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Root/trunk/i386/libsaio/acpi_patcher.c

1/*
2 * Copyright 2008 mackerintel
3 */
4
5#include "libsaio.h"
6#include "boot.h"
7#include "bootstruct.h"
8#include "acpi.h"
9#include "efi_tables.h"
10#include "fake_efi.h"
11#include "acpi_patcher.h"
12#include "platform.h"
13#include "cpu.h"
14#include "aml_generator.h"
15
16#ifndef DEBUG_ACPI
17#define DEBUG_ACPI 0
18#endif
19
20#if DEBUG_ACPI==2
21#define DBG(x...) {printf(x); sleep(1);}
22#elif DEBUG_ACPI==1
23#define DBG(x...) printf(x)
24#else
25#define DBG(x...)
26#endif
27
28// Slice: New signature compare function
29boolean_t tableSign(char *table, const char *sgn)
30{
31int i;
32for (i=0; i<4; i++) {
33if ((table[i] &~0x20) != (sgn[i] &~0x20)) {
34return false;
35}
36}
37return true;
38}
39
40/* Gets the ACPI 1.0 RSDP address */
41static struct acpi_2_rsdp* getAddressOfAcpiTable()
42{
43 /* TODO: Before searching the BIOS space we are supposed to search the first 1K of the EBDA */
44
45 void *acpi_addr = (void*)ACPI_RANGE_START;
46 for(; acpi_addr <= (void*)ACPI_RANGE_END; acpi_addr += 16)
47 {
48 if(*(uint64_t *)acpi_addr == ACPI_SIGNATURE_UINT64_LE)
49 {
50 uint8_t csum = checksum8(acpi_addr, 20);
51 if(csum == 0)
52 {
53 // Only return the table if it is a true version 1.0 table (Revision 0)
54 if(((struct acpi_2_rsdp*)acpi_addr)->Revision == 0)
55 return acpi_addr;
56 }
57 }
58 }
59 return NULL;
60}
61
62/* Gets the ACPI 2.0 RSDP address */
63static struct acpi_2_rsdp* getAddressOfAcpi20Table()
64{
65 /* TODO: Before searching the BIOS space we are supposed to search the first 1K of the EBDA */
66
67 void *acpi_addr = (void*)ACPI_RANGE_START;
68 for(; acpi_addr <= (void*)ACPI_RANGE_END; acpi_addr += 16)
69 {
70 if(*(uint64_t *)acpi_addr == ACPI_SIGNATURE_UINT64_LE)
71 {
72 uint8_t csum = checksum8(acpi_addr, 20);
73
74 /* Only assume this is a 2.0 or better table if the revision is greater than 0
75 * NOTE: ACPI 3.0 spec only seems to say that 1.0 tables have revision 1
76 * and that the current revision is 2.. I am going to assume that rev > 0 is 2.0.
77 */
78
79 if(csum == 0 && (((struct acpi_2_rsdp*)acpi_addr)->Revision > 0))
80 {
81 uint8_t csum2 = checksum8(acpi_addr, sizeof(struct acpi_2_rsdp));
82 if(csum2 == 0)
83 return acpi_addr;
84 }
85 }
86 }
87 return NULL;
88}
89/** The folowing ACPI Table search algo. should be reused anywhere needed:*/
90int search_and_get_acpi_fd(const char * filename, const char ** outDirspec)
91{
92int fd = 0;
93char dirSpec[512] = "";
94
95// Try finding 'filename' in the usual places
96// Start searching any potential location for ACPI Table
97sprintf(dirSpec, "%s", filename);
98fd = open(dirSpec, 0);
99if (fd < 0)
100{
101sprintf(dirSpec, "/Extra/%s", filename);
102fd = open(dirSpec, 0);
103if (fd < 0)
104{
105sprintf(dirSpec, "bt(0,0)/Extra/%s", filename);
106fd = open(dirSpec, 0);
107}
108}
109
110if (fd < 0)
111{
112// NOT FOUND:
113verbose("ACPI table not found: %s\n", filename);
114*dirSpec = '\0';
115}
116
117if (outDirspec) *outDirspec = dirSpec;
118return fd;
119}
120
121
122void *loadACPITable (const char * filename)
123{
124void *tableAddr;
125const char * dirspec=NULL;
126
127int fd = search_and_get_acpi_fd(filename, &dirspec);
128
129if (fd>=0)
130{
131tableAddr=(void*)AllocateKernelMemory(file_size (fd));
132if (tableAddr)
133{
134if (read (fd, tableAddr, file_size (fd))!=file_size (fd))
135{
136printf("Couldn't read table %s\n",dirspec);
