mirror of https://github.com/acidanthera/audk.git
361 lines
14 KiB
C
361 lines
14 KiB
C
/** @file
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FMP Authentication RSA2048SHA256 handler.
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Provide generic FMP authentication functions for DXE/PEI post memory phase.
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Caution: This module requires additional review when modified.
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This module will have external input - capsule image.
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This external input must be validated carefully to avoid security issue like
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buffer overflow, integer overflow.
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FmpAuthenticatedHandlerRsa2048Sha256(), AuthenticateFmpImage() will receive
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untrusted input and do basic validation.
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Copyright (c) 2016 - 2017, Intel Corporation. All rights reserved.<BR>
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This program and the accompanying materials
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are licensed and made available under the terms and conditions of the BSD License
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which accompanies this distribution. The full text of the license may be found at
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http://opensource.org/licenses/bsd-license.php
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THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,
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WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.
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**/
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#include <Uefi.h>
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#include <Guid/SystemResourceTable.h>
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#include <Guid/FirmwareContentsSigned.h>
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#include <Guid/WinCertificate.h>
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#include <Library/BaseLib.h>
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#include <Library/BaseMemoryLib.h>
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#include <Library/DebugLib.h>
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#include <Library/MemoryAllocationLib.h>
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#include <Library/BaseCryptLib.h>
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#include <Library/FmpAuthenticationLib.h>
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#include <Library/PcdLib.h>
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#include <Protocol/FirmwareManagement.h>
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#include <Guid/SystemResourceTable.h>
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///
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/// Public Exponent of RSA Key.
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///
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STATIC CONST UINT8 mRsaE[] = { 0x01, 0x00, 0x01 };
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/**
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The handler is used to do the authentication for FMP capsule based upon
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EFI_FIRMWARE_IMAGE_AUTHENTICATION.
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Caution: This function may receive untrusted input.
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This function assumes the caller AuthenticateFmpImage()
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already did basic validation for EFI_FIRMWARE_IMAGE_AUTHENTICATION.
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@param[in] Image Points to an FMP authentication image, started from EFI_FIRMWARE_IMAGE_AUTHENTICATION.
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@param[in] ImageSize Size of the authentication image in bytes.
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@param[in] PublicKeyData The public key data used to validate the signature.
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@param[in] PublicKeyDataLength The length of the public key data.
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@retval RETURN_SUCCESS Authentication pass.
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The LastAttemptStatus should be LAST_ATTEMPT_STATUS_SUCCESS.
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@retval RETURN_SECURITY_VIOLATION Authentication fail.
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The LastAttemptStatus should be LAST_ATTEMPT_STATUS_ERROR_AUTH_ERROR.
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@retval RETURN_INVALID_PARAMETER The image is in an invalid format.
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The LastAttemptStatus should be LAST_ATTEMPT_STATUS_ERROR_INVALID_FORMAT.
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@retval RETURN_OUT_OF_RESOURCES No Authentication handler associated with CertType.
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The LastAttemptStatus should be LAST_ATTEMPT_STATUS_ERROR_INSUFFICIENT_RESOURCES.
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**/
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RETURN_STATUS
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FmpAuthenticatedHandlerRsa2048Sha256 (
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IN EFI_FIRMWARE_IMAGE_AUTHENTICATION *Image,
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IN UINTN ImageSize,
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IN CONST UINT8 *PublicKeyData,
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IN UINTN PublicKeyDataLength
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)
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{
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RETURN_STATUS Status;
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EFI_CERT_BLOCK_RSA_2048_SHA256 *CertBlockRsa2048Sha256;
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BOOLEAN CryptoStatus;
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UINT8 Digest[SHA256_DIGEST_SIZE];
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UINT8 *PublicKey;
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UINTN PublicKeyBufferSize;
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VOID *HashContext;
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VOID *Rsa;
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DEBUG ((DEBUG_INFO, "FmpAuthenticatedHandlerRsa2048Sha256 - Image: 0x%08x - 0x%08x\n", (UINTN)Image, (UINTN)ImageSize));
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if (Image->AuthInfo.Hdr.dwLength != OFFSET_OF(WIN_CERTIFICATE_UEFI_GUID, CertData) + sizeof(EFI_CERT_BLOCK_RSA_2048_SHA256)) {
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DEBUG((DEBUG_ERROR, "FmpAuthenticatedHandlerRsa2048Sha256 - dwLength: 0x%04x, dwLength - 0x%04x\n", (UINTN)Image->AuthInfo.Hdr.dwLength, (UINTN)OFFSET_OF(WIN_CERTIFICATE_UEFI_GUID, CertData) + sizeof(EFI_CERT_BLOCK_RSA_2048_SHA256)));
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return RETURN_INVALID_PARAMETER;
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}
