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v6.2
  1// SPDX-License-Identifier: GPL-2.0
  2/*
  3 *  linux/arch/m68k/mm/kmap.c
  4 *
  5 *  Copyright (C) 1997 Roman Hodek
  6 *
  7 *  10/01/99 cleaned up the code and changing to the same interface
  8 *	     used by other architectures		/Roman Zippel
  9 */
 10
 11#include <linux/module.h>
 12#include <linux/mm.h>
 13#include <linux/kernel.h>
 14#include <linux/string.h>
 15#include <linux/types.h>
 16#include <linux/slab.h>
 17#include <linux/vmalloc.h>
 18
 19#include <asm/setup.h>
 
 20#include <asm/page.h>
 
 21#include <asm/io.h>
 22#include <asm/tlbflush.h>
 23
 24#undef DEBUG
 25
 
 
 26/*
 27 * For 040/060 we can use the virtual memory area like other architectures,
 28 * but for 020/030 we want to use early termination page descriptors and we
 29 * can't mix this with normal page descriptors, so we have to copy that code
 30 * (mm/vmalloc.c) and return appropriately aligned addresses.
 31 */
 32
 33#ifdef CPU_M68040_OR_M68060_ONLY
 34
 35#define IO_SIZE		PAGE_SIZE
 36
 37static inline struct vm_struct *get_io_area(unsigned long size)
 38{
 39	return get_vm_area(size, VM_IOREMAP);
 40}
 41
 42
 43static inline void free_io_area(void *addr)
 44{
 45	vfree((void *)(PAGE_MASK & (unsigned long)addr));
 46}
 47
 48#else
 49
 50#define IO_SIZE		PMD_SIZE
 51
 52static struct vm_struct *iolist;
 53
 54/*
 55 * __free_io_area unmaps nearly everything, so be careful
 56 * Currently it doesn't free pointer/page tables anymore but this
 57 * wasn't used anyway and might be added later.
 58 */
 59static void __free_io_area(void *addr, unsigned long size)
 60{
 61	unsigned long virtaddr = (unsigned long)addr;
 62	pgd_t *pgd_dir;
 63	p4d_t *p4d_dir;
 64	pud_t *pud_dir;
 65	pmd_t *pmd_dir;
 66	pte_t *pte_dir;
 67
 68	while ((long)size > 0) {
 69		pgd_dir = pgd_offset_k(virtaddr);
 70		p4d_dir = p4d_offset(pgd_dir, virtaddr);
 71		pud_dir = pud_offset(p4d_dir, virtaddr);
 72		if (pud_bad(*pud_dir)) {
 73			printk("iounmap: bad pud(%08lx)\n", pud_val(*pud_dir));
 74			pud_clear(pud_dir);
 75			return;
 76		}
 77		pmd_dir = pmd_offset(pud_dir, virtaddr);
 78
 79#if CONFIG_PGTABLE_LEVELS == 3
 80		if (CPU_IS_020_OR_030) {
 81			int pmd_type = pmd_val(*pmd_dir) & _DESCTYPE_MASK;
 82
 83			if (pmd_type == _PAGE_PRESENT) {
 84				pmd_clear(pmd_dir);
 85				virtaddr += PMD_SIZE;
 86				size -= PMD_SIZE;
 87
 88			} else if (pmd_type == 0)
 89				continue;
 90		}
 91#endif
 92
 93		if (pmd_bad(*pmd_dir)) {
 94			printk("iounmap: bad pmd (%08lx)\n", pmd_val(*pmd_dir));
 95			pmd_clear(pmd_dir);
 96			return;
 97		}
 98		pte_dir = pte_offset_kernel(pmd_dir, virtaddr);
 99
100		pte_val(*pte_dir) = 0;
101		virtaddr += PAGE_SIZE;
102		size -= PAGE_SIZE;
103	}
104
105	flush_tlb_all();
106}
107
108static struct vm_struct *get_io_area(unsigned long size)
109{
110	unsigned long addr;
111	struct vm_struct **p, *tmp, *area;
112
113	area = kmalloc(sizeof(*area), GFP_KERNEL);
114	if (!area)
115		return NULL;
116	addr = KMAP_START;
117	for (p = &iolist; (tmp = *p) ; p = &tmp->next) {
118		if (size + addr < (unsigned long)tmp->addr)
119			break;
120		if (addr > KMAP_END-size) {
121			kfree(area);
122			return NULL;
123		}
124		addr = tmp->size + (unsigned long)tmp->addr;
125	}
126	area->addr = (void *)addr;
127	area->size = size + IO_SIZE;
128	area->next = *p;
129	*p = area;
130	return area;
131}
132
133static inline void free_io_area(void *addr)
134{
135	struct vm_struct **p, *tmp;
136
137	if (!addr)
138		return;
139	addr = (void *)((unsigned long)addr & -IO_SIZE);
140	for (p = &iolist ; (tmp = *p) ; p = &tmp->next) {
141		if (tmp->addr == addr) {
142			*p = tmp->next;
143			/* remove gap added in get_io_area() */
144			__free_io_area(tmp->addr, tmp->size - IO_SIZE);
145			kfree(tmp);
146			return;
147		}
148	}
149}
150
151#endif
152
153/*
154 * Map some physical address range into the kernel address space.
155 */