137free (tableAddr);
138close (fd);
139return NULL;
140}
141
142DBG("Table %s read and stored at: %x\n", dirspec, tableAddr);
143close (fd);
144return tableAddr;
145}
146close (fd);
147printf("Couldn't allocate memory for table \n", dirspec);
148}
149//printf("Couldn't find table %s\n", filename);
150return NULL;
151}
152
153uint8_tacpi_cpu_count = 0;
154char* acpi_cpu_name[32];
155
156void get_acpi_cpu_names(unsigned char* dsdt, uint32_t length)
157{
158uint32_t i;
159
160for (i=0; i<length-7; i++)
161{
162if (dsdt[i] == 0x5B && dsdt[i+1] == 0x83) // ProcessorOP
163{
164uint32_t offset = i + 3 + (dsdt[i+2] >> 6);
165
166bool add_name = true;
167
168uint8_t j;
169
170for (j=0; j<4; j++)
171{
172char c = dsdt[offset+j];
173
174if (!aml_isvalidchar(c))
175{
176add_name = false;
177verbose("Invalid character found in ProcessorOP 0x%x!\n", c);
178break;
179}
180}
181
182if (add_name)
183{
184acpi_cpu_name[acpi_cpu_count] = malloc(4);
185memcpy(acpi_cpu_name[acpi_cpu_count], dsdt+offset, 4);
186i = offset + 5;
187
188verbose("Found ACPI CPU: %c%c%c%c\n", acpi_cpu_name[acpi_cpu_count][0], acpi_cpu_name[acpi_cpu_count][1], acpi_cpu_name[acpi_cpu_count][2], acpi_cpu_name[acpi_cpu_count][3]);
189
190if (++acpi_cpu_count == 32) return;
191}
192}
193}
194}
195
196struct acpi_2_ssdt *generate_cst_ssdt(struct acpi_2_fadt* fadt)
197{
198char ssdt_header[] =
199{
2000x53, 0x53, 0x44, 0x54, 0xE7, 0x00, 0x00, 0x00, /* SSDT.... */
2010x01, 0x17, 0x50, 0x6D, 0x52, 0x65, 0x66, 0x41, /* ..PmRefA */
2020x43, 0x70, 0x75, 0x43, 0x73, 0x74, 0x00, 0x00, /* CpuCst.. */
2030x00, 0x10, 0x00, 0x00, 0x49, 0x4E, 0x54, 0x4C, /* ....INTL */
2040x31, 0x03, 0x10, 0x20 /* 1.._*/
205};
206
207char cstate_resource_template[] =
208{
2090x11, 0x14, 0x0A, 0x11, 0x82, 0x0C, 0x00, 0x7F,
2100x01, 0x02, 0x01, 0x00, 0x00, 0x00, 0x00, 0x00,
2110x00, 0x00, 0x00, 0x79, 0x00
212};
213
214if (Platform.CPU.Vendor != 0x756E6547) {
215verbose ("Not an Intel platform: C-States will not be generated !!!\n");
216return NULL;
217}
218
219if (fadt == NULL) {
220verbose ("FACP not exists: C-States will not be generated !!!\n");
221return NULL;
222}
223
224struct acpi_2_dsdt* dsdt = (void*)fadt->DSDT;
225
226if (dsdt == NULL) {
227verbose ("DSDT not found: C-States will not be generated !!!\n");
228return NULL;
229}
230
231if (acpi_cpu_count == 0)
232get_acpi_cpu_names((void*)dsdt, dsdt->Length);
233
234if (acpi_cpu_count > 0)
235{
236bool c2_enabled = false;
237bool c3_enabled = false;
238bool c4_enabled = false;
239
240getBoolForKey(kEnableC2States, &c2_enabled, &bootInfo->bootConfig);
241getBoolForKey(kEnableC3States, &c3_enabled, &bootInfo->bootConfig);
242getBoolForKey(kEnableC4States, &c4_enabled, &bootInfo->bootConfig);
243
244c2_enabled = c2_enabled | (fadt->C2_Latency < 100);
245c3_enabled = c3_enabled | (fadt->C3_Latency < 1000);
246
247unsigned char cstates_count = 1 + (c2_enabled ? 1 : 0) + (c3_enabled ? 1 : 0);
248
249struct aml_chunk* root = aml_create_node(NULL);
250aml_add_buffer(root, ssdt_header, sizeof(ssdt_header)); // SSDT header
251struct aml_chunk* scop = aml_add_scope(root, "\\_PR_");
252struct aml_chunk* name = aml_add_name(scop, "CST_");
253struct aml_chunk* pack = aml_add_package(name);
254aml_add_byte(pack, cstates_count);
255
256struct aml_chunk* tmpl = aml_add_package(pack);
257cstate_resource_template[11] = 0x00; // C1
258aml_add_buffer(tmpl, cstate_resource_template, sizeof(cstate_resource_template));
259aml_add_byte(tmpl, 0x01); // C1
