xref: /openbmc/qemu/hw/acpi/aml-build.c (revision 7b38ba9cb6fd47d89ab2db5b92ea6e4e6cd046cd)
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 <mst@redhat.com>
6  * Author: Igor Mammedov <imammedo@redhat.com>
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 <glib/gprintf.h>
23 #include <stdio.h>
24 #include <stdarg.h>
25 #include <assert.h>
26 #include <stdbool.h>
27 #include <string.h>
28 #include "hw/acpi/aml-build.h"
29 #include "qemu/bswap.h"
30 #include "qemu/bitops.h"
31 #include "hw/acpi/bios-linker-loader.h"
32 
33 static GArray *build_alloc_array(void)
34 {
35     return g_array_new(false, true /* clear */, 1);
36 }
37 
38 static void build_free_array(GArray *array)
39 {
40     g_array_free(array, true);
41 }
42 
43 static void build_prepend_byte(GArray *array, uint8_t val)
44 {
45     g_array_prepend_val(array, val);
46 }
47 
48 static void build_append_byte(GArray *array, uint8_t val)
49 {
50     g_array_append_val(array, val);
51 }
52 
53 static void build_append_array(GArray *array, GArray *val)
54 {
55     g_array_append_vals(array, val->data, val->len);
56 }
57 
58 #define ACPI_NAMESEG_LEN 4
59 
60 static void
61 build_append_nameseg(GArray *array, const char *seg)
62 {
63     int len;
64 
65     len = strlen(seg);
66     assert(len <= ACPI_NAMESEG_LEN);
67 
68     g_array_append_vals(array, seg, len);
69     /* Pad up to ACPI_NAMESEG_LEN characters if necessary. */
70     g_array_append_vals(array, "____", ACPI_NAMESEG_LEN - len);
71 }
72 
73 static void GCC_FMT_ATTR(2, 0)
74 build_append_namestringv(GArray *array, const char *format, va_list ap)
75 {
76     char *s;
77     char **segs;
78     char **segs_iter;
79     int seg_count = 0;
80 
81     s = g_strdup_vprintf(format, ap);
82     segs = g_strsplit(s, ".", 0);
83     g_free(s);
84 
85     /* count segments */
86     segs_iter = segs;
87     while (*segs_iter) {
88         ++segs_iter;
89         ++seg_count;
90     }
91     /*
92      * ACPI 5.0 spec: 20.2.2 Name Objects Encoding:
93      * "SegCount can be from 1 to 255"
94      */
95     assert(seg_count > 0 && seg_count <= 255);
96 
97     /* handle RootPath || PrefixPath */
98     s = *segs;
99     while (*s == '\\' || *s == '^') {
100         build_append_byte(array, *s);
101         ++s;
102     }
103 
104     switch (seg_count) {
105     case 1:
106         if (!*s) {
107             build_append_byte(array, 0x00); /* NullName */
108         } else {
109             build_append_nameseg(array, s);
110         }
111         break;
112 
113     case 2:
114         build_append_byte(array, 0x2E); /* DualNamePrefix */
115         build_append_nameseg(array, s);
116         build_append_nameseg(array, segs[1]);
117         break;
118     default:
119         build_append_byte(array, 0x2F); /* MultiNamePrefix */
120         build_append_byte(array, seg_count);
121 
122         /* handle the 1st segment manually due to prefix/root path */
123         build_append_nameseg(array, s);
124 
125         /* add the rest of segments */
126         segs_iter = segs + 1;
127         while (*segs_iter) {
128             build_append_nameseg(array, *segs_iter);
129             ++segs_iter;
130         }
131         break;
132     }
133     g_strfreev(segs);
134 }
135 
136 GCC_FMT_ATTR(2, 3)
137 static void build_append_namestring(GArray *array, const char *format, ...)
138 {
139     va_list ap;
140 
141     va_start(ap, format);
142     build_append_namestringv(array, format, ap);
143     va_end(ap);
144 }
145 
146 /* 5.4 Definition Block Encoding */
147 enum {
148     PACKAGE_LENGTH_1BYTE_SHIFT = 6, /* Up to 63 - use extra 2 bits. */
149     PACKAGE_LENGTH_2BYTE_SHIFT = 4,
150     PACKAGE_LENGTH_3BYTE_SHIFT = 12,
151     PACKAGE_LENGTH_4BYTE_SHIFT = 20,
152 };
153 
154 static void
155 build_prepend_package_length(GArray *package, unsigned length, bool incl_self)
156 {
157     uint8_t byte;
158     unsigned length_bytes;
159 
160     if (length + 1 < (1 << PACKAGE_LENGTH_1BYTE_SHIFT)) {
161         length_bytes = 1;
162     } else if (length + 2 < (1 << PACKAGE_LENGTH_3BYTE_SHIFT)) {
163         length_bytes = 2;
164     } else if (length + 3 < (1 << PACKAGE_LENGTH_4BYTE_SHIFT)) {
165         length_bytes = 3;
166     } else {
167         length_bytes = 4;
168     }
169 
170     /*
171      * NamedField uses PkgLength encoding but it doesn't include length
172      * of PkgLength itself.
173      */
174     if (incl_self) {
175         /*
176          * PkgLength is the length of the inclusive length of the data
177          * and PkgLength's length itself when used for terms with
178          * explitit length.
179          */
180         length += length_bytes;
181     }
182 
183     switch (length_bytes) {
184     case 1:
185         byte = length;
186         build_prepend_byte(package, byte);
187         return;
188     case 4:
189         byte = length >> PACKAGE_LENGTH_4BYTE_SHIFT;
190         build_prepend_byte(package, byte);
191         length &= (1 << PACKAGE_LENGTH_4BYTE_SHIFT) - 1;
192         /* fall through */
193     case 3:
194         byte = length >> PACKAGE_LENGTH_3BYTE_SHIFT;
195         build_prepend_byte(package, byte);
196         length &= (1 << PACKAGE_LENGTH_3BYTE_SHIFT) - 1;
197         /* fall through */
198     case 2:
199         byte = length >> PACKAGE_LENGTH_2BYTE_SHIFT;
200         build_prepend_byte(package, byte);
201         length &= (1 << PACKAGE_LENGTH_2BYTE_SHIFT) - 1;
202         /* fall through */
203     }
204     /*
205      * Most significant two bits of byte zero indicate how many following bytes
206      * are in PkgLength encoding.
