xref: /openbmc/u-boot/arch/powerpc/cpu/mpc83xx/start.S (revision f9727161)
1/*
2 * Copyright (C) 1998  Dan Malek <dmalek@jlc.net>
3 * Copyright (C) 1999  Magnus Damm <kieraypc01.p.y.kie.era.ericsson.se>
4 * Copyright (C) 2000, 2001,2002 Wolfgang Denk <wd@denx.de>
5 * Copyright Freescale Semiconductor, Inc. 2004, 2006, 2008.
6 *
7 * SPDX-License-Identifier:	GPL-2.0+
8 */
9
10/*
11 *  U-Boot - Startup Code for MPC83xx PowerPC based Embedded Boards
12 */
13
14#include <asm-offsets.h>
15#include <config.h>
16#include <mpc83xx.h>
17#ifndef  CONFIG_IDENT_STRING
18#define  CONFIG_IDENT_STRING "MPC83XX"
19#endif
20#include <version.h>
21
22#define CONFIG_83XX	1		/* needed for Linux kernel header files*/
23#define _LINUX_CONFIG_H 1	/* avoid reading Linux autoconf.h file */
24
25#include <ppc_asm.tmpl>
26#include <ppc_defs.h>
27
28#include <asm/cache.h>
29#include <asm/mmu.h>
30#include <asm/u-boot.h>
31
32/* We don't want the  MMU yet.
33 */
34#undef	MSR_KERNEL
35
36/*
37 * Floating Point enable, Machine Check and Recoverable Interr.
38 */
39#ifdef DEBUG
40#define MSR_KERNEL (MSR_FP|MSR_RI)
41#else
42#define MSR_KERNEL (MSR_FP|MSR_ME|MSR_RI)
43#endif
44
45#if defined(CONFIG_NAND_SPL) || \
46	(defined(CONFIG_SPL_BUILD) && defined(CONFIG_SPL_INIT_MINIMAL))
47#define MINIMAL_SPL
48#endif
49
50#if !defined(CONFIG_SPL_BUILD) && !defined(CONFIG_NAND_SPL) && \
51	!defined(CONFIG_SYS_RAMBOOT)
52#define CONFIG_SYS_FLASHBOOT
53#endif
54
55/*
56 * Set up GOT: Global Offset Table
57 *
58 * Use r12 to access the GOT
59 */
60	START_GOT
61	GOT_ENTRY(_GOT2_TABLE_)
62	GOT_ENTRY(__bss_start)
63	GOT_ENTRY(__bss_end)
64
65#ifndef MINIMAL_SPL
66	GOT_ENTRY(_FIXUP_TABLE_)
67	GOT_ENTRY(_start)
68	GOT_ENTRY(_start_of_vectors)
69	GOT_ENTRY(_end_of_vectors)
70	GOT_ENTRY(transfer_to_handler)
71#endif
72	END_GOT
73
74/*
75 * The Hard Reset Configuration Word (HRCW) table is in the first 64
76 * (0x40) bytes of flash.  It has 8 bytes, but each byte is repeated 8
77 * times so the processor can fetch it out of flash whether the flash
78 * is 8, 16, 32, or 64 bits wide (hardware trickery).
79 */
80	.text
81#define _HRCW_TABLE_ENTRY(w)		\
82	.fill	8,1,(((w)>>24)&0xff);	\
83	.fill	8,1,(((w)>>16)&0xff);	\
84	.fill	8,1,(((w)>> 8)&0xff);	\
85	.fill	8,1,(((w)    )&0xff)
86
87	_HRCW_TABLE_ENTRY(CONFIG_SYS_HRCW_LOW)
88	_HRCW_TABLE_ENTRY(CONFIG_SYS_HRCW_HIGH)
89
90/*
91 * Magic number and version string - put it after the HRCW since it
92 * cannot be first in flash like it is in many other processors.
93 */
94	.long	0x27051956		/* U-Boot Magic Number */
95
96	.globl	version_string
97version_string:
98	.ascii U_BOOT_VERSION_STRING, "\0"
99
100	.align 2
101
102	.globl enable_addr_trans
103enable_addr_trans:
104	/* enable address translation */
105	mfmsr	r5
106	ori	r5, r5, (MSR_IR | MSR_DR)
107	mtmsr	r5
108	isync
109	blr
110
111	.globl disable_addr_trans
112disable_addr_trans:
113	/* disable address translation */
114	mflr	r4
115	mfmsr	r3
116	andi.	r0, r3, (MSR_IR | MSR_DR)
117	beqlr
118	andc	r3, r3, r0
119	mtspr	SRR0, r4
120	mtspr	SRR1, r3
121	rfi
122
123	.globl get_pvr
124get_pvr:
125	mfspr	r3, PVR
126	blr
127
128	.globl	ppcDWstore
129ppcDWstore:
130	lfd	1, 0(r4)
131	stfd	1, 0(r3)
132	blr
133
134	.globl	ppcDWload
135ppcDWload:
136	lfd	1, 0(r3)
137	stfd	1, 0(r4)
138	blr
139
140#ifndef CONFIG_DEFAULT_IMMR
141#error CONFIG_DEFAULT_IMMR must be defined
142#endif /* CONFIG_SYS_DEFAULT_IMMR */
143#ifndef CONFIG_SYS_IMMR
144#define CONFIG_SYS_IMMR CONFIG_DEFAULT_IMMR
145#endif /* CONFIG_SYS_IMMR */
146
147/*
148 * After configuration, a system reset exception is executed using the
149 * vector at offset 0x100 relative to the base set by MSR[IP]. If
150 * MSR[IP] is 0, the base address is 0x00000000. If MSR[IP] is 1, the
151 * base address is 0xfff00000. In the case of a Power On Reset or Hard
152 * Reset, the value of MSR[IP] is determined by the CIP field in the
153 * HRCW.
154 *
155 * Other bits in the HRCW set up the Base Address and Port Size in BR0.
156 * This determines the location of the boot ROM (flash or EPROM) in the
157 * processor's address space at boot time. As long as the HRCW is set up
158 * so that we eventually end up executing the code below when the
159 * processor executes the reset exception, the actual values used should
160 * not matter.
