vserver 1.9.3
[linux-2.6.git] / include / acpi / acmacros.h
1 /******************************************************************************
2  *
3  * Name: acmacros.h - C macros for the entire subsystem.
4  *
5  *****************************************************************************/
6
7 /*
8  * Copyright (C) 2000 - 2004, R. Byron Moore
9  * All rights reserved.
10  *
11  * Redistribution and use in source and binary forms, with or without
12  * modification, are permitted provided that the following conditions
13  * are met:
14  * 1. Redistributions of source code must retain the above copyright
15  *    notice, this list of conditions, and the following disclaimer,
16  *    without modification.
17  * 2. Redistributions in binary form must reproduce at minimum a disclaimer
18  *    substantially similar to the "NO WARRANTY" disclaimer below
19  *    ("Disclaimer") and any redistribution must be conditioned upon
20  *    including a substantially similar Disclaimer requirement for further
21  *    binary redistribution.
22  * 3. Neither the names of the above-listed copyright holders nor the names
23  *    of any contributors may be used to endorse or promote products derived
24  *    from this software without specific prior written permission.
25  *
26  * Alternatively, this software may be distributed under the terms of the
27  * GNU General Public License ("GPL") version 2 as published by the Free
28  * Software Foundation.
29  *
30  * NO WARRANTY
31  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
32  * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
33  * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR
34  * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
35  * HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
36  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
37  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
38  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
39  * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
40  * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
41  * POSSIBILITY OF SUCH DAMAGES.
42  */
43
44 #ifndef __ACMACROS_H__
45 #define __ACMACROS_H__
46
47
48 /*
49  * Data manipulation macros
50  */
51 #define ACPI_LOWORD(l)                  ((u16)(u32)(l))
52 #define ACPI_HIWORD(l)                  ((u16)((((u32)(l)) >> 16) & 0xFFFF))
53 #define ACPI_LOBYTE(l)                  ((u8)(u16)(l))
54 #define ACPI_HIBYTE(l)                  ((u8)((((u16)(l)) >> 8) & 0xFF))
55
56 #define ACPI_SET_BIT(target,bit)        ((target) |= (bit))
57 #define ACPI_CLEAR_BIT(target,bit)      ((target) &= ~(bit))
58
59
60 #if ACPI_MACHINE_WIDTH == 16
61
62 /*
63  * For 16-bit addresses, we have to assume that the upper 32 bits
64  * are zero.
65  */
66 #define ACPI_LODWORD(l)                 ((u32)(l))
67 #define ACPI_HIDWORD(l)                 ((u32)(0))
68
69 #define ACPI_GET_ADDRESS(a)             ((a).lo)
70 #define ACPI_STORE_ADDRESS(a,b)         {(a).hi=0;(a).lo=(u32)(b);}
71 #define ACPI_VALID_ADDRESS(a)           ((a).hi | (a).lo)
72
73 #else
74 #ifdef ACPI_NO_INTEGER64_SUPPORT
75 /*
76  * acpi_integer is 32-bits, no 64-bit support on this platform
77  */
78 #define ACPI_LODWORD(l)                 ((u32)(l))
79 #define ACPI_HIDWORD(l)                 ((u32)(0))
80
81 #define ACPI_GET_ADDRESS(a)             (a)
82 #define ACPI_STORE_ADDRESS(a,b)         ((a)=(b))
83 #define ACPI_VALID_ADDRESS(a)           (a)
84
85 #else
86
87 /*
88  * Full 64-bit address/integer on both 32-bit and 64-bit platforms
89  */
90 #define ACPI_LODWORD(l)                 ((u32)(u64)(l))
91 #define ACPI_HIDWORD(l)                 ((u32)(((*(struct uint64_struct *)(void *)(&l))).hi))
92
93 #define ACPI_GET_ADDRESS(a)             (a)
94 #define ACPI_STORE_ADDRESS(a,b)         ((a)=(acpi_physical_address)(b))
95 #define ACPI_VALID_ADDRESS(a)           (a)
96 #endif
97 #endif
98
99 /*
100  * printf() format helpers
101  */
102
103 /* Split 64-bit integer into two 32-bit values. Use with %8.8X%8.8X */
104
105 #define ACPI_FORMAT_UINT64(i)           ACPI_HIDWORD(i),ACPI_LODWORD(i)
106
107 /*
108  * Extract a byte of data using a pointer.  Any more than a byte and we
109  * get into potential aligment issues -- see the STORE macros below
110  */
111 #define ACPI_GET8(addr)                 (*(u8*)(addr))
112
113 /* Pointer arithmetic */
114
115 #define ACPI_PTR_ADD(t,a,b)             (t *) (void *)((char *)(a) + (acpi_native_uint)(b))
116 #define ACPI_PTR_DIFF(a,b)              (acpi_native_uint) ((char *)(a) - (char *)(b))
117
118 /* Pointer/Integer type conversions */
119
120 #define ACPI_TO_POINTER(i)              ACPI_PTR_ADD (void, (void *) NULL,(acpi_native_uint)i)
121 #define ACPI_TO_INTEGER(p)              ACPI_PTR_DIFF (p,(void *) NULL)
122 #define ACPI_OFFSET(d,f)                (acpi_size) ACPI_PTR_DIFF (&(((d *)0)->f),(void *) NULL)
123 #define ACPI_FADT_OFFSET(f)             ACPI_OFFSET (FADT_DESCRIPTOR, f)
124
125 #define ACPI_CAST_PTR(t, p)             ((t *)(void *)(p))
126 #define ACPI_CAST_INDIRECT_PTR(t, p)    ((t **)(void *)(p))
127
128 #if ACPI_MACHINE_WIDTH == 16
129 #define ACPI_STORE_POINTER(d,s)         ACPI_MOVE_32_TO_32(d,s)
130 #define ACPI_PHYSADDR_TO_PTR(i)         (void *)(i)
131 #define ACPI_PTR_TO_PHYSADDR(i)         (u32) (char *)(i)
132 #else
133 #define ACPI_PHYSADDR_TO_PTR(i)         ACPI_TO_POINTER(i)
134 #define ACPI_PTR_TO_PHYSADDR(i)         ACPI_TO_INTEGER(i)
135 #endif
136
137 /*
138  * Macros for moving data around to/from buffers that are possibly unaligned.
