io.h 9.9 KB

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  1. /* originally from linux source.
  2. * removed the dependencies on CONFIG_ values
  3. * removed virt_to_phys stuff (and in fact everything surrounded by #if __KERNEL__)
  4. * Modified By Rob Taylor, Flying Pig Systems, 2000
  5. */
  6. #ifndef _PPC_IO_H
  7. #define _PPC_IO_H
  8. #include <asm/byteorder.h>
  9. #ifdef CONFIG_ADDR_MAP
  10. #include <addr_map.h>
  11. #endif
  12. #define SIO_CONFIG_RA 0x398
  13. #define SIO_CONFIG_RD 0x399
  14. #ifndef _IO_BASE
  15. #define _IO_BASE 0
  16. #endif
  17. #define readb(addr) in_8((volatile u8 *)(addr))
  18. #define writeb(b,addr) out_8((volatile u8 *)(addr), (b))
  19. #if !defined(__BIG_ENDIAN)
  20. #define readw(addr) (*(volatile u16 *) (addr))
  21. #define readl(addr) (*(volatile u32 *) (addr))
  22. #define writew(b,addr) ((*(volatile u16 *) (addr)) = (b))
  23. #define writel(b,addr) ((*(volatile u32 *) (addr)) = (b))
  24. #else
  25. #define readw(addr) in_le16((volatile u16 *)(addr))
  26. #define readl(addr) in_le32((volatile u32 *)(addr))
  27. #define writew(b,addr) out_le16((volatile u16 *)(addr),(b))
  28. #define writel(b,addr) out_le32((volatile u32 *)(addr),(b))
  29. #endif
  30. /*
  31. * The insw/outsw/insl/outsl macros don't do byte-swapping.
  32. * They are only used in practice for transferring buffers which
  33. * are arrays of bytes, and byte-swapping is not appropriate in
  34. * that case. - paulus
  35. */
  36. #define insb(port, buf, ns) _insb((u8 *)((port)+_IO_BASE), (buf), (ns))
  37. #define outsb(port, buf, ns) _outsb((u8 *)((port)+_IO_BASE), (buf), (ns))
  38. #define insw(port, buf, ns) _insw_ns((u16 *)((port)+_IO_BASE), (buf), (ns))
  39. #define outsw(port, buf, ns) _outsw_ns((u16 *)((port)+_IO_BASE), (buf), (ns))
  40. #define insl(port, buf, nl) _insl_ns((u32 *)((port)+_IO_BASE), (buf), (nl))
  41. #define outsl(port, buf, nl) _outsl_ns((u32 *)((port)+_IO_BASE), (buf), (nl))
  42. #define inb(port) in_8((u8 *)((port)+_IO_BASE))
  43. #define outb(val, port) out_8((u8 *)((port)+_IO_BASE), (val))
  44. #if !defined(__BIG_ENDIAN)
  45. #define inw(port) in_be16((u16 *)((port)+_IO_BASE))
  46. #define outw(val, port) out_be16((u16 *)((port)+_IO_BASE), (val))
  47. #define inl(port) in_be32((u32 *)((port)+_IO_BASE))
  48. #define outl(val, port) out_be32((u32 *)((port)+_IO_BASE), (val))
  49. #else
  50. #define inw(port) in_le16((u16 *)((port)+_IO_BASE))
  51. #define outw(val, port) out_le16((u16 *)((port)+_IO_BASE), (val))
  52. #define inl(port) in_le32((u32 *)((port)+_IO_BASE))
  53. #define outl(val, port) out_le32((u32 *)((port)+_IO_BASE), (val))
  54. #endif
  55. #define inb_p(port) in_8((u8 *)((port)+_IO_BASE))
  56. #define outb_p(val, port) out_8((u8 *)((port)+_IO_BASE), (val))
  57. #define inw_p(port) in_le16((u16 *)((port)+_IO_BASE))
  58. #define outw_p(val, port) out_le16((u16 *)((port)+_IO_BASE), (val))
  59. #define inl_p(port) in_le32((u32 *)((port)+_IO_BASE))
  60. #define outl_p(val, port) out_le32((u32 *)((port)+_IO_BASE), (val))
  61. extern void _insb(volatile u8 *port, void *buf, int ns);
  62. extern void _outsb(volatile u8 *port, const void *buf, int ns);
  63. extern void _insw(volatile u16 *port, void *buf, int ns);
  64. extern void _outsw(volatile u16 *port, const void *buf, int ns);
  65. extern void _insl(volatile u32 *port, void *buf, int nl);
  66. extern void _outsl(volatile u32 *port, const void *buf, int nl);
  67. extern void _insw_ns(volatile u16 *port, void *buf, int ns);
  68. extern void _outsw_ns(volatile u16 *port, const void *buf, int ns);
  69. extern void _insl_ns(volatile u32 *port, void *buf, int nl);
  70. extern void _outsl_ns(volatile u32 *port, const void *buf, int nl);
  71. /*
  72. * The *_ns versions below don't do byte-swapping.