156/* Rewritten by Andreas Schwab to remove all races. */
157
158void __iomem *__ioremap(unsigned long physaddr, unsigned long size, int cacheflag)
159{
160	struct vm_struct *area;
161	unsigned long virtaddr, retaddr;
162	long offset;
163	pgd_t *pgd_dir;
164	p4d_t *p4d_dir;
165	pud_t *pud_dir;
166	pmd_t *pmd_dir;
167	pte_t *pte_dir;
168
169	/*
170	 * Don't allow mappings that wrap..
171	 */
172	if (!size || physaddr > (unsigned long)(-size))
173		return NULL;
174
175#ifdef CONFIG_AMIGA
176	if (MACH_IS_AMIGA) {
177		if ((physaddr >= 0x40000000) && (physaddr + size < 0x60000000)
178		    && (cacheflag == IOMAP_NOCACHE_SER))
179			return (void __iomem *)physaddr;
180	}
181#endif
182#ifdef CONFIG_VIRT
183	if (MACH_IS_VIRT) {
184		if (physaddr >= 0xff000000 && cacheflag == IOMAP_NOCACHE_SER)
185			return (void __iomem *)physaddr;
186	}
187#endif
188#ifdef CONFIG_COLDFIRE
189	if (__cf_internalio(physaddr))
190		return (void __iomem *) physaddr;
191#endif
192
193#ifdef DEBUG
194	printk("ioremap: 0x%lx,0x%lx(%d) - ", physaddr, size, cacheflag);
195#endif
196	/*
197	 * Mappings have to be aligned
198	 */
199	offset = physaddr & (IO_SIZE - 1);
200	physaddr &= -IO_SIZE;
201	size = (size + offset + IO_SIZE - 1) & -IO_SIZE;
202
203	/*
204	 * Ok, go for it..
205	 */
206	area = get_io_area(size);
207	if (!area)
208		return NULL;
209
210	virtaddr = (unsigned long)area->addr;
211	retaddr = virtaddr + offset;
212#ifdef DEBUG
213	printk("0x%lx,0x%lx,0x%lx", physaddr, virtaddr, retaddr);
214#endif
215
216	/*
217	 * add cache and table flags to physical address
218	 */
219	if (CPU_IS_040_OR_060) {
220		physaddr |= (_PAGE_PRESENT | _PAGE_GLOBAL040 |
221			     _PAGE_ACCESSED | _PAGE_DIRTY);
222		switch (cacheflag) {
223		case IOMAP_FULL_CACHING:
224			physaddr |= _PAGE_CACHE040;
225			break;
226		case IOMAP_NOCACHE_SER:
227		default:
228			physaddr |= _PAGE_NOCACHE_S;
229			break;
230		case IOMAP_NOCACHE_NONSER:
231			physaddr |= _PAGE_NOCACHE;
232			break;
233		case IOMAP_WRITETHROUGH:
234			physaddr |= _PAGE_CACHE040W;
235			break;
236		}
237	} else {
238		physaddr |= (_PAGE_PRESENT | _PAGE_ACCESSED |
239			     _PAGE_DIRTY | _PAGE_READWRITE);
240		switch (cacheflag) {
241		case IOMAP_NOCACHE_SER:
242		case IOMAP_NOCACHE_NONSER:
243		default:
244			physaddr |= _PAGE_NOCACHE030;
245			break;
246		case IOMAP_FULL_CACHING:
247		case IOMAP_WRITETHROUGH:
248			break;
249		}
250	}
251
252	while ((long)size > 0) {
253#ifdef DEBUG
254		if (!(virtaddr & (PMD_SIZE-1)))
255			printk ("\npa=%#lx va=%#lx ", physaddr, virtaddr);
256#endif
257		pgd_dir = pgd_offset_k(virtaddr);
258		p4d_dir = p4d_offset(pgd_dir, virtaddr);
259		pud_dir = pud_offset(p4d_dir, virtaddr);
260		pmd_dir = pmd_alloc(&init_mm, pud_dir, virtaddr);
261		if (!pmd_dir) {
262			printk("ioremap: no mem for pmd_dir\n");
263			return NULL;
264		}
265
266#if CONFIG_PGTABLE_LEVELS == 3
267		if (CPU_IS_020_OR_030) {
268			pmd_val(*pmd_dir) = physaddr;
269			physaddr += PMD_SIZE;
270			virtaddr += PMD_SIZE;
271			size -= PMD_SIZE;
272		} else
273#endif
274		{
275			pte_dir = pte_alloc_kernel(pmd_dir, virtaddr);
276			if (!pte_dir) {
277				printk("ioremap: no mem for pte_dir\n");
278				return NULL;
279			}
280
281			pte_val(*pte_dir) = physaddr;
282			virtaddr += PAGE_SIZE;
283			physaddr += PAGE_SIZE;
284			size -= PAGE_SIZE;
285		}
286	}
287#ifdef DEBUG
288	printk("\n");
289#endif
290	flush_tlb_all();
291
292	return (void __iomem *)retaddr;
293}
294EXPORT_SYMBOL(__ioremap);
295
296/*
297 * Unmap an ioremap()ed region again
298 */
299void iounmap(void __iomem *addr)
300{
301#ifdef CONFIG_AMIGA
302	if (MACH_IS_AMIGA &&
303	    ((unsigned long)addr >= 0x40000000) &&
304	    ((unsigned long)addr < 0x60000000))
305		return;
306#endif
307#ifdef CONFIG_VIRT
308	if (MACH_IS_VIRT && (unsigned long)addr >= 0xff000000)
309		return;
310#endif
311#ifdef CONFIG_COLDFIRE
312	if (cf_internalio(addr))
313		return;
314#endif
315	free_io_area((__force void *)addr);
 
