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Linus Torvalds1da177e2005-04-16 15:20:36 -07001#ifndef __ASM_SH_IO_H
2#define __ASM_SH_IO_H
Paul Mundt37b7a972010-11-01 09:49:04 -04003
Linus Torvalds1da177e2005-04-16 15:20:36 -07004/*
5 * Convention:
Paul Mundt14866542008-10-04 05:25:52 +09006 * read{b,w,l,q}/write{b,w,l,q} are for PCI,
Linus Torvalds1da177e2005-04-16 15:20:36 -07007 * while in{b,w,l}/out{b,w,l} are for ISA
Paul Mundt14866542008-10-04 05:25:52 +09008 *
Linus Torvalds1da177e2005-04-16 15:20:36 -07009 * In addition we have 'pausing' versions: in{b,w,l}_p/out{b,w,l}_p
10 * and 'string' versions: ins{b,w,l}/outs{b,w,l}
Linus Torvalds1da177e2005-04-16 15:20:36 -070011 *
Paul Mundt14866542008-10-04 05:25:52 +090012 * While read{b,w,l,q} and write{b,w,l,q} contain memory barriers
13 * automatically, there are also __raw versions, which do not.
Linus Torvalds1da177e2005-04-16 15:20:36 -070014 */
Paul Mundt4f744af2010-01-18 21:30:29 +090015#include <linux/errno.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070016#include <asm/cache.h>
17#include <asm/system.h>
18#include <asm/addrspace.h>
19#include <asm/machvec.h>
Paul Mundtb66c1a32006-01-16 22:14:15 -080020#include <asm/pgtable.h>
21#include <asm-generic/iomap.h>
22
23#ifdef __KERNEL__
Paul Mundt37b7a972010-11-01 09:49:04 -040024#define __IO_PREFIX generic
Paul Mundtb66c1a32006-01-16 22:14:15 -080025#include <asm/io_generic.h>
Magnus Damme7cc9a72008-02-07 20:18:21 +090026#include <asm/io_trapped.h>
Paul Mundtb7e68d62012-03-29 16:05:10 +090027#include <mach/mangle-port.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070028
Paul Mundt14866542008-10-04 05:25:52 +090029#define __raw_writeb(v,a) (__chk_io_ptr(a), *(volatile u8 __force *)(a) = (v))
30#define __raw_writew(v,a) (__chk_io_ptr(a), *(volatile u16 __force *)(a) = (v))
31#define __raw_writel(v,a) (__chk_io_ptr(a), *(volatile u32 __force *)(a) = (v))
32#define __raw_writeq(v,a) (__chk_io_ptr(a), *(volatile u64 __force *)(a) = (v))
Linus Torvalds1da177e2005-04-16 15:20:36 -070033
Paul Mundt14866542008-10-04 05:25:52 +090034#define __raw_readb(a) (__chk_io_ptr(a), *(volatile u8 __force *)(a))
35#define __raw_readw(a) (__chk_io_ptr(a), *(volatile u16 __force *)(a))
36#define __raw_readl(a) (__chk_io_ptr(a), *(volatile u32 __force *)(a))
37#define __raw_readq(a) (__chk_io_ptr(a), *(volatile u64 __force *)(a))
Linus Torvalds1da177e2005-04-16 15:20:36 -070038
Paul Mundtb7e68d62012-03-29 16:05:10 +090039#define readb_relaxed(c) ({ u8 __v = ioswabb(__raw_readb(c)); __v; })
40#define readw_relaxed(c) ({ u16 __v = ioswabw(__raw_readw(c)); __v; })
41#define readl_relaxed(c) ({ u32 __v = ioswabl(__raw_readl(c)); __v; })
42#define readq_relaxed(c) ({ u64 __v = ioswabq(__raw_readq(c)); __v; })
Linus Torvalds1da177e2005-04-16 15:20:36 -070043
Paul Mundtb7e68d62012-03-29 16:05:10 +090044#define writeb_relaxed(v,c) ((void)__raw_writeb((__force u8)ioswabb(v),c))
