Merge tag 'v5.1-rc6' into for-5.2/block

Pull in v5.1-rc6 to resolve two conflicts. One is in BFQ, in just a
comment, and is trivial. The other one is a conflict due to a later fix
in the bio multi-page work, and needs a bit more care.

* tag 'v5.1-rc6': (770 commits)
  Linux 5.1-rc6
  block: make sure that bvec length can't be overflow
  block: kill all_q_node in request_queue
  x86/cpu/intel: Lower the "ENERGY_PERF_BIAS: Set to normal" message's log priority
  coredump: fix race condition between mmget_not_zero()/get_task_mm() and core dumping
  mm/kmemleak.c: fix unused-function warning
  init: initialize jump labels before command line option parsing
  kernel/watchdog_hld.c: hard lockup message should end with a newline
  kcov: improve CONFIG_ARCH_HAS_KCOV help text
  mm: fix inactive list balancing between NUMA nodes and cgroups
  mm/hotplug: treat CMA pages as unmovable
  proc: fixup proc-pid-vm test
  proc: fix map_files test on F29
  mm/vmstat.c: fix /proc/vmstat format for CONFIG_DEBUG_TLBFLUSH=y CONFIG_SMP=n
  mm/memory_hotplug: do not unlock after failing to take the device_hotplug_lock
  mm: swapoff: shmem_unuse() stop eviction without igrab()
  mm: swapoff: take notice of completion sooner
  mm: swapoff: remove too limiting SWAP_UNUSE_MAX_TRIES
  mm: swapoff: shmem_find_swap_entries() filter out other types
  slab: store tagged freelist for off-slab slabmgmt
  ...

Signed-off-by: Jens Axboe <axboe@kernel.dk>
This commit is contained in:
Jens Axboe
2019-04-22 09:47:36 -06:00
777 changed files with 8123 additions and 4470 deletions
+13 -4
View File
@@ -146,6 +146,7 @@ static int dimm_fail_cmd_code[ARRAY_SIZE(handle)];
struct nfit_test_sec {
u8 state;
u8 ext_state;
u8 old_state;
u8 passphrase[32];
u8 master_passphrase[32];
u64 overwrite_end_time;
@@ -225,6 +226,8 @@ static struct workqueue_struct *nfit_wq;
static struct gen_pool *nfit_pool;
static const char zero_key[NVDIMM_PASSPHRASE_LEN];
static struct nfit_test *to_nfit_test(struct device *dev)
{
struct platform_device *pdev = to_platform_device(dev);
@@ -1059,8 +1062,7 @@ static int nd_intel_test_cmd_secure_erase(struct nfit_test *t,
struct device *dev = &t->pdev.dev;
struct nfit_test_sec *sec = &dimm_sec_info[dimm];
if (!(sec->state & ND_INTEL_SEC_STATE_ENABLED) ||
(sec->state & ND_INTEL_SEC_STATE_FROZEN)) {
if (sec->state & ND_INTEL_SEC_STATE_FROZEN) {
nd_cmd->status = ND_INTEL_STATUS_INVALID_STATE;
dev_dbg(dev, "secure erase: wrong security state\n");
} else if (memcmp(nd_cmd->passphrase, sec->passphrase,
@@ -1068,6 +1070,12 @@ static int nd_intel_test_cmd_secure_erase(struct nfit_test *t,
nd_cmd->status = ND_INTEL_STATUS_INVALID_PASS;
dev_dbg(dev, "secure erase: wrong passphrase\n");
} else {
if (!(sec->state & ND_INTEL_SEC_STATE_ENABLED)
&& (memcmp(nd_cmd->passphrase, zero_key,
ND_INTEL_PASSPHRASE_SIZE) != 0)) {
dev_dbg(dev, "invalid zero key\n");
return 0;
}
memset(sec->passphrase, 0, ND_INTEL_PASSPHRASE_SIZE);
memset(sec->master_passphrase, 0, ND_INTEL_PASSPHRASE_SIZE);
sec->state = 0;
@@ -1093,7 +1101,7 @@ static int nd_intel_test_cmd_overwrite(struct nfit_test *t,
return 0;
}
memset(sec->passphrase, 0, ND_INTEL_PASSPHRASE_SIZE);
sec->old_state = sec->state;
sec->state = ND_INTEL_SEC_STATE_OVERWRITE;
dev_dbg(dev, "overwrite progressing.\n");
sec->overwrite_end_time = get_jiffies_64() + 5 * HZ;
@@ -1115,7 +1123,8 @@ static int nd_intel_test_cmd_query_overwrite(struct nfit_test *t,
if (time_is_before_jiffies64(sec->overwrite_end_time)) {
