3 Commits

Author SHA1 Message Date
MechaCat02
bbffd8d20c audit: add poll-based arbitrary guest-VA memory-watch cvars
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Adds audit_mem_watch_addr (comma-separated hex guest VAs) and
audit_mem_watch_size (1/2/4/8 bytes) to watch arbitrary guest memory
locations at runtime. Once per vblank, GraphicsSystem::MarkVblank()
reads each VA big-endian via Memory::TranslateVirtual and emits an
XELOGKERNEL "AUDIT-MEM-WATCH" line on every value change vs the prior
frame (same greppable log stream as AUDIT-HLC / AUDIT-MEM-READ).

Mechanism is poll / value-change: it captures WHEN a value changes
(vblank index) but NOT the writer guest-PC; pair with audit_jit_prolog_pc
on a suspected writer to recover the PC. Heap VAs vary per run/engine,
so they are supplied at runtime via cvar/CLI. Default empty => disabled
=> zero overhead and no emulation-behavior change.

Validated against the controller vsync "clock A" field (+0x58): the
watch fires once per change, advancing monotonically in lockstep with
vblanks. Game still boots and runs muted with the cvar unset.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-14 12:21:02 +02:00
MechaCat02
17f4612b79 [Audit] round 24: signal-path probes (XEvent::Set + IO + NtDuplicateObject)
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Adds AUDIT-HLC probes for every path that signals an XEvent or duplicates
its handle, so the round-23 puzzle (waits completing without visible
NtSetEvent/KeSetEvent) can be cross-referenced by underlying X_KEVENT VA
and by primary handle.

  * NtCreateEvent_inner: always log kevent_va for handle/VA cross-ref
  * XEvent::Set: universal hook prints primary handle + kevent_va + LR;
    catches all paths into the event regardless of shim used
  * NtSetEvent: extended with PPC back-chain walk for caller's guest_lr
    (same idiom as the wait probe), so the signaler function is
    immediately identifiable
  * NtReadFile / NtReadFileScatter / NtWriteFile: log when signal_event
    path fires ev->Set() inline at IO completion (bypasses both
    NtSetEvent and KeSetEvent shims)
  * CompleteOverlappedEx (kernel_state.cc): log when overlapped event
    is signaled at completion
  * NtDuplicateObject: log src/dst handle pair (round-24 confirmed silph
    event is dup'd before signaling, explaining the handle-mismatch
    puzzle between NtSetEvent's `handle=` argument and XEvent::Set's
    primary handle())

Result: silph wait at sub_821CB030+0x1B0 on handle F80000A0 is signaled
via NtSetEvent on handle F80000A8 (the duplicate created by sub_8245D9D8
at lr=0x82450DF4 inside the worker chain sub_82450A28 ← 0xA68 ← 0xB68).
Verdict A confirmed: signaler exists and is reachable, but round-17.β
missed it because the search keyed on the wrong handle. No bypass path;
the worker chain is identical between canary and ours-impl, but ours
signals different handles (work-item queue divergence at sub_82452DC0).

Audit-only diagnostic. No semantic changes. Net delta +86 LOC across 7
files. All probes gated on the existing audit_handle_lifecycle cvar
(default off). Tested via Sylpheed boot (35 s, 4 MB log). Audit-handle-
lifecycle-probes branch, local-only.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
2026-06-08 21:09:40 +02:00
MechaCat02
33dee75c03 [Audit] --audit-r3-dump-bytes: dump N bytes at r3 when probe fires
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AUDIT-059 round 15 — diagnostic. New cvar `audit_jit_prolog_r3_bytes`
(default 64 = existing behaviour, capped at 256, rounded up to 16B
multiple) controls how many bytes are dumped at host(r3) when the
audit_jit_prolog_pc probe fires. Set to 80 to capture audit-051's
stack-local struct at sub_82452DC0's r31+96.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
2026-06-07 19:39:26 +02:00
9 changed files with 238 additions and 7 deletions

