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[qemu.git] / hw / acpi / aml-build.c
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1/* Support for generating ACPI tables and passing them to Guests
2 *
3 * Copyright (C) 2015 Red Hat Inc
4 *
5 * Author: Michael S. Tsirkin <[email protected]>
6 * Author: Igor Mammedov <[email protected]>
7 *
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License as published by
10 * the Free Software Foundation; either version 2 of the License, or
11 * (at your option) any later version.
12
13 * This program is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 * GNU General Public License for more details.
17
18 * You should have received a copy of the GNU General Public License along
19 * with this program; if not, see <http://www.gnu.org/licenses/>.
20 */
21
22#include <stdio.h>
23#include <stdarg.h>
24#include <assert.h>
25#include <stdbool.h>
eae8bded 26#include <string.h>
19934e0e 27#include "hw/acpi/aml-build.h"
0f2707e4 28#include "qemu/bswap.h"
19934e0e 29
af59b35c 30static GArray *build_alloc_array(void)
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31{
32 return g_array_new(false, true /* clear */, 1);
33}
34
af59b35c 35static void build_free_array(GArray *array)
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36{
37 g_array_free(array, true);
38}
39
af59b35c 40static void build_prepend_byte(GArray *array, uint8_t val)
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41{
42 g_array_prepend_val(array, val);
43}
44
af59b35c 45static void build_append_byte(GArray *array, uint8_t val)
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46{
47 g_array_append_val(array, val);
48}
49
af59b35c 50static void build_append_array(GArray *array, GArray *val)
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51{
52 g_array_append_vals(array, val->data, val->len);
53}
54
55#define ACPI_NAMESEG_LEN 4
56
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57static void
58build_append_nameseg(GArray *array, const char *seg)
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59{
60 /* It would be nicer to use g_string_vprintf but it's only there in 2.22 */
19934e0e 61 int len;
19934e0e 62
eae8bded 63 len = strlen(seg);
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64 assert(len <= ACPI_NAMESEG_LEN);
65
eae8bded 66 g_array_append_vals(array, seg, len);
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67 /* Pad up to ACPI_NAMESEG_LEN characters if necessary. */
68 g_array_append_vals(array, "____", ACPI_NAMESEG_LEN - len);
69}
70
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71static void
72build_append_namestringv(GArray *array, const char *format, va_list ap)
73{
74 /* It would be nicer to use g_string_vprintf but it's only there in 2.22 */
75 char *s;
76 int len;
77 va_list va_len;
78 char **segs;
79 char **segs_iter;
80 int seg_count = 0;
81
82 va_copy(va_len, ap);
83 len = vsnprintf(NULL, 0, format, va_len);
84 va_end(va_len);
85 len += 1;
86 s = g_new(typeof(*s), len);
87
88 len = vsnprintf(s, len, format, ap);
89
90 segs = g_strsplit(s, ".", 0);
91 g_free(s);
92
93 /* count segments */
94 segs_iter = segs;
95 while (*segs_iter) {
96 ++segs_iter;
97 ++seg_count;
98 }
99 /*
100 * ACPI 5.0 spec: 20.2.2 Name Objects Encoding:
101 * "SegCount can be from 1 to 255"
102 */
103 assert(seg_count > 0 && seg_count <= 255);
104
105 /* handle RootPath || PrefixPath */
106 s = *segs;
107 while (*s == '\\' || *s == '^') {
108 build_append_byte(array, *s);
109 ++s;
110 }
111
112 switch (seg_count) {
113 case 1:
114 if (!*s) {
115 build_append_byte(array, 0x0); /* NullName */
116 } else {
117 build_append_nameseg(array, s);
118 }
119 break;
120
121 case 2:
122 build_append_byte(array, 0x2E); /* DualNamePrefix */
123 build_append_nameseg(array, s);
124 build_append_nameseg(array, segs[1]);
125 break;
126 default:
127 build_append_byte(array, 0x2F); /* MultiNamePrefix */
128 build_append_byte(array, seg_count);
129
130 /* handle the 1st segment manually due to prefix/root path */
131 build_append_nameseg(array, s);
132
133 /* add the rest of segments */
134 segs_iter = segs + 1;
135 while (*segs_iter) {
136 build_append_nameseg(array, *segs_iter);
137 ++segs_iter;
138 }
139 break;
140 }
141 g_strfreev(segs);
142}
143
af59b35c 144static void build_append_namestring(GArray *array, const char *format, ...)