sec->overwrite_end_time = 0;
sec->state = 0;
sec->state = sec->old_state;
sec->old_state = 0;
sec->ext_state = ND_INTEL_SEC_ESTATE_ENABLED;
dev_dbg(dev, "overwrite is complete\n");
} else
@@ -39,6 +39,58 @@ static struct bpf_flow_keys pkt_v6_flow_keys = {
.n_proto = __bpf_constant_htons(ETH_P_IPV6),
};
#define VLAN_HLEN 4
static struct {
struct ethhdr eth;
__u16 vlan_tci;
__u16 vlan_proto;
struct iphdr iph;
struct tcphdr tcp;
} __packed pkt_vlan_v4 = {
.eth.h_proto = __bpf_constant_htons(ETH_P_8021Q),
.vlan_proto = __bpf_constant_htons(ETH_P_IP),
.iph.ihl = 5,
.iph.protocol = IPPROTO_TCP,
.iph.tot_len = __bpf_constant_htons(MAGIC_BYTES),
.tcp.urg_ptr = 123,
.tcp.doff = 5,
};
static struct bpf_flow_keys pkt_vlan_v4_flow_keys = {
.nhoff = VLAN_HLEN,
.thoff = VLAN_HLEN + sizeof(struct iphdr),
.addr_proto = ETH_P_IP,
.ip_proto = IPPROTO_TCP,
.n_proto = __bpf_constant_htons(ETH_P_IP),
};
static struct {
struct ethhdr eth;
__u16 vlan_tci;
__u16 vlan_proto;
__u16 vlan_tci2;
__u16 vlan_proto2;
struct ipv6hdr iph;
struct tcphdr tcp;
} __packed pkt_vlan_v6 = {
.eth.h_proto = __bpf_constant_htons(ETH_P_8021AD),
.vlan_proto = __bpf_constant_htons(ETH_P_8021Q),
.vlan_proto2 = __bpf_constant_htons(ETH_P_IPV6),
.iph.nexthdr = IPPROTO_TCP,
.iph.payload_len = __bpf_constant_htons(MAGIC_BYTES),
.tcp.urg_ptr = 123,
.tcp.doff = 5,
};
static struct bpf_flow_keys pkt_vlan_v6_flow_keys = {
.nhoff = VLAN_HLEN * 2,
.thoff = VLAN_HLEN * 2 + sizeof(struct ipv6hdr),
.addr_proto = ETH_P_IPV6,
.ip_proto = IPPROTO_TCP,
.n_proto = __bpf_constant_htons(ETH_P_IPV6),
};
void test_flow_dissector(void)
{
struct bpf_flow_keys flow_keys;
@@ -68,5 +120,21 @@ void test_flow_dissector(void)
err, errno, retval, duration, size, sizeof(flow_keys));
CHECK_FLOW_KEYS("ipv6_flow_keys", flow_keys, pkt_v6_flow_keys);
err = bpf_prog_test_run(prog_fd, 10, &pkt_vlan_v4, sizeof(pkt_vlan_v4),
&flow_keys, &size, &retval, &duration);
CHECK(size != sizeof(flow_keys) || err || retval != 1, "vlan_ipv4",
"err %d errno %d retval %d duration %d size %u/%lu\n",
err, errno, retval, duration, size, sizeof(flow_keys));
CHECK_FLOW_KEYS("vlan_ipv4_flow_keys", flow_keys,
pkt_vlan_v4_flow_keys);
err = bpf_prog_test_run(prog_fd, 10, &pkt_vlan_v6, sizeof(pkt_vlan_v6),
&flow_keys, &size, &retval, &duration);
CHECK(size != sizeof(flow_keys) || err || retval != 1, "vlan_ipv6",
"err %d errno %d retval %d duration %d size %u/%lu\n",
err, errno, retval, duration, size, sizeof(flow_keys));
CHECK_FLOW_KEYS("vlan_ipv6_flow_keys", flow_keys,
pkt_vlan_v6_flow_keys);
bpf_object__close(obj);
}
+7 -12
View File
@@ -92,7 +92,6 @@ static __always_inline int parse_eth_proto(struct __sk_buff *skb, __be16 proto)
{
struct bpf_flow_keys *keys = skb->flow_keys;
keys->n_proto = proto;
switch (proto) {
case bpf_htons(ETH_P_IP):
bpf_tail_call(skb, &jmp_table, IP);
@@ -119,10 +118,9 @@ static __always_inline int parse_eth_proto(struct __sk_buff *skb, __be16 proto)
SEC("flow_dissector")
int _dissect(struct __sk_buff *skb)
{
if (!skb->vlan_present)
return parse_eth_proto(skb, skb->protocol);
else
return parse_eth_proto(skb, skb->vlan_proto);
struct bpf_flow_keys *keys = skb->flow_keys;
return parse_eth_proto(skb, keys->n_proto);
}
/* Parses on IPPROTO_* */
@@ -336,15 +334,9 @@ PROG(VLAN)(struct __sk_buff *skb)
{
struct bpf_flow_keys *keys = skb->flow_keys;
struct vlan_hdr *vlan, _vlan;
__be16 proto;
/* Peek back to see if single or double-tagging */
if (bpf_skb_load_bytes(skb, keys->thoff - sizeof(proto), &proto,
sizeof(proto)))
