From mboxrd@z Thu Jan 1 00:00:00 1970 Received: from mail.byosoft.com.cn (mail.byosoft.com.cn [58.240.74.242]) by mx.groups.io with SMTP id smtpd.web09.49307.1638783914721014444 for ; Mon, 06 Dec 2021 01:45:32 -0800 Authentication-Results: mx.groups.io; dkim=missing; spf=none, err=permanent DNS error (domain: byosoft.com.cn, ip: 58.240.74.242, mailfrom: gaoliming@byosoft.com.cn) Received: from DESKTOPS6D0PVI ([58.246.60.130]) (envelope-sender ) by 192.168.6.13 with ESMTP for ; Mon, 06 Dec 2021 17:44:50 +0800 X-WM-Sender: gaoliming@byosoft.com.cn X-Originating-IP: 58.246.60.130 X-WM-AuthFlag: YES X-WM-AuthUser: gaoliming@byosoft.com.cn From: "gaoliming" To: "'Chen, Christine'" , Cc: "'Feng, Bob C'" References: <20211201012916.1571-1-yuwei.chen@intel.com> <002c01d7e7f4$833f7710$89be6530$@byosoft.com.cn> In-Reply-To: Subject: =?UTF-8?B?5Zue5aSNOiBbZWRrMi1kZXZlbF0gW1BBVENIIDEvMV0gQmFzZVRvb2xzOiBBZGQgRk1NVCBUb29s?= Date: Mon, 6 Dec 2021 17:44:50 +0800 Message-ID: <02cd01d7ea85$ea33c410$be9b4c30$@byosoft.com.cn> MIME-Version: 1.0 X-Mailer: Microsoft Outlook 16.0 Thread-Index: AQINWbdCoXhKqeYfeMv4DqNRgndyoQGpQP1FAoCHM5WrmQcNQA== Content-Type: text/plain; charset="UTF-8" Content-Transfer-Encoding: quoted-printable Content-Language: zh-cn Christine: I add my comments below.=20 > -----=E9=82=AE=E4=BB=B6=E5=8E=9F=E4=BB=B6----- > =E5=8F=91=E4=BB=B6=E4=BA=BA: Chen, Christine > =E5=8F=91=E9=80=81=E6=97=B6=E9=97=B4: 2021=E5=B9=B412=E6=9C=886=E6=97=A5 = 16:34 > =E6=94=B6=E4=BB=B6=E4=BA=BA: devel@edk2.groups.io; gaoliming@byosoft.com.= cn > =E6=8A=84=E9=80=81: Feng, Bob C > =E4=B8=BB=E9=A2=98: RE: [edk2-devel] [PATCH 1/1] BaseTools: Add FMMT Tool >=20 > Hi Liming, >=20 > Need your helps on the first and third issues: >=20 > 1. As the PI spec defined, for Fv Header "The first 16 bytes are reserved= to > allow for the reset vector of processors whose reset vector is at address= 0." > The FVSEC.Fv generated did not follow the Spec definition, is this the is= sue of > GenFv or FMMT, are there any references for this issue? This is the expected behavior. Edk2 implementation places AP reset vector i= nto the first 16 bytes in SEC FV.=20 >=20 > 3. The PEIM rebase way follows which rules? >=20 GenFv tool has the logic to rebase PEIM on its flash address. Rebase means = to relocate PE image at its flash address.=20 So, you need to calculate PE image base address in the updated FV image, th= en rebase PE image on this address. Thanks Liming > Thanks, > Christine (Yuwei) >=20 > > -----Original Message----- > > From: devel@edk2.groups.io On Behalf Of > > gaoliming > > Sent: Friday, December 3, 2021 11:19 AM > > To: devel@edk2.groups.io; Chen, Christine > > Cc: Feng, Bob C > > Subject: =E5=9B=9E=E5=A4=8D: [edk2-devel] [PATCH 1/1] BaseTools: Add FM= MT Tool > > > > Yuwei: > > I did some test and meet three problems. I submit BZ > > https://bugzilla.tianocore.org/show_bug.cgi?id=3D3762. Please help chec= k. > > > > Thanks > > Liming > > > -----=E9=82=AE=E4=BB=B6=E5=8E=9F=E4=BB=B6----- > > > =E5=8F=91=E4=BB=B6=E4=BA=BA: devel@edk2.groups.io =E4=BB=A3=E8=A1=A8 Yuwei > Chen > > > =E5=8F=91=E9=80=81=E6=97=B6=E9=97=B4: 2021=E5=B9=B412=E6=9C=881=E6=97= =A5 9:29 > > > =E6=94=B6=E4=BB=B6=E4=BA=BA: devel@edk2.groups.io > > > =E6=8A=84=E9=80=81: Bob Feng ; Liming Gao > > > > > > =E4=B8=BB=E9=A2=98: [edk2-devel] [PATCH 1/1] BaseTools: Add FMMT Tool > > > > > > The FMMT python tool is used for firmware files operation, which has > > > the Fv/FFs-based 'View'&'Add'&'Delete'&'Replace' operation function: > > > > > > 1.Parse a FD(Firmware Device) / FV(Firmware Volume) / FFS(Firmware > Files) > > > 2.Add a new FFS into a FV file (both included in a FD file or not) > > > 3.Replace an FFS in a FV file with a new FFS file > > > 4.Delete an FFS in a FV file (both included in a FD file or not) > > > 5.Extract the FFS from a FV file (both included in a FD file or not) > > > > > > Currently the FMMT C tool is saved in edk2-staging repo, but its > > > quality and coding style can't meet the Edk2 quality, which is hard t= o > > > maintain (Hard/Duplicate Code; Regression bugs; Restrict usage). > > > > > > The new Python version keeps same functions with origin C version. It > > > has higher quality and better coding style, and it is much easier to > > > extend new functions and to maintain. > > > > > > REF: https://bugzilla.tianocore.org/show_bug.cgi?id=3D1847 > > > PR Link: https://github.com/tianocore/edk2-basetools/pull/12 > > > RFC Link: https://edk2.groups.io/g/devel/message/82877 > > > Staging Link: https://github.com/tianocore/edk2-staging/tree/PyFMMT > > > > > > Cc: Bob Feng > > > Cc: Liming Gao > > > Signed-off-by: Yuwei Chen > > > --- > > > V4 fixed the Linux file format issue and known bugs. > > > BaseTools/BinWrappers/PosixLike/FMMT | 14 + > > > BaseTools/BinWrappers/WindowsLike/FMMT.bat | 4 + > > > BaseTools/Source/Python/FMMT/FMMT.py | 117 ++++ > > > BaseTools/Source/Python/FMMT/FMMTConfig.ini | 11 + > > > .../Python/FMMT/Img/FirmwareVolumeFormat.png | Bin 0 -> 29515 > bytes > > > .../Source/Python/FMMT/Img/NodeTreeFormat.png | Bin 0 -> 79906 > bytes > > > BaseTools/Source/Python/FMMT/PI/Common.py | 81 +++ > > > .../Source/Python/FMMT/PI/FfsFileHeader.py | 66 +++ > > > BaseTools/Source/Python/FMMT/PI/FvHeader.py | 112 ++++ > > > .../Source/Python/FMMT/PI/SectionHeader.py | 110 ++++ > > > BaseTools/Source/Python/FMMT/PI/__init__.py | 6 + > > > BaseTools/Source/Python/FMMT/README.md | 180 ++++++ > > > BaseTools/Source/Python/FMMT/__init__.py | 0 > > > .../Python/FMMT/core/BinaryFactoryProduct.py | 371 > +++++++++++++ > > > BaseTools/Source/Python/FMMT/core/BiosTree.py | 198 +++++++ > > > .../Source/Python/FMMT/core/BiosTreeNode.py | 191 +++++++ > > > .../Source/Python/FMMT/core/FMMTOperation.py | 140 +++++ > > > .../Source/Python/FMMT/core/FMMTParser.py | 86 +++ > > > .../Source/Python/FMMT/core/FvHandler.py | 521 > > > ++++++++++++++++++ > > > .../Source/Python/FMMT/core/GuidTools.py | 152 +++++ > > > .../Source/Python/FMMT/utils/FmmtLogger.py | 18 + > > > .../Source/Python/FMMT/utils/FvLayoutPrint.py | 54 ++ > > > 22 files changed, 2432 insertions(+) > > > create mode 100644 BaseTools/BinWrappers/PosixLike/FMMT > > > create mode 100644 BaseTools/BinWrappers/WindowsLike/FMMT.bat > > > create mode 100644 BaseTools/Source/Python/FMMT/FMMT.py > > > create mode 100644 BaseTools/Source/Python/FMMT/FMMTConfig.ini > > > create mode 100644 > > > BaseTools/Source/Python/FMMT/Img/FirmwareVolumeFormat.png > > > create mode 100644 > > > BaseTools/Source/Python/FMMT/Img/NodeTreeFormat.png > > > create mode 100644 BaseTools/Source/Python/FMMT/PI/Common.py > > > create mode 100644 > BaseTools/Source/Python/FMMT/PI/FfsFileHeader.py > > > create mode 100644 BaseTools/Source/Python/FMMT/PI/FvHeader.py > > > create mode 100644 > > BaseTools/Source/Python/FMMT/PI/SectionHeader.py > > > create mode 100644 BaseTools/Source/Python/FMMT/PI/__init__.py > > > create mode 100644 BaseTools/Source/Python/FMMT/README.md > > > create mode 100644 BaseTools/Source/Python/FMMT/__init__.py > > > create mode 100644 > > > BaseTools/Source/Python/FMMT/core/BinaryFactoryProduct.py > > > create mode 100644 BaseTools/Source/Python/FMMT/core/BiosTree.py > > > create mode 100644 > > > BaseTools/Source/Python/FMMT/core/BiosTreeNode.py > > > create mode 100644 > > > BaseTools/Source/Python/FMMT/core/FMMTOperation.py > > > create mode 100644 > > BaseTools/Source/Python/FMMT/core/FMMTParser.py > > > create mode 100644 > BaseTools/Source/Python/FMMT/core/FvHandler.py > > > create mode 100644 > BaseTools/Source/Python/FMMT/core/GuidTools.py > > > create mode 100644 > > BaseTools/Source/Python/FMMT/utils/FmmtLogger.py > > > create mode 100644 > > > BaseTools/Source/Python/FMMT/utils/FvLayoutPrint.py > > > > > > diff --git a/BaseTools/BinWrappers/PosixLike/FMMT > > > b/BaseTools/BinWrappers/PosixLike/FMMT > > > new file mode 100644 > > > index 000000000000..5f5519e1e1b6 > > > --- /dev/null > > > +++ b/BaseTools/BinWrappers/PosixLike/FMMT > > > @@ -0,0 +1,14 @@ > > > +#!/usr/bin/env bash > > > +#python `dirname $0`/RunToolFromSource.py `basename $0` $* > > > + > > > +# If a ${PYTHON_COMMAND} command is available, use it in preference > > to > > > python > > > +if command -v ${PYTHON_COMMAND} >/dev/null 2>&1; then > > > + python_exe=3D${PYTHON_COMMAND} > > > +fi > > > + > > > +full_cmd=3D${BASH_SOURCE:-$0} # see > > > http://mywiki.wooledge.org/BashFAQ/028 for a discussion of why $0 is > not > > a > > > good choice here > > > +dir=3D$(dirname "$full_cmd") > > > +cmd=3D${full_cmd##*/} > > > + > > > +export > > > > > > PYTHONPATH=3D"$dir/../../Source/Python/FMMT:$dir/../../Source/Python${PY > > > THONPATH:+:"$PYTHONPATH"}" > > > +exec "${python_exe:-python}" -m $cmd.$cmd "$@" > > > diff --git a/BaseTools/BinWrappers/WindowsLike/FMMT.bat > > > b/BaseTools/BinWrappers/WindowsLike/FMMT.bat > > > new file mode 100644 > > > index 000000000000..f0551c4ac54a > > > --- /dev/null > > > +++ b/BaseTools/BinWrappers/WindowsLike/FMMT.bat > > > @@ -0,0 +1,4 @@ > > > +@setlocal > > > +@set ToolName=3D%~n0% > > > +@set > > > > > > PYTHONPATH=3D%PYTHONPATH%;%BASE_TOOLS_PATH%\Source\Python;%BA > > > SE_TOOLS_PATH%\Source\Python\FMMT > > > +@%PYTHON_COMMAND% -m %ToolName%.%ToolName% %* > > > diff --git a/BaseTools/Source/Python/FMMT/FMMT.py > > > b/BaseTools/Source/Python/FMMT/FMMT.py > > > new file mode 100644 > > > index 000000000000..5028d8446ee0 > > > --- /dev/null > > > +++ b/BaseTools/Source/Python/FMMT/FMMT.py > > > @@ -0,0 +1,117 @@ > > > +# @file > > > +# Firmware Module Management Tool. > > > +# > > > +# Copyright (c) 2021, Intel Corporation. All rights reserved.
> > > +# > > > +# SPDX-License-Identifier: BSD-2-Clause-Patent > > > +# > > > +## > > > + > > > +# Import Modules > > > +# > > > +import argparse > > > +import sys > > > +from core.FMMTOperation import * > > > + > > > +parser =3D argparse.ArgumentParser(description=3D''' > > > +View the Binary Structure of FD/FV/Ffs/Section, and > > > Delete/Extract/Add/Replace a Ffs from/into a FV. > > > +''') > > > +parser.add_argument("--version", action=3D"version", version=3D'%(pr= og)s > > > Version 1.0', > > > + help=3D"Print debug information.") > > > +parser.add_argument("-v", "--View", dest=3D"View", nargs=3D'+', > > > + help=3D"View each FV and the named files within > > > each FV: '-v inputfile outputfile, inputfiletype(.Fd/.Fv/.ffs/.sec)'"= ) > > > +parser.add_argument("-d", "--Delete", dest=3D"Delete", nargs=3D'+', > > > + help=3D"Delete a Ffs from FV: '-d inputfile > > > TargetFfsName outputfile TargetFvName(Optional,\ > > > + If not given, wil delete all the existed target > > Ffs)'") > > > +parser.add_argument("-e", "--Extract", dest=3D"Extract", nargs=3D'+'= , > > > + help=3D"Extract a Ffs Info: '-e inputfile > TargetFfsName > > > outputfile'") > > > +parser.add_argument("-a", "--Add", dest=3D"Add", nargs=3D'+', > > > + help=3D"Add a Ffs into a FV:'-a inputfile > > > TargetFvName newffsfile outputfile'") > > > +parser.add_argument("-r", "--Replace", dest=3D"Replace", nargs=3D'+'= , > > > + help=3D"Replace a Ffs in a FV: '-r inputfile > > > TargetFfsName newffsfile outputfile TargetFvName(Optional,\ > > > + If not given, wil replace all the existed > target > > > Ffs with new Ffs file)'") > > > +parser.add_argument("-l", "--LogFileType", dest=3D"LogFileType", nar= gs=3D'+', > > > + help=3D"The format of log file which saves Binar= y > > > layout. Currently supports: json, txt. More formats will be added in = the > > > future") > > > + > > > +def print_banner(): > > > + print("") > > > + > > > +class FMMT(): > > > + def __init__(self) -> None: > > > + self.firmware_packet =3D {} > > > + > > > + def CheckFfsName(self, FfsName:str) -> str: > > > + try: > > > + return uuid.UUID(FfsName) > > > + except: > > > + return FfsName > > > + > > > + def View(self, inputfile: str, logfiletype: str=3DNone, outputfi= le: > > str=3DNone) -> > > > None: > > > + # ParserFile(inputfile, ROOT_TYPE, logfile, outputfile) > > > + filetype =3D os.path.splitext(inputfile)[1].lower() > > > + if filetype =3D=3D '.fd': > > > + ROOT_TYPE =3D ROOT_TREE > > > + elif filetype =3D=3D '.fv': > > > + ROOT_TYPE =3D ROOT_FV_TREE > > > + elif filetype =3D=3D '.ffs': > > > + ROOT_TYPE =3D ROOT_FFS_TREE > > > + elif filetype =3D=3D '.sec': > > > + ROOT_TYPE =3D ROOT_SECTION_TREE > > > + else: > > > + ROOT_TYPE =3D ROOT_TREE > > > + ParserFile(inputfile, ROOT_TYPE, logfiletype, outputfile) > > > + > > > + def Delete(self, inputfile: str, TargetFfs_name: str, outputfile= : > > str, > > > Fv_name: str=3DNone) -> None: > > > + if Fv_name: > > > + DeleteFfs(inputfile, self.CheckFfsName(TargetFfs_name), > > > outputfile, uuid.UUID(Fv_name)) > > > + else: > > > + DeleteFfs(inputfile, self.CheckFfsName(TargetFfs_name), > > > outputfile) > > > + > > > + def Extract(self, inputfile: str, Ffs_name: str, outputfile: str= ) -> > > None: > > > + ExtractFfs(inputfile, self.CheckFfsName(Ffs_name), outputfil= e) > > > + > > > + def Add(self, inputfile: str, Fv_name: str, newffsfile: str, > > outputfile: str) -> > > > None: > > > + AddNewFfs(inputfile, self.CheckFfsName(Fv_name), newffsfile, > > > outputfile) > > > + > > > + def Replace(self,inputfile: str, Ffs_name: str, newffsfile: str, > > outputfile: > > > str, Fv_name: str=3DNone) -> None: > > > + if Fv_name: > > > + ReplaceFfs(inputfile, self.CheckFfsName(Ffs_name), > > newffsfile, > > > outputfile, uuid.UUID(Fv_name)) > > > + else: > > > + ReplaceFfs(inputfile, self.CheckFfsName(Ffs_name), > > newffsfile, > > > outputfile) > > > + > > > + > > > +def main(): > > > + args=3Dparser.parse_args() > > > + status=3D0 > > > + > > > + try: > > > + fmmt=3DFMMT() > > > + if args.View: > > > + if args.LogFileType: > > > + fmmt.View(args.View[0], args.LogFileType[0]) > > > + else: > > > + fmmt.View(args.View[0]) > > > + if args.Delete: > > > + if len(args.Delete) =3D=3D 4: > > > + > > > fmmt.Delete(args.Delete[0],args.Delete[1],args.Delete[2],args.Delete[= 3]) > > > + else: > > > + > > > fmmt.Delete(args.Delete[0],args.Delete[1],args.Delete[2]) > > > + if args.Extract: > > > + > fmmt.Extract(args.Extract[0],args.Extract[1],args.Extract[2]) > > > + if args.Add: > > > + > fmmt.Add(args.Add[0],args.Add[1],args.Add[2],args.Add[3]) > > > + if args.Replace: > > > + if len(args.Replace) =3D=3D 5: > > > + > > > > > > fmmt.Replace(args.Replace[0],args.Replace[1],args.Replace[2],args.Replace= [ > > > 3],args.Replace[4]) > > > + else: > > > + > > > > > > fmmt.Replace(args.Replace[0],args.Replace[1],args.Replace[2],args.Replace= [ > > > 3]) > > > + # TODO: > > > + '''Do the main work''' > > > + except Exception as e: > > > + print(e) > > > + > > > + return status > > > + > > > + > > > +if __name__ =3D=3D "__main__": > > > + exit(main()) > > > diff --git a/BaseTools/Source/Python/FMMT/FMMTConfig.ini > > > b/BaseTools/Source/Python/FMMT/FMMTConfig.ini > > > new file mode 100644 > > > index 000000000000..aa2444f11b38 > > > --- /dev/null > > > +++ b/BaseTools/Source/Python/FMMT/FMMTConfig.ini > > > @@ -0,0 +1,11 @@ > > > +## @file > > > +# This file is used to define the FMMT dependent external tool guid. > > > +# > > > +# Copyright (c) 2021-, Intel Corporation. All rights reserved.
