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c609719b 1#
218ca724 2# (C) Copyright 2000 - 2008
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3# Wolfgang Denk, DENX Software Engineering, wd@denx.de.
4#
5# See file CREDITS for list of people who contributed to this
6# project.
7#
8# This program is free software; you can redistribute it and/or
9# modify it under the terms of the GNU General Public License as
10# published by the Free Software Foundation; either version 2 of
11# the License, or (at your option) any later version.
12#
13# This program is distributed in the hope that it will be useful,
14# but WITHOUT ANY WARRANTY; without even the implied warranty of
15# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16# GNU General Public License for more details.
17#
18# You should have received a copy of the GNU General Public License
19# along with this program; if not, write to the Free Software
20# Foundation, Inc., 59 Temple Place, Suite 330, Boston,
21# MA 02111-1307 USA
22#
23
24Summary:
25========
26
24ee89b9 27This directory contains the source code for U-Boot, a boot loader for
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28Embedded boards based on PowerPC, ARM, MIPS and several other
29processors, which can be installed in a boot ROM and used to
30initialize and test the hardware or to download and run application
31code.
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32
33The development of U-Boot is closely related to Linux: some parts of
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34the source code originate in the Linux source tree, we have some
35header files in common, and special provision has been made to
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36support booting of Linux images.
37
38Some attention has been paid to make this software easily
39configurable and extendable. For instance, all monitor commands are
40implemented with the same call interface, so that it's very easy to
41add new commands. Also, instead of permanently adding rarely used
42code (for instance hardware test utilities) to the monitor, you can
43load and run it dynamically.
44
45
46Status:
47=======
48
49In general, all boards for which a configuration option exists in the
24ee89b9 50Makefile have been tested to some extent and can be considered
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51"working". In fact, many of them are used in production systems.
52
24ee89b9 53In case of problems see the CHANGELOG and CREDITS files to find out
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54who contributed the specific port. The MAINTAINERS file lists board
55maintainers.
c609719b 56
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57
58Where to get help:
59==================
60
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61In case you have questions about, problems with or contributions for
62U-Boot you should send a message to the U-Boot mailing list at
63<u-boot-users@lists.sourceforge.net>. There is also an archive of
64previous traffic on the mailing list - please search the archive
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65before asking FAQ's. Please see
66http://lists.sourceforge.net/lists/listinfo/u-boot-users/
67
68
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69Where to get source code:
70=========================
71
72The U-Boot source code is maintained in the git repository at
73git://www.denx.de/git/u-boot.git ; you can browse it online at
74http://www.denx.de/cgi-bin/gitweb.cgi?p=u-boot.git;a=summary
75
76The "snapshot" links on this page allow you to download tarballs of
77any version you might be interested in. Ofifcial releases are also
78available for FTP download from the ftp://ftp.denx.de/pub/u-boot/
79directory.
80
d4ee711d 81Pre-built (and tested) images are available from
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82ftp://ftp.denx.de/pub/u-boot/images/
83
84
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85Where we come from:
86===================
87
88- start from 8xxrom sources
24ee89b9 89- create PPCBoot project (http://sourceforge.net/projects/ppcboot)
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90- clean up code
91- make it easier to add custom boards
92- make it possible to add other [PowerPC] CPUs
93- extend functions, especially:
94 * Provide extended interface to Linux boot loader
95 * S-Record download
96 * network boot
97 * PCMCIA / CompactFLash / ATA disk / SCSI ... boot
24ee89b9 98- create ARMBoot project (http://sourceforge.net/projects/armboot)
c609719b 99- add other CPU families (starting with ARM)
24ee89b9 100- create U-Boot project (http://sourceforge.net/projects/u-boot)
218ca724 101- current project page: see http://www.denx.de/wiki/UBoot
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102
103
104Names and Spelling:
105===================
106
107The "official" name of this project is "Das U-Boot". The spelling
108"U-Boot" shall be used in all written text (documentation, comments
109in source files etc.). Example:
110
111 This is the README file for the U-Boot project.
112
113File names etc. shall be based on the string "u-boot". Examples:
114
115 include/asm-ppc/u-boot.h
116
117 #include <asm/u-boot.h>
118
119Variable names, preprocessor constants etc. shall be either based on
120the string "u_boot" or on "U_BOOT". Example:
121
122 U_BOOT_VERSION u_boot_logo
123 IH_OS_U_BOOT u_boot_hush_start
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124
125
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126Versioning:
127===========
128
129U-Boot uses a 3 level version number containing a version, a
130sub-version, and a patchlevel: "U-Boot-2.34.5" means version "2",
131sub-version "34", and patchlevel "4".
132
133The patchlevel is used to indicate certain stages of development
134between released versions, i. e. officially released versions of
135U-Boot will always have a patchlevel of "0".
136
137
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138Directory Hierarchy:
139====================
140
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141- board Board dependent files
142- common Misc architecture independent functions
c609719b 143- cpu CPU specific files
983fda83 144 - 74xx_7xx Files specific to Freescale MPC74xx and 7xx CPUs
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145 - arm720t Files specific to ARM 720 CPUs
146 - arm920t Files specific to ARM 920 CPUs
a85f9f21 147 - at91rm9200 Files specific to Atmel AT91RM9200 CPU
983fda83 148 - imx Files specific to Freescale MC9328 i.MX CPUs
1d9f4105 149 - s3c24x0 Files specific to Samsung S3C24X0 CPUs
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150 - arm925t Files specific to ARM 925 CPUs
151 - arm926ejs Files specific to ARM 926 CPUs
8ed96046 152 - arm1136 Files specific to ARM 1136 CPUs
72a087e0 153 - at32ap Files specific to Atmel AVR32 AP CPUs
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154 - i386 Files specific to i386 CPUs
155 - ixp Files specific to Intel XScale IXP CPUs
b330990c 156 - leon2 Files specific to Gaisler LEON2 SPARC CPU
1e9a164e 157 - leon3 Files specific to Gaisler LEON3 SPARC CPU
983fda83 158 - mcf52x2 Files specific to Freescale ColdFire MCF52x2 CPUs
1552af70 159 - mcf5227x Files specific to Freescale ColdFire MCF5227x CPUs
8e585f02 160 - mcf532x Files specific to Freescale ColdFire MCF5329 CPUs
8ae158cd 161 - mcf5445x Files specific to Freescale ColdFire MCF5445x CPUs
57a12720 162 - mcf547x_8x Files specific to Freescale ColdFire MCF547x_8x CPUs
11dadd54 163 - mips Files specific to MIPS CPUs
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164 - mpc5xx Files specific to Freescale MPC5xx CPUs
165 - mpc5xxx Files specific to Freescale MPC5xxx CPUs
166 - mpc8xx Files specific to Freescale MPC8xx CPUs
167 - mpc8220 Files specific to Freescale MPC8220 CPUs
168 - mpc824x Files specific to Freescale MPC824x CPUs
169 - mpc8260 Files specific to Freescale MPC8260 CPUs
170 - mpc85xx Files specific to Freescale MPC85xx CPUs
11dadd54 171 - nios Files specific to Altera NIOS CPUs
5c952cf0 172 - nios2 Files specific to Altera Nios-II CPUs
0c8721a4 173 - ppc4xx Files specific to AMCC PowerPC 4xx CPUs
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174 - pxa Files specific to Intel XScale PXA CPUs
175 - s3c44b0 Files specific to Samsung S3C44B0 CPUs
176 - sa1100 Files specific to Intel StrongARM SA1100 CPUs
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177- disk Code for disk drive partition handling
178- doc Documentation (don't expect too much)
7152b1d0 179- drivers Commonly used device drivers
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180- dtt Digital Thermometer and Thermostat drivers
181- examples Example code for standalone applications, etc.
182- include Header Files
11dadd54 183- lib_arm Files generic to ARM architecture
7b64fef3 184- lib_avr32 Files generic to AVR32 architecture
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185- lib_generic Files generic to all architectures
186- lib_i386 Files generic to i386 architecture
187- lib_m68k Files generic to m68k architecture
188- lib_mips Files generic to MIPS architecture
189- lib_nios Files generic to NIOS architecture
190- lib_ppc Files generic to PowerPC architecture
c2f02da2 191- lib_sparc Files generic to SPARC architecture
218ca724 192- libfdt Library files to support flattened device trees
c609719b 193- net Networking code
c609719b 194- post Power On Self Test
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195- rtc Real Time Clock drivers
196- tools Tools to build S-Record or U-Boot images, etc.
197
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198Software Configuration:
199=======================
200
201Configuration is usually done using C preprocessor defines; the
202rationale behind that is to avoid dead code whenever possible.
203
204There are two classes of configuration variables:
205
206* Configuration _OPTIONS_:
207 These are selectable by the user and have names beginning with
208 "CONFIG_".
209
210* Configuration _SETTINGS_:
211 These depend on the hardware etc. and should not be meddled with if
212 you don't know what you're doing; they have names beginning with
213 "CFG_".
214
215Later we will add a configuration tool - probably similar to or even
216identical to what's used for the Linux kernel. Right now, we have to
217do the configuration by hand, which means creating some symbolic
218links and editing some configuration files. We use the TQM8xxL boards
219as an example here.
220
221
222Selection of Processor Architecture and Board Type:
223---------------------------------------------------
224
225For all supported boards there are ready-to-use default
226configurations available; just type "make <board_name>_config".
227
228Example: For a TQM823L module type:
229
230 cd u-boot
231 make TQM823L_config
232
233For the Cogent platform, you need to specify the cpu type as well;
234e.g. "make cogent_mpc8xx_config". And also configure the cogent
235directory according to the instructions in cogent/README.
236
237
238Configuration Options:
239----------------------
240
241Configuration depends on the combination of board and CPU type; all
242such information is kept in a configuration file
243"include/configs/<board_name>.h".
244
245Example: For a TQM823L module, all configuration settings are in
246"include/configs/TQM823L.h".
247
248
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249Many of the options are named exactly as the corresponding Linux
250kernel configuration options. The intention is to make it easier to
251build a config tool - later.
252
253
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254The following options need to be configured:
255
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256- CPU Type: Define exactly one, e.g. CONFIG_MPC85XX.
257
258- Board Type: Define exactly one, e.g. CONFIG_MPC8540ADS.
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259
260- CPU Daughterboard Type: (if CONFIG_ATSTK1000 is defined)
09ea0de0 261 Define exactly one, e.g. CONFIG_ATSTK1002
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262
263- CPU Module Type: (if CONFIG_COGENT is defined)
264 Define exactly one of
265 CONFIG_CMA286_60_OLD
266--- FIXME --- not tested yet:
267 CONFIG_CMA286_60, CONFIG_CMA286_21, CONFIG_CMA286_60P,
268 CONFIG_CMA287_23, CONFIG_CMA287_50
269
270- Motherboard Type: (if CONFIG_COGENT is defined)
271 Define exactly one of
272 CONFIG_CMA101, CONFIG_CMA102
273
274- Motherboard I/O Modules: (if CONFIG_COGENT is defined)
275 Define one or more of
276 CONFIG_CMA302
277
278- Motherboard Options: (if CONFIG_CMA101 or CONFIG_CMA102 are defined)
279 Define one or more of
280 CONFIG_LCD_HEARTBEAT - update a character position on
281 the lcd display every second with
282 a "rotator" |\-/|\-/
283
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284- Board flavour: (if CONFIG_MPC8260ADS is defined)
285 CONFIG_ADSTYPE
286 Possible values are:
287 CFG_8260ADS - original MPC8260ADS
180d3f74 288 CFG_8266ADS - MPC8266ADS
54387ac9 289 CFG_PQ2FADS - PQ2FADS-ZU or PQ2FADS-VR
04a85b3b 290 CFG_8272ADS - MPC8272ADS
2535d602 291
c609719b 292- MPC824X Family Member (if CONFIG_MPC824X is defined)
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293 Define exactly one of
294 CONFIG_MPC8240, CONFIG_MPC8245
c609719b 295
75d1ea7f 296- 8xx CPU Options: (if using an MPC8xx cpu)
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297 CONFIG_8xx_GCLK_FREQ - deprecated: CPU clock if
298 get_gclk_freq() cannot work
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299 e.g. if there is no 32KHz
300 reference PIT/RTC clock
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301 CONFIG_8xx_OSCLK - PLL input clock (either EXTCLK
302 or XTAL/EXTAL)
c609719b 303
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304- 859/866/885 CPU options: (if using a MPC859 or MPC866 or MPC885 CPU):
305 CFG_8xx_CPUCLK_MIN
306 CFG_8xx_CPUCLK_MAX
307 CONFIG_8xx_CPUCLK_DEFAULT
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308 See doc/README.MPC866
309
310 CFG_MEASURE_CPUCLK
311
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312 Define this to measure the actual CPU clock instead
313 of relying on the correctness of the configured
314 values. Mostly useful for board bringup to make sure
315 the PLL is locked at the intended frequency. Note
316 that this requires a (stable) reference clock (32 kHz
66ca92a5 317 RTC clock or CFG_8XX_XIN)
75d1ea7f 318
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319- Intel Monahans options:
320 CFG_MONAHANS_RUN_MODE_OSC_RATIO
321
322 Defines the Monahans run mode to oscillator
323 ratio. Valid values are 8, 16, 24, 31. The core
324 frequency is this value multiplied by 13 MHz.
325
326 CFG_MONAHANS_TURBO_RUN_MODE_RATIO
cf48eb9a 327
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328 Defines the Monahans turbo mode to oscillator
329 ratio. Valid values are 1 (default if undefined) and
cf48eb9a 330 2. The core frequency as calculated above is multiplied
0b953ffc 331 by this value.
cf48eb9a 332
5da627a4 333- Linux Kernel Interface:
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334 CONFIG_CLOCKS_IN_MHZ
335
336 U-Boot stores all clock information in Hz
337 internally. For binary compatibility with older Linux
338 kernels (which expect the clocks passed in the
339 bd_info data to be in MHz) the environment variable
340 "clocks_in_mhz" can be defined so that U-Boot
341 converts clock data to MHZ before passing it to the
342 Linux kernel.
c609719b 343 When CONFIG_CLOCKS_IN_MHZ is defined, a definition of
218ca724 344 "clocks_in_mhz=1" is automatically included in the
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345 default environment.
346
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347 CONFIG_MEMSIZE_IN_BYTES [relevant for MIPS only]
348
349 When transfering memsize parameter to linux, some versions
350 expect it to be in bytes, others in MB.
351 Define CONFIG_MEMSIZE_IN_BYTES to make it in bytes.
352
213bf8c8 353 CONFIG_OF_LIBFDT / CONFIG_OF_FLAT_TREE
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354
355 New kernel versions are expecting firmware settings to be
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356 passed using flattened device trees (based on open firmware
357 concepts).
358
359 CONFIG_OF_LIBFDT
360 * New libfdt-based support
361 * Adds the "fdt" command
3bb342fc 362 * The bootm command automatically updates the fdt
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363
364 CONFIG_OF_FLAT_TREE
365 * Deprecated, see CONFIG_OF_LIBFDT
366 * Original ft_build.c-based support
367 * Automatically modifies the dft as part of the bootm command
368 * The environment variable "disable_of", when set,
369 disables this functionality.
f57f70aa 370
f57f70aa 371 OF_CPU - The proper name of the cpus node.
c2871f03 372 OF_SOC - The proper name of the soc node.
f57f70aa 373 OF_TBCLK - The timebase frequency.
c2871f03 374 OF_STDOUT_PATH - The path to the console device
f57f70aa 375
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376 boards with QUICC Engines require OF_QE to set UCC mac addresses
377
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378 CONFIG_OF_BOARD_SETUP
379
380 Board code has addition modification that it wants to make
381 to the flat device tree before handing it off to the kernel
f57f70aa 382
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383 CONFIG_OF_BOOT_CPU
384
385 This define fills in the correct boot cpu in the boot
386 param header, the default value is zero if undefined.
387
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388- Serial Ports:
389 CFG_PL010_SERIAL
390
391 Define this if you want support for Amba PrimeCell PL010 UARTs.
392
393 CFG_PL011_SERIAL
394
395 Define this if you want support for Amba PrimeCell PL011 UARTs.
396
397 CONFIG_PL011_CLOCK
398
399 If you have Amba PrimeCell PL011 UARTs, set this variable to
400 the clock speed of the UARTs.
401
402 CONFIG_PL01x_PORTS
403
404 If you have Amba PrimeCell PL010 or PL011 UARTs on your board,
405 define this to a list of base addresses for each (supported)
406 port. See e.g. include/configs/versatile.h
407
408
c609719b 409- Console Interface:
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410 Depending on board, define exactly one serial port
411 (like CONFIG_8xx_CONS_SMC1, CONFIG_8xx_CONS_SMC2,
412 CONFIG_8xx_CONS_SCC1, ...), or switch off the serial
413 console by defining CONFIG_8xx_CONS_NONE
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414
415 Note: if CONFIG_8xx_CONS_NONE is defined, the serial
416 port routines must be defined elsewhere
417 (i.e. serial_init(), serial_getc(), ...)
418
419 CONFIG_CFB_CONSOLE
420 Enables console device for a color framebuffer. Needs following
421 defines (cf. smiLynxEM, i8042, board/eltec/bab7xx)
422 VIDEO_FB_LITTLE_ENDIAN graphic memory organisation
423 (default big endian)
424 VIDEO_HW_RECTFILL graphic chip supports
425 rectangle fill
426 (cf. smiLynxEM)
427 VIDEO_HW_BITBLT graphic chip supports
428 bit-blit (cf. smiLynxEM)
429 VIDEO_VISIBLE_COLS visible pixel columns
430 (cols=pitch)
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431 VIDEO_VISIBLE_ROWS visible pixel rows
432 VIDEO_PIXEL_SIZE bytes per pixel
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433 VIDEO_DATA_FORMAT graphic data format
434 (0-5, cf. cfb_console.c)
ba56f625 435 VIDEO_FB_ADRS framebuffer address
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436 VIDEO_KBD_INIT_FCT keyboard int fct
437 (i.e. i8042_kbd_init())
438 VIDEO_TSTC_FCT test char fct
439 (i.e. i8042_tstc)
440 VIDEO_GETC_FCT get char fct
441 (i.e. i8042_getc)
442 CONFIG_CONSOLE_CURSOR cursor drawing on/off
443 (requires blink timer
444 cf. i8042.c)
445 CFG_CONSOLE_BLINK_COUNT blink interval (cf. i8042.c)
446 CONFIG_CONSOLE_TIME display time/date info in
447 upper right corner
602ad3b3 448 (requires CONFIG_CMD_DATE)
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449 CONFIG_VIDEO_LOGO display Linux logo in
450 upper left corner
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451 CONFIG_VIDEO_BMP_LOGO use bmp_logo.h instead of
452 linux_logo.h for logo.
453 Requires CONFIG_VIDEO_LOGO
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454 CONFIG_CONSOLE_EXTRA_INFO
455 addional board info beside
456 the logo
457
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458 When CONFIG_CFB_CONSOLE is defined, video console is
459 default i/o. Serial console can be forced with
460 environment 'console=serial'.
c609719b 461
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462 When CONFIG_SILENT_CONSOLE is defined, all console
463 messages (by U-Boot and Linux!) can be silenced with
464 the "silent" environment variable. See
465 doc/README.silent for more information.
a3ad8e26 466
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467- Console Baudrate:
468 CONFIG_BAUDRATE - in bps
469 Select one of the baudrates listed in
470 CFG_BAUDRATE_TABLE, see below.
3bbc899f 471 CFG_BRGCLK_PRESCALE, baudrate prescale
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472
473- Interrupt driven serial port input:
474 CONFIG_SERIAL_SOFTWARE_FIFO
475
476 PPC405GP only.
477 Use an interrupt handler for receiving data on the
478 serial port. It also enables using hardware handshake
479 (RTS/CTS) and UART's built-in FIFO. Set the number of
480 bytes the interrupt driven input buffer should have.
481
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482 Leave undefined to disable this feature, including
483 disable the buffer and hardware handshake.
c609719b 484
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485- Console UART Number:
486 CONFIG_UART1_CONSOLE
487
0c8721a4 488 AMCC PPC4xx only.
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489 If defined internal UART1 (and not UART0) is used
490 as default U-Boot console.
491
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492- Boot Delay: CONFIG_BOOTDELAY - in seconds
493 Delay before automatically booting the default image;
494 set to -1 to disable autoboot.
495
496 See doc/README.autoboot for these options that
497 work with CONFIG_BOOTDELAY. None are required.
498 CONFIG_BOOT_RETRY_TIME
499 CONFIG_BOOT_RETRY_MIN
500 CONFIG_AUTOBOOT_KEYED
501 CONFIG_AUTOBOOT_PROMPT
502 CONFIG_AUTOBOOT_DELAY_STR
503 CONFIG_AUTOBOOT_STOP_STR
504 CONFIG_AUTOBOOT_DELAY_STR2
505 CONFIG_AUTOBOOT_STOP_STR2
506 CONFIG_ZERO_BOOTDELAY_CHECK
507 CONFIG_RESET_TO_RETRY
508
509- Autoboot Command:
510 CONFIG_BOOTCOMMAND
511 Only needed when CONFIG_BOOTDELAY is enabled;
512 define a command string that is automatically executed
513 when no character is read on the console interface
514 within "Boot Delay" after reset.
515
516 CONFIG_BOOTARGS
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517 This can be used to pass arguments to the bootm
518 command. The value of CONFIG_BOOTARGS goes into the
519 environment value "bootargs".