316}
317EXPORT_SYMBOL(iounmap);
318
319/*
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
320 * Set new cache mode for some kernel address space.
321 * The caller must push data for that range itself, if such data may already
322 * be in the cache.
323 */
324void kernel_set_cachemode(void *addr, unsigned long size, int cmode)
325{
326	unsigned long virtaddr = (unsigned long)addr;
327	pgd_t *pgd_dir;
328	p4d_t *p4d_dir;
329	pud_t *pud_dir;
330	pmd_t *pmd_dir;
331	pte_t *pte_dir;
332
333	if (CPU_IS_040_OR_060) {
334		switch (cmode) {
335		case IOMAP_FULL_CACHING:
336			cmode = _PAGE_CACHE040;
337			break;
338		case IOMAP_NOCACHE_SER:
339		default:
340			cmode = _PAGE_NOCACHE_S;
341			break;
342		case IOMAP_NOCACHE_NONSER:
343			cmode = _PAGE_NOCACHE;
344			break;
345		case IOMAP_WRITETHROUGH:
346			cmode = _PAGE_CACHE040W;
347			break;
348		}
349	} else {
350		switch (cmode) {
351		case IOMAP_NOCACHE_SER:
352		case IOMAP_NOCACHE_NONSER:
353		default:
354			cmode = _PAGE_NOCACHE030;
355			break;
356		case IOMAP_FULL_CACHING:
357		case IOMAP_WRITETHROUGH:
358			cmode = 0;
359		}
360	}
361
362	while ((long)size > 0) {
363		pgd_dir = pgd_offset_k(virtaddr);
364		p4d_dir = p4d_offset(pgd_dir, virtaddr);
365		pud_dir = pud_offset(p4d_dir, virtaddr);
366		if (pud_bad(*pud_dir)) {
367			printk("iocachemode: bad pud(%08lx)\n", pud_val(*pud_dir));
368			pud_clear(pud_dir);
369			return;
370		}
371		pmd_dir = pmd_offset(pud_dir, virtaddr);
372
373#if CONFIG_PGTABLE_LEVELS == 3
374		if (CPU_IS_020_OR_030) {
375			unsigned long pmd = pmd_val(*pmd_dir);
376
377			if ((pmd & _DESCTYPE_MASK) == _PAGE_PRESENT) {
378				*pmd_dir = __pmd((pmd & _CACHEMASK040) | cmode);
379				virtaddr += PMD_SIZE;
380				size -= PMD_SIZE;
 