> > > +# SPDX-License-Identifier: BSD-2-Clause-Patent > > > +## > > > +a31280ad-481e-41b6-95e8-127f4c984779 TIANO TianoCompress > > > +ee4e5898-3914-4259-9d6e-dc7bd79403cf LZMA LzmaCompress > > > +fc1bcdb0-7d31-49aa-936a-a4600d9dd083 CRC32 GenCrc32 > > > +d42ae6bd-1352-4bfb-909a-ca72a6eae889 LZMAF86 LzmaF86Compress > > > +3d532050-5cda-4fd0-879e-0f7f630d5afb BROTLI BrotliCompress > > > diff --git > > a/BaseTools/Source/Python/FMMT/Img/FirmwareVolumeFormat.png > > > b/BaseTools/Source/Python/FMMT/Img/FirmwareVolumeFormat.png > > > new file mode 100644 > > > index > > > > 0000000000000000000000000000000000000000..7cc806a0133413a4aa037 > > > f1d43d80000546a5246 > > > GIT binary patch > > > literal 29515 > > > zcmcG$bySpZzxIs{h;*kQ- > > QA%B(hbs~fb@{kr2^7}lF~VJNaui3BP|_6cXz|UdyT(+ > > > z@4cV*xu0jfYp?bGHx8Fqo%KDA<8w}!x~kkWOma*#G_+?5@- > > mueX!oILX!ky# > > > KL)-b > > > > > > z*L=3Dx > > mKL > > > > z!H*H;#x^;-U0hqXV6&1jfgcuHHo6(wtPm9?{5-*01vG}q*T?cd3(SjgooeVt#2I(K > > > zsH > ~0 > > > Os > > > zomQa`7xm?Vn1W*P-%s- > > jnykPv=3D(IPgF`B5O(HA{p;xPYyYK_g+{^ty7^w7WOYTK > > > u0 > > > > zA^Q8tpM+meOs7ygu*QzofkppB890#CH!vaY^9>J4dxmd4K5&@Bvj#t||Iyi*{) > > > abe > > > > z{I&G~u33SY%Zhw!or;12*-v@k`k_A=3DB>uMt_@7?l-@J?eZ>M^7i~SOv=3DZ7|He > > > 5*9B > > > z*-Jfk;((ApOh > d`(_=3D5+Rb$5YAn{Zni!r4Nv_nO&2?akG)bWu0KC~_ > > > e > > > z5hX~!dqa>0Ni%KxN)V+;B4>4tz91qe)gfE4g(?YCU- > > u*mWM > > > w) > > > > > > zYZ9ndV3HB4SQ8nO$7M7)G~o%W(JEAbO)~r^m;%8wqGZk66tMp^SusJR)1OK > > > !@Kal=3D > > > > > > zFkG_T1(S#Wdumz4sds}>;2sSjqjb6%<#>h~^ > > 1 > > > > > > z=3D$FJ1uc?nn$D > > W > > > zXqH{ML)x#35z}x<`aV8yk7N|DPc;Gx-6CAy- > > 4#Vx^C$n*R(S2# > > O > > > zbJ!y_4}?SBuis15Cei)O^LmHVr^*^U&I<- > > BdBP > > _0^ > > > zphoUDj_aEpvqlQD(uilrobt- > > C5{L_ > > > > > > zKY7868Ua|J(c~4MfY3*(TH(nB2GP0P+Bxq&DSbY9)L*l2HfpW6U@eef > > YoAv$ > > > > zg7tl~Kq^RbPmZvpAuX0fvSRm`l_t&lIp?YgqiAhS4b?SRXPx6j{^K=3Dy`Tl5-b>&o% > > > > > > z#9}QDAC=3Dn^W?SEn@tay29_cH(Qj)(%kM8=3D > > oZlL > > > > z&3gKW-6^Vf#y668S!jqIoodn?gSJCO*!zSzK0f{yTRQaPa|Ii&t~@D~gfrf#(ptk` > > > zYfncLj2YRs5i(*1g&0ZS > nrRU > > > > > > zr)BCKG}+9b(5C=3D0v{@*{xmzDkP4#BoWTW|6Z$l#hS$w!Vs;do3fG{lPY}($uXtKr > > > k > > > z^7OAq1SAXvaSeUzY`WRIfIpy^nC!H8-`_boX- > > Sd(_WJqP_|B0b^CxF|AoL+M;CA > > > Vm > > > > > > zm}1k@2fAaKkW>)db`vyuD929kh1kSlkjP_YnBzunpzF22s)kafVH^5GmG#>`rxT > > + > > > 5 > > > > > > z&7X7TiJ+^`+!Myi&54A&3`MFnX0=3DRZo37~5p^Rmf5I!1@U+{pnP@Wi;SXnWu > > > D}JIY > > > > > > zr^ > > y > > > > z+fwVl+Vm*}=3DB(e9w+RoY;I;K#(>zxV2))8~J%94)=3DGk > > > > znUnL(gA^3WY*ErV59QLuHV-=3DJ0m0eEDjs15%NH+H9h > > > W653 > > > > zz3kXsjNvzi(X;sY`z}o%w$Lr}Rcg=3Dn+-ircv6uwuNZn5E^VY~hGQj!E_7ZYc312rz > > > > z)x6VsL$EfMsh^8nVXMOrI<8jVs&!paI!bj-d|`jvIbK+si;&!T2_F_&_HNh > > zu?$hyn4d$wdVWZ~+NEf&=3D!2BP6~=3Dn}fQ*c+!~|yG@B- > > 8MDTh)0*RC#EN#u!^ > > > nVH$m > > > > zzgh)3l-4|JU2GA^h^aCxz6Mv-Zhmg-^Z7&bz___k1a7p>xHB|v!ubX%tr}+euxd > > > m$ > > > > > > zr@UZ!Cb*Y9RjAa*@Ysvhor3#K*>m?e%y?Tu4~{uV_j?!Z`Q_advBucFI}vz_7^| > > > 1l > > > zs#*3J+AHPINX8;)QiLwy6-Z2S$&- > > jZ_3GKYZG > > > > > z+bz!N8P0v$7bmTDT!M~sI~P|J^A}%eUf`LngoTB@ySX_0J0`f7?s|%)M > > As > > > zD_nFX!e0mNU<}uiOlgt9o5>Vmp|#FX4#&z}Q`3+O7G=3D%A7y6~w0#YL$- > > *{a=3Dn > > > ?K!V > > > > zzqL5yH*wusZE9O|6aMn_gl(?HB=3D9@5WKgu9#{ZC_C(_{7zuN*H5Scl7-918Sb} > > > rWM > > > zKu}~4YZm`$e$42- > > HyX^*ARyqnSUwP&U1IL265jq`r~Al#d|yN<*_D@z5<)EzK4k > > > sy > > > > > > z?cq{q2ONGaLI+Gi*#WY?nwXi`0YMy{qT~|}?{ou)>0cOr*4Aq00ps&Ad2f=3DWdU > > > CN$ > > > > > > z3)pHvd?nrquvYW5RI&wU>uQgKG > > > |Lx3X6 > > > > > > zHQK_7&MSD(#jg`*Qr#e=3D8|%+2t+Bz$`Ym)E;_}tQgP}S19bEo(JV9H#sgqdVfhkt > > > P > > > z4}!3MY9t1~*EvD4lR~M)=3D- > > uo73Np^_<_#SkowbWApZV)_)SI`kc66lik4?_aJ69P! 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All rights reserved.
> > > +# SPDX-License-Identifier: BSD-2-Clause-Patent > > > +## > > > +from ctypes import * > > > +import uuid > > > + > > > +# ZeroGuid =3D uuid.UUID('{00000000-0000-0000-0000-000000000000}') > > > +# EFI_FIRMWARE_FILE_SYSTEM2_GUID =3D > > > uuid.UUID('{8C8CE578-8A3D-4f1c-9935-896185C32DD3}') > > > +# EFI_FIRMWARE_FILE_SYSTEM3_GUID =3D > > > uuid.UUID('{5473C07A-3DCB-4dca-BD6F-1E9689E7349A}') > > > +# EFI_FFS_VOLUME_TOP_FILE_GUID =3D > > > uuid.UUID('{1BA0062E-C779-4582-8566-336AE8F78F09}') > > > + > > > +EFI_FIRMWARE_FILE_SYSTEM2_GUID =3D > > > uuid.UUID("8c8ce578-8a3d-4f1c-9935-896185c32dd3") > > > +EFI_FIRMWARE_FILE_SYSTEM2_GUID_BYTE =3D > > > b'x\xe5\x8c\x8c=3D\x8a\x1cO\x995\x89a\x85\xc3-\xd3' > > > +# EFI_FIRMWARE_FILE_SYSTEM2_GUID_BYTE =3D > > > EFI_FIRMWARE_FILE_SYSTEM2_GUID.bytes > > > +EFI_FIRMWARE_FILE_SYSTEM3_GUID =3D > > > uuid.UUID("5473C07A-3DCB-4dca-BD6F-1E9689E7349A") > > > +# EFI_FIRMWARE_FILE_SYSTEM3_GUID_BYTE =3D > > > b'x\xe5\x8c\x8c=3D\x8a\x1cO\x995\x89a\x85\xc3-\xd3' > > > +EFI_FIRMWARE_FILE_SYSTEM3_GUID_BYTE =3D > > > b'z\xc0sT\xcb=3D\xcaM\xbdo\x1e\x96\x89\xe74\x9a' > > > +EFI_SYSTEM_NVDATA_FV_GUID =3D > > > uuid.UUID("fff12b8d-7696-4c8b-a985-2747075b4f50") > > > +EFI_SYSTEM_NVDATA_FV_GUID_BYTE =3D > > > b"\x8d+\xf1\xff\x96v\x8bL\xa9\x85'G\x07[OP" > > > +EFI_FFS_VOLUME_TOP_FILE_GUID =3D > > > uuid.UUID("1ba0062e-c779-4582-8566-336ae8f78f09") > > > +EFI_FFS_VOLUME_TOP_FILE_GUID_BYTE =3D > > > b'.\x06\xa0\x1by\xc7\x82E\x85f3j\xe8\xf7\x8f\t' > > > +ZEROVECTOR_BYTE =3D > > > > b'\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00' > > > +PADVECTOR =3D uuid.UUID("ffffffff-ffff-ffff-ffff-ffffffffffff") > > > +FVH_SIGNATURE =3D b'_FVH' > > > + > > > +class GUID(Structure): > > > + _pack_ =3D 1 > > > + _fields_ =3D [ > > > + ('Guid1', c_uint32), > > > + ('Guid2', c_uint16), > > > + ('Guid3', c_uint16), > > > + ('Guid4', ARRAY(c_uint8, 8)), > > > + ] > > > + > > > + def from_list(self, listformat: list) -> None: > > > + self.Guid1 =3D listformat[0] > > > + self.Guid2 =3D listformat[1] > > > + self.Guid3 =3D listformat[2] > > > + for i in range(8): > > > + self.Guid4[i] =3D listformat[i+3] > > > + > > > + def __cmp__(self, otherguid) -> bool: > > > + if not isinstance(otherguid, GUID): > > > + return 'Input is not the GUID instance!' > > > + rt =3D False > > > + if self.Guid1 =3D=3D otherguid.Guid1 and self.Guid2 =3D=3D > > otherguid.Guid2 > > > and self.Guid3 =3D=3D otherguid.Guid3: > > > + rt =3D True > > > + for i in range(8): > > > + rt =3D rt & (self.Guid4[i] =3D=3D otherguid.Guid4[i]= ) > > > + return rt > > > + > > > +def ModifyGuidFormat(target_guid: str) -> GUID: > > > + target_guid =3D target_guid.replace('-', '') > > > + target_list =3D [] > > > + start =3D [0,8,12,16,18,20,22,24,26,28,30] > > > + end =3D [8,12,16,18,20,22,24,26,28,30,32] > > > + num =3D len(start) > > > + for pos in range(num): > > > + new_value =3D int(target_guid[start[pos]:end[pos]], 16) > > > + target_list.append(new_value) > > > + new_format =3D GUID() > > > + new_format.from_list(target_list) > > > + return new_format > > > + > > > + > > > +# Get data from ctypes to bytes. > > > +def struct2stream(s) -> bytes: > > > + length =3D sizeof(s) > > > + p =3D cast(pointer(s), POINTER(c_char * length)) > > > + return p.contents.raw > > > + > > > + > > > + > > > +def GetPadSize(Size: int, alignment: int) -> int: > > > + if Size % alignment =3D=3D 0: > > > + return 0 > > > + Pad_Size =3D alignment - Size % alignment > > > + return Pad_Size > > > diff --git a/BaseTools/Source/Python/FMMT/PI/FfsFileHeader.py > > > b/BaseTools/Source/Python/FMMT/PI/FfsFileHeader.py > > > new file mode 100644 > > > index 000000000000..33c49ffb50bc > > > --- /dev/null > > > +++ b/BaseTools/Source/Python/FMMT/PI/FfsFileHeader.py > > > @@ -0,0 +1,66 @@ > > > +## @file > > > +# This file is used to define the Ffs Header C Struct. > > > +# > > > +# Copyright (c) 2021-, Intel Corporation. All rights reserved.
> > > +# SPDX-License-Identifier: BSD-2-Clause-Patent > > > +## > > > +from struct import * > > > +from ctypes import * > > > +from PI.Common import * > > > + > > > +EFI_FFS_FILE_HEADER_LEN =3D 24 > > > +EFI_FFS_FILE_HEADER2_LEN =3D 32 > > > + > > > +class CHECK_SUM(Structure): > > > + _pack_ =3D 1 > > > + _fields_ =3D [ > > > + ('Header', c_uint8), > > > + ('File', c_uint8), > > > + ] > > > + > > > +class EFI_FFS_INTEGRITY_CHECK(Union): > > > + _pack_ =3D 1 > > > + _fields_ =3D [ > > > + ('Checksum', CHECK_SUM), > > > + ('Checksum16', c_uint16), > > > + ] > > > + > > > + > > > +class EFI_FFS_FILE_HEADER(Structure): > > > + _pack_ =3D 1 > > > + _fields_ =3D [ > > > + ('Name', GUID), > > > + ('IntegrityCheck', EFI_FFS_INTEGRITY_CHECK), > > > + ('Type', c_uint8), > > > + ('Attributes', c_uint8), > > > + ('Size', ARRAY(c_uint8, 3)), > > > + ('State', c_uint8), > > > + ] > > > + > > > + @property > > > + def FFS_FILE_SIZE(self) -> int: > > > + return self.Size[0] | self.Size[1] << 8 | self.Size[2] << 16 > > > + > > > + @property > > > + def HeaderLength(self) -> int: > > > + return 24 > > > + > > > +class EFI_FFS_FILE_HEADER2(Structure): > > > + _pack_ =3D 1 > > > + _fields_ =3D [ > > > + ('Name', GUID), > > > + ('IntegrityCheck', EFI_FFS_INTEGRITY_CHECK), > > > + ('Type', c_uint8), > > > + ('Attributes', c_uint8), > > > + ('Size', ARRAY(c_uint8, 3)), > > > + ('State', c_uint8), > > > + ('ExtendedSize', c_uint64), > > > + ] > > > + > > > + @property > > > + def FFS_FILE_SIZE(self) -> int: > > > + return self.ExtendedSize > > > + > > > + @property > > > + def HeaderLength(self) -> int: > > > + return 32 > > > diff --git a/BaseTools/Source/Python/FMMT/PI/FvHeader.py > > > b/BaseTools/Source/Python/FMMT/PI/FvHeader.py > > > new file mode 100644 > > > index 000000000000..aae2feae844a > > > --- /dev/null > > > +++ b/BaseTools/Source/Python/FMMT/PI/FvHeader.py > > > @@ -0,0 +1,112 @@ > > > +## @file > > > +# This file is used to define the FV Header C Struct. > > > +# > > > +# Copyright (c) 2021-, Intel Corporation. All rights reserved.
> > > +# SPDX-License-Identifier: BSD-2-Clause-Patent > > > +## > > > +from ast import Str > > > +from struct import * > > > +from ctypes import * > > > +from PI.Common import * > > > + > > > +class EFI_FV_BLOCK_MAP_ENTRY(Structure): > > > + _pack_ =3D 1 > > > + _fields_ =3D [ > > > + ('NumBlocks', c_uint32), > > > + ('Length', c_uint32), > > > + ] > > > + > > > + > > > +class EFI_FIRMWARE_VOLUME_HEADER(Structure): > > > + _fields_ =3D [ > > > + ('ZeroVector', ARRAY(c_uint8, 16)), > > > + ('FileSystemGuid', GUID), > > > + ('FvLength', c_uint64), > > > + ('Signature', c_uint32), > > > + ('Attributes', c_uint32), > > > + ('HeaderLength', c_uint16), > > > + ('Checksum', c_uint16), > > > + ('ExtHeaderOffset', c_uint16), > > > + ('Reserved', c_uint8), > > > + ('Revision', c_uint8), > > > + ('BlockMap', > ARRAY(EFI_FV_BLOCK_MAP_ENTRY, > > > 1)), > > > + ] > > > + > > > +def Refine_FV_Header(nums): > > > + class EFI_FIRMWARE_VOLUME_HEADER(Structure): > > > + _fields_ =3D [ > > > + ('ZeroVector', ARRAY(c_uint8, 16)), > > > + ('FileSystemGuid', GUID), > > > + ('FvLength', c_uint64), > > > + ('Signature', c_uint32), > > > + ('Attributes', c_uint32), > > > + ('HeaderLength', c_uint16), > > > + ('Checksum', c_uint16), > > > + ('ExtHeaderOffset', c_uint16), > > > + ('Reserved', c_uint8), > > > + ('Revision', c_uint8), > > > + ('BlockMap', > > > ARRAY(EFI_FV_BLOCK_MAP_ENTRY, nums)), > > > + ] > > > + return EFI_FIRMWARE_VOLUME_HEADER > > > + > > > +class EFI_FIRMWARE_VOLUME_EXT_HEADER(Structure): > > > + _fields_ =3D [ > > > + ('FvName', GUID), > > > + ('ExtHeaderSize', c_uint32) > > > + ] > > > + > > > +class EFI_FIRMWARE_VOLUME_EXT_ENTRY(Structure): > > > + _fields_ =3D [ > > > + ('ExtEntrySize', c_uint16), > > > + ('ExtEntryType', c_uint16) > > > + ] > > > + > > > +class EFI_FIRMWARE_VOLUME_EXT_ENTRY_OEM_TYPE_0(Structure): > > > + _fields_ =3D [ > > > + ('Hdr', > > > EFI_FIRMWARE_VOLUME_EXT_ENTRY), > > > + ('TypeMask', c_uint32) > > > + ] > > > + > > > +class EFI_FIRMWARE_VOLUME_EXT_ENTRY_OEM_TYPE(Structure): > > > + _fields_ =3D [ > > > + ('Hdr', > > > EFI_FIRMWARE_VOLUME_EXT_ENTRY), > > > + ('TypeMask', c_uint32), > > > + ('Types', ARRAY(GUID, 1)) > > > + ] > > > + > > > +def Refine_FV_EXT_ENTRY_OEM_TYPE_Header(nums: int) -> > > > EFI_FIRMWARE_VOLUME_EXT_ENTRY_OEM_TYPE: > > > + class > EFI_FIRMWARE_VOLUME_EXT_ENTRY_OEM_TYPE(Structure): > > > + _fields_ =3D [ > > > + ('Hdr', > > > EFI_FIRMWARE_VOLUME_EXT_ENTRY), > > > + ('TypeMask', c_uint32), > > > + ('Types', ARRAY(GUID, nums)) > > > + ] > > > + return > EFI_FIRMWARE_VOLUME_EXT_ENTRY_OEM_TYPE(Structure) > > > + > > > +class EFI_FIRMWARE_VOLUME_EXT_ENTRY_GUID_TYPE_0(Structure): > > > + _fields_ =3D [ > > > + ('Hdr', > > > EFI_FIRMWARE_VOLUME_EXT_ENTRY), > > > + ('FormatType', GUID) > > > + ] > > > + > > > +class EFI_FIRMWARE_VOLUME_EXT_ENTRY_GUID_TYPE(Structure): > > > + _fields_ =3D [ > > > + ('Hdr', > > > EFI_FIRMWARE_VOLUME_EXT_ENTRY), > > > + ('FormatType', GUID), > > > + ('Data', ARRAY(c_uint8, 1)) > > > + ] > > > + > > > +def Refine_FV_EXT_ENTRY_GUID_TYPE_Header(nums: int) -> > > > EFI_FIRMWARE_VOLUME_EXT_ENTRY_GUID_TYPE: > > > + class > EFI_FIRMWARE_VOLUME_EXT_ENTRY_GUID_TYPE(Structure): > > > + _fields_ =3D [ > > > + ('Hdr', > > > EFI_FIRMWARE_VOLUME_EXT_ENTRY), > > > + ('FormatType', GUID), > > > + ('Data', ARRAY(c_uint8, nums)) > > > + ] > > > + return > EFI_FIRMWARE_VOLUME_EXT_ENTRY_GUID_TYPE(Structure) > > > + > > > +class > EFI_FIRMWARE_VOLUME_EXT_ENTRY_USED_SIZE_TYPE(Structure): > > > + _fields_ =3D [ > > > + ('Hdr', > > > EFI_FIRMWARE_VOLUME_EXT_ENTRY), > > > + ('UsedSize', c_uint32) > > > + ] > > > diff --git a/BaseTools/Source/Python/FMMT/PI/SectionHeader.py > > > b/BaseTools/Source/Python/FMMT/PI/SectionHeader.py > > > new file mode 100644 > > > index 000000000000..c2cc8e0172fb > > > --- /dev/null > > > +++ b/BaseTools/Source/Python/FMMT/PI/SectionHeader.py > > > @@ -0,0 +1,110 @@ > > > +## @file > > > +# This file is used to define the Section Header C Struct. > > > +# > > > +# Copyright (c) 2021-, Intel Corporation. All rights reserved.