return BPF_DROP;
/* Account for double-tagging */
if (proto == bpf_htons(ETH_P_8021AD)) {
if (keys->n_proto == bpf_htons(ETH_P_8021AD)) {
vlan = bpf_flow_dissect_get_header(skb, sizeof(*vlan), &_vlan);
if (!vlan)
return BPF_DROP;
@@ -352,6 +344,7 @@ PROG(VLAN)(struct __sk_buff *skb)
if (vlan->h_vlan_encapsulated_proto != bpf_htons(ETH_P_8021Q))
return BPF_DROP;
keys->nhoff += sizeof(*vlan);
keys->thoff += sizeof(*vlan);
}
@@ -359,12 +352,14 @@ PROG(VLAN)(struct __sk_buff *skb)
if (!vlan)
return BPF_DROP;
keys->nhoff += sizeof(*vlan);
keys->thoff += sizeof(*vlan);
/* Only allow 8021AD + 8021Q double tagging and no triple tagging.*/
if (vlan->h_vlan_encapsulated_proto == bpf_htons(ETH_P_8021AD) ||
vlan->h_vlan_encapsulated_proto == bpf_htons(ETH_P_8021Q))
return BPF_DROP;
keys->n_proto = vlan->h_vlan_encapsulated_proto;
return parse_eth_proto(skb, vlan->h_vlan_encapsulated_proto);
}
+47
View File
@@ -5776,6 +5776,53 @@ const struct btf_dedup_test dedup_tests[] = {
.dedup_table_size = 1, /* force hash collisions */
},
},
{
.descr = "dedup: void equiv check",
/*
* // CU 1:
* struct s {
* struct {} *x;
* };
* // CU 2:
* struct s {
* int *x;
* };
*/
.input = {
.raw_types = {
/* CU 1 */
BTF_STRUCT_ENC(0, 0, 1), /* [1] struct {} */
BTF_PTR_ENC(1), /* [2] ptr -> [1] */
BTF_STRUCT_ENC(NAME_NTH(1), 1, 8), /* [3] struct s */
BTF_MEMBER_ENC(NAME_NTH(2), 2, 0),
/* CU 2 */
BTF_PTR_ENC(0), /* [4] ptr -> void */
BTF_STRUCT_ENC(NAME_NTH(1), 1, 8), /* [5] struct s */
BTF_MEMBER_ENC(NAME_NTH(2), 4, 0),
BTF_END_RAW,
},
BTF_STR_SEC("\0s\0x"),
},
.expect = {
.raw_types = {
/* CU 1 */
BTF_STRUCT_ENC(0, 0, 1), /* [1] struct {} */
BTF_PTR_ENC(1), /* [2] ptr -> [1] */
BTF_STRUCT_ENC(NAME_NTH(1), 1, 8), /* [3] struct s */
BTF_MEMBER_ENC(NAME_NTH(2), 2, 0),
/* CU 2 */
BTF_PTR_ENC(0), /* [4] ptr -> void */
BTF_STRUCT_ENC(NAME_NTH(1), 1, 8), /* [5] struct s */
BTF_MEMBER_ENC(NAME_NTH(2), 4, 0),
BTF_END_RAW,
},
BTF_STR_SEC("\0s\0x"),
},
.opts = {
.dont_resolve_fwds = false,
.dedup_table_size = 1, /* force hash collisions */
},
},
{
.descr = "dedup: all possible kinds (no duplicates)",
.input = {
@@ -907,6 +907,44 @@
.errstr = "call stack",
.result = REJECT,
},
{
"calls: stack depth check in dead code",
.insns = {
/* main */
BPF_MOV64_IMM(BPF_REG_1, 0),
BPF_RAW_INSN(BPF_JMP|BPF_CALL, 0, 1, 0, 1), /* call A */
BPF_EXIT_INSN(),
/* A */
BPF_JMP_IMM(BPF_JEQ, BPF_REG_1, 0, 1),
BPF_RAW_INSN(BPF_JMP|BPF_CALL, 0, 1, 0, 2), /* call B */
BPF_MOV64_IMM(BPF_REG_0, 0),
BPF_EXIT_INSN(),
/* B */
BPF_RAW_INSN(BPF_JMP|BPF_CALL, 0, 1, 0, 1), /* call C */
BPF_EXIT_INSN(),
/* C */
BPF_RAW_INSN(BPF_JMP|BPF_CALL, 0, 1, 0, 1), /* call D */
BPF_EXIT_INSN(),
/* D */
BPF_RAW_INSN(BPF_JMP|BPF_CALL, 0, 1, 0, 1), /* call E */
BPF_EXIT_INSN(),
/* E */
BPF_RAW_INSN(BPF_JMP|BPF_CALL, 0, 1, 0, 1), /* call F */
BPF_EXIT_INSN(),
/* F */
BPF_RAW_INSN(BPF_JMP|BPF_CALL, 0, 1, 0, 1), /* call G */
BPF_EXIT_INSN(),
/* G */
BPF_RAW_INSN(BPF_JMP|BPF_CALL, 0, 1, 0, 1), /* call H */
BPF_EXIT_INSN(),
/* H */
BPF_MOV64_IMM(BPF_REG_0, 0),
BPF_EXIT_INSN(),
},
.prog_type = BPF_PROG_TYPE_XDP,
.errstr = "call stack",
.result = REJECT,
},
{
"calls: spill into caller stack frame",
.insns = {
@@ -11,6 +11,7 @@ lib_dir=$(dirname $0)/../../../net/forwarding
ALL_TESTS="
rif_set_addr_test
rif_vrf_set_addr_test
rif_inherit_bridge_addr_test
rif_non_inherit_bridge_addr_test
vlan_interface_deletion_test
@@ -98,6 +99,25 @@ rif_set_addr_test()
ip link set dev $swp1 addr $swp1_mac
}
rif_vrf_set_addr_test()