139  * If the hardware supports the transfer of unaligned data, just do the store.
140  * Otherwise, we have to move one byte at a time.
141  */
142 #ifdef ACPI_BIG_ENDIAN
143 /*
144  * Macros for big-endian machines
145  */
146
147 /* This macro sets a buffer index, starting from the end of the buffer */
148
149 #define ACPI_BUFFER_INDEX(buf_len,buf_offset,byte_gran) ((buf_len) - (((buf_offset)+1) * (byte_gran)))
150
151 /* These macros reverse the bytes during the move, converting little-endian to big endian */
152
153          /* Big Endian      <==        Little Endian */
154          /*  Hi...Lo                     Lo...Hi     */
155 /* 16-bit source, 16/32/64 destination */
156
157 #define ACPI_MOVE_16_TO_16(d,s)         {((  u8 *)(void *)(d))[0] = ((u8 *)(void *)(s))[1];\
158                           ((  u8 *)(void *)(d))[1] = ((u8 *)(void *)(s))[0];}
159
160 #define ACPI_MOVE_16_TO_32(d,s)         {(*(u32 *)(void *)(d))=0;\
161                                           ((u8 *)(void *)(d))[2] = ((u8 *)(void *)(s))[1];\
162                                           ((u8 *)(void *)(d))[3] = ((u8 *)(void *)(s))[0];}
163
164 #define ACPI_MOVE_16_TO_64(d,s)         {(*(u64 *)(void *)(d))=0;\
165                                                            ((u8 *)(void *)(d))[6] = ((u8 *)(void *)(s))[1];\
166                                                            ((u8 *)(void *)(d))[7] = ((u8 *)(void *)(s))[0];}
167
168 /* 32-bit source, 16/32/64 destination */
169
170 #define ACPI_MOVE_32_TO_16(d,s)         ACPI_MOVE_16_TO_16(d,s)    /* Truncate to 16 */
171
172 #define ACPI_MOVE_32_TO_32(d,s)         {((  u8 *)(void *)(d))[0] = ((u8 *)(void *)(s))[3];\
173                                                                           ((  u8 *)(void *)(d))[1] = ((u8 *)(void *)(s))[2];\
174                                                                           ((  u8 *)(void *)(d))[2] = ((u8 *)(void *)(s))[1];\
175                                                                           ((  u8 *)(void *)(d))[3] = ((u8 *)(void *)(s))[0];}
176
177 #define ACPI_MOVE_32_TO_64(d,s)         {(*(u64 *)(void *)(d))=0;\
178                                                                                    ((u8 *)(void *)(d))[4] = ((u8 *)(void *)(s))[3];\
179                                                                                    ((u8 *)(void *)(d))[5] = ((u8 *)(void *)(s))[2];\
180                                                                                    ((u8 *)(void *)(d))[6] = ((u8 *)(void *)(s))[1];\
181                                                                                    ((u8 *)(void *)(d))[7] = ((u8 *)(void *)(s))[0];}
182
183 /* 64-bit source, 16/32/64 destination */
184
185 #define ACPI_MOVE_64_TO_16(d,s)         ACPI_MOVE_16_TO_16(d,s)    /* Truncate to 16 */
186
187 #define ACPI_MOVE_64_TO_32(d,s)         ACPI_MOVE_32_TO_32(d,s)    /* Truncate to 32 */
188
189 #define ACPI_MOVE_64_TO_64(d,s)         {((  u8 *)(void *)(d))[0] = ((u8 *)(void *)(s))[7];\
190                                                                                  ((  u8 *)(void *)(d))[1] = ((u8 *)(void *)(s))[6];\
191                                                                                  ((  u8 *)(void *)(d))[2] = ((u8 *)(void *)(s))[5];\
192                                                                                  ((  u8 *)(void *)(d))[3] = ((u8 *)(void *)(s))[4];\
193                                                                                  ((  u8 *)(void *)(d))[4] = ((u8 *)(void *)(s))[3];\
194                                                                                  ((  u8 *)(void *)(d))[5] = ((u8 *)(void *)(s))[2];\
195                                                                                  ((  u8 *)(void *)(d))[6] = ((u8 *)(void *)(s))[1];\
196                                                                                  ((  u8 *)(void *)(d))[7] = ((u8 *)(void *)(s))[0];}
