Configuration.tex 311.9 KB
Newer Older
V
vit9696 已提交
1 2 3 4 5 6 7 8 9 10 11 12
\documentclass[]{article}

\usepackage{lmodern}
\usepackage{amssymb,amsmath}
\usepackage{ifxetex,ifluatex}
\usepackage[T1]{fontenc}
\usepackage[utf8]{inputenc}
\usepackage{upquote}
\usepackage{microtype}
\usepackage[unicode=true]{hyperref}
\usepackage{longtable,booktabs}
\usepackage{footnote}
13
\usepackage{listings}
14
\usepackage{mathtools}
V
vit9696 已提交
15 16 17 18
\usepackage{parskip}
\usepackage[margin=0.7in]{geometry}
\usepackage{titlesec}
\usepackage[yyyymmdd,hhmmss]{datetime}
V
vit9696 已提交
19
\usepackage{textcomp}
V
vit9696 已提交
20 21
\usepackage{tikz}

22
\setcounter{tocdepth}{2}
V
vit9696 已提交
23 24 25 26
\usetikzlibrary{trees}
\tikzstyle{every node}=[draw=black,thick,anchor=west]
\tikzstyle{selected}=[draw=blue]
\tikzstyle{optional}=[dashed,fill=gray!50]
V
vit9696 已提交
27 28 29

\renewcommand{\dateseparator}{.}

30 31 32 33 34 35 36 37
\makeatletter
\newcommand*{\bdiv}{%
  \nonscript\mskip-\medmuskip\mkern5mu%
  \mathbin{\operator@font div}\penalty900\mkern5mu%
  \nonscript\mskip-\medmuskip
}
\makeatother

38 39
% Newer LaTeX versions should not add ligatures to listings, but for some reason
% it is not the case for me. As a result select PDF viewers copy wrong data.
V
vit9696 已提交
40 41 42 43 44
\lstdefinestyle{ocbash}{
  language=bash,
  frame=tb,
  columns=fullflexible,
  captionpos=b,
45 46
  basicstyle=\ttfamily\normalsize,
  keepspaces=true,
47
  morekeywords={git, make, build, ioreg, grep, nvram, sort, sudo, diskutil, gfxutil, strings, dd, cut, python},
V
vit9696 已提交
48
  literate =
V
vit9696 已提交
49
    {"}{{\textquotedbl}}1
V
vit9696 已提交
50 51
    {'}{{\textquotesingle}}1
    {-}{{-}}1
V
vit9696 已提交
52 53
    {~}{{\texttildelow}}1
    {*}{{*}}1
54 55
    {fl}{{f{}l}}2
    {fi}{{f{}i}}2
V
vit9696 已提交
56 57 58
    ,
}

V
vit9696 已提交
59 60 61 62 63 64 65 66 67 68 69 70 71 72 73
\UseMicrotypeSet[protrusion]{basicmath} % disable protrusion for tt fonts
\PassOptionsToPackage{hyphens}{url} % url is loaded by hyperref

\makesavenoteenv{long table} % Fix footnotes in tables

% set default figure placement to htbp
\makeatletter
\def\fps@figure{htbp}
\makeatother

\providecommand{\tightlist}{%
  \setlength{\itemsep}{0pt}\setlength{\parskip}{0pt}}

\newcommand{\sectionbreak}{\clearpage}

G
Goldfish64 已提交
74 75 76 77 78
% Fix spacing for subsections in table of contents.
\makeatletter
\renewcommand{\l@subsection}{\@dottedtocline{2}{1.5em}{2.8em}}
\makeatother

V
vit9696 已提交
79 80 81 82
\begin{document}

\begin{titlepage}
   \begin{center}
V
vit9696 已提交
83
       \vspace*{2.0in}
V
vit9696 已提交
84 85 86

       \Huge

V
vit9696 已提交
87 88 89 90 91 92
       \IfFileExists{Logos/Logo.pdf}
         {\includegraphics[width=160pt, height=160pt]{Logos/Logo.pdf}}
         {\includegraphics[width=160pt, height=160pt]{../Logos/Logo.pdf}}

       \sffamily

V
vit9696 已提交
93 94 95 96
       \textbf{OpenCore}

       \vspace{0.2in}

A
Andrey1970AppleLife 已提交
97
       Reference Manual (0.6.6)
V
vit9696 已提交
98 99 100 101 102 103 104 105 106

       \vspace{0.2in}

        {[}\today{]}

       \normalsize

       \vfill

V
vit9696 已提交
107 108
       \rmfamily

A
Andrey1970AppleLife 已提交
109
       Copyright \textcopyright 2018-2021 vit9696
V
vit9696 已提交
110 111 112 113 114 115 116 117 118 119

   \end{center}
\end{titlepage}

\tableofcontents

\section{Introduction}\label{introduction}

This document provides information on
\href{https://github.com/acidanthera/OpenCorePkg}{OpenCore} user
G
Goldfish64 已提交
120
configuration file format used to set up the correct functioning of the macOS
V
vit9696 已提交
121 122
operating system. It is to be read as the official clarification of expected
OpenCore behaviour. All deviations, if found in published OpenCore releases,
123 124 125
shall be considered to be documentation or implementation bugs which should be
reported via the \href{https://github.com/acidanthera/bugtracker}{Acidanthera Bugtracker}.
An errata sheet is available in
V
vit9696 已提交
126
\href{https://github.com/acidanthera/OpenCorePkg/blob/master/Docs/Errata/Errata.pdf}{OpenCorePkg repository}.
V
vit9696 已提交
127

128 129 130 131
This document is structured as a specification and is not meant to provide a step-by-step
guide to configuring an end-user Board Support Package (BSP). The intended audience
of the document is anticipated to be programmers and engineers with a basic understanding of macOS internals
and UEFI functionality. For these reasons, this document is available exclusively in English,
V
vit9696 已提交
132 133 134
and all other sources or translations of this document are unofficial and may
contain errors.

D
dakanji 已提交
135
Third-party articles, utilities, books, and similar, may be more useful for a wider audience as
136 137 138
they could provide guide-like material. However, they are subject to their authors' preferences,
tastes, misinterpretations of this document, and unavoidable obsolescence.
In cases of using such sources, such as \href{https://dortania.github.io}{Dortania}'s
V
vit9696 已提交
139
\href{https://dortania.github.io/OpenCore-Install-Guide}{OpenCore Install Guide}
V
vit9696 已提交
140
and \href{https://dortania.github.io/getting-started}{related material},
141
please refer back to this document on every decision made and re-evaluate potential consequences.
V
vit9696 已提交
142

143 144
Please note that regardless of the sources used, users are required to fully understand every
OpenCore configuration option, and the principles behind them, before posting issues to the
V
vit9696 已提交
145 146
\href{https://github.com/acidanthera/bugtracker}{Acidanthera Bugtracker}.

V
vit9696 已提交
147
\emph{Note}: Creating this document would not have been possible without the invaluable
P
PMheart 已提交
148
contributions from other people: Andrey1970, Goldfish64, dakanji, PMheart, and several others,
V
vit9696 已提交
149 150 151
with the full list available in
\href{https://github.com/acidanthera/OpenCorePkg/commits/master/Docs}{OpenCorePkg history}.

V
vit9696 已提交
152
\subsection{Generic Terms}\label{generic-terms}
V
vit9696 已提交
153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217

\begin{itemize}
\item
  \texttt{plist} --- Subset of ASCII Property List format written in
  XML, also know as XML plist format version 1. Uniform Type Identifier
  (UTI): \texttt{com.apple.property-list}. Plists consist of
  \texttt{plist\ objects}, which are combined to form a hierarchical
  structure. Due to plist format not being well-defined, all the
  definitions of this document may only be applied after plist is
  considered valid by running \texttt{plutil\ -lint}. External
  references: https://www.apple.com/DTDs/PropertyList-1.0.dtd,
  \texttt{man\ plutil}.
\item
  \texttt{plist\ type} --- plist collections (\texttt{plist\ array},
  \texttt{plist\ dictionary}, \texttt{plist\ key}) and primitives
  (\texttt{plist\ string}, \texttt{plist\ data}, \texttt{plist\ date},
  \texttt{plist\ boolean}, \texttt{plist\ integer},
  \texttt{plist\ real}).
\item
  \texttt{plist\ object} --- definite realisation of
  \texttt{plist\ type}, which may be interpreted as value.
\item
  \texttt{plist\ array} --- array-like collection, conforms to
  \texttt{array}. Consists of zero or more \texttt{plist\ objects}.
\item
  \texttt{plist\ dictionary} --- map-like (associative array)
  collection, conforms to \texttt{dict}. Consists of zero or more
  \texttt{plist\ keys}.
\item
  \texttt{plist\ key} --- contains one \texttt{plist\ object} going by
  the name of \texttt{plist\ key}, conforms to \texttt{key}. Consists of
  printable 7-bit ASCII characters.
\item
  \texttt{plist\ string} --- printable 7-bit ASCII string, conforms to
  \texttt{string}.
\item
  \texttt{plist\ data} --- base64-encoded blob, conforms to
  \texttt{data}.
\item
  \texttt{plist\ date} --- ISO-8601 date, conforms to \texttt{date},
  unsupported.
\item
  \texttt{plist\ boolean} --- logical state object, which is either true
  (1) or false (0), conforms to \texttt{true} and \texttt{false}.
\item
  \texttt{plist\ integer} --- possibly signed integer number in base 10,
  conforms to \texttt{integer}. Fits in 64-bit unsigned integer in two's
  complement representation, unless a smaller signed or unsigned
  integral type is explicitly mentioned in specific
  \texttt{plist\ object} description.
\item
  \texttt{plist\ real} --- floating point number, conforms to
  \texttt{real}, unsupported.
\item
  \texttt{plist\ metadata} --- value cast to data by the implementation.
  Permits passing \texttt{plist\ string}, in which case the result is
  represented by a null-terminated sequence of bytes (aka C string),
  \texttt{plist\ integer}, in which case the result is represented by
  \emph{32-bit} little endian sequence of bytes in two's complement
  representation, \texttt{plist\ boolean}, in which case the value is
  one byte: \texttt{01} for \texttt{true} and \texttt{00} for
  \texttt{false}, and \texttt{plist\ data} itself. All other types or
  larger integers invoke undefined behaviour.
\end{itemize}

V
vit9696 已提交
218
\section{Configuration}\label{configuration-overview}
V
vit9696 已提交
219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246 247 248 249 250 251 252 253 254 255 256 257 258 259 260 261 262 263 264 265 266 267 268 269 270 271 272 273 274 275 276 277 278 279 280 281 282 283 284 285 286 287 288 289 290 291 292 293 294 295 296 297 298 299 300 301 302 303 304 305 306 307 308 309 310 311 312 313 314 315 316 317

\subsection{Configuration Terms}\label{configuration-terms}

\begin{itemize}
\item
  \texttt{OC\ config} --- OpenCore Configuration file in \texttt{plist}
  format named \texttt{config.plist}. It has to provide extensible way
  to configure OpenCore and is structured to be separated into multiple
  named sections situated in the root \texttt{plist\ dictionary}. These
  sections are permitted to have \texttt{plist\ array} or
  \texttt{plist\ dictionary} types and are described in corresponding
  sections of this document.
\item
  \texttt{valid\ key} --- \texttt{plist\ key} object of
  \texttt{OC\ config} described in this document or its future
  revisions. Besides explicitly described \texttt{valid\ keys}, keys
  starting with \texttt{\#} symbol (e.g. \texttt{\#Hello}) are also
  considered \texttt{valid\ keys} and behave as comments, effectively
  discarding their value, which is still required to be a valid
  \texttt{plist\ object}. All other \texttt{plist\ keys} are not valid,
  and their presence yields to \texttt{undefined\ behaviour}.
\item
  \texttt{valid\ value} --- valid \texttt{plist\ object} of
  \texttt{OC\ config} described in this document that matches all the
  additional requirements in specific \texttt{plist\ object} description
  if any.
\item
  \texttt{invalid\ value} --- valid \texttt{plist\ object} of
  \texttt{OC\ config} described in this document that is of other
  \texttt{plist\ type}, does not conform to additional requirements
  found in specific \texttt{plist\ object} description (e.g.~value
  range), or missing from the corresponding collection.
  \texttt{Invalid\ value} is read with or without an error message as
  any possible value of this \texttt{plist\ object} in an undetermined
  manner (i.e.~the values may not be same across the reboots). Whilst
  reading an \texttt{invalid\ value} is equivalent to reading certain
  defined \texttt{valid\ value}, applying incompatible value to the host
  system may yield to \texttt{undefined\ behaviour}.
\item
  \texttt{optional\ value} --- \texttt{valid\ value} of
  \texttt{OC\ config} described in this document that reads in a certain
  defined manner provided in specific \texttt{plist\ object} description
  (instead of \texttt{invalid\ value}) when not present in
  \texttt{OC\ config}. All other cases of \texttt{invalid\ value} do
  still apply. Unless explicitly marked as \texttt{optional\ value}, any
  other value is required to be present and reads to
  \texttt{invalid\ value} if missing.
\item
  \texttt{fatal\ behaviour} --- behaviour leading to boot termination.
  Implementation must stop the boot process from going any further until
  next host system boot. It is allowed but not required to perform cold
  reboot or show any warning message.
\item
  \texttt{undefined\ behaviour} --- behaviour not prescribed by this
  document. Implementation is allowed to take any measures including but
  not limited to \texttt{fatal\ behaviour}, assuming any states or
  values, or ignoring, unless these measures negatively affect system
  security in general.
\end{itemize}

\subsection{Configuration Processing}\label{configuration-processing}

\texttt{OC\ config} is guaranteed to be processed at least once if it
was found. Depending on OpenCore bootstrapping mechanism multiple
\texttt{OC\ config} files may lead to reading any of them. No
\texttt{OC\ Config} may be present on disk, in which case all the values
read follow the rules of \texttt{invalid\ value} and
\texttt{optional\ value}.

\texttt{OC\ config} has size, nesting, and key amount limitations.
\texttt{OC\ config} size does not exceed \texttt{16\ MBs}.
\texttt{OC\ config} has no more than \texttt{8} nesting levels.
\texttt{OC\ config} has up to \texttt{16384} XML nodes (i.e.~one
\texttt{plist\ dictionary} item is counted as a pair of nodes) within
each \texttt{plist\ object}.

Reading malformed \texttt{OC\ config} file leads to
\texttt{undefined\ behaviour}. Examples of malformed \texttt{OC\ config}
cover at least the following cases:

\begin{itemize}
\tightlist
\item
  files non-conformant to \texttt{plist} DTD
\item
  files with unsupported or non-conformant \texttt{plist\ objects} found
  in this document
\item
  files violating size, nesting, and key amount limitations
\end{itemize}

It is recommended but not required to abort loading malformed
\texttt{OC\ config} and continue as if no \texttt{OC\ config} was
present. For forward compatibility it is recommended but not required
for the implementation to warn about the use of
\texttt{invalid\ values}. Recommended practice of interpreting
\texttt{invalid\ values} is to conform to the following convention where
applicable:

318
\begin{center}
319
\begin{tabular}{|l|l|}
320 321 322
\hline
\textbf{Type} & \textbf{Value} \\
\hline
V
vit9696 已提交
323
\texttt{plist\ string} & Empty string
324 325
(\texttt{\textless{}string\textgreater{}\textless{}/string\textgreater{}}) \\
\hline
V
vit9696 已提交
326
\texttt{plist\ data} & Empty data
327 328
(\texttt{\textless{}data\textgreater{}\textless{}/data\textgreater{}}) \\
\hline
V
vit9696 已提交
329
\texttt{plist\ integer} & 0
330 331
(\texttt{\textless{}integer\textgreater{}0\textless{}/integer\textgreater{}}) \\
\hline
V
vit9696 已提交
332
\texttt{plist\ boolean} & False
333 334
(\texttt{\textless{}false/\textgreater{}}) \\
\hline
V
vit9696 已提交
335
\texttt{plist\ tristate} & False
336 337 338 339
(\texttt{\textless{}false/\textgreater{}}) \\
\hline
\end{tabular}
\end{center}
V
vit9696 已提交
340 341 342 343 344 345 346 347 348 349 350 351

\subsection{Configuration Structure}\label{configuration-structure}

\texttt{OC\ config} is separated into following sections, which are described
in separate sections of this document. By default it is tried to not enable
anything and optionally provide kill switches with \texttt{Enable} property
for \texttt{plist dict} entries. In general the configuration is written
idiomatically to group similar actions in subsections:

\begin{itemize}
\tightlist
\item
352 353 354
  \texttt{Add} provides support for data addition. Existing data will
  not be overridden, and needs to be handled separately with
  \texttt{Delete} if necessary.
V
vit9696 已提交
355
\item
356
  \texttt{Delete} provides support for data removal.
V
vit9696 已提交
357 358 359 360 361 362 363 364 365 366 367 368
\item
  \texttt{Patch} provides support for data modification.
\item
  \texttt{Quirks} provides support for specific hacks.
\end{itemize}

Root configuration entries consist of the following:

\begin{itemize}
\tightlist
\item
  \hyperref[acpi]{\texttt{ACPI}}
369 370
\item
  \hyperref[booter]{\texttt{Booter}}
V
vit9696 已提交
371 372 373 374 375 376 377 378 379 380 381 382 383 384
\item
  \hyperref[devprops]{\texttt{DeviceProperties}}
\item
  \hyperref[kernel]{\texttt{Kernel}}
\item
  \hyperref[misc]{\texttt{Misc}}
\item
  \hyperref[nvram]{\texttt{NVRAM}}
\item
  \hyperref[platforminfo]{\texttt{PlatformInfo}}
\item
  \hyperref[uefi]{\texttt{UEFI}}
\end{itemize}

385
It is possible to perform basic validation of the configuration by using
386
\texttt{ocvalidate} utility. Please note, that \texttt{ocvalidate}
387 388 389
must match the used OpenCore release and may not be able to detect all
configuration flaws present in the file.

V
vit9696 已提交
390 391 392 393
\emph{Note}: Currently most properties try to have defined values even if not
specified in the configuration for safety reasons. This behaviour should not
be relied upon, and all fields must be properly specified in the configuration.

V
vit9696 已提交
394
\section{Setup}\label{setup-overview}
V
vit9696 已提交
395

V
vit9696 已提交
396
\subsection{Directory Structure}\label{directory-structure}
V
vit9696 已提交
397

398
\begin{center}
V
vit9696 已提交
399
\begin{tikzpicture}[%
400 401
  grow via three points={one child at (0.5,-0.6) and
  two children at (0.5,-0.6) and (0.5,-1.2)},
V
vit9696 已提交
402
  edge from parent path={(\tikzparentnode.south) |- (\tikzchildnode.west)}]
403 404 405 406
  \node {ESP}
    child { node {EFI}
      child { node {BOOT}
        child { node [selected] {BOOTx64.efi}}
V
vit9696 已提交
407
      }
408
      child [missing] {}
409 410
      child { node {OC}
        child { node {ACPI}
411 412 413
          child { node [optional] {DSDT.aml}}
          child { node [optional] {SSDT-1.aml}}
          child { node [optional] {MYTABLE.aml}}
414 415 416 417
        }
        child [missing] {}
        child [missing] {}
        child [missing] {}
A
Andrey1970AppleLife 已提交
418 419 420 421
        child { node {Bootstrap}
          child { node [selected] {Bootstrap.efi}}
        }
        child [missing] {}
422 423 424 425 426 427 428 429 430 431 432 433
        child { node {Drivers}
          child { node [optional] {MyDriver.efi}}
          child { node [optional] {OtherDriver.efi}}
        }
        child [missing] {}
        child [missing] {}
        child { node {Kexts}
          child { node [optional] {MyKext.kext}}
          child { node [optional] {OtherKext.kext}}
        }
        child [missing] {}
        child [missing] {}
434 435
        child { node [optional] {Resources}
          child { node [optional] {Audio}}
A
Andrey1970AppleLife 已提交
436 437 438
          child { node [optional] {Font}}
          child { node [optional] {Image}}
          child { node [optional] {Label}}
439 440
        }
        child [missing] {}
A
Andrey1970AppleLife 已提交
441 442 443
        child [missing] {}
        child [missing] {}
        child [missing] {}
444 445 446 447 448 449
        child { node  {Tools}
          child { node [optional] {Tool.efi}}
        }
        child [missing] {}
        child { node [selected] {OpenCore.efi}}
        child { node {config.plist}}
A
Andrey1970AppleLife 已提交
450
        child { node [optional] {vault.plist}}
451
        child { node [optional] {vault.sig}}
452
      }
453 454 455 456 457 458 459 460 461 462 463 464 465 466 467 468 469 470 471 472
    }
    child [missing] {}
    child [missing] {}
    child [missing] {}
    child [missing] {}
    child [missing] {}
    child [missing] {}
    child [missing] {}
    child [missing] {}
    child [missing] {}
    child [missing] {}
    child [missing] {}
    child [missing] {}
    child [missing] {}
    child [missing] {}
    child [missing] {}
    child [missing] {}
    child [missing] {}
    child [missing] {}
    child [missing] {}
473 474
    child [missing] {}
    child [missing] {}
A
Andrey1970AppleLife 已提交
475 476 477 478 479
    child [missing] {}
    child [missing] {}
    child [missing] {}
    child [missing] {}
    child [missing] {}
V
vit9696 已提交
480
    child { node [optional] {boot}}
481
    child { node [optional] {nvram.plist}}
482
    child { node [optional] {opencore-YYYY-MM-DD-HHMMSS.txt}}
A
Andrey1970AppleLife 已提交
483
    child { node [optional] {panic-YYYY-MM-DD-HHMMSS.txt}}
A
Andrey1970AppleLife 已提交
484
    child { node [optional] {SysReport}}
485
  ;
V
vit9696 已提交
486
\end{tikzpicture}
487 488 489 490 491
\break
\label{fig:DS}
Figure 1. Directory Structure
\end{center}

V
vit9696 已提交
492 493 494 495 496 497 498
When directory boot is used the directory structure used should follow
the description on \hyperref[fig:DS]{Directory Structure} figure. Available
entries include:

\begin{itemize}
\tightlist
\item
499 500 501 502 503 504 505 506 507
  \texttt{BOOTx64.efi} and \texttt{Bootstrap.efi} \\
  Initial bootstrap loaders, which loads \texttt{OpenCore.efi} unless it was
  already started as a driver. \texttt{BOOTx64.efi} is loaded by the firmware
  by default according to UEFI specification, and \texttt{Bootstrap.efi} can
  be registered as a custom option to let OpenCore coexist with operating systems
  using \texttt{BOOTx64.efi} as their own loaders (e.g. Windows), see
  \texttt{BootProtect} for more details.
\item
  \texttt{boot} \\
D
dakanji 已提交
508
  Duet bootstrap loader, which initialises UEFI environment on legacy BIOS firmware
509 510 511 512 513
  and loads \texttt{OpenCore.efi} similarly to other bootstrap loaders. Modern Duet
  bootstrap loader will default to \texttt{OpenCore.efi} on the same partition when
  present.
\item
  \texttt{ACPI} \\
V
vit9696 已提交
514 515 516
  Directory used for storing supplemental ACPI information
  for \hyperref[acpi]{\texttt{ACPI}} section.
\item
517
  \texttt{Drivers} \\
V
vit9696 已提交
518 519 520
  Directory used for storing supplemental \texttt{UEFI}
  drivers for \hyperref[uefi]{\texttt{UEFI}} section.
\item
521
  \texttt{Kexts} \\
V
vit9696 已提交
522 523
  Directory used for storing supplemental kernel information
  for \hyperref[kernel]{\texttt{Kernel}} section.
524
\item
525
  \texttt{Resources} \\
526 527
  Directory used for storing media resources, such as audio files
  for screen reader support. See \hyperref[uefiaudioprops]{\texttt{UEFI Audio Properties}}
528 529
  section for more details. This directory also contains image files
  for graphical user interface. See \hyperref[ueficanopy]{OpenCanopy} section for more details.
V
vit9696 已提交
530
\item
531
  \texttt{Tools} \\
V
vit9696 已提交
532 533
  Directory used for storing supplemental tools.
\item
534
  \texttt{OpenCore.efi} \\
535 536 537 538 539 540
  Main booter driver responsible for operating system loading. The directory
  \texttt{OpenCore.efi} resides is called the \texttt{root directory}.
  By default \texttt{root directory} is set to \texttt{EFI\textbackslash OC},
  however, when launching \texttt{OpenCore.efi} directly or through
  \texttt{Bootstrap.efi}, other directories containing \texttt{OpenCore.efi}
  can also be supported.
V
vit9696 已提交
541
\item
542
  \texttt{config.plist} \\
V
vit9696 已提交
543
  \texttt{OC Config}.
A
Andrey1970AppleLife 已提交
544 545 546
\item
  \texttt{vault.plist} \\
  Hashes for all files potentially loadable by \texttt{OC Config}.
V
vit9696 已提交
547
\item
548
  \texttt{vault.sig} \\
V
vit9696 已提交
549
  Signature for \texttt{vault.plist}.
550 551 552
\item
  \texttt{SysReport} \\
  Directory containing system reports generated by \texttt{SysReport} option.
V
vit9696 已提交
553
\item
554
  \texttt{nvram.plist} \\
V
vit9696 已提交
555 556
  OpenCore variable import file.
\item
557
  \texttt{opencore-YYYY-MM-DD-HHMMSS.txt} \\
V
vit9696 已提交
558
  OpenCore log file.
A
Andrey1970AppleLife 已提交
559 560 561
\item
  \texttt{panic-YYYY-MM-DD-HHMMSS.txt} \\
  Kernel panic log file.
V
vit9696 已提交
562 563
\end{itemize}

564 565
\emph{Note}: It is not guaranteed that paths longer than
\texttt{OC\_STORAGE\_SAFE\_PATH\_MAX} (128 characters including
G
Goldfish64 已提交
566
\texttt{\\0}-terminator) will be accessible within OpenCore.
567

568 569 570 571 572 573
\subsection{Installation and Upgrade}\label{configuration-install}

To install OpenCore reflect the
\hyperref[configuration-structure]{Configuration Structure} described
in the previous section on a EFI volume of a GPT partition. While
corresponding sections of this document do provide some information
D
dakanji 已提交
574
regarding external resources such as ACPI tables, UEFI drivers,
575
or kernel extensions (kexts), completeness of the matter is out of
V
vit9696 已提交
576 577 578 579
the scope of this document. Information about kernel extensions may
be found in a separate
\href{https://github.com/acidanthera/OpenCorePkg/blob/master/Docs/Kexts.md}{Kext List}
document available in OpenCore repository. Vaulting information is provided in
580 581 582 583 584 585 586 587 588 589 590
\hyperref[miscsecurityprops]{Security Properties} section of this document.

\texttt{OC\ config}, just like any property lists can be edited with any
stock textual editor (e.g. nano, vim), but specialised software may provide
better experience. On macOS the preferred GUI application is
\href{https://developer.apple.com/xcode}{Xcode}. For a lightweight
cross-platform and open-source alternative
\href{https://github.com/corpnewt/ProperTree}{ProperTree} editor can be
utilised.

For BIOS booting a third-party UEFI environment provider will have to
V
vit9696 已提交
591
be used. \texttt{OpenDuetPkg} is one of the known UEFI environment providers
592 593
for legacy systems. To run OpenCore on such a legacy system, \texttt{OpenDuetPkg}
can be installed with a dedicated tool --- BootInstall (bundled with OpenCore).
V
vit9696 已提交
594
\href{https://github.com/corpnewt/gibMacOS}{Third-party utilities} can be used to
595
perform this on systems other than macOS.
596 597 598 599 600 601

For upgrade purposes refer to \texttt{Differences.pdf} document, providing
the information about the changes affecting the configuration compared
to the previous release, and \texttt{Changelog.md} document, containing
the list of modifications across all published updates.

602 603
\subsection{Contribution}\label{configuration-comp}

V
vit9696 已提交
604
OpenCore can be compiled as an ordinary
605
\href{https://github.com/tianocore/tianocore.github.io/wiki/EDK-II}{EDK II} package.
V
vit9696 已提交
606 607 608
Since \href{https://github.com/tianocore/tianocore.github.io/wiki/UDK}{UDK}
development was abandoned by TianoCore, OpenCore requires the use of
\href{https://github.com/tianocore/tianocore.github.io/wiki/EDK-II#stable-tags}{EDK II Stable}.
609 610 611
Currently supported EDK II release is hosted in
\href{https://github.com/acidanthera/audk}{acidanthera/audk}. The required patches
for the package are present in \texttt{Patches} directory.
612 613 614 615 616 617 618 619

The only officially supported toolchain is \texttt{XCODE5}. Other toolchains
might work, but are neither supported, nor recommended. Contribution of clean
patches is welcome. Please do follow
\href{https://github.com/tianocore/tianocore.github.io/wiki/Code-Style-C}{EDK II C Codestyle}.

To compile with \texttt{XCODE5}, besides \href{https://developer.apple.com/xcode}{Xcode},
one should also install \href{https://www.nasm.us}{NASM} and
V
vit9696 已提交
620
\href{https://github.com/acidanthera/ocbuild/tree/master/external}{MTOC}.
621 622
The latest Xcode version is recommended for use despite the toolchain name. Example
command sequence may look as follows:
623

V
vit9696 已提交
624
\begin{lstlisting}[caption=Compilation Commands, label=compile, style=ocbash]
625
git clone --depth=1 https://github.com/acidanthera/audk UDK
626
cd UDK
627 628
git submodule update --init --recommend-shallow
git clone --depth=1 https://github.com/acidanthera/OpenCorePkg
629
source edksetup.sh
V
vit9696 已提交
630
make -C BaseTools
631 632 633
build -a X64 -b RELEASE -t XCODE5 -p OpenCorePkg/OpenCorePkg.dsc
\end{lstlisting}

V
vit9696 已提交
634 635 636
For IDE usage Xcode projects are available in the root of the repositories. Another
approach could be \href{https://www.sublimetext.com}{Sublime Text} with
\href{https://niosus.github.io/EasyClangComplete}{EasyClangComplete} plugin.
637
Add \texttt{.clang\_complete} file with similar content to the UDK root:
V
vit9696 已提交
638 639 640 641 642

\begin{lstlisting}[caption=ECC Configuration, label=eccfile, style=ocbash]
-I/UefiPackages/MdePkg
-I/UefiPackages/MdePkg/Include
-I/UefiPackages/MdePkg/Include/X64
643 644 645
-I/UefiPackages/MdeModulePkg
-I/UefiPackages/MdeModulePkg/Include
-I/UefiPackages/MdeModulePkg/Include/X64
V
vit9696 已提交
646 647 648
-I/UefiPackages/OpenCorePkg/Include/AMI
-I/UefiPackages/OpenCorePkg/Include/Acidanthera
-I/UefiPackages/OpenCorePkg/Include/Apple
V
vit9696 已提交
649 650
-I/UefiPackages/OpenCorePkg/Include/Apple/X64
-I/UefiPackages/OpenCorePkg/Include/Duet
V
vit9696 已提交
651 652 653 654
-I/UefiPackages/OpenCorePkg/Include/Generic
-I/UefiPackages/OpenCorePkg/Include/Intel
-I/UefiPackages/OpenCorePkg/Include/Microsoft
-I/UefiPackages/OpenCorePkg/Include/VMware
655
-I/UefiPackages/OvmfPkg/Include
V
vit9696 已提交
656
-I/UefiPackages/UefiCpuPkg/Include
V
vit9696 已提交
657 658 659 660 661 662 663 664 665 666 667
-IInclude
-include
/UefiPackages/MdePkg/Include/Uefi.h
-fshort-wchar
-Wall
-Wextra
-Wno-unused-parameter
-Wno-missing-braces
-Wno-missing-field-initializers
-Wno-tautological-compare
-Wno-sign-compare
668
-Wno-varargs
V
vit9696 已提交
669
-Wno-unused-const-variable
670
-DOC_TARGET_NOOPT=1
V
vit9696 已提交
671
-DNO_MSABI_VA_FUNCS=1
V
vit9696 已提交
672
\end{lstlisting}
V
vit9696 已提交
673

V
vit9696 已提交
674 675 676 677 678 679 680 681
\textbf{Warning}: Tool developers modifying \texttt{config.plist} or any other OpenCore
files must ensure that their tool checks for \texttt{opencore-version} NVRAM variable
(see \hyperref[miscdebugprops]{Debug Properties} section below) and warn the user
if the version listed is unsupported or prerelease. OpenCore configuration may change
across the releases and the tool shall ensure that it carefully follows this document.
Failure to do so may result in this tool to be considered as malware and blocked with
all possible means.

682 683
\subsection{Coding conventions}\label{configuration-conv}

D
dakanji 已提交
684 685 686 687 688 689
As with any other project, we have conventions that we follow during development.
All third-party contributors are advised to adhere to the conventions listed below
before submitting patches. To minimise abortive work and the potential rejection of
submissions, third-party contributors should initially raise issues to the
\href{https://github.com/acidanthera/bugtracker}{Acidanthera Bugtracker}
for feedback before submitting patches.
690

D
dakanji 已提交
691
\textbf{Organisation}. The codebase is contained in the \texttt{OpenCorePkg} repository,
V
vit9696 已提交
692
which is the primary EDK II package.
693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762
\begin{itemize}
\tightlist
\item Whenever changes are required in multiple repositories, separate pull requests should
be sent to each.
\item Committing the changes should happen firstly to dependent repositories, secondly to
primary repositories to avoid automatic build errors.
\item Each unique commit should compile with \texttt{XCODE5} and preferably with other
toolchains. In the majority of the cases it can be checked by accessing the
\href{https://travis-ci.com/acidanthera}{CI interface}. Ensuring that static analysis finds
no warnings is preferred.
\item External pull requests and tagged commits must be validated. That said, commits in
master may build but may not necessarily work.
\item Internal branches should be named as follows: \texttt{author-name-date}, e.g.
\texttt{vit9696-ballooning-20191026}.
\item Commit messages should be prefixed with the primary module (e.g. library or code module) the
changes were made in. For example, \texttt{OcGuardLib: Add OC\_ALIGNED macro}. For non-library changes
\texttt{Docs} or \texttt{Build} prefixes are used.
\end{itemize}

\textbf{Design}. The codebase is written in a subset of freestanding C11 (C17) supported by
most modern toolchains used by EDK II. Applying common software development practices or requesting
clarification is recommended if any particular case is not discussed below.
\begin{itemize}
\tightlist
\item Never rely on undefined behaviour and try to avoid implementation defined behaviour unless
explicitly covered below (feel free to create an issue when a relevant case is not present).
\item Use \texttt{OcGuardLib} to ensure safe integral arithmetics avoiding overflows. Unsigned
wraparound should be relied on with care and reduced to the necessary amount.
\item Check pointers for correct alignment with \texttt{OcGuardLib} and do not rely on the architecture
being able to dereference unaligned pointers.
\item Use flexible array members instead of zero-length or one-length arrays where necessary.
\item Use static assertions (\texttt{STATIC\_ASSERT}) for type and value assumptions, and runtime
assertions (\texttt{ASSERT}) for precondition and invariant sanity checking. Do not use runtime
assertions to check for errors as they should never alter control flow and potentially be excluded.
\item Assume \texttt{UINT32}/\texttt{INT32} to be \texttt{int}-sized and use \texttt{\%u},
\texttt{\%d}, and \texttt{\%x} to print them.
\item Assume \texttt{UINTN}/\texttt{INTN} to be of unspecified size, and cast them to
\texttt{UINT64}/\texttt{INT64} for printing with \texttt{\%Lu}, \texttt{\%Ld} and so on as normal.
\item Do not rely on integer promotions for numeric literals. Use explicit casts when the type is
implementation-dependent or suffixes when type size is known. Assume \texttt{U} for \texttt{UINT32}
and \texttt{ULL} for \texttt{UINT64}.
\item Do ensure unsigned arithmetics especially in bitwise maths, shifts in particular.
\item \texttt{sizeof} operator should take variables instead of types where possible to be error prone.
Use \texttt{ARRAY\_SIZE} to obtain array size in elements. Use \texttt{L\_STR\_LEN} and
\texttt{L\_STR\_SIZE} macros from \texttt{OcStringLib} to obtain string literal sizes to ensure compiler
optimisation.
\item Do not use \texttt{goto} keyword. Prefer early \texttt{return}, \texttt{break}, or \texttt{continue}
after failing to pass error checking instead of nesting conditionals.
\item Use \texttt{EFIAPI}, force UEFI calling convention, only in protocols, external callbacks between
modules, and functions with variadic arguments.
\item Provide inline documentation to every added function, at least describing its inputs, outputs,
precondition, postcondition, and giving a brief description.
\item Do not use \texttt{RETURN\_STATUS}. Assume \texttt{EFI\_STATUS} to be a matching superset that is
to be always used when \texttt{BOOLEAN} is not enough.
\item Security violations should halt the system or cause a forced reboot.
\end{itemize}

\textbf{Codestyle}. The codebase follows
\href{https://github.com/tianocore/tianocore.github.io/wiki/Code-Style-C}{EDK II codestyle} with few changes
and clarifications.
\begin{itemize}
\tightlist
\item Write inline documentation for the functions and variables only once: in headers, where a header prototype
is available, and inline for \texttt{static} variables and functions.
\item Use line length of 120 characters or less, preferably 100 characters.
\item Use spaces after casts, e.g. \texttt{(VOID *)(UINTN) Variable}.
\item Use SPDX license headers as shown in
\href{https://github.com/acidanthera/bugtracker/issues/483}{acidanthera/bugtracker\#483}.
\end{itemize}

V
vit9696 已提交
763 764 765
\subsection{Debugging}\label{configuration-debug}

The codebase incorporates EDK II debugging and few custom features to improve the experience.
766 767 768 769 770 771 772 773 774
\begin{itemize}
\tightlist
\item Use module prefixes, 2-5 letters followed by a colon (\texttt{:}), for debug messages. For \texttt{OpenCorePkg}
use \texttt{OC:}, for libraries and drivers use their own unique prefixes.
\item Do not use dots (\texttt{.}) in the end of debug messages and separate \texttt{EFI\_STATUS}, printed by
\texttt{\%r}, with a hyphen (e.g. \texttt{OCRAM: Allocation of \%u bytes failed - \%r\textbackslash n}).
\item Use \texttt{DEBUG\_CODE\_BEGIN ()} and \texttt{DEBUG\_CODE\_END ()} constructions to guard debug checks
that may potentially reduce the performance of release builds and are otherwise unnecessary.
\item Use \texttt{DEBUG} macro to print debug messages during normal functioning, and \texttt{RUNTIME\_DEBUG} for
775
debugging after \texttt{EXIT\_BOOT\_SERVICES}.
776 777 778 779 780 781 782 783 784
\item Use \texttt{DEBUG\_VERBOSE} debug level to leave debug messages for future debugging of the code, which
are currently not necessary. By default \texttt{DEBUG\_VERBOSE} messages are ignored even in \texttt{DEBUG} builds.
\item Use \texttt{DEBUG\_INFO} debug level for all non critical messages (including errors) and \texttt{DEBUG\_BULK\_INFO}
for extensive messages that should not appear in NVRAM log that is heavily limited in size. These messages are ignored in
\texttt{RELEASE} builds.
\item Use \texttt{DEBUG\_ERROR} to print critical human visible messages that may potentially halt the boot process, and
\texttt{DEBUG\_WARN} for all other human visible errors, \texttt{RELEASE} builds included.
\end{itemize}

V
vit9696 已提交
785 786
When trying to find the problematic change it is useful to rely on
\href{https://git-scm.com/docs/git-bisect}{\texttt{git-bisect}} functionality.
787
There also are some unofficial resources that provide per-commit binary
D
dakanji 已提交
788
builds of OpenCore, such as \href{https://dortania.github.io/builds}{Dortania}.
V
vit9696 已提交
789

V
vit9696 已提交
790 791 792 793 794 795 796 797
\section{ACPI}\label{acpi}

\subsection{Introduction}\label{acpiintro}

ACPI (Advanced Configuration and Power Interface) is an open standard to
discover and configure computer hardware.
\href{https://uefi.org/specifications}{ACPI specification} defines the
standard tables (e.g.~\texttt{DSDT}, \texttt{SSDT}, \texttt{FACS}, \texttt{DMAR})
798
and various methods (e.g. \texttt{\_DSM}, \texttt{\_PRW}) for implementation.
V
vit9696 已提交
799 800 801
Modern hardware needs little changes to maintain ACPI compatibility, yet
some of those are provided as a part of OpenCore.

V
vit9696 已提交
802 803 804 805
To compile and disassemble ACPI tables \href{https://github.com/acpica/acpica}{iASL compiler}
can be used developed by \href{https://www.acpica.org}{ACPICA}. GUI front-end to iASL compiler
can be downloaded from \href{https://github.com/acidanthera/MaciASL/releases}{Acidanthera/MaciASL}.

V
vit9696 已提交
806 807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825
ACPI changes apply globally (to every operating system) with the following effective order:

\begin{itemize}
\tightlist
\item \texttt{Patch} is processed.
\item \texttt{Delete} is processed.
\item \texttt{Add} is processed.
\item \texttt{Quirks} are processed.
\end{itemize}

Applying the changes globally resolves the problems of incorrect operating system
detection, which is not possible before the operating system boots according to
the ACPI specification, operating system chainloading, and harder ACPI debugging.
For this reason it may be required to carefully use \texttt{\_OSI} method when
writing the changes.

