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authorrsun3 <rsun3@6f19259b-4bc3-4df7-8a09-765794883524>2010-01-19 06:42:21 +0000
committerrsun3 <rsun3@6f19259b-4bc3-4df7-8a09-765794883524>2010-01-19 06:42:21 +0000
commit1ccdbf2a3e61fe9494fcd39432107ba0eb74f584 (patch)
treef8f2bcf407258369b67023955eb4374ff1a8f901 /MdeModulePkg/Universal/EbcDxe/Ipf
parentcd730ec08d8fc5afc557ae7f39c948998cd96bbb (diff)
downloadedk2-platforms-1ccdbf2a3e61fe9494fcd39432107ba0eb74f584.tar.xz
Improve coding style in MdeModulePkg.
git-svn-id: https://edk2.svn.sourceforge.net/svnroot/edk2/trunk/edk2@9793 6f19259b-4bc3-4df7-8a09-765794883524
Diffstat (limited to 'MdeModulePkg/Universal/EbcDxe/Ipf')
-rw-r--r--MdeModulePkg/Universal/EbcDxe/Ipf/EbcSupport.c50
1 files changed, 25 insertions, 25 deletions
diff --git a/MdeModulePkg/Universal/EbcDxe/Ipf/EbcSupport.c b/MdeModulePkg/Universal/EbcDxe/Ipf/EbcSupport.c
index 46c81b082b..79c67dc636 100644
--- a/MdeModulePkg/Universal/EbcDxe/Ipf/EbcSupport.c
+++ b/MdeModulePkg/Universal/EbcDxe/Ipf/EbcSupport.c
@@ -2,7 +2,7 @@
This module contains EBC support routines that are customized based on
the target processor.
-Copyright (c) 2006 - 2008, Intel Corporation. <BR>
+Copyright (c) 2006 - 2010, Intel Corporation. <BR>
All rights reserved. This program and the accompanying materials
are licensed and made available under the terms and conditions of the BSD License
which accompanies this distribution. The full text of the license may be found at
@@ -60,8 +60,8 @@ PushU64 (
// Advance the VM stack down, and then copy the argument to the stack.
// Hope it's aligned.
//
- VmPtr->R[0] -= sizeof (UINT64);
- *(UINT64 *) VmPtr->R[0] = Arg;
+ VmPtr->Gpr[0] -= sizeof (UINT64);
+ *(UINT64 *) VmPtr->Gpr[0] = Arg;
}
/**
@@ -176,14 +176,14 @@ EbcInterpret (
return Status;
}
VmContext.StackTop = (UINT8*)VmContext.StackPool + (STACK_REMAIN_SIZE);
- VmContext.R[0] = (UINT64) ((UINT8*)VmContext.StackPool + STACK_POOL_SIZE);
- VmContext.HighStackBottom = (UINTN) VmContext.R[0];
- VmContext.R[0] -= sizeof (UINTN);
+ VmContext.Gpr[0] = (UINT64) ((UINT8*)VmContext.StackPool + STACK_POOL_SIZE);
+ VmContext.HighStackBottom = (UINTN) VmContext.Gpr[0];
+ VmContext.Gpr[0] -= sizeof (UINTN);
PushU64 (&VmContext, (UINT64) VM_STACK_KEY_VALUE);
- VmContext.StackMagicPtr = (UINTN *) VmContext.R[0];
- VmContext.LowStackTop = (UINTN) VmContext.R[0];
+ VmContext.StackMagicPtr = (UINTN *) VmContext.Gpr[0];
+ VmContext.LowStackTop = (UINTN) VmContext.Gpr[0];
//
// Push the EBC arguments on the stack. Does not matter that they may not
// all be valid.
