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1 /*
2 * (C) 2001-2004 Dave Jones. <davej@redhat.com>
3 * (C) 2002 Padraig Brady. <padraig@antefacto.com>
4 *
5 * Licensed under the terms of the GNU GPL License version 2.
6 * Based upon datasheets & sample CPUs kindly provided by VIA.
7 *
8 * VIA have currently 3 different versions of Longhaul.
9 * Version 1 (Longhaul) uses the BCR2 MSR at 0x1147.
10 * It is present only in Samuel 1 (C5A), Samuel 2 (C5B) stepping 0.
11 * Version 2 of longhaul is backward compatible with v1, but adds
12 * LONGHAUL MSR for purpose of both frequency and voltage scaling.
13 * Present in Samuel 2 (steppings 1-7 only) (C5B), and Ezra (C5C).
14 * Version 3 of longhaul got renamed to Powersaver and redesigned
15 * to use only the POWERSAVER MSR at 0x110a.
16 * It is present in Ezra-T (C5M), Nehemiah (C5X) and above.
17 * It's pretty much the same feature wise to longhaul v2, though
18 * there is provision for scaling FSB too, but this doesn't work
19 * too well in practice so we don't even try to use this.
20 *
21 * BIG FAT DISCLAIMER: Work in progress code. Possibly *dangerous*
22 */
23
24 #include <linux/kernel.h>
25 #include <linux/module.h>
26 #include <linux/moduleparam.h>
27 #include <linux/init.h>
28 #include <linux/cpufreq.h>
29 #include <linux/pci.h>
30 #include <linux/slab.h>
31 #include <linux/string.h>
32 #include <linux/delay.h>
33 #include <linux/timex.h>
34 #include <linux/io.h>
35 #include <linux/acpi.h>
36
37 #include <asm/msr.h>
38 #include <asm/cpu_device_id.h>
39 #include <acpi/processor.h>
40
41 #include "longhaul.h"
42
43 #define PFX "longhaul: "
44
45 #define TYPE_LONGHAUL_V1 1
46 #define TYPE_LONGHAUL_V2 2
47 #define TYPE_POWERSAVER 3
48
49 #define CPU_SAMUEL 1
50 #define CPU_SAMUEL2 2
51 #define CPU_EZRA 3
52 #define CPU_EZRA_T 4
53 #define CPU_NEHEMIAH 5
54 #define CPU_NEHEMIAH_C 6
55
56 /* Flags */
57 #define USE_ACPI_C3 (1 << 1)
58 #define USE_NORTHBRIDGE (1 << 2)
59
60 static int cpu_model;
61 static unsigned int numscales = 16;
62 static unsigned int fsb;
63
64 static const struct mV_pos *vrm_mV_table;
65 static const unsigned char *mV_vrm_table;
66
67 static unsigned int highest_speed, lowest_speed; /* kHz */
68 static unsigned int minmult, maxmult;
69 static int can_scale_voltage;
70 static struct acpi_processor *pr;
71 static struct acpi_processor_cx *cx;
72 static u32 acpi_regs_addr;
73 static u8 longhaul_flags;
74 static unsigned int longhaul_index;
75
76 /* Module parameters */
77 static int scale_voltage;
78 static int disable_acpi_c3;
79 static int revid_errata;
80 static int enable;
81
82 /* Clock ratios multiplied by 10 */
83 static int mults[32];
84 static int eblcr[32];
85 static int longhaul_version;
86 static struct cpufreq_frequency_table *longhaul_table;
87
88 static char speedbuffer[8];
89
90 static char *print_speed(int speed)
91 {
92 if (speed < 1000) {
93 snprintf(speedbuffer, sizeof(speedbuffer), "%dMHz", speed);
94 return speedbuffer;
95 }
96
97 if (speed%1000 == 0)
98 snprintf(speedbuffer, sizeof(speedbuffer),
99 "%dGHz", speed/1000);
100 else
101 snprintf(speedbuffer, sizeof(speedbuffer),
102 "%d.%dGHz", speed/1000, (speed%1000)/100);
103
104 return speedbuffer;
105 }
106
107
108 static unsigned int calc_speed(int mult)
109 {
110 int khz;
111 khz = (mult/10)*fsb;
112 if (mult%10)
113 khz += fsb/2;
114 khz *= 1000;
115 return khz;
116 }
117
118
119 static int longhaul_get_cpu_mult(void)