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520
521 CONFIG_RAMBOOT and CONFIG_NFSBOOT
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522 The value of these goes into the environment as
523 "ramboot" and "nfsboot" respectively, and can be used
524 as a convenience, when switching between booting from
525 ram and nfs.
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526
527- Pre-Boot Commands:
528 CONFIG_PREBOOT
529
530 When this option is #defined, the existence of the
531 environment variable "preboot" will be checked
532 immediately before starting the CONFIG_BOOTDELAY
533 countdown and/or running the auto-boot command resp.
534 entering interactive mode.
535
536 This feature is especially useful when "preboot" is
537 automatically generated or modified. For an example
538 see the LWMON board specific code: here "preboot" is
539 modified when the user holds down a certain
540 combination of keys on the (special) keyboard when
541 booting the systems
542
543- Serial Download Echo Mode:
544 CONFIG_LOADS_ECHO
545 If defined to 1, all characters received during a
546 serial download (using the "loads" command) are
547 echoed back. This might be needed by some terminal
548 emulations (like "cu"), but may as well just take
549 time on others. This setting #define's the initial
550 value of the "loads_echo" environment variable.
551
602ad3b3 552- Kgdb Serial Baudrate: (if CONFIG_CMD_KGDB is defined)
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553 CONFIG_KGDB_BAUDRATE
554 Select one of the baudrates listed in
555 CFG_BAUDRATE_TABLE, see below.
556
557- Monitor Functions:
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558 Monitor commands can be included or excluded
559 from the build by using the #include files
560 "config_cmd_all.h" and #undef'ing unwanted
561 commands, or using "config_cmd_default.h"
562 and augmenting with additional #define's
563 for wanted commands.
564
565 The default command configuration includes all commands
566 except those marked below with a "*".
567
568 CONFIG_CMD_ASKENV * ask for env variable
569 CONFIG_CMD_AUTOSCRIPT Autoscript Support
570 CONFIG_CMD_BDI bdinfo
571 CONFIG_CMD_BEDBUG * Include BedBug Debugger
572 CONFIG_CMD_BMP * BMP support
573 CONFIG_CMD_BSP * Board specific commands
574 CONFIG_CMD_BOOTD bootd
575 CONFIG_CMD_CACHE * icache, dcache
576 CONFIG_CMD_CONSOLE coninfo
577 CONFIG_CMD_DATE * support for RTC, date/time...
578 CONFIG_CMD_DHCP * DHCP support
579 CONFIG_CMD_DIAG * Diagnostics
580 CONFIG_CMD_DOC * Disk-On-Chip Support
581 CONFIG_CMD_DTT * Digital Therm and Thermostat
582 CONFIG_CMD_ECHO echo arguments
583 CONFIG_CMD_EEPROM * EEPROM read/write support
584 CONFIG_CMD_ELF * bootelf, bootvx
585 CONFIG_CMD_ENV saveenv
586 CONFIG_CMD_FDC * Floppy Disk Support
587 CONFIG_CMD_FAT * FAT partition support
588 CONFIG_CMD_FDOS * Dos diskette Support
589 CONFIG_CMD_FLASH flinfo, erase, protect
590 CONFIG_CMD_FPGA FPGA device initialization support
591 CONFIG_CMD_HWFLOW * RTS/CTS hw flow control
592 CONFIG_CMD_I2C * I2C serial bus support
593 CONFIG_CMD_IDE * IDE harddisk support
594 CONFIG_CMD_IMI iminfo
595 CONFIG_CMD_IMLS List all found images
596 CONFIG_CMD_IMMAP * IMMR dump support
597 CONFIG_CMD_IRQ * irqinfo
598 CONFIG_CMD_ITEST Integer/string test of 2 values
599 CONFIG_CMD_JFFS2 * JFFS2 Support
600 CONFIG_CMD_KGDB * kgdb
601 CONFIG_CMD_LOADB loadb
602 CONFIG_CMD_LOADS loads
603 CONFIG_CMD_MEMORY md, mm, nm, mw, cp, cmp, crc, base,
604 loop, loopw, mtest
605 CONFIG_CMD_MISC Misc functions like sleep etc
606 CONFIG_CMD_MMC * MMC memory mapped support
607 CONFIG_CMD_MII * MII utility commands
608 CONFIG_CMD_NAND * NAND support
609 CONFIG_CMD_NET bootp, tftpboot, rarpboot
610 CONFIG_CMD_PCI * pciinfo
611 CONFIG_CMD_PCMCIA * PCMCIA support
612 CONFIG_CMD_PING * send ICMP ECHO_REQUEST to network
613 host
614 CONFIG_CMD_PORTIO * Port I/O
615 CONFIG_CMD_REGINFO * Register dump
616 CONFIG_CMD_RUN run command in env variable
617 CONFIG_CMD_SAVES * save S record dump
618 CONFIG_CMD_SCSI * SCSI Support
619 CONFIG_CMD_SDRAM * print SDRAM configuration information
620 (requires CONFIG_CMD_I2C)
621 CONFIG_CMD_SETGETDCR Support for DCR Register access
622 (4xx only)
623 CONFIG_CMD_SPI * SPI serial bus support
624 CONFIG_CMD_USB * USB support
625 CONFIG_CMD_VFD * VFD support (TRAB)
626 CONFIG_CMD_BSP * Board SPecific functions
627 CONFIG_CMD_CDP * Cisco Discover Protocol support
628 CONFIG_CMD_FSL * Microblaze FSL support
629
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630
631 EXAMPLE: If you want all functions except of network
632 support you can write:
633
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634 #include "config_cmd_all.h"
635 #undef CONFIG_CMD_NET
c609719b 636
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637 Other Commands:
638 fdt (flattened device tree) command: CONFIG_OF_LIBFDT
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639
640 Note: Don't enable the "icache" and "dcache" commands
602ad3b3 641 (configuration option CONFIG_CMD_CACHE) unless you know
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642 what you (and your U-Boot users) are doing. Data
643 cache cannot be enabled on systems like the 8xx or
644 8260 (where accesses to the IMMR region must be
645 uncached), and it cannot be disabled on all other
646 systems where we (mis-) use the data cache to hold an
647 initial stack and some data.
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648
649
650 XXX - this list needs to get updated!
651
652- Watchdog:
653 CONFIG_WATCHDOG
654 If this variable is defined, it enables watchdog
7152b1d0 655 support. There must be support in the platform specific
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656 code for a watchdog. For the 8xx and 8260 CPUs, the
657 SIU Watchdog feature is enabled in the SYPCR
658 register.
659
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660- U-Boot Version:
661 CONFIG_VERSION_VARIABLE
662 If this variable is defined, an environment variable
663 named "ver" is created by U-Boot showing the U-Boot
664 version as printed by the "version" command.
665 This variable is readonly.
666
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667- Real-Time Clock:
668
602ad3b3 669 When CONFIG_CMD_DATE is selected, the type of the RTC
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670 has to be selected, too. Define exactly one of the
671 following options:
672
673 CONFIG_RTC_MPC8xx - use internal RTC of MPC8xx
674 CONFIG_RTC_PCF8563 - use Philips PCF8563 RTC
675 CONFIG_RTC_MC146818 - use MC146818 RTC
1cb8e980 676 CONFIG_RTC_DS1307 - use Maxim, Inc. DS1307 RTC
c609719b 677 CONFIG_RTC_DS1337 - use Maxim, Inc. DS1337 RTC
7f70e853 678 CONFIG_RTC_DS1338 - use Maxim, Inc. DS1338 RTC
3bac3513 679 CONFIG_RTC_DS164x - use Dallas DS164x RTC
9536dfcc 680 CONFIG_RTC_ISL1208 - use Intersil ISL1208 RTC
4c0d4c3b 681 CONFIG_RTC_MAX6900 - use Maxim, Inc. MAX6900 RTC
da8808df 682 CFG_RTC_DS1337_NOOSC - Turn off the OSC output for DS1337
c609719b 683
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684 Note that if the RTC uses I2C, then the I2C interface
685 must also be configured. See I2C Support, below.
686
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687- Timestamp Support:
688
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689 When CONFIG_TIMESTAMP is selected, the timestamp
690 (date and time) of an image is printed by image
691 commands like bootm or iminfo. This option is
602ad3b3 692 automatically enabled when you select CONFIG_CMD_DATE .
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693
694- Partition Support:
695 CONFIG_MAC_PARTITION and/or CONFIG_DOS_PARTITION
696 and/or CONFIG_ISO_PARTITION
697
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698 If IDE or SCSI support is enabled (CONFIG_CMD_IDE or
699 CONFIG_CMD_SCSI) you must configure support for at
700 least one partition type as well.
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701
702- IDE Reset method:
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703 CONFIG_IDE_RESET_ROUTINE - this is defined in several
704 board configurations files but used nowhere!
c609719b 705
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706 CONFIG_IDE_RESET - is this is defined, IDE Reset will
707 be performed by calling the function
708 ide_set_reset(int reset)
709 which has to be defined in a board specific file
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710
711- ATAPI Support:
712 CONFIG_ATAPI
713
714 Set this to enable ATAPI support.
715
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716- LBA48 Support
717 CONFIG_LBA48
718
719 Set this to enable support for disks larger than 137GB
720 Also look at CFG_64BIT_LBA ,CFG_64BIT_VSPRINTF and CFG_64BIT_STRTOUL
721 Whithout these , LBA48 support uses 32bit variables and will 'only'
722 support disks up to 2.1TB.
723
724 CFG_64BIT_LBA:
725 When enabled, makes the IDE subsystem use 64bit sector addresses.
726 Default is 32bit.
727
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728- SCSI Support:
729 At the moment only there is only support for the
730 SYM53C8XX SCSI controller; define
731 CONFIG_SCSI_SYM53C8XX to enable it.
732
733 CFG_SCSI_MAX_LUN [8], CFG_SCSI_MAX_SCSI_ID [7] and
734 CFG_SCSI_MAX_DEVICE [CFG_SCSI_MAX_SCSI_ID *
735 CFG_SCSI_MAX_LUN] can be adjusted to define the
736 maximum numbers of LUNs, SCSI ID's and target
737 devices.
738 CFG_SCSI_SYM53C8XX_CCF to fix clock timing (80Mhz)
739
740- NETWORK Support (PCI):
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741 CONFIG_E1000
742 Support for Intel 8254x gigabit chips.
53cf9435 743
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744 CONFIG_E1000_FALLBACK_MAC
745 default MAC for empty eeprom after production.
746
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747 CONFIG_EEPRO100
748 Support for Intel 82557/82559/82559ER chips.
749 Optional CONFIG_EEPRO100_SROM_WRITE enables eeprom
750 write routine for first time initialisation.
751
752 CONFIG_TULIP
753 Support for Digital 2114x chips.
754 Optional CONFIG_TULIP_SELECT_MEDIA for board specific
755 modem chip initialisation (KS8761/QS6611).
756
757 CONFIG_NATSEMI
758 Support for National dp83815 chips.
759
760 CONFIG_NS8382X
761 Support for National dp8382[01] gigabit chips.
762
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763- NETWORK Support (other):
764
765 CONFIG_DRIVER_LAN91C96
766 Support for SMSC's LAN91C96 chips.
767
768 CONFIG_LAN91C96_BASE
769 Define this to hold the physical address
770 of the LAN91C96's I/O space
771
772 CONFIG_LAN91C96_USE_32_BIT
773 Define this to enable 32 bit addressing
774
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775 CONFIG_DRIVER_SMC91111
776 Support for SMSC's LAN91C111 chip
777
778 CONFIG_SMC91111_BASE
779 Define this to hold the physical address
780 of the device (I/O space)
781
782 CONFIG_SMC_USE_32_BIT
783 Define this if data bus is 32 bits
784
785 CONFIG_SMC_USE_IOFUNCS
786 Define this to use i/o functions instead of macros
787 (some hardware wont work with macros)
788
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789- USB Support:
790 At the moment only the UHCI host controller is
4d13cbad 791 supported (PIP405, MIP405, MPC5200); define
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792 CONFIG_USB_UHCI to enable it.
793 define CONFIG_USB_KEYBOARD to enable the USB Keyboard
30d56fae 794 and define CONFIG_USB_STORAGE to enable the USB
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795 storage devices.
796 Note:
797 Supported are USB Keyboards and USB Floppy drives
798 (TEAC FD-05PUB).
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799 MPC5200 USB requires additional defines:
800 CONFIG_USB_CLOCK
801 for 528 MHz Clock: 0x0001bbbb
802 CONFIG_USB_CONFIG
803 for differential drivers: 0x00001000
804 for single ended drivers: 0x00005000
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805 CFG_USB_EVENT_POLL
806 May be defined to allow interrupt polling
807 instead of using asynchronous interrupts
4d13cbad 808
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809- USB Device:
810 Define the below if you wish to use the USB console.
811 Once firmware is rebuilt from a serial console issue the
812 command "setenv stdin usbtty; setenv stdout usbtty" and
813 attach your usb cable. The Unix command "dmesg" should print
814 it has found a new device. The environment variable usbtty
815 can be set to gserial or cdc_acm to enable your device to
386eda02 816 appear to a USB host as a Linux gserial device or a
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817 Common Device Class Abstract Control Model serial device.
818 If you select usbtty = gserial you should be able to enumerate
819 a Linux host by
820 # modprobe usbserial vendor=0xVendorID product=0xProductID
821 else if using cdc_acm, simply setting the environment
822 variable usbtty to be cdc_acm should suffice. The following
823 might be defined in YourBoardName.h
386eda02 824
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825 CONFIG_USB_DEVICE
826 Define this to build a UDC device
827
828 CONFIG_USB_TTY
829 Define this to have a tty type of device available to
830 talk to the UDC device
386eda02 831
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832 CFG_CONSOLE_IS_IN_ENV
833 Define this if you want stdin, stdout &/or stderr to
834 be set to usbtty.
835
836 mpc8xx:
837 CFG_USB_EXTC_CLK 0xBLAH
838 Derive USB clock from external clock "blah"
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839 - CFG_USB_EXTC_CLK 0x02
840
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841 CFG_USB_BRG_CLK 0xBLAH
842 Derive USB clock from brgclk
843 - CFG_USB_BRG_CLK 0x04
844
386eda02 845 If you have a USB-IF assigned VendorID then you may wish to
16c8d5e7 846 define your own vendor specific values either in BoardName.h
386eda02 847 or directly in usbd_vendor_info.h. If you don't define
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848 CONFIG_USBD_MANUFACTURER, CONFIG_USBD_PRODUCT_NAME,
849 CONFIG_USBD_VENDORID and CONFIG_USBD_PRODUCTID, then U-Boot
850 should pretend to be a Linux device to it's target host.
851
852 CONFIG_USBD_MANUFACTURER
853 Define this string as the name of your company for
854 - CONFIG_USBD_MANUFACTURER "my company"
386eda02 855
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856 CONFIG_USBD_PRODUCT_NAME
857 Define this string as the name of your product
858 - CONFIG_USBD_PRODUCT_NAME "acme usb device"
859
860 CONFIG_USBD_VENDORID
861 Define this as your assigned Vendor ID from the USB
862 Implementors Forum. This *must* be a genuine Vendor ID
863 to avoid polluting the USB namespace.
864 - CONFIG_USBD_VENDORID 0xFFFF
386eda02 865
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866 CONFIG_USBD_PRODUCTID
867 Define this as the unique Product ID
868 for your device
869 - CONFIG_USBD_PRODUCTID 0xFFFF
4d13cbad 870
c609719b 871
71f95118 872- MMC Support:
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873 The MMC controller on the Intel PXA is supported. To
874 enable this define CONFIG_MMC. The MMC can be
875 accessed from the boot prompt by mapping the device
71f95118 876 to physical memory similar to flash. Command line is
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877 enabled with CONFIG_CMD_MMC. The MMC driver also works with
878 the FAT fs. This is enabled with CONFIG_CMD_FAT.
71f95118 879
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880- Journaling Flash filesystem support:
881 CONFIG_JFFS2_NAND, CONFIG_JFFS2_NAND_OFF, CONFIG_JFFS2_NAND_SIZE,
882 CONFIG_JFFS2_NAND_DEV
883 Define these for a default partition on a NAND device
884
885 CFG_JFFS2_FIRST_SECTOR,
886 CFG_JFFS2_FIRST_BANK, CFG_JFFS2_NUM_BANKS
887 Define these for a default partition on a NOR device
888
889 CFG_JFFS_CUSTOM_PART
890 Define this to create an own partition. You have to provide a
891 function struct part_info* jffs2_part_info(int part_num)
892
893 If you define only one JFFS2 partition you may also want to
efe2a4d5 894 #define CFG_JFFS_SINGLE_PART 1
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895 to disable the command chpart. This is the default when you
896 have not defined a custom partition
897
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898- Keyboard Support:
899 CONFIG_ISA_KEYBOARD
900
901 Define this to enable standard (PC-Style) keyboard
902 support
903
904 CONFIG_I8042_KBD
905 Standard PC keyboard driver with US (is default) and
906 GERMAN key layout (switch via environment 'keymap=de') support.
907 Export function i8042_kbd_init, i8042_tstc and i8042_getc
908 for cfb_console. Supports cursor blinking.
909
910- Video support:
911 CONFIG_VIDEO
912
913 Define this to enable video support (for output to
914 video).
915
916 CONFIG_VIDEO_CT69000
917
918 Enable Chips & Technologies 69000 Video chip
919
920 CONFIG_VIDEO_SMI_LYNXEM
b79a11cc 921 Enable Silicon Motion SMI 712/710/810 Video chip. The
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922 video output is selected via environment 'videoout'
923 (1 = LCD and 2 = CRT). If videoout is undefined, CRT is
924 assumed.
925
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926 For the CT69000 and SMI_LYNXEM drivers, videomode is
927 selected via environment 'videomode'. Two diferent ways
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928 are possible:
929 - "videomode=num" 'num' is a standard LiLo mode numbers.
6e592385 930 Following standard modes are supported (* is default):
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931
932 Colors 640x480 800x600 1024x768 1152x864 1280x1024
933 -------------+---------------------------------------------
934 8 bits | 0x301* 0x303 0x305 0x161 0x307
935 15 bits | 0x310 0x313 0x316 0x162 0x319
936 16 bits | 0x311 0x314 0x317 0x163 0x31A
937 24 bits | 0x312 0x315 0x318 ? 0x31B
938 -------------+---------------------------------------------
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939 (i.e. setenv videomode 317; saveenv; reset;)
940
b79a11cc 941 - "videomode=bootargs" all the video parameters are parsed
7817cb20 942 from the bootargs. (See drivers/video/videomodes.c)
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943
944
c1551ea8 945 CONFIG_VIDEO_SED13806
43d9616c 946 Enable Epson SED13806 driver. This driver supports 8bpp
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947 and 16bpp modes defined by CONFIG_VIDEO_SED13806_8BPP
948 or CONFIG_VIDEO_SED13806_16BPP
949
682011ff 950- Keyboard Support:
8bde7f77 951 CONFIG_KEYBOARD
682011ff 952
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953 Define this to enable a custom keyboard support.
954 This simply calls drv_keyboard_init() which must be
955 defined in your board-specific files.
956 The only board using this so far is RBC823.
a6c7ad2f 957
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958- LCD Support: CONFIG_LCD
959
960 Define this to enable LCD support (for output to LCD
961 display); also select one of the supported displays
962 by defining one of these:
963
fd3103bb 964 CONFIG_NEC_NL6448AC33:
c609719b 965
fd3103bb 966 NEC NL6448AC33-18. Active, color, single scan.
c609719b 967
fd3103bb 968 CONFIG_NEC_NL6448BC20
c609719b 969
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970 NEC NL6448BC20-08. 6.5", 640x480.
971 Active, color, single scan.
972
973 CONFIG_NEC_NL6448BC33_54
974
975 NEC NL6448BC33-54. 10.4", 640x480.
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976 Active, color, single scan.
977
978 CONFIG_SHARP_16x9
979
980 Sharp 320x240. Active, color, single scan.
981 It isn't 16x9, and I am not sure what it is.
982
983 CONFIG_SHARP_LQ64D341
984
985 Sharp LQ64D341 display, 640x480.
986 Active, color, single scan.
987
988 CONFIG_HLD1045
989
990 HLD1045 display, 640x480.
991 Active, color, single scan.
992
993 CONFIG_OPTREX_BW
994
995 Optrex CBL50840-2 NF-FW 99 22 M5
996 or
997 Hitachi LMG6912RPFC-00T
998 or
999 Hitachi SP14Q002
1000
1001 320x240. Black & white.
1002
1003 Normally display is black on white background; define
1004 CFG_WHITE_ON_BLACK to get it inverted.
1005
7152b1d0 1006- Splash Screen Support: CONFIG_SPLASH_SCREEN
d791b1dc 1007
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1008 If this option is set, the environment is checked for
1009 a variable "splashimage". If found, the usual display
1010 of logo, copyright and system information on the LCD
e94d2cd9 1011 is suppressed and the BMP image at the address
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1012 specified in "splashimage" is loaded instead. The
1013 console is redirected to the "nulldev", too. This
1014 allows for a "silent" boot where a splash screen is
1015 loaded very quickly after power-on.
d791b1dc 1016
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SR
1017- Gzip compressed BMP image support: CONFIG_VIDEO_BMP_GZIP
1018
1019 If this option is set, additionally to standard BMP
1020 images, gzipped BMP images can be displayed via the
1021 splashscreen support or the bmp command.
