1 | /** @file
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2 | This library will parse the coreboot table in memory and extract those required
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3 | information.
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4 |
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5 | Copyright (c) 2014 - 2021, Intel Corporation. All rights reserved.<BR>
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6 | SPDX-License-Identifier: BSD-2-Clause-Patent
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7 |
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8 | **/
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9 |
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10 | #include <Uefi/UefiBaseType.h>
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11 | #include <Library/BaseLib.h>
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12 | #include <Library/BaseMemoryLib.h>
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13 | #include <Library/DebugLib.h>
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14 | #include <Library/PcdLib.h>
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15 | #include <Library/IoLib.h>
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16 | #include <Library/BlParseLib.h>
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17 | #include <IndustryStandard/Acpi.h>
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18 | #include <Coreboot.h>
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19 |
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20 | /**
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21 | Convert a packed value from cbuint64 to a UINT64 value.
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22 |
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23 | @param val The pointer to packed data.
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24 |
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25 | @return the UNIT64 value after conversion.
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26 |
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27 | **/
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28 | UINT64
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29 | cb_unpack64 (
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30 | IN struct cbuint64 val
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31 | )
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32 | {
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33 | return LShiftU64 (val.hi, 32) | val.lo;
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34 | }
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35 |
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36 | /**
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37 | Returns the sum of all elements in a buffer of 16-bit values. During
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38 | calculation, the carry bits are also been added.
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39 |
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40 | @param Buffer The pointer to the buffer to carry out the sum operation.
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41 | @param Length The size, in bytes, of Buffer.
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42 |
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43 | @return Sum The sum of Buffer with carry bits included during additions.
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44 |
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45 | **/
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46 | UINT16
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47 | CbCheckSum16 (
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48 | IN UINT16 *Buffer,
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49 | IN UINTN Length
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50 | )
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51 | {
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52 | UINT32 Sum;
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53 | UINT32 TmpValue;
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54 | UINTN Idx;
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55 | UINT8 *TmpPtr;
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56 |
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57 | Sum = 0;
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58 | TmpPtr = (UINT8 *)Buffer;
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59 | for (Idx = 0; Idx < Length; Idx++) {
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60 | TmpValue = TmpPtr[Idx];
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61 | if (Idx % 2 == 1) {
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62 | TmpValue <<= 8;
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63 | }
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64 |
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65 | Sum += TmpValue;
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66 |
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67 | // Wrap
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68 | if (Sum >= 0x10000) {
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69 | Sum = (Sum + (Sum >> 16)) & 0xFFFF;
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70 | }
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71 | }
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72 |
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73 | return (UINT16)((~Sum) & 0xFFFF);
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74 | }
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75 |
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76 | /**
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77 | Check the coreboot table if it is valid.
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78 |
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79 | @param Header Pointer to coreboot table
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80 |
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81 | @retval TRUE The coreboot table is valid.
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82 | @retval Others The coreboot table is not valid.
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83 |
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84 | **/
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85 | BOOLEAN
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86 | IsValidCbTable (
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87 | IN struct cb_header *Header
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88 | )
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89 | {
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90 | UINT16 CheckSum;
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91 |
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92 | if ((Header == NULL) || (Header->table_bytes == 0)) {
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93 | return FALSE;
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94 | }
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95 |
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96 | if (Header->signature != CB_HEADER_SIGNATURE) {
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97 | return FALSE;
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98 | }
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99 |
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100 | //
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101 | // Check the checksum of the coreboot table header
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102 | //
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103 | CheckSum = CbCheckSum16 ((UINT16 *)Header, sizeof (*Header));
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104 | if (CheckSum != 0) {
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105 | DEBUG ((DEBUG_ERROR, "Invalid coreboot table header checksum\n"));
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106 | return FALSE;
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107 | }
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108 |
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109 | CheckSum = CbCheckSum16 ((UINT16 *)((UINT8 *)Header + sizeof (*Header)), Header->table_bytes);
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110 | if (CheckSum != Header->table_checksum) {
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111 | DEBUG ((DEBUG_ERROR, "Incorrect checksum of all the coreboot table entries\n"));
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112 | return FALSE;
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113 | }
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114 |
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115 | return TRUE;
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116 | }
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117 |
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118 | /**
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119 | This function retrieves the parameter base address from boot loader.
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120 |
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121 | This function will get bootloader specific parameter address for UEFI payload.
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122 | e.g. HobList pointer for Slim Bootloader, and coreboot table header for Coreboot.