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145{
146 va_list ap;
147
148 va_start(ap, format);
149 build_append_namestringv(array, format, ap);
150 va_end(ap);
151}
152
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153/* 5.4 Definition Block Encoding */
154enum {
155 PACKAGE_LENGTH_1BYTE_SHIFT = 6, /* Up to 63 - use extra 2 bits. */
156 PACKAGE_LENGTH_2BYTE_SHIFT = 4,
157 PACKAGE_LENGTH_3BYTE_SHIFT = 12,
158 PACKAGE_LENGTH_4BYTE_SHIFT = 20,
159};
160
af59b35c 161static void
19fff2d4 162build_prepend_package_length(GArray *package, unsigned length, bool incl_self)
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163{
164 uint8_t byte;
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165 unsigned length_bytes;
166
167 if (length + 1 < (1 << PACKAGE_LENGTH_1BYTE_SHIFT)) {
168 length_bytes = 1;
169 } else if (length + 2 < (1 << PACKAGE_LENGTH_3BYTE_SHIFT)) {
170 length_bytes = 2;
171 } else if (length + 3 < (1 << PACKAGE_LENGTH_4BYTE_SHIFT)) {
172 length_bytes = 3;
173 } else {
174 length_bytes = 4;
175 }
176
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177 /*
178 * NamedField uses PkgLength encoding but it doesn't include length
179 * of PkgLength itself.
180 */
181 if (incl_self) {
182 /*
183 * PkgLength is the length of the inclusive length of the data
184 * and PkgLength's length itself when used for terms with
185 * explitit length.
186 */
187 length += length_bytes;
188 }
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189
190 switch (length_bytes) {
191 case 1:
192 byte = length;
193 build_prepend_byte(package, byte);
194 return;
195 case 4:
196 byte = length >> PACKAGE_LENGTH_4BYTE_SHIFT;
197 build_prepend_byte(package, byte);
198 length &= (1 << PACKAGE_LENGTH_4BYTE_SHIFT) - 1;
199 /* fall through */
200 case 3:
201 byte = length >> PACKAGE_LENGTH_3BYTE_SHIFT;
202 build_prepend_byte(package, byte);
203 length &= (1 << PACKAGE_LENGTH_3BYTE_SHIFT) - 1;
204 /* fall through */
205 case 2:
206 byte = length >> PACKAGE_LENGTH_2BYTE_SHIFT;
207 build_prepend_byte(package, byte);
208 length &= (1 << PACKAGE_LENGTH_2BYTE_SHIFT) - 1;
209 /* fall through */
210 }
211 /*
212 * Most significant two bits of byte zero indicate how many following bytes
213 * are in PkgLength encoding.