  73. * Neither do the standard versions now, these are just here
  74. * for older code.
  75. */
  76. #define insw_ns(port, buf, ns) _insw_ns((u16 *)((port)+_IO_BASE), (buf), (ns))
  77. #define outsw_ns(port, buf, ns) _outsw_ns((u16 *)((port)+_IO_BASE), (buf), (ns))
  78. #define insl_ns(port, buf, nl) _insl_ns((u32 *)((port)+_IO_BASE), (buf), (nl))
  79. #define outsl_ns(port, buf, nl) _outsl_ns((u32 *)((port)+_IO_BASE), (buf), (nl))
  80. #define IO_SPACE_LIMIT ~0
  81. #define memset_io(a,b,c) memset((void *)(a),(b),(c))
  82. #define memcpy_fromio(a,b,c) memcpy((a),(void *)(b),(c))
  83. #define memcpy_toio(a,b,c) memcpy((void *)(a),(b),(c))
  84. /*
  85. * Enforce In-order Execution of I/O:
  86. * Acts as a barrier to ensure all previous I/O accesses have
  87. * completed before any further ones are issued.
  88. */
  89. static inline void eieio(void)
  90. {
  91. __asm__ __volatile__ ("eieio" : : : "memory");
  92. }
  93. static inline void sync(void)
  94. {
  95. __asm__ __volatile__ ("sync" : : : "memory");
  96. }
  97. static inline void isync(void)
  98. {
  99. __asm__ __volatile__ ("isync" : : : "memory");
  100. }
  101. /* Enforce in-order execution of data I/O.
  102. * No distinction between read/write on PPC; use eieio for all three.
  103. */
  104. #define iobarrier_rw() eieio()
  105. #define iobarrier_r() eieio()
  106. #define iobarrier_w() eieio()
  107. #define mb() sync()
  108. #define isb() isync()
  109. /*
  110. * Non ordered and non-swapping "raw" accessors
  111. */
  112. #define PCI_FIX_ADDR(addr) (addr)
  113. static inline unsigned char __raw_readb(const volatile void __iomem *addr)
  114. {
  115. return *(volatile unsigned char *)PCI_FIX_ADDR(addr);
  116. }
  117. static inline unsigned short __raw_readw(const volatile void __iomem *addr)
  118. {
  119. return *(volatile unsigned short *)PCI_FIX_ADDR(addr);
  120. }
  121. static inline unsigned int __raw_readl(const volatile void __iomem *addr)
  122. {
  123. return *(volatile unsigned int *)PCI_FIX_ADDR(addr);
  124. }
  125. static inline void __raw_writeb(unsigned char v, volatile void __iomem *addr)
  126. {
  127. *(volatile unsigned char *)PCI_FIX_ADDR(addr) = v;
  128. }
  129. static inline void __raw_writew(unsigned short v, volatile void __iomem *addr)
  130. {
  131. *(volatile unsigned short *)PCI_FIX_ADDR(addr) = v;
  132. }
  133. static inline void __raw_writel(unsigned int v, volatile void __iomem *addr)
  134. {
  135. *(volatile unsigned int *)PCI_FIX_ADDR(addr) = v;
  136. }
  137. /*
  138. * 8, 16 and 32 bit, big and little endian I/O operations, with barrier.
  139. *
  140. * Read operations have additional twi & isync to make sure the read
  141. * is actually performed (i.e. the data has come back) before we start
  142. * executing any following instructions.
