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@ -14,11 +14,11 @@ namespace Core::Timing {
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constexpr u64 MAX_VALUE_TO_MULTIPLY = std::numeric_limits<s64>::max() / BASE_CLOCK_RATE;
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constexpr u64 MAX_VALUE_TO_MULTIPLY = std::numeric_limits<s64>::max() / BASE_CLOCK_RATE;
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s64 usToCycles(s64 us) {
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s64 usToCycles(s64 us) {
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if (us / 1000000 > MAX_VALUE_TO_MULTIPLY) {
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if (static_cast<u64>(us / 1000000) > MAX_VALUE_TO_MULTIPLY) {
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LOG_ERROR(Core_Timing, "Integer overflow, use max value");
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LOG_ERROR(Core_Timing, "Integer overflow, use max value");
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return std::numeric_limits<s64>::max();
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return std::numeric_limits<s64>::max();
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}
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}
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if (us > MAX_VALUE_TO_MULTIPLY) {
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if (static_cast<u64>(us) > MAX_VALUE_TO_MULTIPLY) {
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LOG_DEBUG(Core_Timing, "Time very big, do rounding");
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LOG_DEBUG(Core_Timing, "Time very big, do rounding");
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return BASE_CLOCK_RATE * (us / 1000000);
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return BASE_CLOCK_RATE * (us / 1000000);
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}
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}
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@ -38,11 +38,11 @@ s64 usToCycles(u64 us) {
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}
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}
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s64 nsToCycles(s64 ns) {
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s64 nsToCycles(s64 ns) {
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if (ns / 1000000000 > MAX_VALUE_TO_MULTIPLY) {
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if (static_cast<u64>(ns / 1000000000) > MAX_VALUE_TO_MULTIPLY) {
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LOG_ERROR(Core_Timing, "Integer overflow, use max value");
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LOG_ERROR(Core_Timing, "Integer overflow, use max value");
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return std::numeric_limits<s64>::max();
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return std::numeric_limits<s64>::max();
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}
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}
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if (ns > MAX_VALUE_TO_MULTIPLY) {
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if (static_cast<u64>(ns) > MAX_VALUE_TO_MULTIPLY) {
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LOG_DEBUG(Core_Timing, "Time very big, do rounding");
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LOG_DEBUG(Core_Timing, "Time very big, do rounding");
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return BASE_CLOCK_RATE * (ns / 1000000000);
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return BASE_CLOCK_RATE * (ns / 1000000000);
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}
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}
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