161 *
162 * Once we have got here, the address mask in OR0 is cleared so that the
163 * bottom 32K of the boot ROM is effectively repeated all throughout the
164 * processor's address space, after which we can jump to the absolute
165 * address at which the boot ROM was linked at compile time, and proceed
166 * to initialise the memory controller without worrying if the rug will
167 * be pulled out from under us, so to speak (it will be fine as long as
168 * we configure BR0 with the same boot ROM link address).
169 */
170	. = EXC_OFF_SYS_RESET
171
172	.globl	_start
173_start: /* time t 0 */
174	lis	r4, CONFIG_DEFAULT_IMMR@h
175	nop
176
177	mfmsr	r5			/* save msr contents	*/
178
179	/* 83xx manuals prescribe a specific sequence for updating IMMRBAR. */
180	bl	1f
1811:	mflr	r7
182
183	lis	r3, CONFIG_SYS_IMMR@h
184	ori	r3, r3, CONFIG_SYS_IMMR@l
185
186	lwz	r6, IMMRBAR(r4)
187	isync
188
189	stw	r3, IMMRBAR(r4)
190	lwz	r6, 0(r7)		/* Arbitrary external load */
191	isync
192
193	lwz	r6, IMMRBAR(r3)
194	isync
195
196	/* Initialise the E300 processor core		*/
197	/*------------------------------------------*/
198
199#if (defined(CONFIG_SPL_BUILD) && defined(CONFIG_SPL_MPC83XX_WAIT_FOR_NAND)) || \
200		defined(CONFIG_NAND_SPL)
201	/* The FCM begins execution after only the first page
202	 * is loaded.  Wait for the rest before branching
203	 * to another flash page.
204	 */
2051:	lwz	r6, 0x50b0(r3)
206	andi.	r6, r6, 1
207	beq	1b
208#endif
209
210	bl	init_e300_core
211
212#ifdef CONFIG_SYS_FLASHBOOT
213
214	/* Inflate flash location so it appears everywhere, calculate */
215	/* the absolute address in final location of the FLASH, jump  */
216	/* there and deflate the flash size back to minimal size      */
217	/*------------------------------------------------------------*/
218	bl map_flash_by_law1
219	lis r4, (CONFIG_SYS_MONITOR_BASE)@h
220	ori r4, r4, (CONFIG_SYS_MONITOR_BASE)@l
221	addi r5, r4, in_flash - _start + EXC_OFF_SYS_RESET
222	mtlr r5
223	blr
224in_flash:
225#if 1 /* Remapping flash with LAW0. */
226	bl remap_flash_by_law0
227#endif
228#endif	/* CONFIG_SYS_FLASHBOOT */
229
230	/* setup the bats */
231	bl	setup_bats
232	sync
233
234	/*
235	 * Cache must be enabled here for stack-in-cache trick.
236	 * This means we need to enable the BATS.
237	 * This means:
238	 *   1) for the EVB, original gt regs need to be mapped
239	 *   2) need to have an IBAT for the 0xf region,
240	 *      we are running there!
241	 * Cache should be turned on after BATs, since by default
242	 * everything is write-through.
243	 * The init-mem BAT can be reused after reloc. The old
244	 * gt-regs BAT can be reused after board_init_f calls
245	 * board_early_init_f (EVB only).
246	 */
247	/* enable address translation */
248	bl	enable_addr_trans
249	sync
250
251	/* enable the data cache */
252	bl	dcache_enable
253	sync
254#ifdef CONFIG_SYS_INIT_RAM_LOCK
255	bl	lock_ram_in_cache
256	sync
257#endif
258
259	/* set up the stack pointer in our newly created
260	 * cache-ram (r1) */
261	lis	r1, (CONFIG_SYS_INIT_RAM_ADDR + CONFIG_SYS_GBL_DATA_OFFSET)@h
262	ori	r1, r1, (CONFIG_SYS_INIT_RAM_ADDR + CONFIG_SYS_GBL_DATA_OFFSET)@l
263
264	li	r0, 0		/* Make room for stack frame header and	*/
265	stwu	r0, -4(r1)	/* clear final stack frame so that	*/
266	stwu	r0, -4(r1)	/* stack backtraces terminate cleanly	*/
267
268
269	/* let the C-code set up the rest	                    */
270	/*				                            */
271	/* Be careful to keep code relocatable & stack humble   */
272	/*------------------------------------------------------*/
273
274	GET_GOT			/* initialize GOT access	*/
275
276	/* r3: IMMR */
277	lis	r3, CONFIG_SYS_IMMR@h
278	/* run low-level CPU init code (in Flash)*/
279	bl	cpu_init_f
280
281	/* run 1st part of board init code (in Flash)*/
282	bl	board_init_f
283
284	/* NOTREACHED - board_init_f() does not return */
285
286#ifndef MINIMAL_SPL
287/*
288 * Vector Table
289 */
290
291	.globl	_start_of_vectors
292_start_of_vectors:
293
294/* Machine check */
295	STD_EXCEPTION(0x200, MachineCheck, MachineCheckException)
296
297/* Data Storage exception. */
298	STD_EXCEPTION(0x300, DataStorage, UnknownException)
299
300/* Instruction Storage exception. */
301	STD_EXCEPTION(0x400, InstStorage, UnknownException)
302
303/* External Interrupt exception. */
304#ifndef FIXME
305	STD_EXCEPTION(0x500, ExtInterrupt, external_interrupt)
306#endif
307
308/* Alignment exception. */
309	. = 0x600
310Alignment:
311	EXCEPTION_PROLOG(SRR0, SRR1)
312	mfspr	r4,DAR
313	stw	r4,_DAR(r21)
314	mfspr	r5,DSISR
315	stw	r5,_DSISR(r21)
316	addi	r3,r1,STACK_FRAME_OVERHEAD
317	EXC_XFER_TEMPLATE(Alignment, AlignmentException, MSR_KERNEL, COPY_EE)
318
319/* Program check exception */
320	. = 0x700
321ProgramCheck:
322	EXCEPTION_PROLOG(SRR0, SRR1)
323	addi	r3,r1,STACK_FRAME_OVERHEAD
324	EXC_XFER_TEMPLATE(ProgramCheck, ProgramCheckException,
325		MSR_KERNEL, COPY_EE)
326
327	STD_EXCEPTION(0x800, FPUnavailable, UnknownException)
328
329	/* I guess we could implement decrementer, and may have
330	 * to someday for timekeeping.