  143. */
  144. static inline u8 in_8(const volatile unsigned char __iomem *addr)
  145. {
  146. u8 ret;
  147. __asm__ __volatile__(
  148. "sync; lbz%U1%X1 %0,%1;\n"
  149. "twi 0,%0,0;\n"
  150. "isync" : "=r" (ret) : "m" (*addr));
  151. return ret;
  152. }
  153. static inline void out_8(volatile unsigned char __iomem *addr, u8 val)
  154. {
  155. __asm__ __volatile__("sync;\n"
  156. "stb%U0%X0 %1,%0;\n"
  157. : "=m" (*addr)
  158. : "r" (val));
  159. }
  160. static inline u16 in_le16(const volatile unsigned short __iomem *addr)
  161. {
  162. u16 ret;
  163. __asm__ __volatile__("sync; lhbrx %0,0,%1;\n"
  164. "twi 0,%0,0;\n"
  165. "isync" : "=r" (ret) :
  166. "r" (addr), "m" (*addr));
  167. return ret;
  168. }
  169. static inline u16 in_be16(const volatile unsigned short __iomem *addr)
  170. {
  171. u16 ret;
  172. __asm__ __volatile__("sync; lhz%U1%X1 %0,%1;\n"
  173. "twi 0,%0,0;\n"
  174. "isync" : "=r" (ret) : "m" (*addr));
  175. return ret;
  176. }
  177. static inline void out_le16(volatile unsigned short __iomem *addr, u16 val)
  178. {
  179. __asm__ __volatile__("sync; sthbrx %1,0,%2" : "=m" (*addr) :
  180. "r" (val), "r" (addr));
  181. }
  182. static inline void out_be16(volatile unsigned short __iomem *addr, u16 val)
  183. {
  184. __asm__ __volatile__("sync; sth%U0%X0 %1,%0" : "=m" (*addr) : "r" (val));
  185. }
  186. static inline u32 in_le32(const volatile unsigned __iomem *addr)
  187. {
  188. u32 ret;
  189. __asm__ __volatile__("sync; lwbrx %0,0,%1;\n"
  190. "twi 0,%0,0;\n"
  191. "isync" : "=r" (ret) :
  192. "r" (addr), "m" (*addr));
  193. return ret;
  194. }
  195. static inline u32 in_be32(const volatile unsigned __iomem *addr)
  196. {
  197. u32 ret;
  198. __asm__ __volatile__("sync; lwz%U1%X1 %0,%1;\n"
  199. "twi 0,%0,0;\n"
  200. "isync" : "=r" (ret) : "m" (*addr));
  201. return ret;
  202. }
  203. static inline void out_le32(volatile unsigned __iomem *addr, u32 val)
  204. {
  205. __asm__ __volatile__("sync; stwbrx %1,0,%2" : "=m" (*addr) :
  206. "r" (val), "r" (addr));
  207. }
  208. static inline void out_be32(volatile unsigned __iomem *addr, u32 val)
  209. {
  210. __asm__ __volatile__("sync; stw%U0%X0 %1,%0" : "=m" (*addr) : "r" (val));
  211. }
  212. /* Clear and set bits in one shot. These macros can be used to clear and
  213. * set multiple bits in a register using a single call. These macros can
  214. * also be used to set a multiple-bit bit pattern using a mask, by
  215. * specifying the mask in the 'clear' parameter and the new bit pattern
  216. * in the 'set' parameter.
  217. */
  218. #define clrbits(type, addr, clear) \
  219. out_##type((addr), in_##type(addr) & ~(clear))
  220. #define setbits(type, addr, set) \
  221. out_##type((addr), in_##type(addr) | (set))
  222. #define clrsetbits(type, addr, clear, set) \
  223. out_##type((addr), (in_##type(addr) & ~(clear)) | (set))
  224. #define clrbits_be32(addr, clear) clrbits(be32, addr, clear)
  225. #define setbits_be32(addr, set) setbits(be32, addr, set)
  226. #define clrsetbits_be32(addr, clear, set) clrsetbits(be32, addr, clear, set)
  227. #define clrbits_le32(addr, clear) clrbits(le32, addr, clear)
  228. #define setbits_le32(addr, set) setbits(le32, addr, set)
  229. #define clrsetbits_le32(addr, clear, set) clrsetbits(le32, addr, clear, set)
  230. #define clrbits_be16(addr, clear) clrbits(be16, addr, clear)
  231. #define setbits_be16(addr, set) setbits(be16, addr, set)
  232. #define clrsetbits_be16(addr, clear, set) clrsetbits(be16, addr, clear, set)
  233. #define clrbits_le16(addr, clear) clrbits(le16, addr, clear)
  234. #define setbits_le16(addr, set) setbits(le16, addr, set)
  235. #define clrsetbits_le16(addr, clear, set) clrsetbits(le16, addr, clear, set)
  236. #define clrbits_8(addr, clear) clrbits(8, addr, clear)
  237. #define setbits_8(addr, set) setbits(8, addr, set)
  238. #define clrsetbits_8(addr, clear, set) clrsetbits(8, addr, clear, set)
  239. /*
  240. * Given a physical address and a length, return a virtual address
  241. * that can be used to access the memory range with the caching
  242. * properties specified by "flags".
  243. */
  244. #define MAP_NOCACHE (0)
  245. #define MAP_WRCOMBINE (0)
  246. #define MAP_WRBACK (0)
  247. #define MAP_WRTHROUGH (0)
  248. static inline void *
  249. map_physmem(phys_addr_t paddr, unsigned long len, unsigned long flags)
  250. {
  251. #ifdef CONFIG_ADDR_MAP
  252. return addrmap_phys_to_virt(paddr);
  253. #else
  254. return (void *)((unsigned long)paddr);
  255. #endif
  256. }
  257. /*
  258. * Take down a mapping set up by map_physmem().
  259. */
  260. static inline void unmap_physmem(void *vaddr, unsigned long flags)
  261. {
  262. }
  263. static inline phys_addr_t virt_to_phys(void * vaddr)
  264. {
  265. #ifdef CONFIG_ADDR_MAP
  266. return addrmap_virt_to_phys(vaddr);
  267. #else
  268. return (phys_addr_t)((unsigned long)vaddr);
  269. #endif
  270. }
  271. #endif