1022
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1023- Compression support:
1024 CONFIG_BZIP2
1025
1026 If this option is set, support for bzip2 compressed
1027 images is included. If not, only uncompressed and gzip
1028 compressed images are supported.
1029
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1030 NOTE: the bzip2 algorithm requires a lot of RAM, so
1031 the malloc area (as defined by CFG_MALLOC_LEN) should
1032 be at least 4MB.
d791b1dc 1033
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1034- MII/PHY support:
1035 CONFIG_PHY_ADDR
1036
1037 The address of PHY on MII bus.
1038
1039 CONFIG_PHY_CLOCK_FREQ (ppc4xx)
1040
1041 The clock frequency of the MII bus
1042
1043 CONFIG_PHY_GIGE
1044
1045 If this option is set, support for speed/duplex
1046 detection of Gigabit PHY is included.
1047
1048 CONFIG_PHY_RESET_DELAY
1049
1050 Some PHY like Intel LXT971A need extra delay after
1051 reset before any MII register access is possible.
1052 For such PHY, set this option to the usec delay
1053 required. (minimum 300usec for LXT971A)
1054
1055 CONFIG_PHY_CMD_DELAY (ppc4xx)
1056
1057 Some PHY like Intel LXT971A need extra delay after
1058 command issued before MII status register can be read
1059
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1060- Ethernet address:
1061 CONFIG_ETHADDR
1062 CONFIG_ETH2ADDR
1063 CONFIG_ETH3ADDR
1064
1065 Define a default value for ethernet address to use
1066 for the respective ethernet interface, in case this
1067 is not determined automatically.
1068
1069- IP address:
1070 CONFIG_IPADDR
1071
1072 Define a default value for the IP address to use for
1073 the default ethernet interface, in case this is not
1074 determined through e.g. bootp.
1075
1076- Server IP address:
1077 CONFIG_SERVERIP
1078
1079 Defines a default value for theIP address of a TFTP
1080 server to contact when using the "tftboot" command.
1081
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DU
1082- Multicast TFTP Mode:
1083 CONFIG_MCAST_TFTP
1084
1085 Defines whether you want to support multicast TFTP as per
1086 rfc-2090; for example to work with atftp. Lets lots of targets
1087 tftp down the same boot image concurrently. Note: the ethernet
1088 driver in use must provide a function: mcast() to join/leave a
1089 multicast group.
1090
1091 CONFIG_BOOTP_RANDOM_DELAY
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1092- BOOTP Recovery Mode:
1093 CONFIG_BOOTP_RANDOM_DELAY
1094
1095 If you have many targets in a network that try to
1096 boot using BOOTP, you may want to avoid that all
1097 systems send out BOOTP requests at precisely the same
1098 moment (which would happen for instance at recovery
1099 from a power failure, when all systems will try to
1100 boot, thus flooding the BOOTP server. Defining
1101 CONFIG_BOOTP_RANDOM_DELAY causes a random delay to be
1102 inserted before sending out BOOTP requests. The
6c33c785 1103 following delays are inserted then:
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1104
1105 1st BOOTP request: delay 0 ... 1 sec
1106 2nd BOOTP request: delay 0 ... 2 sec
1107 3rd BOOTP request: delay 0 ... 4 sec
1108 4th and following
1109 BOOTP requests: delay 0 ... 8 sec
1110
fe389a82 1111- DHCP Advanced Options:
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1112 You can fine tune the DHCP functionality by defining
1113 CONFIG_BOOTP_* symbols:
1114
1115 CONFIG_BOOTP_SUBNETMASK
1116 CONFIG_BOOTP_GATEWAY
1117 CONFIG_BOOTP_HOSTNAME
1118 CONFIG_BOOTP_NISDOMAIN
1119 CONFIG_BOOTP_BOOTPATH
1120 CONFIG_BOOTP_BOOTFILESIZE
1121 CONFIG_BOOTP_DNS
1122 CONFIG_BOOTP_DNS2
1123 CONFIG_BOOTP_SEND_HOSTNAME
1124 CONFIG_BOOTP_NTPSERVER
1125 CONFIG_BOOTP_TIMEOFFSET
1126 CONFIG_BOOTP_VENDOREX
fe389a82 1127
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1128 CONFIG_BOOTP_SERVERIP - TFTP server will be the serverip
1129 environment variable, not the BOOTP server.
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1130
1131 CONFIG_BOOTP_DNS2 - If a DHCP client requests the DNS
1132 serverip from a DHCP server, it is possible that more
1133 than one DNS serverip is offered to the client.
1134 If CONFIG_BOOTP_DNS2 is enabled, the secondary DNS
1135 serverip will be stored in the additional environment
1136 variable "dnsip2". The first DNS serverip is always
1137 stored in the variable "dnsip", when CONFIG_BOOTP_DNS
1fe80d79 1138 is defined.
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SR
1139
1140 CONFIG_BOOTP_SEND_HOSTNAME - Some DHCP servers are capable
1141 to do a dynamic update of a DNS server. To do this, they
1142 need the hostname of the DHCP requester.
5d110f0a 1143 If CONFIG_BOOTP_SEND_HOSTNAME is defined, the content
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1144 of the "hostname" environment variable is passed as
1145 option 12 to the DHCP server.
fe389a82 1146
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AV
1147 CONFIG_BOOTP_DHCP_REQUEST_DELAY
1148
1149 A 32bit value in microseconds for a delay between
1150 receiving a "DHCP Offer" and sending the "DHCP Request".
1151 This fixes a problem with certain DHCP servers that don't
1152 respond 100% of the time to a "DHCP request". E.g. On an
1153 AT91RM9200 processor running at 180MHz, this delay needed
1154 to be *at least* 15,000 usec before a Windows Server 2003
1155 DHCP server would reply 100% of the time. I recommend at
1156 least 50,000 usec to be safe. The alternative is to hope
1157 that one of the retries will be successful but note that
1158 the DHCP timeout and retry process takes a longer than
1159 this delay.
1160
a3d991bd 1161 - CDP Options:
6e592385 1162 CONFIG_CDP_DEVICE_ID
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1163
1164 The device id used in CDP trigger frames.
1165
1166 CONFIG_CDP_DEVICE_ID_PREFIX
1167
1168 A two character string which is prefixed to the MAC address
1169 of the device.
1170
1171 CONFIG_CDP_PORT_ID
1172
1173 A printf format string which contains the ascii name of
1174 the port. Normally is set to "eth%d" which sets
1175 eth0 for the first ethernet, eth1 for the second etc.
1176
1177 CONFIG_CDP_CAPABILITIES
1178
1179 A 32bit integer which indicates the device capabilities;
1180 0x00000010 for a normal host which does not forwards.
1181
1182 CONFIG_CDP_VERSION
1183
1184 An ascii string containing the version of the software.
1185
1186 CONFIG_CDP_PLATFORM
1187
1188 An ascii string containing the name of the platform.
1189
1190 CONFIG_CDP_TRIGGER
1191
1192 A 32bit integer sent on the trigger.
1193
1194 CONFIG_CDP_POWER_CONSUMPTION
1195
1196 A 16bit integer containing the power consumption of the
1197 device in .1 of milliwatts.
1198
1199 CONFIG_CDP_APPLIANCE_VLAN_TYPE
1200
1201 A byte containing the id of the VLAN.
1202
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WD
1203- Status LED: CONFIG_STATUS_LED
1204
1205 Several configurations allow to display the current
1206 status using a LED. For instance, the LED will blink
1207 fast while running U-Boot code, stop blinking as
1208 soon as a reply to a BOOTP request was received, and
1209 start blinking slow once the Linux kernel is running
1210 (supported by a status LED driver in the Linux
1211 kernel). Defining CONFIG_STATUS_LED enables this
1212 feature in U-Boot.
1213
1214- CAN Support: CONFIG_CAN_DRIVER
1215
1216 Defining CONFIG_CAN_DRIVER enables CAN driver support
1217 on those systems that support this (optional)
1218 feature, like the TQM8xxL modules.
1219
1220- I2C Support: CONFIG_HARD_I2C | CONFIG_SOFT_I2C
1221
b37c7e5e 1222 These enable I2C serial bus commands. Defining either of
945af8d7
WD
1223 (but not both of) CONFIG_HARD_I2C or CONFIG_SOFT_I2C will
1224 include the appropriate I2C driver for the selected cpu.
c609719b 1225
945af8d7 1226 This will allow you to use i2c commands at the u-boot
602ad3b3 1227 command line (as long as you set CONFIG_CMD_I2C in
b37c7e5e
WD
1228 CONFIG_COMMANDS) and communicate with i2c based realtime
1229 clock chips. See common/cmd_i2c.c for a description of the
43d9616c 1230 command line interface.
c609719b 1231
bb99ad6d
BW
1232 CONFIG_I2C_CMD_TREE is a recommended option that places
1233 all I2C commands under a single 'i2c' root command. The
1234 older 'imm', 'imd', 'iprobe' etc. commands are considered
1235 deprecated and may disappear in the future.
1236
1237 CONFIG_HARD_I2C selects a hardware I2C controller.
b37c7e5e 1238
945af8d7 1239 CONFIG_SOFT_I2C configures u-boot to use a software (aka
b37c7e5e
WD
1240 bit-banging) driver instead of CPM or similar hardware
1241 support for I2C.
c609719b 1242
945af8d7 1243 There are several other quantities that must also be
b37c7e5e 1244 defined when you define CONFIG_HARD_I2C or CONFIG_SOFT_I2C.
c609719b 1245
b37c7e5e 1246 In both cases you will need to define CFG_I2C_SPEED
945af8d7
WD
1247 to be the frequency (in Hz) at which you wish your i2c bus
1248 to run and CFG_I2C_SLAVE to be the address of this node (ie
1249 the cpu's i2c node address).
1250
b37c7e5e
WD
1251 Now, the u-boot i2c code for the mpc8xx (cpu/mpc8xx/i2c.c)
1252 sets the cpu up as a master node and so its address should
1253 therefore be cleared to 0 (See, eg, MPC823e User's Manual
945af8d7 1254 p.16-473). So, set CFG_I2C_SLAVE to 0.
c609719b 1255
945af8d7 1256 That's all that's required for CONFIG_HARD_I2C.
c609719b 1257
b37c7e5e
WD
1258 If you use the software i2c interface (CONFIG_SOFT_I2C)
1259 then the following macros need to be defined (examples are
1260 from include/configs/lwmon.h):
c609719b
WD
1261
1262 I2C_INIT
1263
b37c7e5e 1264 (Optional). Any commands necessary to enable the I2C
43d9616c 1265 controller or configure ports.
c609719b 1266
ba56f625 1267 eg: #define I2C_INIT (immr->im_cpm.cp_pbdir |= PB_SCL)
b37c7e5e 1268
c609719b
WD
1269 I2C_PORT
1270
43d9616c
WD
1271 (Only for MPC8260 CPU). The I/O port to use (the code
1272 assumes both bits are on the same port). Valid values
1273 are 0..3 for ports A..D.
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WD
1274
1275 I2C_ACTIVE
1276
1277 The code necessary to make the I2C data line active
1278 (driven). If the data line is open collector, this
1279 define can be null.
1280
b37c7e5e
WD
1281 eg: #define I2C_ACTIVE (immr->im_cpm.cp_pbdir |= PB_SDA)
1282
c609719b
WD
1283 I2C_TRISTATE
1284
1285 The code necessary to make the I2C data line tri-stated
1286 (inactive). If the data line is open collector, this
1287 define can be null.
1288
b37c7e5e
WD
1289 eg: #define I2C_TRISTATE (immr->im_cpm.cp_pbdir &= ~PB_SDA)
1290
c609719b
WD
1291 I2C_READ
1292
1293 Code that returns TRUE if the I2C data line is high,
1294 FALSE if it is low.
1295
b37c7e5e
WD
1296 eg: #define I2C_READ ((immr->im_cpm.cp_pbdat & PB_SDA) != 0)
1297
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WD
1298 I2C_SDA(bit)
1299
1300 If <bit> is TRUE, sets the I2C data line high. If it
1301 is FALSE, it clears it (low).
1302
b37c7e5e 1303 eg: #define I2C_SDA(bit) \
2535d602 1304 if(bit) immr->im_cpm.cp_pbdat |= PB_SDA; \
ba56f625 1305 else immr->im_cpm.cp_pbdat &= ~PB_SDA
b37c7e5e 1306
c609719b
WD
1307 I2C_SCL(bit)
1308
1309 If <bit> is TRUE, sets the I2C clock line high. If it
1310 is FALSE, it clears it (low).
1311
b37c7e5e 1312 eg: #define I2C_SCL(bit) \
2535d602 1313 if(bit) immr->im_cpm.cp_pbdat |= PB_SCL; \
ba56f625 1314 else immr->im_cpm.cp_pbdat &= ~PB_SCL
b37c7e5e 1315
c609719b
WD
1316 I2C_DELAY
1317
1318 This delay is invoked four times per clock cycle so this
1319 controls the rate of data transfer. The data rate thus
b37c7e5e 1320 is 1 / (I2C_DELAY * 4). Often defined to be something
945af8d7
WD
1321 like:
1322
b37c7e5e 1323 #define I2C_DELAY udelay(2)
c609719b 1324
47cd00fa
WD
1325 CFG_I2C_INIT_BOARD
1326
8bde7f77
WD
1327 When a board is reset during an i2c bus transfer
1328 chips might think that the current transfer is still
1329 in progress. On some boards it is possible to access
1330 the i2c SCLK line directly, either by using the
1331 processor pin as a GPIO or by having a second pin
1332 connected to the bus. If this option is defined a
1333 custom i2c_init_board() routine in boards/xxx/board.c
1334 is run early in the boot sequence.
47cd00fa 1335
17ea1177
WD
1336 CONFIG_I2CFAST (PPC405GP|PPC405EP only)
1337
1338 This option enables configuration of bi_iic_fast[] flags
1339 in u-boot bd_info structure based on u-boot environment
1340 variable "i2cfast". (see also i2cfast)
1341
bb99ad6d
BW
1342 CONFIG_I2C_MULTI_BUS
1343
1344 This option allows the use of multiple I2C buses, each of which
1345 must have a controller. At any point in time, only one bus is
1346 active. To switch to a different bus, use the 'i2c dev' command.
1347 Note that bus numbering is zero-based.
1348
1349 CFG_I2C_NOPROBES
1350
1351 This option specifies a list of I2C devices that will be skipped
1352 when the 'i2c probe' command is issued (or 'iprobe' using the legacy
1353 command). If CONFIG_I2C_MULTI_BUS is set, specify a list of bus-device
218ca724 1354 pairs. Otherwise, specify a 1D array of device addresses
bb99ad6d
BW
1355
1356 e.g.
1357 #undef CONFIG_I2C_MULTI_BUS
1358 #define CFG_I2C_NOPROBES {0x50,0x68}
1359
1360 will skip addresses 0x50 and 0x68 on a board with one I2C bus
1361
1362 #define CONFIG_I2C_MULTI_BUS
1363 #define CFG_I2C_MULTI_NOPROBES {{0,0x50},{0,0x68},{1,0x54}}
1364
1365 will skip addresses 0x50 and 0x68 on bus 0 and address 0x54 on bus 1
1366
be5e6181
TT
1367 CFG_SPD_BUS_NUM
1368
1369 If defined, then this indicates the I2C bus number for DDR SPD.
1370 If not defined, then U-Boot assumes that SPD is on I2C bus 0.
1371
0dc018ec
SR
1372 CFG_RTC_BUS_NUM
1373
1374 If defined, then this indicates the I2C bus number for the RTC.
1375 If not defined, then U-Boot assumes that RTC is on I2C bus 0.
1376
1377 CFG_DTT_BUS_NUM
1378
1379 If defined, then this indicates the I2C bus number for the DTT.
1380 If not defined, then U-Boot assumes that DTT is on I2C bus 0.
1381
be5e6181
TT
1382 CONFIG_FSL_I2C
1383
1384 Define this option if you want to use Freescale's I2C driver in
7817cb20 1385 drivers/i2c/fsl_i2c.c.
be5e6181
TT
1386
1387
c609719b
WD
1388- SPI Support: CONFIG_SPI
1389
1390 Enables SPI driver (so far only tested with
1391 SPI EEPROM, also an instance works with Crystal A/D and
1392 D/As on the SACSng board)
1393
1394 CONFIG_SPI_X
1395
1396 Enables extended (16-bit) SPI EEPROM addressing.
1397 (symmetrical to CONFIG_I2C_X)
1398
1399 CONFIG_SOFT_SPI
1400
43d9616c
WD
1401 Enables a software (bit-bang) SPI driver rather than
1402 using hardware support. This is a general purpose
1403 driver that only requires three general I/O port pins
1404 (two outputs, one input) to function. If this is
1405 defined, the board configuration must define several
1406 SPI configuration items (port pins to use, etc). For
1407 an example, see include/configs/sacsng.h.
c609719b 1408
04a9e118
BW
1409 CONFIG_HARD_SPI
1410
1411 Enables a hardware SPI driver for general-purpose reads
1412 and writes. As with CONFIG_SOFT_SPI, the board configuration
1413 must define a list of chip-select function pointers.
1414 Currently supported on some MPC8xxx processors. For an
1415 example, see include/configs/mpc8349emds.h.
1416
0133502e 1417- FPGA Support: CONFIG_FPGA
c609719b 1418
0133502e
MF
1419 Enables FPGA subsystem.
1420
1421 CONFIG_FPGA_<vendor>
1422
1423 Enables support for specific chip vendors.
1424 (ALTERA, XILINX)
c609719b 1425
0133502e 1426 CONFIG_FPGA_<family>
c609719b 1427
0133502e
MF
1428 Enables support for FPGA family.
1429 (SPARTAN2, SPARTAN3, VIRTEX2, CYCLONE2, ACEX1K, ACEX)
1430
1431 CONFIG_FPGA_COUNT
1432
1433 Specify the number of FPGA devices to support.
c609719b 1434
8bde7f77 1435 CFG_FPGA_PROG_FEEDBACK
c609719b 1436
8bde7f77 1437 Enable printing of hash marks during FPGA configuration.
c609719b
WD
1438
1439 CFG_FPGA_CHECK_BUSY
1440
43d9616c
WD
1441 Enable checks on FPGA configuration interface busy
1442 status by the configuration function. This option
1443 will require a board or device specific function to
1444 be written.
c609719b
WD
1445
1446 CONFIG_FPGA_DELAY
1447
1448 If defined, a function that provides delays in the FPGA
1449 configuration driver.
1450
1451 CFG_FPGA_CHECK_CTRLC
1452 Allow Control-C to interrupt FPGA configuration
1453
1454 CFG_FPGA_CHECK_ERROR
1455
43d9616c
WD
1456 Check for configuration errors during FPGA bitfile
1457 loading. For example, abort during Virtex II
1458 configuration if the INIT_B line goes low (which
1459 indicated a CRC error).
c609719b
WD
1460
1461 CFG_FPGA_WAIT_INIT
1462
43d9616c
WD
1463 Maximum time to wait for the INIT_B line to deassert
1464 after PROB_B has been deasserted during a Virtex II
1465 FPGA configuration sequence. The default time is 500
1466 mS.
c609719b
WD
1467
1468 CFG_FPGA_WAIT_BUSY
1469
43d9616c
WD
1470 Maximum time to wait for BUSY to deassert during
1471 Virtex II FPGA configuration. The default is 5 mS.
c609719b
WD
1472
1473 CFG_FPGA_WAIT_CONFIG
1474
43d9616c
WD
1475 Time to wait after FPGA configuration. The default is
1476 200 mS.
c609719b
WD
1477
1478- Configuration Management:
1479 CONFIG_IDENT_STRING
1480
43d9616c
WD
1481 If defined, this string will be added to the U-Boot
1482 version information (U_BOOT_VERSION)
c609719b
WD
1483
1484- Vendor Parameter Protection:
1485
43d9616c
WD
1486 U-Boot considers the values of the environment
1487 variables "serial#" (Board Serial Number) and
7152b1d0 1488 "ethaddr" (Ethernet Address) to be parameters that
43d9616c
WD
1489 are set once by the board vendor / manufacturer, and
1490 protects these variables from casual modification by
1491 the user. Once set, these variables are read-only,
1492 and write or delete attempts are rejected. You can
1493 change this behviour:
c609719b
WD
1494
1495 If CONFIG_ENV_OVERWRITE is #defined in your config
1496 file, the write protection for vendor parameters is
47cd00fa 1497 completely disabled. Anybody can change or delete
c609719b
WD
1498 these parameters.
1499
1500 Alternatively, if you #define _both_ CONFIG_ETHADDR
1501 _and_ CONFIG_OVERWRITE_ETHADDR_ONCE, a default
1502 ethernet address is installed in the environment,
1503 which can be changed exactly ONCE by the user. [The
1504 serial# is unaffected by this, i. e. it remains
1505 read-only.]
1506
1507- Protected RAM:
1508 CONFIG_PRAM
1509
1510 Define this variable to enable the reservation of
1511 "protected RAM", i. e. RAM which is not overwritten
1512 by U-Boot. Define CONFIG_PRAM to hold the number of
1513 kB you want to reserve for pRAM. You can overwrite
1514 this default value by defining an environment
1515 variable "pram" to the number of kB you want to
1516 reserve. Note that the board info structure will
1517 still show the full amount of RAM. If pRAM is
1518 reserved, a new environment variable "mem" will
1519 automatically be defined to hold the amount of
1520 remaining RAM in a form that can be passed as boot
1521 argument to Linux, for instance like that:
1522
fe126d8b 1523 setenv bootargs ... mem=\${mem}
c609719b
WD
1524 saveenv
1525
1526 This way you can tell Linux not to use this memory,
1527 either, which results in a memory region that will
1528 not be affected by reboots.