331	 */
332	STD_EXCEPTION(0x900, Decrementer, timer_interrupt)
333
334	STD_EXCEPTION(0xa00, Trap_0a, UnknownException)
335	STD_EXCEPTION(0xb00, Trap_0b, UnknownException)
336	STD_EXCEPTION(0xc00, SystemCall, UnknownException)
337	STD_EXCEPTION(0xd00, SingleStep, UnknownException)
338
339	STD_EXCEPTION(0xe00, Trap_0e, UnknownException)
340	STD_EXCEPTION(0xf00, Trap_0f, UnknownException)
341
342	STD_EXCEPTION(0x1000, InstructionTLBMiss, UnknownException)
343	STD_EXCEPTION(0x1100, DataLoadTLBMiss, UnknownException)
344	STD_EXCEPTION(0x1200, DataStoreTLBMiss, UnknownException)
345#ifdef DEBUG
346	. = 0x1300
347	/*
348	 * This exception occurs when the program counter matches the
349	 * Instruction Address Breakpoint Register (IABR).
350	 *
351	 * I want the cpu to halt if this occurs so I can hunt around
352	 * with the debugger and look at things.
353	 *
354	 * When DEBUG is defined, both machine check enable (in the MSR)
355	 * and checkstop reset enable (in the reset mode register) are
356	 * turned off and so a checkstop condition will result in the cpu
357	 * halting.
358	 *
359	 * I force the cpu into a checkstop condition by putting an illegal
360	 * instruction here (at least this is the theory).
361	 *
362	 * well - that didnt work, so just do an infinite loop!
363	 */
3641:	b	1b
365#else
366	STD_EXCEPTION(0x1300, InstructionBreakpoint, DebugException)
367#endif
368	STD_EXCEPTION(0x1400, SMI, UnknownException)
369
370	STD_EXCEPTION(0x1500, Trap_15, UnknownException)
371	STD_EXCEPTION(0x1600, Trap_16, UnknownException)
372	STD_EXCEPTION(0x1700, Trap_17, UnknownException)
373	STD_EXCEPTION(0x1800, Trap_18, UnknownException)
374	STD_EXCEPTION(0x1900, Trap_19, UnknownException)
375	STD_EXCEPTION(0x1a00, Trap_1a, UnknownException)
376	STD_EXCEPTION(0x1b00, Trap_1b, UnknownException)
377	STD_EXCEPTION(0x1c00, Trap_1c, UnknownException)
378	STD_EXCEPTION(0x1d00, Trap_1d, UnknownException)
379	STD_EXCEPTION(0x1e00, Trap_1e, UnknownException)
380	STD_EXCEPTION(0x1f00, Trap_1f, UnknownException)
381	STD_EXCEPTION(0x2000, Trap_20, UnknownException)
382	STD_EXCEPTION(0x2100, Trap_21, UnknownException)
383	STD_EXCEPTION(0x2200, Trap_22, UnknownException)
384	STD_EXCEPTION(0x2300, Trap_23, UnknownException)
385	STD_EXCEPTION(0x2400, Trap_24, UnknownException)
386	STD_EXCEPTION(0x2500, Trap_25, UnknownException)
387	STD_EXCEPTION(0x2600, Trap_26, UnknownException)
388	STD_EXCEPTION(0x2700, Trap_27, UnknownException)
389	STD_EXCEPTION(0x2800, Trap_28, UnknownException)
390	STD_EXCEPTION(0x2900, Trap_29, UnknownException)
391	STD_EXCEPTION(0x2a00, Trap_2a, UnknownException)
392	STD_EXCEPTION(0x2b00, Trap_2b, UnknownException)
393	STD_EXCEPTION(0x2c00, Trap_2c, UnknownException)
394	STD_EXCEPTION(0x2d00, Trap_2d, UnknownException)
395	STD_EXCEPTION(0x2e00, Trap_2e, UnknownException)
396	STD_EXCEPTION(0x2f00, Trap_2f, UnknownException)
397
398
399	.globl	_end_of_vectors
400_end_of_vectors:
401
402	. = 0x3000
403
404/*
405 * This code finishes saving the registers to the exception frame
406 * and jumps to the appropriate handler for the exception.
407 * Register r21 is pointer into trap frame, r1 has new stack pointer.
408 */
409	.globl	transfer_to_handler
410transfer_to_handler:
411	stw	r22,_NIP(r21)
412	lis	r22,MSR_POW@h
413	andc	r23,r23,r22
414	stw	r23,_MSR(r21)
415	SAVE_GPR(7, r21)
416	SAVE_4GPRS(8, r21)
417	SAVE_8GPRS(12, r21)
418	SAVE_8GPRS(24, r21)
419	mflr	r23
420	andi.	r24,r23,0x3f00		/* get vector offset */
421	stw	r24,TRAP(r21)
422	li	r22,0
423	stw	r22,RESULT(r21)
424	lwz	r24,0(r23)		/* virtual address of handler */
425	lwz	r23,4(r23)		/* where to go when done */
426	mtspr	SRR0,r24
427	mtspr	SRR1,r20
428	mtlr	r23
429	SYNC
430	rfi				/* jump to handler, enable MMU */
431
432int_return:
433	mfmsr	r28		/* Disable interrupts */
434	li	r4,0
435	ori	r4,r4,MSR_EE
436	andc	r28,r28,r4
437	SYNC			/* Some chip revs need this... */
438	mtmsr	r28
439	SYNC
440	lwz	r2,_CTR(r1)
441	lwz	r0,_LINK(r1)
442	mtctr	r2
443	mtlr	r0
444	lwz	r2,_XER(r1)
445	lwz	r0,_CCR(r1)
446	mtspr	XER,r2
447	mtcrf	0xFF,r0
448	REST_10GPRS(3, r1)
449	REST_10GPRS(13, r1)
450	REST_8GPRS(23, r1)
451	REST_GPR(31, r1)
452	lwz	r2,_NIP(r1)	/* Restore environment */
453	lwz	r0,_MSR(r1)
454	mtspr	SRR0,r2
455	mtspr	SRR1,r0
456	lwz	r0,GPR0(r1)
457	lwz	r2,GPR2(r1)
458	lwz	r1,GPR1(r1)
459	SYNC
460	rfi
461#endif /* !MINIMAL_SPL */
462
463/*
464 * This code initialises the E300 processor core
465 * (conforms to PowerPC 603e spec)
466 * Note: expects original MSR contents to be in r5.
