acmacros.h 28 KB

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  1. /******************************************************************************
  2. *
  3. * Name: acmacros.h - C macros for the entire subsystem.
  4. *
  5. *****************************************************************************/
  6. /*
  7. * Copyright (C) 2000 - 2006, R. Byron Moore
  8. * All rights reserved.
  9. *
  10. * Redistribution and use in source and binary forms, with or without
  11. * modification, are permitted provided that the following conditions
  12. * are met:
  13. * 1. Redistributions of source code must retain the above copyright
  14. * notice, this list of conditions, and the following disclaimer,
  15. * without modification.
  16. * 2. Redistributions in binary form must reproduce at minimum a disclaimer
  17. * substantially similar to the "NO WARRANTY" disclaimer below
  18. * ("Disclaimer") and any redistribution must be conditioned upon
  19. * including a substantially similar Disclaimer requirement for further
  20. * binary redistribution.
  21. * 3. Neither the names of the above-listed copyright holders nor the names
  22. * of any contributors may be used to endorse or promote products derived
  23. * from this software without specific prior written permission.
  24. *
  25. * Alternatively, this software may be distributed under the terms of the
  26. * GNU General Public License ("GPL") version 2 as published by the Free
  27. * Software Foundation.
  28. *
  29. * NO WARRANTY
  30. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
  31. * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
  32. * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR
  33. * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
  34. * HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
  35. * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
  36. * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
  37. * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
  38. * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
  39. * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
  40. * POSSIBILITY OF SUCH DAMAGES.
  41. */
  42. #ifndef __ACMACROS_H__
  43. #define __ACMACROS_H__
  44. /*
  45. * Data manipulation macros
  46. */
  47. #define ACPI_LOWORD(l) ((u16)(u32)(l))
  48. #define ACPI_HIWORD(l) ((u16)((((u32)(l)) >> 16) & 0xFFFF))
  49. #define ACPI_LOBYTE(l) ((u8)(u16)(l))
  50. #define ACPI_HIBYTE(l) ((u8)((((u16)(l)) >> 8) & 0xFF))
  51. #define ACPI_SET_BIT(target,bit) ((target) |= (bit))
  52. #define ACPI_CLEAR_BIT(target,bit) ((target) &= ~(bit))
  53. #define ACPI_MIN(a,b) (((a)<(b))?(a):(b))
  54. #if ACPI_MACHINE_WIDTH == 16
  55. /*
  56. * For 16-bit addresses, we have to assume that the upper 32 bits
  57. * (out of 64) are zero.
  58. */
  59. #define ACPI_LODWORD(l) ((u32)(l))
  60. #define ACPI_HIDWORD(l) ((u32)(0))
  61. #define ACPI_GET_ADDRESS(a) ((a).lo)
  62. #define ACPI_STORE_ADDRESS(a,b) {(a).hi=0;(a).lo=(u32)(b);}
  63. #define ACPI_VALID_ADDRESS(a) ((a).hi | (a).lo)
  64. #else
  65. #ifdef ACPI_NO_INTEGER64_SUPPORT
  66. /*
  67. * acpi_integer is 32-bits, no 64-bit support on this platform
  68. */
  69. #define ACPI_LODWORD(l) ((u32)(l))
  70. #define ACPI_HIDWORD(l) ((u32)(0))
  71. #define ACPI_GET_ADDRESS(a) (a)
  72. #define ACPI_STORE_ADDRESS(a,b) ((a)=(b))
  73. #define ACPI_VALID_ADDRESS(a) (a)
  74. #else
  75. /*
  76. * Full 64-bit address/integer on both 32-bit and 64-bit platforms
  77. */
  78. #define ACPI_LODWORD(l) ((u32)(u64)(l))
  79. #define ACPI_HIDWORD(l) ((u32)(((*(struct uint64_struct *)(void *)(&l))).hi))
  80. #define ACPI_GET_ADDRESS(a) (a)
  81. #define ACPI_STORE_ADDRESS(a,b) ((a)=(acpi_physical_address)(b))
  82. #define ACPI_VALID_ADDRESS(a) (a)
  83. #endif
  84. #endif
  85. /*
  86. * printf() format helpers
  87. */
  88. /* Split 64-bit integer into two 32-bit values. Use with %8.8X%8.8X */
  89. #define ACPI_FORMAT_UINT64(i) ACPI_HIDWORD(i),ACPI_LODWORD(i)
  90. /*
  91. * Extract data using a pointer. Any more than a byte and we
  92. * get into potential aligment issues -- see the STORE macros below.
  93. * Use with care.