Applying the patches early makes it possible to write so called ``proxy'' patches,
where the original method is patched in the original table and is implemented in
the patched table.

V
vit9696 已提交
826 827 828 829 830 831 832 833 834 835 836 837 838 839
There are many places providing ACPI tables and workarounds. Commonly used
ACPI tables are provided with OpenCore, VirtualSMC, VoodooPS2, and WhateverGreen
releases. Besides those there are several third-party instructions commonly found
on AppleLife in \href{https://applelife.ru/forums/xakintosh.67}{Laboratory}
and \href{https://applelife.ru/forums/dsdt.129}{DSDT} subforums
(e.g. \href{https://applelife.ru/posts/498967}{Battery register splitting} guide).
A slightly more user-friendly explanation of some tables included with OpenCore
can also be found in \href{https://dortania.github.io}{Dortania}'s
\href{https://dortania.github.io/Getting-Started-With-ACPI}{Getting started with ACPI} guide.
For more exotic cases there also are several other places including
\href{https://github.com/daliansky}{daliansky}'s
\href{https://github.com/daliansky/OC-little}{ACPI sample collection}, but the quality
of the suggested solutions will vary from case to case.

V
vit9696 已提交
840 841 842 843 844 845
\subsection{Properties}\label{acpiprops}

\begin{enumerate}
\item
  \texttt{Add}\\
  \textbf{Type}: \texttt{plist\ array}\\
846
  \textbf{Failsafe}: Empty\\
847
  \textbf{Description}: Load selected tables from \texttt{OC/ACPI}
V
vit9696 已提交
848 849
  directory.

850
  Designed to be filled with \texttt{plist\ dict} values, describing each add entry.
851
  See \hyperref[acpipropsadd]{Add Properties} section below.
V
vit9696 已提交
852 853

\item
854
  \texttt{Delete}\\
V
vit9696 已提交
855
  \textbf{Type}: \texttt{plist\ array}\\
856
  \textbf{Failsafe}: Empty\\
V
vit9696 已提交
857 858
  \textbf{Description}: Remove selected tables from ACPI stack.

859 860
  Designed to be filled with \texttt{plist\ dict} values, describing each delete entry.
  See \hyperref[acpipropsdelete]{Delete Properties} section below.
V
vit9696 已提交
861 862 863 864

\item
  \texttt{Patch}\\
  \textbf{Type}: \texttt{plist\ array}\\
865
  \textbf{Failsafe}: Empty\\
866 867
  \textbf{Description}: Perform binary patches in ACPI tables before
  table addition or removal.
V
vit9696 已提交
868 869 870 871 872 873 874 875 876 877 878 879

  Designed to be filled with \texttt{plist\ dictionary} values describing each
  patch entry. See \hyperref[acpipropspatch]{Patch Properties} section below.

\item
  \texttt{Quirks}\\
  \textbf{Type}: \texttt{plist\ dict}\\
  \textbf{Description}: Apply individual ACPI quirks described
  in \hyperref[acpipropsquirks]{Quirks Properties} section below.

\end{enumerate}

880 881 882 883 884 885
\subsection{Add Properties}\label{acpipropsadd}

\begin{enumerate}
\item
  \texttt{Comment}\\
  \textbf{Type}: \texttt{plist\ string}\\
886
  \textbf{Failsafe}: Empty string\\
887 888 889 890 891 892 893
  \textbf{Description}: Arbitrary ASCII string used to provide human readable
  reference for the entry. It is implementation defined whether this value is
  used.

\item
  \texttt{Enabled}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
894
  \textbf{Failsafe}: \texttt{false}\\
V
vit9696 已提交
895
  \textbf{Description}: This ACPI table will not be added unless set to
896 897 898 899 900
  \texttt{true}.

\item
  \texttt{Path}\\
  \textbf{Type}: \texttt{plist\ string}\\
901
  \textbf{Failsafe}: Empty string\\
902 903 904 905 906
  \textbf{Description}: File paths meant to be loaded as ACPI tables.
  Example values include \texttt{DSDT.aml}, \texttt{SubDir/SSDT-8.aml},
  \texttt{SSDT-USBX.aml}, etc.

  ACPI table load order follows the item order in the array. All ACPI tables
907
  load from \texttt{OC/ACPI} directory.
908 909 910 911 912 913 914

  \textbf{Note}: All tables but tables with \texttt{DSDT} table identifier
  (determined by parsing data not by filename) insert new tables into ACPI stack.
  \texttt{DSDT}, unlike the rest, performs replacement of DSDT table.

\end{enumerate}

915
\subsection{Delete Properties}\label{acpipropsdelete}
V
vit9696 已提交
916 917

\begin{enumerate}
918 919 920
\item
  \texttt{All}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
921
  \textbf{Failsafe}: \texttt{false}\\
922
  \textbf{Description}: If set to \texttt{true}, all ACPI tables matching the
923
  condition will be deleted. Otherwise only first matched table.
924

V
vit9696 已提交
925 926 927
\item
  \texttt{Comment}\\
  \textbf{Type}: \texttt{plist\ string}\\
928
  \textbf{Failsafe}: Empty string\\
V
vit9696 已提交
929 930 931 932 933 934 935
  \textbf{Description}: Arbitrary ASCII string used to provide human readable
  reference for the entry. It is implementation defined whether this value is
  used.

\item
  \texttt{Enabled}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
936
  \textbf{Failsafe}: \texttt{false}\\
V
vit9696 已提交
937 938 939 940 941 942
  \textbf{Description}: This ACPI table will not be removed unless set to
  \texttt{true}.

\item
  \texttt{OemTableId}\\
  \textbf{Type}: \texttt{plist\ data}, 8 bytes\\
943
  \textbf{Failsafe}: All zero\\
V
vit9696 已提交
944 945 946 947
  \textbf{Description}: Match table OEM ID to be equal to this value
  unless all zero.

\item
948
  \texttt{TableLength}\\
V
vit9696 已提交
949
  \textbf{Type}: \texttt{plist\ integer}\\
950
  \textbf{Failsafe}: \texttt{0}\\
V
vit9696 已提交
951 952 953
  \textbf{Description}: Match table size to be equal to this value
  unless \texttt{0}.

954 955 956
\item
  \texttt{TableSignature}\\
  \textbf{Type}: \texttt{plist\ data}, 4 bytes\\
957
  \textbf{Failsafe}: All zero\\
958 959 960
  \textbf{Description}: Match table signature to be equal to this value
  unless all zero.

961 962 963 964
  \emph{Note}: Make sure not to specify table signature when the sequence
  needs to be replaced in multiple places. Especially when performing
  different kinds of renames.

V
vit9696 已提交
965 966 967 968 969 970 971 972 973
\end{enumerate}

\subsection{Patch Properties}\label{acpipropspatch}

\begin{enumerate}

\item
  \texttt{Comment}\\
  \textbf{Type}: \texttt{plist\ string}\\
974
  \textbf{Failsafe}: Empty string\\
V
vit9696 已提交
975 976 977 978 979 980 981
  \textbf{Description}: Arbitrary ASCII string used to provide human readable
  reference for the entry. It is implementation defined whether this value is
  used.

\item
  \texttt{Count}\\
  \textbf{Type}: \texttt{plist\ integer}\\
982
  \textbf{Failsafe}: \texttt{0}\\
V
vit9696 已提交
983 984 985 986 987 988
  \textbf{Description}: Number of patch occurrences to apply. \texttt{0} applies
  the patch to all occurrences found.

\item
  \texttt{Enabled}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
989
  \textbf{Failsafe}: \texttt{false}\\
V
vit9696 已提交
990 991 992 993 994 995
  \textbf{Description}: This ACPI patch will not be used unless set to
  \texttt{true}.

\item
  \texttt{Find}\\
  \textbf{Type}: \texttt{plist\ data}\\
996
  \textbf{Failsafe}: Empty data\\
V
vit9696 已提交
997 998 999 1000 1001
  \textbf{Description}: Data to find. Must equal to \texttt{Replace} in size.

\item
  \texttt{Limit}\\
  \textbf{Type}: \texttt{plist\ integer}\\
1002
  \textbf{Failsafe}: \texttt{0}\\
V
vit9696 已提交
1003 1004 1005 1006 1007 1008
  \textbf{Description}: Maximum number of bytes to search for. Can be set to
  \texttt{0} to look through the whole ACPI table.

\item
  \texttt{Mask}\\
  \textbf{Type}: \texttt{plist\ data}\\
1009
  \textbf{Failsafe}: Empty data\\
V
vit9696 已提交
1010 1011 1012 1013 1014 1015 1016 1017
  \textbf{Description}: Data bitwise mask used during find comparison.
  Allows fuzzy search by ignoring not masked (set to zero) bits. Can be
  set to empty data to be ignored. Must equal to \texttt{Replace} in size
  otherwise.

\item
  \texttt{OemTableId}\\
  \textbf{Type}: \texttt{plist\ data}, 8 bytes\\
1018
  \textbf{Failsafe}: All zero\\
V
vit9696 已提交
1019 1020 1021 1022 1023 1024
  \textbf{Description}: Match table OEM ID to be equal to this value
  unless all zero.

\item
  \texttt{Replace}\\
  \textbf{Type}: \texttt{plist\ data}\\
1025
  \textbf{Failsafe}: Empty data\\
V
vit9696 已提交
1026 1027 1028 1029 1030
  \textbf{Description}: Replacement data of one or more bytes.

\item
  \texttt{ReplaceMask}\\
  \textbf{Type}: \texttt{plist\ data}\\
1031
  \textbf{Failsafe}: Empty data\\
V
vit9696 已提交
1032 1033 1034 1035 1036 1037 1038 1039
  \textbf{Description}: Data bitwise mask used during replacement.
  Allows fuzzy replacement by updating masked (set to non-zero) bits. Can be
  set to empty data to be ignored. Must equal to \texttt{Replace} in size
  otherwise.

\item
  \texttt{Skip}\\
  \textbf{Type}: \texttt{plist\ integer}\\
1040
  \textbf{Failsafe}: \texttt{0}\\
V
vit9696 已提交
1041 1042 1043 1044 1045 1046
  \textbf{Description}: Number of found occurrences to be skipped before replacement
  is done.

\item
  \texttt{TableLength}\\
  \textbf{Type}: \texttt{plist\ integer}\\
1047
  \textbf{Failsafe}: \texttt{0}\\
V
vit9696 已提交
1048 1049 1050 1051 1052
  \textbf{Description}: Match table size to be equal to this value
  unless \texttt{0}.

\item
  \texttt{TableSignature}\\
V
vit9696 已提交
1053
  \textbf{Type}: \texttt{plist\ data}, 4 bytes\\
1054
  \textbf{Failsafe}: All zero\\
V
vit9696 已提交
1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070
  \textbf{Description}: Match table signature to be equal to this value
  unless all zero.

\end{enumerate}

In the majority of the cases ACPI patches are not useful and harmful:

\begin{itemize}
\item
  Avoid renaming devices with ACPI patches. This may fail or perform
  improper renaming of unrelated devices (e.g. \texttt{EC} and
  \texttt{EC0}), be unnecessary, or even fail to rename devices in select tables. For
  ACPI consistency it is much safer to rename devices at I/O Registry
  level, as done by
  \href{https://github.com/acidanthera/WhateverGreen}{WhateverGreen}.
\item
1071 1072
  Try to avoid patching \texttt{\_OSI} to support a higher level of feature sets
  whenever possible. Commonly this enables a number of hacks on APTIO
D
dakanji 已提交
1073 1074
  firmware, which result in the need to add more patches. Modern firmware
  generally does not need it, and those that do are fine with much
1075
  smaller patches. However, laptop vendors usually rely on this method to
D
dakanji 已提交
1076
  determine the availability of functions such as modern I2C input support, thermal
1077 1078 1079 1080 1081 1082
  adjustment and custom feature additions.
\item
  Avoid patching embedded controller event \texttt{\_Qxx} just for enabling
  brightness keys. The conventional process to find these keys usually involves
  massive modification on DSDT and SSDTs and the debug kext is not stable on
  newer systems. Please switch to built-in brightness key discovery of
1083
  \href{https://github.com/acidanthera/BrightnessKeys}{BrightnessKeys} instead.
V
vit9696 已提交
1084
\item
D
dakanji 已提交
1085
  Try to avoid hacky changes such as renaming \texttt{\_PRW} or \texttt{\_DSM}
V
vit9696 已提交
1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099
  whenever possible.
\end{itemize}

Several cases, where patching actually does make sense, include:

\begin{itemize}
\item
  Refreshing \texttt{HPET} (or another device) method header to avoid
  compatibility checks by \texttt{\_OSI} on legacy hardware. \texttt{\_STA}
  method with \texttt{if ((OSFL () == Zero)) \{ If (HPTE)  ...  Return (Zero)}
  content may be forced to always return 0xF by replacing
  \texttt{A0 10 93 4F 53 46 4C 00} with \texttt{A4 0A 0F A3 A3 A3 A3 A3}.
\item
  To provide custom method implementation with in an SSDT, for instance,
1100 1101 1102
  to inject shutdown fix on certain computers, the original method can be
  replaced with a dummy name by patching \texttt{\_PTS} with \texttt{ZPTS}
  and adding a callback to original method.
V
vit9696 已提交
1103 1104
\end{itemize}

1105
Tianocore \href{https://github.com/acidanthera/audk/blob/master/MdePkg/Include/IndustryStandard/AcpiAml.h}{AcpiAml.h}
V
vit9696 已提交
1106 1107
source file may help understanding ACPI opcodes.

V
vit9696 已提交
1108
\emph{Note}: Patches of different \texttt{Find} and \texttt{Replace} lengths
1109 1110 1111
are unsupported as they may corrupt ACPI tables and make the system unstable
due to area relocation. If such changes are needed, the utilisation of ``proxy''
patching or the padding of \texttt{NOP} to the remaining area might be taken into account.
V
vit9696 已提交
1112

V
vit9696 已提交
1113 1114 1115 1116 1117 1118 1119
\subsection{Quirks Properties}\label{acpipropsquirks}

\begin{enumerate}

\item
  \texttt{FadtEnableReset}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
1120
  \textbf{Failsafe}: \texttt{false}\\
V
vit9696 已提交
1121
  \textbf{Description}: Provide reset register and flag in FADT table to enable
V
vit9696 已提交
1122 1123 1124 1125
  reboot and shutdown.

  Mainly required on legacy hardware and few laptops. Can also fix power-button
  shortcuts. Not recommended unless required.
V
vit9696 已提交
1126 1127 1128 1129

\item
  \texttt{NormalizeHeaders}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
1130
  \textbf{Failsafe}: \texttt{false}\\
V
vit9696 已提交
1131 1132 1133 1134 1135 1136 1137 1138 1139
  \textbf{Description}: Cleanup ACPI header fields to workaround macOS
  ACPI implementation bug causing boot crashes. Reference:
  \href{https://alextjam.es/debugging-appleacpiplatform/}{Debugging
  AppleACPIPlatform on 10.13} by Alex James aka theracermaster. The
  issue is fixed in macOS Mojave (10.14).

\item
  \texttt{RebaseRegions}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
1140
  \textbf{Failsafe}: \texttt{false}\\
V
vit9696 已提交
1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165
  \textbf{Description}: Attempt to heuristically relocate ACPI memory
  regions. Not recommended.

  ACPI tables are often generated dynamically by underlying firmware
  implementation. Among the position-independent code, ACPI tables may
  contain physical addresses of MMIO areas used for device
  configuration, usually grouped in regions (e.g.
  \texttt{OperationRegion}). Changing firmware settings or hardware
  configuration, upgrading or patching the firmware inevitably leads to
  changes in dynamically generated ACPI code, which sometimes lead to
  the shift of the addresses in aforementioned \texttt{OperationRegion}
  constructions.

  For this reason it is very dangerous to apply any kind of
  modifications to ACPI tables. The most reasonable approach is to make
  as few as possible changes to ACPI and try to not replace any tables,
  especially DSDT. When this is not possible, then at least attempt to
  ensure that custom DSDT is based on the most recent DSDT or remove
  writes and reads for the affected areas.

  When nothing else helps this option could be tried to avoid stalls at
  \texttt{PCI\ Configuration\ Begin} phase of macOS booting by
  attempting to fix the ACPI addresses. It does not do magic, and only
  works with most common cases. Do not use unless absolutely required.

1166 1167 1168
\item
  \texttt{ResetHwSig}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
1169
  \textbf{Failsafe}: \texttt{false}\\
1170 1171 1172
  \textbf{Description}: Reset \texttt{FACS} table \texttt{HardwareSignature}
  value to \texttt{0}.

D
dakanji 已提交
1173
  This works around firmware that fail to maintain hardware signature across
1174 1175
  the reboots and cause issues with waking from hibernation.

1176 1177 1178
\item
  \texttt{ResetLogoStatus}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
1179
  \textbf{Failsafe}: \texttt{false}\\
1180 1181 1182
  \textbf{Description}: Reset \texttt{BGRT} table \texttt{Displayed}
  status field to \texttt{false}.

D
dakanji 已提交
1183
  This works around firmware that provide a \texttt{BGRT} table but
1184 1185
  fail to handle screen updates afterwards.

V
vit9696 已提交
1186 1187 1188
\end{enumerate}


1189 1190 1191 1192 1193 1194
\section{Booter}\label{booter}

\subsection{Introduction}\label{booterintro}

This section allows to apply different kinds of UEFI modifications on
Apple bootloader (\texttt{boot.efi}). The modifications currently provide
D
dakanji 已提交
1195
various patches and environment alterations for different firmware. Some
1196 1197 1198 1199 1200
of these features were originally implemented as a part of
\href{https://github.com/acidanthera/AptioFixPkg}{\text{AptioMemoryFix.efi}},
which is no longer maintained. See \hyperref[troubleshootingtricks]{Tips and Tricks}
section for migration steps.

1201 1202
If this is used for the first time on a customised firmware, there is a
list of checks to do first. Prior to starting, the following requirements should be fulfilled:
1203 1204 1205

\begin{itemize}
\tightlist
1206
\item Most up-to-date UEFI firmware (check the motherboard vendor website).
1207 1208 1209 1210 1211
\item \texttt{Fast Boot} and \texttt{Hardware Fast Boot} disabled in firmware
  settings if present.
\item \texttt{Above 4G Decoding} or similar enabled in firmware
  settings if present. Note, that on some motherboards (notably ASUS WS-X299-PRO) this
  option causes adverse effects, and must be disabled. While no other motherboards
1212 1213
  with the same issue are known, this option should be checked first whenever erratic boot
  failures are encountered.
1214
\item \texttt{DisableIoMapper} quirk enabled, or \texttt{VT-d} disabled in
1215
  firmware settings if present, or ACPI DMAR table deleted.
1216
\item \textbf{No} `slide` boot argument present in NVRAM or anywhere else.
1217 1218
  It is not necessary unless the system cannot be booted at all or
  \texttt{No slide values are usable! Use custom slide!} message can be seen in the log.
1219
\item \texttt{CFG Lock} (MSR \texttt{0xE2} write protection) disabled in
A
Andrey1970AppleLife 已提交
1220
  firmware settings if present. Consider
1221
\href{https://github.com/LongSoft/UEFITool/blob/master/UEFIPatch/patches.txt}{patching it}
1222
  if no option is available (for advanced users only). See
A
Andrey1970AppleLife 已提交
1223 1224
\hyperref[kernelpropsquirks]{VerifyMsrE2}
  notes for more details.
1225
\item \texttt{CSM} (Compatibility Support Module) disabled in firmware settings
1226
  if present. On NVIDIA 6xx/AMD 2xx or older, GOP ROM may have to be flashed first. Use
1227 1228
  \href{https://www.win-raid.com/t892f16-AMD-and-Nvidia-GOP-update-No-requests-DIY.html}{GopUpdate}
  (see the second post) or \href{http://www.insanelymac.com/forum/topic/299614-asus-eah6450-video-bios-uefi-gop-upgrade-and-gop-uefi-binary-in-efi-for-many-ati-cards/page-1#entry2042163}{AMD UEFI GOP MAKER}
1229
  in case of any potential confusion.
1230 1231 1232 1233
\item \texttt{EHCI/XHCI Hand-off} enabled in firmware settings \texttt{only} if boot
  stalls unless USB devices are disconnected.
\item \texttt{VT-x}, \texttt{Hyper Threading}, \texttt{Execute Disable Bit} enabled
  in firmware settings if present.
1234
\item While it may not be required, sometimes
1235
  \texttt{Thunderbolt support}, \texttt{Intel SGX}, and \texttt{Intel Platform Trust}
1236
  may have to be disabled in firmware settings present.
1237 1238
\end{itemize}

1239 1240 1241 1242
When debugging sleep issues Power Nap and automatic power off may be (temporarily) disabled,
which appear to sometimes cause wake to black screen or boot loop
issues on older platforms. The particular issues may vary, but in general ACPI tables should be looked up first.
Here is an example of a bug found in some
1243 1244 1245 1246 1247 1248 1249 1250
\href{http://www.insanelymac.com/forum/topic/329624-need-cmos-reset-after-sleep-only-after-login/#entry2534645}{Z68 motherboards}.
To turn Power Nap and the others off run the following commands in Terminal:
\begin{lstlisting}[label=powernap, style=ocbash]
sudo pmset autopoweroff 0
sudo pmset powernap 0
sudo pmset standby 0
\end{lstlisting}

1251
\emph{Note}: These settings may reset at hardware change and in certain other circumstances.
1252 1253
To view their current state use \texttt{pmset -g} command in Terminal.

1254 1255 1256 1257
\subsection{Properties}\label{booterprops}

\begin{enumerate}

V
vit9696 已提交
1258 1259 1260 1261 1262 1263 1264
\item
  \texttt{MmioWhitelist}\\
  \textbf{Type}: \texttt{plist\ array}\\
  \textbf{Description}: Designed to be filled with \texttt{plist\ dict} values,
  describing addresses critical for particular firmware functioning when
  \texttt{DevirtualiseMmio} quirk is in use. See \hyperref[booterpropsmmio]{MmioWhitelist Properties}
  section below.
1265 1266 1267 1268 1269 1270 1271 1272 1273
  
\item
  \texttt{Patch}\\
  \textbf{Type}: \texttt{plist\ array}\\
  \textbf{Failsafe}: Empty\\
  \textbf{Description}: Perform binary patches in booter.
  
  Designed to be filled with \texttt{plist\ dictionary} values, describing each
  patch. See \hyperref[booterpropspatch]{Patch Properties} section below.
V
vit9696 已提交
1274

1275 1276 1277 1278 1279 1280 1281 1282
\item
  \texttt{Quirks}\\
  \textbf{Type}: \texttt{plist\ dict}\\
  \textbf{Description}: Apply individual booter quirks described
  in \hyperref[booterpropsquirks]{Quirks Properties} section below.

\end{enumerate}

V
vit9696 已提交
1283 1284 1285 1286 1287 1288 1289 1290 1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315
\subsection{MmioWhitelist Properties}\label{booterpropsmmio}

\begin{enumerate}

\item
  \texttt{Address}\\
  \textbf{Type}: \texttt{plist\ integer}\\
  \textbf{Failsafe}: \texttt{0}\\
  \textbf{Description}: Exceptional MMIO address, which memory descriptor should be left
  virtualised (unchanged) by \texttt{DevirtualiseMmio}. This means that the firmware will
  be able to directly communicate with this memory region during operating system functioning,
  because the region this value is in will be assigned a virtual address.

  The addresses written here must be part of the memory map, have \texttt{EfiMemoryMappedIO}
  type and \texttt{EFI\_MEMORY\_RUNTIME} attribute (highest bit) set. To find the list of the
  candidates the debug log can be used.

\item
  \texttt{Comment}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: Empty string\\
  \textbf{Description}: Arbitrary ASCII string used to provide human readable
  reference for the entry. It is implementation defined whether this value is
  used.

\item
  \texttt{Enabled}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: This address will be devirtualised unless set to \texttt{true}.

\end{enumerate}

1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400
\subsection{Patch Properties}\label{booterpropspatch}

\begin{enumerate}
\item
  \texttt{Arch}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: \texttt{Any}\\
  \textbf{Description}: Booter patch architecture (\texttt{Any}, \texttt{i386}, \texttt{x86\_64}).

\item
  \texttt{Comment}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: Empty string\\
  \textbf{Description}: Arbitrary ASCII string used to provide human readable
  reference for the entry. It is implementation defined whether this value is
  used.

\item
  \texttt{Count}\\
  \textbf{Type}: \texttt{plist\ integer}\\
  \textbf{Failsafe}: \texttt{0}\\
  \textbf{Description}: Number of patch occurrences to apply. \texttt{0} applies
  the patch to all occurrences found.

\item
  \texttt{Enabled}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: This booter patch will not be used unless set to
  \texttt{true}.

\item
  \texttt{Find}\\
  \textbf{Type}: \texttt{plist\ data}\\
  \textbf{Failsafe}: Empty data\\
  \textbf{Description}: Data to find. This must equal to \texttt{Replace} in size.

\item
  \texttt{Identifier}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: Empty string\\
  \textbf{Description}: \texttt{Apple} for macOS booter (generally \texttt{boot.efi});
  or a name with suffix (e.g. \texttt{bootmgfw.efi}) for a specific booter;
  or \texttt{Any} / empty string (failsafe) to match any booter.

\item
  \texttt{Limit}\\
  \textbf{Type}: \texttt{plist\ integer}\\
  \textbf{Failsafe}: \texttt{0}\\
  \textbf{Description}: Maximum number of bytes to search for. Can be set to
  \texttt{0} to look through the whole booter.

\item
  \texttt{Mask}\\
  \textbf{Type}: \texttt{plist\ data}\\
  \textbf{Failsafe}: Empty data\\
  \textbf{Description}: Data bitwise mask used during find comparison.
  Allows fuzzy search by ignoring not masked (set to zero) bits. Can be
  set to empty data to be ignored. Must equal to \texttt{Find} in size
  otherwise.

\item
  \texttt{Replace}\\
  \textbf{Type}: \texttt{plist\ data}\\
  \textbf{Failsafe}: Empty data\\
  \textbf{Description}: Replacement data of one or more bytes.

\item
  \texttt{ReplaceMask}\\
  \textbf{Type}: \texttt{plist\ data}\\
  \textbf{Failsafe}: Empty data\\
  \textbf{Description}: Data bitwise mask used during replacement.
  Allows fuzzy replacement by updating masked (set to non-zero) bits. Can be
  set to empty data to be ignored. Must equal to \texttt{Replace} in size
  otherwise.

\item
  \texttt{Skip}\\
  \textbf{Type}: \texttt{plist\ integer}\\
  \textbf{Failsafe}: \texttt{0}\\
  \textbf{Description}: Number of found occurrences to be skipped before replacement
  is done.

\end{enumerate}

1401 1402 1403 1404
\subsection{Quirks Properties}\label{booterpropsquirks}

\begin{enumerate}

1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434
\item
  \texttt{AllowRelocationBlock}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Allows booting macOS through a relocation block.

  Relocation block is a scratch buffer allocated in lower 4 GB to be used for
  loading the kernel and related structures by EfiBoot on firmwares where
  lower memory is otherwise occupied by the (assumed to be) non-runtime data.
  Right before kernel startup the relocation block is copied back to lower
  addresses. Similarly all the other addresses pointing to relocation block
  are also carefully adjusted. Relocation block can be used when:

  \begin{itemize}
    \tightlist
    \item No better slide exists (all the memory is used)
    \item \texttt{slide=0} is forced (by an argument or safe mode)
    \item KASLR (slide) is unsupported (this is macOS 10.7 or older)
  \end{itemize}

  This quirk requires \texttt{ProvideCustomSlide} to also be enabled
  and generally needs \texttt{AvoidRuntimeDefrag} to work correctly.
  Hibernation is not supported when booting with a relocation block
  (but relocation block is not always used when the quirk is enabled).

  \emph{Note}: While this quirk is required to run older macOS versions
  on platforms with used lower memory it is not compatible with some
  hardware and macOS 11. In this case you may try to use
  \texttt{EnableSafeModeSlide} instead.

1435 1436 1437 1438 1439 1440 1441
\item
  \texttt{AvoidRuntimeDefrag}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Protect from boot.efi runtime memory defragmentation.

  This option fixes UEFI runtime services (date, time, NVRAM, power control, etc.)
D
dakanji 已提交
1442
  support on firmware that uses SMM backing for select services such as variable
1443 1444
  storage. SMM may try to access physical addresses, but they get moved by boot.efi.

D
dakanji 已提交
1445
  \emph{Note}: Most types of firmware, apart from Apple and VMware, need this quirk.
1446

1447 1448 1449 1450 1451 1452 1453 1454 1455
\item
  \texttt{DevirtualiseMmio}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Remove runtime attribute from select MMIO regions.

  This option reduces stolen memory footprint from the memory map by removing
  runtime bit for known memory regions. This quirk may result in the increase
  of KASLR slides available, but is not necessarily compatible with the target
V
vit9696 已提交
1456 1457 1458 1459
  board without additional measures. In general this frees from 64 to 256
  megabytes of memory (present in the debug log), and on some platforms it
  is the only way to boot macOS, which otherwise fails with allocation
  error at bootloader stage.
V
vit9696 已提交
1460

D
dakanji 已提交
1461 1462 1463 1464
  This option is generally useful on all types of firmware, except some very old ones
  such as Sandy Bridge. On some types of firmware, a list of addresses that need virtual
  addresses for proper NVRAM and hibernation functionality may be required.
  Use the \texttt{MmioWhitelist} section for this.
1465 1466 1467 1468 1469 1470 1471

\item
  \texttt{DisableSingleUser}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Disable single user mode.

1472
  This is a security option that restricts the activation of single user mode
1473 1474
  by ignoring \texttt{CMD+S} hotkey and \texttt{-s} boot argument. The
  behaviour with this quirk enabled is supposed to match T2-based model
1475
  behaviour. Refer to \href{https://web.archive.org/web/20200517125051/https://support.apple.com/en-us/HT201573}{this archived article} to understand how to use single user mode with this quirk enabled.
1476

1477 1478 1479 1480 1481 1482
\item
  \texttt{DisableVariableWrite}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Protect from macOS NVRAM write access.

1483
  This is a security option that restricts NVRAM access in macOS.
1484
  This quirk requires \texttt{OC\_FIRMWARE\_RUNTIME} protocol implemented
V
vit9696 已提交
1485
  in \texttt{OpenRuntime.efi}.
1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502

  \emph{Note}: This quirk can also be used as an ugly workaround to buggy UEFI
  runtime services implementations that fail to write variables to NVRAM and
  break the rest of the operating system.

\item
  \texttt{DiscardHibernateMap}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Reuse original hibernate memory map.

  This option forces XNU kernel to ignore newly supplied memory map and assume
  that it did not change after waking from hibernation. This behaviour is required
  to work by Windows, which mandates to
  \href{https://docs.microsoft.com/en-us/windows-hardware/design/device-experiences/oem-uefi#hibernation-state-s4-transition-requirements}{preserve}
  runtime memory size and location after S4 wake.

1503 1504
  \emph{Note}: This may be used to workaround buggy memory maps on older hardware,
  and is now considered rare legacy. Examples of such hardware are Ivy Bridge laptops
D
dakanji 已提交
1505
  with Insyde firmware, such as Acer V3-571G. Do not use this unless a complete understanding of
1506
  the consequences can be ensured.
1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532

\item
  \texttt{EnableSafeModeSlide}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Patch bootloader to have KASLR enabled in safe mode.

  This option is relevant to the users that have issues booting to safe mode
  (e.g. by holding \texttt{shift} or using \texttt{-x} boot argument). By default
  safe mode forces \texttt{0} slide as if the system was launched with \texttt{slide=0}
  boot argument. This quirk tries to patch \texttt{boot.efi} to lift that limitation
  and let some other value (from \texttt{1} to \texttt{255}) be used. This quirk requires
  \texttt{ProvideCustomSlide} to be enabled.

  \emph{Note}: The necessity of this quirk is determined by safe mode availability. If
  booting to safe mode fails, this option can be tried to be enabled.

\item
  \texttt{EnableWriteUnprotector}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Permit write access to UEFI runtime services code.

  This option bypasses \texttt{R\^X} permissions in code pages of UEFI runtime
  services by removing write protection (\texttt{WP}) bit from \texttt{CR0}
  register during their execution. This quirk requires \texttt{OC\_FIRMWARE\_RUNTIME}
V
vit9696 已提交
1533
  protocol implemented in \texttt{OpenRuntime.efi}.
1534

1535
  \emph{Note}: This quirk may potentially weaken firmware security, please use
1536
  \texttt{RebuildAppleMemoryMap} if the firmware supports memory attributes table (MAT).
1537
  Refer to \texttt{OCABC: MAT support is 1/0} log entry to determine whether MAT is supported.
1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548

\item
  \texttt{ForceExitBootServices}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Retry \texttt{ExitBootServices} with new memory map on failure.

  Try to ensure that \texttt{ExitBootServices} call succeeds even with outdated MemoryMap
  key argument by obtaining current memory map and retrying \texttt{ExitBootServices} call.

  \emph{Note}: The necessity of this quirk is determined by early boot crashes
1549
  of the firmware. Do not use this without a full understanding of the consequences.
1550 1551

\item
1552
  \texttt{ProtectMemoryRegions}\\
1553 1554
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
1555
  \textbf{Description}: Protect memory regions from incorrect access.
1556

D
dakanji 已提交
1557
  Some types of firmware incorrectly map select memory regions:
1558

1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570
  \begin{itemize}
    \tightlist
    \item CSM region can be marked as boot services code or data, which
      leaves it as free memory for XNU kernel.
    \item MMIO regions can be marked as reserved memory and stay unmapped,
      but may be required to be accessible at runtime for NVRAM support.
  \end{itemize}

  This quirk attempts to fix types of these regions, e.g. ACPI NVS for
  CSM or MMIO for MMIO.

  \emph{Note}: The necessity of this quirk is determined by artifacts, sleep
D
dakanji 已提交
1571
  wake issues, and boot failures. Only very old firmware typically need
1572
  this quirk.
1573

1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585
\item
  \texttt{ProtectSecureBoot}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Protect UEFI Secure Boot variables from being written.

  Reports security violation during attempts to write to \texttt{db}, \texttt{dbx},
  \texttt{PK}, and \texttt{KEK} variables from the operating system.

  \emph{Note}: This quirk mainly attempts to avoid issues with NVRAM implementations
  with problematic defragmentation, such as select Insyde or \texttt{MacPro5,1}.

1586 1587 1588 1589 1590 1591
\item
  \texttt{ProtectUefiServices}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Protect UEFI services from being overridden by the firmware.

D
dakanji 已提交
1592
  Some modern firmware, including on virtual machines such as VMware,
1593 1594
  may update pointers to UEFI services during driver loading and related actions.
  Consequentially this directly breaks other quirks that affect memory management,
D
dakanji 已提交
1595
  such as \texttt{DevirtualiseMmio}, \texttt{ProtectMemoryRegions}, or \texttt{RebuildAppleMemoryMap},
1596 1597 1598 1599 1600
  and may also break other quirks depending on the effects of these.

  \emph{Note}: On VMware the need for this quirk may be diagnosed by ``Your Mac OS guest
  might run unreliably with more than one virtual core.'' message.

1601 1602 1603 1604 1605 1606
\item
  \texttt{ProvideCustomSlide}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Provide custom KASLR slide on low memory.

1607
  This option performs memory map analysis of the firmware and checks whether
1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618
  all slides (from \texttt{1} to \texttt{255}) can be used. As \texttt{boot.efi}
  generates this value randomly with \texttt{rdrand} or pseudo randomly \texttt{rdtsc},
  there is a chance of boot failure when it chooses a conflicting slide. In case
  potential conflicts exist, this option forces macOS to use a pseudo random value
  among the available ones. This also ensures that \texttt{slide=} argument is never
  passed to the operating system for security reasons.

  \emph{Note}: The necessity of this quirk is determined by \texttt{OCABC: Only N/256
  slide values are usable!} message in the debug log. If the message is present,
  this option is to be enabled.

1619 1620 1621 1622 1623 1624
\item
  \texttt{ProvideMaxSlide}\\
  \textbf{Type}: \texttt{plist\ integer}\\
  \textbf{Failsafe}: \texttt{0}\\
  \textbf{Description}: Provide maximum KASLR slide when higher ones are unavailable.

A
Andrey1970AppleLife 已提交
1625
  This option overrides the maximum slide of 255 by a user specified value between 1 and 254 inclusive
1626
  when \texttt{ProvideCustomSlide} is enabled.
D
dakanji 已提交
1627 1628 1629
  It is believed that modern firmware allocates pool memory from top to bottom, effectively resulting in
  free memory when slide scanning is used later as temporary memory during kernel loading.
  When such memory is not available, this option can stop the evaluation of higher slides.
1630 1631 1632 1633

  \emph{Note}: The necessity of this quirk is determined by random boot failure
  when \texttt{ProvideCustomSlide} is enabled and the randomized slide fall
  into the unavailable range. When \texttt{AppleDebug} is enabled, usually the
D
dakanji 已提交
1634
  debug log may contain messages such as \texttt{AAPL: [EB|`LD:LKC] \} Err(0x9)}.
1635
  To find the optimal value, manually append \texttt{slide=X} to \texttt{boot-args}
1636
  and log the largest one that will not result in boot failures.
1637

1638 1639 1640 1641 1642 1643 1644 1645 1646 1647 1648
\item
  \texttt{RebuildAppleMemoryMap}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Generate Memory Map compatible with macOS.

  Apple kernel has several limitations in parsing UEFI memory map:

  \begin{itemize}
  \tightlist
  \item Memory map size must not exceed 4096 bytes as Apple kernel maps
D
dakanji 已提交
1649 1650
    it as a single 4K page. Since some types of firmware can have very large memory maps,
    potentially over 100 entries, the Apple kernel will crash on boot.
1651 1652 1653 1654 1655 1656 1657 1658
  \item Memory attributes table is ignored. \texttt{EfiRuntimeServicesCode}
    memory statically gets \texttt{RX} permissions, and all other memory types
    get \texttt{RW} permissions. Since some firmware drivers may write to global
    variables at runtime, Apple kernel will crash at calling UEFI runtime services,
    unless driver \texttt{.data} section has \texttt{EfiRuntimeServicesData}
    type.
  \end{itemize}

D
dakanji 已提交
1659 1660
  To workaround these limitations, this quirk applies memory attribute table
  permissions to the memory map passed to the Apple kernel and optionally attempts
1661 1662 1663
  to unify contiguous slots of similar types if the resulting memory map exceeds
  4 KB.

D
dakanji 已提交
1664 1665
  \emph{Note 1}: Since several types of firmware come with incorrect memory protection
  tables, this quirk often comes paired with \texttt{SyncRuntimePermissions}.
1666 1667

  \emph{Note 2}: The necessity of this quirk is determined by early boot failures.
D
dakanji 已提交
1668 1669 1670 1671
  This quirk replaces \texttt{EnableWriteUnprotector} on firmware supporting
  Memory Attribute Tables (MAT). This quirk is usually unnecessary when using
  \texttt{OpenDuetPkg}, but may be required to boot macOS 10.6, and earlier, for
  reasons that are not clear.
1672

1673 1674 1675 1676 1677 1678
\item
  \texttt{SetupVirtualMap}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Setup virtual memory at \texttt{SetVirtualAddresses}.

D
dakanji 已提交
1679 1680
  Some types of firmware access memory by virtual addresses after a \texttt{SetVirtualAddresses}
  call, resulting in early boot crashes. This quirk workarounds the problem by
1681 1682 1683
  performing early boot identity mapping of assigned virtual addresses to physical
  memory.

D
dakanji 已提交
1684 1685
  \emph{Note}: The necessity of this quirk is determined by early boot failures. Currently,
  new firmware with memory protection support (such as OVMF) do not support this quirk. See
1686
  \href{https://github.com/acidanthera/bugtracker/issues/719}{acidanthera/bugtracker\#719}.
1687

1688 1689 1690 1691 1692 1693
\item
  \texttt{SignalAppleOS}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Report macOS being loaded through OS Info for any OS.

D
dakanji 已提交
1694
  This quirk is useful on Mac firmware, which behaves differently in different OS.
1695 1696 1697
  For example, it is supposed to enable Intel GPU in Windows and Linux in some
  dual-GPU MacBook models.

1698 1699 1700 1701
\item
  \texttt{SyncRuntimePermissions}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
1702
  \textbf{Description}: Update memory permissions for runtime environment.
1703

D
dakanji 已提交
1704
  Some types of firmware fail to properly handle runtime permissions:
1705 1706 1707 1708 1709 1710 1711 1712 1713 1714 1715
  \begin{itemize}
    \tightlist
    \item They incorrectly mark \texttt{OpenRuntime} as not executable in the memory map.
    \item They incorrectly mark \texttt{OpenRuntime} as not executable in the memory
    attributes table.
    \item They lose entries from the memory attributes table after \texttt{OpenRuntime}
    is loaded.
    \item They mark items in the memory attributes table as read-write-execute.
  \end{itemize}

  This quirk tries to update memory map and memory attributes table to correct this.
1716

D
dakanji 已提交
1717 1718
  \emph{Note}: The need for this quirk is indicated by early boot failures.
  Only firmware released after 2017 is typically affected.
1719

1720 1721
\end{enumerate}

V
vit9696 已提交
1722 1723 1724 1725 1726
\section{DeviceProperties}\label{devprops}

\subsection{Introduction}\label{devpropsintro}

Device configuration is provided to macOS with a dedicated buffer,
A
Andrey1970AppleLife 已提交
1727
called \texttt{EfiDevicePathPropertyDatabase}. This buffer is a serialised
V
vit9696 已提交
1728 1729
map of DevicePaths to a map of property names and their values.