1529
1530 *WARNING* If your board configuration uses automatic
1531 detection of the RAM size, you must make sure that
1532 this memory test is non-destructive. So far, the
1533 following board configurations are known to be
1534 "pRAM-clean":
1535
1536 ETX094, IVMS8, IVML24, SPD8xx, TQM8xxL,
1537 HERMES, IP860, RPXlite, LWMON, LANTEC,
1538 PCU_E, FLAGADM, TQM8260
1539
1540- Error Recovery:
1541 CONFIG_PANIC_HANG
1542
1543 Define this variable to stop the system in case of a
1544 fatal error, so that you have to reset it manually.
1545 This is probably NOT a good idea for an embedded
1546 system where you want to system to reboot
1547 automatically as fast as possible, but it may be
1548 useful during development since you can try to debug
1549 the conditions that lead to the situation.
1550
1551 CONFIG_NET_RETRY_COUNT
1552
43d9616c
WD
1553 This variable defines the number of retries for
1554 network operations like ARP, RARP, TFTP, or BOOTP
1555 before giving up the operation. If not defined, a
1556 default value of 5 is used.
c609719b
WD
1557
1558- Command Interpreter:
8078f1a5 1559 CONFIG_AUTO_COMPLETE
04a85b3b
WD
1560
1561 Enable auto completion of commands using TAB.
1562
a9398e01
WD
1563 Note that this feature has NOT been implemented yet
1564 for the "hush" shell.
8078f1a5
WD
1565
1566
c609719b
WD
1567 CFG_HUSH_PARSER
1568
1569 Define this variable to enable the "hush" shell (from
1570 Busybox) as command line interpreter, thus enabling
1571 powerful command line syntax like
1572 if...then...else...fi conditionals or `&&' and '||'
1573 constructs ("shell scripts").
1574
1575 If undefined, you get the old, much simpler behaviour
1576 with a somewhat smaller memory footprint.
1577
1578
1579 CFG_PROMPT_HUSH_PS2
1580
1581 This defines the secondary prompt string, which is
1582 printed when the command interpreter needs more input
1583 to complete a command. Usually "> ".
1584
1585 Note:
1586
8bde7f77
WD
1587 In the current implementation, the local variables
1588 space and global environment variables space are
1589 separated. Local variables are those you define by
1590 simply typing `name=value'. To access a local
1591 variable later on, you have write `$name' or
1592 `${name}'; to execute the contents of a variable
1593 directly type `$name' at the command prompt.
c609719b 1594
43d9616c
WD
1595 Global environment variables are those you use
1596 setenv/printenv to work with. To run a command stored
1597 in such a variable, you need to use the run command,
1598 and you must not use the '$' sign to access them.
c609719b
WD
1599
1600 To store commands and special characters in a
1601 variable, please use double quotation marks
1602 surrounding the whole text of the variable, instead
1603 of the backslashes before semicolons and special
1604 symbols.
1605
aa0c71ac
WD
1606- Commandline Editing and History:
1607 CONFIG_CMDLINE_EDITING
1608
b9365a26
WD
1609 Enable editiong and History functions for interactive
1610 commandline input operations
aa0c71ac 1611
a8c7c708 1612- Default Environment:
c609719b
WD
1613 CONFIG_EXTRA_ENV_SETTINGS
1614
43d9616c
WD
1615 Define this to contain any number of null terminated
1616 strings (variable = value pairs) that will be part of
7152b1d0 1617 the default environment compiled into the boot image.
2262cfee 1618
43d9616c
WD
1619 For example, place something like this in your
1620 board's config file:
c609719b
WD
1621
1622 #define CONFIG_EXTRA_ENV_SETTINGS \
1623 "myvar1=value1\0" \
1624 "myvar2=value2\0"
1625
43d9616c
WD
1626 Warning: This method is based on knowledge about the
1627 internal format how the environment is stored by the
1628 U-Boot code. This is NOT an official, exported
1629 interface! Although it is unlikely that this format
7152b1d0 1630 will change soon, there is no guarantee either.
c609719b
WD
1631 You better know what you are doing here.
1632
43d9616c
WD
1633 Note: overly (ab)use of the default environment is
1634 discouraged. Make sure to check other ways to preset
1635 the environment like the autoscript function or the
1636 boot command first.
c609719b 1637
a8c7c708 1638- DataFlash Support:
2abbe075
WD
1639 CONFIG_HAS_DATAFLASH
1640
8bde7f77
WD
1641 Defining this option enables DataFlash features and
1642 allows to read/write in Dataflash via the standard
1643 commands cp, md...
2abbe075 1644
3f85ce27
WD
1645- SystemACE Support:
1646 CONFIG_SYSTEMACE
1647
1648 Adding this option adds support for Xilinx SystemACE
1649 chips attached via some sort of local bus. The address
1650 of the chip must alsh be defined in the
1651 CFG_SYSTEMACE_BASE macro. For example:
1652
1653 #define CONFIG_SYSTEMACE
1654 #define CFG_SYSTEMACE_BASE 0xf0000000
1655
1656 When SystemACE support is added, the "ace" device type
1657 becomes available to the fat commands, i.e. fatls.
1658
ecb0ccd9
WD
1659- TFTP Fixed UDP Port:
1660 CONFIG_TFTP_PORT
1661
28cb9375 1662 If this is defined, the environment variable tftpsrcp
ecb0ccd9 1663 is used to supply the TFTP UDP source port value.
28cb9375 1664 If tftpsrcp isn't defined, the normal pseudo-random port
ecb0ccd9
WD
1665 number generator is used.
1666
28cb9375
WD
1667 Also, the environment variable tftpdstp is used to supply
1668 the TFTP UDP destination port value. If tftpdstp isn't
1669 defined, the normal port 69 is used.
1670
1671 The purpose for tftpsrcp is to allow a TFTP server to
ecb0ccd9
WD
1672 blindly start the TFTP transfer using the pre-configured
1673 target IP address and UDP port. This has the effect of
1674 "punching through" the (Windows XP) firewall, allowing
1675 the remainder of the TFTP transfer to proceed normally.
1676 A better solution is to properly configure the firewall,
1677 but sometimes that is not allowed.
1678
a8c7c708 1679- Show boot progress:
c609719b
WD
1680 CONFIG_SHOW_BOOT_PROGRESS
1681
43d9616c
WD
1682 Defining this option allows to add some board-
1683 specific code (calling a user-provided function
1684 "show_boot_progress(int)") that enables you to show
1685 the system's boot progress on some display (for
1686 example, some LED's) on your board. At the moment,
1687 the following checkpoints are implemented:
c609719b 1688
1372cce2
MB
1689Legacy uImage format:
1690
c609719b
WD
1691 Arg Where When
1692 1 common/cmd_bootm.c before attempting to boot an image
ba56f625 1693 -1 common/cmd_bootm.c Image header has bad magic number
c609719b 1694 2 common/cmd_bootm.c Image header has correct magic number
ba56f625 1695 -2 common/cmd_bootm.c Image header has bad checksum
c609719b 1696 3 common/cmd_bootm.c Image header has correct checksum
ba56f625 1697 -3 common/cmd_bootm.c Image data has bad checksum
c609719b
WD
1698 4 common/cmd_bootm.c Image data has correct checksum
1699 -4 common/cmd_bootm.c Image is for unsupported architecture
1700 5 common/cmd_bootm.c Architecture check OK
1372cce2 1701 -5 common/cmd_bootm.c Wrong Image Type (not kernel, multi)
c609719b
WD
1702 6 common/cmd_bootm.c Image Type check OK
1703 -6 common/cmd_bootm.c gunzip uncompression error
1704 -7 common/cmd_bootm.c Unimplemented compression type
1705 7 common/cmd_bootm.c Uncompression OK
1372cce2 1706 8 common/cmd_bootm.c No uncompress/copy overwrite error
c609719b 1707 -9 common/cmd_bootm.c Unsupported OS (not Linux, BSD, VxWorks, QNX)
1372cce2
MB
1708
1709 9 common/image.c Start initial ramdisk verification
1710 -10 common/image.c Ramdisk header has bad magic number
1711 -11 common/image.c Ramdisk header has bad checksum
1712 10 common/image.c Ramdisk header is OK
1713 -12 common/image.c Ramdisk data has bad checksum
1714 11 common/image.c Ramdisk data has correct checksum
1715 12 common/image.c Ramdisk verification complete, start loading
1716 -13 common/image.c Wrong Image Type (not PPC Linux Ramdisk)
1717 13 common/image.c Start multifile image verification
1718 14 common/image.c No initial ramdisk, no multifile, continue.
1719
1720 15 lib_<arch>/bootm.c All preparation done, transferring control to OS
c609719b 1721
11dadd54
WD
1722 -30 lib_ppc/board.c Fatal error, hang the system
1723 -31 post/post.c POST test failed, detected by post_output_backlog()
1724 -32 post/post.c POST test failed, detected by post_run_single()
63e73c9a 1725
566a494f
HS
1726 34 common/cmd_doc.c before loading a Image from a DOC device
1727 -35 common/cmd_doc.c Bad usage of "doc" command
1728 35 common/cmd_doc.c correct usage of "doc" command
1729 -36 common/cmd_doc.c No boot device
1730 36 common/cmd_doc.c correct boot device
1731 -37 common/cmd_doc.c Unknown Chip ID on boot device
1732 37 common/cmd_doc.c correct chip ID found, device available
1733 -38 common/cmd_doc.c Read Error on boot device
1734 38 common/cmd_doc.c reading Image header from DOC device OK
1735 -39 common/cmd_doc.c Image header has bad magic number
1736 39 common/cmd_doc.c Image header has correct magic number
1737 -40 common/cmd_doc.c Error reading Image from DOC device
1738 40 common/cmd_doc.c Image header has correct magic number
1739 41 common/cmd_ide.c before loading a Image from a IDE device
1740 -42 common/cmd_ide.c Bad usage of "ide" command
1741 42 common/cmd_ide.c correct usage of "ide" command
1742 -43 common/cmd_ide.c No boot device
1743 43 common/cmd_ide.c boot device found
1744 -44 common/cmd_ide.c Device not available
1745 44 common/cmd_ide.c Device available
1746 -45 common/cmd_ide.c wrong partition selected
1747 45 common/cmd_ide.c partition selected
1748 -46 common/cmd_ide.c Unknown partition table
1749 46 common/cmd_ide.c valid partition table found
1750 -47 common/cmd_ide.c Invalid partition type
1751 47 common/cmd_ide.c correct partition type
1752 -48 common/cmd_ide.c Error reading Image Header on boot device
1753 48 common/cmd_ide.c reading Image Header from IDE device OK
1754 -49 common/cmd_ide.c Image header has bad magic number
1755 49 common/cmd_ide.c Image header has correct magic number
1756 -50 common/cmd_ide.c Image header has bad checksum
1757 50 common/cmd_ide.c Image header has correct checksum
1758 -51 common/cmd_ide.c Error reading Image from IDE device
1759 51 common/cmd_ide.c reading Image from IDE device OK
1760 52 common/cmd_nand.c before loading a Image from a NAND device
1761 -53 common/cmd_nand.c Bad usage of "nand" command
1762 53 common/cmd_nand.c correct usage of "nand" command
1763 -54 common/cmd_nand.c No boot device
1764 54 common/cmd_nand.c boot device found
1765 -55 common/cmd_nand.c Unknown Chip ID on boot device
1766 55 common/cmd_nand.c correct chip ID found, device available
1767 -56 common/cmd_nand.c Error reading Image Header on boot device
1768 56 common/cmd_nand.c reading Image Header from NAND device OK
1769 -57 common/cmd_nand.c Image header has bad magic number
1770 57 common/cmd_nand.c Image header has correct magic number
1771 -58 common/cmd_nand.c Error reading Image from NAND device
1772 58 common/cmd_nand.c reading Image from NAND device OK
1773
1774 -60 common/env_common.c Environment has a bad CRC, using default
1775
1776 64 net/eth.c starting with Ethernetconfiguration.
1777 -64 net/eth.c no Ethernet found.
1778 65 net/eth.c Ethernet found.
1779
1780 -80 common/cmd_net.c usage wrong
1781 80 common/cmd_net.c before calling NetLoop()
1782 -81 common/cmd_net.c some error in NetLoop() occured
1783 81 common/cmd_net.c NetLoop() back without error
1784 -82 common/cmd_net.c size == 0 (File with size 0 loaded)
1785 82 common/cmd_net.c trying automatic boot
1786 83 common/cmd_net.c running autoscript
1787 -83 common/cmd_net.c some error in automatic boot or autoscript
1788 84 common/cmd_net.c end without errors
c609719b 1789
1372cce2
MB
1790FIT uImage format:
1791
1792 Arg Where When
1793 100 common/cmd_bootm.c Kernel FIT Image has correct format
1794 -100 common/cmd_bootm.c Kernel FIT Image has incorrect format
1795 101 common/cmd_bootm.c No Kernel subimage unit name, using configuration
1796 -101 common/cmd_bootm.c Can't get configuration for kernel subimage
1797 102 common/cmd_bootm.c Kernel unit name specified
1798 -103 common/cmd_bootm.c Can't get kernel subimage node offset
f773bea8 1799 103 common/cmd_bootm.c Found configuration node
1372cce2
MB
1800 104 common/cmd_bootm.c Got kernel subimage node offset
1801 -104 common/cmd_bootm.c Kernel subimage hash verification failed
1802 105 common/cmd_bootm.c Kernel subimage hash verification OK
1803 -105 common/cmd_bootm.c Kernel subimage is for unsupported architecture
1804 106 common/cmd_bootm.c Architecture check OK
1805 -106 common/cmd_bootm.c Kernel subimage has wrong typea
1806 107 common/cmd_bootm.c Kernel subimge type OK
1807 -107 common/cmd_bootm.c Can't get kernel subimage data/size
1808 108 common/cmd_bootm.c Got kernel subimage data/size
1809 -108 common/cmd_bootm.c Wrong image type (not legacy, FIT)
1810 -109 common/cmd_bootm.c Can't get kernel subimage type
1811 -110 common/cmd_bootm.c Can't get kernel subimage comp
1812 -111 common/cmd_bootm.c Can't get kernel subimage os
1813 -112 common/cmd_bootm.c Can't get kernel subimage load address
1814 -113 common/cmd_bootm.c Image uncompress/copy overwrite error
1815
1816 120 common/image.c Start initial ramdisk verification
1817 -120 common/image.c Ramdisk FIT image has incorrect format
1818 121 common/image.c Ramdisk FIT image has correct format
1819 122 common/image.c No Ramdisk subimage unit name, using configuration
1820 -122 common/image.c Can't get configuration for ramdisk subimage
1821 123 common/image.c Ramdisk unit name specified
1822 -124 common/image.c Can't get ramdisk subimage node offset
1823 125 common/image.c Got ramdisk subimage node offset
1824 -125 common/image.c Ramdisk subimage hash verification failed
1825 126 common/image.c Ramdisk subimage hash verification OK
1826 -126 common/image.c Ramdisk subimage for unsupported architecture
1827 127 common/image.c Architecture check OK
1828 -127 common/image.c Can't get ramdisk subimage data/size
1829 128 common/image.c Got ramdisk subimage data/size
1830 129 common/image.c Can't get ramdisk load address
1831 -129 common/image.c Got ramdisk load address
1832
1833 -130 common/cmd_doc.c Icorrect FIT image format
1834 131 common/cmd_doc.c FIT image format OK
1835
1836 -140 common/cmd_ide.c Icorrect FIT image format
1837 141 common/cmd_ide.c FIT image format OK
1838
1839 -150 common/cmd_nand.c Icorrect FIT image format
1840 151 common/cmd_nand.c FIT image format OK
1841
1842
c609719b
WD
1843Modem Support:
1844--------------
1845
85ec0bcc 1846[so far only for SMDK2400 and TRAB boards]
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WD
1847
1848- Modem support endable:
1849 CONFIG_MODEM_SUPPORT
1850
1851- RTS/CTS Flow control enable:
1852 CONFIG_HWFLOW
1853
1854- Modem debug support:
1855 CONFIG_MODEM_SUPPORT_DEBUG
1856
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WD
1857 Enables debugging stuff (char screen[1024], dbg())
1858 for modem support. Useful only with BDI2000.
c609719b 1859
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WD
1860- Interrupt support (PPC):
1861
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WD
1862 There are common interrupt_init() and timer_interrupt()
1863 for all PPC archs. interrupt_init() calls interrupt_init_cpu()
1864 for cpu specific initialization. interrupt_init_cpu()
1865 should set decrementer_count to appropriate value. If
1866 cpu resets decrementer automatically after interrupt
1867 (ppc4xx) it should set decrementer_count to zero.
1868 timer_interrupt() calls timer_interrupt_cpu() for cpu
1869 specific handling. If board has watchdog / status_led
1870 / other_activity_monitor it works automatically from
1871 general timer_interrupt().
a8c7c708 1872
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WD
1873- General:
1874
43d9616c
WD
1875 In the target system modem support is enabled when a
1876 specific key (key combination) is pressed during
1877 power-on. Otherwise U-Boot will boot normally
1878 (autoboot). The key_pressed() fuction is called from
1879 board_init(). Currently key_pressed() is a dummy
1880 function, returning 1 and thus enabling modem
1881 initialization.
c609719b 1882
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WD
1883 If there are no modem init strings in the
1884 environment, U-Boot proceed to autoboot; the
1885 previous output (banner, info printfs) will be
1886 supressed, though.
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WD
1887
1888 See also: doc/README.Modem
1889
1890
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WD
1891Configuration Settings:
1892-----------------------
1893
1894- CFG_LONGHELP: Defined when you want long help messages included;
1895 undefine this when you're short of memory.
1896
1897- CFG_PROMPT: This is what U-Boot prints on the console to
1898 prompt for user input.
1899
1900- CFG_CBSIZE: Buffer size for input from the Console
1901
1902- CFG_PBSIZE: Buffer size for Console output
1903
1904- CFG_MAXARGS: max. Number of arguments accepted for monitor commands
1905
1906- CFG_BARGSIZE: Buffer size for Boot Arguments which are passed to
1907 the application (usually a Linux kernel) when it is
1908 booted
1909
1910- CFG_BAUDRATE_TABLE:
1911 List of legal baudrate settings for this board.
1912
1913- CFG_CONSOLE_INFO_QUIET
8bde7f77 1914 Suppress display of console information at boot.
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WD
1915
1916- CFG_CONSOLE_IS_IN_ENV
8bde7f77
WD
1917 If the board specific function
1918 extern int overwrite_console (void);
1919 returns 1, the stdin, stderr and stdout are switched to the
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WD
1920 serial port, else the settings in the environment are used.
1921
1922- CFG_CONSOLE_OVERWRITE_ROUTINE
8bde7f77 1923 Enable the call to overwrite_console().
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1924
1925- CFG_CONSOLE_ENV_OVERWRITE
1926 Enable overwrite of previous console environment settings.
1927
1928- CFG_MEMTEST_START, CFG_MEMTEST_END:
1929 Begin and End addresses of the area used by the
1930 simple memory test.
1931
1932- CFG_ALT_MEMTEST:
8bde7f77 1933 Enable an alternate, more extensive memory test.
c609719b 1934
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WD
1935- CFG_MEMTEST_SCRATCH:
1936 Scratch address used by the alternate memory test
1937 You only need to set this if address zero isn't writeable
1938
14f73ca6
SR
1939- CFG_MEM_TOP_HIDE (PPC only):
1940 If CFG_MEM_TOP_HIDE is defined in the board config header,
1941 this specified memory area will get subtracted from the top
1942 (end) of ram and won't get "touched" at all by U-Boot. By
1943 fixing up gd->ram_size the Linux kernel should gets passed
1944 the now "corrected" memory size and won't touch it either.
1945 This should work for arch/ppc and arch/powerpc. Only Linux
5e12e75d 1946 board ports in arch/powerpc with bootwrapper support that
14f73ca6 1947 recalculate the memory size from the SDRAM controller setup
5e12e75d 1948 will have to get fixed in Linux additionally.
14f73ca6
SR
1949
1950 This option can be used as a workaround for the 440EPx/GRx
1951 CHIP 11 errata where the last 256 bytes in SDRAM shouldn't
1952 be touched.
1953
1954 WARNING: Please make sure that this value is a multiple of
1955 the Linux page size (normally 4k). If this is not the case,
1956 then the end address of the Linux memory will be located at a
1957 non page size aligned address and this could cause major
1958 problems.
1959
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WD
1960- CFG_TFTP_LOADADDR:
1961 Default load address for network file downloads
1962
1963- CFG_LOADS_BAUD_CHANGE:
1964 Enable temporary baudrate change while serial download
1965
1966- CFG_SDRAM_BASE:
1967 Physical start address of SDRAM. _Must_ be 0 here.
1968
1969- CFG_MBIO_BASE:
1970 Physical start address of Motherboard I/O (if using a
1971 Cogent motherboard)
1972
1973- CFG_FLASH_BASE:
1974 Physical start address of Flash memory.
1975
1976- CFG_MONITOR_BASE:
1977 Physical start address of boot monitor code (set by
1978 make config files to be same as the text base address
1979 (TEXT_BASE) used when linking) - same as
1980 CFG_FLASH_BASE when booting from flash.
1981
1982- CFG_MONITOR_LEN:
8bde7f77
WD
1983 Size of memory reserved for monitor code, used to
1984 determine _at_compile_time_ (!) if the environment is
1985 embedded within the U-Boot image, or in a separate
1986 flash sector.