197 #else
198 /*
199  * Macros for little-endian machines
200  */
201
202 /* This macro sets a buffer index, starting from the beginning of the buffer */
203
204 #define ACPI_BUFFER_INDEX(buf_len,buf_offset,byte_gran) (buf_offset)
205
206 #ifdef ACPI_MISALIGNED_TRANSFERS
207
208 /* The hardware supports unaligned transfers, just do the little-endian move */
209
210 #if ACPI_MACHINE_WIDTH == 16
211
212 /* No 64-bit integers */
213 /* 16-bit source, 16/32/64 destination */
214
215 #define ACPI_MOVE_16_TO_16(d,s)         *(u16 *)(void *)(d) = *(u16 *)(void *)(s)
216 #define ACPI_MOVE_16_TO_32(d,s)         *(u32 *)(void *)(d) = *(u16 *)(void *)(s)
217 #define ACPI_MOVE_16_TO_64(d,s)         ACPI_MOVE_16_TO_32(d,s)
218
219 /* 32-bit source, 16/32/64 destination */
220
221 #define ACPI_MOVE_32_TO_16(d,s)         ACPI_MOVE_16_TO_16(d,s)    /* Truncate to 16 */
222 #define ACPI_MOVE_32_TO_32(d,s)         *(u32 *)(void *)(d) = *(u32 *)(void *)(s)
223 #define ACPI_MOVE_32_TO_64(d,s)         ACPI_MOVE_32_TO_32(d,s)
224
225 /* 64-bit source, 16/32/64 destination */
226
227 #define ACPI_MOVE_64_TO_16(d,s)         ACPI_MOVE_16_TO_16(d,s)    /* Truncate to 16 */
228 #define ACPI_MOVE_64_TO_32(d,s)         ACPI_MOVE_32_TO_32(d,s)    /* Truncate to 32 */
229 #define ACPI_MOVE_64_TO_64(d,s)         ACPI_MOVE_32_TO_32(d,s)
230
231 #else
232 /* 16-bit source, 16/32/64 destination */
233
234 #define ACPI_MOVE_16_TO_16(d,s)         *(u16 *)(void *)(d) = *(u16 *)(void *)(s)
235 #define ACPI_MOVE_16_TO_32(d,s)         *(u32 *)(void *)(d) = *(u16 *)(void *)(s)
236 #define ACPI_MOVE_16_TO_64(d,s)         *(u64 *)(void *)(d) = *(u16 *)(void *)(s)
237
238 /* 32-bit source, 16/32/64 destination */
239
240 #define ACPI_MOVE_32_TO_16(d,s)         ACPI_MOVE_16_TO_16(d,s)    /* Truncate to 16 */
241 #define ACPI_MOVE_32_TO_32(d,s)         *(u32 *)(void *)(d) = *(u32 *)(void *)(s)
242 #define ACPI_MOVE_32_TO_64(d,s)         *(u64 *)(void *)(d) = *(u32 *)(void *)(s)
243
244 /* 64-bit source, 16/32/64 destination */
245
246 #define ACPI_MOVE_64_TO_16(d,s)         ACPI_MOVE_16_TO_16(d,s)    /* Truncate to 16 */
247 #define ACPI_MOVE_64_TO_32(d,s)         ACPI_MOVE_32_TO_32(d,s)    /* Truncate to 32 */
248 #define ACPI_MOVE_64_TO_64(d,s)         *(u64 *)(void *)(d) = *(u64 *)(void *)(s)
249 #endif
250
251 #else
252 /*
253  * The hardware does not support unaligned transfers.  We must move the
254  * data one byte at a time.  These macros work whether the source or
255  * the destination (or both) is/are unaligned.  (Little-endian move)
256  */
257
258 /* 16-bit source, 16/32/64 destination */
259
260 #define ACPI_MOVE_16_TO_16(d,s)         {((  u8 *)(void *)(d))[0] = ((u8 *)(void *)(s))[0];\
261                                                                                  ((  u8 *)(void *)(d))[1] = ((u8 *)(void *)(s))[1];}
262
263 #define ACPI_MOVE_16_TO_32(d,s)         {(*(u32 *)(void *)(d)) = 0; ACPI_MOVE_16_TO_16(d,s);}
264 #define ACPI_MOVE_16_TO_64(d,s)         {(*(u64 *)(void *)(d)) = 0; ACPI_MOVE_16_TO_16(d,s);}
265
266 /* 32-bit source, 16/32/64 destination */
267
268 #define ACPI_MOVE_32_TO_16(d,s)         ACPI_MOVE_16_TO_16(d,s)    /* Truncate to 16 */
269
270 #define ACPI_MOVE_32_TO_32(d,s)         {((  u8 *)(void *)(d))[0] = ((u8 *)(void *)(s))[0];\
271                                                                                  ((  u8 *)(void *)(d))[1] = ((u8 *)(void *)(s))[1];\
272                                                                                  ((  u8 *)(void *)(d))[2] = ((u8 *)(void *)(s))[2];\
273                                                                                  ((  u8 *)(void *)(d))[3] = ((u8 *)(void *)(s))[3];}
274
275 #define ACPI_MOVE_32_TO_64(d,s)         {(*(u64 *)(void *)(d)) = 0; ACPI_MOVE_32_TO_32(d,s);}
276
277 /* 64-bit source, 16/32/64 destination */
278
