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H. Peter Anvin1965aae2008-10-22 22:26:29 -07001#ifndef _ASM_X86_IO_H
2#define _ASM_X86_IO_H
venkatesh.pallipadi@intel.come045fb22008-03-18 17:00:15 -07003
Brian Gerst1c5b9062010-02-05 09:37:09 -05004/*
5 * This file contains the definitions for the x86 IO instructions
6 * inb/inw/inl/outb/outw/outl and the "string versions" of the same
7 * (insb/insw/insl/outsb/outsw/outsl). You can also use "pausing"
8 * versions of the single-IO instructions (inb_p/inw_p/..).
9 *
10 * This file is not meant to be obfuscating: it's just complicated
11 * to (a) handle it all in a way that makes gcc able to optimize it
12 * as well as possible and (b) trying to avoid writing the same thing
13 * over and over again with slight variations and possibly making a
14 * mistake somewhere.
15 */
16
17/*
18 * Thanks to James van Artsdalen for a better timing-fix than
19 * the two short jumps: using outb's to a nonexistent port seems
20 * to guarantee better timings even on fast machines.
21 *
22 * On the other hand, I'd like to be sure of a non-existent port:
23 * I feel a bit unsafe about using 0x80 (should be safe, though)
24 *
25 * Linus
26 */
27
28 /*
29 * Bit simplified and optimized by Jan Hubicka
30 * Support of BIGMEM added by Gerhard Wichert, Siemens AG, July 1999.
31 *
32 * isa_memset_io, isa_memcpy_fromio, isa_memcpy_toio added,
33 * isa_read[wl] and isa_write[wl] fixed
34 * - Arnaldo Carvalho de Melo <acme@conectiva.com.br>
35 */
36
venkatesh.pallipadi@intel.comb310f381d2008-03-18 17:00:24 -070037#define ARCH_HAS_IOREMAP_WC
38
Brian Gerst1c5b9062010-02-05 09:37:09 -050039#include <linux/string.h>
Linus Torvaldsc1f64a52008-05-27 09:47:13 -070040#include <linux/compiler.h>
Hitoshi Mitake2c5643b2008-11-30 17:16:04 +090041#include <asm-generic/int-ll64.h>
Jeremy Fitzhardinge976e8f62009-02-06 13:29:44 -080042#include <asm/page.h>
Linus Torvaldsc1f64a52008-05-27 09:47:13 -070043
Jeremy Fitzhardinged8e04202009-02-09 12:05:46 -080044#include <xen/xen.h>
45
Linus Torvaldsc1f64a52008-05-27 09:47:13 -070046#define build_mmio_read(name, size, type, reg, barrier) \
47static inline type name(const volatile void __iomem *addr) \
Mikael Pettersson1c5b0eb2008-08-13 21:07:07 +020048{ type ret; asm volatile("mov" size " %1,%0":reg (ret) \
Linus Torvaldsc1f64a52008-05-27 09:47:13 -070049:"m" (*(volatile type __force *)addr) barrier); return ret; }
50
51#define build_mmio_write(name, size, type, reg, barrier) \
52static inline void name(type val, volatile void __iomem *addr) \
53{ asm volatile("mov" size " %0,%1": :reg (val), \
54"m" (*(volatile type __force *)addr) barrier); }
55
Mikael Pettersson1c5b0eb2008-08-13 21:07:07 +020056build_mmio_read(readb, "b", unsigned char, "=q", :"memory")
57build_mmio_read(readw, "w", unsigned short, "=r", :"memory")
58build_mmio_read(readl, "l", unsigned int, "=r", :"memory")
Linus Torvaldsc1f64a52008-05-27 09:47:13 -070059
Mikael Pettersson1c5b0eb2008-08-13 21:07:07 +020060build_mmio_read(__readb, "b", unsigned char, "=q", )
61build_mmio_read(__readw, "w", unsigned short, "=r", )
62build_mmio_read(__readl, "l", unsigned int, "=r", )
Linus Torvaldsc1f64a52008-05-27 09:47:13 -070063
64build_mmio_write(writeb, "b", unsigned char, "q", :"memory")
65build_mmio_write(writew, "w", unsigned short, "r", :"memory")
66build_mmio_write(writel, "l", unsigned int, "r", :"memory")
67
68build_mmio_write(__writeb, "b", unsigned char, "q", )
69build_mmio_write(__writew, "w", unsigned short, "r", )