467 */
468	.globl	init_e300_core
469init_e300_core: /* time t 10 */
470	/* Initialize machine status; enable machine check interrupt */
471	/*-----------------------------------------------------------*/
472
473	li	r3, MSR_KERNEL			/* Set ME and RI flags */
474	rlwimi	r3, r5, 0, 25, 25	/* preserve IP bit set by HRCW */
475#ifdef DEBUG
476	rlwimi	r3, r5, 0, 21, 22   /* debugger might set SE & BE bits */
477#endif
478	SYNC						/* Some chip revs need this... */
479	mtmsr	r3
480	SYNC
481	mtspr	SRR1, r3			/* Make SRR1 match MSR */
482
483
484	lis	r3, CONFIG_SYS_IMMR@h
485#if defined(CONFIG_WATCHDOG)
486	/* Initialise the Watchdog values and reset it (if req) */
487	/*------------------------------------------------------*/
488	lis r4, CONFIG_SYS_WATCHDOG_VALUE
489	ori r4, r4, (SWCRR_SWEN | SWCRR_SWRI | SWCRR_SWPR)
490	stw r4, SWCRR(r3)
491
492	/* and reset it */
493
494	li	r4, 0x556C
495	sth	r4, SWSRR@l(r3)
496	li	r4, -0x55C7
497	sth	r4, SWSRR@l(r3)
498#else
499	/* Disable Watchdog  */
500	/*-------------------*/
501	lwz r4, SWCRR(r3)
502	/* Check to see if its enabled for disabling
503	   once disabled by SW you can't re-enable */
504	andi. r4, r4, 0x4
505	beq 1f
506	xor r4, r4, r4
507	stw r4, SWCRR(r3)
5081:
509#endif /* CONFIG_WATCHDOG */
510
511#if defined(CONFIG_MASK_AER_AO)
512	/* Write the Arbiter Event Enable to mask Address Only traps. */
513	/* This prevents the dcbz instruction from being trapped when */
514	/* HID0_ABE Address Broadcast Enable is set and the MEMORY    */
515	/* COHERENCY bit is set in the WIMG bits, which is often      */
516	/* needed for PCI operation.                                  */
517	lwz	r4, 0x0808(r3)
518	rlwinm	r0, r4, 0, ~AER_AO
519	stw	r0, 0x0808(r3)
520#endif /* CONFIG_MASK_AER_AO */
521
522	/* Initialize the Hardware Implementation-dependent Registers */
523	/* HID0 also contains cache control			*/
524	/* - force invalidation of data and instruction caches  */
525	/*------------------------------------------------------*/
526
527	lis	r3, CONFIG_SYS_HID0_INIT@h
528	ori	r3, r3, (CONFIG_SYS_HID0_INIT | HID0_ICFI | HID0_DCFI)@l
529	SYNC
530	mtspr	HID0, r3
531
532	lis	r3, CONFIG_SYS_HID0_FINAL@h
533	ori	r3, r3, (CONFIG_SYS_HID0_FINAL & ~(HID0_ICFI | HID0_DCFI))@l
534	SYNC
535	mtspr	HID0, r3
536
537	lis	r3, CONFIG_SYS_HID2@h
538	ori	r3, r3, CONFIG_SYS_HID2@l
539	SYNC
540	mtspr	HID2, r3
541
542	/* Done!						*/
543	/*------------------------------*/
544	blr
545
546	/* setup_bats - set them up to some initial state */
547	.globl	setup_bats
548setup_bats:
549	addis	r0, r0, 0x0000
550
551	/* IBAT 0 */
552	addis	r4, r0, CONFIG_SYS_IBAT0L@h
553	ori	r4, r4, CONFIG_SYS_IBAT0L@l
554	addis	r3, r0, CONFIG_SYS_IBAT0U@h
555	ori	r3, r3, CONFIG_SYS_IBAT0U@l
556	mtspr	IBAT0L, r4
557	mtspr	IBAT0U, r3
558
559	/* DBAT 0 */
560	addis	r4, r0, CONFIG_SYS_DBAT0L@h
561	ori	r4, r4, CONFIG_SYS_DBAT0L@l
562	addis	r3, r0, CONFIG_SYS_DBAT0U@h
563	ori	r3, r3, CONFIG_SYS_DBAT0U@l
564	mtspr	DBAT0L, r4
565	mtspr	DBAT0U, r3
566
567	/* IBAT 1 */
568	addis	r4, r0, CONFIG_SYS_IBAT1L@h
569	ori	r4, r4, CONFIG_SYS_IBAT1L@l
570	addis	r3, r0, CONFIG_SYS_IBAT1U@h
571	ori	r3, r3, CONFIG_SYS_IBAT1U@l
572	mtspr	IBAT1L, r4
573	mtspr	IBAT1U, r3
574
575	/* DBAT 1 */
576	addis	r4, r0, CONFIG_SYS_DBAT1L@h
577	ori	r4, r4, CONFIG_SYS_DBAT1L@l
578	addis	r3, r0, CONFIG_SYS_DBAT1U@h
579	ori	r3, r3, CONFIG_SYS_DBAT1U@l
580	mtspr	DBAT1L, r4
581	mtspr	DBAT1U, r3
582
583	/* IBAT 2 */
584	addis	r4, r0, CONFIG_SYS_IBAT2L@h
585	ori	r4, r4, CONFIG_SYS_IBAT2L@l
586	addis	r3, r0, CONFIG_SYS_IBAT2U@h
587	ori	r3, r3, CONFIG_SYS_IBAT2U@l
588	mtspr	IBAT2L, r4
589	mtspr	IBAT2U, r3
