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1 /*
2  * pSeries_lpar.c
3  * Copyright (C) 2001 Todd Inglett, IBM Corporation
4  *
5  * pSeries LPAR support.
6  *
7  * This program is free software; you can redistribute it and/or modify
8  * it under the terms of the GNU General Public License as published by
9  * the Free Software Foundation; either version 2 of the License, or
10  * (at your option) any later version.
11  *
12  * This program is distributed in the hope that it will be useful,
13  * but WITHOUT ANY WARRANTY; without even the implied warranty of
14  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
15  * GNU General Public License for more details.
16  *
17  * You should have received a copy of the GNU General Public License
18  * along with this program; if not, write to the Free Software
19  * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307 USA
20  */
21 
22 /* Enables debugging of low-level hash table routines - careful! */
23 #undef DEBUG
24 
25 #include <linux/kernel.h>
26 #include <linux/dma-mapping.h>
27 #include <linux/console.h>
28 #include <linux/export.h>
29 #include <linux/jump_label.h>
30 #include <linux/delay.h>
31 #include <linux/stop_machine.h>
32 #include <asm/processor.h>
33 #include <asm/mmu.h>
34 #include <asm/page.h>
35 #include <asm/pgtable.h>
36 #include <asm/machdep.h>
37 #include <asm/mmu_context.h>
38 #include <asm/iommu.h>
39 #include <asm/tlbflush.h>
40 #include <asm/tlb.h>
41 #include <asm/prom.h>
42 #include <asm/cputable.h>
43 #include <asm/udbg.h>
44 #include <asm/smp.h>
45 #include <asm/trace.h>
46 #include <asm/firmware.h>
47 #include <asm/plpar_wrappers.h>
48 #include <asm/kexec.h>
49 #include <asm/fadump.h>
50 #include <asm/asm-prototypes.h>
51 #include <asm/debugfs.h>
52 
53 #include "pseries.h"
54 
55 /* Flag bits for H_BULK_REMOVE */
56 #define HBR_REQUEST	0x4000000000000000UL
57 #define HBR_RESPONSE	0x8000000000000000UL
58 #define HBR_END		0xc000000000000000UL
59 #define HBR_AVPN	0x0200000000000000UL
60 #define HBR_ANDCOND	0x0100000000000000UL
61 
62 
63 /* in hvCall.S */
64 EXPORT_SYMBOL(plpar_hcall);
65 EXPORT_SYMBOL(plpar_hcall9);
66 EXPORT_SYMBOL(plpar_hcall_norets);
67 
vpa_init(int cpu)68 void vpa_init(int cpu)
69 {
70 	int hwcpu = get_hard_smp_processor_id(cpu);
71 	unsigned long addr;
72 	long ret;
73 	struct paca_struct *pp;
74 	struct dtl_entry *dtl;
75 
76 	/*
77 	 * The spec says it "may be problematic" if CPU x registers the VPA of
78 	 * CPU y. We should never do that, but wail if we ever do.
79 	 */
80 	WARN_ON(cpu != smp_processor_id());
81 
82 	if (cpu_has_feature(CPU_FTR_ALTIVEC))
83 		lppaca_of(cpu).vmxregs_in_use = 1;
84 
85 	if (cpu_has_feature(CPU_FTR_ARCH_207S))
86 		lppaca_of(cpu).ebb_regs_in_use = 1;
87 
88 	addr = __pa(&lppaca_of(cpu));
89 	ret = register_vpa(hwcpu, addr);
90 
91 	if (ret) {
92 		pr_err("WARNING: VPA registration for cpu %d (hw %d) of area "
93 		       "%lx failed with %ld\n", cpu, hwcpu, addr, ret);
94 		return;
95 	}
96 
97 #ifdef CONFIG_PPC_STD_MMU_64
98 	/*
99 	 * PAPR says this feature is SLB-Buffer but firmware never
100 	 * reports that.  All SPLPAR support SLB shadow buffer.
101 	 */
102 	if (!radix_enabled() && firmware_has_feature(FW_FEATURE_SPLPAR)) {
103 		addr = __pa(paca[cpu].slb_shadow_ptr);
104 		ret = register_slb_shadow(hwcpu, addr);
105 		if (ret)
106 			pr_err("WARNING: SLB shadow buffer registration for "
107 			       "cpu %d (hw %d) of area %lx failed with %ld\n",
108 			       cpu, hwcpu, addr, ret);
109 	}
110 #endif /* CONFIG_PPC_STD_MMU_64 */
111 
112 	/*
113 	 * Register dispatch trace log, if one has been allocated.