207      */
208     byte = ((length_bytes - 1) << PACKAGE_LENGTH_1BYTE_SHIFT) | length;
209     build_prepend_byte(package, byte);
210 }
211 
212 static void
213 build_append_pkg_length(GArray *array, unsigned length, bool incl_self)
214 {
215     GArray *tmp = build_alloc_array();
216 
217     build_prepend_package_length(tmp, length, incl_self);
218     build_append_array(array, tmp);
219     build_free_array(tmp);
220 }
221 
222 static void build_package(GArray *package, uint8_t op)
223 {
224     build_prepend_package_length(package, package->len, true);
225     build_prepend_byte(package, op);
226 }
227 
228 static void build_extop_package(GArray *package, uint8_t op)
229 {
230     build_package(package, op);
231     build_prepend_byte(package, 0x5B); /* ExtOpPrefix */
232 }
233 
234 static void build_append_int_noprefix(GArray *table, uint64_t value, int size)
235 {
236     int i;
237 
238     for (i = 0; i < size; ++i) {
239         build_append_byte(table, value & 0xFF);
240         value = value >> 8;
241     }
242 }
243 
244 static void build_append_int(GArray *table, uint64_t value)
245 {
246     if (value == 0x00) {
247         build_append_byte(table, 0x00); /* ZeroOp */
248     } else if (value == 0x01) {
249         build_append_byte(table, 0x01); /* OneOp */
250     } else if (value <= 0xFF) {
251         build_append_byte(table, 0x0A); /* BytePrefix */
252         build_append_int_noprefix(table, value, 1);
253     } else if (value <= 0xFFFF) {
254         build_append_byte(table, 0x0B); /* WordPrefix */
255         build_append_int_noprefix(table, value, 2);
256     } else if (value <= 0xFFFFFFFF) {
257         build_append_byte(table, 0x0C); /* DWordPrefix */
258         build_append_int_noprefix(table, value, 4);
259     } else {
260         build_append_byte(table, 0x0E); /* QWordPrefix */
261         build_append_int_noprefix(table, value, 8);
262     }
263 }
264 
265 static GPtrArray *alloc_list;
266 
267 static Aml *aml_alloc(void)
268 {
269     Aml *var = g_new0(typeof(*var), 1);
270 
271     g_ptr_array_add(alloc_list, var);
272     var->block_flags = AML_NO_OPCODE;
273     var->buf = build_alloc_array();
274     return var;
275 }
276 
277 static Aml *aml_opcode(uint8_t op)
278 {
279     Aml *var = aml_alloc();
280 
281     var->op  = op;
282     var->block_flags = AML_OPCODE;
283     return var;
284 }
285 
286 static Aml *aml_bundle(uint8_t op, AmlBlockFlags flags)
287 {
288     Aml *var = aml_alloc();
289 
290     var->op  = op;
291     var->block_flags = flags;
292     return var;
293 }
294 
295 static void aml_free(gpointer data, gpointer user_data)
296 {
297     Aml *var = data;
298     build_free_array(var->buf);
299     g_free(var);
300 }
301 
302 Aml *init_aml_allocator(void)
303 {
304     Aml *var;
305 
306     assert(!alloc_list);
307     alloc_list = g_ptr_array_new();
308     var = aml_alloc();
309     return var;
310 }
311 
312 void free_aml_allocator(void)
313 {
314     g_ptr_array_foreach(alloc_list, aml_free, NULL);
315     g_ptr_array_free(alloc_list, true);
316     alloc_list = 0;
317 }
318 
319 /* pack data with DefBuffer encoding */
320 static void build_buffer(GArray *array, uint8_t op)
321 {
322     GArray *data = build_alloc_array();
323 
324     build_append_int(data, array->len);
325     g_array_prepend_vals(array, data->data, data->len);
326     build_free_array(data);
327     build_package(array, op);
328 }
329 
330 void aml_append(Aml *parent_ctx, Aml *child)
331 {
332     GArray *buf = build_alloc_array();
333     build_append_array(buf, child->buf);
334 
335     switch (child->block_flags) {
336     case AML_OPCODE:
337         build_append_byte(parent_ctx->buf, child->op);
338         break;
339     case AML_EXT_PACKAGE:
340         build_extop_package(buf, child->op);
341         break;
342     case AML_PACKAGE:
343         build_package(buf, child->op);
344         break;
345     case AML_RES_TEMPLATE:
346         build_append_byte(buf, 0x79); /* EndTag */
347         /*
348          * checksum operations are treated as succeeded if checksum
349          * field is zero. [ACPI Spec 1.0b, 6.4.2.8 End Tag]
350          */
351         build_append_byte(buf, 0);
352         /* fall through, to pack resources in buffer */
353     case AML_BUFFER:
354         build_buffer(buf, child->op);
355         break;
356     case AML_NO_OPCODE:
357         break;
358     default:
359         assert(0);
360         break;
361     }
362     build_append_array(parent_ctx->buf, buf);
363     build_free_array(buf);
364 }
365 
366 /* ACPI 1.0b: 16.2.5.1 Namespace Modifier Objects Encoding: DefScope */
367 Aml *aml_scope(const char *name_format, ...)
368 {
369     va_list ap;
370     Aml *var = aml_bundle(0x10 /* ScopeOp */, AML_PACKAGE);
371     va_start(ap, name_format);
372     build_append_namestringv(var->buf, name_format, ap);
373     va_end(ap);
374     return var;
375 }
376 
377 /* ACPI 1.0b: 16.2.5.3 Type 1 Opcodes Encoding: DefReturn */
378 Aml *aml_return(Aml *val)
379 {
380     Aml *var = aml_opcode(0xA4 /* ReturnOp */);
381     aml_append(var, val);
382     return var;
383 }
384 
385 /*
386  * ACPI 1.0b: 16.2.3 Data Objects Encoding:
387  * encodes: ByteConst, WordConst, DWordConst, QWordConst, ZeroOp, OneOp
388  */
389 Aml *aml_int(const uint64_t val)
390 {
391     Aml *var = aml_alloc();
392     build_append_int(var->buf, val);
393     return var;
394 }
395 
396 /*
397  * helper to construct NameString, which returns Aml object
398  * for using with aml_append or other aml_* terms
399  */
400 Aml *aml_name(const char *name_format, ...)
401 {
402     va_list ap;
403     Aml *var = aml_alloc();
404     va_start(ap, name_format);
405     build_append_namestringv(var->buf, name_format, ap);
406     va_end(ap);
407     return var;
408 }
409 
410 /* ACPI 1.0b: 16.2.5.1 Namespace Modifier Objects Encoding: DefName */
411 Aml *aml_name_decl(const char *name, Aml *val)
412 {
413     Aml *var = aml_opcode(0x08 /* NameOp */);
414     build_append_namestring(var->buf, "%s", name);
415     aml_append(var, val);
416     return var;
417 }
418 
419 /* ACPI 1.0b: 16.2.6.1 Arg Objects Encoding */
420 Aml *aml_arg(int pos)
421 {
422     Aml *var;
423     uint8_t op = 0x68 /* ARG0 op */ + pos;
424 
425     assert(pos <= 6);
426     var = aml_opcode(op);
427     return var;
428 }
429 
430 /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefStore */
431 Aml *aml_store(Aml *val, Aml *target)
432 {
433     Aml *var = aml_opcode(0x70 /* StoreOp */);
434     aml_append(var, val);
435     aml_append(var, target);
436     return var;
437 }
438 
439 /**
440  * build_opcode_2arg_dst:
441  * @op: 1-byte opcode
442  * @arg1: 1st operand
443  * @arg2: 2nd operand
444  * @dst: optional target to store to, set to NULL if it's not required
445  *
446  * An internal helper to compose AML terms that have
447  *   "Op Operand Operand Target"
448  * pattern.
449  *
450  * Returns: The newly allocated and composed according to patter Aml object.