120 {
121 unsigned long invalue = 0, lo, hi;
122
123 rdmsr(MSR_IA32_EBL_CR_POWERON, lo, hi);
124 invalue = (lo & (1<<22|1<<23|1<<24|1<<25))>>22;
125 if (longhaul_version == TYPE_LONGHAUL_V2 ||
126 longhaul_version == TYPE_POWERSAVER) {
127 if (lo & (1<<27))
128 invalue += 16;
129 }
130 return eblcr[invalue];
131 }
132
133 /* For processor with BCR2 MSR */
134
135 static void do_longhaul1(unsigned int mults_index)
136 {
137 union msr_bcr2 bcr2;
138
139 rdmsrl(MSR_VIA_BCR2, bcr2.val);
140 /* Enable software clock multiplier */
141 bcr2.bits.ESOFTBF = 1;
142 bcr2.bits.CLOCKMUL = mults_index & 0xff;
143
144 /* Sync to timer tick */
145 safe_halt();
146 /* Change frequency on next halt or sleep */
147 wrmsrl(MSR_VIA_BCR2, bcr2.val);
148 /* Invoke transition */
149 ACPI_FLUSH_CPU_CACHE();
150 halt();
151
152 /* Disable software clock multiplier */
153 local_irq_disable();
154 rdmsrl(MSR_VIA_BCR2, bcr2.val);
155 bcr2.bits.ESOFTBF = 0;
156 wrmsrl(MSR_VIA_BCR2, bcr2.val);
157 }
158
159 /* For processor with Longhaul MSR */
160
161 static void do_powersaver(int cx_address, unsigned int mults_index,
162 unsigned int dir)
163 {
164 union msr_longhaul longhaul;
165 u32 t;
166
167 rdmsrl(MSR_VIA_LONGHAUL, longhaul.val);
168 /* Setup new frequency */
169 if (!revid_errata)
170 longhaul.bits.RevisionKey = longhaul.bits.RevisionID;
171 else
172 longhaul.bits.RevisionKey = 0;
173 longhaul.bits.SoftBusRatio = mults_index & 0xf;
174 longhaul.bits.SoftBusRatio4 = (mults_index & 0x10) >> 4;
175 /* Setup new voltage */
176 if (can_scale_voltage)
177 longhaul.bits.SoftVID = (mults_index >> 8) & 0x1f;
178 /* Sync to timer tick */
179 safe_halt();
180 /* Raise voltage if necessary */
181 if (can_scale_voltage && dir) {
182 longhaul.bits.EnableSoftVID = 1;
183 wrmsrl(MSR_VIA_LONGHAUL, longhaul.val);
184 /* Change voltage */
185 if (!cx_address) {
186 ACPI_FLUSH_CPU_CACHE();
187 halt();
188 } else {
189 ACPI_FLUSH_CPU_CACHE();
190 /* Invoke C3 */
191 inb(cx_address);
192 /* Dummy op - must do something useless after P_LVL3
193 * read */
194 t = inl(acpi_gbl_FADT.xpm_timer_block.address);
195 }
196 longhaul.bits.EnableSoftVID = 0;
197 wrmsrl(MSR_VIA_LONGHAUL, longhaul.val);
198 }
199
200 /* Change frequency on next halt or sleep */
201 longhaul.bits.EnableSoftBusRatio = 1;
202 wrmsrl(MSR_VIA_LONGHAUL, longhaul.val);
203 if (!cx_address) {
204 ACPI_FLUSH_CPU_CACHE();
205 halt();
206 } else {
207 ACPI_FLUSH_CPU_CACHE();
208 /* Invoke C3 */
209 inb(cx_address);
210 /* Dummy op - must do something useless after P_LVL3 read */
211 t = inl(acpi_gbl_FADT.xpm_timer_block.address);
212 }
213 /* Disable bus ratio bit */
214 longhaul.bits.EnableSoftBusRatio = 0;
215 wrmsrl(MSR_VIA_LONGHAUL, longhaul.val);
216
217 /* Reduce voltage if necessary */
218 if (can_scale_voltage && !dir) {
219 longhaul.bits.EnableSoftVID = 1;
220 wrmsrl(MSR_VIA_LONGHAUL, longhaul.val);
221 /* Change voltage */
222 if (!cx_address) {
223 ACPI_FLUSH_CPU_CACHE();
224 halt();
225 } else {
226 ACPI_FLUSH_CPU_CACHE();
227 /* Invoke C3 */
228 inb(cx_address);
229 /* Dummy op - must do something useless after P_LVL3
230 * read */
231 t = inl(acpi_gbl_FADT.xpm_timer_block.address);
232 }
233 longhaul.bits.EnableSoftVID = 0;
234 wrmsrl(MSR_VIA_LONGHAUL, longhaul.val);
235 }
236 }
237
238 /**
239 * longhaul_set_cpu_frequency()
240 * @mults_index : bitpattern of the new multiplier.
241 *
242 * Sets a new clock ratio.