  94. */
  95. #define ACPI_GET8(ptr) *ACPI_CAST_PTR (u8, ptr)
  96. #define ACPI_GET16(ptr) *ACPI_CAST_PTR (u16, ptr)
  97. #define ACPI_GET32(ptr) *ACPI_CAST_PTR (u32, ptr)
  98. #define ACPI_GET64(ptr) *ACPI_CAST_PTR (u64, ptr)
  99. #define ACPI_SET8(ptr) *ACPI_CAST_PTR (u8, ptr)
  100. #define ACPI_SET16(ptr) *ACPI_CAST_PTR (u16, ptr)
  101. #define ACPI_SET32(ptr) *ACPI_CAST_PTR (u32, ptr)
  102. #define ACPI_SET64(ptr) *ACPI_CAST_PTR (u64, ptr)
  103. /*
  104. * Pointer manipulation
  105. */
  106. #define ACPI_CAST_PTR(t, p) ((t *) (acpi_uintptr_t) (p))
  107. #define ACPI_CAST_INDIRECT_PTR(t, p) ((t **) (acpi_uintptr_t) (p))
  108. #define ACPI_ADD_PTR(t,a,b) ACPI_CAST_PTR (t, (ACPI_CAST_PTR (u8,(a)) + (acpi_native_uint)(b)))
  109. #define ACPI_PTR_DIFF(a,b) (acpi_native_uint) (ACPI_CAST_PTR (u8,(a)) - ACPI_CAST_PTR (u8,(b)))
  110. /* Pointer/Integer type conversions */
  111. #define ACPI_TO_POINTER(i) ACPI_ADD_PTR (void,(void *) NULL,(acpi_native_uint) i)
  112. #define ACPI_TO_INTEGER(p) ACPI_PTR_DIFF (p,(void *) NULL)
  113. #define ACPI_OFFSET(d,f) (acpi_size) ACPI_PTR_DIFF (&(((d *)0)->f),(void *) NULL)
  114. #define ACPI_FADT_OFFSET(f) ACPI_OFFSET (FADT_DESCRIPTOR, f)
  115. #if ACPI_MACHINE_WIDTH == 16
  116. #define ACPI_STORE_POINTER(d,s) ACPI_MOVE_32_TO_32(d,s)
  117. #define ACPI_PHYSADDR_TO_PTR(i) (void *)(i)
  118. #define ACPI_PTR_TO_PHYSADDR(i) (u32) ACPI_CAST_PTR (u8,(i))
  119. #else
  120. #define ACPI_PHYSADDR_TO_PTR(i) ACPI_TO_POINTER(i)
  121. #define ACPI_PTR_TO_PHYSADDR(i) ACPI_TO_INTEGER(i)
  122. #endif
  123. /*
  124. * Macros for moving data around to/from buffers that are possibly unaligned.
  125. * If the hardware supports the transfer of unaligned data, just do the store.
  126. * Otherwise, we have to move one byte at a time.
  127. */
  128. #ifdef ACPI_BIG_ENDIAN
  129. /*
  130. * Macros for big-endian machines
  131. */
  132. /* This macro sets a buffer index, starting from the end of the buffer */
  133. #define ACPI_BUFFER_INDEX(buf_len,buf_offset,byte_gran) ((buf_len) - (((buf_offset)+1) * (byte_gran)))
  134. /* These macros reverse the bytes during the move, converting little-endian to big endian */
  135. /* Big Endian <== Little Endian */
  136. /* Hi...Lo Lo...Hi */
  137. /* 16-bit source, 16/32/64 destination */
  138. #define ACPI_MOVE_16_TO_16(d,s) {(( u8 *)(void *)(d))[0] = ((u8 *)(void *)(s))[1];\
  139. (( u8 *)(void *)(d))[1] = ((u8 *)(void *)(s))[0];}
  140. #define ACPI_MOVE_16_TO_32(d,s) {(*(u32 *)(void *)(d))=0;\
  141. ((u8 *)(void *)(d))[2] = ((u8 *)(void *)(s))[1];\
  142. ((u8 *)(void *)(d))[3] = ((u8 *)(void *)(s))[0];}
  143. #define ACPI_MOVE_16_TO_64(d,s) {(*(u64 *)(void *)(d))=0;\
  144. ((u8 *)(void *)(d))[6] = ((u8 *)(void *)(s))[1];\
  145. ((u8 *)(void *)(d))[7] = ((u8 *)(void *)(s))[0];}
  146. /* 32-bit source, 16/32/64 destination */
  147. #define ACPI_MOVE_32_TO_16(d,s) ACPI_MOVE_16_TO_16(d,s) /* Truncate to 16 */
  148. #define ACPI_MOVE_32_TO_32(d,s) {(( u8 *)(void *)(d))[0] = ((u8 *)(void *)(s))[3];\
  149. (( u8 *)(void *)(d))[1] = ((u8 *)(void *)(s))[2];\
  150. (( u8 *)(void *)(d))[2] = ((u8 *)(void *)(s))[1];\
  151. (( u8 *)(void *)(d))[3] = ((u8 *)(void *)(s))[0];}
  152. #define ACPI_MOVE_32_TO_64(d,s) {(*(u64 *)(void *)(d))=0;\
  153. ((u8 *)(void *)(d))[4] = ((u8 *)(void *)(s))[3];\
  154. ((u8 *)(void *)(d))[5] = ((u8 *)(void *)(s))[2];\
  155. ((u8 *)(void *)(d))[6] = ((u8 *)(void *)(s))[1];\
  156. ((u8 *)(void *)(d))[7] = ((u8 *)(void *)(s))[0];}
  157. /* 64-bit source, 16/32/64 destination */
  158. #define ACPI_MOVE_64_TO_16(d,s) ACPI_MOVE_16_TO_16(d,s) /* Truncate to 16 */
