162 lines
5.0 KiB
ArmAsm
162 lines
5.0 KiB
ArmAsm
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//++
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// Copyright (c) 1996-99 Intel Corp.
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//
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//
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// Module Name:
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//
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// palproc.s
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//
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// Abstract:
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//
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// Contains an implementation for making PAL PROC calls on
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// IA-64 architecture.
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//
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//
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//
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// Revision History:
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//
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//--
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.file "palproc.s"
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#include "palproc.h"
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//-----------------------------------------------------------------------------
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//++
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// MakeStaticPALCall
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//
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// This routine is called whenever an architected static calling convention
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// based PAL call is to be made. This call does use RSE actually, but our policy
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// in making static PAL calls before memory is available is to make sure that
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// we do not nest too deep and allocate beyond 96 banked registers. In other
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// words we carefully code calls and control flow before memory is available.
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//
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// Arguments : All parameters set up to do static PAL call.
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//
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// On Entry :
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//
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// Return Value:
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//
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// As per static calling conventions.
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//
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//--
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//---------------------------------------------------------------------------
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PROCEDURE_ENTRY(MakeStaticPALCall)
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NESTED_SETUP (5,8,0,0)
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mov loc3 = b5
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mov loc4 = r2
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mov loc7 = r1;;
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movl loc6 = PAL_MC_CLEAR_LOG
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mov r2 = psr;;
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mov loc5 = r2
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cmp.eq p6,p7 = r28,loc6;;
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(p7)movl loc6 = PAL_MC_DYNAMIC_STATE;;
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(p7)cmp.eq p6,p7 = r28,loc6;;
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(p7)movl loc6 = PAL_MC_ERROR_INFO;;
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(p7)cmp.eq p6,p7 = r28,loc6;;
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(p7)movl loc6 = PAL_MC_RESUME;;
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(p7)cmp.eq p6,p7 = r28,loc6
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mov loc6 = 0x1;;
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(p7)dep r2 = loc6,r2,13,1;; // psr.ic = 1
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// p6 will be true, if it is one of the MCHK calls. There has been lots of debate
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// on psr.ic for these values. For now, do not do any thing to psr.ic
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// (p6)dep r2 = r0,r2,13,1;; // psr.ic = 0
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dep r2 = r0,r2,14,1;; // psr.i = 0
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mov psr.l = r2
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srlz.d;; // Needs data serailization.
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srlz.i;; // Needs instruction serailization.
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StaticGetPALLocalIP:
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mov loc2 = ip;;
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add loc2 = StaticComeBackFromPALCall - StaticGetPALLocalIP,loc2;;
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mov b0 = loc2 // return address after Pal call
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mov r28 = in1 // get the input parameters to PAL call
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mov r29 = in2
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mov r30 = in3;;
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mov r31 = in4
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mov b5 = in0;; // get the PalProcEntrypt from input
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br.sptk b5 // Take the plunge.
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StaticComeBackFromPALCall:
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mov psr.l = loc5;;
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srlz.d;; // Needs data serailization.
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srlz.i;; // Needs instruction serailization.
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mov b5 = loc3
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mov r2 = loc4
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mov r1 = loc7
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NESTED_RETURN
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PROCEDURE_EXIT(MakeStaticPALCall)
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//-----------------------------------------------------------------------------
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//++
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// MakeStackedPALCall
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//
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// This routine is called whenever an architected stacked calling convention
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// based PAL call is to be made. This call is made after memory is available.
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// Although stacked calls could be made directly from 'C', there is a PAL
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// requirement which forces the index to be in GR28 and hence this stub is
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// needed
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//
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// Arguments : All parameters set up to do stacted PAL call.
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//
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// On Entry :
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// in0: PAL_PROC entrypoint
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// in1-in4 : PAL_PROC arguments
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//
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// Return Value:
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//
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// As per stacked calling conventions.
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//
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//--
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//---------------------------------------------------------------------------
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PROCEDURE_ENTRY(MakeStackedPALCall)
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NESTED_SETUP (5,8,4,0)
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mov loc3 = b5
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mov loc4 = r2
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mov loc7 = r1
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mov r2 = psr;;
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mov loc5 = r2;;
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dep r2 = r0,r2,14,1;; // psr.i = 0
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mov psr.l = r2
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srlz.d;; // Needs data serailization.
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srlz.i;; // Needs instruction serailization.
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StackedGetPALLocalIP:
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mov r28 = in1 // get the input parameters to PAL call
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mov out0 = in1
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mov out1 = in2;;
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mov out2 = in3
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mov out3 = in4
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mov b5 = in0;; // get the PalProcEntrypt from input
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br.call.dpnt b0=b5;; // Take the plunge.
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StackedComeBackFromPALCall:
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mov psr.l = loc5;;
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srlz.d;; // Needs data serailization.
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srlz.i;; // Needs instruction serailization.
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mov b5 = loc3
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mov r2 = loc4
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mov r1 = loc7
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NESTED_RETURN
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PROCEDURE_EXIT(MakeStackedPALCall)
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