1 | ; $Id: VMMR0JmpA-x86.asm 39404 2011-11-23 17:42:23Z vboxsync $
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2 | ;; @file
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3 | ; VMM - R0 SetJmp / LongJmp routines for X86.
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4 | ;
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5 |
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6 | ;
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7 | ; Copyright (C) 2006-2009 Oracle Corporation
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8 | ;
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9 | ; This file is part of VirtualBox Open Source Edition (OSE), as
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10 | ; available from http://www.virtualbox.org. This file is free software;
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11 | ; you can redistribute it and/or modify it under the terms of the GNU
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12 | ; General Public License (GPL) as published by the Free Software
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13 | ; Foundation, in version 2 as it comes in the "COPYING" file of the
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14 | ; VirtualBox OSE distribution. VirtualBox OSE is distributed in the
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15 | ; hope that it will be useful, but WITHOUT ANY WARRANTY of any kind.
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16 | ;
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17 |
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18 | ;*******************************************************************************
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19 | ;* Header Files *
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20 | ;*******************************************************************************
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21 | %include "VBox/asmdefs.mac"
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22 | %include "VMMInternal.mac"
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23 | %include "VBox/err.mac"
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24 | %include "VBox/param.mac"
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25 |
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26 |
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27 | ;*******************************************************************************
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28 | ;* Defined Constants And Macros *
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29 | ;*******************************************************************************
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30 | %define RESUME_MAGIC 07eadf00dh
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31 | %define STACK_PADDING 0eeeeeeeeh
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32 |
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33 |
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34 | ; For vmmR0LoggerWrapper. (The other architecture(s) use(s) C99 variadic macros.)
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35 | extern NAME(RTLogLogger)
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36 |
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37 |
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38 | BEGINCODE
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39 |
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40 |
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41 | ;;
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42 | ; The setjmp variant used for calling Ring-3.
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43 | ;
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44 | ; This differs from the normal setjmp in that it will resume VMMRZCallRing3 if we're
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45 | ; in the middle of a ring-3 call. Another differences is the function pointer and
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46 | ; argument. This has to do with resuming code and the stack frame of the caller.
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47 | ;
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48 | ; @returns VINF_SUCCESS on success or whatever is passed to vmmR0CallRing3LongJmp.
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49 | ; @param pJmpBuf msc:rcx gcc:rdi x86:[esp+0x04] Our jmp_buf.
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50 | ; @param pfn msc:rdx gcc:rsi x86:[esp+0x08] The function to be called when not resuming.
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51 | ; @param pvUser1 msc:r8 gcc:rdx x86:[esp+0x0c] The argument of that function.
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52 | ; @param pvUser2 msc:r9 gcc:rcx x86:[esp+0x10] The argument of that function.
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53 | ;
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54 | BEGINPROC vmmR0CallRing3SetJmp
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55 | GLOBALNAME vmmR0CallRing3SetJmpEx
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56 | ;
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57 | ; Save the registers.
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58 | ;
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59 | mov edx, [esp + 4h] ; pJmpBuf
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60 | mov [xDX + VMMR0JMPBUF.ebx], ebx
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61 | mov [xDX + VMMR0JMPBUF.esi], esi
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62 | mov [xDX + VMMR0JMPBUF.edi], edi
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63 | mov [xDX + VMMR0JMPBUF.ebp], ebp
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64 | mov xAX, [esp]
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65 | mov [xDX + VMMR0JMPBUF.eip], xAX
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66 | lea ecx, [esp + 4] ; (used in resume)
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67 | mov [xDX + VMMR0JMPBUF.esp], ecx
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68 | pushf
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69 | pop xAX
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70 | mov [xDX + VMMR0JMPBUF.eflags], xAX
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71 |
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72 | ;
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73 | ; If we're not in a ring-3 call, call pfn and return.
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74 | ;
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75 | test byte [xDX + VMMR0JMPBUF.fInRing3Call], 1
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76 | jnz .resume
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77 |
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78 | mov ebx, edx ; pJmpBuf -> ebx (persistent reg)
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79 | %ifdef VMM_R0_SWITCH_STACK
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80 | mov esi, [ebx + VMMR0JMPBUF.pvSavedStack]
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81 | test esi, esi
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82 | jz .entry_error
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83 | %ifdef VBOX_STRICT
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84 | cmp dword [esi], 0h
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85 | jne .entry_error
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86 | mov edx, esi
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87 | mov edi, esi
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88 | mov ecx, VMM_STACK_SIZE / 4
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89 | mov eax, STACK_PADDING
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90 | repne stosd
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91 | %endif
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92 | lea esi, [esi + VMM_STACK_SIZE - 32]
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93 | mov [esi + 1ch], dword 0deadbeefh ; Marker 1.
