xref: /openbmc/linux/arch/arm/mm/proc-arm920.S (revision 384740dc)
1/*
2 *  linux/arch/arm/mm/proc-arm920.S: MMU functions for ARM920
3 *
4 *  Copyright (C) 1999,2000 ARM Limited
5 *  Copyright (C) 2000 Deep Blue Solutions Ltd.
6 *  hacked for non-paged-MM by Hyok S. Choi, 2003.
7 *
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License as published by
10 * the Free Software Foundation; either version 2 of the License, or
11 * (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, MA  02111-1307  USA
21 *
22 *
23 * These are the low level assembler for performing cache and TLB
24 * functions on the arm920.
25 *
26 *  CONFIG_CPU_ARM920_CPU_IDLE -> nohlt
27 */
28#include <linux/linkage.h>
29#include <linux/init.h>
30#include <asm/assembler.h>
31#include <asm/elf.h>
32#include <asm/pgtable-hwdef.h>
33#include <asm/pgtable.h>
34#include <asm/page.h>
35#include <asm/ptrace.h>
36#include "proc-macros.S"
37
38/*
39 * The size of one data cache line.
40 */
41#define CACHE_DLINESIZE	32
42
43/*
44 * The number of data cache segments.
45 */
46#define CACHE_DSEGMENTS	8
47
48/*
49 * The number of lines in a cache segment.
50 */
51#define CACHE_DENTRIES	64
52
53/*
54 * This is the size at which it becomes more efficient to
55 * clean the whole cache, rather than using the individual
56 * cache line maintainence instructions.
57 */
58#define CACHE_DLIMIT	65536
59
60
61	.text
62/*
63 * cpu_arm920_proc_init()
64 */
65ENTRY(cpu_arm920_proc_init)
66	mov	pc, lr
67
68/*
69 * cpu_arm920_proc_fin()
70 */
71ENTRY(cpu_arm920_proc_fin)
72	stmfd	sp!, {lr}
73	mov	ip, #PSR_F_BIT | PSR_I_BIT | SVC_MODE
74	msr	cpsr_c, ip
75#ifndef CONFIG_CPU_DCACHE_WRITETHROUGH
76	bl	arm920_flush_kern_cache_all
77#else
78	bl	v4wt_flush_kern_cache_all
79#endif
80	mrc	p15, 0, r0, c1, c0, 0		@ ctrl register
81	bic	r0, r0, #0x1000			@ ...i............
82	bic	r0, r0, #0x000e			@ ............wca.
83	mcr	p15, 0, r0, c1, c0, 0		@ disable caches
84	ldmfd	sp!, {pc}
85
86/*
87 * cpu_arm920_reset(loc)
88 *
89 * Perform a soft reset of the system.  Put the CPU into the
90 * same state as it would be if it had been reset, and branch
91 * to what would be the reset vector.
92 *
93 * loc: location to jump to for soft reset
94 */
95	.align	5
96ENTRY(cpu_arm920_reset)
97	mov	ip, #0
98	mcr	p15, 0, ip, c7, c7, 0		@ invalidate I,D caches
99	mcr	p15, 0, ip, c7, c10, 4		@ drain WB
100#ifdef CONFIG_MMU
101	mcr	p15, 0, ip, c8, c7, 0		@ invalidate I & D TLBs
102#endif
103	mrc	p15, 0, ip, c1, c0, 0		@ ctrl register
104	bic	ip, ip, #0x000f			@ ............wcam
105	bic	ip, ip, #0x1100			@ ...i...s........
106	mcr	p15, 0, ip, c1, c0, 0		@ ctrl register
107	mov	pc, r0
108
109/*
110 * cpu_arm920_do_idle()
111 */
112	.align	5
113ENTRY(cpu_arm920_do_idle)
114	mcr	p15, 0, r0, c7, c0, 4		@ Wait for interrupt
115	mov	pc, lr
116
117
118#ifndef CONFIG_CPU_DCACHE_WRITETHROUGH
119
120/*
121 *	flush_user_cache_all()
122 *
123 *	Invalidate all cache entries in a particular address
124 *	space.
125 */
126ENTRY(arm920_flush_user_cache_all)
127	/* FALLTHROUGH */
128
129/*
130 *	flush_kern_cache_all()
131 *
132 *	Clean and invalidate the entire cache.
