priv.c 26.8 KB
Newer Older
1
/*
2
 * handling privileged instructions
3
 *
4
 * Copyright IBM Corp. 2008, 2013
5 6 7 8 9 10 11 12 13 14
 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License (version 2 only)
 * as published by the Free Software Foundation.
 *
 *    Author(s): Carsten Otte <cotte@de.ibm.com>
 *               Christian Borntraeger <borntraeger@de.ibm.com>
 */

#include <linux/kvm.h>
15
#include <linux/gfp.h>
16
#include <linux/errno.h>
17
#include <linux/compat.h>
18
#include <asm/asm-offsets.h>
19
#include <asm/facility.h>
20 21 22 23
#include <asm/current.h>
#include <asm/debug.h>
#include <asm/ebcdic.h>
#include <asm/sysinfo.h>
24 25 26
#include <asm/pgtable.h>
#include <asm/pgalloc.h>
#include <asm/io.h>
27 28
#include <asm/ptrace.h>
#include <asm/compat.h>
29 30
#include "gaccess.h"
#include "kvm-s390.h"
31
#include "trace.h"
32

33 34 35 36 37
/* Handle SCK (SET CLOCK) interception */
static int handle_set_clock(struct kvm_vcpu *vcpu)
{
	struct kvm_vcpu *cpup;
	s64 hostclk, val;
38
	int i, rc;
39 40 41 42 43 44 45 46
	u64 op2;

	if (vcpu->arch.sie_block->gpsw.mask & PSW_MASK_PSTATE)
		return kvm_s390_inject_program_int(vcpu, PGM_PRIVILEGED_OP);

	op2 = kvm_s390_get_base_disp_s(vcpu);
	if (op2 & 7)	/* Operand must be on a doubleword boundary */
		return kvm_s390_inject_program_int(vcpu, PGM_SPECIFICATION);
47 48 49
	rc = read_guest(vcpu, op2, &val, sizeof(val));
	if (rc)
		return kvm_s390_inject_prog_cond(vcpu, rc);
50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65

	if (store_tod_clock(&hostclk)) {
		kvm_s390_set_psw_cc(vcpu, 3);
		return 0;
	}
	val = (val - hostclk) & ~0x3fUL;

	mutex_lock(&vcpu->kvm->lock);
	kvm_for_each_vcpu(i, cpup, vcpu->kvm)
		cpup->arch.sie_block->epoch = val;
	mutex_unlock(&vcpu->kvm->lock);

	kvm_s390_set_psw_cc(vcpu, 0);
	return 0;
}

66 67 68
static int handle_set_prefix(struct kvm_vcpu *vcpu)
{
	u64 operand2;
69 70
	u32 address;
	int rc;
71 72 73

	vcpu->stat.instruction_spx++;

74 75 76
	if (vcpu->arch.sie_block->gpsw.mask & PSW_MASK_PSTATE)
		return kvm_s390_inject_program_int(vcpu, PGM_PRIVILEGED_OP);

77
	operand2 = kvm_s390_get_base_disp_s(vcpu);
78 79

	/* must be word boundary */
80 81
	if (operand2 & 3)
		return kvm_s390_inject_program_int(vcpu, PGM_SPECIFICATION);
82 83

	/* get the value */
84 85 86 87 88 89 90 91 92 93 94 95
	rc = read_guest(vcpu, operand2, &address, sizeof(address));
	if (rc)
		return kvm_s390_inject_prog_cond(vcpu, rc);

	address &= 0x7fffe000u;

	/*
	 * Make sure the new value is valid memory. We only need to check the
	 * first page, since address is 8k aligned and memory pieces are always
	 * at least 1MB aligned and have at least a size of 1MB.
	 */
	if (kvm_is_error_gpa(vcpu->kvm, address))
96
		return kvm_s390_inject_program_int(vcpu, PGM_ADDRESSING);
97

98
	kvm_s390_set_prefix(vcpu, address);
99 100

	VCPU_EVENT(vcpu, 5, "setting prefix to %x", address);
101
	trace_kvm_s390_handle_prefix(vcpu, 1, address);
102 103 104 105 106 107 108
	return 0;
}

static int handle_store_prefix(struct kvm_vcpu *vcpu)
{
	u64 operand2;
	u32 address;
109
	int rc;
110 111

	vcpu->stat.instruction_stpx++;
112

113 114 115
	if (vcpu->arch.sie_block->gpsw.mask & PSW_MASK_PSTATE)
		return kvm_s390_inject_program_int(vcpu, PGM_PRIVILEGED_OP);

116
	operand2 = kvm_s390_get_base_disp_s(vcpu);
117 118

	/* must be word boundary */
119 120
	if (operand2 & 3)
		return kvm_s390_inject_program_int(vcpu, PGM_SPECIFICATION);
121

122
	address = kvm_s390_get_prefix(vcpu);
123 124

	/* get the value */
125 126 127
	rc = write_guest(vcpu, operand2, &address, sizeof(address));
	if (rc)
		return kvm_s390_inject_prog_cond(vcpu, rc);
128 129

	VCPU_EVENT(vcpu, 5, "storing prefix to %x", address);
130
	trace_kvm_s390_handle_prefix(vcpu, 0, address);
131 132 133 134 135
	return 0;
}

static int handle_store_cpu_address(struct kvm_vcpu *vcpu)
{
136 137 138
	u16 vcpu_id = vcpu->vcpu_id;
	u64 ga;
	int rc;
139 140

	vcpu->stat.instruction_stap++;
141

142 143 144
	if (vcpu->arch.sie_block->gpsw.mask & PSW_MASK_PSTATE)
		return kvm_s390_inject_program_int(vcpu, PGM_PRIVILEGED_OP);