114 	 */
115 	pp = &paca[cpu];
116 	dtl = pp->dispatch_log;
117 	if (dtl) {
118 		pp->dtl_ridx = 0;
119 		pp->dtl_curr = dtl;
120 		lppaca_of(cpu).dtl_idx = 0;
121 
122 		/* hypervisor reads buffer length from this field */
123 		dtl->enqueue_to_dispatch_time = cpu_to_be32(DISPATCH_LOG_BYTES);
124 		ret = register_dtl(hwcpu, __pa(dtl));
125 		if (ret)
126 			pr_err("WARNING: DTL registration of cpu %d (hw %d) "
127 			       "failed with %ld\n", smp_processor_id(),
128 			       hwcpu, ret);
129 		lppaca_of(cpu).dtl_enable_mask = 2;
130 	}
131 }
132 
133 #ifdef CONFIG_PPC_STD_MMU_64
134 
pSeries_lpar_hpte_insert(unsigned long hpte_group,unsigned long vpn,unsigned long pa,unsigned long rflags,unsigned long vflags,int psize,int apsize,int ssize)135 static long pSeries_lpar_hpte_insert(unsigned long hpte_group,
136 				     unsigned long vpn, unsigned long pa,
137 				     unsigned long rflags, unsigned long vflags,
138 				     int psize, int apsize, int ssize)
139 {
140 	unsigned long lpar_rc;
141 	unsigned long flags;
142 	unsigned long slot;
143 	unsigned long hpte_v, hpte_r;
144 
145 	if (!(vflags & HPTE_V_BOLTED))
146 		pr_devel("hpte_insert(group=%lx, vpn=%016lx, "
147 			 "pa=%016lx, rflags=%lx, vflags=%lx, psize=%d)\n",
148 			 hpte_group, vpn,  pa, rflags, vflags, psize);
149 
150 	hpte_v = hpte_encode_v(vpn, psize, apsize, ssize) | vflags | HPTE_V_VALID;
151 	hpte_r = hpte_encode_r(pa, psize, apsize) | rflags;
152 
153 	if (!(vflags & HPTE_V_BOLTED))
154 		pr_devel(" hpte_v=%016lx, hpte_r=%016lx\n", hpte_v, hpte_r);
155 
156 	/* Now fill in the actual HPTE */
157 	/* Set CEC cookie to 0         */
158 	/* Zero page = 0               */
159 	/* I-cache Invalidate = 0      */
160 	/* I-cache synchronize = 0     */
161 	/* Exact = 0                   */
162 	flags = 0;
163 
164 	if (firmware_has_feature(FW_FEATURE_XCMO) && !(hpte_r & HPTE_R_N))
165 		flags |= H_COALESCE_CAND;
166 
167 	lpar_rc = plpar_pte_enter(flags, hpte_group, hpte_v, hpte_r, &slot);
168 	if (unlikely(lpar_rc == H_PTEG_FULL)) {
169 		if (!(vflags & HPTE_V_BOLTED))
170 			pr_devel(" full\n");
171 		return -1;
172 	}
173 
174 	/*
175 	 * Since we try and ioremap PHBs we don't own, the pte insert
176 	 * will fail. However we must catch the failure in hash_page
177 	 * or we will loop forever, so return -2 in this case.
178 	 */
179 	if (unlikely(lpar_rc != H_SUCCESS)) {
180 		if (!(vflags & HPTE_V_BOLTED))
181 			pr_devel(" lpar err %ld\n", lpar_rc);
182 		return -2;
183 	}
184 	if (!(vflags & HPTE_V_BOLTED))
185 		pr_devel(" -> slot: %lu\n", slot & 7);
186 
187 	/* Because of iSeries, we have to pass down the secondary
188 	 * bucket bit here as well
189 	 */
190 	return (slot & 7) | (!!(vflags & HPTE_V_SECONDARY) << 3);
191 }
192 
193 static DEFINE_SPINLOCK(pSeries_lpar_tlbie_lock);
194 
pSeries_lpar_hpte_remove(unsigned long hpte_group)195 static long pSeries_lpar_hpte_remove(unsigned long hpte_group)
196 {
197 	unsigned long slot_offset;
198 	unsigned long lpar_rc;
199 	int i;
200 	unsigned long dummy1, dummy2;
201 
202 	/* pick a random slot to start at */
203 	slot_offset = mftb() & 0x7;
204 
205 	for (i = 0; i < HPTES_PER_GROUP; i++) {
206 
207 		/* don't remove a bolted entry */
208 		lpar_rc = plpar_pte_remove(H_ANDCOND, hpte_group + slot_offset,
209 					   (0x1UL << 4), &dummy1, &dummy2);
210 		if (lpar_rc == H_SUCCESS)
211 			return i;
212 
213 		/*
214 		 * The test for adjunct partition is performed before the
215 		 * ANDCOND test.  H_RESOURCE may be returned, so we need to
216 		 * check for that as well.
217 		 */
218 		BUG_ON(lpar_rc != H_NOT_FOUND && lpar_rc != H_RESOURCE);
219 
220 		slot_offset++;
221 		slot_offset &= 0x7;
222 	}
223 
224 	return -1;
225 }
226 
manual_hpte_clear_all(void)227 static void manual_hpte_clear_all(void)
228 {
229 	unsigned long size_bytes = 1UL << ppc64_pft_size;
230 	unsigned long hpte_count = size_bytes >> 4;
231 	struct {
232 		unsigned long pteh;
233 		unsigned long ptel;
234 	} ptes[4];
235 	long lpar_rc;
236 	unsigned long i, j;
237 
238 	/* Read in batches of 4,
239 	 * invalidate only valid entries not in the VRMA
240 	 * hpte_count will be a multiple of 4
241          */
242 	for (i = 0; i < hpte_count; i += 4) {
243 		lpar_rc = plpar_pte_read_4_raw(0, i, (void *)ptes);
244 		if (lpar_rc != H_SUCCESS)
245 			continue;
246 		for (j = 0; j < 4; j++){
247 			if ((ptes[j].pteh & HPTE_V_VRMA_MASK) ==
248 				HPTE_V_VRMA_MASK)
249 				continue;
250 			if (ptes[j].pteh & HPTE_V_VALID)
251 				plpar_pte_remove_raw(0, i + j, 0,
252 					&(ptes[j].pteh), &(ptes[j].ptel));
253 		}
254 	}
255 }
256 
hcall_hpte_clear_all(void)257 static int hcall_hpte_clear_all(void)
258 {
259 	int rc;
260 
261 	do {
262 		rc = plpar_hcall_norets(H_CLEAR_HPT);
263 	} while (rc == H_CONTINUE);
264 
265 	return rc;
266 }
267 
pseries_hpte_clear_all(void)268 static void pseries_hpte_clear_all(void)
269 {
270 	int rc;
271 
272 	rc = hcall_hpte_clear_all();
273 	if (rc != H_SUCCESS)
274 		manual_hpte_clear_all();
275 
276 #ifdef __LITTLE_ENDIAN__
277 	/*
278 	 * Reset exceptions to big endian.