451  */
452 static Aml *
453 build_opcode_2arg_dst(uint8_t op, Aml *arg1, Aml *arg2, Aml *dst)
454 {
455     Aml *var = aml_opcode(op);
456     aml_append(var, arg1);
457     aml_append(var, arg2);
458     if (dst) {
459         aml_append(var, dst);
460     } else {
461         build_append_byte(var->buf, 0x00 /* NullNameOp */);
462     }
463     return var;
464 }
465 
466 /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefAnd */
467 Aml *aml_and(Aml *arg1, Aml *arg2)
468 {
469     return build_opcode_2arg_dst(0x7B /* AndOp */, arg1, arg2, NULL);
470 }
471 
472 /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefOr */
473 Aml *aml_or(Aml *arg1, Aml *arg2)
474 {
475     return build_opcode_2arg_dst(0x7D /* OrOp */, arg1, arg2, NULL);
476 }
477 
478 /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefShiftLeft */
479 Aml *aml_shiftleft(Aml *arg1, Aml *count)
480 {
481     return build_opcode_2arg_dst(0x79 /* ShiftLeftOp */, arg1, count, NULL);
482 }
483 
484 /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefShiftRight */
485 Aml *aml_shiftright(Aml *arg1, Aml *count)
486 {
487     return build_opcode_2arg_dst(0x7A /* ShiftRightOp */, arg1, count, NULL);
488 }
489 
490 /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefLLess */
491 Aml *aml_lless(Aml *arg1, Aml *arg2)
492 {
493     Aml *var = aml_opcode(0x95 /* LLessOp */);
494     aml_append(var, arg1);
495     aml_append(var, arg2);
496     return var;
497 }
498 
499 /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefAdd */
500 Aml *aml_add(Aml *arg1, Aml *arg2, Aml *dst)
501 {
502     return build_opcode_2arg_dst(0x72 /* AddOp */, arg1, arg2, dst);
503 }
504 
505 /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefSubtract */
506 Aml *aml_subtract(Aml *arg1, Aml *arg2, Aml *dst)
507 {
508     return build_opcode_2arg_dst(0x74 /* SubtractOp */, arg1, arg2, dst);
509 }
510 
511 /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefIncrement */
512 Aml *aml_increment(Aml *arg)
513 {
514     Aml *var = aml_opcode(0x75 /* IncrementOp */);
515     aml_append(var, arg);
516     return var;
517 }
518 
519 /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefDecrement */
520 Aml *aml_decrement(Aml *arg)
521 {
522     Aml *var = aml_opcode(0x76 /* DecrementOp */);
523     aml_append(var, arg);
524     return var;
525 }
526 
527 /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefIndex */
528 Aml *aml_index(Aml *arg1, Aml *idx)
529 {
530     return build_opcode_2arg_dst(0x88 /* IndexOp */, arg1, idx, NULL);
531 }
532 
533 /* ACPI 1.0b: 16.2.5.3 Type 1 Opcodes Encoding: DefNotify */
534 Aml *aml_notify(Aml *arg1, Aml *arg2)
535 {
536     Aml *var = aml_opcode(0x86 /* NotifyOp */);
537     aml_append(var, arg1);
538     aml_append(var, arg2);
539     return var;
540 }
541 
542 /* helper to call method with 1 argument */
543 Aml *aml_call0(const char *method)
544 {
545     Aml *var = aml_alloc();
546     build_append_namestring(var->buf, "%s", method);
547     return var;
548 }
549 
550 /* helper to call method with 1 argument */
551 Aml *aml_call1(const char *method, Aml *arg1)
552 {
553     Aml *var = aml_alloc();
554     build_append_namestring(var->buf, "%s", method);
555     aml_append(var, arg1);
556     return var;
557 }
558 
559 /* helper to call method with 2 arguments */
560 Aml *aml_call2(const char *method, Aml *arg1, Aml *arg2)
561 {
562     Aml *var = aml_alloc();
563     build_append_namestring(var->buf, "%s", method);
564     aml_append(var, arg1);
565     aml_append(var, arg2);
566     return var;
567 }
568 
569 /* helper to call method with 3 arguments */
570 Aml *aml_call3(const char *method, Aml *arg1, Aml *arg2, Aml *arg3)
571 {
572     Aml *var = aml_alloc();
573     build_append_namestring(var->buf, "%s", method);
574     aml_append(var, arg1);
575     aml_append(var, arg2);
576     aml_append(var, arg3);
577     return var;
578 }
579 
580 /* helper to call method with 4 arguments */
581 Aml *aml_call4(const char *method, Aml *arg1, Aml *arg2, Aml *arg3, Aml *arg4)
582 {
583     Aml *var = aml_alloc();
584     build_append_namestring(var->buf, "%s", method);
585     aml_append(var, arg1);
586     aml_append(var, arg2);
587     aml_append(var, arg3);
588     aml_append(var, arg4);
589     return var;
590 }
591 
592 /*
593  * ACPI 5.0: 6.4.3.8.1 GPIO Connection Descriptor
594  * Type 1, Large Item Name 0xC
595  */
596 
597 static Aml *aml_gpio_connection(AmlGpioConnectionType type,
598                                 AmlConsumerAndProducer con_and_pro,
599                                 uint8_t flags, AmlPinConfig pin_config,
600                                 uint16_t output_drive,
601                                 uint16_t debounce_timeout,
602                                 const uint32_t pin_list[], uint32_t pin_count,
603                                 const char *resource_source_name,
604                                 const uint8_t *vendor_data,
605                                 uint16_t vendor_data_len)
606 {
607     Aml *var = aml_alloc();
608     const uint16_t min_desc_len = 0x16;
609     uint16_t resource_source_name_len, length;
610     uint16_t pin_table_offset, resource_source_name_offset, vendor_data_offset;
611     uint32_t i;
612 
613     assert(resource_source_name);
614     resource_source_name_len = strlen(resource_source_name) + 1;
615     length = min_desc_len + resource_source_name_len + vendor_data_len;
616     pin_table_offset = min_desc_len + 1;
617     resource_source_name_offset = pin_table_offset + pin_count * 2;
618     vendor_data_offset = resource_source_name_offset + resource_source_name_len;
619 
620     build_append_byte(var->buf, 0x8C);  /* GPIO Connection Descriptor */
621     build_append_int_noprefix(var->buf, length, 2); /* Length */
622     build_append_byte(var->buf, 1);     /* Revision ID */
623     build_append_byte(var->buf, type);  /* GPIO Connection Type */
624     /* General Flags (2 bytes) */
625     build_append_int_noprefix(var->buf, con_and_pro, 2);
626     /* Interrupt and IO Flags (2 bytes) */
627     build_append_int_noprefix(var->buf, flags, 2);
628     /* Pin Configuration 0 = Default 1 = Pull-up 2 = Pull-down 3 = No Pull */
629     build_append_byte(var->buf, pin_config);
630     /* Output Drive Strength (2 bytes) */
631     build_append_int_noprefix(var->buf, output_drive, 2);
632     /* Debounce Timeout (2 bytes) */
633     build_append_int_noprefix(var->buf, debounce_timeout, 2);
634     /* Pin Table Offset (2 bytes) */
635     build_append_int_noprefix(var->buf, pin_table_offset, 2);