243 */
244
245 static int longhaul_setstate(struct cpufreq_policy *policy,
246 unsigned int table_index)
247 {
248 unsigned int mults_index;
249 int speed, mult;
250 struct cpufreq_freqs freqs;
251 unsigned long flags;
252 unsigned int pic1_mask, pic2_mask;
253 u16 bm_status = 0;
254 u32 bm_timeout = 1000;
255 unsigned int dir = 0;
256
257 mults_index = longhaul_table[table_index].driver_data;
258 /* Safety precautions */
259 mult = mults[mults_index & 0x1f];
260 if (mult == -1)
261 return -EINVAL;
262
263 speed = calc_speed(mult);
264 if ((speed > highest_speed) || (speed < lowest_speed))
265 return -EINVAL;
266
267 /* Voltage transition before frequency transition? */
268 if (can_scale_voltage && longhaul_index < table_index)
269 dir = 1;
270
271 freqs.old = calc_speed(longhaul_get_cpu_mult());
272 freqs.new = speed;
273
274 pr_debug("Setting to FSB:%dMHz Mult:%d.%dx (%s)\n",
275 fsb, mult/10, mult%10, print_speed(speed/1000));
276 retry_loop:
277 preempt_disable();
278 local_irq_save(flags);
279
280 pic2_mask = inb(0xA1);
281 pic1_mask = inb(0x21); /* works on C3. save mask. */
282 outb(0xFF, 0xA1); /* Overkill */
283 outb(0xFE, 0x21); /* TMR0 only */
284
285 /* Wait while PCI bus is busy. */
286 if (acpi_regs_addr && (longhaul_flags & USE_NORTHBRIDGE
287 || ((pr != NULL) && pr->flags.bm_control))) {
288 bm_status = inw(acpi_regs_addr);
289 bm_status &= 1 << 4;
290 while (bm_status && bm_timeout) {
291 outw(1 << 4, acpi_regs_addr);
292 bm_timeout--;
293 bm_status = inw(acpi_regs_addr);
294 bm_status &= 1 << 4;
295 }
296 }
297
298 if (longhaul_flags & USE_NORTHBRIDGE) {
299 /* Disable AGP and PCI arbiters */
300 outb(3, 0x22);
301 } else if ((pr != NULL) && pr->flags.bm_control) {
302 /* Disable bus master arbitration */
303 acpi_write_bit_register(ACPI_BITREG_ARB_DISABLE, 1);
304 }
305 switch (longhaul_version) {
306
307 /*
308 * Longhaul v1. (Samuel[C5A] and Samuel2 stepping 0[C5B])
309 * Software controlled multipliers only.
310 */
311 case TYPE_LONGHAUL_V1:
312 do_longhaul1(mults_index);
313 break;
314
315 /*
316 * Longhaul v2 appears in Samuel2 Steppings 1->7 [C5B] and Ezra [C5C]
317 *
318 * Longhaul v3 (aka Powersaver). (Ezra-T [C5M] & Nehemiah [C5N])
319 * Nehemiah can do FSB scaling too, but this has never been proven
320 * to work in practice.
321 */
322 case TYPE_LONGHAUL_V2:
323 case TYPE_POWERSAVER:
324 if (longhaul_flags & USE_ACPI_C3) {
325 /* Don't allow wakeup */
326 acpi_write_bit_register(ACPI_BITREG_BUS_MASTER_RLD, 0);
327 do_powersaver(cx->address, mults_index, dir);
328 } else {
329 do_powersaver(0, mults_index, dir);
330 }
331 break;
332 }
333
334 if (longhaul_flags & USE_NORTHBRIDGE) {
335 /* Enable arbiters */
336 outb(0, 0x22);
337 } else if ((pr != NULL) && pr->flags.bm_control) {
338 /* Enable bus master arbitration */
339 acpi_write_bit_register(ACPI_BITREG_ARB_DISABLE, 0);
340 }
341 outb(pic2_mask, 0xA1); /* restore mask */
342 outb(pic1_mask, 0x21);
343
344 local_irq_restore(flags);
345 preempt_enable();
346
347 freqs.new = calc_speed(longhaul_get_cpu_mult());
348 /* Check if requested frequency is set. */
349 if (unlikely(freqs.new != speed)) {
350 printk(KERN_INFO PFX "Failed to set requested frequency!\n");
351 /* Revision ID = 1 but processor is expecting revision key
352 * equal to 0. Jumpers at the bottom of processor will change
353 * multiplier and FSB, but will not change bits in Longhaul
354 * MSR nor enable voltage scaling. */
355 if (!revid_errata) {
356 printk(KERN_INFO PFX "Enabling \"Ignore Revision ID\" "
357 "option.\n");
358 revid_errata = 1;
359 msleep(200);
360 goto retry_loop;
361 }
362 /* Why ACPI C3 sometimes doesn't work is a mystery for me.
