blob: 39caf067a31bd401e22dc2e0114b5224fce28939 [file] [log] [blame]
Linus Torvalds1da177e2005-04-16 15:20:36 -07001#ifdef __KERNEL__
2#ifndef _PPC_IO_H
3#define _PPC_IO_H
4
5#include <linux/config.h>
6#include <linux/string.h>
7#include <linux/types.h>
8
9#include <asm/page.h>
10#include <asm/byteorder.h>
Becky Brucefeaf7cf2005-09-22 14:20:04 -050011#include <asm/synch.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070012#include <asm/mmu.h>
13
14#define SIO_CONFIG_RA 0x398
15#define SIO_CONFIG_RD 0x399
16
17#define SLOW_DOWN_IO
18
19#define PMAC_ISA_MEM_BASE 0
20#define PMAC_PCI_DRAM_OFFSET 0
21#define CHRP_ISA_IO_BASE 0xf8000000
22#define CHRP_ISA_MEM_BASE 0xf7000000
23#define CHRP_PCI_DRAM_OFFSET 0
24#define PREP_ISA_IO_BASE 0x80000000
25#define PREP_ISA_MEM_BASE 0xc0000000
26#define PREP_PCI_DRAM_OFFSET 0x80000000
27
28#if defined(CONFIG_4xx)
29#include <asm/ibm4xx.h>
30#elif defined(CONFIG_8xx)
31#include <asm/mpc8xx.h>
32#elif defined(CONFIG_8260)
33#include <asm/mpc8260.h>
34#elif defined(CONFIG_83xx)
35#include <asm/mpc83xx.h>
36#elif defined(CONFIG_85xx)
37#include <asm/mpc85xx.h>
38#elif defined(CONFIG_APUS)
39#define _IO_BASE 0
40#define _ISA_MEM_BASE 0
41#define PCI_DRAM_OFFSET 0
42#else /* Everyone else */
43#define _IO_BASE isa_io_base
44#define _ISA_MEM_BASE isa_mem_base
45#define PCI_DRAM_OFFSET pci_dram_offset
46#endif /* Platform-dependent I/O */
47
48#define ___IO_BASE ((void __iomem *)_IO_BASE)
49extern unsigned long isa_io_base;
50extern unsigned long isa_mem_base;
51extern unsigned long pci_dram_offset;
52
53/*
54 * 8, 16 and 32 bit, big and little endian I/O operations, with barrier.
55 *
56 * Read operations have additional twi & isync to make sure the read
57 * is actually performed (i.e. the data has come back) before we start
58 * executing any following instructions.
59 */
60extern inline int in_8(volatile unsigned char __iomem *addr)
61{
62 int ret;
63
64 __asm__ __volatile__(
65 "lbz%U1%X1 %0,%1;\n"
66 "twi 0,%0,0;\n"
67 "isync" : "=r" (ret) : "m" (*addr));
68 return ret;
69}
70
71extern inline void out_8(volatile unsigned char __iomem *addr, int val)
72{
73 __asm__ __volatile__("stb%U0%X0 %1,%0; eieio" : "=m" (*addr) : "r" (val));
74}
75
76extern inline int in_le16(volatile unsigned short __iomem *addr)
77{
78 int ret;
79
80 __asm__ __volatile__("lhbrx %0,0,%1;\n"
81 "twi 0,%0,0;\n"
82 "isync" : "=r" (ret) :
83 "r" (addr), "m" (*addr));
84 return ret;
85}
86
87extern inline int in_be16(volatile unsigned short __iomem *addr)
88{
89 int ret;
90
91 __asm__ __volatile__("lhz%U1%X1 %0,%1;\n"
92 "twi 0,%0,0;\n"
93 "isync" : "=r" (ret) : "m" (*addr));
94 return ret;
95}
96
97extern inline void out_le16(volatile unsigned short __iomem *addr, int val)
98{
99 __asm__ __volatile__("sthbrx %1,0,%2; eieio" : "=m" (*addr) :
100 "r" (val), "r" (addr));
101}
102
103extern inline void out_be16(volatile unsigned short __iomem *addr, int val)
104{
105 __asm__ __volatile__("sth%U0%X0 %1,%0; eieio" : "=m" (*addr) : "r" (val));
106}
107
108extern inline unsigned in_le32(volatile unsigned __iomem *addr)
109{
110 unsigned ret;
111
112 __asm__ __volatile__("lwbrx %0,0,%1;\n"
113 "twi 0,%0,0;\n"
114 "isync" : "=r" (ret) :