381				continue;
382			}
383		}
384#endif
385
386		if (pmd_bad(*pmd_dir)) {
387			printk("iocachemode: bad pmd (%08lx)\n", pmd_val(*pmd_dir));
388			pmd_clear(pmd_dir);
389			return;
390		}
391		pte_dir = pte_offset_kernel(pmd_dir, virtaddr);
392
393		pte_val(*pte_dir) = (pte_val(*pte_dir) & _CACHEMASK040) | cmode;
394		virtaddr += PAGE_SIZE;
395		size -= PAGE_SIZE;
396	}
397
398	flush_tlb_all();
399}
400EXPORT_SYMBOL(kernel_set_cachemode);
v5.4
  1// SPDX-License-Identifier: GPL-2.0
  2/*
  3 *  linux/arch/m68k/mm/kmap.c
  4 *
  5 *  Copyright (C) 1997 Roman Hodek
  6 *
  7 *  10/01/99 cleaned up the code and changing to the same interface
  8 *	     used by other architectures		/Roman Zippel
  9 */
 10
 11#include <linux/module.h>
 12#include <linux/mm.h>
 13#include <linux/kernel.h>
 14#include <linux/string.h>
 15#include <linux/types.h>
 16#include <linux/slab.h>
 17#include <linux/vmalloc.h>
 18
 19#include <asm/setup.h>
 20#include <asm/segment.h>
 21#include <asm/page.h>
 22#include <asm/pgalloc.h>
 23#include <asm/io.h>
 
