1 | /** @file
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2 | Base PE/COFF loader supports loading any PE32/PE32+ or TE image, but
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3 | only supports relocating IA32, x64, IPF, and EBC images.
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4 |
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5 | Caution: This file requires additional review when modified.
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6 | This library will have external input - PE/COFF image.
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7 | This external input must be validated carefully to avoid security issue like
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8 | buffer overflow, integer overflow.
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9 |
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10 | The basic guideline is that caller need provide ImageContext->ImageRead () with the
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11 | necessary data range check, to make sure when this library reads PE/COFF image, the
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12 | PE image buffer is always in valid range.
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13 | This library will also do some additional check for PE header fields.
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14 |
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15 | PeCoffLoaderGetPeHeader() routine will do basic check for PE/COFF header.
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16 | PeCoffLoaderGetImageInfo() routine will do basic check for whole PE/COFF image.
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17 |
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18 | Copyright (c) 2006 - 2019, Intel Corporation. All rights reserved.<BR>
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19 | Portions copyright (c) 2008 - 2009, Apple Inc. All rights reserved.<BR>
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20 | SPDX-License-Identifier: BSD-2-Clause-Patent
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21 |
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22 | **/
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23 |
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24 | #include "BasePeCoffLibInternals.h"
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25 |
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26 | /**
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27 | Adjust some fields in section header for TE image.
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28 |
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29 | @param SectionHeader Pointer to the section header.
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30 | @param TeStrippedOffset Size adjust for the TE image.
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31 |
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32 | **/
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33 | VOID
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34 | PeCoffLoaderAdjustOffsetForTeImage (
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35 | EFI_IMAGE_SECTION_HEADER *SectionHeader,
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36 | UINT32 TeStrippedOffset
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37 | )
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38 | {
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39 | SectionHeader->VirtualAddress -= TeStrippedOffset;
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40 | SectionHeader->PointerToRawData -= TeStrippedOffset;
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41 | }
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42 |
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43 | /**
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44 | Retrieves the PE or TE Header from a PE/COFF or TE image.
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45 |
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46 | Caution: This function may receive untrusted input.
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47 | PE/COFF image is external input, so this routine will
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48 | also done many checks in PE image to make sure PE image DosHeader, PeOptionHeader,
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49 | SizeOfHeader, Section Data Region and Security Data Region be in PE image range.
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50 |
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51 | @param ImageContext The context of the image being loaded.
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52 | @param Hdr The buffer in which to return the PE32, PE32+, or TE header.
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53 |
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54 | @retval RETURN_SUCCESS The PE or TE Header is read.
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55 | @retval Other The error status from reading the PE/COFF or TE image using the ImageRead function.
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56 |
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57 | **/
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58 | RETURN_STATUS
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59 | PeCoffLoaderGetPeHeader (
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60 | IN OUT PE_COFF_LOADER_IMAGE_CONTEXT *ImageContext,
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61 | OUT EFI_IMAGE_OPTIONAL_HEADER_PTR_UNION Hdr
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62 | )
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63 | {
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64 | RETURN_STATUS Status;
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65 | EFI_IMAGE_DOS_HEADER DosHdr;
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66 | UINTN Size;
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67 | UINTN ReadSize;
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68 | UINT32 SectionHeaderOffset;
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69 | UINT32 Index;
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70 | UINT32 HeaderWithoutDataDir;
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71 | CHAR8 BufferData;
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72 | UINTN NumberOfSections;
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73 | EFI_IMAGE_SECTION_HEADER SectionHeader;
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74 |
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75 | //
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76 | // Read the DOS image header to check for its existence
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77 | //
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78 | Size = sizeof (EFI_IMAGE_DOS_HEADER);
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79 | ReadSize = Size;
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80 | Status = ImageContext->ImageRead (
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81 | ImageContext->Handle,
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82 | 0,
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83 | &Size,
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84 | &DosHdr
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85 | );
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86 | if (RETURN_ERROR (Status) || (Size != ReadSize)) {
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87 | ImageContext->ImageError = IMAGE_ERROR_IMAGE_READ;
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88 | if (Size != ReadSize) {
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89 | Status = RETURN_UNSUPPORTED;
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90 | }
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91 | return Status;
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92 | }
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93 |
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94 | ImageContext->PeCoffHeaderOffset = 0;
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95 | if (DosHdr.e_magic == EFI_IMAGE_DOS_SIGNATURE) {
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96 | //
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97 | // DOS image header is present, so read the PE header after the DOS image
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98 | // header
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99 | //
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100 | ImageContext->PeCoffHeaderOffset = DosHdr.e_lfanew;
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101 | }
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102 |
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103 | //
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104 | // Read the PE/COFF Header. For PE32 (32-bit) this will read in too much
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105 | // data, but that should not hurt anything. Hdr.Pe32->OptionalHeader.Magic
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106 | // determines if this is a PE32 or PE32+ image. The magic is in the same
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107 | // location in both images.
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108 | //
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109 | Size = sizeof (EFI_IMAGE_OPTIONAL_HEADER_UNION);
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110 | ReadSize = Size;
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111 | Status = ImageContext->ImageRead (
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112 | ImageContext->Handle,
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113 | ImageContext->PeCoffHeaderOffset,
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114 | &Size,
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115 | Hdr.Pe32
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116 | );
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117 | if (RETURN_ERROR (Status) || (Size != ReadSize)) {
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118 | ImageContext->ImageError = IMAGE_ERROR_IMAGE_READ;
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119 | if (Size != ReadSize) {
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120 | Status = RETURN_UNSUPPORTED;
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121 | }
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122 | return Status;
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123 | }
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124 |
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125 | //
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126 | // Use Signature to figure out if we understand the image format
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127 | //
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128 | if (Hdr.Te->Signature == EFI_TE_IMAGE_HEADER_SIGNATURE) {
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129 | ImageContext->IsTeImage = TRUE;
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130 | ImageContext->Machine = Hdr.Te->Machine;
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131 | ImageContext->ImageType = (UINT16)(Hdr.Te->Subsystem);
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132 | //
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133 | // For TeImage, SectionAlignment is undefined to be set to Zero
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134 | // ImageSize can be calculated.
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135 | //
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136 | ImageContext->ImageSize = 0;
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137 | ImageContext->SectionAlignment = 0;
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138 | ImageContext->SizeOfHeaders = sizeof (EFI_TE_IMAGE_HEADER) + (UINTN)Hdr.Te->BaseOfCode - (UINTN)Hdr.Te->StrippedSize;
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139 |
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140 | //
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141 | // Check the StrippedSize.
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142 | //
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143 | if (sizeof (EFI_TE_IMAGE_HEADER) >= (UINT32)Hdr.Te->StrippedSize) {
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144 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
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145 | return RETURN_UNSUPPORTED;
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146 | }
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147 |
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148 | //
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149 | // Check the SizeOfHeaders field.
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150 | //
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151 | if (Hdr.Te->BaseOfCode <= Hdr.Te->StrippedSize) {
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152 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
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153 | return RETURN_UNSUPPORTED;
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154 | }
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155 |
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156 | //
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157 | // Read last byte of Hdr.Te->SizeOfHeaders from the file.
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158 | //
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159 | Size = 1;
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160 | ReadSize = Size;
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161 | Status = ImageContext->ImageRead (
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162 | ImageContext->Handle,
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163 | ImageContext->SizeOfHeaders - 1,
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164 | &Size,
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165 | &BufferData
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166 | );
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167 | if (RETURN_ERROR (Status) || (Size != ReadSize)) {
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168 | ImageContext->ImageError = IMAGE_ERROR_IMAGE_READ;
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169 | if (Size != ReadSize) {
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170 | Status = RETURN_UNSUPPORTED;
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171 | }
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172 | return Status;
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173 | }
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174 |
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175 | //
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176 | // TE Image Data Directory Entry size is non-zero, but the Data Directory Virtual Address is zero.
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177 | // This case is not a valid TE image.
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178 | //
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179 | if ((Hdr.Te->DataDirectory[0].Size != 0 && Hdr.Te->DataDirectory[0].VirtualAddress == 0) ||
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180 | (Hdr.Te->DataDirectory[1].Size != 0 && Hdr.Te->DataDirectory[1].VirtualAddress == 0)) {
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181 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
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182 | return RETURN_UNSUPPORTED;
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183 | }
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184 | } else if (Hdr.Pe32->Signature == EFI_IMAGE_NT_SIGNATURE) {
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185 | ImageContext->IsTeImage = FALSE;
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186 | ImageContext->Machine = Hdr.Pe32->FileHeader.Machine;
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187 |
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188 | if (Hdr.Pe32->OptionalHeader.Magic == EFI_IMAGE_NT_OPTIONAL_HDR32_MAGIC) {
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189 | //
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190 | // 1. Check OptionalHeader.NumberOfRvaAndSizes filed.
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191 | //
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192 | if (EFI_IMAGE_NUMBER_OF_DIRECTORY_ENTRIES < Hdr.Pe32->OptionalHeader.NumberOfRvaAndSizes) {
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193 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
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194 | return RETURN_UNSUPPORTED;
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195 | }
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196 |
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197 | //
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198 | // 2. Check the FileHeader.SizeOfOptionalHeader field.
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199 | // OptionalHeader.NumberOfRvaAndSizes is not bigger than 16, so
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200 | // OptionalHeader.NumberOfRvaAndSizes * sizeof (EFI_IMAGE_DATA_DIRECTORY) will not overflow.
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201 | //
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202 | HeaderWithoutDataDir = sizeof (EFI_IMAGE_OPTIONAL_HEADER32) - sizeof (EFI_IMAGE_DATA_DIRECTORY) * EFI_IMAGE_NUMBER_OF_DIRECTORY_ENTRIES;
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203 | if (((UINT32)Hdr.Pe32->FileHeader.SizeOfOptionalHeader - HeaderWithoutDataDir) !=
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204 | Hdr.Pe32->OptionalHeader.NumberOfRvaAndSizes * sizeof (EFI_IMAGE_DATA_DIRECTORY)) {
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205 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
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206 | return RETURN_UNSUPPORTED;
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207 | }
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208 |
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209 | SectionHeaderOffset = ImageContext->PeCoffHeaderOffset + sizeof (UINT32) + sizeof (EFI_IMAGE_FILE_HEADER) + Hdr.Pe32->FileHeader.SizeOfOptionalHeader;
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210 | //
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211 | // 3. Check the FileHeader.NumberOfSections field.
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212 | //
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213 | if (Hdr.Pe32->OptionalHeader.SizeOfImage <= SectionHeaderOffset) {
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214 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
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215 | return RETURN_UNSUPPORTED;
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216 | }
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217 | if ((Hdr.Pe32->OptionalHeader.SizeOfImage - SectionHeaderOffset) / EFI_IMAGE_SIZEOF_SECTION_HEADER <= Hdr.Pe32->FileHeader.NumberOfSections) {
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218 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
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219 | return RETURN_UNSUPPORTED;
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220 | }
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221 |
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222 | //
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223 | // 4. Check the OptionalHeader.SizeOfHeaders field.
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224 | //
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225 | if (Hdr.Pe32->OptionalHeader.SizeOfHeaders <= SectionHeaderOffset) {
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226 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
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227 | return RETURN_UNSUPPORTED;
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228 | }
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229 | if (Hdr.Pe32->OptionalHeader.SizeOfHeaders >= Hdr.Pe32->OptionalHeader.SizeOfImage) {
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230 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
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231 | return RETURN_UNSUPPORTED;
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232 | }
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233 | if ((Hdr.Pe32->OptionalHeader.SizeOfHeaders - SectionHeaderOffset) / EFI_IMAGE_SIZEOF_SECTION_HEADER < (UINT32)Hdr.Pe32->FileHeader.NumberOfSections) {
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234 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
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235 | return RETURN_UNSUPPORTED;
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236 | }
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237 |
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238 | //
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239 | // 4.2 Read last byte of Hdr.Pe32.OptionalHeader.SizeOfHeaders from the file.
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240 | //
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241 | Size = 1;
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242 | ReadSize = Size;
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243 | Status = ImageContext->ImageRead (
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244 | ImageContext->Handle,
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245 | Hdr.Pe32->OptionalHeader.SizeOfHeaders - 1,
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246 | &Size,
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247 | &BufferData
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248 | );
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249 | if (RETURN_ERROR (Status) || (Size != ReadSize)) {
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250 | ImageContext->ImageError = IMAGE_ERROR_IMAGE_READ;
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251 | if (Size != ReadSize) {
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252 | Status = RETURN_UNSUPPORTED;
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253 | }
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254 | return Status;
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255 | }
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256 |
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257 | //
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258 | // Check the EFI_IMAGE_DIRECTORY_ENTRY_SECURITY data.
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259 | // Read the last byte to make sure the data is in the image region.
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260 | // The DataDirectory array begin with 1, not 0, so here use < to compare not <=.
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261 | //
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262 | if (EFI_IMAGE_DIRECTORY_ENTRY_SECURITY < Hdr.Pe32->OptionalHeader.NumberOfRvaAndSizes) {
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263 | if (Hdr.Pe32->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_SECURITY].Size != 0) {
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264 | //
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265 | // Check the member data to avoid overflow.
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266 | //
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267 | if ((UINT32) (~0) - Hdr.Pe32->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_SECURITY].VirtualAddress <
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268 | Hdr.Pe32->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_SECURITY].Size) {
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269 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
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270 | return RETURN_UNSUPPORTED;
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271 | }
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272 |
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273 | //
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274 | // Read last byte of section header from file
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275 | //
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276 | Size = 1;
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277 | ReadSize = Size;
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278 | Status = ImageContext->ImageRead (
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279 | ImageContext->Handle,
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280 | Hdr.Pe32->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_SECURITY].VirtualAddress +
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281 | Hdr.Pe32->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_SECURITY].Size - 1,
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282 | &Size,
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283 | &BufferData
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284 | );
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285 | if (RETURN_ERROR (Status) || (Size != ReadSize)) {
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286 | ImageContext->ImageError = IMAGE_ERROR_IMAGE_READ;
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287 | if (Size != ReadSize) {
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288 | Status = RETURN_UNSUPPORTED;
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289 | }
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290 | return Status;
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291 | }
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292 | }
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293 | }
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294 |
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295 | //
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296 | // Use PE32 offset
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297 | //
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298 | ImageContext->ImageType = Hdr.Pe32->OptionalHeader.Subsystem;
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299 | ImageContext->ImageSize = (UINT64)Hdr.Pe32->OptionalHeader.SizeOfImage;
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300 | ImageContext->SectionAlignment = Hdr.Pe32->OptionalHeader.SectionAlignment;
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301 | ImageContext->SizeOfHeaders = Hdr.Pe32->OptionalHeader.SizeOfHeaders;
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302 |
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303 | } else if (Hdr.Pe32->OptionalHeader.Magic == EFI_IMAGE_NT_OPTIONAL_HDR64_MAGIC) {
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304 | //
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305 | // 1. Check FileHeader.NumberOfRvaAndSizes filed.