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123 |
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124 | @retval NULL Failed to find the GUID HOB.
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125 | @retval others GUIDed HOB data pointer.
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126 |
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127 | **/
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128 | VOID *
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129 | EFIAPI
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130 | GetParameterBase (
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131 | VOID
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132 | )
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133 | {
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134 | struct cb_header *Header;
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135 | struct cb_record *Record;
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136 | UINT8 *TmpPtr;
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137 | UINT8 *CbTablePtr;
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138 | UINTN Idx;
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139 | EFI_STATUS Status;
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140 |
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141 | //
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142 | // coreboot could pass coreboot table to UEFI payload
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143 | //
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144 | Header = (struct cb_header *)(UINTN)GET_BOOTLOADER_PARAMETER ();
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145 | if (IsValidCbTable (Header)) {
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146 | return Header;
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147 | }
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148 |
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149 | //
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150 | // Find simplified coreboot table in memory range 0 ~ 4KB.
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151 | // Some GCC version does not allow directly access to NULL pointer,
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152 | // so start the search from 0x10 instead.
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153 | //
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154 | for (Idx = 16; Idx < 4096; Idx += 16) {
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155 | Header = (struct cb_header *)Idx;
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156 | if (Header->signature == CB_HEADER_SIGNATURE) {
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157 | break;
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158 | }
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159 | }
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160 |
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161 | if (Idx >= 4096) {
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162 | return NULL;
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163 | }
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164 |
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165 | //
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166 | // Check the coreboot header
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167 | //
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168 | if (!IsValidCbTable (Header)) {
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169 | return NULL;
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170 | }
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171 |
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172 | //
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173 | // Find full coreboot table in high memory
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174 | //
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175 | CbTablePtr = NULL;
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176 | TmpPtr = (UINT8 *)Header + Header->header_bytes;
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177 | for (Idx = 0; Idx < Header->table_entries; Idx++) {
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178 | Record = (struct cb_record *)TmpPtr;
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179 | if (Record->tag == CB_TAG_FORWARD) {
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180 | CbTablePtr = (VOID *)(UINTN)((struct cb_forward *)(UINTN)Record)->forward;
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181 | break;
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182 | }
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183 |
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184 | TmpPtr += Record->size;
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185 | }
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186 |
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187 | //
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188 | // Check the coreboot header in high memory
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189 | //
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190 | if (!IsValidCbTable ((struct cb_header *)CbTablePtr)) {
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191 | return NULL;
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192 | }
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193 |
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194 | Status = PcdSet64S (PcdBootloaderParameter, (UINTN)CbTablePtr);
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195 | ASSERT_EFI_ERROR (Status);
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196 |
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197 | return CbTablePtr;
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198 | }
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199 |
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200 | /**
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201 | Find coreboot record with given Tag.
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202 |
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203 | @param Tag The tag id to be found
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204 |
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205 | @retval NULL The Tag is not found.
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206 | @retval Others The pointer to the record found.
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207 |
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208 | **/
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209 | VOID *
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210 | FindCbTag (
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211 | IN UINT32 Tag
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212 | )
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213 | {
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214 | struct cb_header *Header;
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215 | struct cb_record *Record;
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216 | UINT8 *TmpPtr;
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217 | UINT8 *TagPtr;
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218 | UINTN Idx;
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219 |
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220 | Header = (struct cb_header *)GetParameterBase ();
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221 |
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222 | TagPtr = NULL;
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223 | TmpPtr = (UINT8 *)Header + Header->header_bytes;
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224 | for (Idx = 0; Idx < Header->table_entries; Idx++) {
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225 | Record = (struct cb_record *)TmpPtr;
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226 | if (Record->tag == Tag) {
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227 | TagPtr = TmpPtr;
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228 | break;
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229 | }
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230 |
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231 | TmpPtr += Record->size;
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232 | }
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233 |
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234 | return TagPtr;
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235 | }
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236 |
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237 | /**
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238 | Find the given table with TableId from the given coreboot memory Root.
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239 |
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240 | @param Root The coreboot memory table to be searched in
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241 | @param TableId Table id to be found
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242 | @param MemTable To save the base address of the memory table found
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243 | @param MemTableSize To save the size of memory table found
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244 |
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245 | @retval RETURN_SUCCESS Successfully find out the memory table.
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246 | @retval RETURN_INVALID_PARAMETER Invalid input parameters.