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CertBlockRsa2048Sha256 = (EFI_CERT_BLOCK_RSA_2048_SHA256 *)Image->AuthInfo.CertData;
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if (!CompareGuid(&CertBlockRsa2048Sha256->HashType, &gEfiHashAlgorithmSha256Guid)) {
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DEBUG((DEBUG_ERROR, "FmpAuthenticatedHandlerRsa2048Sha256 - HashType: %g, expect - %g\n", &CertBlockRsa2048Sha256->HashType, &gEfiHashAlgorithmSha256Guid));
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return RETURN_INVALID_PARAMETER;
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}
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HashContext = NULL;
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Rsa = NULL;
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//
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// Allocate hash context buffer required for SHA 256
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//
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HashContext = AllocatePool (Sha256GetContextSize ());
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if (HashContext == NULL) {
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CryptoStatus = FALSE;
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DEBUG ((DEBUG_ERROR, "FmpAuthenticatedHandlerRsa2048Sha256: Can not allocate hash context\n"));
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Status = RETURN_OUT_OF_RESOURCES;
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goto Done;
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}
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//
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// Hash public key from data payload with SHA256.
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//
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ZeroMem (Digest, SHA256_DIGEST_SIZE);
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CryptoStatus = Sha256Init (HashContext);
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if (!CryptoStatus) {
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DEBUG ((DEBUG_ERROR, "FmpAuthenticatedHandlerRsa2048Sha256: Sha256Init() failed\n"));
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Status = RETURN_OUT_OF_RESOURCES;
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goto Done;
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}
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CryptoStatus = Sha256Update (HashContext, &CertBlockRsa2048Sha256->PublicKey, sizeof(CertBlockRsa2048Sha256->PublicKey));
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if (!CryptoStatus) {
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DEBUG ((DEBUG_ERROR, "FmpAuthenticatedHandlerRsa2048Sha256: Sha256Update() failed\n"));
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Status = RETURN_OUT_OF_RESOURCES;
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goto Done;
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}
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CryptoStatus = Sha256Final (HashContext, Digest);
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if (!CryptoStatus) {
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DEBUG ((DEBUG_ERROR, "FmpAuthenticatedHandlerRsa2048Sha256: Sha256Final() failed\n"));
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Status = RETURN_OUT_OF_RESOURCES;
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goto Done;
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}
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//
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// Fail if the PublicKey is not one of the public keys in PcdRsa2048Sha256PublicKeyBuffer
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//
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PublicKey = (VOID *)PublicKeyData;
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PublicKeyBufferSize = PublicKeyDataLength;
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CryptoStatus = FALSE;
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while (PublicKeyBufferSize != 0) {
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if (CompareMem (Digest, PublicKey, SHA256_DIGEST_SIZE) == 0) {
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CryptoStatus = TRUE;
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break;
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}
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PublicKey = PublicKey + SHA256_DIGEST_SIZE;
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PublicKeyBufferSize = PublicKeyBufferSize - SHA256_DIGEST_SIZE;
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}
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if (!CryptoStatus) {
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DEBUG ((DEBUG_ERROR, "FmpAuthenticatedHandlerRsa2048Sha256: Public key in section is not supported\n"));
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Status = RETURN_SECURITY_VIOLATION;
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goto Done;
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}
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//
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// Generate & Initialize RSA Context.
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//
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Rsa = RsaNew ();
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if (Rsa == NULL) {
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CryptoStatus = FALSE;
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DEBUG ((DEBUG_ERROR, "FmpAuthenticatedHandlerRsa2048Sha256: RsaNew() failed\n"));
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Status = RETURN_OUT_OF_RESOURCES;
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goto Done;
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}
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//
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// Set RSA Key Components.
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// NOTE: Only N and E are needed to be set as RSA public key for signature verification.
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//
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CryptoStatus = RsaSetKey (Rsa, RsaKeyN, CertBlockRsa2048Sha256->PublicKey, sizeof(CertBlockRsa2048Sha256->PublicKey));
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if (!CryptoStatus) {
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DEBUG ((DEBUG_ERROR, "FmpAuthenticatedHandlerRsa2048Sha256: RsaSetKey(RsaKeyN) failed\n"));
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Status = RETURN_OUT_OF_RESOURCES;
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goto Done;
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}
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CryptoStatus = RsaSetKey (Rsa, RsaKeyE, mRsaE, sizeof (mRsaE));
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if (!CryptoStatus) {
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DEBUG ((DEBUG_ERROR, "FmpAuthenticatedHandlerRsa2048Sha256: RsaSetKey(RsaKeyE) failed\n"));
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Status = RETURN_OUT_OF_RESOURCES;
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goto Done;
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}
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//
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// Hash data payload with SHA256.