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306 | //
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307 | if (EFI_IMAGE_NUMBER_OF_DIRECTORY_ENTRIES < Hdr.Pe32Plus->OptionalHeader.NumberOfRvaAndSizes) {
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308 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
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309 | return RETURN_UNSUPPORTED;
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310 | }
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311 | //
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312 | // 2. Check the FileHeader.SizeOfOptionalHeader field.
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313 | // OptionalHeader.NumberOfRvaAndSizes is not bigger than 16, so
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314 | // OptionalHeader.NumberOfRvaAndSizes * sizeof (EFI_IMAGE_DATA_DIRECTORY) will not overflow.
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315 | //
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316 | HeaderWithoutDataDir = sizeof (EFI_IMAGE_OPTIONAL_HEADER64) - sizeof (EFI_IMAGE_DATA_DIRECTORY) * EFI_IMAGE_NUMBER_OF_DIRECTORY_ENTRIES;
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317 | if (((UINT32)Hdr.Pe32Plus->FileHeader.SizeOfOptionalHeader - HeaderWithoutDataDir) !=
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318 | Hdr.Pe32Plus->OptionalHeader.NumberOfRvaAndSizes * sizeof (EFI_IMAGE_DATA_DIRECTORY)) {
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319 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
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320 | return RETURN_UNSUPPORTED;
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321 | }
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322 |
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323 | SectionHeaderOffset = ImageContext->PeCoffHeaderOffset + sizeof (UINT32) + sizeof (EFI_IMAGE_FILE_HEADER) + Hdr.Pe32Plus->FileHeader.SizeOfOptionalHeader;
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324 | //
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325 | // 3. Check the FileHeader.NumberOfSections field.
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326 | //
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327 | if (Hdr.Pe32Plus->OptionalHeader.SizeOfImage <= SectionHeaderOffset) {
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328 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
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329 | return RETURN_UNSUPPORTED;
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330 | }
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331 | if ((Hdr.Pe32Plus->OptionalHeader.SizeOfImage - SectionHeaderOffset) / EFI_IMAGE_SIZEOF_SECTION_HEADER <= Hdr.Pe32Plus->FileHeader.NumberOfSections) {
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332 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
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333 | return RETURN_UNSUPPORTED;
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334 | }
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335 |
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336 | //
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337 | // 4. Check the OptionalHeader.SizeOfHeaders field.
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338 | //
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339 | if (Hdr.Pe32Plus->OptionalHeader.SizeOfHeaders <= SectionHeaderOffset) {
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340 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
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341 | return RETURN_UNSUPPORTED;
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342 | }
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343 | if (Hdr.Pe32Plus->OptionalHeader.SizeOfHeaders >= Hdr.Pe32Plus->OptionalHeader.SizeOfImage) {
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344 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
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345 | return RETURN_UNSUPPORTED;
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346 | }
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347 | if ((Hdr.Pe32Plus->OptionalHeader.SizeOfHeaders - SectionHeaderOffset) / EFI_IMAGE_SIZEOF_SECTION_HEADER < (UINT32)Hdr.Pe32Plus->FileHeader.NumberOfSections) {
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348 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
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349 | return RETURN_UNSUPPORTED;
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350 | }
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351 |
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352 | //
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353 | // 4.2 Read last byte of Hdr.Pe32Plus.OptionalHeader.SizeOfHeaders from the file.
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354 | //
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355 | Size = 1;
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356 | ReadSize = Size;
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357 | Status = ImageContext->ImageRead (
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358 | ImageContext->Handle,
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359 | Hdr.Pe32Plus->OptionalHeader.SizeOfHeaders - 1,
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360 | &Size,
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361 | &BufferData
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362 | );
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363 | if (RETURN_ERROR (Status) || (Size != ReadSize)) {
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364 | ImageContext->ImageError = IMAGE_ERROR_IMAGE_READ;
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365 | if (Size != ReadSize) {
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366 | Status = RETURN_UNSUPPORTED;
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367 | }
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368 | return Status;
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369 | }
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370 |
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371 | //
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372 | // Check the EFI_IMAGE_DIRECTORY_ENTRY_SECURITY data.
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373 | // Read the last byte to make sure the data is in the image region.
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374 | // The DataDirectory array begin with 1, not 0, so here use < to compare not <=.
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375 | //
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376 | if (EFI_IMAGE_DIRECTORY_ENTRY_SECURITY < Hdr.Pe32Plus->OptionalHeader.NumberOfRvaAndSizes) {
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377 | if (Hdr.Pe32Plus->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_SECURITY].Size != 0) {
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378 | //
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379 | // Check the member data to avoid overflow.
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380 | //
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381 | if ((UINT32) (~0) - Hdr.Pe32Plus->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_SECURITY].VirtualAddress <
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382 | Hdr.Pe32Plus->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_SECURITY].Size) {
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383 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
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384 | return RETURN_UNSUPPORTED;
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385 | }
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386 |
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387 | //
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388 | // Read last byte of section header from file
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389 | //
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390 | Size = 1;
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391 | ReadSize = Size;
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392 | Status = ImageContext->ImageRead (
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393 | ImageContext->Handle,
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394 | Hdr.Pe32Plus->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_SECURITY].VirtualAddress +
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395 | Hdr.Pe32Plus->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_SECURITY].Size - 1,
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396 | &Size,
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397 | &BufferData
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398 | );
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399 | if (RETURN_ERROR (Status) || (Size != ReadSize)) {
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400 | ImageContext->ImageError = IMAGE_ERROR_IMAGE_READ;
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401 | if (Size != ReadSize) {
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402 | Status = RETURN_UNSUPPORTED;
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403 | }
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404 | return Status;
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405 | }
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406 | }
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407 | }
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408 |
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409 | //
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410 | // Use PE32+ offset
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411 | //
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412 | ImageContext->ImageType = Hdr.Pe32Plus->OptionalHeader.Subsystem;
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413 | ImageContext->ImageSize = (UINT64) Hdr.Pe32Plus->OptionalHeader.SizeOfImage;
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---|
414 | ImageContext->SectionAlignment = Hdr.Pe32Plus->OptionalHeader.SectionAlignment;
|
---|
415 | ImageContext->SizeOfHeaders = Hdr.Pe32Plus->OptionalHeader.SizeOfHeaders;
|
---|
416 | } else {
|
---|
417 | ImageContext->ImageError = IMAGE_ERROR_INVALID_MACHINE_TYPE;
|
---|
418 | return RETURN_UNSUPPORTED;
|
---|
419 | }
|
---|
420 | } else {
|
---|
421 | ImageContext->ImageError = IMAGE_ERROR_INVALID_MACHINE_TYPE;
|
---|
422 | return RETURN_UNSUPPORTED;
|
---|
423 | }
|
---|
424 |
|
---|
425 | if (!PeCoffLoaderImageFormatSupported (ImageContext->Machine)) {
|
---|
426 | //
|
---|
427 | // If the PE/COFF loader does not support the image type return
|
---|
428 | // unsupported. This library can support lots of types of images
|
---|
429 | // this does not mean the user of this library can call the entry
|
---|
430 | // point of the image.
|
---|
431 | //
|
---|
432 | return RETURN_UNSUPPORTED;
|
---|
433 | }
|
---|
434 |
|
---|
435 | //
|
---|
436 | // Check each section field.
|
---|
437 | //
|
---|
438 | if (ImageContext->IsTeImage) {
|
---|
439 | SectionHeaderOffset = sizeof(EFI_TE_IMAGE_HEADER);
|
---|
440 | NumberOfSections = (UINTN) (Hdr.Te->NumberOfSections);
|
---|
441 | } else {
|
---|
442 | SectionHeaderOffset = ImageContext->PeCoffHeaderOffset + sizeof (UINT32) + sizeof (EFI_IMAGE_FILE_HEADER) + Hdr.Pe32->FileHeader.SizeOfOptionalHeader;
|
---|
443 | NumberOfSections = (UINTN) (Hdr.Pe32->FileHeader.NumberOfSections);
|
---|
444 | }
|
---|
445 |
|
---|
446 | for (Index = 0; Index < NumberOfSections; Index++) {
|
---|
447 | //
|
---|
448 | // Read section header from file
|
---|
449 | //
|
---|
450 | Size = sizeof (EFI_IMAGE_SECTION_HEADER);
|
---|
451 | ReadSize = Size;
|
---|
452 | Status = ImageContext->ImageRead (
|
---|
453 | ImageContext->Handle,
|
---|
454 | SectionHeaderOffset,
|
---|
455 | &Size,
|
---|
456 | &SectionHeader
|
---|
457 | );
|
---|
458 | if (RETURN_ERROR (Status) || (Size != ReadSize)) {
|
---|
459 | ImageContext->ImageError = IMAGE_ERROR_IMAGE_READ;
|
---|
460 | if (Size != ReadSize) {
|
---|
461 | Status = RETURN_UNSUPPORTED;
|
---|
462 | }
|
---|
463 | return Status;
|
---|
464 | }
|
---|
465 |
|
---|
466 | //
|
---|
467 | // Adjust some field in Section Header for TE image.
|
---|
468 | //
|
---|
469 | if (ImageContext->IsTeImage) {
|
---|
470 | PeCoffLoaderAdjustOffsetForTeImage (&SectionHeader, (UINT32)Hdr.Te->StrippedSize - sizeof (EFI_TE_IMAGE_HEADER));
|
---|
471 | }
|
---|
472 |
|
---|
473 | if (SectionHeader.SizeOfRawData > 0) {
|
---|
474 | //
|
---|
475 | // Section data should bigger than the Pe header.
|
---|
476 | //
|
---|
477 | if (SectionHeader.VirtualAddress < ImageContext->SizeOfHeaders ||
|
---|
478 | SectionHeader.PointerToRawData < ImageContext->SizeOfHeaders) {
|
---|
479 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
|
---|
480 | return RETURN_UNSUPPORTED;
|
---|
481 | }
|
---|
482 |
|
---|
483 | //
|
---|
484 | // Check the member data to avoid overflow.
|
---|
485 | //
|
---|
486 | if ((UINT32) (~0) - SectionHeader.PointerToRawData < SectionHeader.SizeOfRawData) {
|
---|
487 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
|
---|
488 | return RETURN_UNSUPPORTED;
|
---|
489 | }
|
---|
490 |
|
---|
491 | //
|
---|
492 | // Base on the ImageRead function to check the section data field.
|
---|
493 | // Read the last byte to make sure the data is in the image region.
|
---|
494 | //
|
---|
495 | Size = 1;
|
---|
496 | ReadSize = Size;
|
---|
497 | Status = ImageContext->ImageRead (
|
---|
498 | ImageContext->Handle,
|
---|
499 | SectionHeader.PointerToRawData + SectionHeader.SizeOfRawData - 1,
|
---|
500 | &Size,
|
---|
501 | &BufferData
|
---|
502 | );
|
---|
503 | if (RETURN_ERROR (Status) || (Size != ReadSize)) {
|
---|
504 | ImageContext->ImageError = IMAGE_ERROR_IMAGE_READ;
|
---|
505 | if (Size != ReadSize) {
|
---|
506 | Status = RETURN_UNSUPPORTED;
|
---|
507 | }
|
---|
508 | return Status;
|
---|
509 | }
|
---|
510 | }
|
---|
511 |
|
---|
512 | //
|
---|
513 | // Check next section.
|
---|
514 | //
|
---|
515 | SectionHeaderOffset += sizeof (EFI_IMAGE_SECTION_HEADER);
|
---|
516 | }
|
---|
517 |
|
---|
518 | return RETURN_SUCCESS;
|
---|
519 | }
|
---|
520 |
|
---|
521 |
|
---|
522 | /**
|
---|
523 | Retrieves information about a PE/COFF image.
|
---|
524 |
|
---|
525 | Computes the PeCoffHeaderOffset, IsTeImage, ImageType, ImageAddress, ImageSize,
|
---|
526 | DestinationAddress, RelocationsStripped, SectionAlignment, SizeOfHeaders, and
|
---|
527 | DebugDirectoryEntryRva fields of the ImageContext structure.
|
---|
528 | If ImageContext is NULL, then return RETURN_INVALID_PARAMETER.
|
---|
529 | If the PE/COFF image accessed through the ImageRead service in the ImageContext
|
---|
530 | structure is not a supported PE/COFF image type, then return RETURN_UNSUPPORTED.
|
---|
531 | If any errors occur while computing the fields of ImageContext,
|
---|
532 | then the error status is returned in the ImageError field of ImageContext.
|
---|
533 | If the image is a TE image, then SectionAlignment is set to 0.
|
---|
534 | The ImageRead and Handle fields of ImageContext structure must be valid prior
|
---|
535 | to invoking this service.
|
---|
536 |
|
---|
537 | Caution: This function may receive untrusted input.
|
---|
538 | PE/COFF image is external input, so this routine will
|
---|
539 | also done many checks in PE image to make sure PE image DosHeader, PeOptionHeader,
|
---|
540 | SizeOfHeader, Section Data Region and Security Data Region be in PE image range.
|
---|
541 |
|
---|
542 | @param ImageContext The pointer to the image context structure that describes the PE/COFF
|
---|
543 | image that needs to be examined by this function.
|
---|
544 |
|
---|
545 | @retval RETURN_SUCCESS The information on the PE/COFF image was collected.
|
---|
546 | @retval RETURN_INVALID_PARAMETER ImageContext is NULL.
|
---|
547 | @retval RETURN_UNSUPPORTED The PE/COFF image is not supported.