214 */
215 byte = ((length_bytes - 1) << PACKAGE_LENGTH_1BYTE_SHIFT) | length;
216 build_prepend_byte(package, byte);
217}
218
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219static void
220build_append_pkg_length(GArray *array, unsigned length, bool incl_self)
221{
222 GArray *tmp = build_alloc_array();
223
224 build_prepend_package_length(tmp, length, incl_self);
225 build_append_array(array, tmp);
226 build_free_array(tmp);
227}
228
af59b35c 229static void build_package(GArray *package, uint8_t op)
19934e0e 230{
19fff2d4 231 build_prepend_package_length(package, package->len, true);
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232 build_prepend_byte(package, op);
233}
234
af59b35c 235static void build_extop_package(GArray *package, uint8_t op)
19934e0e 236{
661875e9 237 build_package(package, op);
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238 build_prepend_byte(package, 0x5B); /* ExtOpPrefix */
239}
240
295a515d 241static void build_append_int_noprefix(GArray *table, uint64_t value, int size)
19934e0e 242{
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243 int i;
244
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245 for (i = 0; i < size; ++i) {
246 build_append_byte(table, value & 0xFF);
247 value = value >> 8;
248 }
249}
250
af59b35c 251static void build_append_int(GArray *table, uint64_t value)
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252{
253 if (value == 0x00) {
254 build_append_byte(table, 0x00); /* ZeroOp */
255 } else if (value == 0x01) {
256 build_append_byte(table, 0x01); /* OneOp */
257 } else if (value <= 0xFF) {
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258 build_append_byte(table, 0x0A); /* BytePrefix */
259 build_append_int_noprefix(table, value, 1);
19934e0e 260 } else if (value <= 0xFFFF) {
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261 build_append_byte(table, 0x0B); /* WordPrefix */
262 build_append_int_noprefix(table, value, 2);
263 } else if (value <= 0xFFFFFFFF) {
264 build_append_byte(table, 0x0C); /* DWordPrefix */
265 build_append_int_noprefix(table, value, 4);
19934e0e 266 } else {
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267 build_append_byte(table, 0x0E); /* QWordPrefix */
268 build_append_int_noprefix(table, value, 8);
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269 }
270}
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271
272static GPtrArray *alloc_list;
273
274static Aml *aml_alloc(void)
275{
276 Aml *var = g_new0(typeof(*var), 1);
277
278 g_ptr_array_add(alloc_list, var);
279 var->block_flags = AML_NO_OPCODE;
280 var->buf = build_alloc_array();
281 return var;
282}
283
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284static Aml *aml_opcode(uint8_t op)
285{
286 Aml *var = aml_alloc();
287
288 var->op = op;
289 var->block_flags = AML_OPCODE;
290 return var;
291}
292
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293static Aml *aml_bundle(uint8_t op, AmlBlockFlags flags)
294{
295 Aml *var = aml_alloc();
296
297 var->op = op;
298 var->block_flags = flags;
299 return var;
300}
301
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302static void aml_free(gpointer data)
303{
304 Aml *var = data;
305 build_free_array(var->buf);
306}
307
308Aml *init_aml_allocator(void)
309{
310 Aml *var;
311
312 assert(!alloc_list);
313 alloc_list = g_ptr_array_new_with_free_func(aml_free);
314 var = aml_alloc();
315 return var;
316}
317
318void free_aml_allocator(void)
319{
320 g_ptr_array_free(alloc_list, true);
321 alloc_list = 0;
322}
323
324/* pack data with DefBuffer encoding */
325static void build_buffer(GArray *array, uint8_t op)
326{
327 GArray *data = build_alloc_array();
328
329 build_append_int(data, array->len);
330 g_array_prepend_vals(array, data->data, data->len);
331 build_free_array(data);
332 build_package(array, op);
333}
334
335void aml_append(Aml *parent_ctx, Aml *child)
336{
337 switch (child->block_flags) {
338 case AML_OPCODE:
339 build_append_byte(parent_ctx->buf, child->op);
340 break;
341 case AML_EXT_PACKAGE:
342 build_extop_package(child->buf, child->op);
343 break;
344 case AML_PACKAGE:
345 build_package(child->buf, child->op);
346 break;
347 case AML_RES_TEMPLATE:
348 build_append_byte(child->buf, 0x79); /* EndTag */
349 /*
350 * checksum operations are treated as succeeded if checksum
351 * field is zero. [ACPI Spec 1.0b, 6.4.2.8 End Tag]
352 */
353 build_append_byte(child->buf, 0);
354 /* fall through, to pack resources in buffer */
355 case AML_BUFFER:
356 build_buffer(child->buf, child->op);
357 break;
358 case AML_NO_OPCODE:
359 break;
360 default:
361 assert(0);
362 break;
363 }
364 build_append_array(parent_ctx->buf, child->buf);
365}
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366
367/* ACPI 1.0b: 16.2.5.1 Namespace Modifier Objects Encoding: DefScope */
368Aml *aml_scope(const char *name_format, ...)