  159. #define ACPI_MOVE_64_TO_32(d,s) ACPI_MOVE_32_TO_32(d,s) /* Truncate to 32 */
  160. #define ACPI_MOVE_64_TO_64(d,s) {(( u8 *)(void *)(d))[0] = ((u8 *)(void *)(s))[7];\
  161. (( u8 *)(void *)(d))[1] = ((u8 *)(void *)(s))[6];\
  162. (( u8 *)(void *)(d))[2] = ((u8 *)(void *)(s))[5];\
  163. (( u8 *)(void *)(d))[3] = ((u8 *)(void *)(s))[4];\
  164. (( u8 *)(void *)(d))[4] = ((u8 *)(void *)(s))[3];\
  165. (( u8 *)(void *)(d))[5] = ((u8 *)(void *)(s))[2];\
  166. (( u8 *)(void *)(d))[6] = ((u8 *)(void *)(s))[1];\
  167. (( u8 *)(void *)(d))[7] = ((u8 *)(void *)(s))[0];}
  168. #else
  169. /*
  170. * Macros for little-endian machines
  171. */
  172. /* This macro sets a buffer index, starting from the beginning of the buffer */
  173. #define ACPI_BUFFER_INDEX(buf_len,buf_offset,byte_gran) (buf_offset)
  174. #ifndef ACPI_MISALIGNMENT_NOT_SUPPORTED
  175. /* The hardware supports unaligned transfers, just do the little-endian move */
  176. #if ACPI_MACHINE_WIDTH == 16
  177. /* No 64-bit integers */
  178. /* 16-bit source, 16/32/64 destination */
  179. #define ACPI_MOVE_16_TO_16(d,s) *(u16 *)(void *)(d) = *(u16 *)(void *)(s)
  180. #define ACPI_MOVE_16_TO_32(d,s) *(u32 *)(void *)(d) = *(u16 *)(void *)(s)
  181. #define ACPI_MOVE_16_TO_64(d,s) ACPI_MOVE_16_TO_32(d,s)
  182. /* 32-bit source, 16/32/64 destination */
  183. #define ACPI_MOVE_32_TO_16(d,s) ACPI_MOVE_16_TO_16(d,s) /* Truncate to 16 */
  184. #define ACPI_MOVE_32_TO_32(d,s) *(u32 *)(void *)(d) = *(u32 *)(void *)(s)
  185. #define ACPI_MOVE_32_TO_64(d,s) ACPI_MOVE_32_TO_32(d,s)
  186. /* 64-bit source, 16/32/64 destination */
  187. #define ACPI_MOVE_64_TO_16(d,s) ACPI_MOVE_16_TO_16(d,s) /* Truncate to 16 */
  188. #define ACPI_MOVE_64_TO_32(d,s) ACPI_MOVE_32_TO_32(d,s) /* Truncate to 32 */
  189. #define ACPI_MOVE_64_TO_64(d,s) ACPI_MOVE_32_TO_32(d,s)
  190. #else
  191. /* 16-bit source, 16/32/64 destination */
  192. #define ACPI_MOVE_16_TO_16(d,s) *(u16 *)(void *)(d) = *(u16 *)(void *)(s)
  193. #define ACPI_MOVE_16_TO_32(d,s) *(u32 *)(void *)(d) = *(u16 *)(void *)(s)
  194. #define ACPI_MOVE_16_TO_64(d,s) *(u64 *)(void *)(d) = *(u16 *)(void *)(s)
  195. /* 32-bit source, 16/32/64 destination */
  196. #define ACPI_MOVE_32_TO_16(d,s) ACPI_MOVE_16_TO_16(d,s) /* Truncate to 16 */
  197. #define ACPI_MOVE_32_TO_32(d,s) *(u32 *)(void *)(d) = *(u32 *)(void *)(s)
  198. #define ACPI_MOVE_32_TO_64(d,s) *(u64 *)(void *)(d) = *(u32 *)(void *)(s)
  199. /* 64-bit source, 16/32/64 destination */
  200. #define ACPI_MOVE_64_TO_16(d,s) ACPI_MOVE_16_TO_16(d,s) /* Truncate to 16 */
  201. #define ACPI_MOVE_64_TO_32(d,s) ACPI_MOVE_32_TO_32(d,s) /* Truncate to 32 */
  202. #define ACPI_MOVE_64_TO_64(d,s) *(u64 *)(void *)(d) = *(u64 *)(void *)(s)
  203. #endif
  204. #else
  205. /*
  206. * The hardware does not support unaligned transfers. We must move the
  207. * data one byte at a time. These macros work whether the source or
  208. * the destination (or both) is/are unaligned. (Little-endian move)
  209. */
  210. /* 16-bit source, 16/32/64 destination */
  211. #define ACPI_MOVE_16_TO_16(d,s) {(( u8 *)(void *)(d))[0] = ((u8 *)(void *)(s))[0];\
  212. (( u8 *)(void *)(d))[1] = ((u8 *)(void *)(s))[1];}
  213. #define ACPI_MOVE_16_TO_32(d,s) {(*(u32 *)(void *)(d)) = 0; ACPI_MOVE_16_TO_16(d,s);}
  214. #define ACPI_MOVE_16_TO_64(d,s) {(*(u64 *)(void *)(d)) = 0; ACPI_MOVE_16_TO_16(d,s);}
  215. /* 32-bit source, 16/32/64 destination */
  216. #define ACPI_MOVE_32_TO_16(d,s) ACPI_MOVE_16_TO_16(d,s) /* Truncate to 16 */
  217. #define ACPI_MOVE_32_TO_32(d,s) {(( u8 *)(void *)(d))[0] = ((u8 *)(void *)(s))[0];\