590
591	/* DBAT 2 */
592	addis	r4, r0, CONFIG_SYS_DBAT2L@h
593	ori	r4, r4, CONFIG_SYS_DBAT2L@l
594	addis	r3, r0, CONFIG_SYS_DBAT2U@h
595	ori	r3, r3, CONFIG_SYS_DBAT2U@l
596	mtspr	DBAT2L, r4
597	mtspr	DBAT2U, r3
598
599	/* IBAT 3 */
600	addis	r4, r0, CONFIG_SYS_IBAT3L@h
601	ori	r4, r4, CONFIG_SYS_IBAT3L@l
602	addis	r3, r0, CONFIG_SYS_IBAT3U@h
603	ori	r3, r3, CONFIG_SYS_IBAT3U@l
604	mtspr	IBAT3L, r4
605	mtspr	IBAT3U, r3
606
607	/* DBAT 3 */
608	addis	r4, r0, CONFIG_SYS_DBAT3L@h
609	ori	r4, r4, CONFIG_SYS_DBAT3L@l
610	addis	r3, r0, CONFIG_SYS_DBAT3U@h
611	ori	r3, r3, CONFIG_SYS_DBAT3U@l
612	mtspr	DBAT3L, r4
613	mtspr	DBAT3U, r3
614
615#ifdef CONFIG_HIGH_BATS
616	/* IBAT 4 */
617	addis   r4, r0, CONFIG_SYS_IBAT4L@h
618	ori     r4, r4, CONFIG_SYS_IBAT4L@l
619	addis   r3, r0, CONFIG_SYS_IBAT4U@h
620	ori     r3, r3, CONFIG_SYS_IBAT4U@l
621	mtspr   IBAT4L, r4
622	mtspr   IBAT4U, r3
623
624	/* DBAT 4 */
625	addis   r4, r0, CONFIG_SYS_DBAT4L@h
626	ori     r4, r4, CONFIG_SYS_DBAT4L@l
627	addis   r3, r0, CONFIG_SYS_DBAT4U@h
628	ori     r3, r3, CONFIG_SYS_DBAT4U@l
629	mtspr   DBAT4L, r4
630	mtspr   DBAT4U, r3
631
632	/* IBAT 5 */
633	addis   r4, r0, CONFIG_SYS_IBAT5L@h
634	ori     r4, r4, CONFIG_SYS_IBAT5L@l
635	addis   r3, r0, CONFIG_SYS_IBAT5U@h
636	ori     r3, r3, CONFIG_SYS_IBAT5U@l
637	mtspr   IBAT5L, r4
638	mtspr   IBAT5U, r3
639
640	/* DBAT 5 */
641	addis   r4, r0, CONFIG_SYS_DBAT5L@h
642	ori     r4, r4, CONFIG_SYS_DBAT5L@l
643	addis   r3, r0, CONFIG_SYS_DBAT5U@h
644	ori     r3, r3, CONFIG_SYS_DBAT5U@l
645	mtspr   DBAT5L, r4
646	mtspr   DBAT5U, r3
647
648	/* IBAT 6 */
649	addis   r4, r0, CONFIG_SYS_IBAT6L@h
650	ori     r4, r4, CONFIG_SYS_IBAT6L@l
651	addis   r3, r0, CONFIG_SYS_IBAT6U@h
652	ori     r3, r3, CONFIG_SYS_IBAT6U@l
653	mtspr   IBAT6L, r4
654	mtspr   IBAT6U, r3
655
656	/* DBAT 6 */
657	addis   r4, r0, CONFIG_SYS_DBAT6L@h
658	ori     r4, r4, CONFIG_SYS_DBAT6L@l
659	addis   r3, r0, CONFIG_SYS_DBAT6U@h
660	ori     r3, r3, CONFIG_SYS_DBAT6U@l
661	mtspr   DBAT6L, r4
662	mtspr   DBAT6U, r3
663
664	/* IBAT 7 */
665	addis   r4, r0, CONFIG_SYS_IBAT7L@h
666	ori     r4, r4, CONFIG_SYS_IBAT7L@l
667	addis   r3, r0, CONFIG_SYS_IBAT7U@h
668	ori     r3, r3, CONFIG_SYS_IBAT7U@l
669	mtspr   IBAT7L, r4
670	mtspr   IBAT7U, r3
671
672	/* DBAT 7 */
673	addis   r4, r0, CONFIG_SYS_DBAT7L@h
674	ori     r4, r4, CONFIG_SYS_DBAT7L@l
675	addis   r3, r0, CONFIG_SYS_DBAT7U@h
676	ori     r3, r3, CONFIG_SYS_DBAT7U@l
677	mtspr   DBAT7L, r4
678	mtspr   DBAT7U, r3
679#endif
680
681	isync
682
683	/* invalidate all tlb's
684	 *
685	 * From the 603e User Manual: "The 603e provides the ability to
686	 * invalidate a TLB entry. The TLB Invalidate Entry (tlbie)
687	 * instruction invalidates the TLB entry indexed by the EA, and
688	 * operates on both the instruction and data TLBs simultaneously
689	 * invalidating four TLB entries (both sets in each TLB). The
690	 * index corresponds to bits 15-19 of the EA. To invalidate all
691	 * entries within both TLBs, 32 tlbie instructions should be
692	 * issued, incrementing this field by one each time."
693	 *
694	 * "Note that the tlbia instruction is not implemented on the
695	 * 603e."
696	 *
697	 * bits 15-19 correspond to addresses 0x00000000 to 0x0001F000
698	 * incrementing by 0x1000 each time. The code below is sort of
699	 * based on code in "flush_tlbs" from arch/powerpc/kernel/head.S
700	 *
701	 */
702	lis	r3, 0
703	lis	r5, 2
704
7051:
706	tlbie	r3
707	addi	r3, r3, 0x1000
708	cmp	0, 0, r3, r5
709	blt	1b
710
711	blr
712
713/* Cache functions.
714 *
715 * Note: requires that all cache bits in
716 * HID0 are in the low half word.