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247 | @retval RETURN_NOT_FOUND Failed to find the memory table.
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248 |
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249 | **/
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250 | RETURN_STATUS
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251 | FindCbMemTable (
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252 | IN struct cbmem_root *Root,
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253 | IN UINT32 TableId,
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254 | OUT VOID **MemTable,
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255 | OUT UINT32 *MemTableSize
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256 | )
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257 | {
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258 | UINTN Idx;
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259 | BOOLEAN IsImdEntry;
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260 | struct cbmem_entry *Entries;
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261 |
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262 | if ((Root == NULL) || (MemTable == NULL)) {
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263 | return RETURN_INVALID_PARAMETER;
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264 | }
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265 |
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266 | //
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267 | // Check if the entry is CBMEM or IMD
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268 | // and handle them separately
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269 | //
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270 | Entries = Root->entries;
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271 | if (Entries[0].magic == CBMEM_ENTRY_MAGIC) {
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272 | IsImdEntry = FALSE;
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273 | } else {
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274 | Entries = (struct cbmem_entry *)((struct imd_root *)Root)->entries;
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275 | if (Entries[0].magic == IMD_ENTRY_MAGIC) {
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276 | IsImdEntry = TRUE;
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277 | } else {
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278 | return RETURN_NOT_FOUND;
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279 | }
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280 | }
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281 |
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282 | for (Idx = 0; Idx < Root->num_entries; Idx++) {
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283 | if (Entries[Idx].id == TableId) {
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284 | if (IsImdEntry) {
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285 | *MemTable = (VOID *)((INTN)(INT32)Entries[Idx].start + (UINTN)Root);
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286 | } else {
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287 | *MemTable = (VOID *)(UINTN)Entries[Idx].start;
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288 | }
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289 |
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290 | if (MemTableSize != NULL) {
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291 | *MemTableSize = Entries[Idx].size;
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292 | }
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293 |
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294 | DEBUG ((
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295 | DEBUG_INFO,
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296 | "Find CbMemTable Id 0x%x, base %p, size 0x%x\n",
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297 | TableId,
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298 | *MemTable,
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299 | Entries[Idx].size
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300 | ));
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301 | return RETURN_SUCCESS;
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302 | }
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303 | }
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304 |
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305 | return RETURN_NOT_FOUND;
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306 | }
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307 |
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308 | /**
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309 | Acquire the coreboot memory table with the given table id
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310 |
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311 | @param TableId Table id to be searched
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312 | @param MemTable Pointer to the base address of the memory table
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313 | @param MemTableSize Pointer to the size of the memory table
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314 |
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315 | @retval RETURN_SUCCESS Successfully find out the memory table.
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316 | @retval RETURN_INVALID_PARAMETER Invalid input parameters.
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317 | @retval RETURN_NOT_FOUND Failed to find the memory table.
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318 |
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319 | **/
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320 | RETURN_STATUS
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321 | ParseCbMemTable (
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322 | IN UINT32 TableId,
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323 | OUT VOID **MemTable,
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324 | OUT UINT32 *MemTableSize
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325 | )
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326 | {
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327 | EFI_STATUS Status;
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328 | CB_MEMORY *Rec;
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329 | struct cb_memory_range *Range;
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330 | UINT64 Start;
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331 | UINT64 Size;
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332 | UINTN Index;
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333 | struct cbmem_root *CbMemRoot;
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334 |
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335 | if (MemTable == NULL) {
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336 | return RETURN_INVALID_PARAMETER;
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337 | }
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338 |
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339 | *MemTable = NULL;
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340 | Status = RETURN_NOT_FOUND;
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341 |
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342 | //
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343 | // Get the coreboot memory table
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344 | //
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345 | Rec = (CB_MEMORY *)FindCbTag (CB_TAG_MEMORY);
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346 | if (Rec == NULL) {
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347 | return Status;
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348 | }
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349 |
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350 | for (Index = 0; Index < MEM_RANGE_COUNT (Rec); Index++) {
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351 | Range = MEM_RANGE_PTR (Rec, Index);
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352 | Start = cb_unpack64 (Range->start);
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353 | Size = cb_unpack64 (Range->size);
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354 |
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355 | if ((Range->type == CB_MEM_TABLE) && (Start > 0x1000)) {
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356 | CbMemRoot = (struct cbmem_root *)(UINTN)(Start + Size - DYN_CBMEM_ALIGN_SIZE);
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357 | Status = FindCbMemTable (CbMemRoot, TableId, MemTable, MemTableSize);
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358 | if (!EFI_ERROR (Status)) {
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359 | break;
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360 | }
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361 | }
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362 | }
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363 |
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364 | return Status;
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365 | }
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366 |
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367 | /**
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368 | Acquire the memory information from the coreboot table in memory.