{
# Test that it is possible to set an IP address on a VRF upper despite
# its random MAC address.
RET=0
ip link add name vrf-test type vrf table 10
ip link set dev $swp1 master vrf-test
ip -4 address add 192.0.2.1/24 dev vrf-test
check_err $? "failed to set IPv4 address on VRF"
ip -6 address add 2001:db8:1::1/64 dev vrf-test
check_err $? "failed to set IPv6 address on VRF"
log_test "RIF - setting IP address on VRF"
ip link del dev vrf-test
}
rif_inherit_bridge_addr_test()
{
RET=0
+8 -1
View File
@@ -1,3 +1,5 @@
include ../../../../scripts/Kbuild.include
all:
top_srcdir = ../../../..
@@ -17,6 +19,7 @@ TEST_GEN_PROGS_x86_64 += x86_64/state_test
TEST_GEN_PROGS_x86_64 += x86_64/evmcs_test
TEST_GEN_PROGS_x86_64 += x86_64/hyperv_cpuid
TEST_GEN_PROGS_x86_64 += x86_64/vmx_close_while_nested_test
TEST_GEN_PROGS_x86_64 += x86_64/smm_test
TEST_GEN_PROGS_x86_64 += dirty_log_test
TEST_GEN_PROGS_x86_64 += clear_dirty_log_test
@@ -30,7 +33,11 @@ INSTALL_HDR_PATH = $(top_srcdir)/usr
LINUX_HDR_PATH = $(INSTALL_HDR_PATH)/include/
LINUX_TOOL_INCLUDE = $(top_srcdir)/tools/include
CFLAGS += -O2 -g -std=gnu99 -fno-stack-protector -fno-PIE -I$(LINUX_TOOL_INCLUDE) -I$(LINUX_HDR_PATH) -Iinclude -I$(<D) -Iinclude/$(UNAME_M) -I..
LDFLAGS += -pthread -no-pie
no-pie-option := $(call try-run, echo 'int main() { return 0; }' | \
$(CC) -Werror $(KBUILD_CPPFLAGS) $(CC_OPTION_CFLAGS) -no-pie -x c - -o "$$TMP", -no-pie)
LDFLAGS += -pthread $(no-pie-option)
# After inclusion, $(OUTPUT) is defined and
# $(TEST_GEN_PROGS) starts with $(OUTPUT)/
@@ -778,6 +778,33 @@ void vcpu_set_msr(struct kvm_vm *vm, uint32_t vcpuid, uint64_t msr_index,
#define MSR_IA32_APICBASE_ENABLE (1<<11)
#define MSR_IA32_APICBASE_BASE (0xfffff<<12)
#define APIC_BASE_MSR 0x800
#define X2APIC_ENABLE (1UL << 10)
#define APIC_ICR 0x300
#define APIC_DEST_SELF 0x40000
#define APIC_DEST_ALLINC 0x80000
#define APIC_DEST_ALLBUT 0xC0000
#define APIC_ICR_RR_MASK 0x30000
#define APIC_ICR_RR_INVALID 0x00000
#define APIC_ICR_RR_INPROG 0x10000
#define APIC_ICR_RR_VALID 0x20000
#define APIC_INT_LEVELTRIG 0x08000
#define APIC_INT_ASSERT 0x04000
#define APIC_ICR_BUSY 0x01000
#define APIC_DEST_LOGICAL 0x00800
#define APIC_DEST_PHYSICAL 0x00000
#define APIC_DM_FIXED 0x00000
#define APIC_DM_FIXED_MASK 0x00700
#define APIC_DM_LOWEST 0x00100
#define APIC_DM_SMI 0x00200
#define APIC_DM_REMRD 0x00300
#define APIC_DM_NMI 0x00400
#define APIC_DM_INIT 0x00500
#define APIC_DM_STARTUP 0x00600
#define APIC_DM_EXTINT 0x00700
#define APIC_VECTOR_MASK 0x000FF
#define APIC_ICR2 0x310
#define MSR_IA32_TSCDEADLINE 0x000006e0
#define MSR_IA32_UCODE_WRITE 0x00000079
@@ -91,6 +91,11 @@ static void vm_open(struct kvm_vm *vm, int perm, unsigned long type)
if (vm->kvm_fd < 0)
exit(KSFT_SKIP);
if (!kvm_check_cap(KVM_CAP_IMMEDIATE_EXIT)) {
fprintf(stderr, "immediate_exit not available, skipping test\n");
exit(KSFT_SKIP);
}
vm->fd = ioctl(vm->kvm_fd, KVM_CREATE_VM, type);
TEST_ASSERT(vm->fd >= 0, "KVM_CREATE_VM ioctl failed, "
"rc: %i errno: %i", vm->fd, errno);
@@ -1030,6 +1030,14 @@ struct kvm_x86_state *vcpu_save_state(struct kvm_vm *vm, uint32_t vcpuid)
nested_size, sizeof(state->nested_));
}
/*
* When KVM exits to userspace with KVM_EXIT_IO, KVM guarantees
* guest state is consistent only after userspace re-enters the
* kernel with KVM_RUN. Complete IO prior to migrating state
* to a new VM.