260aml_add_byte(tmpl, 0x01); // Latency
261aml_add_word(tmpl, 0x03e8); // Power
262
263// C2
264if (c2_enabled)
265{
266tmpl = aml_add_package(pack);
267cstate_resource_template[11] = 0x10; // C2
268aml_add_buffer(tmpl, cstate_resource_template, sizeof(cstate_resource_template));
269aml_add_byte(tmpl, 0x02); // C2
270aml_add_byte(tmpl, fadt->C2_Latency);
271aml_add_word(tmpl, 0x01f4); // Power
272}
273// C4
274if (c4_enabled)
275{
276tmpl = aml_add_package(pack);
277cstate_resource_template[11] = 0x30; // C4
278aml_add_buffer(tmpl, cstate_resource_template, sizeof(cstate_resource_template));
279aml_add_byte(tmpl, 0x04); // C4
280aml_add_word(tmpl, fadt->C3_Latency / 2); // TODO: right latency for C4
281aml_add_byte(tmpl, 0xfa); // Power
282}
283else
284// C3
285if (c3_enabled)
286{
287tmpl = aml_add_package(pack);
288cstate_resource_template[11] = 0x20; // C3
289aml_add_buffer(tmpl, cstate_resource_template, sizeof(cstate_resource_template));
290aml_add_byte(tmpl, 0x03); // C3
291aml_add_word(tmpl, fadt->C3_Latency);
292aml_add_word(tmpl, 0x015e); // Power
293}
294
295
296// Aliaces
297int i;
298for (i = 0; i < acpi_cpu_count; i++)
299{
300char name[9];
301sprintf(name, "_PR_%c%c%c%c", acpi_cpu_name[i][0], acpi_cpu_name[i][1], acpi_cpu_name[i][2], acpi_cpu_name[i][3]);
302
303scop = aml_add_scope(root, name);
304aml_add_alias(scop, "CST_", "_CST");
305}
306
307aml_calculate_size(root);
308
309struct acpi_2_ssdt *ssdt = (struct acpi_2_ssdt *)AllocateKernelMemory(root->Size);
310
311aml_write_node(root, (void*)ssdt, 0);
312
313ssdt->Length = root->Size;
314ssdt->Checksum = 0;
315ssdt->Checksum = 256 - checksum8(ssdt, ssdt->Length);
316
317aml_destroy_node(root);
318
319//dumpPhysAddr("C-States SSDT content: ", ssdt, ssdt->Length);
320
321verbose ("SSDT with CPU C-States generated successfully\n");
322
323return ssdt;
324}
325else
326{
327verbose ("ACPI CPUs not found: C-States not generated !!!\n");
328}
329
330return NULL;
331}
332
333struct acpi_2_ssdt *generate_pss_ssdt(struct acpi_2_dsdt* dsdt)
334{
335char ssdt_header[] =
336{
3370x53, 0x53, 0x44, 0x54, 0x7E, 0x00, 0x00, 0x00, /* SSDT.... */
3380x01, 0x6A, 0x50, 0x6D, 0x52, 0x65, 0x66, 0x00, /* ..PmRef. */
3390x43, 0x70, 0x75, 0x50, 0x6D, 0x00, 0x00, 0x00, /* CpuPm... */
3400x00, 0x30, 0x00, 0x00, 0x49, 0x4E, 0x54, 0x4C, /* .0..INTL */
3410x31, 0x03, 0x10, 0x20,/* 1.._*/
342};
343
344if (Platform.CPU.Vendor != 0x756E6547) {
345verbose ("Not an Intel platform: P-States will not be generated !!!\n");
346return NULL;
347}
348
349if (!(Platform.CPU.Features & CPU_FEATURE_MSR)) {
350verbose ("Unsupported CPU: P-States will not be generated !!!\n");
351return NULL;
352}
353
354if (acpi_cpu_count == 0)
355get_acpi_cpu_names((void*)dsdt, dsdt->Length);
356
357if (acpi_cpu_count > 0)
358{
359struct p_state initial, maximum, minimum, p_states[32];
360uint8_t p_states_count = 0;
361
362// Retrieving P-States, ported from code by superhai (c)
363switch (Platform.CPU.Family) {
364case 0x06:
365{
366switch (Platform.CPU.Model)
367{
368case 0x0D: // ?
369case CPU_MODEL_YONAH: // Yonah
370case CPU_MODEL_MEROM: // Merom
371case CPU_MODEL_PENRYN: // Penryn
372case CPU_MODEL_ATOM: // Intel Atom (45nm)
373{
374bool cpu_dynamic_fsb = false;
375
376if (rdmsr64(MSR_IA32_EXT_CONFIG) & (1 << 27))
377{
378wrmsr64(MSR_IA32_EXT_CONFIG, (rdmsr64(MSR_IA32_EXT_CONFIG) | (1 << 28)));
379delay(1);
380cpu_dynamic_fsb = rdmsr64(MSR_IA32_EXT_CONFIG) & (1 << 28);
381}
382