279 #define ACPI_MOVE_64_TO_16(d,s)         ACPI_MOVE_16_TO_16(d,s)    /* Truncate to 16 */
280 #define ACPI_MOVE_64_TO_32(d,s)         ACPI_MOVE_32_TO_32(d,s)    /* Truncate to 32 */
281 #define ACPI_MOVE_64_TO_64(d,s)         {((  u8 *)(void *)(d))[0] = ((u8 *)(void *)(s))[0];\
282                                                                                  ((  u8 *)(void *)(d))[1] = ((u8 *)(void *)(s))[1];\
283                                                                                  ((  u8 *)(void *)(d))[2] = ((u8 *)(void *)(s))[2];\
284                                                                                  ((  u8 *)(void *)(d))[3] = ((u8 *)(void *)(s))[3];\
285                                                                                  ((  u8 *)(void *)(d))[4] = ((u8 *)(void *)(s))[4];\
286                                                                                  ((  u8 *)(void *)(d))[5] = ((u8 *)(void *)(s))[5];\
287                                                                                  ((  u8 *)(void *)(d))[6] = ((u8 *)(void *)(s))[6];\
288                                                                                  ((  u8 *)(void *)(d))[7] = ((u8 *)(void *)(s))[7];}
289 #endif
290 #endif
291
292 /* Macros based on machine integer width */
293
294 #if ACPI_MACHINE_WIDTH == 16
295 #define ACPI_MOVE_SIZE_TO_16(d,s)       ACPI_MOVE_16_TO_16(d,s)
296
297 #elif ACPI_MACHINE_WIDTH == 32
298 #define ACPI_MOVE_SIZE_TO_16(d,s)       ACPI_MOVE_32_TO_16(d,s)
299
300 #elif ACPI_MACHINE_WIDTH == 64
301 #define ACPI_MOVE_SIZE_TO_16(d,s)       ACPI_MOVE_64_TO_16(d,s)
302
303 #else
304 #error unknown ACPI_MACHINE_WIDTH
305 #endif
306
307
308 /*
309  * Fast power-of-two math macros for non-optimized compilers
310  */
311 #define _ACPI_DIV(value,power_of2)      ((u32) ((value) >> (power_of2)))
312 #define _ACPI_MUL(value,power_of2)      ((u32) ((value) << (power_of2)))
313 #define _ACPI_MOD(value,divisor)        ((u32) ((value) & ((divisor) -1)))
314
315 #define ACPI_DIV_2(a)                   _ACPI_DIV(a,1)
316 #define ACPI_MUL_2(a)                   _ACPI_MUL(a,1)
317 #define ACPI_MOD_2(a)                   _ACPI_MOD(a,2)
318
319 #define ACPI_DIV_4(a)                   _ACPI_DIV(a,2)
320 #define ACPI_MUL_4(a)                   _ACPI_MUL(a,2)
321 #define ACPI_MOD_4(a)                   _ACPI_MOD(a,4)
322
323 #define ACPI_DIV_8(a)                   _ACPI_DIV(a,3)
324 #define ACPI_MUL_8(a)                   _ACPI_MUL(a,3)
325 #define ACPI_MOD_8(a)                   _ACPI_MOD(a,8)
326
327 #define ACPI_DIV_16(a)                  _ACPI_DIV(a,4)
328 #define ACPI_MUL_16(a)                  _ACPI_MUL(a,4)
329 #define ACPI_MOD_16(a)                  _ACPI_MOD(a,16)
330
331
332 /*
333  * Rounding macros (Power of two boundaries only)
334  */
335 #define ACPI_ROUND_DOWN(value,boundary)      (((acpi_native_uint)(value)) & (~(((acpi_native_uint) boundary)-1)))
336 #define ACPI_ROUND_UP(value,boundary)        ((((acpi_native_uint)(value)) + (((acpi_native_uint) boundary)-1)) & (~(((acpi_native_uint) boundary)-1)))
337
338 #define ACPI_ROUND_DOWN_TO_32_BITS(a)        ACPI_ROUND_DOWN(a,4)
339 #define ACPI_ROUND_DOWN_TO_64_BITS(a)        ACPI_ROUND_DOWN(a,8)
340 #define ACPI_ROUND_DOWN_TO_NATIVE_WORD(a)    ACPI_ROUND_DOWN(a,ALIGNED_ADDRESS_BOUNDARY)
341
342 #define ACPI_ROUND_UP_to_32_bITS(a)          ACPI_ROUND_UP(a,4)
343 #define ACPI_ROUND_UP_to_64_bITS(a)          ACPI_ROUND_UP(a,8)
344 #define ACPI_ROUND_UP_TO_NATIVE_WORD(a)      ACPI_ROUND_UP(a,ALIGNED_ADDRESS_BOUNDARY)
345
346
347 #define ACPI_ROUND_BITS_UP_TO_BYTES(a)       ACPI_DIV_8((a) + 7)
348 #define ACPI_ROUND_BITS_DOWN_TO_BYTES(a)     ACPI_DIV_8((a))
349
350 #define ACPI_ROUND_UP_TO_1K(a)               (((a) + 1023) >> 10)
351
352 /* Generic (non-power-of-two) rounding */
353
354 #define ACPI_ROUND_UP_TO(value,boundary)     (((value) + ((boundary)-1)) / (boundary))
355
356 /*
357  * Bitmask creation
358  * Bit positions start at zero.
