blob: 2006e5d359dfb5f602ab004208ea60d610e15a6d [file] [log] [blame]
Sam Ravnborgf5e706a2008-07-17 21:55:51 -07001#ifndef __SPARC_IO_H
2#define __SPARC_IO_H
3
4#include <linux/kernel.h>
5#include <linux/types.h>
6#include <linux/ioport.h> /* struct resource */
7
8#include <asm/page.h> /* IO address mapping routines need this */
9#include <asm/system.h>
Michael S. Tsirkina21a2fd2011-11-24 21:10:12 +020010#include <asm-generic/pci_iomap.h>
Sam Ravnborgf5e706a2008-07-17 21:55:51 -070011
David S. Miller86541642010-01-14 03:14:53 -080012#define page_to_phys(page) (page_to_pfn(page) << PAGE_SHIFT)
Sam Ravnborgf5e706a2008-07-17 21:55:51 -070013
14static inline u32 flip_dword (u32 l)
15{
16 return ((l&0xff)<<24) | (((l>>8)&0xff)<<16) | (((l>>16)&0xff)<<8)| ((l>>24)&0xff);
17}
18
19static inline u16 flip_word (u16 w)
20{
21 return ((w&0xff) << 8) | ((w>>8)&0xff);
22}
23
24#define mmiowb()
25
26/*
27 * Memory mapped I/O to PCI
28 */
29
30static inline u8 __raw_readb(const volatile void __iomem *addr)
31{
32 return *(__force volatile u8 *)addr;
33}
34
35static inline u16 __raw_readw(const volatile void __iomem *addr)
36{
37 return *(__force volatile u16 *)addr;
38}
39
40static inline u32 __raw_readl(const volatile void __iomem *addr)
41{
42 return *(__force volatile u32 *)addr;
43}
44
45static inline void __raw_writeb(u8 b, volatile void __iomem *addr)
46{
47 *(__force volatile u8 *)addr = b;
48}
49
50static inline void __raw_writew(u16 w, volatile void __iomem *addr)
51{
52 *(__force volatile u16 *)addr = w;
53}
54
55static inline void __raw_writel(u32 l, volatile void __iomem *addr)
56{
57 *(__force volatile u32 *)addr = l;
58}
59
60static inline u8 __readb(const volatile void __iomem *addr)
61{
62 return *(__force volatile u8 *)addr;
63}
64
65static inline u16 __readw(const volatile void __iomem *addr)
66{
67 return flip_word(*(__force volatile u16 *)addr);
68}
69
70static inline u32 __readl(const volatile void __iomem *addr)
71{
72 return flip_dword(*(__force volatile u32 *)addr);
73}
74
75static inline void __writeb(u8 b, volatile void __iomem *addr)
76{
77 *(__force volatile u8 *)addr = b;
78}
79
80static inline void __writew(u16 w, volatile void __iomem *addr)
81{
82 *(__force volatile u16 *)addr = flip_word(w);
83}
84
85static inline void __writel(u32 l, volatile void __iomem *addr)
86{
87 *(__force volatile u32 *)addr = flip_dword(l);
88}
89
90#define readb(__addr) __readb(__addr)
91#define readw(__addr) __readw(__addr)
92#define readl(__addr) __readl(__addr)
93#define readb_relaxed(__addr) readb(__addr)
94#define readw_relaxed(__addr) readw(__addr)
95#define readl_relaxed(__addr) readl(__addr)
96
97#define writeb(__b, __addr) __writeb((__b),(__addr))
98#define writew(__w, __addr) __writew((__w),(__addr))
99#define writel(__l, __addr) __writel((__l),(__addr))
100
101/*
102 * I/O space operations
103 *
104 * Arrangement on a Sun is somewhat complicated.
105 *
106 * First of all, we want to use standard Linux drivers
107 * for keyboard, PC serial, etc. These drivers think
108 * they access I/O space and use inb/outb.
109 * On the other hand, EBus bridge accepts PCI *memory*
110 * cycles and converts them into ISA *I/O* cycles.
111 * Ergo, we want inb & outb to generate PCI memory cycles.
112 *
113 * If we want to issue PCI *I/O* cycles, we do this
114 * with a low 64K fixed window in PCIC. This window gets
115 * mapped somewhere into virtual kernel space and we
116 * can use inb/outb again.