279 	 *
280 	 * FIXME this is a hack for kexec, we need to reset the exception
281 	 * endian before starting the new kernel and this is a convenient place
282 	 * to do it.
283 	 *
284 	 * This is also called on boot when a fadump happens. In that case we
285 	 * must not change the exception endian mode.
286 	 */
287 	if (firmware_has_feature(FW_FEATURE_SET_MODE) && !is_fadump_active())
288 		pseries_big_endian_exceptions();
289 #endif
290 }
291 
292 /*
293  * NOTE: for updatepp ops we are fortunate that the linux "newpp" bits and
294  * the low 3 bits of flags happen to line up.  So no transform is needed.
295  * We can probably optimize here and assume the high bits of newpp are
296  * already zero.  For now I am paranoid.
297  */
pSeries_lpar_hpte_updatepp(unsigned long slot,unsigned long newpp,unsigned long vpn,int psize,int apsize,int ssize,unsigned long inv_flags)298 static long pSeries_lpar_hpte_updatepp(unsigned long slot,
299 				       unsigned long newpp,
300 				       unsigned long vpn,
301 				       int psize, int apsize,
302 				       int ssize, unsigned long inv_flags)
303 {
304 	unsigned long lpar_rc;
305 	unsigned long flags;
306 	unsigned long want_v;
307 
308 	want_v = hpte_encode_avpn(vpn, psize, ssize);
309 
310 	pr_devel("    update: avpnv=%016lx, hash=%016lx, f=%lx, psize: %d ...",
311 		 want_v, slot, flags, psize);
312 
313 	flags = (newpp & 7) | H_AVPN;
314 	if (mmu_has_feature(MMU_FTR_KERNEL_RO))
315 		/* Move pp0 into bit 8 (IBM 55) */
316 		flags |= (newpp & HPTE_R_PP0) >> 55;
317 
318 	lpar_rc = plpar_pte_protect(flags, slot, want_v);
319 
320 	if (lpar_rc == H_NOT_FOUND) {
321 		pr_devel("not found !\n");
322 		return -1;
323 	}
324 
325 	pr_devel("ok\n");
326 
327 	BUG_ON(lpar_rc != H_SUCCESS);
328 
329 	return 0;
330 }
331 
__pSeries_lpar_hpte_find(unsigned long want_v,unsigned long hpte_group)332 static long __pSeries_lpar_hpte_find(unsigned long want_v, unsigned long hpte_group)
333 {
334 	long lpar_rc;
335 	unsigned long i, j;
336 	struct {
337 		unsigned long pteh;
338 		unsigned long ptel;
339 	} ptes[4];
340 
341 	for (i = 0; i < HPTES_PER_GROUP; i += 4, hpte_group += 4) {
342 
343 		lpar_rc = plpar_pte_read_4(0, hpte_group, (void *)ptes);
344 		if (lpar_rc != H_SUCCESS)
345 			continue;
346 
347 		for (j = 0; j < 4; j++) {
348 			if (HPTE_V_COMPARE(ptes[j].pteh, want_v) &&
349 			    (ptes[j].pteh & HPTE_V_VALID))
350 				return i + j;
351 		}
352 	}
353 
354 	return -1;
355 }
356 
pSeries_lpar_hpte_find(unsigned long vpn,int psize,int ssize)357 static long pSeries_lpar_hpte_find(unsigned long vpn, int psize, int ssize)
358 {
359 	long slot;
360 	unsigned long hash;
361 	unsigned long want_v;
362 	unsigned long hpte_group;
363 
364 	hash = hpt_hash(vpn, mmu_psize_defs[psize].shift, ssize);
365 	want_v = hpte_encode_avpn(vpn, psize, ssize);
366 
367 	/* Bolted entries are always in the primary group */
368 	hpte_group = (hash & htab_hash_mask) * HPTES_PER_GROUP;
369 	slot = __pSeries_lpar_hpte_find(want_v, hpte_group);
370 	if (slot < 0)
371 		return -1;
372 	return hpte_group + slot;
373 }
374 
pSeries_lpar_hpte_updateboltedpp(unsigned long newpp,unsigned long ea,int psize,int ssize)375 static void pSeries_lpar_hpte_updateboltedpp(unsigned long newpp,
376 					     unsigned long ea,
377 					     int psize, int ssize)
378 {
379 	unsigned long vpn;
380 	unsigned long lpar_rc, slot, vsid, flags;
381 
382 	vsid = get_kernel_vsid(ea, ssize);
383 	vpn = hpt_vpn(ea, vsid, ssize);
384 
385 	slot = pSeries_lpar_hpte_find(vpn, psize, ssize);
386 	BUG_ON(slot == -1);
387 
388 	flags = newpp & 7;
389 	if (mmu_has_feature(MMU_FTR_KERNEL_RO))
390 		/* Move pp0 into bit 8 (IBM 55) */
391 		flags |= (newpp & HPTE_R_PP0) >> 55;
392 
393 	lpar_rc = plpar_pte_protect(flags, slot, 0);
394 
395 	BUG_ON(lpar_rc != H_SUCCESS);
396 }
397 
pSeries_lpar_hpte_invalidate(unsigned long slot,unsigned long vpn,int psize,int apsize,int ssize,int local)398 static void pSeries_lpar_hpte_invalidate(unsigned long slot, unsigned long vpn,
399 					 int psize, int apsize,
400 					 int ssize, int local)
401 {
402 	unsigned long want_v;
403 	unsigned long lpar_rc;
404 	unsigned long dummy1, dummy2;
405 
406 	pr_devel("    inval : slot=%lx, vpn=%016lx, psize: %d, local: %d\n",
407 		 slot, vpn, psize, local);
408 
409 	want_v = hpte_encode_avpn(vpn, psize, ssize);
410 	lpar_rc = plpar_pte_remove(H_AVPN, slot, want_v, &dummy1, &dummy2);
411 	if (lpar_rc == H_NOT_FOUND)
412 		return;
413 
414 	BUG_ON(lpar_rc != H_SUCCESS);
415 }
416 
417 #ifdef CONFIG_TRANSPARENT_HUGEPAGE
418 /*
419  * Limit iterations holding pSeries_lpar_tlbie_lock to 3. We also need
420  * to make sure that we avoid bouncing the hypervisor tlbie lock.
