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Fixed coding style reported by Ecc tool. Signed-off-by: Tuan Phan <tuan.phan@oss.qualcomm.com>
280 lines
6.9 KiB
C
280 lines
6.9 KiB
C
/** @file
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RISC-V instance of Timer Library.
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Copyright (c) 2016 - 2022, Hewlett Packard Enterprise Development LP. All rights reserved.<BR>
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SPDX-License-Identifier: BSD-2-Clause-Patent
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**/
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#include <Uefi.h>
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#include <Guid/RiscVSecHobData.h>
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#include <Library/BaseLib.h>
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#include <Library/DebugLib.h>
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#include <Library/PcdLib.h>
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#include <Register/RiscV64/RiscVImpl.h>
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#include <Pi/PiBootMode.h>
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#include <Pi/PiHob.h>
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#include <Library/HobLib.h>
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#include <Library/FdtLib.h>
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#include <Library/TimerLib.h>
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STATIC UINT64 mTimeBase;
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#define GET_TIME_BASE() (mTimeBase ?: GetPerformanceCounterProperties(NULL, NULL))
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/**
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Stalls the CPU for at least the given number of ticks.
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Stalls the CPU for at least the given number of ticks. It's invoked by
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MicroSecondDelay() and NanoSecondDelay().
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@param Delay A period of time to delay in ticks.
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**/
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STATIC
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VOID
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InternalRiscVTimerDelay (
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IN UINT64 Delay
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)
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{
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UINT64 Ticks;
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Ticks = RiscVReadTimer () + Delay;
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while (RiscVReadTimer () <= Ticks) {
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CpuPause ();
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}
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}
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/**
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Stalls the CPU for at least the given number of microseconds.
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Stalls the CPU for the number of microseconds specified by MicroSeconds.
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@param MicroSeconds The minimum number of microseconds to delay.
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@return MicroSeconds
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**/
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UINTN
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EFIAPI
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MicroSecondDelay (
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IN UINTN MicroSeconds
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)
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{
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InternalRiscVTimerDelay (
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DivU64x32 (
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MultU64x32 (
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MicroSeconds,
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GET_TIME_BASE ()
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),
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1000000u
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)
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);
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return MicroSeconds;
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}
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/**
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Stalls the CPU for at least the given number of nanoseconds.
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Stalls the CPU for the number of nanoseconds specified by NanoSeconds.
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@param NanoSeconds The minimum number of nanoseconds to delay.
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@return NanoSeconds
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**/
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UINTN
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EFIAPI
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NanoSecondDelay (
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IN UINTN NanoSeconds
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)
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{
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InternalRiscVTimerDelay (
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DivU64x32 (
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MultU64x32 (
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NanoSeconds,
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GET_TIME_BASE ()
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),
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1000000000u
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)
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);
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return NanoSeconds;
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}
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/**
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Retrieves the current value of a 64-bit free running performance counter.
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Retrieves the current value of a 64-bit free running performance counter. The
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counter can either count up by 1 or count down by 1. If the physical
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performance counter counts by a larger increment, then the counter values
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must be translated. The properties of the counter can be retrieved from
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GetPerformanceCounterProperties().
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@return The current value of the free running performance counter.
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**/
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UINT64
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EFIAPI
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GetPerformanceCounter (
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VOID
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)
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{
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return (UINT64)RiscVReadTimer ();
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}
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/**
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Retrieves the 64-bit frequency in Hz and the range of performance counter
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values.
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If StartValue is not NULL, then the value that the performance counter starts
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with immediately after is it rolls over is returned in StartValue. If
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EndValue is not NULL, then the value that the performance counter end with
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immediately before it rolls over is returned in EndValue. The 64-bit
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frequency of the performance counter in Hz is always returned. If StartValue
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is less than EndValue, then the performance counter counts up. If StartValue
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is greater than EndValue, then the performance counter counts down. For
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example, a 64-bit free running counter that counts up would have a StartValue
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of 0 and an EndValue of 0xFFFFFFFFFFFFFFFF. A 24-bit free running counter
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that counts down would have a StartValue of 0xFFFFFF and an EndValue of 0.