45#define writew_relaxed(v,c) ((void)__raw_writew((__force u16)ioswabw(v),c))
46#define writel_relaxed(v,c) ((void)__raw_writel((__force u32)ioswabl(v),c))
47#define writeq_relaxed(v,c) ((void)__raw_writeq((__force u64)ioswabq(v),c))
Paul Mundt37b7a972010-11-01 09:49:04 -040048
49#define readb(a) ({ u8 r_ = readb_relaxed(a); rmb(); r_; })
50#define readw(a) ({ u16 r_ = readw_relaxed(a); rmb(); r_; })
51#define readl(a) ({ u32 r_ = readl_relaxed(a); rmb(); r_; })
52#define readq(a) ({ u64 r_ = readq_relaxed(a); rmb(); r_; })
53
54#define writeb(v,a) ({ wmb(); writeb_relaxed((v),(a)); })
55#define writew(v,a) ({ wmb(); writew_relaxed((v),(a)); })
56#define writel(v,a) ({ wmb(); writel_relaxed((v),(a)); })
57#define writeq(v,a) ({ wmb(); writeq_relaxed((v),(a)); })
58
59#define readsb(p,d,l) __raw_readsb(p,d,l)
60#define readsw(p,d,l) __raw_readsw(p,d,l)
61#define readsl(p,d,l) __raw_readsl(p,d,l)
62
63#define writesb(p,d,l) __raw_writesb(p,d,l)
64#define writesw(p,d,l) __raw_writesw(p,d,l)
65#define writesl(p,d,l) __raw_writesl(p,d,l)
66
67#define __BUILD_UNCACHED_IO(bwlq, type) \
68static inline type read##bwlq##_uncached(unsigned long addr) \
69{ \
70 type ret; \
71 jump_to_uncached(); \
72 ret = __raw_read##bwlq(addr); \
73 back_to_cached(); \
74 return ret; \
75} \
76 \
77static inline void write##bwlq##_uncached(type v, unsigned long addr) \
78{ \
79 jump_to_uncached(); \
80 __raw_write##bwlq(v, addr); \
81 back_to_cached(); \
82}
83
84__BUILD_UNCACHED_IO(b, u8)
85__BUILD_UNCACHED_IO(w, u16)
86__BUILD_UNCACHED_IO(l, u32)
87__BUILD_UNCACHED_IO(q, u64)
88
89#define __BUILD_MEMORY_STRING(pfx, bwlq, type) \
90 \
91static inline void \
92pfx##writes##bwlq(volatile void __iomem *mem, const void *addr, \
93 unsigned int count) \
94{ \
95 const volatile type *__addr = addr; \
96 \
97 while (count--) { \
98 __raw_write##bwlq(*__addr, mem); \
99 __addr++; \
100 } \
101} \
102 \
103static inline void pfx##reads##bwlq(volatile void __iomem *mem, \
104 void *addr, unsigned int count) \
105{ \
106 volatile type *__addr = addr; \
107 \
108 while (count--) { \
109 *__addr = __raw_read##bwlq(mem); \
110 __addr++; \
111 } \
112}
113
114__BUILD_MEMORY_STRING(__raw_, b, u8)
115__BUILD_MEMORY_STRING(__raw_, w, u16)
116
117#ifdef CONFIG_SUPERH32
118void __raw_writesl(void __iomem *addr, const void *data, int longlen);
119void __raw_readsl(const void __iomem *addr, void *data, int longlen);
120#else
121__BUILD_MEMORY_STRING(__raw_, l, u32)
122#endif
123
124__BUILD_MEMORY_STRING(__raw_, q, u64)
125
126#ifdef CONFIG_HAS_IOPORT
127
128/*
129 * Slowdown I/O port space accesses for antique hardware.
130 */
131#undef CONF_SLOWDOWN_IO
132
133/*
134 * On SuperH I/O ports are memory mapped, so we access them using normal
135 * load/store instructions. sh_io_port_base is the virtual address to
136 * which all ports are being mapped.