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//
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ZeroMem (Digest, SHA256_DIGEST_SIZE);
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CryptoStatus = Sha256Init (HashContext);
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if (!CryptoStatus) {
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DEBUG ((DEBUG_ERROR, "FmpAuthenticatedHandlerRsa2048Sha256: Sha256Init() failed\n"));
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Status = RETURN_OUT_OF_RESOURCES;
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goto Done;
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}
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// It is a signature across the variable data and the Monotonic Count value.
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CryptoStatus = Sha256Update (
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HashContext,
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(UINT8 *)Image + sizeof(Image->MonotonicCount) + Image->AuthInfo.Hdr.dwLength,
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ImageSize - sizeof(Image->MonotonicCount) - Image->AuthInfo.Hdr.dwLength
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);
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if (!CryptoStatus) {
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DEBUG((DEBUG_ERROR, "FmpAuthenticatedHandlerRsa2048Sha256: Sha256Update() failed\n"));
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Status = RETURN_OUT_OF_RESOURCES;
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goto Done;
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}
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CryptoStatus = Sha256Update (
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HashContext,
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(UINT8 *)&Image->MonotonicCount,
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sizeof(Image->MonotonicCount)
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);
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if (!CryptoStatus) {
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DEBUG ((DEBUG_ERROR, "FmpAuthenticatedHandlerRsa2048Sha256: Sha256Update() failed\n"));
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Status = RETURN_OUT_OF_RESOURCES;
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goto Done;
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}
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CryptoStatus = Sha256Final (HashContext, Digest);
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if (!CryptoStatus) {
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DEBUG ((DEBUG_ERROR, "FmpAuthenticatedHandlerRsa2048Sha256: Sha256Final() failed\n"));
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Status = RETURN_OUT_OF_RESOURCES;
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goto Done;
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}
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//
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// Verify the RSA 2048 SHA 256 signature.
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//
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CryptoStatus = RsaPkcs1Verify (
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Rsa,
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Digest,
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SHA256_DIGEST_SIZE,
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CertBlockRsa2048Sha256->Signature,
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sizeof (CertBlockRsa2048Sha256->Signature)
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);
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if (!CryptoStatus) {
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//
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// If RSA 2048 SHA 256 signature verification fails, AUTH tested failed bit is set.
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//
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DEBUG ((DEBUG_ERROR, "FmpAuthenticatedHandlerRsa2048Sha256: RsaPkcs1Verify() failed\n"));
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Status = RETURN_SECURITY_VIOLATION;
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goto Done;
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}
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DEBUG ((DEBUG_INFO, "FmpAuthenticatedHandlerRsa2048Sha256: PASS verification\n"));
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Status = RETURN_SUCCESS;
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Done:
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//
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// Free allocated resources used to perform RSA 2048 SHA 256 signature verification
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//
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if (Rsa != NULL) {
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RsaFree (Rsa);
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}
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if (HashContext != NULL) {
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FreePool (HashContext);
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}
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return Status;
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}
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/**
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The function is used to do the authentication for FMP capsule based upon
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EFI_FIRMWARE_IMAGE_AUTHENTICATION.
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The FMP capsule image should start with EFI_FIRMWARE_IMAGE_AUTHENTICATION,
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followed by the payload.
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If the return status is RETURN_SUCCESS, the caller may continue the rest
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FMP update process.
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If the return status is NOT RETURN_SUCCESS, the caller should stop the FMP
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update process and convert the return status to LastAttemptStatus
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to indicate that FMP update fails.
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The LastAttemptStatus can be got from ESRT table or via
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EFI_FIRMWARE_MANAGEMENT_PROTOCOL.GetImageInfo().
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Caution: This function may receive untrusted input.
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@param[in] Image Points to an FMP authentication image, started from EFI_FIRMWARE_IMAGE_AUTHENTICATION.
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@param[in] ImageSize Size of the authentication image in bytes.
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@param[in] PublicKeyData The public key data used to validate the signature.
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@param[in] PublicKeyDataLength The length of the public key data.
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@retval RETURN_SUCCESS Authentication pass.