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94 | mov [esi + 18h], ebx ; Save pJmpBuf pointer.
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95 | mov [esi + 14h], dword 00c00ffeeh ; Marker 2.
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96 | mov [esi + 10h], dword 0f00dbeefh ; Marker 3.
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97 | mov edx, [esp + 10h] ; pvArg2
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98 | mov ecx, [esp + 0ch] ; pvArg1
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99 | mov eax, [esp + 08h] ; pfn
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100 | %if 1 ; Use this to eat of some extra stack - handy for finding paths using lots of stack.
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101 | %define FRAME_OFFSET 0
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102 | %else
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103 | %define FRAME_OFFSET 1024
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104 | %endif
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105 | mov [esi - FRAME_OFFSET + 04h], edx
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106 | mov [esi - FRAME_OFFSET ], ecx
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107 | lea esp, [esi - FRAME_OFFSET] ; Switch stack!
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108 | call eax
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109 | and dword [esi + 1ch], byte 0 ; reset marker.
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110 |
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111 | %ifdef VBOX_STRICT
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112 | ; Calc stack usage and check for overflows.
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113 | mov edi, [ebx + VMMR0JMPBUF.pvSavedStack]
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114 | cmp dword [edi], STACK_PADDING ; Check for obvious stack overflow.
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115 | jne .stack_overflow
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116 | mov esi, eax ; save eax
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117 | mov eax, STACK_PADDING
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118 | mov ecx, VMM_STACK_SIZE / 4
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119 | cld
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120 | repe scasd
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121 | shl ecx, 2 ; *4
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122 | cmp ecx, VMM_STACK_SIZE - 64 ; Less than 64 bytes left -> overflow as well.
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123 | mov eax, esi ; restore eax in case of overflow (esi remains used)
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124 | jae .stack_overflow_almost
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125 |
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126 | ; Update stack usage statistics.
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127 | cmp ecx, [ebx + VMMR0JMPBUF.cbUsedMax] ; New max usage?
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128 | jle .no_used_max
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129 | mov [ebx + VMMR0JMPBUF.cbUsedMax], ecx
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130 | .no_used_max:
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131 | ; To simplify the average stuff, just historize before we hit div errors.
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132 | inc dword [ebx + VMMR0JMPBUF.cUsedTotal]
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133 | test [ebx + VMMR0JMPBUF.cUsedTotal], dword 0c0000000h
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134 | jz .no_historize
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135 | mov dword [ebx + VMMR0JMPBUF.cUsedTotal], 2
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136 | mov edi, [ebx + VMMR0JMPBUF.cbUsedAvg]
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137 | mov [ebx + VMMR0JMPBUF.cbUsedTotal], edi
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138 | mov dword [ebx + VMMR0JMPBUF.cbUsedTotal + 4], 0
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139 | .no_historize:
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140 | add [ebx + VMMR0JMPBUF.cbUsedTotal], ecx
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141 | adc dword [ebx + VMMR0JMPBUF.cbUsedTotal + 4], 0
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142 | mov eax, [ebx + VMMR0JMPBUF.cbUsedTotal]
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143 | mov edx, [ebx + VMMR0JMPBUF.cbUsedTotal + 4]
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144 | mov edi, [ebx + VMMR0JMPBUF.cUsedTotal]
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145 | div edi
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146 | mov [ebx + VMMR0JMPBUF.cbUsedAvg], eax
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147 |
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148 | mov eax, esi ; restore eax (final, esi released)
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149 |
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150 | mov edi, [ebx + VMMR0JMPBUF.pvSavedStack]
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151 | mov dword [edi], 0h ; Reset the overflow marker.
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152 | %endif ; VBOX_STRICT
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153 |
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154 | %else ; !VMM_R0_SWITCH_STACK
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155 | mov ecx, [esp + 0ch] ; pvArg1
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156 | mov edx, [esp + 10h] ; pvArg2
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157 | mov eax, [esp + 08h] ; pfn
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158 | sub esp, 12 ; align the stack on a 16-byte boundary.
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159 | mov [esp ], ecx
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160 | mov [esp + 04h], edx
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161 | call eax
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162 | %endif ; !VMM_R0_SWITCH_STACK
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163 | mov edx, ebx ; pJmpBuf -> edx (volatile reg)
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164 |
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165 | ;
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166 | ; Return like in the long jump but clear eip, no short cuts here.
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167 | ;
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168 | .proper_return:
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169 | mov ebx, [xDX + VMMR0JMPBUF.ebx]
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170 | mov esi, [xDX + VMMR0JMPBUF.esi]
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171 | mov edi, [xDX + VMMR0JMPBUF.edi]
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172 | mov ebp, [xDX + VMMR0JMPBUF.ebp]
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173 | mov xCX, [xDX + VMMR0JMPBUF.eip]
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174 | and dword [xDX + VMMR0JMPBUF.eip], byte 0 ; used for valid check.