145
	ga = kvm_s390_get_base_disp_s(vcpu);
146

147
	if (ga & 1)
148
		return kvm_s390_inject_program_int(vcpu, PGM_SPECIFICATION);
149

150 151 152
	rc = write_guest(vcpu, ga, &vcpu_id, sizeof(vcpu_id));
	if (rc)
		return kvm_s390_inject_prog_cond(vcpu, rc);
153

154 155
	VCPU_EVENT(vcpu, 5, "storing cpu address to %llx", ga);
	trace_kvm_s390_handle_stap(vcpu, ga);
156 157 158
	return 0;
}

159
static int __skey_check_enable(struct kvm_vcpu *vcpu)
160
{
161
	int rc = 0;
162
	if (!(vcpu->arch.sie_block->ictl & (ICTL_ISKE | ICTL_SSKE | ICTL_RRBE)))
163
		return rc;
164

165
	rc = s390_enable_skey();
166 167
	trace_kvm_s390_skey_related_inst(vcpu);
	vcpu->arch.sie_block->ictl &= ~(ICTL_ISKE | ICTL_SSKE | ICTL_RRBE);
168
	return rc;
169 170 171
}


172 173
static int handle_skey(struct kvm_vcpu *vcpu)
{
174
	int rc = __skey_check_enable(vcpu);
175

176 177
	if (rc)
		return rc;
178
	vcpu->stat.instruction_storage_key++;
179 180 181 182

	if (vcpu->arch.sie_block->gpsw.mask & PSW_MASK_PSTATE)
		return kvm_s390_inject_program_int(vcpu, PGM_PRIVILEGED_OP);

183
	kvm_s390_rewind_psw(vcpu, 4);
184 185 186 187
	VCPU_EVENT(vcpu, 4, "%s", "retrying storage key operation");
	return 0;
}

188 189 190
static int handle_ipte_interlock(struct kvm_vcpu *vcpu)
{
	vcpu->stat.instruction_ipte_interlock++;
191
	if (psw_bits(vcpu->arch.sie_block->gpsw).p)
192 193
		return kvm_s390_inject_program_int(vcpu, PGM_PRIVILEGED_OP);
	wait_event(vcpu->kvm->arch.ipte_wq, !ipte_lock_held(vcpu));
194
	kvm_s390_rewind_psw(vcpu, 4);
195 196 197 198
	VCPU_EVENT(vcpu, 4, "%s", "retrying ipte interlock operation");
	return 0;
}

T
Thomas Huth 已提交
199 200 201 202 203 204 205 206 207 208
static int handle_test_block(struct kvm_vcpu *vcpu)
{
	gpa_t addr;
	int reg2;

	if (vcpu->arch.sie_block->gpsw.mask & PSW_MASK_PSTATE)
		return kvm_s390_inject_program_int(vcpu, PGM_PRIVILEGED_OP);

	kvm_s390_get_regs_rre(vcpu, NULL, &reg2);
	addr = vcpu->run->s.regs.gprs[reg2] & PAGE_MASK;
209 210 211
	addr = kvm_s390_logical_to_effective(vcpu, addr);
	if (kvm_s390_check_low_addr_protection(vcpu, addr))
		return kvm_s390_inject_prog_irq(vcpu, &vcpu->arch.pgm);
T
Thomas Huth 已提交
212 213
	addr = kvm_s390_real_to_abs(vcpu, addr);

214
	if (kvm_is_error_gpa(vcpu->kvm, addr))
T
Thomas Huth 已提交
215 216 217 218 219
		return kvm_s390_inject_program_int(vcpu, PGM_ADDRESSING);
	/*
	 * We don't expect errors on modern systems, and do not care
	 * about storage keys (yet), so let's just clear the page.
	 */
220
	if (kvm_clear_guest(vcpu->kvm, addr, PAGE_SIZE))
T
Thomas Huth 已提交
221 222 223 224 225 226
		return -EFAULT;
	kvm_s390_set_psw_cc(vcpu, 0);
	vcpu->run->s.regs.gprs[0] = 0;
	return 0;
}

227
static int handle_tpi(struct kvm_vcpu *vcpu)
228
{
229
	struct kvm_s390_interrupt_info *inti;
H
Heiko Carstens 已提交
230 231
	unsigned long len;
	u32 tpi_data[3];
232
	int rc;
233
	u64 addr;
234 235

	addr = kvm_s390_get_base_disp_s(vcpu);
236 237
	if (addr & 3)
		return kvm_s390_inject_program_int(vcpu, PGM_SPECIFICATION);
238

239
	inti = kvm_s390_get_io_int(vcpu->kvm, vcpu->arch.sie_block->gcr[6], 0);
240 241 242 243 244
	if (!inti) {
		kvm_s390_set_psw_cc(vcpu, 0);
		return 0;
	}

H
Heiko Carstens 已提交
245 246 247
	tpi_data[0] = inti->io.subchannel_id << 16 | inti->io.subchannel_nr;
	tpi_data[1] = inti->io.io_int_parm;
	tpi_data[2] = inti->io.io_int_word;
248 249 250 251 252
	if (addr) {
		/*
		 * Store the two-word I/O interruption code into the
		 * provided area.
		 */
H
Heiko Carstens 已提交
253 254
		len = sizeof(tpi_data) - 4;
		rc = write_guest(vcpu, addr, &tpi_data, len);
255 256 257 258
		if (rc) {
			rc = kvm_s390_inject_prog_cond(vcpu, rc);
			goto reinject_interrupt;
		}
259 260 261 262 263
	} else {
		/*
		 * Store the three-word I/O interruption code into
		 * the appropriate lowcore area.
		 */
H
Heiko Carstens 已提交
264
		len = sizeof(tpi_data);
265 266
		if (write_guest_lc(vcpu, __LC_SUBCHANNEL_ID, &tpi_data, len)) {
			/* failed writes to the low core are not recoverable */
H
Heiko Carstens 已提交
267
			rc = -EFAULT;
268 269
			goto reinject_interrupt;
		}
270
	}
271 272 273 274 275 276