636     build_append_byte(var->buf, 0);     /* Resource Source Index */
637     /* Resource Source Name Offset (2 bytes) */
638     build_append_int_noprefix(var->buf, resource_source_name_offset, 2);
639     /* Vendor Data Offset (2 bytes) */
640     build_append_int_noprefix(var->buf, vendor_data_offset, 2);
641     /* Vendor Data Length (2 bytes) */
642     build_append_int_noprefix(var->buf, vendor_data_len, 2);
643     /* Pin Number (2n bytes)*/
644     for (i = 0; i < pin_count; i++) {
645         build_append_int_noprefix(var->buf, pin_list[i], 2);
646     }
647 
648     /* Resource Source Name */
649     build_append_namestring(var->buf, "%s", resource_source_name);
650     build_append_byte(var->buf, '\0');
651 
652     /* Vendor-defined Data */
653     if (vendor_data != NULL) {
654         g_array_append_vals(var->buf, vendor_data, vendor_data_len);
655     }
656 
657     return var;
658 }
659 
660 /*
661  * ACPI 5.0: 19.5.53
662  * GpioInt(GPIO Interrupt Connection Resource Descriptor Macro)
663  */
664 Aml *aml_gpio_int(AmlConsumerAndProducer con_and_pro,
665                   AmlLevelAndEdge edge_level,
666                   AmlActiveHighAndLow active_level, AmlShared shared,
667                   AmlPinConfig pin_config, uint16_t debounce_timeout,
668                   const uint32_t pin_list[], uint32_t pin_count,
669                   const char *resource_source_name,
670                   const uint8_t *vendor_data, uint16_t vendor_data_len)
671 {
672     uint8_t flags = edge_level | (active_level << 1) | (shared << 3);
673 
674     return aml_gpio_connection(AML_INTERRUPT_CONNECTION, con_and_pro, flags,
675                                pin_config, 0, debounce_timeout, pin_list,
676                                pin_count, resource_source_name, vendor_data,
677                                vendor_data_len);
678 }
679 
680 /*
681  * ACPI 1.0b: 6.4.3.4 32-Bit Fixed Location Memory Range Descriptor
682  * (Type 1, Large Item Name 0x6)
683  */
684 Aml *aml_memory32_fixed(uint32_t addr, uint32_t size,
685                         AmlReadAndWrite read_and_write)
686 {
687     Aml *var = aml_alloc();
688     build_append_byte(var->buf, 0x86); /* Memory32Fixed Resource Descriptor */
689     build_append_byte(var->buf, 9);    /* Length, bits[7:0] value = 9 */
690     build_append_byte(var->buf, 0);    /* Length, bits[15:8] value = 0 */
691     build_append_byte(var->buf, read_and_write); /* Write status, 1 rw 0 ro */
692 
693     /* Range base address */
694     build_append_byte(var->buf, extract32(addr, 0, 8));  /* bits[7:0] */
695     build_append_byte(var->buf, extract32(addr, 8, 8));  /* bits[15:8] */
696     build_append_byte(var->buf, extract32(addr, 16, 8)); /* bits[23:16] */
697     build_append_byte(var->buf, extract32(addr, 24, 8)); /* bits[31:24] */
698 
699     /* Range length */
700     build_append_byte(var->buf, extract32(size, 0, 8));  /* bits[7:0] */
701     build_append_byte(var->buf, extract32(size, 8, 8));  /* bits[15:8] */
702     build_append_byte(var->buf, extract32(size, 16, 8)); /* bits[23:16] */
703     build_append_byte(var->buf, extract32(size, 24, 8)); /* bits[31:24] */
704     return var;
705 }
706 
707 /*
708  * ACPI 5.0: 6.4.3.6 Extended Interrupt Descriptor
709  * Type 1, Large Item Name 0x9
710  */
711 Aml *aml_interrupt(AmlConsumerAndProducer con_and_pro,
712                    AmlLevelAndEdge level_and_edge,
713                    AmlActiveHighAndLow high_and_low, AmlShared shared,
714                    uint32_t *irq_list, uint8_t irq_count)
715 {
716     int i;
717     Aml *var = aml_alloc();
718     uint8_t irq_flags = con_and_pro | (level_and_edge << 1)
719                         | (high_and_low << 2) | (shared << 3);
720     const int header_bytes_in_len = 2;
721     uint16_t len = header_bytes_in_len + irq_count * sizeof(uint32_t);
722 
723     assert(irq_count > 0);
724 
725     build_append_byte(var->buf, 0x89); /* Extended irq descriptor */
726     build_append_byte(var->buf, len & 0xFF); /* Length, bits[7:0] */
727     build_append_byte(var->buf, len >> 8); /* Length, bits[15:8] */
728     build_append_byte(var->buf, irq_flags); /* Interrupt Vector Information. */
729     build_append_byte(var->buf, irq_count);   /* Interrupt table length */
730 
731     /* Interrupt Number List */
732     for (i = 0; i < irq_count; i++) {
733         build_append_int_noprefix(var->buf, irq_list[i], 4);
734     }
735     return var;
736 }
737 
738 /* ACPI 1.0b: 6.4.2.5 I/O Port Descriptor */
739 Aml *aml_io(AmlIODecode dec, uint16_t min_base, uint16_t max_base,
740             uint8_t aln, uint8_t len)
741 {
742     Aml *var = aml_alloc();
743     build_append_byte(var->buf, 0x47); /* IO port descriptor */
744     build_append_byte(var->buf, dec);
745     build_append_byte(var->buf, min_base & 0xff);
746     build_append_byte(var->buf, (min_base >> 8) & 0xff);
747     build_append_byte(var->buf, max_base & 0xff);
748     build_append_byte(var->buf, (max_base >> 8) & 0xff);
749     build_append_byte(var->buf, aln);
750     build_append_byte(var->buf, len);
751     return var;
752 }
753 
754 /*
755  * ACPI 1.0b: 6.4.2.1.1 ASL Macro for IRQ Descriptor
756  *
757  * More verbose description at:
758  * ACPI 5.0: 19.5.64 IRQNoFlags (Interrupt Resource Descriptor Macro)
759  *           6.4.2.1 IRQ Descriptor
760  */
761 Aml *aml_irq_no_flags(uint8_t irq)
762 {
763     uint16_t irq_mask;
764     Aml *var = aml_alloc();
765 
766     assert(irq < 16);
767     build_append_byte(var->buf, 0x22); /* IRQ descriptor 2 byte form */
768 
769     irq_mask = 1U << irq;
770     build_append_byte(var->buf, irq_mask & 0xFF); /* IRQ mask bits[7:0] */
771     build_append_byte(var->buf, irq_mask >> 8); /* IRQ mask bits[15:8] */
772     return var;
773 }
774 
775 /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefLNot */
776 Aml *aml_lnot(Aml *arg)
777 {
778     Aml *var = aml_opcode(0x92 /* LNotOp */);
779     aml_append(var, arg);
780     return var;
781 }
782 
783 /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefLEqual */
784 Aml *aml_equal(Aml *arg1, Aml *arg2)
785 {
786     Aml *var = aml_opcode(0x93 /* LequalOp */);
787     aml_append(var, arg1);
788     aml_append(var, arg2);
789     return var;
790 }
791 
792 /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefLGreaterEqual */
793 Aml *aml_lgreater_equal(Aml *arg1, Aml *arg2)
794 {
795     /* LGreaterEqualOp := LNotOp LLessOp */
796     Aml *var = aml_opcode(0x92 /* LNotOp */);
797     build_append_byte(var->buf, 0x95 /* LLessOp */);
798     aml_append(var, arg1);