369{
370 va_list ap;
371 Aml *var = aml_bundle(0x10 /* ScopeOp */, AML_PACKAGE);
372 va_start(ap, name_format);
373 build_append_namestringv(var->buf, name_format, ap);
374 va_end(ap);
375 return var;
376}
be06ebd0 377
b25af5ad
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378/* ACPI 1.0b: 16.2.5.3 Type 1 Opcodes Encoding: DefReturn */
379Aml *aml_return(Aml *val)
380{
381 Aml *var = aml_opcode(0xA4 /* ReturnOp */);
382 aml_append(var, val);
383 return var;
384}
385
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386/*
387 * ACPI 1.0b: 16.2.3 Data Objects Encoding:
388 * encodes: ByteConst, WordConst, DWordConst, QWordConst, ZeroOp, OneOp
389 */
390Aml *aml_int(const uint64_t val)
391{
392 Aml *var = aml_alloc();
393 build_append_int(var->buf, val);
394 return var;
395}
396
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397/*
398 * helper to construct NameString, which returns Aml object
399 * for using with aml_append or other aml_* terms
400 */
401Aml *aml_name(const char *name_format, ...)
402{
403 va_list ap;
404 Aml *var = aml_alloc();
405 va_start(ap, name_format);
406 build_append_namestringv(var->buf, name_format, ap);
407 va_end(ap);
408 return var;
409}
410
411/* ACPI 1.0b: 16.2.5.1 Namespace Modifier Objects Encoding: DefName */
412Aml *aml_name_decl(const char *name, Aml *val)
413{
414 Aml *var = aml_opcode(0x08 /* NameOp */);
415 build_append_namestring(var->buf, "%s", name);
416 aml_append(var, val);
417 return var;
418}
419
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420/* ACPI 1.0b: 16.2.6.1 Arg Objects Encoding */
421Aml *aml_arg(int pos)
422{
423 Aml *var;
424 uint8_t op = 0x68 /* ARG0 op */ + pos;
425
426 assert(pos <= 6);
427 var = aml_opcode(op);
428 return var;
429}
430
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431/* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefStore */
432Aml *aml_store(Aml *val, Aml *target)
433{
434 Aml *var = aml_opcode(0x70 /* StoreOp */);
435 aml_append(var, val);
436 aml_append(var, target);
437 return var;
438}
439
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440/* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefAnd */
441Aml *aml_and(Aml *arg1, Aml *arg2)
442{
443 Aml *var = aml_opcode(0x7B /* AndOp */);
444 aml_append(var, arg1);
445 aml_append(var, arg2);
446 build_append_int(var->buf, 0x00 /* NullNameOp */);
447 return var;
448}
449
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450/* ACPI 1.0b: 16.2.5.3 Type 1 Opcodes Encoding: DefNotify */
451Aml *aml_notify(Aml *arg1, Aml *arg2)
452{
453 Aml *var = aml_opcode(0x86 /* NotifyOp */);
454 aml_append(var, arg1);
455 aml_append(var, arg2);
456 return var;
457}
458
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459/* helper to call method with 1 argument */
460Aml *aml_call1(const char *method, Aml *arg1)
461{
462 Aml *var = aml_alloc();
463 build_append_namestring(var->buf, "%s", method);
464 aml_append(var, arg1);
465 return var;
466}
467
468/* helper to call method with 2 arguments */
469Aml *aml_call2(const char *method, Aml *arg1, Aml *arg2)
470{
471 Aml *var = aml_alloc();
472 build_append_namestring(var->buf, "%s", method);
473 aml_append(var, arg1);
474 aml_append(var, arg2);
475 return var;
476}
477
478/* helper to call method with 3 arguments */
479Aml *aml_call3(const char *method, Aml *arg1, Aml *arg2, Aml *arg3)
480{
481 Aml *var = aml_alloc();
482 build_append_namestring(var->buf, "%s", method);
483 aml_append(var, arg1);
484 aml_append(var, arg2);
485 aml_append(var, arg3);
486 return var;