|
---|
548 |
|
---|
549 | **/
|
---|
550 | RETURN_STATUS
|
---|
551 | EFIAPI
|
---|
552 | PeCoffLoaderGetImageInfo (
|
---|
553 | IN OUT PE_COFF_LOADER_IMAGE_CONTEXT *ImageContext
|
---|
554 | )
|
---|
555 | {
|
---|
556 | RETURN_STATUS Status;
|
---|
557 | EFI_IMAGE_OPTIONAL_HEADER_UNION HdrData;
|
---|
558 | EFI_IMAGE_OPTIONAL_HEADER_PTR_UNION Hdr;
|
---|
559 | EFI_IMAGE_DATA_DIRECTORY *DebugDirectoryEntry;
|
---|
560 | UINTN Size;
|
---|
561 | UINTN ReadSize;
|
---|
562 | UINTN Index;
|
---|
563 | UINTN DebugDirectoryEntryRva;
|
---|
564 | UINTN DebugDirectoryEntryFileOffset;
|
---|
565 | UINTN SectionHeaderOffset;
|
---|
566 | EFI_IMAGE_SECTION_HEADER SectionHeader;
|
---|
567 | EFI_IMAGE_DEBUG_DIRECTORY_ENTRY DebugEntry;
|
---|
568 | UINT32 NumberOfRvaAndSizes;
|
---|
569 | UINT32 TeStrippedOffset;
|
---|
570 |
|
---|
571 | if (ImageContext == NULL) {
|
---|
572 | return RETURN_INVALID_PARAMETER;
|
---|
573 | }
|
---|
574 | //
|
---|
575 | // Assume success
|
---|
576 | //
|
---|
577 | ImageContext->ImageError = IMAGE_ERROR_SUCCESS;
|
---|
578 |
|
---|
579 | Hdr.Union = &HdrData;
|
---|
580 | Status = PeCoffLoaderGetPeHeader (ImageContext, Hdr);
|
---|
581 | if (RETURN_ERROR (Status)) {
|
---|
582 | return Status;
|
---|
583 | }
|
---|
584 |
|
---|
585 | //
|
---|
586 | // Retrieve the base address of the image
|
---|
587 | //
|
---|
588 | if (!(ImageContext->IsTeImage)) {
|
---|
589 | TeStrippedOffset = 0;
|
---|
590 | if (Hdr.Pe32->OptionalHeader.Magic == EFI_IMAGE_NT_OPTIONAL_HDR32_MAGIC) {
|
---|
591 | //
|
---|
592 | // Use PE32 offset
|
---|
593 | //
|
---|
594 | ImageContext->ImageAddress = Hdr.Pe32->OptionalHeader.ImageBase;
|
---|
595 | } else {
|
---|
596 | //
|
---|
597 | // Use PE32+ offset
|
---|
598 | //
|
---|
599 | ImageContext->ImageAddress = Hdr.Pe32Plus->OptionalHeader.ImageBase;
|
---|
600 | }
|
---|
601 | } else {
|
---|
602 | TeStrippedOffset = (UINT32)Hdr.Te->StrippedSize - sizeof (EFI_TE_IMAGE_HEADER);
|
---|
603 | ImageContext->ImageAddress = (PHYSICAL_ADDRESS)(Hdr.Te->ImageBase + TeStrippedOffset);
|
---|
604 | }
|
---|
605 |
|
---|
606 | //
|
---|
607 | // Initialize the alternate destination address to 0 indicating that it
|
---|
608 | // should not be used.
|
---|
609 | //
|
---|
610 | ImageContext->DestinationAddress = 0;
|
---|
611 |
|
---|
612 | //
|
---|
613 | // Initialize the debug codeview pointer.
|
---|
614 | //
|
---|
615 | ImageContext->DebugDirectoryEntryRva = 0;
|
---|
616 | ImageContext->CodeView = NULL;
|
---|
617 | ImageContext->PdbPointer = NULL;
|
---|
618 |
|
---|
619 | //
|
---|
620 | // Three cases with regards to relocations:
|
---|
621 | // - Image has base relocs, RELOCS_STRIPPED==0 => image is relocatable
|
---|
622 | // - Image has no base relocs, RELOCS_STRIPPED==1 => Image is not relocatable
|
---|
623 | // - Image has no base relocs, RELOCS_STRIPPED==0 => Image is relocatable but
|
---|
624 | // has no base relocs to apply
|
---|
625 | // Obviously having base relocations with RELOCS_STRIPPED==1 is invalid.
|
---|
626 | //
|
---|
627 | // Look at the file header to determine if relocations have been stripped, and
|
---|
628 | // save this information in the image context for later use.
|
---|
629 | //
|
---|
630 | if ((!(ImageContext->IsTeImage)) && ((Hdr.Pe32->FileHeader.Characteristics & EFI_IMAGE_FILE_RELOCS_STRIPPED) != 0)) {
|
---|
631 | ImageContext->RelocationsStripped = TRUE;
|
---|
632 | } else if ((ImageContext->IsTeImage) && (Hdr.Te->DataDirectory[0].Size == 0) && (Hdr.Te->DataDirectory[0].VirtualAddress == 0)) {
|
---|
633 | ImageContext->RelocationsStripped = TRUE;
|
---|
634 | } else {
|
---|
635 | ImageContext->RelocationsStripped = FALSE;
|
---|
636 | }
|
---|
637 |
|
---|
638 | if (!(ImageContext->IsTeImage)) {
|
---|
639 | if (Hdr.Pe32->OptionalHeader.Magic == EFI_IMAGE_NT_OPTIONAL_HDR32_MAGIC) {
|
---|
640 | //
|
---|
641 | // Use PE32 offset
|
---|
642 | //
|
---|
643 | NumberOfRvaAndSizes = Hdr.Pe32->OptionalHeader.NumberOfRvaAndSizes;
|
---|
644 | DebugDirectoryEntry = (EFI_IMAGE_DATA_DIRECTORY *)&(Hdr.Pe32->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_DEBUG]);
|
---|
645 | } else {
|
---|
646 | //
|
---|
647 | // Use PE32+ offset
|
---|
648 | //
|
---|
649 | NumberOfRvaAndSizes = Hdr.Pe32Plus->OptionalHeader.NumberOfRvaAndSizes;
|
---|
650 | DebugDirectoryEntry = (EFI_IMAGE_DATA_DIRECTORY *)&(Hdr.Pe32Plus->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_DEBUG]);
|
---|
651 | }
|
---|
652 |
|
---|
653 | if (NumberOfRvaAndSizes > EFI_IMAGE_DIRECTORY_ENTRY_DEBUG) {
|
---|
654 |
|
---|
655 | DebugDirectoryEntryRva = DebugDirectoryEntry->VirtualAddress;
|
---|
656 |
|
---|
657 | //
|
---|
658 | // Determine the file offset of the debug directory... This means we walk
|
---|
659 | // the sections to find which section contains the RVA of the debug
|
---|
660 | // directory
|
---|
661 | //
|
---|
662 | DebugDirectoryEntryFileOffset = 0;
|
---|
663 |
|
---|
664 | SectionHeaderOffset = ImageContext->PeCoffHeaderOffset +
|
---|
665 | sizeof (UINT32) +
|
---|
666 | sizeof (EFI_IMAGE_FILE_HEADER) +
|
---|
667 | Hdr.Pe32->FileHeader.SizeOfOptionalHeader;
|
---|
668 |
|
---|
669 | for (Index = 0; Index < Hdr.Pe32->FileHeader.NumberOfSections; Index++) {
|
---|
670 | //
|
---|
671 | // Read section header from file
|
---|
672 | //
|
---|
673 | Size = sizeof (EFI_IMAGE_SECTION_HEADER);
|
---|
674 | ReadSize = Size;
|
---|
675 | Status = ImageContext->ImageRead (
|
---|
676 | ImageContext->Handle,
|
---|
677 | SectionHeaderOffset,
|
---|
678 | &Size,
|
---|
679 | &SectionHeader
|
---|
680 | );
|
---|
681 | if (RETURN_ERROR (Status) || (Size != ReadSize)) {
|
---|
682 | ImageContext->ImageError = IMAGE_ERROR_IMAGE_READ;
|
---|
683 | if (Size != ReadSize) {
|
---|
684 | Status = RETURN_UNSUPPORTED;
|
---|
685 | }
|
---|
686 | return Status;
|
---|
687 | }
|
---|
688 |
|
---|
689 | if (DebugDirectoryEntryRva >= SectionHeader.VirtualAddress &&
|
---|
690 | DebugDirectoryEntryRva < SectionHeader.VirtualAddress + SectionHeader.Misc.VirtualSize) {
|
---|
691 |
|
---|
692 | DebugDirectoryEntryFileOffset = DebugDirectoryEntryRva - SectionHeader.VirtualAddress + SectionHeader.PointerToRawData;
|
---|
693 | break;
|
---|
694 | }
|
---|
695 |
|
---|
696 | SectionHeaderOffset += sizeof (EFI_IMAGE_SECTION_HEADER);
|
---|
697 | }
|
---|
698 |
|
---|
699 | if (DebugDirectoryEntryFileOffset != 0) {
|
---|
700 | for (Index = 0; Index < DebugDirectoryEntry->Size; Index += sizeof (EFI_IMAGE_DEBUG_DIRECTORY_ENTRY)) {
|
---|
701 | //
|
---|
702 | // Read next debug directory entry
|
---|
703 | //
|
---|
704 | Size = sizeof (EFI_IMAGE_DEBUG_DIRECTORY_ENTRY);
|
---|
705 | ReadSize = Size;
|
---|
706 | Status = ImageContext->ImageRead (
|
---|
707 | ImageContext->Handle,
|
---|
708 | DebugDirectoryEntryFileOffset + Index,
|
---|
709 | &Size,
|
---|
710 | &DebugEntry
|
---|
711 | );
|
---|
712 | if (RETURN_ERROR (Status) || (Size != ReadSize)) {
|
---|
713 | ImageContext->ImageError = IMAGE_ERROR_IMAGE_READ;
|
---|
714 | if (Size != ReadSize) {
|
---|
715 | Status = RETURN_UNSUPPORTED;
|
---|
716 | }
|
---|
717 | return Status;
|
---|
718 | }
|
---|
719 |
|
---|
720 | //
|
---|
721 | // From PeCoff spec, when DebugEntry.RVA == 0 means this debug info will not load into memory.
|
---|
722 | // Here we will always load EFI_IMAGE_DEBUG_TYPE_CODEVIEW type debug info. so need adjust the
|
---|
723 | // ImageContext->ImageSize when DebugEntry.RVA == 0.
|
---|
724 | //
|
---|
725 | if (DebugEntry.Type == EFI_IMAGE_DEBUG_TYPE_CODEVIEW) {
|
---|
726 | ImageContext->DebugDirectoryEntryRva = (UINT32) (DebugDirectoryEntryRva + Index);
|
---|
727 | if (DebugEntry.RVA == 0 && DebugEntry.FileOffset != 0) {
|
---|
728 | ImageContext->ImageSize += DebugEntry.SizeOfData;
|
---|
729 | }
|
---|
730 |
|
---|
731 | return RETURN_SUCCESS;
|
---|
732 | }
|
---|
733 | }
|
---|
734 | }
|
---|
735 | }
|
---|
736 | } else {
|
---|
737 |
|
---|
738 | DebugDirectoryEntry = &Hdr.Te->DataDirectory[1];
|
---|
739 | DebugDirectoryEntryRva = DebugDirectoryEntry->VirtualAddress;
|
---|
740 | SectionHeaderOffset = (UINTN)(sizeof (EFI_TE_IMAGE_HEADER));
|
---|
741 |
|
---|
742 | DebugDirectoryEntryFileOffset = 0;
|
---|
743 |
|
---|
744 | for (Index = 0; Index < Hdr.Te->NumberOfSections;) {
|
---|
745 | //
|
---|
746 | // Read section header from file
|
---|
747 | //
|
---|
748 | Size = sizeof (EFI_IMAGE_SECTION_HEADER);
|
---|
749 | ReadSize = Size;
|
---|
750 | Status = ImageContext->ImageRead (
|
---|
751 | ImageContext->Handle,
|
---|
752 | SectionHeaderOffset,
|
---|
753 | &Size,
|
---|
754 | &SectionHeader
|
---|
755 | );
|
---|
756 | if (RETURN_ERROR (Status) || (Size != ReadSize)) {
|
---|
757 | ImageContext->ImageError = IMAGE_ERROR_IMAGE_READ;
|
---|
758 | if (Size != ReadSize) {
|
---|
759 | Status = RETURN_UNSUPPORTED;
|
---|
760 | }
|
---|
761 | return Status;
|
---|
762 | }
|
---|
763 |
|
---|
764 | if (DebugDirectoryEntryRva >= SectionHeader.VirtualAddress &&
|
---|
765 | DebugDirectoryEntryRva < SectionHeader.VirtualAddress + SectionHeader.Misc.VirtualSize) {
|
---|
766 | DebugDirectoryEntryFileOffset = DebugDirectoryEntryRva -
|
---|
767 | SectionHeader.VirtualAddress +
|
---|
768 | SectionHeader.PointerToRawData -
|
---|
769 | TeStrippedOffset;
|
---|
770 |
|
---|
771 | //
|
---|
772 | // File offset of the debug directory was found, if this is not the last
|
---|
773 | // section, then skip to the last section for calculating the image size.
|
---|
774 | //
|
---|
775 | if (Index < (UINTN) Hdr.Te->NumberOfSections - 1) {
|
---|
776 | SectionHeaderOffset += (Hdr.Te->NumberOfSections - 1 - Index) * sizeof (EFI_IMAGE_SECTION_HEADER);
|
---|
777 | Index = Hdr.Te->NumberOfSections - 1;
|
---|
778 | continue;
|
---|
779 | }
|
---|
780 | }
|
---|
781 |
|
---|
782 | //
|
---|
783 | // In Te image header there is not a field to describe the ImageSize.
|
---|
784 | // Actually, the ImageSize equals the RVA plus the VirtualSize of
|
---|
785 | // the last section mapped into memory (Must be rounded up to
|
---|
786 | // a multiple of Section Alignment). Per the PE/COFF specification, the
|
---|
787 | // section headers in the Section Table must appear in order of the RVA
|
---|
788 | // values for the corresponding sections. So the ImageSize can be determined
|
---|
789 | // by the RVA and the VirtualSize of the last section header in the
|
---|
790 | // Section Table.