> > > +# SPDX-License-Identifier: BSD-2-Clause-Patent > > > +## > > > +from struct import * > > > +from ctypes import * > > > +from PI.Common import * > > > + > > > +EFI_COMMON_SECTION_HEADER_LEN =3D 4 > > > +EFI_COMMON_SECTION_HEADER2_LEN =3D 8 > > > + > > > +class EFI_COMMON_SECTION_HEADER(Structure): > > > + _pack_ =3D 1 > > > + _fields_ =3D [ > > > + ('Size', ARRAY(c_uint8, 3)), > > > + ('Type', c_uint8), > > > + ] > > > + > > > + @property > > > + def SECTION_SIZE(self) -> int: > > > + return self.Size[0] | self.Size[1] << 8 | self.Size[2] << 16 > > > + > > > + def Common_Header_Size(self) -> int: > > > + return 4 > > > + > > > +class EFI_COMMON_SECTION_HEADER2(Structure): > > > + _pack_ =3D 1 > > > + _fields_ =3D [ > > > + ('Size', ARRAY(c_uint8, 3)), > > > + ('Type', c_uint8), > > > + ('ExtendedSize', c_uint32), > > > + ] > > > + > > > + @property > > > + def SECTION_SIZE(self) -> int: > > > + return self.ExtendedSize > > > + > > > + def Common_Header_Size(self) -> int: > > > + return 8 > > > + > > > +class EFI_COMPRESSION_SECTION(Structure): > > > + _pack_ =3D 1 > > > + _fields_ =3D [ > > > + ('UncompressedLength', c_uint32), > > > + ('CompressionType', c_uint8), > > > + ] > > > + > > > + def ExtHeaderSize(self) -> int: > > > + return 5 > > > + > > > +class EFI_FREEFORM_SUBTYPE_GUID_SECTION(Structure): > > > + _pack_ =3D 1 > > > + _fields_ =3D [ > > > + ('SubTypeGuid', GUID), > > > + ] > > > + > > > + def ExtHeaderSize(self) -> int: > > > + return 16 > > > + > > > +class EFI_GUID_DEFINED_SECTION(Structure): > > > + _pack_ =3D 1 > > > + _fields_ =3D [ > > > + ('SectionDefinitionGuid', GUID), > > > + ('DataOffset', c_uint16), > > > + ('Attributes', c_uint16), > > > + ] > > > + > > > + def ExtHeaderSize(self) -> int: > > > + return 20 > > > + > > > +def Get_USER_INTERFACE_Header(nums: int): > > > + class EFI_SECTION_USER_INTERFACE(Structure): > > > + _pack_ =3D 1 > > > + _fields_ =3D [ > > > + ('FileNameString', ARRAY(c_uint16, nums)), > > > + ] > > > + > > > + def ExtHeaderSize(self) -> int: > > > + return 2 * nums > > > + > > > + def GetUiString(self) -> str: > > > + UiString =3D '' > > > + for i in range(nums): > > > + if self.FileNameString[i]: > > > + UiString +=3D chr(self.FileNameString[i]) > > > + return UiString > > > + > > > + return EFI_SECTION_USER_INTERFACE > > > + > > > +def Get_VERSION_Header(nums: int): > > > + class EFI_SECTION_VERSION(Structure): > > > + _pack_ =3D 1 > > > + _fields_ =3D [ > > > + ('BuildNumber', c_uint16), > > > + ('VersionString', ARRAY(c_uint16, nums)), > > > + ] > > > + > > > + def ExtHeaderSize(self) -> int: > > > + return 2 * (nums+1) > > > + > > > + def GetVersionString(self) -> str: > > > + VersionString =3D '' > > > + for i in range(nums): > > > + if self.VersionString[i]: > > > + VersionString +=3D chr(self.VersionString[i]) > > > + return VersionString > > > + > > > + return EFI_SECTION_VERSION > > > diff --git a/BaseTools/Source/Python/FMMT/PI/__init__.py > > > b/BaseTools/Source/Python/FMMT/PI/__init__.py > > > new file mode 100644 > > > index 000000000000..4e8296fad1ba > > > --- /dev/null > > > +++ b/BaseTools/Source/Python/FMMT/PI/__init__.py > > > @@ -0,0 +1,6 @@ > > > +## @file > > > +# This file is used to define the FMMT dependent external tool > > management > > > class. > > > +# > > > +# Copyright (c) 2021-, Intel Corporation. All rights reserved.
> > > +# SPDX-License-Identifier: BSD-2-Clause-Patent > > > +## > > > \ No newline at end of file > > > diff --git a/BaseTools/Source/Python/FMMT/README.md > > > b/BaseTools/Source/Python/FMMT/README.md > > > new file mode 100644 > > > index 000000000000..e14dfa34ea66 > > > --- /dev/null > > > +++ b/BaseTools/Source/Python/FMMT/README.md > > > @@ -0,0 +1,180 @@ > > > +# FMMT > > > +## Overview > > > +This FMMT tool is the python implementation of the edk2 FMMT tool > > which > > > locates at https://github.com/tianocore/edk2-staging/tree/FceFmmt. > > > +This implementation has the same usage as the edk2 FMMT, but it's > more > > > readable and relaiable. > > > + > > > +# FMMT User Guide > > > + > > > +#### Last updated October 13, 2021 > > > + > > > +Important Changes and Updates: > > > + > > > +- Oct 13, 2021 Initial Draft of FMMT Python Tool > > > + > > > +#### Note: > > > + > > > +- FMMT Python Tool keeps same function with origin FMMT C Tool. It i= s > > > much easier to maintain and extend other functions. > > > + > > > + > > > + > > > +# 1. Introduction > > > + > > > +## 1.1 Overview > > > + > > > +The Firmware Device is a persistent physical repository that contain= s > > > firmware code and/or data. The firmware code and/or data stored in > > > Firmware Volumes. Detail layout of Firmware Volumes is described in > > ?Figure > > > 1. The Firmware Volume Format?. > > > + > > > +![](Img/FirmwareVolumeFormat.png) > > > + > > > +
Figure 1. The Firmware Volume Format
> > > + > > > +In firmware development, binary file has its firmware layout followi= ng > > the > > > Platform-Initialization Specification. Thus, operation on FV file / F= FS > > file > > > (Firmware File) is an efficient and convenient way for firmware funct= ion > > > testing and developing. FMMT Python tool is used for firmware files > > > operation. > > > + > > > +## 1.2 Tool Capabilities > > > + > > > +The FMMT tool is capable of: > > > + > > > +- Parse a FD (Firmware Device) / FV (Firmware Volume) / FFS (Firmwar= e > > > Files) > > > + > > > +- Add a new FFS into a FV file (both included in a FD file or not) > > > + > > > +- Replace an FFS in a FV file with a new FFS file > > > + > > > +- Delete an FFS in a FV file (both included in a FD file or not) > > > + > > > +- Extract the FFS from a FV file (both includ-v < Inputfile > < > > Outputfile >ed > > > in a FD file or not) > > > + > > > +## 1.3 References > > > + > > > +| Document | > > > +| ------------------------------------------------ | > > > +| UEFI Platform Initialization (PI) Specification | > > > + > > > + > > > + > > > +# 2. FMMT Python Tool Usage > > > + > > > +## 2.1 Required Files > > > + > > > +### 2.1.1 Independent use > > > + > > > +When independent use the FMMT Python Tool, the following files and > > > settings are required: > > > + > > > +- GuidTool executable files used for Decompress/Compress Firmware > data. > > > + > > > +- Environment variables path with GuidTool path setting. > > > + > > > +### 2.1.2 Use with Build System > > > + > > > +When use the FMMT Python Tool with Build System: > > > + > > > +- If only use Edk2 based GuidTool, do not need other preparation. > > > + > > > +- If use other customized GuidTool, need prepare the config file wit= h > > GuidTool > > > info. The syntax for GuidTool definition shown as follow: > > > + > > > + ***ToolsGuid ShortName Command*** > > > + > > > + -- Example: ***3d532050-5cda-4fd0-879e-0f7f630d5afb BROTLI > > > BrotliCompress*** > > > + > > > +## 2.2 Syntax > > > + > > > +### 2.2.1 Syntax for Parse file > > > + > > > +***-v < Inputfile > < Outputfile > -l < LogFileType >*** > > > + > > > +- Parse *Inputfile*, show its firmware layout with log file. *Output= file* > > is > > > optional, if inputs, the *Inputfile* will be encapsulated into > > *Outputfile* > > > following the parsed firmware layout. *"-l LogFileType"* is optional,= it > > decides > > > the format of log file which saves Binary layout. Currently supports: > > json, txt. > > > More formats will be added in the future. > > > + > > > +### 2.2.2 Syntax for Add a new FFS > > > + > > > +***-a < Inputfile > < TargetFvName/TargetFvGuid > < NewFfsFile > < > > > Outputfile >*** > > > + > > > +- Add the *NewFfsFile* into *Inputfile*. *TargetFvName/TargetFvGuid* > > > (Name or Guid) is the TargetFv which *NewFfsFile* will be added into. > > > + > > > +### 2.2.3 Syntax for Delete an FFS > > > + > > > +***-d < Inputfile > < TargetFfsName > < Outputfile > < > > > TargetFvName/TargetFvGuid >*** > > > + > > > +- Delete the Ffs from *Inputfile*. TargetFfsName (Guid) is the Targe= tFfs > > > which will be deleted. *TargetFvName/TargetFvGuid* is optional, which= is > > the > > > parent of TargetFfs*.* > > > + > > > +### 2.2.4 Syntax for Replace an FFS > > > + > > > +***-r < Inputfile > < TargetFfsName > < NewFfsFile > < Outputfile >= < > > > TargetFvName/TargetFvGuid >*** > > > + > > > +- Replace the Ffs with the NewFfsFile. TargetFfsName (Guid) is the > > TargetFfs > > > which will be replaced. *TargetFvName/TargetFvGuid* is optional, whic= h > is > > > the parent of TargetFfs*.* > > > + > > > +### 2.2.5 Syntax for Extract an FFS > > > + > > > +***-e < Inputfile > < TargetFfsName > < Outputfile >*** > > > + > > > +- Extract the Ffs from the Inputfile. TargetFfsName (Guid) is the > > TargetFfs > > > which will be extracted. > > > + > > > + > > > + > > > +# 3. FMMT Python Tool Design > > > + > > > +FMMT Python Tool uses the NodeTree saves whole Firmware layout. > Each > > > Node have its Data field, which saves the > > > FirmwareClass(FD/FV/FFS/SECTION/BINARY) Data. All the > > > parse/add/delete/replace/extract operations are based on the NodeTree > > > (adjusting the layout and data). > > > + > > > +## 3.1 NodeTree > > > + > > > +A whole NodeTree saves all the Firmware info. > > > + > > > +- Parent & Child relationship figured out the Firmware layout. > > > + > > > +- Each Node have several fields. ?Data? field saves an FirmwareClass > > > instance which contains all the data info of the info. > > > + > > > +### 3.1.1 NodeTree Format > > > + > > > +The NodeTree will be created with parse function. When parse a file,= a > > Root > > > Node will be initialized firstly. The Data split and Tree constructio= n > > process is > > > described with an FD file shown as ?Figure 2. The NodeTree format?: > > > + > > > +- A Root Node is initialized. > > > + > > > +- Use the ?FV Signature? as FV key to split Whole FD > > > Data. ?FV0?, ?FV1?, ?FV2?? Node created. > > > + > > > +- After FV level Node created, use the ?Ffs Data Size? as FFS key to > > split each > > > FV Data. ?Ffs0?...Node created. > > > + > > > +- After FFS level Node created, use the ?Section Data Size? as Secti= on > > key to > > > split each Ffs Data. ?Section0?...Node created. > > > + > > > +- If some of Section includes other Sections, continue use the ?Sect= ion > > Data > > > Size? as Section key to split each Section Data. > > > + > > > +- After all Node created, the whole NodeTree saves all the info. (Ca= n be > > used > > > in other functions or print the whole firmware layout into log file) > > > + > > > +![](Img/NodeTreeFormat.png) > > > + > > > +
Figure 2. The NodeTree format
> > > + > > > +### 3.1.2 Node Factory and Product > > > + > > > +As 3.1.1, Each Node is created by data split and recognition. To ext= end > > the > > > NodeTree usage, Factory pattern is used in Node created process. > > > + > > > +Each Node have its Factory to create Product and use Product > ParserData > > > function to deal with the data. > > > + > > > +## 3.2 GuidTool > > > + > > > +There are two ways to set the GuidTool. One from Config file, anothe= r > > from > > > environment variables. > > > + > > > +Current GuidTool first check if has Config file. > > > + > > > +- If have, load the config GuidTool Information. > > > + > > > +- Else get from environment variables. > > > + > > > +### 3.2.1 Get from Config file > > > + > > > +- Config file should in same folder with FMMT.py or the path in > > environment > > > variables. > > > + > > > +- Content should follow the format: > > > + > > > + ***ToolsGuid ShortName Command*** > > > + > > > +### 3.2.2 Get from Environment Variables > > > + > > > +- The GuidTool Command used must be set in environment variables. > > > + > > > +### 3.2.3 Edk2 Based GuidTool > > > + > > > +| ***Guid*** | > ***ShortName*** > > > | ***Command*** | > > > +| ------------------------------------------ | --------------- | > > --------------------- | > > > +| ***a31280ad-481e-41b6-95e8-127f4c984779*** | ***TIANO*** > | > > > ***TianoCompress*** | > > > +| ***ee4e5898-3914-4259-9d6e-dc7bd79403cf*** | ***LZMA*** > | > > > ***LzmaCompress*** | > > > +| ***fc1bcdb0-7d31-49aa-936a-a4600d9dd083*** | ***CRC32*** > | > > > ***GenCrc32*** | > > > +| ***d42ae6bd-1352-4bfb-909a-ca72a6eae889*** | ***LZMAF86*** > | > > > ***LzmaF86Compress*** | > > > +| ***3d532050-5cda-4fd0-879e-0f7f630d5afb*** | ***BROTLI*** > | > > > ***BrotliCompress*** | > > > diff --git a/BaseTools/Source/Python/FMMT/__init__.py > > > b/BaseTools/Source/Python/FMMT/__init__.py > > > new file mode 100644 > > > index 000000000000..e69de29bb2d1 > > > diff --git > a/BaseTools/Source/Python/FMMT/core/BinaryFactoryProduct.py > > > b/BaseTools/Source/Python/FMMT/core/BinaryFactoryProduct.py > > > new file mode 100644 > > > index 000000000000..33ffe73cab27 > > > --- /dev/null > > > +++ b/BaseTools/Source/Python/FMMT/core/BinaryFactoryProduct.py > > > @@ -0,0 +1,371 @@ > > > +## @file > > > +# This file is used to implement of the various bianry parser. > > > +# > > > +# Copyright (c) 2021-, Intel Corporation. All rights reserved.
> > > +# SPDX-License-Identifier: BSD-2-Clause-Patent > > > +## > > > +from re import T > > > +import copy > > > +import os > > > +from PI.Common import * > > > +from core.BiosTreeNode import * > > > +from core.BiosTree import * > > > +from core.GuidTools import * > > > + > > > +ROOT_TREE =3D 'ROOT' > > > +ROOT_FV_TREE =3D 'ROOT_FV_TREE' > > > +ROOT_FFS_TREE =3D 'ROOT_FFS_TREE' > > > +ROOT_SECTION_TREE =3D 'ROOT_SECTION_TREE' > > > + > > > +FV_TREE =3D 'FV' > > > +DATA_FV_TREE =3D 'DATA_FV' > > > +FFS_TREE =3D 'FFS' > > > +FFS_PAD =3D 'FFS_PAD' > > > +FFS_FREE_SPACE =3D 'FFS_FREE_SPACE' > > > +SECTION_TREE =3D 'SECTION' > > > +SEC_FV_TREE =3D 'SEC_FV_IMAGE' > > > +BINARY_DATA =3D 'BINARY' > > > +Fv_count =3D 0 > > > + > > > +## Abstract factory > > > +class BinaryFactory(): > > > + type:list =3D [] > > > + > > > + def Create_Product(): > > > + pass > > > + > > > +class BinaryProduct(): > > > + ## Use GuidTool to decompress data. > > > + def DeCompressData(self, GuidTool, Section_Data: bytes) -> bytes= : > > > + ParPath =3D > > > > > > os.path.abspath(os.path.dirname(os.path.abspath(__file__))+os.path.sep+".= . > > ") > > > + ToolPath =3D os.path.join(ParPath, r'FMMTConfig.ini') > > > + guidtool =3D > > > GUIDTools(ToolPath).__getitem__(struct2stream(GuidTool)) > > > + DecompressedData =3D guidtool.unpack(Section_Data) > > > + return DecompressedData > > > + > > > + def ParserData(): > > > + pass > > > + > > > +class SectionFactory(BinaryFactory): > > > + type =3D [SECTION_TREE] > > > + > > > + def Create_Product(): > > > + return SectionProduct() > > > + > > > +class FfsFactory(BinaryFactory): > > > + type =3D [ROOT_SECTION_TREE, FFS_TREE] > > > + > > > + def Create_Product(): > > > + return FfsProduct() > > > + > > > +class FvFactory(BinaryFactory): > > > + type =3D [ROOT_FFS_TREE, FV_TREE, SEC_FV_TREE] > > > + > > > + def Create_Product(): > > > + return FvProduct() > > > + > > > +class FdFactory(BinaryFactory): > > > + type =3D [ROOT_FV_TREE, ROOT_TREE] > > > + > > > + def Create_Product(): > > > + return FdProduct() > > > + > > > +class SectionProduct(BinaryProduct): > > > + ## Decompress the compressed section. > > > + def ParserData(self, Section_Tree, whole_Data: bytes, > > > Rel_Whole_Offset: int=3D0) -> None: > > > + if Section_Tree.Data.Type =3D=3D 0x01: > > > + Section_Tree.Data.OriData =3D Section_Tree.Data.Data > > > + self.ParserFfs(Section_Tree, b'') > > > + # Guided Define Section > > > + elif Section_Tree.Data.Type =3D=3D 0x02: > > > + Section_Tree.Data.OriData =3D Section_Tree.Data.Data > > > + DeCompressGuidTool =3D > > > Section_Tree.Data.ExtHeader.SectionDefinitionGuid > > > + Section_Tree.Data.Data =3D > > > self.DeCompressData(DeCompressGuidTool, Section_Tree.Data.Data) > > > + Section_Tree.Data.Size =3D len(Section_Tree.Data.Data) + > > > Section_Tree.Data.HeaderLength > > > + self.ParserFfs(Section_Tree, b'') > > > + elif Section_Tree.Data.Type =3D=3D 0x03: > > > + Section_Tree.Data.OriData =3D Section_Tree.Data.Data > > > + self.ParserFfs(Section_Tree, b'') > > > + # SEC_FV Section > > > + elif Section_Tree.Data.Type =3D=3D 0x17: > > > + global Fv_count > > > + Sec_Fv_Info =3D FvNode(Fv_count, Section_Tree.Data.Data) > > > + Sec_Fv_Tree =3D BIOSTREE('FV'+ str(Fv_count)) > > > + Sec_Fv_Tree.type =3D SEC_FV_TREE > > > + Sec_Fv_Tree.Data =3D Sec_Fv_Info > > > + Sec_Fv_Tree.Data.HOffset =3D Section_Tree.Data.DOffset > > > + Sec_Fv_Tree.Data.DOffset =3D Sec_Fv_Tree.Data.HOffset + > > > Sec_Fv_Tree.Data.Header.HeaderLength > > > + Sec_Fv_Tree.Data.Data =3D > > > Section_Tree.Data.Data[Sec_Fv_Tree.Data.Header.HeaderLength:] > > > + Section_Tree.insertChild(Sec_Fv_Tree) > > > + Fv_count +=3D 1 > > > + > > > + def ParserFfs(self, ParTree, Whole_Data: bytes, Rel_Whole_Offset= : > > > int=3D0) -> None: > > > + Rel_Offset =3D 0 > > > + Section_Offset =3D 0 > > > + # Get the Data from parent tree, if do not have the tree the= n > get > > it > > > from the whole_data. > > > + if ParTree.Data !