V
vit9696 已提交
1730 1731 1732 1733 1734 1735 1736 1737 1738 1739
Property data can be debugged with
\href{https://github.com/acidanthera/gfxutil}{gfxutil}.
To obtain current property data use the following command in macOS:
\begin{lstlisting}[label=gfxutil, style=ocbash]
ioreg -lw0 -p IODeviceTree -n efi -r -x | grep device-properties |
  sed 's/.*<//;s/>.*//' > /tmp/device-properties.hex &&
  gfxutil /tmp/device-properties.hex /tmp/device-properties.plist &&
  cat /tmp/device-properties.plist
\end{lstlisting}

G
Goldfish64 已提交
1740
Device properties are part of the \texttt{IODeviceTree} (\texttt{gIODT})
1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766 1767 1768 1769
plane of macOS I/O Registry. This plane has several construction stages
relevant for the platform initialisation. While the early construction
stage is performed by the XNU kernel in the \texttt{IODeviceTreeAlloc}
method, the majority of the construction is performed by the platform expert,
implemented in \texttt{AppleACPIPlatformExpert.kext}.

AppleACPIPlatformExpert incorporates two stages of \texttt{IODeviceTree}
construction implemented by calling \\
\texttt{AppleACPIPlatformExpert::mergeDeviceProperties}:

\begin{enumerate}
  \tightlist
  \item During ACPI table initialisation through the recursive ACPI namespace scanning
  by the calls to \\
  \texttt{AppleACPIPlatformExpert::createDTNubs}.
  \item During IOService registration (\texttt{IOServices::registerService}) callbacks
  implemented as a part of \\
  \texttt{AppleACPIPlatformExpert::platformAdjustService}
  function and its private worker method \\
  \texttt{AppleACPIPlatformExpert::platformAdjustPCIDevice}
  specific to the PCI devices.
\end{enumerate}

The application of the stages depends on the device presence in ACPI tables.
The first stage applies very early but exclusively to the devices present in ACPI tables.
The second stage applies to all devices much later after the PCI configuration
and may repeat the first stage if the device was not present in ACPI.

For all kernel drivers, which may inspect the \texttt{IODeviceTree} plane without
D
dakanji 已提交
1770
probing (e.g. \texttt{Lilu} and its plugins such as \texttt{WhateverGreen}) it is particularly
1771 1772 1773 1774 1775
important to ensure device presence in the ACPI tables. Failing to do so may result
\textbf{in all kinds of erratic behaviour} caused by ignoring the injected device properties
as they were not constructed at the first stage. See \texttt{SSDT-IMEI.dsl} and
\texttt{SSDT-BRG0.dsl} for an example.

V
vit9696 已提交
1776 1777 1778 1779 1780 1781 1782
\subsection{Properties}\label{devpropsprops}

\begin{enumerate}
\item
  \texttt{Add}\\
  \textbf{Type}: \texttt{plist\ dict}\\
  \textbf{Description}: Sets device properties from a map (\texttt{plist\ dict})
G
Goldfish64 已提交
1783
  of device paths to a map (\texttt{plist\ dict}) of variable names and their values
V
vit9696 已提交
1784 1785
  in \texttt{plist\ metadata} format. Device paths must be provided in canonic string
  format (e.g. \texttt{PciRoot(0x0)/Pci(0x1,0x0)/Pci(0x0,0x0)}). Properties will only
1786
  be set if not present and not deleted.
V
vit9696 已提交
1787 1788

  \emph{Note}: Currently properties may only be (formerly) added by the original driver,
1789
  so unless a separate driver was installed, there is no reason to delete the variables.
V
vit9696 已提交
1790 1791

\item
1792
  \texttt{Delete}\\
V
vit9696 已提交
1793 1794
  \textbf{Type}: \texttt{plist\ dict}\\
  \textbf{Description}: Removes device properties from a map (\texttt{plist\ dict})
G
Goldfish64 已提交
1795
  of device paths to an array (\texttt{plist\ array}) of variable names in
V
vit9696 已提交
1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827 1828 1829 1830 1831 1832 1833 1834 1835 1836 1837 1838 1839 1840 1841 1842 1843 1844 1845
  \texttt{plist\ string} format.

\end{enumerate}

\subsection{Common Properties}\label{devpropscommon}

Some known properties include:

\begin{itemize}
\tightlist
\item
  \texttt{device-id}
  \break
  User-specified device identifier used for I/O Kit matching. Has 4 byte data type.
\item
  \texttt{vendor-id}
  \break
  User-specified vendor identifier used for I/O Kit matching. Has 4 byte data type.
\item
  \texttt{AAPL,ig-platform-id}
  \break
  Intel GPU framebuffer identifier used for framebuffer selection on Ivy Bridge and newer.
  Has 4 byte data type.
\item
  \texttt{AAPL,snb-platform-id}
  \break
  Intel GPU framebuffer identifier used for framebuffer selection on Sandy Bridge.
  Has 4 byte data type.
\item
  \texttt{layout-id}
  \break
  Audio layout used for AppleHDA layout selection. Has 4 byte data type.
\end{itemize}


\section{Kernel}\label{kernel}

\subsection{Introduction}\label{kernelintro}

This section allows to apply different kinds of kernelspace modifications on
Apple Kernel (\href{https://opensource.apple.com/source/xnu}{XNU}). The modifications
currently provide driver (kext) injection, kernel and driver patching, and driver
blocking.

\subsection{Properties}\label{kernelprops}

\begin{enumerate}
\item
  \texttt{Add}\\
  \textbf{Type}: \texttt{plist\ array}\\
1846
  \textbf{Failsafe}: Empty\\
V
vit9696 已提交
1847 1848 1849
  \textbf{Description}: Load selected kernel drivers from \texttt{OC/Kexts} directory.

  Designed to be filled with \texttt{plist\ dict} values, describing each driver.
V
vit9696 已提交
1850 1851 1852
  See \hyperref[kernelpropsadd]{Add Properties} section below. Kernel driver load
  order follows the item order in the array, thus the dependencies should be written
  prior to their consumers.
V
vit9696 已提交
1853

1854
  To track the dependency order, inspect the \texttt{OSBundleLibraries} key
V
vit9696 已提交
1855
  in the \texttt{Info.plist} of the kext. Any kext mentioned in the
1856
  \texttt{OSBundleLibraries} of the other kext must precede this kext.
V
vit9696 已提交
1857 1858 1859 1860

  \emph{Note}: Kexts may have inner kexts (\texttt{Plug-Ins}) in their bundle. Each
  inner kext must be added separately.

V
vit9696 已提交
1861 1862 1863
\item
  \texttt{Block}\\
  \textbf{Type}: \texttt{plist\ array}\\
1864
  \textbf{Failsafe}: Empty\\
V
vit9696 已提交
1865 1866 1867 1868 1869
  \textbf{Description}: Remove selected kernel drivers from prelinked kernel.

  Designed to be filled with \texttt{plist\ dictionary} values, describing each
  blocked driver. See \hyperref[kernelpropsblock]{Block Properties} section below.

1870 1871 1872 1873 1874 1875
\item
  \texttt{Emulate}\\
  \textbf{Type}: \texttt{plist\ dict}\\
  \textbf{Description}: Emulate select hardware in kernelspace via parameters
  described in \hyperref[kernelpropsemu]{Emulate Properties} section below.

1876 1877 1878 1879 1880 1881 1882 1883 1884 1885
\item
  \texttt{Force}\\
  \textbf{Type}: \texttt{plist\ array}\\
  \textbf{Failsafe}: Empty\\
  \textbf{Description}: Load kernel drivers from system volume if they are not cached.

  Designed to be filled with \texttt{plist\ dict} values, describing each driver.
  See \hyperref[kernelpropsforce]{Force Properties} section below.
  This section resolves the problem of injecting drivers that depend on other
  drivers, which are not cached otherwise. The issue normally affects older
D
dakanji 已提交
1886
  operating systems, where various dependency kexts, such as \texttt{IOAudioFamily}
1887 1888 1889 1890 1891 1892 1893 1894 1895
  or \texttt{IONetworkingFamily} may not be present in the kernel cache by default.
  Kernel driver load order follows the item order in the array, thus the dependencies
  should be written prior to their consumers. \texttt{Force} happens before
  \texttt{Add}.

  \emph{Note}: The signature of the ``forced'' kernel drivers is not checked anyhow,
  making the use of this feature extremely dangerous and undesired for secure boot.
  This feature may not work on encrypted partitions in newer operating systems.

V
vit9696 已提交
1896 1897 1898
\item
  \texttt{Patch}\\
  \textbf{Type}: \texttt{plist\ array}\\
1899
  \textbf{Failsafe}: Empty\\
V
vit9696 已提交
1900
  \textbf{Description}: Perform binary patches in kernel and drivers prior to
1901
  driver addition and removal.
V
vit9696 已提交
1902 1903 1904 1905 1906 1907 1908 1909 1910 1911

  Designed to be filled with \texttt{plist\ dictionary} values, describing each
  patch. See \hyperref[kernelpropspatch]{Patch Properties} section below.

\item
  \texttt{Quirks}\\
  \textbf{Type}: \texttt{plist\ dict}\\
  \textbf{Description}: Apply individual kernel and driver quirks described
  in \hyperref[kernelpropsquirks]{Quirks Properties} section below.

1912 1913 1914 1915 1916 1917 1918
\item
  \texttt{Scheme}\\
  \textbf{Type}: \texttt{plist\ dict}\\
  \textbf{Description}: Define kernelspace operation mode via parameters
  described in \hyperref[kernelpropsscheme]{Scheme Properties} section below.


V
vit9696 已提交
1919 1920 1921 1922 1923
\end{enumerate}

\subsection{Add Properties}\label{kernelpropsadd}

\begin{enumerate}
1924 1925 1926 1927 1928 1929
\item
  \texttt{Arch}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: \texttt{Any}\\
  \textbf{Description}: Kext architecture (\texttt{Any}, \texttt{i386}, \texttt{x86\_64}).

V
vit9696 已提交
1930
\item
1931
  \texttt{BundlePath}\\
V
vit9696 已提交
1932
  \textbf{Type}: \texttt{plist\ string}\\
1933
  \textbf{Failsafe}: Empty string\\
1934 1935
  \textbf{Description}: Kext bundle path (e.g. \texttt{Lilu.kext}
  or \texttt{MyKext.kext/Contents/PlugIns/MySubKext.kext}).
V
vit9696 已提交
1936 1937 1938 1939

\item
  \texttt{Comment}\\
  \textbf{Type}: \texttt{plist\ string}\\
1940
  \textbf{Failsafe}: Empty string\\
V
vit9696 已提交
1941 1942 1943 1944 1945 1946 1947
  \textbf{Description}: Arbitrary ASCII string used to provide human readable
  reference for the entry. It is implementation defined whether this value is
  used.

\item
  \texttt{Enabled}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
1948
  \textbf{Failsafe}: \texttt{false}\\
V
vit9696 已提交
1949 1950 1951 1952 1953 1954
  \textbf{Description}: This kernel driver will not be added unless set to
  \texttt{true}.

\item
  \texttt{ExecutablePath}\\
  \textbf{Type}: \texttt{plist\ string}\\
1955
  \textbf{Failsafe}: Empty string\\
V
vit9696 已提交
1956 1957 1958 1959
  \textbf{Description}: Kext executable path relative to bundle
  (e.g. \texttt{Contents/MacOS/Lilu}).

\item
1960
  \texttt{MaxKernel}\\
V
vit9696 已提交
1961
  \textbf{Type}: \texttt{plist\ string}\\
1962
  \textbf{Failsafe}: Empty string\\
1963 1964
  \textbf{Description}: Adds kernel driver on specified macOS version or older.

V
vit9696 已提交
1965 1966 1967
  \hypertarget{kernmatch}Kernel version can be obtained with \texttt{uname -r} command,
  and should look like 3 numbers separated by dots, for example \texttt{18.7.0} is the
  kernel version for \texttt{10.14.6}. Kernel version interpretation is implemented as follows:
1968 1969
  \begin{align*}
    \begin{aligned}
M
Michael Belyaev 已提交
1970
      ParseDarwinVersion(\kappa,\lambda,\mu)&=\kappa \cdot10000 &&
1971
        \text{Where }\kappa\in(0,99)\text{ is kernel version major} \\
V
vit9696 已提交
1972
      &+ \lambda\cdot100 &&
1973
        \text{Where }\lambda\in(0,99)\text{ is kernel version minor} \\
V
vit9696 已提交
1974
      &+ \mu &&
1975 1976 1977 1978 1979 1980 1981 1982 1983 1984 1985 1986 1987 1988 1989 1990 1991 1992 1993 1994 1995 1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008
        \text{Where }\mu\in(0,99)\text{ is kernel version patch}
    \end{aligned}
  \end{align*}
  Kernel version comparison is implemented as follows:
  \begin{align*}
    \alpha&=\begin{cases}
      \vspace{-0.5cm}\mbox{\hspace{8cm}} & \mbox{\hspace{5cm}} \\
      ParseDarwinVersion(\texttt{MinKernel}), & \text{If } \texttt{MinKernel} \text{ is valid} \\
      0 & Otherwise
    \end{cases} \\
    \beta&=\begin{cases}
      \vspace{-0.5cm}\mbox{\hspace{8cm}} & \mbox{\hspace{5cm}} \\
      ParseDarwinVersion(\texttt{MaxKernel}), & \text{If } \texttt{MaxKernel} \text{ is valid} \\
      \infty & Otherwise
    \end{cases} \\
    \gamma&=\begin{cases}
      \vspace{-0.5cm}\mbox{\hspace{8cm}} & \mbox{\hspace{5cm}} \\
      ParseDarwinVersion(FindDarwinVersion()), & \text{If valid } \texttt{"Darwin Kernel Version"} \text{ is found} \\
      \infty & Otherwise
    \end{cases} \\
    & \hspace{5cm} f(\alpha,\beta,\gamma)=\alpha\leq\gamma\leq\beta
  \end{align*}
  Here $ParseDarwinVersion$ argument is assumed to be 3 integers obtained by splitting Darwin kernel version
  string from left to right by the \texttt{.} symbol. $FindDarwinVersion$ function looks up
  Darwin kernel version by locating \texttt{"Darwin Kernel Version $\kappa$.$\lambda$.$\mu$"} string
  in the kernel image.

\item
  \texttt{MinKernel}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: Empty string\\
  \textbf{Description}: Adds kernel driver on specified macOS version or newer.

  \emph{Note}: Refer to \hyperlink{kernmatch}{\texttt{Add} \texttt{MaxKernel} description} for matching logic.
V
vit9696 已提交
2009 2010 2011 2012

\item
  \texttt{PlistPath}\\
  \textbf{Type}: \texttt{plist\ string}\\
2013
  \textbf{Failsafe}: Empty string\\
V
vit9696 已提交
2014 2015 2016 2017 2018 2019 2020 2021
  \textbf{Description}: Kext \texttt{Info.plist} path relative to bundle
  (e.g. \texttt{Contents/Info.plist}).

\end{enumerate}

\subsection{Block Properties}\label{kernelpropsblock}

\begin{enumerate}
2022 2023 2024 2025 2026 2027
\item
  \texttt{Arch}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: \texttt{Any}\\
  \textbf{Description}: Kext block architecture (\texttt{Any}, \texttt{i386}, \texttt{x86\_64}).

V
vit9696 已提交
2028 2029 2030
\item
  \texttt{Comment}\\
  \textbf{Type}: \texttt{plist\ string}\\
2031
  \textbf{Failsafe}: Empty string\\
V
vit9696 已提交
2032 2033 2034 2035 2036 2037 2038
  \textbf{Description}: Arbitrary ASCII string used to provide human readable
  reference for the entry. It is implementation defined whether this value is
  used.

\item
  \texttt{Enabled}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
2039
  \textbf{Failsafe}: \texttt{false}\\
V
vit9696 已提交
2040
  \textbf{Description}: This kernel driver will not be blocked unless set to
V
vit9696 已提交
2041 2042 2043 2044 2045
  \texttt{true}.

\item
  \texttt{Identifier}\\
  \textbf{Type}: \texttt{plist\ string}\\
2046
  \textbf{Failsafe}: Empty string\\
V
vit9696 已提交
2047 2048 2049 2050
  \textbf{Description}: Kext bundle identifier
    (e.g. \texttt{com.apple.driver.AppleTyMCEDriver}).

\item
2051 2052 2053 2054 2055 2056 2057 2058 2059
  \texttt{MaxKernel}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: Empty string\\
  \textbf{Description}: Blocks kernel driver on specified macOS version or older.

  \emph{Note}: Refer to \hyperlink{kernmatch}{\texttt{Add} \texttt{MaxKernel} description} for matching logic.

\item
  \texttt{MinKernel}\\
V
vit9696 已提交
2060
  \textbf{Type}: \texttt{plist\ string}\\
2061
  \textbf{Failsafe}: Empty string\\
2062 2063 2064
  \textbf{Description}: Blocks kernel driver on specified macOS version or newer.

  \emph{Note}: Refer to \hyperlink{kernmatch}{\texttt{Add} \texttt{MaxKernel} description} for matching logic.
V
vit9696 已提交
2065 2066 2067

\end{enumerate}

2068 2069 2070 2071 2072
\subsection{Emulate Properties}\label{kernelpropsemu}

\begin{enumerate}
\item
  \texttt{Cpuid1Data}\\
A
Andrey1970AppleLife 已提交
2073
  \textbf{Type}: \texttt{plist\ data}, 16 bytes\\
2074
  \textbf{Failsafe}: All zero\\
2075
  \textbf{Description}: Sequence of \texttt{EAX}, \texttt{EBX}, \texttt{ECX},
2076 2077
  \texttt{EDX} values to replace \texttt{CPUID (1)} call in XNU kernel.

2078
  This property primarily serves for three needs:
2079 2080 2081

  \begin{itemize}
    \tightlist
2082 2083
    \item Enabling support of an unsupported CPU model (e.g. Intel Pentium).
    \item Enabling support of a CPU model that is not yet supported by a specific version of macOS which usually is old.
2084 2085
    \item Enabling XCPM support for an unsupported CPU variant.
  \end{itemize}
2086

2087 2088 2089
  \emph{Note 1}: It may also be the case that the CPU model is supported but there is no power management supported
  (e.g. virtual machines). In this case, \texttt{MinKernel} and \texttt{MaxKernel} can be set to restrict CPU virtualisation and dummy power
  management patches to the particular macOS kernel version.
2090

2091
  \emph{Note 2}: Normally it is only the value of \texttt{EAX} that needs to be taken care of,
2092
  since it represents the full CPUID. The remaining bytes are to be left as zeroes.
V
vit9696 已提交
2093 2094
  Byte order is Little Endian, so for example, \texttt{C3 06 03 00} stands for CPUID
  \texttt{0x0306C3} (Haswell).
2095

2096
  \emph{Note 3}: For XCPM support it is recommended to use the following combinations.
2097 2098 2099

  \begin{itemize}
    \tightlist
V
vit9696 已提交
2100
    \item Haswell-E (\texttt{0x0306F2}) to Haswell (\texttt{0x0306C3}):\\
2101 2102 2103 2104 2105 2106 2107
    \texttt{Cpuid1Data}: \texttt{C3 06 03 00 00 00 00 00 00 00 00 00 00 00 00 00}\\
    \texttt{Cpuid1Mask}: \texttt{FF FF FF FF 00 00 00 00 00 00 00 00 00 00 00 00}
    \item Broadwell-E (\texttt{0x0406F1}) to Broadwell (\texttt{0x0306D4}):\\
    \texttt{Cpuid1Data}: \texttt{D4 06 03 00 00 00 00 00 00 00 00 00 00 00 00 00}\\
    \texttt{Cpuid1Mask}: \texttt{FF FF FF FF 00 00 00 00 00 00 00 00 00 00 00 00}
  \end{itemize}

2108
  \emph{Note 4}: Note that the following configurations are unsupported by XCPM (at least out of the box):
V
vit9696 已提交
2109 2110 2111 2112

  \begin{itemize}
    \tightlist
    \item Consumer Ivy Bridge (\texttt{0x0306A9}) as Apple disabled XCPM for Ivy Bridge
2113
      and recommends legacy power management for these CPUs. \texttt{\_xcpm\_bootstrap}
2114
      should manually be patched to enforce XCPM on these CPUs instead of this option.
V
vit9696 已提交
2115 2116 2117 2118
    \item Low-end CPUs (e.g. Haswell+ Pentium) as they are not supported properly by macOS.
      Legacy hacks for older models can be found in the \texttt{Special NOTES} section of
      \href{https://github.com/acidanthera/bugtracker/issues/365}{acidanthera/bugtracker\#365}.
  \end{itemize}
2119 2120 2121

\item
  \texttt{Cpuid1Mask}\\
A
Andrey1970AppleLife 已提交
2122
  \textbf{Type}: \texttt{plist\ data}, 16 bytes\\
2123
  \textbf{Failsafe}: All zero\\
2124 2125 2126
  \textbf{Description}: Bit mask of active bits in \texttt{Cpuid1Data}.

  When each \texttt{Cpuid1Mask} bit is set to 0, the original CPU bit is used,
V
vit9696 已提交
2127
  otherwise set bits take the value of \texttt{Cpuid1Data}.
2128

2129 2130 2131 2132 2133 2134 2135 2136 2137 2138
\item
  \texttt{DummyPowerManagement}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Requirement}: 10.4\\
  \textbf{Description}: Disables \texttt{AppleIntelCpuPowerManagement}.

  \emph{Note 1}: This option is a preferred alternative to
  \texttt{NullCpuPowerManagement.kext} for CPUs without native power
  management driver in macOS.
2139

2140
  \emph{Note 2}: While this option is usually needed to disable \texttt{AppleIntelCpuPowerManagement}
2141 2142
  on unsupported platforms, it can also be used to disable this kext in other situations
  (e.g. with \texttt{Cpuid1Data} left blank).
2143 2144 2145 2146 2147 2148 2149 2150 2151 2152 2153 2154 2155 2156 2157 2158

\item
  \texttt{MaxKernel}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: Empty string\\
  \textbf{Description}: Emulates CPUID and applies \texttt{DummyPowerManagement} on specified macOS version or older.

  \emph{Note}: Refer to \hyperlink{kernmatch}{\texttt{Add} \texttt{MaxKernel} description} for matching logic.

\item
  \texttt{MinKernel}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: Empty string\\
  \textbf{Description}: Emulates CPUID and applies \texttt{DummyPowerManagement} on specified macOS version or newer.

  \emph{Note}: Refer to \hyperlink{kernmatch}{\texttt{Add} \texttt{MaxKernel} description} for matching logic.
2159

2160 2161
\end{enumerate}

2162 2163 2164 2165 2166 2167 2168 2169 2170 2171 2172 2173 2174 2175 2176 2177 2178 2179 2180 2181 2182 2183 2184 2185 2186 2187 2188 2189 2190 2191 2192 2193 2194 2195 2196 2197 2198 2199 2200 2201 2202 2203 2204 2205 2206 2207 2208 2209 2210 2211 2212 2213 2214 2215 2216 2217 2218 2219 2220 2221 2222 2223 2224 2225 2226 2227 2228 2229 2230 2231 2232 2233
\subsection{Force Properties}\label{kernelpropsforce}

\begin{enumerate}
\item
  \texttt{Arch}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: \texttt{Any}\\
  \textbf{Description}: Kext architecture (\texttt{Any}, \texttt{i386}, \texttt{x86\_64}).

\item
  \texttt{BundlePath}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: Empty string\\
  \textbf{Description}: Kext bundle path (e.g.
  \texttt{System\textbackslash Library \textbackslash Extensions \textbackslash IONetworkingFamily.kext}).

\item
  \texttt{Comment}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: Empty string\\
  \textbf{Description}: Arbitrary ASCII string used to provide human readable
  reference for the entry. It is implementation defined whether this value is
  used.

\item
  \texttt{Enabled}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: This kernel driver will not be added when not present
  unless set to \texttt{true}.

\item
  \texttt{ExecutablePath}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: Empty string\\
  \textbf{Description}: Kext executable path relative to bundle
  (e.g. \texttt{Contents/MacOS/IONetworkingFamily}).

\item
  \texttt{Identifier}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: Empty string\\
  \textbf{Description}: Kext identifier to perform presence checking
  before adding (e.g. \texttt{com.apple.iokit.IONetworkingFamily}).
  Only drivers which identifiers are not be found in the cache will be added.

\item
  \texttt{MaxKernel}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: Empty string\\
  \textbf{Description}: Adds kernel driver on specified macOS version or older.

  \emph{Note}: Refer to \hyperlink{kernmatch}{\texttt{Add} \texttt{Add MaxKernel} description} for matching logic.

\item
  \texttt{MinKernel}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: Empty string\\
  \textbf{Description}: Adds kernel driver on specified macOS version or newer.

  \emph{Note}: Refer to \hyperlink{kernmatch}{\texttt{Add} \texttt{Add MaxKernel} description} for matching logic.

\item
  \texttt{PlistPath}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: Empty string\\
  \textbf{Description}: Kext \texttt{Info.plist} path relative to bundle
  (e.g. \texttt{Contents/Info.plist}).

\end{enumerate}


V
vit9696 已提交
2234 2235 2236
\subsection{Patch Properties}\label{kernelpropspatch}

\begin{enumerate}
2237 2238 2239 2240 2241 2242
\item
  \texttt{Arch}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: \texttt{Any}\\
  \textbf{Description}: Kext patch architecture (\texttt{Any}, \texttt{i386}, \texttt{x86\_64}).

V
vit9696 已提交
2243 2244 2245
\item
  \texttt{Base}\\
  \textbf{Type}: \texttt{plist\ string}\\
2246
  \textbf{Failsafe}: Empty string\\
V
vit9696 已提交
2247 2248 2249 2250 2251 2252 2253
  \textbf{Description}: Selects symbol-matched base for patch lookup (or immediate
  replacement) by obtaining the address of provided symbol name. Can be set to
  empty string to be ignored.

\item
  \texttt{Comment}\\
  \textbf{Type}: \texttt{plist\ string}\\
2254
  \textbf{Failsafe}: Empty string\\
V
vit9696 已提交
2255 2256 2257 2258 2259 2260 2261
  \textbf{Description}: Arbitrary ASCII string used to provide human readable
  reference for the entry. It is implementation defined whether this value is
  used.

\item
  \texttt{Count}\\
  \textbf{Type}: \texttt{plist\ integer}\\
2262
  \textbf{Failsafe}: \texttt{0}\\
V
vit9696 已提交
2263 2264 2265 2266 2267 2268
  \textbf{Description}: Number of patch occurrences to apply. \texttt{0} applies
  the patch to all occurrences found.

\item
  \texttt{Enabled}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
2269
  \textbf{Failsafe}: \texttt{false}\\
V
vit9696 已提交
2270 2271 2272 2273 2274 2275
  \textbf{Description}: This kernel patch will not be used unless set to
  \texttt{true}.

\item
  \texttt{Find}\\
  \textbf{Type}: \texttt{plist\ data}\\
2276
  \textbf{Failsafe}: Empty data\\
V
vit9696 已提交
2277 2278 2279 2280 2281 2282 2283
  \textbf{Description}: Data to find. Can be set to empty for immediate
  replacement at \texttt{Base}. Must equal to \texttt{Replace} in size
  otherwise.

\item
  \texttt{Identifier}\\
  \textbf{Type}: \texttt{plist\ string}\\
2284
  \textbf{Failsafe}: Empty string\\
V
vit9696 已提交
2285 2286 2287 2288 2289 2290
  \textbf{Description}: Kext bundle identifier (e.g. \texttt{com.apple.driver.AppleHDA})
  or \texttt{kernel} for kernel patch.

\item
  \texttt{Limit}\\
  \textbf{Type}: \texttt{plist\ integer}\\
2291
  \textbf{Failsafe}: \texttt{0}\\
V
vit9696 已提交
2292 2293 2294 2295 2296 2297
  \textbf{Description}: Maximum number of bytes to search for. Can be set to
  \texttt{0} to look through the whole kext or kernel.

\item
  \texttt{Mask}\\
  \textbf{Type}: \texttt{plist\ data}\\
2298
  \textbf{Failsafe}: Empty data\\
V
vit9696 已提交
2299 2300 2301 2302 2303 2304
  \textbf{Description}: Data bitwise mask used during find comparison.
  Allows fuzzy search by ignoring not masked (set to zero) bits. Can be
  set to empty data to be ignored. Must equal to \texttt{Replace} in size
  otherwise.

\item
2305 2306 2307 2308 2309 2310 2311 2312 2313
  \texttt{MaxKernel}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: Empty string\\
  \textbf{Description}: Patches data on specified macOS version or older.

  \emph{Note}: Refer to \hyperlink{kernmatch}{\texttt{Add} \texttt{MaxKernel} description} for matching logic.

\item
  \texttt{MinKernel}\\
V
vit9696 已提交
2314
  \textbf{Type}: \texttt{plist\ string}\\
2315
  \textbf{Failsafe}: Empty string\\
2316 2317 2318
  \textbf{Description}: Patches data on specified macOS version or newer.

  \emph{Note}: Refer to \hyperlink{kernmatch}{\texttt{Add} \texttt{MaxKernel} description} for matching logic.
V
vit9696 已提交
2319 2320 2321 2322

\item
  \texttt{Replace}\\
  \textbf{Type}: \texttt{plist\ data}\\
2323
  \textbf{Failsafe}: Empty data\\
V
vit9696 已提交
2324 2325 2326 2327 2328
  \textbf{Description}: Replacement data of one or more bytes.

\item
  \texttt{ReplaceMask}\\
  \textbf{Type}: \texttt{plist\ data}\\
2329
  \textbf{Failsafe}: Empty data\\
V
vit9696 已提交
2330 2331 2332 2333 2334 2335 2336 2337
  \textbf{Description}: Data bitwise mask used during replacement.
  Allows fuzzy replacement by updating masked (set to non-zero) bits. Can be
  set to empty data to be ignored. Must equal to \texttt{Replace} in size
  otherwise.

\item
  \texttt{Skip}\\
  \textbf{Type}: \texttt{plist\ integer}\\
2338
  \textbf{Failsafe}: \texttt{0}\\
V
vit9696 已提交
2339 2340 2341 2342 2343 2344 2345 2346
  \textbf{Description}: Number of found occurrences to be skipped before replacement
  is done.

\end{enumerate}

\subsection{Quirks Properties}\label{kernelpropsquirks}

\begin{enumerate}
2347

V
vit9696 已提交
2348 2349 2350
\item
  \texttt{AppleCpuPmCfgLock}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
2351
  \textbf{Failsafe}: \texttt{false}\\
2352
  \textbf{Requirement}: 10.4\\
V
vit9696 已提交
2353 2354 2355 2356
  \textbf{Description}: Disables \texttt{PKG\_CST\_CONFIG\_CONTROL} (\texttt{0xE2})
  MSR modification in AppleIntelCPUPowerManagement.kext, commonly causing early
  kernel panic, when it is locked from writing.

D
dakanji 已提交
2357 2358 2359
  Some types of firmware lock the \texttt{PKG\_CST\_CONFIG\_CONTROL} MSR register and the bundled
  \texttt{VerifyMsrE2} tool can be used to check its state. Note that some types of firmware only
  have this register locked on some cores.
V
vit9696 已提交
2360

D
dakanji 已提交
2361
  As modern firmware provide a \texttt{CFG Lock} setting that allows configuring the
V
vit9696 已提交
2362
  \texttt{PKG\_CST\_CONFIG\_CONTROL} MSR register lock, this option should be avoided
D
dakanji 已提交
2363 2364
  whenever possible. On APTIO firmware that do not provide a \texttt{CFG Lock}
  setting in the GUI, it is possible to access the option directly:
V
vit9696 已提交
2365 2366 2367 2368 2369

  \begin{enumerate}
    \tightlist
    \item Download \href{https://github.com/LongSoft/UEFITool/releases}{UEFITool} and
      \href{https://github.com/LongSoft/Universal-IFR-Extractor/releases}{IFR-Extractor}.
2370
    \item Open the firmware image in UEFITool and find \texttt{CFG Lock} unicode string.
G
Goldfish64 已提交
2371
      If it is not present, the firmware may not have this option and the process should therefore be discontinued.
2372
    \item Extract the \texttt{Setup.bin} PE32 Image Section (the UEFITool found) through the
V
vit9696 已提交
2373 2374 2375 2376 2377 2378 2379 2380 2381
      \texttt{Extract Body} menu option.
    \item Run IFR-Extractor on the extracted file (e.g. \texttt{./ifrextract Setup.bin Setup.txt}).
    \item Find \texttt{CFG Lock, VarStoreInfo (VarOffset/VarName):} in \texttt{Setup.txt} and
      remember the offset right after it (e.g. \texttt{0x123}).
    \item Download and run \href{http://brains.by/posts/bootx64.7z}{Modified GRUB Shell} compiled by
      \href{https://geektimes.com/post/258090}{brainsucker} or use
      \href{https://github.com/datasone/grub-mod-setup_var}{a newer version} by
      \href{https://github.com/datasone}{datasone}.
    \item Enter \texttt{setup\_var 0x123 0x00} command, where \texttt{0x123} should be replaced by
2382
      the actual offset, and reboot.
V
vit9696 已提交
2383 2384
  \end{enumerate}

V
vit9696 已提交
2385
  \textbf{Warning}: Variable offsets are unique not only to each motherboard but even to its firmware
V
vit9696 已提交
2386
  version. Never ever try to use an offset without checking.
V
vit9696 已提交
2387

2388 2389 2390
\item
  \texttt{AppleXcpmCfgLock}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
2391
  \textbf{Failsafe}: \texttt{false}\\
2392
  \textbf{Requirement}: 10.8 (not required for older)\\
2393 2394 2395 2396
  \textbf{Description}: Disables \texttt{PKG\_CST\_CONFIG\_CONTROL} (\texttt{0xE2})
  MSR modification in XNU kernel, commonly causing early kernel panic, when it is
  locked from writing (XCPM power management).

V
vit9696 已提交
2397 2398
  \emph{Note}: This option should be avoided whenever possible. See \texttt{AppleCpuPmCfgLock}
  description for more details.
2399

2400 2401 2402
\item
  \texttt{AppleXcpmExtraMsrs}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
2403
  \textbf{Failsafe}: \texttt{false}\\
2404
  \textbf{Requirement}: 10.8 (not required for older)\\
2405
  \textbf{Description}: Disables multiple MSR access critical for select CPUs,
2406
  which have no native XCPM support.
2407

2408
  This is normally used in conjunction with \texttt{Emulate} section on Haswell-E,
A
Andrey1970AppleLife 已提交
2409
  Broadwell-E, Skylake-SP, and similar CPUs. More details on the XCPM patches are outlined in
2410 2411
  \href{https://github.com/acidanthera/bugtracker/issues/365}{acidanthera/bugtracker\#365}.

2412 2413 2414
  \emph{Note}: Additional not provided patches will be required for Ivy Bridge or Pentium
  CPUs. It is recommended to use \texttt{AppleIntelCpuPowerManagement.kext} for the former.

2415 2416 2417 2418
\item
  \texttt{AppleXcpmForceBoost}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
2419
  \textbf{Requirement}: 10.8 (not required for older)\\
2420 2421 2422 2423 2424 2425 2426 2427 2428
  \textbf{Description}: Forces maximum performance in XCPM mode.

  This patch writes \texttt{0xFF00} to \texttt{MSR\_IA32\_PERF\_CONTROL} (\texttt{0x199}),
  effectively setting maximum multiplier for all the time.

  \emph{Note}: While this may increase the performance, this patch is strongly discouraged
  on all systems but those explicitly dedicated to scientific or media calculations.
  In general only certain Xeon models benefit from the patch.

2429 2430 2431
\item
  \texttt{CustomSMBIOSGuid}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
2432
  \textbf{Failsafe}: \texttt{false}\\
2433
  \textbf{Requirement}: 10.4\\
2434 2435 2436
  \textbf{Description}: Performs GUID patching for \texttt{UpdateSMBIOSMode}
  \texttt{Custom} mode. Usually relevant for Dell laptops.

2437 2438 2439
\item
  \texttt{DisableIoMapper}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
2440
  \textbf{Failsafe}: \texttt{false}\\
2441
  \textbf{Requirement}: 10.8 (not required for older)\\
2442 2443 2444
  \textbf{Description}: Disables \texttt{IOMapper} support in XNU (VT-d),
  which may conflict with the firmware implementation.

2445
  \emph{Note}: This option is a preferred alternative to deleting \texttt{DMAR}
2446 2447 2448
  ACPI table and disabling VT-d in firmware preferences, which does not break
  VT-d support in other systems in case they need it.

2449 2450 2451 2452
\item
  \texttt{DisableLinkeditJettison}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
2453
  \textbf{Requirement}: 11\\
2454 2455 2456 2457 2458 2459
  \textbf{Description}: Disables \texttt{\_\_LINKEDIT} jettison code.

  This option lets \texttt{Lilu.kext} and possibly some others function
  in macOS Big Sur with best performance without \texttt{keepsyms=1}
  boot argument.

2460 2461 2462 2463
\item
  \texttt{DisableRtcChecksum}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
2464
  \textbf{Requirement}: 10.4\\
2465 2466 2467 2468 2469 2470 2471 2472
  \textbf{Description}: Disables primary checksum (\texttt{0x58}-\texttt{0x59})
  writing in AppleRTC.

  \emph{Note 1}: This option will not protect other areas from being overwritten,
  see \href{https://github.com/acidanthera/RTCMemoryFixup}{RTCMemoryFixup}
  kernel extension if this is desired.

  \emph{Note 2}: This option will not protect areas from being overwritten
A
Andrey1970AppleLife 已提交
2473
  at firmware stage (e.g. macOS bootloader), see \texttt{AppleRtcRam} protocol
2474
  description if this is desired.
2475

2476 2477 2478 2479 2480 2481 2482
\item
  \texttt{ExtendBTFeatureFlags}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Requirement}: 10.8\\
  \textbf{Description}: Set \texttt{FeatureFlags} to \texttt{0x0F} for full
  functionality of Bluetooth, including Continuity.
2483

2484 2485 2486
  \emph{Note}: This option is a substitution for BT4LEContinuityFixup.kext,
  which does not function properly due to late patching progress.

V
vit9696 已提交
2487 2488 2489
\item
  \texttt{ExternalDiskIcons}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
2490
  \textbf{Failsafe}: \texttt{false}\\
2491
  \textbf{Requirement}: 10.4\\
2492
  \textbf{Description}: Apply icon type patches to AppleAHCIPort.kext to force
V
vit9696 已提交
2493 2494
  internal disk icons for all AHCI disks.

D
dakanji 已提交
2495
  \emph{Note}: This option should be avoided whenever possible. Modern firmware
V
vit9696 已提交
2496 2497
  usually have compatible AHCI controllers.

2498 2499 2500 2501
\item
  \texttt{ForceSecureBootScheme}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
2502
  \textbf{Requirement}: 11\\
2503 2504 2505 2506 2507
  \textbf{Description}: Force \texttt{x86} scheme for IMG4 verification.

  \emph{Note}: This option is required on virtual machines when using
  \texttt{SecureBootModel} different from \texttt{x86legacy}.

2508 2509 2510 2511
\item
  \texttt{IncreasePciBarSize}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
2512
  \textbf{Requirement}: 10.10\\
2513 2514 2515 2516 2517
  \textbf{Description}: Increases 32-bit PCI bar size in IOPCIFamily from 1 to 4 GBs.

  \emph{Note}: This option should be avoided whenever possible. In general the necessity
  of this option means misconfigured or broken firmware.

2518 2519 2520
\item
  \texttt{LapicKernelPanic}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
2521
  \textbf{Failsafe}: \texttt{false}\\
2522
  \textbf{Requirement}: 10.6 (64-bit)\\
V
vit9696 已提交
2523
  \textbf{Description}: Disables kernel panic on LAPIC interrupts.
2524

2525 2526 2527 2528
\item
  \texttt{LegacyCommpage}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
2529
  \textbf{Requirement}: 10.4 - 10.6\\
2530 2531 2532 2533 2534
  \textbf{Description}: Replaces the default 64-bit commpage bcopy implementation with
  one that does not require SSSE3, useful for legacy platforms. This prevents a
  \texttt{commpage no match for last} panic due to no available 64-bit bcopy functions
  that do not require SSSE3.

2535 2536 2537
\item
  \texttt{PanicNoKextDump}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
2538
  \textbf{Failsafe}: \texttt{false}\\
2539
  \textbf{Requirement}: 10.13 (not required for older)\\
2540 2541 2542
  \textbf{Description}: Prevent kernel from printing kext dump in the panic
  log preventing from observing panic details. Affects 10.13 and above.

2543 2544 2545 2546
\item
  \texttt{PowerTimeoutKernelPanic}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
2547
  \textbf{Requirement}: 10.15 (not required for older)\\
2548 2549 2550 2551 2552 2553 2554 2555
  \textbf{Description}: Disables kernel panic on setPowerState timeout.