363 * But it does happen. Processor is entering ACPI C3 state,
364 * but it doesn't change frequency. I tried poking various
365 * bits in northbridge registers, but without success. */
366 if (longhaul_flags & USE_ACPI_C3) {
367 printk(KERN_INFO PFX "Disabling ACPI C3 support.\n");
368 longhaul_flags &= ~USE_ACPI_C3;
369 if (revid_errata) {
370 printk(KERN_INFO PFX "Disabling \"Ignore "
371 "Revision ID\" option.\n");
372 revid_errata = 0;
373 }
374 msleep(200);
375 goto retry_loop;
376 }
377 /* This shouldn't happen. Longhaul ver. 2 was reported not
378 * working on processors without voltage scaling, but with
379 * RevID = 1. RevID errata will make things right. Just
380 * to be 100% sure. */
381 if (longhaul_version == TYPE_LONGHAUL_V2) {
382 printk(KERN_INFO PFX "Switching to Longhaul ver. 1\n");
383 longhaul_version = TYPE_LONGHAUL_V1;
384 msleep(200);
385 goto retry_loop;
386 }
387 }
388
389 if (!bm_timeout) {
390 printk(KERN_INFO PFX "Warning: Timeout while waiting for "
391 "idle PCI bus.\n");
392 return -EBUSY;
393 }
394
395 return 0;
396 }
397
398 /*
399 * Centaur decided to make life a little more tricky.
400 * Only longhaul v1 is allowed to read EBLCR BSEL[0:1].
401 * Samuel2 and above have to try and guess what the FSB is.
402 * We do this by assuming we booted at maximum multiplier, and interpolate
403 * between that value multiplied by possible FSBs and cpu_mhz which
404 * was calculated at boot time. Really ugly, but no other way to do this.
405 */
406
407 #define ROUNDING 0xf
408
409 static int guess_fsb(int mult)
410 {
411 int speed = cpu_khz / 1000;
412 int i;
413 int speeds[] = { 666, 1000, 1333, 2000 };
414 int f_max, f_min;
415
416 for (i = 0; i < 4; i++) {
417 f_max = ((speeds[i] * mult) + 50) / 100;
418 f_max += (ROUNDING / 2);
419 f_min = f_max - ROUNDING;
420 if ((speed <= f_max) && (speed >= f_min))
421 return speeds[i] / 10;
422 }
423 return 0;
424 }
425
426
427 static int longhaul_get_ranges(void)
428 {
429 unsigned int i, j, k = 0;
430 unsigned int ratio;
431 int mult;
432
433 /* Get current frequency */
434 mult = longhaul_get_cpu_mult();
435 if (mult == -1) {
436 printk(KERN_INFO PFX "Invalid (reserved) multiplier!\n");
437 return -EINVAL;
438 }
439 fsb = guess_fsb(mult);
440 if (fsb == 0) {
441 printk(KERN_INFO PFX "Invalid (reserved) FSB!\n");
442 return -EINVAL;
443 }
444 /* Get max multiplier - as we always did.
445 * Longhaul MSR is useful only when voltage scaling is enabled.
446 * C3 is booting at max anyway. */
447 maxmult = mult;
448 /* Get min multiplier */
449 switch (cpu_model) {
450 case CPU_NEHEMIAH:
451 minmult = 50;
452 break;
453 case CPU_NEHEMIAH_C:
454 minmult = 40;
455 break;
456 default:
457 minmult = 30;
458 break;
459 }
460
461 pr_debug("MinMult:%d.%dx MaxMult:%d.%dx\n",
462 minmult/10, minmult%10, maxmult/10, maxmult%10);
463
464 highest_speed = calc_speed(maxmult);
465 lowest_speed = calc_speed(minmult);
466 pr_debug("FSB:%dMHz Lowest speed: %s Highest speed:%s\n", fsb,
467 print_speed(lowest_speed/1000),
468 print_speed(highest_speed/1000));
469
470 if (lowest_speed == highest_speed) {
471 printk(KERN_INFO PFX "highestspeed == lowest, aborting.\n");
472 return -EINVAL;
473 }
474 if (lowest_speed > highest_speed) {
475 printk(KERN_INFO PFX "nonsense! lowest (%d > %d) !\n",
476 lowest_speed, highest_speed);
477 return -EINVAL;
478 }
479
480 longhaul_table = kzalloc((numscales + 1) * sizeof(*longhaul_table),
481 GFP_KERNEL);
482 if (!longhaul_table)
483 return -ENOMEM;
484
485 for (j = 0; j < numscales; j++) {
486 ratio = mults[j];
487 if (ratio == -1)
488 continue;
489 if (ratio > maxmult || ratio < minmult)
490 continue;