359  * MASK_BITS_ABOVE creates a mask starting AT the position and above
360  * MASK_BITS_BELOW creates a mask starting one bit BELOW the position
361  */
362 #define ACPI_MASK_BITS_ABOVE(position)       (~((ACPI_INTEGER_MAX) << ((u32) (position))))
363 #define ACPI_MASK_BITS_BELOW(position)       ((ACPI_INTEGER_MAX) << ((u32) (position)))
364
365 #define ACPI_IS_OCTAL_DIGIT(d)               (((char)(d) >= '0') && ((char)(d) <= '7'))
366
367
368 /* Bitfields within ACPI registers */
369
370 #define ACPI_REGISTER_PREPARE_BITS(val, pos, mask)      ((val << pos) & mask)
371 #define ACPI_REGISTER_INSERT_VALUE(reg, pos, mask, val)  reg = (reg & (~(mask))) | ACPI_REGISTER_PREPARE_BITS(val, pos, mask)
372
373 /*
374  * An struct acpi_namespace_node * can appear in some contexts,
375  * where a pointer to an union acpi_operand_object    can also
376  * appear.  This macro is used to distinguish them.
377  *
378  * The "Descriptor" field is the first field in both structures.
379  */
380 #define ACPI_GET_DESCRIPTOR_TYPE(d)     (((union acpi_descriptor *)(void *)(d))->descriptor_id)
381 #define ACPI_SET_DESCRIPTOR_TYPE(d,t)   (((union acpi_descriptor *)(void *)(d))->descriptor_id = t)
382
383
384 /* Macro to test the object type */
385
386 #define ACPI_GET_OBJECT_TYPE(d)         (((union acpi_operand_object *)(void *)(d))->common.type)
387
388 /* Macro to check the table flags for SINGLE or MULTIPLE tables are allowed */
389
390 #define ACPI_IS_SINGLE_TABLE(x)         (((x) & 0x01) == ACPI_TABLE_SINGLE ? 1 : 0)
391
392 /*
393  * Macros for the master AML opcode table
394  */
395 #if defined(ACPI_DISASSEMBLER) || defined (ACPI_DEBUG_OUTPUT)
396 #define ACPI_OP(name,Pargs,Iargs,obj_type,class,type,flags)    {name,(u32)(Pargs),(u32)(Iargs),(u32)(flags),obj_type,class,type}
397 #else
398 #define ACPI_OP(name,Pargs,Iargs,obj_type,class,type,flags)    {(u32)(Pargs),(u32)(Iargs),(u32)(flags),obj_type,class,type}
399 #endif
400
401 #ifdef ACPI_DISASSEMBLER
402 #define ACPI_DISASM_ONLY_MEMBERS(a)     a;
403 #else
404 #define ACPI_DISASM_ONLY_MEMBERS(a)
405 #endif
406
407 #define ARG_TYPE_WIDTH                  5
408 #define ARG_1(x)                        ((u32)(x))
409 #define ARG_2(x)                        ((u32)(x) << (1 * ARG_TYPE_WIDTH))
410 #define ARG_3(x)                        ((u32)(x) << (2 * ARG_TYPE_WIDTH))
411 #define ARG_4(x)                        ((u32)(x) << (3 * ARG_TYPE_WIDTH))
412 #define ARG_5(x)                        ((u32)(x) << (4 * ARG_TYPE_WIDTH))
413 #define ARG_6(x)                        ((u32)(x) << (5 * ARG_TYPE_WIDTH))
414
415 #define ARGI_LIST1(a)                   (ARG_1(a))
416 #define ARGI_LIST2(a,b)                 (ARG_1(b)|ARG_2(a))
417 #define ARGI_LIST3(a,b,c)               (ARG_1(c)|ARG_2(b)|ARG_3(a))
418 #define ARGI_LIST4(a,b,c,d)             (ARG_1(d)|ARG_2(c)|ARG_3(b)|ARG_4(a))
419 #define ARGI_LIST5(a,b,c,d,e)           (ARG_1(e)|ARG_2(d)|ARG_3(c)|ARG_4(b)|ARG_5(a))
420 #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))
421
422 #define ARGP_LIST1(a)                   (ARG_1(a))
423 #define ARGP_LIST2(a,b)                 (ARG_1(a)|ARG_2(b))
424 #define ARGP_LIST3(a,b,c)               (ARG_1(a)|ARG_2(b)|ARG_3(c))
425 #define ARGP_LIST4(a,b,c,d)             (ARG_1(a)|ARG_2(b)|ARG_3(c)|ARG_4(d))
426 #define ARGP_LIST5(a,b,c,d,e)           (ARG_1(a)|ARG_2(b)|ARG_3(c)|ARG_4(d)|ARG_5(e))
427 #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))