|
---|
791 | //
|
---|
792 | if ((++Index) == (UINTN)Hdr.Te->NumberOfSections) {
|
---|
793 | ImageContext->ImageSize = (SectionHeader.VirtualAddress + SectionHeader.Misc.VirtualSize) - TeStrippedOffset;
|
---|
794 | }
|
---|
795 |
|
---|
796 | SectionHeaderOffset += sizeof (EFI_IMAGE_SECTION_HEADER);
|
---|
797 | }
|
---|
798 |
|
---|
799 | if (DebugDirectoryEntryFileOffset != 0) {
|
---|
800 | for (Index = 0; Index < DebugDirectoryEntry->Size; Index += sizeof (EFI_IMAGE_DEBUG_DIRECTORY_ENTRY)) {
|
---|
801 | //
|
---|
802 | // Read next debug directory entry
|
---|
803 | //
|
---|
804 | Size = sizeof (EFI_IMAGE_DEBUG_DIRECTORY_ENTRY);
|
---|
805 | ReadSize = Size;
|
---|
806 | Status = ImageContext->ImageRead (
|
---|
807 | ImageContext->Handle,
|
---|
808 | DebugDirectoryEntryFileOffset + Index,
|
---|
809 | &Size,
|
---|
810 | &DebugEntry
|
---|
811 | );
|
---|
812 | if (RETURN_ERROR (Status) || (Size != ReadSize)) {
|
---|
813 | ImageContext->ImageError = IMAGE_ERROR_IMAGE_READ;
|
---|
814 | if (Size != ReadSize) {
|
---|
815 | Status = RETURN_UNSUPPORTED;
|
---|
816 | }
|
---|
817 | return Status;
|
---|
818 | }
|
---|
819 |
|
---|
820 | if (DebugEntry.Type == EFI_IMAGE_DEBUG_TYPE_CODEVIEW) {
|
---|
821 | ImageContext->DebugDirectoryEntryRva = (UINT32) (DebugDirectoryEntryRva + Index);
|
---|
822 | return RETURN_SUCCESS;
|
---|
823 | }
|
---|
824 | }
|
---|
825 | }
|
---|
826 | }
|
---|
827 |
|
---|
828 | return RETURN_SUCCESS;
|
---|
829 | }
|
---|
830 |
|
---|
831 |
|
---|
832 | /**
|
---|
833 | Converts an image address to the loaded address.
|
---|
834 |
|
---|
835 | @param ImageContext The context of the image being loaded.
|
---|
836 | @param Address The address to be converted to the loaded address.
|
---|
837 | @param TeStrippedOffset Stripped offset for TE image.
|
---|
838 |
|
---|
839 | @return The converted address or NULL if the address can not be converted.
|
---|
840 |
|
---|
841 | **/
|
---|
842 | VOID *
|
---|
843 | PeCoffLoaderImageAddress (
|
---|
844 | IN OUT PE_COFF_LOADER_IMAGE_CONTEXT *ImageContext,
|
---|
845 | IN UINTN Address,
|
---|
846 | IN UINTN TeStrippedOffset
|
---|
847 | )
|
---|
848 | {
|
---|
849 | //
|
---|
850 | // Make sure that Address and ImageSize is correct for the loaded image.
|
---|
851 | //
|
---|
852 | if (Address >= ImageContext->ImageSize + TeStrippedOffset) {
|
---|
853 | ImageContext->ImageError = IMAGE_ERROR_INVALID_IMAGE_ADDRESS;
|
---|
854 | return NULL;
|
---|
855 | }
|
---|
856 |
|
---|
857 | return (CHAR8 *)((UINTN) ImageContext->ImageAddress + Address - TeStrippedOffset);
|
---|
858 | }
|
---|
859 |
|
---|
860 | /**
|
---|
861 | Applies relocation fixups to a PE/COFF image that was loaded with PeCoffLoaderLoadImage().
|
---|
862 |
|
---|
863 | If the DestinationAddress field of ImageContext is 0, then use the ImageAddress field of
|
---|
864 | ImageContext as the relocation base address. Otherwise, use the DestinationAddress field
|
---|
865 | of ImageContext as the relocation base address. The caller must allocate the relocation
|
---|
866 | fixup log buffer and fill in the FixupData field of ImageContext prior to calling this function.
|
---|
867 |
|
---|
868 | The ImageRead, Handle, PeCoffHeaderOffset, IsTeImage, Machine, ImageType, ImageAddress,
|
---|
869 | ImageSize, DestinationAddress, RelocationsStripped, SectionAlignment, SizeOfHeaders,
|
---|
870 | DebugDirectoryEntryRva, EntryPoint, FixupDataSize, CodeView, PdbPointer, and FixupData of
|
---|
871 | the ImageContext structure must be valid prior to invoking this service.
|
---|
872 |
|
---|
873 | If ImageContext is NULL, then ASSERT().
|
---|
874 |
|
---|
875 | Note that if the platform does not maintain coherency between the instruction cache(s) and the data
|
---|
876 | cache(s) in hardware, then the caller is responsible for performing cache maintenance operations
|
---|
877 | prior to transferring control to a PE/COFF image that is loaded using this library.
|
---|
878 |
|
---|
879 | @param ImageContext The pointer to the image context structure that describes the PE/COFF
|
---|
880 | image that is being relocated.
|
---|
881 |
|
---|
882 | @retval RETURN_SUCCESS The PE/COFF image was relocated.
|
---|
883 | Extended status information is in the ImageError field of ImageContext.
|
---|
884 | @retval RETURN_LOAD_ERROR The image in not a valid PE/COFF image.
|
---|
885 | Extended status information is in the ImageError field of ImageContext.
|
---|
886 | @retval RETURN_UNSUPPORTED A relocation record type is not supported.
|
---|
887 | Extended status information is in the ImageError field of ImageContext.
|
---|
888 |
|
---|
889 | **/
|
---|
890 | RETURN_STATUS
|
---|
891 | EFIAPI
|
---|
892 | PeCoffLoaderRelocateImage (
|
---|
893 | IN OUT PE_COFF_LOADER_IMAGE_CONTEXT *ImageContext
|
---|
894 | )
|
---|
895 | {
|
---|
896 | RETURN_STATUS Status;
|
---|
897 | EFI_IMAGE_OPTIONAL_HEADER_PTR_UNION Hdr;
|
---|
898 | EFI_IMAGE_DATA_DIRECTORY *RelocDir;
|
---|
899 | UINT64 Adjust;
|
---|
900 | EFI_IMAGE_BASE_RELOCATION *RelocBaseOrg;
|
---|
901 | EFI_IMAGE_BASE_RELOCATION *RelocBase;
|
---|
902 | EFI_IMAGE_BASE_RELOCATION *RelocBaseEnd;
|
---|
903 | UINT16 *Reloc;
|
---|
904 | UINT16 *RelocEnd;
|
---|
905 | CHAR8 *Fixup;
|
---|
906 | CHAR8 *FixupBase;
|
---|
907 | UINT16 *Fixup16;
|
---|
908 | UINT32 *Fixup32;
|
---|
909 | UINT64 *Fixup64;
|
---|
910 | CHAR8 *FixupData;
|
---|
911 | PHYSICAL_ADDRESS BaseAddress;
|
---|
912 | UINT32 NumberOfRvaAndSizes;
|
---|
913 | UINT32 TeStrippedOffset;
|
---|
914 |
|
---|
915 | ASSERT (ImageContext != NULL);
|
---|
916 |
|
---|
917 | //
|
---|
918 | // Assume success
|
---|
919 | //
|
---|
920 | ImageContext->ImageError = IMAGE_ERROR_SUCCESS;
|
---|
921 |
|
---|
922 | //
|
---|
923 | // If there are no relocation entries, then we are done
|
---|
924 | //
|
---|
925 | if (ImageContext->RelocationsStripped) {
|
---|
926 | // Applies additional environment specific actions to relocate fixups
|
---|
927 | // to a PE/COFF image if needed
|
---|
928 | PeCoffLoaderRelocateImageExtraAction (ImageContext);
|
---|
929 | return RETURN_SUCCESS;
|
---|
930 | }
|
---|
931 |
|
---|
932 | //
|
---|
933 | // If the destination address is not 0, use that rather than the
|
---|
934 | // image address as the relocation target.
|
---|
935 | //
|
---|
936 | if (ImageContext->DestinationAddress != 0) {
|
---|
937 | BaseAddress = ImageContext->DestinationAddress;
|
---|
938 | } else {
|
---|
939 | BaseAddress = ImageContext->ImageAddress;
|
---|
940 | }
|
---|
941 |
|
---|
942 | if (!(ImageContext->IsTeImage)) {
|
---|
943 | Hdr.Pe32 = (EFI_IMAGE_NT_HEADERS32 *)((UINTN)ImageContext->ImageAddress + ImageContext->PeCoffHeaderOffset);
|
---|
944 | TeStrippedOffset = 0;
|
---|
945 |
|
---|
946 | if (Hdr.Pe32->OptionalHeader.Magic == EFI_IMAGE_NT_OPTIONAL_HDR32_MAGIC) {
|
---|
947 | //
|
---|
948 | // Use PE32 offset
|
---|
949 | //
|
---|
950 | Adjust = (UINT64)BaseAddress - Hdr.Pe32->OptionalHeader.ImageBase;
|
---|
951 | if (Adjust != 0) {
|
---|
952 | Hdr.Pe32->OptionalHeader.ImageBase = (UINT32)BaseAddress;
|
---|
953 | }
|
---|
954 |
|
---|
955 | NumberOfRvaAndSizes = Hdr.Pe32->OptionalHeader.NumberOfRvaAndSizes;
|
---|
956 | RelocDir = &Hdr.Pe32->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_BASERELOC];
|
---|
957 | } else {
|
---|
958 | //
|
---|
959 | // Use PE32+ offset
|
---|
960 | //
|
---|
961 | Adjust = (UINT64) BaseAddress - Hdr.Pe32Plus->OptionalHeader.ImageBase;
|
---|
962 | if (Adjust != 0) {
|
---|
963 | Hdr.Pe32Plus->OptionalHeader.ImageBase = (UINT64)BaseAddress;
|
---|
964 | }
|
---|
965 |
|
---|
966 | NumberOfRvaAndSizes = Hdr.Pe32Plus->OptionalHeader.NumberOfRvaAndSizes;
|
---|
967 | RelocDir = &Hdr.Pe32Plus->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_BASERELOC];
|
---|
968 | }
|
---|
969 |
|
---|
970 | //
|
---|
971 | // Find the relocation block
|
---|
972 | // Per the PE/COFF spec, you can't assume that a given data directory
|
---|
973 | // is present in the image. You have to check the NumberOfRvaAndSizes in
|
---|
974 | // the optional header to verify a desired directory entry is there.
|
---|
975 | //
|
---|
976 | if ((NumberOfRvaAndSizes < EFI_IMAGE_DIRECTORY_ENTRY_BASERELOC)) {
|
---|
977 | RelocDir = NULL;
|
---|
978 | }
|
---|
979 | } else {
|
---|
980 | Hdr.Te = (EFI_TE_IMAGE_HEADER *)(UINTN)(ImageContext->ImageAddress);
|
---|
981 | TeStrippedOffset = (UINT32)Hdr.Te->StrippedSize - sizeof (EFI_TE_IMAGE_HEADER);
|
---|
982 | Adjust = (UINT64) (BaseAddress - (Hdr.Te->ImageBase + TeStrippedOffset));
|
---|
983 | if (Adjust != 0) {
|
---|
984 | Hdr.Te->ImageBase = (UINT64) (BaseAddress - TeStrippedOffset);
|
---|
985 | }
|
---|
986 |
|
---|
987 | //
|
---|
988 | // Find the relocation block
|
---|
989 | //
|
---|
990 | RelocDir = &Hdr.Te->DataDirectory[0];
|
---|
991 | }
|
---|
992 |
|
---|
993 | if ((RelocDir != NULL) && (RelocDir->Size > 0)) {
|
---|
994 | RelocBase = (EFI_IMAGE_BASE_RELOCATION *) PeCoffLoaderImageAddress (ImageContext, RelocDir->VirtualAddress, TeStrippedOffset);
|
---|
995 | RelocBaseEnd = (EFI_IMAGE_BASE_RELOCATION *) PeCoffLoaderImageAddress (ImageContext,
|
---|
996 | RelocDir->VirtualAddress + RelocDir->Size - 1,
|
---|
997 | TeStrippedOffset
|
---|
998 | );
|
---|
999 | if (RelocBase == NULL || RelocBaseEnd == NULL || (UINTN) RelocBaseEnd < (UINTN) RelocBase) {
|
---|
1000 | ImageContext->ImageError = IMAGE_ERROR_FAILED_RELOCATION;
|
---|
1001 | return RETURN_LOAD_ERROR;
|
---|
1002 | }
|
---|
1003 | } else {
|
---|
1004 | //
|
---|
1005 | // Set base and end to bypass processing below.
|
---|
1006 | //
|
---|
1007 | RelocBase = RelocBaseEnd = NULL;
|
---|
1008 | }
|
---|
1009 | RelocBaseOrg = RelocBase;
|
---|
1010 |
|
---|
1011 | //
|
---|
1012 | // If Adjust is not zero, then apply fix ups to the image
|
---|
1013 | //
|
---|
1014 | if (Adjust != 0) {
|
---|
1015 | //
|
---|
1016 | // Run the relocation information and apply the fixups
|
---|
1017 | //
|
---|
1018 | FixupData = ImageContext->FixupData;
|
---|
1019 | while ((UINTN) RelocBase < (UINTN) RelocBaseEnd) {
|
---|
1020 |
|
---|
1021 | Reloc = (UINT16 *) ((CHAR8 *) RelocBase + sizeof (EFI_IMAGE_BASE_RELOCATION));
|
---|
1022 | //
|
---|
1023 | // Add check for RelocBase->SizeOfBlock field.