421  */
422 #define PPC64_HUGE_HPTE_BATCH 12
423 
__pSeries_lpar_hugepage_invalidate(unsigned long * slot,unsigned long * vpn,int count,int psize,int ssize)424 static void __pSeries_lpar_hugepage_invalidate(unsigned long *slot,
425 					     unsigned long *vpn, int count,
426 					     int psize, int ssize)
427 {
428 	unsigned long param[PLPAR_HCALL9_BUFSIZE];
429 	int i = 0, pix = 0, rc;
430 	unsigned long flags = 0;
431 	int lock_tlbie = !mmu_has_feature(MMU_FTR_LOCKLESS_TLBIE);
432 
433 	if (lock_tlbie)
434 		spin_lock_irqsave(&pSeries_lpar_tlbie_lock, flags);
435 
436 	for (i = 0; i < count; i++) {
437 
438 		if (!firmware_has_feature(FW_FEATURE_BULK_REMOVE)) {
439 			pSeries_lpar_hpte_invalidate(slot[i], vpn[i], psize, 0,
440 						     ssize, 0);
441 		} else {
442 			param[pix] = HBR_REQUEST | HBR_AVPN | slot[i];
443 			param[pix+1] = hpte_encode_avpn(vpn[i], psize, ssize);
444 			pix += 2;
445 			if (pix == 8) {
446 				rc = plpar_hcall9(H_BULK_REMOVE, param,
447 						  param[0], param[1], param[2],
448 						  param[3], param[4], param[5],
449 						  param[6], param[7]);
450 				BUG_ON(rc != H_SUCCESS);
451 				pix = 0;
452 			}
453 		}
454 	}
455 	if (pix) {
456 		param[pix] = HBR_END;
457 		rc = plpar_hcall9(H_BULK_REMOVE, param, param[0], param[1],
458 				  param[2], param[3], param[4], param[5],
459 				  param[6], param[7]);
460 		BUG_ON(rc != H_SUCCESS);
461 	}
462 
463 	if (lock_tlbie)
464 		spin_unlock_irqrestore(&pSeries_lpar_tlbie_lock, flags);
465 }
466 
pSeries_lpar_hugepage_invalidate(unsigned long vsid,unsigned long addr,unsigned char * hpte_slot_array,int psize,int ssize,int local)467 static void pSeries_lpar_hugepage_invalidate(unsigned long vsid,
468 					     unsigned long addr,
469 					     unsigned char *hpte_slot_array,
470 					     int psize, int ssize, int local)
471 {
472 	int i, index = 0;
473 	unsigned long s_addr = addr;
474 	unsigned int max_hpte_count, valid;
475 	unsigned long vpn_array[PPC64_HUGE_HPTE_BATCH];
476 	unsigned long slot_array[PPC64_HUGE_HPTE_BATCH];
477 	unsigned long shift, hidx, vpn = 0, hash, slot;
478 
479 	shift = mmu_psize_defs[psize].shift;
480 	max_hpte_count = 1U << (PMD_SHIFT - shift);
481 
482 	for (i = 0; i < max_hpte_count; i++) {
483 		valid = hpte_valid(hpte_slot_array, i);
484 		if (!valid)
485 			continue;
486 		hidx =  hpte_hash_index(hpte_slot_array, i);
487 
488 		/* get the vpn */
489 		addr = s_addr + (i * (1ul << shift));
490 		vpn = hpt_vpn(addr, vsid, ssize);
491 		hash = hpt_hash(vpn, shift, ssize);
492 		if (hidx & _PTEIDX_SECONDARY)
493 			hash = ~hash;
494 
495 		slot = (hash & htab_hash_mask) * HPTES_PER_GROUP;
496 		slot += hidx & _PTEIDX_GROUP_IX;
497 
498 		slot_array[index] = slot;
499 		vpn_array[index] = vpn;
500 		if (index == PPC64_HUGE_HPTE_BATCH - 1) {
501 			/*
502 			 * Now do a bluk invalidate
503 			 */
504 			__pSeries_lpar_hugepage_invalidate(slot_array,
505 							   vpn_array,
506 							   PPC64_HUGE_HPTE_BATCH,
507 							   psize, ssize);
508 			index = 0;
509 		} else
510 			index++;
511 	}
512 	if (index)
513 		__pSeries_lpar_hugepage_invalidate(slot_array, vpn_array,
514 						   index, psize, ssize);
515 }
516 #else
pSeries_lpar_hugepage_invalidate(unsigned long vsid,unsigned long addr,unsigned char * hpte_slot_array,int psize,int ssize,int local)517 static void pSeries_lpar_hugepage_invalidate(unsigned long vsid,
518 					     unsigned long addr,
519 					     unsigned char *hpte_slot_array,
520 					     int psize, int ssize, int local)
521 {
522 	WARN(1, "%s called without THP support\n", __func__);
523 }
524 #endif
525 
pSeries_lpar_hpte_removebolted(unsigned long ea,int psize,int ssize)526 static int pSeries_lpar_hpte_removebolted(unsigned long ea,
527 					  int psize, int ssize)
528 {
529 	unsigned long vpn;
530 	unsigned long slot, vsid;
531 
532 	vsid = get_kernel_vsid(ea, ssize);
533 	vpn = hpt_vpn(ea, vsid, ssize);
534 
535 	slot = pSeries_lpar_hpte_find(vpn, psize, ssize);
536 	if (slot == -1)
537 		return -ENOENT;
538 
539 	/*
540 	 * lpar doesn't use the passed actual page size
541 	 */
542 	pSeries_lpar_hpte_invalidate(slot, vpn, psize, 0, ssize, 0);
543 	return 0;
544 }
545 
546 /*
547  * Take a spinlock around flushes to avoid bouncing the hypervisor tlbie
548  * lock.