383bool cpu_noninteger_bus_ratio = (rdmsr64(MSR_IA32_PERF_STATUS) & (1ULL << 46));
384
385initial.Control = rdmsr64(MSR_IA32_PERF_STATUS);
386
387maximum.Control = ((rdmsr64(MSR_IA32_PERF_STATUS) >> 32) & 0x1F3F) | (0x4000 * cpu_noninteger_bus_ratio);
388maximum.CID = ((maximum.FID & 0x1F) << 1) | cpu_noninteger_bus_ratio;
389
390minimum.FID = ((rdmsr64(MSR_IA32_PERF_STATUS) >> 24) & 0x1F) | (0x80 * cpu_dynamic_fsb);
391minimum.VID = ((rdmsr64(MSR_IA32_PERF_STATUS) >> 48) & 0x3F);
392
393if (minimum.FID == 0)
394{
395uint64_t msr;
396uint8_t i;
397// Probe for lowest fid
398for (i = maximum.FID; i >= 0x6; i--)
399{
400msr = rdmsr64(MSR_IA32_PERF_CONTROL);
401wrmsr64(MSR_IA32_PERF_CONTROL, (msr & 0xFFFFFFFFFFFF0000ULL) | (i << 8) | minimum.VID);
402intel_waitforsts();
403minimum.FID = (rdmsr64(MSR_IA32_PERF_STATUS) >> 8) & 0x1F;
404delay(1);
405}
406
407msr = rdmsr64(MSR_IA32_PERF_CONTROL);
408wrmsr64(MSR_IA32_PERF_CONTROL, (msr & 0xFFFFFFFFFFFF0000ULL) | (maximum.FID << 8) | maximum.VID);
409intel_waitforsts();
410}
411
412if (minimum.VID == maximum.VID)
413{
414uint64_t msr;
415uint8_t i;
416// Probe for lowest vid
417for (i = maximum.VID; i > 0xA; i--)
418{
419msr = rdmsr64(MSR_IA32_PERF_CONTROL);
420wrmsr64(MSR_IA32_PERF_CONTROL, (msr & 0xFFFFFFFFFFFF0000ULL) | (minimum.FID << 8) | i);
421intel_waitforsts();
422minimum.VID = rdmsr64(MSR_IA32_PERF_STATUS) & 0x3F;
423delay(1);
424}
425
426msr = rdmsr64(MSR_IA32_PERF_CONTROL);
427wrmsr64(MSR_IA32_PERF_CONTROL, (msr & 0xFFFFFFFFFFFF0000ULL) | (maximum.FID << 8) | maximum.VID);
428intel_waitforsts();
429}
430
431minimum.CID = ((minimum.FID & 0x1F) << 1) >> cpu_dynamic_fsb;
432
433// Sanity check
434if (maximum.CID < minimum.CID)
435{
436DBG("Insane FID values!");
437p_states_count = 0;
438}
439else
440{
441// Finalize P-States
442// Find how many P-States machine supports
443p_states_count = maximum.CID - minimum.CID + 1;
444
445if (p_states_count > 32)
446p_states_count = 32;
447
448uint8_t vidstep;
449uint8_t i = 0, u, invalid = 0;
450
451vidstep = ((maximum.VID << 2) - (minimum.VID << 2)) / (p_states_count - 1);
452
453for (u = 0; u < p_states_count; u++)
454{
455i = u - invalid;
456
457p_states[i].CID = maximum.CID - u;
458p_states[i].FID = (p_states[i].CID >> 1);
459
460if (p_states[i].FID < 0x6)
461{
462if (cpu_dynamic_fsb)
463p_states[i].FID = (p_states[i].FID << 1) | 0x80;
464}
465else if (cpu_noninteger_bus_ratio)
466{
467p_states[i].FID = p_states[i].FID | (0x40 * (p_states[i].CID & 0x1));
468}
469
470if (i && p_states[i].FID == p_states[i-1].FID)
471invalid++;
472
473p_states[i].VID = ((maximum.VID << 2) - (vidstep * u)) >> 2;
474
475uint32_t multiplier = p_states[i].FID & 0x1f;// = 0x08
476bool half = p_states[i].FID & 0x40;// = 0x01
477bool dfsb = p_states[i].FID & 0x80;// = 0x00
478uint32_t fsb = Platform.CPU.FSBFrequency / 1000000; // = 400
479uint32_t halffsb = (fsb + 1) >> 1;// = 200
480uint32_t frequency = (multiplier * fsb);// = 3200
481
482p_states[i].Frequency = (frequency + (half * halffsb)) >> dfsb;// = 3200 + 200 = 3400
483}
484
485p_states_count -= invalid;
486}
487
488break;
489}
490case CPU_MODEL_FIELDS:
491case CPU_MODEL_DALES:
492case CPU_MODEL_DALES_32NM:
493case CPU_MODEL_NEHALEM:
494case CPU_MODEL_NEHALEM_EX:
495case CPU_MODEL_WESTMERE:
496case CPU_MODEL_WESTMERE_EX:
497case CPU_MODEL_SANDY:
498{
499maximum.Control = rdmsr64(MSR_IA32_PERF_STATUS) & 0xff; // Seems it always contains maximum multiplier value (with turbo, that's we need)...