137 */
138extern const unsigned long sh_io_port_base;
139
140static inline void __set_io_port_base(unsigned long pbase)
141{
142 *(unsigned long *)&sh_io_port_base = pbase;
143 barrier();
144}
145
146#ifdef CONFIG_GENERIC_IOMAP
147#define __ioport_map ioport_map
148#else
149extern void __iomem *__ioport_map(unsigned long addr, unsigned int size);
150#endif
151
152#ifdef CONF_SLOWDOWN_IO
153#define SLOW_DOWN_IO __raw_readw(sh_io_port_base)
154#else
155#define SLOW_DOWN_IO
156#endif
157
158#define __BUILD_IOPORT_SINGLE(pfx, bwlq, type, p, slow) \
159 \
160static inline void pfx##out##bwlq##p(type val, unsigned long port) \
161{ \
162 volatile type *__addr; \
163 \
164 __addr = __ioport_map(port, sizeof(type)); \
165 *__addr = val; \
166 slow; \
167} \
168 \
169static inline type pfx##in##bwlq##p(unsigned long port) \
170{ \
171 volatile type *__addr; \
172 type __val; \
173 \
174 __addr = __ioport_map(port, sizeof(type)); \
175 __val = *__addr; \
176 slow; \
177 \
178 return __val; \
179}
180
181#define __BUILD_IOPORT_PFX(bus, bwlq, type) \
182 __BUILD_IOPORT_SINGLE(bus, bwlq, type, ,) \
183 __BUILD_IOPORT_SINGLE(bus, bwlq, type, _p, SLOW_DOWN_IO)
184
185#define BUILDIO_IOPORT(bwlq, type) \
186 __BUILD_IOPORT_PFX(, bwlq, type)
187
188BUILDIO_IOPORT(b, u8)
189BUILDIO_IOPORT(w, u16)
190BUILDIO_IOPORT(l, u32)
191BUILDIO_IOPORT(q, u64)
192
193#define __BUILD_IOPORT_STRING(bwlq, type) \
194 \
195static inline void outs##bwlq(unsigned long port, const void *addr, \
196 unsigned int count) \
197{ \
198 const volatile type *__addr = addr; \
199 \
200 while (count--) { \
201 out##bwlq(*__addr, port); \
202 __addr++; \
203 } \
204} \
205 \
206static inline void ins##bwlq(unsigned long port, void *addr, \
207 unsigned int count) \
208{ \
209 volatile type *__addr = addr; \
210 \
211 while (count--) { \
212 *__addr = in##bwlq(port); \
213 __addr++; \
214 } \
215}
216
217__BUILD_IOPORT_STRING(b, u8)
218__BUILD_IOPORT_STRING(w, u16)
219__BUILD_IOPORT_STRING(l, u32)
220__BUILD_IOPORT_STRING(q, u64)
221
222#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -0700223
Paul Mundt37b7a972010-11-01 09:49:04 -0400224#define IO_SPACE_LIMIT 0xffffffff
Paul Mundtb66c1a32006-01-16 22:14:15 -0800225
Paul Mundt14866542008-10-04 05:25:52 +0900226/* synco on SH-4A, otherwise a nop */
227#define mmiowb() wmb()
Linus Torvalds1da177e2005-04-16 15:20:36 -0700228
Linus Torvalds1da177e2005-04-16 15:20:36 -0700229/* We really want to try and get these to memcpy etc */
Paul Mundt14866542008-10-04 05:25:52 +0900230void memcpy_fromio(void *, const volatile void __iomem *, unsigned long);
231void memcpy_toio(volatile void __iomem *, const void *, unsigned long);
232void memset_io(volatile void __iomem *, int, unsigned long);
Paul Mundt959f85f2006-09-27 16:43:28 +0900233
Paul Mundtac490a42007-11-20 18:26:28 +0900234/* Quad-word real-mode I/O, don't ask.. */
235unsigned long long peek_real_address_q(unsigned long long addr);
236unsigned long long poke_real_address_q(unsigned long long addr,
237 unsigned long long val);
238
Paul Mundtda06b8d2007-11-09 12:58:12 +0900239#if !defined(CONFIG_MMU)
240#define virt_to_phys(address) ((unsigned long)(address))
241#define phys_to_virt(address) ((void *)(address))
Stuart Menefyd02b08f2007-11-30 17:52:53 +0900242#else
Paul Mundtda06b8d2007-11-09 12:58:12 +0900243#define virt_to_phys(address) (__pa(address))
244#define phys_to_virt(address) (__va(address))
Yoshinori Satoa2d1a5f2006-09-27 17:25:07 +0900245#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -0700246
Linus Torvalds1da177e2005-04-16 15:20:36 -0700247/*
Paul Mundtda06b8d2007-11-09 12:58:12 +0900248 * On 32-bit SH, we traditionally have the whole physical address space
249 * mapped at all times (as MIPS does), so "ioremap()" and "iounmap()" do
250 * not need to do anything but place the address in the proper segment.