  218. (( u8 *)(void *)(d))[1] = ((u8 *)(void *)(s))[1];\
  219. (( u8 *)(void *)(d))[2] = ((u8 *)(void *)(s))[2];\
  220. (( u8 *)(void *)(d))[3] = ((u8 *)(void *)(s))[3];}
  221. #define ACPI_MOVE_32_TO_64(d,s) {(*(u64 *)(void *)(d)) = 0; ACPI_MOVE_32_TO_32(d,s);}
  222. /* 64-bit source, 16/32/64 destination */
  223. #define ACPI_MOVE_64_TO_16(d,s) ACPI_MOVE_16_TO_16(d,s) /* Truncate to 16 */
  224. #define ACPI_MOVE_64_TO_32(d,s) ACPI_MOVE_32_TO_32(d,s) /* Truncate to 32 */
  225. #define ACPI_MOVE_64_TO_64(d,s) {(( u8 *)(void *)(d))[0] = ((u8 *)(void *)(s))[0];\
  226. (( u8 *)(void *)(d))[1] = ((u8 *)(void *)(s))[1];\
  227. (( u8 *)(void *)(d))[2] = ((u8 *)(void *)(s))[2];\
  228. (( u8 *)(void *)(d))[3] = ((u8 *)(void *)(s))[3];\
  229. (( u8 *)(void *)(d))[4] = ((u8 *)(void *)(s))[4];\
  230. (( u8 *)(void *)(d))[5] = ((u8 *)(void *)(s))[5];\
  231. (( u8 *)(void *)(d))[6] = ((u8 *)(void *)(s))[6];\
  232. (( u8 *)(void *)(d))[7] = ((u8 *)(void *)(s))[7];}
  233. #endif
  234. #endif
  235. /* Macros based on machine integer width */
  236. #if ACPI_MACHINE_WIDTH == 16
  237. #define ACPI_MOVE_SIZE_TO_16(d,s) ACPI_MOVE_16_TO_16(d,s)
  238. #elif ACPI_MACHINE_WIDTH == 32
  239. #define ACPI_MOVE_SIZE_TO_16(d,s) ACPI_MOVE_32_TO_16(d,s)
  240. #elif ACPI_MACHINE_WIDTH == 64
  241. #define ACPI_MOVE_SIZE_TO_16(d,s) ACPI_MOVE_64_TO_16(d,s)
  242. #else
  243. #error unknown ACPI_MACHINE_WIDTH
  244. #endif
  245. /*
  246. * Fast power-of-two math macros for non-optimized compilers
  247. */
  248. #define _ACPI_DIV(value,power_of2) ((u32) ((value) >> (power_of2)))
  249. #define _ACPI_MUL(value,power_of2) ((u32) ((value) << (power_of2)))
  250. #define _ACPI_MOD(value,divisor) ((u32) ((value) & ((divisor) -1)))
  251. #define ACPI_DIV_2(a) _ACPI_DIV(a,1)
  252. #define ACPI_MUL_2(a) _ACPI_MUL(a,1)
  253. #define ACPI_MOD_2(a) _ACPI_MOD(a,2)
  254. #define ACPI_DIV_4(a) _ACPI_DIV(a,2)
  255. #define ACPI_MUL_4(a) _ACPI_MUL(a,2)
  256. #define ACPI_MOD_4(a) _ACPI_MOD(a,4)
  257. #define ACPI_DIV_8(a) _ACPI_DIV(a,3)
  258. #define ACPI_MUL_8(a) _ACPI_MUL(a,3)
  259. #define ACPI_MOD_8(a) _ACPI_MOD(a,8)
  260. #define ACPI_DIV_16(a) _ACPI_DIV(a,4)
  261. #define ACPI_MUL_16(a) _ACPI_MUL(a,4)
  262. #define ACPI_MOD_16(a) _ACPI_MOD(a,16)
  263. #define ACPI_DIV_32(a) _ACPI_DIV(a,5)
  264. #define ACPI_MUL_32(a) _ACPI_MUL(a,5)
  265. #define ACPI_MOD_32(a) _ACPI_MOD(a,32)
  266. /*
  267. * Rounding macros (Power of two boundaries only)
  268. */
  269. #define ACPI_ROUND_DOWN(value,boundary) (((acpi_native_uint)(value)) & \
  270. (~(((acpi_native_uint) boundary)-1)))
  271. #define ACPI_ROUND_UP(value,boundary) ((((acpi_native_uint)(value)) + \
  272. (((acpi_native_uint) boundary)-1)) & \
  273. (~(((acpi_native_uint) boundary)-1)))
  274. #define ACPI_ROUND_DOWN_TO_32_BITS(a) ACPI_ROUND_DOWN(a,4)
  275. #define ACPI_ROUND_DOWN_TO_64_BITS(a) ACPI_ROUND_DOWN(a,8)
  276. #define ACPI_ROUND_DOWN_TO_NATIVE_WORD(a) ACPI_ROUND_DOWN(a,ALIGNED_ADDRESS_BOUNDARY)
  277. #define ACPI_ROUND_UP_to_32_bITS(a) ACPI_ROUND_UP(a,4)
  278. #define ACPI_ROUND_UP_to_64_bITS(a) ACPI_ROUND_UP(a,8)
  279. #define ACPI_ROUND_UP_TO_NATIVE_WORD(a) ACPI_ROUND_UP(a,ALIGNED_ADDRESS_BOUNDARY)
  280. #define ACPI_ROUND_BITS_UP_TO_BYTES(a) ACPI_DIV_8((a) + 7)
  281. #define ACPI_ROUND_BITS_DOWN_TO_BYTES(a) ACPI_DIV_8((a))
  282. #define ACPI_ROUND_UP_TO_1K(a) (((a) + 1023) >> 10)
  283. /* Generic (non-power-of-two) rounding */
  284. #define ACPI_ROUND_UP_TO(value,boundary) (((value) + ((boundary)-1)) / (boundary))
  285. /*
  286. * Bitmask creation
  287. * Bit positions start at zero.