115 "r" (addr), "m" (*addr));
116 return ret;
117}
118
119extern inline unsigned in_be32(volatile unsigned __iomem *addr)
120{
121 unsigned ret;
122
123 __asm__ __volatile__("lwz%U1%X1 %0,%1;\n"
124 "twi 0,%0,0;\n"
125 "isync" : "=r" (ret) : "m" (*addr));
126 return ret;
127}
128
129extern inline void out_le32(volatile unsigned __iomem *addr, int val)
130{
131 __asm__ __volatile__("stwbrx %1,0,%2; eieio" : "=m" (*addr) :
132 "r" (val), "r" (addr));
133}
134
135extern inline void out_be32(volatile unsigned __iomem *addr, int val)
136{
137 __asm__ __volatile__("stw%U0%X0 %1,%0; eieio" : "=m" (*addr) : "r" (val));
138}
139#if defined (CONFIG_8260_PCI9)
140#define readb(addr) in_8((volatile u8 *)(addr))
141#define writeb(b,addr) out_8((volatile u8 *)(addr), (b))
142#else
143static inline __u8 readb(volatile void __iomem *addr)
144{
145 return in_8(addr);
146}
147static inline void writeb(__u8 b, volatile void __iomem *addr)
148{
149 out_8(addr, b);
150}
151#endif
152
153#if defined(CONFIG_APUS)
154static inline __u16 readw(volatile void __iomem *addr)
155{
156 return *(__force volatile __u16 *)(addr);
157}
158static inline __u32 readl(volatile void __iomem *addr)
159{
160 return *(__force volatile __u32 *)(addr);
161}
162static inline void writew(__u16 b, volatile void __iomem *addr)
163{
164 *(__force volatile __u16 *)(addr) = b;
165}
166static inline void writel(__u32 b, volatile void __iomem *addr)
167{
168 *(__force volatile __u32 *)(addr) = b;
169}
170#elif defined (CONFIG_8260_PCI9)
171/* Use macros if PCI9 workaround enabled */
172#define readw(addr) in_le16((volatile u16 *)(addr))
173#define readl(addr) in_le32((volatile u32 *)(addr))
174#define writew(b,addr) out_le16((volatile u16 *)(addr),(b))
175#define writel(b,addr) out_le32((volatile u32 *)(addr),(b))
176#else
177static inline __u16 readw(volatile void __iomem *addr)
178{
179 return in_le16(addr);
180}
181static inline __u32 readl(volatile void __iomem *addr)
182{
183 return in_le32(addr);
184}
185static inline void writew(__u16 b, volatile void __iomem *addr)
186{
187 out_le16(addr, b);
188}
189static inline void writel(__u32 b, volatile void __iomem *addr)
190{
191 out_le32(addr, b);
192}
193#endif /* CONFIG_APUS */
194
195#define readb_relaxed(addr) readb(addr)
196#define readw_relaxed(addr) readw(addr)
197#define readl_relaxed(addr) readl(addr)
198
199static inline __u8 __raw_readb(const volatile void __iomem *addr)
200{
201 return *(__force volatile __u8 *)(addr);
202}
203static inline __u16 __raw_readw(const volatile void __iomem *addr)
204{
205 return *(__force volatile __u16 *)(addr);
206}
207static inline __u32 __raw_readl(const volatile void __iomem *addr)
208{
209 return *(__force volatile __u32 *)(addr);
210}
211static inline void __raw_writeb(__u8 b, volatile void __iomem *addr)
212{
213 *(__force volatile __u8 *)(addr) = b;
214}
215static inline void __raw_writew(__u16 b, volatile void __iomem *addr)
216{
217 *(__force volatile __u16 *)(addr) = b;
218}
219static inline void __raw_writel(__u32 b, volatile void __iomem *addr)
220{
221 *(__force volatile __u32 *)(addr) = b;
222}
223
224#define mmiowb()
225
226/*
227 * The insw/outsw/insl/outsl macros don't do byte-swapping.