133 */
134ENTRY(arm920_flush_kern_cache_all)
135	mov	r2, #VM_EXEC
136	mov	ip, #0
137__flush_whole_cache:
138	mov	r1, #(CACHE_DSEGMENTS - 1) << 5	@ 8 segments
1391:	orr	r3, r1, #(CACHE_DENTRIES - 1) << 26 @ 64 entries
1402:	mcr	p15, 0, r3, c7, c14, 2		@ clean+invalidate D index
141	subs	r3, r3, #1 << 26
142	bcs	2b				@ entries 63 to 0
143	subs	r1, r1, #1 << 5
144	bcs	1b				@ segments 7 to 0
145	tst	r2, #VM_EXEC
146	mcrne	p15, 0, ip, c7, c5, 0		@ invalidate I cache
147	mcrne	p15, 0, ip, c7, c10, 4		@ drain WB
148	mov	pc, lr
149
150/*
151 *	flush_user_cache_range(start, end, flags)
152 *
153 *	Invalidate a range of cache entries in the specified
154 *	address space.
155 *
156 *	- start	- start address (inclusive)
157 *	- end	- end address (exclusive)
158 *	- flags	- vm_flags for address space
159 */
160ENTRY(arm920_flush_user_cache_range)
161	mov	ip, #0
162	sub	r3, r1, r0			@ calculate total size
163	cmp	r3, #CACHE_DLIMIT
164	bhs	__flush_whole_cache
165
1661:	mcr	p15, 0, r0, c7, c14, 1		@ clean+invalidate D entry
167	tst	r2, #VM_EXEC
168	mcrne	p15, 0, r0, c7, c5, 1		@ invalidate I entry
169	add	r0, r0, #CACHE_DLINESIZE
170	cmp	r0, r1
171	blo	1b
172	tst	r2, #VM_EXEC
173	mcrne	p15, 0, ip, c7, c10, 4		@ drain WB
174	mov	pc, lr
175
176/*
177 *	coherent_kern_range(start, end)
178 *
179 *	Ensure coherency between the Icache and the Dcache in the
180 *	region described by start, end.  If you have non-snooping
181 *	Harvard caches, you need to implement this function.
182 *
183 *	- start	- virtual start address
184 *	- end	- virtual end address
185 */
186ENTRY(arm920_coherent_kern_range)
187	/* FALLTHROUGH */
188
189/*
190 *	coherent_user_range(start, end)
191 *
192 *	Ensure coherency between the Icache and the Dcache in the
193 *	region described by start, end.  If you have non-snooping
194 *	Harvard caches, you need to implement this function.
195 *
196 *	- start	- virtual start address
197 *	- end	- virtual end address
198 */
199ENTRY(arm920_coherent_user_range)
200	bic	r0, r0, #CACHE_DLINESIZE - 1
2011:	mcr	p15, 0, r0, c7, c10, 1		@ clean D entry
202	mcr	p15, 0, r0, c7, c5, 1		@ invalidate I entry
203	add	r0, r0, #CACHE_DLINESIZE
204	cmp	r0, r1
205	blo	1b
206	mcr	p15, 0, r0, c7, c10, 4		@ drain WB
207	mov	pc, lr
208
209/*
210 *	flush_kern_dcache_page(void *page)
211 *
212 *	Ensure no D cache aliasing occurs, either with itself or
213 *	the I cache
214 *
215 *	- addr	- page aligned address
216 */
217ENTRY(arm920_flush_kern_dcache_page)
218	add	r1, r0, #PAGE_SZ
2191:	mcr	p15, 0, r0, c7, c14, 1		@ clean+invalidate D entry
220	add	r0, r0, #CACHE_DLINESIZE
221	cmp	r0, r1
222	blo	1b
223	mov	r0, #0
224	mcr	p15, 0, r0, c7, c5, 0		@ invalidate I cache
225	mcr	p15, 0, r0, c7, c10, 4		@ drain WB
226	mov	pc, lr
227
228/*
229 *	dma_inv_range(start, end)
230 *
231 *	Invalidate (discard) the specified virtual address range.
232 *	May not write back any entries.  If 'start' or 'end'
233 *	are not cache line aligned, those lines must be written
234 *	back.
235 *
236 *	- start	- virtual start address
237 *	- end	- virtual end address
238 *
239 * (same as v4wb)
240 */
241ENTRY(arm920_dma_inv_range)
242	tst	r0, #CACHE_DLINESIZE - 1
243	bic	r0, r0, #CACHE_DLINESIZE - 1
244	mcrne	p15, 0, r0, c7, c10, 1		@ clean D entry
245	tst	r1, #CACHE_DLINESIZE - 1
246	mcrne	p15, 0, r1, c7, c10, 1		@ clean D entry
2471:	mcr	p15, 0, r0, c7, c6, 1		@ invalidate D entry
248	add	r0, r0, #CACHE_DLINESIZE
249	cmp	r0, r1
250	blo	1b
251	mcr	p15, 0, r0, c7, c10, 4		@ drain WB
252	mov	pc, lr
253
254/*
255 *	dma_clean_range(start, end)
256 *
257 *	Clean the specified virtual address range.