500minimum.Control = (rdmsr64(MSR_PLATFORM_INFO) >> 40) & 0xff;
501
502verbose("P-States: min 0x%x, max 0x%x\n", minimum.Control, maximum.Control);
503
504// Sanity check
505if (maximum.Control < minimum.Control)
506{
507DBG("Insane control values!");
508p_states_count = 0;
509}
510else
511{
512uint8_t i;
513p_states_count = 0;
514
515for (i = maximum.Control; i >= minimum.Control; i--)
516{
517p_states[p_states_count].Control = i;
518p_states[p_states_count].CID = p_states[p_states_count].Control << 1;
519p_states[p_states_count].Frequency = (Platform.CPU.FSBFrequency / 1000000) * i;
520p_states_count++;
521}
522}
523
524break;
525}
526default:
527verbose ("Unsupported CPU: P-States not generated !!!\n");
528break;
529}
530}
531}
532
533// Generating SSDT
534if (p_states_count > 0)
535{
536int i;
537
538struct aml_chunk* root = aml_create_node(NULL);
539aml_add_buffer(root, ssdt_header, sizeof(ssdt_header)); // SSDT header
540struct aml_chunk* scop = aml_add_scope(root, "\\_PR_");
541struct aml_chunk* name = aml_add_name(scop, "PSS_");
542struct aml_chunk* pack = aml_add_package(name);
543
544for (i = 0; i < p_states_count; i++)
545{
546struct aml_chunk* pstt = aml_add_package(pack);
547
548aml_add_dword(pstt, p_states[i].Frequency);
549aml_add_dword(pstt, 0x00000000); // Power
550aml_add_dword(pstt, 0x0000000A); // Latency
551aml_add_dword(pstt, 0x0000000A); // Latency
552aml_add_dword(pstt, p_states[i].Control);
553aml_add_dword(pstt, i+1); // Status
554}
555
556// Add aliaces
557for (i = 0; i < acpi_cpu_count; i++)
558{
559char name[9];
560sprintf(name, "_PR_%c%c%c%c", acpi_cpu_name[i][0], acpi_cpu_name[i][1], acpi_cpu_name[i][2], acpi_cpu_name[i][3]);
561
562scop = aml_add_scope(root, name);
563aml_add_alias(scop, "PSS_", "_PSS");
564}
565
566aml_calculate_size(root);
567
568struct acpi_2_ssdt *ssdt = (struct acpi_2_ssdt *)AllocateKernelMemory(root->Size);
569
570aml_write_node(root, (void*)ssdt, 0);
571
572ssdt->Length = root->Size;
573ssdt->Checksum = 0;
574ssdt->Checksum = 256 - checksum8(ssdt, ssdt->Length);
575
576aml_destroy_node(root);
577
578//dumpPhysAddr("P-States SSDT content: ", ssdt, ssdt->Length);
579
580verbose ("SSDT with CPU P-States generated successfully\n");
581
582return ssdt;
583}
584}
585else
586{
587verbose ("ACPI CPUs not found: P-States not generated !!!\n");
588}
589
590return NULL;
591}
592
593struct acpi_2_fadt *patch_fadt(struct acpi_2_fadt *fadt, struct acpi_2_dsdt *new_dsdt)
594{
595extern void setupSystemType();
596
597struct acpi_2_fadt *fadt_mod;
598bool fadt_rev2_needed = false;
599bool fix_restart;
600const char * value;
601
602// Restart Fix
603if (Platform.CPU.Vendor == 0x756E6547) {/* Intel */
604fix_restart = true;
605getBoolForKey(kRestartFix, &fix_restart, &bootInfo->bootConfig);
606} else {
607verbose ("Not an Intel platform: Restart Fix not applied !!!\n");
608fix_restart = false;
609}
610
611if (fix_restart) fadt_rev2_needed = true;
612
613// Allocate new fadt table
614if (fadt->Length < 0x84 && fadt_rev2_needed)
615{
616fadt_mod=(struct acpi_2_fadt *)AllocateKernelMemory(0x84);
617memcpy(fadt_mod, fadt, fadt->Length);
618fadt_mod->Length = 0x84;
619fadt_mod->Revision = 0x02; // FADT rev 2 (ACPI 1.0B MS extensions)
620}
621else
622{
623fadt_mod=(struct acpi_2_fadt *)AllocateKernelMemory(fadt->Length);
624memcpy(fadt_mod, fadt, fadt->Length);
625}
626// Determine system type / PM_Model
627if ( (value=getStringForKey(kSystemType, &bootInfo->bootConfig))!=NULL)
628{
629if (Platform.Type > 6)
630{
631if(fadt_mod->PM_Profile<=6)
632Platform.Type = fadt_mod->PM_Profile; // get the fadt if correct
633else
634Platform.Type = 1;/* Set a fixed value (Desktop) */
635verbose("Error: system-type must be 0..6. Defaulting to %d !\n", Platform.Type);
636}
637else
638Platform.Type = (unsigned char) strtoul(value, NULL, 10);
639}
640// Set PM_Profile from System-type if only user wanted this value to be forced
641if (fadt_mod->PM_Profile != Platform.Type)
642{
643 if (value)
644{ // user has overriden the SystemType so take care of it in FACP
645verbose("FADT: changing PM_Profile from 0x%02x to 0x%02x\n", fadt_mod->PM_Profile, Platform.Type);
646fadt_mod->PM_Profile = Platform.Type;
647 }
648 else
649 { // PM_Profile has a different value and no override has been set, so reflect the user value to ioregs
650Platform.Type = fadt_mod->PM_Profile <= 6 ? fadt_mod->PM_Profile : 1;
651 }
652}
653// We now have to write the systemm-type in ioregs: we cannot do it before in setupDeviceTree()
654// because we need to take care of facp original content, if it is correct.