 24
 25#undef DEBUG
 26
 27#define PTRTREESIZE	(256*1024)
 28
 29/*
 30 * For 040/060 we can use the virtual memory area like other architectures,
 31 * but for 020/030 we want to use early termination page descriptors and we
 32 * can't mix this with normal page descriptors, so we have to copy that code
 33 * (mm/vmalloc.c) and return appropriately aligned addresses.
 34 */
 35
 36#ifdef CPU_M68040_OR_M68060_ONLY
 37
 38#define IO_SIZE		PAGE_SIZE
 39
 40static inline struct vm_struct *get_io_area(unsigned long size)
 41{
 42	return get_vm_area(size, VM_IOREMAP);
 43}
 44
 45
 46static inline void free_io_area(void *addr)
 47{
 48	vfree((void *)(PAGE_MASK & (unsigned long)addr));
 49}
 50
 51#else
 52
 53#define IO_SIZE		(256*1024)
 54
 55static struct vm_struct *iolist;
 56
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 57static struct vm_struct *get_io_area(unsigned long size)
 58{
 59	unsigned long addr;
 60	struct vm_struct **p, *tmp, *area;
 61
 62	area = kmalloc(sizeof(*area), GFP_KERNEL);
 63	if (!area)
 64		return NULL;
 65	addr = KMAP_START;
 66	for (p = &iolist; (tmp = *p) ; p = &tmp->next) {
 67		if (size + addr < (unsigned long)tmp->addr)
 68			break;
 69		if (addr > KMAP_END-size) {
 70			kfree(area);
 71			return NULL;
 72		}
 73		addr = tmp->size + (unsigned long)tmp->addr;
 74	}
 75	area->addr = (void *)addr;
 76	area->size = size + IO_SIZE;
 77	area->next = *p;
 78	*p = area;
 79	return area;
 80}
 81
 82static inline void free_io_area(void *addr)
 83{
 84	struct vm_struct **p, *tmp;
 85
 86	if (!addr)
 87		return;
 88	addr = (void *)((unsigned long)addr & -IO_SIZE);
 89	for (p = &iolist ; (tmp = *p) ; p = &tmp->next) {
 90		if (tmp->addr == addr) {
 91			*p = tmp->next;
 92			/* remove gap added in get_io_area() */
 93			__iounmap(tmp->addr, tmp->size - IO_SIZE);
 94			kfree(tmp);
 95			return;
 96		}
 97	}
 98}
 99
100#endif
101
102/*
103 * Map some physical address range into the kernel address space.
104 */
105/* Rewritten by Andreas Schwab to remove all races. */
106
107void __iomem *__ioremap(unsigned long physaddr, unsigned long size, int cacheflag)
108{
109	struct vm_struct *area;
110	unsigned long virtaddr, retaddr;
111	long offset;
112	pgd_t *pgd_dir;
 
 
113	pmd_t *pmd_dir;
114	pte_t *pte_dir;
115
116	/*
117	 * Don't allow mappings that wrap..
118	 */
119	if (!size || physaddr > (unsigned long)(-size))
120		return NULL;
121
122#ifdef CONFIG_AMIGA
123	if (MACH_IS_AMIGA) {
124		if ((physaddr >= 0x40000000) && (physaddr + size < 0x60000000)
125		    && (cacheflag == IOMAP_NOCACHE_SER))
126			return (void __iomem *)physaddr;
127	}
128#endif
 
 
 
 
 