*/
vcpu_run_complete_io(vm, vcpuid);
nmsrs = kvm_get_num_msrs(vm);
list = malloc(sizeof(*list) + nmsrs * sizeof(list->indices[0]));
list->nmsrs = nmsrs;
@@ -1093,12 +1101,6 @@ void vcpu_load_state(struct kvm_vm *vm, uint32_t vcpuid, struct kvm_x86_state *s
struct vcpu *vcpu = vcpu_find(vm, vcpuid);
int r;
if (state->nested.size) {
r = ioctl(vcpu->fd, KVM_SET_NESTED_STATE, &state->nested);
TEST_ASSERT(r == 0, "Unexpected result from KVM_SET_NESTED_STATE, r: %i",
r);
}
r = ioctl(vcpu->fd, KVM_SET_XSAVE, &state->xsave);
TEST_ASSERT(r == 0, "Unexpected result from KVM_SET_XSAVE, r: %i",
r);
@@ -1130,4 +1132,10 @@ void vcpu_load_state(struct kvm_vm *vm, uint32_t vcpuid, struct kvm_x86_state *s
r = ioctl(vcpu->fd, KVM_SET_REGS, &state->regs);
TEST_ASSERT(r == 0, "Unexpected result from KVM_SET_REGS, r: %i",
r);
if (state->nested.size) {
r = ioctl(vcpu->fd, KVM_SET_NESTED_STATE, &state->nested);
TEST_ASSERT(r == 0, "Unexpected result from KVM_SET_NESTED_STATE, r: %i",
r);
}
}
@@ -123,8 +123,6 @@ int main(int argc, char *argv[])
stage, run->exit_reason,
exit_reason_str(run->exit_reason));
memset(&regs1, 0, sizeof(regs1));
vcpu_regs_get(vm, VCPU_ID, &regs1);
switch (get_ucall(vm, VCPU_ID, &uc)) {
case UCALL_ABORT:
TEST_ASSERT(false, "%s at %s:%d", (const char *)uc.args[0],
@@ -144,6 +142,9 @@ int main(int argc, char *argv[])
stage, (ulong)uc.args[1]);
state = vcpu_save_state(vm, VCPU_ID);
memset(&regs1, 0, sizeof(regs1));
vcpu_regs_get(vm, VCPU_ID, &regs1);
kvm_vm_release(vm);
/* Restore state in a new VM. */
@@ -0,0 +1,157 @@
// SPDX-License-Identifier: GPL-2.0
/*
* Copyright (C) 2018, Red Hat, Inc.
*
* Tests for SMM.
*/
#define _GNU_SOURCE /* for program_invocation_short_name */
#include <fcntl.h>
#include <stdio.h>
#include <stdlib.h>
#include <stdint.h>
#include <string.h>
#include <sys/ioctl.h>
#include "test_util.h"
#include "kvm_util.h"
#include "vmx.h"
#define VCPU_ID 1
#define PAGE_SIZE 4096
#define SMRAM_SIZE 65536
#define SMRAM_MEMSLOT ((1 << 16) | 1)
#define SMRAM_PAGES (SMRAM_SIZE / PAGE_SIZE)
#define SMRAM_GPA 0x1000000
#define SMRAM_STAGE 0xfe
#define STR(x) #x
#define XSTR(s) STR(s)
#define SYNC_PORT 0xe
#define DONE 0xff
/*
* This is compiled as normal 64-bit code, however, SMI handler is executed
* in real-address mode. To stay simple we're limiting ourselves to a mode
* independent subset of asm here.
* SMI handler always report back fixed stage SMRAM_STAGE.