=3D None: > > > + Data_Size =3D len(ParTree.Data.Data) > > > + Section_Offset =3D ParTree.Data.DOffset > > > + Whole_Data =3D ParTree.Data.Data > > > + else: > > > + Data_Size =3D len(Whole_Data) > > > + # Parser all the data to collect all the Section recorded in= its > > Parent > > > Section. > > > + while Rel_Offset < Data_Size: > > > + # Create a SectionNode and set it as the SectionTree's > Data > > > + Section_Info =3D SectionNode(Whole_Data[Rel_Offset:]) > > > + Section_Tree =3D BIOSTREE(Section_Info.Name) > > > + Section_Tree.type =3D SECTION_TREE > > > + Section_Info.Data =3D > > > Whole_Data[Rel_Offset+Section_Info.HeaderLength: > > > Rel_Offset+Section_Info.Size] > > > + Section_Info.DOffset =3D Section_Offset + > > > Section_Info.HeaderLength + Rel_Whole_Offset > > > + Section_Info.HOffset =3D Section_Offset + > Rel_Whole_Offset > > > + Section_Info.ROffset =3D Rel_Offset > > > + if Section_Info.Header.Type =3D=3D 0: > > > + break > > > + # The final Section in parent Section does not need to a= dd > > > padding, else must be 4-bytes align with parent Section start offset > > > + Pad_Size =3D 0 > > > + if > > > (Rel_Offset+Section_Info.HeaderLength+len(Section_Info.Data) !=3D > > Data_Size): > > > + Pad_Size =3D GetPadSize(Section_Info.Size, 4) > > > + Section_Info.PadData =3D Pad_Size * b'\x00' > > > + if Section_Info.Header.Type =3D=3D 0x02: > > > + Section_Info.DOffset =3D Section_Offset + > > > Section_Info.ExtHeader.DataOffset + Rel_Whole_Offset > > > + Section_Info.Data =3D > > > Whole_Data[Rel_Offset+Section_Info.ExtHeader.DataOffset: > > > Rel_Offset+Section_Info.Size] > > > + if Section_Info.Header.Type =3D=3D 0x14: > > > + ParTree.Data.Version =3D > > > Section_Info.ExtHeader.GetVersionString() > > > + if Section_Info.Header.Type =3D=3D 0x15: > > > + ParTree.Data.UiName =3D > > > Section_Info.ExtHeader.GetUiString() > > > + Section_Offset +=3D Section_Info.Size + Pad_Size > > > + Rel_Offset +=3D Section_Info.Size + Pad_Size > > > + Section_Tree.Data =3D Section_Info > > > + ParTree.insertChild(Section_Tree) > > > + > > > +class FfsProduct(BinaryProduct): > > > + # ParserFFs / GetSection > > > + def ParserData(self, ParTree, Whole_Data: bytes, Rel_Whole_Offse= t: > > > int=3D0) -> None: > > > + Rel_Offset =3D 0 > > > + Section_Offset =3D 0 > > > + # Get the Data from parent tree, if do not have the tree the= n > get > > it > > > from the whole_data. > > > + if ParTree.Data !=3D None: > > > + Data_Size =3D len(ParTree.Data.Data) > > > + Section_Offset =3D ParTree.Data.DOffset > > > + Whole_Data =3D ParTree.Data.Data > > > + else: > > > + Data_Size =3D len(Whole_Data) > > > + # Parser all the data to collect all the Section recorded in= Ffs. > > > + while Rel_Offset < Data_Size: > > > + # Create a SectionNode and set it as the SectionTree's > Data > > > + Section_Info =3D SectionNode(Whole_Data[Rel_Offset:]) > > > + Section_Tree =3D BIOSTREE(Section_Info.Name) > > > + Section_Tree.type =3D SECTION_TREE > > > + Section_Info.Data =3D > > > Whole_Data[Rel_Offset+Section_Info.HeaderLength: > > > Rel_Offset+Section_Info.Size] > > > + Section_Info.DOffset =3D Section_Offset + > > > Section_Info.HeaderLength + Rel_Whole_Offset > > > + Section_Info.HOffset =3D Section_Offset + > Rel_Whole_Offset > > > + Section_Info.ROffset =3D Rel_Offset > > > + if Section_Info.Header.Type =3D=3D 0: > > > + break > > > + # The final Section in Ffs does not need to add padding, > else > > > must be 4-bytes align with Ffs start offset > > > + Pad_Size =3D 0 > > > + if > > > (Rel_Offset+Section_Info.HeaderLength+len(Section_Info.Data) !=3D > > Data_Size): > > > + Pad_Size =3D GetPadSize(Section_Info.Size, 4) > > > + Section_Info.PadData =3D Pad_Size * b'\x00' > > > + if Section_Info.Header.Type =3D=3D 0x02: > > > + Section_Info.DOffset =3D Section_Offset + > > > Section_Info.ExtHeader.DataOffset + Rel_Whole_Offset > > > + Section_Info.Data =3D > > > Whole_Data[Rel_Offset+Section_Info.ExtHeader.DataOffset: > > > Rel_Offset+Section_Info.Size] > > > + # If Section is Version or UI type, it saves the version= and > > UI > > > info of its parent Ffs. > > > + if Section_Info.Header.Type =3D=3D 0x14: > > > + ParTree.Data.Version =3D > > > Section_Info.ExtHeader.GetVersionString() > > > + if Section_Info.Header.Type =3D=3D 0x15: > > > + ParTree.Data.UiName =3D > > > Section_Info.ExtHeader.GetUiString() > > > + Section_Offset +=3D Section_Info.Size + Pad_Size > > > + Rel_Offset +=3D Section_Info.Size + Pad_Size > > > + Section_Tree.Data =3D Section_Info > > > + ParTree.insertChild(Section_Tree) > > > + > > > +class FvProduct(BinaryProduct): > > > + ## ParserFv / GetFfs > > > + def ParserData(self, ParTree, Whole_Data: bytes, Rel_Whole_Offse= t: > > > int=3D0) -> None: > > > + Ffs_Offset =3D 0 > > > + Rel_Offset =3D 0 > > > + # Get the Data from parent tree, if do not have the tree the= n > get > > it > > > from the whole_data. > > > + if ParTree.Data !=3D None: > > > + Data_Size =3D len(ParTree.Data.Data) > > > + Ffs_Offset =3D ParTree.Data.DOffset > > > + Whole_Data =3D ParTree.Data.Data > > > + else: > > > + Data_Size =3D len(Whole_Data) > > > + # Parser all the data to collect all the Ffs recorded in Fv. > > > + while Rel_Offset < Data_Size: > > > + # Create a FfsNode and set it as the FFsTree's Data > > > + if Data_Size - Rel_Offset < 24: > > > + Ffs_Tree =3D BIOSTREE('Free_Space') > > > + Ffs_Tree.type =3D FFS_FREE_SPACE > > > + Ffs_Tree.Data =3D > > > FreeSpaceNode(Whole_Data[Rel_Offset:]) > > > + Ffs_Tree.Data.HOffset =3D Ffs_Offset + > Rel_Whole_Offset > > > + Ffs_Tree.Data.DOffset =3D Ffs_Tree.Data.HOffset > > > + ParTree.Data.Free_Space =3D Data_Size - Rel_Offset > > > + ParTree.insertChild(Ffs_Tree) > > > + Rel_Offset =3D Data_Size > > > + else: > > > + Ffs_Info =3D FfsNode(Whole_Data[Rel_Offset:]) > > > + Ffs_Tree =3D BIOSTREE(Ffs_Info.Name) > > > + Ffs_Info.HOffset =3D Ffs_Offset + Rel_Whole_Offset > > > + Ffs_Info.DOffset =3D Ffs_Offset + > > > Ffs_Info.Header.HeaderLength + Rel_Whole_Offset > > > + Ffs_Info.ROffset =3D Rel_Offset > > > + if Ffs_Info.Name =3D=3D PADVECTOR: > > > + Ffs_Tree.type =3D FFS_PAD > > > + Ffs_Info.Data =3D > > > Whole_Data[Rel_Offset+Ffs_Info.Header.HeaderLength: > > > Rel_Offset+Ffs_Info.Size] > > > + Ffs_Info.Size =3D len(Ffs_Info.Data) + > > > Ffs_Info.Header.HeaderLength > > > + # if current Ffs is the final ffs of Fv and full= of > > b'\xff', > > > define it with Free_Space > > > + if > struct2stream(Ffs_Info.Header).replace(b'\xff', > > b'') > > > =3D=3D b'': > > > + Ffs_Tree.type =3D FFS_FREE_SPACE > > > + Ffs_Info.Data =3D Whole_Data[Rel_Offset:] > > > + Ffs_Info.Size =3D len(Ffs_Info.Data) > > > + ParTree.Data.Free_Space =3D Ffs_Info.Size > > > + else: > > > + Ffs_Tree.type =3D FFS_TREE > > > + Ffs_Info.Data =3D > > > Whole_Data[Rel_Offset+Ffs_Info.Header.HeaderLength: > > > Rel_Offset+Ffs_Info.Size] > > > + # The final Ffs in Fv does not need to add padding, > else > > > must be 8-bytes align with Fv start offset > > > + Pad_Size =3D 0 > > > + if Ffs_Tree.type !=3D FFS_FREE_SPACE and > > > (Rel_Offset+Ffs_Info.Header.HeaderLength+len(Ffs_Info.Data) !=3D > > Data_Size): > > > + Pad_Size =3D GetPadSize(Ffs_Info.Size, 8) > > > + Ffs_Info.PadData =3D Pad_Size * b'\xff' > > > + Ffs_Offset +=3D Ffs_Info.Size + Pad_Size > > > + Rel_Offset +=3D Ffs_Info.Size + Pad_Size > > > + Ffs_Tree.Data =3D Ffs_Info > > > + ParTree.insertChild(Ffs_Tree) > > > + > > > +class FdProduct(BinaryProduct): > > > + type =3D [ROOT_FV_TREE, ROOT_TREE] > > > + > > > + ## Create DataTree with first level /fv Info, then parser each F= v. > > > + def ParserData(self, WholeFvTree, whole_data: bytes=3Db'', offse= t: > > int=3D0) -> > > > None: > > > + # Get all Fv image in Fd with offset and length > > > + Fd_Struct =3D self.GetFvFromFd(whole_data) > > > + data_size =3D len(whole_data) > > > + Binary_count =3D 0 > > > + global Fv_count > > > + # If the first Fv image is the Binary Fv, add it into the tr= ee. > > > + if Fd_Struct[0][1] !=3D 0: > > > + Binary_node =3D BIOSTREE('BINARY'+ str(Binary_count)) > > > + Binary_node.type =3D BINARY_DATA > > > + Binary_node.Data =3D BinaryNode(str(Binary_count)) > > > + Binary_node.Data.Data =3D whole_data[:Fd_Struct[0][1]] > > > + Binary_node.Data.Size =3D len(Binary_node.Data.Data) > > > + Binary_node.Data.HOffset =3D 0 + offset > > > + WholeFvTree.insertChild(Binary_node) > > > + Binary_count +=3D 1 > > > + # Add the first collected Fv image into the tree. > > > + Cur_node =3D BIOSTREE(Fd_Struct[0][0]+ str(Fv_count)) > > > + Cur_node.type =3D Fd_Struct[0][0] > > > + Cur_node.Data =3D FvNode(Fv_count, > > > whole_data[Fd_Struct[0][1]:Fd_Struct[0][1]+Fd_Struct[0][2][0]]) > > > + Cur_node.Data.HOffset =3D Fd_Struct[0][1] + offset > > > + Cur_node.Data.DOffset =3D > > > Cur_node.Data.HOffset+Cur_node.Data.Header.HeaderLength > > > + Cur_node.Data.Data =3D > > > > > > whole_data[Fd_Struct[0][1]+Cur_node.Data.Header.HeaderLength:Fd_Struct > > > [0][1]+Cur_node.Data.Size] > > > + WholeFvTree.insertChild(Cur_node) > > > + Fv_count +=3D 1 > > > + Fv_num =3D len(Fd_Struct) > > > + # Add all the collected Fv image and the Binary Fv image > between > > > them into the tree. > > > + for i in range(Fv_num-1): > > > + if Fd_Struct[i][1]+Fd_Struct[i][2][0] !=3D Fd_Struct[i+1= ][1]: > > > + Binary_node =3D BIOSTREE('BINARY'+ > str(Binary_count)) > > > + Binary_node.type =3D BINARY_DATA > > > + Binary_node.Data =3D BinaryNode(str(Binary_count)) > > > + Binary_node.Data.Data =3D > > > whole_data[Fd_Struct[i][1]+Fd_Struct[i][2][0]:Fd_Struct[i+1][1]] > > > + Binary_node.Data.Size =3D len(Binary_node.Data.Data) > > > + Binary_node.Data.HOffset =3D > > > Fd_Struct[i][1]+Fd_Struct[i][2][0] + offset > > > + WholeFvTree.insertChild(Binary_node) > > > + Binary_count +=3D 1 > > > + Cur_node =3D BIOSTREE(Fd_Struct[i+1][0]+ str(Fv_count)) > > > + Cur_node.type =3D Fd_Struct[i+1][0] > > > + Cur_node.Data =3D FvNode(Fv_count, > > > whole_data[Fd_Struct[i+1][1]:Fd_Struct[i+1][1]+Fd_Struct[i+1][2][0]]) > > > + Cur_node.Data.HOffset =3D Fd_Struct[i+1][1] + offset > > > + Cur_node.Data.DOffset =3D > > > Cur_node.Data.HOffset+Cur_node.Data.Header.HeaderLength > > > + Cur_node.Data.Data =3D > > > > > > whole_data[Fd_Struct[i+1][1]+Cur_node.Data.Header.HeaderLength:Fd_Stru > > > ct[i+1][1]+Cur_node.Data.Size] > > > + WholeFvTree.insertChild(Cur_node) > > > + Fv_count +=3D 1 > > > + # If the final Fv image is the Binary Fv, add it into the tr= ee > > > + if Fd_Struct[-1][1] + Fd_Struct[-1][2][0] !=3D data_size: > > > + Binary_node =3D BIOSTREE('BINARY'+ str(Binary_count)) > > > + Binary_node.type =3D BINARY_DATA > > > + Binary_node.Data =3D BinaryNode(str(Binary_count)) > > > + Binary_node.Data.Data =3D > > > whole_data[Fd_Struct[-1][1]+Fd_Struct[-1][2][0]:] > > > + Binary_node.Data.Size =3D len(Binary_node.Data.Data) > > > + Binary_node.Data.HOffset =3D > > > Fd_Struct[-1][1]+Fd_Struct[-1][2][0] + offset > > > + WholeFvTree.insertChild(Binary_node) > > > + Binary_count +=3D 1 > > > + > > > + ## Get the first level Fv from Fd file. > > > + def GetFvFromFd(self, whole_data: bytes=3Db'') -> list: > > > + Fd_Struct =3D [] > > > + data_size =3D len(whole_data) > > > + cur_index =3D 0 > > > + # Get all the EFI_FIRMWARE_FILE_SYSTEM2_GUID_BYTE FV > > > image offset and length. > > > + while cur_index < data_size: > > > + if EFI_FIRMWARE_FILE_SYSTEM2_GUID_BYTE in > > > whole_data[cur_index:]: > > > + target_index =3D > > > > whole_data[cur_index:].index(EFI_FIRMWARE_FILE_SYSTEM2_GUID_BYTE) > > + > > > cur_index > > > + if whole_data[target_index+24:target_index+28] =3D= =3D > > > FVH_SIGNATURE and whole_data[target_index-16:target_index] =3D=3D > > > ZEROVECTOR_BYTE: > > > + Fd_Struct.append([FV_TREE, target_index - 16, > > > unpack("Q", whole_data[target_index+16:target_index+24])]) > > > + cur_index =3D Fd_Struct[-1][1] + > Fd_Struct[-1][2][0] > > > + else: > > > + cur_index =3D target_index + 16 > > > + else: > > > + cur_index =3D data_size > > > + cur_index =3D 0 > > > + # Get all the EFI_FIRMWARE_FILE_SYSTEM3_GUID_BYTE FV > > > image offset and length. > > > + while cur_index < data_size: > > > + if EFI_FIRMWARE_FILE_SYSTEM3_GUID_BYTE in > > > whole_data[cur_index:]: > > > + target_index =3D > > > > whole_data[cur_index:].index(EFI_FIRMWARE_FILE_SYSTEM3_GUID_BYTE) > > + > > > cur_index > > > + if whole_data[target_index+24:target_index+28] =3D= =3D > > > FVH_SIGNATURE and whole_data[target_index-16:target_index] =3D=3D > > > ZEROVECTOR_BYTE: > > > + Fd_Struct.append([FV_TREE, target_index - 16, > > > unpack("Q", whole_data[target_index+16:target_index+24])]) > > > + cur_index =3D Fd_Struct[-1][1] + > Fd_Struct[-1][2][0] > > > + else: > > > + cur_index =3D target_index + 16 > > > + else: > > > + cur_index =3D data_size > > > + cur_index =3D 0 > > > + # Get all the EFI_SYSTEM_NVDATA_FV_GUID_BYTE FV image > > > offset and length. > > > + while cur_index < data_size: > > > + if EFI_SYSTEM_NVDATA_FV_GUID_BYTE in > > > whole_data[cur_index:]: > > > + target_index =3D > > > whole_data[cur_index:].index(EFI_SYSTEM_NVDATA_FV_GUID_BYTE) + > > > cur_index > > > + if whole_data[target_index+24:target_index+28] =3D= =3D > > > FVH_SIGNATURE and whole_data[target_index-16:target_index] =3D=3D > > > ZEROVECTOR_BYTE: > > > + Fd_Struct.append([DATA_FV_TREE, > target_index - > > > 16, unpack("Q", whole_data[target_index+16:target_index+24])]) > > > + cur_index =3D Fd_Struct[-1][1] + > Fd_Struct[-1][2][0] > > > + else: > > > + cur_index =3D target_index + 16 > > > + else: > > > + cur_index =3D data_size > > > + # Sort all the collect Fv image with offset. > > > + Fd_Struct.sort(key=3Dlambda x:x[1]) > > > + tmp_struct =3D copy.deepcopy(Fd_Struct) > > > + tmp_index =3D 0 > > > + Fv_num =3D len(Fd_Struct) > > > + # Remove the Fv image included in another Fv image. > > > + for i in range(1,Fv_num): > > > + if tmp_struct[i][1]+tmp_struct[i][2][0] < > > > tmp_struct[i-1][1]+tmp_struct[i-1][2][0]: > > > + Fd_Struct.remove(Fd_Struct[i-tmp_index]) > > > + tmp_index +=3D 1 > > > + return Fd_Struct > > > + > > > +class ParserEntry(): > > > + FactoryTable:dict =3D { > > > + SECTION_TREE: SectionFactory, > > > + ROOT_SECTION_TREE: FfsFactory, > > > + FFS_TREE: FfsFactory, > > > + ROOT_FFS_TREE: FvFactory, > > > + FV_TREE: FvFactory, > > > + SEC_FV_TREE: FvFactory, > > > + ROOT_FV_TREE: FdFactory, > > > + ROOT_TREE: FdFactory, > > > + } > > > + > > > + def GetTargetFactory(self, Tree_type: str) -> BinaryFactory: > > > + if Tree_type in self.FactoryTable: > > > + return self.FactoryTable[Tree_type] > > > + > > > + def Generate_Product(self, TargetFactory: BinaryFactory, Tree, D= ata: > > > bytes, Offset: int) -> None: > > > + New_Product =3D TargetFactory.Create_Product() > > > + New_Product.ParserData(Tree, Data, Offset) > > > + > > > + def DataParser(self, Tree, Data: bytes, Offset: int) -> None: > > > + TargetFactory =3D self.GetTargetFactory(Tree.type) > > > + if TargetFactory: > > > + self.Generate_Product(TargetFactory, Tree, Data, Offset) > > > \ No newline at end of file > > > diff --git a/BaseTools/Source/Python/FMMT/core/BiosTree.py > > > b/BaseTools/Source/Python/FMMT/core/BiosTree.py > > > new file mode 100644 > > > index 000000000000..0b6252ecc1bb > > > --- /dev/null > > > +++ b/BaseTools/Source/Python/FMMT/core/BiosTree.py > > > @@ -0,0 +1,198 @@ > > > +## @file > > > +# This file is used to define the Bios layout tree structure and rel= ated > > > operations. > > > +# > > > +# Copyright (c) 2021-, Intel Corporation. All rights reserved.