258 *
259 *	- start	- virtual start address
260 *	- end	- virtual end address
261 *
262 * (same as v4wb)
263 */
264ENTRY(arm920_dma_clean_range)
265	bic	r0, r0, #CACHE_DLINESIZE - 1
2661:	mcr	p15, 0, r0, c7, c10, 1		@ clean D entry
267	add	r0, r0, #CACHE_DLINESIZE
268	cmp	r0, r1
269	blo	1b
270	mcr	p15, 0, r0, c7, c10, 4		@ drain WB
271	mov	pc, lr
272
273/*
274 *	dma_flush_range(start, end)
275 *
276 *	Clean and invalidate the specified virtual address range.
277 *
278 *	- start	- virtual start address
279 *	- end	- virtual end address
280 */
281ENTRY(arm920_dma_flush_range)
282	bic	r0, r0, #CACHE_DLINESIZE - 1
2831:	mcr	p15, 0, r0, c7, c14, 1		@ clean+invalidate D entry
284	add	r0, r0, #CACHE_DLINESIZE
285	cmp	r0, r1
286	blo	1b
287	mcr	p15, 0, r0, c7, c10, 4		@ drain WB
288	mov	pc, lr
289
290ENTRY(arm920_cache_fns)
291	.long	arm920_flush_kern_cache_all
292	.long	arm920_flush_user_cache_all
293	.long	arm920_flush_user_cache_range
294	.long	arm920_coherent_kern_range
295	.long	arm920_coherent_user_range
296	.long	arm920_flush_kern_dcache_page
297	.long	arm920_dma_inv_range
298	.long	arm920_dma_clean_range
299	.long	arm920_dma_flush_range
300
301#endif
302
303
304ENTRY(cpu_arm920_dcache_clean_area)
3051:	mcr	p15, 0, r0, c7, c10, 1		@ clean D entry
306	add	r0, r0, #CACHE_DLINESIZE
307	subs	r1, r1, #CACHE_DLINESIZE
308	bhi	1b
309	mov	pc, lr
310
311/* =============================== PageTable ============================== */
312
313/*
314 * cpu_arm920_switch_mm(pgd)
315 *
316 * Set the translation base pointer to be as described by pgd.
317 *
318 * pgd: new page tables
319 */
320	.align	5
321ENTRY(cpu_arm920_switch_mm)
322#ifdef CONFIG_MMU
323	mov	ip, #0
324#ifdef CONFIG_CPU_DCACHE_WRITETHROUGH
325	mcr	p15, 0, ip, c7, c6, 0		@ invalidate D cache
326#else
327@ && 'Clean & Invalidate whole DCache'
328@ && Re-written to use Index Ops.
329@ && Uses registers r1, r3 and ip
330
331	mov	r1, #(CACHE_DSEGMENTS - 1) << 5	@ 8 segments
3321:	orr	r3, r1, #(CACHE_DENTRIES - 1) << 26 @ 64 entries
3332:	mcr	p15, 0, r3, c7, c14, 2		@ clean & invalidate D index
334	subs	r3, r3, #1 << 26
335	bcs	2b				@ entries 63 to 0
336	subs	r1, r1, #1 << 5
337	bcs	1b				@ segments 7 to 0
338#endif
339	mcr	p15, 0, ip, c7, c5, 0		@ invalidate I cache
340	mcr	p15, 0, ip, c7, c10, 4		@ drain WB
341	mcr	p15, 0, r0, c2, c0, 0		@ load page table pointer
342	mcr	p15, 0, ip, c8, c7, 0		@ invalidate I & D TLBs
343#endif
344	mov	pc, lr
345
346/*
347 * cpu_arm920_set_pte(ptep, pte, ext)
348 *
349 * Set a PTE and flush it out
350 */
351	.align	5
352ENTRY(cpu_arm920_set_pte_ext)
353#ifdef CONFIG_MMU
354	str	r1, [r0], #-2048		@ linux version
355
356	eor	r1, r1, #L_PTE_PRESENT | L_PTE_YOUNG | L_PTE_WRITE | L_PTE_DIRTY
357
358	bic	r2, r1, #PTE_SMALL_AP_MASK
359	bic	r2, r2, #PTE_TYPE_MASK
360	orr	r2, r2, #PTE_TYPE_SMALL
361
362	tst	r1, #L_PTE_USER			@ User?