491 longhaul_table[k].frequency = calc_speed(ratio);
492 longhaul_table[k].driver_data = j;
493 k++;
494 }
495 if (k <= 1) {
496 kfree(longhaul_table);
497 return -ENODEV;
498 }
499 /* Sort */
500 for (j = 0; j < k - 1; j++) {
501 unsigned int min_f, min_i;
502 min_f = longhaul_table[j].frequency;
503 min_i = j;
504 for (i = j + 1; i < k; i++) {
505 if (longhaul_table[i].frequency < min_f) {
506 min_f = longhaul_table[i].frequency;
507 min_i = i;
508 }
509 }
510 if (min_i != j) {
511 swap(longhaul_table[j].frequency,
512 longhaul_table[min_i].frequency);
513 swap(longhaul_table[j].driver_data,
514 longhaul_table[min_i].driver_data);
515 }
516 }
517
518 longhaul_table[k].frequency = CPUFREQ_TABLE_END;
519
520 /* Find index we are running on */
521 for (j = 0; j < k; j++) {
522 if (mults[longhaul_table[j].driver_data & 0x1f] == mult) {
523 longhaul_index = j;
524 break;
525 }
526 }
527 return 0;
528 }
529
530
531 static void longhaul_setup_voltagescaling(void)
532 {
533 union msr_longhaul longhaul;
534 struct mV_pos minvid, maxvid, vid;
535 unsigned int j, speed, pos, kHz_step, numvscales;
536 int min_vid_speed;
537
538 rdmsrl(MSR_VIA_LONGHAUL, longhaul.val);
539 if (!(longhaul.bits.RevisionID & 1)) {
540 printk(KERN_INFO PFX "Voltage scaling not supported by CPU.\n");
541 return;
542 }
543
544 if (!longhaul.bits.VRMRev) {
545 printk(KERN_INFO PFX "VRM 8.5\n");
546 vrm_mV_table = &vrm85_mV[0];
547 mV_vrm_table = &mV_vrm85[0];
548 } else {
549 printk(KERN_INFO PFX "Mobile VRM\n");
550 if (cpu_model < CPU_NEHEMIAH)
551 return;
552 vrm_mV_table = &mobilevrm_mV[0];
553 mV_vrm_table = &mV_mobilevrm[0];
554 }
555
556 minvid = vrm_mV_table[longhaul.bits.MinimumVID];
557 maxvid = vrm_mV_table[longhaul.bits.MaximumVID];
558
559 if (minvid.mV == 0 || maxvid.mV == 0 || minvid.mV > maxvid.mV) {
560 printk(KERN_INFO PFX "Bogus values Min:%d.%03d Max:%d.%03d. "
561 "Voltage scaling disabled.\n",
562 minvid.mV/1000, minvid.mV%1000,
563 maxvid.mV/1000, maxvid.mV%1000);
564 return;
565 }
566
567 if (minvid.mV == maxvid.mV) {
568 printk(KERN_INFO PFX "Claims to support voltage scaling but "
569 "min & max are both %d.%03d. "
570 "Voltage scaling disabled\n",
571 maxvid.mV/1000, maxvid.mV%1000);
572 return;
573 }
574
575 /* How many voltage steps*/
576 numvscales = maxvid.pos - minvid.pos + 1;
577 printk(KERN_INFO PFX
578 "Max VID=%d.%03d "
579 "Min VID=%d.%03d, "
580 "%d possible voltage scales\n",
581 maxvid.mV/1000, maxvid.mV%1000,
582 minvid.mV/1000, minvid.mV%1000,
583 numvscales);
584
585 /* Calculate max frequency at min voltage */
586 j = longhaul.bits.MinMHzBR;
587 if (longhaul.bits.MinMHzBR4)
588 j += 16;
589 min_vid_speed = eblcr[j];
590 if (min_vid_speed == -1)
591 return;
592 switch (longhaul.bits.MinMHzFSB) {
593 case 0:
594 min_vid_speed *= 13333;
595 break;
596 case 1:
597 min_vid_speed *= 10000;
598 break;
599 case 3:
600 min_vid_speed *= 6666;
601 break;
602 default:
603 return;
604 break;
605 }
606 if (min_vid_speed >= highest_speed)
607 return;
608 /* Calculate kHz for one voltage step */
609 kHz_step = (highest_speed - min_vid_speed) / numvscales;
610
611 j = 0;
612 while (longhaul_table[j].frequency != CPUFREQ_TABLE_END) {
613 speed = longhaul_table[j].frequency;
614 if (speed > min_vid_speed)
615 pos = (speed - min_vid_speed) / kHz_step + minvid.pos;
616 else
617 pos = minvid.pos;
618 longhaul_table[j].driver_data |= mV_vrm_table[pos] << 8;
619 vid = vrm_mV_table[mV_vrm_table[pos]];
620 printk(KERN_INFO PFX "f: %d kHz, index: %d, vid: %d mV\n",
621 speed, j, vid.mV);
622 j++;
623 }
624
625 can_scale_voltage = 1;
626 printk(KERN_INFO PFX "Voltage scaling enabled.\n");
627 }
628
629
630 static int longhaul_target(struct cpufreq_policy *policy,