|
---|
1024 | //
|
---|
1025 | if (RelocBase->SizeOfBlock == 0) {
|
---|
1026 | ImageContext->ImageError = IMAGE_ERROR_FAILED_RELOCATION;
|
---|
1027 | return RETURN_LOAD_ERROR;
|
---|
1028 | }
|
---|
1029 | if ((UINTN)RelocBase > MAX_ADDRESS - RelocBase->SizeOfBlock) {
|
---|
1030 | ImageContext->ImageError = IMAGE_ERROR_FAILED_RELOCATION;
|
---|
1031 | return RETURN_LOAD_ERROR;
|
---|
1032 | }
|
---|
1033 |
|
---|
1034 | RelocEnd = (UINT16 *) ((CHAR8 *) RelocBase + RelocBase->SizeOfBlock);
|
---|
1035 | if ((UINTN)RelocEnd > (UINTN)RelocBaseOrg + RelocDir->Size) {
|
---|
1036 | ImageContext->ImageError = IMAGE_ERROR_FAILED_RELOCATION;
|
---|
1037 | return RETURN_LOAD_ERROR;
|
---|
1038 | }
|
---|
1039 | FixupBase = PeCoffLoaderImageAddress (ImageContext, RelocBase->VirtualAddress, TeStrippedOffset);
|
---|
1040 | if (FixupBase == NULL) {
|
---|
1041 | ImageContext->ImageError = IMAGE_ERROR_FAILED_RELOCATION;
|
---|
1042 | return RETURN_LOAD_ERROR;
|
---|
1043 | }
|
---|
1044 |
|
---|
1045 | //
|
---|
1046 | // Run this relocation record
|
---|
1047 | //
|
---|
1048 | while ((UINTN) Reloc < (UINTN) RelocEnd) {
|
---|
1049 | Fixup = PeCoffLoaderImageAddress (ImageContext, RelocBase->VirtualAddress + (*Reloc & 0xFFF), TeStrippedOffset);
|
---|
1050 | if (Fixup == NULL) {
|
---|
1051 | ImageContext->ImageError = IMAGE_ERROR_FAILED_RELOCATION;
|
---|
1052 | return RETURN_LOAD_ERROR;
|
---|
1053 | }
|
---|
1054 | switch ((*Reloc) >> 12) {
|
---|
1055 | case EFI_IMAGE_REL_BASED_ABSOLUTE:
|
---|
1056 | break;
|
---|
1057 |
|
---|
1058 | case EFI_IMAGE_REL_BASED_HIGH:
|
---|
1059 | Fixup16 = (UINT16 *) Fixup;
|
---|
1060 | *Fixup16 = (UINT16) (*Fixup16 + ((UINT16) ((UINT32) Adjust >> 16)));
|
---|
1061 | if (FixupData != NULL) {
|
---|
1062 | *(UINT16 *) FixupData = *Fixup16;
|
---|
1063 | FixupData = FixupData + sizeof (UINT16);
|
---|
1064 | }
|
---|
1065 | break;
|
---|
1066 |
|
---|
1067 | case EFI_IMAGE_REL_BASED_LOW:
|
---|
1068 | Fixup16 = (UINT16 *) Fixup;
|
---|
1069 | *Fixup16 = (UINT16) (*Fixup16 + (UINT16) Adjust);
|
---|
1070 | if (FixupData != NULL) {
|
---|
1071 | *(UINT16 *) FixupData = *Fixup16;
|
---|
1072 | FixupData = FixupData + sizeof (UINT16);
|
---|
1073 | }
|
---|
1074 | break;
|
---|
1075 |
|
---|
1076 | case EFI_IMAGE_REL_BASED_HIGHLOW:
|
---|
1077 | Fixup32 = (UINT32 *) Fixup;
|
---|
1078 | *Fixup32 = *Fixup32 + (UINT32) Adjust;
|
---|
1079 | if (FixupData != NULL) {
|
---|
1080 | FixupData = ALIGN_POINTER (FixupData, sizeof (UINT32));
|
---|
1081 | *(UINT32 *)FixupData = *Fixup32;
|
---|
1082 | FixupData = FixupData + sizeof (UINT32);
|
---|
1083 | }
|
---|
1084 | break;
|
---|
1085 |
|
---|
1086 | case EFI_IMAGE_REL_BASED_DIR64:
|
---|
1087 | Fixup64 = (UINT64 *) Fixup;
|
---|
1088 | *Fixup64 = *Fixup64 + (UINT64) Adjust;
|
---|
1089 | if (FixupData != NULL) {
|
---|
1090 | FixupData = ALIGN_POINTER (FixupData, sizeof(UINT64));
|
---|
1091 | *(UINT64 *)(FixupData) = *Fixup64;
|
---|
1092 | FixupData = FixupData + sizeof(UINT64);
|
---|
1093 | }
|
---|
1094 | break;
|
---|
1095 |
|
---|
1096 | default:
|
---|
1097 | //
|
---|
1098 | // The common code does not handle some of the stranger IPF relocations
|
---|
1099 | // PeCoffLoaderRelocateImageEx () adds support for these complex fixups
|
---|
1100 | // on IPF and is a No-Op on other architectures.
|
---|
1101 | //
|
---|
1102 | Status = PeCoffLoaderRelocateImageEx (Reloc, Fixup, &FixupData, Adjust);
|
---|
1103 | if (RETURN_ERROR (Status)) {
|
---|
1104 | ImageContext->ImageError = IMAGE_ERROR_FAILED_RELOCATION;
|
---|
1105 | return Status;
|
---|
1106 | }
|
---|
1107 | }
|
---|
1108 |
|
---|
1109 | //
|
---|
1110 | // Next relocation record
|
---|
1111 | //
|
---|
1112 | Reloc += 1;
|
---|
1113 | }
|
---|
1114 |
|
---|
1115 | //
|
---|
1116 | // Next reloc block
|
---|
1117 | //
|
---|
1118 | RelocBase = (EFI_IMAGE_BASE_RELOCATION *) RelocEnd;
|
---|
1119 | }
|
---|
1120 | ASSERT ((UINTN)FixupData <= (UINTN)ImageContext->FixupData + ImageContext->FixupDataSize);
|
---|
1121 |
|
---|
1122 | //
|
---|
1123 | // Adjust the EntryPoint to match the linked-to address
|
---|
1124 | //
|
---|
1125 | if (ImageContext->DestinationAddress != 0) {
|
---|
1126 | ImageContext->EntryPoint -= (UINT64) ImageContext->ImageAddress;
|
---|
1127 | ImageContext->EntryPoint += (UINT64) ImageContext->DestinationAddress;
|
---|
1128 | }
|
---|
1129 | }
|
---|
1130 |
|
---|
1131 | // Applies additional environment specific actions to relocate fixups
|
---|
1132 | // to a PE/COFF image if needed
|
---|
1133 | PeCoffLoaderRelocateImageExtraAction (ImageContext);
|
---|
1134 |
|
---|
1135 | return RETURN_SUCCESS;
|
---|
1136 | }
|
---|
1137 |
|
---|
1138 | /**
|
---|
1139 | Loads a PE/COFF image into memory.
|
---|
1140 |
|
---|
1141 | Loads the PE/COFF image accessed through the ImageRead service of ImageContext into the buffer
|
---|
1142 | specified by the ImageAddress and ImageSize fields of ImageContext. The caller must allocate
|
---|
1143 | the load buffer and fill in the ImageAddress and ImageSize fields prior to calling this function.
|
---|
1144 | The EntryPoint, FixupDataSize, CodeView, PdbPointer and HiiResourceData fields of ImageContext are computed.
|
---|
1145 | The ImageRead, Handle, PeCoffHeaderOffset, IsTeImage, Machine, ImageType, ImageAddress, ImageSize,
|
---|
1146 | DestinationAddress, RelocationsStripped, SectionAlignment, SizeOfHeaders, and DebugDirectoryEntryRva
|
---|
1147 | fields of the ImageContext structure must be valid prior to invoking this service.
|
---|
1148 |
|
---|
1149 | If ImageContext is NULL, then ASSERT().
|
---|
1150 |
|
---|
1151 | Note that if the platform does not maintain coherency between the instruction cache(s) and the data
|
---|
1152 | cache(s) in hardware, then the caller is responsible for performing cache maintenance operations
|
---|
1153 | prior to transferring control to a PE/COFF image that is loaded using this library.
|
---|
1154 |
|
---|
1155 | @param ImageContext The pointer to the image context structure that describes the PE/COFF
|
---|
1156 | image that is being loaded.
|
---|
1157 |
|
---|
1158 | @retval RETURN_SUCCESS The PE/COFF image was loaded into the buffer specified by
|
---|
1159 | the ImageAddress and ImageSize fields of ImageContext.
|
---|
1160 | Extended status information is in the ImageError field of ImageContext.
|
---|
1161 | @retval RETURN_BUFFER_TOO_SMALL The caller did not provide a large enough buffer.
|
---|
1162 | Extended status information is in the ImageError field of ImageContext.
|
---|
1163 | @retval RETURN_LOAD_ERROR The PE/COFF image is an EFI Runtime image with no relocations.
|
---|
1164 | Extended status information is in the ImageError field of ImageContext.
|
---|
1165 | @retval RETURN_INVALID_PARAMETER The image address is invalid.
|
---|
1166 | Extended status information is in the ImageError field of ImageContext.
|
---|
1167 |
|
---|
1168 | **/
|
---|
1169 | RETURN_STATUS
|
---|
1170 | EFIAPI
|
---|
1171 | PeCoffLoaderLoadImage (
|
---|
1172 | IN OUT PE_COFF_LOADER_IMAGE_CONTEXT *ImageContext
|
---|
1173 | )
|
---|
1174 | {
|
---|
1175 | RETURN_STATUS Status;
|
---|
1176 | EFI_IMAGE_OPTIONAL_HEADER_PTR_UNION Hdr;
|
---|
1177 | PE_COFF_LOADER_IMAGE_CONTEXT CheckContext;
|
---|
1178 | EFI_IMAGE_SECTION_HEADER *FirstSection;
|
---|
1179 | EFI_IMAGE_SECTION_HEADER *Section;
|
---|
1180 | UINTN NumberOfSections;
|
---|
1181 | UINTN Index;
|
---|
1182 | CHAR8 *Base;
|
---|
1183 | CHAR8 *End;
|
---|
1184 | EFI_IMAGE_DATA_DIRECTORY *DirectoryEntry;
|
---|
1185 | EFI_IMAGE_DEBUG_DIRECTORY_ENTRY *DebugEntry;
|
---|
1186 | UINTN Size;
|
---|
1187 | UINT32 TempDebugEntryRva;
|
---|
1188 | UINT32 NumberOfRvaAndSizes;
|
---|
1189 | EFI_IMAGE_RESOURCE_DIRECTORY *ResourceDirectory;
|
---|
1190 | EFI_IMAGE_RESOURCE_DIRECTORY_ENTRY *ResourceDirectoryEntry;
|
---|
1191 | EFI_IMAGE_RESOURCE_DIRECTORY_STRING *ResourceDirectoryString;
|
---|
1192 | EFI_IMAGE_RESOURCE_DATA_ENTRY *ResourceDataEntry;
|
---|
1193 | CHAR16 *String;
|
---|
1194 | UINT32 Offset;
|
---|
1195 | UINT32 TeStrippedOffset;
|
---|
1196 |
|
---|
1197 | ASSERT (ImageContext != NULL);
|
---|
1198 |
|
---|
1199 | //
|
---|
1200 | // Assume success
|
---|
1201 | //
|
---|
1202 | ImageContext->ImageError = IMAGE_ERROR_SUCCESS;
|
---|
1203 |
|
---|
1204 | //
|
---|
1205 | // Copy the provided context information into our local version, get what we
|
---|
1206 | // can from the original image, and then use that to make sure everything
|
---|
1207 | // is legit.
|
---|
1208 | //
|
---|
1209 | CopyMem (&CheckContext, ImageContext, sizeof (PE_COFF_LOADER_IMAGE_CONTEXT));
|
---|
1210 |
|
---|
1211 | Status = PeCoffLoaderGetImageInfo (&CheckContext);
|
---|
1212 | if (RETURN_ERROR (Status)) {
|
---|
1213 | return Status;
|
---|
1214 | }
|
---|
1215 |
|
---|
1216 | //
|
---|
1217 | // Make sure there is enough allocated space for the image being loaded
|
---|
1218 | //
|
---|
1219 | if (ImageContext->ImageSize < CheckContext.ImageSize) {
|
---|
1220 | ImageContext->ImageError = IMAGE_ERROR_INVALID_IMAGE_SIZE;
|
---|
1221 | return RETURN_BUFFER_TOO_SMALL;
|
---|
1222 | }
|
---|
1223 | if (ImageContext->ImageAddress == 0) {
|
---|
1224 | //
|
---|
1225 | // Image cannot be loaded into 0 address.
|
---|
1226 | //
|
---|
1227 | ImageContext->ImageError = IMAGE_ERROR_INVALID_IMAGE_ADDRESS;
|
---|
1228 | return RETURN_INVALID_PARAMETER;
|
---|
1229 | }
|
---|
1230 | //
|
---|
1231 | // If there's no relocations, then make sure it's not a runtime driver,
|
---|
1232 | // and that it's being loaded at the linked address.
|
---|
1233 | //
|
---|
1234 | if (CheckContext.RelocationsStripped) {
|
---|
1235 | //
|
---|
1236 | // If the image does not contain relocations and it is a runtime driver
|
---|
1237 | // then return an error.
|
---|
1238 | //
|
---|
1239 | if (CheckContext.ImageType == EFI_IMAGE_SUBSYSTEM_EFI_RUNTIME_DRIVER) {
|
---|
1240 | ImageContext->ImageError = IMAGE_ERROR_INVALID_SUBSYSTEM;
|
---|
1241 | return RETURN_LOAD_ERROR;
|
---|
1242 | }
|
---|
1243 | //
|
---|
1244 | // If the image does not contain relocations, and the requested load address
|
---|
1245 | // is not the linked address, then return an error.