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@@ -58,6 +58,13 @@ DEFINE_uint32(audit_jit_prolog_mem_dump, 0,
"and its vtable[0] (first virtual method = bctrl target at " "and its vtable[0] (first virtual method = bctrl target at "
"sub_822F1AA8+0x90). Zero (default) disables.", "sub_822F1AA8+0x90). Zero (default) disables.",
"Auditing"); "Auditing");
DEFINE_uint32(audit_jit_prolog_r3_bytes, 0x40,
"Audit-052 — number of bytes to dump from host(r3) on every "
"audit_jit_prolog_pc fire (capped at 256, 16-byte aligned). "
"Default 64 (existing behaviour). Set to 80 to capture the "
"audit-051 stack-local struct at sub_82452DC0's r31+96 "
"(probe sub_8245B000 entry where r3 IS the struct ptr).",
"Auditing");
DEFINE_bool(ignore_undefined_externs, true, DEFINE_bool(ignore_undefined_externs, true,
"Don't exit when an undefined extern is called.", "CPU"); "Don't exit when an undefined extern is called.", "CPU");
DEFINE_bool(emit_source_annotations, false, DEFINE_bool(emit_source_annotations, false,
@@ -491,11 +498,16 @@ uint64_t AuditLogJitPrologArgs(void* raw_context, uint64_t /*unused*/) {
"r6={:08X} r7={:08X} r8={:08X} r9={:08X} r10={:08X} lr={:08X}", "r6={:08X} r7={:08X} r8={:08X} r9={:08X} r10={:08X} lr={:08X}",
pc, tid, r3, r4, r5, r6, r7, r8, r9, r10, lr); pc, tid, r3, r4, r5, r6, r7, r8, r9, r10, lr);
// Dump 64 bytes at host(r3) if r3 looks like a plausible guest VA. // Dump N bytes at host(r3) if r3 looks like a plausible guest VA.
// N comes from cvar `audit_jit_prolog_r3_bytes` (default 64 = existing
// behaviour). Round up to a 16-byte multiple; cap at 256.
uint32_t r3_dump_bytes = static_cast<uint32_t>(cvars::audit_jit_prolog_r3_bytes);
if (r3_dump_bytes > 256) r3_dump_bytes = 256;
r3_dump_bytes = (r3_dump_bytes + 15) & ~15u;
if (r3 >= 0x10000 && r3 < 0xE0000000) { if (r3 >= 0x10000 && r3 < 0xE0000000) {
uint8_t* host = ctx->TranslateVirtual(r3); uint8_t* host = ctx->TranslateVirtual(r3);
if (host) { if (host) {
for (uint32_t off = 0; off < 0x40; off += 16) { for (uint32_t off = 0; off < r3_dump_bytes; off += 16) {
uint32_t d0 = xe::load_and_swap<uint32_t>(host + off + 0); uint32_t d0 = xe::load_and_swap<uint32_t>(host + off + 0);
uint32_t d1 = xe::load_and_swap<uint32_t>(host + off + 4); uint32_t d1 = xe::load_and_swap<uint32_t>(host + off + 4);
uint32_t d2 = xe::load_and_swap<uint32_t>(host + off + 8); uint32_t d2 = xe::load_and_swap<uint32_t>(host + off + 8);