363	orrne	r2, r2, #PTE_SMALL_AP_URO_SRW
364
365	tst	r1, #L_PTE_WRITE | L_PTE_DIRTY	@ Write and Dirty?
366	orreq	r2, r2, #PTE_SMALL_AP_UNO_SRW
367
368	tst	r1, #L_PTE_PRESENT | L_PTE_YOUNG	@ Present and Young?
369	movne	r2, #0
370
371#ifdef CONFIG_CPU_DCACHE_WRITETHROUGH
372	eor	r3, r2, #0x0a			@ C & small page?
373	tst	r3, #0x0b
374	biceq	r2, r2, #4
375#endif
376	str	r2, [r0]			@ hardware version
377	mov	r0, r0
378	mcr	p15, 0, r0, c7, c10, 1		@ clean D entry
379	mcr	p15, 0, r0, c7, c10, 4		@ drain WB
380#endif /* CONFIG_MMU */
381	mov	pc, lr
382
383	__INIT
384
385	.type	__arm920_setup, #function
386__arm920_setup:
387	mov	r0, #0
388	mcr	p15, 0, r0, c7, c7		@ invalidate I,D caches on v4
389	mcr	p15, 0, r0, c7, c10, 4		@ drain write buffer on v4
390#ifdef CONFIG_MMU
391	mcr	p15, 0, r0, c8, c7		@ invalidate I,D TLBs on v4
392#endif
393	adr	r5, arm920_crval
394	ldmia	r5, {r5, r6}
395	mrc	p15, 0, r0, c1, c0		@ get control register v4
396	bic	r0, r0, r5
397	orr	r0, r0, r6
398	mov	pc, lr
399	.size	__arm920_setup, . - __arm920_setup
400
401	/*
402	 *  R
403	 * .RVI ZFRS BLDP WCAM
404	 * ..11 0001 ..11 0101
405	 *
406	 */
407	.type	arm920_crval, #object
408arm920_crval:
409	crval	clear=0x00003f3f, mmuset=0x00003135, ucset=0x00001130
410
411	__INITDATA
412
413/*
414 * Purpose : Function pointers used to access above functions - all calls
415 *	     come through these
416 */
417	.type	arm920_processor_functions, #object
418arm920_processor_functions:
419	.word	v4t_early_abort
420	.word	pabort_noifar
421	.word	cpu_arm920_proc_init
422	.word	cpu_arm920_proc_fin
423	.word	cpu_arm920_reset
424	.word   cpu_arm920_do_idle
425	.word	cpu_arm920_dcache_clean_area
426	.word	cpu_arm920_switch_mm
427	.word	cpu_arm920_set_pte_ext
428	.size	arm920_processor_functions, . - arm920_processor_functions
429
430	.section ".rodata"
431
432	.type	cpu_arch_name, #object
433cpu_arch_name:
434	.asciz	"armv4t"
435	.size	cpu_arch_name, . - cpu_arch_name
436
437	.type	cpu_elf_name, #object
438cpu_elf_name:
439	.asciz	"v4"
440	.size	cpu_elf_name, . - cpu_elf_name
441
442	.type	cpu_arm920_name, #object
443cpu_arm920_name:
444	.asciz	"ARM920T"
445	.size	cpu_arm920_name, . - cpu_arm920_name
446
447	.align
448
449	.section ".proc.info.init", #alloc, #execinstr
450
451	.type	__arm920_proc_info,#object
452__arm920_proc_info:
453	.long	0x41009200
454	.long	0xff00fff0
455	.long   PMD_TYPE_SECT | \
456		PMD_SECT_BUFFERABLE | \
457		PMD_SECT_CACHEABLE | \
458		PMD_BIT4 | \
459		PMD_SECT_AP_WRITE | \
460		PMD_SECT_AP_READ
461	.long   PMD_TYPE_SECT | \
462		PMD_BIT4 | \
463		PMD_SECT_AP_WRITE | \
464		PMD_SECT_AP_READ
465	b	__arm920_setup
466	.long	cpu_arch_name
467	.long	cpu_elf_name
468	.long	HWCAP_SWP | HWCAP_HALF | HWCAP_THUMB
469	.long	cpu_arm920_name
470	.long	arm920_processor_functions
471	.long	v4wbi_tlb_fns
472	.long	v4wb_user_fns
473#ifndef CONFIG_CPU_DCACHE_WRITETHROUGH
474	.long	arm920_cache_fns
475#else
476	.long	v4wt_cache_fns
477#endif
478	.size	__arm920_proc_info, . - __arm920_proc_info
479