631 unsigned int table_index)
632 {
633 unsigned int i;
634 unsigned int dir = 0;
635 u8 vid, current_vid;
636 int retval = 0;
637
638 if (!can_scale_voltage)
639 retval = longhaul_setstate(policy, table_index);
640 else {
641 /* On test system voltage transitions exceeding single
642 * step up or down were turning motherboard off. Both
643 * "ondemand" and "userspace" are unsafe. C7 is doing
644 * this in hardware, C3 is old and we need to do this
645 * in software. */
646 i = longhaul_index;
647 current_vid = (longhaul_table[longhaul_index].driver_data >> 8);
648 current_vid &= 0x1f;
649 if (table_index > longhaul_index)
650 dir = 1;
651 while (i != table_index) {
652 vid = (longhaul_table[i].driver_data >> 8) & 0x1f;
653 if (vid != current_vid) {
654 retval = longhaul_setstate(policy, i);
655 current_vid = vid;
656 msleep(200);
657 }
658 if (dir)
659 i++;
660 else
661 i--;
662 }
663 retval = longhaul_setstate(policy, table_index);
664 }
665
666 longhaul_index = table_index;
667 return retval;
668 }
669
670
671 static unsigned int longhaul_get(unsigned int cpu)
672 {
673 if (cpu)
674 return 0;
675 return calc_speed(longhaul_get_cpu_mult());
676 }
677
678 static acpi_status longhaul_walk_callback(acpi_handle obj_handle,
679 u32 nesting_level,
680 void *context, void **return_value)
681 {
682 struct acpi_device *d;
683
684 if (acpi_bus_get_device(obj_handle, &d))
685 return 0;
686
687 *return_value = acpi_driver_data(d);
688 return 1;
689 }
690
691 /* VIA don't support PM2 reg, but have something similar */
692 static int enable_arbiter_disable(void)
693 {
694 struct pci_dev *dev;
695 int status = 1;
696 int reg;
697 u8 pci_cmd;
698
699 /* Find PLE133 host bridge */
700 reg = 0x78;
701 dev = pci_get_device(PCI_VENDOR_ID_VIA, PCI_DEVICE_ID_VIA_8601_0,
702 NULL);
703 /* Find PM133/VT8605 host bridge */
704 if (dev == NULL)
705 dev = pci_get_device(PCI_VENDOR_ID_VIA,
706 PCI_DEVICE_ID_VIA_8605_0, NULL);
707 /* Find CLE266 host bridge */
708 if (dev == NULL) {
709 reg = 0x76;
710 dev = pci_get_device(PCI_VENDOR_ID_VIA,
711 PCI_DEVICE_ID_VIA_862X_0, NULL);
712 /* Find CN400 V-Link host bridge */
713 if (dev == NULL)
714 dev = pci_get_device(PCI_VENDOR_ID_VIA, 0x7259, NULL);
715 }
716 if (dev != NULL) {
717 /* Enable access to port 0x22 */
718 pci_read_config_byte(dev, reg, &pci_cmd);
719 if (!(pci_cmd & 1<<7)) {
720 pci_cmd |= 1<<7;
721 pci_write_config_byte(dev, reg, pci_cmd);
722 pci_read_config_byte(dev, reg, &pci_cmd);
723 if (!(pci_cmd & 1<<7)) {
724 printk(KERN_ERR PFX
725 "Can't enable access to port 0x22.\n");
726 status = 0;
727 }
728 }
729 pci_dev_put(dev);
730 return status;
731 }
732 return 0;
733 }
734
735 static int longhaul_setup_southbridge(void)
736 {
737 struct pci_dev *dev;
738 u8 pci_cmd;
739
740 /* Find VT8235 southbridge */
741 dev = pci_get_device(PCI_VENDOR_ID_VIA, PCI_DEVICE_ID_VIA_8235, NULL);
742 if (dev == NULL)
743 /* Find VT8237 southbridge */
744 dev = pci_get_device(PCI_VENDOR_ID_VIA,
745 PCI_DEVICE_ID_VIA_8237, NULL);
746 if (dev != NULL) {
747 /* Set transition time to max */
748 pci_read_config_byte(dev, 0xec, &pci_cmd);
749 pci_cmd &= ~(1 << 2);
750 pci_write_config_byte(dev, 0xec, pci_cmd);
751 pci_read_config_byte(dev, 0xe4, &pci_cmd);
752 pci_cmd &= ~(1 << 7);
753 pci_write_config_byte(dev, 0xe4, pci_cmd);
754 pci_read_config_byte(dev, 0xe5, &pci_cmd);
755 pci_cmd |= 1 << 7;
756 pci_write_config_byte(dev, 0xe5, pci_cmd);
757 /* Get address of ACPI registers block*/
758 pci_read_config_byte(dev, 0x81, &pci_cmd);
759 if (pci_cmd & 1 << 7) {
760 pci_read_config_dword(dev, 0x88, &acpi_regs_addr);
761 acpi_regs_addr &= 0xff00;