228 * They are only used in practice for transferring buffers which
229 * are arrays of bytes, and byte-swapping is not appropriate in
230 * that case. - paulus
231 */
232#define insb(port, buf, ns) _insb((port)+___IO_BASE, (buf), (ns))
233#define outsb(port, buf, ns) _outsb((port)+___IO_BASE, (buf), (ns))
234#define insw(port, buf, ns) _insw_ns((port)+___IO_BASE, (buf), (ns))
235#define outsw(port, buf, ns) _outsw_ns((port)+___IO_BASE, (buf), (ns))
236#define insl(port, buf, nl) _insl_ns((port)+___IO_BASE, (buf), (nl))
237#define outsl(port, buf, nl) _outsl_ns((port)+___IO_BASE, (buf), (nl))
238
239/*
240 * On powermacs, we will get a machine check exception if we
241 * try to read data from a non-existent I/O port. Because the
242 * machine check is an asynchronous exception, it isn't
243 * well-defined which instruction SRR0 will point to when the
244 * exception occurs.
245 * With the sequence below (twi; isync; nop), we have found that
246 * the machine check occurs on one of the three instructions on
247 * all PPC implementations tested so far. The twi and isync are
248 * needed on the 601 (in fact twi; sync works too), the isync and
249 * nop are needed on 604[e|r], and any of twi, sync or isync will
250 * work on 603[e], 750, 74xx.
251 * The twi creates an explicit data dependency on the returned
252 * value which seems to be needed to make the 601 wait for the
253 * load to finish.
254 */
255
256#define __do_in_asm(name, op) \
257extern __inline__ unsigned int name(unsigned int port) \
258{ \
259 unsigned int x; \
260 __asm__ __volatile__( \
261 op " %0,0,%1\n" \
262 "1: twi 0,%0,0\n" \
263 "2: isync\n" \
264 "3: nop\n" \
265 "4:\n" \
266 ".section .fixup,\"ax\"\n" \
267 "5: li %0,-1\n" \
268 " b 4b\n" \
269 ".previous\n" \
270 ".section __ex_table,\"a\"\n" \
271 " .align 2\n" \
272 " .long 1b,5b\n" \
273 " .long 2b,5b\n" \
274 " .long 3b,5b\n" \
275 ".previous" \
276 : "=&r" (x) \
277 : "r" (port + ___IO_BASE)); \
278 return x; \
279}
280
281#define __do_out_asm(name, op) \
282extern __inline__ void name(unsigned int val, unsigned int port) \
283{ \
284 __asm__ __volatile__( \
285 op " %0,0,%1\n" \
286 "1: sync\n" \
287 "2:\n" \
288 ".section __ex_table,\"a\"\n" \
289 " .align 2\n" \
290 " .long 1b,2b\n" \
291 ".previous" \
292 : : "r" (val), "r" (port + ___IO_BASE)); \
293}
294
295__do_out_asm(outb, "stbx")
296#ifdef CONFIG_APUS
297__do_in_asm(inb, "lbzx")
298__do_in_asm(inw, "lhz%U1%X1")
299__do_in_asm(inl, "lwz%U1%X1")
300__do_out_asm(outl,"stw%U0%X0")
301__do_out_asm(outw, "sth%U0%X0")
302#elif defined (CONFIG_8260_PCI9)
303/* in asm cannot be defined if PCI9 workaround is used */
304#define inb(port) in_8((port)+___IO_BASE)
305#define inw(port) in_le16((port)+___IO_BASE)
306#define inl(port) in_le32((port)+___IO_BASE)
307__do_out_asm(outw, "sthbrx")
308__do_out_asm(outl, "stwbrx")
309#else
310__do_in_asm(inb, "lbzx")
311__do_in_asm(inw, "lhbrx")
312__do_in_asm(inl, "lwbrx")
313__do_out_asm(outw, "sthbrx")
314__do_out_asm(outl, "stwbrx")
315
316#endif
317
318#define inb_p(port) inb((port))
319#define outb_p(val, port) outb((val), (port))
320#define inw_p(port) inw((port))
321#define outw_p(val, port) outw((val), (port))
322#define inl_p(port) inl((port))
323#define outl_p(val, port) outl((val), (port))
324
325extern void _insb(volatile u8 __iomem *port, void *buf, int ns);
326extern void _outsb(volatile u8 __iomem *port, const void *buf, int ns);
327extern void _insw(volatile u16 __iomem *port, void *buf, int ns);
328extern void _outsw(volatile u16 __iomem *port, const void *buf, int ns);
329extern void _insl(volatile u32 __iomem *port, void *buf, int nl);
330extern void _outsl(volatile u32 __iomem *port, const void *buf, int nl);
331extern void _insw_ns(volatile u16 __iomem *port, void *buf, int ns);
332extern void _outsw_ns(volatile u16 __iomem *port, const void *buf, int ns);
333extern void _insl_ns(volatile u32 __iomem *port, void *buf, int nl);
334extern void _outsl_ns(volatile u32 __iomem *port, const void *buf, int nl);
335
336/*
337 * The *_ns versions below don't do byte-swapping.
