perf_sample__intval
u32 pid = perf_sample__intval(sample, "pid");
unsigned long ptr = perf_sample__intval(sample, "ptr"),
call_site = perf_sample__intval(sample, "call_site");
int bytes_req = perf_sample__intval(sample, "bytes_req"),
bytes_alloc = perf_sample__intval(sample, "bytes_alloc");
node2 = perf_sample__intval(sample, "node");
unsigned long ptr = perf_sample__intval(sample, "ptr");
unsigned int order = perf_sample__intval(sample, "order");
unsigned int gfp_flags = perf_sample__intval(sample, "gfp_flags");
unsigned int migrate_type = perf_sample__intval(sample, "migratetype");
page = perf_sample__intval(sample, "pfn");
page = perf_sample__intval(sample, "page");
unsigned int order = perf_sample__intval(sample, "order");
page = perf_sample__intval(sample, "pfn");
page = perf_sample__intval(sample, "page");
vcpu_record->vcpu_id = perf_sample__intval(sample, vcpu_id_str(e_machine));
work->id = perf_sample__intval(sample, "irq");
num = perf_sample__intval(sample, "vec");
unsigned long long function_addr = perf_sample__intval(sample, "function");
work->id = perf_sample__intval(sample, "work");
work->id = perf_sample__intval(sample, "prev_pid");
work->id = perf_sample__intval(sample, "next_pid");
u64 addr = perf_sample__intval(sample, "lock_addr");
u64 addr = perf_sample__intval(sample, "lockdep_addr");
int flag = perf_sample__intval(sample, "flags");
u64 addr = perf_sample__intval(sample, "lockdep_addr");
u64 addr = perf_sample__intval(sample, "lockdep_addr");
u64 addr = perf_sample__intval(sample, "lockdep_addr");
u64 addr = perf_sample__intval(sample, "lock_addr");
unsigned int flags = perf_sample__intval(sample, "flags");
const u32 prev_pid = perf_sample__intval(sample, "prev_pid"),
next_pid = perf_sample__intval(sample, "next_pid");
const u32 pid = perf_sample__intval(sample, "pid");
const u64 runtime = perf_sample__intval(sample, "runtime");
const u32 pid = perf_sample__intval(sample, "pid");
const u32 pid = perf_sample__intval(sample, "pid");
const u32 next_pid = perf_sample__intval(sample, "next_pid");
const u32 prev_pid = perf_sample__intval(sample, "prev_pid");
u32 prev_pid = perf_sample__intval(sample, "prev_pid"),
next_pid = perf_sample__intval(sample, "next_pid");
int prev_prio = (int)perf_sample__intval(sample, "prev_prio");
const u32 next_pid = perf_sample__intval(sample, "next_pid");
return perf_sample__intval(sample, "prev_pid") == 0;
if (perf_sample__intval(sample, "next_pid") == 0)
prio = perf_sample__intval(sample, "prev_prio");
else if (perf_sample__intval(sample, "prev_pid") != 0 &&
perf_sample__intval(sample, "next_pid") != 0)
const u32 pid = perf_sample__intval(sample, "pid");
ocpu = perf_sample__intval(sample, "orig_cpu");
dcpu = perf_sample__intval(sample, "dest_cpu");
const u32 pid = perf_sample__intval(sample, "pid");
const u32 next_pid = perf_sample__intval(sample, "next_pid");
const u32 next_prio = perf_sample__intval(sample, "next_prio");
const u32 pid = perf_sample__intval(sample, "pid");
const u32 prev_pid = perf_sample__intval(sample, "prev_pid"),
next_pid = perf_sample__intval(sample, "next_pid");
long ret = perf_sample__intval(sample, "ret");
u32 state = perf_sample__intval(sample, "state");
u32 cpu_id = perf_sample__intval(sample, "cpu_id");
u32 state = perf_sample__intval(sample, "state");
u32 cpu_id = perf_sample__intval(sample, "cpu_id");
u8 flags = perf_sample__intval(sample, "common_flags");
int waker = perf_sample__intval(sample, "common_pid");
int wakee = perf_sample__intval(sample, "pid");
int prev_pid = perf_sample__intval(sample, "prev_pid");
int next_pid = perf_sample__intval(sample, "next_pid");
u64 prev_state = perf_sample__intval(sample, "prev_state");
u64 cpu_id = perf_sample__intval(sample, "cpu_id");
u64 value = perf_sample__intval(sample, "value");
u64 cpu_id = perf_sample__intval(sample, "cpu_id");
u64 value = perf_sample__intval(sample, "value");
long fd = perf_sample__intval(sample, "fd");
long ret = perf_sample__intval(sample, "ret");
long fd = perf_sample__intval(sample, "fd");
long ret = perf_sample__intval(sample, "ret");
long fd = perf_sample__intval(sample, "fd");
long ret = perf_sample__intval(sample, "ret");
long fd = perf_sample__intval(sample, "fd");
long ret = perf_sample__intval(sample, "ret");
long fd = perf_sample__intval(sample, "fd");
long ret = perf_sample__intval(sample, "ret");
long fd = perf_sample__intval(sample, "fd");
u64 runtime = perf_sample__intval(sample, "runtime");
(pid_t)perf_sample__intval(sample, "pid"),
perf_sample__intval(sample, "vruntime"));
tp_flags = perf_sample__intval(&sample, "flags");
next_tid = perf_sample__intval(&sample, "next_pid");
prev_tid = perf_sample__intval(&sample, "prev_pid");
val = perf_sample__intval(sample, name);
u64 perf_sample__intval(struct perf_sample *sample, const char *name);
tid = perf_sample__intval(sample, "next_pid");
key->key = perf_sample__intval(sample, kvm_exit_reason(EM_AARCH64));
key->key = perf_sample__intval(sample, kvm_trap_exit_reason);
insn = perf_sample__intval(sample, "inst_word");
key->key = perf_sample__intval(sample, "req");
key->key = perf_sample__intval(sample, kvm_exit_reason(EM_RISCV)) & ~CAUSE_IRQ_FLAG(xlen);
insn = perf_sample__intval(sample, "instruction");
key->key = perf_sample__intval(sample, "order_code");
key->key = perf_sample__intval(sample, "code");
key->key = perf_sample__intval(sample, "code");
key->key = perf_sample__intval(sample, "ecx");
key->info = perf_sample__intval(sample, "write");
key->key = perf_sample__intval(sample, "gpa");
key->info = perf_sample__intval(sample, "type");
perf_sample__intval(sample, "type") == KVM_TRACE_MMIO_WRITE) {
perf_sample__intval(sample, "type") == KVM_TRACE_MMIO_READ) {
key->key = perf_sample__intval(sample, "port");
key->info = perf_sample__intval(sample, "rw");
key->key = perf_sample__intval(sample, kvm_exit_reason(e_machine));