70build_mmio_write(__writel, "l", unsigned int, "r", )
71
72#define readb_relaxed(a) __readb(a)
73#define readw_relaxed(a) __readw(a)
74#define readl_relaxed(a) __readl(a)
75#define __raw_readb __readb
76#define __raw_readw __readw
77#define __raw_readl __readl
78
79#define __raw_writeb __writeb
80#define __raw_writew __writew
81#define __raw_writel __writel
82
83#define mmiowb() barrier()
84
85#ifdef CONFIG_X86_64
Ingo Molnar93093d02008-11-30 10:20:20 +010086
Mikael Pettersson1c5b0eb2008-08-13 21:07:07 +020087build_mmio_read(readq, "q", unsigned long, "=r", :"memory")
Linus Torvaldsc1f64a52008-05-27 09:47:13 -070088build_mmio_write(writeq, "q", unsigned long, "r", :"memory")
Linus Torvaldsc1f64a52008-05-27 09:47:13 -070089
Ingo Molnar93093d02008-11-30 10:20:20 +010090#else
Hitoshi Mitake2c5643b2008-11-30 17:16:04 +090091
92static inline __u64 readq(const volatile void __iomem *addr)
93{
94 const volatile u32 __iomem *p = addr;
Ingo Molnara0b11312008-11-30 09:33:55 +010095 u32 low, high;
Hitoshi Mitake2c5643b2008-11-30 17:16:04 +090096
Ingo Molnara0b11312008-11-30 09:33:55 +010097 low = readl(p);
98 high = readl(p + 1);
Hitoshi Mitake2c5643b2008-11-30 17:16:04 +090099
Ingo Molnara0b11312008-11-30 09:33:55 +0100100 return low + ((u64)high << 32);
Hitoshi Mitake2c5643b2008-11-30 17:16:04 +0900101}
102
103static inline void writeq(__u64 val, volatile void __iomem *addr)
104{
105 writel(val, addr);
106 writel(val >> 32, addr+4);
107}
108
Ingo Molnara0b11312008-11-30 09:33:55 +0100109#endif
110
Ingo Molnar93093d02008-11-30 10:20:20 +0100111#define readq_relaxed(a) readq(a)
112
113#define __raw_readq(a) readq(a)
114#define __raw_writeq(val, addr) writeq(val, addr)
115
Ingo Molnara0b11312008-11-30 09:33:55 +0100116/* Let people know that we have them */
Ingo Molnar93093d02008-11-30 10:20:20 +0100117#define readq readq
118#define writeq writeq
Hitoshi Mitake2c5643b2008-11-30 17:16:04 +0900119
Jeremy Fitzhardinge976e8f62009-02-06 13:29:44 -0800120/**
121 * virt_to_phys - map virtual addresses to physical
122 * @address: address to remap
123 *
124 * The returned physical address is the physical (CPU) mapping for
125 * the memory address given. It is only valid to use this function on
126 * addresses directly mapped or allocated via kmalloc.
127 *
128 * This function does not give bus mappings for DMA transfers. In
129 * almost all conceivable cases a device driver should not be using
130 * this function
131 */
132
133static inline phys_addr_t virt_to_phys(volatile void *address)
134{
135 return __pa(address);
136}
137
138/**
139 * phys_to_virt - map physical address to virtual
140 * @address: address to remap
141 *
142 * The returned virtual address is a current CPU mapping for
143 * the memory address given. It is only valid to use this function on
144 * addresses that have a kernel mapping
145 *
146 * This function does not handle bus mappings for DMA transfers. In
147 * almost all conceivable cases a device driver should not be using
148 * this function
149 */
150
151static inline void *phys_to_virt(phys_addr_t address)
152{
153 return __va(address);
154}
155
156/*
157 * Change "struct page" to physical address.
158 */
159#define page_to_phys(page) ((dma_addr_t)page_to_pfn(page) << PAGE_SHIFT)
160
161/*
162 * ISA I/O bus memory addresses are 1:1 with the physical address.
H. Peter Anvina7eb5182009-02-17 13:01:51 -0800163 * However, we truncate the address to unsigned int to avoid undesirable
164 * promitions in legacy drivers.