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WD
1987
1988- CFG_MALLOC_LEN:
1989 Size of DRAM reserved for malloc() use.
1990
15940c9a
SR
1991- CFG_BOOTM_LEN:
1992 Normally compressed uImages are limited to an
1993 uncompressed size of 8 MBytes. If this is not enough,
1994 you can define CFG_BOOTM_LEN in your board config file
1995 to adjust this setting to your needs.
1996
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WD
1997- CFG_BOOTMAPSZ:
1998 Maximum size of memory mapped by the startup code of
1999 the Linux kernel; all data that must be processed by
7d721e34
BS
2000 the Linux kernel (bd_info, boot arguments, FDT blob if
2001 used) must be put below this limit, unless "bootm_low"
2002 enviroment variable is defined and non-zero. In such case
2003 all data for the Linux kernel must be between "bootm_low"
2004 and "bootm_low" + CFG_BOOTMAPSZ.
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WD
2005
2006- CFG_MAX_FLASH_BANKS:
2007 Max number of Flash memory banks
2008
2009- CFG_MAX_FLASH_SECT:
2010 Max number of sectors on a Flash chip
2011
2012- CFG_FLASH_ERASE_TOUT:
2013 Timeout for Flash erase operations (in ms)
2014
2015- CFG_FLASH_WRITE_TOUT:
2016 Timeout for Flash write operations (in ms)
2017
8564acf9
WD
2018- CFG_FLASH_LOCK_TOUT
2019 Timeout for Flash set sector lock bit operation (in ms)
2020
2021- CFG_FLASH_UNLOCK_TOUT
2022 Timeout for Flash clear lock bits operation (in ms)
2023
2024- CFG_FLASH_PROTECTION
2025 If defined, hardware flash sectors protection is used
2026 instead of U-Boot software protection.
2027
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WD
2028- CFG_DIRECT_FLASH_TFTP:
2029
2030 Enable TFTP transfers directly to flash memory;
2031 without this option such a download has to be
2032 performed in two steps: (1) download to RAM, and (2)
2033 copy from RAM to flash.
2034
2035 The two-step approach is usually more reliable, since
2036 you can check if the download worked before you erase
2037 the flash, but in some situations (when sytem RAM is
2038 too limited to allow for a tempory copy of the
2039 downloaded image) this option may be very useful.
2040
2041- CFG_FLASH_CFI:
43d9616c 2042 Define if the flash driver uses extra elements in the
5653fc33
WD
2043 common flash structure for storing flash geometry.
2044
2045- CFG_FLASH_CFI_DRIVER
2046 This option also enables the building of the cfi_flash driver
2047 in the drivers directory
c609719b 2048
96ef831f
GL
2049- CFG_FLASH_USE_BUFFER_WRITE
2050 Use buffered writes to flash.
2051
2052- CONFIG_FLASH_SPANSION_S29WS_N
2053 s29ws-n MirrorBit flash has non-standard addresses for buffered
2054 write commands.
2055
5568e613
SR
2056- CFG_FLASH_QUIET_TEST
2057 If this option is defined, the common CFI flash doesn't
2058 print it's warning upon not recognized FLASH banks. This
2059 is useful, if some of the configured banks are only
2060 optionally available.
2061
9a042e9c
JVB
2062- CONFIG_FLASH_SHOW_PROGRESS
2063 If defined (must be an integer), print out countdown
2064 digits and dots. Recommended value: 45 (9..1) for 80
2065 column displays, 15 (3..1) for 40 column displays.
2066
53cf9435
SR
2067- CFG_RX_ETH_BUFFER:
2068 Defines the number of ethernet receive buffers. On some
2069 ethernet controllers it is recommended to set this value
2070 to 8 or even higher (EEPRO100 or 405 EMAC), since all
2071 buffers can be full shortly after enabling the interface
2072 on high ethernet traffic.
2073 Defaults to 4 if not defined.
2074
c609719b
WD
2075The following definitions that deal with the placement and management
2076of environment data (variable area); in general, we support the
2077following configurations:
2078
2079- CFG_ENV_IS_IN_FLASH:
2080
2081 Define this if the environment is in flash memory.
2082
2083 a) The environment occupies one whole flash sector, which is
2084 "embedded" in the text segment with the U-Boot code. This
2085 happens usually with "bottom boot sector" or "top boot
2086 sector" type flash chips, which have several smaller
2087 sectors at the start or the end. For instance, such a
2088 layout can have sector sizes of 8, 2x4, 16, Nx32 kB. In
2089 such a case you would place the environment in one of the
2090 4 kB sectors - with U-Boot code before and after it. With
2091 "top boot sector" type flash chips, you would put the
2092 environment in one of the last sectors, leaving a gap
2093 between U-Boot and the environment.
2094
2095 - CFG_ENV_OFFSET:
2096
2097 Offset of environment data (variable area) to the
2098 beginning of flash memory; for instance, with bottom boot
2099 type flash chips the second sector can be used: the offset
2100 for this sector is given here.
2101
2102 CFG_ENV_OFFSET is used relative to CFG_FLASH_BASE.
2103
2104 - CFG_ENV_ADDR:
2105
2106 This is just another way to specify the start address of
2107 the flash sector containing the environment (instead of
2108 CFG_ENV_OFFSET).
2109
2110 - CFG_ENV_SECT_SIZE:
2111
2112 Size of the sector containing the environment.
2113
2114
2115 b) Sometimes flash chips have few, equal sized, BIG sectors.
2116 In such a case you don't want to spend a whole sector for
2117 the environment.
2118
2119 - CFG_ENV_SIZE:
2120
2121 If you use this in combination with CFG_ENV_IS_IN_FLASH
2122 and CFG_ENV_SECT_SIZE, you can specify to use only a part
2123 of this flash sector for the environment. This saves
2124 memory for the RAM copy of the environment.
2125
2126 It may also save flash memory if you decide to use this
2127 when your environment is "embedded" within U-Boot code,
2128 since then the remainder of the flash sector could be used
2129 for U-Boot code. It should be pointed out that this is
2130 STRONGLY DISCOURAGED from a robustness point of view:
2131 updating the environment in flash makes it always
2132 necessary to erase the WHOLE sector. If something goes
2133 wrong before the contents has been restored from a copy in
2134 RAM, your target system will be dead.
2135
2136 - CFG_ENV_ADDR_REDUND
2137 CFG_ENV_SIZE_REDUND
2138
43d9616c
WD
2139 These settings describe a second storage area used to hold
2140 a redundand copy of the environment data, so that there is
3e38691e 2141 a valid backup copy in case there is a power failure during
43d9616c 2142 a "saveenv" operation.
c609719b
WD
2143
2144BE CAREFUL! Any changes to the flash layout, and some changes to the
2145source code will make it necessary to adapt <board>/u-boot.lds*
2146accordingly!
2147
2148
2149- CFG_ENV_IS_IN_NVRAM:
2150
2151 Define this if you have some non-volatile memory device
2152 (NVRAM, battery buffered SRAM) which you want to use for the
2153 environment.
2154
2155 - CFG_ENV_ADDR:
2156 - CFG_ENV_SIZE:
2157
2158 These two #defines are used to determin the memory area you
2159 want to use for environment. It is assumed that this memory
2160 can just be read and written to, without any special
2161 provision.
2162
2163BE CAREFUL! The first access to the environment happens quite early
2164in U-Boot initalization (when we try to get the setting of for the
2165console baudrate). You *MUST* have mappend your NVRAM area then, or
2166U-Boot will hang.
2167
2168Please note that even with NVRAM we still use a copy of the
2169environment in RAM: we could work on NVRAM directly, but we want to
2170keep settings there always unmodified except somebody uses "saveenv"
2171to save the current settings.
2172
2173
2174- CFG_ENV_IS_IN_EEPROM:
2175
2176 Use this if you have an EEPROM or similar serial access
2177 device and a driver for it.
2178
2179 - CFG_ENV_OFFSET:
2180 - CFG_ENV_SIZE:
2181
2182 These two #defines specify the offset and size of the
2183 environment area within the total memory of your EEPROM.
2184
2185 - CFG_I2C_EEPROM_ADDR:
2186 If defined, specified the chip address of the EEPROM device.
2187 The default address is zero.
2188
2189 - CFG_EEPROM_PAGE_WRITE_BITS:
2190 If defined, the number of bits used to address bytes in a
2191 single page in the EEPROM device. A 64 byte page, for example
2192 would require six bits.
2193
2194 - CFG_EEPROM_PAGE_WRITE_DELAY_MS:
2195 If defined, the number of milliseconds to delay between
ba56f625 2196 page writes. The default is zero milliseconds.
c609719b
WD
2197
2198 - CFG_I2C_EEPROM_ADDR_LEN:
2199 The length in bytes of the EEPROM memory array address. Note
2200 that this is NOT the chip address length!
2201
5cf91d6b
WD
2202 - CFG_I2C_EEPROM_ADDR_OVERFLOW:
2203 EEPROM chips that implement "address overflow" are ones
2204 like Catalyst 24WC04/08/16 which has 9/10/11 bits of
2205 address and the extra bits end up in the "chip address" bit
2206 slots. This makes a 24WC08 (1Kbyte) chip look like four 256
2207 byte chips.
2208
2209 Note that we consider the length of the address field to
2210 still be one byte because the extra address bits are hidden
2211 in the chip address.
2212
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WD
2213 - CFG_EEPROM_SIZE:
2214 The size in bytes of the EEPROM device.
2215
c609719b 2216
5779d8d9
WD
2217- CFG_ENV_IS_IN_DATAFLASH:
2218
d4ca31c4 2219 Define this if you have a DataFlash memory device which you
5779d8d9
WD
2220 want to use for the environment.
2221
2222 - CFG_ENV_OFFSET:
2223 - CFG_ENV_ADDR:
2224 - CFG_ENV_SIZE:
2225
2226 These three #defines specify the offset and size of the
2227 environment area within the total memory of your DataFlash placed
2228 at the specified address.
2229
13a5695b
WD
2230- CFG_ENV_IS_IN_NAND:
2231
2232 Define this if you have a NAND device which you want to use
2233 for the environment.
2234
2235 - CFG_ENV_OFFSET:
2236 - CFG_ENV_SIZE:
2237
2238 These two #defines specify the offset and size of the environment
2239 area within the first NAND device.
5779d8d9 2240
e443c944
MK
2241 - CFG_ENV_OFFSET_REDUND
2242
2243 This setting describes a second storage area of CFG_ENV_SIZE
2244 size used to hold a redundant copy of the environment data,
2245 so that there is a valid backup copy in case there is a
2246 power failure during a "saveenv" operation.
2247
2248 Note: CFG_ENV_OFFSET and CFG_ENV_OFFSET_REDUND must be aligned
2249 to a block boundary, and CFG_ENV_SIZE must be a multiple of
2250 the NAND devices block size.
2251
c609719b
WD
2252- CFG_SPI_INIT_OFFSET
2253
2254 Defines offset to the initial SPI buffer area in DPRAM. The
2255 area is used at an early stage (ROM part) if the environment
2256 is configured to reside in the SPI EEPROM: We need a 520 byte
2257 scratch DPRAM area. It is used between the two initialization
2258 calls (spi_init_f() and spi_init_r()). A value of 0xB00 seems
2259 to be a good choice since it makes it far enough from the
2260 start of the data area as well as from the stack pointer.
2261
e881cb56 2262Please note that the environment is read-only until the monitor
c609719b
WD
2263has been relocated to RAM and a RAM copy of the environment has been
2264created; also, when using EEPROM you will have to use getenv_r()
2265until then to read environment variables.
2266
85ec0bcc
WD
2267The environment is protected by a CRC32 checksum. Before the monitor
2268is relocated into RAM, as a result of a bad CRC you will be working
2269with the compiled-in default environment - *silently*!!! [This is
2270necessary, because the first environment variable we need is the
2271"baudrate" setting for the console - if we have a bad CRC, we don't
2272have any device yet where we could complain.]
c609719b
WD
2273
2274Note: once the monitor has been relocated, then it will complain if
2275the default environment is used; a new CRC is computed as soon as you
85ec0bcc 2276use the "saveenv" command to store a valid environment.
c609719b 2277
fc3e2165 2278- CFG_FAULT_ECHO_LINK_DOWN:
42d1f039 2279 Echo the inverted Ethernet link state to the fault LED.
fc3e2165
WD
2280
2281 Note: If this option is active, then CFG_FAULT_MII_ADDR
2282 also needs to be defined.
2283
2284- CFG_FAULT_MII_ADDR:
42d1f039 2285 MII address of the PHY to check for the Ethernet link state.
c609719b 2286
c40b2956
WD
2287- CFG_64BIT_VSPRINTF:
2288 Makes vsprintf (and all *printf functions) support printing
2289 of 64bit values by using the L quantifier
2290
2291- CFG_64BIT_STRTOUL:
2292 Adds simple_strtoull that returns a 64bit value
2293
c609719b 2294Low Level (hardware related) configuration options:
dc7c9a1a 2295---------------------------------------------------
c609719b
WD
2296
2297- CFG_CACHELINE_SIZE:
2298 Cache Line Size of the CPU.
2299
2300- CFG_DEFAULT_IMMR:
2301 Default address of the IMMR after system reset.
2535d602 2302
42d1f039
WD
2303 Needed on some 8260 systems (MPC8260ADS, PQ2FADS-ZU,
2304 and RPXsuper) to be able to adjust the position of
2305 the IMMR register after a reset.
c609719b 2306
7f6c2cbc
WD
2307- Floppy Disk Support:
2308 CFG_FDC_DRIVE_NUMBER
2309
2310 the default drive number (default value 0)
2311
2312 CFG_ISA_IO_STRIDE
2313
2314 defines the spacing between fdc chipset registers
2315 (default value 1)
2316
2317 CFG_ISA_IO_OFFSET
2318
43d9616c
WD
2319 defines the offset of register from address. It
2320 depends on which part of the data bus is connected to
2321 the fdc chipset. (default value 0)
7f6c2cbc 2322
43d9616c
WD
2323 If CFG_ISA_IO_STRIDE CFG_ISA_IO_OFFSET and
2324 CFG_FDC_DRIVE_NUMBER are undefined, they take their
2325 default value.
7f6c2cbc 2326
43d9616c
WD
2327 if CFG_FDC_HW_INIT is defined, then the function
2328 fdc_hw_init() is called at the beginning of the FDC
2329 setup. fdc_hw_init() must be provided by the board
2330 source code. It is used to make hardware dependant
2331 initializations.
7f6c2cbc 2332
25d6712a 2333- CFG_IMMR: Physical address of the Internal Memory.
efe2a4d5 2334 DO NOT CHANGE unless you know exactly what you're
25d6712a 2335 doing! (11-4) [MPC8xx/82xx systems only]
c609719b
WD
2336
2337- CFG_INIT_RAM_ADDR:
2338
7152b1d0 2339 Start address of memory area that can be used for
c609719b
WD
2340 initial data and stack; please note that this must be
2341 writable memory that is working WITHOUT special
2342 initialization, i. e. you CANNOT use normal RAM which
2343 will become available only after programming the
2344 memory controller and running certain initialization
2345 sequences.
2346
2347 U-Boot uses the following memory types:
2348 - MPC8xx and MPC8260: IMMR (internal memory of the CPU)
2349 - MPC824X: data cache
2350 - PPC4xx: data cache
2351
85ec0bcc 2352- CFG_GBL_DATA_OFFSET:
c609719b
WD
2353
2354 Offset of the initial data structure in the memory
2355 area defined by CFG_INIT_RAM_ADDR. Usually
85ec0bcc 2356 CFG_GBL_DATA_OFFSET is chosen such that the initial
c609719b
WD
2357 data is located at the end of the available space
2358 (sometimes written as (CFG_INIT_RAM_END -
2359 CFG_INIT_DATA_SIZE), and the initial stack is just
2360 below that area (growing from (CFG_INIT_RAM_ADDR +
85ec0bcc 2361 CFG_GBL_DATA_OFFSET) downward.
c609719b
WD
2362
2363 Note:
2364 On the MPC824X (or other systems that use the data
2365 cache for initial memory) the address chosen for
2366 CFG_INIT_RAM_ADDR is basically arbitrary - it must
2367 point to an otherwise UNUSED address space between
2368 the top of RAM and the start of the PCI space.
2369
2370- CFG_SIUMCR: SIU Module Configuration (11-6)
2371
2372- CFG_SYPCR: System Protection Control (11-9)
2373
2374- CFG_TBSCR: Time Base Status and Control (11-26)
2375
2376- CFG_PISCR: Periodic Interrupt Status and Control (11-31)
2377
2378- CFG_PLPRCR: PLL, Low-Power, and Reset Control Register (15-30)
2379
2380- CFG_SCCR: System Clock and reset Control Register (15-27)
2381
2382- CFG_OR_TIMING_SDRAM:
2383 SDRAM timing
2384
2385- CFG_MAMR_PTA:
2386 periodic timer for refresh
2387
2388- CFG_DER: Debug Event Register (37-47)
2389
2390- FLASH_BASE0_PRELIM, FLASH_BASE1_PRELIM, CFG_REMAP_OR_AM,
2391 CFG_PRELIM_OR_AM, CFG_OR_TIMING_FLASH, CFG_OR0_REMAP,
2392 CFG_OR0_PRELIM, CFG_BR0_PRELIM, CFG_OR1_REMAP, CFG_OR1_PRELIM,
2393 CFG_BR1_PRELIM:
2394 Memory Controller Definitions: BR0/1 and OR0/1 (FLASH)
2395
2396- SDRAM_BASE2_PRELIM, SDRAM_BASE3_PRELIM, SDRAM_MAX_SIZE,
2397 CFG_OR_TIMING_SDRAM, CFG_OR2_PRELIM, CFG_BR2_PRELIM,
2398 CFG_OR3_PRELIM, CFG_BR3_PRELIM:
2399 Memory Controller Definitions: BR2/3 and OR2/3 (SDRAM)
2400
2401- CFG_MAMR_PTA, CFG_MPTPR_2BK_4K, CFG_MPTPR_1BK_4K, CFG_MPTPR_2BK_8K,
2402 CFG_MPTPR_1BK_8K, CFG_MAMR_8COL, CFG_MAMR_9COL:
2403 Machine Mode Register and Memory Periodic Timer
2404 Prescaler definitions (SDRAM timing)
2405
2406- CFG_I2C_UCODE_PATCH, CFG_I2C_DPMEM_OFFSET [0x1FC0]:
2407 enable I2C microcode relocation patch (MPC8xx);
2408 define relocation offset in DPRAM [DSP2]
2409
b423d055
HS
2410- CFG_SMC_UCODE_PATCH, CFG_SMC_DPMEM_OFFSET [0x1FC0]:
2411 enable SMC microcode relocation patch (MPC8xx);
2412 define relocation offset in DPRAM [SMC1]
2413
c609719b
WD
2414- CFG_SPI_UCODE_PATCH, CFG_SPI_DPMEM_OFFSET [0x1FC0]:
2415 enable SPI microcode relocation patch (MPC8xx);
2416 define relocation offset in DPRAM [SCC4]
2417
2418- CFG_USE_OSCCLK:
2419 Use OSCM clock mode on MBX8xx board. Be careful,
2420 wrong setting might damage your board. Read
2421 doc/README.MBX before setting this variable!
2422
ea909b76 2423- CFG_CPM_POST_WORD_ADDR: (MPC8xx, MPC8260 only)
43d9616c
WD
2424 Offset of the bootmode word in DPRAM used by post
2425 (Power On Self Tests). This definition overrides
2426 #define'd default value in commproc.h resp.
2427 cpm_8260.h.
ea909b76 2428
1d49b1f3
SR
2429- CFG_PCI_SLV_MEM_LOCAL, CFG_PCI_SLV_MEM_BUS, CFG_PICMR0_MASK_ATTRIB,
2430 CFG_PCI_MSTR0_LOCAL, CFG_PCIMSK0_MASK, CFG_PCI_MSTR1_LOCAL,
2431 CFG_PCIMSK1_MASK, CFG_PCI_MSTR_MEM_LOCAL, CFG_PCI_MSTR_MEM_BUS,
2432 CFG_CPU_PCI_MEM_START, CFG_PCI_MSTR_MEM_SIZE, CFG_POCMR0_MASK_ATTRIB,
2433 CFG_PCI_MSTR_MEMIO_LOCAL, CFG_PCI_MSTR_MEMIO_BUS, CPU_PCI_MEMIO_START,
2434 CFG_PCI_MSTR_MEMIO_SIZE, CFG_POCMR1_MASK_ATTRIB, CFG_PCI_MSTR_IO_LOCAL,
2435 CFG_PCI_MSTR_IO_BUS, CFG_CPU_PCI_IO_START, CFG_PCI_MSTR_IO_SIZE,
5d232d0e
WD
2436 CFG_POCMR2_MASK_ATTRIB: (MPC826x only)
2437 Overrides the default PCI memory map in cpu/mpc8260/pci.c if set.
2438
bb99ad6d 2439- CONFIG_SPD_EEPROM
218ca724
WD
2440 Get DDR timing information from an I2C EEPROM. Common
2441 with pluggable memory modules such as SODIMMs
2442
bb99ad6d
BW
2443 SPD_EEPROM_ADDRESS
2444 I2C address of the SPD EEPROM
2445
2446- CFG_SPD_BUS_NUM
218ca724
WD
2447 If SPD EEPROM is on an I2C bus other than the first
2448 one, specify here. Note that the value must resolve
2449 to something your driver can deal with.
bb99ad6d 2450
2ad6b513 2451- CFG_83XX_DDR_USES_CS0
218ca724
WD
2452 Only for 83xx systems. If specified, then DDR should
2453 be configured using CS0 and CS1 instead of CS2 and CS3.