  An additional security measure was added to macOS Catalina (10.15) causing
  kernel panic on power change timeout for Apple drivers. Sometimes it may cause
  issues on misconfigured hardware, notably digital audio, which sometimes fails
  to wake up. For debug kernels \texttt{setpowerstate\_panic=0} boot argument
  should be used, which is otherwise equivalent to this quirk.

V
vit9696 已提交
2556
\item
2557
  \texttt{ThirdPartyDrives}\\
V
vit9696 已提交
2558
  \textbf{Type}: \texttt{plist\ boolean}\\
2559
  \textbf{Failsafe}: \texttt{false}\\
2560
  \textbf{Requirement}: 10.6 (not required for older)\\
2561 2562 2563
  \textbf{Description}: Apply vendor patches to IOAHCIBlockStorage.kext to enable
  native features for third-party drives, such as TRIM on SSDs or hibernation
  support on 10.15 and newer.
V
vit9696 已提交
2564

2565
  \emph{Note}: This option may be avoided on user preference. NVMe SSDs are
V
vit9696 已提交
2566
  compatible without the change. For AHCI SSDs on modern macOS version there
2567 2568 2569
  is a dedicated built-in utility called \texttt{trimforce}. Starting from 10.15
  this utility creates \texttt{EnableTRIM} variable in \texttt{APPLE\_BOOT\_VARIABLE\_GUID}
  namespace with \texttt{01 00 00 00} value.
V
vit9696 已提交
2570 2571 2572 2573

\item
  \texttt{XhciPortLimit}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
2574
  \textbf{Failsafe}: \texttt{false}\\
2575
  \textbf{Requirement}: 10.11 (not required for older)\\
V
vit9696 已提交
2576 2577 2578
  \textbf{Description}: Patch various kexts (AppleUSBXHCI.kext, AppleUSBXHCIPCI.kext,
  IOUSBHostFamily.kext) to remove USB port count limit of 15 ports.

2579
  \emph{Note}: This option should be avoided whenever possible. USB port limit
V
vit9696 已提交
2580 2581 2582
  is imposed by the amount of used bits in locationID format and there is no
  possible way to workaround this without heavy OS modification. The only
  valid solution is to limit the amount of used ports to 15 (discarding some).
2583
  More details can be found on \href{https://applelife.ru/posts/550233}{AppleLife.ru}.
V
vit9696 已提交
2584 2585 2586

\end{enumerate}

2587 2588
\subsection{Scheme Properties}\label{kernelpropsscheme}

2589 2590 2591 2592
These properties are particularly relevant for older macOS operating systems.
For more details on how to install and troubleshoot such macOS installation
refer to \hyperref[legacyapple]{Legacy Apple OS}.

2593 2594 2595 2596 2597 2598 2599 2600 2601
\begin{enumerate}

\item
  \texttt{FuzzyMatch}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Use \texttt{kernelcache} with different checksums when available.

  On macOS 10.6 and earlier \texttt{kernelcache} filename has a checksum, which essentially
D
dakanji 已提交
2602 2603
  is \texttt{adler32} from SMBIOS product name and EfiBoot device path. On some types of firmware,
  the EfiBoot device path differs between UEFI and macOS due to ACPI or hardware specifics,
2604 2605 2606 2607 2608 2609 2610 2611 2612 2613 2614
  rendering \texttt{kernelcache} checksum as always different.

  This setting allows matching the latest \texttt{kernelcache} with a suitable architecture
  when the \texttt{kernelcache} without suffix is unavailable, improving macOS 10.6 boot
  performance on several platforms.

\item
  \texttt{KernelArch}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: \texttt{Auto}\\
  \textbf{Description}: Prefer specified kernel architecture (\texttt{Auto}, \texttt{i386},
2615
  \texttt{i386-user32}, \texttt{x86\_64}) when available.
2616

2617 2618 2619
  On macOS 10.7 and earlier XNU kernel can boot with architectures different from
  the usual \texttt{x86\_64}. This setting will use the specified architecture to boot
  macOS when it is supported by the macOS and the configuration:
2620 2621 2622 2623 2624 2625

  \begin{itemize}
    \tightlist
    \item \texttt{Auto} --- Choose the preferred architecture automatically.
    \item \texttt{i386} --- Use \texttt{i386} (32-bit) kernel when available.
    \item \texttt{i386-user32} --- Use \texttt{i386} (32-bit) kernel when available
2626 2627 2628
      and force the use of 32-bit userspace on 64-bit capable processors if supported
      by the operating system. On macOS 64-bit capable processors are assumed to
      support \texttt{SSSE3}. This is not the case for older 64-bit capable Pentium
2629 2630 2631 2632 2633
      processors, which cause some applications to crash on macOS~10.6. This behaviour
      corresponds to \texttt{-legacy} kernel boot argument. This option is unavailable
      for 10.4 and 10.5 when running on 64-bit firmware due to an uninitialised 64-bit
      segment in the XNU kernel, which causes AppleEFIRuntime to incorrectly execute
      64-bit code as 16-bit code.
2634 2635 2636 2637
    \item \texttt{x86\_64} --- Use \texttt{x86\_64} (64-bit) kernel when available.
  \end{itemize}

  Below is the algorithm determining the kernel architecture.
2638 2639 2640 2641

  \begin{enumerate}
    \tightlist
    \item \texttt{arch} argument in image arguments (e.g. when launched
2642
    via UEFI Shell) or in \texttt{boot-args} variable overrides any compatibility
2643
    checks and forces the specified architecture, completing this algorithm.
2644
    \item OpenCore build architecture restricts capabilities to \texttt{i386}
2645
      and \texttt{i386-user32} mode for the 32-bit firmware variant.
2646 2647
    \item Determined EfiBoot version restricts architecture choice:
      \begin{itemize}
2648
      \item 10.4-10.5 --- \texttt{i386} or \texttt{i386-user32} (only on 32-bit firmware)
V
vit9696 已提交
2649 2650
      \item 10.6 --- \texttt{i386}, \texttt{i386-user32}, or \texttt{x86\_64}
      \item 10.7 --- \texttt{i386} or \texttt{x86\_64}
2651 2652
      \item 10.8 or newer --- \texttt{x86\_64}
      \end{itemize}
2653 2654 2655 2656 2657 2658 2659 2660 2661 2662 2663 2664
    \item If \texttt{KernelArch} is set to \texttt{Auto} and \texttt{SSSE3}
      is not supported by the CPU, capabilities are restricted to \texttt{i386-user32}
      if supported by EfiBoot.
    \item Board identifier (from SMBIOS) based on EfiBoot version
      disables \texttt{x86\_64} support on an unsupported model
      if any \texttt{i386} variant is supported. \texttt{Auto}
      is not consulted here as the list is not overridable in EfiBoot.
    \item \texttt{KernelArch} restricts the support to the explicitly
      specified architecture (when not set to \texttt{Auto}) if
      the architecture remains present in the capabilities.
    \item The best supported architecture is chosen in this order:
      \texttt{x86\_64}, \texttt{i386}, \texttt{i386-user32}.
2665 2666
  \end{enumerate}

2667 2668 2669 2670 2671 2672 2673 2674
  Unlike macOS~10.7, where select boards identifiers are treated as the \texttt{i386}
  only machines, and macOS~10.5 or earlier, where \texttt{x86\_64} is not supported
  by the macOS kernel, macOS~10.6 is very special. The architecture choice on macOS~10.6
  depends on many factors including not only the board identifier, but also macOS
  product type (client vs server), macOS point release, and RAM amount. The detection
  of them all is complicated and not practical, because several point releases had genuine
  bugs and failed to properly perform the server detection in the first place.
  For this reason OpenCore on macOS~10.6 will fallback to \texttt{x86\_64}
D
dakanji 已提交
2675
  architecture whenever it is supported by the board at all, as on macOS~10.7.
2676 2677 2678
  As a reference here is the 64-bit Mac model compatibility corresponding to actual
  EfiBoot behaviour on macOS 10.6.8 and 10.7.5.

2679
  \begin{center}
2680
  \begin{tabular}{|p{0.9in}|c|c|c|c|}
2681 2682 2683 2684 2685 2686 2687 2688 2689 2690 2691 2692 2693 2694 2695 2696 2697 2698 2699 2700
  \hline
  \textbf{Model} & \textbf{10.6 (minimal)} & \textbf{10.6 (client)} & \textbf{10.6 (server)} & \textbf{10.7 (any)} \\
  \hline
  Macmini & 4,x (Mid 2010) & 5,x (Mid 2011) & 4,x (Mid 2010) & 3,x (Early 2009) \\
  \hline
  MacBook & Unsupported & Unsupported & Unsupported & 5,x (2009/09) \\
  \hline
  MacBookAir & Unsupported & Unsupported & Unsupported & 2,x (Late 2008) \\
  \hline
  MacBookPro & 4,x (Early 2008) & 8,x (Early 2011) & 8,x (Early 2011) & 3,x (Mid 2007) \\
  \hline
  iMac & 8,x (Early 2008) & 12,x (Mid 2011) & 12,x (Mid 2011) & 7,x (Mid 2007) \\
  \hline
  MacPro & 3,x (Early 2008) & 5,x (Mid 2010) & 3,x (Early 2008) & 3,x (Early 2008) \\
  \hline
  Xserve & 2,x (Early 2008) & 2,x (Early 2008) & 2,x (Early 2008) & 2,x (Early 2008) \\
  \hline
  \end{tabular}
  \end{center}

2701 2702 2703 2704
  \emph{Note}: \texttt{3+2} and \texttt{6+4} hotkeys to choose the preferred
  architecture are unsupported due to being handled by EfiBoot and thus
  being hard to properly detect.

2705 2706 2707 2708 2709 2710 2711 2712
\item
  \texttt{KernelCache}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: \texttt{Auto}\\
  \textbf{Description}: Prefer specified kernel cache type (\texttt{Auto}, \texttt{Cacheless},
  \texttt{Mkext}, \texttt{Prelinked}) when available.

  Different variants of macOS support different kernel caching variants designed to improve
2713 2714 2715
  boot performance. This setting prevents the use of faster kernel caching variants
  if slower variants are available for debugging and stability reasons. I.e., by
  specifying \texttt{Mkext}, \texttt{Prelinked} will be disabled for e.g. 10.6 but not for 10.7.
2716 2717 2718 2719

  The list of available kernel caching types and its current support in OpenCore is listed below.

  \begin{center}
2720
  \begin{tabular}{|p{0.67in}|c|c|c|c|c|c|c|}
2721 2722 2723
  \hline
  \textbf{macOS} & \textbf{i386 NC} & \textbf{i386 MK} & \textbf{i386 PK} & \textbf{x86\_64 NC} & \textbf{x86\_64 MK} & \textbf{x86\_64 PK} & \textbf{x86\_64 KC} \\
  \hline
V
vit9696 已提交
2724
  10.4 & YES & YES (V1) & NO (V1) & --- & --- & --- & --- \\
2725
  \hline
V
vit9696 已提交
2726
  10.5 & YES & YES (V1) & NO (V1) & --- & --- & --- & --- \\
2727
  \hline
V
vit9696 已提交
2728
  10.6 & YES & YES (V2) & YES (V2) & YES & YES (V2) & YES (V2) & --- \\
2729
  \hline
V
vit9696 已提交
2730
  10.7 & YES & --- & YES (V3) & YES & --- & YES (V3) & --- \\
2731
  \hline
V
vit9696 已提交
2732
  10.8-10.9 & --- & --- & --- & YES & --- & YES (V3) & --- \\
2733
  \hline
V
vit9696 已提交
2734
  10.10-10.15 & --- & --- & --- & --- & --- & YES (V3) & --- \\
2735
  \hline
2736
  11+ & --- & --- & --- & --- & --- & YES (V3) & YES \\
2737 2738 2739 2740
  \hline
  \end{tabular}
  \end{center}

V
vit9696 已提交
2741
  \emph{Note}: First version (V1) of 32-bit \texttt{prelinkedkernel} is unsupported
2742 2743 2744
  due to kext symbol tables being corrupted by the tools. On these versions \texttt{Auto}
  will block \texttt{prelinkedkernel} booting. This also makes \texttt{keepsyms=1} for kext frames
  broken on these systems.
2745 2746 2747 2748

\end{enumerate}


V
vit9696 已提交
2749 2750 2751 2752
\section{Misc}\label{misc}

\subsection{Introduction}\label{miscintro}

2753 2754 2755 2756 2757 2758 2759 2760 2761 2762 2763 2764 2765 2766 2767 2768 2769 2770 2771 2772 2773 2774 2775 2776 2777 2778 2779 2780 2781 2782 2783 2784 2785 2786 2787 2788 2789 2790 2791 2792 2793 2794 2795 2796 2797 2798 2799 2800 2801 2802 2803 2804 2805 2806 2807 2808 2809 2810 2811 2812 2813 2814 2815 2816 2817 2818 2819 2820 2821 2822 2823 2824 2825 2826 2827 2828 2829 2830 2831 2832 2833 2834 2835 2836
This section contains miscellaneous configuration affecting OpenCore operating system loading behaviour
as well as other entries, which do not go to any other section.

OpenCore tries to follow ``bless'' model also known as ``Apple Boot Policy''. The primary specialty of
``bless'' model is to allow embedding boot options within the file system (and be accessible through a
specialised driver) as well as supporting a broader range of predefined boot paths compared to the
removable media list found in the UEFI specification.

Each partition will only be used for booting when it corresponds to ``Scan policy'': a set of restrictions
to only use partitions with specific file systems and from specific device types. Scan policy behaviour is
discussed in \texttt{ScanPolicy} property description.

Scan process starts with obtaining all the partitions filtered with ``Scan policy''. Each partition may
produce multiple primary and alternate options. Primary options describe operating systems installed
on this media. Alternate options describe recovery options for the operating systems on the media.
It is possible for alternate options to exist without primary options and vice versa. Be warned
that the options may not necessarily describe the operating systems on the same partition.
Each primary and alternate option can be an auxiliary option or not, refer to \texttt{HideAuxiliary}
for more details. Algorithm to determine boot options behaves as follows:

\begin{enumerate}
\tightlist
\item Obtain all available partition handles filtered by ``Scan policy'' (and driver availability).
\item Obtain all available boot options from \texttt{BootOrder} UEFI variable.
\item For each found boot option:
  \begin{itemize}
  \item Retrieve device path of the boot option.
  % Scan policy restrictions are actually checked here as we want the function to be self-contained
  % for non-scan based startup.
  \item Perform fixups (e.g. NVMe subtype correction) and expansion (e.g. for Boot Camp) of the device path.
  \item Obtain device handle by locating device path of the resulting device path (ignore it on failure).
  \item Find device handle in the list of partition handles (ignore it if missing).
  % To determine device path type we can use LocateDevicePath RemainingDevicePath argument. Just check whether
  % it points to the END device path.
  \item For disk device paths (not specifying a bootloader) execute ``bless'' (may return > 1 entry).
  \item For file device paths check presence on the file system directly.
  % Just kill all \EFI\APPLE\ paths.
  \item On OpenCore boot partition exclude all OpenCore bootstrap files by header checks.
  \item Mark device handle as \textit{used} in the list of partition handles if any.
  % Each partition handle will basically have a list of boot option entries for later quick lookup.
  \item Register the resulting entries as primary options and determine their types. \\
  The option will become auxiliary for some types (e.g. Apple HFS recovery).
  \end{itemize}
\item For each partition handle:
  \begin{itemize}
  \item If partition handle is marked as \textit{unused} execute ``bless'' primary option list retrieval. \\
    In case \texttt{BlessOverride} list is set, not only standard ``bless'' paths will be found but
    also custom ones.
  \item On OpenCore boot partition exclude all OpenCore bootstrap files by header checks.
  \item Register the resulting entries as primary options and determine their types if found. \\
  The option will become auxiliary for some types (e.g. Apple HFS recovery).
  % Looking up primary and alternate handles could be done per handle to make sure the list is ordered.
  \item If partition already has primary options of ``Apple Recovery'' type proceed to next handle.
  \item Lookup alternate entries by ``bless'' recovery option list retrieval and predefined paths.
  \item Register the resulting entries as alternate auxiliary options and determine their types if found.
  \end{itemize}
\item Custom entries and tools are added as primary options without any checks with respect to \texttt{Auxiliary}.
\item System entries (e.g. \texttt{Reset NVRAM}) are added as primary auxiliary options.
\end{enumerate}

The display order of the boot options in the picker and the boot process are determined separately from the scanning
algorithm. The display order as follows:

\begin{itemize}
\tightlist
\item Alternate options follow corresponding primary options, i.e. Apple recovery will be following the
  relevant macOS option whenever possible.
\item Options will be listed in file system handle firmware order to maintain an established order across
  the reboots regardless of the chosen operating system for loading.
\item Custom entries, tools, and system entries will be added after all other options.
\item Auxiliary options will only show upon entering ``Advanced Mode'' in the picker (usually by pressing ``Space'').
\end{itemize}

The boot process is as follows:
\begin{itemize}
\tightlist
\item Try looking up first valid primary option through \texttt{BootNext} UEFI variable.
\item On failure looking up first valid primary option through \texttt{BootOrder} UEFI variable.
\item Mark the option as the default option to boot.
\item Boot option through the picker or without it depending on the \texttt{ShowPicker} option.
\item Show picker on failure otherwise.
\end{itemize}

\emph{Note 1}: This process is meant to work reliably only when \texttt{RequestBootVarRouting}
V
vit9696 已提交
2837
option is enabled or the firmware does not control UEFI boot options (\texttt{OpenDuetPkg} or
2838
custom BDS). Without \texttt{BootProtect} it also is possible that other operating systems
2839
overwrite OpenCore, make sure to enable it when planning to use them.
2840

2841
\emph{Note 2}: UEFI variable boot options' boot arguments will be removed if present as they
2842 2843
may contain arguments compromising the operating system, which is undesired once secure boot
is enabled.
V
vit9696 已提交
2844

V
vit9696 已提交
2845 2846
\emph{Note 3}: Some operating systems, namely Windows, will create their boot option and
mark it as top most upon first boot or after NVRAM Reset. When this happens default boot
A
Andrey1970AppleLife 已提交
2847 2848
entry choice will update till next manual reconfiguration.

V
vit9696 已提交
2849 2850
\subsection{Properties}\label{miscprops}

V
vit9696 已提交
2851
\begin{enumerate}
2852 2853 2854 2855 2856 2857
\item
  \texttt{Boot}\\
  \textbf{Type}: \texttt{plist\ dict}\\
  \textbf{Description}: Apply boot configuration described in
  \hyperref[miscbootprops]{Boot Properties} section below.

2858 2859 2860 2861 2862 2863 2864
\item
  \texttt{BlessOverride}\\
  \textbf{Type}: \texttt{plist\ array}\\
  \textbf{Description}: Add custom scanning paths through bless model.

  Designed to be filled with \texttt{plist\ string} entries containing
  absolute UEFI paths to customised bootloaders, for example,
2865
  \texttt{\textbackslash EFI\textbackslash debian\textbackslash grubx64.efi}
G
Goldfish64 已提交
2866
  for Debian bootloader. This allows unusual boot paths to be automatically
2867
  discovered by the boot picker. Designwise they are equivalent to predefined blessed path, such as
2868 2869
  \texttt{\textbackslash System\textbackslash Library\textbackslash CoreServices\textbackslash boot.efi}
  or \texttt{\textbackslash EFI\textbackslash Microsoft\textbackslash Boot\textbackslash bootmgfw.efi},
2870 2871
  but unlike predefined bless paths they have highest priority.

V
vit9696 已提交
2872 2873 2874 2875 2876 2877
\item
  \texttt{Debug}\\
  \textbf{Type}: \texttt{plist\ dict}\\
  \textbf{Description}: Apply debug configuration described in
  \hyperref[miscdebugprops]{Debug Properties} section below.

2878 2879 2880 2881 2882 2883 2884 2885
\item
  \texttt{Entries}\\
  \textbf{Type}: \texttt{plist\ array}\\
  \textbf{Description}: Add boot entries to boot picker.

  Designed to be filled with \texttt{plist\ dict} values, describing each load entry.
  See \hyperref[miscentryprops]{Entry Properties} section below.

2886 2887 2888 2889 2890 2891
\item
  \texttt{Security}\\
  \textbf{Type}: \texttt{plist\ dict}\\
  \textbf{Description}: Apply security configuration described in
  \hyperref[miscsecurityprops]{Security Properties} section below.

2892
\item
2893
  \texttt{Tools}\label{misctools}\\
2894
  \textbf{Type}: \texttt{plist\ array}\\
2895
  \textbf{Description}: Add tool entries to boot picker.
2896

2897 2898
  Designed to be filled with \texttt{plist\ dict} values, describing each load entry.
  See \hyperref[miscentryprops]{Entry Properties} section below.
2899

V
vit9696 已提交
2900
  \emph{Note}: Select tools, for example, UEFI Shell, are very
V
vit9696 已提交
2901 2902
  dangerous and \textbf{MUST NOT} appear in production configurations, especially
  in vaulted ones and protected with secure boot, as they may be used to easily
2903 2904
  bypass secure boot chain. For tool examples check the \hyperref[uefitools]{UEFI}
  section of this document.
2905

V
vit9696 已提交
2906 2907
\end{enumerate}

2908 2909 2910 2911
\subsection{Boot Properties}\label{miscbootprops}

\begin{enumerate}

V
vit9696 已提交
2912 2913 2914 2915 2916 2917 2918
\item
  \texttt{ConsoleAttributes}\\
  \textbf{Type}: \texttt{plist\ integer}\\
  \textbf{Failsafe}: \texttt{0}\\
  \textbf{Description}: Sets specific attributes for console.

  Text renderer supports colour arguments as a sum of foreground and background
V
vit9696 已提交
2919
  colours according to UEFI specification. The value of black background and
V
vit9696 已提交
2920 2921 2922 2923 2924 2925 2926 2927 2928 2929 2930 2931 2932 2933 2934 2935 2936 2937 2938 2939 2940 2941 2942 2943 2944 2945 2946 2947 2948 2949 2950 2951 2952
  black foreground (\texttt{0}) is reserved. List of colour names:

  \begin{itemize}
  \tightlist
  \item \texttt{0x00} --- \texttt{EFI\_BLACK}
  \item \texttt{0x01} --- \texttt{EFI\_BLUE}
  \item \texttt{0x02} --- \texttt{EFI\_GREEN}
  \item \texttt{0x03} --- \texttt{EFI\_CYAN}
  \item \texttt{0x04} --- \texttt{EFI\_RED}
  \item \texttt{0x05} --- \texttt{EFI\_MAGENTA}
  \item \texttt{0x06} --- \texttt{EFI\_BROWN}
  \item \texttt{0x07} --- \texttt{EFI\_LIGHTGRAY}
  \item \texttt{0x08} --- \texttt{EFI\_DARKGRAY}
  \item \texttt{0x09} --- \texttt{EFI\_LIGHTBLUE}
  \item \texttt{0x0A} --- \texttt{EFI\_LIGHTGREEN}
  \item \texttt{0x0B} --- \texttt{EFI\_LIGHTCYAN}
  \item \texttt{0x0C} --- \texttt{EFI\_LIGHTRED}
  \item \texttt{0x0D} --- \texttt{EFI\_LIGHTMAGENTA}
  \item \texttt{0x0E} --- \texttt{EFI\_YELLOW}
  \item \texttt{0x0F} --- \texttt{EFI\_WHITE}
  \item \texttt{0x00} --- \texttt{EFI\_BACKGROUND\_BLACK}
  \item \texttt{0x10} --- \texttt{EFI\_BACKGROUND\_BLUE}
  \item \texttt{0x20} --- \texttt{EFI\_BACKGROUND\_GREEN}
  \item \texttt{0x30} --- \texttt{EFI\_BACKGROUND\_CYAN}
  \item \texttt{0x40} --- \texttt{EFI\_BACKGROUND\_RED}
  \item \texttt{0x50} --- \texttt{EFI\_BACKGROUND\_MAGENTA}
  \item \texttt{0x60} --- \texttt{EFI\_BACKGROUND\_BROWN}
  \item \texttt{0x70} --- \texttt{EFI\_BACKGROUND\_LIGHTGRAY}
  \end{itemize}

  \emph{Note}: This option may not work well with \texttt{System} text renderer.
  Setting a background different from black could help testing proper GOP functioning.

2953 2954 2955
\item
  \texttt{HibernateMode}\\
  \textbf{Type}: \texttt{plist\ string}\\
2956
  \textbf{Failsafe}: \texttt{None}\\
2957 2958 2959 2960
  \textbf{Description}: Hibernation detection mode. The following modes are supported:

  \begin{itemize}
  \tightlist
2961
    \item \texttt{None} --- Avoid hibernation (Recommended).
2962 2963 2964 2965 2966
    \item \texttt{Auto} --- Use RTC and NVRAM detection.
    \item \texttt{RTC} --- Use RTC detection.
    \item \texttt{NVRAM} --- Use NVRAM detection.
  \end{itemize}

2967 2968 2969 2970 2971 2972 2973 2974 2975 2976 2977
\item
  \texttt{HideAuxiliary}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Hides auxiliary entries from picker menu by default.

  An entry is considered auxiliary when at least one of the following applies:

  \begin{itemize}
  \tightlist
    \item Entry is macOS recovery.
2978
    \item Entry is macOS Time Machine.
2979
    \item Entry is explicitly marked as \texttt{Auxiliary}.
V
vit9696 已提交
2980
    \item Entry is system (e.g. \texttt{Reset NVRAM}).
2981 2982
  \end{itemize}

V
vit9696 已提交
2983 2984 2985
  To see all entries picker menu needs to be reloaded in extended mode by pressing
  \texttt{Spacebar} key. Hiding auxiliary entries may increase boot performance
  for multidisk systems.
2986

2987 2988 2989 2990 2991 2992
\item
  \texttt{PickerAttributes}\\
  \textbf{Type}: \texttt{plist\ integer}\\
  \textbf{Failsafe}: \texttt{0}\\
  \textbf{Description}: Sets specific attributes for picker.

V
vit9696 已提交
2993 2994 2995 2996 2997
  Different pickers may be configured through the attribute mask containing
  OpenCore-reserved (\texttt{BIT0}\textasciitilde\texttt{BIT15}) and OEM-specific
  (\texttt{BIT16}\textasciitilde\texttt{BIT31}) values.

  Current OpenCore values include:
2998 2999 3000

  \begin{itemize}
  \tightlist
V
vit9696 已提交
3001 3002
  \item \texttt{0x0001} --- \texttt{OC\_ATTR\_USE\_VOLUME\_ICON}, provides custom icons
    for boot entries:
3003

3004
    For \texttt{Tools} OpenCore will try to load a custom icon and fallback to the default icon:
V
vit9696 已提交
3005
    \begin{itemize}
3006 3007 3008 3009 3010 3011
    \tightlist
      \item \texttt{ResetNVRAM} --- \texttt{Resources\textbackslash Image\textbackslash ResetNVRAM.icns}
        --- \texttt{ResetNVRAM.icns} from icons directory.
      \item \texttt{Tools\textbackslash <TOOL\_RELATIVE\_PATH>.icns}
        --- icon near the tool file with appended \texttt{.icns} extension.
    \end{itemize} \medskip
3012

3013 3014 3015 3016 3017 3018
    For custom boot \texttt{Entries} OpenCore will try to load a custom icon and fallback
    to the volume icon or the default icon:
    \begin{itemize}
    \tightlist
      \item \texttt{<ENTRY\_PATH>.icns} --- icon near the entry file with appended \texttt{.icns} extension.
    \end{itemize} \medskip
3019

3020 3021 3022
    For all other entries OpenCore will try to load a volume icon and fallback to the default icon:
    \begin{itemize}
    \tightlist
3023 3024
      \item \texttt{.VolumeIcon.icns} file at \texttt{Preboot} volume directory for APFS (if present).
      \item \texttt{.VolumeIcon.icns} file at \texttt{Preboot} root for APFS (otherwise).
V
vit9696 已提交
3025
      \item \texttt{.VolumeIcon.icns} file at volume root for other filesystems.
3026
    \end{itemize} \medskip
3027

3028 3029
    Volume icons can be set in Finder. Note, that enabling this may result in
    external and internal icons to be indistinguishable.
V
vit9696 已提交
3030 3031 3032
  \item \texttt{0x0002} --- \texttt{OC\_ATTR\_USE\_DISK\_LABEL\_FILE}, provides custom
    rendered titles for boot entries:
    \begin{itemize}
3033
    \tightlist
V
vit9696 已提交
3034
      \item \texttt{.disk\_label} (\texttt{.disk\_label\_2x}) file near bootloader for all filesystems.
3035
      \item \texttt{<TOOL\_NAME>.lbl} (\texttt{<TOOL\_NAME>.l2x}) file near tool for \texttt{Tools}.
V
vit9696 已提交
3036 3037 3038 3039 3040 3041 3042
    \end{itemize}
    Prerendered labels can be generated via \texttt{disklabel} utility or \texttt{bless} command.
    When disabled or missing text labels (\texttt{.contentDetails} or \texttt{.disk\_label.contentDetails})
    are to be rendered instead.
  \item \texttt{0x0004} --- \texttt{OC\_ATTR\_USE\_GENERIC\_LABEL\_IMAGE}, provides predefined
    label images for boot entries without custom entries. May give less detail for the actual
    boot entry.
3043 3044 3045
  \item \texttt{0x0008} --- \texttt{OC\_ATTR\_HIDE\_THEMED\_ICONS}, prefers builtin icons
    for certain icon categories to match the theme style. For example, this could force
    displaying the builtin Time Machine icon. Requires \texttt{OC\_ATTR\_USE\_VOLUME\_ICON}.
3046 3047 3048
  \item \texttt{0x0010} --- \texttt{OC\_ATTR\_USE\_POINTER\_CONTROL}, enable pointer control
  in the picker when available. For example, this could make use of mouse or trackpad to
  control UI elements.
3049 3050
  \end{itemize}

3051 3052 3053 3054 3055 3056 3057 3058 3059 3060 3061 3062 3063 3064 3065 3066 3067
\item
  \texttt{PickerAudioAssist}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Enable screen reader by default in boot picker.

  For macOS bootloader screen reader preference is set in \texttt{preferences.efires}
  archive in \texttt{isVOEnabled.int32} file and is controlled by the operating system.
  For OpenCore screen reader support this option is an independent equivalent.
  Toggling screen reader support in both OpenCore boot picker and macOS bootloader
  FileVault 2 login window can also be done with \texttt{Command} + \texttt{F5} key
  combination.

  \emph{Note}: screen reader requires working audio support, see
  \hyperref[uefiaudioprops]{\texttt{UEFI Audio Properties}}
  section for more details.

3068 3069 3070 3071
\item
  \texttt{PollAppleHotKeys}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
3072
  \textbf{Description}: Enable \texttt{modifier hotkey} handling in boot picker.
3073

3074
  In addition to \texttt{action hotkeys}, which are partially described in \texttt{PickerMode}
3075 3076 3077 3078
  section and are normally handled by Apple BDS, there exist modifier keys, which are
  handled by operating system bootloader, namely \texttt{boot.efi}. These keys
  allow to change operating system behaviour by providing different boot modes.

D
dakanji 已提交
3079 3080 3081
  On some types of firmware, it may be problematic to use modifier keys due to driver
  incompatibilities. To workaround this problem this option allows registering select hotkeys
  in a more permissive manner from within boot picker. Such extensions include the support
3082
  of tapping on keys in addition to holding and pressing \texttt{Shift} along with
G
Goldfish64 已提交
3083
  other keys instead of just \texttt{Shift} alone, which is not detectable on many
3084
  PS/2 keyboards. This list of known \texttt{modifier hotkeys} includes:
3085 3086 3087 3088 3089 3090 3091 3092
  \begin{itemize}
  \tightlist
  \item \texttt{CMD+C+MINUS} --- disable board compatibility checking.
  \item \texttt{CMD+K} --- boot release kernel, similar to \texttt{kcsuffix=release}.
  \item \texttt{CMD+S} --- single user mode.
  \item \texttt{CMD+S+MINUS} --- disable KASLR slide, requires disabled SIP.
  \item \texttt{CMD+V} --- verbose mode.
  \item \texttt{Shift} --- safe mode.
3093 3094
  \end{itemize}

3095 3096 3097
\item
  \texttt{ShowPicker}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
3098
  \textbf{Failsafe}: \texttt{false}\\
3099 3100
  \textbf{Description}: Show simple boot picker to allow boot entry selection.

3101 3102 3103 3104 3105 3106 3107 3108 3109 3110 3111 3112
\item
  \texttt{TakeoffDelay}\\
  \textbf{Type}: \texttt{plist\ integer}, 32 bit\\
  \textbf{Failsafe}: \texttt{0}\\
  \textbf{Description}: Delay in microseconds performed before handling
  picker startup and \texttt{action hotkeys}.

  Introducing a delay may give extra time to hold the right \texttt{action hotkey}
  sequence to e.g. boot to recovery mode. On some platforms setting this option to
  at least \texttt{5000-10000} microseconds may be necessary to access
  \texttt{action hotkeys} at all due to the nature of the keyboard driver.

3113 3114 3115
\item
  \texttt{Timeout}\\
  \textbf{Type}: \texttt{plist\ integer}, 32 bit\\
3116
  \textbf{Failsafe}: \texttt{0}\\
3117
  \textbf{Description}: Timeout in seconds in boot picker before
A
Andrey1970AppleLife 已提交
3118
  automatic booting of the default boot entry. Use 0 to disable timer.
3119

3120
\item
3121
  \texttt{PickerMode}\\
3122 3123
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: \texttt{Builtin}\\
3124
  \textbf{Description}: Choose boot picker used for boot management.
3125

3126 3127 3128 3129 3130 3131 3132 3133 3134 3135 3136 3137 3138 3139 3140
  Picker describes underlying boot management with an optional user interface
  responsible for handling boot options. The following values are supported:

  \begin{itemize}
  \tightlist
  \item \texttt{Builtin} --- boot management is handled by OpenCore, a simple
  text only user interface is used.
  \item \texttt{External} --- an external boot management protocol is used
  if available. Otherwise \texttt{Builtin} mode is used.
  \item \texttt{Apple} --- Apple boot management is used if available.
  Otherwise \texttt{Builtin} mode is used.
  \end{itemize}

  Upon success \texttt{External} mode will entirely disable all boot management
  in OpenCore except policy enforcement. In \texttt{Apple} mode it may additionally
V
vit9696 已提交
3141 3142
  bypass policy enforcement. See \hyperref[ueficanopy]{OpenCanopy} plugin
  for an example of a custom user interface.
3143

3144
  OpenCore built-in boot picker contains a set of actions chosen during the boot process.
3145 3146 3147
  The list of supported actions is similar to Apple BDS and in general can be accessed by
  holding \texttt{action hotkeys} during boot process. Currently the following actions are
  considered:
3148 3149 3150 3151 3152 3153 3154 3155 3156 3157 3158 3159 3160 3161 3162 3163 3164

  \begin{itemize}
  \tightlist
  \item \texttt{Default} --- this is the default option, and it lets OpenCore built-in
  boot picker to loads the default boot option as specified in
  \href{https://support.apple.com/HT202796}{Startup Disk} preference pane.
  \item \texttt{ShowPicker} --- this option forces picker to show. Normally it can be
  achieved by holding \texttt{OPT} key during boot. Setting \texttt{ShowPicker} to
  \texttt{true} will make \texttt{ShowPicker} the default option.
  \item \texttt{ResetNvram} --- this option performs select UEFI variable erase and is
  normally achieved by holding \texttt{CMD+OPT+P+R} key combination during boot.
  Another way to erase UEFI variables is to choose \texttt{Reset NVRAM} in the picker.
  This option requires \texttt{AllowNvramReset} to be set to \texttt{true}.
  \item \texttt{BootApple} --- this options performs booting to the first found Apple
  operating system unless the default chosen operating system is already made by Apple.
  Hold \texttt{X} key to choose this option.
  \item \texttt{BootAppleRecovery} --- this option performs booting to Apple operating
P
PMheart 已提交
3165
  system recovery. Either the one related to the default chosen operating system,
3166 3167 3168 3169
  or first found in case default chosen operating system is not made by Apple or has no
  recovery. Hold \texttt{CMD+R} key combination to choose this option.
  \end{itemize}

V
vit9696 已提交
3170
  \emph{Note 1}: Activated \texttt{KeySupport}, \texttt{OpenUsbKbDxe}, or similar driver is required
D
dakanji 已提交
3171
  for key handling to work. On several types of firmware, it is not possible to get all the key functions.
3172

3173
  \emph{Note 2}: In addition to \texttt{OPT} OpenCore supports \texttt{Escape} key to display picker when
D
dakanji 已提交
3174 3175 3176
  \texttt{ShowPicker} is disabled. This key exists for the \texttt{Apple} picker mode and for
  firmware with PS/2 keyboards that fail to report held \texttt{OPT} keys and requiring continual
  presses of the \texttt{Escape} key to access the boot menu.
3177

D
dakanji 已提交
3178 3179 3180
  \emph{Note 3}: On Macs with problematic GOP, it may be difficult to access the Apple BootPicker.
  The \texttt{BootKicker} utility can be blessed to workaround this problem even without loading
  OpenCore. On some Macs however, the \texttt{BootKicker} utility cannot be run from OpenCore.
3181

3182 3183 3184 3185 3186 3187 3188 3189 3190 3191 3192 3193 3194 3195 3196 3197 3198
\item
  \texttt{PickerVariant}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: \texttt{Auto}\\
  \textbf{Description}: Choose specific icon set used for boot management.
  
  The following values are supported:
  \begin{itemize}
  \tightlist
  \item \texttt{Auto} --- Automatically select one set of icons based on \texttt{DefaultBackground}
  colour.
  \item \texttt{Default} --- Normal icon set (without prefix).
  \item \texttt{Old} --- Vintage icon set (\texttt{Old} filename prefix).
  \item \texttt{Modern} --- Nouveau icon set (\texttt{Modern} filename prefix).
  \item Other value --- Custom icon set if supported by the resources.
  \end{itemize}

3199 3200
\end{enumerate}

V
vit9696 已提交
3201 3202 3203 3204
\subsection{Debug Properties}\label{miscdebugprops}

\begin{enumerate}

3205 3206 3207 3208 3209 3210 3211 3212
\item
  \texttt{AppleDebug}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Enable \texttt{boot.efi} debug log saving to OpenCore log.

  \emph{Note}: This option only applies to 10.15.4 and newer.

3213 3214 3215 3216 3217 3218 3219 3220 3221 3222 3223 3224 3225 3226
\item
  \texttt{ApplePanic}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Save macOS kernel panic to OpenCore root partition.

  The file is saved as \texttt{panic-YYYY-MM-DD-HHMMSS.txt}. It is strongly
  recommended to have \texttt{keepsyms=1} boot argument to see debug symbols
  in the panic log. In case it was not present \texttt{kpdescribe.sh} utility
  (bundled with OpenCore) may be used to partially recover the stacktrace.

  Development and debug kernels produce more helpful kernel panics.
  Consider downloading and installing \texttt{KernelDebugKit} from
  \href{https://developer.apple.com}{developer.apple.com} when debugging a problem.
3227 3228
  To activate a development kernel the boot argument \texttt{kcsuffix=development} should be added.
  Use \texttt{uname -a} command to ensure that the current loaded
3229 3230
  kernel is a development (or a debug) kernel.

3231
  In case OpenCore kernel panic saving mechanism was not used, kernel panics may
A
Andrey1970AppleLife 已提交
3232 3233
  still be found in \\
  \texttt{/Library/Logs/DiagnosticReports} directory.
3234 3235 3236 3237 3238 3239 3240 3241
  Starting with macOS Catalina kernel panics are stored in JSON format, so they
  need to be preprocessed before passing to \texttt{kpdescribe.sh}:

\begin{lstlisting}[label=kpanic, style=ocbash]
cat Kernel.panic | grep macOSProcessedStackshotData |
  python -c 'import json,sys;print(json.load(sys.stdin)["macOSPanicString"])'
\end{lstlisting}

3242 3243 3244
\item
  \texttt{DisableWatchDog}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
3245
  \textbf{Failsafe}: \texttt{false}\\
D
dakanji 已提交
3246 3247 3248
  \textbf{Description}: Some types of firmware may not succeed in booting
  the operating system quickly, especially in debug mode, which results in the watchdog
  timer aborting the process. This option turns off the watchdog timer.
3249

V
vit9696 已提交
3250
\item
V
vit9696 已提交
3251
  \texttt{DisplayDelay}\\
V
vit9696 已提交
3252
  \textbf{Type}: \texttt{plist\ integer}\\
3253
  \textbf{Failsafe}: \texttt{0}\\
V
vit9696 已提交
3254
  \textbf{Description}: Delay in microseconds performed after
V
vit9696 已提交
3255
  every printed line visible onscreen (i.e. console).
V
vit9696 已提交
3256

3257 3258 3259
\item
  \texttt{DisplayLevel}\\
  \textbf{Type}: \texttt{plist\ integer}, 64 bit\\
3260
  \textbf{Failsafe}: \texttt{0}\\
3261 3262 3263 3264
  \textbf{Description}: EDK II debug level bitmask (sum) showed onscreen.
  Unless \texttt{Target} enables console (onscreen) printing,
  onscreen debug output will not be visible. The following levels
  are supported (discover more in
3265
  \href{https://github.com/acidanthera/audk/blob/master/MdePkg/Include/Library/DebugLib.h}{DebugLib.h}):
3266 3267 3268

  \begin{itemize}
  \tightlist
3269
    \item \texttt{0x00000002} (bit \texttt{1}) --- \texttt{DEBUG\_WARN} in \texttt{DEBUG},
3270
      \texttt{NOOPT}, \texttt{RELEASE}.
3271
    \item \texttt{0x00000040} (bit \texttt{6}) --- \texttt{DEBUG\_INFO} in \texttt{DEBUG},
3272
      \texttt{NOOPT}.
3273 3274
    \item \texttt{0x00400000} (bit \texttt{22}) --- \texttt{DEBUG\_VERBOSE} in custom builds.
    \item \texttt{0x80000000} (bit \texttt{31}) --- \texttt{DEBUG\_ERROR} in \texttt{DEBUG},
3275 3276 3277
      \texttt{NOOPT}, \texttt{RELEASE}.
  \end{itemize}

3278 3279 3280 3281 3282 3283 3284 3285 3286 3287
\item
  \texttt{SerialInit}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Perform serial port initialisation.

