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