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@@ -13,6 +13,8 @@
#include "xenia/base/clock.h" #include "xenia/base/clock.h"
#include "xenia/base/logging.h" #include "xenia/base/logging.h"
#include "xenia/base/math.h" #include "xenia/base/math.h"
#include "xenia/base/memory.h"
#include "xenia/base/string_util.h"
#include "xenia/base/profiling.h" #include "xenia/base/profiling.h"
#include "xenia/base/threading.h" #include "xenia/base/threading.h"
#include "xenia/config.h" #include "xenia/config.h"
@@ -36,6 +38,32 @@ DEFINE_bool(
"runtime spikes and freezes when playing the game not for the first time.", "runtime spikes and freezes when playing the game not for the first time.",
"GPU"); "GPU");
// Audit memory-watch: poll-based value-change logger for arbitrary guest VAs.
// Reads the configured guest virtual address(es) once per vblank (per frame)
// from inside GraphicsSystem::MarkVblank() and emits one XELOGKERNEL
// "AUDIT-MEM-WATCH" line whenever the read value changes vs the previous
// frame. Greppable on the same log stream as AUDIT-HLC / AUDIT-MEM-READ.
// Default empty => disabled => zero overhead. Mechanism is poll/value-change
// (NOT a write-trap), so it captures WHEN a value changes (vblank index +
// emulator instruction count) but NOT the writer guest-PC. To find the writer
// PC, pair this with audit_jit_prolog_pc on the suspected writer function.
DEFINE_string(
audit_mem_watch_addr, "",
"Audit memory-watch — comma-separated list of guest virtual addresses "
"(hex, e.g. \"0x40d09a40\" or \"0x40d09a40,0x40929c00\") to poll once per "
"vblank. On every value change vs the previous frame, emit one "
"XELOGKERNEL AUDIT-MEM-WATCH line (watched VA, old value, new value, "
"vblank index, instruction count). Empty (default) disables the watch. "
"Poll-based value-change log: tells you WHEN a value changes, not the "
"writer PC.",
"Auditing");
DEFINE_uint32(
audit_mem_watch_size, 4,
"Audit memory-watch — number of bytes to read at each watched VA (1, 2, "
"4, or 8). Read big-endian (guest byte order) and compared as a 64-bit "
"value. Default 4.",
"Auditing");
namespace xe { namespace xe {
namespace gpu { namespace gpu {
@@ -333,12 +361,117 @@ void GraphicsSystem::DispatchInterruptCallback(uint32_t source, uint32_t cpu) {
interrupt_callback_data_, source, cpu); interrupt_callback_data_, source, cpu);
} }
// Audit memory-watch poll. Called once per vblank from MarkVblank(). Parses
// the comma-separated VA list from cvars::audit_mem_watch_addr exactly once
// (cached), then reads each VA (big-endian, audit_mem_watch_size bytes) and
// logs an AUDIT-MEM-WATCH line on every value change vs the previous frame.
// Poll/value-change mechanism: captures WHEN, not the writer PC. Zero work
// when the cvar is empty.
static void AuditMemWatchPoll(Memory* memory, uint64_t vblank_index) {
struct WatchEntry {
uint32_t va;
uint64_t last_value;
bool have_last;
};
static std::vector<WatchEntry> entries;
static std::string parsed_spec;
static bool parse_failed = false;
const std::string& spec = cvars::audit_mem_watch_addr;
if (spec.empty()) {
return;
}
// (Re)parse only when the cvar string changes (set once at startup).
if (spec != parsed_spec) {
parsed_spec = spec;
entries.clear();
parse_failed = false;
size_t start = 0;
while (start <= spec.size()) {
size_t comma = spec.find(',', start);
std::string tok = spec.substr(
start, comma == std::string::npos ? std::string::npos : comma - start);
// Trim whitespace.
while (!tok.empty() && (tok.front() == ' ' || tok.front() == '\t'))
tok.erase(tok.begin());
while (!tok.empty() && (tok.back() == ' ' || tok.back() == '\t'))
tok.pop_back();
if (!tok.empty()) {
uint32_t va = 0;
try {
va = static_cast<uint32_t>(std::stoul(tok, nullptr, 16));
} catch (...) {
XELOGKERNEL("AUDIT-MEM-WATCH bad VA token '{}' in '{}'", tok, spec);
parse_failed = true;
va = 0;
}
if (va != 0) {
entries.push_back({va, 0, false});
}
}
if (comma == std::string::npos) break;
start = comma + 1;
}
XELOGKERNEL("AUDIT-MEM-WATCH armed: {} address(es), size={} bytes",
entries.size(),
static_cast<uint32_t>(cvars::audit_mem_watch_size));
}
if (entries.empty()) {
return;
}
(void)parse_failed;
uint32_t size = static_cast<uint32_t>(cvars::audit_mem_watch_size);
for (auto& e : entries) {
if (e.va < 0x10000 || e.va >= 0xE0000000) {
continue;
}
uint8_t* host = memory->TranslateVirtual(e.va);
if (!host) {
continue;
}
uint64_t value = 0;
switch (size) {
case 1:
value = *host;
break;
case 2:
value = xe::load_and_swap<uint16_t>(host);
break;
case 8:
value = xe::load_and_swap<uint64_t>(host);
break;
case 4:
default:
value = xe::load_and_swap<uint32_t>(host);
break;
}
if (!e.have_last) {
e.have_last = true;
e.last_value = value;
XELOGKERNEL(
"AUDIT-MEM-WATCH va={:08X} init={:016X} vblank={} (first read)",
e.va, value, vblank_index);
continue;
}
if (value != e.last_value) {
XELOGKERNEL(
"AUDIT-MEM-WATCH va={:08X} old={:016X} new={:016X} vblank={}",
e.va, e.last_value, value, vblank_index);
e.last_value = value;
}
}
}
void GraphicsSystem::MarkVblank() { void GraphicsSystem::MarkVblank() {
SCOPE_profile_cpu_f("gpu"); SCOPE_profile_cpu_f("gpu");
// Increment vblank counter (so the game sees us making progress). // Increment vblank counter (so the game sees us making progress).
command_processor_->increment_counter(); command_processor_->increment_counter();
// Audit memory-watch (poll-based; no-op unless audit_mem_watch_addr set).
AuditMemWatchPoll(memory_, command_processor_->counter());
// TODO(benvanik): we shouldn't need to do the dispatch here, but there's // TODO(benvanik): we shouldn't need to do the dispatch here, but there's
// something wrong and the CP will block waiting for code that // something wrong and the CP will block waiting for code that
// needs to be run in the interrupt. // needs to be run in the interrupt.