762 printk(KERN_INFO PFX "ACPI I/O at 0x%x\n",
763 acpi_regs_addr);
764 }
765
766 pci_dev_put(dev);
767 return 1;
768 }
769 return 0;
770 }
771
772 static int longhaul_cpu_init(struct cpufreq_policy *policy)
773 {
774 struct cpuinfo_x86 *c = &cpu_data(0);
775 char *cpuname = NULL;
776 int ret;
777 u32 lo, hi;
778
779 /* Check what we have on this motherboard */
780 switch (c->x86_model) {
781 case 6:
782 cpu_model = CPU_SAMUEL;
783 cpuname = "C3 'Samuel' [C5A]";
784 longhaul_version = TYPE_LONGHAUL_V1;
785 memcpy(mults, samuel1_mults, sizeof(samuel1_mults));
786 memcpy(eblcr, samuel1_eblcr, sizeof(samuel1_eblcr));
787 break;
788
789 case 7:
790 switch (c->x86_mask) {
791 case 0:
792 longhaul_version = TYPE_LONGHAUL_V1;
793 cpu_model = CPU_SAMUEL2;
794 cpuname = "C3 'Samuel 2' [C5B]";
795 /* Note, this is not a typo, early Samuel2's had
796 * Samuel1 ratios. */
797 memcpy(mults, samuel1_mults, sizeof(samuel1_mults));
798 memcpy(eblcr, samuel2_eblcr, sizeof(samuel2_eblcr));
799 break;
800 case 1 ... 15:
801 longhaul_version = TYPE_LONGHAUL_V2;
802 if (c->x86_mask < 8) {
803 cpu_model = CPU_SAMUEL2;
804 cpuname = "C3 'Samuel 2' [C5B]";
805 } else {
806 cpu_model = CPU_EZRA;
807 cpuname = "C3 'Ezra' [C5C]";
808 }
809 memcpy(mults, ezra_mults, sizeof(ezra_mults));
810 memcpy(eblcr, ezra_eblcr, sizeof(ezra_eblcr));
811 break;
812 }
813 break;
814
815 case 8:
816 cpu_model = CPU_EZRA_T;
817 cpuname = "C3 'Ezra-T' [C5M]";
818 longhaul_version = TYPE_POWERSAVER;
819 numscales = 32;
820 memcpy(mults, ezrat_mults, sizeof(ezrat_mults));
821 memcpy(eblcr, ezrat_eblcr, sizeof(ezrat_eblcr));
822 break;
823
824 case 9:
825 longhaul_version = TYPE_POWERSAVER;
826 numscales = 32;
827 memcpy(mults, nehemiah_mults, sizeof(nehemiah_mults));
828 memcpy(eblcr, nehemiah_eblcr, sizeof(nehemiah_eblcr));
829 switch (c->x86_mask) {
830 case 0 ... 1:
831 cpu_model = CPU_NEHEMIAH;
832 cpuname = "C3 'Nehemiah A' [C5XLOE]";
833 break;
834 case 2 ... 4:
835 cpu_model = CPU_NEHEMIAH;
836 cpuname = "C3 'Nehemiah B' [C5XLOH]";
837 break;
838 case 5 ... 15:
839 cpu_model = CPU_NEHEMIAH_C;
840 cpuname = "C3 'Nehemiah C' [C5P]";
841 break;
842 }
843 break;
844
845 default:
846 cpuname = "Unknown";
847 break;
848 }
849 /* Check Longhaul ver. 2 */
850 if (longhaul_version == TYPE_LONGHAUL_V2) {
851 rdmsr(MSR_VIA_LONGHAUL, lo, hi);
852 if (lo == 0 && hi == 0)
853 /* Looks like MSR isn't present */
854 longhaul_version = TYPE_LONGHAUL_V1;
855 }
856
857 printk(KERN_INFO PFX "VIA %s CPU detected. ", cpuname);
858 switch (longhaul_version) {
859 case TYPE_LONGHAUL_V1:
860 case TYPE_LONGHAUL_V2:
861 printk(KERN_CONT "Longhaul v%d supported.\n", longhaul_version);
862 break;
863 case TYPE_POWERSAVER:
864 printk(KERN_CONT "Powersaver supported.\n");
865 break;
866 };
867
868 /* Doesn't hurt */
869 longhaul_setup_southbridge();
870
871 /* Find ACPI data for processor */
872 acpi_walk_namespace(ACPI_TYPE_PROCESSOR, ACPI_ROOT_OBJECT,
873 ACPI_UINT32_MAX, &longhaul_walk_callback, NULL,
874 NULL, (void *)&pr);
875
876 /* Check ACPI support for C3 state */
877 if (pr != NULL && longhaul_version == TYPE_POWERSAVER) {
878 cx = &pr->power.states[ACPI_STATE_C3];
879 if (cx->address > 0 && cx->latency <= 1000)
880 longhaul_flags |= USE_ACPI_C3;
881 }
882 /* Disable if it isn't working */
883 if (disable_acpi_c3)
884 longhaul_flags &= ~USE_ACPI_C3;
885 /* Check if northbridge is friendly */
886 if (enable_arbiter_disable())
887 longhaul_flags |= USE_NORTHBRIDGE;
888
889 /* Check ACPI support for bus master arbiter disable */
890 if (!(longhaul_flags & USE_ACPI_C3
891 || longhaul_flags & USE_NORTHBRIDGE)
892 && ((pr == NULL) || !(pr->flags.bm_control))) {
893 printk(KERN_ERR PFX