655setupSystemType();
656
657// Patch FADT to fix restart
658if (fix_restart)
659{
660fadt_mod->Flags|= 0x400;
661fadt_mod->Reset_SpaceID= 0x01; // System I/O
662fadt_mod->Reset_BitWidth= 0x08; // 1 byte
663fadt_mod->Reset_BitOffset= 0x00; // Offset 0
664fadt_mod->Reset_AccessWidth= 0x01; // Byte access
665fadt_mod->Reset_Address= 0x0cf9; // Address of the register
666fadt_mod->Reset_Value= 0x06; // Value to write to reset the system
667verbose("FADT: Restart Fix applied!\n");
668}
669
670// Patch DSDT Address if we have loaded DSDT.aml
671if(new_dsdt)
672{
673DBG("DSDT: Old @%x,%x, ",fadt_mod->DSDT,fadt_mod->X_DSDT);
674
675fadt_mod->DSDT=(uint32_t)new_dsdt;
676if ((uint32_t)(&(fadt_mod->X_DSDT))-(uint32_t)fadt_mod+8<=fadt_mod->Length)
677fadt_mod->X_DSDT=(uint32_t)new_dsdt;
678
679DBG("New @%x,%x\n",fadt_mod->DSDT,fadt_mod->X_DSDT);
680
681verbose("FADT: Using custom DSDT!\n");
682}
683
684// Correct the checksum
685fadt_mod->Checksum=0;
686fadt_mod->Checksum=256-checksum8(fadt_mod,fadt_mod->Length);
687
688return fadt_mod;
689}
690
691/* Setup ACPI without replacing DSDT. */
692int setupAcpiNoMod()
693{
694//addConfigurationTable(&gEfiAcpiTableGuid, getAddressOfAcpiTable(), "ACPI");
695//addConfigurationTable(&gEfiAcpi20TableGuid, getAddressOfAcpi20Table(), "ACPI_20");
696/* XXX aserebln why uint32 cast if pointer is uint64 ? */
697acpi10_p = (uint32_t)getAddressOfAcpiTable();
698acpi20_p = (uint32_t)getAddressOfAcpi20Table();
699addConfigurationTable(&gEfiAcpiTableGuid, &acpi10_p, "ACPI");
700if(acpi20_p) addConfigurationTable(&gEfiAcpi20TableGuid, &acpi20_p, "ACPI_20");
701return 1;
702}
703
704/* Setup ACPI. Replace DSDT if DSDT.aml is found */
705int setupAcpi(void)
706{
707int version;
708void *new_dsdt;
709
710const char *filename;
711char dirSpec[128];
712int len = 0;
713
714// Try using the file specified with the DSDT option
715if (getValueForKey(kDSDT, &filename, &len, &bootInfo->bootConfig))
716{
717sprintf(dirSpec, filename);
718}
719else
720{
721sprintf(dirSpec, "DSDT.aml");
722}
723
724// Load replacement DSDT
725new_dsdt = loadACPITable(dirSpec);
726// Mozodojo: going to patch FACP and load SSDT's even if DSDT.aml is not present
727/*if (!new_dsdt)
728 {
729 return setupAcpiNoMod();
730 }*/
731
732// Mozodojo: Load additional SSDTs
733struct acpi_2_ssdt *new_ssdt[32]; // 30 + 2 additional tables for pss & cst
734int ssdt_count=0;
735
736// SSDT Options
737bool drop_ssdt=false, generate_pstates=false, generate_cstates=false;
738
739getBoolForKey(kDropSSDT, &drop_ssdt, &bootInfo->bootConfig);
740getBoolForKey(kGeneratePStates, &generate_pstates, &bootInfo->bootConfig);
741getBoolForKey(kGenerateCStates, &generate_cstates, &bootInfo->bootConfig);
742
743{
744int i;
745
746for (i=0; i<30; i++)
747{
748char filename[512];
749
750sprintf(filename, i>0?"SSDT-%d.aml":"SSDT.aml", i);
751
752if(new_ssdt[ssdt_count] = loadACPITable(filename))
753{
754ssdt_count++;
755}
756else
757{
758break;
759}
760}
761}
762
763// Do the same procedure for both versions of ACPI
764for (version=0; version<2; version++) {
765struct acpi_2_rsdp *rsdp, *rsdp_mod;
766struct acpi_2_rsdt *rsdt, *rsdt_mod;
767int rsdplength;
768
769// Find original rsdp
770rsdp=(struct acpi_2_rsdp *)(version?getAddressOfAcpi20Table():getAddressOfAcpiTable());
771if (!rsdp)
772{
773DBG("No ACPI version %d found. Ignoring\n", version+1);
774if (version)
775addConfigurationTable(&gEfiAcpi20TableGuid, NULL, "ACPI_20");
776else
777addConfigurationTable(&gEfiAcpiTableGuid, NULL, "ACPI");
778continue;
779}
780rsdplength=version?rsdp->Length:20;
781
782DBG("RSDP version %d found @%x. Length=%d\n",version+1,rsdp,rsdplength);
783
784/* FIXME: no check that memory allocation succeeded
785 * Copy and patch RSDP,RSDT, XSDT and FADT
786 * For more info see ACPI Specification pages 110 and following
787 */
788
789rsdp_mod=(struct acpi_2_rsdp *) AllocateKernelMemory(rsdplength);
790memcpy(rsdp_mod, rsdp, rsdplength);
791rsdt=(struct acpi_2_rsdt *)(rsdp->RsdtAddress);
792
793DBG("RSDT @%x, Length %d\n",rsdt, rsdt->Length);
794
795if (rsdt && (uint32_t)rsdt !=0xffffffff && rsdt->Length<0x10000)
796{
797uint32_t *rsdt_entries;
798int rsdt_entries_num;
799int dropoffset=0, i;
800
801// mozo: using malloc cos I didn't found how to free already allocated kernel memory
802rsdt_mod=(struct acpi_2_rsdt *)malloc(rsdt->Length);
803memcpy (rsdt_mod, rsdt, rsdt->Length);
804rsdp_mod->RsdtAddress=(uint32_t)rsdt_mod;
805rsdt_entries_num=(rsdt_mod->Length-sizeof(struct acpi_2_rsdt))/4;