799     aml_append(var, arg2);
800     return var;
801 }
802 
803 /* ACPI 1.0b: 16.2.5.3 Type 1 Opcodes Encoding: DefIfElse */
804 Aml *aml_if(Aml *predicate)
805 {
806     Aml *var = aml_bundle(0xA0 /* IfOp */, AML_PACKAGE);
807     aml_append(var, predicate);
808     return var;
809 }
810 
811 /* ACPI 1.0b: 16.2.5.3 Type 1 Opcodes Encoding: DefElse */
812 Aml *aml_else(void)
813 {
814     Aml *var = aml_bundle(0xA1 /* ElseOp */, AML_PACKAGE);
815     return var;
816 }
817 
818 /* ACPI 1.0b: 16.2.5.3 Type 1 Opcodes Encoding: DefWhile */
819 Aml *aml_while(Aml *predicate)
820 {
821     Aml *var = aml_bundle(0xA2 /* WhileOp */, AML_PACKAGE);
822     aml_append(var, predicate);
823     return var;
824 }
825 
826 /* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: DefMethod */
827 Aml *aml_method(const char *name, int arg_count, AmlSerializeFlag sflag)
828 {
829     Aml *var = aml_bundle(0x14 /* MethodOp */, AML_PACKAGE);
830     int methodflags;
831 
832     /*
833      * MethodFlags:
834      *   bit 0-2: ArgCount (0-7)
835      *   bit 3: SerializeFlag
836      *     0: NotSerialized
837      *     1: Serialized
838      *   bit 4-7: reserved (must be 0)
839      */
840     assert(arg_count < 8);
841     methodflags = arg_count | (sflag << 3);
842 
843     build_append_namestring(var->buf, "%s", name);
844     build_append_byte(var->buf, methodflags); /* MethodFlags: ArgCount */
845     return var;
846 }
847 
848 /* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: DefDevice */
849 Aml *aml_device(const char *name_format, ...)
850 {
851     va_list ap;
852     Aml *var = aml_bundle(0x82 /* DeviceOp */, AML_EXT_PACKAGE);
853     va_start(ap, name_format);
854     build_append_namestringv(var->buf, name_format, ap);
855     va_end(ap);
856     return var;
857 }
858 
859 /* ACPI 1.0b: 6.4.1 ASL Macros for Resource Descriptors */
860 Aml *aml_resource_template(void)
861 {
862     /* ResourceTemplate is a buffer of Resources with EndTag at the end */
863     Aml *var = aml_bundle(0x11 /* BufferOp */, AML_RES_TEMPLATE);
864     return var;
865 }
866 
867 /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefBuffer
868  * Pass byte_list as NULL to request uninitialized buffer to reserve space.
869  */
870 Aml *aml_buffer(int buffer_size, uint8_t *byte_list)
871 {
872     int i;
873     Aml *var = aml_bundle(0x11 /* BufferOp */, AML_BUFFER);
874 
875     for (i = 0; i < buffer_size; i++) {
876         if (byte_list == NULL) {
877             build_append_byte(var->buf, 0x0);
878         } else {
879             build_append_byte(var->buf, byte_list[i]);
880         }
881     }
882 
883     return var;
884 }
885 
886 /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefPackage */
887 Aml *aml_package(uint8_t num_elements)
888 {
889     Aml *var = aml_bundle(0x12 /* PackageOp */, AML_PACKAGE);
890     build_append_byte(var->buf, num_elements);
891     return var;
892 }
893 
894 /* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: DefOpRegion */
895 Aml *aml_operation_region(const char *name, AmlRegionSpace rs,
896                           uint32_t offset, uint32_t len)
897 {
898     Aml *var = aml_alloc();
899     build_append_byte(var->buf, 0x5B); /* ExtOpPrefix */
900     build_append_byte(var->buf, 0x80); /* OpRegionOp */
901     build_append_namestring(var->buf, "%s", name);
902     build_append_byte(var->buf, rs);
903     build_append_int(var->buf, offset);
904     build_append_int(var->buf, len);
905     return var;
906 }
907 
908 /* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: NamedField */
909 Aml *aml_named_field(const char *name, unsigned length)
910 {
911     Aml *var = aml_alloc();
912     build_append_nameseg(var->buf, name);
913     build_append_pkg_length(var->buf, length, false);
914     return var;
915 }
916 
917 /* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: ReservedField */
918 Aml *aml_reserved_field(unsigned length)
919 {
920     Aml *var = aml_alloc();
921     /* ReservedField  := 0x00 PkgLength */
922     build_append_byte(var->buf, 0x00);
923     build_append_pkg_length(var->buf, length, false);
924     return var;
925 }
926 
927 /* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: DefField */
928 Aml *aml_field(const char *name, AmlAccessType type, AmlUpdateRule rule)
929 {
930     Aml *var = aml_bundle(0x81 /* FieldOp */, AML_EXT_PACKAGE);
931     uint8_t flags = rule << 5 | type;
932 
933     build_append_namestring(var->buf, "%s", name);
934     build_append_byte(var->buf, flags);
935     return var;
936 }
937 
938 static
939 Aml *create_field_common(int opcode, Aml *srcbuf, Aml *index, const char *name)
940 {
941     Aml *var = aml_opcode(opcode);
942     aml_append(var, srcbuf);
943     aml_append(var, index);
944     build_append_namestring(var->buf, "%s", name);
945     return var;
946 }
947 
948 /* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: DefCreateDWordField */
949 Aml *aml_create_dword_field(Aml *srcbuf, Aml *index, const char *name)
950 {
951     return create_field_common(0x8A /* CreateDWordFieldOp */,
952                                srcbuf, index, name);
953 }
954 
955 /* ACPI 2.0a: 17.2.4.2 Named Objects Encoding: DefCreateQWordField */
956 Aml *aml_create_qword_field(Aml *srcbuf, Aml *index, const char *name)
957 {
958     return create_field_common(0x8F /* CreateQWordFieldOp */,
959                                srcbuf, index, name);
960 }
961 
962 /* ACPI 1.0b: 16.2.3 Data Objects Encoding: String */
963 Aml *aml_string(const char *name_format, ...)
964 {
965     Aml *var = aml_opcode(0x0D /* StringPrefix */);
966     va_list ap;
967     char *s;
968     int len;
969 
970     va_start(ap, name_format);
971     len = g_vasprintf(&s, name_format, ap);
972     va_end(ap);
973 
974     g_array_append_vals(var->buf, s, len + 1);
975     g_free(s);
976 
977     return var;
978 }
979 
980 /* ACPI 1.0b: 16.2.6.2 Local Objects Encoding */
981 Aml *aml_local(int num)
982 {
983     Aml *var;
984     uint8_t op = 0x60 /* Local0Op */ + num;
985 
986     assert(num <= 7);
987     var = aml_opcode(op);
988     return var;
989 }
990 
991 /* ACPI 2.0a: 17.2.2 Data Objects Encoding: DefVarPackage */
992 Aml *aml_varpackage(uint32_t num_elements)
993 {
994     Aml *var = aml_bundle(0x13 /* VarPackageOp */, AML_PACKAGE);
995     build_append_int(var->buf, num_elements);
996     return var;
997 }
998 
999 /* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: DefProcessor */
1000 Aml *aml_processor(uint8_t proc_id, uint32_t pblk_addr, uint8_t pblk_len,
1001                    const char *name_format, ...)