117 */
118#define inb_local(__addr) __readb((void __iomem *)(unsigned long)(__addr))
119#define inb(__addr) __readb((void __iomem *)(unsigned long)(__addr))
120#define inw(__addr) __readw((void __iomem *)(unsigned long)(__addr))
121#define inl(__addr) __readl((void __iomem *)(unsigned long)(__addr))
122
123#define outb_local(__b, __addr) __writeb(__b, (void __iomem *)(unsigned long)(__addr))
124#define outb(__b, __addr) __writeb(__b, (void __iomem *)(unsigned long)(__addr))
125#define outw(__w, __addr) __writew(__w, (void __iomem *)(unsigned long)(__addr))
126#define outl(__l, __addr) __writel(__l, (void __iomem *)(unsigned long)(__addr))
127
128#define inb_p(__addr) inb(__addr)
129#define outb_p(__b, __addr) outb(__b, __addr)
130#define inw_p(__addr) inw(__addr)
131#define outw_p(__w, __addr) outw(__w, __addr)
132#define inl_p(__addr) inl(__addr)
133#define outl_p(__l, __addr) outl(__l, __addr)
134
135void outsb(unsigned long addr, const void *src, unsigned long cnt);
136void outsw(unsigned long addr, const void *src, unsigned long cnt);
137void outsl(unsigned long addr, const void *src, unsigned long cnt);
138void insb(unsigned long addr, void *dst, unsigned long count);
139void insw(unsigned long addr, void *dst, unsigned long count);
140void insl(unsigned long addr, void *dst, unsigned long count);
141
142#define IO_SPACE_LIMIT 0xffffffff
143
144/*
145 * SBus accessors.
146 *
147 * SBus has only one, memory mapped, I/O space.
148 * We do not need to flip bytes for SBus of course.
149 */
150static inline u8 _sbus_readb(const volatile void __iomem *addr)
151{
152 return *(__force volatile u8 *)addr;
153}
154
155static inline u16 _sbus_readw(const volatile void __iomem *addr)
156{
157 return *(__force volatile u16 *)addr;
158}
159
160static inline u32 _sbus_readl(const volatile void __iomem *addr)
161{
162 return *(__force volatile u32 *)addr;
163}
164
165static inline void _sbus_writeb(u8 b, volatile void __iomem *addr)
166{
167 *(__force volatile u8 *)addr = b;
168}
169
170static inline void _sbus_writew(u16 w, volatile void __iomem *addr)
171{
172 *(__force volatile u16 *)addr = w;
173}
174
175static inline void _sbus_writel(u32 l, volatile void __iomem *addr)
176{
177 *(__force volatile u32 *)addr = l;
178}
179
180/*
181 * The only reason for #define's is to hide casts to unsigned long.
182 */
183#define sbus_readb(__addr) _sbus_readb(__addr)
184#define sbus_readw(__addr) _sbus_readw(__addr)
185#define sbus_readl(__addr) _sbus_readl(__addr)
186#define sbus_writeb(__b, __addr) _sbus_writeb(__b, __addr)
187#define sbus_writew(__w, __addr) _sbus_writew(__w, __addr)
188#define sbus_writel(__l, __addr) _sbus_writel(__l, __addr)
189
190static inline void sbus_memset_io(volatile void __iomem *__dst, int c, __kernel_size_t n)
191{
192 while(n--) {
193 sbus_writeb(c, __dst);
194 __dst++;
195 }
196}
197
198static inline void
199_memset_io(volatile void __iomem *dst, int c, __kernel_size_t n)
200{
201 volatile void __iomem *d = dst;
202
203 while (n--) {
204 writeb(c, d);
205 d++;
206 }
207}
208
209#define memset_io(d,c,sz) _memset_io(d,c,sz)
210
211static inline void
James Hoganf11b4782010-10-27 15:33:28 -0700212_sbus_memcpy_fromio(void *dst, const volatile void __iomem *src,
213 __kernel_size_t n)
214{
215 char *d = dst;
216
217 while (n--) {
218 char tmp = sbus_readb(src);
219 *d++ = tmp;
220 src++;
221 }
222}
223
224#define sbus_memcpy_fromio(d, s, sz) _sbus_memcpy_fromio(d, s, sz)
225
226static inline void
Sam Ravnborgf5e706a2008-07-17 21:55:51 -0700227_memcpy_fromio(void *dst, const volatile void __iomem *src, __kernel_size_t n)
228{
229 char *d = dst;
230
231 while (n--) {
232 char tmp = readb(src);
233 *d++ = tmp;
234 src++;
235 }
236}
237
238#define memcpy_fromio(d,s,sz) _memcpy_fromio(d,s,sz)
239
240static inline void
James Hoganf11b4782010-10-27 15:33:28 -0700241_sbus_memcpy_toio(volatile void __iomem *dst, const void *src,
242 __kernel_size_t n)
243{
244 const char *s = src;
245 volatile void __iomem *d = dst;
246
247 while (n--) {
248 char tmp = *s++;
249 sbus_writeb(tmp, d);
250 d++;
251 }
252}
253
254#define sbus_memcpy_toio(d, s, sz) _sbus_memcpy_toio(d, s, sz)
255
256static inline void
Sam Ravnborgf5e706a2008-07-17 21:55:51 -0700257_memcpy_toio(volatile void __iomem *dst, const void *src, __kernel_size_t n)
258{
259 const char *s = src;
260 volatile void __iomem *d = dst;
261
262 while (n--) {
263 char tmp = *s++;
264 writeb(tmp, d);
265 d++;
266 }
267}
268
269#define memcpy_toio(d,s,sz) _memcpy_toio(d,s,sz)
270
271#ifdef __KERNEL__
272
273/*
274 * Bus number may be embedded in the higher bits of the physical address.