428
429 #define GET_CURRENT_ARG_TYPE(list)      (list & ((u32) 0x1F))
430 #define INCREMENT_ARG_LIST(list)        (list >>= ((u32) ARG_TYPE_WIDTH))
431
432
433 /*
434  * Reporting macros that are never compiled out
435  */
436 #define ACPI_PARAM_LIST(pl)                 pl
437
438 /*
439  * Error reporting.  These versions add callers module and line#.  Since
440  * _THIS_MODULE gets compiled out when ACPI_DEBUG_OUTPUT isn't defined, only
441  * use it in debug mode.
442  */
443 #ifdef ACPI_DEBUG_OUTPUT
444
445 #define ACPI_REPORT_INFO(fp)                {acpi_ut_report_info(_THIS_MODULE,__LINE__,_COMPONENT); \
446                                                                                                 acpi_os_printf ACPI_PARAM_LIST(fp);}
447 #define ACPI_REPORT_ERROR(fp)               {acpi_ut_report_error(_THIS_MODULE,__LINE__,_COMPONENT); \
448                                                                                                 acpi_os_printf ACPI_PARAM_LIST(fp);}
449 #define ACPI_REPORT_WARNING(fp)             {acpi_ut_report_warning(_THIS_MODULE,__LINE__,_COMPONENT); \
450                                                                                                 acpi_os_printf ACPI_PARAM_LIST(fp);}
451 #define ACPI_REPORT_NSERROR(s,e)            acpi_ns_report_error(_THIS_MODULE,__LINE__,_COMPONENT, s, e);
452
453 #define ACPI_REPORT_METHOD_ERROR(s,n,p,e)   acpi_ns_report_method_error(_THIS_MODULE,__LINE__,_COMPONENT, s, n, p, e);
454
455 #else
456
457 #define ACPI_REPORT_INFO(fp)                {acpi_ut_report_info("ACPI",__LINE__,_COMPONENT); \
458                                                                                                 acpi_os_printf ACPI_PARAM_LIST(fp);}
459 #define ACPI_REPORT_ERROR(fp)               {acpi_ut_report_error("ACPI",__LINE__,_COMPONENT); \
460                                                                                                 acpi_os_printf ACPI_PARAM_LIST(fp);}
461 #define ACPI_REPORT_WARNING(fp)             {acpi_ut_report_warning("ACPI",__LINE__,_COMPONENT); \
462                                                                                                 acpi_os_printf ACPI_PARAM_LIST(fp);}
463 #define ACPI_REPORT_NSERROR(s,e)            acpi_ns_report_error("ACPI",__LINE__,_COMPONENT, s, e);
464
465 #define ACPI_REPORT_METHOD_ERROR(s,n,p,e)   acpi_ns_report_method_error("ACPI",__LINE__,_COMPONENT, s, n, p, e);
466
467 #endif
468
469 /* Error reporting.  These versions pass thru the module and line# */
470
471 #define _ACPI_REPORT_INFO(a,b,c,fp)         {acpi_ut_report_info(a,b,c); \
472                                                                                                 acpi_os_printf ACPI_PARAM_LIST(fp);}
473 #define _ACPI_REPORT_ERROR(a,b,c,fp)        {acpi_ut_report_error(a,b,c); \
474                                                                                                 acpi_os_printf ACPI_PARAM_LIST(fp);}
475 #define _ACPI_REPORT_WARNING(a,b,c,fp)      {acpi_ut_report_warning(a,b,c); \
476                                                                                                 acpi_os_printf ACPI_PARAM_LIST(fp);}
477
478 /*
479  * Debug macros that are conditionally compiled
480  */
481 #ifdef ACPI_DEBUG_OUTPUT
482
483 #define ACPI_MODULE_NAME(name)               static char ACPI_UNUSED_VAR *_THIS_MODULE = name;
484
485 /*
486  * Function entry tracing.