> > > +# SPDX-License-Identifier: BSD-2-Clause-Patent > > > +## > > > +import collections > > > +from PI.Common import * > > > + > > > +ROOT_TREE =3D 'ROOT' > > > +ROOT_FV_TREE =3D 'ROOT_FV_TREE' > > > +ROOT_FFS_TREE =3D 'ROOT_FFS_TREE' > > > +ROOT_SECTION_TREE =3D 'ROOT_SECTION_TREE' > > > + > > > +FV_TREE =3D 'FV' > > > +DATA_FV_TREE =3D 'DATA_FV' > > > +FFS_TREE =3D 'FFS' > > > +FFS_PAD =3D 'FFS_PAD' > > > +FFS_FREE_SPACE =3D 'FFS_FREE_SPACE' > > > +SECTION_TREE =3D 'SECTION' > > > +SEC_FV_TREE =3D 'SEC_FV_IMAGE' > > > +BINARY_DATA =3D 'BINARY' > > > + > > > +RootType =3D [ROOT_TREE, ROOT_FV_TREE, ROOT_FFS_TREE, > > > ROOT_SECTION_TREE] > > > +FvType =3D [FV_TREE, SEC_FV_TREE] > > > +FfsType =3D FFS_TREE > > > +SecType =3D SECTION_TREE > > > + > > > +class BIOSTREE: > > > + def __init__(self, NodeName: str) -> None: > > > + self.key =3D NodeName > > > + self.type =3D None > > > + self.Data =3D None > > > + self.Child =3D [] > > > + self.Findlist =3D [] > > > + self.Parent =3D None > > > + self.NextRel =3D None > > > + self.LastRel =3D None > > > + > > > + def HasChild(self) -> bool: > > > + if self.Child =3D=3D []: > > > + return False > > > + else: > > > + return True > > > + > > > + def isFinalChild(self) -> bool: > > > + ParTree =3D self.Parent > > > + if ParTree: > > > + if ParTree.Child[-1] =3D=3D self: > > > + return True > > > + return False > > > + > > > + # FvTree.insertChild() > > > + def insertChild(self, newNode, pos: int=3DNone) -> None: > > > + if len(self.Child) =3D=3D 0: > > > + self.Child.append(newNode) > > > + else: > > > + if not pos: > > > + LastTree =3D self.Child[-1] > > > + self.Child.append(newNode) > > > + LastTree.NextRel =3D newNode > > > + newNode.LastRel =3D LastTree > > > + else: > > > + newNode.NextRel =3D self.Child[pos-1].NextRel > > > + newNode.LastRel =3D self.Child[pos].LastRel > > > + self.Child[pos-1].NextRel =3D newNode > > > + self.Child[pos].LastRel =3D newNode > > > + self.Child.insert(pos, newNode) > > > + newNode.Parent =3D self > > > + > > > + # lastNode.insertRel(newNode) > > > + def insertRel(self, newNode) -> None: > > > + if self.Parent: > > > + parentTree =3D self.Parent > > > + new_index =3D parentTree.Child.index(self) + 1 > > > + parentTree.Child.insert(new_index, newNode) > > > + self.NextRel =3D newNode > > > + newNode.LastRel =3D self > > > + > > > + def deleteNode(self, deletekey: str) -> None: > > > + FindStatus, DeleteTree =3D self.FindNode(deletekey) > > > + if FindStatus: > > > + parentTree =3D DeleteTree.Parent > > > + lastTree =3D DeleteTree.LastRel > > > + nextTree =3D DeleteTree.NextRel > > > + if parentTree: > > > + index =3D parentTree.Child.index(DeleteTree) > > > + del parentTree.Child[index] > > > + if lastTree and nextTree: > > > + lastTree.NextRel =3D nextTree > > > + nextTree.LastRel =3D lastTree > > > + elif lastTree: > > > + lastTree.NextRel =3D None > > > + elif nextTree: > > > + nextTree.LastRel =3D None > > > + return DeleteTree > > > + else: > > > + print('Could not find the target tree') > > > + return None > > > + > > > + def FindNode(self, key: str, Findlist: list) -> None: > > > + if self.key =3D=3D key or (self.Data and self.Data.Name =3D= =3D key) or > > > (self.type =3D=3D FFS_TREE and self.Data.UiName =3D=3D key): > > > + Findlist.append(self) > > > + else: > > > + for item in self.Child: > > > + item.FindNode(key, Findlist) > > > + > > > + def GetTreePath(self): > > > + BiosTreePath =3D [self] > > > + while self.Parent: > > > + BiosTreePath.insert(0, self.Parent) > > > + self =3D self.Parent > > > + return BiosTreePath > > > + > > > + def parserTree(self, TargetDict: dict=3DNone, Info: list=3DNone,= space: > > int=3D0, > > > ParFvId=3D"") -> None: > > > + Key =3D list(TargetDict.keys())[0] > > > + if TargetDict[Key]["Type"] in RootType: > > > + Info.append("Image File: {}".format(Key)) > > > + Info.append("FilesNum: > > > {}".format(TargetDict.get(Key).get('FilesNum'))) > > > + Info.append("\n") > > > + elif TargetDict[Key]["Type"] in FvType: > > > + space +=3D 2 > > > + if TargetDict[Key]["Type"] =3D=3D SEC_FV_TREE: > > > + Info.append("{}Child FV named {} of > {}".format(space*" ", > > > Key, ParFvId)) > > > + space +=3D 2 > > > + else: > > > + Info.append("FvId: {}".format(Key)) > > > + ParFvId =3D Key > > > + Info.append("{}FvNameGuid: {}".format(space*" ", > > > TargetDict.get(Key).get('FvNameGuid'))) > > > + Info.append("{}Attributes: {}".format(space*" ", > > > TargetDict.get(Key).get('Attributes'))) > > > + Info.append("{}Total Volume Size: {}".format(space*" ", > > > TargetDict.get(Key).get('Size'))) > > > + Info.append("{}Free Volume Size: {}".format(space*" ", > > > TargetDict.get(Key).get('FreeSize'))) > > > + Info.append("{}Volume Offset: {}".format(space*" ", > > > TargetDict.get(Key).get('Offset'))) > > > + Info.append("{}FilesNum: {}".format(space*" ", > > > TargetDict.get(Key).get('FilesNum'))) > > > + elif TargetDict[Key]["Type"] in FfsType: > > > + space +=3D 2 > > > + if TargetDict.get(Key).get('UiName') !=3D "b''": > > > + Info.append("{}File: {} / {}".format(space*" ", Key, > > > TargetDict.get(Key).get('UiName'))) > > > + else: > > > + Info.append("{}File: {}".format(space*" ", Key)) > > > + if "Files" in list(TargetDict[Key].keys()): > > > + for item in TargetDict[Key]["Files"]: > > > + self.parserTree(item, Info, space, ParFvId) > > > + > > > + def ExportTree(self,TreeInfo: dict=3DNone) -> dict: > > > + if TreeInfo is None: > > > + TreeInfo =3Dcollections.OrderedDict() > > > + > > > + if self.type =3D=3D ROOT_TREE or self.type =3D=3D ROOT_FV_TR= EE or > > > self.type =3D=3D ROOT_FFS_TREE or self.type =3D=3D ROOT_SECTION_TREE: > > > + key =3D str(self.key) > > > + TreeInfo[self.key] =3D collections.OrderedDict() > > > + TreeInfo[self.key]["Name"] =3D key > > > + TreeInfo[self.key]["Type"] =3D self.type > > > + TreeInfo[self.key]["FilesNum"] =3D len(self.Child) > > > + elif self.type =3D=3D FV_TREE or self.type =3D=3D SEC_FV_TR= EE: > > > + key =3D str(self.Data.FvId) > > > + TreeInfo[key] =3D collections.OrderedDict() > > > + TreeInfo[key]["Name"] =3D key > > > + if self.Data.FvId !=3D self.Data.Name: > > > + TreeInfo[key]["FvNameGuid"] =3D str(self.Data.Name) > > > + TreeInfo[key]["Type"] =3D self.type > > > + TreeInfo[key]["Attributes"] =3D > > hex(self.Data.Header.Attributes) > > > + TreeInfo[key]["Size"] =3D hex(self.Data.Header.FvLength) > > > + TreeInfo[key]["FreeSize"] =3D hex(self.Data.Free_Space) > > > + TreeInfo[key]["Offset"] =3D hex(self.Data.HOffset) > > > + TreeInfo[key]["FilesNum"] =3D len(self.Child) > > > + elif self.type =3D=3D FFS_TREE: > > > + key =3D str(self.Data.Name) > > > + TreeInfo[key] =3D collections.OrderedDict() > > > + TreeInfo[key]["Name"] =3D key > > > + TreeInfo[key]["UiName"] =3D '{}'.format(self.Data.UiName= ) > > > + TreeInfo[key]["Version"] =3D '{}'.format(self.Data.Versi= on) > > > + TreeInfo[key]["Type"] =3D self.type > > > + TreeInfo[key]["Size"] =3D hex(self.Data.Size) > > > + TreeInfo[key]["Offset"] =3D hex(self.Data.HOffset) > > > + TreeInfo[key]["FilesNum"] =3D len(self.Child) > > > + elif self.type =3D=3D SECTION_TREE and self.Data.Type =3D=3D= 0x02: > > > + key =3D str(self.Data.Name) > > > + TreeInfo[key] =3D collections.OrderedDict() > > > + TreeInfo[key]["Name"] =3D key > > > + TreeInfo[key]["Type"] =3D self.type > > > + TreeInfo[key]["Size"] =3D hex(len(self.Data.OriData) + > > > self.Data.HeaderLength) > > > + TreeInfo[key]["DecompressedSize"] =3D hex(self.Data.Size= ) > > > + TreeInfo[key]["Offset"] =3D hex(self.Data.HOffset) > > > + TreeInfo[key]["FilesNum"] =3D len(self.Child) > > > + elif self is not None: > > > + key =3D str(self.Data.Name) > > > + TreeInfo[key] =3D collections.OrderedDict() > > > + TreeInfo[key]["Name"] =3D key > > > + TreeInfo[key]["Type"] =3D self.type > > > + TreeInfo[key]["Size"] =3D hex(self.Data.Size) > > > + TreeInfo[key]["Offset"] =3D hex(self.Data.HOffset) > > > + TreeInfo[key]["FilesNum"] =3D len(self.Child) > > > + > > > + for item in self.Child: > > > + TreeInfo[key].setdefault('Files',[]).append( > > item.ExportTree()) > > > + > > > + return TreeInfo > > > \ No newline at end of file > > > diff --git a/BaseTools/Source/Python/FMMT/core/BiosTreeNode.py > > > b/BaseTools/Source/Python/FMMT/core/BiosTreeNode.py > > > new file mode 100644 > > > index 000000000000..cfb711eea5a2 > > > --- /dev/null > > > +++ b/BaseTools/Source/Python/FMMT/core/BiosTreeNode.py > > > @@ -0,0 +1,191 @@ > > > +## @file > > > +# This file is used to define the BIOS Tree Node. > > > +# > > > +# Copyright (c) 2021-, Intel Corporation. All rights reserved.
> > > +# SPDX-License-Identifier: BSD-2-Clause-Patent > > > +## > > > +from PI.FvHeader import * > > > +from PI.FfsFileHeader import * > > > +from PI.SectionHeader import * > > > +from PI.Common import * > > > +import uuid > > > + > > > +SectionHeaderType =3D { > > > + 0x01:'EFI_COMPRESSION_SECTION', > > > + 0x02:'EFI_GUID_DEFINED_SECTION', > > > + 0x03:'EFI_SECTION_DISPOSABLE', > > > + 0x10:'EFI_SECTION_PE32', > > > + 0x11:'EFI_SECTION_PIC', > > > + 0x12:'EFI_SECTION_TE', > > > + 0x13:'EFI_SECTION_DXE_DEPEX', > > > + 0x14:'EFI_SECTION_VERSION', > > > + 0x15:'EFI_SECTION_USER_INTERFACE', > > > + 0x16:'EFI_SECTION_COMPATIBILITY16', > > > + 0x17:'EFI_SECTION_FIRMWARE_VOLUME_IMAGE', > > > + 0x18:'EFI_FREEFORM_SUBTYPE_GUID_SECTION', > > > + 0x19:'EFI_SECTION_RAW', > > > + 0x1B:'EFI_SECTION_PEI_DEPEX', > > > + 0x1C:'EFI_SECTION_MM_DEPEX' > > > +} > > > +HeaderType =3D [0x01, 0x02, 0x14, 0x15, 0x18] > > > + > > > +class BinaryNode: > > > + def __init__(self, name: str) -> None: > > > + self.Size =3D 0 > > > + self.Name =3D "BINARY" + str(name) > > > + self.HOffset =3D 0 > > > + self.Data =3D b'' > > > + > > > +class FvNode: > > > + def __init__(self, name, buffer: bytes) -> None: > > > + self.Header =3D > > > EFI_FIRMWARE_VOLUME_HEADER.from_buffer_copy(buffer) > > > + Map_num =3D (self.Header.HeaderLength - 56)//8 > > > + self.Header =3D > > > Refine_FV_Header(Map_num).from_buffer_copy(buffer) > > > + self.FvId =3D "FV" + str(name) > > > + self.Name =3D "FV" + str(name) > > > + if self.Header.ExtHeaderOffset: > > > + self.ExtHeader =3D > > > > > > EFI_FIRMWARE_VOLUME_EXT_HEADER.from_buffer_copy(buffer[self.Heade > > r > > > .ExtHeaderOffset:]) > > > + self.Name =3D > > > uuid.UUID(bytes_le=3Dstruct2stream(self.ExtHeader.FvName)) > > > + self.ExtEntryOffset =3D self.Header.ExtHeaderOffset + 20 > > > + if self.ExtHeader.ExtHeaderSize !=3D 20: > > > + self.ExtEntryExist =3D 1 > > > + self.ExtEntry =3D > > > > > > EFI_FIRMWARE_VOLUME_EXT_ENTRY.from_buffer_copy(buffer[self.ExtEntry > > > Offset:]) > > > + self.ExtTypeExist =3D 1 > > > + if self.ExtEntry.ExtEntryType =3D=3D 0x01: > > > + nums =3D (self.ExtEntry.ExtEntrySize - 8) // 16 > > > + self.ExtEntry =3D > > > > > > Refine_FV_EXT_ENTRY_OEM_TYPE_Header(nums).from_buffer_copy(buffer[ > > s > > > elf.ExtEntryOffset:]) > > > + elif self.ExtEntry.ExtEntryType =3D=3D 0x02: > > > + nums =3D self.ExtEntry.ExtEntrySize - 20 > > > + self.ExtEntry =3D > > > > > > Refine_FV_EXT_ENTRY_GUID_TYPE_Header(nums).from_buffer_copy(buffer > > [ > > > self.ExtEntryOffset:]) > > > + elif self.ExtEntry.ExtEntryType =3D=3D 0x03: > > > + self.ExtEntry =3D > > > > > > EFI_FIRMWARE_VOLUME_EXT_ENTRY_USED_SIZE_TYPE.from_buffer_copy(b > > > uffer[self.ExtEntryOffset:]) > > > + else: > > > + self.ExtTypeExist =3D 0 > > > + else: > > > + self.ExtEntryExist =3D 0 > > > + self.Size =3D self.Header.FvLength > > > + self.HeaderLength =3D self.Header.HeaderLength > > > + self.HOffset =3D 0 > > > + self.DOffset =3D 0 > > > + self.ROffset =3D 0 > > > + self.Data =3D b'' > > > + if self.Header.Signature !=3D 1213613663: > > > + print('Invalid! Fv Header Signature {} is not > > > "_FVH".'.format(self.Header.Signature)) > > > + with open(str(self.Name)+'.fd', "wb") as f: > > > + f.write(struct2stream(self.Header)) > > > + assert False > > > + self.PadData =3D b'' > > > + self.Free_Space =3D 0 > > > + self.ModCheckSum() > > > + > > > + def ModCheckSum(self) -> None: > > > + # Fv Header Sums to 0. > > > + Header =3D struct2stream(self.Header)[::-1] > > > + Size =3D self.HeaderLength // 2 > > > + Sum =3D 0 > > > + for i in range(Size): > > > + Sum +=3D int(Header[i*2: i*2 + 2].hex(), 16) > > > + if Sum & 0xffff: > > > + self.Header.Checksum =3D int(hex(0x10000 - int(hex(Sum - > > > self.Header.Checksum)[-4:], 16)), 16) > > > + > > > + def ModFvExt(self) -> None: > > > + # If used space changes and self.ExtEntry.UsedSize exists, > > > self.ExtEntry.UsedSize need to be changed. > > > + if self.Header.ExtHeaderOffset and self.ExtEntryExist and > > > self.ExtTypeExist and self.ExtEntry.Hdr.ExtEntryType =3D=3D 0x03: > > > + self.ExtEntry.UsedSize =3D self.Header.FvLength - > > > self.Free_Space > > > + > > > + def ModFvSize(self) -> None: > > > + # If Fv Size changed, self.Header.FvLength and > > > self.Header.BlockMap[i].NumBlocks need to be changed. > > > + BlockMapNum =3D len(self.Header.BlockMap) > > > + for i in range(BlockMapNum): > > > + if self.Header.BlockMap[i].Length: > > > + self.Header.BlockMap[i].NumBlocks =3D > > > self.Header.FvLength // self.Header.BlockMap[i].Length > > > + > > > + def ModExtHeaderData(self) -> None: > > > + if self.Header.ExtHeaderOffset: > > > + ExtHeaderData =3D struct2stream(self.ExtHeader) > > > + ExtHeaderDataOffset =3D self.Header.ExtHeaderOffset - > > > self.HeaderLength > > > + self.Data =3D self.Data[:ExtHeaderDataOffset] + > ExtHeaderData > > > + self.Data[ExtHeaderDataOffset+20:] > > > + if self.Header.ExtHeaderOffset and self.ExtEntryExist: > > > + ExtHeaderEntryData =3D struct2stream(self.ExtEntry) > > > + ExtHeaderEntryDataOffset =3D self.Header.ExtHeaderOffset > + > > > 20 - self.HeaderLength > > > + self.Data =3D self.Data[:ExtHeaderEntryDataOffset] + > > > ExtHeaderEntryData + > > > self.Data[ExtHeaderEntryDataOffset+len(ExtHeaderEntryData):] > > > + > > > +class FfsNode: > > > + def __init__(self, buffer: bytes) -> None: > > > + self.Header =3D EFI_FFS_FILE_HEADER.from_buffer_copy(buffer) > > > + # self.Attributes =3D unpack(" > > + if self.Header.FFS_FILE_SIZE !=3D 0 and self.Header.Attribut= es !=3D > > 0xff > > > and self.Header.Attributes & 0x01 =3D=3D 1: > > > + print('Error Ffs Header! Ffs Header Size and Attributes = is > > not > > > matched!') > > > + if self.Header.FFS_FILE_SIZE =3D=3D 0 and self.Header.Attrib= utes & > > > 0x01 =3D=3D 1: > > > + self.Header =3D > > > EFI_FFS_FILE_HEADER2.from_buffer_copy(buffer) > > > + self.Name =3D > > > uuid.UUID(bytes_le=3Dstruct2stream(self.Header.Name)) > > > + self.UiName =3D b'' > > > + self.Version =3D b'' > > > + self.Size =3D self.Header.FFS_FILE_SIZE > > > + self.HeaderLength =3D self.Header.HeaderLength > > > + self.HOffset =3D 0 > > > + self.DOffset =3D 0 > > > + self.ROffset =3D 0 > > > + self.Data =3D b'' > > > + self.PadData =3D b'' > > > + > > > + def ModCheckSum(self) -> None: > > > + HeaderData =3D struct2stream(self.Header) > > > + HeaderSum =3D 0 > > > + for item in HeaderData: > > > + HeaderSum +=3D item > > > + HeaderSum -=3D self.Header.State > > > + HeaderSum -=3D self.Header.IntegrityCheck.Checksum.File > > > + if HeaderSum & 0xff: > > > + Header =3D self.Header.IntegrityCheck.Checksum.Header + > > > 0x100 - int(hex(HeaderSum)[-2:], 16) > > > + self.Header.IntegrityCheck.Checksum.Header =3D > > > int(hex(Header)[-2:], 16) > > > + > > > +class SectionNode: > > > + def __init__(self, buffer: bytes) -> None: > > > + if buffer[0:3] !=3D b'\xff\xff\xff': > > > + self.Header =3D > > > EFI_COMMON_SECTION_HEADER.from_buffer_copy(buffer) > > > + else: > > > + self.Header =3D > > > EFI_COMMON_SECTION_HEADER2.from_buffer_copy(buffer) > > > + if self.Header.Type in SectionHeaderType: > > > + self.Name =3D SectionHeaderType[self.Header.Type] > > > + elif self.Header.Type =3D=3D 0: > > > + self.Name =3D "EFI_SECTION_RAW" > > > + else: > > > + self.Name =3D "SECTION" > > > + if self.Header.Type in HeaderType: > > > + self.ExtHeader =3D self.GetExtHeader(self.Header.Type, > > > buffer[self.Header.Common_Header_Size():], > > > (self.Header.SECTION_SIZE-self.Header.Common_Header_Size())) > > > + self.HeaderLength =3D self.Header.Common_Header_Size() > + > > > self.ExtHeader.ExtHeaderSize() > > > + else: > > > + self.ExtHeader =3D None > > > + self.HeaderLength =3D self.Header.Common_Header_Size() > > > + self.Size =3D self.Header.SECTION_SIZE > > > + self.Type =3D self.Header.Type > > > + self.HOffset =3D 0 > > > + self.DOffset =3D 0 > > > + self.ROffset =3D 0 > > > + self.Data =3D b'' > > > + self.OriData =3D b'' > > > + self.OriHeader =3D b'' > > > + self.PadData =3D b'' > > > + > > > + def GetExtHeader(self, Type: int, buffer: bytes, nums: int=3D0) = -> > > None: > > > + if Type =3D=3D 0x01: > > > + return > > > EFI_COMPRESSION_SECTION.from_buffer_copy(buffer) > > > + elif Type =3D=3D 0x02: > > > + return > > > EFI_GUID_DEFINED_SECTION.from_buffer_copy(buffer) > > > + elif Type =3D=3D 0x14: > > > + return Get_VERSION_Header((nums - > > > 2)//2).from_buffer_copy(buffer) > > > + elif Type =3D=3D 0x15: > > > + return > > > Get_USER_INTERFACE_Header(nums//2).from_buffer_copy(buffer) > > > + elif Type =3D=3D 0x18: > > > + return > > > EFI_FREEFORM_SUBTYPE_GUID_SECTION.from_buffer_copy(buffer) > > > + > > > +class FreeSpaceNode: > > > + def __init__(self, buffer: bytes) -> None: > > > + self.Name =3D 'Free_Space' > > > + self.Data =3D buffer > > > + self.Size =3D len(buffer) > > > + self.HOffset =3D 0 > > > + self.DOffset =3D 0 > > > + self.ROffset =3D 0 > > > + self.PadData =3D b'' > > > \ No newline at end of file > > > diff --git a/BaseTools/Source/Python/FMMT/core/FMMTOperation.py > > > b/BaseTools/Source/Python/FMMT/core/FMMTOperation.py > > > new file mode 100644 > > > index 000000000000..a0432c4093cf > > > --- /dev/null > > > +++ b/BaseTools/Source/Python/FMMT/core/FMMTOperation.py > > > @@ -0,0 +1,140 @@ > > > +## @file > > > +# This file is used to define the functions to operate bios binary f= ile. > > > +# > > > +# Copyright (c) 2021-, Intel Corporation. All rights reserved.