549  */
pSeries_lpar_flush_hash_range(unsigned long number,int local)550 static void pSeries_lpar_flush_hash_range(unsigned long number, int local)
551 {
552 	unsigned long vpn;
553 	unsigned long i, pix, rc;
554 	unsigned long flags = 0;
555 	struct ppc64_tlb_batch *batch = this_cpu_ptr(&ppc64_tlb_batch);
556 	int lock_tlbie = !mmu_has_feature(MMU_FTR_LOCKLESS_TLBIE);
557 	unsigned long param[PLPAR_HCALL9_BUFSIZE];
558 	unsigned long hash, index, shift, hidx, slot;
559 	real_pte_t pte;
560 	int psize, ssize;
561 
562 	if (lock_tlbie)
563 		spin_lock_irqsave(&pSeries_lpar_tlbie_lock, flags);
564 
565 	psize = batch->psize;
566 	ssize = batch->ssize;
567 	pix = 0;
568 	for (i = 0; i < number; i++) {
569 		vpn = batch->vpn[i];
570 		pte = batch->pte[i];
571 		pte_iterate_hashed_subpages(pte, psize, vpn, index, shift) {
572 			hash = hpt_hash(vpn, shift, ssize);
573 			hidx = __rpte_to_hidx(pte, index);
574 			if (hidx & _PTEIDX_SECONDARY)
575 				hash = ~hash;
576 			slot = (hash & htab_hash_mask) * HPTES_PER_GROUP;
577 			slot += hidx & _PTEIDX_GROUP_IX;
578 			if (!firmware_has_feature(FW_FEATURE_BULK_REMOVE)) {
579 				/*
580 				 * lpar doesn't use the passed actual page size
581 				 */
582 				pSeries_lpar_hpte_invalidate(slot, vpn, psize,
583 							     0, ssize, local);
584 			} else {
585 				param[pix] = HBR_REQUEST | HBR_AVPN | slot;
586 				param[pix+1] = hpte_encode_avpn(vpn, psize,
587 								ssize);
588 				pix += 2;
589 				if (pix == 8) {
590 					rc = plpar_hcall9(H_BULK_REMOVE, param,
591 						param[0], param[1], param[2],
592 						param[3], param[4], param[5],
593 						param[6], param[7]);
594 					BUG_ON(rc != H_SUCCESS);
595 					pix = 0;
596 				}
597 			}
598 		} pte_iterate_hashed_end();
599 	}
600 	if (pix) {
601 		param[pix] = HBR_END;
602 		rc = plpar_hcall9(H_BULK_REMOVE, param, param[0], param[1],
603 				  param[2], param[3], param[4], param[5],
604 				  param[6], param[7]);
605 		BUG_ON(rc != H_SUCCESS);
606 	}
607 
608 	if (lock_tlbie)
609 		spin_unlock_irqrestore(&pSeries_lpar_tlbie_lock, flags);
610 }
611 
disable_bulk_remove(char * str)612 static int __init disable_bulk_remove(char *str)
613 {
614 	if (strcmp(str, "off") == 0 &&
615 	    firmware_has_feature(FW_FEATURE_BULK_REMOVE)) {
616 			printk(KERN_INFO "Disabling BULK_REMOVE firmware feature");
617 			powerpc_firmware_features &= ~FW_FEATURE_BULK_REMOVE;
618 	}
619 	return 1;
620 }
621 
622 __setup("bulk_remove=", disable_bulk_remove);
623 
624 #define HPT_RESIZE_TIMEOUT	10000 /* ms */
625 
626 struct hpt_resize_state {
627 	unsigned long shift;
628 	int commit_rc;
629 };
630 
pseries_lpar_resize_hpt_commit(void * data)631 static int pseries_lpar_resize_hpt_commit(void *data)
632 {
633 	struct hpt_resize_state *state = data;
634 
635 	state->commit_rc = plpar_resize_hpt_commit(0, state->shift);
636 	if (state->commit_rc != H_SUCCESS)
637 		return -EIO;
638 
639 	/* Hypervisor has transitioned the HTAB, update our globals */
640 	ppc64_pft_size = state->shift;
641 	htab_size_bytes = 1UL << ppc64_pft_size;
642 	htab_hash_mask = (htab_size_bytes >> 7) - 1;
643 
644 	return 0;
645 }
646 
647 /*
648  * Must be called in process context. The caller must hold the
649  * cpus_lock.