1002 {
1003     va_list ap;
1004     Aml *var = aml_bundle(0x83 /* ProcessorOp */, AML_EXT_PACKAGE);
1005     va_start(ap, name_format);
1006     build_append_namestringv(var->buf, name_format, ap);
1007     va_end(ap);
1008     build_append_byte(var->buf, proc_id); /* ProcID */
1009     build_append_int_noprefix(var->buf, pblk_addr, sizeof(pblk_addr));
1010     build_append_byte(var->buf, pblk_len); /* PblkLen */
1011     return var;
1012 }
1013 
1014 static uint8_t Hex2Digit(char c)
1015 {
1016     if (c >= 'A') {
1017         return c - 'A' + 10;
1018     }
1019 
1020     return c - '0';
1021 }
1022 
1023 /* ACPI 1.0b: 15.2.3.6.4.1 EISAID Macro - Convert EISA ID String To Integer */
1024 Aml *aml_eisaid(const char *str)
1025 {
1026     Aml *var = aml_alloc();
1027     uint32_t id;
1028 
1029     g_assert(strlen(str) == 7);
1030     id = (str[0] - 0x40) << 26 |
1031     (str[1] - 0x40) << 21 |
1032     (str[2] - 0x40) << 16 |
1033     Hex2Digit(str[3]) << 12 |
1034     Hex2Digit(str[4]) << 8 |
1035     Hex2Digit(str[5]) << 4 |
1036     Hex2Digit(str[6]);
1037 
1038     build_append_byte(var->buf, 0x0C); /* DWordPrefix */
1039     build_append_int_noprefix(var->buf, bswap32(id), sizeof(id));
1040     return var;
1041 }
1042 
1043 /* ACPI 1.0b: 6.4.3.5.5 Word Address Space Descriptor: bytes 3-5 */
1044 static Aml *aml_as_desc_header(AmlResourceType type, AmlMinFixed min_fixed,
1045                                AmlMaxFixed max_fixed, AmlDecode dec,
1046                                uint8_t type_flags)
1047 {
1048     uint8_t flags = max_fixed | min_fixed | dec;
1049     Aml *var = aml_alloc();
1050 
1051     build_append_byte(var->buf, type);
1052     build_append_byte(var->buf, flags);
1053     build_append_byte(var->buf, type_flags); /* Type Specific Flags */
1054     return var;
1055 }
1056 
1057 /* ACPI 1.0b: 6.4.3.5.5 Word Address Space Descriptor */
1058 static Aml *aml_word_as_desc(AmlResourceType type, AmlMinFixed min_fixed,
1059                              AmlMaxFixed max_fixed, AmlDecode dec,
1060                              uint16_t addr_gran, uint16_t addr_min,
1061                              uint16_t addr_max, uint16_t addr_trans,
1062                              uint16_t len, uint8_t type_flags)
1063 {
1064     Aml *var = aml_alloc();
1065 
1066     build_append_byte(var->buf, 0x88); /* Word Address Space Descriptor */
1067     /* minimum length since we do not encode optional fields */
1068     build_append_byte(var->buf, 0x0D);
1069     build_append_byte(var->buf, 0x0);
1070 
1071     aml_append(var,
1072         aml_as_desc_header(type, min_fixed, max_fixed, dec, type_flags));
1073     build_append_int_noprefix(var->buf, addr_gran, sizeof(addr_gran));
1074     build_append_int_noprefix(var->buf, addr_min, sizeof(addr_min));
1075     build_append_int_noprefix(var->buf, addr_max, sizeof(addr_max));
1076     build_append_int_noprefix(var->buf, addr_trans, sizeof(addr_trans));
1077     build_append_int_noprefix(var->buf, len, sizeof(len));
1078     return var;
1079 }
1080 
1081 /* ACPI 1.0b: 6.4.3.5.3 DWord Address Space Descriptor */
1082 static Aml *aml_dword_as_desc(AmlResourceType type, AmlMinFixed min_fixed,
1083                               AmlMaxFixed max_fixed, AmlDecode dec,
1084                               uint32_t addr_gran, uint32_t addr_min,
1085                               uint32_t addr_max, uint32_t addr_trans,
1086                               uint32_t len, uint8_t type_flags)
1087 {
1088     Aml *var = aml_alloc();
1089 
1090     build_append_byte(var->buf, 0x87); /* DWord Address Space Descriptor */
1091     /* minimum length since we do not encode optional fields */
1092     build_append_byte(var->buf, 23);
1093     build_append_byte(var->buf, 0x0);
1094 
1095 
1096     aml_append(var,
1097         aml_as_desc_header(type, min_fixed, max_fixed, dec, type_flags));
1098     build_append_int_noprefix(var->buf, addr_gran, sizeof(addr_gran));
1099     build_append_int_noprefix(var->buf, addr_min, sizeof(addr_min));
1100     build_append_int_noprefix(var->buf, addr_max, sizeof(addr_max));
1101     build_append_int_noprefix(var->buf, addr_trans, sizeof(addr_trans));
1102     build_append_int_noprefix(var->buf, len, sizeof(len));
1103     return var;
1104 }
1105 
1106 /* ACPI 1.0b: 6.4.3.5.1 QWord Address Space Descriptor */
1107 static Aml *aml_qword_as_desc(AmlResourceType type, AmlMinFixed min_fixed,
1108                               AmlMaxFixed max_fixed, AmlDecode dec,
1109                               uint64_t addr_gran, uint64_t addr_min,
1110                               uint64_t addr_max, uint64_t addr_trans,
1111                               uint64_t len, uint8_t type_flags)
1112 {
1113     Aml *var = aml_alloc();
1114 
1115     build_append_byte(var->buf, 0x8A); /* QWord Address Space Descriptor */
1116     /* minimum length since we do not encode optional fields */
1117     build_append_byte(var->buf, 0x2B);
1118     build_append_byte(var->buf, 0x0);
1119 
1120     aml_append(var,
1121         aml_as_desc_header(type, min_fixed, max_fixed, dec, type_flags));
1122     build_append_int_noprefix(var->buf, addr_gran, sizeof(addr_gran));
1123     build_append_int_noprefix(var->buf, addr_min, sizeof(addr_min));
1124     build_append_int_noprefix(var->buf, addr_max, sizeof(addr_max));
1125     build_append_int_noprefix(var->buf, addr_trans, sizeof(addr_trans));
1126     build_append_int_noprefix(var->buf, len, sizeof(len));
1127     return var;
1128 }
1129 
1130 /*
1131  * ACPI 1.0b: 6.4.3.5.6 ASL Macros for WORD Address Descriptor
1132  *
1133  * More verbose description at:
1134  * ACPI 5.0: 19.5.141 WordBusNumber (Word Bus Number Resource Descriptor Macro)
1135  */
1136 Aml *aml_word_bus_number(AmlMinFixed min_fixed, AmlMaxFixed max_fixed,
1137                          AmlDecode dec, uint16_t addr_gran,
1138                          uint16_t addr_min, uint16_t addr_max,
1139                          uint16_t addr_trans, uint16_t len)
1140 
1141 {
1142     return aml_word_as_desc(AML_BUS_NUMBER_RANGE, min_fixed, max_fixed, dec,
1143                             addr_gran, addr_min, addr_max, addr_trans, len, 0);
1144 }
1145 
1146 /*
1147  * ACPI 1.0b: 6.4.3.5.6 ASL Macros for WORD Address Descriptor
1148  *
1149  * More verbose description at:
1150  * ACPI 5.0: 19.5.142 WordIO (Word IO Resource Descriptor Macro)
1151  */
1152 Aml *aml_word_io(AmlMinFixed min_fixed, AmlMaxFixed max_fixed,
1153                  AmlDecode dec, AmlISARanges isa_ranges,
1154                  uint16_t addr_gran, uint16_t addr_min,
1155                  uint16_t addr_max, uint16_t addr_trans,
1156                  uint16_t len)
1157 
1158 {
1159     return aml_word_as_desc(AML_IO_RANGE, min_fixed, max_fixed, dec,
1160                             addr_gran, addr_min, addr_max, addr_trans, len,
1161                             isa_ranges);
1162 }
1163 
1164 /*
1165  * ACPI 1.0b: 6.4.3.5.4 ASL Macros for DWORD Address Descriptor
1166  *
1167  * More verbose description at:
1168  * ACPI 5.0: 19.5.33 DWordIO (DWord IO Resource Descriptor Macro)
1169  */
1170 Aml *aml_dword_io(AmlMinFixed min_fixed, AmlMaxFixed max_fixed,
1171                  AmlDecode dec, AmlISARanges isa_ranges,
1172                  uint32_t addr_gran, uint32_t addr_min,
1173                  uint32_t addr_max, uint32_t addr_trans,
1174                  uint32_t len)
1175 
1176 {
1177     return aml_dword_as_desc(AML_IO_RANGE, min_fixed, max_fixed, dec,
1178                             addr_gran, addr_min, addr_max, addr_trans, len,
1179                             isa_ranges);
1180 }
1181 
1182 /*
1183  * ACPI 1.0b: 6.4.3.5.4 ASL Macros for DWORD Address Space Descriptor
1184  *
1185  * More verbose description at:
1186  * ACPI 5.0: 19.5.34 DWordMemory (DWord Memory Resource Descriptor Macro)
1187  */
1188 Aml *aml_dword_memory(AmlDecode dec, AmlMinFixed min_fixed,
1189                       AmlMaxFixed max_fixed, AmlCacheable cacheable,
1190                       AmlReadAndWrite read_and_write,
1191                       uint32_t addr_gran, uint32_t addr_min,
1192                       uint32_t addr_max, uint32_t addr_trans,
1193                       uint32_t len)
1194 {
1195     uint8_t flags = read_and_write | (cacheable << 1);
1196 
1197     return aml_dword_as_desc(AML_MEMORY_RANGE, min_fixed, max_fixed,
1198                              dec, addr_gran, addr_min, addr_max,
1199                              addr_trans, len, flags);
1200 }
1201 
1202 /*
1203  * ACPI 1.0b: 6.4.3.5.2 ASL Macros for QWORD Address Space Descriptor
1204  *
1205  * More verbose description at:
1206  * ACPI 5.0: 19.5.102 QWordMemory (QWord Memory Resource Descriptor Macro)
1207  */
1208 Aml *aml_qword_memory(AmlDecode dec, AmlMinFixed min_fixed,
1209                       AmlMaxFixed max_fixed, AmlCacheable cacheable,
1210                       AmlReadAndWrite read_and_write,
1211                       uint64_t addr_gran, uint64_t addr_min,
1212                       uint64_t addr_max, uint64_t addr_trans,
1213                       uint64_t len)
1214 {
1215     uint8_t flags = read_and_write | (cacheable << 1);
1216 
1217     return aml_qword_as_desc(AML_MEMORY_RANGE, min_fixed, max_fixed,
1218                              dec, addr_gran, addr_min, addr_max,
1219                              addr_trans, len, flags);
1220 }
1221 
1222 static uint8_t Hex2Byte(const char *src)
1223 {
1224     int hi, lo;
1225 
1226     hi = Hex2Digit(src[0]);
1227     assert(hi >= 0);
1228     assert(hi <= 15);
1229 
1230     lo = Hex2Digit(src[1]);
1231     assert(lo >= 0);
1232     assert(lo <= 15);
1233     return (hi << 4) | lo;
1234 }
1235 
1236 /*
1237  * ACPI 3.0: 17.5.124 ToUUID (Convert String to UUID Macro)
1238  * e.g. UUID: aabbccdd-eeff-gghh-iijj-kkllmmnnoopp
1239  * call aml_touuid("aabbccdd-eeff-gghh-iijj-kkllmmnnoopp");
1240  */
1241 Aml *aml_touuid(const char *uuid)
1242 {
1243     Aml *var = aml_bundle(0x11 /* BufferOp */, AML_BUFFER);
1244 
1245     assert(strlen(uuid) == 36);
1246     assert(uuid[8] == '-');
1247     assert(uuid[13] == '-');
1248     assert(uuid[18] == '-');
1249     assert(uuid[23] == '-');
1250 
1251     build_append_byte(var->buf, Hex2Byte(uuid + 6));  /* dd - at offset 00 */
1252     build_append_byte(var->buf, Hex2Byte(uuid + 4));  /* cc - at offset 01 */
1253     build_append_byte(var->buf, Hex2Byte(uuid + 2));  /* bb - at offset 02 */
1254     build_append_byte(var->buf, Hex2Byte(uuid + 0));  /* aa - at offset 03 */
1255 
1256     build_append_byte(var->buf, Hex2Byte(uuid + 11)); /* ff - at offset 04 */
1257     build_append_byte(var->buf, Hex2Byte(uuid + 9));  /* ee - at offset 05 */
1258 
1259     build_append_byte(var->buf, Hex2Byte(uuid + 16)); /* hh - at offset 06 */
1260     build_append_byte(var->buf, Hex2Byte(uuid + 14)); /* gg - at offset 07 */
1261 
1262     build_append_byte(var->buf, Hex2Byte(uuid + 19)); /* ii - at offset 08 */
1263     build_append_byte(var->buf, Hex2Byte(uuid + 21)); /* jj - at offset 09 */
1264 
1265     build_append_byte(var->buf, Hex2Byte(uuid + 24)); /* kk - at offset 10 */
1266     build_append_byte(var->buf, Hex2Byte(uuid + 26)); /* ll - at offset 11 */
1267     build_append_byte(var->buf, Hex2Byte(uuid + 28)); /* mm - at offset 12 */