894 "No ACPI support. Unsupported northbridge.\n");
895 return -ENODEV;
896 }
897
898 if (longhaul_flags & USE_NORTHBRIDGE)
899 printk(KERN_INFO PFX "Using northbridge support.\n");
900 if (longhaul_flags & USE_ACPI_C3)
901 printk(KERN_INFO PFX "Using ACPI support.\n");
902
903 ret = longhaul_get_ranges();
904 if (ret != 0)
905 return ret;
906
907 if ((longhaul_version != TYPE_LONGHAUL_V1) && (scale_voltage != 0))
908 longhaul_setup_voltagescaling();
909
910 policy->cpuinfo.transition_latency = 200000; /* nsec */
911
912 return cpufreq_table_validate_and_show(policy, longhaul_table);
913 }
914
915 static struct cpufreq_driver longhaul_driver = {
916 .verify = cpufreq_generic_frequency_table_verify,
917 .target_index = longhaul_target,
918 .get = longhaul_get,
919 .init = longhaul_cpu_init,
920 .name = "longhaul",
921 .attr = cpufreq_generic_attr,
922 };
923
924 static const struct x86_cpu_id longhaul_id[] = {
925 { X86_VENDOR_CENTAUR, 6 },
926 {}
927 };
928 MODULE_DEVICE_TABLE(x86cpu, longhaul_id);
929
930 static int __init longhaul_init(void)
931 {
932 struct cpuinfo_x86 *c = &cpu_data(0);
933
934 if (!x86_match_cpu(longhaul_id))
935 return -ENODEV;
936
937 if (!enable) {
938 printk(KERN_ERR PFX "Option \"enable\" not set. Aborting.\n");
939 return -ENODEV;
940 }
941 #ifdef CONFIG_SMP
942 if (num_online_cpus() > 1) {
943 printk(KERN_ERR PFX "More than 1 CPU detected, "
944 "longhaul disabled.\n");
945 return -ENODEV;
946 }
947 #endif
948 #ifdef CONFIG_X86_IO_APIC
949 if (cpu_has_apic) {
950 printk(KERN_ERR PFX "APIC detected. Longhaul is currently "
951 "broken in this configuration.\n");
952 return -ENODEV;
953 }
954 #endif
955 switch (c->x86_model) {
956 case 6 ... 9:
957 return cpufreq_register_driver(&longhaul_driver);
958 case 10:
959 printk(KERN_ERR PFX "Use acpi-cpufreq driver for VIA C7\n");
960 default:
961 ;
962 }
963
964 return -ENODEV;
965 }
966
967
968 static void __exit longhaul_exit(void)
969 {
970 struct cpufreq_policy *policy = cpufreq_cpu_get(0);
971 int i;
972
973 for (i = 0; i < numscales; i++) {
974 if (mults[i] == maxmult) {
975 struct cpufreq_freqs freqs;
976
977 freqs.old = policy->cur;
978 freqs.new = longhaul_table[i].frequency;
979 freqs.flags = 0;
980
981 cpufreq_freq_transition_begin(policy, &freqs);
982 longhaul_setstate(policy, i);
983 cpufreq_freq_transition_end(policy, &freqs, 0);
984 break;
985 }
986 }
987
988 cpufreq_cpu_put(policy);
989 cpufreq_unregister_driver(&longhaul_driver);
990 kfree(longhaul_table);
991 }
992
993 /* Even if BIOS is exporting ACPI C3 state, and it is used
994 * with success when CPU is idle, this state doesn't
995 * trigger frequency transition in some cases. */
996 module_param(disable_acpi_c3, int, 0644);
997 MODULE_PARM_DESC(disable_acpi_c3, "Don't use ACPI C3 support");
998 /* Change CPU voltage with frequency. Very useful to save
999 * power, but most VIA C3 processors aren't supporting it. */
1000 module_param(scale_voltage, int, 0644);
1001 MODULE_PARM_DESC(scale_voltage, "Scale voltage of processor");
1002 /* Force revision key to 0 for processors which doesn't
1003 * support voltage scaling, but are introducing itself as
1004 * such. */
1005 module_param(revid_errata, int, 0644);
1006 MODULE_PARM_DESC(revid_errata, "Ignore CPU Revision ID");
1007 /* By default driver is disabled to prevent incompatible
1008 * system freeze. */
1009 module_param(enable, int, 0644);
1010 MODULE_PARM_DESC(enable, "Enable driver");
1011
1012 MODULE_AUTHOR("Dave Jones <davej@redhat.com>");
1013 MODULE_DESCRIPTION("Longhaul driver for VIA Cyrix processors.");
1014 MODULE_LICENSE("GPL");
1015
1016 late_initcall(longhaul_init);
1017 module_exit(longhaul_exit);