> > > +# SPDX-License-Identifier: BSD-2-Clause-Patent > > > +## > > > +from core.FMMTParser import * > > > +from core.FvHandler import * > > > +from utils.FvLayoutPrint import * > > > + > > > +global Fv_count > > > +Fv_count =3D 0 > > > + > > > +# The ROOT_TYPE can be 'ROOT_TREE', 'ROOT_FV_TREE', > > 'ROOT_FFS_TREE', > > > 'ROOT_SECTION_TREE' > > > +def ParserFile(inputfile: str, ROOT_TYPE: str, logfile: str=3DNone, > > outputfile: > > > str=3DNone) -> None: > > > + # 1. Data Prepare > > > + with open(inputfile, "rb") as f: > > > + whole_data =3D f.read() > > > + FmmtParser =3D FMMTParser(inputfile, ROOT_TYPE) > > > + # 2. DataTree Create > > > + FmmtParser.ParserFromRoot(FmmtParser.WholeFvTree, > whole_data) > > > + # 3. Log Output > > > + InfoDict =3D FmmtParser.WholeFvTree.ExportTree() > > > + FmmtParser.WholeFvTree.parserTree(InfoDict, > FmmtParser.BinaryInfo) > > > + GetFormatter("").LogPrint(FmmtParser.BinaryInfo) > > > + if logfile: > > > + GetFormatter(logfile.lower()).dump(InfoDict, > > > > > > FmmtParser.BinaryInfo,"Parser_Log_{}{}".format(os.path.basename(inputfile > > ), > > > ".{}".format(logfile.lower()))) > > > + # 4. Data Encapsultion > > > + if outputfile: > > > + FmmtParser.Encapsulation(FmmtParser.WholeFvTree, False) > > > + with open(outputfile, "wb") as f: > > > + f.write(FmmtParser.FinalData) > > > + > > > +def DeleteFfs(inputfile: str, TargetFfs_name: str, outputfile: str, > > Fv_name: > > > str=3DNone) -> None: > > > + # 1. Data Prepare > > > + with open(inputfile, "rb") as f: > > > + whole_data =3D f.read() > > > + FmmtParser =3D FMMTParser(inputfile, ROOT_TREE) > > > + # 2. DataTree Create > > > + FmmtParser.ParserFromRoot(FmmtParser.WholeFvTree, > whole_data) > > > + # 3. Data Modify > > > + FmmtParser.WholeFvTree.FindNode(TargetFfs_name, > > > FmmtParser.WholeFvTree.Findlist) > > > + # Choose the Specfic DeleteFfs with Fv info > > > + if Fv_name: > > > + for item in FmmtParser.WholeFvTree.Findlist: > > > + if item.Parent.key !=3D Fv_name and > > > item.Parent.Data.Name !=3D Fv_name: > > > + FmmtParser.WholeFvTree.Findlist.remove(item) > > > + if FmmtParser.WholeFvTree.Findlist !=3D []: > > > + for Delete_Ffs in FmmtParser.WholeFvTree.Findlist: > > > + FfsMod =3D FvHandler(None, Delete_Ffs) > > > + Status =3D FfsMod.DeleteFfs() > > > + else: > > > + print('Target Ffs not found!!!') > > > + # 4. Data Encapsultion > > > + if Status: > > > + FmmtParser.Encapsulation(FmmtParser.WholeFvTree, False) > > > + with open(outputfile, "wb") as f: > > > + f.write(FmmtParser.FinalData) > > > + > > > +def AddNewFfs(inputfile: str, Fv_name: str, newffsfile: str, outputf= ile: > > str) -> > > > None: > > > + # 1. Data Prepare > > > + with open(inputfile, "rb") as f: > > > + whole_data =3D f.read() > > > + FmmtParser =3D FMMTParser(inputfile, ROOT_TREE) > > > + # 2. DataTree Create > > > + FmmtParser.ParserFromRoot(FmmtParser.WholeFvTree, > whole_data) > > > + # Get Target Fv and Target Ffs_Pad > > > + FmmtParser.WholeFvTree.FindNode(Fv_name, > > > FmmtParser.WholeFvTree.Findlist) > > > + # Create new ffs Tree > > > + with open(newffsfile, "rb") as f: > > > + new_ffs_data =3D f.read() > > > + NewFmmtParser =3D FMMTParser(newffsfile, ROOT_FFS_TREE) > > > + Status =3D False > > > + # 3. Data Modify > > > + if FmmtParser.WholeFvTree.Findlist: > > > + for TargetFv in FmmtParser.WholeFvTree.Findlist: > > > + TargetFfsPad =3D TargetFv.Child[-1] > > > + if TargetFfsPad.type =3D=3D FFS_FREE_SPACE: > > > + > > > NewFmmtParser.ParserFromRoot(NewFmmtParser.WholeFvTree, > > > new_ffs_data, TargetFfsPad.Data.HOffset) > > > + else: > > > + > > > NewFmmtParser.ParserFromRoot(NewFmmtParser.WholeFvTree, > > > new_ffs_data, TargetFfsPad.Data.HOffset+TargetFfsPad.Data.Size) > > > + FfsMod =3D > FvHandler(NewFmmtParser.WholeFvTree.Child[0], > > > TargetFfsPad) > > > + Status =3D FfsMod.AddFfs() > > > + else: > > > + print('Target Fv not found!!!') > > > + # 4. Data Encapsultion > > > + if Status: > > > + FmmtParser.Encapsulation(FmmtParser.WholeFvTree, False) > > > + with open(outputfile, "wb") as f: > > > + f.write(FmmtParser.FinalData) > > > + > > > +def ReplaceFfs(inputfile: str, Ffs_name: str, newffsfile: str, > > outputfile: str, > > > Fv_name: str=3DNone) -> None: > > > + # 1. Data Prepare > > > + with open(inputfile, "rb") as f: > > > + whole_data =3D f.read() > > > + FmmtParser =3D FMMTParser(inputfile, ROOT_TREE) > > > + # 2. DataTree Create > > > + FmmtParser.ParserFromRoot(FmmtParser.WholeFvTree, > whole_data) > > > + with open(newffsfile, "rb") as f: > > > + new_ffs_data =3D f.read() > > > + newFmmtParser =3D FMMTParser(newffsfile, FV_TREE) > > > + newFmmtParser.ParserFromRoot(newFmmtParser.WholeFvTree, > > > new_ffs_data) > > > + Status =3D False > > > + # 3. Data Modify > > > + new_ffs =3D newFmmtParser.WholeFvTree.Child[0] > > > + new_ffs.Data.PadData =3D GetPadSize(new_ffs.Data.Size, 8) * b'\x= ff' > > > + FmmtParser.WholeFvTree.FindNode(Ffs_name, > > > FmmtParser.WholeFvTree.Findlist) > > > + if Fv_name: > > > + for item in FmmtParser.WholeFvTree.Findlist: > > > + if item.Parent.key !=3D Fv_name and > > > item.Parent.Data.Name !=3D Fv_name: > > > + FmmtParser.WholeFvTree.Findlist.remove(item) > > > + if FmmtParser.WholeFvTree.Findlist !=3D []: > > > + for TargetFfs in FmmtParser.WholeFvTree.Findlist: > > > + FfsMod =3D > FvHandler(newFmmtParser.WholeFvTree.Child[0], > > > TargetFfs) > > > + Status =3D FfsMod.ReplaceFfs() > > > + else: > > > + print('Target Ffs not found!!!') > > > + # 4. Data Encapsultion > > > + if Status: > > > + FmmtParser.Encapsulation(FmmtParser.WholeFvTree, False) > > > + with open(outputfile, "wb") as f: > > > + f.write(FmmtParser.FinalData) > > > + > > > +def ExtractFfs(inputfile: str, Ffs_name: str, outputfile: str) -> No= ne: > > > + with open(inputfile, "rb") as f: > > > + whole_data =3D f.read() > > > + FmmtParser =3D FMMTParser(inputfile, ROOT_TREE) > > > + FmmtParser.ParserFromRoot(FmmtParser.WholeFvTree, > whole_data) > > > + FmmtParser.WholeFvTree.FindNode(Ffs_name, > > > FmmtParser.WholeFvTree.Findlist) > > > + if FmmtParser.WholeFvTree.Findlist !=3D []: > > > + TargetNode =3D FmmtParser.WholeFvTree.Findlist[0] > > > + TargetFv =3D TargetNode.Parent > > > + if TargetFv.Data.Header.Attributes & > EFI_FVB2_ERASE_POLARITY: > > > + TargetNode.Data.Header.State =3D c_uint8( > > > + ~TargetNode.Data.Header.State) > > > + FinalData =3D struct2stream(TargetNode.Data.Header) + > > > TargetNode.Data.Data > > > + with open(outputfile, "wb") as f: > > > + f.write(FinalData) > > > + else: > > > + print('Target Ffs not found!!!') > > > \ No newline at end of file > > > diff --git a/BaseTools/Source/Python/FMMT/core/FMMTParser.py > > > b/BaseTools/Source/Python/FMMT/core/FMMTParser.py > > > new file mode 100644 > > > index 000000000000..6e54b860a9c9 > > > --- /dev/null > > > +++ b/BaseTools/Source/Python/FMMT/core/FMMTParser.py > > > @@ -0,0 +1,86 @@ > > > +## @file > > > +# This file is used to define the interface of Bios Parser. > > > +# > > > +# Copyright (c) 2021-, Intel Corporation. All rights reserved.
> > > +# SPDX-License-Identifier: BSD-2-Clause-Patent > > > +## > > > +from PI.Common import * > > > +from core.BinaryFactoryProduct import ParserEntry > > > +from core.BiosTreeNode import * > > > +from core.BiosTree import * > > > +from core.GuidTools import * > > > + > > > +class FMMTParser: > > > + def __init__(self, name: str, TYPE: str) -> None: > > > + self.WholeFvTree =3D BIOSTREE(name) > > > + self.WholeFvTree.type =3D TYPE > > > + self.FinalData =3D b'' > > > + self.BinaryInfo =3D [] > > > + > > > + ## Parser the nodes in WholeTree. > > > + def ParserFromRoot(self, WholeFvTree=3DNone, whole_data: > bytes=3Db'', > > > Reloffset: int=3D0) -> None: > > > + if WholeFvTree.type =3D=3D ROOT_TREE or WholeFvTree.type =3D= =3D > > > ROOT_FV_TREE: > > > + ParserEntry().DataParser(self.WholeFvTree, whole_data, > > > Reloffset) > > > + else: > > > + ParserEntry().DataParser(WholeFvTree, whole_data, > > > Reloffset) > > > + for Child in WholeFvTree.Child: > > > + self.ParserFromRoot(Child, "") > > > + > > > + ## Encapuslation all the data in tree into self.FinalData > > > + def Encapsulation(self, rootTree, CompressStatus: bool) -> None: > > > + # If current node is Root node, skip it. > > > + if rootTree.type =3D=3D ROOT_TREE or rootTree.type =3D=3D > > > ROOT_FV_TREE or rootTree.type =3D=3D ROOT_FFS_TREE or rootTree.type = =3D=3D > > > ROOT_SECTION_TREE: > > > + print('Start at Root !') > > > + # If current node do not have Header, just add Data. > > > + elif rootTree.type =3D=3D BINARY_DATA or rootTree.type =3D= =3D > > > FFS_FREE_SPACE: > > > + self.FinalData +=3D rootTree.Data.Data > > > + rootTree.Child =3D [] > > > + # If current node do not have Child and ExtHeader, just add = its > > > Header and Data. > > > + elif rootTree.type =3D=3D DATA_FV_TREE or rootTree.type =3D= =3D > FFS_PAD: > > > + self.FinalData +=3D struct2stream(rootTree.Data.Header) = + > > > rootTree.Data.Data + rootTree.Data.PadData > > > + if rootTree.isFinalChild(): > > > + ParTree =3D rootTree.Parent > > > + if ParTree.type !=3D 'ROOT': > > > + self.FinalData +=3D ParTree.Data.PadData > > > + rootTree.Child =3D [] > > > + # If current node is not Section node and may have Child and > > > ExtHeader, add its Header,ExtHeader. If do not have Child, add its Da= ta. > > > + elif rootTree.type =3D=3D FV_TREE or rootTree.type =3D=3D FF= S_TREE or > > > rootTree.type =3D=3D SEC_FV_TREE: > > > + if rootTree.HasChild(): > > > + self.FinalData +=3D > struct2stream(rootTree.Data.Header) > > > + else: > > > + self.FinalData +=3D > struct2stream(rootTree.Data.Header) + > > > rootTree.Data.Data + rootTree.Data.PadData > > > + if rootTree.isFinalChild(): > > > + ParTree =3D rootTree.Parent > > > + if ParTree.type !=3D 'ROOT': > > > + self.FinalData +=3D ParTree.Data.PadData > > > + # If current node is Section, need to consider its ExtHeader= , > > Child > > > and Compressed Status. > > > + elif rootTree.type =3D=3D SECTION_TREE: > > > + # Not compressed section > > > + if rootTree.Data.OriData =3D=3D b'' or > (rootTree.Data.OriData !=3D > > > b'' and CompressStatus): > > > + if rootTree.HasChild(): > > > + if rootTree.Data.ExtHeader: > > > + self.FinalData +=3D > > > struct2stream(rootTree.Data.Header) + > > > struct2stream(rootTree.Data.ExtHeader) > > > + else: > > > + self.FinalData +=3D > > > struct2stream(rootTree.Data.Header) > > > + else: > > > + Data =3D rootTree.Data.Data > > > + if rootTree.Data.ExtHeader: > > > + self.FinalData +=3D > > > struct2stream(rootTree.Data.Header) + > > > struct2stream(rootTree.Data.ExtHeader) + Data + rootTree.Data.PadData > > > + else: > > > + self.FinalData +=3D > > > struct2stream(rootTree.Data.Header) + Data + rootTree.Data.PadData > > > + if rootTree.isFinalChild(): > > > + ParTree =3D rootTree.Parent > > > + self.FinalData +=3D ParTree.Data.PadData > > > + # If compressed section > > > + else: > > > + Data =3D rootTree.Data.OriData > > > + rootTree.Child =3D [] > > > + if rootTree.Data.ExtHeader: > > > + self.FinalData +=3D > > > struct2stream(rootTree.Data.Header) + > > > struct2stream(rootTree.Data.ExtHeader) + Data + rootTree.Data.PadData > > > + else: > > > + self.FinalData +=3D > > > struct2stream(rootTree.Data.Header) + Data + rootTree.Data.PadData > > > + if rootTree.isFinalChild(): > > > + ParTree =3D rootTree.Parent > > > + self.FinalData +=3D ParTree.Data.PadData > > > + for Child in rootTree.Child: > > > + self.Encapsulation(Child, CompressStatus) > > > diff --git a/BaseTools/Source/Python/FMMT/core/FvHandler.py > > > b/BaseTools/Source/Python/FMMT/core/FvHandler.py > > > new file mode 100644 > > > index 000000000000..f73f1fd65c07 > > > --- /dev/null > > > +++ b/BaseTools/Source/Python/FMMT/core/FvHandler.py > > > @@ -0,0 +1,521 @@ > > > +## @file > > > +# This file is used to the implementation of Bios layout handler. > > > +# > > > +# Copyright (c) 2021-, Intel Corporation. All rights reserved.