2ad6b513
TT
2454
2455- CFG_83XX_DDR_USES_CS0
218ca724
WD
2456 Only for 83xx systems. If specified, then DDR should
2457 be configured using CS0 and CS1 instead of CS2 and CS3.
2ad6b513 2458
c26e454d
WD
2459- CONFIG_ETHER_ON_FEC[12]
2460 Define to enable FEC[12] on a 8xx series processor.
2461
2462- CONFIG_FEC[12]_PHY
2463 Define to the hardcoded PHY address which corresponds
6e592385
WD
2464 to the given FEC; i. e.
2465 #define CONFIG_FEC1_PHY 4
c26e454d
WD
2466 means that the PHY with address 4 is connected to FEC1
2467
2468 When set to -1, means to probe for first available.
2469
2470- CONFIG_FEC[12]_PHY_NORXERR
2471 The PHY does not have a RXERR line (RMII only).
2472 (so program the FEC to ignore it).
2473
2474- CONFIG_RMII
2475 Enable RMII mode for all FECs.
2476 Note that this is a global option, we can't
2477 have one FEC in standard MII mode and another in RMII mode.
2478
5cf91d6b
WD
2479- CONFIG_CRC32_VERIFY
2480 Add a verify option to the crc32 command.
2481 The syntax is:
2482
2483 => crc32 -v <address> <count> <crc32>
2484
2485 Where address/count indicate a memory area
2486 and crc32 is the correct crc32 which the
2487 area should have.
2488
56523f12
WD
2489- CONFIG_LOOPW
2490 Add the "loopw" memory command. This only takes effect if
602ad3b3 2491 the memory commands are activated globally (CONFIG_CMD_MEM).
56523f12 2492
7b466641
SR
2493- CONFIG_MX_CYCLIC
2494 Add the "mdc" and "mwc" memory commands. These are cyclic
2495 "md/mw" commands.
2496 Examples:
2497
efe2a4d5 2498 => mdc.b 10 4 500
7b466641
SR
2499 This command will print 4 bytes (10,11,12,13) each 500 ms.
2500
efe2a4d5 2501 => mwc.l 100 12345678 10
7b466641
SR
2502 This command will write 12345678 to address 100 all 10 ms.
2503
efe2a4d5 2504 This only takes effect if the memory commands are activated
602ad3b3 2505 globally (CONFIG_CMD_MEM).
7b466641 2506
8aa1a2d1
WD
2507- CONFIG_SKIP_LOWLEVEL_INIT
2508- CONFIG_SKIP_RELOCATE_UBOOT
2509
3c2b3d45
WD
2510 [ARM only] If these variables are defined, then
2511 certain low level initializations (like setting up
2512 the memory controller) are omitted and/or U-Boot does
2513 not relocate itself into RAM.
2514 Normally these variables MUST NOT be defined. The
2515 only exception is when U-Boot is loaded (to RAM) by
2516 some other boot loader or by a debugger which
2517 performs these intializations itself.
8aa1a2d1 2518
400558b5 2519
c609719b
WD
2520Building the Software:
2521======================
2522
218ca724
WD
2523Building U-Boot has been tested in several native build environments
2524and in many different cross environments. Of course we cannot support
2525all possibly existing versions of cross development tools in all
2526(potentially obsolete) versions. In case of tool chain problems we
2527recommend to use the ELDK (see http://www.denx.de/wiki/DULG/ELDK)
2528which is extensively used to build and test U-Boot.
c609719b 2529
218ca724
WD
2530If you are not using a native environment, it is assumed that you
2531have GNU cross compiling tools available in your path. In this case,
2532you must set the environment variable CROSS_COMPILE in your shell.
2533Note that no changes to the Makefile or any other source files are
2534necessary. For example using the ELDK on a 4xx CPU, please enter:
c609719b 2535
218ca724
WD
2536 $ CROSS_COMPILE=ppc_4xx-
2537 $ export CROSS_COMPILE
c609719b 2538
218ca724
WD
2539U-Boot is intended to be simple to build. After installing the
2540sources you must configure U-Boot for one specific board type. This
c609719b
WD
2541is done by typing:
2542
2543 make NAME_config
2544
218ca724
WD
2545where "NAME_config" is the name of one of the existing configu-
2546rations; see the main Makefile for supported names.
db01a2ea 2547
2729af9d
WD
2548Note: for some board special configuration names may exist; check if
2549 additional information is available from the board vendor; for
2550 instance, the TQM823L systems are available without (standard)
2551 or with LCD support. You can select such additional "features"
2552 when chosing the configuration, i. e.
2553
2554 make TQM823L_config
2555 - will configure for a plain TQM823L, i. e. no LCD support
2556
2557 make TQM823L_LCD_config
2558 - will configure for a TQM823L with U-Boot console on LCD
2559
2560 etc.
2561
2562
2563Finally, type "make all", and you should get some working U-Boot
2564images ready for download to / installation on your system:
2565
2566- "u-boot.bin" is a raw binary image
2567- "u-boot" is an image in ELF binary format
2568- "u-boot.srec" is in Motorola S-Record format
2569
baf31249
MB
2570By default the build is performed locally and the objects are saved
2571in the source directory. One of the two methods can be used to change
2572this behavior and build U-Boot to some external directory:
2573
25741. Add O= to the make command line invocations:
2575
2576 make O=/tmp/build distclean
2577 make O=/tmp/build NAME_config
2578 make O=/tmp/build all
2579
25802. Set environment variable BUILD_DIR to point to the desired location:
2581
2582 export BUILD_DIR=/tmp/build
2583 make distclean
2584 make NAME_config
2585 make all
2586
2587Note that the command line "O=" setting overrides the BUILD_DIR environment
2588variable.
2589
2729af9d
WD
2590
2591Please be aware that the Makefiles assume you are using GNU make, so
2592for instance on NetBSD you might need to use "gmake" instead of
2593native "make".
2594
2595
2596If the system board that you have is not listed, then you will need
2597to port U-Boot to your hardware platform. To do this, follow these
2598steps:
2599
26001. Add a new configuration option for your board to the toplevel
2601 "Makefile" and to the "MAKEALL" script, using the existing
2602 entries as examples. Note that here and at many other places
2603 boards and other names are listed in alphabetical sort order. Please
2604 keep this order.
26052. Create a new directory to hold your board specific code. Add any
2606 files you need. In your board directory, you will need at least
2607 the "Makefile", a "<board>.c", "flash.c" and "u-boot.lds".
26083. Create a new configuration file "include/configs/<board>.h" for
2609 your board
26103. If you're porting U-Boot to a new CPU, then also create a new
2611 directory to hold your CPU specific code. Add any files you need.
26124. Run "make <board>_config" with your new name.
26135. Type "make", and you should get a working "u-boot.srec" file
2614 to be installed on your target system.
26156. Debug and solve any problems that might arise.
2616 [Of course, this last step is much harder than it sounds.]
2617
2618
2619Testing of U-Boot Modifications, Ports to New Hardware, etc.:
2620==============================================================
2621
218ca724
WD
2622If you have modified U-Boot sources (for instance added a new board
2623or support for new devices, a new CPU, etc.) you are expected to
2729af9d
WD
2624provide feedback to the other developers. The feedback normally takes
2625the form of a "patch", i. e. a context diff against a certain (latest
218ca724 2626official or latest in the git repository) version of U-Boot sources.
2729af9d 2627
218ca724
WD
2628But before you submit such a patch, please verify that your modifi-
2629cation did not break existing code. At least make sure that *ALL* of
2729af9d
WD
2630the supported boards compile WITHOUT ANY compiler warnings. To do so,
2631just run the "MAKEALL" script, which will configure and build U-Boot
218ca724
WD
2632for ALL supported system. Be warned, this will take a while. You can
2633select which (cross) compiler to use by passing a `CROSS_COMPILE'
2634environment variable to the script, i. e. to use the ELDK cross tools
2635you can type
2729af9d
WD
2636
2637 CROSS_COMPILE=ppc_8xx- MAKEALL
2638
2639or to build on a native PowerPC system you can type
2640
2641 CROSS_COMPILE=' ' MAKEALL
2642
218ca724
WD
2643When using the MAKEALL script, the default behaviour is to build
2644U-Boot in the source directory. This location can be changed by
2645setting the BUILD_DIR environment variable. Also, for each target
2646built, the MAKEALL script saves two log files (<target>.ERR and
2647<target>.MAKEALL) in the <source dir>/LOG directory. This default
2648location can be changed by setting the MAKEALL_LOGDIR environment
2649variable. For example:
baf31249
MB
2650
2651 export BUILD_DIR=/tmp/build
2652 export MAKEALL_LOGDIR=/tmp/log
2653 CROSS_COMPILE=ppc_8xx- MAKEALL
2654
218ca724
WD
2655With the above settings build objects are saved in the /tmp/build,
2656log files are saved in the /tmp/log and the source tree remains clean
2657during the whole build process.
baf31249
MB
2658
2659
2729af9d
WD
2660See also "U-Boot Porting Guide" below.
2661
2662
2663Monitor Commands - Overview:
2664============================
2665
2666go - start application at address 'addr'
2667run - run commands in an environment variable
2668bootm - boot application image from memory
2669bootp - boot image via network using BootP/TFTP protocol
2670tftpboot- boot image via network using TFTP protocol
2671 and env variables "ipaddr" and "serverip"
2672 (and eventually "gatewayip")
2673rarpboot- boot image via network using RARP/TFTP protocol
2674diskboot- boot from IDE devicebootd - boot default, i.e., run 'bootcmd'
2675loads - load S-Record file over serial line
2676loadb - load binary file over serial line (kermit mode)
2677md - memory display
2678mm - memory modify (auto-incrementing)
2679nm - memory modify (constant address)
2680mw - memory write (fill)
2681cp - memory copy
2682cmp - memory compare
2683crc32 - checksum calculation
2684imd - i2c memory display
2685imm - i2c memory modify (auto-incrementing)
2686inm - i2c memory modify (constant address)
2687imw - i2c memory write (fill)
2688icrc32 - i2c checksum calculation
2689iprobe - probe to discover valid I2C chip addresses
2690iloop - infinite loop on address range
2691isdram - print SDRAM configuration information
2692sspi - SPI utility commands
2693base - print or set address offset
2694printenv- print environment variables
2695setenv - set environment variables
2696saveenv - save environment variables to persistent storage
2697protect - enable or disable FLASH write protection
2698erase - erase FLASH memory
2699flinfo - print FLASH memory information
2700bdinfo - print Board Info structure
2701iminfo - print header information for application image
2702coninfo - print console devices and informations
2703ide - IDE sub-system
2704loop - infinite loop on address range
56523f12 2705loopw - infinite write loop on address range
2729af9d
WD
2706mtest - simple RAM test
2707icache - enable or disable instruction cache
2708dcache - enable or disable data cache
2709reset - Perform RESET of the CPU
2710echo - echo args to console
2711version - print monitor version
2712help - print online help
2713? - alias for 'help'
2714
2715
2716Monitor Commands - Detailed Description:
2717========================================
2718
2719TODO.
2720
2721For now: just type "help <command>".
2722
2723
2724Environment Variables:
2725======================
2726
2727U-Boot supports user configuration using Environment Variables which
2728can be made persistent by saving to Flash memory.
c609719b 2729
2729af9d
WD
2730Environment Variables are set using "setenv", printed using
2731"printenv", and saved to Flash using "saveenv". Using "setenv"
2732without a value can be used to delete a variable from the
2733environment. As long as you don't save the environment you are
2734working with an in-memory copy. In case the Flash area containing the
2735environment is erased by accident, a default environment is provided.
c609719b 2736
2729af9d 2737Some configuration options can be set using Environment Variables:
c609719b 2738
2729af9d 2739 baudrate - see CONFIG_BAUDRATE
c609719b 2740
2729af9d 2741 bootdelay - see CONFIG_BOOTDELAY
c609719b 2742
2729af9d 2743 bootcmd - see CONFIG_BOOTCOMMAND
4a6fd34b 2744
2729af9d 2745 bootargs - Boot arguments when booting an RTOS image
c609719b 2746
2729af9d 2747 bootfile - Name of the image to load with TFTP
c609719b 2748
7d721e34
BS
2749 bootm_low - Memory range available for image processing in the bootm
2750 command can be restricted. This variable is given as
2751 a hexadecimal number and defines lowest address allowed
2752 for use by the bootm command. See also "bootm_size"
2753 environment variable. Address defined by "bootm_low" is
2754 also the base of the initial memory mapping for the Linux
2755 kernel -- see the descripton of CFG_BOOTMAPSZ.
2756
2757 bootm_size - Memory range available for image processing in the bootm
2758 command can be restricted. This variable is given as
2759 a hexadecimal number and defines the size of the region
2760 allowed for use by the bootm command. See also "bootm_low"
2761 environment variable.
2762
2729af9d
WD
2763 autoload - if set to "no" (any string beginning with 'n'),
2764 "bootp" will just load perform a lookup of the
2765 configuration from the BOOTP server, but not try to
2766 load any image using TFTP
c609719b 2767
3310c549
MB
2768 autoscript - if set to "yes" commands like "loadb", "loady",
2769 "bootp", "tftpb", "rarpboot" and "nfs" will attempt
2770 to automatically run script images (by internally
2771 calling "autoscript").
2772
2773 autoscript_uname - if script image is in a format (FIT) this
2774 variable is used to get script subimage unit name.
2775
2729af9d
WD
2776 autostart - if set to "yes", an image loaded using the "bootp",
2777 "rarpboot", "tftpboot" or "diskboot" commands will
2778 be automatically started (by internally calling
2779 "bootm")
38b99261 2780
2729af9d
WD
2781 If set to "no", a standalone image passed to the
2782 "bootm" command will be copied to the load address
2783 (and eventually uncompressed), but NOT be started.
2784 This can be used to load and uncompress arbitrary
2785 data.
c609719b 2786
17ea1177
WD
2787 i2cfast - (PPC405GP|PPC405EP only)
2788 if set to 'y' configures Linux I2C driver for fast
2789 mode (400kHZ). This environment variable is used in
2790 initialization code. So, for changes to be effective
2791 it must be saved and board must be reset.
2792
2729af9d
WD
2793 initrd_high - restrict positioning of initrd images:
2794 If this variable is not set, initrd images will be
2795 copied to the highest possible address in RAM; this
2796 is usually what you want since it allows for
2797 maximum initrd size. If for some reason you want to
2798 make sure that the initrd image is loaded below the
2799 CFG_BOOTMAPSZ limit, you can set this environment
2800 variable to a value of "no" or "off" or "0".
2801 Alternatively, you can set it to a maximum upper
2802 address to use (U-Boot will still check that it
2803 does not overwrite the U-Boot stack and data).
c609719b 2804
2729af9d
WD
2805 For instance, when you have a system with 16 MB
2806 RAM, and want to reserve 4 MB from use by Linux,
2807 you can do this by adding "mem=12M" to the value of
2808 the "bootargs" variable. However, now you must make
2809 sure that the initrd image is placed in the first
2810 12 MB as well - this can be done with
c609719b 2811
2729af9d 2812 setenv initrd_high 00c00000
c609719b 2813
2729af9d
WD
2814 If you set initrd_high to 0xFFFFFFFF, this is an
2815 indication to U-Boot that all addresses are legal
2816 for the Linux kernel, including addresses in flash
2817 memory. In this case U-Boot will NOT COPY the
2818 ramdisk at all. This may be useful to reduce the
2819 boot time on your system, but requires that this
2820 feature is supported by your Linux kernel.
c609719b 2821
2729af9d 2822 ipaddr - IP address; needed for tftpboot command
c609719b 2823
2729af9d
WD
2824 loadaddr - Default load address for commands like "bootp",
2825 "rarpboot", "tftpboot", "loadb" or "diskboot"
c609719b 2826
2729af9d 2827 loads_echo - see CONFIG_LOADS_ECHO
a3d991bd 2828
2729af9d 2829 serverip - TFTP server IP address; needed for tftpboot command
a3d991bd 2830
2729af9d 2831 bootretry - see CONFIG_BOOT_RETRY_TIME
a3d991bd 2832
2729af9d 2833 bootdelaykey - see CONFIG_AUTOBOOT_DELAY_STR
a3d991bd 2834
2729af9d 2835 bootstopkey - see CONFIG_AUTOBOOT_STOP_STR
c609719b 2836
2729af9d
WD
2837 ethprime - When CONFIG_NET_MULTI is enabled controls which
2838 interface is used first.
c609719b 2839
2729af9d
WD
2840 ethact - When CONFIG_NET_MULTI is enabled controls which
2841 interface is currently active. For example you
2842 can do the following
c609719b 2843
2729af9d
WD
2844 => setenv ethact FEC ETHERNET
2845 => ping 192.168.0.1 # traffic sent on FEC ETHERNET
2846 => setenv ethact SCC ETHERNET
2847 => ping 10.0.0.1 # traffic sent on SCC ETHERNET
c609719b 2848
e1692577
MF
2849 ethrotate - When set to "no" U-Boot does not go through all
2850 available network interfaces.
2851 It just stays at the currently selected interface.
2852
2729af9d
WD
2853 netretry - When set to "no" each network operation will
2854 either succeed or fail without retrying.
2855 When set to "once" the network operation will
2856 fail when all the available network interfaces
2857 are tried once without success.
2858 Useful on scripts which control the retry operation
2859 themselves.
c609719b 2860
a1cf027a
JCPV
2861 npe_ucode - see CONFIG_IXP4XX_NPE_EXT_UCOD
2862 if set load address for the npe microcode
2863
28cb9375 2864 tftpsrcport - If this is set, the value is used for TFTP's
ecb0ccd9
WD
2865 UDP source port.
2866
28cb9375
WD
2867 tftpdstport - If this is set, the value is used for TFTP's UDP
2868 destination port instead of the Well Know Port 69.
2869
2729af9d
WD
2870 vlan - When set to a value < 4095 the traffic over
2871 ethernet is encapsulated/received over 802.1q
2872 VLAN tagged frames.
c609719b 2873
2729af9d
WD
2874The following environment variables may be used and automatically
2875updated by the network boot commands ("bootp" and "rarpboot"),
2876depending the information provided by your boot server:
c609719b 2877
2729af9d
WD
2878 bootfile - see above
2879 dnsip - IP address of your Domain Name Server
2880 dnsip2 - IP address of your secondary Domain Name Server
2881 gatewayip - IP address of the Gateway (Router) to use
2882 hostname - Target hostname
2883 ipaddr - see above
2884 netmask - Subnet Mask
2885 rootpath - Pathname of the root filesystem on the NFS server
2886 serverip - see above
c1551ea8 2887
c1551ea8 2888
2729af9d 2889There are two special Environment Variables:
c1551ea8 2890
2729af9d
WD
2891 serial# - contains hardware identification information such
2892 as type string and/or serial number
2893 ethaddr - Ethernet address
c609719b 2894
2729af9d
WD
2895These variables can be set only once (usually during manufacturing of
2896the board). U-Boot refuses to delete or overwrite these variables
2897once they have been set once.
c609719b 2898
f07771cc 2899
2729af9d 2900Further special Environment Variables:
f07771cc 2901
2729af9d
WD
2902 ver - Contains the U-Boot version string as printed
2903 with the "version" command. This variable is
2904 readonly (see CONFIG_VERSION_VARIABLE).
f07771cc 2905
f07771cc 2906
2729af9d
WD
2907Please note that changes to some configuration parameters may take
2908only effect after the next boot (yes, that's just like Windoze :-).
f07771cc 2909
f07771cc 2910
2729af9d
WD
2911Command Line Parsing:
2912=====================
f07771cc 2913
2729af9d
WD
2914There are two different command line parsers available with U-Boot:
2915the old "simple" one, and the much more powerful "hush" shell:
c609719b 2916
2729af9d
WD
2917Old, simple command line parser:
2918--------------------------------
c609719b 2919
2729af9d
WD
2920- supports environment variables (through setenv / saveenv commands)
2921- several commands on one line, separated by ';'
fe126d8b 2922- variable substitution using "... ${name} ..." syntax
2729af9d
WD
2923- special characters ('$', ';') can be escaped by prefixing with '\',
2924 for example:
fe126d8b 2925 setenv bootcmd bootm \${address}
2729af9d
WD
2926- You can also escape text by enclosing in single apostrophes, for example:
2927 setenv addip 'setenv bootargs $bootargs ip=$ipaddr:$serverip:$gatewayip:$netmask:$hostname::off'
c609719b 2928
2729af9d
WD
2929Hush shell:
2930-----------
c609719b 2931
2729af9d
WD
2932- similar to Bourne shell, with control structures like
2933 if...then...else...fi, for...do...done; while...do...done,
2934 until...do...done, ...
2935- supports environment ("global") variables (through setenv / saveenv
2936 commands) and local shell variables (through standard shell syntax
2937 "name=value"); only environment variables can be used with "run"
2938 command
2939
2940General rules:
2941--------------
c609719b 2942
2729af9d
WD
2943(1) If a command line (or an environment variable executed by a "run"
2944 command) contains several commands separated by semicolon, and
2945 one of these commands fails, then the remaining commands will be
2946 executed anyway.
c609719b 2947
2729af9d
WD
2948(2) If you execute several variables with one call to run (i. e.