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@@ -18,3 +18,8 @@ DEFINE_bool(audit_handle_lifecycle, false,
"Emit XELOGKERNEL on Event/Semaphore/Wait lifecycle " "Emit XELOGKERNEL on Event/Semaphore/Wait lifecycle "
"(create/set/wait/complete). Audit oracle probe — off by default.", "(create/set/wait/complete). Audit oracle probe — off by default.",
"Auditing"); "Auditing");
DEFINE_uint32(audit_track_event_handle, 0,
"If non-zero and AUDIT-HLC enabled, log underlying X_KEVENT "
"guest VA whenever NtCreateEvent returns this handle. "
"Audit round-24 oracle probe.",
"Auditing");

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@@ -14,5 +14,6 @@
DECLARE_bool(headless); DECLARE_bool(headless);
DECLARE_bool(log_high_frequency_kernel_calls); DECLARE_bool(log_high_frequency_kernel_calls);
DECLARE_bool(audit_handle_lifecycle); DECLARE_bool(audit_handle_lifecycle);
DECLARE_uint32(audit_track_event_handle);
#endif // XENIA_KERNEL_KERNEL_FLAGS_H_ #endif // XENIA_KERNEL_KERNEL_FLAGS_H_

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@@ -1071,6 +1071,14 @@ void KernelState::CompleteOverlappedEx(uint32_t overlapped_ptr, X_RESULT result,
auto ev = object_table()->LookupObject<XEvent>(event_handle); auto ev = object_table()->LookupObject<XEvent>(event_handle);
assert_not_null(ev); assert_not_null(ev);
if (ev) { if (ev) {
if (cvars::audit_handle_lifecycle) {
uint32_t lr =
static_cast<uint32_t>(cpu::ThreadState::Get()->context()->lr);
XELOGKERNEL(
"AUDIT-HLC CompleteOverlappedEx_signal_event handle={:08X} "
"kevent_va={:08X} lr={:08X}",
uint32_t(event_handle), ev->guest_object(), lr);
}
ev->Set(0, false); ev->Set(0, false);
} }
} }