806rsdt_entries=(uint32_t *)(rsdt_mod+1);
807for (i=0;i<rsdt_entries_num;i++)
808{
809char *table=(char *)(rsdt_entries[i]);
810if (!table)
811continue;
812
813DBG("TABLE %c%c%c%c,",table[0],table[1],table[2],table[3]);
814
815rsdt_entries[i-dropoffset]=rsdt_entries[i];
816
817if (drop_ssdt && tableSign(table, "SSDT"))
818{
819dropoffset++;
820continue;
821}
822if (tableSign(table, "DSDT"))
823{
824DBG("DSDT found\n");
825
826if(new_dsdt)
827rsdt_entries[i-dropoffset]=(uint32_t)new_dsdt;
828
829continue;
830}
831if (tableSign(table, "FACP"))
832{
833struct acpi_2_fadt *fadt, *fadt_mod;
834fadt=(struct acpi_2_fadt *)rsdt_entries[i];
835
836DBG("FADT found @%x, Length %d\n",fadt, fadt->Length);
837
838if (!fadt || (uint32_t)fadt == 0xffffffff || fadt->Length>0x10000)
839{
840printf("FADT incorrect. Not modified\n");
841continue;
842}
843
844fadt_mod = patch_fadt(fadt, new_dsdt);
845rsdt_entries[i-dropoffset]=(uint32_t)fadt_mod;
846
847// Generate _CST SSDT
848if (generate_cstates && (new_ssdt[ssdt_count] = generate_cst_ssdt(fadt_mod)))
849{
850generate_cstates = false; // Generate SSDT only once!
851ssdt_count++;
852}
853
854// Generating _PSS SSDT
855if (generate_pstates && (new_ssdt[ssdt_count] = generate_pss_ssdt((void*)fadt_mod->DSDT)))
856{
857generate_pstates = false; // Generate SSDT only once!
858ssdt_count++;
859}
860
861continue;
862}
863}
864DBG("\n");
865
866// Allocate rsdt in Kernel memory area
867rsdt_mod->Length += 4*ssdt_count - 4*dropoffset;
868struct acpi_2_rsdt *rsdt_copy = (struct acpi_2_rsdt *)AllocateKernelMemory(rsdt_mod->Length);
869memcpy (rsdt_copy, rsdt_mod, rsdt_mod->Length);
870free(rsdt_mod); rsdt_mod = rsdt_copy;
871rsdp_mod->RsdtAddress=(uint32_t)rsdt_mod;
872rsdt_entries_num=(rsdt_mod->Length-sizeof(struct acpi_2_rsdt))/4;
873rsdt_entries=(uint32_t *)(rsdt_mod+1);
874
875// Mozodojo: Insert additional SSDTs into RSDT
876if(ssdt_count>0)
877{
878int j;
879
880for (j=0; j<ssdt_count; j++)
881rsdt_entries[i-dropoffset+j]=(uint32_t)new_ssdt[j];
882
883verbose("RSDT: Added %d SSDT table(s)\n", ssdt_count);
884}
885
886// Correct the checksum of RSDT
887DBG("RSDT: Original checksum %d, ", rsdt_mod->Checksum);
888
889rsdt_mod->Checksum=0;
890rsdt_mod->Checksum=256-checksum8(rsdt_mod,rsdt_mod->Length);
891
892DBG("New checksum %d at %x\n", rsdt_mod->Checksum,rsdt_mod);
893}
894else
895{
896rsdp_mod->RsdtAddress=0;
897printf("RSDT not found or RSDT incorrect\n");
898}
899
900if (version)
901{
902struct acpi_2_xsdt *xsdt, *xsdt_mod;
903
904// FIXME: handle 64-bit address correctly
905
906xsdt=(struct acpi_2_xsdt*) ((uint32_t)rsdp->XsdtAddress);
907DBG("XSDT @%x;%x, Length=%d\n", (uint32_t)(rsdp->XsdtAddress>>32),(uint32_t)rsdp->XsdtAddress,
908xsdt->Length);
909if (xsdt && (uint64_t)rsdp->XsdtAddress<0xffffffff && xsdt->Length<0x10000)
910{
911uint64_t *xsdt_entries;
912int xsdt_entries_num, i;
913int dropoffset=0;
914
915// mozo: using malloc cos I didn't found how to free already allocated kernel memory
916xsdt_mod=(struct acpi_2_xsdt*)malloc(xsdt->Length);
917memcpy(xsdt_mod, xsdt, xsdt->Length);
918rsdp_mod->XsdtAddress=(uint32_t)xsdt_mod;
919xsdt_entries_num=(xsdt_mod->Length-sizeof(struct acpi_2_xsdt))/8;
920xsdt_entries=(uint64_t *)(xsdt_mod+1);
921for (i=0;i<xsdt_entries_num;i++)
922{
923char *table=(char *)((uint32_t)(xsdt_entries[i]));
924if (!table)
925continue;
926
927xsdt_entries[i-dropoffset]=xsdt_entries[i];
928
929if (drop_ssdt && tableSign(table, "SSDT"))
930{
931dropoffset++;
932continue;
933}
934if (tableSign(table, "DSDT"))
935{
936DBG("DSDT found\n");
937
938if (new_dsdt)
939xsdt_entries[i-dropoffset]=(uint32_t)new_dsdt;
940
941DBG("TABLE %c%c%c%c@%x,",table[0],table[1],table[2],table[3],xsdt_entries[i]);
942
943continue;
944}
945if (tableSign(table, "FACP"))
946{
947struct acpi_2_fadt *fadt, *fadt_mod;
948fadt=(struct acpi_2_fadt *)(uint32_t)xsdt_entries[i];
949
950DBG("FADT found @%x,%x, Length %d\n",(uint32_t)(xsdt_entries[i]>>32),fadt,
951fadt->Length);
952
953if (!fadt || (uint64_t)xsdt_entries[i] >= 0xffffffff || fadt->Length>0x10000)
954{
955verbose("FADT incorrect or after 4GB. Dropping XSDT\n");
956goto drop_xsdt;
957}
958
959fadt_mod = patch_fadt(fadt, new_dsdt);
960xsdt_entries[i-dropoffset]=(uint32_t)fadt_mod;
961
962DBG("TABLE %c%c%c%c@%x,",table[0],table[1],table[2],table[3],xsdt_entries[i]);
963
964// Generate _CST SSDT
965if (generate_cstates && (new_ssdt[ssdt_count] = generate_cst_ssdt(fadt_mod)))
966{
967generate_cstates = false; // Generate SSDT only once!