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369 |
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370 | @param MemInfoCallback The callback routine
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371 | @param Params Pointer to the callback routine parameter
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372 |
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373 | @retval RETURN_SUCCESS Successfully find out the memory information.
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374 | @retval RETURN_NOT_FOUND Failed to find the memory information.
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375 |
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376 | **/
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377 | RETURN_STATUS
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378 | EFIAPI
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379 | ParseMemoryInfo (
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380 | IN BL_MEM_INFO_CALLBACK MemInfoCallback,
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381 | IN VOID *Params
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382 | )
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383 | {
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384 | CB_MEMORY *Rec;
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385 | struct cb_memory_range *Range;
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386 | UINTN Index;
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387 | MEMORY_MAP_ENTRY MemoryMap;
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388 |
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389 | //
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390 | // Get the coreboot memory table
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391 | //
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392 | Rec = (CB_MEMORY *)FindCbTag (CB_TAG_MEMORY);
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393 | if (Rec == NULL) {
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394 | return RETURN_NOT_FOUND;
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395 | }
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396 |
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397 | for (Index = 0; Index < MEM_RANGE_COUNT (Rec); Index++) {
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398 | Range = MEM_RANGE_PTR (Rec, Index);
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399 | MemoryMap.Base = cb_unpack64 (Range->start);
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400 | MemoryMap.Size = cb_unpack64 (Range->size);
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401 | MemoryMap.Type = (UINT8)Range->type;
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402 | MemoryMap.Flag = 0;
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403 | DEBUG ((
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404 | DEBUG_INFO,
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405 | "%d. %016lx - %016lx [%02x]\n",
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406 | Index,
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407 | MemoryMap.Base,
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408 | MemoryMap.Base + MemoryMap.Size - 1,
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409 | MemoryMap.Type
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410 | ));
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411 |
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412 | MemInfoCallback (&MemoryMap, Params);
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413 | }
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414 |
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415 | return RETURN_SUCCESS;
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416 | }
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417 |
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418 | /**
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419 | Acquire SMBIOS table from coreboot.
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420 |
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421 | @param SmbiosTable Pointer to the SMBIOS table info.
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422 |
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423 | @retval RETURN_SUCCESS Successfully find out the tables.
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424 | @retval RETURN_NOT_FOUND Failed to find the tables.
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425 |
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426 | **/
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427 | RETURN_STATUS
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428 | EFIAPI
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429 | ParseSmbiosTable (
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430 | OUT UNIVERSAL_PAYLOAD_SMBIOS_TABLE *SmbiosTable
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431 | )
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432 | {
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433 | EFI_STATUS Status;
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434 | VOID *MemTable;
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435 | UINT32 MemTableSize;
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436 |
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437 | Status = ParseCbMemTable (SIGNATURE_32 ('T', 'B', 'M', 'S'), &MemTable, &MemTableSize);
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438 | if (EFI_ERROR (Status)) {
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439 | return EFI_NOT_FOUND;
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440 | }
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441 |
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442 | SmbiosTable->SmBiosEntryPoint = (UINT64)(UINTN)MemTable;
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443 |
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444 | return RETURN_SUCCESS;
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445 | }
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446 |
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447 | /**
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448 | Acquire ACPI table from coreboot.
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449 |
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450 | @param AcpiTableHob Pointer to the ACPI table info.
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451 |
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452 | @retval RETURN_SUCCESS Successfully find out the tables.
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453 | @retval RETURN_NOT_FOUND Failed to find the tables.
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454 |
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455 | **/
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456 | RETURN_STATUS
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457 | EFIAPI
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458 | ParseAcpiTableInfo (
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459 | OUT UNIVERSAL_PAYLOAD_ACPI_TABLE *AcpiTableHob
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460 | )
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461 | {
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462 | EFI_STATUS Status;
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463 | VOID *MemTable;
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464 | UINT32 MemTableSize;
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465 |
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466 | Status = ParseCbMemTable (SIGNATURE_32 ('I', 'P', 'C', 'A'), &MemTable, &MemTableSize);
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467 | if (EFI_ERROR (Status)) {
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468 | return EFI_NOT_FOUND;
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469 | }
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470 |
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471 | AcpiTableHob->Rsdp = (UINT64)(UINTN)MemTable;
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472 |
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473 | return RETURN_SUCCESS;
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474 | }
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475 |
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476 | /**
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477 | Find the serial port information
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478 |
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479 | @param SerialPortInfo Pointer to serial port info structure
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480 |
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481 | @retval RETURN_SUCCESS Successfully find the serial port information.