	/* irq was successfully handed to the guest */
	kfree(inti);
	kvm_s390_set_psw_cc(vcpu, 1);
	return 0;
reinject_interrupt:
277 278 279 280 281
	/*
	 * If we encounter a problem storing the interruption code, the
	 * instruction is suppressed from the guest's view: reinject the
	 * interrupt.
	 */
282 283
	kvm_s390_reinject_io_int(vcpu->kvm, inti);
	/* don't set the cc, a pgm irq was injected or we drop to user space */
H
Heiko Carstens 已提交
284
	return rc ? -EFAULT : 0;
285 286
}

287 288 289 290 291 292 293 294 295 296 297 298 299 300 301 302 303 304 305 306 307 308 309 310 311 312 313 314 315 316 317 318
static int handle_tsch(struct kvm_vcpu *vcpu)
{
	struct kvm_s390_interrupt_info *inti;

	inti = kvm_s390_get_io_int(vcpu->kvm, 0,
				   vcpu->run->s.regs.gprs[1]);

	/*
	 * Prepare exit to userspace.
	 * We indicate whether we dequeued a pending I/O interrupt
	 * so that userspace can re-inject it if the instruction gets
	 * a program check. While this may re-order the pending I/O
	 * interrupts, this is no problem since the priority is kept
	 * intact.
	 */
	vcpu->run->exit_reason = KVM_EXIT_S390_TSCH;
	vcpu->run->s390_tsch.dequeued = !!inti;
	if (inti) {
		vcpu->run->s390_tsch.subchannel_id = inti->io.subchannel_id;
		vcpu->run->s390_tsch.subchannel_nr = inti->io.subchannel_nr;
		vcpu->run->s390_tsch.io_int_parm = inti->io.io_int_parm;
		vcpu->run->s390_tsch.io_int_word = inti->io.io_int_word;
	}
	vcpu->run->s390_tsch.ipb = vcpu->arch.sie_block->ipb;
	kfree(inti);
	return -EREMOTE;
}

static int handle_io_inst(struct kvm_vcpu *vcpu)
{
	VCPU_EVENT(vcpu, 4, "%s", "I/O instruction");

319 320 321
	if (vcpu->arch.sie_block->gpsw.mask & PSW_MASK_PSTATE)
		return kvm_s390_inject_program_int(vcpu, PGM_PRIVILEGED_OP);

322 323 324 325 326 327 328 329 330 331 332 333 334
	if (vcpu->kvm->arch.css_support) {
		/*
		 * Most I/O instructions will be handled by userspace.
		 * Exceptions are tpi and the interrupt portion of tsch.
		 */
		if (vcpu->arch.sie_block->ipa == 0xb236)
			return handle_tpi(vcpu);
		if (vcpu->arch.sie_block->ipa == 0xb235)
			return handle_tsch(vcpu);
		/* Handle in userspace. */
		return -EOPNOTSUPP;
	} else {
		/*
335
		 * Set condition code 3 to stop the guest from issuing channel
336 337
		 * I/O instructions.
		 */
338
		kvm_s390_set_psw_cc(vcpu, 3);
339 340 341 342
		return 0;
	}
}

343 344 345
static int handle_stfl(struct kvm_vcpu *vcpu)
{
	int rc;
346
	unsigned int fac;
347 348

	vcpu->stat.instruction_stfl++;
349 350 351 352

	if (vcpu->arch.sie_block->gpsw.mask & PSW_MASK_PSTATE)
		return kvm_s390_inject_program_int(vcpu, PGM_PRIVILEGED_OP);

353 354 355 356
	/*
	 * We need to shift the lower 32 facility bits (bit 0-31) from a u64
	 * into a u32 memory representation. They will remain bits 0-31.
	 */
357
	fac = *vcpu->kvm->arch.model.fac->list >> 32;
358
	rc = write_guest_lc(vcpu, offsetof(struct _lowcore, stfl_fac_list),
359
			    &fac, sizeof(fac));
360
	if (rc)
361
		return rc;
362 363
	VCPU_EVENT(vcpu, 5, "store facility list value %x", fac);
	trace_kvm_s390_handle_stfl(vcpu, fac);
364 365 366
	return 0;
}

367 368
#define PSW_MASK_ADDR_MODE (PSW_MASK_EA | PSW_MASK_BA)
#define PSW_MASK_UNASSIGNED 0xb80800fe7fffffffUL
369
#define PSW_ADDR_24 0x0000000000ffffffUL
370 371
#define PSW_ADDR_31 0x000000007fffffffUL

T
Thomas Huth 已提交
372 373
int is_valid_psw(psw_t *psw)
{
374 375 376 377 378 379 380 381 382 383
	if (psw->mask & PSW_MASK_UNASSIGNED)
		return 0;
	if ((psw->mask & PSW_MASK_ADDR_MODE) == PSW_MASK_BA) {
		if (psw->addr & ~PSW_ADDR_31)
			return 0;
	}
	if (!(psw->mask & PSW_MASK_ADDR_MODE) && (psw->addr & ~PSW_ADDR_24))
		return 0;
	if ((psw->mask & PSW_MASK_ADDR_MODE) ==  PSW_MASK_EA)
		return 0;
T
Thomas Huth 已提交
384 385
	if (psw->addr & 1)
		return 0;
386 387 388
	return 1;
}

389 390
int kvm_s390_handle_lpsw(struct kvm_vcpu *vcpu)
{
391
	psw_t *gpsw = &vcpu->arch.sie_block->gpsw;
392
	psw_compat_t new_psw;
393
	u64 addr;
394
	int rc;
395