*/
uint8_t smi_handler[] = {
0xb0, SMRAM_STAGE, /* mov $SMRAM_STAGE, %al */
0xe4, SYNC_PORT, /* in $SYNC_PORT, %al */
0x0f, 0xaa, /* rsm */
};
void sync_with_host(uint64_t phase)
{
asm volatile("in $" XSTR(SYNC_PORT)", %%al \n"
: : "a" (phase));
}
void self_smi(void)
{
wrmsr(APIC_BASE_MSR + (APIC_ICR >> 4),
APIC_DEST_SELF | APIC_INT_ASSERT | APIC_DM_SMI);
}
void guest_code(struct vmx_pages *vmx_pages)
{
uint64_t apicbase = rdmsr(MSR_IA32_APICBASE);
sync_with_host(1);
wrmsr(MSR_IA32_APICBASE, apicbase | X2APIC_ENABLE);
sync_with_host(2);
self_smi();
sync_with_host(4);
if (vmx_pages) {
GUEST_ASSERT(prepare_for_vmx_operation(vmx_pages));
sync_with_host(5);
self_smi();
sync_with_host(7);
}
sync_with_host(DONE);
}
int main(int argc, char *argv[])
{
struct vmx_pages *vmx_pages = NULL;
vm_vaddr_t vmx_pages_gva = 0;
struct kvm_regs regs;
struct kvm_vm *vm;
struct kvm_run *run;
struct kvm_x86_state *state;
int stage, stage_reported;
/* Create VM */
vm = vm_create_default(VCPU_ID, 0, guest_code);
vcpu_set_cpuid(vm, VCPU_ID, kvm_get_supported_cpuid());
run = vcpu_state(vm, VCPU_ID);
vm_userspace_mem_region_add(vm, VM_MEM_SRC_ANONYMOUS, SMRAM_GPA,
SMRAM_MEMSLOT, SMRAM_PAGES, 0);
TEST_ASSERT(vm_phy_pages_alloc(vm, SMRAM_PAGES, SMRAM_GPA, SMRAM_MEMSLOT)
== SMRAM_GPA, "could not allocate guest physical addresses?");
memset(addr_gpa2hva(vm, SMRAM_GPA), 0x0, SMRAM_SIZE);
memcpy(addr_gpa2hva(vm, SMRAM_GPA) + 0x8000, smi_handler,
sizeof(smi_handler));
vcpu_set_msr(vm, VCPU_ID, MSR_IA32_SMBASE, SMRAM_GPA);
if (kvm_check_cap(KVM_CAP_NESTED_STATE)) {
vmx_pages = vcpu_alloc_vmx(vm, &vmx_pages_gva);
vcpu_args_set(vm, VCPU_ID, 1, vmx_pages_gva);
} else {
printf("will skip SMM test with VMX enabled\n");
vcpu_args_set(vm, VCPU_ID, 1, 0);
}
for (stage = 1;; stage++) {
_vcpu_run(vm, VCPU_ID);
TEST_ASSERT(run->exit_reason == KVM_EXIT_IO,
"Stage %d: unexpected exit reason: %u (%s),\n",
stage, run->exit_reason,
exit_reason_str(run->exit_reason));
memset(&regs, 0, sizeof(regs));
vcpu_regs_get(vm, VCPU_ID, &regs);
stage_reported = regs.rax & 0xff;
if (stage_reported == DONE)
goto done;
TEST_ASSERT(stage_reported == stage ||
stage_reported == SMRAM_STAGE,
"Unexpected stage: #%x, got %x",
stage, stage_reported);
state = vcpu_save_state(vm, VCPU_ID);
kvm_vm_release(vm);
kvm_vm_restart(vm, O_RDWR);
vm_vcpu_add(vm, VCPU_ID, 0, 0);
vcpu_set_cpuid(vm, VCPU_ID, kvm_get_supported_cpuid());
vcpu_load_state(vm, VCPU_ID, state);
run = vcpu_state(vm, VCPU_ID);
free(state);
}
done:
kvm_vm_free(vm);
}
@@ -134,11 +134,6 @@ int main(int argc, char *argv[])
struct kvm_cpuid_entry2 *entry = kvm_get_supported_cpuid_entry(1);
if (!kvm_check_cap(KVM_CAP_IMMEDIATE_EXIT)) {
fprintf(stderr, "immediate_exit not available, skipping test\n");
exit(KSFT_SKIP);
}
/* Create VM */
vm = vm_create_default(VCPU_ID, 0, guest_code);
vcpu_set_cpuid(vm, VCPU_ID, kvm_get_supported_cpuid());
@@ -179,18 +174,10 @@ int main(int argc, char *argv[])
uc.args[1] == stage, "Unexpected register values vmexit #%lx, got %lx",
stage, (ulong)uc.args[1]);
/*
* When KVM exits to userspace with KVM_EXIT_IO, KVM guarantees
* guest state is consistent only after userspace re-enters the
* kernel with KVM_RUN. Complete IO prior to migrating state
* to a new VM.