Jeremy Fitzhardinge976e8f62009-02-06 13:29:44 -0800165 */
H. Peter Anvina7eb5182009-02-17 13:01:51 -0800166static inline unsigned int isa_virt_to_bus(volatile void *address)
167{
168 return (unsigned int)virt_to_phys(address);
169}
170#define isa_page_to_bus(page) ((unsigned int)page_to_phys(page))
171#define isa_bus_to_virt phys_to_virt
Jeremy Fitzhardinge976e8f62009-02-06 13:29:44 -0800172
173/*
174 * However PCI ones are not necessarily 1:1 and therefore these interfaces
175 * are forbidden in portable PCI drivers.
176 *
177 * Allow them on x86 for legacy drivers, though.
178 */
179#define virt_to_bus virt_to_phys
180#define bus_to_virt phys_to_virt
181
Jeremy Fitzhardinge133822c2009-02-06 13:29:52 -0800182/**
183 * ioremap - map bus memory into CPU space
184 * @offset: bus address of the memory
185 * @size: size of the resource to map
186 *
187 * ioremap performs a platform specific sequence of operations to
188 * make bus memory CPU accessible via the readb/readw/readl/writeb/
189 * writew/writel functions and the other mmio helpers. The returned
190 * address is not guaranteed to be usable directly as a virtual
191 * address.
192 *
193 * If the area you are trying to map is a PCI BAR you should have a
194 * look at pci_iomap().
195 */
196extern void __iomem *ioremap_nocache(resource_size_t offset, unsigned long size);
197extern void __iomem *ioremap_cache(resource_size_t offset, unsigned long size);
198extern void __iomem *ioremap_prot(resource_size_t offset, unsigned long size,
199 unsigned long prot_val);
200
201/*
202 * The default ioremap() behavior is non-cached:
203 */
204static inline void __iomem *ioremap(resource_size_t offset, unsigned long size)
205{
206 return ioremap_nocache(offset, size);
207}
208
209extern void iounmap(volatile void __iomem *addr);
210
Jaswinder Singh9321b8c2008-07-21 22:24:29 +0530211
Brian Gerst1c5b9062010-02-05 09:37:09 -0500212#ifdef __KERNEL__
213
214#include <asm-generic/iomap.h>
215
216#include <linux/vmalloc.h>
217
218/*
219 * Convert a virtual cached pointer to an uncached pointer
220 */
221#define xlate_dev_kmem_ptr(p) p
222
223static inline void
224memset_io(volatile void __iomem *addr, unsigned char val, size_t count)
225{
226 memset((void __force *)addr, val, count);
227}
228
229static inline void
230memcpy_fromio(void *dst, const volatile void __iomem *src, size_t count)
231{
232 memcpy(dst, (const void __force *)src, count);
233}
234
235static inline void
236memcpy_toio(volatile void __iomem *dst, const void *src, size_t count)
237{
238 memcpy((void __force *)dst, src, count);
239}
240
241/*
242 * ISA space is 'always mapped' on a typical x86 system, no need to
243 * explicitly ioremap() it. The fact that the ISA IO space is mapped
244 * to PAGE_OFFSET is pure coincidence - it does not mean ISA values
245 * are physical addresses. The following constant pointer can be
246 * used as the IO-area pointer (it can be iounmapped as well, so the
247 * analogy with PCI is quite large):
248 */
249#define __ISA_IO_base ((char __iomem *)(PAGE_OFFSET))
250
251/*
252 * Cache management
253 *
254 * This needed for two cases
255 * 1. Out of order aware processors
256 * 2. Accidentally out of order processors (PPro errata #51)
257 */
258
259static inline void flush_write_buffers(void)
260{
261#if defined(CONFIG_X86_OOSTORE) || defined(CONFIG_X86_PPRO_FENCE)
262 asm volatile("lock; addl $0,0(%%esp)": : :"memory");
Thomas Gleixner96a388d2007-10-11 11:20:03 +0200263#endif
Brian Gerst1c5b9062010-02-05 09:37:09 -0500264}
265
266#endif /* __KERNEL__ */
267