1268     build_append_byte(var->buf, Hex2Byte(uuid + 30)); /* nn - at offset 13 */
1269     build_append_byte(var->buf, Hex2Byte(uuid + 32)); /* oo - at offset 14 */
1270     build_append_byte(var->buf, Hex2Byte(uuid + 34)); /* pp - at offset 15 */
1271 
1272     return var;
1273 }
1274 
1275 /*
1276  * ACPI 2.0b: 16.2.3.6.4.3  Unicode Macro (Convert Ascii String To Unicode)
1277  */
1278 Aml *aml_unicode(const char *str)
1279 {
1280     int i = 0;
1281     Aml *var = aml_bundle(0x11 /* BufferOp */, AML_BUFFER);
1282 
1283     do {
1284         build_append_byte(var->buf, str[i]);
1285         build_append_byte(var->buf, 0);
1286         i++;
1287     } while (i <= strlen(str));
1288 
1289     return var;
1290 }
1291 
1292 /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefDerefOf */
1293 Aml *aml_derefof(Aml *arg)
1294 {
1295     Aml *var = aml_opcode(0x83 /* DerefOfOp */);
1296     aml_append(var, arg);
1297     return var;
1298 }
1299 
1300 /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefSizeOf */
1301 Aml *aml_sizeof(Aml *arg)
1302 {
1303     Aml *var = aml_opcode(0x87 /* SizeOfOp */);
1304     aml_append(var, arg);
1305     return var;
1306 }
1307 
1308 /* ACPI 1.0b: 16.2.5.2 Named Objects Encoding: DefMutex */
1309 Aml *aml_mutex(const char *name, uint8_t sync_level)
1310 {
1311     Aml *var = aml_alloc();
1312     build_append_byte(var->buf, 0x5B); /* ExtOpPrefix */
1313     build_append_byte(var->buf, 0x01); /* MutexOp */
1314     build_append_namestring(var->buf, "%s", name);
1315     assert(!(sync_level & 0xF0));
1316     build_append_byte(var->buf, sync_level);
1317     return var;
1318 }
1319 
1320 /* ACPI 1.0b: 16.2.5.4 Type 2 Opcodes Encoding: DefAcquire */
1321 Aml *aml_acquire(Aml *mutex, uint16_t timeout)
1322 {
1323     Aml *var = aml_alloc();
1324     build_append_byte(var->buf, 0x5B); /* ExtOpPrefix */
1325     build_append_byte(var->buf, 0x23); /* AcquireOp */
1326     aml_append(var, mutex);
1327     build_append_int_noprefix(var->buf, timeout, sizeof(timeout));
1328     return var;
1329 }
1330 
1331 /* ACPI 1.0b: 16.2.5.3 Type 1 Opcodes Encoding: DefRelease */
1332 Aml *aml_release(Aml *mutex)
1333 {
1334     Aml *var = aml_alloc();
1335     build_append_byte(var->buf, 0x5B); /* ExtOpPrefix */
1336     build_append_byte(var->buf, 0x27); /* ReleaseOp */
1337     aml_append(var, mutex);
1338     return var;
1339 }
1340 
1341 void
1342 build_header(GArray *linker, GArray *table_data,
1343              AcpiTableHeader *h, const char *sig, int len, uint8_t rev,
1344              const char *oem_table_id)
1345 {
1346     memcpy(&h->signature, sig, 4);
1347     h->length = cpu_to_le32(len);
1348     h->revision = rev;
1349     memcpy(h->oem_id, ACPI_BUILD_APPNAME6, 6);
1350 
1351     if (oem_table_id) {
1352         strncpy((char *)h->oem_table_id, oem_table_id, sizeof(h->oem_table_id));
1353     } else {
1354         memcpy(h->oem_table_id, ACPI_BUILD_APPNAME4, 4);
1355         memcpy(h->oem_table_id + 4, sig, 4);
1356     }
1357 
1358     h->oem_revision = cpu_to_le32(1);
1359     memcpy(h->asl_compiler_id, ACPI_BUILD_APPNAME4, 4);
1360     h->asl_compiler_revision = cpu_to_le32(1);
1361     h->checksum = 0;
1362     /* Checksum to be filled in by Guest linker */
1363     bios_linker_loader_add_checksum(linker, ACPI_BUILD_TABLE_FILE,
1364                                     table_data->data, h, len, &h->checksum);
1365 }
1366 
1367 void *acpi_data_push(GArray *table_data, unsigned size)
1368 {
1369     unsigned off = table_data->len;
1370     g_array_set_size(table_data, off + size);
1371     return table_data->data + off;
1372 }
1373 
1374 unsigned acpi_data_len(GArray *table)
1375 {
1376     assert(g_array_get_element_size(table) == 1);
1377     return table->len;
1378 }
1379 
1380 void acpi_add_table(GArray *table_offsets, GArray *table_data)
1381 {
1382     uint32_t offset = cpu_to_le32(table_data->len);
1383     g_array_append_val(table_offsets, offset);
1384 }
1385 
1386 void acpi_build_tables_init(AcpiBuildTables *tables)
1387 {
1388     tables->rsdp = g_array_new(false, true /* clear */, 1);
1389     tables->table_data = g_array_new(false, true /* clear */, 1);
1390     tables->tcpalog = g_array_new(false, true /* clear */, 1);
1391     tables->linker = bios_linker_loader_init();
1392 }
1393 
1394 void acpi_build_tables_cleanup(AcpiBuildTables *tables, bool mfre)
1395 {
1396     void *linker_data = bios_linker_loader_cleanup(tables->linker);
1397     g_free(linker_data);
1398     g_array_free(tables->rsdp, true);
1399     g_array_free(tables->table_data, true);
1400     g_array_free(tables->tcpalog, mfre);
1401 }
1402 
1403 /* Build rsdt table */
1404 void
1405 build_rsdt(GArray *table_data, GArray *linker, GArray *table_offsets)
1406 {
1407     AcpiRsdtDescriptorRev1 *rsdt;
1408     size_t rsdt_len;
1409     int i;
1410     const int table_data_len = (sizeof(uint32_t) * table_offsets->len);
1411 
1412     rsdt_len = sizeof(*rsdt) + table_data_len;
1413     rsdt = acpi_data_push(table_data, rsdt_len);
1414     memcpy(rsdt->table_offset_entry, table_offsets->data, table_data_len);
1415     for (i = 0; i < table_offsets->len; ++i) {
1416         /* rsdt->table_offset_entry to be filled by Guest linker */
1417         bios_linker_loader_add_pointer(linker,
1418                                        ACPI_BUILD_TABLE_FILE,
1419                                        ACPI_BUILD_TABLE_FILE,
1420                                        table_data, &rsdt->table_offset_entry[i],
1421                                        sizeof(uint32_t));
1422     }
1423     build_header(linker, table_data,
1424                  (void *)rsdt, "RSDT", rsdt_len, 1, NULL);
1425 }
1426