487}
488
489/* helper to call method with 4 arguments */
490Aml *aml_call4(const char *method, Aml *arg1, Aml *arg2, Aml *arg3, Aml *arg4)
491{
492 Aml *var = aml_alloc();
493 build_append_namestring(var->buf, "%s", method);
494 aml_append(var, arg1);
495 aml_append(var, arg2);
496 aml_append(var, arg3);
497 aml_append(var, arg4);
498 return var;
499}
500
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501/* ACPI 1.0b: 6.4.2.5 I/O Port Descriptor */
502Aml *aml_io(AmlIODecode dec, uint16_t min_base, uint16_t max_base,
503 uint8_t aln, uint8_t len)
504{
505 Aml *var = aml_alloc();
506 build_append_byte(var->buf, 0x47); /* IO port descriptor */
507 build_append_byte(var->buf, dec);
508 build_append_byte(var->buf, min_base & 0xff);
509 build_append_byte(var->buf, (min_base >> 8) & 0xff);
510 build_append_byte(var->buf, max_base & 0xff);
511 build_append_byte(var->buf, (max_base >> 8) & 0xff);
512 build_append_byte(var->buf, aln);
513 build_append_byte(var->buf, len);
514 return var;
515}
516
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517/*
518 * ACPI 1.0b: 6.4.2.1.1 ASL Macro for IRQ Descriptor
519 *
520 * More verbose description at:
521 * ACPI 5.0: 19.5.64 IRQNoFlags (Interrupt Resource Descriptor Macro)
522 * 6.4.2.1 IRQ Descriptor
523 */
524Aml *aml_irq_no_flags(uint8_t irq)
525{
526 uint16_t irq_mask;
527 Aml *var = aml_alloc();
528
529 assert(irq < 16);
530 build_append_byte(var->buf, 0x22); /* IRQ descriptor 2 byte form */
531
532 irq_mask = 1U << irq;
533 build_append_byte(var->buf, irq_mask & 0xFF); /* IRQ mask bits[7:0] */
534 build_append_byte(var->buf, irq_mask >> 8); /* IRQ mask bits[15:8] */
535 return var;
536}
537
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538/* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefLEqual */
539Aml *aml_equal(Aml *arg1, Aml *arg2)
540{
541 Aml *var = aml_opcode(0x93 /* LequalOp */);
542 aml_append(var, arg1);
543 aml_append(var, arg2);
544 build_append_int(var->buf, 0x00); /* NullNameOp */
545 return var;
546}
547
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548/* ACPI 1.0b: 16.2.5.3 Type 1 Opcodes Encoding: DefIfElse */
549Aml *aml_if(Aml *predicate)
550{
551 Aml *var = aml_bundle(0xA0 /* IfOp */, AML_PACKAGE);
552 aml_append(var, predicate);
553 return var;
554}
555
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556/* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: DefMethod */
557Aml *aml_method(const char *name, int arg_count)
558{
559 Aml *var = aml_bundle(0x14 /* MethodOp */, AML_PACKAGE);
560 build_append_namestring(var->buf, "%s", name);
561 build_append_byte(var->buf, arg_count); /* MethodFlags: ArgCount */
562 return var;
563}
564
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565/* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: DefDevice */
566Aml *aml_device(const char *name_format, ...)
567{
568 va_list ap;
569 Aml *var = aml_bundle(0x82 /* DeviceOp */, AML_EXT_PACKAGE);
570 va_start(ap, name_format);
571 build_append_namestringv(var->buf, name_format, ap);
572 va_end(ap);
573 return var;
574}
3bfa74a7 575
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576/* ACPI 1.0b: 6.4.1 ASL Macros for Resource Descriptors */
577Aml *aml_resource_template(void)
578{
579 /* ResourceTemplate is a buffer of Resources with EndTag at the end */
580 Aml *var = aml_bundle(0x11 /* BufferOp */, AML_RES_TEMPLATE);
581 return var;
582}
583
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584/* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefBuffer */
585Aml *aml_buffer(void)
586{
587 Aml *var = aml_bundle(0x11 /* BufferOp */, AML_BUFFER);
588 return var;
589}
590
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591/* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefPackage */
592Aml *aml_package(uint8_t num_elements)
593{
594 Aml *var = aml_bundle(0x12 /* PackageOp */, AML_PACKAGE);
595 build_append_byte(var->buf, num_elements);
596 return var;
597}
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598
599/* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: DefOpRegion */
600Aml *aml_operation_region(const char *name, AmlRegionSpace rs,
601 uint32_t offset, uint32_t len)
602{
603 Aml *var = aml_alloc();
604 build_append_byte(var->buf, 0x5B); /* ExtOpPrefix */
605 build_append_byte(var->buf, 0x80); /* OpRegionOp */
606 build_append_namestring(var->buf, "%s", name);
607 build_append_byte(var->buf, rs);
608 build_append_int(var->buf, offset);
609 build_append_int(var->buf, len);
610 return var;
611}
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612
613/* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: NamedField */
614Aml *aml_named_field(const char *name, unsigned length)
615{
616 Aml *var = aml_alloc();
617 build_append_nameseg(var->buf, name);
618 build_append_pkg_length(var->buf, length, false);
619 return var;
620}
621
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622/* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: ReservedField */
623Aml *aml_reserved_field(unsigned length)
624{
625 Aml *var = aml_alloc();
626 /* ReservedField := 0x00 PkgLength */
627 build_append_byte(var->buf, 0x00);
628 build_append_pkg_length(var->buf, length, false);
629 return var;
630}
631
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632/* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: DefField */
633Aml *aml_field(const char *name, AmlFieldFlags flags)
634{
635 Aml *var = aml_bundle(0x81 /* FieldOp */, AML_EXT_PACKAGE);
636 build_append_namestring(var->buf, "%s", name);
637 build_append_byte(var->buf, flags);
638 return var;
639}
b8a5d689 640
d5e5830f
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641/* ACPI 1.0b: 16.2.3 Data Objects Encoding: String */
642Aml *aml_string(const char *name_format, ...)
643{
644 Aml *var = aml_opcode(0x0D /* StringPrefix */);
645 va_list ap, va_len;
646 char *s;
647 int len;
648
649 va_start(ap, name_format);
650 va_copy(va_len, ap);
651 len = vsnprintf(NULL, 0, name_format, va_len);
652 va_end(va_len);
653 len += 1;
654 s = g_new0(typeof(*s), len);
655
656 len = vsnprintf(s, len, name_format, ap);
657 va_end(ap);
658
659 g_array_append_vals(var->buf, s, len);
660 build_append_byte(var->buf, 0x0); /* NullChar */
661 g_free(s);
662
663 return var;
664}
665
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666/* ACPI 1.0b: 16.2.6.2 Local Objects Encoding */
667Aml *aml_local(int num)
668{
669 Aml *var;
670 uint8_t op = 0x60 /* Local0Op */ + num;
671
672 assert(num <= 7);
673 var = aml_opcode(op);
674 return var;
675}
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676
677/* ACPI 2.0a: 17.2.2 Data Objects Encoding: DefVarPackage */
678Aml *aml_varpackage(uint32_t num_elements)
679{
680 Aml *var = aml_bundle(0x13 /* VarPackageOp */, AML_PACKAGE);
681 build_append_int(var->buf, num_elements);
682 return var;
683}
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684
685/* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: DefProcessor */
686Aml *aml_processor(uint8_t proc_id, uint32_t pblk_addr, uint8_t pblk_len,
687 const char *name_format, ...)