396
	if (gpsw->mask & PSW_MASK_PSTATE)
397 398
		return kvm_s390_inject_program_int(vcpu, PGM_PRIVILEGED_OP);

399
	addr = kvm_s390_get_base_disp_s(vcpu);
400 401
	if (addr & 7)
		return kvm_s390_inject_program_int(vcpu, PGM_SPECIFICATION);
402 403 404 405

	rc = read_guest(vcpu, addr, &new_psw, sizeof(new_psw));
	if (rc)
		return kvm_s390_inject_prog_cond(vcpu, rc);
406 407
	if (!(new_psw.mask & PSW32_MASK_BASE))
		return kvm_s390_inject_program_int(vcpu, PGM_SPECIFICATION);
408 409 410 411
	gpsw->mask = (new_psw.mask & ~PSW32_MASK_BASE) << 32;
	gpsw->mask |= new_psw.addr & PSW32_ADDR_AMODE;
	gpsw->addr = new_psw.addr & ~PSW32_ADDR_AMODE;
	if (!is_valid_psw(gpsw))
412
		return kvm_s390_inject_program_int(vcpu, PGM_SPECIFICATION);
413 414 415 416 417 418
	return 0;
}

static int handle_lpswe(struct kvm_vcpu *vcpu)
{
	psw_t new_psw;
419
	u64 addr;
420
	int rc;
421

422 423 424
	if (vcpu->arch.sie_block->gpsw.mask & PSW_MASK_PSTATE)
		return kvm_s390_inject_program_int(vcpu, PGM_PRIVILEGED_OP);

425
	addr = kvm_s390_get_base_disp_s(vcpu);
426 427
	if (addr & 7)
		return kvm_s390_inject_program_int(vcpu, PGM_SPECIFICATION);
428 429 430
	rc = read_guest(vcpu, addr, &new_psw, sizeof(new_psw));
	if (rc)
		return kvm_s390_inject_prog_cond(vcpu, rc);
431 432
	vcpu->arch.sie_block->gpsw = new_psw;
	if (!is_valid_psw(&vcpu->arch.sie_block->gpsw))
433
		return kvm_s390_inject_program_int(vcpu, PGM_SPECIFICATION);
434 435 436
	return 0;
}

437 438
static int handle_stidp(struct kvm_vcpu *vcpu)
{
439
	u64 stidp_data = vcpu->arch.stidp_data;
440
	u64 operand2;
441
	int rc;
442 443

	vcpu->stat.instruction_stidp++;
444

445 446 447
	if (vcpu->arch.sie_block->gpsw.mask & PSW_MASK_PSTATE)
		return kvm_s390_inject_program_int(vcpu, PGM_PRIVILEGED_OP);

448
	operand2 = kvm_s390_get_base_disp_s(vcpu);
449

450 451
	if (operand2 & 7)
		return kvm_s390_inject_program_int(vcpu, PGM_SPECIFICATION);
452

453 454 455
	rc = write_guest(vcpu, operand2, &stidp_data, sizeof(stidp_data));
	if (rc)
		return kvm_s390_inject_prog_cond(vcpu, rc);
456 457 458 459 460 461 462 463 464 465

	VCPU_EVENT(vcpu, 5, "%s", "store cpu id");
	return 0;
}

static void handle_stsi_3_2_2(struct kvm_vcpu *vcpu, struct sysinfo_3_2_2 *mem)
{
	int cpus = 0;
	int n;

466
	cpus = atomic_read(&vcpu->kvm->online_vcpus);
467 468

	/* deal with other level 3 hypervisors */
469
	if (stsi(mem, 3, 2, 2))
470 471 472 473 474 475
		mem->count = 0;
	if (mem->count < 8)
		mem->count++;
	for (n = mem->count - 1; n > 0 ; n--)
		memcpy(&mem->vm[n], &mem->vm[n - 1], sizeof(mem->vm[0]));

476
	memset(&mem->vm[0], 0, sizeof(mem->vm[0]));
477 478 479 480 481 482 483 484 485 486 487 488 489
	mem->vm[0].cpus_total = cpus;
	mem->vm[0].cpus_configured = cpus;
	mem->vm[0].cpus_standby = 0;
	mem->vm[0].cpus_reserved = 0;
	mem->vm[0].caf = 1000;
	memcpy(mem->vm[0].name, "KVMguest", 8);
	ASCEBC(mem->vm[0].name, 8);
	memcpy(mem->vm[0].cpi, "KVM/Linux       ", 16);
	ASCEBC(mem->vm[0].cpi, 16);
}

static int handle_stsi(struct kvm_vcpu *vcpu)
{
490 491 492
	int fc = (vcpu->run->s.regs.gprs[0] & 0xf0000000) >> 28;
	int sel1 = vcpu->run->s.regs.gprs[0] & 0xff;
	int sel2 = vcpu->run->s.regs.gprs[1] & 0xffff;
493
	unsigned long mem = 0;
494
	u64 operand2;
495
	int rc = 0;
496 497 498 499

	vcpu->stat.instruction_stsi++;
	VCPU_EVENT(vcpu, 4, "stsi: fc: %x sel1: %x sel2: %x", fc, sel1, sel2);

500 501 502
	if (vcpu->arch.sie_block->gpsw.mask & PSW_MASK_PSTATE)
		return kvm_s390_inject_program_int(vcpu, PGM_PRIVILEGED_OP);

503
	if (fc > 3) {
504
		kvm_s390_set_psw_cc(vcpu, 3);
505 506
		return 0;
	}
507

508 509
	if (vcpu->run->s.regs.gprs[0] & 0x0fffff00
	    || vcpu->run->s.regs.gprs[1] & 0xffff0000)
510 511
		return kvm_s390_inject_program_int(vcpu, PGM_SPECIFICATION);