487  * The first parameter should be the procedure name as a quoted string.  This is declared
488  * as a local string ("_proc_name) so that it can be also used by the function exit macros below.
489  */
490 #define ACPI_FUNCTION_NAME(a)               struct acpi_debug_print_info _dbg; \
491                                                                                                 _dbg.component_id = _COMPONENT; \
492                                                                                                 _dbg.proc_name   = a; \
493                                                                                                 _dbg.module_name = _THIS_MODULE;
494
495 #define ACPI_FUNCTION_TRACE(a)              ACPI_FUNCTION_NAME(a) \
496                                                                                                 acpi_ut_trace(__LINE__,&_dbg)
497 #define ACPI_FUNCTION_TRACE_PTR(a,b)        ACPI_FUNCTION_NAME(a) \
498                                                                                                 acpi_ut_trace_ptr(__LINE__,&_dbg,(void *)b)
499 #define ACPI_FUNCTION_TRACE_U32(a,b)        ACPI_FUNCTION_NAME(a) \
500                                                                                                 acpi_ut_trace_u32(__LINE__,&_dbg,(u32)b)
501 #define ACPI_FUNCTION_TRACE_STR(a,b)        ACPI_FUNCTION_NAME(a) \
502                                                                                                 acpi_ut_trace_str(__LINE__,&_dbg,(char *)b)
503
504 #define ACPI_FUNCTION_ENTRY()               acpi_ut_track_stack_ptr()
505
506 /*
507  * Function exit tracing.
508  * WARNING: These macros include a return statement.  This is usually considered
509  * bad form, but having a separate exit macro is very ugly and difficult to maintain.
510  * One of the FUNCTION_TRACE macros above must be used in conjunction with these macros
511  * so that "_proc_name" is defined.
512  */
513 #ifdef ACPI_USE_DO_WHILE_0
514 #define ACPI_DO_WHILE0(a)               do a while(0)
515 #else
516 #define ACPI_DO_WHILE0(a)               a
517 #endif
518
519 #define return_VOID                     ACPI_DO_WHILE0 ({acpi_ut_exit(__LINE__,&_dbg);return;})
520 #define return_ACPI_STATUS(s)           ACPI_DO_WHILE0 ({acpi_ut_status_exit(__LINE__,&_dbg,(s));return((s));})
521 #define return_VALUE(s)                 ACPI_DO_WHILE0 ({acpi_ut_value_exit(__LINE__,&_dbg,(acpi_integer)(s));return((s));})
522 #define return_PTR(s)                   ACPI_DO_WHILE0 ({acpi_ut_ptr_exit(__LINE__,&_dbg,(u8 *)(s));return((s));})
523
524 /* Conditional execution */
525
526 #define ACPI_DEBUG_EXEC(a)              a
527 #define ACPI_NORMAL_EXEC(a)
528
529 #define ACPI_DEBUG_DEFINE(a)            a;
530 #define ACPI_DEBUG_ONLY_MEMBERS(a)      a;
531 #define _VERBOSE_STRUCTURES
532
533
534 /* Stack and buffer dumping */
535
536 #define ACPI_DUMP_STACK_ENTRY(a)        acpi_ex_dump_operand(a)
537 #define ACPI_DUMP_OPERANDS(a,b,c,d,e)   acpi_ex_dump_operands(a,b,c,d,e,_THIS_MODULE,__LINE__)
538
539
540 #define ACPI_DUMP_ENTRY(a,b)            acpi_ns_dump_entry (a,b)
541 #define ACPI_DUMP_TABLES(a,b)           acpi_ns_dump_tables(a,b)
542 #define ACPI_DUMP_PATHNAME(a,b,c,d)     acpi_ns_dump_pathname(a,b,c,d)
543 #define ACPI_DUMP_RESOURCE_LIST(a)      acpi_rs_dump_resource_list(a)
544 #define ACPI_DUMP_BUFFER(a,b)           acpi_ut_dump_buffer((u8 *)a,b,DB_BYTE_DISPLAY,_COMPONENT)
545 #define ACPI_BREAK_MSG(a)               acpi_os_signal (ACPI_SIGNAL_BREAKPOINT,(a))
546
547
548 /*
549  * Generate INT3 on ACPI_ERROR (Debug only!)
550  */
551 #define ACPI_ERROR_BREAK
552 #ifdef  ACPI_ERROR_BREAK
553 #define ACPI_BREAK_ON_ERROR(lvl)        if ((lvl)&ACPI_ERROR) \
554                                                                                         acpi_os_signal(ACPI_SIGNAL_BREAKPOINT,"Fatal error encountered\n")
555 #else
556 #define ACPI_BREAK_ON_ERROR(lvl)
557 #endif
558
559 /*
560  * Master debug print macros
561  * Print iff:
562  *    1) Debug print for the current component is enabled
563  *    2) Debug error level or trace level for the print statement is enabled
564  */
565 #define ACPI_DEBUG_PRINT(pl)            acpi_ut_debug_print ACPI_PARAM_LIST(pl)
566 #define ACPI_DEBUG_PRINT_RAW(pl)        acpi_ut_debug_print_raw ACPI_PARAM_LIST(pl)
567
568
569 #else
570 /*
571  * This is the non-debug case -- make everything go away,
572  * leaving no executable debug code!