688{
689 va_list ap;
690 Aml *var = aml_bundle(0x83 /* ProcessorOp */, AML_EXT_PACKAGE);
691 va_start(ap, name_format);
692 build_append_namestringv(var->buf, name_format, ap);
693 va_end(ap);
694 build_append_byte(var->buf, proc_id); /* ProcID */
695 build_append_int_noprefix(var->buf, pblk_addr, sizeof(pblk_addr));
696 build_append_byte(var->buf, pblk_len); /* PblkLen */
697 return var;
698}
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699
700static uint8_t Hex2Digit(char c)
701{
702 if (c >= 'A') {
703 return c - 'A' + 10;
704 }
705
706 return c - '0';
707}
708
709/* ACPI 1.0b: 15.2.3.6.4.1 EISAID Macro - Convert EISA ID String To Integer */
710Aml *aml_eisaid(const char *str)
711{
712 Aml *var = aml_alloc();
713 uint32_t id;
714
715 g_assert(strlen(str) == 7);
716 id = (str[0] - 0x40) << 26 |
717 (str[1] - 0x40) << 21 |
718 (str[2] - 0x40) << 16 |
719 Hex2Digit(str[3]) << 12 |
720 Hex2Digit(str[4]) << 8 |
721 Hex2Digit(str[5]) << 4 |
722 Hex2Digit(str[6]);
723
724 build_append_byte(var->buf, 0x0C); /* DWordPrefix */
725 build_append_int_noprefix(var->buf, bswap32(id), sizeof(id));
726 return var;
727}
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728
729/* ACPI 1.0b: 6.4.3.5.5 Word Address Space Descriptor: bytes 3-5 */
730static Aml *aml_as_desc_header(AmlResourceType type, AmlMinFixed min_fixed,
731 AmlMaxFixed max_fixed, AmlDecode dec,
732 uint8_t type_flags)
733{
734 uint8_t flags = max_fixed | min_fixed | dec;
735 Aml *var = aml_alloc();
736
737 build_append_byte(var->buf, type);
738 build_append_byte(var->buf, flags);
739 build_append_byte(var->buf, type_flags); /* Type Specific Flags */
740 return var;
741}
742
743/* ACPI 1.0b: 6.4.3.5.5 Word Address Space Descriptor */
744static Aml *aml_word_as_desc(AmlResourceType type, AmlMinFixed min_fixed,
745 AmlMaxFixed max_fixed, AmlDecode dec,
746 uint16_t addr_gran, uint16_t addr_min,
747 uint16_t addr_max, uint16_t addr_trans,
748 uint16_t len, uint8_t type_flags)
749{
750 Aml *var = aml_alloc();
751
752 build_append_byte(var->buf, 0x88); /* Word Address Space Descriptor */
753 /* minimum length since we do not encode optional fields */
754 build_append_byte(var->buf, 0x0D);
755 build_append_byte(var->buf, 0x0);
756
757 aml_append(var,
758 aml_as_desc_header(type, min_fixed, max_fixed, dec, type_flags));
759 build_append_int_noprefix(var->buf, addr_gran, sizeof(addr_gran));
760 build_append_int_noprefix(var->buf, addr_min, sizeof(addr_min));
761 build_append_int_noprefix(var->buf, addr_max, sizeof(addr_max));
762 build_append_int_noprefix(var->buf, addr_trans, sizeof(addr_trans));
763 build_append_int_noprefix(var->buf, len, sizeof(len));
764 return var;
765}
766
767/* ACPI 1.0b: 6.4.3.5.3 DWord Address Space Descriptor */
768static Aml *aml_dword_as_desc(AmlResourceType type, AmlMinFixed min_fixed,
769 AmlMaxFixed max_fixed, AmlDecode dec,
770 uint32_t addr_gran, uint32_t addr_min,
771 uint32_t addr_max, uint32_t addr_trans,
772 uint32_t len, uint8_t type_flags)
773{
774 Aml *var = aml_alloc();
775
776 build_append_byte(var->buf, 0x87); /* DWord Address Space Descriptor */
777 /* minimum length since we do not encode optional fields */
778 build_append_byte(var->buf, 23);
779 build_append_byte(var->buf, 0x0);
780
781
782 aml_append(var,
783 aml_as_desc_header(type, min_fixed, max_fixed, dec, type_flags));
784 build_append_int_noprefix(var->buf, addr_gran, sizeof(addr_gran));
785 build_append_int_noprefix(var->buf, addr_min, sizeof(addr_min));
786 build_append_int_noprefix(var->buf, addr_max, sizeof(addr_max));
787 build_append_int_noprefix(var->buf, addr_trans, sizeof(addr_trans));