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The LastAttemptStatus should be LAST_ATTEMPT_STATUS_SUCCESS.
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@retval RETURN_SECURITY_VIOLATION Authentication fail.
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The LastAttemptStatus should be LAST_ATTEMPT_STATUS_ERROR_AUTH_ERROR.
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@retval RETURN_INVALID_PARAMETER The image is in an invalid format.
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The LastAttemptStatus should be LAST_ATTEMPT_STATUS_ERROR_INVALID_FORMAT.
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@retval RETURN_UNSUPPORTED No Authentication handler associated with CertType.
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The LastAttemptStatus should be LAST_ATTEMPT_STATUS_ERROR_INVALID_FORMAT.
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@retval RETURN_UNSUPPORTED Image or ImageSize is invalid.
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The LastAttemptStatus should be LAST_ATTEMPT_STATUS_ERROR_INVALID_FORMAT.
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@retval RETURN_OUT_OF_RESOURCES No Authentication handler associated with CertType.
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The LastAttemptStatus should be LAST_ATTEMPT_STATUS_ERROR_INSUFFICIENT_RESOURCES.
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**/
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RETURN_STATUS
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EFIAPI
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AuthenticateFmpImage (
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IN EFI_FIRMWARE_IMAGE_AUTHENTICATION *Image,
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IN UINTN ImageSize,
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IN CONST UINT8 *PublicKeyData,
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IN UINTN PublicKeyDataLength
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)
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{
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GUID *CertType;
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EFI_STATUS Status;
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if ((Image == NULL) || (ImageSize == 0)) {
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return RETURN_UNSUPPORTED;
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}
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if ((PublicKeyDataLength % SHA256_DIGEST_SIZE) != 0) {
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DEBUG ((DEBUG_ERROR, "PublicKeyDataLength is not multiple SHA256 size\n"));
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return RETURN_UNSUPPORTED;
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}
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if (ImageSize < sizeof(EFI_FIRMWARE_IMAGE_AUTHENTICATION)) {
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DEBUG((DEBUG_ERROR, "AuthenticateFmpImage - ImageSize too small\n"));
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return RETURN_INVALID_PARAMETER;
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}
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if (Image->AuthInfo.Hdr.dwLength <= OFFSET_OF(WIN_CERTIFICATE_UEFI_GUID, CertData)) {
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DEBUG((DEBUG_ERROR, "AuthenticateFmpImage - dwLength too small\n"));
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return RETURN_INVALID_PARAMETER;
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}
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if ((UINTN) Image->AuthInfo.Hdr.dwLength > MAX_UINTN - sizeof(UINT64)) {
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DEBUG((DEBUG_ERROR, "AuthenticateFmpImage - dwLength too big\n"));
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return RETURN_INVALID_PARAMETER;
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}
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if (ImageSize <= sizeof(Image->MonotonicCount) + Image->AuthInfo.Hdr.dwLength) {
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DEBUG((DEBUG_ERROR, "AuthenticateFmpImage - ImageSize too small\n"));
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return RETURN_INVALID_PARAMETER;
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}
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if (Image->AuthInfo.Hdr.wRevision != 0x0200) {
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DEBUG((DEBUG_ERROR, "AuthenticateFmpImage - wRevision: 0x%02x, expect - 0x%02x\n", (UINTN)Image->AuthInfo.Hdr.wRevision, (UINTN)0x0200));
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return RETURN_INVALID_PARAMETER;
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}
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if (Image->AuthInfo.Hdr.wCertificateType != WIN_CERT_TYPE_EFI_GUID) {
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DEBUG((DEBUG_ERROR, "AuthenticateFmpImage - wCertificateType: 0x%02x, expect - 0x%02x\n", (UINTN)Image->AuthInfo.Hdr.wCertificateType, (UINTN)WIN_CERT_TYPE_EFI_GUID));
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return RETURN_INVALID_PARAMETER;
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}
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CertType = &Image->AuthInfo.CertType;
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DEBUG((DEBUG_INFO, "AuthenticateFmpImage - CertType: %g\n", CertType));
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if (CompareGuid (&gEfiCertTypeRsa2048Sha256Guid, CertType)) {
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//
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// Call the match handler to extract raw data for the input section data.
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//
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Status = FmpAuthenticatedHandlerRsa2048Sha256 (
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Image,
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ImageSize,
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PublicKeyData,
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PublicKeyDataLength
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);
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return Status;
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}
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//
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// Not found, the input guided section is not supported.
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//
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return RETURN_UNSUPPORTED;
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}
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