573  */
574 #define ACPI_MODULE_NAME(name)
575 #define _THIS_MODULE ""
576
577 #define ACPI_DEBUG_EXEC(a)
578 #define ACPI_NORMAL_EXEC(a)             a;
579
580 #define ACPI_DEBUG_DEFINE(a)
581 #define ACPI_DEBUG_ONLY_MEMBERS(a)
582 #define ACPI_FUNCTION_NAME(a)
583 #define ACPI_FUNCTION_TRACE(a)
584 #define ACPI_FUNCTION_TRACE_PTR(a,b)
585 #define ACPI_FUNCTION_TRACE_U32(a,b)
586 #define ACPI_FUNCTION_TRACE_STR(a,b)
587 #define ACPI_FUNCTION_EXIT
588 #define ACPI_FUNCTION_STATUS_EXIT(s)
589 #define ACPI_FUNCTION_VALUE_EXIT(s)
590 #define ACPI_FUNCTION_ENTRY()
591 #define ACPI_DUMP_STACK_ENTRY(a)
592 #define ACPI_DUMP_OPERANDS(a,b,c,d,e)
593 #define ACPI_DUMP_ENTRY(a,b)
594 #define ACPI_DUMP_TABLES(a,b)
595 #define ACPI_DUMP_PATHNAME(a,b,c,d)
596 #define ACPI_DUMP_RESOURCE_LIST(a)
597 #define ACPI_DUMP_BUFFER(a,b)
598 #define ACPI_DEBUG_PRINT(pl)
599 #define ACPI_DEBUG_PRINT_RAW(pl)
600 #define ACPI_BREAK_MSG(a)
601
602 #define return_VOID                     return
603 #define return_ACPI_STATUS(s)           return(s)
604 #define return_VALUE(s)                 return(s)
605 #define return_PTR(s)                   return(s)
606
607 #endif
608
609 /*
610  * Some code only gets executed when the debugger is built in.
611  * Note that this is entirely independent of whether the
612  * DEBUG_PRINT stuff (set by ACPI_DEBUG_OUTPUT) is on, or not.
613  */
614 #ifdef ACPI_DEBUGGER
615 #define ACPI_DEBUGGER_EXEC(a)           a
616 #else
617 #define ACPI_DEBUGGER_EXEC(a)
618 #endif
619
620
621 /*
622  * For 16-bit code, we want to shrink some things even though
623  * we are using ACPI_DEBUG_OUTPUT to get the debug output
624  */
625 #if ACPI_MACHINE_WIDTH == 16
626 #undef ACPI_DEBUG_ONLY_MEMBERS
627 #undef _VERBOSE_STRUCTURES
628 #define ACPI_DEBUG_ONLY_MEMBERS(a)
629 #endif
630
631
632 #ifdef ACPI_DEBUG_OUTPUT
633 /*
634  * 1) Set name to blanks
635  * 2) Copy the object name
636  */
637 #define ACPI_ADD_OBJECT_NAME(a,b)       ACPI_MEMSET (a->common.name, ' ', sizeof (a->common.name));\
638                                                                                 ACPI_STRNCPY (a->common.name, acpi_gbl_ns_type_names[b], sizeof (a->common.name))
639 #else
640
641 #define ACPI_ADD_OBJECT_NAME(a,b)
642 #endif
643
644
645 /*
646  * Memory allocation tracking (DEBUG ONLY)
647  */
648 #ifndef ACPI_DBG_TRACK_ALLOCATIONS
649
650 /* Memory allocation */
651
652 #define ACPI_MEM_ALLOCATE(a)            acpi_ut_allocate((acpi_size)(a),_COMPONENT,_THIS_MODULE,__LINE__)
653 #define ACPI_MEM_CALLOCATE(a)           acpi_ut_callocate((acpi_size)(a), _COMPONENT,_THIS_MODULE,__LINE__)
654 #define ACPI_MEM_FREE(a)                acpi_os_free(a)
655 #define ACPI_MEM_TRACKING(a)
656
657
658 #else
659
660 /* Memory allocation */
661
662 #define ACPI_MEM_ALLOCATE(a)            acpi_ut_allocate_and_track((acpi_size)(a),_COMPONENT,_THIS_MODULE,__LINE__)
663 #define ACPI_MEM_CALLOCATE(a)           acpi_ut_callocate_and_track((acpi_size)(a), _COMPONENT,_THIS_MODULE,__LINE__)
664 #define ACPI_MEM_FREE(a)                acpi_ut_free_and_track(a,_COMPONENT,_THIS_MODULE,__LINE__)
665 #define ACPI_MEM_TRACKING(a)            a
666
667 #endif /* ACPI_DBG_TRACK_ALLOCATIONS */
668
669 #endif /* ACMACROS_H */