FEXGetConfig: Mark helpers as static where applicable

Makes them internally linked, and also lets them be caught by the
compiler when they're unused.
This commit is contained in:
LC committed 2026-07-15 12:22:12 -04:00
1 parent 38cbd2aeb2
commit 70eafc4f6f
1 file changed
+11 -11
+11 -11
View File
@@ -94,7 +94,7 @@ TSOEmulationFacts GetTSOEmulationFacts() {
namespace SIGBUSTest {
static bool* FaultArray {};
__attribute__((naked)) void atomic_load_u16(std::byte* Data) {
__attribute__((naked)) static void atomic_load_u16(std::byte* Data) {
asm volatile(R"(
ldarh w1, [x0];
ret;
@@ -102,7 +102,7 @@ __attribute__((naked)) void atomic_load_u16(std::byte* Data) {
: "x1", "memory");
}
__attribute__((naked)) void atomic_load_u32(std::byte* Data) {
__attribute__((naked)) static void atomic_load_u32(std::byte* Data) {
asm volatile(R"(
ldar w1, [x0];
ret;
@@ -110,14 +110,14 @@ __attribute__((naked)) void atomic_load_u32(std::byte* Data) {
: "x1", "memory");
}
__attribute__((naked)) void atomic_load_u64(std::byte* Data) {
__attribute__((naked)) static void atomic_load_u64(std::byte* Data) {
asm volatile(R"(
ldar x1, [x0];
ret;
)" ::
: "x1", "memory");
}
__attribute__((naked)) void atomic_load_u128(std::byte* Data) {
__attribute__((naked)) static void atomic_load_u128(std::byte* Data) {
asm volatile(R"(
ldaxp x1, x2, [x0];
ret;
@@ -125,7 +125,7 @@ __attribute__((naked)) void atomic_load_u128(std::byte* Data) {
: "x1", "x2", "x3", "memory");
}
__attribute__((naked)) void atomic_set_u16(std::byte* Data, uint16_t value) {
__attribute__((naked)) static void atomic_set_u16(std::byte* Data, uint16_t value) {
asm volatile(R"(
.word 0x78e13002; // ldsetalh w1, w2, [x0];
ret;
@@ -133,7 +133,7 @@ __attribute__((naked)) void atomic_set_u16(std::byte* Data, uint16_t value) {
: "memory");
}
__attribute__((naked)) void atomic_set_u32(std::byte* Data, uint32_t value) {
__attribute__((naked)) static void atomic_set_u32(std::byte* Data, uint32_t value) {
asm volatile(R"(
.word 0xb8e13002; // ldsetal w1, w2, [x0];
ret;
@@ -141,14 +141,14 @@ __attribute__((naked)) void atomic_set_u32(std::byte* Data, uint32_t value) {
: "memory");
}
__attribute__((naked)) void atomic_set_u64(std::byte* Data, uint64_t value) {
__attribute__((naked)) static void atomic_set_u64(std::byte* Data, uint64_t value) {
asm volatile(R"(
.word 0xf8e13002; // ldsetal x1, x2, [x0];
ret;
)" ::
: "memory");
}
__attribute__((naked)) void atomic_set_u128_impl(__uint128_t expected, __uint128_t desired, std::byte* Data) {
__attribute__((naked)) static void atomic_set_u128_impl(__uint128_t expected, __uint128_t desired, std::byte* Data) {
asm volatile(R"(
.word 0x4860fc82; // caspal x0, x1, x2, x3, [x4];
ret;
@@ -180,7 +180,7 @@ static bool FaultOffset_RMW_32bit[64] {};
static bool FaultOffset_RMW_64bit[64] {};
static bool FaultOffset_RMW_128bit[64] {};
void RunFaultTests() {
static void RunFaultTests() {
if (CalculatedFaultOffsets) {
return;
}
@@ -225,7 +225,7 @@ void RunFaultTests() {
CalculatedFaultOffsets = true;
}
void PrintSIGBUSInfo() {
static void PrintSIGBUSInfo() {
RunFaultTests();
auto print_granule = [](const char* size, bool* FaultArray) {
@@ -275,7 +275,7 @@ struct FirstFaultInformation {
int32_t RMWFaultAlignment {};
};
FirstFaultInformation CalculateFirstFaultInformation() {
static FirstFaultInformation CalculateFirstFaultInformation() {
RunFaultTests();
FirstFaultInformation Info {};
auto FindFirstFaultOffset = [](bool FaultOffsets[64]) -> int32_t {