788 build_append_int_noprefix(var->buf, len, sizeof(len));
789 return var;
790}
791
792/* ACPI 1.0b: 6.4.3.5.1 QWord Address Space Descriptor */
793static Aml *aml_qword_as_desc(AmlResourceType type, AmlMinFixed min_fixed,
794 AmlMaxFixed max_fixed, AmlDecode dec,
795 uint64_t addr_gran, uint64_t addr_min,
796 uint64_t addr_max, uint64_t addr_trans,
797 uint64_t len, uint8_t type_flags)
798{
799 Aml *var = aml_alloc();
800
801 build_append_byte(var->buf, 0x8A); /* QWord Address Space Descriptor */
802 /* minimum length since we do not encode optional fields */
803 build_append_byte(var->buf, 0x2B);
804 build_append_byte(var->buf, 0x0);
805
806 aml_append(var,
807 aml_as_desc_header(type, min_fixed, max_fixed, dec, type_flags));
808 build_append_int_noprefix(var->buf, addr_gran, sizeof(addr_gran));
809 build_append_int_noprefix(var->buf, addr_min, sizeof(addr_min));
810 build_append_int_noprefix(var->buf, addr_max, sizeof(addr_max));
811 build_append_int_noprefix(var->buf, addr_trans, sizeof(addr_trans));
812 build_append_int_noprefix(var->buf, len, sizeof(len));
813 return var;
814}
815
816/*
817 * ACPI 1.0b: 6.4.3.5.6 ASL Macros for WORD Address Descriptor
818 *
819 * More verbose description at:
820 * ACPI 5.0: 19.5.141 WordBusNumber (Word Bus Number Resource Descriptor Macro)
821 */
822Aml *aml_word_bus_number(AmlMinFixed min_fixed, AmlMaxFixed max_fixed,
823 AmlDecode dec, uint16_t addr_gran,
824 uint16_t addr_min, uint16_t addr_max,
825 uint16_t addr_trans, uint16_t len)
826
827{
828 return aml_word_as_desc(aml_bus_number_range, min_fixed, max_fixed, dec,
829 addr_gran, addr_min, addr_max, addr_trans, len, 0);
830}
831
832/*
833 * ACPI 1.0b: 6.4.3.5.6 ASL Macros for WORD Address Descriptor
834 *
835 * More verbose description at:
836 * ACPI 5.0: 19.5.142 WordIO (Word IO Resource Descriptor Macro)
837 */
838Aml *aml_word_io(AmlMinFixed min_fixed, AmlMaxFixed max_fixed,
839 AmlDecode dec, AmlISARanges isa_ranges,
840 uint16_t addr_gran, uint16_t addr_min,
841 uint16_t addr_max, uint16_t addr_trans,
842 uint16_t len)
843
844{
845 return aml_word_as_desc(aml_io_range, min_fixed, max_fixed, dec,
846 addr_gran, addr_min, addr_max, addr_trans, len,
847 isa_ranges);
848}
849
850/*
851 * ACPI 1.0b: 6.4.3.5.4 ASL Macros for DWORD Address Space Descriptor
852 *
853 * More verbose description at:
854 * ACPI 5.0: 19.5.34 DWordMemory (DWord Memory Resource Descriptor Macro)
855 */
856Aml *aml_dword_memory(AmlDecode dec, AmlMinFixed min_fixed,
857 AmlMaxFixed max_fixed, AmlCacheble cacheable,
858 AmlReadAndWrite read_and_write,
859 uint32_t addr_gran, uint32_t addr_min,
860 uint32_t addr_max, uint32_t addr_trans,
861 uint32_t len)
862{
863 uint8_t flags = read_and_write | (cacheable << 1);
864
865 return aml_dword_as_desc(aml_memory_range, min_fixed, max_fixed,
866 dec, addr_gran, addr_min, addr_max,
867 addr_trans, len, flags);
868}
869
870/*
871 * ACPI 1.0b: 6.4.3.5.2 ASL Macros for QWORD Address Space Descriptor
872 *
873 * More verbose description at:
874 * ACPI 5.0: 19.5.102 QWordMemory (QWord Memory Resource Descriptor Macro)
875 */
876Aml *aml_qword_memory(AmlDecode dec, AmlMinFixed min_fixed,
877 AmlMaxFixed max_fixed, AmlCacheble cacheable,
878 AmlReadAndWrite read_and_write,
879 uint64_t addr_gran, uint64_t addr_min,
880 uint64_t addr_max, uint64_t addr_trans,
881 uint64_t len)
882{
883 uint8_t flags = read_and_write | (cacheable << 1);
884
885 return aml_qword_as_desc(aml_memory_range, min_fixed, max_fixed,
886 dec, addr_gran, addr_min, addr_max,
887 addr_trans, len, flags);
888}
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