650  */
pseries_lpar_resize_hpt(unsigned long shift)651 static int pseries_lpar_resize_hpt(unsigned long shift)
652 {
653 	struct hpt_resize_state state = {
654 		.shift = shift,
655 		.commit_rc = H_FUNCTION,
656 	};
657 	unsigned int delay, total_delay = 0;
658 	int rc;
659 	ktime_t t0, t1, t2;
660 
661 	might_sleep();
662 
663 	if (!firmware_has_feature(FW_FEATURE_HPT_RESIZE))
664 		return -ENODEV;
665 
666 	printk(KERN_INFO "lpar: Attempting to resize HPT to shift %lu\n",
667 	       shift);
668 
669 	t0 = ktime_get();
670 
671 	rc = plpar_resize_hpt_prepare(0, shift);
672 	while (H_IS_LONG_BUSY(rc)) {
673 		delay = get_longbusy_msecs(rc);
674 		total_delay += delay;
675 		if (total_delay > HPT_RESIZE_TIMEOUT) {
676 			/* prepare with shift==0 cancels an in-progress resize */
677 			rc = plpar_resize_hpt_prepare(0, 0);
678 			if (rc != H_SUCCESS)
679 				printk(KERN_WARNING
680 				       "lpar: Unexpected error %d cancelling timed out HPT resize\n",
681 				       rc);
682 			return -ETIMEDOUT;
683 		}
684 		msleep(delay);
685 		rc = plpar_resize_hpt_prepare(0, shift);
686 	};
687 
688 	switch (rc) {
689 	case H_SUCCESS:
690 		/* Continue on */
691 		break;
692 
693 	case H_PARAMETER:
694 		return -EINVAL;
695 	case H_RESOURCE:
696 		return -EPERM;
697 	default:
698 		printk(KERN_WARNING
699 		       "lpar: Unexpected error %d from H_RESIZE_HPT_PREPARE\n",
700 		       rc);
701 		return -EIO;
702 	}
703 
704 	t1 = ktime_get();
705 
706 	rc = stop_machine_cpuslocked(pseries_lpar_resize_hpt_commit,
707 				     &state, NULL);
708 
709 	t2 = ktime_get();
710 
711 	if (rc != 0) {
712 		switch (state.commit_rc) {
713 		case H_PTEG_FULL:
714 			printk(KERN_WARNING
715 			       "lpar: Hash collision while resizing HPT\n");
716 			return -ENOSPC;
717 
718 		default:
719 			printk(KERN_WARNING
720 			       "lpar: Unexpected error %d from H_RESIZE_HPT_COMMIT\n",
721 			       state.commit_rc);
722 			return -EIO;
723 		};
724 	}
725 
726 	printk(KERN_INFO
727 	       "lpar: HPT resize to shift %lu complete (%lld ms / %lld ms)\n",
728 	       shift, (long long) ktime_ms_delta(t1, t0),
729 	       (long long) ktime_ms_delta(t2, t1));
730 
731 	return 0;
732 }
733 
pseries_lpar_register_process_table(unsigned long base,unsigned long page_size,unsigned long table_size)734 static int pseries_lpar_register_process_table(unsigned long base,
735 			unsigned long page_size, unsigned long table_size)
736 {
737 	long rc;
738 	unsigned long flags = 0;
739 
740 	if (table_size)
741 		flags |= PROC_TABLE_NEW;
742 	if (radix_enabled())
743 		flags |= PROC_TABLE_RADIX | PROC_TABLE_GTSE;
744 	else
745 		flags |= PROC_TABLE_HPT_SLB;
746 	for (;;) {
747 		rc = plpar_hcall_norets(H_REGISTER_PROC_TBL, flags, base,
748 					page_size, table_size);
749 		if (!H_IS_LONG_BUSY(rc))
750 			break;
751 		mdelay(get_longbusy_msecs(rc));
752 	}
753 	if (rc != H_SUCCESS) {
754 		pr_err("Failed to register process table (rc=%ld)\n", rc);
755 		BUG();
756 	}
757 	return rc;
758 }
759 
hpte_init_pseries(void)760 void __init hpte_init_pseries(void)
761 {
762 	mmu_hash_ops.hpte_invalidate	 = pSeries_lpar_hpte_invalidate;
763 	mmu_hash_ops.hpte_updatepp	 = pSeries_lpar_hpte_updatepp;
764 	mmu_hash_ops.hpte_updateboltedpp = pSeries_lpar_hpte_updateboltedpp;
765 	mmu_hash_ops.hpte_insert	 = pSeries_lpar_hpte_insert;
766 	mmu_hash_ops.hpte_remove	 = pSeries_lpar_hpte_remove;
767 	mmu_hash_ops.hpte_removebolted   = pSeries_lpar_hpte_removebolted;
768 	mmu_hash_ops.flush_hash_range	 = pSeries_lpar_flush_hash_range;
769 	mmu_hash_ops.hpte_clear_all      = pseries_hpte_clear_all;
770 	mmu_hash_ops.hugepage_invalidate = pSeries_lpar_hugepage_invalidate;
771 	register_process_table		 = pseries_lpar_register_process_table;
772 
773 	if (firmware_has_feature(FW_FEATURE_HPT_RESIZE))
774 		mmu_hash_ops.resize_hpt = pseries_lpar_resize_hpt;
775 }
776 
radix_init_pseries(void)777 void radix_init_pseries(void)
778 {
779 	pr_info("Using radix MMU under hypervisor\n");
780 	register_process_table = pseries_lpar_register_process_table;
781 }
782 
783 #ifdef CONFIG_PPC_SMLPAR
784 #define CMO_FREE_HINT_DEFAULT 1
785 static int cmo_free_hint_flag = CMO_FREE_HINT_DEFAULT;
786 
cmo_free_hint(char * str)787 static int __init cmo_free_hint(char *str)
788 {
789 	char *parm;
790 	parm = strstrip(str);
791 
792 	if (strcasecmp(parm, "no") == 0 || strcasecmp(parm, "off") == 0) {