  This option will perform serial port initialisation within OpenCore prior to enabling
  (any) debug logging. Serial port configuration is defined via PCDs at compile time
  in \texttt{gEfiMdeModulePkgTokenSpaceGuid} GUID. Default values as found in
  \texttt{MdeModulePkg.dec} are as follows:
3288

3289 3290 3291 3292 3293 3294 3295 3296
  \begin{itemize}
  \tightlist
    \item \texttt{PcdSerialBaudRate} --- Baud rate: \texttt{115200}.
    \item \texttt{PcdSerialLineControl} --- Line control: no parity, 8 data bits, 1 stop bit.
  \end{itemize}

  See more details in \hyperref[troubleshootingdebug]{\texttt{Debugging}} section.

3297 3298 3299 3300 3301 3302 3303 3304 3305 3306
\item
  \texttt{SysReport}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Produce system report on ESP folder.

  This option will create a \texttt{SysReport} directory on ESP partition
  unless it is already present. The directory will contain ACPI and SMBIOS dumps.

  \emph{Note}: For security reasons \texttt{SysReport} option is \textbf{not} available
3307
  in \texttt{RELEASE} builds. Use a \texttt{DEBUG} build if this option is needed.
3308

V
vit9696 已提交
3309 3310 3311
\item
  \texttt{Target}\\
  \textbf{Type}: \texttt{plist\ integer}\\
3312
  \textbf{Failsafe}: \texttt{0}\\
V
vit9696 已提交
3313 3314
  \textbf{Description}: A bitmask (sum) of enabled logging targets.
  By default all the logging output is hidden, so this option is
3315 3316 3317
  required to be set when debugging is necessary.

  The following logging targets are supported:
V
vit9696 已提交
3318 3319 3320

  \begin{itemize}
  \tightlist
3321 3322 3323 3324 3325 3326 3327
    \item \texttt{0x01} (bit \texttt{0}) --- Enable logging, otherwise all log is discarded.
    \item \texttt{0x02} (bit \texttt{1}) --- Enable basic console (onscreen) logging.
    \item \texttt{0x04} (bit \texttt{2}) --- Enable logging to Data Hub.
    \item \texttt{0x08} (bit \texttt{3}) --- Enable serial port logging.
    \item \texttt{0x10} (bit \texttt{4}) --- Enable UEFI variable logging.
    \item \texttt{0x20} (bit \texttt{5}) --- Enable non-volatile UEFI variable logging.
    \item \texttt{0x40} (bit \texttt{6}) --- Enable logging to file.
V
vit9696 已提交
3328 3329
  \end{itemize}

3330
  Console logging prints less than all the other variants.
V
vit9696 已提交
3331 3332 3333
  Depending on the build type (\texttt{RELEASE}, \texttt{DEBUG}, or
  \texttt{NOOPT}) different amount of logging may be read (from least to most).

V
vit9696 已提交
3334 3335
  Data Hub log will not log kernel and kext patches. To obtain Data Hub log use
  the following command in macOS:
V
vit9696 已提交
3336
\begin{lstlisting}[label=dhublog, style=ocbash]
V
vit9696 已提交
3337
ioreg -lw0 -p IODeviceTree | grep boot-log | sort | sed 's/.*<\(.*\)>.*/\1/' | xxd -r -p
V
vit9696 已提交
3338 3339
\end{lstlisting}

V
vit9696 已提交
3340
  UEFI variable log does not include some messages and has no performance data. For safety
D
dakanji 已提交
3341
  reasons log size is limited to 32 kilobytes. Some types of firmware may truncate it much earlier
V
vit9696 已提交
3342 3343
  or drop completely if they have no memory. Using non-volatile flag will write the log to
  NVRAM flash after every printed line. To obtain UEFI variable log use the following command
V
vit9696 已提交
3344 3345
  in macOS:
\begin{lstlisting}[label=nvramlog, style=ocbash]
3346
nvram 4D1FDA02-38C7-4A6A-9CC6-4BCCA8B30102:boot-log |
V
vit9696 已提交
3347 3348 3349
  awk '{gsub(/%0d%0a%00/,"");gsub(/%0d%0a/,"\n")}1'
\end{lstlisting}

D
dakanji 已提交
3350
  \textbf{Warning}: Some types of firmware appear to have flawed NVRAM garbage collection.
3351 3352 3353
  This means that they may not be able to always free space after variable deletion.
  Do not use non-volatile NVRAM logging without extra need on such devices.

V
vit9696 已提交
3354 3355
  While OpenCore boot log already contains basic version information with build type and
  date, this data may also be found in NVRAM in \texttt{opencore-version} variable
3356
  even with boot log disabled.
V
vit9696 已提交
3357

3358 3359 3360
  File logging will create a file named \texttt{opencore-YYYY-MM-DD-HHMMSS.txt} at EFI
  volume root with log contents (the upper case letter sequence is replaced with date
  and time from the firmware). Please be warned that some file system drivers present
D
dakanji 已提交
3361 3362
  in firmware are not reliable and may corrupt data when writing files through UEFI.
  Log writing is attempted in the safest manner and thus, is very slow. Ensure that
3363
  \texttt{DisableWatchDog} is set to \texttt{true} when a slow drive is used. Try to
3364
  avoid frequent use of this option when dealing with flash drives as large I/O
D
dakanji 已提交
3365
  amounts may speedup memory wear and render the flash drive unusable quicker.
V
vit9696 已提交
3366

3367
  When interpreting the log, note that the lines are prefixed with a tag describing
3368
  the relevant location (module) of the log line allowing better attribution of the line
3369 3370 3371 3372 3373 3374 3375 3376 3377 3378 3379 3380 3381 3382 3383
  to the functionality. The list of currently used tags is provided below.

  \textbf{Drivers and tools}:
  \begin{itemize}
  \tightlist
  \item \texttt{BMF} --- OpenCanopy, bitmap font
  \item \texttt{BS} --- Bootstrap
  \item \texttt{GSTT} --- GoptStop
  \item \texttt{HDA} --- AudioDxe
  \item \texttt{KKT} --- KeyTester
  \item \texttt{MMDD} --- MmapDump
  \item \texttt{OCPAVP} --- PavpProvision
  \item \texttt{OCRST} --- ResetSystem
  \item \texttt{OCUI} --- OpenCanopy
  \item \texttt{OC} --- OpenCore main
3384
  \item \texttt{VMOPT} --- VerifyMemOpt
3385 3386 3387 3388 3389 3390 3391 3392 3393 3394 3395 3396 3397 3398 3399 3400 3401
  \end{itemize}

  \textbf{Libraries}:
  \begin{itemize}
  \tightlist
  \item \texttt{AAPL} --- OcDebugLogLib, Apple EfiBoot logging
  \item \texttt{OCABC} --- OcAfterBootCompatLib
  \item \texttt{OCAE} --- OcAppleEventLib
  \item \texttt{OCAK} --- OcAppleKernelLib
  \item \texttt{OCAU} --- OcAudioLib
  \item \texttt{OCAV} --- OcAppleImageVerificationLib
  \item \texttt{OCA} ---- OcAcpiLib
  \item \texttt{OCBP} --- OcAppleBootPolicyLib
  \item \texttt{OCB} --- OcBootManagementLib
  \item \texttt{OCCL} --- OcAppleChunkListLib
  \item \texttt{OCCPU} --- OcCpuLib
  \item \texttt{OCC} --- OcConsoleLib
3402
  \item \texttt{OCDC} --- OcDriverConnectionLib
3403 3404 3405 3406 3407
  \item \texttt{OCDH} --- OcDataHubLib
  \item \texttt{OCDI} --- OcAppleDiskImageLib
  \item \texttt{OCFS} --- OcFileLib
  \item \texttt{OCFV} --- OcFirmwareVolumeLib
  \item \texttt{OCHS} --- OcHashServicesLib
3408
  \item \texttt{OCI4} --- OcAppleImg4Lib
3409 3410 3411 3412 3413 3414 3415 3416 3417 3418 3419 3420 3421 3422 3423 3424 3425 3426 3427 3428 3429 3430 3431
  \item \texttt{OCIC} --- OcImageConversionLib
  \item \texttt{OCII} --- OcInputLib
  \item \texttt{OCJS} --- OcApfsLib
  \item \texttt{OCKM} --- OcAppleKeyMapLib
  \item \texttt{OCL} --- OcDebugLogLib
  \item \texttt{OCMCO} --- OcMachoLib
  \item \texttt{OCME} --- OcHeciLib
  \item \texttt{OCMM} --- OcMemoryLib
  \item \texttt{OCPI} --- OcFileLib, partition info
  \item \texttt{OCPNG} --- OcPngLib
  \item \texttt{OCRAM} --- OcAppleRamDiskLib
  \item \texttt{OCRTC} --- OcRtcLib
  \item \texttt{OCSB} --- OcAppleSecureBootLib
  \item \texttt{OCSMB} --- OcSmbiosLib
  \item \texttt{OCSMC} --- OcSmcLib
  \item \texttt{OCST} --- OcStorageLib
  \item \texttt{OCS} --- OcSerializedLib
  \item \texttt{OCTPL} --- OcTemplateLib
  \item \texttt{OCUC} --- OcUnicodeCollationLib
  \item \texttt{OCUT} --- OcAppleUserInterfaceThemeLib
  \item \texttt{OCXML} --- OcXmlLib
  \end{itemize}

V
vit9696 已提交
3432
\end{enumerate}
V
vit9696 已提交
3433

3434 3435 3436
\subsection{Security Properties}\label{miscsecurityprops}

\begin{enumerate}
3437

3438 3439 3440 3441 3442 3443 3444
\item
  \texttt{AllowNvramReset}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Allow \texttt{CMD+OPT+P+R} handling and enable
  showing \texttt{NVRAM Reset} entry in boot picker.

3445 3446 3447 3448 3449 3450
  \emph{Note 1}: It is known that some Lenovo laptops have a firmware
  bug, which makes them unbootable after performing NVRAM reset. See
  \href{https://github.com/acidanthera/bugtracker/issues/995}{acidanthera/bugtracker\#995}
  for more details.

  \emph{Note 2}: Resetting NVRAM will also erase all the boot options
V
vit9696 已提交
3451 3452
  otherwise not backed up with bless (e.g. Linux).

3453 3454 3455 3456 3457 3458 3459
\item
  \texttt{AllowSetDefault}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Allow \texttt{CTRL+Enter} and \texttt{CTRL+Index} handling
  to set the default boot option in boot picker.

3460 3461 3462 3463 3464 3465
\item
  \texttt{ApECID}\\
  \textbf{Type}: \texttt{plist\ integer}, 64 bit\\
  \textbf{Failsafe}: \texttt{0}\\
  \textbf{Description}: Apple Enclave Identifier.

V
vit9696 已提交
3466
  Setting this value to any non-zero 64-bit integer will allow using
3467
  personalised Apple Secure Boot identifiers. To use this setting,
V
vit9696 已提交
3468
  make sure to generate a random 64-bit number with a cryptographically secure
3469
  random number generator. As an alternative, first 8 bytes of \texttt{SystemUUID}
3470
  can be used for \texttt{ApECID}, this is found in macOS 11 for Macs without
3471 3472 3473
  the T2 chip.

  With this value set and \texttt{SecureBootModel} valid
V
vit9696 已提交
3474
  and not \texttt{Disabled} it is possible to achieve
V
vit9696 已提交
3475 3476
  \href{https://support.apple.com/en-us/HT208330}{\texttt{Full Security}} of Apple
  Secure Boot.
3477

3478 3479 3480
  To start using personalised Apple Secure Boot, the operating system will have
  to be reinstalled or personalised. Unless the operating system is personalised,
  macOS DMG recovery cannot be loaded. If DMG recovery is missing,
3481
  it can be downloaded with \texttt{macrecovery} utility and put to
3482
  \texttt{com.apple.recovery.boot} as explained in
3483
  \hyperref[reinstallmacos]{Tips and Tricks} section. Note that
3484 3485 3486 3487 3488 3489 3490 3491 3492 3493 3494
  \hyperref[securedmgloading]{DMG loading} needs to be set to \texttt{Signed}
  to use any DMG with Apple Secure Boot.

  To personalise an existing operating system use \texttt{bless} command
  after loading to macOS DMG recovery. Mount the system volume partition,
  unless it has already been mounted, and execute the following command:

\begin{lstlisting}[label=blesspersona, style=ocbash]
bless bless --folder "/Volumes/Macintosh HD/System/Library/CoreServices" \
  --bootefi --personalize
\end{lstlisting}
3495

3496
  Before macOS 11, which introduced a dedicated \texttt{x86legacy}
3497 3498 3499
  model for models without the T2 chip, personalised Apple Secure Boot
  may not work as expected. When reinstalling the operating system, macOS Installer
  from macOS 10.15 and older, will usually run out of free memory
3500 3501 3502 3503 3504 3505 3506 3507 3508 3509 3510 3511 3512 3513
  on the \texttt{/var/tmp} partition when trying to install macOS
  with the personalised Apple Secure Boot. Soon after downloading the macOS installer
  image an \texttt{Unable to verify macOS} error message will appear. To workaround
  this issue allocate a dedicated RAM disk of 2 MBs for macOS personalisation
  by entering the following commands in macOS recovery terminal before starting the
  installation:

\begin{lstlisting}[label=secureboot, style=ocbash]
disk=$(hdiutil attach -nomount ram://4096)
diskutil erasevolume HFS+ SecureBoot $disk
diskutil unmount $disk
mkdir /var/tmp/OSPersonalizationTemp
diskutil mount -mountpoint /var/tmp/OSPersonalizationTemp $disk
\end{lstlisting}
3514

3515 3516 3517 3518 3519 3520 3521
\item
  \texttt{AuthRestart}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Enable \texttt{VirtualSMC}-compatible authenticated restart.

  Authenticated restart is a way to reboot FileVault 2 enabled macOS without entering
3522 3523
  the password. A dedicated terminal command can be used to perform authenticated restarts:
  \texttt{sudo fdesetup authrestart}. It is also used when installing operating system updates.
3524 3525 3526 3527 3528

  VirtualSMC performs authenticated restart by saving disk encryption key split in
  NVRAM and RTC, which despite being removed as soon as OpenCore starts, may be
  considered a security risk and thus is optional.

3529 3530 3531 3532 3533 3534 3535 3536 3537 3538 3539
\item
  \texttt{BlacklistAppleUpdate}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Ignore boot options trying to update Apple peripheral firmware
  (e.g. \texttt{MultiUpdater.efi}).

  \emph{Note}: This option exists due to some operating systems, namely macOS Big Sur,
  being \href{https://github.com/acidanthera/bugtracker/issues/1255}{incapable} of
  disabling firmware updates with the NVRAM variable (\texttt{run-efi-updater}).

3540 3541 3542 3543 3544 3545 3546 3547 3548 3549 3550 3551 3552
\item
  \texttt{BootProtect}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: \texttt{None}\\
  \textbf{Description}: Attempt to provide bootloader persistence.

  Valid values:

  \begin{itemize}
  \tightlist
  \item \texttt{None} --- do nothing.
  \item \texttt{Bootstrap} --- create or update top-priority
  \texttt{\textbackslash EFI\textbackslash OC\textbackslash Bootstrap\textbackslash Bootstrap.efi}
V
vit9696 已提交
3553
  boot option in UEFI variable storage at bootloader startup. For this option
3554
  to work \texttt{RequestBootVarRouting} is required to be enabled.
V
vit9696 已提交
3555
  \item \texttt{BootstrapShort} --- create a short boot option instead of a complete one,
V
vit9696 已提交
3556 3557
  otherwise equivalent to \texttt{Bootstrap}. This variant is useful for some older firmwares,
  Insyde in particular, but possibly others, which cannot handle full device paths.
3558 3559 3560 3561 3562
  \end{itemize}

  This option provides integration with third-party operating system installation and upgrade
  at the times they overwrite \texttt{\textbackslash EFI\textbackslash BOOT\textbackslash BOOTx64.efi}
  file. By creating a custom option in \texttt{Bootstrap} mode this file path becomes no longer
G
Goldfish64 已提交
3563
  used for bootstrapping OpenCore.
3564

D
dakanji 已提交
3565 3566
  \emph{Note 1}: Some types of firmware may have faulty NVRAM, no boot option support, or other
  incompatibilities. While unlikely, the use of this option may even cause boot failures.
3567
  This option should be used without any warranty exclusively on the boards known to be compatible.
V
vit9696 已提交
3568 3569
  Check \href{https://github.com/acidanthera/bugtracker/issues/1222}{acidanthera/bugtracker\#1222}
  for some known issues with Haswell and other boards.
3570

D
dakanji 已提交
3571
  \emph{Note 2}: Be aware that while NVRAM reset executed from OpenCore should not erase the boot
V
vit9696 已提交
3572 3573
  option created in \texttt{Bootstrap}, executing NVRAM reset prior to loading OpenCore will remove it. For significant implementation updates (e.g. in OpenCore 0.6.4) make sure to perform
  NVRAM reset with \texttt{Bootstrap} disabled before reenabling.
3574

V
vit9696 已提交
3575
\item \label{securedmgloading}
3576 3577 3578
  \texttt{DmgLoading}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: \texttt{Signed}\\
V
vit9696 已提交
3579
  \textbf{Description}: Define Disk Image (DMG) loading policy used for macOS Recovery.
3580 3581 3582 3583 3584

  Valid values:

  \begin{itemize}
  \tightlist
3585 3586 3587 3588 3589 3590 3591 3592 3593
  \item \texttt{Disabled} --- loading DMG images will fail. \texttt{Disabled}
    policy will still let macOS Recovery to load in most cases as there
    usually are \texttt{boot.efi} files compatible with Apple Secure Boot.
    Manually downloaded DMG images stored in \texttt{com.apple.recovery.boot}
    directories will not load, however.
  \item \texttt{Signed} --- only Apple-signed DMG images will load. Due to
    Apple Secure Boot design \texttt{Signed} policy will let any Apple-signed
    macOS Recovery to load regardless of Apple Secure Boot state, which may
    not always be desired.
3594
  \item \texttt{Any} --- any DMG images will mount as normal filesystems.
3595
    \texttt{Any} policy is strongly not recommended and will cause a boot failure
3596
    when Apple Secure Boot is activated.
3597 3598
  \end{itemize}

3599 3600 3601 3602 3603 3604
\item
  \texttt{EnablePassword}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Enable password protection to allow sensitive operations.

D
dakanji 已提交
3605
  Password protection ensures that sensitive operations such as booting a non-default
3606 3607 3608 3609 3610 3611 3612 3613
  operating system (e.g. macOS recovery or a tool), resetting NVRAM storage,
  trying to boot into a non-default mode (e.g. verbose mode or safe mode) are not
  allowed without explicit user authentication by a custom password. Currently
  password and salt are hashed with 5000000 iterations of SHA-512.

  \emph{Note}: This functionality is currently in development and is not ready for
  daily usage.

3614 3615 3616
\item
  \texttt{ExposeSensitiveData}\\
  \textbf{Type}: \texttt{plist\ integer}\\
3617
  \textbf{Failsafe}: \texttt{0x6}\\
3618 3619 3620 3621 3622 3623
  \textbf{Description}: Sensitive data exposure bitmask (sum) to operating system.

  \begin{itemize}
  \tightlist
    \item \texttt{0x01} --- Expose printable booter path as an UEFI variable.
    \item \texttt{0x02} --- Expose OpenCore version as an UEFI variable.
A
Andrey1970AppleLife 已提交
3624
    \item \texttt{0x04} --- Expose OpenCore version in boot picker menu title.
3625
    \item \texttt{0x08} --- Expose OEM information as a set of UEFI variables.
3626 3627 3628 3629 3630 3631 3632 3633 3634 3635 3636 3637 3638 3639 3640 3641 3642
  \end{itemize}

  Exposed booter path points to OpenCore.efi or its booter depending on the load order.
  To obtain booter path use the following command in macOS:
\begin{lstlisting}[label=nvrampath, style=ocbash]
nvram 4D1FDA02-38C7-4A6A-9CC6-4BCCA8B30102:boot-path
\end{lstlisting}

  To use booter path for mounting booter volume use the following command in macOS:
\begin{lstlisting}[label=nvrampathmount, style=ocbash]
u=$(nvram 4D1FDA02-38C7-4A6A-9CC6-4BCCA8B30102:boot-path | sed 's/.*GPT,\([^,]*\),.*/\1/'); \
  if [ "$u" != "" ]; then sudo diskutil mount $u ; fi
\end{lstlisting}

  To obtain OpenCore version use the following command in macOS:
\begin{lstlisting}[label=nvramver, style=ocbash]
nvram 4D1FDA02-38C7-4A6A-9CC6-4BCCA8B30102:opencore-version
3643 3644 3645
\end{lstlisting}

  To obtain OEM information use the following commands in macOS:
3646
\begin{lstlisting}[label=nvramoem, style=ocbash]
3647 3648 3649
nvram 4D1FDA02-38C7-4A6A-9CC6-4BCCA8B30102:oem-product # SMBIOS Type1 ProductName
nvram 4D1FDA02-38C7-4A6A-9CC6-4BCCA8B30102:oem-vendor  # SMBIOS Type2 Manufacturer
nvram 4D1FDA02-38C7-4A6A-9CC6-4BCCA8B30102:oem-board   # SMBIOS Type2 ProductName
3650 3651
\end{lstlisting}

3652 3653 3654
\item
  \texttt{HaltLevel}\\
  \textbf{Type}: \texttt{plist\ integer}, 64 bit\\
3655
  \textbf{Failsafe}: \texttt{0x80000000} (\texttt{DEBUG\_ERROR})\\
3656 3657 3658
  \textbf{Description}: EDK II debug level bitmask (sum) causing CPU to
  halt (stop execution) after obtaining a message of \texttt{HaltLevel}.
  Possible values match \texttt{DisplayLevel} values.
V
vit9696 已提交
3659

3660 3661 3662 3663 3664 3665 3666 3667 3668 3669 3670 3671
\item
  \texttt{PasswordHash}\\
  \textbf{Type}: \texttt{plist\ data} 64 bytes\\
  \textbf{Failsafe}: all zero\\
  \textbf{Description}: Password hash used when \texttt{EnabledPassword} is set.

\item
  \texttt{PasswordSalt}\\
  \textbf{Type}: \texttt{plist\ data}\\
  \textbf{Failsafe}: empty\\
  \textbf{Description}: Password salt used when \texttt{EnabledPassword} is set.

V
vit9696 已提交
3672
\item \label{securevaulting}
3673 3674 3675 3676
  \texttt{Vault}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: \texttt{Secure}\\
  \textbf{Description}: Enables vaulting mechanism in OpenCore.
V
vit9696 已提交
3677

3678 3679 3680 3681
  Valid values:

  \begin{itemize}
  \tightlist
V
vit9696 已提交
3682
  \item \texttt{Optional} --- require nothing, no vault is enforced, insecure.
3683 3684 3685 3686 3687 3688 3689 3690 3691 3692 3693 3694
  \item \texttt{Basic} --- require \texttt{vault.plist} file present
  in \texttt{OC} directory. This provides basic filesystem integrity
  verification and may protect from unintentional filesystem corruption.
  \item \texttt{Secure} --- require \texttt{vault.sig} signature file for
  \texttt{vault.plist} in \texttt{OC} directory. This includes \texttt{Basic}
  integrity checking but also attempts to build a trusted bootchain.
  \end{itemize}

  \texttt{vault.plist} file should contain SHA-256 hashes for all files used by OpenCore.
  Presence of this file is highly recommended to ensure that unintentional
  file modifications (including filesystem corruption) do not happen unnoticed.
  To create this file automatically use
3695
  \href{https://github.com/acidanthera/OpenCorePkg/tree/master/Utilities/CreateVault}{\texttt{create\_vault.sh}} script.
3696 3697
  Regardless of the underlying filesystem, path name and case must match
  between \texttt{config.plist} and \texttt{vault.plist}.
V
vit9696 已提交
3698

3699 3700
  \texttt{vault.sig} file should contain a raw 256 byte RSA-2048 signature from SHA-256
  hash of \texttt{vault.plist}. The signature is verified against the public
3701
  key embedded into \texttt{OpenCore.efi}. To embed the public key either of the following should be performed:
V
vit9696 已提交
3702 3703 3704 3705 3706 3707 3708 3709 3710 3711 3712

  \begin{itemize}
  \tightlist
  \item Provide public key during the \texttt{OpenCore.efi} compilation in
  \href{https://github.com/acidanthera/OpenCorePkg/blob/master/Platform/OpenCore/OpenCoreVault.c}{\texttt{OpenCoreVault.c}} file.
  \item Binary patch \texttt{OpenCore.efi} replacing zeroes with the public key
  between \texttt{=BEGIN OC VAULT=} and \texttt{==END OC VAULT==} ASCII markers.
  \end{itemize}

  RSA public key 520 byte format description can be found in Chromium OS documentation.
  To convert public key from X.509 certificate or from PEM file use
3713
  \href{https://github.com/acidanthera/OpenCorePkg/tree/master/Utilities/CreateVault}{RsaTool}.
V
vit9696 已提交
3714 3715


V
vit9696 已提交
3716 3717 3718 3719 3720
  The complete set of commands to:

  \begin{itemize}
  \tightlist
  \item Create \texttt{vault.plist}.
V
vit9696 已提交
3721
  \item Create a new RSA key (always do this to avoid loading old configuration).
V
vit9696 已提交
3722
  \item Embed RSA key into \texttt{OpenCore.efi}.
V
vit9696 已提交
3723 3724 3725 3726 3727
  \item Create \texttt{vault.sig}.
  \end{itemize}

  Can look as follows:
\begin{lstlisting}[label=createvault, style=ocbash]
V
vit9696 已提交
3728
cd /Volumes/EFI/EFI/OC
3729 3730
/path/to/create_vault.sh .
/path/to/RsaTool -sign vault.plist vault.sig vault.pub
V
vit9696 已提交
3731
off=$(($(strings -a -t d OpenCore.efi | grep "=BEGIN OC VAULT=" | cut -f1 -d' ')+16))
V
vit9696 已提交
3732
dd of=OpenCore.efi if=vault.pub bs=1 seek=$off count=528 conv=notrunc
V
vit9696 已提交
3733
rm vault.pub
V
vit9696 已提交
3734 3735
\end{lstlisting}

3736
  \emph{Note 1}: While it may appear obvious, an external
3737
  method is required to verify \texttt{OpenCore.efi} and \texttt{BOOTx64.efi} for
3738 3739
  secure boot path. For this, it is recommended to enable UEFI SecureBoot
  using a custom certificate and to sign \texttt{OpenCore.efi} and \texttt{BOOTx64.efi}
D
dakanji 已提交
3740
  with a custom key. More details on customising secure boot on modern firmware
V
vit9696 已提交
3741 3742 3743
  can be found in \href{https://habr.com/post/273497/}{Taming UEFI SecureBoot}
  paper (in Russian).

3744 3745 3746 3747 3748
  \emph{Note 2}: \texttt{vault.plist} and \texttt{vault.sig} are used regardless of this
  option when \texttt{vault.plist} is present or public key is embedded into
  \texttt{OpenCore.efi}. Setting this option will only ensure configuration sanity,
  and abort the boot process otherwise.

3749 3750 3751
\item
  \texttt{ScanPolicy}\\
  \textbf{Type}: \texttt{plist\ integer}, 32 bit\\
3752
  \textbf{Failsafe}: \texttt{0x10F0103}\\
3753 3754 3755 3756 3757 3758 3759 3760 3761 3762 3763 3764 3765 3766 3767
  \textbf{Description}: Define operating system detection policy.

  This value allows to prevent scanning (and booting) from untrusted
  source based on a bitmask (sum) of select flags. As it is not possible
  to reliably detect every file system or device type, this feature
  cannot be fully relied upon in open environments, and the additional
  measures are to be applied.

  Third party drivers may introduce additional security (and performance)
  measures following the provided scan policy. Scan policy is exposed
  in \texttt{scan-policy} variable of \texttt{4D1FDA02-38C7-4A6A-9CC6-4BCCA8B30102}
  GUID for UEFI Boot Services only.

  \begin{itemize}
  \tightlist
3768
    \item \texttt{0x00000001} (bit \texttt{0}) --- \texttt{OC\_SCAN\_FILE\_SYSTEM\_LOCK}, restricts
3769 3770 3771 3772 3773
    scanning to only known file systems defined as a part of this policy. File system
    drivers may not be aware of this policy, and to avoid mounting of undesired file
    systems it is best not to load its driver. This bit does not affect dmg mounting,
    which may have any file system. Known file systems are prefixed with
    \texttt{OC\_SCAN\_ALLOW\_FS\_}.
3774
    \item \texttt{0x00000002} (bit \texttt{1}) --- \texttt{OC\_SCAN\_DEVICE\_LOCK}, restricts scanning
3775 3776 3777 3778
    to only known device types defined as a part of this policy. This is not always possible
    to detect protocol tunneling, so be aware that on some systems it may be possible for
    e.g. USB HDDs to be recognised as SATA. Cases like this must be reported. Known device
    types are prefixed with \texttt{OC\_SCAN\_ALLOW\_DEVICE\_}.
3779
    \item \texttt{0x00000100} (bit \texttt{8}) --- \texttt{OC\_SCAN\_ALLOW\_FS\_APFS}, allows scanning
3780
    of APFS file system.
3781
    \item \texttt{0x00000200} (bit \texttt{9}) --- \texttt{OC\_SCAN\_ALLOW\_FS\_HFS}, allows scanning
3782 3783 3784
    of HFS file system.
    \item \texttt{0x00000400} (bit \texttt{10}) --- \texttt{OC\_SCAN\_ALLOW\_FS\_ESP}, allows scanning
    of EFI System Partition file system.
3785 3786 3787 3788
    \item \texttt{0x00000800} (bit \texttt{11}) --- \texttt{OC\_SCAN\_ALLOW\_FS\_NTFS}, allows scanning
    of NTFS (Msft Basic Data) file system.
    \item \texttt{0x00001000} (bit \texttt{12}) --- \texttt{OC\_SCAN\_ALLOW\_FS\_EXT}, allows scanning
    of EXT (Linux Root) file system.
3789
    \item \texttt{0x00010000} (bit \texttt{16}) --- \texttt{OC\_SCAN\_ALLOW\_DEVICE\_SATA}, allow
3790
    scanning SATA devices.
3791
    \item \texttt{0x00020000} (bit \texttt{17}) --- \texttt{OC\_SCAN\_ALLOW\_DEVICE\_SASEX}, allow
3792
    scanning SAS and Mac NVMe devices.
3793
    \item \texttt{0x00040000} (bit \texttt{18}) --- \texttt{OC\_SCAN\_ALLOW\_DEVICE\_SCSI}, allow
3794
    scanning SCSI devices.
3795
    \item \texttt{0x00080000} (bit \texttt{19}) --- \texttt{OC\_SCAN\_ALLOW\_DEVICE\_NVME}, allow
3796
    scanning NVMe devices.
3797
    \item \texttt{0x00100000} (bit \texttt{20}) --- \texttt{OC\_SCAN\_ALLOW\_DEVICE\_ATAPI}, allow
3798
    scanning CD/DVD devices and old SATA.
3799
    \item \texttt{0x00200000} (bit \texttt{21}) --- \texttt{OC\_SCAN\_ALLOW\_DEVICE\_USB}, allow
3800
    scanning USB devices.
3801
    \item \texttt{0x00400000} (bit \texttt{22}) --- \texttt{OC\_SCAN\_ALLOW\_DEVICE\_FIREWIRE}, allow
3802
    scanning FireWire devices.
3803
    \item \texttt{0x00800000} (bit \texttt{23}) --- \texttt{OC\_SCAN\_ALLOW\_DEVICE\_SDCARD}, allow
3804
    scanning card reader devices.
3805 3806
    \item \texttt{0x01000000} (bit \texttt{24}) --- \texttt{OC\_SCAN\_ALLOW\_DEVICE\_PCI}, allow
    scanning devices directly connected to PCI bus (e.g. VIRTIO).
3807 3808 3809 3810 3811
  \end{itemize}

  \emph{Note}: Given the above description, \texttt{0xF0103} value is expected to allow
  scanning of SATA, SAS, SCSI, and NVMe devices with APFS file system, and prevent scanning
  of any devices with HFS or FAT32 file systems in addition to not scanning APFS file systems
V
vit9696 已提交
3812
  on USB, CD, and FireWire drives. The combination reads as:
3813 3814 3815 3816 3817 3818 3819 3820 3821 3822 3823
  \begin{itemize}
  \tightlist
  \item \texttt{OC\_SCAN\_FILE\_SYSTEM\_LOCK}
  \item \texttt{OC\_SCAN\_DEVICE\_LOCK}
  \item \texttt{OC\_SCAN\_ALLOW\_FS\_APFS}
  \item \texttt{OC\_SCAN\_ALLOW\_DEVICE\_SATA}
  \item \texttt{OC\_SCAN\_ALLOW\_DEVICE\_SASEX}
  \item \texttt{OC\_SCAN\_ALLOW\_DEVICE\_SCSI}
  \item \texttt{OC\_SCAN\_ALLOW\_DEVICE\_NVME}
  \end{itemize}

V
vit9696 已提交
3824
\item \label{secureapplesb}
3825 3826 3827 3828 3829
  \texttt{SecureBootModel}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: \texttt{Default}\\
  \textbf{Description}: Apple Secure Boot hardware model.

3830
  Sets Apple Secure Boot hardware model and policy. Specifying
3831 3832 3833 3834 3835 3836
  this value defines which operating systems will be bootable.
  Operating systems shipped before the specified model was released
  will not boot. Valid values:

  \begin{itemize}
  \tightlist
3837
  \item \texttt{Default} --- Recent available model, currently set to \texttt{j137}.
3838
  \item \texttt{Disabled} --- No model, Secure Boot will be disabled.
A
Andrey1970AppleLife 已提交
3839 3840 3841 3842 3843 3844 3845 3846 3847 3848 3849 3850 3851 3852 3853 3854 3855
  \item \texttt{j137} --- \texttt{iMacPro1,1 (December 2017). Minimum macOS 10.13.2 (17C2111)}
  \item \texttt{j680} --- \texttt{MacBookPro15,1 (July 2018). Minimum macOS 10.13.6 (17G2112)}
  \item \texttt{j132} --- \texttt{MacBookPro15,2 (July 2018). Minimum macOS 10.13.6 (17G2112)}
  \item \texttt{j174} --- \texttt{Macmini8,1 (October 2018). Minimum macOS 10.14 (18A2063)}
  \item \texttt{j140k} --- \texttt{MacBookAir8,1 (October 2018). Minimum macOS 10.14.1 (18B2084)}
  \item \texttt{j780} --- \texttt{MacBookPro15,3 (May 2019). Minimum macOS 10.14.5 (18F132)}
  \item \texttt{j213} --- \texttt{MacBookPro15,4 (July 2019). Minimum macOS 10.14.5 (18F2058)}
  \item \texttt{j140a} --- \texttt{MacBookAir8,2 (July 2019). Minimum macOS 10.14.5 (18F2058)}
  \item \texttt{j152f} --- \texttt{MacBookPro16,1 (November 2019). Minimum macOS 10.15.1 (19B2093)}
  \item \texttt{j160} --- \texttt{MacPro7,1 (December 2019). Minimum macOS 10.15.1 (19B88)}
  \item \texttt{j230k} --- \texttt{MacBookAir9,1 (March 2020). Minimum macOS 10.15.3 (19D2064)}
  \item \texttt{j214k} --- \texttt{MacBookPro16,2 (May 2020). Minimum macOS 10.15.4 (19E2269)}
  \item \texttt{j223} --- \texttt{MacBookPro16,3 (May 2020). Minimum macOS 10.15.4 (19E2265)}
  \item \texttt{j215} --- \texttt{MacBookPro16,4 (June 2020). Minimum macOS 10.15.5 (19F96)}
  \item \texttt{j185} --- \texttt{iMac20,1 (August 2020). Minimum macOS 10.15.6 (19G2005)}
  \item \texttt{j185f} --- \texttt{iMac20,2 (August 2020). Minimum macOS 10.15.6 (19G2005)}
  \item \texttt{x86legacy} --- \texttt{Macs without T2 chip and VMs. Minimum macOS 11.0.1 (20B29)}
3856 3857
  \end{itemize}

3858 3859 3860 3861 3862
  Apple Secure Boot appeared in macOS 10.13 on models with T2 chips.
  Since \texttt{PlatformInfo} and \texttt{SecureBootModel} are independent,
  Apple Secure Boot can be used with any SMBIOS with and without T2.
  Setting \texttt{SecureBootModel} to any valid value but \texttt{Disabled}
  is equivalent to
3863
  \href{https://support.apple.com/en-us/HT208330}{\texttt{Medium Security}}
3864
  of Apple Secure Boot. The \texttt{ApECID} value must also be specified to
3865 3866
  achieve \texttt{Full Security}. Check \texttt{ForceSecureBootScheme}
  when using Apple Secure Boot on a virtual machine.
A
Andrey1970AppleLife 已提交
3867
  
3868
  Enabling Apple Secure Boot is more demanding to incorrect configurations,
3869
  buggy macOS installations, and unsupported setups. Things to consider:
3870 3871 3872

  \begin{enumerate}
    \tightlist
3873
    \item As with T2 Macs, unsigned kernel drivers and several signed kernel
3874
      drivers, including NVIDIA Web Drivers, cannot be installed.
3875 3876 3877
    \item The list of cached drivers may be different, resulting in the need
      to change the list of \texttt{Added} or \texttt{Forced} kernel drivers.
      For example, \texttt{IO80211Family} cannot be injected in this case.
D
dakanji 已提交
3878
    \item System volume alterations on operating systems with sealing, such as
3879
      macOS~11, may result in the operating system being unbootable. Do not
3880 3881 3882
      try to disable system volume encryption unless Apple Secure Boot is disabled.
    \item If the platform requires certain settings, but they were not enabled,
      because the obvious issues did not trigger before, boot failure might occur.
3883 3884 3885 3886
      Be extra careful with \texttt{IgnoreInvalidFlexRatio} or \texttt{HashServices}.
    \item Operating systems released before Apple Secure Boot landed (e.g.
      macOS~10.12 or earlier) will still boot until UEFI Secure Boot is enabled.
      This is so, because from Apple Secure Boot point they are treated as incompatible
D
dakanji 已提交
3887
      and are assumed to be handled by the firmware as Microsoft Windows is.
3888 3889 3890 3891 3892
    \item On older CPUs (e.g. before Sandy Bridge) enabling Apple Secure Boot
      might cause slightly slower loading by up to 1 second.
    \item Since \texttt{Default} value will increase with time to support the latest
      major release operating system, it is not recommended to use \texttt{ApECID}
      and \texttt{Default} value together.
A
Andrey1970AppleLife 已提交
3893 3894
    \item Installing macOS with Apple Secure Boot enabled is not possible while using HFS+ 
      target volume. This may include HFS+ formatted drives when no spare APFS drive is available.
3895 3896
  \end{enumerate}

3897
  Sometimes the already installed operating system may have outdated Apple Secure
3898 3899
  Boot manifests on the \texttt{Preboot} partition causing boot failure. If there is
  ``OCB: Apple Secure Boot prohibits this boot entry, enforcing!'' message,
3900 3901
  it is likely the case. When this happens, either reinstall the operating
  system or copy the manifests (files with \texttt{.im4m} extension, such as
3902 3903
  \texttt{boot.efi.j137.im4m}) from \texttt{/usr/standalone/i386} to
  \texttt{/Volumes/Preboot/<UUID>/System/Library/CoreServices}. Here \texttt{<UUID>}
3904
  is the system volume identifier. On HFS+ installations the manifests should be
3905
  copied to \texttt{/System/Library/CoreServices} on the system volume.
3906

3907 3908
  For more details on how to configure Apple Secure Boot with UEFI Secure Boot
  refer to \hyperref[uefisecureboot]{UEFI Secure Boot} section.
3909

3910 3911
\end{enumerate}

3912
\subsection{Entry Properties}\label{miscentryprops}
3913 3914

\begin{enumerate}
3915 3916 3917 3918 3919 3920 3921
\item
  \texttt{Arguments}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: Empty string\\
  \textbf{Description}: Arbitrary ASCII string used as boot arguments (load options)
  of the specified entry.

3922 3923 3924 3925 3926 3927 3928
\item
  \texttt{Auxiliary}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: This entry will not be listed by default when
  \texttt{HideAuxiliary} is set to \texttt{true}.

