Russe4f78d72011-02-12 15:12:10 +1100109 serial_init,
110 console_init_f,
Gabe Blackb208c7f2012-11-03 11:41:30 +0000111#ifdef CONFIG_OF_CONTROL
112 prepare_fdt,
113#endif
Graeme Russe4f78d72011-02-12 15:12:10 +1100114 dram_init_f,
115 calculate_relocation_address,
Graeme Russe4f78d72011-02-12 15:12:10 +1100116
117 NULL,
118};
119
Graeme Russa1d57b72011-12-23 21:14:22 +1100120/*
121 * init_sequence_f_r is the list of init functions which are run when
122 * U-Boot is executing from Flash with a semi-limited 'C' environment.
123 * The following limitations must be considered when implementing an
124 * '_f_r' function:
125 * - 'static' variables are read-only
126 * - Global Data (gd->xxx) is read/write
127 *
128 * The '_f_r' sequence must, as a minimum, copy U-Boot to RAM (if
129 * supported). It _should_, if possible, copy global data to RAM and
130 * initialise the CPU caches (to speed up the relocation process)
131 */
132init_fnc_t *init_sequence_f_r[] = {
Graeme Russa1d57b72011-12-23 21:14:22 +1100133 init_cache_f_r,
134 copy_uboot_to_ram,
Simon Glassf697d522013-02-28 19:26:15 +0000135 copy_fdt_to_ram,
Graeme Russa1d57b72011-12-23 21:14:22 +1100136 clear_bss,
137 do_elf_reloc_fixups,
138
139 NULL,
140};
141
142/*
143 * init_sequence_r is the list of init functions which are run when U-Boot
144 * is executing from RAM with a full 'C' environment. There are no longer
145 * any limitations which must be considered when implementing an '_r'
146 * function, (i.e.'static' variables are read/write)
147 *
148 * If not already done, the '_r' sequence must copy global data to RAM and
149 * (should) initialise the CPU caches.
150 */
Graeme Russe4f78d72011-02-12 15:12:10 +1100151init_fnc_t *init_sequence_r[] = {
Graeme Russa1d57b72011-12-23 21:14:22 +1100152 set_reloc_flag_r,
Graeme Russd47ab0e2011-12-23 16:51:29 +1100153 init_bd_struct_r,
154 mem_malloc_init_r,
155 cpu_init_r,
156 board_early_init_r,
157 dram_init,
158 interrupt_init,
wdenk8bde7f72003-06-27 21:31:46 +0000159 timer_init,
wdenk2262cfe2002-11-18 00:14:45 +0000160 display_banner,
161 display_dram_config,
Graeme Russd47ab0e2011-12-23 16:51:29 +1100162 serial_initialize_r,
Graeme Russd47ab0e2011-12-23 16:51:29 +1100163#ifndef CONFIG_SYS_NO_FLASH
164 flash_init_r,
165#endif
Gabe Black83133152012-11-03 11:41:23 +0000166#ifdef CONFIG_SPI
167 init_func_spi;
168#endif
Graeme Russd47ab0e2011-12-23 16:51:29 +1100169 env_relocate_r,
Graeme Russd47ab0e2011-12-23 16:51:29 +1100170#ifdef CONFIG_PCI
171 pci_init_r,
172#endif
173 stdio_init,
174 jumptable_init_r,
175 console_init_r,
176#ifdef CONFIG_MISC_INIT_R
177 misc_init_r,
178#endif
Graeme Russd47ab0e2011-12-23 16:51:29 +1100179#if defined(CONFIG_CMD_KGDB)
180 kgdb_init_r,
181#endif
182 enable_interrupts_r,
183#ifdef CONFIG_STATUS_LED
184 status_led_set_r,
185#endif
186 set_load_addr_r,
Graeme Russd47ab0e2011-12-23 16:51:29 +1100187#if defined(CONFIG_CMD_IDE)
188 ide_init_r,
189#endif
190#if defined(CONFIG_CMD_SCSI)
191 scsi_init_r,
192#endif
193#if defined(CONFIG_CMD_DOC)
194 doc_init_r,
195#endif
196#ifdef CONFIG_BITBANGMII
197 bb_miiphy_init_r,