*/
vcpu_run_complete_io(vm, VCPU_ID);
state = vcpu_save_state(vm, VCPU_ID);
memset(&regs1, 0, sizeof(regs1));
vcpu_regs_get(vm, VCPU_ID, &regs1);
state = vcpu_save_state(vm, VCPU_ID);
kvm_vm_release(vm);
/* Restore state in a new VM. */
+40 -54
View File
@@ -605,6 +605,39 @@ run_cmd()
return $rc
}
check_expected()
{
local out="$1"
local expected="$2"
local rc=0
[ "${out}" = "${expected}" ] && return 0
if [ -z "${out}" ]; then
if [ "$VERBOSE" = "1" ]; then
printf "\nNo route entry found\n"
printf "Expected:\n"
printf " ${expected}\n"
fi
return 1
fi
# tricky way to convert output to 1-line without ip's
# messy '\'; this drops all extra white space
out=$(echo ${out})
if [ "${out}" != "${expected}" ]; then
rc=1
if [ "${VERBOSE}" = "1" ]; then
printf " Unexpected route entry. Have:\n"
printf " ${out}\n"
printf " Expected:\n"
printf " ${expected}\n\n"
fi
fi
return $rc
}
# add route for a prefix, flushing any existing routes first
# expected to be the first step of a test
add_route6()
@@ -652,31 +685,7 @@ check_route6()
pfx=$1
out=$($IP -6 ro ls match ${pfx} | sed -e 's/ pref medium//')
[ "${out}" = "${expected}" ] && return 0
if [ -z "${out}" ]; then
if [ "$VERBOSE" = "1" ]; then
printf "\nNo route entry found\n"
printf "Expected:\n"
printf " ${expected}\n"
fi
return 1
fi
# tricky way to convert output to 1-line without ip's
# messy '\'; this drops all extra white space
out=$(echo ${out})
if [ "${out}" != "${expected}" ]; then
rc=1
if [ "${VERBOSE}" = "1" ]; then
printf " Unexpected route entry. Have:\n"
printf " ${out}\n"
printf " Expected:\n"
printf " ${expected}\n\n"
fi
fi
return $rc
check_expected "${out}" "${expected}"
}
route_cleanup()
@@ -725,7 +734,7 @@ route_setup()
ip -netns ns2 addr add 172.16.103.2/24 dev veth4
ip -netns ns2 addr add 172.16.104.1/24 dev dummy1
set +ex
set +e
}
# assumption is that basic add of a single path route works
@@ -960,7 +969,8 @@ ipv6_addr_metric_test()
run_cmd "$IP li set dev dummy2 down"
rc=$?
if [ $rc -eq 0 ]; then
check_route6 ""
out=$($IP -6 ro ls match 2001:db8:104::/64)
check_expected "${out}" ""
rc=$?
fi
log_test $rc 0 "Prefix route removed on link down"
@@ -1091,38 +1101,13 @@ check_route()
local pfx
local expected="$1"
local out
local rc=0
set -- $expected
pfx=$1
[ "${pfx}" = "unreachable" ] && pfx=$2
out=$($IP ro ls match ${pfx})
[ "${out}" = "${expected}" ] && return 0
if [ -z "${out}" ]; then
if [ "$VERBOSE" = "1" ]; then
printf "\nNo route entry found\n"
printf "Expected:\n"
printf " ${expected}\n"
fi
return 1
fi
# tricky way to convert output to 1-line without ip's
# messy '\'; this drops all extra white space
out=$(echo ${out})
if [ "${out}" != "${expected}" ]; then
rc=1
if [ "${VERBOSE}" = "1" ]; then
printf " Unexpected route entry. Have:\n"
printf " ${out}\n"
printf " Expected:\n"
printf " ${expected}\n\n"
fi
fi
return $rc
check_expected "${out}" "${expected}"
}
# assumption is that basic add of a single path route works
@@ -1387,7 +1372,8 @@ ipv4_addr_metric_test()
run_cmd "$IP li set dev dummy2 down"
rc=$?
if [ $rc -eq 0 ]; then
check_route ""
out=$($IP ro ls match 172.16.104.0/24)
check_expected "${out}" ""
rc=$?
fi
log_test $rc 0 "Prefix route removed on link down"
+2 -2
View File
@@ -187,8 +187,8 @@ static int make_exe(const uint8_t *payload, size_t len)
ph.p_offset = 0;
ph.p_vaddr = VADDR;
ph.p_paddr = 0;
ph.p_filesz = sizeof(struct elf64_hdr) + sizeof(struct elf64_phdr) + sizeof(payload);
ph.p_memsz = sizeof(struct elf64_hdr) + sizeof(struct elf64_phdr) + sizeof(payload);
ph.p_filesz = sizeof(struct elf64_hdr) + sizeof(struct elf64_phdr) + len;
ph.p_memsz = sizeof(struct elf64_hdr) + sizeof(struct elf64_phdr) + len;
ph.p_align = 4096;
fd = openat(AT_FDCWD, "/tmp", O_WRONLY|O_EXCL|O_TMPFILE, 0700);
@@ -46,12 +46,9 @@ static void fail(const char *fmt, unsigned long a, unsigned long b)
int main(void)
{
const unsigned int PAGE_SIZE = sysconf(_SC_PAGESIZE);
#ifdef __arm__
unsigned long va = 2 * PAGE_SIZE;