793 		printk(KERN_INFO "cmo_free_hint: CMO free page hinting is not active.\n");
794 		cmo_free_hint_flag = 0;
795 		return 1;
796 	}
797 
798 	cmo_free_hint_flag = 1;
799 	printk(KERN_INFO "cmo_free_hint: CMO free page hinting is active.\n");
800 
801 	if (strcasecmp(parm, "yes") == 0 || strcasecmp(parm, "on") == 0)
802 		return 1;
803 
804 	return 0;
805 }
806 
807 __setup("cmo_free_hint=", cmo_free_hint);
808 
pSeries_set_page_state(struct page * page,int order,unsigned long state)809 static void pSeries_set_page_state(struct page *page, int order,
810 				   unsigned long state)
811 {
812 	int i, j;
813 	unsigned long cmo_page_sz, addr;
814 
815 	cmo_page_sz = cmo_get_page_size();
816 	addr = __pa((unsigned long)page_address(page));
817 
818 	for (i = 0; i < (1 << order); i++, addr += PAGE_SIZE) {
819 		for (j = 0; j < PAGE_SIZE; j += cmo_page_sz)
820 			plpar_hcall_norets(H_PAGE_INIT, state, addr + j, 0);
821 	}
822 }
823 
arch_free_page(struct page * page,int order)824 void arch_free_page(struct page *page, int order)
825 {
826 	if (radix_enabled())
827 		return;
828 	if (!cmo_free_hint_flag || !firmware_has_feature(FW_FEATURE_CMO))
829 		return;
830 
831 	pSeries_set_page_state(page, order, H_PAGE_SET_UNUSED);
832 }
833 EXPORT_SYMBOL(arch_free_page);
834 
835 #endif /* CONFIG_PPC_SMLPAR */
836 #endif /* CONFIG_PPC_STD_MMU_64 */
837 
838 #ifdef CONFIG_TRACEPOINTS
839 #ifdef HAVE_JUMP_LABEL
840 struct static_key hcall_tracepoint_key = STATIC_KEY_INIT;
841 
hcall_tracepoint_regfunc(void)842 int hcall_tracepoint_regfunc(void)
843 {
844 	static_key_slow_inc(&hcall_tracepoint_key);
845 	return 0;
846 }
847 
hcall_tracepoint_unregfunc(void)848 void hcall_tracepoint_unregfunc(void)
849 {
850 	static_key_slow_dec(&hcall_tracepoint_key);
851 }
852 #else
853 /*
854  * We optimise our hcall path by placing hcall_tracepoint_refcount
855  * directly in the TOC so we can check if the hcall tracepoints are
856  * enabled via a single load.
857  */
858 
859 /* NB: reg/unreg are called while guarded with the tracepoints_mutex */
860 extern long hcall_tracepoint_refcount;
861 
hcall_tracepoint_regfunc(void)862 int hcall_tracepoint_regfunc(void)
863 {
864 	hcall_tracepoint_refcount++;
865 	return 0;
866 }
867 
hcall_tracepoint_unregfunc(void)868 void hcall_tracepoint_unregfunc(void)
869 {
870 	hcall_tracepoint_refcount--;
871 }
872 #endif
873 
874 /*
875  * Since the tracing code might execute hcalls we need to guard against
876  * recursion. One example of this are spinlocks calling H_YIELD on
877  * shared processor partitions.
878  */
879 static DEFINE_PER_CPU(unsigned int, hcall_trace_depth);
880 
881 
__trace_hcall_entry(unsigned long opcode,unsigned long * args)882 void __trace_hcall_entry(unsigned long opcode, unsigned long *args)
883 {
884 	unsigned long flags;
885 	unsigned int *depth;
886 
887 	/*
888 	 * We cannot call tracepoints inside RCU idle regions which
889 	 * means we must not trace H_CEDE.
890 	 */
891 	if (opcode == H_CEDE)
892 		return;
893 
894 	local_irq_save(flags);
895 
896 	depth = this_cpu_ptr(&hcall_trace_depth);
897 
898 	if (*depth)
899 		goto out;
900 
901 	(*depth)++;
902 	preempt_disable();
903 	trace_hcall_entry(opcode, args);
904 	(*depth)--;
905 
906 out:
907 	local_irq_restore(flags);
908 }
909 
__trace_hcall_exit(long opcode,unsigned long retval,unsigned long * retbuf)910 void __trace_hcall_exit(long opcode, unsigned long retval,
911 			unsigned long *retbuf)
912 {
913 	unsigned long flags;
914 	unsigned int *depth;
915 
916 	if (opcode == H_CEDE)
917 		return;
918 
919 	local_irq_save(flags);
920 
921 	depth = this_cpu_ptr(&hcall_trace_depth);
922 
923 	if (*depth)
924 		goto out;
925 
926 	(*depth)++;
927 	trace_hcall_exit(opcode, retval, retbuf);
928 	preempt_enable();
929 	(*depth)--;
930 
931 out:
932 	local_irq_restore(flags);
933 }
934 #endif
935 
936 /**
937  * h_get_mpp
938  * H_GET_MPP hcall returns info in 7 parms
939  */
h_get_mpp(struct hvcall_mpp_data * mpp_data)940 int h_get_mpp(struct hvcall_mpp_data *mpp_data)
941 {
942 	int rc;
943 	unsigned long retbuf[PLPAR_HCALL9_BUFSIZE];
944 
945 	rc = plpar_hcall9(H_GET_MPP, retbuf);
946 
947 	mpp_data->entitled_mem = retbuf[0];
948 	mpp_data->mapped_mem = retbuf[1];
949 
950 	mpp_data->group_num = (retbuf[2] >> 2 * 8) & 0xffff;
951 	mpp_data->pool_num = retbuf[2] & 0xffff;
952 
953 	mpp_data->mem_weight = (retbuf[3] >> 7 * 8) & 0xff;