  288. * MASK_BITS_ABOVE creates a mask starting AT the position and above
  289. * MASK_BITS_BELOW creates a mask starting one bit BELOW the position
  290. */
  291. #define ACPI_MASK_BITS_ABOVE(position) (~((ACPI_INTEGER_MAX) << ((u32) (position))))
  292. #define ACPI_MASK_BITS_BELOW(position) ((ACPI_INTEGER_MAX) << ((u32) (position)))
  293. #define ACPI_IS_OCTAL_DIGIT(d) (((char)(d) >= '0') && ((char)(d) <= '7'))
  294. /* Bitfields within ACPI registers */
  295. #define ACPI_REGISTER_PREPARE_BITS(val, pos, mask) ((val << pos) & mask)
  296. #define ACPI_REGISTER_INSERT_VALUE(reg, pos, mask, val) reg = (reg & (~(mask))) | ACPI_REGISTER_PREPARE_BITS(val, pos, mask)
  297. /* Generate a UUID */
  298. #define ACPI_INIT_UUID(a,b,c,d0,d1,d2,d3,d4,d5,d6,d7) \
  299. (a) & 0xFF, ((a) >> 8) & 0xFF, ((a) >> 16) & 0xFF, ((a) >> 24) & 0xFF, \
  300. (b) & 0xFF, ((b) >> 8) & 0xFF, \
  301. (c) & 0xFF, ((c) >> 8) & 0xFF, \
  302. (d0), (d1), (d2), (d3), (d4), (d5), (d6), (d7)
  303. /*
  304. * An struct acpi_namespace_node * can appear in some contexts,
  305. * where a pointer to an union acpi_operand_object can also
  306. * appear. This macro is used to distinguish them.
  307. *
  308. * The "Descriptor" field is the first field in both structures.
  309. */
  310. #define ACPI_GET_DESCRIPTOR_TYPE(d) (((union acpi_descriptor *)(void *)(d))->descriptor_id)
  311. #define ACPI_SET_DESCRIPTOR_TYPE(d,t) (((union acpi_descriptor *)(void *)(d))->descriptor_id = t)
  312. /* Macro to test the object type */
  313. #define ACPI_GET_OBJECT_TYPE(d) (((union acpi_operand_object *)(void *)(d))->common.type)
  314. /* Macro to check the table flags for SINGLE or MULTIPLE tables are allowed */
  315. #define ACPI_IS_SINGLE_TABLE(x) (((x) & 0x01) == ACPI_TABLE_SINGLE ? 1 : 0)
  316. /*
  317. * Macros for the master AML opcode table
  318. */
  319. #if defined(ACPI_DISASSEMBLER) || defined (ACPI_DEBUG_OUTPUT)
  320. #define ACPI_OP(name,Pargs,Iargs,obj_type,class,type,flags) {name,(u32)(Pargs),(u32)(Iargs),(u32)(flags),obj_type,class,type}
  321. #else
  322. #define ACPI_OP(name,Pargs,Iargs,obj_type,class,type,flags) {(u32)(Pargs),(u32)(Iargs),(u32)(flags),obj_type,class,type}
  323. #endif
  324. #ifdef ACPI_DISASSEMBLER
  325. #define ACPI_DISASM_ONLY_MEMBERS(a) a;
  326. #else
  327. #define ACPI_DISASM_ONLY_MEMBERS(a)
  328. #endif
  329. #define ARG_TYPE_WIDTH 5
  330. #define ARG_1(x) ((u32)(x))
  331. #define ARG_2(x) ((u32)(x) << (1 * ARG_TYPE_WIDTH))
  332. #define ARG_3(x) ((u32)(x) << (2 * ARG_TYPE_WIDTH))
  333. #define ARG_4(x) ((u32)(x) << (3 * ARG_TYPE_WIDTH))
  334. #define ARG_5(x) ((u32)(x) << (4 * ARG_TYPE_WIDTH))
  335. #define ARG_6(x) ((u32)(x) << (5 * ARG_TYPE_WIDTH))
  336. #define ARGI_LIST1(a) (ARG_1(a))
  337. #define ARGI_LIST2(a,b) (ARG_1(b)|ARG_2(a))
  338. #define ARGI_LIST3(a,b,c) (ARG_1(c)|ARG_2(b)|ARG_3(a))
  339. #define ARGI_LIST4(a,b,c,d) (ARG_1(d)|ARG_2(c)|ARG_3(b)|ARG_4(a))
  340. #define ARGI_LIST5(a,b,c,d,e) (ARG_1(e)|ARG_2(d)|ARG_3(c)|ARG_4(b)|ARG_5(a))
  341. #define ARGI_LIST6(a,b,c,d,e,f) (ARG_1(f)|ARG_2(e)|ARG_3(d)|ARG_4(c)|ARG_5(b)|ARG_6(a))
  342. #define ARGP_LIST1(a) (ARG_1(a))