275 * This is why we have no bus number argument to ioremap().
276 */
277extern void __iomem *ioremap(unsigned long offset, unsigned long size);
278#define ioremap_nocache(X,Y) ioremap((X),(Y))
David S. Miller428695b2008-07-22 14:30:55 -0700279#define ioremap_wc(X,Y) ioremap((X),(Y))
Sam Ravnborgf5e706a2008-07-17 21:55:51 -0700280extern void iounmap(volatile void __iomem *addr);
281
282#define ioread8(X) readb(X)
283#define ioread16(X) readw(X)
David S. Miller1bff4db2010-03-03 02:30:37 -0800284#define ioread16be(X) __raw_readw(X)
Sam Ravnborgf5e706a2008-07-17 21:55:51 -0700285#define ioread32(X) readl(X)
David S. Miller1bff4db2010-03-03 02:30:37 -0800286#define ioread32be(X) __raw_readl(X)
Sam Ravnborgf5e706a2008-07-17 21:55:51 -0700287#define iowrite8(val,X) writeb(val,X)
288#define iowrite16(val,X) writew(val,X)
David S. Miller1bff4db2010-03-03 02:30:37 -0800289#define iowrite16be(val,X) __raw_writew(val,X)
Sam Ravnborgf5e706a2008-07-17 21:55:51 -0700290#define iowrite32(val,X) writel(val,X)
David S. Miller1bff4db2010-03-03 02:30:37 -0800291#define iowrite32be(val,X) __raw_writel(val,X)
Sam Ravnborgf5e706a2008-07-17 21:55:51 -0700292
293static inline void ioread8_rep(void __iomem *port, void *buf, unsigned long count)
294{
295 insb((unsigned long __force)port, buf, count);
296}
297static inline void ioread16_rep(void __iomem *port, void *buf, unsigned long count)
298{
299 insw((unsigned long __force)port, buf, count);
300}
301
302static inline void ioread32_rep(void __iomem *port, void *buf, unsigned long count)
303{
304 insl((unsigned long __force)port, buf, count);
305}
306
307static inline void iowrite8_rep(void __iomem *port, const void *buf, unsigned long count)
308{
309 outsb((unsigned long __force)port, buf, count);
310}
311
312static inline void iowrite16_rep(void __iomem *port, const void *buf, unsigned long count)
313{
314 outsw((unsigned long __force)port, buf, count);
315}
316
317static inline void iowrite32_rep(void __iomem *port, const void *buf, unsigned long count)
318{
319 outsl((unsigned long __force)port, buf, count);
320}
321
322/* Create a virtual mapping cookie for an IO port range */
323extern void __iomem *ioport_map(unsigned long port, unsigned int nr);
324extern void ioport_unmap(void __iomem *);
325
326/* Create a virtual mapping cookie for a PCI BAR (memory or IO) */
327struct pci_dev;
Sam Ravnborgf5e706a2008-07-17 21:55:51 -0700328extern void pci_iounmap(struct pci_dev *dev, void __iomem *);
329
330/*
Sam Ravnborgf5e706a2008-07-17 21:55:51 -0700331 * At the moment, we do not use CMOS_READ anywhere outside of rtc.c,
332 * so rtc_port is static in it. This should not change unless a new
333 * hardware pops up.
334 */
335#define RTC_PORT(x) (rtc_port + (x))
336#define RTC_ALWAYS_BCD 0
337
David S. Miller63237ee2008-08-26 23:33:42 -0700338static inline int sbus_can_dma_64bit(void)
339{
340 return 0; /* actually, sparc_cpu_model==sun4d */
341}
342static inline int sbus_can_burst64(void)
343{
344 return 0; /* actually, sparc_cpu_model==sun4d */
345}
346struct device;
347extern void sbus_set_sbus64(struct device *, int);
348
Sam Ravnborgf5e706a2008-07-17 21:55:51 -0700349#endif
350
351#define __ARCH_HAS_NO_PAGE_ZERO_MAPPED 1
352
353/*
354 * Convert a physical pointer to a virtual kernel pointer for /dev/mem
355 * access
356 */
357#define xlate_dev_mem_ptr(p) __va(p)
358
359/*
360 * Convert a virtual cached pointer to an uncached pointer
361 */
362#define xlate_dev_kmem_ptr(p) p
363
364#endif /* !(__SPARC_IO_H) */