954 	mpp_data->unallocated_mem_weight = (retbuf[3] >> 6 * 8) & 0xff;
955 	mpp_data->unallocated_entitlement = retbuf[3] & 0xffffffffffffUL;
956 
957 	mpp_data->pool_size = retbuf[4];
958 	mpp_data->loan_request = retbuf[5];
959 	mpp_data->backing_mem = retbuf[6];
960 
961 	return rc;
962 }
963 EXPORT_SYMBOL(h_get_mpp);
964 
h_get_mpp_x(struct hvcall_mpp_x_data * mpp_x_data)965 int h_get_mpp_x(struct hvcall_mpp_x_data *mpp_x_data)
966 {
967 	int rc;
968 	unsigned long retbuf[PLPAR_HCALL9_BUFSIZE] = { 0 };
969 
970 	rc = plpar_hcall9(H_GET_MPP_X, retbuf);
971 
972 	mpp_x_data->coalesced_bytes = retbuf[0];
973 	mpp_x_data->pool_coalesced_bytes = retbuf[1];
974 	mpp_x_data->pool_purr_cycles = retbuf[2];
975 	mpp_x_data->pool_spurr_cycles = retbuf[3];
976 
977 	return rc;
978 }
979 
vsid_unscramble(unsigned long vsid,int ssize)980 static unsigned long vsid_unscramble(unsigned long vsid, int ssize)
981 {
982 	unsigned long protovsid;
983 	unsigned long va_bits = VA_BITS;
984 	unsigned long modinv, vsid_modulus;
985 	unsigned long max_mod_inv, tmp_modinv;
986 
987 	if (!mmu_has_feature(MMU_FTR_68_BIT_VA))
988 		va_bits = 65;
989 
990 	if (ssize == MMU_SEGSIZE_256M) {
991 		modinv = VSID_MULINV_256M;
992 		vsid_modulus = ((1UL << (va_bits - SID_SHIFT)) - 1);
993 	} else {
994 		modinv = VSID_MULINV_1T;
995 		vsid_modulus = ((1UL << (va_bits - SID_SHIFT_1T)) - 1);
996 	}
997 
998 	/*
999 	 * vsid outside our range.
1000 	 */
1001 	if (vsid >= vsid_modulus)
1002 		return 0;
1003 
1004 	/*
1005 	 * If modinv is the modular multiplicate inverse of (x % vsid_modulus)
1006 	 * and vsid = (protovsid * x) % vsid_modulus, then we say:
1007 	 *   protovsid = (vsid * modinv) % vsid_modulus
1008 	 */
1009 
1010 	/* Check if (vsid * modinv) overflow (63 bits) */
1011 	max_mod_inv = 0x7fffffffffffffffull / vsid;
1012 	if (modinv < max_mod_inv)
1013 		return (vsid * modinv) % vsid_modulus;
1014 
1015 	tmp_modinv = modinv/max_mod_inv;
1016 	modinv %= max_mod_inv;
1017 
1018 	protovsid = (((vsid * max_mod_inv) % vsid_modulus) * tmp_modinv) % vsid_modulus;
1019 	protovsid = (protovsid + vsid * modinv) % vsid_modulus;
1020 
1021 	return protovsid;
1022 }
1023 
reserve_vrma_context_id(void)1024 static int __init reserve_vrma_context_id(void)
1025 {
1026 	unsigned long protovsid;
1027 
1028 	/*
1029 	 * Reserve context ids which map to reserved virtual addresses. For now
1030 	 * we only reserve the context id which maps to the VRMA VSID. We ignore
1031 	 * the addresses in "ibm,adjunct-virtual-addresses" because we don't
1032 	 * enable adjunct support via the "ibm,client-architecture-support"
1033 	 * interface.
1034 	 */
1035 	protovsid = vsid_unscramble(VRMA_VSID, MMU_SEGSIZE_1T);
1036 	hash__reserve_context_id(protovsid >> ESID_BITS_1T);
1037 	return 0;
1038 }
1039 machine_device_initcall(pseries, reserve_vrma_context_id);
1040 
1041 #ifdef CONFIG_DEBUG_FS
1042 /* debugfs file interface for vpa data */
vpa_file_read(struct file * filp,char __user * buf,size_t len,loff_t * pos)1043 static ssize_t vpa_file_read(struct file *filp, char __user *buf, size_t len,
1044 			      loff_t *pos)
1045 {
1046 	int cpu = (long)filp->private_data;
1047 	struct lppaca *lppaca = &lppaca_of(cpu);
1048 
1049 	return simple_read_from_buffer(buf, len, pos, lppaca,
1050 				sizeof(struct lppaca));
1051 }
1052 
1053 static const struct file_operations vpa_fops = {
1054 	.open		= simple_open,
1055 	.read		= vpa_file_read,
1056 	.llseek		= default_llseek,
1057 };
1058 
vpa_debugfs_init(void)1059 static int __init vpa_debugfs_init(void)
1060 {
1061 	char name[16];
1062 	long i;
1063 	static struct dentry *vpa_dir;
1064 
1065 	if (!firmware_has_feature(FW_FEATURE_SPLPAR))
1066 		return 0;
1067 
1068 	vpa_dir = debugfs_create_dir("vpa", powerpc_debugfs_root);
1069 	if (!vpa_dir) {
1070 		pr_warn("%s: can't create vpa root dir\n", __func__);
1071 		return -ENOMEM;
1072 	}
1073 
1074 	/* set up the per-cpu vpa file*/
1075 	for_each_possible_cpu(i) {
1076 		struct dentry *d;
1077 
1078 		sprintf(name, "cpu-%ld", i);
1079 
1080 		d = debugfs_create_file(name, 0400, vpa_dir, (void *)i,
1081 					&vpa_fops);
1082 		if (!d) {
1083 			pr_warn("%s: can't create per-cpu vpa file\n",
1084 					__func__);
1085 			return -ENOMEM;
1086 		}
1087 	}
1088 
1089 	return 0;
1090 }
1091 machine_arch_initcall(pseries, vpa_debugfs_init);
1092 #endif /* CONFIG_DEBUG_FS */
1093