251 * This is true for P1 and P2 addresses, as well as some P3 ones.
252 * However, most of the P3 addresses and newer cores using extended
253 * addressing need to map through page tables, so the ioremap()
254 * implementation becomes a bit more complicated.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700255 *
Paul Mundtda06b8d2007-11-09 12:58:12 +0900256 * See arch/sh/mm/ioremap.c for additional notes on this.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700257 *
258 * We cheat a bit and always return uncachable areas until we've fixed
Paul Mundtb66c1a32006-01-16 22:14:15 -0800259 * the drivers to handle caching properly.
Paul Mundtda06b8d2007-11-09 12:58:12 +0900260 *
261 * On the SH-5 the concept of segmentation in the 1:1 PXSEG sense simply
262 * doesn't exist, so everything must go through page tables.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700263 */
Paul Mundtb66c1a32006-01-16 22:14:15 -0800264#ifdef CONFIG_MMU
Paul Mundt90e7d642010-02-23 16:20:53 +0900265void __iomem *__ioremap_caller(phys_addr_t offset, unsigned long size,
Paul Mundtd57d6402010-01-19 13:34:38 +0900266 pgprot_t prot, void *caller);
Paul Mundtb66c1a32006-01-16 22:14:15 -0800267void __iounmap(void __iomem *addr);
Paul Mundtccd80582008-04-25 12:58:40 +0900268
Paul Mundtb66c1a32006-01-16 22:14:15 -0800269static inline void __iomem *
Paul Mundt90e7d642010-02-23 16:20:53 +0900270__ioremap(phys_addr_t offset, unsigned long size, pgprot_t prot)
Paul Mundtbf3cded2009-12-14 14:23:41 +0900271{
Paul Mundtd57d6402010-01-19 13:34:38 +0900272 return __ioremap_caller(offset, size, prot, __builtin_return_address(0));
Paul Mundtbf3cded2009-12-14 14:23:41 +0900273}
274
275static inline void __iomem *
Paul Mundt90e7d642010-02-23 16:20:53 +0900276__ioremap_29bit(phys_addr_t offset, unsigned long size, pgprot_t prot)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700277{
Paul Mundta0ab3662010-01-13 18:31:48 +0900278#ifdef CONFIG_29BIT
Paul Mundt90e7d642010-02-23 16:20:53 +0900279 phys_addr_t last_addr = offset + size - 1;
Paul Mundtb66c1a32006-01-16 22:14:15 -0800280
281 /*
282 * For P1 and P2 space this is trivial, as everything is already
283 * mapped. Uncached access for P1 addresses are done through P2.
284 * In the P3 case or for addresses outside of the 29-bit space,
285 * mapping must be done by the PMB or by using page tables.
286 */
287 if (likely(PXSEG(offset) < P3SEG && PXSEG(last_addr) < P3SEG)) {
Paul Mundtefb3e342011-01-11 15:02:59 +0900288 u64 flags = pgprot_val(prot);
289
290 /*
291 * Anything using the legacy PTEA space attributes needs
292 * to be kicked down to page table mappings.