198#endif
199#if defined(CONFIG_CMD_NET)
200 eth_initialize_r,
201#ifdef CONFIG_RESET_PHY_R
202 reset_phy_r,
203#endif
204#endif
205#ifdef CONFIG_LAST_STAGE_INIT
206 last_stage_init,
207#endif
wdenk2262cfe2002-11-18 00:14:45 +0000208 NULL,
209};
210
Graeme Russd47ab0e2011-12-23 16:51:29 +1100211static void do_init_loop(init_fnc_t **init_fnc_ptr)
212{
213 for (; *init_fnc_ptr; ++init_fnc_ptr) {
214 WATCHDOG_RESET();
215 if ((*init_fnc_ptr)() != 0)
216 hang();
217 }
218}
219
Graeme Russ96cd6642011-02-12 15:11:54 +1100220void board_init_f(ulong boot_flags)
Graeme Russ1c409bc2009-11-24 20:04:21 +1100221{
Simon Glassf697d522013-02-28 19:26:15 +0000222 gd->fdt_blob = gd->arch.new_fdt = NULL;
Graeme Russdbf71152011-04-13 19:43:26 +1000223 gd->flags = boot_flags;
224
Graeme Russd47ab0e2011-12-23 16:51:29 +1100225 do_init_loop(init_sequence_f);
Graeme Russf2ff75c2010-10-07 20:03:33 +1100226
Graeme Russf48dd6f2012-01-01 15:06:39 +1100227 /*
Graeme Russa1d57b72011-12-23 21:14:22 +1100228 * SDRAM and console are now initialised. The final stack can now
229 * be setup in SDRAM. Code execution will continue in Flash, but
230 * with the stack in SDRAM and Global Data in temporary memory
Graeme Russf48dd6f2012-01-01 15:06:39 +1100231 * (CPU cache)
232 */
233 board_init_f_r_trampoline(gd->start_addr_sp);
Graeme Russ161b3582010-10-07 20:03:29 +1100234
Graeme Russf48dd6f2012-01-01 15:06:39 +1100235 /* NOTREACHED - board_init_f_r_trampoline() does not return */
236 while (1)
237 ;
238}
239
240void board_init_f_r(void)
241{
Graeme Russa1d57b72011-12-23 21:14:22 +1100242 do_init_loop(init_sequence_f_r);
Graeme Russ98f1fa92011-12-27 22:46:42 +1100243
Graeme Russa1d57b72011-12-23 21:14:22 +1100244 /*
245 * U-Boot has been copied into SDRAM, the BSS has been cleared etc.
246 * Transfer execution from Flash to RAM by calculating the address
247 * of the in-RAM copy of board_init_r() and calling it
248 */
249 (board_init_r + gd->reloc_off)(gd, gd->relocaddr);
Graeme Russ98f1fa92011-12-27 22:46:42 +1100250
Graeme Russa1d57b72011-12-23 21:14:22 +1100251 /* NOTREACHED - board_init_r() does not return */
Graeme Russ83088af2011-11-08 02:33:15 +0000252 while (1)
253 ;
Graeme Russ1c409bc2009-11-24 20:04:21 +1100254}
255
Graeme Russ2fb1bc42010-04-24 00:05:44 +1000256void board_init_r(gd_t *id, ulong dest_addr)
wdenk2262cfe2002-11-18 00:14:45 +0000257{
Graeme Russd47ab0e2011-12-23 16:51:29 +1100258 do_init_loop(init_sequence_r);
wdenk8bde7f72003-06-27 21:31:46 +0000259
wdenk2262cfe2002-11-18 00:14:45 +0000260 /* main_loop() can return to retry autoboot, if so just run it again. */
Graeme Russ83088af2011-11-08 02:33:15 +0000261 for (;;)
wdenk7a8e9bed2003-05-31 18:35:21 +0000262 main_loop();
wdenk2262cfe2002-11-18 00:14:45 +0000263
264 /* NOTREACHED - no way out of command loop except booting */
265}
266
Graeme Russ83088af2011-11-08 02:33:15 +0000267void hang(void)
wdenk2262cfe2002-11-18 00:14:45 +0000268{
Graeme Russ83088af2011-11-08 02:33:15 +0000269 puts("### ERROR ### Please RESET the board ###\n");
270 for (;;)
271 ;
wdenk2262cfe2002-11-18 00:14:45 +0000272}