717 */
718#ifndef MINIMAL_SPL
719	.globl	icache_enable
720icache_enable:
721	mfspr	r3, HID0
722	ori	r3, r3, HID0_ICE
723	li	r4, HID0_ICFI|HID0_ILOCK
724	andc	r3, r3, r4
725	ori	r4, r3, HID0_ICFI
726	isync
727	mtspr	HID0, r4    /* sets enable and invalidate, clears lock */
728	isync
729	mtspr	HID0, r3	/* clears invalidate */
730	blr
731
732	.globl	icache_disable
733icache_disable:
734	mfspr	r3, HID0
735	lis	r4, 0
736	ori	r4, r4, HID0_ICE|HID0_ICFI|HID0_ILOCK
737	andc	r3, r3, r4
738	isync
739	mtspr	HID0, r3	/* clears invalidate, enable and lock */
740	blr
741
742	.globl	icache_status
743icache_status:
744	mfspr	r3, HID0
745	rlwinm	r3, r3, (31 - HID0_ICE_SHIFT + 1), 31, 31
746	blr
747#endif	/* !MINIMAL_SPL */
748
749	.globl	dcache_enable
750dcache_enable:
751	mfspr	r3, HID0
752	li	r5, HID0_DCFI|HID0_DLOCK
753	andc	r3, r3, r5
754	ori	r3, r3, HID0_DCE
755	sync
756	mtspr	HID0, r3		/* enable, no invalidate */
757	blr
758
759	.globl	dcache_disable
760dcache_disable:
761	mflr	r4
762	bl	flush_dcache		/* uses r3 and r5 */
763	mfspr	r3, HID0
764	li	r5, HID0_DCE|HID0_DLOCK
765	andc	r3, r3, r5
766	ori	r5, r3, HID0_DCFI
767	sync
768	mtspr	HID0, r5	/* sets invalidate, clears enable and lock */
769	sync
770	mtspr	HID0, r3	/* clears invalidate */
771	mtlr	r4
772	blr
773
774	.globl	dcache_status
775dcache_status:
776	mfspr	r3, HID0
777	rlwinm	r3, r3, (31 - HID0_DCE_SHIFT + 1), 31, 31
778	blr
779
780	.globl	flush_dcache
781flush_dcache:
782	lis	r3, 0
783	lis	r5, CONFIG_SYS_CACHELINE_SIZE
7841:	cmp	0, 1, r3, r5
785	bge	2f
786	lwz	r5, 0(r3)
787	lis	r5, CONFIG_SYS_CACHELINE_SIZE
788	addi	r3, r3, 0x4
789	b	1b
7902:	blr
791
792/*-------------------------------------------------------------------*/
793
794/*
795 * void relocate_code (addr_sp, gd, addr_moni)
796 *
797 * This "function" does not return, instead it continues in RAM
798 * after relocating the monitor code.
799 *
800 * r3 = dest
801 * r4 = src
802 * r5 = length in bytes
803 * r6 = cachelinesize
804 */
805	.globl	relocate_code
806relocate_code:
807	mr	r1,  r3		/* Set new stack pointer	*/
808	mr	r9,  r4		/* Save copy of Global Data pointer */
809	mr	r10, r5		/* Save copy of Destination Address */
810
811	GET_GOT
812	mr	r3,  r5				/* Destination Address */
813	lis	r4, CONFIG_SYS_MONITOR_BASE@h		/* Source      Address */
814	ori	r4, r4, CONFIG_SYS_MONITOR_BASE@l
815	lwz	r5, GOT(__bss_start)
816	sub	r5, r5, r4
817	li	r6, CONFIG_SYS_CACHELINE_SIZE		/* Cache Line Size */
818
819	/*
820	 * Fix GOT pointer:
821	 *
822	 * New GOT-PTR = (old GOT-PTR - CONFIG_SYS_MONITOR_BASE)
823	 *		+ Destination Address
824	 *
825	 * Offset:
826	 */
827	sub	r15, r10, r4
828
829	/* First our own GOT */
830	add	r12, r12, r15
831	/* then the one used by the C code */
832	add	r30, r30, r15
833
834	/*
835	 * Now relocate code
836	 */
837
838	cmplw	cr1,r3,r4
839	addi	r0,r5,3
840	srwi.	r0,r0,2
841	beq	cr1,4f		/* In place copy is not necessary */
842	beq	7f		/* Protect against 0 count	  */
843	mtctr	r0
844	bge	cr1,2f
845	la	r8,-4(r4)
846	la	r7,-4(r3)
847
848	/* copy */
8491:	lwzu	r0,4(r8)
850	stwu	r0,4(r7)
851	bdnz	1b
852
853	addi	r0,r5,3
854	srwi.	r0,r0,2
855	mtctr	r0
856	la	r8,-4(r4)
857	la	r7,-4(r3)
858
859	/* and compare */
86020:	lwzu	r20,4(r8)
861	lwzu	r21,4(r7)
862	xor. r22, r20, r21
863	bne  30f
864	bdnz	20b
865	b 4f
866
867	/* compare failed */
86830:	li r3, 0
869	blr
870
8712:	slwi	r0,r0,2 /* re copy in reverse order ... y do we needed it? */
872	add	r8,r4,r0
873	add	r7,r3,r0
8743:	lwzu	r0,-4(r8)
875	stwu	r0,-4(r7)
876	bdnz	3b
877
878/*
879 * Now flush the cache: note that we must start from a cache aligned
880 * address. Otherwise we might miss one cache line.
881 */
8824:	cmpwi	r6,0
883	add	r5,r3,r5
884	beq	7f		/* Always flush prefetch queue in any case */
885	subi	r0,r6,1
886	andc	r3,r3,r0
887	mr	r4,r3
8885:	dcbst	0,r4
889	add	r4,r4,r6
890	cmplw	r4,r5
891	blt	5b
892	sync			/* Wait for all dcbst to complete on bus */
893	mr	r4,r3
8946:	icbi	0,r4
895	add	r4,r4,r6
896	cmplw	r4,r5
897	blt	6b
8987:	sync			/* Wait for all icbi to complete on bus	*/
899	isync
900
901/*
902 * We are done. Do not return, instead branch to second part of board
903 * initialization, now running from RAM.
904 */
905	addi	r0, r10, in_ram - _start + EXC_OFF_SYS_RESET
906	mtlr	r0
907	blr
908
909in_ram:
910
911	/*
912	 * Relocation Function, r12 point to got2+0x8000
913	 *
914	 * Adjust got2 pointers, no need to check for 0, this code
915	 * already puts a few entries in the table.