  343. #define ARGP_LIST2(a,b) (ARG_1(a)|ARG_2(b))
  344. #define ARGP_LIST3(a,b,c) (ARG_1(a)|ARG_2(b)|ARG_3(c))
  345. #define ARGP_LIST4(a,b,c,d) (ARG_1(a)|ARG_2(b)|ARG_3(c)|ARG_4(d))
  346. #define ARGP_LIST5(a,b,c,d,e) (ARG_1(a)|ARG_2(b)|ARG_3(c)|ARG_4(d)|ARG_5(e))
  347. #define ARGP_LIST6(a,b,c,d,e,f) (ARG_1(a)|ARG_2(b)|ARG_3(c)|ARG_4(d)|ARG_5(e)|ARG_6(f))
  348. #define GET_CURRENT_ARG_TYPE(list) (list & ((u32) 0x1F))
  349. #define INCREMENT_ARG_LIST(list) (list >>= ((u32) ARG_TYPE_WIDTH))
  350. #if defined (ACPI_DEBUG_OUTPUT) || !defined (ACPI_NO_ERROR_MESSAGES)
  351. /*
  352. * Module name is include in both debug and non-debug versions primarily for
  353. * error messages. The __FILE__ macro is not very useful for this, because it
  354. * often includes the entire pathname to the module
  355. */
  356. #define ACPI_MODULE_NAME(name) static char ACPI_UNUSED_VAR *_acpi_module_name = name;
  357. #else
  358. #define ACPI_MODULE_NAME(name)
  359. #endif
  360. /*
  361. * Ascii error messages can be configured out
  362. */
  363. #ifndef ACPI_NO_ERROR_MESSAGES
  364. #define AE_INFO _acpi_module_name, __LINE__
  365. /*
  366. * Error reporting. Callers module and line number are inserted by AE_INFO,
  367. * the plist contains a set of parens to allow variable-length lists.
  368. * These macros are used for both the debug and non-debug versions of the code.
  369. */
  370. #define ACPI_INFO(plist) acpi_ut_info plist
  371. #define ACPI_WARNING(plist) acpi_ut_warning plist
  372. #define ACPI_EXCEPTION(plist) acpi_ut_exception plist
  373. #define ACPI_ERROR(plist) acpi_ut_error plist
  374. #define ACPI_ERROR_NAMESPACE(s,e) acpi_ns_report_error (AE_INFO, s, e);
  375. #define ACPI_ERROR_METHOD(s,n,p,e) acpi_ns_report_method_error (AE_INFO, s, n, p, e);
  376. #else
  377. /* No error messages */
  378. #define ACPI_INFO(plist)
  379. #define ACPI_WARNING(plist)
  380. #define ACPI_EXCEPTION(plist)
  381. #define ACPI_ERROR(plist)
  382. #define ACPI_ERROR_NAMESPACE(s,e)
  383. #define ACPI_ERROR_METHOD(s,n,p,e)
  384. #endif
  385. /*
  386. * Debug macros that are conditionally compiled
  387. */
  388. #ifdef ACPI_DEBUG_OUTPUT
  389. /*
  390. * Common parameters used for debug output functions:
  391. * line number, function name, module(file) name, component ID
  392. */
  393. #define ACPI_DEBUG_PARAMETERS __LINE__, ACPI_GET_FUNCTION_NAME, _acpi_module_name, _COMPONENT
  394. /*
  395. * Function entry tracing
  396. */
  397. /*
  398. * If ACPI_GET_FUNCTION_NAME was not defined in the compiler-dependent header,
  399. * define it now. This is the case where there the compiler does not support
  400. * a __FUNCTION__ macro or equivalent. We save the function name on the
  401. * local stack.
  402. */
  403. #ifndef ACPI_GET_FUNCTION_NAME
  404. #define ACPI_GET_FUNCTION_NAME _acpi_function_name
  405. /*
  406. * The Name parameter should be the procedure name as a quoted string.
  407. * This is declared as a local string ("my_function_name") so that it can
  408. * be also used by the function exit macros below.
  409. * Note: (const char) is used to be compatible with the debug interfaces
  410. * and macros such as __FUNCTION__.