 
129#ifdef CONFIG_COLDFIRE
130	if (__cf_internalio(physaddr))
131		return (void __iomem *) physaddr;
132#endif
133
134#ifdef DEBUG
135	printk("ioremap: 0x%lx,0x%lx(%d) - ", physaddr, size, cacheflag);
136#endif
137	/*
138	 * Mappings have to be aligned
139	 */
140	offset = physaddr & (IO_SIZE - 1);
141	physaddr &= -IO_SIZE;
142	size = (size + offset + IO_SIZE - 1) & -IO_SIZE;
143
144	/*
145	 * Ok, go for it..
146	 */
147	area = get_io_area(size);
148	if (!area)
149		return NULL;
150
151	virtaddr = (unsigned long)area->addr;
152	retaddr = virtaddr + offset;
153#ifdef DEBUG
154	printk("0x%lx,0x%lx,0x%lx", physaddr, virtaddr, retaddr);
155#endif
156
157	/*
158	 * add cache and table flags to physical address
159	 */
160	if (CPU_IS_040_OR_060) {
161		physaddr |= (_PAGE_PRESENT | _PAGE_GLOBAL040 |
162			     _PAGE_ACCESSED | _PAGE_DIRTY);
163		switch (cacheflag) {
164		case IOMAP_FULL_CACHING:
165			physaddr |= _PAGE_CACHE040;
166			break;
167		case IOMAP_NOCACHE_SER:
168		default:
169			physaddr |= _PAGE_NOCACHE_S;
170			break;
171		case IOMAP_NOCACHE_NONSER:
172			physaddr |= _PAGE_NOCACHE;
173			break;
174		case IOMAP_WRITETHROUGH:
175			physaddr |= _PAGE_CACHE040W;
176			break;
177		}
178	} else {
179		physaddr |= (_PAGE_PRESENT | _PAGE_ACCESSED |
180			     _PAGE_DIRTY | _PAGE_READWRITE);
181		switch (cacheflag) {
182		case IOMAP_NOCACHE_SER:
183		case IOMAP_NOCACHE_NONSER:
184		default:
185			physaddr |= _PAGE_NOCACHE030;
186			break;
187		case IOMAP_FULL_CACHING:
188		case IOMAP_WRITETHROUGH:
189			break;
190		}
191	}
192
193	while ((long)size > 0) {
194#ifdef DEBUG
195		if (!(virtaddr & (PTRTREESIZE-1)))
196			printk ("\npa=%#lx va=%#lx ", physaddr, virtaddr);
197#endif
198		pgd_dir = pgd_offset_k(virtaddr);
199		pmd_dir = pmd_alloc(&init_mm, pgd_dir, virtaddr);
 
 
200		if (!pmd_dir) {
201			printk("ioremap: no mem for pmd_dir\n");
202			return NULL;
203		}
204
 
205		if (CPU_IS_020_OR_030) {
206			pmd_dir->pmd[(virtaddr/PTRTREESIZE) & 15] = physaddr;
207			physaddr += PTRTREESIZE;
208			virtaddr += PTRTREESIZE;
209			size -= PTRTREESIZE;
210		} else {
 
 
211			pte_dir = pte_alloc_kernel(pmd_dir, virtaddr);
212			if (!pte_dir) {
213				printk("ioremap: no mem for pte_dir\n");
214				return NULL;
215			}
216
217			pte_val(*pte_dir) = physaddr;
218			virtaddr += PAGE_SIZE;
219			physaddr += PAGE_SIZE;
220			size -= PAGE_SIZE;
221		}
222	}
223#ifdef DEBUG
224	printk("\n");
225#endif
226	flush_tlb_all();
227
228	return (void __iomem *)retaddr;
229}
230EXPORT_SYMBOL(__ioremap);
231
232/*
233 * Unmap an ioremap()ed region again
234 */
235void iounmap(void __iomem *addr)
236{
237#ifdef CONFIG_AMIGA
238	if ((!MACH_IS_AMIGA) ||
239	    (((unsigned long)addr < 0x40000000) ||
240	     ((unsigned long)addr > 0x60000000)))
241			free_io_area((__force void *)addr);
242#else
 
 
 