512
	if (fc == 0) {
513
		vcpu->run->s.regs.gprs[0] = 3 << 28;
514
		kvm_s390_set_psw_cc(vcpu, 0);
515
		return 0;
516 517 518 519 520 521 522 523
	}

	operand2 = kvm_s390_get_base_disp_s(vcpu);

	if (operand2 & 0xfff)
		return kvm_s390_inject_program_int(vcpu, PGM_SPECIFICATION);

	switch (fc) {
524 525 526 527
	case 1: /* same handling for 1 and 2 */
	case 2:
		mem = get_zeroed_page(GFP_KERNEL);
		if (!mem)
528
			goto out_no_data;
529
		if (stsi((void *) mem, fc, sel1, sel2))
530
			goto out_no_data;
531 532 533
		break;
	case 3:
		if (sel1 != 2 || sel2 != 2)
534
			goto out_no_data;
535 536
		mem = get_zeroed_page(GFP_KERNEL);
		if (!mem)
537
			goto out_no_data;
538 539 540 541
		handle_stsi_3_2_2(vcpu, (void *) mem);
		break;
	}

542 543 544 545
	rc = write_guest(vcpu, operand2, (void *)mem, PAGE_SIZE);
	if (rc) {
		rc = kvm_s390_inject_prog_cond(vcpu, rc);
		goto out;
546
	}
547
	trace_kvm_s390_handle_stsi(vcpu, fc, sel1, sel2, operand2);
548
	free_page(mem);
549
	kvm_s390_set_psw_cc(vcpu, 0);
550
	vcpu->run->s.regs.gprs[0] = 0;
551
	return 0;
552
out_no_data:
553
	kvm_s390_set_psw_cc(vcpu, 3);
554
out:
555
	free_page(mem);
556
	return rc;
557 558
}

559
static const intercept_handler_t b2_handlers[256] = {
560
	[0x02] = handle_stidp,
561
	[0x04] = handle_set_clock,
562 563 564
	[0x10] = handle_set_prefix,
	[0x11] = handle_store_prefix,
	[0x12] = handle_store_cpu_address,
565
	[0x21] = handle_ipte_interlock,
566 567 568
	[0x29] = handle_skey,
	[0x2a] = handle_skey,
	[0x2b] = handle_skey,
T
Thomas Huth 已提交
569
	[0x2c] = handle_test_block,
570 571 572 573 574 575 576 577 578 579 580 581 582
	[0x30] = handle_io_inst,
	[0x31] = handle_io_inst,
	[0x32] = handle_io_inst,
	[0x33] = handle_io_inst,
	[0x34] = handle_io_inst,
	[0x35] = handle_io_inst,
	[0x36] = handle_io_inst,
	[0x37] = handle_io_inst,
	[0x38] = handle_io_inst,
	[0x39] = handle_io_inst,
	[0x3a] = handle_io_inst,
	[0x3b] = handle_io_inst,
	[0x3c] = handle_io_inst,
583
	[0x50] = handle_ipte_interlock,
584 585 586
	[0x5f] = handle_io_inst,
	[0x74] = handle_io_inst,
	[0x76] = handle_io_inst,
587 588
	[0x7d] = handle_stsi,
	[0xb1] = handle_stfl,
589
	[0xb2] = handle_lpswe,
590 591
};

592
int kvm_s390_handle_b2(struct kvm_vcpu *vcpu)
593 594 595
{
	intercept_handler_t handler;

596
	/*
597 598 599 600
	 * A lot of B2 instructions are priviledged. Here we check for
	 * the privileged ones, that we can handle in the kernel.
	 * Anything else goes to userspace.
	 */
601
	handler = b2_handlers[vcpu->arch.sie_block->ipa & 0x00ff];
602 603 604
	if (handler)
		return handler(vcpu);

605
	return -EOPNOTSUPP;
606
}
607

608 609 610 611
static int handle_epsw(struct kvm_vcpu *vcpu)
{
	int reg1, reg2;

612
	kvm_s390_get_regs_rre(vcpu, &reg1, &reg2);
613 614

	/* This basically extracts the mask half of the psw. */
615
	vcpu->run->s.regs.gprs[reg1] &= 0xffffffff00000000UL;
616 617
	vcpu->run->s.regs.gprs[reg1] |= vcpu->arch.sie_block->gpsw.mask >> 32;
	if (reg2) {
618
		vcpu->run->s.regs.gprs[reg2] &= 0xffffffff00000000UL;
619
		vcpu->run->s.regs.gprs[reg2] |=
620
			vcpu->arch.sie_block->gpsw.mask & 0x00000000ffffffffUL;
621 622 623 624
	}
	return 0;
}

625 626 627 628 629 630 631 632 633 634 635 636 637 638 639 640 641 642 643 644 645 646 647
#define PFMF_RESERVED   0xfffc0101UL
#define PFMF_SK         0x00020000UL
#define PFMF_CF         0x00010000UL
#define PFMF_UI         0x00008000UL
#define PFMF_FSC        0x00007000UL
#define PFMF_NQ         0x00000800UL
#define PFMF_MR         0x00000400UL
#define PFMF_MC         0x00000200UL
#define PFMF_KEY        0x000000feUL

static int handle_pfmf(struct kvm_vcpu *vcpu)
{
	int reg1, reg2;
	unsigned long start, end;

	vcpu->stat.instruction_pfmf++;

	kvm_s390_get_regs_rre(vcpu, &reg1, &reg2);

	if (!MACHINE_HAS_PFMF)
		return kvm_s390_inject_program_int(vcpu, PGM_OPERATION);

	if (vcpu->arch.sie_block->gpsw.mask & PSW_MASK_PSTATE)
648
		return kvm_s390_inject_program_int(vcpu, PGM_PRIVILEGED_OP);
649 650 651 652 653

	if (vcpu->run->s.regs.gprs[reg1] & PFMF_RESERVED)
		return kvm_s390_inject_program_int(vcpu, PGM_SPECIFICATION);