916	 */
917	li	r0,__got2_entries@sectoff@l
918	la	r3,GOT(_GOT2_TABLE_)
919	lwz	r11,GOT(_GOT2_TABLE_)
920	mtctr	r0
921	sub	r11,r3,r11
922	addi	r3,r3,-4
9231:	lwzu	r0,4(r3)
924	cmpwi	r0,0
925	beq-	2f
926	add	r0,r0,r11
927	stw	r0,0(r3)
9282:	bdnz	1b
929
930#ifndef MINIMAL_SPL
931	/*
932	 * Now adjust the fixups and the pointers to the fixups
933	 * in case we need to move ourselves again.
934	 */
935	li	r0,__fixup_entries@sectoff@l
936	lwz	r3,GOT(_FIXUP_TABLE_)
937	cmpwi	r0,0
938	mtctr	r0
939	addi	r3,r3,-4
940	beq	4f
9413:	lwzu	r4,4(r3)
942	lwzux	r0,r4,r11
943	cmpwi	r0,0
944	add	r0,r0,r11
945	stw	r4,0(r3)
946	beq-	5f
947	stw	r0,0(r4)
9485:	bdnz	3b
9494:
950#endif
951
952clear_bss:
953	/*
954	 * Now clear BSS segment
955	 */
956	lwz	r3,GOT(__bss_start)
957#if defined(CONFIG_HYMOD)
958	/*
959	 * For HYMOD - the environment is the very last item in flash.
960	 * The real .bss stops just before environment starts, so only
961	 * clear up to that point.
962	 *
963	 * taken from mods for FADS board
964	 */
965	lwz	r4,GOT(environment)
966#else
967	lwz	r4,GOT(__bss_end)
968#endif
969
970	cmplw	0, r3, r4
971	beq	6f
972
973	li	r0, 0
9745:
975	stw	r0, 0(r3)
976	addi	r3, r3, 4
977	cmplw	0, r3, r4
978	bne	5b
9796:
980
981	mr	r3, r9		/* Global Data pointer		*/
982	mr	r4, r10		/* Destination Address		*/
983	bl	board_init_r
984
985#ifndef MINIMAL_SPL
986	/*
987	 * Copy exception vector code to low memory
988	 *
989	 * r3: dest_addr
990	 * r7: source address, r8: end address, r9: target address
991	 */
992	.globl	trap_init
993trap_init:
994	mflr	r4		/* save link register */
995	GET_GOT
996	lwz	r7, GOT(_start)
997	lwz	r8, GOT(_end_of_vectors)
998
999	li	r9, 0x100	/* reset vector always at 0x100 */
1000
1001	cmplw	0, r7, r8
1002	bgelr			/* return if r7>=r8 - just in case */
10031:
1004	lwz	r0, 0(r7)
1005	stw	r0, 0(r9)
1006	addi	r7, r7, 4
1007	addi	r9, r9, 4
1008	cmplw	0, r7, r8
1009	bne	1b
1010
1011	/*
1012	 * relocate `hdlr' and `int_return' entries
1013	 */
1014	li	r7, .L_MachineCheck - _start + EXC_OFF_SYS_RESET
1015	li	r8, Alignment - _start + EXC_OFF_SYS_RESET
10162:
1017	bl	trap_reloc
1018	addi	r7, r7, 0x100		/* next exception vector */
1019	cmplw	0, r7, r8
1020	blt	2b
1021
1022	li	r7, .L_Alignment - _start + EXC_OFF_SYS_RESET
1023	bl	trap_reloc
1024
1025	li	r7, .L_ProgramCheck - _start + EXC_OFF_SYS_RESET
1026	bl	trap_reloc
1027
1028	li	r7, .L_FPUnavailable - _start + EXC_OFF_SYS_RESET
1029	li	r8, SystemCall - _start + EXC_OFF_SYS_RESET
10303:
1031	bl	trap_reloc
1032	addi	r7, r7, 0x100		/* next exception vector */
1033	cmplw	0, r7, r8
1034	blt	3b
1035
1036	li	r7, .L_SingleStep - _start + EXC_OFF_SYS_RESET
1037	li	r8, _end_of_vectors - _start + EXC_OFF_SYS_RESET
10384:
1039	bl	trap_reloc
1040	addi	r7, r7, 0x100		/* next exception vector */
1041	cmplw	0, r7, r8
1042	blt	4b
1043
1044	mfmsr	r3			/* now that the vectors have */
1045	lis	r7, MSR_IP@h		/* relocated into low memory */
1046	ori	r7, r7, MSR_IP@l	/* MSR[IP] can be turned off */
1047	andc	r3, r3, r7		/* (if it was on) */
1048	SYNC				/* Some chip revs need this... */
1049	mtmsr	r3
1050	SYNC
1051
1052	mtlr	r4			/* restore link register    */
1053	blr
1054
1055#endif /* !MINIMAL_SPL */
1056
1057#ifdef CONFIG_SYS_INIT_RAM_LOCK
1058lock_ram_in_cache:
1059	/* Allocate Initial RAM in data cache.