  411. */
  412. #define ACPI_FUNCTION_NAME(name) const char *_acpi_function_name = name;
  413. #else
  414. /* Compiler supports __FUNCTION__ (or equivalent) -- Ignore this macro */
  415. #define ACPI_FUNCTION_NAME(name)
  416. #endif
  417. #define ACPI_FUNCTION_TRACE(a) ACPI_FUNCTION_NAME(a) \
  418. acpi_ut_trace(ACPI_DEBUG_PARAMETERS)
  419. #define ACPI_FUNCTION_TRACE_PTR(a,b) ACPI_FUNCTION_NAME(a) \
  420. acpi_ut_trace_ptr(ACPI_DEBUG_PARAMETERS,(void *)b)
  421. #define ACPI_FUNCTION_TRACE_U32(a,b) ACPI_FUNCTION_NAME(a) \
  422. acpi_ut_trace_u32(ACPI_DEBUG_PARAMETERS,(u32)b)
  423. #define ACPI_FUNCTION_TRACE_STR(a,b) ACPI_FUNCTION_NAME(a) \
  424. acpi_ut_trace_str(ACPI_DEBUG_PARAMETERS,(char *)b)
  425. #define ACPI_FUNCTION_ENTRY() acpi_ut_track_stack_ptr()
  426. /*
  427. * Function exit tracing.
  428. * WARNING: These macros include a return statement. This is usually considered
  429. * bad form, but having a separate exit macro is very ugly and difficult to maintain.
  430. * One of the FUNCTION_TRACE macros above must be used in conjunction with these macros
  431. * so that "_acpi_function_name" is defined.
  432. *
  433. * Note: the DO_WHILE0 macro is used to prevent some compilers from complaining
  434. * about these constructs.
  435. */
  436. #ifdef ACPI_USE_DO_WHILE_0
  437. #define ACPI_DO_WHILE0(a) do a while(0)
  438. #else
  439. #define ACPI_DO_WHILE0(a) a
  440. #endif
  441. #define return_VOID ACPI_DO_WHILE0 ({ \
  442. acpi_ut_exit (ACPI_DEBUG_PARAMETERS); \
  443. return;})
  444. /*
  445. * There are two versions of most of the return macros. The default version is
  446. * safer, since it avoids side-effects by guaranteeing that the argument will
  447. * not be evaluated twice.
  448. *
  449. * A less-safe version of the macros is provided for optional use if the
  450. * compiler uses excessive CPU stack (for example, this may happen in the
  451. * debug case if code optimzation is disabled.)
  452. */
  453. #ifndef ACPI_SIMPLE_RETURN_MACROS
  454. #define return_ACPI_STATUS(s) ACPI_DO_WHILE0 ({ \
  455. register acpi_status _s = (s); \
  456. acpi_ut_status_exit (ACPI_DEBUG_PARAMETERS, _s); \
  457. return (_s); })
  458. #define return_PTR(s) ACPI_DO_WHILE0 ({ \
  459. register void *_s = (void *) (s); \
  460. acpi_ut_ptr_exit (ACPI_DEBUG_PARAMETERS, (u8 *) _s); \
  461. return (_s); })
  462. #define return_VALUE(s) ACPI_DO_WHILE0 ({ \
  463. register acpi_integer _s = (s); \
  464. acpi_ut_value_exit (ACPI_DEBUG_PARAMETERS, _s); \
  465. return (_s); })
  466. #define return_UINT8(s) ACPI_DO_WHILE0 ({ \
  467. register u8 _s = (u8) (s); \
  468. acpi_ut_value_exit (ACPI_DEBUG_PARAMETERS, (acpi_integer) _s); \
  469. return (_s); })
  470. #define return_UINT32(s) ACPI_DO_WHILE0 ({ \
  471. register u32 _s = (u32) (s); \
  472. acpi_ut_value_exit (ACPI_DEBUG_PARAMETERS, (acpi_integer) _s); \
  473. return (_s); })
  474. #else /* Use original less-safe macros */
  475. #define return_ACPI_STATUS(s) ACPI_DO_WHILE0 ({ \
  476. acpi_ut_status_exit (ACPI_DEBUG_PARAMETERS, (s)); \
  477. return((s)); })
  478. #define return_PTR(s) ACPI_DO_WHILE0 ({ \
  479. acpi_ut_ptr_exit (ACPI_DEBUG_PARAMETERS, (u8 *) (s)); \
  480. return((s)); })
  481. #define return_VALUE(s) ACPI_DO_WHILE0 ({ \
  482. acpi_ut_value_exit (ACPI_DEBUG_PARAMETERS, (acpi_integer) (s)); \
  483. return((s)); })
  484. #define return_UINT8(s) return_VALUE(s)
  485. #define return_UINT32(s) return_VALUE(s)
  486. #endif /* ACPI_SIMPLE_RETURN_MACROS */
  487. /* Conditional execution */
  488. #define ACPI_DEBUG_EXEC(a) a
  489. #define ACPI_NORMAL_EXEC(a)
  490. #define ACPI_DEBUG_DEFINE(a) a;
  491. #define ACPI_DEBUG_ONLY_MEMBERS(a) a;
  492. #define _VERBOSE_STRUCTURES
  493. /* Stack and buffer dumping */
  494. #define ACPI_DUMP_STACK_ENTRY(a) acpi_ex_dump_operand((a),0)
  495. #define ACPI_DUMP_OPERANDS(a,b,c,d,e) acpi_ex_dump_operands(a,b,c,d,e,_acpi_module_name,__LINE__)
  496. #define ACPI_DUMP_ENTRY(a,b) acpi_ns_dump_entry (a,b)
  497. #define ACPI_DUMP_PATHNAME(a,b,c,d) acpi_ns_dump_pathname(a,b,c,d)
  498. #define ACPI_DUMP_RESOURCE_LIST(a) acpi_rs_dump_resource_list(a)
  499. #define ACPI_DUMP_BUFFER(a,b) acpi_ut_dump_buffer((u8 *)a,b,DB_BYTE_DISPLAY,_COMPONENT)
  500. /*
  501. * Master debug print macros
  502. * Print iff:
  503. * 1) Debug print for the current component is enabled
  504. * 2) Debug error level or trace level for the print statement is enabled
  505. */
  506. #define ACPI_DEBUG_PRINT(plist) acpi_ut_debug_print plist
  507. #define ACPI_DEBUG_PRINT_RAW(plist) acpi_ut_debug_print_raw plist
  508. #else
  509. /*
  510. * This is the non-debug case -- make everything go away,
  511. * leaving no executable debug code!