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175 | mov esp, [xDX + VMMR0JMPBUF.esp]
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176 | push dword [xDX + VMMR0JMPBUF.eflags]
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177 | popf
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178 | jmp xCX
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179 |
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180 | .entry_error:
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181 | mov eax, VERR_VMM_SET_JMP_ERROR
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182 | jmp .proper_return
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183 |
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184 | .stack_overflow:
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185 | mov eax, VERR_VMM_SET_JMP_STACK_OVERFLOW
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186 | mov edx, ebx
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187 | jmp .proper_return
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188 |
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189 | .stack_overflow_almost:
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190 | mov eax, VERR_VMM_SET_JMP_STACK_OVERFLOW
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191 | mov edx, ebx
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192 | jmp .proper_return
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193 |
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194 | ;
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195 | ; Aborting resume.
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196 | ;
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197 | .bad:
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198 | and dword [xDX + VMMR0JMPBUF.eip], byte 0 ; used for valid check.
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199 | mov edi, [xDX + VMMR0JMPBUF.edi]
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200 | mov esi, [xDX + VMMR0JMPBUF.esi]
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201 | mov ebx, [xDX + VMMR0JMPBUF.ebx]
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202 | mov eax, VERR_VMM_SET_JMP_ABORTED_RESUME
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203 | ret
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204 |
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205 | ;
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206 | ; Resume VMMRZCallRing3 the call.
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207 | ;
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208 | .resume:
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209 | ; Sanity checks.
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210 | %ifdef VMM_R0_SWITCH_STACK
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211 | mov eax, [xDX + VMMR0JMPBUF.pvSavedStack]
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212 | %ifdef RT_STRICT
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213 | cmp dword [eax], STACK_PADDING
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214 | %endif
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215 | lea eax, [eax + VMM_STACK_SIZE - 32]
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216 | cmp dword [eax + 1ch], 0deadbeefh ; Marker 1.
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217 | jne .bad
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218 | %ifdef RT_STRICT
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219 | cmp [esi + 18h], edx ; The saved pJmpBuf pointer.
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220 | jne .bad
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221 | cmp dword [esi + 14h], 00c00ffeeh ; Marker 2.
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222 | jne .bad
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223 | cmp dword [esi + 10h], 0f00dbeefh ; Marker 3.
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224 | jne .bad
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225 | %endif
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226 | %else ; !VMM_R0_SWITCH_STACK
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227 | cmp ecx, [xDX + VMMR0JMPBUF.SpCheck]
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228 | jne .bad
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229 | .espCheck_ok:
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230 | mov ecx, [xDX + VMMR0JMPBUF.cbSavedStack]
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231 | cmp ecx, VMM_STACK_SIZE
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232 | ja .bad
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233 | test ecx, 3
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234 | jnz .bad
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235 | mov edi, [xDX + VMMR0JMPBUF.esp]
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236 | sub edi, [xDX + VMMR0JMPBUF.SpResume]
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237 | cmp ecx, edi
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238 | jne .bad
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239 | %endif
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240 |
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241 | %ifdef VMM_R0_SWITCH_STACK
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242 | ; Switch stack.
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243 | mov esp, [xDX + VMMR0JMPBUF.SpResume]
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244 | %else
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245 | ; Restore the stack.
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246 | mov ecx, [xDX + VMMR0JMPBUF.cbSavedStack]
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247 | shr ecx, 2
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248 | mov esi, [xDX + VMMR0JMPBUF.pvSavedStack]
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249 | mov edi, [xDX + VMMR0JMPBUF.SpResume]
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250 | mov esp, edi
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251 | rep movsd
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252 | %endif ; !VMM_R0_SWITCH_STACK
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253 | mov byte [xDX + VMMR0JMPBUF.fInRing3Call], 0
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254 |
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255 | ;
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256 | ; Continue where we left off.
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257 | ;
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258 | %ifdef VBOX_STRICT
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259 | pop eax ; magic
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260 | cmp eax, RESUME_MAGIC
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261 | je .magic_ok
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262 | mov ecx, 0123h
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263 | mov [ecx], edx
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264 | .magic_ok:
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265 | %endif
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266 | popf
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267 | pop ebx
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268 | pop esi
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269 | pop edi
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270 | pop ebp
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271 | xor eax, eax ; VINF_SUCCESS
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272 | ret
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273 | ENDPROC vmmR0CallRing3SetJmp
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274 |
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275 |
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276 | ;;
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277 | ; Worker for VMMRZCallRing3.