 
243#ifdef CONFIG_COLDFIRE
244	if (cf_internalio(addr))
245		return;
246#endif
247	free_io_area((__force void *)addr);
248#endif
249}
250EXPORT_SYMBOL(iounmap);
251
252/*
253 * __iounmap unmaps nearly everything, so be careful
254 * Currently it doesn't free pointer/page tables anymore but this
255 * wasn't used anyway and might be added later.
256 */
257void __iounmap(void *addr, unsigned long size)
258{
259	unsigned long virtaddr = (unsigned long)addr;
260	pgd_t *pgd_dir;
261	pmd_t *pmd_dir;
262	pte_t *pte_dir;
263
264	while ((long)size > 0) {
265		pgd_dir = pgd_offset_k(virtaddr);
266		if (pgd_bad(*pgd_dir)) {
267			printk("iounmap: bad pgd(%08lx)\n", pgd_val(*pgd_dir));
268			pgd_clear(pgd_dir);
269			return;
270		}
271		pmd_dir = pmd_offset(pgd_dir, virtaddr);
272
273		if (CPU_IS_020_OR_030) {
274			int pmd_off = (virtaddr/PTRTREESIZE) & 15;
275			int pmd_type = pmd_dir->pmd[pmd_off] & _DESCTYPE_MASK;
276
277			if (pmd_type == _PAGE_PRESENT) {
278				pmd_dir->pmd[pmd_off] = 0;
279				virtaddr += PTRTREESIZE;
280				size -= PTRTREESIZE;
281				continue;
282			} else if (pmd_type == 0)
283				continue;
284		}
285
286		if (pmd_bad(*pmd_dir)) {
287			printk("iounmap: bad pmd (%08lx)\n", pmd_val(*pmd_dir));
288			pmd_clear(pmd_dir);
289			return;
290		}
291		pte_dir = pte_offset_kernel(pmd_dir, virtaddr);
292
293		pte_val(*pte_dir) = 0;
294		virtaddr += PAGE_SIZE;
295		size -= PAGE_SIZE;
296	}
297
298	flush_tlb_all();
299}
300
301/*
302 * Set new cache mode for some kernel address space.
303 * The caller must push data for that range itself, if such data may already
304 * be in the cache.
305 */
306void kernel_set_cachemode(void *addr, unsigned long size, int cmode)
307{
308	unsigned long virtaddr = (unsigned long)addr;
309	pgd_t *pgd_dir;
 
 
310	pmd_t *pmd_dir;
311	pte_t *pte_dir;
312
313	if (CPU_IS_040_OR_060) {
314		switch (cmode) {
315		case IOMAP_FULL_CACHING:
316			cmode = _PAGE_CACHE040;
317			break;
318		case IOMAP_NOCACHE_SER:
319		default:
320			cmode = _PAGE_NOCACHE_S;
321			break;
322		case IOMAP_NOCACHE_NONSER:
323			cmode = _PAGE_NOCACHE;
324			break;
325		case IOMAP_WRITETHROUGH:
326			cmode = _PAGE_CACHE040W;
327			break;
328		}
329	} else {
330		switch (cmode) {
331		case IOMAP_NOCACHE_SER:
332		case IOMAP_NOCACHE_NONSER:
333		default:
334			cmode = _PAGE_NOCACHE030;
335			break;
336		case IOMAP_FULL_CACHING:
337		case IOMAP_WRITETHROUGH:
338			cmode = 0;
339		}
340	}
341
342	while ((long)size > 0) {
343		pgd_dir = pgd_offset_k(virtaddr);
344		if (pgd_bad(*pgd_dir)) {
345			printk("iocachemode: bad pgd(%08lx)\n", pgd_val(*pgd_dir));
346			pgd_clear(pgd_dir);
 
 
347			return;
348		}
349		pmd_dir = pmd_offset(pgd_dir, virtaddr);
350
 
351		if (CPU_IS_020_OR_030) {
352			int pmd_off = (virtaddr/PTRTREESIZE) & 15;
353
354			if ((pmd_dir->pmd[pmd_off] & _DESCTYPE_MASK) == _PAGE_PRESENT) {
355				pmd_dir->pmd[pmd_off] = (pmd_dir->pmd[pmd_off] &
356							 _CACHEMASK040) | cmode;
357				virtaddr += PTRTREESIZE;
358				size -= PTRTREESIZE;
359				continue;
360			}
361		}
 
362
363		if (pmd_bad(*pmd_dir)) {
364			printk("iocachemode: bad pmd (%08lx)\n", pmd_val(*pmd_dir));
365			pmd_clear(pmd_dir);
366			return;
367		}
368		pte_dir = pte_offset_kernel(pmd_dir, virtaddr);
369
370		pte_val(*pte_dir) = (pte_val(*pte_dir) & _CACHEMASK040) | cmode;
371		virtaddr += PAGE_SIZE;
372		size -= PAGE_SIZE;
373	}
374
375	flush_tlb_all();
376}
377EXPORT_SYMBOL(kernel_set_cachemode);