2949 calling run with a list af variables as arguments), any failing
2950 command will cause "run" to terminate, i. e. the remaining
2951 variables are not executed.
c609719b 2952
2729af9d
WD
2953Note for Redundant Ethernet Interfaces:
2954=======================================
c609719b 2955
2729af9d
WD
2956Some boards come with redundant ethernet interfaces; U-Boot supports
2957such configurations and is capable of automatic selection of a
2958"working" interface when needed. MAC assignment works as follows:
c609719b 2959
2729af9d
WD
2960Network interfaces are numbered eth0, eth1, eth2, ... Corresponding
2961MAC addresses can be stored in the environment as "ethaddr" (=>eth0),
2962"eth1addr" (=>eth1), "eth2addr", ...
c609719b 2963
2729af9d
WD
2964If the network interface stores some valid MAC address (for instance
2965in SROM), this is used as default address if there is NO correspon-
2966ding setting in the environment; if the corresponding environment
2967variable is set, this overrides the settings in the card; that means:
c609719b 2968
2729af9d
WD
2969o If the SROM has a valid MAC address, and there is no address in the
2970 environment, the SROM's address is used.
c609719b 2971
2729af9d
WD
2972o If there is no valid address in the SROM, and a definition in the
2973 environment exists, then the value from the environment variable is
2974 used.
c609719b 2975
2729af9d
WD
2976o If both the SROM and the environment contain a MAC address, and
2977 both addresses are the same, this MAC address is used.
c609719b 2978
2729af9d
WD
2979o If both the SROM and the environment contain a MAC address, and the
2980 addresses differ, the value from the environment is used and a
2981 warning is printed.
c609719b 2982
2729af9d
WD
2983o If neither SROM nor the environment contain a MAC address, an error
2984 is raised.
c609719b 2985
c609719b 2986
2729af9d
WD
2987Image Formats:
2988==============
c609719b 2989
3310c549
MB
2990U-Boot is capable of booting (and performing other auxiliary operations on)
2991images in two formats:
2992
2993New uImage format (FIT)
2994-----------------------
2995
2996Flexible and powerful format based on Flattened Image Tree -- FIT (similar
2997to Flattened Device Tree). It allows the use of images with multiple
2998components (several kernels, ramdisks, etc.), with contents protected by
2999SHA1, MD5 or CRC32. More details are found in the doc/uImage.FIT directory.
3000
3001
3002Old uImage format
3003-----------------
3004
3005Old image format is based on binary files which can be basically anything,
3006preceded by a special header; see the definitions in include/image.h for
3007details; basically, the header defines the following image properties:
c609719b 3008
2729af9d
WD
3009* Target Operating System (Provisions for OpenBSD, NetBSD, FreeBSD,
3010 4.4BSD, Linux, SVR4, Esix, Solaris, Irix, SCO, Dell, NCR, VxWorks,
3011 LynxOS, pSOS, QNX, RTEMS, ARTOS;
3012 Currently supported: Linux, NetBSD, VxWorks, QNX, RTEMS, ARTOS, LynxOS).
7b64fef3 3013* Target CPU Architecture (Provisions for Alpha, ARM, AVR32, Intel x86,
2729af9d 3014 IA64, MIPS, NIOS, PowerPC, IBM S390, SuperH, Sparc, Sparc 64 Bit;
7b64fef3 3015 Currently supported: ARM, AVR32, Intel x86, MIPS, NIOS, PowerPC).
2729af9d
WD
3016* Compression Type (uncompressed, gzip, bzip2)
3017* Load Address
3018* Entry Point
3019* Image Name
3020* Image Timestamp
c609719b 3021
2729af9d
WD
3022The header is marked by a special Magic Number, and both the header
3023and the data portions of the image are secured against corruption by
3024CRC32 checksums.
c609719b
WD
3025
3026
2729af9d
WD
3027Linux Support:
3028==============
c609719b 3029
2729af9d
WD
3030Although U-Boot should support any OS or standalone application
3031easily, the main focus has always been on Linux during the design of
3032U-Boot.
c609719b 3033
2729af9d
WD
3034U-Boot includes many features that so far have been part of some
3035special "boot loader" code within the Linux kernel. Also, any
3036"initrd" images to be used are no longer part of one big Linux image;
3037instead, kernel and "initrd" are separate images. This implementation
3038serves several purposes:
c609719b 3039
2729af9d
WD
3040- the same features can be used for other OS or standalone
3041 applications (for instance: using compressed images to reduce the
3042 Flash memory footprint)
c609719b 3043
2729af9d
WD
3044- it becomes much easier to port new Linux kernel versions because
3045 lots of low-level, hardware dependent stuff are done by U-Boot
c609719b 3046
2729af9d
WD
3047- the same Linux kernel image can now be used with different "initrd"
3048 images; of course this also means that different kernel images can
3049 be run with the same "initrd". This makes testing easier (you don't
3050 have to build a new "zImage.initrd" Linux image when you just
3051 change a file in your "initrd"). Also, a field-upgrade of the
3052 software is easier now.
c609719b 3053
c609719b 3054
2729af9d
WD
3055Linux HOWTO:
3056============
c609719b 3057
2729af9d
WD
3058Porting Linux to U-Boot based systems:
3059---------------------------------------
c609719b 3060
2729af9d
WD
3061U-Boot cannot save you from doing all the necessary modifications to
3062configure the Linux device drivers for use with your target hardware
3063(no, we don't intend to provide a full virtual machine interface to
3064Linux :-).
c609719b 3065
2729af9d 3066But now you can ignore ALL boot loader code (in arch/ppc/mbxboot).
24ee89b9 3067
2729af9d
WD
3068Just make sure your machine specific header file (for instance
3069include/asm-ppc/tqm8xx.h) includes the same definition of the Board
3070Information structure as we define in include/u-boot.h, and make
3071sure that your definition of IMAP_ADDR uses the same value as your
3072U-Boot configuration in CFG_IMMR.
24ee89b9 3073
c609719b 3074
2729af9d
WD
3075Configuring the Linux kernel:
3076-----------------------------
c609719b 3077
2729af9d
WD
3078No specific requirements for U-Boot. Make sure you have some root
3079device (initial ramdisk, NFS) for your target system.
3080
3081
3082Building a Linux Image:
3083-----------------------
c609719b 3084
2729af9d
WD
3085With U-Boot, "normal" build targets like "zImage" or "bzImage" are
3086not used. If you use recent kernel source, a new build target
3087"uImage" will exist which automatically builds an image usable by
3088U-Boot. Most older kernels also have support for a "pImage" target,
3089which was introduced for our predecessor project PPCBoot and uses a
3090100% compatible format.
3091
3092Example:
3093
3094 make TQM850L_config
3095 make oldconfig
3096 make dep
3097 make uImage
3098
3099The "uImage" build target uses a special tool (in 'tools/mkimage') to
3100encapsulate a compressed Linux kernel image with header information,
3101CRC32 checksum etc. for use with U-Boot. This is what we are doing:
3102
3103* build a standard "vmlinux" kernel image (in ELF binary format):
3104
3105* convert the kernel into a raw binary image:
3106
3107 ${CROSS_COMPILE}-objcopy -O binary \
3108 -R .note -R .comment \
3109 -S vmlinux linux.bin
3110
3111* compress the binary image:
3112
3113 gzip -9 linux.bin
3114
3115* package compressed binary image for U-Boot:
3116
3117 mkimage -A ppc -O linux -T kernel -C gzip \
3118 -a 0 -e 0 -n "Linux Kernel Image" \
3119 -d linux.bin.gz uImage
c609719b 3120
c609719b 3121
2729af9d
WD
3122The "mkimage" tool can also be used to create ramdisk images for use
3123with U-Boot, either separated from the Linux kernel image, or
3124combined into one file. "mkimage" encapsulates the images with a 64
3125byte header containing information about target architecture,
3126operating system, image type, compression method, entry points, time
3127stamp, CRC32 checksums, etc.
3128
3129"mkimage" can be called in two ways: to verify existing images and
3130print the header information, or to build new images.
3131
3132In the first form (with "-l" option) mkimage lists the information
3133contained in the header of an existing U-Boot image; this includes
3134checksum verification:
c609719b 3135
2729af9d
WD
3136 tools/mkimage -l image
3137 -l ==> list image header information
3138
3139The second form (with "-d" option) is used to build a U-Boot image
3140from a "data file" which is used as image payload:
3141
3142 tools/mkimage -A arch -O os -T type -C comp -a addr -e ep \
3143 -n name -d data_file image
3144 -A ==> set architecture to 'arch'
3145 -O ==> set operating system to 'os'
3146 -T ==> set image type to 'type'
3147 -C ==> set compression type 'comp'
3148 -a ==> set load address to 'addr' (hex)
3149 -e ==> set entry point to 'ep' (hex)
3150 -n ==> set image name to 'name'
3151 -d ==> use image data from 'datafile'
3152
69459791
WD
3153Right now, all Linux kernels for PowerPC systems use the same load
3154address (0x00000000), but the entry point address depends on the
3155kernel version:
2729af9d
WD
3156
3157- 2.2.x kernels have the entry point at 0x0000000C,
3158- 2.3.x and later kernels have the entry point at 0x00000000.
3159
3160So a typical call to build a U-Boot image would read:
3161
3162 -> tools/mkimage -n '2.4.4 kernel for TQM850L' \
3163 > -A ppc -O linux -T kernel -C gzip -a 0 -e 0 \
3164 > -d /opt/elsk/ppc_8xx/usr/src/linux-2.4.4/arch/ppc/coffboot/vmlinux.gz \
3165 > examples/uImage.TQM850L
3166 Image Name: 2.4.4 kernel for TQM850L
3167 Created: Wed Jul 19 02:34:59 2000
3168 Image Type: PowerPC Linux Kernel Image (gzip compressed)
3169 Data Size: 335725 Bytes = 327.86 kB = 0.32 MB
3170 Load Address: 0x00000000
3171 Entry Point: 0x00000000
3172
3173To verify the contents of the image (or check for corruption):
3174
3175 -> tools/mkimage -l examples/uImage.TQM850L
3176 Image Name: 2.4.4 kernel for TQM850L
3177 Created: Wed Jul 19 02:34:59 2000
3178 Image Type: PowerPC Linux Kernel Image (gzip compressed)
3179 Data Size: 335725 Bytes = 327.86 kB = 0.32 MB
3180 Load Address: 0x00000000
3181 Entry Point: 0x00000000
3182
3183NOTE: for embedded systems where boot time is critical you can trade
3184speed for memory and install an UNCOMPRESSED image instead: this
3185needs more space in Flash, but boots much faster since it does not
3186need to be uncompressed:
3187
3188 -> gunzip /opt/elsk/ppc_8xx/usr/src/linux-2.4.4/arch/ppc/coffboot/vmlinux.gz
3189 -> tools/mkimage -n '2.4.4 kernel for TQM850L' \
3190 > -A ppc -O linux -T kernel -C none -a 0 -e 0 \
3191 > -d /opt/elsk/ppc_8xx/usr/src/linux-2.4.4/arch/ppc/coffboot/vmlinux \
3192 > examples/uImage.TQM850L-uncompressed
3193 Image Name: 2.4.4 kernel for TQM850L
3194 Created: Wed Jul 19 02:34:59 2000
3195 Image Type: PowerPC Linux Kernel Image (uncompressed)
3196 Data Size: 792160 Bytes = 773.59 kB = 0.76 MB
3197 Load Address: 0x00000000
3198 Entry Point: 0x00000000
3199
3200
3201Similar you can build U-Boot images from a 'ramdisk.image.gz' file
3202when your kernel is intended to use an initial ramdisk:
3203
3204 -> tools/mkimage -n 'Simple Ramdisk Image' \
3205 > -A ppc -O linux -T ramdisk -C gzip \
3206 > -d /LinuxPPC/images/SIMPLE-ramdisk.image.gz examples/simple-initrd
3207 Image Name: Simple Ramdisk Image
3208 Created: Wed Jan 12 14:01:50 2000
3209 Image Type: PowerPC Linux RAMDisk Image (gzip compressed)
3210 Data Size: 566530 Bytes = 553.25 kB = 0.54 MB
3211 Load Address: 0x00000000
3212 Entry Point: 0x00000000
3213
3214
3215Installing a Linux Image:
3216-------------------------
3217
3218To downloading a U-Boot image over the serial (console) interface,
3219you must convert the image to S-Record format:
3220
3221 objcopy -I binary -O srec examples/image examples/image.srec
3222
3223The 'objcopy' does not understand the information in the U-Boot
3224image header, so the resulting S-Record file will be relative to
3225address 0x00000000. To load it to a given address, you need to
3226specify the target address as 'offset' parameter with the 'loads'
3227command.
3228
3229Example: install the image to address 0x40100000 (which on the
3230TQM8xxL is in the first Flash bank):
3231
3232 => erase 40100000 401FFFFF
3233
3234 .......... done
3235 Erased 8 sectors
3236
3237 => loads 40100000
3238 ## Ready for S-Record download ...
3239 ~>examples/image.srec
3240 1 2 3 4 5 6 7 8 9 10 11 12 13 ...
3241 ...
3242 15989 15990 15991 15992
3243 [file transfer complete]
3244 [connected]
3245 ## Start Addr = 0x00000000
3246
3247
3248You can check the success of the download using the 'iminfo' command;
218ca724 3249this includes a checksum verification so you can be sure no data
2729af9d
WD
3250corruption happened:
3251
3252 => imi 40100000
3253
3254 ## Checking Image at 40100000 ...
3255 Image Name: 2.2.13 for initrd on TQM850L
3256 Image Type: PowerPC Linux Kernel Image (gzip compressed)
3257 Data Size: 335725 Bytes = 327 kB = 0 MB
3258 Load Address: 00000000
3259 Entry Point: 0000000c
3260 Verifying Checksum ... OK
3261
3262
3263Boot Linux:
3264-----------
3265
3266The "bootm" command is used to boot an application that is stored in
3267memory (RAM or Flash). In case of a Linux kernel image, the contents
3268of the "bootargs" environment variable is passed to the kernel as
3269parameters. You can check and modify this variable using the
3270"printenv" and "setenv" commands:
3271
3272
3273 => printenv bootargs
3274 bootargs=root=/dev/ram
3275
3276 => setenv bootargs root=/dev/nfs rw nfsroot=10.0.0.2:/LinuxPPC nfsaddrs=10.0.0.99:10.0.0.2
3277
3278 => printenv bootargs
3279 bootargs=root=/dev/nfs rw nfsroot=10.0.0.2:/LinuxPPC nfsaddrs=10.0.0.99:10.0.0.2
3280
3281 => bootm 40020000
3282 ## Booting Linux kernel at 40020000 ...
3283 Image Name: 2.2.13 for NFS on TQM850L
3284 Image Type: PowerPC Linux Kernel Image (gzip compressed)
3285 Data Size: 381681 Bytes = 372 kB = 0 MB
3286 Load Address: 00000000
3287 Entry Point: 0000000c
3288 Verifying Checksum ... OK
3289 Uncompressing Kernel Image ... OK
3290 Linux version 2.2.13 (wd@denx.local.net) (gcc version 2.95.2 19991024 (release)) #1 Wed Jul 19 02:35:17 MEST 2000
3291 Boot arguments: root=/dev/nfs rw nfsroot=10.0.0.2:/LinuxPPC nfsaddrs=10.0.0.99:10.0.0.2
3292 time_init: decrementer frequency = 187500000/60
3293 Calibrating delay loop... 49.77 BogoMIPS
3294 Memory: 15208k available (700k kernel code, 444k data, 32k init) [c0000000,c1000000]
3295 ...
3296
3297If you want to boot a Linux kernel with initial ram disk, you pass
3298the memory addresses of both the kernel and the initrd image (PPBCOOT
3299format!) to the "bootm" command:
3300
3301 => imi 40100000 40200000
3302
3303 ## Checking Image at 40100000 ...
3304 Image Name: 2.2.13 for initrd on TQM850L
3305 Image Type: PowerPC Linux Kernel Image (gzip compressed)
3306 Data Size: 335725 Bytes = 327 kB = 0 MB
3307 Load Address: 00000000
3308 Entry Point: 0000000c
3309 Verifying Checksum ... OK
3310
3311 ## Checking Image at 40200000 ...
3312 Image Name: Simple Ramdisk Image
3313 Image Type: PowerPC Linux RAMDisk Image (gzip compressed)
3314 Data Size: 566530 Bytes = 553 kB = 0 MB
3315 Load Address: 00000000
3316 Entry Point: 00000000
3317 Verifying Checksum ... OK
3318
3319 => bootm 40100000 40200000
3320 ## Booting Linux kernel at 40100000 ...
3321 Image Name: 2.2.13 for initrd on TQM850L
3322 Image Type: PowerPC Linux Kernel Image (gzip compressed)
3323 Data Size: 335725 Bytes = 327 kB = 0 MB
3324 Load Address: 00000000
3325 Entry Point: 0000000c
3326 Verifying Checksum ... OK
3327 Uncompressing Kernel Image ... OK
3328 ## Loading RAMDisk Image at 40200000 ...
3329 Image Name: Simple Ramdisk Image
3330 Image Type: PowerPC Linux RAMDisk Image (gzip compressed)
3331 Data Size: 566530 Bytes = 553 kB = 0 MB
3332 Load Address: 00000000
3333 Entry Point: 00000000
3334 Verifying Checksum ... OK
3335 Loading Ramdisk ... OK
3336 Linux version 2.2.13 (wd@denx.local.net) (gcc version 2.95.2 19991024 (release)) #1 Wed Jul 19 02:32:08 MEST 2000
3337 Boot arguments: root=/dev/ram
3338 time_init: decrementer frequency = 187500000/60
3339 Calibrating delay loop... 49.77 BogoMIPS
3340 ...
3341 RAMDISK: Compressed image found at block 0
3342 VFS: Mounted root (ext2 filesystem).
3343
3344 bash#
3345
0267768e
MM
3346Boot Linux and pass a flat device tree:
3347-----------
3348
3349First, U-Boot must be compiled with the appropriate defines. See the section
3350titled "Linux Kernel Interface" above for a more in depth explanation. The
3351following is an example of how to start a kernel and pass an updated
3352flat device tree:
3353
3354=> print oftaddr
3355oftaddr=0x300000
3356=> print oft
3357oft=oftrees/mpc8540ads.dtb
3358=> tftp $oftaddr $oft
3359Speed: 1000, full duplex
3360Using TSEC0 device
3361TFTP from server 192.168.1.1; our IP address is 192.168.1.101
3362Filename 'oftrees/mpc8540ads.dtb'.
3363Load address: 0x300000
3364Loading: #
3365done
3366Bytes transferred = 4106 (100a hex)
3367=> tftp $loadaddr $bootfile
3368Speed: 1000, full duplex
3369Using TSEC0 device
3370TFTP from server 192.168.1.1; our IP address is 192.168.1.2
3371Filename 'uImage'.
3372Load address: 0x200000
3373Loading:############
3374done
3375Bytes transferred = 1029407 (fb51f hex)
3376=> print loadaddr
3377loadaddr=200000
3378=> print oftaddr
3379oftaddr=0x300000
3380=> bootm $loadaddr - $oftaddr
3381## Booting image at 00200000 ...
a9398e01
WD
3382 Image Name: Linux-2.6.17-dirty
3383 Image Type: PowerPC Linux Kernel Image (gzip compressed)
3384 Data Size: 1029343 Bytes = 1005.2 kB
0267768e 3385 Load Address: 00000000
a9398e01 3386 Entry Point: 00000000
0267768e
MM
3387 Verifying Checksum ... OK
3388 Uncompressing Kernel Image ... OK
3389Booting using flat device tree at 0x300000
3390Using MPC85xx ADS machine description
3391Memory CAM mapping: CAM0=256Mb, CAM1=256Mb, CAM2=0Mb residual: 0Mb
3392[snip]
3393
3394
2729af9d
WD
3395More About U-Boot Image Types:
3396------------------------------
3397
3398U-Boot supports the following image types:
3399
3400 "Standalone Programs" are directly runnable in the environment
3401 provided by U-Boot; it is expected that (if they behave
3402 well) you can continue to work in U-Boot after return from
3403 the Standalone Program.
3404 "OS Kernel Images" are usually images of some Embedded OS which
3405 will take over control completely. Usually these programs
3406 will install their own set of exception handlers, device
3407 drivers, set up the MMU, etc. - this means, that you cannot
3408 expect to re-enter U-Boot except by resetting the CPU.
3409 "RAMDisk Images" are more or less just data blocks, and their
3410 parameters (address, size) are passed to an OS kernel that is
3411 being started.
3412 "Multi-File Images" contain several images, typically an OS
3413 (Linux) kernel image and one or more data images like
3414 RAMDisks. This construct is useful for instance when you want
3415 to boot over the network using BOOTP etc., where the boot
3416 server provides just a single image file, but you want to get
3417 for instance an OS kernel and a RAMDisk image.
3418
3419 "Multi-File Images" start with a list of image sizes, each
3420 image size (in bytes) specified by an "uint32_t" in network
3421 byte order. This list is terminated by an "(uint32_t)0".
3422 Immediately after the terminating 0 follow the images, one by
3423 one, all aligned on "uint32_t" boundaries (size rounded up to
3424 a multiple of 4 bytes).