3929 3930 3931
\item
  \texttt{Comment}\\
  \textbf{Type}: \texttt{plist\ string}\\
3932
  \textbf{Failsafe}: Empty string\\
3933 3934 3935 3936
  \textbf{Description}: Arbitrary ASCII string used to provide human readable
  reference for the entry. It is implementation defined whether this value is
  used.

3937 3938 3939
\item
  \texttt{Enabled}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
3940
  \textbf{Failsafe}: \texttt{false}\\
3941
  \textbf{Description}: This entry will not be listed unless set to
3942 3943
  \texttt{true}.

3944 3945 3946
\item
  \texttt{Name}\\
  \textbf{Type}: \texttt{plist\ string}\\
3947
  \textbf{Failsafe}: Empty string\\
3948
  \textbf{Description}: Human readable entry name displayed in boot picker.
3949 3950 3951 3952

\item
  \texttt{Path}\\
  \textbf{Type}: \texttt{plist\ string}\\
3953
  \textbf{Failsafe}: Empty string\\
3954 3955 3956 3957 3958 3959 3960 3961 3962
  \textbf{Description}: Entry location depending on entry type.

  \begin{itemize}
  \tightlist
  \item \texttt{Entries} specify external boot options, and therefore take device
  paths in \texttt{Path} key. These values are not checked, thus be extremely careful.
  Example: \texttt{PciRoot(0x0)/Pci(0x1,0x1)/.../\textbackslash EFI\textbackslash COOL.EFI}
  \item \texttt{Tools} specify internal boot options, which are part of bootloader
  vault, and therefore take file paths relative to \texttt{OC/Tools} directory.
V
vit9696 已提交
3963
  Example: \texttt{OpenShell.efi}.
3964
  \end{itemize}
3965

3966 3967 3968
\item
  \texttt{RealPath}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
V
vit9696 已提交
3969
  \textbf{Failsafe}: \texttt{false}\\
3970 3971 3972 3973 3974
  \textbf{Description}: Pass full path to the tool when launching.

  Passing tool directory may be unsafe for tool accidentally trying to access
  files without checking their integrity and thus should generally be disabled.
  Reason to enable this property may include cases where tools cannot work
V
vit9696 已提交
3975 3976 3977
  without external files or may need them for better function (e.g.
  \texttt{memtest86} for logging and configuration or \texttt{Shell} for
  automatic script execution).
3978 3979 3980

  \emph{Note}: This property is only valid for \texttt{Tools}. For \texttt{Entries}
  this property cannot be specified and is always \texttt{true}.
3981

3982 3983 3984
\item
  \texttt{TextMode}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
V
vit9696 已提交
3985
  \textbf{Failsafe}: \texttt{false}\\
3986 3987 3988 3989 3990 3991 3992
  \textbf{Description}: Run the entry in text mode instead of graphics mode.

  This setting may be benefitial to some older tools that require text output.
  By default all the tools are launched in graphics mode. Read more about text
  modes in \hyperref[uefioutputprops]{Output Properties} section below.

\end{enumerate}
3993

V
vit9696 已提交
3994 3995 3996 3997 3998 3999 4000 4001 4002 4003 4004 4005 4006 4007 4008 4009 4010 4011 4012 4013 4014 4015 4016 4017 4018 4019 4020
\section{NVRAM}\label{nvram}

\subsection{Introduction}\label{nvramintro}

Has \texttt{plist\ dict} type and allows to set volatile UEFI variables
commonly referred as NVRAM variables. Refer to \texttt{man\ nvram} for
more details. macOS extensively uses NVRAM variables for OS --- Bootloader
--- Firmware intercommunication, and thus supplying several NVRAM is
required for proper macOS functioning.

Each NVRAM variable consists of its name, value, attributes (refer to
UEFI specification), and its
\href{https://en.wikipedia.org/wiki/Universally_unique_identifier}{GUID},
representing which `section' NVRAM variable belongs to. macOS uses
several GUIDs, including but not limited to:

\begin{itemize}
\tightlist
\item
  \texttt{4D1EDE05-38C7-4A6A-9CC6-4BCCA8B38C14}
  (\texttt{APPLE\_VENDOR\_VARIABLE\_GUID})
\item
  \texttt{7C436110-AB2A-4BBB-A880-FE41995C9F82}
  (\texttt{APPLE\_BOOT\_VARIABLE\_GUID})
\item
  \texttt{8BE4DF61-93CA-11D2-AA0D-00E098032B8C}
  (\texttt{EFI\_GLOBAL\_VARIABLE\_GUID})
4021 4022 4023
\item
  \texttt{4D1FDA02-38C7-4A6A-9CC6-4BCCA8B30102}
  (\texttt{OC\_VENDOR\_VARIABLE\_GUID})
V
vit9696 已提交
4024 4025
\end{itemize}

V
vit9696 已提交
4026 4027 4028 4029 4030 4031 4032
\emph{Note}: Some of the variables may be added by
\hyperref[platforminfonvram]{PlatformNVRAM} or
\hyperref[platforminfogeneric]{Generic} subsections of
\hyperref[platforminfo]{PlatformInfo} section.
Please ensure that variables of this section never collide with them,
as behaviour is undefined otherwise.

4033
For proper macOS functioning it is often required to use \texttt{OC\_FIRMWARE\_RUNTIME}
V
vit9696 已提交
4034
protocol implementation currently offered as a part of \texttt{OpenRuntime} driver.
4035 4036 4037 4038 4039 4040 4041 4042 4043 4044
While it brings any benefits, there are certain limitations which arise depending on the
use.

\begin{enumerate}
\item Not all tools may be aware of protected namespaces.\\
  When \texttt{RequestBootVarRouting} is used \texttt{Boot}-prefixed variable access
  is restricted and protected in a separate namespace. To access the original variables
  tools have to be aware of \texttt{OC\_FIRMWARE\_RUNTIME} logic.
\end{enumerate}

V
vit9696 已提交
4045 4046 4047 4048 4049 4050 4051 4052 4053 4054 4055 4056 4057
\subsection{Properties}\label{nvramprops}

\begin{enumerate}
\item
  \texttt{Add}\\
  \textbf{Type}: \texttt{plist\ dict}\\
  \textbf{Description}: Sets NVRAM variables from a map (\texttt{plist\ dict})
  of GUIDs to a map (\texttt{plist\ dict}) of variable names and their values
  in \texttt{plist\ metadata} format. GUIDs must be provided in canonic string
  format in upper or lower case (e.g. \texttt{8BE4DF61-93CA-11D2-AA0D-00E098032B8C}).

  Created variables get \texttt{EFI\_VARIABLE\_BOOTSERVICE\_ACCESS} and
  \texttt{EFI\_VARIABLE\_RUNTIME\_ACCESS} attributes set.
4058 4059
  Variables will only be set if not present or deleted. I.e. to overwrite
  an existing variable value add the variable name to the \texttt{Delete} section.
4060 4061
  This approach enables to provide default values till the operating system
  takes the lead.
V
vit9696 已提交
4062 4063 4064 4065 4066

  \emph{Note}: If \texttt{plist\ key} does not conform to GUID format,
  behaviour is undefined.

\item
4067
  \texttt{Delete}\\
V
vit9696 已提交
4068 4069 4070 4071 4072
  \textbf{Type}: \texttt{plist\ dict}\\
  \textbf{Description}: Removes NVRAM variables from a map (\texttt{plist\ dict})
  of GUIDs to an array (\texttt{plist\ array}) of variable names in
  \texttt{plist\ string} format.

4073 4074 4075
\item
  \texttt{LegacyEnable}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
4076
  \textbf{Failsafe}: \texttt{false}\\
4077 4078 4079 4080 4081 4082 4083 4084 4085 4086 4087
  \textbf{Description}: Enables loading of NVRAM variable file named \texttt{nvram.plist}
  from EFI volume root.

  This file must have root \texttt{plist\ dictionary} type and contain two fields:
  \begin{itemize}
  \tightlist
  \item \texttt{Version} --- \texttt{plist\ integer}, file version, must be set to 1.
  \item \texttt{Add} --- \texttt{plist\ dictionary}, equivalent to \texttt{Add} from
  \texttt{config.plist}.
  \end{itemize}

4088
  Variable loading happens prior to \texttt{Delete} (and \texttt{Add}) phases. Unless
4089 4090 4091
  \texttt{LegacyOverwrite} is enabled, it will not overwrite any existing variable.
  Variables allowed to be set must be specified in \texttt{LegacySchema}.
  Third-party scripts may be used to create \texttt{nvram.plist}
V
vit9696 已提交
4092 4093 4094
  file. An example of such script can be found in \texttt{Utilities}. The use of third-party
  scripts may require \texttt{ExposeSensitiveData} set to \texttt{0x3} to provide
  \texttt{boot-path} variable with OpenCore EFI partition UUID.
4095

4096
  \textbf{Warning}: This feature is very dangerous as it passes unprotected data to
4097 4098
  firmware variable services. Use it only when no hardware NVRAM implementation is provided
  by the firmware or it is incompatible.
4099

4100 4101 4102 4103 4104 4105 4106 4107
\item
  \texttt{LegacyOverwrite}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Permits overwriting firmware variables from \texttt{nvram.plist}.

  \emph{Note}: Only variables accessible from the operating system will be overwritten.

4108 4109 4110 4111 4112 4113 4114
\item
  \texttt{LegacySchema}\\
  \textbf{Type}: \texttt{plist\ dict}\\
  \textbf{Description}: Allows setting select NVRAM variables from a map
  (\texttt{plist\ dict}) of GUIDs to an array (\texttt{plist\ array}) of
  variable names in \texttt{plist\ string} format.

4115
  \texttt{*} value can be used to accept all variables for select GUID.
4116 4117 4118

  \textbf{WARNING}: Choose variables very carefully, as nvram.plist is not vaulted.
  For instance, do not put \texttt{boot-args} or \texttt{csr-active-config}, as
4119
  this can bypass SIP.
4120

4121 4122 4123 4124 4125
\item
  \texttt{WriteFlash}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Enables writing to flash memory for all added variables.
4126

D
dakanji 已提交
4127 4128 4129
  \emph{Note}: It is recommended to have this value enabled on most types of firmware but it is
  left configurable for firmware that may have issues with NVRAM variable storage
  garbage collection or similar.
4130

V
vit9696 已提交
4131 4132
\end{enumerate}

4133 4134
To read NVRAM variable value from macOS, \texttt{nvram} could be used
by concatenating GUID and name variables separated by a \texttt{:} symbol.
V
vit9696 已提交
4135 4136 4137 4138 4139 4140 4141
For example, \texttt{nvram 7C436110-AB2A-4BBB-A880-FE41995C9F82:boot-args}.

A continuously updated variable list can be found in a corresponding document:
\href{https://docs.google.com/spreadsheets/d/1HTCBwfOBkXsHiK7os3b2CUc6k68axdJYdGl-TyXqLu0}{NVRAM Variables}.

\subsection{Mandatory Variables}\label{nvramvars}

V
vit9696 已提交
4142
\textbf{Warning}: These variables may be added by
4143 4144 4145
\hyperref[platforminfonvram]{PlatformNVRAM} or
\hyperref[platforminfogeneric]{Generic} subsections of
\hyperref[platforminfo]{PlatformInfo} section.
P
PMheart 已提交
4146
Using \texttt{PlatformInfo} is the recommended way of setting these variables.
4147

V
vit9696 已提交
4148 4149 4150 4151 4152 4153 4154
The following variables are mandatory for macOS functioning:

\begin{itemize}
\tightlist
\item
  \texttt{4D1EDE05-38C7-4A6A-9CC6-4BCCA8B38C14:FirmwareFeatures}
  \break
P
PMheart 已提交
4155
  32-bit \texttt{FirmwareFeatures}. Present on all Macs to avoid extra parsing of SMBIOS tables.
V
vit9696 已提交
4156 4157 4158 4159 4160 4161 4162 4163 4164
\item
  \texttt{4D1EDE05-38C7-4A6A-9CC6-4BCCA8B38C14:FirmwareFeaturesMask}
  \break
  32-bit \texttt{FirmwareFeaturesMask}. Present on all Macs to avoid extra parsing
  of SMBIOS tables.
\item
  \texttt{4D1EDE05-38C7-4A6A-9CC6-4BCCA8B38C14:MLB}
  \break
  \texttt{BoardSerialNumber}. Present on newer Macs (2013+ at least) to avoid extra parsing
4165
  of SMBIOS tables, especially in \texttt{boot.efi}.
V
vit9696 已提交
4166 4167 4168 4169
\item
  \texttt{4D1EDE05-38C7-4A6A-9CC6-4BCCA8B38C14:ROM}
  \break
  Primary network adapter MAC address or replacement value. Present on newer Macs
4170
  (2013+ at least) to avoid accessing special memory region, especially in \texttt{boot.efi}.
V
vit9696 已提交
4171 4172 4173 4174 4175 4176 4177 4178 4179 4180 4181 4182 4183 4184 4185 4186 4187 4188
\end{itemize}

\subsection{Recommended Variables}\label{nvramvarsrec}

The following variables are recommended for faster startup or other
improvements:

\begin{itemize}
\tightlist
\item
  \texttt{7C436110-AB2A-4BBB-A880-FE41995C9F82:csr-active-config}
  \break
  32-bit System Integrity Protection bitmask. Declared in XNU source code in
  \href{https://opensource.apple.com/source/xnu/xnu-4570.71.2/bsd/sys/csr.h.auto.html}{csr.h}.
\item
  \texttt{4D1EDE05-38C7-4A6A-9CC6-4BCCA8B38C14:ExtendedFirmwareFeatures}
  \break
  Combined \texttt{FirmwareFeatures} and \texttt{ExtendedFirmwareFeatures}. Present on
P
PMheart 已提交
4189
  newer Macs to avoid extra parsing of SMBIOS tables.
V
vit9696 已提交
4190 4191 4192 4193 4194 4195 4196 4197 4198
\item
  \texttt{4D1EDE05-38C7-4A6A-9CC6-4BCCA8B38C14:ExtendedFirmwareFeaturesMask}
  \break
  Combined \texttt{FirmwareFeaturesMask} and \texttt{ExtendedFirmwareFeaturesMask}.
  Present on newer Macs to avoid extra parsing of SMBIOS tables.
\item
  \texttt{4D1EDE05-38C7-4A6A-9CC6-4BCCA8B38C14:HW\_BID}
  \break
  Hardware \texttt{BoardProduct} (e.g. \texttt{Mac-35C1E88140C3E6CF}). Not present on
4199
  real Macs, but used to avoid extra parsing of SMBIOS tables, especially in \texttt{boot.efi}.
V
vit9696 已提交
4200 4201 4202 4203 4204 4205 4206 4207 4208 4209 4210 4211
\item
  \texttt{4D1EDE05-38C7-4A6A-9CC6-4BCCA8B38C14:HW\_MLB}
  \break
  Hardware \texttt{BoardSerialNumber}. Override for MLB. Present on newer Macs (2013+ at least).
\item
  \texttt{4D1EDE05-38C7-4A6A-9CC6-4BCCA8B38C14:HW\_ROM}
  \break
  Hardware ROM. Override for ROM. Present on newer Macs (2013+ at least).
\item
  \texttt{7C436110-AB2A-4BBB-A880-FE41995C9F82:prev-lang:kbd}
  \break
  ASCII string defining default keyboard layout. Format is \texttt{lang-COUNTRY:keyboard},
V
vit9696 已提交
4212 4213
  e.g. \texttt{ru-RU:252} for Russian locale and ABC keyboard. Also accepts short forms:
  \texttt{ru:252} or \texttt{ru:0} (U.S. keyboard, compatible with 10.9). Full decoded
4214
  keyboard list from \texttt{AppleKeyboardLayouts-L.dat} can be found
4215
  \href{https://github.com/acidanthera/OpenCorePkg/tree/master/Utilities/AppleKeyboardLayouts}{here}. Using non-latin keyboard on 10.14
4216
  will not enable ABC keyboard, unlike previous and subsequent macOS versions, and is thus not recommended in case 10.14 is needed.
V
vit9696 已提交
4217 4218 4219 4220 4221 4222 4223 4224 4225 4226 4227 4228
\item
  \texttt{7C436110-AB2A-4BBB-A880-FE41995C9F82:security-mode}
  \break
  ASCII string defining FireWire security mode. Legacy, can be found in IOFireWireFamily
  source code in
  \href{https://opensource.apple.com/source/IOFireWireFamily/IOFireWireFamily-473/IOFireWireFamily.kmodproj/IOFireWireController.cpp.auto.html}{IOFireWireController.cpp}.
  It is recommended not to set this variable, which may speedup system startup. Setting to
  \texttt{full} is equivalent to not setting the variable and \texttt{none} disables
  FireWire security.
 \item
  \texttt{4D1EDE05-38C7-4A6A-9CC6-4BCCA8B38C14:UIScale}
  \break
4229
  One-byte data defining \texttt{boot.efi} user interface scaling. Should be \textbf{01} for normal
4230
  screens and \textbf{02} for HiDPI screens.
4231 4232 4233
 \item
  \texttt{4D1EDE05-38C7-4A6A-9CC6-4BCCA8B38C14:DefaultBackgroundColor}
  \break
A
Andrey1970AppleLife 已提交
4234
  Four-byte \texttt{BGRA} data defining \texttt{boot.efi} user interface background colour.
4235 4236
  Standard colours include \textbf{BF BF BF 00} (Light Gray) and \textbf{00 00 00 00}
  (Syrah Black). Other colours may be set at user's preference.
V
vit9696 已提交
4237 4238 4239 4240 4241 4242 4243 4244 4245 4246 4247 4248 4249 4250 4251
\end{itemize}

\subsection{Other Variables}\label{nvramvarsother}

The following variables may be useful for certain configurations or
troubleshooting:

\begin{itemize}
\tightlist
\item
  \texttt{7C436110-AB2A-4BBB-A880-FE41995C9F82:boot-args}
  \break
  Kernel arguments, used to pass configuration to Apple kernel and drivers.
  There are many arguments, which may be found by looking for the use of
  \texttt{PE\_parse\_boot\_argn} function in the kernel or driver code.
4252
  Some of the known boot arguments include:
V
vit9696 已提交
4253 4254

  \begin{itemize}
4255 4256 4257 4258
  \item \texttt{acpi\_layer=0xFFFFFFFF}
  \item \texttt{acpi\_level=0xFFFF5F} (implies
    \href{https://github.com/acpica/acpica/blob/master/source/include/acoutput.h}
    {\texttt{ACPI\_ALL\_COMPONENTS}})
4259
  \item \texttt{arch=i386} (force kernel architecture to \texttt{i386}, see \texttt{KernelArch})
4260 4261 4262 4263 4264
  \item \texttt{batman=VALUE} (\texttt{AppleSmartBatteryManager} debug mask)
  \item \texttt{batman-nosmc=1} (disable \texttt{AppleSmartBatteryManager} SMC interface)
  \item \texttt{cpus=VALUE} (maximum number of CPUs used)
  \item \texttt{debug=VALUE} (debug mask)
  \item \texttt{io=VALUE} (\texttt{IOKit} debug mask)
V
vit9696 已提交
4265
  \item \texttt{ioaccel\_debug=VALUE} (\texttt{IOAccelerator} debug mask)
4266 4267
  \item \texttt{keepsyms=1} (show panic log debug symbols)
  \item \texttt{kextlog=VALUE} (kernel extension loading debug mask)
M
Mykola Grymalyuk 已提交
4268
  \item \texttt{nvram-log=1} (enables AppleEFINVRAM logs)
4269 4270 4271
  \item \texttt{nv\_disable=1} (disables NVIDIA GPU acceleration)
  \item \texttt{nvda\_drv=1} (legacy way to enable NVIDIA web driver, removed in 10.12)
  \item \texttt{npci=0x2000} (\href{https://www.insanelymac.com/forum/topic/260539-1068-officially-released/?do=findComment&comment=1707972}{legacy}, disables \texttt{kIOPCIConfiguratorPFM64})
V
vit9696 已提交
4272 4273 4274
  \item \texttt{lapic\_dont\_panic=1} (disable lapic spurious interrupt panic on AP cores)
  \item \texttt{panic\_on\_display\_hang=1} (trigger panic on display hang)
  \item \texttt{panic\_on\_gpu\_hang=1} (trigger panic on GPU hang)
4275 4276
  \item \texttt{slide=VALUE} (manually set KASLR slide)
  \item \texttt{smcdebug=VALUE} (\texttt{AppleSMC} debug mask)
V
vit9696 已提交
4277
  \item \texttt{spin\_wait\_for\_gpu=1} (reduces GPU timeout on high load)
4278
  \item \texttt{-amd\_no\_dgpu\_accel} (alternative to \href{https://github.com/acidanthera/WhateverGreen}{WhateverGreen}'s \texttt{-radvesa} for new GPUs)
4279
  \item \texttt{-nehalem\_error\_disable}
4280
  \item \texttt{-no\_compat\_check} (disable model checking on 10.7+)
4281 4282 4283
  \item \texttt{-s} (single mode)
  \item \texttt{-v} (verbose mode)
  \item \texttt{-x} (safe mode)
V
vit9696 已提交
4284 4285
  \end{itemize}

4286 4287 4288 4289
  There are multiple external places summarising macOS argument lists:
  \href{https://osxeon.wordpress.com/2015/08/10/boot-argument-options-in-os-x}{example 1},
  \href{https://superuser.com/questions/255176/is-there-a-list-of-available-boot-args-for-darwin-os-x}{example 2}.

V
vit9696 已提交
4290 4291 4292
\item
  \texttt{7C436110-AB2A-4BBB-A880-FE41995C9F82:bootercfg}
  \break
4293
  Booter arguments, similar to \texttt{boot-args} but for \texttt{boot.efi}. Accepts a set of
V
vit9696 已提交
4294
  arguments, which are hexadecimal 64-bit values with or without \texttt{0x}.
4295
  At different stages \texttt{boot.efi} will request different debugging (logging)
V
vit9696 已提交
4296 4297 4298 4299 4300 4301 4302 4303 4304 4305 4306 4307 4308 4309 4310 4311 4312 4313 4314 4315
  modes (e.g. after \texttt{ExitBootServices} it will only print to serial).
  Several booter arguments control whether these requests will succeed. The
  list of known requests is covered below:

  \begin{itemize}
  \tightlist
  \item \texttt{0x00} -- \texttt{INIT}.
  \item \texttt{0x01} -- \texttt{VERBOSE} (e.g. \texttt{-v}, force console logging).
  \item \texttt{0x02} -- \texttt{EXIT}.
  \item \texttt{0x03} -- \texttt{RESET:OK}.
  \item \texttt{0x04} -- \texttt{RESET:FAIL} (e.g. unknown \texttt{board-id}, hibernate mismatch, panic loop, etc.).
  \item \texttt{0x05} -- \texttt{RESET:RECOVERY}.
  \item \texttt{0x06} -- \texttt{RECOVERY}.
  \item \texttt{0x07} -- \texttt{REAN:START}.
  \item \texttt{0x08} -- \texttt{REAN:END}.
  \item \texttt{0x09} -- \texttt{DT} (can no longer log to DeviceTree).
  \item \texttt{0x0A} -- \texttt{EXITBS:START} (forced serial only).
  \item \texttt{0x0B} -- \texttt{EXITBS:END} (forced serial only).
  \item \texttt{0x0C} -- \texttt{UNKNOWN}.
  \end{itemize}
V
vit9696 已提交
4316

V
vit9696 已提交
4317 4318
  In 10.15 debugging support was mostly broken before 10.15.4 due to some
  kind of refactoring and introduction of a
V
vit9696 已提交
4319
  \href{https://github.com/acidanthera/OpenCorePkg/blob/master/Include/Apple/Protocol/AppleDebugLog.h}{new debug protocol}.
V
vit9696 已提交
4320 4321 4322
  Some of the arguments and their values below may not be valid for versions prior
  to 10.15.4. The list of known arguments is covered below:

V
vit9696 已提交
4323
  \begin{itemize}
V
vit9696 已提交
4324 4325 4326 4327 4328 4329 4330 4331 4332 4333 4334 4335 4336 4337 4338 4339 4340 4341 4342 4343 4344 4345 4346 4347 4348 4349 4350 4351 4352 4353 4354 4355 4356 4357 4358 4359 4360 4361 4362 4363 4364 4365 4366
  \item \texttt{boot-save-log=VALUE} --- debug log save mode for normal boot.
  	\begin{itemize}
    \item \texttt{0}
    \item \texttt{1}
    \item \texttt{2} --- (default).
    \item \texttt{3}
    \item \texttt{4} --- (save to file).
    \end{itemize}
  \item \texttt{wake-save-log=VALUE} --- debug log save mode for hibernation wake.
  	\begin{itemize}
    \item \texttt{0} --- disabled.
    \item \texttt{1}
    \item \texttt{2} --- (default).
    \item \texttt{3} --- (unavailable).
    \item \texttt{4} --- (save to file, unavailable).
    \end{itemize}
  \item \texttt{breakpoint=VALUE} --- enables debug breaks (missing in production \texttt{boot.efi}).
    \begin{itemize}
    \item \texttt{0} --- disables debug breaks on errors (default).
    \item \texttt{1} --- enables debug breaks on errors.
    \end{itemize}
  \item \texttt{console=VALUE} --- enables console logging.
    \begin{itemize}
    \item \texttt{0} --- disables console logging.
    \item \texttt{1} --- enables console logging when debug protocol is missing (default).
    \item \texttt{2} --- enables console logging unconditionally (unavailable).
    \end{itemize}
  \item \texttt{embed-log-dt=VALUE} --- enables DeviceTree logging.
    \begin{itemize}
    \item \texttt{0} --- disables DeviceTree logging (default).
    \item \texttt{1} --- enables DeviceTree logging.
    \end{itemize}
  \item \texttt{kc-read-size=VALUE} --- Chunk size used for buffered I/O from network or
    disk for prelinkedkernel reading and related. Set to 1MB (0x100000) by default, can be
    tuned for faster booting.
  \item \texttt{log-level=VALUE} --- log level bitmask.
    \begin{itemize}
    \item \texttt{0x01} --- enables trace logging (default).
    \end{itemize}
  \item \texttt{serial=VALUE} --- enables serial logging.
    \begin{itemize}
    \item \texttt{0} --- disables serial logging (default).
    \item \texttt{1} --- enables serial logging for \texttt{EXITBS:END} onwards.
V
vit9696 已提交
4367
    \item \texttt{2} --- enables serial logging for \texttt{EXITBS:START} onwards.
V
vit9696 已提交
4368 4369 4370 4371 4372 4373 4374 4375 4376
    \item \texttt{3} --- enables serial logging when debug protocol is missing.
    \item \texttt{4} --- enables serial logging unconditionally.
    \end{itemize}
  \item \texttt{timestamps=VALUE} --- enables timestamp logging.
    \begin{itemize}
    \item \texttt{0} --- disables timestamp logging.
    \item \texttt{1} --- enables timestamp logging (default).
    \end{itemize}
  \item \texttt{log=VALUE} --- deprecated starting from 10.15.
V
vit9696 已提交
4377 4378 4379 4380 4381 4382 4383
    \begin{itemize}
    \item \texttt{1} --- AppleLoggingConOutOrErrSet/AppleLoggingConOutOrErrPrint
    (classical ConOut/StdErr)
    \item \texttt{2} --- AppleLoggingStdErrSet/AppleLoggingStdErrPrint (StdErr or serial?)
    \item \texttt{4} --- AppleLoggingFileSet/AppleLoggingFilePrint (BOOTER.LOG/BOOTER.OLD
    file on EFI partition)
    \end{itemize}
V
vit9696 已提交
4384
  \item \texttt{debug=VALUE} --- deprecated starting from 10.15.
V
vit9696 已提交
4385 4386 4387 4388 4389 4390
  \begin{itemize}
  \item \texttt{1} --- enables print something to BOOTER.LOG (stripped code implies there
  may be a crash)
  \item \texttt{2} --- enables perf logging to /efi/debug-log in the device three
  \item \texttt{4} --- enables timestamp printing for styled printf calls
  \end{itemize}
V
vit9696 已提交
4391 4392 4393
  \item \texttt{level=VALUE}  --- deprecated starting from 10.15. Verbosity level of
  DEBUG output. Everything but \texttt{0x80000000} is stripped from the binary,
  and this is the default value.
4394 4395
  \end{itemize}

4396 4397 4398 4399
  \emph{Note}: To see verbose output from \texttt{boot.efi} on modern macOS versions
  enable \texttt{AppleDebug} option. This will save the log to general OpenCore log.
  For versions before 10.15.4 set \texttt{bootercfg} to \texttt{log=1}. This will
  print verbose output onscreen.
V
vit9696 已提交
4400 4401 4402
\item \texttt{7C436110-AB2A-4BBB-A880-FE41995C9F82:bootercfg-once}
  \break
  Booter arguments override removed after first launch. Otherwise equivalent to \texttt{bootercfg}.
4403 4404 4405 4406 4407 4408
\item
  \texttt{7C436110-AB2A-4BBB-A880-FE41995C9F82:efiboot-perf-record}
  \break
  Enable performance log saving in \texttt{boot.efi}. Performance log is saved to physical
  memory and is pointed by \texttt{efiboot-perf-record-data} and \texttt{efiboot-perf-record-size}
  variables. Starting from 10.15.4 it can also be saved to OpenCore log by \texttt{AppleDebug} option.
V
vit9696 已提交
4409 4410
\item
  \texttt{7C436110-AB2A-4BBB-A880-FE41995C9F82:fmm-computer-name}
4411 4412
  \break
  Current saved host name. ASCII string.
V
vit9696 已提交
4413 4414
\item
  \texttt{7C436110-AB2A-4BBB-A880-FE41995C9F82:nvda\_drv}
4415 4416 4417
  \break
  NVIDIA Web Driver control variable. Takes ASCII digit \texttt{1} or \texttt{0}
  to enable or disable installed driver.
4418 4419 4420 4421 4422 4423
\item
  \texttt{7C436110-AB2A-4BBB-A880-FE41995C9F82:run-efi-updater}
  \break
  Override EFI firmware updating support in macOS (MultiUpdater, ThorUtil, and so on).
  Setting this to \texttt{No} or alternative boolean-castable value will prevent
  any firmware updates in macOS starting with 10.10 at least.
4424 4425 4426 4427 4428
\item
  \texttt{7C436110-AB2A-4BBB-A880-FE41995C9F82:StartupMute}
  \break
  Mute startup chime sound in firmware audio support. 8-bit integer.
  The value of \texttt{0x00} means unmuted. Missing variable or any
A
Andrey1970AppleLife 已提交
4429
  other value means muted.
4430 4431 4432 4433 4434 4435 4436 4437
\item
  \texttt{7C436110-AB2A-4BBB-A880-FE41995C9F82:SystemAudioVolume}
  \break
  System audio volume level for firmware audio support. 8-bit integer.
  The bit of \texttt{0x80} means muted. Lower bits are used to encode
  volume range specific to installed audio codec. The value is capped
  by \texttt{MaximumBootBeepVolume} AppleHDA layout value to avoid
  too loud audio playback in the firmware.
V
vit9696 已提交
4438 4439 4440 4441 4442 4443
\end{itemize}

\section{PlatformInfo}\label{platforminfo}

Platform information is comprised of several identification fields
generated or filled manually to be compatible with macOS services. The
4444
base part of the configuration may be obtained from
V
vit9696 已提交
4445 4446
\href{https://github.com/acidanthera/OpenCorePkg/blob/master/AppleModels}{\texttt{AppleModels}},
which itself generates a set of interfaces based on a database
V
vit9696 已提交
4447 4448 4449 4450 4451 4452 4453 4454
in \href{https://yaml.org/spec/1.2/spec.html}{YAML} format. These fields
are written to three select destinations:

\begin{itemize}
\tightlist
\item
  \href{https://www.dmtf.org/standards/smbios}{SMBIOS}
\item
V
vit9696 已提交
4455
  \href{https://github.com/acidanthera/OpenCorePkg/blob/master/Include/Intel/Protocol/DataHub.h}{Data
V
vit9696 已提交
4456 4457 4458 4459 4460 4461 4462
  Hub}
\item
  NVRAM
\end{itemize}

Most of the fields specify the overrides in SMBIOS, and their field
names conform to EDK2
4463
\href{https://github.com/acidanthera/audk/blob/master/MdePkg/Include/IndustryStandard/SmBios.h}{SmBios.h}
V
vit9696 已提交
4464 4465 4466
header file. However, several important fields reside in Data Hub and
NVRAM. Some of the values can be found in more than one field and/or
destination, so there are two ways to control their update process:
4467
manual, where all the values are specified (the default), and semi-automatic,
V
vit9696 已提交
4468 4469 4470
where (\texttt{Automatic}) only select values are specified, and later used
for system configuration.

V
vit9696 已提交
4471 4472 4473 4474
To inspect SMBIOS contents \href{http://www.nongnu.org/dmidecode}{dmidecode} utility can
be used. Version with macOS specific enhancements can be downloaded from
\href{https://github.com/acidanthera/dmidecode/releases}{Acidanthera/dmidecode}.

V
vit9696 已提交
4475 4476 4477 4478 4479 4480
\subsection{Properties}\label{platforminfoprops}

\begin{enumerate}
\item
  \texttt{Automatic}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
4481
  \textbf{Failsafe}: \texttt{false}\\
V
vit9696 已提交
4482 4483 4484 4485 4486
  \textbf{Description}: Generate PlatformInfo based on \texttt{Generic}
  section instead of using values from \texttt{DataHub}, \texttt{NVRAM},
  and \texttt{SMBIOS} sections.

  Enabling this option is useful when \texttt{Generic} section is flexible
A
Andrey1970AppleLife 已提交
4487 4488 4489 4490
  enough:
  \begin{itemize}
  \tightlist
  \item When enabled \texttt{SMBIOS}, \texttt{DataHub}, and
4491
  \texttt{PlatformNVRAM} data is unused.
A
Andrey1970AppleLife 已提交
4492 4493
  \item When disabled \texttt{Generic} section is unused.
  \end{itemize}
V
vit9696 已提交
4494 4495 4496

  \textbf{Warning}: It is strongly discouraged set this option to \texttt{false}
  when intending to update platform information. The only reason to do that is
D
dakanji 已提交
4497
  when doing minor correction of the SMBIOS present and similar. In all other
V
vit9696 已提交
4498 4499
  cases not using \texttt{Automatic} may lead to hard to debug errors.

J
John Davis 已提交
4500 4501 4502 4503 4504 4505 4506 4507 4508
\item
  \texttt{CustomMemory}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Use custom memory configuration defined in the
  \texttt{Memory} section. This completely replaces any existing memory
  configuration in SMBIOS, and is only active when \texttt{UpdateSMBIOS}
  is set to \texttt{true}.

V
vit9696 已提交
4509 4510 4511
\item
  \texttt{UpdateDataHub}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
4512
  \textbf{Failsafe}: \texttt{false}\\
4513
  \textbf{Description}: Update Data Hub fields. These fields are read
V
vit9696 已提交
4514 4515 4516 4517 4518
  from \texttt{Generic} or \texttt{DataHub} sections depending on
  \texttt{Automatic} value.
\item
  \texttt{UpdateNVRAM}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
4519
  \textbf{Failsafe}: \texttt{false}\\
V
vit9696 已提交
4520 4521 4522 4523 4524 4525 4526 4527 4528 4529 4530 4531 4532
  \textbf{Description}: Update NVRAM fields related to platform information.

  These fields are read from \texttt{Generic} or \texttt{PlatformNVRAM} sections
  depending on \texttt{Automatic} value. All the other fields are
  to be specified with \texttt{NVRAM} section.

  If \texttt{UpdateNVRAM} is set to \texttt{false} the aforementioned
  variables can be updated with \hyperref[nvram]{\texttt{NVRAM}}
  section. If \texttt{UpdateNVRAM} is set to \texttt{true} the behaviour is
  undefined when any of the fields are present in \texttt{NVRAM} section.
\item
  \texttt{UpdateSMBIOS}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
4533
  \textbf{Failsafe}: \texttt{false}\\
V
vit9696 已提交
4534 4535 4536 4537 4538 4539
  \textbf{Description}: Update SMBIOS fields. These fields are read from
  \texttt{Generic} or \texttt{SMBIOS} sections depending on
  \texttt{Automatic} value.
\item
  \texttt{UpdateSMBIOSMode}\\
  \textbf{Type}: \texttt{plist\ string}\\
4540
  \textbf{Failsafe}: \texttt{Create}\\
V
vit9696 已提交
4541 4542 4543 4544 4545
  \textbf{Description}: Update SMBIOS fields approach:

  \begin{itemize}
  \tightlist
  \item
4546
    \texttt{TryOverwrite} --- \texttt{Overwrite} if new size is \textless{}= than
V
vit9696 已提交
4547
    the page-aligned original and there are no issues with legacy region
D
dakanji 已提交
4548
    unlock. \texttt{Create} otherwise. Has issues on some types of firmware.
V
vit9696 已提交
4549 4550 4551 4552 4553 4554 4555 4556
  \item
    \texttt{Create} --- Replace the tables with newly allocated
    EfiReservedMemoryType at AllocateMaxAddress without any fallbacks.
  \item
    \texttt{Overwrite} --- Overwrite existing gEfiSmbiosTableGuid and
    gEfiSmbiosTable3Guid data if it fits new size. Abort with
    unspecified state otherwise.
  \item
4557 4558
    \texttt{Custom} --- Write SMBIOS tables
    (\texttt{gEfiSmbios(3)TableGuid}) to \texttt{gOcCustomSmbios(3)TableGuid}
D
dakanji 已提交
4559
    to workaround firmware overwriting SMBIOS contents at
V
vit9696 已提交
4560 4561
    ExitBootServices. Otherwise equivalent to \texttt{Create}. Requires
    patching AppleSmbios.kext and AppleACPIPlatform.kext to read from
4562 4563
    another GUID: \texttt{"EB9D2D31"} - \texttt{"EB9D2D35"} (in ASCII),
    done automatically by \texttt{CustomSMBIOSGuid} quirk.
V
vit9696 已提交
4564
  \end{itemize}
4565 4566

  \emph{Note}: A side effect of using \texttt{Custom} approach is making
G
Goldfish64 已提交
4567
  SMBIOS updates exclusive to macOS, avoiding a collision with existing
4568 4569
  Windows activation and custom OEM software but potentially breaking
  Apple-specific tools.
V
vit9696 已提交
4570 4571
\item
  \texttt{Generic}\\
G
Goldfish64 已提交
4572
  \textbf{Type}: \texttt{plist\ dictionary}\\
V
vit9696 已提交
4573 4574 4575 4576
  \textbf{Description}: Update all fields. This section is read only
  when \texttt{Automatic} is active.
\item
  \texttt{DataHub}\\
G
Goldfish64 已提交
4577
  \textbf{Type}: \texttt{plist\ dictionary}\\
4578
  \textbf{Optional}: When \texttt{Automatic} is \texttt{true}\\
V
vit9696 已提交
4579 4580
  \textbf{Description}: Update Data Hub fields. This section is read
  only when \texttt{Automatic} is not active.
J
John Davis 已提交
4581 4582 4583 4584 4585
\item
  \texttt{Memory}\\
  \textbf{Type}: \texttt{plist\ dictionary}\\
  \textbf{Optional}: When \texttt{CustomMemory} is \texttt{false}\\
  \textbf{Description}: Define custom memory configuration.
V
vit9696 已提交
4586 4587
\item
  \texttt{PlatformNVRAM}\\
G
Goldfish64 已提交
4588
  \textbf{Type}: \texttt{plist\ dictionary}\\
4589
  \textbf{Optional}: When \texttt{Automatic} is \texttt{true}\\
V
vit9696 已提交
4590 4591 4592 4593
  \textbf{Description}: Update platform NVRAM fields. This section is
  read only when \texttt{Automatic} is not active.
\item
  \texttt{SMBIOS}\\
G
Goldfish64 已提交
4594
  \textbf{Type}: \texttt{plist\ dictionary}\\
4595
  \textbf{Optional}: When \texttt{Automatic} is \texttt{true}\\
V
vit9696 已提交
4596 4597 4598 4599 4600 4601 4602
  \textbf{Description}: Update SMBIOS fields. This section is read only
  when \texttt{Automatic} is not active.
\end{enumerate}

\subsection{Generic Properties}\label{platforminfogeneric}

\begin{enumerate}
4603 4604 4605
\item
  \texttt{SpoofVendor}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
4606
  \textbf{Failsafe}: \texttt{false}\\
4607 4608 4609
  \textbf{Description}: Sets SMBIOS vendor fields to \texttt{Acidanthera}.

  It is dangerous to use Apple in SMBIOS vendor fields for reasons given
D
dakanji 已提交
4610
  in \texttt{SystemManufacturer} description. However, certain firmware
4611
  may not provide valid values otherwise, which could break some software.
V
vit9696 已提交
4612

4613
\item
4614
  \texttt{AdviseWindows}\\
4615 4616
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
4617 4618 4619 4620 4621 4622 4623 4624 4625 4626 4627 4628
  \textbf{Description}: Forces Windows support in \texttt{FirmwareFeatures}.