968ssdt_count++;
969}
970
971// Generating _PSS SSDT
972if (generate_pstates && (new_ssdt[ssdt_count] = generate_pss_ssdt((void*)fadt_mod->DSDT)))
973{
974generate_pstates = false; // Generate SSDT only once!
975ssdt_count++;
976}
977
978continue;
979}
980
981DBG("TABLE %c%c%c%c@%x,",table[0],table[1],table[2],table[3],xsdt_entries[i]);
982
983}
984
985// Allocate xsdt in Kernel memory area
986xsdt_mod->Length += 8*ssdt_count - 8*dropoffset;
987struct acpi_2_xsdt *xsdt_copy = (struct acpi_2_xsdt *)AllocateKernelMemory(xsdt_mod->Length);
988memcpy(xsdt_copy, xsdt_mod, xsdt_mod->Length);
989free(xsdt_mod); xsdt_mod = xsdt_copy;
990rsdp_mod->XsdtAddress=(uint32_t)xsdt_mod;
991xsdt_entries_num=(xsdt_mod->Length-sizeof(struct acpi_2_xsdt))/8;
992xsdt_entries=(uint64_t *)(xsdt_mod+1);
993
994// Mozodojo: Insert additional SSDTs into XSDT
995if(ssdt_count>0)
996{
997int j;
998
999for (j=0; j<ssdt_count; j++)
1000xsdt_entries[i-dropoffset+j]=(uint32_t)new_ssdt[j];
1001
1002verbose("Added %d SSDT table(s) into XSDT\n", ssdt_count);
1003}
1004
1005// Correct the checksum of XSDT
1006xsdt_mod->Checksum=0;
1007xsdt_mod->Checksum=256-checksum8(xsdt_mod,xsdt_mod->Length);
1008}
1009else
1010{
1011drop_xsdt:
1012
1013DBG("About to drop XSDT\n");
1014
1015/*FIXME: Now we just hope that if MacOS doesn't find XSDT it reverts to RSDT.
1016 * A Better strategy would be to generate
1017 */
1018
1019rsdp_mod->XsdtAddress=0xffffffffffffffffLL;
1020verbose("XSDT not found or XSDT incorrect\n");
1021}
1022}
1023
1024// Correct the checksum of RSDP
1025
1026DBG("RSDP: Original checksum %d, ", rsdp_mod->Checksum);
1027
1028rsdp_mod->Checksum=0;
1029rsdp_mod->Checksum=256-checksum8(rsdp_mod,20);
1030
1031DBG("New checksum %d\n", rsdp_mod->Checksum);
1032
1033if (version)
1034{
1035DBG("RSDP: Original extended checksum %d", rsdp_mod->ExtendedChecksum);
1036
1037rsdp_mod->ExtendedChecksum=0;
1038rsdp_mod->ExtendedChecksum=256-checksum8(rsdp_mod,rsdp_mod->Length);
1039
1040DBG("New extended checksum %d\n", rsdp_mod->ExtendedChecksum);
1041
1042}
1043
1044//verbose("Patched ACPI version %d DSDT\n", version+1);
1045if (version)
1046{
1047/* XXX aserebln why uint32 cast if pointer is uint64 ? */
1048acpi20_p = (uint32_t)rsdp_mod;
1049addConfigurationTable(&gEfiAcpi20TableGuid, &acpi20_p, "ACPI_20");
1050}
1051else
1052{
1053/* XXX aserebln why uint32 cast if pointer is uint64 ? */
1054acpi10_p = (uint32_t)rsdp_mod;
1055addConfigurationTable(&gEfiAcpiTableGuid, &acpi10_p, "ACPI");
1056}
1057}
1058#if DEBUG_ACPI
1059printf("Press a key to continue... (DEBUG_ACPI)\n");
1060getc();
1061#endif
1062return 1;
1063}
1064

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