3425
3426 "Firmware Images" are binary images containing firmware (like
3427 U-Boot or FPGA images) which usually will be programmed to
3428 flash memory.
3429
3430 "Script files" are command sequences that will be executed by
3431 U-Boot's command interpreter; this feature is especially
3432 useful when you configure U-Boot to use a real shell (hush)
3433 as command interpreter.
3434
3435
3436Standalone HOWTO:
3437=================
3438
3439One of the features of U-Boot is that you can dynamically load and
3440run "standalone" applications, which can use some resources of
3441U-Boot like console I/O functions or interrupt services.
3442
3443Two simple examples are included with the sources:
3444
3445"Hello World" Demo:
3446-------------------
3447
3448'examples/hello_world.c' contains a small "Hello World" Demo
3449application; it is automatically compiled when you build U-Boot.
3450It's configured to run at address 0x00040004, so you can play with it
3451like that:
3452
3453 => loads
3454 ## Ready for S-Record download ...
3455 ~>examples/hello_world.srec
3456 1 2 3 4 5 6 7 8 9 10 11 ...
3457 [file transfer complete]
3458 [connected]
3459 ## Start Addr = 0x00040004
3460
3461 => go 40004 Hello World! This is a test.
3462 ## Starting application at 0x00040004 ...
3463 Hello World
3464 argc = 7
3465 argv[0] = "40004"
3466 argv[1] = "Hello"
3467 argv[2] = "World!"
3468 argv[3] = "This"
3469 argv[4] = "is"
3470 argv[5] = "a"
3471 argv[6] = "test."
3472 argv[7] = "<NULL>"
3473 Hit any key to exit ...
3474
3475 ## Application terminated, rc = 0x0
3476
3477Another example, which demonstrates how to register a CPM interrupt
3478handler with the U-Boot code, can be found in 'examples/timer.c'.
3479Here, a CPM timer is set up to generate an interrupt every second.
3480The interrupt service routine is trivial, just printing a '.'
3481character, but this is just a demo program. The application can be
3482controlled by the following keys:
3483
3484 ? - print current values og the CPM Timer registers
3485 b - enable interrupts and start timer
3486 e - stop timer and disable interrupts
3487 q - quit application
3488
3489 => loads
3490 ## Ready for S-Record download ...
3491 ~>examples/timer.srec
3492 1 2 3 4 5 6 7 8 9 10 11 ...
3493 [file transfer complete]
3494 [connected]
3495 ## Start Addr = 0x00040004
3496
3497 => go 40004
3498 ## Starting application at 0x00040004 ...
3499 TIMERS=0xfff00980
3500 Using timer 1
3501 tgcr @ 0xfff00980, tmr @ 0xfff00990, trr @ 0xfff00994, tcr @ 0xfff00998, tcn @ 0xfff0099c, ter @ 0xfff009b0
3502
3503Hit 'b':
3504 [q, b, e, ?] Set interval 1000000 us
3505 Enabling timer
3506Hit '?':
3507 [q, b, e, ?] ........
3508 tgcr=0x1, tmr=0xff1c, trr=0x3d09, tcr=0x0, tcn=0xef6, ter=0x0
3509Hit '?':
3510 [q, b, e, ?] .
3511 tgcr=0x1, tmr=0xff1c, trr=0x3d09, tcr=0x0, tcn=0x2ad4, ter=0x0
3512Hit '?':
3513 [q, b, e, ?] .
3514 tgcr=0x1, tmr=0xff1c, trr=0x3d09, tcr=0x0, tcn=0x1efc, ter=0x0
3515Hit '?':
3516 [q, b, e, ?] .
3517 tgcr=0x1, tmr=0xff1c, trr=0x3d09, tcr=0x0, tcn=0x169d, ter=0x0
3518Hit 'e':
3519 [q, b, e, ?] ...Stopping timer
3520Hit 'q':
3521 [q, b, e, ?] ## Application terminated, rc = 0x0
3522
3523
3524Minicom warning:
3525================
3526
3527Over time, many people have reported problems when trying to use the
3528"minicom" terminal emulation program for serial download. I (wd)
3529consider minicom to be broken, and recommend not to use it. Under
3530Unix, I recommend to use C-Kermit for general purpose use (and
3531especially for kermit binary protocol download ("loadb" command), and
3532use "cu" for S-Record download ("loads" command).
3533
3534Nevertheless, if you absolutely want to use it try adding this
3535configuration to your "File transfer protocols" section:
3536
3537 Name Program Name U/D FullScr IO-Red. Multi
3538 X kermit /usr/bin/kermit -i -l %l -s Y U Y N N
3539 Y kermit /usr/bin/kermit -i -l %l -r N D Y N N
3540
3541
3542NetBSD Notes:
3543=============
3544
3545Starting at version 0.9.2, U-Boot supports NetBSD both as host
3546(build U-Boot) and target system (boots NetBSD/mpc8xx).
3547
3548Building requires a cross environment; it is known to work on
3549NetBSD/i386 with the cross-powerpc-netbsd-1.3 package (you will also
3550need gmake since the Makefiles are not compatible with BSD make).
3551Note that the cross-powerpc package does not install include files;
3552attempting to build U-Boot will fail because <machine/ansi.h> is
3553missing. This file has to be installed and patched manually:
3554
3555 # cd /usr/pkg/cross/powerpc-netbsd/include
3556 # mkdir powerpc
3557 # ln -s powerpc machine
3558 # cp /usr/src/sys/arch/powerpc/include/ansi.h powerpc/ansi.h
3559 # ${EDIT} powerpc/ansi.h ## must remove __va_list, _BSD_VA_LIST
3560
3561Native builds *don't* work due to incompatibilities between native
3562and U-Boot include files.
3563
3564Booting assumes that (the first part of) the image booted is a
3565stage-2 loader which in turn loads and then invokes the kernel
3566proper. Loader sources will eventually appear in the NetBSD source
3567tree (probably in sys/arc/mpc8xx/stand/u-boot_stage2/); in the
2a8af187 3568meantime, see ftp://ftp.denx.de/pub/u-boot/ppcboot_stage2.tar.gz
2729af9d
WD
3569
3570
3571Implementation Internals:
3572=========================
3573
3574The following is not intended to be a complete description of every
3575implementation detail. However, it should help to understand the
3576inner workings of U-Boot and make it easier to port it to custom
3577hardware.
3578
3579
3580Initial Stack, Global Data:
3581---------------------------
3582
3583The implementation of U-Boot is complicated by the fact that U-Boot
3584starts running out of ROM (flash memory), usually without access to
3585system RAM (because the memory controller is not initialized yet).
3586This means that we don't have writable Data or BSS segments, and BSS
3587is not initialized as zero. To be able to get a C environment working
3588at all, we have to allocate at least a minimal stack. Implementation
3589options for this are defined and restricted by the CPU used: Some CPU
3590models provide on-chip memory (like the IMMR area on MPC8xx and
3591MPC826x processors), on others (parts of) the data cache can be
3592locked as (mis-) used as memory, etc.
3593
218ca724 3594 Chris Hallinan posted a good summary of these issues to the
2729af9d
WD
3595 u-boot-users mailing list:
3596
3597 Subject: RE: [U-Boot-Users] RE: More On Memory Bank x (nothingness)?
3598 From: "Chris Hallinan" <clh@net1plus.com>
3599 Date: Mon, 10 Feb 2003 16:43:46 -0500 (22:43 MET)
3600 ...
3601
3602 Correct me if I'm wrong, folks, but the way I understand it
3603 is this: Using DCACHE as initial RAM for Stack, etc, does not
3604 require any physical RAM backing up the cache. The cleverness
3605 is that the cache is being used as a temporary supply of
3606 necessary storage before the SDRAM controller is setup. It's
3607 beyond the scope of this list to expain the details, but you
3608 can see how this works by studying the cache architecture and
3609 operation in the architecture and processor-specific manuals.
3610
3611 OCM is On Chip Memory, which I believe the 405GP has 4K. It
3612 is another option for the system designer to use as an
3613 initial stack/ram area prior to SDRAM being available. Either
3614 option should work for you. Using CS 4 should be fine if your
3615 board designers haven't used it for something that would
3616 cause you grief during the initial boot! It is frequently not
3617 used.
3618
3619 CFG_INIT_RAM_ADDR should be somewhere that won't interfere
3620 with your processor/board/system design. The default value
3621 you will find in any recent u-boot distribution in
8a316c9b 3622 walnut.h should work for you. I'd set it to a value larger
2729af9d
WD
3623 than your SDRAM module. If you have a 64MB SDRAM module, set
3624 it above 400_0000. Just make sure your board has no resources
3625 that are supposed to respond to that address! That code in
3626 start.S has been around a while and should work as is when
3627 you get the config right.
3628
3629 -Chris Hallinan
3630 DS4.COM, Inc.
3631
3632It is essential to remember this, since it has some impact on the C
3633code for the initialization procedures:
3634
3635* Initialized global data (data segment) is read-only. Do not attempt
3636 to write it.
3637
3638* Do not use any unitialized global data (or implicitely initialized
3639 as zero data - BSS segment) at all - this is undefined, initiali-
3640 zation is performed later (when relocating to RAM).
3641
3642* Stack space is very limited. Avoid big data buffers or things like
3643 that.
3644
3645Having only the stack as writable memory limits means we cannot use
3646normal global data to share information beween the code. But it
3647turned out that the implementation of U-Boot can be greatly
3648simplified by making a global data structure (gd_t) available to all
3649functions. We could pass a pointer to this data as argument to _all_
3650functions, but this would bloat the code. Instead we use a feature of
3651the GCC compiler (Global Register Variables) to share the data: we
3652place a pointer (gd) to the global data into a register which we
3653reserve for this purpose.
3654
3655When choosing a register for such a purpose we are restricted by the
3656relevant (E)ABI specifications for the current architecture, and by
3657GCC's implementation.
3658
3659For PowerPC, the following registers have specific use:
3660 R1: stack pointer
e7670f6c 3661 R2: reserved for system use
2729af9d
WD
3662 R3-R4: parameter passing and return values
3663 R5-R10: parameter passing
3664 R13: small data area pointer
3665 R30: GOT pointer
3666 R31: frame pointer
3667
3668 (U-Boot also uses R14 as internal GOT pointer.)
3669
e7670f6c 3670 ==> U-Boot will use R2 to hold a pointer to the global data
2729af9d
WD
3671
3672 Note: on PPC, we could use a static initializer (since the
3673 address of the global data structure is known at compile time),
3674 but it turned out that reserving a register results in somewhat
3675 smaller code - although the code savings are not that big (on
3676 average for all boards 752 bytes for the whole U-Boot image,
3677 624 text + 127 data).
3678
4c58eb55
MF
3679On Blackfin, the normal C ABI (except for P5) is followed as documented here:
3680 http://docs.blackfin.uclinux.org/doku.php?id=application_binary_interface
3681
3682 ==> U-Boot will use P5 to hold a pointer to the global data
3683
2729af9d
WD
3684On ARM, the following registers are used:
3685
3686 R0: function argument word/integer result
3687 R1-R3: function argument word
3688 R9: GOT pointer
3689 R10: stack limit (used only if stack checking if enabled)
3690 R11: argument (frame) pointer
3691 R12: temporary workspace
3692 R13: stack pointer
3693 R14: link register
3694 R15: program counter
3695
3696 ==> U-Boot will use R8 to hold a pointer to the global data
3697
d87080b7
WD
3698NOTE: DECLARE_GLOBAL_DATA_PTR must be used with file-global scope,
3699or current versions of GCC may "optimize" the code too much.
2729af9d
WD
3700
3701Memory Management:
3702------------------
3703
3704U-Boot runs in system state and uses physical addresses, i.e. the
3705MMU is not used either for address mapping nor for memory protection.
3706
3707The available memory is mapped to fixed addresses using the memory
3708controller. In this process, a contiguous block is formed for each
3709memory type (Flash, SDRAM, SRAM), even when it consists of several
3710physical memory banks.
3711
3712U-Boot is installed in the first 128 kB of the first Flash bank (on
3713TQM8xxL modules this is the range 0x40000000 ... 0x4001FFFF). After
3714booting and sizing and initializing DRAM, the code relocates itself
3715to the upper end of DRAM. Immediately below the U-Boot code some
3716memory is reserved for use by malloc() [see CFG_MALLOC_LEN
3717configuration setting]. Below that, a structure with global Board
3718Info data is placed, followed by the stack (growing downward).
3719
3720Additionally, some exception handler code is copied to the low 8 kB
3721of DRAM (0x00000000 ... 0x00001FFF).
3722
3723So a typical memory configuration with 16 MB of DRAM could look like
3724this:
3725
3726 0x0000 0000 Exception Vector code
3727 :
3728 0x0000 1FFF
3729 0x0000 2000 Free for Application Use
3730 :
3731 :
3732
3733 :
3734 :
3735 0x00FB FF20 Monitor Stack (Growing downward)
3736 0x00FB FFAC Board Info Data and permanent copy of global data
3737 0x00FC 0000 Malloc Arena
3738 :
3739 0x00FD FFFF
3740 0x00FE 0000 RAM Copy of Monitor Code
3741 ... eventually: LCD or video framebuffer
3742 ... eventually: pRAM (Protected RAM - unchanged by reset)
3743 0x00FF FFFF [End of RAM]
3744
3745
3746System Initialization:
3747----------------------
c609719b 3748
2729af9d
WD
3749In the reset configuration, U-Boot starts at the reset entry point
3750(on most PowerPC systens at address 0x00000100). Because of the reset
3751configuration for CS0# this is a mirror of the onboard Flash memory.
3752To be able to re-map memory U-Boot then jumps to its link address.
3753To be able to implement the initialization code in C, a (small!)
3754initial stack is set up in the internal Dual Ported RAM (in case CPUs
3755which provide such a feature like MPC8xx or MPC8260), or in a locked
3756part of the data cache. After that, U-Boot initializes the CPU core,
3757the caches and the SIU.
3758
3759Next, all (potentially) available memory banks are mapped using a
3760preliminary mapping. For example, we put them on 512 MB boundaries
3761(multiples of 0x20000000: SDRAM on 0x00000000 and 0x20000000, Flash
3762on 0x40000000 and 0x60000000, SRAM on 0x80000000). Then UPM A is
3763programmed for SDRAM access. Using the temporary configuration, a
3764simple memory test is run that determines the size of the SDRAM
3765banks.
3766
3767When there is more than one SDRAM bank, and the banks are of
3768different size, the largest is mapped first. For equal size, the first
3769bank (CS2#) is mapped first. The first mapping is always for address
37700x00000000, with any additional banks following immediately to create
3771contiguous memory starting from 0.
3772
3773Then, the monitor installs itself at the upper end of the SDRAM area
3774and allocates memory for use by malloc() and for the global Board
3775Info data; also, the exception vector code is copied to the low RAM
3776pages, and the final stack is set up.
3777
3778Only after this relocation will you have a "normal" C environment;
3779until that you are restricted in several ways, mostly because you are
3780running from ROM, and because the code will have to be relocated to a
3781new address in RAM.
3782
3783
3784U-Boot Porting Guide:
3785----------------------
c609719b 3786
2729af9d
WD
3787[Based on messages by Jerry Van Baren in the U-Boot-Users mailing
3788list, October 2002]
c609719b
WD
3789
3790
2729af9d
WD
3791int main (int argc, char *argv[])
3792{
3793 sighandler_t no_more_time;
c609719b 3794
2729af9d
WD
3795 signal (SIGALRM, no_more_time);
3796 alarm (PROJECT_DEADLINE - toSec (3 * WEEK));
c609719b 3797
2729af9d
WD
3798 if (available_money > available_manpower) {
3799 pay consultant to port U-Boot;
c609719b
WD
3800 return 0;
3801 }
3802
2729af9d
WD
3803 Download latest U-Boot source;
3804
3805 Subscribe to u-boot-users mailing list;
3806
3807 if (clueless) {
3808 email ("Hi, I am new to U-Boot, how do I get started?");
3809 }
3810
3811 while (learning) {
3812 Read the README file in the top level directory;
3813 Read http://www.denx.de/twiki/bin/view/DULG/Manual ;
3814 Read the source, Luke;
3815 }
3816
3817 if (available_money > toLocalCurrency ($2500)) {
3818 Buy a BDI2000;
3819 } else {
3820 Add a lot of aggravation and time;
c609719b
WD
3821 }
3822
2729af9d
WD
3823 Create your own board support subdirectory;
3824
3825 Create your own board config file;
3826
3827 while (!running) {
3828 do {
3829 Add / modify source code;
3830 } until (compiles);
3831 Debug;
3832 if (clueless)
3833 email ("Hi, I am having problems...");
3834 }
3835 Send patch file to Wolfgang;
3836
3837 return 0;
3838}
3839
3840void no_more_time (int sig)
3841{
3842 hire_a_guru();
3843}
3844
c609719b 3845
2729af9d
WD
3846Coding Standards:
3847-----------------
c609719b 3848
2729af9d 3849All contributions to U-Boot should conform to the Linux kernel
2c051651
DZ
3850coding style; see the file "Documentation/CodingStyle" and the script
3851"scripts/Lindent" in your Linux kernel source directory. In sources
3852originating from U-Boot a style corresponding to "Lindent -pcs" (adding
3853spaces before parameters to function calls) is actually used.
3854
3855Source files originating from a different project (for example the
3856MTD subsystem) are generally exempt from these guidelines and are not
3857reformated to ease subsequent migration to newer versions of those
3858sources.
3859
3860Please note that U-Boot is implemented in C (and to some small parts in
3861Assembler); no C++ is used, so please do not use C++ style comments (//)
3862in your code.
c609719b 3863
2729af9d
WD
3864Please also stick to the following formatting rules:
3865- remove any trailing white space
3866- use TAB characters for indentation, not spaces
3867- make sure NOT to use DOS '\r\n' line feeds
3868- do not add more than 2 empty lines to source files
3869- do not add trailing empty lines to source files
180d3f74 3870
2729af9d
WD
3871Submissions which do not conform to the standards may be returned
3872with a request to reformat the changes.
c609719b
WD
3873
3874
2729af9d
WD
3875Submitting Patches:
3876-------------------
c609719b 3877
2729af9d
WD
3878Since the number of patches for U-Boot is growing, we need to
3879establish some rules. Submissions which do not conform to these rules
3880may be rejected, even when they contain important and valuable stuff.
c609719b 3881
90dc6704 3882Patches shall be sent to the u-boot-users mailing list.
c609719b 3883
218ca724
WD
3884Please see http://www.denx.de/wiki/UBoot/Patches for details.
3885
2729af9d
WD
3886When you send a patch, please include the following information with
3887it:
c609719b 3888
2729af9d
WD
3889* For bug fixes: a description of the bug and how your patch fixes
3890 this bug. Please try to include a way of demonstrating that the
3891 patch actually fixes something.
c609719b 3892
2729af9d
WD
3893* For new features: a description of the feature and your
3894 implementation.
c609719b 3895
2729af9d 3896* A CHANGELOG entry as plaintext (separate from the patch)
c609719b 3897
2729af9d 3898* For major contributions, your entry to the CREDITS file
c609719b 3899
2729af9d
WD
3900* When you add support for a new board, don't forget to add this
3901 board to the MAKEALL script, too.
c609719b 3902
2729af9d
WD
3903* If your patch adds new configuration options, don't forget to
3904 document these in the README file.
c609719b 3905
218ca724
WD
3906* The patch itself. If you are using git (which is *strongly*
3907 recommended) you can easily generate the patch using the
3908 "git-format-patch". If you then use "git-send-email" to send it to
3909 the U-Boot mailing list, you will avoid most of the common problems
3910 with some other mail clients.
3911
3912 If you cannot use git, use "diff -purN OLD NEW". If your version of
3913 diff does not support these options, then get the latest version of
3914 GNU diff.
c609719b 3915
218ca724
WD
3916 The current directory when running this command shall be the parent
3917 directory of the U-Boot source tree (i. e. please make sure that
3918 your patch includes sufficient directory information for the
3919 affected files).
6dff5529 3920
218ca724
WD
3921 We prefer patches as plain text. MIME attachments are discouraged,
3922 and compressed attachments must not be used.
c609719b 3923
2729af9d
WD
3924* If one logical set of modifications affects or creates several
3925 files, all these changes shall be submitted in a SINGLE patch file.
52f52c14 3926
2729af9d
WD
3927* Changesets that contain different, unrelated modifications shall be
3928 submitted as SEPARATE patches, one patch per changeset.
8bde7f77 3929
52f52c14 3930
2729af9d 3931Notes:
c609719b 3932
2729af9d
WD
3933* Before sending the patch, run the MAKEALL script on your patched
3934 source tree and make sure that no errors or warnings are reported
3935 for any of the boards.
c609719b 3936
2729af9d
WD
3937* Keep your modifications to the necessary minimum: A patch
3938 containing several unrelated changes or arbitrary reformats will be
3939 returned with a request to re-formatting / split it.
c609719b 3940
2729af9d
WD
3941* If you modify existing code, make sure that your new code does not
3942 add to the memory footprint of the code ;-) Small is beautiful!
3943 When adding new features, these should compile conditionally only
3944 (using #ifdef), and the resulting code with the new feature
3945 disabled must not need more memory than the old code without your
3946 modification.
90dc6704
WD
3947
3948* Remember that there is a size limit of 40 kB per message on the
218ca724
WD
3949 u-boot-users mailing list. Bigger patches will be moderated. If
3950 they are reasonable and not bigger than 100 kB, they will be
3951 acknowledged. Even bigger patches should be avoided.