|
---|
1246 | //
|
---|
1247 | if (CheckContext.ImageAddress != ImageContext->ImageAddress) {
|
---|
1248 | ImageContext->ImageError = IMAGE_ERROR_INVALID_IMAGE_ADDRESS;
|
---|
1249 | return RETURN_INVALID_PARAMETER;
|
---|
1250 | }
|
---|
1251 | }
|
---|
1252 | //
|
---|
1253 | // Make sure the allocated space has the proper section alignment
|
---|
1254 | //
|
---|
1255 | if (!(ImageContext->IsTeImage)) {
|
---|
1256 | if ((ImageContext->ImageAddress & (CheckContext.SectionAlignment - 1)) != 0) {
|
---|
1257 | ImageContext->ImageError = IMAGE_ERROR_INVALID_SECTION_ALIGNMENT;
|
---|
1258 | return RETURN_INVALID_PARAMETER;
|
---|
1259 | }
|
---|
1260 | }
|
---|
1261 | //
|
---|
1262 | // Read the entire PE/COFF or TE header into memory
|
---|
1263 | //
|
---|
1264 | if (!(ImageContext->IsTeImage)) {
|
---|
1265 | Status = ImageContext->ImageRead (
|
---|
1266 | ImageContext->Handle,
|
---|
1267 | 0,
|
---|
1268 | &ImageContext->SizeOfHeaders,
|
---|
1269 | (VOID *) (UINTN) ImageContext->ImageAddress
|
---|
1270 | );
|
---|
1271 |
|
---|
1272 | Hdr.Pe32 = (EFI_IMAGE_NT_HEADERS32 *)((UINTN)ImageContext->ImageAddress + ImageContext->PeCoffHeaderOffset);
|
---|
1273 |
|
---|
1274 | FirstSection = (EFI_IMAGE_SECTION_HEADER *) (
|
---|
1275 | (UINTN)ImageContext->ImageAddress +
|
---|
1276 | ImageContext->PeCoffHeaderOffset +
|
---|
1277 | sizeof(UINT32) +
|
---|
1278 | sizeof(EFI_IMAGE_FILE_HEADER) +
|
---|
1279 | Hdr.Pe32->FileHeader.SizeOfOptionalHeader
|
---|
1280 | );
|
---|
1281 | NumberOfSections = (UINTN) (Hdr.Pe32->FileHeader.NumberOfSections);
|
---|
1282 | TeStrippedOffset = 0;
|
---|
1283 | } else {
|
---|
1284 | Status = ImageContext->ImageRead (
|
---|
1285 | ImageContext->Handle,
|
---|
1286 | 0,
|
---|
1287 | &ImageContext->SizeOfHeaders,
|
---|
1288 | (void *)(UINTN)ImageContext->ImageAddress
|
---|
1289 | );
|
---|
1290 |
|
---|
1291 | Hdr.Te = (EFI_TE_IMAGE_HEADER *)(UINTN)(ImageContext->ImageAddress);
|
---|
1292 | FirstSection = (EFI_IMAGE_SECTION_HEADER *) (
|
---|
1293 | (UINTN)ImageContext->ImageAddress +
|
---|
1294 | sizeof(EFI_TE_IMAGE_HEADER)
|
---|
1295 | );
|
---|
1296 | NumberOfSections = (UINTN) (Hdr.Te->NumberOfSections);
|
---|
1297 | TeStrippedOffset = (UINT32) Hdr.Te->StrippedSize - sizeof (EFI_TE_IMAGE_HEADER);
|
---|
1298 | }
|
---|
1299 |
|
---|
1300 | if (RETURN_ERROR (Status)) {
|
---|
1301 | ImageContext->ImageError = IMAGE_ERROR_IMAGE_READ;
|
---|
1302 | return RETURN_LOAD_ERROR;
|
---|
1303 | }
|
---|
1304 |
|
---|
1305 | //
|
---|
1306 | // Load each section of the image
|
---|
1307 | //
|
---|
1308 | Section = FirstSection;
|
---|
1309 | for (Index = 0; Index < NumberOfSections; Index++) {
|
---|
1310 | //
|
---|
1311 | // Read the section
|
---|
1312 | //
|
---|
1313 | Size = (UINTN) Section->Misc.VirtualSize;
|
---|
1314 | if ((Size == 0) || (Size > Section->SizeOfRawData)) {
|
---|
1315 | Size = (UINTN) Section->SizeOfRawData;
|
---|
1316 | }
|
---|
1317 |
|
---|
1318 | //
|
---|
1319 | // Compute sections address
|
---|
1320 | //
|
---|
1321 | Base = PeCoffLoaderImageAddress (ImageContext, Section->VirtualAddress, TeStrippedOffset);
|
---|
1322 | End = PeCoffLoaderImageAddress (ImageContext, Section->VirtualAddress + Section->Misc.VirtualSize - 1, TeStrippedOffset);
|
---|
1323 |
|
---|
1324 | //
|
---|
1325 | // If the size of the section is non-zero and the base address or end address resolved to 0, then fail.
|
---|
1326 | //
|
---|
1327 | if ((Size > 0) && ((Base == NULL) || (End == NULL))) {
|
---|
1328 | ImageContext->ImageError = IMAGE_ERROR_SECTION_NOT_LOADED;
|
---|
1329 | return RETURN_LOAD_ERROR;
|
---|
1330 | }
|
---|
1331 |
|
---|
1332 | if (Section->SizeOfRawData > 0) {
|
---|
1333 | Status = ImageContext->ImageRead (
|
---|
1334 | ImageContext->Handle,
|
---|
1335 | Section->PointerToRawData - TeStrippedOffset,
|
---|
1336 | &Size,
|
---|
1337 | Base
|
---|
1338 | );
|
---|
1339 | if (RETURN_ERROR (Status)) {
|
---|
1340 | ImageContext->ImageError = IMAGE_ERROR_IMAGE_READ;
|
---|
1341 | return Status;
|
---|
1342 | }
|
---|
1343 | }
|
---|
1344 |
|
---|
1345 | //
|
---|
1346 | // If raw size is less then virtual size, zero fill the remaining
|
---|
1347 | //
|
---|
1348 |
|
---|
1349 | if (Size < Section->Misc.VirtualSize) {
|
---|
1350 | ZeroMem (Base + Size, Section->Misc.VirtualSize - Size);
|
---|
1351 | }
|
---|
1352 |
|
---|
1353 | //
|
---|
1354 | // Next Section
|
---|
1355 | //
|
---|
1356 | Section += 1;
|
---|
1357 | }
|
---|
1358 |
|
---|
1359 | //
|
---|
1360 | // Get image's entry point
|
---|
1361 | //
|
---|
1362 | if (!(ImageContext->IsTeImage)) {
|
---|
1363 | //
|
---|
1364 | // Sizes of AddressOfEntryPoint are different so we need to do this safely
|
---|
1365 | //
|
---|
1366 | if (Hdr.Pe32->OptionalHeader.Magic == EFI_IMAGE_NT_OPTIONAL_HDR32_MAGIC) {
|
---|
1367 | //
|
---|
1368 | // Use PE32 offset
|
---|
1369 | //
|
---|
1370 | ImageContext->EntryPoint = (PHYSICAL_ADDRESS)(UINTN)PeCoffLoaderImageAddress (
|
---|
1371 | ImageContext,
|
---|
1372 | (UINTN)Hdr.Pe32->OptionalHeader.AddressOfEntryPoint,
|
---|
1373 | 0
|
---|
1374 | );
|
---|
1375 | } else {
|
---|
1376 | //
|
---|
1377 | // Use PE32+ offset
|
---|
1378 | //
|
---|
1379 | ImageContext->EntryPoint = (PHYSICAL_ADDRESS)(UINTN)PeCoffLoaderImageAddress (
|
---|
1380 | ImageContext,
|
---|
1381 | (UINTN)Hdr.Pe32Plus->OptionalHeader.AddressOfEntryPoint,
|
---|
1382 | 0
|
---|
1383 | );
|
---|
1384 | }
|
---|
1385 | } else {
|
---|
1386 | ImageContext->EntryPoint = (PHYSICAL_ADDRESS)(UINTN)PeCoffLoaderImageAddress (
|
---|
1387 | ImageContext,
|
---|
1388 | (UINTN)Hdr.Te->AddressOfEntryPoint,
|
---|
1389 | TeStrippedOffset
|
---|
1390 | );
|
---|
1391 | }
|
---|
1392 |
|
---|
1393 | //
|
---|
1394 | // Determine the size of the fixup data
|
---|
1395 | //
|
---|
1396 | // Per the PE/COFF spec, you can't assume that a given data directory
|
---|
1397 | // is present in the image. You have to check the NumberOfRvaAndSizes in
|
---|
1398 | // the optional header to verify a desired directory entry is there.
|
---|
1399 | //
|
---|
1400 | if (!(ImageContext->IsTeImage)) {
|
---|
1401 | if (Hdr.Pe32->OptionalHeader.Magic == EFI_IMAGE_NT_OPTIONAL_HDR32_MAGIC) {
|
---|
1402 | //
|
---|
1403 | // Use PE32 offset
|
---|
1404 | //
|
---|
1405 | NumberOfRvaAndSizes = Hdr.Pe32->OptionalHeader.NumberOfRvaAndSizes;
|
---|
1406 | DirectoryEntry = (EFI_IMAGE_DATA_DIRECTORY *)&Hdr.Pe32->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_BASERELOC];
|
---|
1407 | } else {
|
---|
1408 | //
|
---|
1409 | // Use PE32+ offset
|
---|
1410 | //
|
---|
1411 | NumberOfRvaAndSizes = Hdr.Pe32Plus->OptionalHeader.NumberOfRvaAndSizes;
|
---|
1412 | DirectoryEntry = (EFI_IMAGE_DATA_DIRECTORY *)&Hdr.Pe32Plus->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_BASERELOC];
|
---|
1413 | }
|
---|
1414 |
|
---|
1415 | //
|
---|
1416 | // Must use UINT64 here, because there might a case that 32bit loader to load 64bit image.
|
---|
1417 | //
|
---|
1418 | if (NumberOfRvaAndSizes > EFI_IMAGE_DIRECTORY_ENTRY_BASERELOC) {
|
---|
1419 | ImageContext->FixupDataSize = DirectoryEntry->Size / sizeof (UINT16) * sizeof (UINT64);
|
---|
1420 | } else {
|
---|
1421 | ImageContext->FixupDataSize = 0;
|
---|
1422 | }
|
---|
1423 | } else {
|
---|
1424 | DirectoryEntry = &Hdr.Te->DataDirectory[0];
|
---|
1425 | ImageContext->FixupDataSize = DirectoryEntry->Size / sizeof (UINT16) * sizeof (UINT64);
|
---|
1426 | }
|
---|
1427 | //
|
---|
1428 | // Consumer must allocate a buffer for the relocation fixup log.
|
---|
1429 | // Only used for runtime drivers.
|
---|
1430 | //
|
---|
1431 | ImageContext->FixupData = NULL;
|
---|
1432 |
|
---|
1433 | //
|
---|
1434 | // Load the Codeview information if present
|
---|
1435 | //
|
---|
1436 | if (ImageContext->DebugDirectoryEntryRva != 0) {
|
---|
1437 | DebugEntry = PeCoffLoaderImageAddress (
|
---|
1438 | ImageContext,
|
---|
1439 | ImageContext->DebugDirectoryEntryRva,
|
---|
1440 | TeStrippedOffset
|
---|
1441 | );
|
---|
1442 | if (DebugEntry == NULL) {
|
---|
1443 | ImageContext->ImageError = IMAGE_ERROR_FAILED_RELOCATION;
|
---|
1444 | return RETURN_LOAD_ERROR;
|
---|
1445 | }
|
---|
1446 |
|
---|
1447 | TempDebugEntryRva = DebugEntry->RVA;
|
---|
1448 | if (DebugEntry->RVA == 0 && DebugEntry->FileOffset != 0) {
|
---|
1449 | Section--;
|
---|
1450 | if ((UINTN)Section->SizeOfRawData < Section->Misc.VirtualSize) {
|
---|
1451 | TempDebugEntryRva = Section->VirtualAddress + Section->Misc.VirtualSize;
|
---|
1452 | } else {
|
---|
1453 | TempDebugEntryRva = Section->VirtualAddress + Section->SizeOfRawData;
|
---|
1454 | }
|
---|
1455 | }
|
---|
1456 |
|
---|
1457 | if (TempDebugEntryRva != 0) {
|
---|
1458 | ImageContext->CodeView = PeCoffLoaderImageAddress (ImageContext, TempDebugEntryRva, TeStrippedOffset);
|
---|
1459 | if (ImageContext->CodeView == NULL) {
|
---|
1460 | ImageContext->ImageError = IMAGE_ERROR_FAILED_RELOCATION;
|
---|
1461 | return RETURN_LOAD_ERROR;
|
---|
1462 | }
|
---|
1463 |
|
---|
1464 | if (DebugEntry->RVA == 0) {
|
---|
1465 | Size = DebugEntry->SizeOfData;
|
---|
1466 | Status = ImageContext->ImageRead (
|
---|
1467 | ImageContext->Handle,
|
---|
1468 | DebugEntry->FileOffset - TeStrippedOffset,
|
---|
1469 | &Size,
|
---|
1470 | ImageContext->CodeView
|
---|
1471 | );
|
---|
1472 | //
|
---|
1473 | // Should we apply fix up to this field according to the size difference between PE and TE?
|
---|
1474 | // Because now we maintain TE header fields unfixed, this field will also remain as they are
|
---|
1475 | // in original PE image.