	/* Only provide non-quiescing support if the host supports it */
654
	if (vcpu->run->s.regs.gprs[reg1] & PFMF_NQ && !test_facility(14))
655 656 657 658 659 660 661
		return kvm_s390_inject_program_int(vcpu, PGM_SPECIFICATION);

	/* No support for conditional-SSKE */
	if (vcpu->run->s.regs.gprs[reg1] & (PFMF_MR | PFMF_MC))
		return kvm_s390_inject_program_int(vcpu, PGM_SPECIFICATION);

	start = vcpu->run->s.regs.gprs[reg2] & PAGE_MASK;
662
	start = kvm_s390_logical_to_effective(vcpu, start);
T
Thomas Huth 已提交
663

664 665 666 667 668 669 670 671 672 673 674 675 676 677
	switch (vcpu->run->s.regs.gprs[reg1] & PFMF_FSC) {
	case 0x00000000:
		end = (start + (1UL << 12)) & ~((1UL << 12) - 1);
		break;
	case 0x00001000:
		end = (start + (1UL << 20)) & ~((1UL << 20) - 1);
		break;
	/* We dont support EDAT2
	case 0x00002000:
		end = (start + (1UL << 31)) & ~((1UL << 31) - 1);
		break;*/
	default:
		return kvm_s390_inject_program_int(vcpu, PGM_SPECIFICATION);
	}
678 679 680 681 682 683

	if (vcpu->run->s.regs.gprs[reg1] & PFMF_CF) {
		if (kvm_s390_check_low_addr_protection(vcpu, start))
			return kvm_s390_inject_prog_irq(vcpu, &vcpu->arch.pgm);
	}

684
	while (start < end) {
T
Thomas Huth 已提交
685 686 687 688 689 690 691 692 693
		unsigned long useraddr, abs_addr;

		/* Translate guest address to host address */
		if ((vcpu->run->s.regs.gprs[reg1] & PFMF_FSC) == 0)
			abs_addr = kvm_s390_real_to_abs(vcpu, start);
		else
			abs_addr = start;
		useraddr = gfn_to_hva(vcpu->kvm, gpa_to_gfn(abs_addr));
		if (kvm_is_error_hva(useraddr))
694 695 696 697 698 699 700 701
			return kvm_s390_inject_program_int(vcpu, PGM_ADDRESSING);

		if (vcpu->run->s.regs.gprs[reg1] & PFMF_CF) {
			if (clear_user((void __user *)useraddr, PAGE_SIZE))
				return kvm_s390_inject_program_int(vcpu, PGM_ADDRESSING);
		}

		if (vcpu->run->s.regs.gprs[reg1] & PFMF_SK) {
702 703 704 705
			int rc = __skey_check_enable(vcpu);

			if (rc)
				return rc;
706 707 708 709 710 711 712 713 714 715 716 717 718
			if (set_guest_storage_key(current->mm, useraddr,
					vcpu->run->s.regs.gprs[reg1] & PFMF_KEY,
					vcpu->run->s.regs.gprs[reg1] & PFMF_NQ))
				return kvm_s390_inject_program_int(vcpu, PGM_ADDRESSING);
		}

		start += PAGE_SIZE;
	}
	if (vcpu->run->s.regs.gprs[reg1] & PFMF_FSC)
		vcpu->run->s.regs.gprs[reg2] = end;
	return 0;
}

719 720 721 722 723 724 725 726 727 728 729
static int handle_essa(struct kvm_vcpu *vcpu)
{
	/* entries expected to be 1FF */
	int entries = (vcpu->arch.sie_block->cbrlo & ~PAGE_MASK) >> 3;
	unsigned long *cbrlo, cbrle;
	struct gmap *gmap;
	int i;

	VCPU_EVENT(vcpu, 5, "cmma release %d pages", entries);
	gmap = vcpu->arch.gmap;
	vcpu->stat.instruction_essa++;
730
	if (!kvm_s390_cmma_enabled(vcpu->kvm))
731 732 733 734 735 736 737 738 739
		return kvm_s390_inject_program_int(vcpu, PGM_OPERATION);

	if (vcpu->arch.sie_block->gpsw.mask & PSW_MASK_PSTATE)
		return kvm_s390_inject_program_int(vcpu, PGM_PRIVILEGED_OP);

	if (((vcpu->arch.sie_block->ipb & 0xf0000000) >> 28) > 6)
		return kvm_s390_inject_program_int(vcpu, PGM_SPECIFICATION);

	/* Rewind PSW to repeat the ESSA instruction */
740
	kvm_s390_rewind_psw(vcpu, 4);
741 742 743 744 745 746 747 748 749
	vcpu->arch.sie_block->cbrlo &= PAGE_MASK;	/* reset nceo */
	cbrlo = phys_to_virt(vcpu->arch.sie_block->cbrlo);
	down_read(&gmap->mm->mmap_sem);
	for (i = 0; i < entries; ++i) {
		cbrle = cbrlo[i];
		if (unlikely(cbrle & ~PAGE_MASK || cbrle < 2 * PAGE_SIZE))
			/* invalid entry */
			break;
		/* try to free backing */
750
		__gmap_zap(gmap, cbrle);
751 752 753 754 755 756 757
	}
	up_read(&gmap->mm->mmap_sem);
	if (i < entries)
		return kvm_s390_inject_program_int(vcpu, PGM_SPECIFICATION);
	return 0;
}