  Added bits to \texttt{FirmwareFeatures}:

  \begin{itemize}
    \item \texttt{FW\_FEATURE\_SUPPORTS\_CSM\_LEGACY\_MODE} (\texttt{0x1})
    - Without this bit it is not possible to reboot to Windows installed on
      a drive with EFI partition being not the first partition on the disk.
    \item \texttt{FW\_FEATURE\_SUPPORTS\_UEFI\_WINDOWS\_BOOT} (\texttt{0x20000000})
    - Without this bit it is not possible to reboot to Windows installed on
      a drive with EFI partition being the first partition on the disk.
  \end{itemize}
4629

4630 4631 4632 4633
\item
  \texttt{MaxBIOSVersion}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
K
khronokernel 已提交
4634 4635 4636
  \textbf{Description}: Sets \texttt{BIOSVersion} to \texttt{9999.999.999.999.999}, recommended for legacy 
  Macs when using \texttt{Automatic} PlatformInfo to avoid BIOS updates in unofficially supported macOS 
  versions.
4637

4638 4639 4640 4641 4642 4643 4644 4645 4646 4647 4648 4649 4650 4651 4652 4653 4654 4655 4656 4657 4658 4659
\item
  \texttt{SystemMemoryStatus}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: \texttt{Auto}\\
  \textbf{Description}: Indicates whether system memory is upgradable in \texttt{PlatformFeature}.
  This controls the visibility of the Memory tab in About This Mac.

  Valid values:

  \begin{itemize}
    \tightlist
    \item \texttt{Auto} --- use the original \texttt{PlatformFeature} value.
    \item \texttt{Upgradable} --- explicitly unset \texttt{PT\_FEATURE\_HAS\_SOLDERED\_SYSTEM\_MEMORY}
    (\texttt{0x2}) in \texttt{PlatformFeature}.
    \item \texttt{Soldered} --- explicitly set \texttt{PT\_FEATURE\_HAS\_SOLDERED\_SYSTEM\_MEMORY}
    (\texttt{0x2}) in \texttt{PlatformFeature}.
  \end{itemize}

  \emph{Note}: On certain Mac models (namely \texttt{MacBookPro10,x} and any \texttt{MacBookAir}),
  SPMemoryReporter.spreporter will ignore \texttt{PT\_FEATURE\_HAS\_SOLDERED\_SYSTEM\_MEMORY}
  and assume that system memory is non-upgradable.

4660
\item
4661
  \texttt{ProcessorType}\\
4662
  \textbf{Type}: \texttt{plist\ integer}\\
4663
  \textbf{Failsafe}: \texttt{0} (Automatic)\\
4664
  \textbf{Description}: Refer to SMBIOS \texttt{ProcessorType}.
V
vit9696 已提交
4665 4666 4667
\item
  \texttt{SystemProductName}\\
  \textbf{Type}: \texttt{plist\ string}\\
4668
  \textbf{Failsafe}: \texttt{MacPro6,1}\\
V
vit9696 已提交
4669 4670 4671 4672
  \textbf{Description}: Refer to SMBIOS \texttt{SystemProductName}.
\item
  \texttt{SystemSerialNumber}\\
  \textbf{Type}: \texttt{plist\ string}\\
4673
  \textbf{Failsafe}: \texttt{OPENCORE\_SN1}\\
V
vit9696 已提交
4674 4675 4676 4677
  \textbf{Description}: Refer to SMBIOS \texttt{SystemSerialNumber}.
\item
  \texttt{SystemUUID}\\
  \textbf{Type}: \texttt{plist\ string}, GUID\\
4678
  \textbf{Failsafe}: OEM specified\\
V
vit9696 已提交
4679 4680 4681 4682
  \textbf{Description}: Refer to SMBIOS \texttt{SystemUUID}.
\item
  \texttt{MLB}\\
  \textbf{Type}: \texttt{plist\ string}\\
4683
  \textbf{Failsafe}: \texttt{OPENCORE\_MLB\_SN11}\\
V
vit9696 已提交
4684 4685 4686 4687
  \textbf{Description}: Refer to SMBIOS \texttt{BoardSerialNumber}.
\item
  \texttt{ROM}\\
  \textbf{Type}: \texttt{plist\ data}, 6 bytes\\
4688
  \textbf{Failsafe}: all zero\\
V
vit9696 已提交
4689 4690
  \textbf{Description}: Refer to
  \texttt{4D1EDE05-38C7-4A6A-9CC6-4BCCA8B38C14:ROM}.
4691

V
vit9696 已提交
4692 4693 4694 4695 4696 4697 4698 4699
\end{enumerate}

\subsection{DataHub Properties}\label{platforminfodatahub}

\begin{enumerate}
\item
  \texttt{PlatformName}\\
  \textbf{Type}: \texttt{plist\ string}\\
4700
  \textbf{Failsafe}: Not installed\\
V
vit9696 已提交
4701 4702 4703 4704 4705 4706
  \textbf{Description}: Sets \texttt{name} in
  \texttt{gEfiMiscSubClassGuid}. Value found on Macs is
  \texttt{platform} in ASCII.
\item
  \texttt{SystemProductName}\\
  \textbf{Type}: \texttt{plist\ string}\\
4707
  \textbf{Failsafe}: Not installed\\
V
vit9696 已提交
4708 4709 4710 4711 4712 4713
  \textbf{Description}: Sets \texttt{Model} in
  \texttt{gEfiMiscSubClassGuid}. Value found on Macs is equal to SMBIOS
  \texttt{SystemProductName} in Unicode.
\item
  \texttt{SystemSerialNumber}\\
  \textbf{Type}: \texttt{plist\ string}\\
4714
  \textbf{Failsafe}: Not installed\\
V
vit9696 已提交
4715 4716 4717 4718 4719 4720
  \textbf{Description}: Sets \texttt{SystemSerialNumber} in
  \texttt{gEfiMiscSubClassGuid}. Value found on Macs is equal to SMBIOS
  \texttt{SystemSerialNumber} in Unicode.
\item
  \texttt{SystemUUID}\\
  \textbf{Type}: \texttt{plist\ string}, GUID\\
4721
  \textbf{Failsafe}: Not installed\\
V
vit9696 已提交
4722 4723
  \textbf{Description}: Sets \texttt{system-id} in
  \texttt{gEfiMiscSubClassGuid}. Value found on Macs is equal to SMBIOS
4724
  \texttt{SystemUUID} (with swapped byte order).
V
vit9696 已提交
4725 4726 4727
\item
  \texttt{BoardProduct}\\
  \textbf{Type}: \texttt{plist\ string}\\
4728
  \textbf{Failsafe}: Not installed\\
V
vit9696 已提交
4729 4730 4731 4732 4733 4734
  \textbf{Description}: Sets \texttt{board-id} in
  \texttt{gEfiMiscSubClassGuid}. Value found on Macs is equal to SMBIOS
  \texttt{BoardProduct} in ASCII.
\item
  \texttt{BoardRevision}\\
  \textbf{Type}: \texttt{plist\ data}, 1 byte\\
4735
  \textbf{Failsafe}: \texttt{0}\\
V
vit9696 已提交
4736 4737 4738 4739 4740 4741
  \textbf{Description}: Sets \texttt{board-rev} in
  \texttt{gEfiMiscSubClassGuid}. Value found on Macs seems to correspond
  to internal board revision (e.g. \texttt{01}).
\item
  \texttt{StartupPowerEvents}\\
  \textbf{Type}: \texttt{plist\ integer}, 64-bit\\
4742
  \textbf{Failsafe}: \texttt{0}\\
V
vit9696 已提交
4743 4744 4745 4746 4747 4748 4749 4750 4751 4752 4753 4754 4755 4756 4757 4758 4759 4760 4761 4762 4763 4764 4765 4766 4767 4768 4769 4770 4771 4772 4773 4774 4775 4776 4777 4778 4779 4780 4781 4782 4783 4784 4785 4786
  \textbf{Description}: Sets \texttt{StartupPowerEvents} in
  \texttt{gEfiMiscSubClassGuid}. Value found on Macs is power management
  state bitmask, normally 0. Known bits read by
  \texttt{X86PlatformPlugin.kext}:

  \begin{itemize}
  \tightlist
  \item
    \texttt{0x00000001} --- Shutdown cause was a \texttt{PWROK} event
    (Same as \texttt{GEN\_PMCON\_2} bit 0)
  \item
    \texttt{0x00000002} --- Shutdown cause was a \texttt{SYS\_PWROK}
    event (Same as \texttt{GEN\_PMCON\_2} bit 1)
  \item
    \texttt{0x00000004} --- Shutdown cause was a \texttt{THRMTRIP\#}
    event (Same as \texttt{GEN\_PMCON\_2} bit 3)
  \item
    \texttt{0x00000008} --- Rebooted due to a SYS\_RESET\# event (Same
    as \texttt{GEN\_PMCON\_2} bit 4)
  \item
    \texttt{0x00000010} --- Power Failure (Same as
    \texttt{GEN\_PMCON\_3} bit 1 \texttt{PWR\_FLR})
  \item
    \texttt{0x00000020} --- Loss of RTC Well Power (Same as
    \texttt{GEN\_PMCON\_3} bit 2 \texttt{RTC\_PWR\_STS})
  \item
    \texttt{0x00000040} --- General Reset Status (Same as
    \texttt{GEN\_PMCON\_3} bit 9 \texttt{GEN\_RST\_STS})
  \item
    \texttt{0xffffff80} --- SUS Well Power Loss (Same as
    \texttt{GEN\_PMCON\_3} bit 14)
  \item
    \texttt{0x00010000} --- Wake cause was a ME Wake event (Same as
    PRSTS bit 0, \texttt{ME\_WAKE\_STS})
  \item
    \texttt{0x00020000} --- Cold Reboot was ME Induced event (Same as
    \texttt{PRSTS} bit 1 \texttt{ME\_HRST\_COLD\_STS})
  \item
    \texttt{0x00040000} --- Warm Reboot was ME Induced event (Same as
    \texttt{PRSTS} bit 2 \texttt{ME\_HRST\_WARM\_STS})
  \item
    \texttt{0x00080000} --- Shutdown was ME Induced event (Same as
    \texttt{PRSTS} bit 3 \texttt{ME\_HOST\_PWRDN})
  \item
G
Goldfish64 已提交
4787
    \texttt{0x00100000} --- Global reset ME Watchdog Timer event (Same as
V
vit9696 已提交
4788 4789
    \texttt{PRSTS} bit 6)
  \item
G
Goldfish64 已提交
4790
    \texttt{0x00200000} --- Global reset PowerManagement Watchdog Timer
V
vit9696 已提交
4791 4792 4793 4794 4795
    event (Same as \texttt{PRSTS} bit 15)
  \end{itemize}
\item
  \texttt{InitialTSC}\\
  \textbf{Type}: \texttt{plist\ integer}, 64-bit\\
4796
  \textbf{Failsafe}: \texttt{0}\\
V
vit9696 已提交
4797 4798 4799 4800 4801 4802
  \textbf{Description}: Sets \texttt{InitialTSC} in
  \texttt{gEfiProcessorSubClassGuid}. Sets initial TSC value, normally
  0.
\item
  \texttt{FSBFrequency}\\
  \textbf{Type}: \texttt{plist\ integer}, 64-bit\\
4803
  \textbf{Failsafe}: \texttt{0} (Automatic)\\
V
vit9696 已提交
4804
  \textbf{Description}: Sets \texttt{FSBFrequency} in
4805 4806 4807 4808 4809 4810
  \texttt{gEfiProcessorSubClassGuid}.

  Sets CPU FSB frequency. This value equals to CPU nominal frequency divided
  by CPU maximum bus ratio and is specified in Hz. Refer to
  \texttt{MSR\_NEHALEM\_PLATFORM\_INFO}~(\texttt{CEh}) MSR value to determine
  maximum bus ratio on modern Intel CPUs.
4811

V
vit9696 已提交
4812 4813
  \emph{Note}: This value is not used on Skylake and newer but is still provided
  to follow suit.
V
vit9696 已提交
4814 4815 4816
\item
  \texttt{ARTFrequency}\\
  \textbf{Type}: \texttt{plist\ integer}, 64-bit\\
4817
  \textbf{Failsafe}: \texttt{0} (Automatic)\\
V
vit9696 已提交
4818
  \textbf{Description}: Sets \texttt{ARTFrequency} in
4819
  \texttt{gEfiProcessorSubClassGuid}.
4820

4821
  This value contains CPU ART frequency, also known as crystal clock frequency.
D
dakanji 已提交
4822
  Its existence is exclusive to the Skylake generation and newer. The value is specified
4823 4824
  in Hz, and is normally 24 MHz for client Intel segment, 25 MHz for server Intel segment,
  and 19.2 MHz for Intel Atom CPUs. macOS till 10.15 inclusive assumes 24 MHz by default.
4825

4826 4827 4828
  \emph{Note}: On Intel Skylake X ART frequency may be a little less (approx. 0.25\%) than
  24 or 25 MHz due to special EMI-reduction circuit as described in
  \href{https://github.com/acidanthera/bugtracker/issues/448#issuecomment-524914166}{Acidanthera Bugtracker}.
V
vit9696 已提交
4829 4830
\item
  \texttt{DevicePathsSupported}\\
4831
  \textbf{Type}: \texttt{plist\ integer}, 32-bit\\
4832
  \textbf{Failsafe}: Not installed\\
V
vit9696 已提交
4833
  \textbf{Description}: Sets \texttt{DevicePathsSupported} in
4834
  \texttt{gEfiMiscSubClassGuid}. Must be set to \texttt{1} for
4835 4836
  AppleACPIPlatform.kext to append SATA device paths to
  \texttt{Boot\#\#\#\#} and \texttt{efi-boot-device-data} variables.
4837
  Set to \texttt{1} on all modern Macs.
V
vit9696 已提交
4838 4839 4840
\item
  \texttt{SmcRevision}\\
  \textbf{Type}: \texttt{plist\ data}, 6 bytes\\
4841
  \textbf{Failsafe}: Not installed\\
V
vit9696 已提交
4842 4843 4844 4845 4846 4847 4848
  \textbf{Description}: Sets \texttt{REV} in
  \texttt{gEfiMiscSubClassGuid}. Custom property read by
  \texttt{VirtualSMC} or \texttt{FakeSMC} to generate SMC \texttt{REV}
  key.
\item
  \texttt{SmcBranch}\\
  \textbf{Type}: \texttt{plist\ data}, 8 bytes\\
4849
  \textbf{Failsafe}: Not installed\\
V
vit9696 已提交
4850 4851 4852 4853 4854 4855 4856
  \textbf{Description}: Sets \texttt{RBr} in
  \texttt{gEfiMiscSubClassGuid}. Custom property read by
  \texttt{VirtualSMC} or \texttt{FakeSMC} to generate SMC \texttt{RBr}
  key.
\item
  \texttt{SmcPlatform}\\
  \textbf{Type}: \texttt{plist\ data}, 8 bytes\\
4857
  \textbf{Failsafe}: Not installed\\
V
vit9696 已提交
4858 4859 4860 4861 4862 4863
  \textbf{Description}: Sets \texttt{RPlt} in
  \texttt{gEfiMiscSubClassGuid}. Custom property read by
  \texttt{VirtualSMC} or \texttt{FakeSMC} to generate SMC \texttt{RPlt}
  key.
\end{enumerate}

J
John Davis 已提交
4864 4865 4866 4867 4868 4869 4870 4871 4872 4873 4874 4875 4876 4877 4878 4879 4880 4881 4882 4883 4884 4885 4886 4887 4888 4889 4890 4891 4892 4893 4894 4895 4896 4897 4898 4899 4900 4901 4902 4903 4904 4905 4906 4907 4908 4909 4910 4911 4912 4913 4914 4915 4916 4917 4918 4919 4920 4921 4922 4923 4924 4925 4926 4927 4928 4929 4930 4931 4932 4933 4934 4935 4936 4937 4938 4939 4940 4941 4942 4943 4944 4945 4946 4947 4948 4949 4950 4951 4952 4953 4954 4955 4956 4957 4958 4959 4960 4961 4962 4963 4964 4965 4966 4967 4968 4969 4970 4971 4972 4973 4974 4975 4976 4977 4978 4979 4980 4981 4982 4983 4984 4985 4986 4987 4988 4989 4990 4991 4992 4993 4994 4995 4996 4997 4998 4999 5000 5001 5002 5003 5004 5005 5006 5007 5008 5009 5010 5011 5012 5013 5014 5015 5016 5017 5018 5019 5020 5021 5022 5023 5024 5025 5026 5027 5028 5029 5030 5031 5032 5033 5034 5035 5036 5037 5038 5039 5040 5041 5042 5043 5044 5045 5046 5047 5048 5049 5050 5051 5052 5053 5054 5055 5056 5057 5058 5059 5060 5061 5062 5063 5064 5065 5066 5067 5068 5069 5070 5071 5072 5073 5074 5075 5076 5077 5078 5079 5080
\subsection{Memory Properties}\label{platforminfomemory}

\begin{enumerate}
\item
  \texttt{DataWidth}\\
  \textbf{Type}: \texttt{plist\ integer}, 16-bit\\
  \textbf{Failsafe}: \texttt{0xFFFF} (unknown)\\
  \textbf{SMBIOS}: Memory Device (Type 17) --- Data Width\\
  \textbf{Description}: Specifies the data width, in bits, of the
  memory. A \texttt{DataWidth} of \texttt{0} and a \texttt{TotalWidth} of \texttt{8}
  indicates that the device is being used solely to provide 8
  error-correction bits.

\item
  \texttt{Devices}\\
  \textbf{Type}: \texttt{plist\ array}\\
  \textbf{Failsafe}: Empty\\
  \textbf{Description}: Specifies the custom memory devices to be added.

  Designed to be filled with \texttt{plist\ dictionary} values, describing each
  memory device. See \hyperref[platforminfomemorydevice]{Memory Devices Properties}
  section below. This should include all memory slots, even if unpopulated.

\item
  \texttt{ErrorCorrection}\\
  \textbf{Type}: \texttt{plist\ integer}, 8-bit\\
  \textbf{Failsafe}: \texttt{0x03}\\
  \textbf{SMBIOS}: Physical Memory Array (Type 16) --- Memory Error Correction\\
  \textbf{Description}: Specifies the primary hardware error correction or
  detection method supported by the memory.

  \begin{itemize}
  \tightlist
  \item
    \texttt{0x01} --- Other
  \item
    \texttt{0x02} --- Unknown
  \item
    \texttt{0x03} --- None
  \item
    \texttt{0x04} --- Parity
  \item
    \texttt{0x05} --- Single-bit ECC
  \item
    \texttt{0x06} --- Multi-bit ECC
  \item
    \texttt{0x07} --- CRC
  \end{itemize}

\item
  \texttt{FormFactor}\\
  \textbf{Type}: \texttt{plist\ integer}, 8-bit\\
  \textbf{Failsafe}: \texttt{0x02}\\
  \textbf{SMBIOS}: Memory Device (Type 17) --- Form Factor\\
  \textbf{Description}: Specifies the form factor of the memory.
  On Macs this should usually be DIMM or SODIMM. Commonly used form
  factors are listed below.

  When \texttt{CustomMemory} is \texttt{false}, this value is automatically set
  based on Mac product name.

  \begin{itemize}
  \tightlist
  \item
    \texttt{0x01} --- Other
  \item
    \texttt{0x02} --- Unknown
  \item
    \texttt{0x09} --- DIMM
  \item
    \texttt{0x0D} --- SODIMM
  \item
    \texttt{0x0F} --- FB-DIMM
  \end{itemize}

\item
  \texttt{MaxCapacity}\\
  \textbf{Type}: \texttt{plist\ integer}, 64-bit\\
  \textbf{Failsafe}: \texttt{0}\\
  \textbf{SMBIOS}: Physical Memory Array (Type 16) --- Maximum Capacity\\
  \textbf{Description}: Specifies the maximum amount of memory, in bytes,
  supported by the system.

\item
  \texttt{TotalWidth}\\
  \textbf{Type}: \texttt{plist\ integer}, 16-bit\\
  \textbf{Failsafe}: \texttt{0xFFFF} (unknown)\\
  \textbf{SMBIOS}: Memory Device (Type 17) --- Total Width\\
  \textbf{Description}: Specifies the total width, in bits, of the
  memory, including any check or error-correction bits. If there are
  no error-correction bits, this value should be equal to \texttt{DataWidth}.

\item
  \texttt{Type}\\
  \textbf{Type}: \texttt{plist\ integer}, 8-bit\\
  \textbf{Failsafe}: \texttt{0x02}\\
  \textbf{SMBIOS}: Memory Device (Type 17) --- Memory Type\\
  \textbf{Description}: Specifies the memory type. Commonly used types are listed below.

  \begin{itemize}
  \tightlist
  \item
    \texttt{0x01} --- Other
  \item
    \texttt{0x02} --- Unknown
  \item
    \texttt{0x0F} --- SDRAM
  \item
    \texttt{0x12} --- DDR
  \item
    \texttt{0x13} --- DDR2
  \item
    \texttt{0x14} --- DDR2 FB-DIMM
  \item
    \texttt{0x18} --- DDR3
  \item
    \texttt{0x1A} --- DDR4
  \item
    \texttt{0x1B} --- LPDDR
  \item
    \texttt{0x1C} --- LPDDR2
  \item
    \texttt{0x1D} --- LPDDR3
  \item
    \texttt{0x1E} --- LPDDR4
  \end{itemize}

\item
  \texttt{TypeDetail}\\
  \textbf{Type}: \texttt{plist\ integer}, 16-bit\\
  \textbf{Failsafe}: \texttt{0x4}\\
  \textbf{SMBIOS}: Memory Device (Type 17) --- Type Detail\\
  \textbf{Description}: Specifies additional memory type information.

  \begin{itemize}
  \tightlist
  \item
    \texttt{Bit 0} --- Reserved, set to 0
  \item
    \texttt{Bit 1} --- Other
  \item
    \texttt{Bit 2} --- Unknown
  \item
    \texttt{Bit 7} --- Synchronous
  \item
    \texttt{Bit 13} --- Registered (buffered)
  \item
    \texttt{Bit 14} --- Unbuffered (unregistered)
  \end{itemize}

\end{enumerate}

\subsubsection{Memory Device Properties}\label{platforminfomemorydevice}

\begin{enumerate}
\item
  \texttt{AssetTag}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: \texttt{Unknown}\\
  \textbf{SMBIOS}: Memory Device (Type 17) --- Asset Tag\\
  \textbf{Description}: Specifies the asset tag of this memory device.

\item
  \texttt{BankLocator}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: \texttt{Unknown}\\
  \textbf{SMBIOS}: Memory Device (Type 17) --- Bank Locator\\
  \textbf{Description}: Specifies the physically labeled bank where the
  memory device is located.

\item
  \texttt{DeviceLocator}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: \texttt{Unknown}\\
  \textbf{SMBIOS}: Memory Device (Type 17) --- Device Locator\\
  \textbf{Description}: Specifies the physically-labeled socket or
  board position where the memory device is located.

\item
  \texttt{Manufacturer}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: \texttt{Unknown}\\
  \textbf{SMBIOS}: Memory Device (Type 17) --- Manufacturer\\
  \textbf{Description}: Specifies the manufacturer of this memory device.

\item
  \texttt{PartNumber}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: \texttt{Unknown}\\
  \textbf{SMBIOS}: Memory Device (Type 17) --- Part Number\\
  \textbf{Description}: Specifies the part number of this memory device.

\item
  \texttt{SerialNumber}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: \texttt{Unknown}\\
  \textbf{SMBIOS}: Memory Device (Type 17) --- Serial Number\\
  \textbf{Description}: Specifies the serial number of this memory device.

\item
  \texttt{Size}\\
  \textbf{Type}: \texttt{plist\ integer}, 32-bit\\
  \textbf{Failsafe}: \texttt{0}\\
  \textbf{SMBIOS}: Memory Device (Type 17) --- Size\\
  \textbf{Description}: Specifies the size of the memory device, in megabytes.
  \texttt{0} indicates this slot is not populated.

\item
  \texttt{Speed}\\
  \textbf{Type}: \texttt{plist\ integer}, 16-bit\\
  \textbf{Failsafe}: \texttt{0}\\
  \textbf{SMBIOS}: Memory Device (Type 17) --- Speed\\
  \textbf{Description}: Specifies the maximum capable speed of the device,
  in megatransfers per second (MT/s). \texttt{0} indicates an unknown speed.

\end{enumerate}

V
vit9696 已提交
5081 5082 5083 5084 5085 5086
\subsection{PlatformNVRAM Properties}\label{platforminfonvram}

\begin{enumerate}
\item
  \texttt{BID}\\
  \textbf{Type}: \texttt{plist\ string}\\
5087
  \textbf{Failsafe}: Not installed\\
V
vit9696 已提交
5088 5089 5090 5091 5092 5093
  \textbf{Description}: Specifies the value of NVRAM variable
  \texttt{4D1EDE05-38C7-4A6A-9CC6-4BCCA8B38C14:HW\_BID}.

\item
  \texttt{ROM}\\
  \textbf{Type}: \texttt{plist\ data}, 6 bytes\\
5094
  \textbf{Failsafe}: Not installed\\
V
vit9696 已提交
5095
  \textbf{Description}: Specifies the values of NVRAM variables
V
vit9696 已提交
5096 5097 5098 5099 5100 5101
  \texttt{4D1EDE05-38C7-4A6A-9CC6-4BCCA8B38C14:HW\_ROM} and
  \texttt{4D1EDE05-38C7-4A6A-9CC6-4BCCA8B38C14:ROM}.

\item
  \texttt{MLB}\\
  \textbf{Type}: \texttt{plist\ string}\\
5102
  \textbf{Failsafe}: Not installed\\
V
vit9696 已提交
5103 5104 5105 5106
  \textbf{Description}: Specifies the values of NVRAM variables
  \texttt{4D1EDE05-38C7-4A6A-9CC6-4BCCA8B38C14:HW\_MLB} and
  \texttt{4D1EDE05-38C7-4A6A-9CC6-4BCCA8B38C14:MLB}.

5107 5108 5109
\item
  \texttt{FirmwareFeatures}\\
  \textbf{Type}: \texttt{plist\ data}, 8 bytes\\
5110
  \textbf{Failsafe}: Not installed\\
5111 5112 5113 5114 5115 5116 5117 5118 5119 5120 5121
  \textbf{Description}: This variable comes in pair with \texttt{FirmwareFeaturesMask}.
  Specifies the values of NVRAM variables:
  \begin{itemize}
  \tightlist
  \item \texttt{4D1EDE05-38C7-4A6A-9CC6-4BCCA8B38C14:FirmwareFeatures}
  \item \texttt{4D1EDE05-38C7-4A6A-9CC6-4BCCA8B38C14:ExtendedFirmwareFeatures}
  \end{itemize}

\item
  \texttt{FirmwareFeaturesMask}\\
  \textbf{Type}: \texttt{plist\ data}, 8 bytes\\
5122
  \textbf{Failsafe}: Not installed\\
5123 5124 5125 5126 5127 5128 5129 5130
  \textbf{Description}: This variable comes in pair with \texttt{FirmwareFeatures}.
  Specifies the values of NVRAM variables:
  \begin{itemize}
  \tightlist
  \item \texttt{4D1EDE05-38C7-4A6A-9CC6-4BCCA8B38C14:FirmwareFeaturesMask}
  \item \texttt{4D1EDE05-38C7-4A6A-9CC6-4BCCA8B38C14:ExtendedFirmwareFeaturesMask}
  \end{itemize}

5131 5132 5133 5134 5135 5136 5137 5138 5139
\item
  \texttt{SystemUUID}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: Not installed\\
  \textbf{Description}: Specifies the value of NVRAM variable
  \texttt{4D1EDE05-38C7-4A6A-9CC6-4BCCA8B38C14:system-id}
  for boot services only. Value found on Macs is equal to SMBIOS
  \texttt{SystemUUID}.

V
vit9696 已提交
5140 5141 5142 5143 5144 5145 5146 5147
\end{enumerate}

\subsection{SMBIOS Properties}\label{platforminfosmbios}

\begin{enumerate}
\item
  \texttt{BIOSVendor}\\
  \textbf{Type}: \texttt{plist\ string}\\
5148
  \textbf{Failsafe}: OEM specified\\
V
vit9696 已提交
5149 5150 5151 5152 5153 5154
  \textbf{SMBIOS}: BIOS Information (Type 0) --- Vendor\\
  \textbf{Description}: BIOS Vendor. All rules of
  \texttt{SystemManufacturer} do apply.
\item
  \texttt{BIOSVersion}\\
  \textbf{Type}: \texttt{plist\ string}\\
5155
  \textbf{Failsafe}: OEM specified\\
V
vit9696 已提交
5156 5157 5158 5159
  \textbf{SMBIOS}: BIOS Information (Type 0) --- BIOS Version\\
  \textbf{Description}: Firmware version. This value gets updated and
  takes part in update delivery configuration and macOS version
  compatibility. This value could look like
D
dakanji 已提交
5160
  \texttt{MM71.88Z.0234.B00.1809171422} in older firmware and is
V
vit9696 已提交
5161
  described in
V
vit9696 已提交
5162
  \href{https://github.com/acidanthera/OpenCorePkg/blob/master/Include/Apple/Guid/BiosId.h}{BiosId.h}.
D
dakanji 已提交
5163
  In newer firmware, it should look like \texttt{236.0.0.0.0} or
V
vit9696 已提交
5164 5165 5166 5167 5168 5169 5170 5171 5172 5173 5174 5175 5176 5177 5178 5179 5180 5181 5182 5183 5184
  \texttt{220.230.16.0.0\ (iBridge:\ 16.16.2542.0.0,0)}. iBridge version
  is read from \texttt{BridgeOSVersion} variable, and is only present on
  macs with T2.

\begin{verbatim}
Apple ROM Version
 BIOS ID:      MBP151.88Z.F000.B00.1811142212
 Model:        MBP151
 EFI Version:  220.230.16.0.0
 Built by:     root@quinoa
 Date:         Wed Nov 14 22:12:53 2018
 Revision:     220.230.16 (B&I)
 ROM Version:  F000_B00
 Build Type:   Official Build, RELEASE
 Compiler:     Apple LLVM version 10.0.0 (clang-1000.2.42)
 UUID:         E5D1475B-29FF-32BA-8552-682622BA42E1
 UUID:         151B0907-10F9-3271-87CD-4BF5DBECACF5
\end{verbatim}
\item
  \texttt{BIOSReleaseDate}\\
  \textbf{Type}: \texttt{plist\ string}\\
5185
  \textbf{Failsafe}: OEM specified\\
V
vit9696 已提交
5186 5187 5188 5189 5190 5191
  \textbf{SMBIOS}: BIOS Information (Type 0) --- BIOS Release Date\\
  \textbf{Description}: Firmware release date. Similar to
  \texttt{BIOSVersion}. May look like \texttt{12/08/2017}.
\item
  \texttt{SystemManufacturer}\\
  \textbf{Type}: \texttt{plist\ string}\\
5192
  \textbf{Failsafe}: OEM specified\\
V
vit9696 已提交
5193 5194 5195 5196 5197 5198
  \textbf{SMBIOS}: System Information (Type 1) --- Manufacturer\\
  \textbf{Description}: OEM manufacturer of the particular board. Shall
  not be specified unless strictly required. Should \emph{not} contain
  \texttt{Apple\ Inc.}, as this confuses numerous services present in
  the operating system, such as firmware updates, eficheck, as well as
  kernel extensions developed in Acidanthera, such as Lilu and its
V
vit9696 已提交
5199
  plugins. In addition it will also make some operating systems
D
dakanji 已提交
5200
  such as Linux unbootable.
V
vit9696 已提交
5201 5202 5203
\item
  \texttt{SystemProductName}\\
  \textbf{Type}: \texttt{plist\ string}\\
5204
  \textbf{Failsafe}: OEM specified\\
V
vit9696 已提交
5205 5206 5207 5208 5209 5210 5211 5212 5213 5214 5215 5216
  \textbf{SMBIOS}: System Information (Type 1), Product Name\\
  \textbf{Description}: Preferred Mac model used to mark the device as
  supported by the operating system. This value must be specified by any
  configuration for later automatic generation of the related values in
  this and other SMBIOS tables and related configuration parameters. If
  \texttt{SystemProductName} is not compatible with the target operating
  system, \texttt{-no\_compat\_check} boot argument may be used as an
  override.

  \emph{Note}: If \texttt{SystemProductName} is unknown, and related
  fields are unspecified, default values should be assumed as being set
  to \texttt{MacPro6,1} data. The list of known products can be found in
V
vit9696 已提交
5217
  \texttt{AppleModels}.
V
vit9696 已提交
5218 5219 5220
\item
  \texttt{SystemVersion}\\
  \textbf{Type}: \texttt{plist\ string}\\
5221
  \textbf{Failsafe}: OEM specified\\
V
vit9696 已提交
5222 5223 5224 5225 5226 5227
  \textbf{SMBIOS}: System Information (Type 1) --- Version\\
  \textbf{Description}: Product iteration version number. May look like
  \texttt{1.1}.
\item
  \texttt{SystemSerialNumber}\\
  \textbf{Type}: \texttt{plist\ string}\\
5228
  \textbf{Failsafe}: OEM specified\\
V
vit9696 已提交
5229 5230 5231
  \textbf{SMBIOS}: System Information (Type 1) --- Serial Number\\
  \textbf{Description}: Product serial number in defined format. Known
  formats are described in
V
vit9696 已提交
5232
  \href{https://github.com/acidanthera/OpenCorePkg/blob/master/Utilities/macserial/FORMAT.md}{macserial}.
V
vit9696 已提交
5233 5234 5235
\item
  \texttt{SystemUUID}\\
  \textbf{Type}: \texttt{plist\ string}, GUID\\
5236
  \textbf{Failsafe}: OEM specified\\
V
vit9696 已提交
5237 5238 5239 5240 5241 5242 5243
  \textbf{SMBIOS}: System Information (Type 1) --- UUID\\
  \textbf{Description}: A UUID is an identifier that is designed to be
  unique across both time and space. It requires no central registration
  process.
\item
  \texttt{SystemSKUNumber}\\
  \textbf{Type}: \texttt{plist\ string}\\
5244
  \textbf{Failsafe}: OEM specified\\
V
vit9696 已提交
5245 5246 5247 5248 5249 5250 5251
  \textbf{SMBIOS}: System Information (Type 1) --- SKU Number\\
  \textbf{Description}: Mac Board ID (\texttt{board-id}). May look like
  \texttt{Mac-7BA5B2D9E42DDD94} or \texttt{Mac-F221BEC8} in older
  models. Sometimes it can be just empty.
\item
  \texttt{SystemFamily}\\
  \textbf{Type}: \texttt{plist\ string}\\
5252
  \textbf{Failsafe}: OEM specified\\
V
vit9696 已提交
5253 5254 5255 5256 5257
  \textbf{SMBIOS}: System Information (Type 1) --- Family\\
  \textbf{Description}: Family name. May look like \texttt{iMac\ Pro}.
\item
  \texttt{BoardManufacturer}\\
  \textbf{Type}: \texttt{plist\ string}\\
5258
  \textbf{Failsafe}: OEM specified\\
V
vit9696 已提交
5259 5260 5261 5262 5263 5264 5265
  \textbf{SMBIOS}: Baseboard (or Module) Information (Type 2) -
  Manufacturer\\
  \textbf{Description}: Board manufacturer. All rules of
  \texttt{SystemManufacturer} do apply.
\item
  \texttt{BoardProduct}\\
  \textbf{Type}: \texttt{plist\ string}\\
5266
  \textbf{Failsafe}: OEM specified\\
V
vit9696 已提交
5267 5268 5269 5270 5271 5272 5273 5274
  \textbf{SMBIOS}: Baseboard (or Module) Information (Type 2) -
  Product\\
  \textbf{Description}: Mac Board ID (\texttt{board-id}). May look like
  \texttt{Mac-7BA5B2D9E42DDD94} or \texttt{Mac-F221BEC8} in older
  models.
\item
  \texttt{BoardVersion}\\
  \textbf{Type}: \texttt{plist\ string}\\
5275
  \textbf{Failsafe}: OEM specified\\
V
vit9696 已提交
5276 5277 5278 5279 5280 5281 5282
  \textbf{SMBIOS}: Baseboard (or Module) Information (Type 2) -
  Version\\
  \textbf{Description}: Board version number. Varies, may match
  \texttt{SystemProductName} or \texttt{SystemProductVersion}.
\item
  \texttt{BoardSerialNumber}\\
  \textbf{Type}: \texttt{plist\ string}\\
5283
  \textbf{Failsafe}: OEM specified\\
V
vit9696 已提交
5284 5285 5286 5287 5288 5289 5290 5291
  \textbf{SMBIOS}: Baseboard (or Module) Information (Type 2) --- Serial
  Number\\
  \textbf{Description}: Board serial number in defined format. Known
  formats are described in
  \href{https://github.com/acidanthera/macserial/blob/master/FORMAT.md}{macserial}.
\item
  \texttt{BoardAssetTag}\\
  \textbf{Type}: \texttt{plist\ string}\\
5292
  \textbf{Failsafe}: OEM specified\\
V
vit9696 已提交
5293 5294 5295 5296 5297 5298 5299
  \textbf{SMBIOS}: Baseboard (or Module) Information (Type 2) --- Asset
  Tag\\
  \textbf{Description}: Asset tag number. Varies, may be empty or
  \texttt{Type2\ -\ Board\ Asset\ Tag}.
\item
  \texttt{BoardType}\\
  \textbf{Type}: \texttt{plist\ integer}\\
5300
  \textbf{Failsafe}: OEM specified\\
V
vit9696 已提交
5301 5302 5303 5304 5305 5306 5307 5308
  \textbf{SMBIOS}: Baseboard (or Module) Information (Type 2) --- Board
  Type\\
  \textbf{Description}: Either \texttt{0xA} (Motherboard (includes
  processor, memory, and I/O) or \texttt{0xB} (Processor/Memory Module),
  refer to Table 15 -- Baseboard: Board Type for more details.
\item
  \texttt{BoardLocationInChassis}\\
  \textbf{Type}: \texttt{plist\ string}\\
5309
  \textbf{Failsafe}: OEM specified\\
V
vit9696 已提交
5310 5311 5312 5313 5314 5315 5316
  \textbf{SMBIOS}: Baseboard (or Module) Information (Type 2) --- Location
  in Chassis\\
  \textbf{Description}: Varies, may be empty or
  \texttt{Part\ Component}.
\item
  \texttt{ChassisManufacturer}\\
  \textbf{Type}: \texttt{plist\ string}\\
5317
  \textbf{Failsafe}: OEM specified\\
V
vit9696 已提交
5318 5319 5320 5321 5322 5323
  \textbf{SMBIOS}: System Enclosure or Chassis (Type 3) --- Manufacturer\\
  \textbf{Description}: Board manufacturer. All rules of
  \texttt{SystemManufacturer} do apply.
\item
  \texttt{ChassisType}\\
  \textbf{Type}: \texttt{plist\ integer}\\
5324
  \textbf{Failsafe}: OEM specified\\
V
vit9696 已提交
5325 5326 5327 5328 5329 5330
  \textbf{SMBIOS}: System Enclosure or Chassis (Type 3) --- Type\\
  \textbf{Description}: Chassis type, refer to Table 17 --- System
  Enclosure or Chassis Types for more details.
\item
  \texttt{ChassisVersion}\\
  \textbf{Type}: \texttt{plist\ string}\\
5331
  \textbf{Failsafe}: OEM specified\\
V
vit9696 已提交
5332 5333 5334 5335 5336
  \textbf{SMBIOS}: System Enclosure or Chassis (Type 3) --- Version\\
  \textbf{Description}: Should match \texttt{BoardProduct}.
\item
  \texttt{ChassisSerialNumber}\\
  \textbf{Type}: \texttt{plist\ string}\\
5337
  \textbf{Failsafe}: OEM specified\\
V
vit9696 已提交
5338 5339 5340 5341 5342
  \textbf{SMBIOS}: System Enclosure or Chassis (Type 3) --- Version\\
  \textbf{Description}: Should match \texttt{SystemSerialNumber}.
\item
  \texttt{ChassisAssetTag}\\
  \textbf{Type}: \texttt{plist\ string}\\
5343
  \textbf{Failsafe}: OEM specified\\
V
vit9696 已提交
5344 5345 5346 5347 5348 5349
  \textbf{SMBIOS}: System Enclosure or Chassis (Type 3) --- Asset Tag
  Number\\
  \textbf{Description}: Chassis type name. Varies, could be empty or
  \texttt{MacBook-Aluminum}.
\item
  \texttt{PlatformFeature}\\
5350
  \textbf{Type}: \texttt{plist\ integer}, 32-bit\\
5351
  \textbf{Failsafe}: \texttt{0xFFFFFFFF}\\
V
vit9696 已提交
5352 5353 5354
  \textbf{SMBIOS}: \texttt{APPLE\_SMBIOS\_TABLE\_TYPE133} -
  \texttt{PlatformFeature}\\
  \textbf{Description}: Platform features bitmask. Refer to
V
vit9696 已提交
5355
  \href{https://github.com/acidanthera/OpenCorePkg/blob/master/Include/Apple/IndustryStandard/AppleFeatures.h}{AppleFeatures.h}
5356 5357 5358 5359
  for more details. Use \texttt{0xFFFFFFFF} value to not provide this table.
\item
  \texttt{SmcVersion}\\
  \textbf{Type}: \texttt{plist\ data}, 16 bytes\\
5360
  \textbf{Failsafe}: All zero\\
5361 5362 5363
  \textbf{SMBIOS}: \texttt{APPLE\_SMBIOS\_TABLE\_TYPE134} - \texttt{Version}\\
  \textbf{Description}: ASCII string containing SMC version in upper case.
  Missing on T2 based Macs. Ignored when zero.
V
vit9696 已提交
5364 5365
\item
  \texttt{FirmwareFeatures}\\
V
vit9696 已提交
5366
  \textbf{Type}: \texttt{plist\ data}, 8 bytes\\
5367
  \textbf{Failsafe}: \texttt{0}\\
V
vit9696 已提交
5368 5369 5370
  \textbf{SMBIOS}: \texttt{APPLE\_SMBIOS\_TABLE\_TYPE128} -
  \texttt{FirmwareFeatures} and \texttt{ExtendedFirmwareFeatures}\\
  \textbf{Description}: 64-bit firmware features bitmask. Refer to
V
vit9696 已提交
5371
  \href{https://github.com/acidanthera/OpenCorePkg/blob/master/Include/Apple/IndustryStandard/AppleFeatures.h}{AppleFeatures.h}
V
vit9696 已提交
5372 5373 5374 5375
  for more details. Lower 32 bits match \texttt{FirmwareFeatures}. Upper
  64 bits match \texttt{ExtendedFirmwareFeatures}.
\item
  \texttt{FirmwareFeaturesMask}\\
V
vit9696 已提交
5376
  \textbf{Type}: \texttt{plist\ data}, 8 bytes\\
5377
  \textbf{Failsafe}: \texttt{0}\\
V
vit9696 已提交
5378 5379 5380 5381 5382
  \textbf{SMBIOS}: \texttt{APPLE\_SMBIOS\_TABLE\_TYPE128} -
  \texttt{FirmwareFeaturesMask} and
  \texttt{ExtendedFirmwareFeaturesMask}\\
  \textbf{Description}: Supported bits of extended firmware features
  bitmask. Refer to
V
vit9696 已提交
5383
  \href{https://github.com/acidanthera/OpenCorePkg/blob/master/Include/Apple/IndustryStandard/AppleFeatures.h}{AppleFeatures.h}
V
vit9696 已提交
5384 5385 5386 5387 5388
  for more details. Lower 32 bits match \texttt{FirmwareFeaturesMask}.
  Upper 64 bits match \texttt{ExtendedFirmwareFeaturesMask}.
\item
  \texttt{ProcessorType}\\
  \textbf{Type}: \texttt{plist\ integer}, 16-bit\\
5389
  \textbf{Failsafe}: \texttt{0} (Automatic)\\
V
vit9696 已提交
5390 5391 5392
  \textbf{SMBIOS}: \texttt{APPLE\_SMBIOS\_TABLE\_TYPE131} -
  \texttt{ProcessorType}\\
  \textbf{Description}: Combined of Processor Major and Minor types.
5393 5394 5395 5396 5397 5398 5399 5400 5401