#else
unsigned long va = 0;
#endif
const int PAGE_SIZE = sysconf(_SC_PAGESIZE);
const unsigned long va_max = 1UL << 32;
unsigned long va;
void *p;
int fd;
unsigned long a, b;
@@ -60,10 +57,13 @@ int main(void)
if (fd == -1)
return 1;
p = mmap((void *)va, PAGE_SIZE, PROT_NONE, MAP_PRIVATE|MAP_FILE|MAP_FIXED, fd, 0);
if (p == MAP_FAILED) {
if (errno == EPERM)
return 4;
for (va = 0; va < va_max; va += PAGE_SIZE) {
p = mmap((void *)va, PAGE_SIZE, PROT_NONE, MAP_PRIVATE|MAP_FILE|MAP_FIXED, fd, 0);
if (p == (void *)va)
break;
}
if (va == va_max) {
fprintf(stderr, "error: mmap doesn't like you\n");
return 1;
}
@@ -143,6 +143,30 @@
"$TC actions flush action sample"
]
},
{
"id": "7571",
"name": "Add sample action with invalid rate",
"category": [
"actions",
"sample"
],
"setup": [
[
"$TC actions flush action sample",
0,
1,
255
]
],
"cmdUnderTest": "$TC actions add action sample rate 0 group 1 index 2",
"expExitCode": "255",
"verifyCmd": "$TC actions get action sample index 2",
"matchPattern": "action order [0-9]+: sample rate 1/0 group 1.*index 2 ref",
"matchCount": "0",
"teardown": [
"$TC actions flush action sample"
]
},
{
"id": "b6d4",
"name": "Add sample action with mandatory arguments and invalid control action",
@@ -18,6 +18,26 @@
"$TC qdisc del dev $DEV1 ingress"
]
},
{
"id": "2638",
"name": "Add matchall and try to get it",
"category": [
"filter",
"matchall"
],
"setup": [
"$TC qdisc add dev $DEV1 clsact",
"$TC filter add dev $DEV1 protocol all pref 1 ingress handle 0x1234 matchall action ok"
],
"cmdUnderTest": "$TC filter get dev $DEV1 protocol all pref 1 ingress handle 0x1234 matchall",
"expExitCode": "0",
"verifyCmd": "$TC filter show dev $DEV1 ingress",
"matchPattern": "filter protocol all pref 1 matchall chain 0 handle 0x1234",
"matchCount": "1",
"teardown": [
"$TC qdisc del dev $DEV1 clsact"
]
},
{
"id": "d052",
"name": "Add 1M filters with the same action",
+3 -2
View File
@@ -22,6 +22,7 @@ TPM2_CC_UNSEAL = 0x015E
TPM2_CC_FLUSH_CONTEXT = 0x0165
TPM2_CC_START_AUTH_SESSION = 0x0176
TPM2_CC_GET_CAPABILITY = 0x017A
TPM2_CC_GET_RANDOM = 0x017B
TPM2_CC_PCR_READ = 0x017E
TPM2_CC_POLICY_PCR = 0x017F
TPM2_CC_PCR_EXTEND = 0x0182
@@ -357,9 +358,9 @@ class Client:
self.flags = flags
if (self.flags & Client.FLAG_SPACE) == 0:
self.tpm = open('/dev/tpm0', 'r+b')
self.tpm = open('/dev/tpm0', 'r+b', buffering=0)
else:
self.tpm = open('/dev/tpmrm0', 'r+b')
self.tpm = open('/dev/tpmrm0', 'r+b', buffering=0)
def close(self):
self.tpm.close()
@@ -158,6 +158,69 @@ class SmokeTest(unittest.TestCase):
pass
self.assertEqual(rejected, True)
def test_read_partial_resp(self):
try:
fmt = '>HIIH'
cmd = struct.pack(fmt,
tpm2.TPM2_ST_NO_SESSIONS,
struct.calcsize(fmt),
tpm2.TPM2_CC_GET_RANDOM,
0x20)
self.client.tpm.write(cmd)
hdr = self.client.tpm.read(10)
sz = struct.unpack('>I', hdr[2:6])[0]
rsp = self.client.tpm.read()
except:
pass
self.assertEqual(sz, 10 + 2 + 32)
self.assertEqual(len(rsp), 2 + 32)
def test_read_partial_overwrite(self):
try:
fmt = '>HIIH'
cmd = struct.pack(fmt,
tpm2.TPM2_ST_NO_SESSIONS,
struct.calcsize(fmt),
tpm2.TPM2_CC_GET_RANDOM,
0x20)
self.client.tpm.write(cmd)
# Read part of the respone
rsp1 = self.client.tpm.read(15)
# Send a new cmd
self.client.tpm.write(cmd)
# Read the whole respone
rsp2 = self.client.tpm.read()
except:
pass
self.assertEqual(len(rsp1), 15)
self.assertEqual(len(rsp2), 10 + 2 + 32)
def test_send_two_cmds(self):
rejected = False
try:
fmt = '>HIIH'
cmd = struct.pack(fmt,
tpm2.TPM2_ST_NO_SESSIONS,
struct.calcsize(fmt),
tpm2.TPM2_CC_GET_RANDOM,
0x20)
self.client.tpm.write(cmd)
# expect the second one to raise -EBUSY error
self.client.tpm.write(cmd)
rsp = self.client.tpm.read()
except IOError, e:
# read the response
rsp = self.client.tpm.read()
rejected = True
pass
except:
pass
self.assertEqual(rejected, True)
class SpaceTest(unittest.TestCase):
def setUp(self):
logging.basicConfig(filename='SpaceTest.log', level=logging.DEBUG)