  512. */
  513. #define ACPI_DEBUG_EXEC(a)
  514. #define ACPI_NORMAL_EXEC(a) a;
  515. #define ACPI_DEBUG_DEFINE(a)
  516. #define ACPI_DEBUG_ONLY_MEMBERS(a)
  517. #define ACPI_FUNCTION_NAME(a)
  518. #define ACPI_FUNCTION_TRACE(a)
  519. #define ACPI_FUNCTION_TRACE_PTR(a,b)
  520. #define ACPI_FUNCTION_TRACE_U32(a,b)
  521. #define ACPI_FUNCTION_TRACE_STR(a,b)
  522. #define ACPI_FUNCTION_EXIT
  523. #define ACPI_FUNCTION_STATUS_EXIT(s)
  524. #define ACPI_FUNCTION_VALUE_EXIT(s)
  525. #define ACPI_FUNCTION_ENTRY()
  526. #define ACPI_DUMP_STACK_ENTRY(a)
  527. #define ACPI_DUMP_OPERANDS(a,b,c,d,e)
  528. #define ACPI_DUMP_ENTRY(a,b)
  529. #define ACPI_DUMP_PATHNAME(a,b,c,d)
  530. #define ACPI_DUMP_RESOURCE_LIST(a)
  531. #define ACPI_DUMP_BUFFER(a,b)
  532. #define ACPI_DEBUG_PRINT(pl)
  533. #define ACPI_DEBUG_PRINT_RAW(pl)
  534. #define return_VOID return
  535. #define return_ACPI_STATUS(s) return(s)
  536. #define return_VALUE(s) return(s)
  537. #define return_UINT8(s) return(s)
  538. #define return_UINT32(s) return(s)
  539. #define return_PTR(s) return(s)
  540. #endif
  541. /*
  542. * Some code only gets executed when the debugger is built in.
  543. * Note that this is entirely independent of whether the
  544. * DEBUG_PRINT stuff (set by ACPI_DEBUG_OUTPUT) is on, or not.
  545. */
  546. #ifdef ACPI_DEBUGGER
  547. #define ACPI_DEBUGGER_EXEC(a) a
  548. #else
  549. #define ACPI_DEBUGGER_EXEC(a)
  550. #endif
  551. /*
  552. * For 16-bit code, we want to shrink some things even though
  553. * we are using ACPI_DEBUG_OUTPUT to get the debug output
  554. */
  555. #if ACPI_MACHINE_WIDTH == 16
  556. #undef ACPI_DEBUG_ONLY_MEMBERS
  557. #undef _VERBOSE_STRUCTURES
  558. #define ACPI_DEBUG_ONLY_MEMBERS(a)
  559. #endif
  560. #ifdef ACPI_DEBUG_OUTPUT
  561. /*
  562. * 1) Set name to blanks
  563. * 2) Copy the object name
  564. */
  565. #define ACPI_ADD_OBJECT_NAME(a,b) ACPI_MEMSET (a->common.name, ' ', sizeof (a->common.name));\
  566. ACPI_STRNCPY (a->common.name, acpi_gbl_ns_type_names[b], sizeof (a->common.name))
  567. #else
  568. #define ACPI_ADD_OBJECT_NAME(a,b)
  569. #endif
  570. /*
  571. * Memory allocation tracking (DEBUG ONLY)
  572. */
  573. #ifndef ACPI_DBG_TRACK_ALLOCATIONS
  574. /* Memory allocation */
  575. #define ACPI_MEM_ALLOCATE(a) acpi_ut_allocate((acpi_size)(a),_COMPONENT,_acpi_module_name,__LINE__)
  576. #define ACPI_MEM_CALLOCATE(a) acpi_ut_callocate((acpi_size)(a), _COMPONENT,_acpi_module_name,__LINE__)
  577. #define ACPI_MEM_FREE(a) acpi_os_free(a)
  578. #define ACPI_MEM_TRACKING(a)
  579. #else
  580. /* Memory allocation */
  581. #define ACPI_MEM_ALLOCATE(a) acpi_ut_allocate_and_track((acpi_size)(a),_COMPONENT,_acpi_module_name,__LINE__)
  582. #define ACPI_MEM_CALLOCATE(a) acpi_ut_callocate_and_track((acpi_size)(a), _COMPONENT,_acpi_module_name,__LINE__)
  583. #define ACPI_MEM_FREE(a) acpi_ut_free_and_track(a,_COMPONENT,_acpi_module_name,__LINE__)
  584. #define ACPI_MEM_TRACKING(a) a
  585. #endif /* ACPI_DBG_TRACK_ALLOCATIONS */
  586. #endif /* ACMACROS_H */