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482 | @retval RETURN_NOT_FOUND Failed to find the serial port information .
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483 |
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484 | **/
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485 | RETURN_STATUS
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486 | EFIAPI
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487 | ParseSerialInfo (
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488 | OUT SERIAL_PORT_INFO *SerialPortInfo
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489 | )
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490 | {
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491 | struct cb_serial *CbSerial;
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492 |
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493 | CbSerial = FindCbTag (CB_TAG_SERIAL);
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494 | if (CbSerial == NULL) {
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495 | return RETURN_NOT_FOUND;
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496 | }
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497 |
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498 | SerialPortInfo->BaseAddr = CbSerial->baseaddr;
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499 | SerialPortInfo->RegWidth = CbSerial->regwidth;
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500 | SerialPortInfo->Type = CbSerial->type;
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501 | SerialPortInfo->Baud = CbSerial->baud;
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502 | SerialPortInfo->InputHertz = CbSerial->input_hertz;
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503 | SerialPortInfo->UartPciAddr = CbSerial->uart_pci_addr;
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504 |
|
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505 | return RETURN_SUCCESS;
|
---|
506 | }
|
---|
507 |
|
---|
508 | /**
|
---|
509 | Find the video frame buffer information
|
---|
510 |
|
---|
511 | @param GfxInfo Pointer to the EFI_PEI_GRAPHICS_INFO_HOB structure
|
---|
512 |
|
---|
513 | @retval RETURN_SUCCESS Successfully find the video frame buffer information.
|
---|
514 | @retval RETURN_NOT_FOUND Failed to find the video frame buffer information .
|
---|
515 |
|
---|
516 | **/
|
---|
517 | RETURN_STATUS
|
---|
518 | EFIAPI
|
---|
519 | ParseGfxInfo (
|
---|
520 | OUT EFI_PEI_GRAPHICS_INFO_HOB *GfxInfo
|
---|
521 | )
|
---|
522 | {
|
---|
523 | struct cb_framebuffer *CbFbRec;
|
---|
524 | EFI_GRAPHICS_OUTPUT_MODE_INFORMATION *GfxMode;
|
---|
525 |
|
---|
526 | if (GfxInfo == NULL) {
|
---|
527 | return RETURN_INVALID_PARAMETER;
|
---|
528 | }
|
---|
529 |
|
---|
530 | CbFbRec = FindCbTag (CB_TAG_FRAMEBUFFER);
|
---|
531 | if (CbFbRec == NULL) {
|
---|
532 | return RETURN_NOT_FOUND;
|
---|
533 | }
|
---|
534 |
|
---|
535 | DEBUG ((DEBUG_INFO, "Found coreboot video frame buffer information\n"));
|
---|
536 | DEBUG ((DEBUG_INFO, "physical_address: 0x%lx\n", CbFbRec->physical_address));
|
---|
537 | DEBUG ((DEBUG_INFO, "x_resolution: 0x%x\n", CbFbRec->x_resolution));
|
---|
538 | DEBUG ((DEBUG_INFO, "y_resolution: 0x%x\n", CbFbRec->y_resolution));
|
---|
539 | DEBUG ((DEBUG_INFO, "bits_per_pixel: 0x%x\n", CbFbRec->bits_per_pixel));
|
---|