758
static const intercept_handler_t b9_handlers[256] = {
759
	[0x8a] = handle_ipte_interlock,
760
	[0x8d] = handle_epsw,
761 762
	[0x8e] = handle_ipte_interlock,
	[0x8f] = handle_ipte_interlock,
763
	[0xab] = handle_essa,
764
	[0xaf] = handle_pfmf,
765 766 767 768 769 770 771 772
};

int kvm_s390_handle_b9(struct kvm_vcpu *vcpu)
{
	intercept_handler_t handler;

	/* This is handled just as for the B2 instructions. */
	handler = b9_handlers[vcpu->arch.sie_block->ipa & 0x00ff];
773 774 775
	if (handler)
		return handler(vcpu);

776 777 778
	return -EOPNOTSUPP;
}

779 780 781 782
int kvm_s390_handle_lctl(struct kvm_vcpu *vcpu)
{
	int reg1 = (vcpu->arch.sie_block->ipa & 0x00f0) >> 4;
	int reg3 = vcpu->arch.sie_block->ipa & 0x000f;
783 784
	int reg, rc, nr_regs;
	u32 ctl_array[16];
785
	u64 ga;
786 787 788 789 790 791

	vcpu->stat.instruction_lctl++;

	if (vcpu->arch.sie_block->gpsw.mask & PSW_MASK_PSTATE)
		return kvm_s390_inject_program_int(vcpu, PGM_PRIVILEGED_OP);

792
	ga = kvm_s390_get_base_disp_rs(vcpu);
793

794
	if (ga & 3)
795 796
		return kvm_s390_inject_program_int(vcpu, PGM_SPECIFICATION);

797 798
	VCPU_EVENT(vcpu, 5, "lctl r1:%x, r3:%x, addr:%llx", reg1, reg3, ga);
	trace_kvm_s390_handle_lctl(vcpu, 0, reg1, reg3, ga);
799

800 801 802 803
	nr_regs = ((reg3 - reg1) & 0xf) + 1;
	rc = read_guest(vcpu, ga, ctl_array, nr_regs * sizeof(u32));
	if (rc)
		return kvm_s390_inject_prog_cond(vcpu, rc);
804
	reg = reg1;
805
	nr_regs = 0;
806 807
	do {
		vcpu->arch.sie_block->gcr[reg] &= 0xffffffff00000000ul;
808
		vcpu->arch.sie_block->gcr[reg] |= ctl_array[nr_regs++];
809 810 811 812
		if (reg == reg3)
			break;
		reg = (reg + 1) % 16;
	} while (1);
813
	kvm_make_request(KVM_REQ_TLB_FLUSH, vcpu);
814 815 816
	return 0;
}

817 818 819 820
int kvm_s390_handle_stctl(struct kvm_vcpu *vcpu)
{
	int reg1 = (vcpu->arch.sie_block->ipa & 0x00f0) >> 4;
	int reg3 = vcpu->arch.sie_block->ipa & 0x000f;
821 822
	int reg, rc, nr_regs;
	u32 ctl_array[16];
823 824 825 826 827 828 829 830 831 832 833 834 835 836 837 838
	u64 ga;

	vcpu->stat.instruction_stctl++;

	if (vcpu->arch.sie_block->gpsw.mask & PSW_MASK_PSTATE)
		return kvm_s390_inject_program_int(vcpu, PGM_PRIVILEGED_OP);

	ga = kvm_s390_get_base_disp_rs(vcpu);

	if (ga & 3)
		return kvm_s390_inject_program_int(vcpu, PGM_SPECIFICATION);

	VCPU_EVENT(vcpu, 5, "stctl r1:%x, r3:%x, addr:%llx", reg1, reg3, ga);
	trace_kvm_s390_handle_stctl(vcpu, 0, reg1, reg3, ga);

	reg = reg1;
839
	nr_regs = 0;
840
	do {
841
		ctl_array[nr_regs++] = vcpu->arch.sie_block->gcr[reg];
842 843 844 845
		if (reg == reg3)
			break;
		reg = (reg + 1) % 16;
	} while (1);
846 847
	rc = write_guest(vcpu, ga, ctl_array, nr_regs * sizeof(u32));
	return rc ? kvm_s390_inject_prog_cond(vcpu, rc) : 0;
848 849
}

850 851 852 853
static int handle_lctlg(struct kvm_vcpu *vcpu)
{
	int reg1 = (vcpu->arch.sie_block->ipa & 0x00f0) >> 4;
	int reg3 = vcpu->arch.sie_block->ipa & 0x000f;
854 855 856
	int reg, rc, nr_regs;
	u64 ctl_array[16];
	u64 ga;
857 858 859 860 861 862

	vcpu->stat.instruction_lctlg++;

	if (vcpu->arch.sie_block->gpsw.mask & PSW_MASK_PSTATE)
		return kvm_s390_inject_program_int(vcpu, PGM_PRIVILEGED_OP);

863
	ga = kvm_s390_get_base_disp_rsy(vcpu);
864

865
	if (ga & 7)
866 867
		return kvm_s390_inject_program_int(vcpu, PGM_SPECIFICATION);

868 869
	VCPU_EVENT(vcpu, 5, "lctlg r1:%x, r3:%x, addr:%llx", reg1, reg3, ga);
	trace_kvm_s390_handle_lctl(vcpu, 1, reg1, reg3, ga);
870

871 872 873 874 875 876
	nr_regs = ((reg3 - reg1) & 0xf) + 1;
	rc = read_guest(vcpu, ga, ctl_array, nr_regs * sizeof(u64));
	if (rc)
		return kvm_s390_inject_prog_cond(vcpu, rc);
	reg = reg1;
	nr_regs = 0;
877
	do {
878
		vcpu->arch.sie_block->gcr[reg] = ctl_array[nr_regs++];
879 880 881 882
		if (reg == reg3)
			break;
		reg = (reg + 1) % 16;
	} while (1);
883
	kvm_make_request(KVM_REQ_TLB_FLUSH, vcpu);
884 885 886
	return 0;
}