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278 | ; This will save the stack and registers.
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279 | ;
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280 | ; @param pJmpBuf msc:rcx gcc:rdi x86:[ebp+8] Pointer to the jump buffer.
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281 | ; @param rc msc:rdx gcc:rsi x86:[ebp+c] The return code.
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282 | ;
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283 | BEGINPROC vmmR0CallRing3LongJmp
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284 | ;
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285 | ; Save the registers on the stack.
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286 | ;
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287 | push ebp
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288 | mov ebp, esp
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289 | push edi
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290 | push esi
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291 | push ebx
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292 | pushf
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293 | %ifdef VBOX_STRICT
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294 | push RESUME_MAGIC
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295 | %endif
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296 |
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297 | ;
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298 | ; Load parameters.
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299 | ;
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300 | mov edx, [ebp + 08h] ; pJmpBuf
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301 | mov eax, [ebp + 0ch] ; rc
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302 |
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303 | ;
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304 | ; Is the jump buffer armed?
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305 | ;
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306 | cmp dword [xDX + VMMR0JMPBUF.eip], byte 0
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307 | je .nok
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308 |
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309 | ;
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310 | ; Sanity checks.
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311 | ;
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312 | mov edi, [xDX + VMMR0JMPBUF.pvSavedStack]
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313 | test edi, edi ; darwin may set this to 0.
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314 | jz .nok
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315 | mov [xDX + VMMR0JMPBUF.SpResume], esp
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316 | %ifndef VMM_R0_SWITCH_STACK
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317 | mov esi, esp
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318 | mov ecx, [xDX + VMMR0JMPBUF.esp]
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319 | sub ecx, esi
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320 |
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321 | ; two sanity checks on the size.
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322 | cmp ecx, VMM_STACK_SIZE ; check max size.
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323 | jnbe .nok
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324 |
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325 | ;
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326 | ; Copy the stack.
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327 | ;
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328 | test ecx, 3 ; check alignment
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329 | jnz .nok
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330 | mov [xDX + VMMR0JMPBUF.cbSavedStack], ecx
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331 | shr ecx, 2
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332 | rep movsd
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333 | %endif ; !VMM_R0_SWITCH_STACK
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334 |
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335 | ; Save ESP & EBP to enable stack dumps
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336 | mov ecx, ebp
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337 | mov [xDX + VMMR0JMPBUF.SavedEbp], ecx
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338 | sub ecx, 4
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339 | mov [xDX + VMMR0JMPBUF.SavedEsp], ecx
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340 |
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341 | ; store the last pieces of info.
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342 | mov ecx, [xDX + VMMR0JMPBUF.esp]
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343 | mov [xDX + VMMR0JMPBUF.SpCheck], ecx
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344 | mov byte [xDX + VMMR0JMPBUF.fInRing3Call], 1
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345 |
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346 | ;
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347 | ; Do the long jump.
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348 | ;
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349 | mov ebx, [xDX + VMMR0JMPBUF.ebx]
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350 | mov esi, [xDX + VMMR0JMPBUF.esi]
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351 | mov edi, [xDX + VMMR0JMPBUF.edi]
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352 | mov ebp, [xDX + VMMR0JMPBUF.ebp]
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353 | mov ecx, [xDX + VMMR0JMPBUF.eip]
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354 | mov esp, [xDX + VMMR0JMPBUF.esp]
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355 | push dword [xDX + VMMR0JMPBUF.eflags]
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356 | popf
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357 | jmp ecx
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358 |
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359 | ;
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360 | ; Failure
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361 | ;
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362 | .nok:
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363 | %ifdef VBOX_STRICT
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364 | pop eax ; magic
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365 | cmp eax, RESUME_MAGIC
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366 | je .magic_ok
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367 | mov ecx, 0123h
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368 | mov [ecx], edx
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369 | .magic_ok:
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370 | %endif
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371 | popf
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372 | pop ebx
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373 | pop esi
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374 | pop edi
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375 | mov eax, VERR_VMM_LONG_JMP_ERROR
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376 | leave
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377 | ret
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378 | ENDPROC vmmR0CallRing3LongJmp
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379 |
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380 |
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381 | ;;
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382 | ; Internal R0 logger worker: Logger wrapper.
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383 | ;
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384 | ; @cproto VMMR0DECL(void) vmmR0LoggerWrapper(const char *pszFormat, ...)
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385 | ;
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386 | EXPORTEDNAME vmmR0LoggerWrapper
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387 | push 0 ; assumes we're the wrapper for a default instance.
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388 | call NAME(RTLogLogger)
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389 | add esp, byte 4
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390 | ret
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391 | ENDPROC vmmR0LoggerWrapper
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392 |
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