540 | DEBUG ((DEBUG_INFO, "bytes_per_line: 0x%x\n", CbFbRec->bytes_per_line));
|
---|
541 |
|
---|
542 | DEBUG ((DEBUG_INFO, "red_mask_size: 0x%x\n", CbFbRec->red_mask_size));
|
---|
543 | DEBUG ((DEBUG_INFO, "red_mask_pos: 0x%x\n", CbFbRec->red_mask_pos));
|
---|
544 | DEBUG ((DEBUG_INFO, "green_mask_size: 0x%x\n", CbFbRec->green_mask_size));
|
---|
545 | DEBUG ((DEBUG_INFO, "green_mask_pos: 0x%x\n", CbFbRec->green_mask_pos));
|
---|
546 | DEBUG ((DEBUG_INFO, "blue_mask_size: 0x%x\n", CbFbRec->blue_mask_size));
|
---|
547 | DEBUG ((DEBUG_INFO, "blue_mask_pos: 0x%x\n", CbFbRec->blue_mask_pos));
|
---|
548 | DEBUG ((DEBUG_INFO, "reserved_mask_size: 0x%x\n", CbFbRec->reserved_mask_size));
|
---|
549 | DEBUG ((DEBUG_INFO, "reserved_mask_pos: 0x%x\n", CbFbRec->reserved_mask_pos));
|
---|
550 |
|
---|
551 | GfxMode = &GfxInfo->GraphicsMode;
|
---|
552 | GfxMode->Version = 0;
|
---|
553 | GfxMode->HorizontalResolution = CbFbRec->x_resolution;
|
---|
554 | GfxMode->VerticalResolution = CbFbRec->y_resolution;
|
---|
555 | GfxMode->PixelsPerScanLine = (CbFbRec->bytes_per_line << 3) / CbFbRec->bits_per_pixel;
|
---|
556 | if ((CbFbRec->red_mask_pos == 0) && (CbFbRec->green_mask_pos == 8) && (CbFbRec->blue_mask_pos == 16)) {
|
---|
557 | GfxMode->PixelFormat = PixelRedGreenBlueReserved8BitPerColor;
|
---|
558 | } else if ((CbFbRec->blue_mask_pos == 0) && (CbFbRec->green_mask_pos == 8) && (CbFbRec->red_mask_pos == 16)) {
|
---|
559 | GfxMode->PixelFormat = PixelBlueGreenRedReserved8BitPerColor;
|
---|
560 | }
|
---|
561 |
|
---|
562 | GfxMode->PixelInformation.RedMask = ((1 << CbFbRec->red_mask_size) - 1) << CbFbRec->red_mask_pos;
|
---|
563 | GfxMode->PixelInformation.GreenMask = ((1 << CbFbRec->green_mask_size) - 1) << CbFbRec->green_mask_pos;
|
---|
564 | GfxMode->PixelInformation.BlueMask = ((1 << CbFbRec->blue_mask_size) - 1) << CbFbRec->blue_mask_pos;
|
---|
565 | GfxMode->PixelInformation.ReservedMask = ((1 << CbFbRec->reserved_mask_size) - 1) << CbFbRec->reserved_mask_pos;
|
---|
566 |
|
---|
567 | GfxInfo->FrameBufferBase = CbFbRec->physical_address;
|
---|
568 | GfxInfo->FrameBufferSize = CbFbRec->bytes_per_line * CbFbRec->y_resolution;
|
---|
569 |
|
---|
570 | return RETURN_SUCCESS;
|
---|
571 | }
|
---|
572 |
|
---|
573 | /**
|
---|
574 | Find the video frame buffer device information
|
---|
575 |
|
---|
576 | @param GfxDeviceInfo Pointer to the EFI_PEI_GRAPHICS_DEVICE_INFO_HOB structure
|
---|
577 |
|
---|
578 | @retval RETURN_SUCCESS Successfully find the video frame buffer information.
|
---|
579 | @retval RETURN_NOT_FOUND Failed to find the video frame buffer information.
|
---|
580 |
|
---|
581 | **/
|
---|
582 | RETURN_STATUS
|
---|
583 | EFIAPI
|
---|
584 | ParseGfxDeviceInfo (
|
---|
585 | OUT EFI_PEI_GRAPHICS_DEVICE_INFO_HOB *GfxDeviceInfo
|
---|
586 | )
|
---|
587 | {
|
---|
588 | return RETURN_NOT_FOUND;
|
---|
589 | }
|
---|
590 |
|
---|
591 | /**
|
---|
592 | Parse and handle the misc info provided by bootloader
|
---|
593 |
|
---|
594 | @retval RETURN_SUCCESS The misc information was parsed successfully.
|
---|
595 | @retval RETURN_NOT_FOUND Could not find required misc info.
|
---|
596 | @retval RETURN_OUT_OF_RESOURCES Insufficant memory space.
|
---|
597 |
|
---|
598 | **/
|
---|
599 | RETURN_STATUS
|
---|
600 | EFIAPI
|
---|
601 | ParseMiscInfo (
|
---|
602 | VOID
|
---|
603 | )
|
---|
604 | {
|
---|
605 | return RETURN_SUCCESS;
|
---|
606 | }
|
---|