@@ -211,7 +211,7 @@ EbcInterpret (
//
PushU64 (&VmContext, 0);
PushU64 (&VmContext, 0xDEADBEEFDEADBEEF);
- VmContext.StackRetAddr = (UINT64) VmContext.R[0];
+ VmContext.StackRetAddr = (UINT64) VmContext.Gpr[0];
//
// Begin executing the EBC code
//
@@ -220,7 +220,7 @@ EbcInterpret (
// Return the value in R[7] unless there was an error
//
ReturnEBCStack(StackIndex);
- return (UINT64) VmContext.R[7];
+ return (UINT64) VmContext.Gpr[7];
}
@@ -283,9 +283,9 @@ ExecuteEbcImageEntryPoint (
return Status;
}
VmContext.StackTop = (UINT8*)VmContext.StackPool + (STACK_REMAIN_SIZE);
- VmContext.R[0] = (UINT64) ((UINT8*)VmContext.StackPool + STACK_POOL_SIZE);
- VmContext.HighStackBottom = (UINTN) VmContext.R[0];
- VmContext.R[0] -= sizeof (UINTN);
+ VmContext.Gpr[0] = (UINT64) ((UINT8*)VmContext.StackPool + STACK_POOL_SIZE);
+ VmContext.HighStackBottom = (UINTN) VmContext.Gpr[0];
+ VmContext.Gpr[0] -= sizeof (UINTN);
//
@@ -293,7 +293,7 @@ ExecuteEbcImageEntryPoint (
// at the bottom so we can detect stack corruption.
//
PushU64 (&VmContext, (UINT64) VM_STACK_KEY_VALUE);
- VmContext.StackMagicPtr = (UINTN *) (UINTN) VmContext.R[0];
+ VmContext.StackMagicPtr = (UINTN *) (UINTN) VmContext.Gpr[0];
//
// When we thunk to external native code, we copy the last 8 qwords from
@@ -304,15 +304,15 @@ ExecuteEbcImageEntryPoint (
// Therefore, leave another gap below the magic value. Pick 10 qwords down,
// just as a starting point.
//
- VmContext.R[0] -= 10 * sizeof (UINT64);
+ VmContext.Gpr[0] -= 10 * sizeof (UINT64);
//
// Align the stack pointer such that after pushing the system table,
// image handle, and return address on the stack, it's aligned on a 16-byte
// boundary as required for IPF.
//
- VmContext.R[0] &= (INT64)~0x0f;
- VmContext.LowStackTop = (UINTN) VmContext.R[0];
+ VmContext.Gpr[0] &= (INT64)~0x0f;
+ VmContext.LowStackTop = (UINTN) VmContext.Gpr[0];
//
// Simply copy the image handle and system table onto the EBC stack.
// Greatly simplifies things by not having to spill the args
@@ -327,7 +327,7 @@ ExecuteEbcImageEntryPoint (
//
PushU64 (&VmContext, (UINT64) 0);
PushU64 (&VmContext, (UINT64) 0x1234567887654321);
- VmContext.StackRetAddr = (UINT64) VmContext.R[0];
+ VmContext.StackRetAddr = (UINT64) VmContext.Gpr[0];
//
// Begin executing the EBC code
@@ -338,7 +338,7 @@ ExecuteEbcImageEntryPoint (
// Return the value in R[7] unless there was an error
//
ReturnEBCStack(StackIndex);
- return (UINT64) VmContext.R[7];
+ return (UINT64) VmContext.Gpr[7];
}
@@ -855,11 +855,11 @@ Action:
// put our return address and frame pointer on the VM stack.
// Then set the VM's IP to new EBC code.
//
- VmPtr->R[0] -= 8;
- VmWriteMemN (VmPtr, (UINTN) VmPtr->R[0], (UINTN) FramePtr);
- VmPtr->FramePtr = (VOID *) (UINTN) VmPtr->R[0];
- VmPtr->R[0] -= 8;
- VmWriteMem64 (VmPtr, (UINTN) VmPtr->R[0], (UINT64) (VmPtr->Ip + Size));
+ VmPtr->Gpr[0] -= 8;
+ VmWriteMemN (VmPtr, (UINTN) VmPtr->Gpr[0], (UINTN) FramePtr);
+ VmPtr->FramePtr = (VOID *) (UINTN) VmPtr->Gpr[0];
+ VmPtr->Gpr[0] -= 8;
+ VmWriteMem64 (VmPtr, (UINTN) VmPtr->Gpr[0], (UINT64) (VmPtr->Ip + Size));
VmPtr->Ip = (VMIP) (UINTN) TargetEbcAddr;
} else {
@@ -871,7 +871,7 @@ Action:
//
// Get return value and advance the IP.
//
- VmPtr->R[7] = EbcLLGetReturnValue ();
+ VmPtr->Gpr[7] = EbcLLGetReturnValue ();
VmPtr->Ip += Size;
}
}