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@@ -8,7 +8,9 @@
*/ */
#include "xenia/base/logging.h" #include "xenia/base/logging.h"
#include "xenia/cpu/thread_state.h"
#include "xenia/kernel/info/file.h" #include "xenia/kernel/info/file.h"
#include "xenia/kernel/kernel_flags.h"
#include "xenia/kernel/kernel_state.h" #include "xenia/kernel/kernel_state.h"
#include "xenia/kernel/util/shim_utils.h" #include "xenia/kernel/util/shim_utils.h"
#include "xenia/kernel/xboxkrnl/xboxkrnl_private.h" #include "xenia/kernel/xboxkrnl/xboxkrnl_private.h"
@@ -208,6 +210,13 @@ dword_result_t NtReadFile_entry(dword_t file_handle, dword_t event_handle,
} }
if (ev && signal_event) { if (ev && signal_event) {
if (cvars::audit_handle_lifecycle) {
uint32_t lr = static_cast<uint32_t>(cpu::ThreadState::Get()->context()->lr);
XELOGKERNEL(
"AUDIT-HLC NtReadFile_signal_event handle={:08X} kevent_va={:08X} "
"lr={:08X}",
uint32_t(event_handle), ev->guest_object(), lr);
}
ev->Set(0, false); ev->Set(0, false);
} }
@@ -294,6 +303,13 @@ dword_result_t NtReadFileScatter_entry(
} }
if (ev && signal_event) { if (ev && signal_event) {
if (cvars::audit_handle_lifecycle) {
uint32_t lr = static_cast<uint32_t>(cpu::ThreadState::Get()->context()->lr);
XELOGKERNEL(
"AUDIT-HLC NtReadFileScatter_signal_event handle={:08X} "
"kevent_va={:08X} lr={:08X}",
uint32_t(event_handle), ev->guest_object(), lr);
}
ev->Set(0, false); ev->Set(0, false);
} }
@@ -381,6 +397,13 @@ dword_result_t NtWriteFile_entry(dword_t file_handle, dword_t event_handle,
} }
if (ev && signal_event) { if (ev && signal_event) {
if (cvars::audit_handle_lifecycle) {
uint32_t lr = static_cast<uint32_t>(cpu::ThreadState::Get()->context()->lr);
XELOGKERNEL(
"AUDIT-HLC NtWriteFile_signal_event handle={:08X} kevent_va={:08X} "
"lr={:08X}",
uint32_t(event_handle), ev->guest_object(), lr);
}
ev->Set(0, false); ev->Set(0, false);
} }

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@@ -10,6 +10,8 @@
#include "xenia/kernel/xboxkrnl/xboxkrnl_ob.h" #include "xenia/kernel/xboxkrnl/xboxkrnl_ob.h"
#include "xenia/base/logging.h" #include "xenia/base/logging.h"
#include "xenia/cpu/processor.h" #include "xenia/cpu/processor.h"
#include "xenia/cpu/thread_state.h"
#include "xenia/kernel/kernel_flags.h"
#include "xenia/kernel/kernel_state.h" #include "xenia/kernel/kernel_state.h"
#include "xenia/kernel/xboxkrnl/xboxkrnl_private.h" #include "xenia/kernel/xboxkrnl/xboxkrnl_private.h"
#include "xenia/kernel/xboxkrnl/xboxkrnl_threading.h" #include "xenia/kernel/xboxkrnl/xboxkrnl_threading.h"
@@ -398,6 +400,14 @@ dword_result_t NtDuplicateObject_entry(dword_t handle, lpdword_t new_handle_ptr,
X_STATUS result = X_STATUS result =
kernel_state()->object_table()->DuplicateHandle(handle, &new_handle); kernel_state()->object_table()->DuplicateHandle(handle, &new_handle);
if (cvars::audit_handle_lifecycle) {
uint32_t lr = static_cast<uint32_t>(cpu::ThreadState::Get()->context()->lr);
XELOGKERNEL(
"AUDIT-HLC NtDuplicateObject src={:08X} dst={:08X} options={:08X} "
"lr={:08X}",
uint32_t(handle), uint32_t(new_handle), uint32_t(options), lr);
}
if (new_handle_ptr) { if (new_handle_ptr) {
*new_handle_ptr = new_handle; *new_handle_ptr = new_handle;
} }