> > > +# SPDX-License-Identifier: BSD-2-Clause-Patent > > > +## > > > +import os > > > +from core.BiosTree import * > > > +from core.GuidTools import GUIDTools > > > +from core.BiosTreeNode import * > > > +from PI.Common import * > > > + > > > +EFI_FVB2_ERASE_POLARITY =3D 0x00000800 > > > + > > > +def ChangeSize(TargetTree, size_delta: int=3D0) -> None: > > > + if type(TargetTree.Data.Header) =3D=3D type(EFI_FFS_FILE_HEADER2= ()) > or > > > type(TargetTree.Data.Header) =3D=3D > > type(EFI_COMMON_SECTION_HEADER2()): > > > + TargetTree.Data.Size -=3D size_delta > > > + TargetTree.Data.Header.ExtendedSize -=3D size_delta > > > + elif TargetTree.type =3D=3D SECTION_TREE and > TargetTree.Data.OriData: > > > + OriSize =3D TargetTree.Data.Header.SECTION_SIZE > > > + OriSize -=3D size_delta > > > + TargetTree.Data.Header.Size[0] =3D OriSize % (16**2) > > > + TargetTree.Data.Header.Size[1] =3D OriSize % (16**4) //(16**= 2) > > > + TargetTree.Data.Header.Size[2] =3D OriSize // (16**4) > > > + else: > > > + TargetTree.Data.Size -=3D size_delta > > > + TargetTree.Data.Header.Size[0] =3D TargetTree.Data.Size % > (16**2) > > > + TargetTree.Data.Header.Size[1] =3D TargetTree.Data.Size % > (16**4) > > > //(16**2) > > > + TargetTree.Data.Header.Size[2] =3D TargetTree.Data.Size // > (16**4) > > > + > > > +def ModifyFfsType(TargetFfs) -> None: > > > + if type(TargetFfs.Data.Header) =3D=3D type(EFI_FFS_FILE_HEADER()= ) and > > > TargetFfs.Data.Size > 0xFFFFFF: > > > + ExtendSize =3D TargetFfs.Data.Header.FFS_FILE_SIZE + 8 > > > + New_Header =3D EFI_FFS_FILE_HEADER2() > > > + New_Header.Name =3D TargetFfs.Data.Header.Name > > > + New_Header.IntegrityCheck =3D > > > TargetFfs.Data.Header.IntegrityCheck > > > + New_Header.Type =3D TargetFfs.Data.Header.Type > > > + New_Header.Attributes =3D TargetFfs.Data.Header.Attributes > > > + New_Header.Size =3D 0 > > > + New_Header.State =3D TargetFfs.Data.Header.State > > > + New_Header.ExtendedSize =3D ExtendSize > > > + TargetFfs.Data.Header =3D New_Header > > > + TargetFfs.Data.Size =3D TargetFfs.Data.Header.FFS_FILE_SIZE > > > + TargetFfs.Data.HeaderLength =3D > > > TargetFfs.Data.Header.HeaderLength > > > + TargetFfs.Data.ModCheckSum() > > > + elif type(TargetFfs.Data.Header) =3D=3D type(EFI_FFS_FILE_HEADER= 2()) > and > > > TargetFfs.Data.Size <=3D 0xFFFFFF: > > > + New_Header =3D EFI_FFS_FILE_HEADER() > > > + New_Header.Name =3D TargetFfs.Data.Header.Name > > > + New_Header.IntegrityCheck =3D > > > TargetFfs.Data.Header.IntegrityCheck > > > + New_Header.Type =3D TargetFfs.Data.Header.Type > > > + New_Header.Attributes =3D TargetFfs.Data.Header.Attributes > > > + New_Header.Size =3D TargetFfs.Data.HeaderLength + > > > TargetFfs.Data.Size > > > + New_Header.State =3D TargetFfs.Data.Header.State > > > + TargetFfs.Data.Header =3D New_Header > > > + TargetFfs.Data.Size =3D TargetFfs.Data.Header.FFS_FILE_SIZE > > > + TargetFfs.Data.HeaderLength =3D > > > TargetFfs.Data.Header.HeaderLength > > > + TargetFfs.Data.ModCheckSum() > > > + if struct2stream(TargetFfs.Parent.Data.Header.FileSystemGuid= ) > =3D=3D > > > EFI_FIRMWARE_FILE_SYSTEM3_GUID_BYTE: > > > + NeedChange =3D True > > > + for item in TargetFfs.Parent.Child: > > > + if type(item.Data.Header) =3D=3D > > > type(EFI_FFS_FILE_HEADER2()): > > > + NeedChange =3D False > > > + if NeedChange: > > > + TargetFfs.Parent.Data.Header.FileSystemGuid =3D > > > ModifyGuidFormat("8c8ce578-8a3d-4f1c-9935-896185c32dd3") > > > + > > > + if type(TargetFfs.Data.Header) =3D=3D type(EFI_FFS_FILE_HEADER2(= )): > > > + TarParent =3D TargetFfs.Parent > > > + while TarParent: > > > + if TarParent.type =3D=3D FV_TREE and > > > struct2stream(TarParent.Data.Header.FileSystemGuid) =3D=3D > > > EFI_FIRMWARE_FILE_SYSTEM2_GUID_BYTE: > > > + TarParent.Data.Header.FileSystemGuid =3D > > > ModifyGuidFormat("5473C07A-3DCB-4dca-BD6F-1E9689E7349A") > > > + TarParent =3D TarParent.Parent > > > + > > > +class FvHandler: > > > + def __init__(self, NewFfs, TargetFfs) -> None: > > > + self.NewFfs =3D NewFfs > > > + self.TargetFfs =3D TargetFfs > > > + self.Status =3D False > > > + self.Remain_New_Free_Space =3D 0 > > > + > > > + ## Use for Compress the Section Data > > > + def CompressData(self, TargetTree) -> None: > > > + TreePath =3D TargetTree.GetTreePath() > > > + pos =3D len(TreePath) > > > + self.Status =3D True > > > + while pos: > > > + if self.Status: > > > + if TreePath[pos-1].type =3D=3D SECTION_TREE and > > > TreePath[pos-1].Data.Type =3D=3D 0x02: > > > + self.CompressSectionData(TreePath[pos-1], > None, > > > TreePath[pos-1].Data.ExtHeader.SectionDefinitionGuid) > > > + else: > > > + if pos =3D=3D len(TreePath): > > > + > self.CompressSectionData(TreePath[pos-1], > > > pos) > > > + else: > > > + > self.CompressSectionData(TreePath[pos-1], > > > None) > > > + pos -=3D 1 > > > + > > > + def CompressSectionData(self, TargetTree, pos: int, GuidTool=3DN= one) > -> > > > None: > > > + NewData =3D b'' > > > + temp_save_child =3D TargetTree.Child > > > + if TargetTree.Data: > > > + for item in temp_save_child: > > > + if item.type =3D=3D SECTION_TREE and not > > > item.Data.OriData and item.Data.ExtHeader: > > > + NewData +=3D struct2stream(item.Data.Header) > + > > > struct2stream(item.Data.ExtHeader) + item.Data.Data + > item.Data.PadData > > > + elif item.type =3D=3D SECTION_TREE and > item.Data.OriData > > > and not item.Data.ExtHeader: > > > + NewData +=3D struct2stream(item.Data.Header) > + > > > item.Data.OriData + item.Data.PadData > > > + elif item.type =3D=3D SECTION_TREE and > item.Data.OriData > > > and item.Data.ExtHeader: > > > + NewData +=3D struct2stream(item.Data.Header) > + > > > struct2stream(item.Data.ExtHeader) + item.Data.OriData + > > > item.Data.PadData > > > + elif item.type =3D=3D FFS_FREE_SPACE: > > > + NewData +=3D item.Data.Data + > item.Data.PadData > > > + else: > > > + NewData +=3D struct2stream(item.Data.Header) > + > > > item.Data.Data + item.Data.PadData > > > + if TargetTree.type =3D=3D FFS_TREE: > > > + New_Pad_Size =3D GetPadSize(len(NewData), 8) > > > + Size_delta =3D len(NewData) - > len(TargetTree.Data.Data) > > > + ChangeSize(TargetTree, -Size_delta) > > > + Delta_Pad_Size =3D len(TargetTree.Data.PadData) - > > > New_Pad_Size > > > + self.Remain_New_Free_Space +=3D Delta_Pad_Size > > > + TargetTree.Data.PadData =3D b'\xff' * New_Pad_Size > > > + TargetTree.Data.ModCheckSum() > > > + elif TargetTree.type =3D=3D FV_TREE or TargetTree.type = =3D=3D > > > SEC_FV_TREE and not pos: > > > + if self.Remain_New_Free_Space: > > > + if TargetTree.Data.Free_Space: > > > + TargetTree.Data.Free_Space +=3D > > > self.Remain_New_Free_Space > > > + NewData +=3D > self.Remain_New_Free_Space * > > > b'\xff' > > > + TargetTree.Child[-1].Data.Data +=3D > > > self.Remain_New_Free_Space * b'\xff' > > > + else: > > > + TargetTree.Data.Data +=3D > > > self.Remain_New_Free_Space * b'\xff' > > > + New_Free_Space =3D > BIOSTREE('FREE_SPACE') > > > + New_Free_Space.type =3D FFS_FREE_SPACE > > > + New_Free_Space.Data =3D > > > FreeSpaceNode(b'\xff' * self.Remain_New_Free_Space) > > > + TargetTree.insertChild(New_Free_Space) > > > + self.Remain_New_Free_Space =3D 0 > > > + if TargetTree.type =3D=3D SEC_FV_TREE: > > > + Size_delta =3D len(NewData) + > > > self.Remain_New_Free_Space - len(TargetTree.Data.Data) > > > + TargetTree.Data.Header.FvLength +=3D Size_delta > > > + TargetTree.Data.ModFvExt() > > > + TargetTree.Data.ModFvSize() > > > + TargetTree.Data.ModExtHeaderData() > > > + self.ModifyFvExtData(TargetTree) > > > + TargetTree.Data.ModCheckSum() > > > + elif TargetTree.type =3D=3D SECTION_TREE and > > > TargetTree.Data.Type !=3D 0x02: > > > + New_Pad_Size =3D GetPadSize(len(NewData), 4) > > > + Size_delta =3D len(NewData) - > len(TargetTree.Data.Data) > > > + ChangeSize(TargetTree, -Size_delta) > > > + if TargetTree.NextRel: > > > + Delta_Pad_Size =3D len(TargetTree.Data.PadData) > - > > > New_Pad_Size > > > + self.Remain_New_Free_Space +=3D > Delta_Pad_Size > > > + TargetTree.Data.PadData =3D b'\x00' * > > > New_Pad_Size > > > + TargetTree.Data.Data =3D NewData > > > + if GuidTool: > > > + ParPath =3D > > > > > > os.path.abspath(os.path.dirname(os.path.abspath(__file__))+os.path.sep+".= . > > ") > > > + ToolPath =3D os.path.join(ParPath, r'FMMTConfig.ini') > > > + guidtool =3D > > > GUIDTools(ToolPath).__getitem__(struct2stream(GuidTool)) > > > + CompressedData =3D guidtool.pack(TargetTree.Data.Data) > > > + if len(CompressedData) < len(TargetTree.Data.OriData): > > > + New_Pad_Size =3D GetPadSize(len(CompressedData), > 4) > > > + Size_delta =3D len(CompressedData) - > > > len(TargetTree.Data.OriData) > > > + ChangeSize(TargetTree, -Size_delta) > > > + if TargetTree.NextRel: > > > + TargetTree.Data.PadData =3D b'\x00' * > > > New_Pad_Size > > > + self.Remain_New_Free_Space =3D > > > len(TargetTree.Data.OriData) + len(TargetTree.Data.PadData) - > > > len(CompressedData) - New_Pad_Size > > > + else: > > > + TargetTree.Data.PadData =3D b'' > > > + self.Remain_New_Free_Space =3D > > > len(TargetTree.Data.OriData) - len(CompressedData) > > > + TargetTree.Data.OriData =3D CompressedData > > > + elif len(CompressedData) =3D=3D > len(TargetTree.Data.OriData): > > > + TargetTree.Data.OriData =3D CompressedData > > > + elif len(CompressedData) > len(TargetTree.Data.OriData): > > > + New_Pad_Size =3D GetPadSize(CompressedData, 4) > > > + self.Remain_New_Free_Space =3D > len(CompressedData) + > > > New_Pad_Size - len(TargetTree.Data.OriData) - > > len(TargetTree.Data.PadData) > > > + Size_delta =3D len(TargetTree.Data.OriData) - > > > len(CompressedData) > > > + ChangeSize(TargetTree, -Size_delta) > > > + if TargetTree.NextRel: > > > + TargetTree.Data.PadData =3D b'\x00' * > > > New_Pad_Size > > > + TargetTree.Data.OriData =3D CompressedData > > > + self.ModifyTest(TargetTree, > > > self.Remain_New_Free_Space) > > > + self.Status =3D False > > > + > > > + def ModifyFvExtData(self, TreeNode) -> None: > > > + FvExtData =3D b'' > > > + if TreeNode.Data.Header.ExtHeaderOffset: > > > + FvExtHeader =3D struct2stream(TreeNode.Data.ExtHeader) > > > + FvExtData +=3D FvExtHeader > > > + if TreeNode.Data.Header.ExtHeaderOffset and > > > TreeNode.Data.ExtEntryExist: > > > + FvExtEntry =3D struct2stream(TreeNode.Data.ExtEntry) > > > + FvExtData +=3D FvExtEntry > > > + if FvExtData: > > > + InfoNode =3D TreeNode.Child[0] > > > + InfoNode.Data.Data =3D FvExtData + > > > InfoNode.Data.Data[TreeNode.Data.ExtHeader.ExtHeaderSize:] > > > + InfoNode.Data.ModCheckSum() > > > + > > > + def ModifyTest(self, ParTree, Needed_Space: int) -> None: > > > + if Needed_Space > 0: > > > + if ParTree.type =3D=3D FV_TREE or ParTree.type =3D=3D > SEC_FV_TREE: > > > + ParTree.Data.Data =3D b'' > > > + Needed_Space =3D Needed_Space - > > > ParTree.Data.Free_Space > > > + if Needed_Space < 0: > > > + ParTree.Child[-1].Data.Data =3D b'\xff' * > > > (-Needed_Space) > > > + ParTree.Data.Free_Space =3D (-Needed_Space) > > > + self.Status =3D True > > > + else: > > > + if ParTree.type =3D=3D FV_TREE: > > > + self.Status =3D False > > > + else: > > > + BlockSize =3D > > > ParTree.Data.Header.BlockMap[0].Length > > > + New_Add_Len =3D BlockSize - > > > Needed_Space%BlockSize > > > + if New_Add_Len % BlockSize: > > > + ParTree.Child[-1].Data.Data =3D b'\xff' = * > > > New_Add_Len > > > + ParTree.Data.Free_Space =3D > > > New_Add_Len > > > + Needed_Space +=3D New_Add_Len > > > + else: > > > + > ParTree.Child.remove(ParTree.Child[-1]) > > > + ParTree.Data.Free_Space =3D 0 > > > + ParTree.Data.Size +=3D Needed_Space > > > + ParTree.Data.Header.Fvlength =3D > > > ParTree.Data.Size > > > + for item in ParTree.Child: > > > + if item.type =3D=3D FFS_FREE_SPACE: > > > + ParTree.Data.Data +=3D item.Data.Data + > > > item.Data.PadData > > > + else: > > > + ParTree.Data.Data +=3D > > > struct2stream(item.Data.Header)+ item.Data.Data + item.Data.PadData > > > + ParTree.Data.ModFvExt() > > > + ParTree.Data.ModFvSize() > > > + ParTree.Data.ModExtHeaderData() > > > + self.ModifyFvExtData(ParTree) > > > + ParTree.Data.ModCheckSum() > > > + elif ParTree.type =3D=3D FFS_TREE: > > > + ParTree.Data.Data =3D b'' > > > + for item in ParTree.Child: > > > + if item.Data.OriData: > > > + if item.Data.ExtHeader: > > > + ParTree.Data.Data +=3D > > > struct2stream(item.Data.Header) + struct2stream(item.Data.ExtHeader) > + > > > item.Data.OriData + item.Data.PadData > > > + else: > > > + ParTree.Data.Data +=3D > > > struct2stream(item.Data.Header)+ item.Data.OriData + > item.Data.PadData > > > + else: > > > + if item.Data.ExtHeader: > > > + ParTree.Data.Data +=3D > > > struct2stream(item.Data.Header) + struct2stream(item.Data.ExtHeader) > + > > > item.Data.Data + item.Data.PadData > > > + else: > > > + ParTree.Data.Data +=3D > > > struct2stream(item.Data.Header)+ item.Data.Data + item.Data.PadData > > > + ChangeSize(ParTree, -Needed_Space) > > > + New_Pad_Size =3D GetPadSize(ParTree.Data.Size, 8) > > > + Delta_Pad_Size =3D New_Pad_Size - > > > len(ParTree.Data.PadData) > > > + Needed_Space +=3D Delta_Pad_Size > > > + ParTree.Data.PadData =3D b'\xff' * > > > GetPadSize(ParTree.Data.Size, 8) > > > + ParTree.Data.ModCheckSum() > > > + elif ParTree.type =3D=3D SECTION_TREE: > > > + OriData =3D ParTree.Data.Data > > > + ParTree.Data.Data =3D b'' > > > + for item in ParTree.Child: > > > + if item.type =3D=3D SECTION_TREE and > > > item.Data.ExtHeader and item.Data.Type !=3D 0x02: > > > + ParTree.Data.Data +=3D > > > struct2stream(item.Data.Header) + struct2stream(item.Data.ExtHeader) > + > > > item.Data.Data + item.Data.PadData > > > + elif item.type =3D=3D SECTION_TREE and > > > item.Data.ExtHeader and item.Data.Type =3D=3D 0x02: > > > + ParTree.Data.Data +=3D > > > struct2stream(item.Data.Header) + struct2stream(item.Data.ExtHeader) > + > > > item.Data.OriData + item.Data.PadData > > > + else: > > > + ParTree.Data.Data +=3D > > > struct2stream(item.Data.Header) + item.Data.Data + item.Data.PadData > > > + if ParTree.Data.Type =3D=3D 0x02: > > > + ParTree.Data.Size +=3D Needed_Space > > > + ParPath =3D > > > os.path.abspath(os.path.dirname(os.path.abspath(__file__))) > > > + ToolPath =3D > os.path.join(os.path.dirname(ParPath), > > > r'FMMTConfig.ini') > > > + guidtool =3D > > > > > > GUIDTools(ToolPath).__getitem__(struct2stream(ParTree.Data.ExtHeader.Se > > c > > > tionDefinitionGuid)) > > > + CompressedData =3D > > > guidtool.pack(ParTree.Data.Data) > > > + Needed_Space =3D len(CompressedData) - > > > len(ParTree.Data.OriData) > > > + ParTree.Data.OriData =3D CompressedData > > > + New_Size =3D ParTree.Data.HeaderLength + > > > len(CompressedData) > > > + ParTree.Data.Header.Size[0] =3D New_Size % > (16**2) > > > + ParTree.Data.Header.Size[1] =3D New_Size % > (16**4) > > > //(16**2) > > > + ParTree.Data.Header.Size[2] =3D New_Size // > (16**4) > > > + if ParTree.NextRel: > > > + New_Pad_Size =3D GetPadSize(New_Size, 4) > > > + Delta_Pad_Size =3D New_Pad_Size - > > > len(ParTree.Data.PadData) > > > + ParTree.Data.PadData =3D b'\x00' * > > > New_Pad_Size > > > + Needed_Space +=3D Delta_Pad_Size > > > + else: > > > + ParTree.Data.PadData =3D b'' > > > + elif Needed_Space: > > > + ChangeSize(ParTree, -Needed_Space) > > > + New_Pad_Size =3D GetPadSize(ParTree.Data.Size, > 4) > > > + Delta_Pad_Size =3D New_Pad_Size - > > > len(ParTree.Data.PadData) > > > + Needed_Space +=3D Delta_Pad_Size > > > + ParTree.Data.PadData =3D b'\x00' * > New_Pad_Size > > > + NewParTree =3D ParTree.Parent > > > + ROOT_TYPE =3D [ROOT_FV_TREE, ROOT_FFS_TREE, > > > ROOT_SECTION_TREE, ROOT_TREE] > > > + if NewParTree and NewParTree.type not in ROOT_TYPE: > > > + self.ModifyTest(NewParTree, Needed_Space) > > > + else: > > > + self.Status =3D True > > > + > > > + def ReplaceFfs(self) -> bool: > > > + TargetFv =3D self.TargetFfs.Parent > > > + # If the Fv Header Attributes is EFI_FVB2_ERASE_POLARITY, > Child > > > Ffs Header State need be reversed. > > > + if TargetFv.Data.Header.Attributes & > EFI_FVB2_ERASE_POLARITY: > > > + self.NewFfs.Data.Header.State =3D c_uint8( > > > + ~self.NewFfs.Data.Header.State) > > > + # NewFfs parsing will not calculate the PadSize, thus > > recalculate. > > > + self.NewFfs.Data.PadData =3D b'\xff' * > > > GetPadSize(self.NewFfs.Data.Size, 8) > > > + if self.NewFfs.Data.Size >=3D self.TargetFfs.Data.Size: > > > + Needed_Space =3D self.NewFfs.Data.Size + > > > len(self.NewFfs.Data.PadData) - self.TargetFfs.Data.Size - > > > len(self.TargetFfs.Data.PadData) > > > + # If TargetFv have enough free space, just move part of > the > > > free space to NewFfs. > > > + if TargetFv.Data.Free_Space >=3D Needed_Space: > > > + # Modify TargetFv Child info and BiosTree. > > > + TargetFv.Child[-1].Data.Data =3D b'\xff' * > > > (TargetFv.Data.Free_Space - Needed_Space) > > > + TargetFv.Data.Free_Space -=3D Needed_Space > > > + Target_index =3D TargetFv.Child.index(self.TargetFfs= ) > > > + TargetFv.Child.remove(self.TargetFfs) > > > + TargetFv.insertChild(self.NewFfs, Target_index) > > > + # Modify TargetFv Header and ExtHeader info. > > > + TargetFv.Data.ModFvExt() > > > + TargetFv.Data.ModFvSize() > > > + TargetFv.Data.ModExtHeaderData() > > > + self.ModifyFvExtData(TargetFv) > > > + TargetFv.Data.ModCheckSum() > > > + # return the Status > > > + self.Status =3D True > > > + # If TargetFv do not have enough free space, need move > part > > > of the free space of TargetFv's parent Fv to TargetFv/NewFfs. > > > + else: > > > + if TargetFv.type =3D=3D FV_TREE: > > > + self.Status =3D False > > > + else: > > > + # Recalculate TargetFv needed space to keep it > > > match the BlockSize setting. > > > + Needed_Space -=3D TargetFv.Data.Free_Space > > > + BlockSize =3D > > > TargetFv.Data.Header.BlockMap[0].Length > > > + New_Add_Len =3D BlockSize - > > > Needed_Space%BlockSize > > > + Target_index =3D > TargetFv.Child.index(self.TargetFfs) > > > + if New_Add_Len % BlockSize: > > > + TargetFv.Child[-1].Data.Data =3D b'\xff' * > > > New_Add_Len > > > + TargetFv.Data.Free_Space =3D > New_Add_Len > > > + Needed_Space +=3D New_Add_Len > > > + TargetFv.insertChild(self.NewFfs, > Target_index) > > > + TargetFv.Child.remove(self.TargetFfs) > > > + else: > > > + TargetFv.Child.remove(self.TargetFfs) > > > + TargetFv.Data.Free_Space =3D 0 > > > + TargetFv.insertChild(self.NewFfs) > > > + # Encapsulate the Fv Data for update. > > > + TargetFv.Data.Data =3D b'' > > > + for item in TargetFv.Child: > > > + if item.type =3D=3D FFS_FREE_SPACE: > > > + TargetFv.Data.Data +=3D > item.Data.Data + > > > item.Data.PadData > > > + else: > > > + TargetFv.Data.Data +=3D > > > struct2stream(item.Data.Header)+ item.Data.Data + item.Data.PadData > > > + TargetFv.Data.Size +=3D Needed_Space > > > + # Modify TargetFv Data Header and ExtHeader > info. > > > + TargetFv.Data.Header.FvLength =3D > > > TargetFv.Data.Size > > > + TargetFv.Data.ModFvExt() > > > + TargetFv.Data.ModFvSize() > > > + TargetFv.Data.ModExtHeaderData() > > > + self.ModifyFvExtData(TargetFv) > > > + TargetFv.Data.ModCheckSum() > > > + # Start free space calculating and moving > process. > > > + self.ModifyTest(TargetFv.Parent, > Needed_Space) > > > + else: > > > + New_Free_Space =3D self.TargetFfs.Data.Size - > > > self.NewFfs.Data.Size > > > + # If TargetFv already have free space, move the new free > > > space into it. > > > + if TargetFv.Data.Free_Space: > > > + TargetFv.Child[-1].Data.Data +=3D b'\xff' * > > > New_Free_Space > > > + TargetFv.Data.Free_Space +=3D New_Free_Space > > > + Target_index =3D TargetFv.Child.index(self.TargetFfs= ) > > > + TargetFv.Child.remove(self.TargetFfs) > > > + TargetFv.insertChild(self.NewFfs, Target_index) > > > + self.Status =3D True > > > + # If TargetFv do not have free space, create free space = for > > Fv. > > > + else: > > > + New_Free_Space_Tree =3D BIOSTREE('FREE_SPACE') > > > + New_Free_Space_Tree.type =3D FFS_FREE_SPACE > > > + New_Free_Space_Tree.Data =3D FfsNode(b'\xff' * > > > New_Free_Space) > > > + TargetFv.Data.Free_Space =3D New_Free_Space > > > + TargetFv.insertChild(New_Free_Space) > > > + Target_index =3D TargetFv.Child.index(self.TargetFfs= ) > > > + TargetFv.Child.remove(self.TargetFfs) > > > + TargetFv.insertChild(self.NewFfs, Target_index) > > > + self.Status =3D True > > > + # Modify TargetFv Header and ExtHeader info. > > > + TargetFv.Data.ModFvExt() > > > + TargetFv.Data.ModFvSize() > > > + TargetFv.Data.ModExtHeaderData() > > > + self.ModifyFvExtData(TargetFv) > > > + TargetFv.Data.ModCheckSum() > > > + return self.Status > > > + > > > + def AddFfs(self) -> bool: > > > + # NewFfs parsing will not calculate the PadSize, thus > > recalculate. > > > + self.NewFfs.Data.PadData =3D b'\xff' * > > > GetPadSize(self.NewFfs.Data.Size, 8) > > > + if self.TargetFfs.type =3D=3D FFS_FREE_SPACE: > > > + TargetLen =3D self.NewFfs.Data.Size + > > > len(self.NewFfs.Data.PadData) - self.TargetFfs.Data.Size - > > > len(self.TargetFfs.Data.PadData) > > > + TargetFv =3D self.TargetFfs.Parent > > > + # If the Fv Header Attributes is > EFI_FVB2_ERASE_POLARITY, > > > Child Ffs Header State need be reversed. > > > + if TargetFv.Data.Header.Attributes & > > > EFI_FVB2_ERASE_POLARITY: > > > + self.NewFfs.Data.Header.State =3D c_uint8( > > > + ~self.NewFfs.Data.Header.State) > > > + # If TargetFv have enough free space, just move part of > the > > > free space to NewFfs, split free space to NewFfs and new free space. > > > + if TargetLen < 0: > > > + self.Status =3D True > > > + self.TargetFfs.Data.Data =3D b'\xff' * (-TargetLen) > > > + TargetFv.Data.Free_Space =3D (-TargetLen) > > > + TargetFv.Data.ModFvExt() > > > + TargetFv.Data.ModExtHeaderData() > > > + self.ModifyFvExtData(TargetFv) > > > + TargetFv.Data.ModCheckSum() > > > + TargetFv.insertChild(self.NewFfs, -1) > > > + ModifyFfsType(self.NewFfs) > > > + elif TargetLen =3D=3D 0: > > > + self.Status =3D True > > > + TargetFv.Child.remove(self.TargetFfs) > > > + TargetFv.insertChild(self.NewFfs) > > > + ModifyFfsType(self.NewFfs) > > > + # If TargetFv do not have enough free space, need move > part > > > of the free space of TargetFv's parent Fv to TargetFv/NewFfs. > > > + else: > > > + if TargetFv.type =3D=3D FV_TREE: > > > + self.Status =3D False > > > + elif TargetFv.type =3D=3D SEC_FV_TREE: > > > + # Recalculate TargetFv needed space to keep it > > > match the BlockSize setting. > > > + BlockSize =3D > > > TargetFv.Data.Header.BlockMap[0].Length > > > + New_Add_Len =3D BlockSize - > TargetLen%BlockSize > > > + if New_Add_Len % BlockSize: > > > + self.TargetFfs.Data.Data =3D b'\xff' * > > > New_Add_Len > > > + self.TargetFfs.Data.Size =3D New_Add_Len > > > + TargetLen +=3D New_Add_Len > > > + TargetFv.insertChild(self.NewFfs, -1) > > > + TargetFv.Data.Free_Space =3D > New_Add_Len > > > + else: > > > + TargetFv.Child.remove(self.TargetFfs) > > > + TargetFv.insertChild(self.NewFfs) > > > + TargetFv.Data.Free_Space =3D 0 > > > + ModifyFfsType(self.NewFfs) > > > + TargetFv.Data.Data =3D b'' > > > + for item in TargetFv.Child: > > > + if item.type =3D=3D FFS_FREE_SPACE: > > > + TargetFv.Data.Data +=3D > item.Data.Data + > > > item.Data.PadData > > > + else: > > > + TargetFv.Data.Data +=3D > > > struct2stream(item.Data.Header)+ item.Data.Data + item.Data.PadData > > > + # Encapsulate the Fv Data for update. > > > + TargetFv.Data.Size +=3D TargetLen > > > + TargetFv.Data.Header.FvLength =3D > > > TargetFv.Data.Size > > > + TargetFv.Data.ModFvExt() > > > + TargetFv.Data.ModFvSize() > > > + TargetFv.Data.ModExtHeaderData() > > > + self.ModifyFvExtData(TargetFv) > > > + TargetFv.Data.ModCheckSum() > > > + # Start free space calculating and moving > process. > > > + self.ModifyTest(TargetFv.Parent, TargetLen) > > > + else: > > > + # If TargetFv do not have free space, need directly move > part > > > of the free space of TargetFv's parent Fv to TargetFv/NewFfs. > > > + TargetLen =3D self.NewFfs.Data.Size + > > > len(self.NewFfs.Data.PadData) > > > + TargetFv =3D self.TargetFfs.Parent > > > + if TargetFv.Data.Header.Attributes & > > > EFI_FVB2_ERASE_POLARITY: > > > + self.NewFfs.Data.Header.State =3D c_uint8( > > > + ~self.NewFfs.Data.Header.State) > > > + if TargetFv.type =3D=3D FV_TREE: > > > + self.Status =3D False > > > + elif TargetFv.type =3D=3D SEC_FV_TREE: > > > + BlockSize =3D > TargetFv.Data.Header.BlockMap[0].Length > > > + New_Add_Len =3D BlockSize - TargetLen%BlockSize > > > + if New_Add_Len % BlockSize: > > > + New_Free_Space =3D BIOSTREE('FREE_SPACE') > > > + New_Free_Space.type =3D FFS_FREE_SPACE > > > + New_Free_Space.Data =3D FreeSpaceNode(b'\xff' > * > > > New_Add_Len) > > > + TargetLen +=3D New_Add_Len > > > + TargetFv.Data.Free_Space =3D New_Add_Len > > > + TargetFv.insertChild(self.NewFfs) > > > + TargetFv.insertChild(New_Free_Space) > > > + else: > > > + TargetFv.insertChild(self.NewFfs) > > > + ModifyFfsType(self.NewFfs) > > > + TargetFv.Data.Data =3D b'' > > > + for item in TargetFv.Child: > > > + if item.type =3D=3D FFS_FREE_SPACE: > > > + TargetFv.Data.Data +=3D item.Data.Data + > > > item.Data.PadData > > > + else: > > > + TargetFv.Data.Data +=3D > > > struct2stream(item.Data.Header)+ item.Data.Data + item.Data.PadData > > > + TargetFv.Data.Size +=3D TargetLen > > > + TargetFv.Data.Header.FvLength =3D TargetFv.Data.Size > > > + TargetFv.Data.ModFvExt() > > > + TargetFv.Data.ModFvSize() > > > + TargetFv.Data.ModExtHeaderData() > > > + self.ModifyFvExtData(TargetFv) > > > + TargetFv.Data.ModCheckSum() > > > + self.ModifyTest(TargetFv.Parent, TargetLen) > > > + return self.Status > > > + > > > + def DeleteFfs(self) -> bool: > > > + Delete_Ffs =3D self.TargetFfs > > > + Delete_Fv =3D Delete_Ffs.Parent > > > + Add_Free_Space =3D Delete_Ffs.Data.Size + > > > len(Delete_Ffs.Data.PadData) > > > + if Delete_Fv.Data.Free_Space: > > > + if Delete_Fv.type =3D=3D SEC_FV_TREE: > > > + Used_Size =3D Delete_Fv.Data.Size - > > > Delete_Fv.Data.Free_Space - Add_Free_Space > > > + BlockSize =3D > Delete_Fv.Data.Header.BlockMap[0].Length > > > + New_Free_Space =3D BlockSize - Used_Size % > BlockSize > > > + self.Remain_New_Free_Space +=3D > > > Delete_Fv.Data.Free_Space + Add_Free_Space - New_Free_Space > > > + Delete_Fv.Child[-1].Data.Data =3D New_Free_Space * > > > b'\xff' > > > + Delete_Fv.Data.Free_Space =3D New_Free_Space > > > + else: > > > + Used_Size =3D Delete_Fv.Data.Size - > > > Delete_Fv.Data.Free_Space - Add_Free_Space > > > + Delete_Fv.Child[-1].Data.Data +=3D Add_Free_Space * > > > b'\xff' > > > + Delete_Fv.Data.Free_Space +=3D Add_Free_Space > > > + New_Free_Space =3D Delete_Fv.Data.Free_Space + > > > Add_Free_Space > > > + else: > > > + if Delete_Fv.type =3D=3D SEC_FV_TREE: > > > + Used_Size =3D Delete_Fv.Data.Size - Add_Free_Space > > > + BlockSize =3D > Delete_Fv.Data.Header.BlockMap[0].Length > > > + New_Free_Space =3D BlockSize - Used_Size % > BlockSize > > > + self.Remain_New_Free_Space +=3D Add_Free_Space - > > > New_Free_Space > > > + Add_Free_Space =3D New_Free_Space > > > + else: > > > + Used_Size =3D Delete_Fv.Data.Size - Add_Free_Space > > > + New_Free_Space =3D Add_Free_Space > > > + New_Free_Space_Info =3D FfsNode(Add_Free_Space * > b'\xff') > > > + New_Free_Space_Info.Data =3D Add_Free_Space * b'\xff' > > > + New_Ffs_Tree =3D BIOSTREE(New_Free_Space_Info.Name) > > > + New_Ffs_Tree.type =3D FFS_FREE_SPACE > > > + New_Ffs_Tree.Data =3D New_Free_Space_Info > > > + Delete_Fv.insertChild(New_Ffs_Tree) > > > + Delete_Fv.Data.Free_Space =3D Add_Free_Space > > > + Delete_Fv.Child.remove(Delete_Ffs) > > > + Delete_Fv.Data.Header.FvLength =3D Used_Size + > New_Free_Space > > > + Delete_Fv.Data.ModFvExt() > > > + Delete_Fv.Data.ModFvSize() > > > + Delete_Fv.Data.ModExtHeaderData() > > > + self.ModifyFvExtData(Delete_Fv) > > > + Delete_Fv.Data.ModCheckSum() > > > + self.CompressData(Delete_Fv) > > > + self.Status =3D True > > > + return self.Status > > > diff --git a/BaseTools/Source/Python/FMMT/core/GuidTools.py > > > b/BaseTools/Source/Python/FMMT/core/GuidTools.py > > > new file mode 100644 > > > index 000000000000..e21d8e0406ae > > > --- /dev/null > > > +++ b/BaseTools/Source/Python/FMMT/core/GuidTools.py > > > @@ -0,0 +1,152 @@ > > > +## @file > > > +# This file is used to define the FMMT dependent external tool > > management > > > class. > > > +# > > > +# Copyright (c) 2021-, Intel Corporation. All rights reserved.
> > > +# SPDX-License-Identifier: BSD-2-Clause-Patent > > > +## > > > +import glob > > > +import logging > > > +import os > > > +import shutil > > > +import sys > > > +import tempfile > > > +import uuid > > > +from PI.Common import * > > > +from utils.FmmtLogger import FmmtLogger as logger > > > +import subprocess > > > + > > > +def ExecuteCommand(cmd: list) -> None: > > > + subprocess.run(cmd,stdout=3Dsubprocess.DEVNULL) > > > + > > > +class GUIDTool: > > > + def __init__(self, guid: str, short_name: str, command: str) -> = None: > > > + self.guid: str =3D guid > > > + self.short_name: str =3D short_name > > > + self.command: str =3D command > > > + > > > + def pack(self, buffer: bytes) -> bytes: > > > + """ > > > + compress file. > > > + """ > > > + tool =3D self.command > > > + if tool: > > > + tmp =3D tempfile.mkdtemp(dir=3Dos.environ.get('tmp')) > > > + ToolInputFile =3D os.path.join(tmp, > > > "pack_uncompress_sec_file") > > > + ToolOuputFile =3D os.path.join(tmp, "pack_sec_file") > > > + try: > > > + file =3D open(ToolInputFile, "wb") > > > + file.write(buffer) > > > + file.close() > > > + command =3D [tool, '-e', '-o', ToolOuputFile, > > > + ToolInputFile] > > > + ExecuteCommand(command) > > > + buf =3D open(ToolOuputFile, "rb") > > > + res_buffer =3D buf.read() > > > + except Exception as msg: > > > + logger.error(msg) > > > + return "" > > > + else: > > > + buf.close() > > > + if os.path.exists(tmp): > > > + shutil.rmtree(tmp) > > > + return res_buffer > > > + else: > > > + logger.error( > > > + "Error parsing section: EFI_SECTION_GUID_DEFINED > > > cannot be parsed at this time.") > > > + logger.info("Its GUID is: %s" % self.guid) > > > + return "" > > > + > > > + > > > + def unpack(self, buffer: bytes) -> bytes: > > > + """ > > > + buffer: remove common header > > > + uncompress file > > > + """ > > > + tool =3D self.command > > > + if tool: > > > + tmp =3D tempfile.mkdtemp(dir=3Dos.environ.get('tmp')) > > > + ToolInputFile =3D os.path.join(tmp, "unpack_sec_file") > > > + ToolOuputFile =3D os.path.join(tmp, > > > "unpack_uncompress_sec_file") > > > + try: > > > + file =3D open(ToolInputFile, "wb") > > > + file.write(buffer) > > > + file.close() > > > + command =3D [tool, '-d', '-o', ToolOuputFile, > > ToolInputFile] > > > + ExecuteCommand(command) > > > + buf =3D open(ToolOuputFile, "rb") > > > + res_buffer =3D buf.read() > > > + except Exception as msg: > > > + logger.error(msg) > > > + return "" > > > + else: > > > + buf.close() > > > + if os.path.exists(tmp): > > > + shutil.rmtree(tmp) > > > + return res_buffer > > > + else: > > > + logger.error("Error parsing section: > > > EFI_SECTION_GUID_DEFINED cannot be parsed at this time.") > > > + logger.info("Its GUID is: %s" % self.guid) > > > + return "" > > > + > > > +class GUIDTools: > > > + ''' > > > + GUIDTools is responsible for reading FMMTConfig.ini, verify the > tools > > > and provide interfaces to access those tools. > > > + ''' > > > + default_tools =3D { > > > + > > > struct2stream(ModifyGuidFormat("a31280ad-481e-41b6-95e8- > > 127f4c984779 > > > ")): GUIDTool("a31280ad-481e-41b6-95e8-127f4c984779", "TIANO", > > > "TianoCompress"), > > > + > > > struct2stream(ModifyGuidFormat("ee4e5898-3914-4259-9d6e- > > dc7bd79403cf > > > ")): GUIDTool("ee4e5898-3914-4259-9d6e-dc7bd79403cf", "LZMA", > > > "LzmaCompress"), > > > + > > > struct2stream(ModifyGuidFormat("fc1bcdb0-7d31-49aa-936a- > > a4600d9dd083 > > > ")): GUIDTool("fc1bcdb0-7d31-49aa-936a-a4600d9dd083", "CRC32", > > > "GenCrc32"), > > > + > > > struct2stream(ModifyGuidFormat("d42ae6bd-1352-4bfb-909a- > > ca72a6eae889 > > > ")): GUIDTool("d42ae6bd-1352-4bfb-909a-ca72a6eae889", "LZMAF86", > > > "LzmaF86Compress"), > > > + > > > struct2stream(ModifyGuidFormat("3d532050-5cda-4fd0-879e- > > 0f7f630d5afb") > > > ): GUIDTool("3d532050-5cda-4fd0-879e-0f7f630d5afb", "BROTLI", > > > "BrotliCompress"), > > > + } > > > + > > > + def __init__(self, tooldef_file: str=3DNone) -> None: > > > + self.dir =3D os.path.dirname(__file__) > > > + self.tooldef_file =3D tooldef_file if tooldef_file else > > os.path.join( > > > + self.dir, "FMMTConfig.ini") > > > + self.tooldef =3D dict() > > > + self.load() > > > + > > > + def VerifyTools(self) -> None: > > > + """ > > > + Verify Tools and Update Tools path. > > > + """ > > > + path_env =3D os.environ.get("PATH") > > > + path_env_list =3D path_env.split(os.pathsep) > > > + path_env_list.append(os.path.dirname(__file__)) > > > + path_env_list =3D list(set(path_env_list)) > > > + for tool in self.tooldef.values(): > > > + cmd =3D tool.command > > > + if os.path.isabs(cmd): > > > + if not os.path.exists(cmd): > > > + print("Tool Not found %s" % cmd) > > > + else: > > > + for syspath in path_env_list: > > > + if glob.glob(os.path.join(syspath, cmd+"*")): > > > + break > > > + else: > > > + print("Tool Not found %s" % cmd) > > > + > > > + def load(self) -> None: > > > + if os.path.exists(self.tooldef_file): > > > + with open(self.tooldef_file, "r") as fd: > > > + config_data =3D fd.readlines() > > > + for line in config_data: > > > + try: > > > + guid, short_name, command =3D line.split() > > > + new_format_guid =3D > > > struct2stream(ModifyGuidFormat(guid.strip())) > > > + self.tooldef[new_format_guid] =3D GUIDTool( > > > + guid.strip(), short_name.strip(), > > > command.strip()) > > > + except: > > > + print("GuidTool load error!") > > > + continue > > > + else: > > > + self.tooldef.update(self.default_tools) > > > + > > > + self.VerifyTools() > > > + > > > + def __getitem__(self, guid) -> None: > > > + return self.tooldef.get(guid) > > > + > > > + > > > +guidtools =3D GUIDTools() > > > diff --git a/BaseTools/Source/Python/FMMT/utils/FmmtLogger.py > > > b/BaseTools/Source/Python/FMMT/utils/FmmtLogger.py > > > new file mode 100644 > > > index 000000000000..18f0cff96e4b > > > --- /dev/null > > > +++ b/BaseTools/Source/Python/FMMT/utils/FmmtLogger.py > > > @@ -0,0 +1,18 @@ > > > +## @file > > > +# This file is used to define the Fmmt Logger. > > > +# > > > +# Copyright (c) 2021-, Intel Corporation. All rights reserved.
> > > +# SPDX-License-Identifier: BSD-2-Clause-Patent > > > + > > > +## > > > + > > > +import logging > > > +import sys > > > + > > > +FmmtLogger =3D logging.getLogger('FMMT') > > > +FmmtLogger.setLevel(logging.INFO) > > > + > > > +lh=3Dlogging.StreamHandler(sys.stdout) > > > +lf=3Dlogging.Formatter("%(levelname)-8s: %(message)s") > > > +lh.setFormatter(lf) > > > +FmmtLogger.addHandler(lh) > > > \ No newline at end of file > > > diff --git a/BaseTools/Source/Python/FMMT/utils/FvLayoutPrint.py > > > b/BaseTools/Source/Python/FMMT/utils/FvLayoutPrint.py > > > new file mode 100644 > > > index 000000000000..1a6c67056266 > > > --- /dev/null > > > +++ b/BaseTools/Source/Python/FMMT/utils/FvLayoutPrint.py > > > @@ -0,0 +1,54 @@ > > > +## @file > > > +# This file is used to define the printer for Bios layout. > > > +# > > > +# Copyright (c) 2021-, Intel Corporation. All rights reserved.
> > > +# SPDX-License-Identifier: BSD-2-Clause-Patent > > > +## > > > + > > > +def GetFormatter(layout_format: str): > > > + if layout_format =3D=3D 'json': > > > + return JsonFormatter() > > > + elif layout_format =3D=3D 'yaml': > > > + return YamlFormatter() > > > + elif layout_format =3D=3D 'html': > > > + return HtmlFormatter() > > > + else: > > > + return TxtFormatter() > > > + > > > +class Formatter(object): > > > + def dump(self, layoutdict, layoutlist, outputfile: str=3DNone) -= > None: > > > + raise NotImplemented > > > + > > > +class JsonFormatter(Formatter): > > > + def dump(self,layoutdict: dict, layoutlist: list, outputfile: > > str=3DNone) -> > > > None: > > > + try: > > > + import json > > > + except: > > > + TxtFormatter().dump(layoutdict, layoutlist, outputfile) > > > + return > > > + print(outputfile) > > > + if outputfile: > > > + with open(outputfile,"w") as fw: > > > + json.dump(layoutdict, fw, indent=3D2) > > > + else: > > > + print(json.dumps(layoutdict,indent=3D2)) > > > + > > > +class TxtFormatter(Formatter): > > > + def LogPrint(self,layoutlist: list) -> None: > > > + for item in layoutlist: > > > + print(item) > > > + print('\n') > > > + > > > + def dump(self,layoutdict: dict, layoutlist: list, outputfile: > > str=3DNone) -> > > > None: > > > + print(outputfile) > > > + with open(outputfile, "w") as f: > > > + for item in layoutlist: > > > + f.writelines(item + '\n') > > > + > > > +class YamlFormatter(Formatter): > > > + def dump(self,layoutdict, layoutlist, outputfile =3D None): > > > + TxtFormatter().dump(layoutdict, layoutlist, outputfile) > > > + > > > +class HtmlFormatter(Formatter): > > > + def dump(self,layoutdict, layoutlist, outputfile =3D None): > > > + TxtFormatter().dump(layoutdict, layoutlist, outputfile) > > > \ No newline at end of file > > > -- > > > 2.27.0.windows.1 > > > > > > > > > > > > > > > > > > > > > > > > > > >=20 > >