293 */
294 if (unlikely(flags & _PAGE_PCC_MASK))
295 return NULL;
296 if (unlikely(flags & _PAGE_CACHABLE))
Paul Mundtb66c1a32006-01-16 22:14:15 -0800297 return (void __iomem *)P1SEGADDR(offset);
298
299 return (void __iomem *)P2SEGADDR(offset);
300 }
Magnus Damm716777d2008-11-25 21:57:29 +0900301
302 /* P4 above the store queues are always mapped. */
303 if (unlikely(offset >= P3_ADDR_MAX))
304 return (void __iomem *)P4SEGADDR(offset);
Paul Mundtda06b8d2007-11-09 12:58:12 +0900305#endif
Paul Mundtb66c1a32006-01-16 22:14:15 -0800306
Paul Mundta0ab3662010-01-13 18:31:48 +0900307 return NULL;
308}
309
310static inline void __iomem *
Paul Mundt90e7d642010-02-23 16:20:53 +0900311__ioremap_mode(phys_addr_t offset, unsigned long size, pgprot_t prot)
Paul Mundta0ab3662010-01-13 18:31:48 +0900312{
313 void __iomem *ret;
314
315 ret = __ioremap_trapped(offset, size);
316 if (ret)
317 return ret;
318
Paul Mundtd57d6402010-01-19 13:34:38 +0900319 ret = __ioremap_29bit(offset, size, prot);
Paul Mundta0ab3662010-01-13 18:31:48 +0900320 if (ret)
321 return ret;
322
Paul Mundtd57d6402010-01-19 13:34:38 +0900323 return __ioremap(offset, size, prot);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700324}
Magnus Damme6be3a22009-04-30 12:56:37 +0900325#else
Paul Mundtd57d6402010-01-19 13:34:38 +0900326#define __ioremap(offset, size, prot) ((void __iomem *)(offset))
327#define __ioremap_mode(offset, size, prot) ((void __iomem *)(offset))
Magnus Damme6be3a22009-04-30 12:56:37 +0900328#define __iounmap(addr) do { } while (0)
329#endif /* CONFIG_MMU */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700330
Paul Mundt90e7d642010-02-23 16:20:53 +0900331static inline void __iomem *ioremap(phys_addr_t offset, unsigned long size)
Paul Mundtd57d6402010-01-19 13:34:38 +0900332{
333 return __ioremap_mode(offset, size, PAGE_KERNEL_NOCACHE);
334}
335
336static inline void __iomem *
Paul Mundt90e7d642010-02-23 16:20:53 +0900337ioremap_cache(phys_addr_t offset, unsigned long size)
Paul Mundtd57d6402010-01-19 13:34:38 +0900338{
339 return __ioremap_mode(offset, size, PAGE_KERNEL);
340}
341
Paul Mundt6d63e732010-01-19 14:00:14 +0900342#ifdef CONFIG_HAVE_IOREMAP_PROT
Paul Mundtd57d6402010-01-19 13:34:38 +0900343static inline void __iomem *
Paul Mundt90e7d642010-02-23 16:20:53 +0900344ioremap_prot(phys_addr_t offset, unsigned long size, unsigned long flags)
Paul Mundtd57d6402010-01-19 13:34:38 +0900345{
346 return __ioremap_mode(offset, size, __pgprot(flags));
347}
Paul Mundt6d63e732010-01-19 14:00:14 +0900348#endif
Paul Mundtd57d6402010-01-19 13:34:38 +0900349
Paul Mundtd627a2e2010-01-28 18:17:29 +0900350#ifdef CONFIG_IOREMAP_FIXED
Paul Mundt90e7d642010-02-23 16:20:53 +0900351extern void __iomem *ioremap_fixed(phys_addr_t, unsigned long, pgprot_t);
Paul Mundtd627a2e2010-01-28 18:17:29 +0900352extern int iounmap_fixed(void __iomem *);
353extern void ioremap_fixed_init(void);
354#else
355static inline void __iomem *
Paul Mundt90e7d642010-02-23 16:20:53 +0900356ioremap_fixed(phys_addr_t phys_addr, unsigned long size, pgprot_t prot)
Paul Mundtd627a2e2010-01-28 18:17:29 +0900357{
358 BUG();
359 return NULL;
360}
361
362static inline void ioremap_fixed_init(void) { }
363static inline int iounmap_fixed(void __iomem *addr) { return -EINVAL; }
364#endif
365
Paul Mundtd57d6402010-01-19 13:34:38 +0900366#define ioremap_nocache ioremap
Paul Mundtd57d6402010-01-19 13:34:38 +0900367#define iounmap __iounmap
Linus Torvalds1da177e2005-04-16 15:20:36 -0700368
Linus Torvalds1da177e2005-04-16 15:20:36 -0700369/*
Linus Torvalds1da177e2005-04-16 15:20:36 -0700370 * Convert a physical pointer to a virtual kernel pointer for /dev/mem
371 * access
372 */
373#define xlate_dev_mem_ptr(p) __va(p)
374
375/*
376 * Convert a virtual cached pointer to an uncached pointer
377 */
378#define xlate_dev_kmem_ptr(p) p
379
Paul Mundt185aed72008-11-12 12:53:48 +0900380#define ARCH_HAS_VALID_PHYS_ADDR_RANGE
381int valid_phys_addr_range(unsigned long addr, size_t size);
382int valid_mmap_phys_addr_range(unsigned long pfn, size_t size);
383
Linus Torvalds1da177e2005-04-16 15:20:36 -0700384#endif /* __KERNEL__ */
385
386#endif /* __ASM_SH_IO_H */