338 * Neither do the standard versions now, these are just here
339 * for older code.
340 */
341#define insw_ns(port, buf, ns) _insw_ns((port)+___IO_BASE, (buf), (ns))
342#define outsw_ns(port, buf, ns) _outsw_ns((port)+___IO_BASE, (buf), (ns))
343#define insl_ns(port, buf, nl) _insl_ns((port)+___IO_BASE, (buf), (nl))
344#define outsl_ns(port, buf, nl) _outsl_ns((port)+___IO_BASE, (buf), (nl))
345
346
347#define IO_SPACE_LIMIT ~0
348
349#if defined (CONFIG_8260_PCI9)
350#define memset_io(a,b,c) memset((void *)(a),(b),(c))
351#define memcpy_fromio(a,b,c) memcpy((a),(void *)(b),(c))
352#define memcpy_toio(a,b,c) memcpy((void *)(a),(b),(c))
353#else
354static inline void memset_io(volatile void __iomem *addr, unsigned char val, int count)
355{
356 memset((void __force *)addr, val, count);
357}
358static inline void memcpy_fromio(void *dst,const volatile void __iomem *src, int count)
359{
360 memcpy(dst, (void __force *) src, count);
361}
362static inline void memcpy_toio(volatile void __iomem *dst, const void *src, int count)
363{
364 memcpy((void __force *) dst, src, count);
365}
366#endif
367
368#define eth_io_copy_and_sum(a,b,c,d) eth_copy_and_sum((a),(void __force *)(void __iomem *)(b),(c),(d))
369
370/*
371 * Map in an area of physical address space, for accessing
372 * I/O devices etc.
373 */
374extern void __iomem *__ioremap(phys_addr_t address, unsigned long size,
375 unsigned long flags);
376extern void __iomem *ioremap(phys_addr_t address, unsigned long size);
377#ifdef CONFIG_44x
378extern void __iomem *ioremap64(unsigned long long address, unsigned long size);
379#endif
380#define ioremap_nocache(addr, size) ioremap((addr), (size))
381extern void iounmap(volatile void __iomem *addr);
382extern unsigned long iopa(unsigned long addr);
383extern unsigned long mm_ptov(unsigned long addr) __attribute_const__;
384extern void io_block_mapping(unsigned long virt, phys_addr_t phys,
385 unsigned int size, int flags);
386
387/*
388 * The PCI bus is inherently Little-Endian. The PowerPC is being
389 * run Big-Endian. Thus all values which cross the [PCI] barrier
390 * must be endian-adjusted. Also, the local DRAM has a different
391 * address from the PCI point of view, thus buffer addresses also
392 * have to be modified [mapped] appropriately.
393 */
394extern inline unsigned long virt_to_bus(volatile void * address)
395{
396#ifndef CONFIG_APUS
397 if (address == (void *)0)
398 return 0;
399 return (unsigned long)address - KERNELBASE + PCI_DRAM_OFFSET;
400#else
401 return iopa ((unsigned long) address);
402#endif
403}
404
405extern inline void * bus_to_virt(unsigned long address)
406{
407#ifndef CONFIG_APUS
408 if (address == 0)
409 return NULL;
410 return (void *)(address - PCI_DRAM_OFFSET + KERNELBASE);
411#else
412 return (void*) mm_ptov (address);
413#endif
414}
415
416/*
417 * Change virtual addresses to physical addresses and vv, for
418 * addresses in the area where the kernel has the RAM mapped.