|
---|
1476 | //
|
---|
1477 |
|
---|
1478 | if (RETURN_ERROR (Status)) {
|
---|
1479 | ImageContext->ImageError = IMAGE_ERROR_IMAGE_READ;
|
---|
1480 | return RETURN_LOAD_ERROR;
|
---|
1481 | }
|
---|
1482 |
|
---|
1483 | DebugEntry->RVA = TempDebugEntryRva;
|
---|
1484 | }
|
---|
1485 |
|
---|
1486 | switch (*(UINT32 *) ImageContext->CodeView) {
|
---|
1487 | case CODEVIEW_SIGNATURE_NB10:
|
---|
1488 | if (DebugEntry->SizeOfData < sizeof (EFI_IMAGE_DEBUG_CODEVIEW_NB10_ENTRY)) {
|
---|
1489 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
|
---|
1490 | return RETURN_UNSUPPORTED;
|
---|
1491 | }
|
---|
1492 | ImageContext->PdbPointer = (CHAR8 *)ImageContext->CodeView + sizeof (EFI_IMAGE_DEBUG_CODEVIEW_NB10_ENTRY);
|
---|
1493 | break;
|
---|
1494 |
|
---|
1495 | case CODEVIEW_SIGNATURE_RSDS:
|
---|
1496 | if (DebugEntry->SizeOfData < sizeof (EFI_IMAGE_DEBUG_CODEVIEW_RSDS_ENTRY)) {
|
---|
1497 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
|
---|
1498 | return RETURN_UNSUPPORTED;
|
---|
1499 | }
|
---|
1500 | ImageContext->PdbPointer = (CHAR8 *)ImageContext->CodeView + sizeof (EFI_IMAGE_DEBUG_CODEVIEW_RSDS_ENTRY);
|
---|
1501 | break;
|
---|
1502 |
|
---|
1503 | case CODEVIEW_SIGNATURE_MTOC:
|
---|
1504 | if (DebugEntry->SizeOfData < sizeof (EFI_IMAGE_DEBUG_CODEVIEW_MTOC_ENTRY)) {
|
---|
1505 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
|
---|
1506 | return RETURN_UNSUPPORTED;
|
---|
1507 | }
|
---|
1508 | ImageContext->PdbPointer = (CHAR8 *)ImageContext->CodeView + sizeof (EFI_IMAGE_DEBUG_CODEVIEW_MTOC_ENTRY);
|
---|
1509 | break;
|
---|
1510 |
|
---|
1511 | default:
|
---|
1512 | break;
|
---|
1513 | }
|
---|
1514 | }
|
---|
1515 | }
|
---|
1516 |
|
---|
1517 | //
|
---|
1518 | // Get Image's HII resource section
|
---|
1519 | //
|
---|
1520 | ImageContext->HiiResourceData = 0;
|
---|
1521 | if (!(ImageContext->IsTeImage)) {
|
---|
1522 | if (Hdr.Pe32->OptionalHeader.Magic == EFI_IMAGE_NT_OPTIONAL_HDR32_MAGIC) {
|
---|
1523 | //
|
---|
1524 | // Use PE32 offset
|
---|
1525 | //
|
---|
1526 | NumberOfRvaAndSizes = Hdr.Pe32->OptionalHeader.NumberOfRvaAndSizes;
|
---|
1527 | DirectoryEntry = (EFI_IMAGE_DATA_DIRECTORY *)&Hdr.Pe32->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_RESOURCE];
|
---|
1528 | } else {
|
---|
1529 | //
|
---|
1530 | // Use PE32+ offset
|
---|
1531 | //
|
---|
1532 | NumberOfRvaAndSizes = Hdr.Pe32Plus->OptionalHeader.NumberOfRvaAndSizes;
|
---|
1533 | DirectoryEntry = (EFI_IMAGE_DATA_DIRECTORY *)&Hdr.Pe32Plus->OptionalHeader.DataDirectory[EFI_IMAGE_DIRECTORY_ENTRY_RESOURCE];
|
---|
1534 | }
|
---|
1535 |
|
---|
1536 | if (NumberOfRvaAndSizes > EFI_IMAGE_DIRECTORY_ENTRY_RESOURCE && DirectoryEntry->Size != 0) {
|
---|
1537 | Base = PeCoffLoaderImageAddress (ImageContext, DirectoryEntry->VirtualAddress, 0);
|
---|
1538 | if (Base != NULL) {
|
---|
1539 | ResourceDirectory = (EFI_IMAGE_RESOURCE_DIRECTORY *) Base;
|
---|
1540 | Offset = sizeof (EFI_IMAGE_RESOURCE_DIRECTORY) + sizeof (EFI_IMAGE_RESOURCE_DIRECTORY_ENTRY) *
|
---|
1541 | (ResourceDirectory->NumberOfNamedEntries + ResourceDirectory->NumberOfIdEntries);
|
---|
1542 | if (Offset > DirectoryEntry->Size) {
|
---|
1543 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
|
---|
1544 | return RETURN_UNSUPPORTED;
|
---|
1545 | }
|
---|
1546 | ResourceDirectoryEntry = (EFI_IMAGE_RESOURCE_DIRECTORY_ENTRY *) (ResourceDirectory + 1);
|
---|
1547 |
|
---|
1548 | for (Index = 0; Index < ResourceDirectory->NumberOfNamedEntries; Index++) {
|
---|
1549 | if (ResourceDirectoryEntry->u1.s.NameIsString) {
|
---|
1550 | //
|
---|
1551 | // Check the ResourceDirectoryEntry->u1.s.NameOffset before use it.
|
---|
1552 | //
|
---|
1553 | if (ResourceDirectoryEntry->u1.s.NameOffset >= DirectoryEntry->Size) {
|
---|
1554 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
|
---|
1555 | return RETURN_UNSUPPORTED;
|
---|
1556 | }
|
---|
1557 | ResourceDirectoryString = (EFI_IMAGE_RESOURCE_DIRECTORY_STRING *) (Base + ResourceDirectoryEntry->u1.s.NameOffset);
|
---|
1558 | String = &ResourceDirectoryString->String[0];
|
---|
1559 |
|
---|
1560 | if (ResourceDirectoryString->Length == 3 &&
|
---|
1561 | String[0] == L'H' &&
|
---|
1562 | String[1] == L'I' &&
|
---|
1563 | String[2] == L'I') {
|
---|
1564 | //
|
---|
1565 | // Resource Type "HII" found
|
---|
1566 | //
|
---|
1567 | if (ResourceDirectoryEntry->u2.s.DataIsDirectory) {
|
---|
1568 | //
|
---|
1569 | // Move to next level - resource Name
|
---|
1570 | //
|
---|
1571 | if (ResourceDirectoryEntry->u2.s.OffsetToDirectory >= DirectoryEntry->Size) {
|
---|
1572 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
|
---|
1573 | return RETURN_UNSUPPORTED;
|
---|
1574 | }
|
---|
1575 | ResourceDirectory = (EFI_IMAGE_RESOURCE_DIRECTORY *) (Base + ResourceDirectoryEntry->u2.s.OffsetToDirectory);
|
---|
1576 | Offset = ResourceDirectoryEntry->u2.s.OffsetToDirectory + sizeof (EFI_IMAGE_RESOURCE_DIRECTORY) +
|
---|
1577 | sizeof (EFI_IMAGE_RESOURCE_DIRECTORY_ENTRY) * (ResourceDirectory->NumberOfNamedEntries + ResourceDirectory->NumberOfIdEntries);
|
---|
1578 | if (Offset > DirectoryEntry->Size) {
|
---|
1579 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
|
---|
1580 | return RETURN_UNSUPPORTED;
|
---|
1581 | }
|
---|
1582 | ResourceDirectoryEntry = (EFI_IMAGE_RESOURCE_DIRECTORY_ENTRY *) (ResourceDirectory + 1);
|
---|
1583 |
|
---|
1584 | if (ResourceDirectoryEntry->u2.s.DataIsDirectory) {
|
---|
1585 | //
|
---|
1586 | // Move to next level - resource Language
|
---|
1587 | //
|
---|
1588 | if (ResourceDirectoryEntry->u2.s.OffsetToDirectory >= DirectoryEntry->Size) {
|
---|
1589 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
|
---|
1590 | return RETURN_UNSUPPORTED;
|
---|
1591 | }
|
---|
1592 | ResourceDirectory = (EFI_IMAGE_RESOURCE_DIRECTORY *) (Base + ResourceDirectoryEntry->u2.s.OffsetToDirectory);
|
---|
1593 | Offset = ResourceDirectoryEntry->u2.s.OffsetToDirectory + sizeof (EFI_IMAGE_RESOURCE_DIRECTORY) +
|
---|
1594 | sizeof (EFI_IMAGE_RESOURCE_DIRECTORY_ENTRY) * (ResourceDirectory->NumberOfNamedEntries + ResourceDirectory->NumberOfIdEntries);
|
---|
1595 | if (Offset > DirectoryEntry->Size) {
|
---|
1596 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
|
---|
1597 | return RETURN_UNSUPPORTED;
|
---|
1598 | }
|
---|
1599 | ResourceDirectoryEntry = (EFI_IMAGE_RESOURCE_DIRECTORY_ENTRY *) (ResourceDirectory + 1);
|
---|
1600 | }
|
---|
1601 | }
|
---|
1602 |
|
---|
1603 | //
|
---|
1604 | // Now it ought to be resource Data
|
---|
1605 | //
|
---|
1606 | if (!ResourceDirectoryEntry->u2.s.DataIsDirectory) {
|
---|
1607 | if (ResourceDirectoryEntry->u2.OffsetToData >= DirectoryEntry->Size) {
|
---|
1608 | ImageContext->ImageError = IMAGE_ERROR_UNSUPPORTED;
|
---|
1609 | return RETURN_UNSUPPORTED;
|
---|
1610 | }
|
---|
1611 | ResourceDataEntry = (EFI_IMAGE_RESOURCE_DATA_ENTRY *) (Base + ResourceDirectoryEntry->u2.OffsetToData);
|
---|
1612 | ImageContext->HiiResourceData = (PHYSICAL_ADDRESS) (UINTN) PeCoffLoaderImageAddress (ImageContext, ResourceDataEntry->OffsetToData, 0);
|
---|
1613 | break;
|
---|
1614 | }
|
---|
1615 | }
|
---|
1616 | }
|
---|
1617 | ResourceDirectoryEntry++;
|
---|
1618 | }
|
---|
1619 | }
|
---|
1620 | }
|
---|
1621 | }
|
---|
1622 |
|
---|
1623 | return Status;
|
---|
1624 | }
|
---|
1625 |
|
---|
1626 |
|
---|
1627 | /**
|
---|
1628 | Reapply fixups on a fixed up PE32/PE32+ image to allow virutal calling at EFI
|
---|
1629 | runtime.
|
---|
1630 |
|
---|
1631 | This function reapplies relocation fixups to the PE/COFF image specified by ImageBase
|
---|
1632 | and ImageSize so the image will execute correctly when the PE/COFF image is mapped
|
---|
1633 | to the address specified by VirtualImageBase. RelocationData must be identical
|
---|
1634 | to the FiuxupData buffer from the PE_COFF_LOADER_IMAGE_CONTEXT structure
|
---|
1635 | after this PE/COFF image was relocated with PeCoffLoaderRelocateImage().
|
---|
1636 |
|
---|
1637 | Note that if the platform does not maintain coherency between the instruction cache(s) and the data
|
---|
1638 | cache(s) in hardware, then the caller is responsible for performing cache maintenance operations
|
---|
1639 | prior to transferring control to a PE/COFF image that is loaded using this library.
|
---|
1640 |
|
---|
1641 | @param ImageBase The base address of a PE/COFF image that has been loaded
|
---|
1642 | and relocated into system memory.
|
---|
1643 | @param VirtImageBase The request virtual address that the PE/COFF image is to
|
---|
1644 | be fixed up for.
|
---|
1645 | @param ImageSize The size, in bytes, of the PE/COFF image.
|
---|
1646 | @param RelocationData A pointer to the relocation data that was collected when the PE/COFF
|
---|
1647 | image was relocated using PeCoffLoaderRelocateImage().
|
---|
1648 |
|
---|
1649 | **/
|
---|
1650 | VOID
|
---|
1651 | EFIAPI
|
---|
1652 | PeCoffLoaderRelocateImageForRuntime (
|
---|
1653 | IN PHYSICAL_ADDRESS ImageBase,
|
---|
1654 | IN PHYSICAL_ADDRESS VirtImageBase,
|
---|
1655 | IN UINTN ImageSize,
|
---|
1656 | IN VOID *RelocationData
|
---|
1657 | )
|
---|
1658 | {
|
---|
1659 | CHAR8 *OldBase;
|
---|
1660 | CHAR8 *NewBase;
|
---|
1661 | EFI_IMAGE_DOS_HEADER *DosHdr;
|
---|
1662 | EFI_IMAGE_OPTIONAL_HEADER_PTR_UNION Hdr;
|
---|
1663 | UINT32 NumberOfRvaAndSizes;
|
---|
1664 | EFI_IMAGE_DATA_DIRECTORY *DataDirectory;
|
---|
1665 | EFI_IMAGE_DATA_DIRECTORY *RelocDir;
|
---|
1666 | EFI_IMAGE_BASE_RELOCATION *RelocBase;
|
---|
1667 | EFI_IMAGE_BASE_RELOCATION *RelocBaseEnd;
|
---|
1668 | EFI_IMAGE_BASE_RELOCATION *RelocBaseOrig;
|
---|
1669 | UINT16 *Reloc;
|
---|
1670 | UINT16 *RelocEnd;
|
---|
1671 | CHAR8 *Fixup;
|
---|
1672 | CHAR8 *FixupBase;
|
---|
1673 | UINT16 *Fixup16;
|
---|
1674 | UINT32 *Fixup32;
|
---|
1675 | UINT64 *Fixup64;
|
---|
1676 | CHAR8 *FixupData;
|
---|
1677 | UINTN Adjust;
|
---|
1678 | RETURN_STATUS Status;
|
---|
1679 | PE_COFF_LOADER_IMAGE_CONTEXT ImageContext;
|
---|
1680 |
|
---|
1681 | if (RelocationData == NULL || ImageBase == 0x0 || VirtImageBase == 0x0) {
|
---|
1682 | return;
|
---|
1683 | }
|
---|
1684 |
|
---|
1685 | OldBase = (CHAR8 *)((UINTN)ImageBase);
|
---|
1686 | NewBase = (CHAR8 *)((UINTN)VirtImageBase);
|
---|
1687 | Adjust = (UINTN) NewBase - (UINTN) OldBase;
|
---|
1688 |
|
---|
1689 | ImageContext.ImageAddress = ImageBase;
|
---|
1690 | ImageContext.ImageSize = ImageSize;
|
---|
1691 |
|
---|
1692 | //
|
---|
1693 | // Find the image's relocate dir info
|
---|
1694 | //
|
---|
1695 | DosHdr = (EFI_IMAGE_DOS_HEADER *)OldBase;
|
---|
1696 | if (DosHdr->e_magic == EFI_IMAGE_DOS_SIGNATURE) {
|
---|
1697 | //
|
---|
1698 | // Valid DOS header so get address of PE header
|
---|
1699 | //
|
---|
1700 | Hdr.Pe32 = (EFI_IMAGE_NT_HEADERS32 *)(((CHAR8 *)DosHdr) + DosHdr->e_lfanew);
|
---|
1701 | } else {
|
---|
1702 | //
|
---|
1703 | // No Dos header so assume image starts with PE header.
