PcAtChipsetPkg: Apply uncrustify changes
REF: https://bugzilla.tianocore.org/show_bug.cgi?id=3737 Apply uncrustify changes to .c/.h files in the PcAtChipsetPkg package Cc: Andrew Fish <afish@apple.com> Cc: Leif Lindholm <leif@nuviainc.com> Cc: Michael D Kinney <michael.d.kinney@intel.com> Signed-off-by: Michael Kubacki <michael.kubacki@microsoft.com> Reviewed-by: Ray Ni <ray.ni@intel.com>
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@@ -15,7 +15,9 @@
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#include <Library/DebugLib.h>
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#include <IndustryStandard/Acpi.h>
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GUID mFrequencyHobGuid = { 0x3fca54f6, 0xe1a2, 0x4b20, { 0xbe, 0x76, 0x92, 0x6b, 0x4b, 0x48, 0xbf, 0xaa }};
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GUID mFrequencyHobGuid = {
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0x3fca54f6, 0xe1a2, 0x4b20, { 0xbe, 0x76, 0x92, 0x6b, 0x4b, 0x48, 0xbf, 0xaa }
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};
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/**
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Internal function to retrieves the 64-bit frequency in Hz.
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@@ -45,11 +47,11 @@ AcpiTimerLibConstructor (
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VOID
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)
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{
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UINTN Bus;
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UINTN Device;
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UINTN Function;
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UINTN EnableRegister;
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UINT8 EnableMask;
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UINTN Bus;
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UINTN Device;
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UINTN Function;
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UINTN EnableRegister;
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UINT8 EnableMask;
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//
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// ASSERT for the invalid PCD values. They must be configured to the real value.
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@@ -69,18 +71,18 @@ AcpiTimerLibConstructor (
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//
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// ASSERT for the invalid PCD values. They must be configured to the real value.
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//
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ASSERT (PcdGet8 (PcdAcpiIoPciDeviceNumber) != 0xFF);
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ASSERT (PcdGet8 (PcdAcpiIoPciFunctionNumber) != 0xFF);
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ASSERT (PcdGet8 (PcdAcpiIoPciDeviceNumber) != 0xFF);
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ASSERT (PcdGet8 (PcdAcpiIoPciFunctionNumber) != 0xFF);
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ASSERT (PcdGet16 (PcdAcpiIoPciEnableRegisterOffset) != 0xFFFF);
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//
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// Retrieve the PCD values for the PCI configuration space required to program the ACPI I/O Port Base Address
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//
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Bus = PcdGet8 (PcdAcpiIoPciBusNumber);
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Device = PcdGet8 (PcdAcpiIoPciDeviceNumber);
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Function = PcdGet8 (PcdAcpiIoPciFunctionNumber);
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Bus = PcdGet8 (PcdAcpiIoPciBusNumber);
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Device = PcdGet8 (PcdAcpiIoPciDeviceNumber);
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Function = PcdGet8 (PcdAcpiIoPciFunctionNumber);
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EnableRegister = PcdGet16 (PcdAcpiIoPciEnableRegisterOffset);
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EnableMask = PcdGet8 (PcdAcpiIoBarEnableMask);
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EnableMask = PcdGet8 (PcdAcpiIoBarEnableMask);
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//
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// If ACPI I/O space is not enabled yet, program ACPI I/O base address and enable it.
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@@ -122,12 +124,14 @@ InternalAcpiGetAcpiTimerIoPort (
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// value other than PcdAcpiIoPortBaseAddress
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//
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if (PcdGet16 (PcdAcpiIoPciBarRegisterOffset) != 0x0000) {
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Port = PciRead16 (PCI_LIB_ADDRESS (
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PcdGet8 (PcdAcpiIoPciBusNumber),
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PcdGet8 (PcdAcpiIoPciDeviceNumber),
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PcdGet8 (PcdAcpiIoPciFunctionNumber),
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PcdGet16 (PcdAcpiIoPciBarRegisterOffset)
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));
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Port = PciRead16 (
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PCI_LIB_ADDRESS (
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PcdGet8 (PcdAcpiIoPciBusNumber),
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PcdGet8 (PcdAcpiIoPciDeviceNumber),
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PcdGet8 (PcdAcpiIoPciFunctionNumber),
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PcdGet16 (PcdAcpiIoPciBarRegisterOffset)
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)
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);
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}
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return (Port & PcdGet16 (PcdAcpiIoPortBaseAddressMask)) + PcdGet16 (PcdAcpiPm1TmrOffset);
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@@ -147,9 +151,9 @@ InternalAcpiDelay (
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IN UINT32 Delay
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)
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{
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UINT16 Port;
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UINT32 Ticks;
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UINT32 Times;
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UINT16 Port;
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UINT32 Ticks;
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UINT32 Times;
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Port = InternalAcpiGetAcpiTimerIoPort ();
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Times = Delay >> 22;
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@@ -285,6 +289,7 @@ GetPerformanceCounterProperties (
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if (EndValue != NULL) {
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*EndValue = 0xffffffffffffffffULL;
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}
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return InternalGetPerformanceCounterFrequency ();
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}
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@@ -324,9 +329,9 @@ GetTimeInNanoSecond (
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// Since 2^29 < 1,000,000,000 = 0x3B9ACA00 < 2^30, Remainder should < 2^(64-30) = 2^34,
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// i.e. highest bit set in Remainder should <= 33.
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//
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Shift = MAX (0, HighBitSet64 (Remainder) - 33);
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Remainder = RShiftU64 (Remainder, (UINTN) Shift);
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Frequency = RShiftU64 (Frequency, (UINTN) Shift);
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Shift = MAX (0, HighBitSet64 (Remainder) - 33);
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Remainder = RShiftU64 (Remainder, (UINTN)Shift);
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Frequency = RShiftU64 (Frequency, (UINTN)Shift);
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NanoSeconds += DivU64x64Remainder (MultU64x32 (Remainder, 1000000000u), Frequency, NULL);
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return NanoSeconds;
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@@ -352,12 +357,12 @@ InternalCalculateTscFrequency (
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VOID
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)
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{
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UINT64 StartTSC;
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UINT64 EndTSC;
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UINT16 TimerAddr;
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UINT32 Ticks;
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UINT64 TscFrequency;
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BOOLEAN InterruptState;
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UINT64 StartTSC;
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UINT64 EndTSC;
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UINT16 TimerAddr;
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UINT32 Ticks;
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UINT64 TscFrequency;
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BOOLEAN InterruptState;
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InterruptState = SaveAndDisableInterrupts ();
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@@ -377,8 +382,9 @@ InternalCalculateTscFrequency (
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// the while loop will exit.
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//
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while (((Ticks - IoBitFieldRead32 (TimerAddr, 0, 23)) & BIT23) == 0) {
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CpuPause();
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CpuPause ();
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}
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EndTSC = AsmReadTsc (); // TSC value 101.4 us later
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TscFrequency = MultU64x32 (
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