419 */
420extern inline unsigned long virt_to_phys(volatile void * address)
421{
422#ifndef CONFIG_APUS
423 return (unsigned long) address - KERNELBASE;
424#else
425 return iopa ((unsigned long) address);
426#endif
427}
428
429extern inline void * phys_to_virt(unsigned long address)
430{
431#ifndef CONFIG_APUS
432 return (void *) (address + KERNELBASE);
433#else
434 return (void*) mm_ptov (address);
435#endif
436}
437
438/*
439 * Change "struct page" to physical address.
440 */
441#define page_to_phys(page) (page_to_pfn(page) << PAGE_SHIFT)
442#define page_to_bus(page) (page_to_phys(page) + PCI_DRAM_OFFSET)
443
Linus Torvalds1da177e2005-04-16 15:20:36 -0700444/* Enforce in-order execution of data I/O.
445 * No distinction between read/write on PPC; use eieio for all three.
446 */
447#define iobarrier_rw() eieio()
448#define iobarrier_r() eieio()
449#define iobarrier_w() eieio()
450
451static inline int check_signature(volatile void __iomem * io_addr,
452 const unsigned char *signature, int length)
453{
454 int retval = 0;
455 do {
456 if (readb(io_addr) != *signature)
457 goto out;
458 io_addr++;
459 signature++;
460 length--;
461 } while (length);
462 retval = 1;
463out:
464 return retval;
465}
466
467/*
468 * Here comes the ppc implementation of the IOMAP
469 * interfaces.
470 */
471static inline unsigned int ioread8(void __iomem *addr)
472{
473 return readb(addr);
474}
475
476static inline unsigned int ioread16(void __iomem *addr)
477{
478 return readw(addr);
479}
480
481static inline unsigned int ioread32(void __iomem *addr)
482{
483 return readl(addr);
484}
485
486static inline void iowrite8(u8 val, void __iomem *addr)
487{
488 writeb(val, addr);
489}
490
491static inline void iowrite16(u16 val, void __iomem *addr)
492{
493 writew(val, addr);
494}
495
496static inline void iowrite32(u32 val, void __iomem *addr)
497{
498 writel(val, addr);
499}
500
501static inline void ioread8_rep(void __iomem *addr, void *dst, unsigned long count)
502{
503 _insb(addr, dst, count);
504}
505
506static inline void ioread16_rep(void __iomem *addr, void *dst, unsigned long count)
507{
508 _insw_ns(addr, dst, count);
509}
510
511static inline void ioread32_rep(void __iomem *addr, void *dst, unsigned long count)
512{
513 _insl_ns(addr, dst, count);
514}
515
516static inline void iowrite8_rep(void __iomem *addr, const void *src, unsigned long count)
517{
518 _outsb(addr, src, count);
519}
520
521static inline void iowrite16_rep(void __iomem *addr, const void *src, unsigned long count)
522{
523 _outsw_ns(addr, src, count);
524}
525
526static inline void iowrite32_rep(void __iomem *addr, const void *src, unsigned long count)
527{
528 _outsl_ns(addr, src, count);
529}
530
531/* Create a virtual mapping cookie for an IO port range */
532extern void __iomem *ioport_map(unsigned long port, unsigned int nr);
533extern void ioport_unmap(void __iomem *);
534
535/* Create a virtual mapping cookie for a PCI BAR (memory or IO) */
536struct pci_dev;
537extern void __iomem *pci_iomap(struct pci_dev *dev, int bar, unsigned long max);
538extern void pci_iounmap(struct pci_dev *dev, void __iomem *);
539
540#endif /* _PPC_IO_H */
541
542#ifdef CONFIG_8260_PCI9
543#include <asm/mpc8260_pci9.h>
544#endif
545
546/*
547 * Convert a physical pointer to a virtual kernel pointer for /dev/mem
548 * access
549 */
550#define xlate_dev_mem_ptr(p) __va(p)
551
552/*
553 * Convert a virtual cached pointer to an uncached pointer
554 */
555#define xlate_dev_kmem_ptr(p) p
556
557#endif /* __KERNEL__ */