|
---|
1704 | //
|
---|
1705 | Hdr.Pe32 = (EFI_IMAGE_NT_HEADERS32 *)OldBase;
|
---|
1706 | }
|
---|
1707 |
|
---|
1708 | if (Hdr.Pe32->Signature != EFI_IMAGE_NT_SIGNATURE) {
|
---|
1709 | //
|
---|
1710 | // Not a valid PE image so Exit
|
---|
1711 | //
|
---|
1712 | return ;
|
---|
1713 | }
|
---|
1714 |
|
---|
1715 | if (Hdr.Pe32->OptionalHeader.Magic == EFI_IMAGE_NT_OPTIONAL_HDR32_MAGIC) {
|
---|
1716 | //
|
---|
1717 | // Use PE32 offset
|
---|
1718 | //
|
---|
1719 | NumberOfRvaAndSizes = Hdr.Pe32->OptionalHeader.NumberOfRvaAndSizes;
|
---|
1720 | DataDirectory = (EFI_IMAGE_DATA_DIRECTORY *)&(Hdr.Pe32->OptionalHeader.DataDirectory[0]);
|
---|
1721 | } else {
|
---|
1722 | //
|
---|
1723 | // Use PE32+ offset
|
---|
1724 | //
|
---|
1725 | NumberOfRvaAndSizes = Hdr.Pe32Plus->OptionalHeader.NumberOfRvaAndSizes;
|
---|
1726 | DataDirectory = (EFI_IMAGE_DATA_DIRECTORY *)&(Hdr.Pe32Plus->OptionalHeader.DataDirectory[0]);
|
---|
1727 | }
|
---|
1728 |
|
---|
1729 | //
|
---|
1730 | // Find the relocation block
|
---|
1731 | //
|
---|
1732 | // Per the PE/COFF spec, you can't assume that a given data directory
|
---|
1733 | // is present in the image. You have to check the NumberOfRvaAndSizes in
|
---|
1734 | // the optional header to verify a desired directory entry is there.
|
---|
1735 | //
|
---|
1736 | RelocBase = NULL;
|
---|
1737 | RelocBaseEnd = NULL;
|
---|
1738 | if (NumberOfRvaAndSizes > EFI_IMAGE_DIRECTORY_ENTRY_BASERELOC) {
|
---|
1739 | RelocDir = DataDirectory + EFI_IMAGE_DIRECTORY_ENTRY_BASERELOC;
|
---|
1740 | if ((RelocDir != NULL) && (RelocDir->Size > 0)) {
|
---|
1741 | RelocBase = (EFI_IMAGE_BASE_RELOCATION *) PeCoffLoaderImageAddress (&ImageContext, RelocDir->VirtualAddress, 0);
|
---|
1742 | RelocBaseEnd = (EFI_IMAGE_BASE_RELOCATION *) PeCoffLoaderImageAddress (&ImageContext,
|
---|
1743 | RelocDir->VirtualAddress + RelocDir->Size - 1,
|
---|
1744 | 0
|
---|
1745 | );
|
---|
1746 | }
|
---|
1747 | if (RelocBase == NULL || RelocBaseEnd == NULL || (UINTN) RelocBaseEnd < (UINTN) RelocBase) {
|
---|
1748 | //
|
---|
1749 | // relocation block is not valid, just return
|
---|
1750 | //
|
---|
1751 | return;
|
---|
1752 | }
|
---|
1753 | } else {
|
---|
1754 | //
|
---|
1755 | // Cannot find relocations, cannot continue to relocate the image, ASSERT for this invalid image.
|
---|
1756 | //
|
---|
1757 | ASSERT (FALSE);
|
---|
1758 | return ;
|
---|
1759 | }
|
---|
1760 |
|
---|
1761 | //
|
---|
1762 | // ASSERT for the invalid image when RelocBase and RelocBaseEnd are both NULL.
|
---|
1763 | //
|
---|
1764 | ASSERT (RelocBase != NULL && RelocBaseEnd != NULL);
|
---|
1765 |
|
---|
1766 | if (Adjust != 0) {
|
---|
1767 | //
|
---|
1768 | // Run the whole relocation block. And re-fixup data that has not been
|
---|
1769 | // modified. The FixupData is used to see if the image has been modified
|
---|
1770 | // since it was relocated. This is so data sections that have been updated
|
---|
1771 | // by code will not be fixed up, since that would set them back to
|
---|
1772 | // defaults.
|
---|
1773 | //
|
---|
1774 | FixupData = RelocationData;
|
---|
1775 | RelocBaseOrig = RelocBase;
|
---|
1776 | while ((UINTN) RelocBase < (UINTN) RelocBaseEnd) {
|
---|
1777 | //
|
---|
1778 | // Add check for RelocBase->SizeOfBlock field.
|
---|
1779 | //
|
---|
1780 | if ((RelocBase->SizeOfBlock == 0) || (RelocBase->SizeOfBlock > RelocDir->Size)) {
|
---|
1781 | //
|
---|
1782 | // Data invalid, cannot continue to relocate the image, just return.
|
---|
1783 | //
|
---|
1784 | return;
|
---|
1785 | }
|
---|
1786 |
|
---|
1787 | Reloc = (UINT16 *) ((UINT8 *) RelocBase + sizeof (EFI_IMAGE_BASE_RELOCATION));
|
---|
1788 | RelocEnd = (UINT16 *) ((UINT8 *) RelocBase + RelocBase->SizeOfBlock);
|
---|
1789 | if ((UINTN)RelocEnd > (UINTN)RelocBaseOrig + RelocDir->Size) {
|
---|
1790 | return;
|
---|
1791 | }
|
---|
1792 |
|
---|
1793 | FixupBase = PeCoffLoaderImageAddress (&ImageContext, RelocBase->VirtualAddress, 0);
|
---|
1794 | if (FixupBase == NULL) {
|
---|
1795 | return;
|
---|
1796 | }
|
---|
1797 |
|
---|
1798 | //
|
---|
1799 | // Run this relocation record
|
---|
1800 | //
|
---|
1801 | while ((UINTN) Reloc < (UINTN) RelocEnd) {
|
---|
1802 |
|
---|
1803 | Fixup = PeCoffLoaderImageAddress (&ImageContext, RelocBase->VirtualAddress + (*Reloc & 0xFFF), 0);
|
---|
1804 | if (Fixup == NULL) {
|
---|
1805 | return;
|
---|
1806 | }
|
---|
1807 | switch ((*Reloc) >> 12) {
|
---|
1808 |
|
---|
1809 | case EFI_IMAGE_REL_BASED_ABSOLUTE:
|
---|
1810 | break;
|
---|
1811 |
|
---|
1812 | case EFI_IMAGE_REL_BASED_HIGH:
|
---|
1813 | Fixup16 = (UINT16 *) Fixup;
|
---|
1814 | if (*(UINT16 *) FixupData == *Fixup16) {
|
---|
1815 | *Fixup16 = (UINT16) (*Fixup16 + ((UINT16) ((UINT32) Adjust >> 16)));
|
---|
1816 | }
|
---|
1817 |
|
---|
1818 | FixupData = FixupData + sizeof (UINT16);
|
---|
1819 | break;
|
---|
1820 |
|
---|
1821 | case EFI_IMAGE_REL_BASED_LOW:
|
---|
1822 | Fixup16 = (UINT16 *) Fixup;
|
---|
1823 | if (*(UINT16 *) FixupData == *Fixup16) {
|
---|
1824 | *Fixup16 = (UINT16) (*Fixup16 + ((UINT16) Adjust & 0xffff));
|
---|
1825 | }
|
---|
1826 |
|
---|
1827 | FixupData = FixupData + sizeof (UINT16);
|
---|
1828 | break;
|
---|
1829 |
|
---|
1830 | case EFI_IMAGE_REL_BASED_HIGHLOW:
|
---|
1831 | Fixup32 = (UINT32 *) Fixup;
|
---|
1832 | FixupData = ALIGN_POINTER (FixupData, sizeof (UINT32));
|
---|
1833 | if (*(UINT32 *) FixupData == *Fixup32) {
|
---|
1834 | *Fixup32 = *Fixup32 + (UINT32) Adjust;
|
---|
1835 | }
|
---|
1836 |
|
---|
1837 | FixupData = FixupData + sizeof (UINT32);
|
---|
1838 | break;
|
---|
1839 |
|
---|
1840 | case EFI_IMAGE_REL_BASED_DIR64:
|
---|
1841 | Fixup64 = (UINT64 *)Fixup;
|
---|
1842 | FixupData = ALIGN_POINTER (FixupData, sizeof (UINT64));
|
---|
1843 | if (*(UINT64 *) FixupData == *Fixup64) {
|
---|
1844 | *Fixup64 = *Fixup64 + (UINT64)Adjust;
|
---|
1845 | }
|
---|
1846 |
|
---|
1847 | FixupData = FixupData + sizeof (UINT64);
|
---|
1848 | break;
|
---|
1849 |
|
---|
1850 | default:
|
---|
1851 | //
|
---|
1852 | // Only Itanium requires ConvertPeImage_Ex
|
---|
1853 | //
|
---|
1854 | Status = PeHotRelocateImageEx (Reloc, Fixup, &FixupData, Adjust);
|
---|
1855 | if (RETURN_ERROR (Status)) {
|
---|
1856 | return ;
|
---|
1857 | }
|
---|
1858 | }
|
---|
1859 | //
|
---|
1860 | // Next relocation record
|
---|
1861 | //
|
---|
1862 | Reloc += 1;
|
---|
1863 | }
|
---|
1864 | //
|
---|
1865 | // next reloc block
|
---|
1866 | //
|
---|
1867 | RelocBase = (EFI_IMAGE_BASE_RELOCATION *) RelocEnd;
|
---|
1868 | }
|
---|
1869 | }
|
---|
1870 | }
|
---|
1871 |
|
---|
1872 |
|
---|
1873 | /**
|
---|
1874 | Reads contents of a PE/COFF image from a buffer in system memory.
|
---|
1875 |
|
---|
1876 | This is the default implementation of a PE_COFF_LOADER_READ_FILE function
|
---|
1877 | that assumes FileHandle pointer to the beginning of a PE/COFF image.
|
---|
1878 | This function reads contents of the PE/COFF image that starts at the system memory
|
---|
1879 | address specified by FileHandle. The read operation copies ReadSize bytes from the
|
---|
1880 | PE/COFF image starting at byte offset FileOffset into the buffer specified by Buffer.
|
---|
1881 | The size of the buffer actually read is returned in ReadSize.
|
---|
1882 |
|
---|
1883 | The caller must make sure the FileOffset and ReadSize within the file scope.
|
---|
1884 |
|
---|
1885 | If FileHandle is NULL, then ASSERT().
|
---|
1886 | If ReadSize is NULL, then ASSERT().
|
---|
1887 | If Buffer is NULL, then ASSERT().
|
---|
1888 |
|
---|
1889 | @param FileHandle The pointer to base of the input stream
|
---|
1890 | @param FileOffset Offset into the PE/COFF image to begin the read operation.
|
---|
1891 | @param ReadSize On input, the size in bytes of the requested read operation.
|
---|
1892 | On output, the number of bytes actually read.
|
---|
1893 | @param Buffer Output buffer that contains the data read from the PE/COFF image.
|
---|
1894 |
|
---|
1895 | @retval RETURN_SUCCESS Data is read from FileOffset from the Handle into
|
---|
1896 | the buffer.
|
---|
1897 | **/
|
---|
1898 | RETURN_STATUS
|
---|
1899 | EFIAPI
|
---|
1900 | PeCoffLoaderImageReadFromMemory (
|
---|
1901 | IN VOID *FileHandle,
|
---|
1902 | IN UINTN FileOffset,
|
---|
1903 | IN OUT UINTN *ReadSize,
|
---|
1904 | OUT VOID *Buffer
|
---|
1905 | )
|
---|
1906 | {
|
---|
1907 | ASSERT (ReadSize != NULL);
|
---|
1908 | ASSERT (FileHandle != NULL);
|
---|
1909 | ASSERT (Buffer != NULL);
|
---|
1910 |
|
---|
1911 | CopyMem (Buffer, ((UINT8 *)FileHandle) + FileOffset, *ReadSize);
|
---|
1912 | return RETURN_SUCCESS;
|
---|
1913 | }
|
---|
1914 |
|
---|
1915 | /**
|
---|
1916 | Unloads a loaded PE/COFF image from memory and releases its taken resource.
|
---|
1917 | Releases any environment specific resources that were allocated when the image
|
---|
1918 | specified by ImageContext was loaded using PeCoffLoaderLoadImage().
|
---|
1919 |
|
---|
1920 | For NT32 emulator, the PE/COFF image loaded by system needs to release.
|
---|
1921 | For real platform, the PE/COFF image loaded by Core doesn't needs to be unloaded,
|
---|
1922 | this function can simply return RETURN_SUCCESS.
|
---|
1923 |
|
---|
1924 | If ImageContext is NULL, then ASSERT().
|
---|
1925 |
|
---|
1926 | @param ImageContext The pointer to the image context structure that describes the PE/COFF
|
---|
1927 | image to be unloaded.
|
---|
1928 |
|
---|
1929 | @retval RETURN_SUCCESS The PE/COFF image was unloaded successfully.
|
---|
1930 | **/
|
---|
1931 | RETURN_STATUS
|
---|
1932 | EFIAPI
|
---|
1933 | PeCoffLoaderUnloadImage (
|
---|
1934 | IN OUT PE_COFF_LOADER_IMAGE_CONTEXT *ImageContext
|
---|
1935 | )
|
---|
1936 | {
|
---|
1937 | //
|
---|
1938 | // Applies additional environment specific actions to unload a
|
---|
1939 | // PE/COFF image if needed
|
---|
1940 | //
|
---|
1941 | PeCoffLoaderUnloadImageExtraAction (ImageContext);
|
---|
1942 | return RETURN_SUCCESS;
|
---|
1943 | }
|
---|