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@param StartValue The value the performance counter starts with when it
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rolls over.
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@param EndValue The value that the performance counter ends with before
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it rolls over.
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@return The frequency in Hz.
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**/
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UINT64
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EFIAPI
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GetPerformanceCounterProperties (
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OUT UINT64 *StartValue, OPTIONAL
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OUT UINT64 *EndValue OPTIONAL
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)
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{
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VOID *Hob;
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RISCV_SEC_HANDOFF_DATA *SecData;
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CONST EFI_GUID SecHobDataGuid = RISCV_SEC_HANDOFF_HOB_GUID;
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UINT64 TimeBase;
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CONST VOID *FdtBase;
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INT32 Node;
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INT32 Len;
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CONST FDT_PROPERTY *Prop;
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if (StartValue != NULL) {
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*StartValue = 0;
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}
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if (EndValue != NULL) {
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*EndValue = MAX_UINT64;
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}
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if (mTimeBase != 0) {
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return mTimeBase;
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}
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//
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// Locate the FDT HOB and validate header
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//
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Hob = GetFirstGuidHob (&gFdtHobGuid);
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if (Hob) {
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FdtBase = (CONST VOID *)(UINTN)*(CONST UINT64 *)GET_GUID_HOB_DATA (Hob);
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} else {
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//
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// Get the FDT address from the SEC HOB
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//
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Hob = GetFirstGuidHob (&SecHobDataGuid);
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ASSERT (Hob != NULL);
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SecData = (RISCV_SEC_HANDOFF_DATA *)GET_GUID_HOB_DATA (Hob);
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FdtBase = (CONST VOID *)SecData->FdtPointer;
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}
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ASSERT (FdtBase != NULL);
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ASSERT (FdtCheckHeader ((VOID *)(UINTN)FdtBase) == 0);
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//
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// /cpus node
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//
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Node = FdtSubnodeOffsetNameLen (FdtBase, 0, "cpus", (INT32)AsciiStrLen ("cpus"));
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ASSERT (Node >= 0);
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//
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// timebase-frequency property
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//
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Len = 0;
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Prop = FdtGetProperty (FdtBase, Node, "timebase-frequency", &Len);
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ASSERT (Prop != NULL && Len == sizeof (UINT32));
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//
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// Device-tree cells are big-endian
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//
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TimeBase = SwapBytes32 (*(CONST UINT32 *)Prop->Data);
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ASSERT (TimeBase != 0);
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//
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// Save the time base for later use. Note that the mTimeBase maybe zero if
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// this library is stored in read-only memory.
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//
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mTimeBase = TimeBase;
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return TimeBase;
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}
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/**
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Converts elapsed ticks of performance counter to time in nanoseconds.
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This function converts the elapsed ticks of running performance counter to
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time value in unit of nanoseconds.
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@param Ticks The number of elapsed ticks of running performance counter.
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@return The elapsed time in nanoseconds.
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**/
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UINT64
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EFIAPI
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GetTimeInNanoSecond (
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IN UINT64 Ticks
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)
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{
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UINT64 NanoSeconds;
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UINT32 Remainder;
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//
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// Ticks
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// Time = --------- x 1,000,000,000
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// Frequency
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//
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NanoSeconds = MultU64x32 (DivU64x32Remainder (Ticks, GET_TIME_BASE (), &Remainder), 1000000000u);
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//
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// Frequency < 0x100000000, so Remainder < 0x100000000, then (Remainder * 1,000,000,000)
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// will not overflow 64-bit.
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//
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NanoSeconds += DivU64x32 (MultU64x32 ((UINT64)Remainder, 1000000000u), GET_TIME_BASE ());
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return NanoSeconds;
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}
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/**
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Constructor function for the Timer Library.
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This constructor function is called early during booting to ensure that
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GetPerformanceCounterProperties() is invoked and mTimeBase is initialized
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before any code that depends on it.
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@retval EFI_SUCCESS The constructor always returns success.
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**/
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EFI_STATUS
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EFIAPI
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RiscV64CpuTimerLibConstructor (
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VOID
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)
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{
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GetPerformanceCounterProperties (NULL, NULL);
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return EFI_SUCCESS;
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}
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