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@@ -677,11 +677,26 @@ dword_result_t NtCreateEvent_entry(
} }
if (cvars::audit_handle_lifecycle) { if (cvars::audit_handle_lifecycle) {
uint32_t lr = static_cast<uint32_t>(cpu::ThreadState::Get()->context()->lr); uint32_t lr = static_cast<uint32_t>(cpu::ThreadState::Get()->context()->lr);
uint32_t out_handle = handle_ptr ? uint32_t(*handle_ptr) : 0u;
XELOGKERNEL( XELOGKERNEL(
"AUDIT-HLC NtCreateEvent handle={:08X} type={} initial_state={} " "AUDIT-HLC NtCreateEvent handle={:08X} type={} initial_state={} "
"lr={:08X}", "lr={:08X}",
handle_ptr ? uint32_t(*handle_ptr) : 0u, uint32_t(event_type), out_handle, uint32_t(event_type), uint32_t(initial_state), lr);
uint32_t(initial_state), lr); // Round-24: also log the underlying X_KEVENT guest VA for every
// NtCreateEvent so KeSetEvent probes can be cross-referenced by ptr.
XELOGKERNEL(
"AUDIT-HLC NtCreateEvent_inner handle={:08X} kevent_va={:08X} "
"lr={:08X}",
out_handle, ev->guest_object(), lr);
// When caller pinned a target handle, additionally emit the legacy
// _target line so older round-24 grep recipes still match.
if (cvars::audit_track_event_handle != 0 &&
out_handle == cvars::audit_track_event_handle) {
XELOGKERNEL(
"AUDIT-HLC NtCreateEvent_target handle={:08X} object_va={:08X} "
"lr={:08X}",
out_handle, ev->guest_object(), lr);
}
} }
return X_STATUS_SUCCESS; return X_STATUS_SUCCESS;
} }
@@ -709,9 +724,24 @@ uint32_t xeNtSetEvent(uint32_t handle, xe::be<uint32_t>* previous_state_ptr) {
dword_result_t NtSetEvent_entry(dword_t handle, lpdword_t previous_state_ptr) { dword_result_t NtSetEvent_entry(dword_t handle, lpdword_t previous_state_ptr) {
if (cvars::audit_handle_lifecycle) { if (cvars::audit_handle_lifecycle) {
uint32_t lr = static_cast<uint32_t>(cpu::ThreadState::Get()->context()->lr); auto* ctx = cpu::ThreadState::Get()->context();
XELOGKERNEL("AUDIT-HLC NtSetEvent handle={:08X} lr={:08X}", uint32_t lr = static_cast<uint32_t>(ctx->lr);
uint32_t(handle), lr); // Round-24: walk PPC back-chain for caller's guest LR (same idiom as
// NtWaitForSingleObjectEx probe).
uint32_t guest_lr = 0;
uint32_t sp = static_cast<uint32_t>(ctx->r[1]);
uint32_t back1 = xe::load_and_swap<uint32_t>(ctx->TranslateVirtual(sp));
if (back1) {
uint32_t back2 =
xe::load_and_swap<uint32_t>(ctx->TranslateVirtual(back1));
if (back2) {
guest_lr = xe::load_and_swap<uint32_t>(
ctx->TranslateVirtual(back2 - 8));
}
}
XELOGKERNEL(
"AUDIT-HLC NtSetEvent handle={:08X} lr={:08X} guest_lr={:08X}",
uint32_t(handle), lr, guest_lr);
} }
return xeNtSetEvent(handle, previous_state_ptr); return xeNtSetEvent(handle, previous_state_ptr);
} }

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@@ -11,6 +11,8 @@
#include "xenia/base/byte_stream.h" #include "xenia/base/byte_stream.h"
#include "xenia/base/logging.h" #include "xenia/base/logging.h"
#include "xenia/cpu/thread_state.h"
#include "xenia/kernel/kernel_flags.h"
namespace xe { namespace xe {
namespace kernel { namespace kernel {
@@ -58,6 +60,13 @@ void XEvent::InitializeNative(void* native_ptr, X_DISPATCH_HEADER* header) {
} }
int32_t XEvent::Set(uint32_t priority_increment, bool wait) { int32_t XEvent::Set(uint32_t priority_increment, bool wait) {
if (cvars::audit_handle_lifecycle) {
auto* ts = cpu::ThreadState::Get();
uint32_t lr = ts ? static_cast<uint32_t>(ts->context()->lr) : 0u;
XELOGKERNEL(
"AUDIT-HLC XEvent::Set handle={:08X} kevent_va={:08X} prio={} lr={:08X}",
handle(), guest_object(), priority_increment, lr);
}
set_priority_increment(priority_increment); set_priority_increment(priority_increment);
event_->Set(); event_->Set();
return 1; return 1;