887 888 889 890
static int handle_stctg(struct kvm_vcpu *vcpu)
{
	int reg1 = (vcpu->arch.sie_block->ipa & 0x00f0) >> 4;
	int reg3 = vcpu->arch.sie_block->ipa & 0x000f;
891 892 893
	int reg, rc, nr_regs;
	u64 ctl_array[16];
	u64 ga;
894 895 896 897 898 899 900 901 902 903 904 905 906 907

	vcpu->stat.instruction_stctg++;

	if (vcpu->arch.sie_block->gpsw.mask & PSW_MASK_PSTATE)
		return kvm_s390_inject_program_int(vcpu, PGM_PRIVILEGED_OP);

	ga = kvm_s390_get_base_disp_rsy(vcpu);

	if (ga & 7)
		return kvm_s390_inject_program_int(vcpu, PGM_SPECIFICATION);

	VCPU_EVENT(vcpu, 5, "stctg r1:%x, r3:%x, addr:%llx", reg1, reg3, ga);
	trace_kvm_s390_handle_stctl(vcpu, 1, reg1, reg3, ga);

908 909
	reg = reg1;
	nr_regs = 0;
910
	do {
911
		ctl_array[nr_regs++] = vcpu->arch.sie_block->gcr[reg];
912 913 914 915
		if (reg == reg3)
			break;
		reg = (reg + 1) % 16;
	} while (1);
916 917
	rc = write_guest(vcpu, ga, ctl_array, nr_regs * sizeof(u64));
	return rc ? kvm_s390_inject_prog_cond(vcpu, rc) : 0;
918 919
}

920
static const intercept_handler_t eb_handlers[256] = {
921
	[0x2f] = handle_lctlg,
922
	[0x25] = handle_stctg,
923 924
};

925
int kvm_s390_handle_eb(struct kvm_vcpu *vcpu)
926 927 928 929 930 931 932 933 934
{
	intercept_handler_t handler;

	handler = eb_handlers[vcpu->arch.sie_block->ipb & 0xff];
	if (handler)
		return handler(vcpu);
	return -EOPNOTSUPP;
}

935 936
static int handle_tprot(struct kvm_vcpu *vcpu)
{
937
	u64 address1, address2;
938 939 940
	unsigned long hva, gpa;
	int ret = 0, cc = 0;
	bool writable;
941 942 943

	vcpu->stat.instruction_tprot++;

944 945 946
	if (vcpu->arch.sie_block->gpsw.mask & PSW_MASK_PSTATE)
		return kvm_s390_inject_program_int(vcpu, PGM_PRIVILEGED_OP);

947 948
	kvm_s390_get_base_disp_sse(vcpu, &address1, &address2);

949 950 951 952 953 954
	/* we only handle the Linux memory detection case:
	 * access key == 0
	 * everything else goes to userspace. */
	if (address2 & 0xf0)
		return -EOPNOTSUPP;
	if (vcpu->arch.sie_block->gpsw.mask & PSW_MASK_DAT)
955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971
		ipte_lock(vcpu);
	ret = guest_translate_address(vcpu, address1, &gpa, 1);
	if (ret == PGM_PROTECTION) {
		/* Write protected? Try again with read-only... */
		cc = 1;
		ret = guest_translate_address(vcpu, address1, &gpa, 0);
	}
	if (ret) {
		if (ret == PGM_ADDRESSING || ret == PGM_TRANSLATION_SPEC) {
			ret = kvm_s390_inject_program_int(vcpu, ret);
		} else if (ret > 0) {
			/* Translation not available */
			kvm_s390_set_psw_cc(vcpu, 3);
			ret = 0;
		}
		goto out_unlock;
	}
972

973 974 975 976 977 978 979 980 981 982 983 984 985
	hva = gfn_to_hva_prot(vcpu->kvm, gpa_to_gfn(gpa), &writable);
	if (kvm_is_error_hva(hva)) {
		ret = kvm_s390_inject_program_int(vcpu, PGM_ADDRESSING);
	} else {
		if (!writable)
			cc = 1;		/* Write not permitted ==> read-only */
		kvm_s390_set_psw_cc(vcpu, cc);
		/* Note: CC2 only occurs for storage keys (not supported yet) */
	}
out_unlock:
	if (vcpu->arch.sie_block->gpsw.mask & PSW_MASK_DAT)
		ipte_unlock(vcpu);
	return ret;
986 987 988 989 990 991 992 993 994 995
}

int kvm_s390_handle_e5(struct kvm_vcpu *vcpu)
{
	/* For e5xx... instructions we only handle TPROT */
	if ((vcpu->arch.sie_block->ipa & 0x00ff) == 0x01)
		return handle_tprot(vcpu);
	return -EOPNOTSUPP;
}

996 997 998 999 1000
static int handle_sckpf(struct kvm_vcpu *vcpu)
{
	u32 value;

	if (vcpu->arch.sie_block->gpsw.mask & PSW_MASK_PSTATE)
1001
		return kvm_s390_inject_program_int(vcpu, PGM_PRIVILEGED_OP);
1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012

	if (vcpu->run->s.regs.gprs[0] & 0x00000000ffff0000)
		return kvm_s390_inject_program_int(vcpu,
						   PGM_SPECIFICATION);

	value = vcpu->run->s.regs.gprs[0] & 0x000000000000ffff;
	vcpu->arch.sie_block->todpr = value;

	return 0;
}

1013
static const intercept_handler_t x01_handlers[256] = {
1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025
	[0x07] = handle_sckpf,
};

int kvm_s390_handle_01(struct kvm_vcpu *vcpu)
{
	intercept_handler_t handler;

	handler = x01_handlers[vcpu->arch.sie_block->ipa & 0x00ff];
	if (handler)
		return handler(vcpu);
	return -EOPNOTSUPP;
}