268extern void native_io_delay(void);
269
270extern int io_delay_type;
271extern void io_delay_init(void);
272
273#if defined(CONFIG_PARAVIRT)
274#include <asm/paravirt.h>
275#else
276
277static inline void slow_down_io(void)
278{
279 native_io_delay();
280#ifdef REALLY_SLOW_IO
281 native_io_delay();
282 native_io_delay();
283 native_io_delay();
284#endif
285}
286
287#endif
288
289#define BUILDIO(bwl, bw, type) \
290static inline void out##bwl(unsigned type value, int port) \
291{ \
292 asm volatile("out" #bwl " %" #bw "0, %w1" \
293 : : "a"(value), "Nd"(port)); \
294} \
295 \
296static inline unsigned type in##bwl(int port) \
297{ \
298 unsigned type value; \
299 asm volatile("in" #bwl " %w1, %" #bw "0" \
300 : "=a"(value) : "Nd"(port)); \
301 return value; \
302} \
303 \
304static inline void out##bwl##_p(unsigned type value, int port) \
305{ \
306 out##bwl(value, port); \
307 slow_down_io(); \
308} \
309 \
310static inline unsigned type in##bwl##_p(int port) \
311{ \
312 unsigned type value = in##bwl(port); \
313 slow_down_io(); \
314 return value; \
315} \
316 \
317static inline void outs##bwl(int port, const void *addr, unsigned long count) \
318{ \
319 asm volatile("rep; outs" #bwl \
320 : "+S"(addr), "+c"(count) : "d"(port)); \
321} \
322 \
323static inline void ins##bwl(int port, void *addr, unsigned long count) \
324{ \
325 asm volatile("rep; ins" #bwl \
326 : "+D"(addr), "+c"(count) : "d"(port)); \
327}
328
329BUILDIO(b, b, char)
330BUILDIO(w, w, short)
331BUILDIO(l, , int)
venkatesh.pallipadi@intel.come045fb22008-03-18 17:00:15 -0700332
333extern void *xlate_dev_mem_ptr(unsigned long phys);
334extern void unxlate_dev_mem_ptr(unsigned long phys, void *addr);
335
venkatesh.pallipadi@intel.com3a96ce82008-03-18 17:00:16 -0700336extern int ioremap_change_attr(unsigned long vaddr, unsigned long size,
337 unsigned long prot_val);
venkatesh.pallipadi@intel.comd639bab2009-01-09 16:13:13 -0800338extern void __iomem *ioremap_wc(resource_size_t offset, unsigned long size);
venkatesh.pallipadi@intel.com3a96ce82008-03-18 17:00:16 -0700339
Jeremy Fitzhardinge4583ed52008-06-25 00:19:03 -0400340/*
341 * early_ioremap() and early_iounmap() are for temporary early boot-time
342 * mappings, before the real ioremap() is functional.
343 * A boot-time mapping is currently limited to at most 16 pages.
344 */
345extern void early_ioremap_init(void);
Jeremy Fitzhardinge4583ed52008-06-25 00:19:03 -0400346extern void early_ioremap_reset(void);
Masami Hiramatsu9b987ae2009-04-09 10:55:33 -0700347extern void __iomem *early_ioremap(resource_size_t phys_addr,
348 unsigned long size);
349extern void __iomem *early_memremap(resource_size_t phys_addr,
350 unsigned long size);
Harvey Harrison1d6cf1f2008-10-28 22:46:04 -0700351extern void early_iounmap(void __iomem *addr, unsigned long size);
Liang Lie67a8072010-04-30 18:01:51 +0800352extern void fixup_early_ioremap(void);
Jeremy Fitzhardinge4583ed52008-06-25 00:19:03 -0400353
Jeremy Fitzhardinged8e04202009-02-09 12:05:46 -0800354#ifdef CONFIG_XEN
355struct bio_vec;
356
357extern bool xen_biovec_phys_mergeable(const struct bio_vec *vec1,
358 const struct bio_vec *vec2);
359
360#define BIOVEC_PHYS_MERGEABLE(vec1, vec2) \
361 (__BIOVEC_PHYS_MERGEABLE(vec1, vec2) && \
362 (!xen_domain() || xen_biovec_phys_mergeable(vec1, vec2)))
363#endif /* CONFIG_XEN */
364
Jeremy Fitzhardingea4487202009-01-28 15:42:23 -0800365#define IO_SPACE_LIMIT 0xffff
Jeremy Fitzhardinge4583ed52008-06-25 00:19:03 -0400366
H. Peter Anvin1965aae2008-10-22 22:26:29 -0700367#endif /* _ASM_X86_IO_H */