1060	 */
1061	lis	r3, (CONFIG_SYS_INIT_RAM_ADDR & ~31)@h
1062	ori	r3, r3, (CONFIG_SYS_INIT_RAM_ADDR & ~31)@l
1063	li	r4, ((CONFIG_SYS_INIT_RAM_SIZE & ~31) + \
1064		     (CONFIG_SYS_INIT_RAM_ADDR & 31) + 31) / 32
1065	mtctr	r4
10661:
1067	dcbz	r0, r3
1068	addi	r3, r3, 32
1069	bdnz	1b
1070
1071	/* Lock the data cache */
1072	mfspr	r0, HID0
1073	ori	r0, r0, HID0_DLOCK
1074	sync
1075	mtspr	HID0, r0
1076	sync
1077	blr
1078
1079#ifndef MINIMAL_SPL
1080.globl unlock_ram_in_cache
1081unlock_ram_in_cache:
1082	/* invalidate the INIT_RAM section */
1083	lis	r3, (CONFIG_SYS_INIT_RAM_ADDR & ~31)@h
1084	ori	r3, r3, (CONFIG_SYS_INIT_RAM_ADDR & ~31)@l
1085	li	r4, ((CONFIG_SYS_INIT_RAM_SIZE & ~31) + \
1086		     (CONFIG_SYS_INIT_RAM_ADDR & 31) + 31) / 32
1087	mtctr	r4
10881:	icbi	r0, r3
1089	dcbi	r0, r3
1090	addi	r3, r3, 32
1091	bdnz	1b
1092	sync			/* Wait for all icbi to complete on bus	*/
1093	isync
1094
1095	/* Unlock the data cache and invalidate it */
1096	mfspr   r3, HID0
1097	li	r5, HID0_DLOCK|HID0_DCFI
1098	andc	r3, r3, r5		/* no invalidate, unlock */
1099	ori	r5, r3, HID0_DCFI	/* invalidate, unlock */
1100	sync
1101	mtspr	HID0, r5		/* invalidate, unlock */
1102	sync
1103	mtspr	HID0, r3		/* no invalidate, unlock */
1104	blr
1105#endif /* !MINIMAL_SPL */
1106#endif /* CONFIG_SYS_INIT_RAM_LOCK */
1107
1108#ifdef CONFIG_SYS_FLASHBOOT
1109map_flash_by_law1:
1110	/* When booting from ROM (Flash or EPROM), clear the  */
1111	/* Address Mask in OR0 so ROM appears everywhere      */
1112	/*----------------------------------------------------*/
1113	lis	r3, (CONFIG_SYS_IMMR)@h  /* r3 <= CONFIG_SYS_IMMR    */
1114	lwz	r4, OR0@l(r3)
1115	li	r5, 0x7fff        /* r5 <= 0x00007FFFF */
1116	and	r4, r4, r5
1117	stw	r4, OR0@l(r3)     /* OR0 <= OR0 & 0x00007FFFF */
1118
1119	/* As MPC8349E User's Manual presented, when RCW[BMS] is set to 0,
1120	 * system will boot from 0x0000_0100, and the LBLAWBAR0[BASE_ADDR]
1121	 * reset value is 0x00000; when RCW[BMS] is set to 1, system will boot
1122	 * from 0xFFF0_0100, and the LBLAWBAR0[BASE_ADDR] reset value is
1123	 * 0xFF800.  From the hard resetting to here, the processor fetched and
1124	 * executed the instructions one by one.  There is not absolutely
1125	 * jumping happened.  Laterly, the u-boot code has to do an absolutely
1126	 * jumping to tell the CPU instruction fetching component what the
1127	 * u-boot TEXT base address is.  Because the TEXT base resides in the
1128	 * boot ROM memory space, to garantee the code can run smoothly after
1129	 * that jumping, we must map in the entire boot ROM by Local Access
1130	 * Window.  Sometimes, we desire an non-0x00000 or non-0xFF800 starting
1131	 * address for boot ROM, such as 0xFE000000.  In this case, the default
1132	 * LBIU Local Access Widow 0 will not cover this memory space.  So, we
1133	 * need another window to map in it.
1134	 */
1135	lis r4, (CONFIG_SYS_FLASH_BASE)@h
1136	ori r4, r4, (CONFIG_SYS_FLASH_BASE)@l
1137	stw r4, LBLAWBAR1(r3) /* LBLAWBAR1 <= CONFIG_SYS_FLASH_BASE */
1138
1139	/* Store 0x80000012 + log2(CONFIG_SYS_FLASH_SIZE) into LBLAWAR1 */
1140	lis r4, (0x80000012)@h
1141	ori r4, r4, (0x80000012)@l
1142	li r5, CONFIG_SYS_FLASH_SIZE
11431:	srawi. r5, r5, 1	/* r5 = r5 >> 1 */
1144	addi r4, r4, 1
1145	bne 1b
1146
1147	stw r4, LBLAWAR1(r3) /* LBLAWAR1 <= 8MB Flash Size */
1148	/* Wait for HW to catch up */
1149	lwz r4, LBLAWAR1(r3)
1150	twi 0,r4,0
1151	isync
1152	blr
1153
1154	/* Though all the LBIU Local Access Windows and LBC Banks will be
1155	 * initialized in the C code, we'd better configure boot ROM's
1156	 * window 0 and bank 0 correctly at here.
1157	 */
1158remap_flash_by_law0:
1159	/* Initialize the BR0 with the boot ROM starting address. */
1160	lwz r4, BR0(r3)
1161	li  r5, 0x7FFF
1162	and r4, r4, r5
1163	lis r5, (CONFIG_SYS_FLASH_BASE & 0xFFFF8000)@h
1164	ori r5, r5, (CONFIG_SYS_FLASH_BASE & 0xFFFF8000)@l
1165	or  r5, r5, r4
1166	stw r5, BR0(r3) /* r5 <= (CONFIG_SYS_FLASH_BASE & 0xFFFF8000) | (BR0 & 0x00007FFF) */
1167
1168	lwz r4, OR0(r3)
1169	lis r5, ~((CONFIG_SYS_FLASH_SIZE << 4) - 1)
1170	or r4, r4, r5
1171	stw r4, OR0(r3)
1172
1173	lis r4, (CONFIG_SYS_FLASH_BASE)@h
1174	ori r4, r4, (CONFIG_SYS_FLASH_BASE)@l
1175	stw r4, LBLAWBAR0(r3) /* LBLAWBAR0 <= CONFIG_SYS_FLASH_BASE */
1176
1177	/* Store 0x80000012 + log2(CONFIG_SYS_FLASH_SIZE) into LBLAWAR0 */
1178	lis r4, (0x80000012)@h
1179	ori r4, r4, (0x80000012)@l
1180	li r5, CONFIG_SYS_FLASH_SIZE
11811:	srawi. r5, r5, 1 /* r5 = r5 >> 1 */
1182	addi r4, r4, 1
1183	bne 1b
1184	stw r4, LBLAWAR0(r3) /* LBLAWAR0 <= Flash Size */
1185
1186
1187	xor r4, r4, r4
1188	stw r4, LBLAWBAR1(r3)
1189	stw r4, LBLAWAR1(r3) /* Off LBIU LAW1 */
1190	/* Wait for HW to catch up */
1191	lwz r4, LBLAWAR1(r3)
1192	twi 0,r4,0
1193	isync
1194	blr
1195#endif /* CONFIG_SYS_FLASHBOOT */
1196