  Automatic value generation tries to provide most accurate value for
  the currently installed CPU. When this fails please make sure to create
  an \href{https://github.com/acidanthera/bugtracker/issues}{issue} and
  provide \texttt{sysctl machdep.cpu} and
  \href{https://github.com/acidanthera/dmidecode}{\texttt{dmidecode}} output.
  For a full list of available values and their limitations (the value will
  only apply if the CPU core count matches) refer to Apple SMBIOS definitions header
  \href{https://github.com/acidanthera/OpenCorePkg/blob/master/Include/Apple/IndustryStandard/AppleSmBios.h}{here}.
V
vit9696 已提交
5402 5403 5404 5405 5406 5407 5408 5409 5410
\end{enumerate}

\section{UEFI}\label{uefi}

\subsection{Introduction}\label{uefiintro}

\href{https://uefi.org/specifications}{UEFI} (Unified Extensible Firmware Interface)
is a specification that defines a software interface between an operating system and
platform firmware. This section allows to load additional UEFI modules and/or apply
V
vit9696 已提交
5411 5412 5413
tweaks for the onboard firmware. To inspect firmware contents, apply modifications
and perform upgrades \href{https://github.com/LongSoft/UEFITool/releases}{UEFITool}
and supplementary utilities can be used.
V
vit9696 已提交
5414

V
vit9696 已提交
5415 5416 5417
\subsection{Drivers}\label{uefidrivers}

Depending on the firmware a different set of drivers may be required.
5418
Loading an incompatible driver may lead the system to unbootable state or
V
vit9696 已提交
5419 5420
even cause permanent firmware damage. Some of the known drivers are listed below:

V
vit9696 已提交
5421
\begin{tabular}{p{1.3in}p{5.55in}}
A
Andrey1970AppleLife 已提交
5422
\href{https://github.com/acidanthera/OpenCorePkg}{\texttt{AudioDxe}}\textbf{*}
D
dakanji 已提交
5423
& HDA audio support driver in UEFI firmware for most Intel and some other analog audio controllers.
V
vit9696 已提交
5424
  Staging driver, refer to \href{https://github.com/acidanthera/bugtracker/issues/740}{acidanthera/bugtracker\#740}
V
vit9696 已提交
5425
  for known issues in AudioDxe. \\
5426 5427 5428 5429 5430
\href{https://github.com/acidanthera/OpenCorePkg}{\texttt{CrScreenshotDxe}}\textbf{*}
& Screenshot making driver saving images to the root of OpenCore partition (ESP) or
  any available writeable filesystem upon pressing \texttt{F10}.
  This is a modified version of \href{https://github.com/LongSoft/CrScreenshotDxe}{\texttt{CrScreenshotDxe}}
  driver by \href{https://github.com/NikolajSchlej}{Nikolaj Schlej}. \\
V
vit9696 已提交
5431 5432
\href{https://github.com/acidanthera/OcBinaryData}{\texttt{ExFatDxe}}
& Proprietary ExFAT file system driver for Bootcamp support commonly found in Apple
D
dakanji 已提交
5433
  firmware. For Sandy Bridge and earlier CPUs \texttt{ExFatDxeLegacy} driver should be
V
vit9696 已提交
5434 5435 5436
  used due to the lack of \texttt{RDRAND} instruction support. \\
\href{https://github.com/acidanthera/OcBinaryData}{\texttt{HfsPlus}}
& Proprietary HFS file system driver with bless support commonly found in Apple
D
dakanji 已提交
5437
  firmware. For Sandy Bridge and earlier CPUs \texttt{HfsPlusLegacy} driver should be
V
vit9696 已提交
5438 5439 5440
  used due to the lack of \texttt{RDRAND} instruction support. \\
\href{https://github.com/acidanthera/audk}{\texttt{HiiDatabase}}\textbf{*}
& HII services support driver from \texttt{MdeModulePkg}. This driver is included in
D
dakanji 已提交
5441 5442
  most types of firmware starting with the Ivy Bridge generation. Some applications with GUI,
  such as UEFI Shell, may need this driver to work properly. \\
V
vit9696 已提交
5443 5444
\href{https://github.com/acidanthera/audk}{\texttt{EnhancedFatDxe}}
& FAT filesystem driver from \texttt{FatPkg}. This driver is embedded in all
D
dakanji 已提交
5445 5446 5447 5448
  UEFI firmware and cannot be used from OpenCore. Sevaral firmware
  have a flawed FAT support implementation that may lead to corrupted filesystems
  on write attempts. Embedding this driver within the firmware may be required in case
  writing to the EFI partition is needed during the boot process. \\
V
vit9696 已提交
5449 5450
  \href{https://github.com/acidanthera/audk}{\texttt{NvmExpressDxe}}\textbf{*}
& NVMe support driver from \texttt{MdeModulePkg}. This driver is included in most
D
dakanji 已提交
5451
  firmware starting with the Broadwell generation. For Haswell and earlier, embedding it
V
vit9696 已提交
5452 5453 5454 5455 5456 5457 5458
  within the firmware may be more favourable in case a NVMe SSD drive is installed. \\
\href{https://github.com/acidanthera/OpenCorePkg}{\texttt{OpenCanopy}}\textbf{*}
& \hyperref[ueficanopy]{OpenCore plugin} implementing graphical interface. \\
\href{https://github.com/acidanthera/OpenCorePkg}{\texttt{OpenRuntime}}\textbf{*}
& \hyperref[uefiruntime]{OpenCore plugin} implementing \texttt{OC\_FIRMWARE\_RUNTIME} protocol. \\
\href{https://github.com/acidanthera/OpenCorePkg}{\texttt{OpenUsbKbDxe}}\textbf{*}
& USB keyboard driver adding the support of \texttt{AppleKeyMapAggregator} protocols
V
vit9696 已提交
5459
  on top of a custom USB keyboard driver implementation. This is an alternative to
V
vit9696 已提交
5460
  builtin \texttt{KeySupport}, which may work better or worse depending on the firmware. \\
5461 5462
\href{https://github.com/acidanthera/OcBinaryData}{\texttt{PartitionDxe}}
& Proprietary partition management driver with Apple Partitioning Scheme support
D
dakanji 已提交
5463
  commonly found in Apple firmware. This driver can be used to support loading
5464 5465 5466
  older DMG recoveries such as macOS 10.9 using Apple Partitioning Scheme.
  For Sandy Bridge and earlier CPUs \texttt{PartitionDxeLegacy} driver should be
  used due to the lack of \texttt{RDRAND} instruction support. \\
5467
  \href{https://github.com/acidanthera/audk}{\texttt{Ps2KeyboardDxe}}\textbf{*}
D
dakanji 已提交
5468
& PS/2 keyboard driver from \texttt{MdeModulePkg}. \texttt{OpenDuetPkg} and some types of firmware
5469 5470 5471
  may not include this driver, but it is necessary for PS/2 keyboard to work.
  Note, unlike \texttt{OpenUsbKbDxe} this driver has no \texttt{AppleKeyMapAggregator}
  support and thus requires \texttt{KeySupport} to be enabled. \\
5472
  \href{https://github.com/acidanthera/audk}{\texttt{Ps2MouseDxe}}\textbf{*}
D
dakanji 已提交
5473 5474 5475
& PS/2 mouse driver from \texttt{MdeModulePkg}. Some very old laptop firmware
  may not include this driver but it is necessary for the touchpad to work
  in UEFI graphical interfaces such as \texttt{OpenCanopy}. \\
5476
  \href{https://github.com/acidanthera/audk}{\texttt{UsbMouseDxe}}\textbf{*}
D
dakanji 已提交
5477 5478 5479
& USB mouse driver from \texttt{MdeModulePkg}. Some virtual machine firmware
  such as OVMF may not include this driver but it is necessary for the mouse to work
  in UEFI graphical interfaces such as \texttt{OpenCanopy}. \\
5480
\href{https://github.com/acidanthera/OpenCorePkg}{\texttt{FswHfsPlus}}
V
vit9696 已提交
5481
& HFS file system driver with bless support. This driver is an alternative to
D
dakanji 已提交
5482
  a closed source \texttt{HfsPlus} driver commonly found in Apple firmware. While
V
vit9696 已提交
5483
  it is feature complete, it is approximately 3~times slower and is yet to undergo
V
vit9696 已提交
5484 5485 5486
  a security audit. \\
\href{https://github.com/acidanthera/audk}{\texttt{XhciDxe}}\textbf{*}
& XHCI USB controller support driver from \texttt{MdeModulePkg}. This driver is
D
dakanji 已提交
5487 5488
  included in most types of firmware starting with the Sandy Bridge generation. For earlier firmware
  or legacy systems, it may be used to support external USB 3.0 PCI cards.
V
vit9696 已提交
5489
\end{tabular}
V
vit9696 已提交
5490

V
vit9696 已提交
5491
Driver marked with \textbf{*} are bundled with OpenCore.
5492 5493
To compile the drivers from UDK (EDK II) the same command used for
OpenCore compilation can be taken, but choose a corresponding package:
V
vit9696 已提交
5494 5495 5496 5497 5498 5499 5500 5501 5502
\begin{lstlisting}[label=compileudk, style=ocbash]
git clone https://github.com/acidanthera/audk UDK
cd UDK
source edksetup.sh
make -C BaseTools
build -a X64 -b RELEASE -t XCODE5 -p FatPkg/FatPkg.dsc
build -a X64 -b RELEASE -t XCODE5 -p MdeModulePkg/MdeModulePkg.dsc
\end{lstlisting}

5503
\subsection{Tools and Applications}\label{uefitools}
V
vit9696 已提交
5504 5505

Standalone tools may help to debug firmware and hardware. Some of the known tools are listed below.
5506 5507 5508
While some tools can be launched from within OpenCore, see more details in
the \hyperref[misctools]{Tools} subsection of the configuration, most should be run
separately either directly or from \texttt{Shell}.
V
vit9696 已提交
5509

V
vit9696 已提交
5510
To boot into OpenShell or any other tool directly save \texttt{OpenShell.efi}
V
vit9696 已提交
5511
under the name of \texttt{EFI\textbackslash BOOT\textbackslash BOOTX64.EFI}
G
Goldfish64 已提交
5512
on a FAT32 partition. In general it is unimportant whether the partition scheme
V
vit9696 已提交
5513 5514 5515 5516 5517 5518 5519
is \texttt{GPT} or \texttt{MBR}.

While the previous approach works both on Macs and other computers,
an alternative Mac-only approach to bless the tool on an HFS+ or APFS
volume:

\begin{lstlisting}[caption=Blessing tool, label=blesstool, style=ocbash]
V
vit9696 已提交
5520
sudo bless --verbose --file /Volumes/VOLNAME/DIR/OpenShell.efi \
V
vit9696 已提交
5521 5522 5523
  --folder /Volumes/VOLNAME/DIR/ --setBoot
\end{lstlisting}

5524
\emph{Note 1}: \texttt{/System/Library/CoreServices/BridgeVersion.bin} should be copied
V
vit9696 已提交
5525
  to \texttt{/Volumes/VOLNAME/DIR}. \\
5526 5527 5528 5529
\emph{Note 2}: To be able to use \texttt{bless}
  \href{https://developer.apple.com/library/archive/documentation/Security/Conceptual/System_Integrity_Protection_Guide/ConfiguringSystemIntegrityProtection/ConfiguringSystemIntegrityProtection.html}{disabling System Integrity Protection} is necessary. \\
\emph{Note 3}: To be able to boot \href{https://support.apple.com/HT208330}{Secure Boot}
  might be disabled if present.
V
vit9696 已提交
5530

V
vit9696 已提交
5531 5532 5533 5534 5535 5536 5537 5538 5539 5540 5541 5542 5543 5544 5545 5546 5547 5548 5549 5550 5551 5552 5553
Some of the known tools are listed below (builtin tools are marked with \textbf{*}):

\begin{tabular}{p{1.3in}p{5.55in}}
\href{https://github.com/acidanthera/OpenCorePkg}{\texttt{BootKicker}}\textbf{*}
& Enter Apple BootPicker menu (exclusive for Macs with compatible GPUs). \\
\href{https://github.com/acidanthera/OpenCorePkg}{\texttt{ChipTune}}\textbf{*}
& Test BeepGen protocol and generate audio signals of different style and length. \\
\href{https://github.com/acidanthera/OpenCorePkg}{\texttt{CleanNvram}}\textbf{*}
& Reset NVRAM alternative bundled as a standalone tool. \\
\href{https://github.com/acidanthera/OpenCorePkg}{\texttt{GopStop}}\textbf{*}
& Test GraphicsOutput protocol with a
  \href{https://github.com/acidanthera/OpenCorePkg/tree/master/Application/GopStop}{simple scenario}. \\
\href{https://github.com/acidanthera/OpenCorePkg}{\texttt{HdaCodecDump}}\textbf{*}
& Parse and dump High Definition Audio codec information (requires \texttt{AudioDxe}). \\
\href{https://github.com/acidanthera/OpenCorePkg}{\texttt{KeyTester}}\textbf{*}
& Test keyboard input in \texttt{SimpleText} mode. \\
\href{https://www.memtest86.com}{\texttt{MemTest86}}
& Memory testing utility. \\
\href{https://github.com/acidanthera/OpenCorePkg}{\texttt{OpenControl}}\textbf{*}
& Unlock and lock back NVRAM protection for other tools to be able to get full NVRAM access
  when launching from OpenCore. \\
\href{https://github.com/acidanthera/OpenCorePkg}{\texttt{OpenShell}}\textbf{*}
& OpenCore-configured \href{http://github.com/tianocore/edk2}{\texttt{UEFI Shell}} for compatibility
D
dakanji 已提交
5554
  with a broad range of firmware. \\
V
vit9696 已提交
5555 5556
\href{https://github.com/acidanthera/OpenCorePkg}{\texttt{PavpProvision}}
& Perform EPID provisioning (requires certificate data configuration). \\
V
vit9696 已提交
5557 5558
\href{https://github.com/acidanthera/OpenCorePkg}{\texttt{ResetSystem}}\textbf{*}
& Utility to perform system reset. Takes reset type as an argument:
V
vit9696 已提交
5559 5560
  \texttt{ColdReset}, \texttt{Firmware}, \texttt{Shutdown}, \texttt{WarmReset}.
  Defaults to \texttt{ColdReset}. \\
V
vit9696 已提交
5561 5562
\href{https://github.com/acidanthera/OpenCorePkg}{\texttt{RtcRw}}\textbf{*}
& Utility to read and write RTC (CMOS) memory. \\
V
vit9696 已提交
5563 5564 5565 5566 5567 5568 5569 5570 5571 5572 5573 5574 5575
\href{https://github.com/acidanthera/OpenCorePkg}{\texttt{VerifyMsrE2}}\textbf{*}
& Check \texttt{CFG Lock} (MSR \texttt{0xE2} write protection) consistency across all cores.
\end{tabular}

\subsection{OpenCanopy}\label{ueficanopy}

OpenCanopy is a graphical OpenCore user interface that runs in
\texttt{External} \texttt{PickerMode} and relies on
\href{https://github.com/acidanthera/OpenCorePkg}{OpenCorePkg} \texttt{OcBootManagementLib}
similar to the builtin text interface.

OpenCanopy requires graphical resources located in \texttt{Resources} directory to run.
Sample resources (fonts and images) can be found in
5576
\href{https://github.com/acidanthera/OcBinaryData}{OcBinaryData repository}. Customised icons can be found over the internet
A
Andrey1970AppleLife 已提交
5577
(e.g. \href{https://github.com/blackosx/OpenCanopyIcons}{here} or \href{https://applelife.ru/threads/kastomizacija-opencanopy.2945020/}{there}).
V
vit9696 已提交
5578

5579 5580 5581 5582 5583 5584 5585 5586 5587 5588
OpenCanopy provides full support for \texttt{PickerAttributes} and offers a configurable
builtin icon set. The default chosen icon set depends on the \texttt{DefaultBackgroundColor}
variable value. For Light Gray \texttt{Old} icon set will be used, for other colours ---
the one without a prefix.

Predefined icons are put to \texttt{\textbackslash EFI\textbackslash OC\textbackslash Resources\textbackslash Image}
directory. Full list of supported icons (in \texttt{.icns} format) is provided below. Missing optional
icons will use the closest available icon. External entries will use \texttt{Ext}-prefixed
icon if available (e.g. \texttt{OldExtHardDrive.icns}).

5589 5590 5591
\emph{Note}: In the following all dimensions are normative for the 1x scaling level and shall be
scaled accordingly for other levels.

5592 5593
\begin{itemize}
\tightlist
5594 5595 5596 5597 5598 5599
  \item \texttt{Cursor} --- Mouse cursor (mandatory, up to 144x144).
  \item \texttt{Selected} --- Selected item (mandatory, 144x144).
  \item \texttt{Selector} --- Selecting item (mandatory, up to 144x40).
  \item \texttt{Left} --- Scrolling left (mandatory, 40x40).
  \item \texttt{Right} --- Scrolling right (mandatory, 40x40).
  \item \texttt{HardDrive} --- Generic OS (mandatory, 128x128).
5600
  \item \texttt{Background} --- Centred background image.
5601 5602 5603 5604 5605 5606 5607 5608
  \item \texttt{Apple} --- Apple OS (128x128).
  \item \texttt{AppleRecv} --- Apple Recovery OS (128x128).
  \item \texttt{AppleTM} --- Apple Time Machine (128x128).
  \item \texttt{Windows} --- Windows (128x128).
  \item \texttt{Other} --- Custom entry (see \texttt{Entries}, 128x128).
  \item \texttt{ResetNVRAM} --- Reset NVRAM system action or tool (128x128).
  \item \texttt{Shell} --- Entry with UEFI Shell name for e.g. \texttt{OpenShell} (128x128).
  \item \texttt{Tool} --- Any other tool (128x128).
5609 5610 5611 5612 5613 5614 5615 5616 5617 5618 5619 5620 5621 5622 5623 5624 5625 5626 5627
\end{itemize}

Predefined labels are put to \texttt{\textbackslash EFI\textbackslash OC\textbackslash Resources\textbackslash Label}
directory. Each label has \texttt{.lbl} or \texttt{.l2x} suffix to represent the scaling level.
Full list of labels is provided below. All labels are mandatory.

\begin{itemize}
\tightlist
  \item \texttt{EFIBoot} --- Generic OS.
  \item \texttt{Apple} --- Apple OS.
  \item \texttt{AppleRecv} --- Apple Recovery OS.
  \item \texttt{AppleTM} --- Apple Time Machine.
  \item \texttt{Windows} --- Windows.
  \item \texttt{Other} --- Custom entry (see \texttt{Entries}).
  \item \texttt{ResetNVRAM} --- Reset NVRAM system action or tool.
  \item \texttt{Shell} --- Entry with UEFI Shell name (e.g. \texttt{OpenShell}).
  \item \texttt{Tool} --- Any other tool.
\end{itemize}

5628 5629
\emph{Note}: All labels must have a height of exactly 12 px. There is no limit for their width.

5630
Label and icon generation can be performed with bundled utilities: \texttt{disklabel} and
5631
\texttt{icnspack}. Font is Helvetica 12 pt times scale factor.
5632 5633 5634 5635 5636 5637

Font format corresponds to \href{https://www.angelcode.com/products/bmfont}{AngelCode binary BMF}.
While there are many utilities to generate font files, currently it is recommended to use
\href{https://github.com/danpla/dpfontbaker}{dpFontBaker} to generate bitmap font
(\href{https://github.com/danpla/dpfontbaker/pull/1}{using CoreText produces best results})
and \href{https://github.com/usr-sse2/fonverter}{fonverter} to export it to binary format.
5638

V
vit9696 已提交
5639 5640 5641 5642 5643 5644
\subsection{OpenRuntime}\label{uefiruntime}

\texttt{OpenRuntime} is an OpenCore plugin implementing \texttt{OC\_FIRMWARE\_RUNTIME} protocol.
This protocol implements multiple features required for OpenCore that are otherwise not possible
to implement in OpenCore itself as they are needed to work in runtime, i.e. during operating system
functioning. Feature highlights:
V
vit9696 已提交
5645 5646

\begin{itemize}
V
vit9696 已提交
5647 5648 5649
  \item NVRAM namespaces, allowing to isolate operating systems from accessing select
  variables (e.g. \texttt{RequestBootVarRouting} or \texttt{ProtectSecureBoot}).
  \item Read-only and write-only NVRAM variables, enhancing the security of OpenCore,
D
dakanji 已提交
5650
  Lilu, and Lilu plugins, such as VirtualSMC, which implements \texttt{AuthRestart} support.
V
vit9696 已提交
5651 5652 5653 5654
  \item NVRAM isolation, allowing to protect all variables from being written from
  an untrusted operating system (e.g. \texttt{DisableVariableWrite}).
  \item UEFI Runtime Services memory protection management to workaround read-only
  mapping (e.g. \texttt{EnableWriteUnprotector}).
V
vit9696 已提交
5655 5656
\end{itemize}

V
vit9696 已提交
5657 5658 5659
\subsection{Properties}\label{uefiprops}

\begin{enumerate}
V
vit9696 已提交
5660 5661 5662 5663 5664 5665 5666
\item
  \texttt{APFS}\\
  \textbf{Type}: \texttt{plist\ dict}\\
  \textbf{Failsafe}: None\\
  \textbf{Description}: Provide APFS support as configured in
  \hyperref[uefiapfsprops]{APFS Properties} section below.

5667 5668 5669 5670 5671 5672 5673 5674 5675 5676
\item
  \texttt{Audio}\\
  \textbf{Type}: \texttt{plist\ dict}\\
  \textbf{Failsafe}: None\\
  \textbf{Description}: Configure audio backend support described
  in \hyperref[uefiaudioprops]{Audio Properties} section below.

  Audio support provides a way for upstream protocols to interact with the
  selected hardware and audio resources. All audio resources should reside
  in \texttt{\textbackslash EFI\textbackslash OC\textbackslash Resources\textbackslash Audio}
5677
  directory. Currently the supported audio file formats are MP3 and WAVE PCM. While it is
5678 5679 5680 5681
  driver-dependent which audio stream format is supported, most common audio cards
  support 16-bit signed stereo audio at 44100 or 48000 Hz.

  Audio file path is determined by audio type, audio localisation, and audio path. Each filename
5682 5683 5684 5685
  looks as follows: \texttt{[audio type]\_[audio localisation]\_[audio path].[audio ext]}.
  For unlocalised files filename does not include the language code and looks as follows:
  \texttt{[audio type]\_[audio path].[audio ext]}. Audio extension can either be \texttt{mp3}
  or \texttt{wav}.
5686 5687 5688 5689 5690 5691 5692

  \begin{itemize}
  \tightlist
  \item Audio type can be \texttt{OCEFIAudio} for OpenCore audio files or
    \texttt{AXEFIAudio} for macOS bootloader audio files.
  \item Audio localisation is a two letter language code (e.g. \texttt{en})
  with an exception for Chinese, Spanish, and Portuguese. Refer to
V
vit9696 已提交
5693
  \href{https://github.com/acidanthera/OpenCorePkg/blob/master/Include/Apple/Protocol/AppleVoiceOver.h}{\texttt{APPLE\_VOICE\_OVER\_LANGUAGE\_CODE} definition}
5694 5695
  for the list of all supported localisations.
  \item Audio path is the base filename corresponding to a file identifier. For macOS bootloader audio paths refer to
V
vit9696 已提交
5696
  \href{https://github.com/acidanthera/OpenCorePkg/blob/master/Include/Apple/Protocol/AppleVoiceOver.h}{\texttt{APPLE\_VOICE\_OVER\_AUDIO\_FILE} definition}.
5697
  For OpenCore audio paths refer to
R
ryan 已提交
5698
  \href{https://github.com/acidanthera/OpenCorePkg/blob/master/Include/Acidanthera/Protocol/OcAudio.h}{\texttt{OC\_VOICE\_OVER\_AUDIO\_FILE} definition}.
5699
  The only exception is OpenCore boot chime file, which is \texttt{OCEFIAudio\_VoiceOver\_Boot.mp3}.
5700 5701 5702 5703 5704 5705 5706 5707 5708 5709
  \end{itemize}

  Audio localisation is determined separately for macOS bootloader and OpenCore.
  For macOS bootloader it is set in \texttt{preferences.efires} archive in
  \texttt{systemLanguage.utf8} file and is controlled by the operating system.
  For OpenCore the value of \texttt{prev-lang:kbd} variable is used.
  When native audio localisation of a particular file is missing, English language
  (\texttt{en}) localisation is used. Sample audio files can be found in
  \href{https://github.com/acidanthera/OcBinaryData}{OcBinaryData repository}.

V
vit9696 已提交
5710 5711 5712
\item
  \texttt{ConnectDrivers}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
5713
  \textbf{Failsafe}: \texttt{false}\\
5714 5715
  \textbf{Description}: Perform UEFI controller connection after driver loading.

5716 5717 5718 5719
  This option is useful for loading drivers following UEFI driver model
  as they may not start by themselves. Examples of such drivers are filesystem
  or audio drivers. While effective, this option may not be necessary for drivers
  performing automatic connection, and may slightly slowdown the boot.
V
vit9696 已提交
5720

D
dakanji 已提交
5721
  \emph{Note}: Some types of firmware, particularly those made by Apple, only connect the boot
G
Goldfish64 已提交
5722
  drive to speed up the boot process. Enable this option to be able to see all the
D
dakanji 已提交
5723
  boot options when running multiple drives.
5724

V
vit9696 已提交
5725 5726 5727
\item
  \texttt{Drivers}\\
  \textbf{Type}: \texttt{plist\ array}\\
5728
  \textbf{Failsafe}: None\\
V
vit9696 已提交
5729 5730 5731 5732
  \textbf{Description}: Load selected drivers from \texttt{OC/Drivers}
  directory.

  Designed to be filled with string filenames meant to be loaded as UEFI
V
vit9696 已提交
5733
  drivers.
5734

V
vit9696 已提交
5735 5736 5737 5738 5739 5740 5741
\item
  \texttt{Input}\\
  \textbf{Type}: \texttt{plist\ dict}\\
  \textbf{Failsafe}: None\\
  \textbf{Description}: Apply individual settings designed for input (keyboard and mouse) in
  \hyperref[uefiinputprops]{Input Properties} section below.

5742
\item
5743
  \texttt{Output}\\
5744 5745 5746 5747
  \textbf{Type}: \texttt{plist\ dict}\\
  \textbf{Failsafe}: None\\
  \textbf{Description}: Apply individual settings designed for output (text and graphics) in
  \hyperref[uefioutputprops]{Output Properties} section below.
V
vit9696 已提交
5748

5749
\item
5750
  \texttt{ProtocolOverrides}\\
5751
  \textbf{Type}: \texttt{plist\ dict}\\
5752
  \textbf{Failsafe}: None\\
5753
  \textbf{Description}: Force builtin versions of select protocols described
5754
  in \hyperref[uefiprotoprops]{ProtocolOverrides Properties} section below.
5755

V
vit9696 已提交
5756 5757
  \emph{Note}: all protocol instances are installed prior to driver loading.

V
vit9696 已提交
5758 5759 5760
\item
  \texttt{Quirks}\\
  \textbf{Type}: \texttt{plist\ dict}\\
5761
  \textbf{Failsafe}: None\\
V
vit9696 已提交
5762 5763 5764
  \textbf{Description}: Apply individual firmware quirks described in
  \hyperref[uefiquirkprops]{Quirks Properties} section below.

5765 5766 5767 5768 5769 5770 5771 5772 5773
\item
  \texttt{ReservedMemory}\\
  \textbf{Type}: \texttt{plist\ array}\\
  \textbf{Description}: Designed to be filled with \texttt{plist\ dict} values,
  describing memory areas exquisite to particular firmware and hardware functioning,
  which should not be used by the operating system. An example of such memory region
  could be second 256 MB corrupted by Intel HD 3000 or an area with faulty RAM.
  See \hyperref[uefirsvdprops]{ReservedMemory Properties} section below.

V
vit9696 已提交
5774 5775
\end{enumerate}

V
vit9696 已提交
5776 5777 5778 5779 5780 5781 5782 5783 5784 5785 5786 5787 5788 5789 5790
\subsection{APFS Properties}\label{uefiapfsprops}

\begin{enumerate}

\item
  \texttt{EnableJumpstart}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Load embedded APFS drivers from APFS containers.

  APFS EFI driver is bundled in all bootable APFS containers. This
  option performs loading of signed APFS drivers with respect to
  \texttt{ScanPolicy}. See more details in ``EFI Jumpstart'' section of
  \href{https://developer.apple.com/support/apple-file-system/Apple-File-System-Reference.pdf}{Apple File System Reference}.

5791 5792 5793 5794 5795 5796 5797 5798 5799

\item
  \texttt{GlobalConnect}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Perform full device connection during APFS loading.

  Instead of partition handle connection normally used for APFS driver loading
  every handle is connected recursively. This may take more time than usual
D
dakanji 已提交
5800 5801
  but can be the only way to access APFS partitions on some types of firmware such as
  those on older HP laptops.
5802

V
vit9696 已提交
5803 5804 5805 5806 5807 5808 5809 5810 5811 5812 5813 5814 5815 5816 5817 5818 5819 5820 5821 5822 5823 5824 5825 5826 5827 5828
\item
  \texttt{HideVerbose}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Hide verbose output from APFS driver.

  APFS verbose output can be useful for debugging.

\item
  \texttt{JumpstartHotPlug}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Load APFS drivers for newly connected devices.

  Performs APFS driver loading not only at OpenCore startup but also
  during boot picker. This permits APFS USB hot plug. Disable if not
  required.

\item
  \texttt{MinDate}\\
  \textbf{Type}: \texttt{plist\ integer}\\
  \textbf{Failsafe}: \texttt{0}\\
  \textbf{Description}: Minimal allowed APFS driver date.

  APFS driver date connects APFS driver with the calendar
  release date. Older versions of APFS drivers may contain unpatched
5829
  vulnerabilities, which can be used to inflict harm to the computer.
V
vit9696 已提交
5830 5831 5832 5833 5834 5835
  This option permits restricting APFS drivers to only recent releases.

  \begin{itemize}
    \tightlist
    \item \texttt{0} --- require the default supported release date of APFS
    in OpenCore. The default release date will increase with time and thus
5836
    this setting is recommended. Currently set to 2018/06/21.
V
vit9696 已提交
5837 5838 5839
    \item \texttt{-1} --- permit any release date to load (strongly discouraged).
    \item Other --- use custom minimal APFS release date, e.g. \texttt{20200401}
    for 2020/04/01. APFS release dates can be found in OpenCore boot log
R
ryan 已提交
5840
    and \href{https://github.com/acidanthera/OpenCorePkg/blob/master/Include/Acidanthera/Library/OcApfsLib.h}{\texttt{OcApfsLib}}.
V
vit9696 已提交
5841 5842 5843 5844 5845 5846 5847 5848 5849 5850 5851
  \end{itemize}

\item
  \texttt{MinVersion}\\
  \textbf{Type}: \texttt{plist\ integer}\\
  \textbf{Failsafe}: \texttt{0}\\
  \textbf{Description}: Minimal allowed APFS driver version.

  APFS driver version connects APFS driver with the macOS
  release. APFS drivers from older macOS releases will become
  unsupported and thus may contain unpatched vulnerabilities, which
5852
  can be used to inflict harm to the computer. This option permits
V
vit9696 已提交
5853 5854 5855 5856 5857 5858 5859
  restricting APFS drivers to only modern macOS versions.

  \begin{itemize}
    \tightlist
    \item \texttt{0} --- require the default supported version of APFS
    in OpenCore. The default version will increase with time and thus
    this setting is recommended. Currently set to the latest point release
5860
    from High Sierra from App Store (\texttt{748077008000000}).
V
vit9696 已提交
5861 5862 5863
    \item \texttt{-1} --- permit any version to load (strongly discouraged).
    \item Other --- use custom minimal APFS version, e.g. \texttt{1412101001000000}
    from macOS Catalina 10.15.4. APFS versions can be found in OpenCore boot log
R
ryan 已提交
5864
    and \href{https://github.com/acidanthera/OpenCorePkg/blob/master/Include/Acidanthera/Library/OcApfsLib.h}{\texttt{OcApfsLib}}.
V
vit9696 已提交
5865 5866 5867 5868
  \end{itemize}

\end{enumerate}

5869 5870 5871 5872 5873 5874 5875 5876

\subsection{Audio Properties}\label{uefiaudioprops}

\begin{enumerate}

\item
  \texttt{AudioCodec}\\
  \textbf{Type}: \texttt{plist\ integer}\\
A
Andrey1970AppleLife 已提交
5877
  \textbf{Failsafe}: \texttt{0}\\
5878 5879 5880
  \textbf{Description}: Codec address on the specified audio controller for audio support.

  Normally this contains first audio codec address on the builtin analog audio controller (\texttt{HDEF}).
V
vit9696 已提交
5881
  Audio codec addresses, e.g. \texttt{2}, can be found in the debug log (marked in bold-italic):
5882

V
vit9696 已提交
5883 5884 5885
  \texttt{OCAU: 1/3 PciRoot(0x0)/Pci(0x1,0x0)/Pci(0x0,0x1)/VenMsg(<redacted>,\textit{\textbf{00000000}}) (4 outputs)}\\
  \texttt{OCAU: 2/3 PciRoot(0x0)/Pci(0x3,0x0)/VenMsg(<redacted>,\textit{\textbf{00000000}}) (1 outputs)}\\
  \texttt{OCAU: 3/3 PciRoot(0x0)/Pci(0x1B,0x0)/VenMsg(<redacted>,\textit{\textbf{02000000}}) (7 outputs)}
5886 5887 5888 5889 5890 5891 5892

  As an alternative this value can be obtained from \texttt{IOHDACodecDevice} class in I/O Registry
  containing it in \texttt{IOHDACodecAddress} field.

\item
  \texttt{AudioDevice}\\
  \textbf{Type}: \texttt{plist\ string}\\
A
Andrey1970AppleLife 已提交
5893
  \textbf{Failsafe}: empty string\\
5894 5895 5896 5897
  \textbf{Description}: Device path of the specified audio controller for audio support.

  Normally this contains builtin analog audio controller (\texttt{HDEF}) device path,
  e.g. \texttt{PciRoot(0x0)/Pci(0x1b,0x0)}. The list of recognised audio controllers can be
V
vit9696 已提交
5898
  found in the debug log (marked in bold-italic):
5899

V
vit9696 已提交
5900 5901 5902
  \texttt{OCAU: 1/3 \textit{\textbf{PciRoot(0x0)/Pci(0x1,0x0)/Pci(0x0,0x1)}}/VenMsg(<redacted>,00000000) (4 outputs)}\\
  \texttt{OCAU: 2/3 \textit{\textbf{PciRoot(0x0)/Pci(0x3,0x0)}}/VenMsg(<redacted>,00000000) (1 outputs)}\\
  \texttt{OCAU: 3/3 \textit{\textbf{PciRoot(0x0)/Pci(0x1B,0x0)}}/VenMsg(<redacted>,02000000) (7 outputs)}
5903 5904 5905 5906 5907 5908 5909 5910 5911 5912 5913

  As an alternative \texttt{gfxutil -f HDEF} command can be used in macOS. Specifying empty device
  path will result in the first available audio controller to be used.

\item
  \texttt{AudioOut}\\
  \textbf{Type}: \texttt{plist\ integer}\\
  \textbf{Failsafe}: \texttt{0}\\
  \textbf{Description}: Index of the output port of the specified codec starting from 0.

  Normally this contains the index of the green out of the builtin analog audio controller (\texttt{HDEF}).
V
vit9696 已提交
5914
  The number of output nodes (\texttt{N}) in the debug log (marked in bold-italic):
5915

V
vit9696 已提交
5916 5917 5918
  \texttt{OCAU: 1/3 PciRoot(0x0)/Pci(0x1,0x0)/Pci(0x0,0x1)/VenMsg(<redacted>,00000000) (\textit{\textbf{4 outputs}})}\\
  \texttt{OCAU: 2/3 PciRoot(0x0)/Pci(0x3,0x0)/VenMsg(<redacted>,00000000) (\textit{\textbf{1 outputs}})}\\
  \texttt{OCAU: 3/3 PciRoot(0x0)/Pci(0x1B,0x0)/VenMsg(<redacted>,02000000) (\textit{\textbf{7 outputs}})}
V
vit9696 已提交
5919 5920

  The quickest way to find the right port is to bruteforce the values from \texttt{0} to \texttt{N - 1}.
5921 5922 5923 5924 5925 5926 5927 5928 5929 5930 5931 5932 5933 5934 5935 5936 5937 5938 5939 5940 5941 5942 5943

\item
  \texttt{AudioSupport}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Activate audio support by connecting to a backend driver.

  Enabling this setting routes audio playback from builtin protocols to a dedicated
  audio port (\texttt{AudioOut}) of the specified codec (\texttt{AudioCodec}) located
  on the audio controller (\texttt{AudioDevice}).

\item
  \texttt{MinimumVolume}\\
  \textbf{Type}: \texttt{plist\ integer}\\
  \textbf{Failsafe}: \texttt{0}\\
  \textbf{Description}: Minimal heard volume level from \texttt{0} to \texttt{100}.

  Screen reader will use this volume level, when the calculated volume level is
  less than \texttt{MinimumVolume}. Boot chime sound will not play if the calculated
  volume level is less than \texttt{MinimumVolume}.

\item
  \texttt{PlayChime}\\
5944 5945
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: empty string\\
5946 5947 5948 5949
  \textbf{Description}: Play chime sound at startup.

  Enabling this setting plays boot chime through builtin audio support. Volume level
  is determined by \texttt{MinimumVolume} and \texttt{VolumeAmplifier} settings and
5950 5951 5952 5953 5954 5955 5956 5957 5958
  \texttt{SystemAudioVolume} NVRAM variable. Possible values include:

  \begin{itemize}
    \tightlist
    \item \texttt{Auto} --- Enables chime when \texttt{StartupMute} NVRAM variable
      is not present or set to \texttt{00}.
    \item \texttt{Enabled} --- Enables chime unconditionally.
    \item \texttt{Disabled} --- Disables chime unconditionally.
  \end{itemize}
5959

5960 5961
  \emph{Note}: \texttt{Enabled} can be used in separate from \texttt{StartupMute}
  NVRAM variable to avoid conflicts when the firmware is able to play boot chime.
5962

5963 5964 5965 5966 5967 5968 5969 5970 5971 5972
\item
  \texttt{SetupDelay}\\
  \textbf{Type}: \texttt{plist\ integer}\\
  \textbf{Failsafe}: \texttt{0}\\
  \textbf{Description}: Audio codec reconfiguration delay in microseconds.

  Some codecs require a vendor-specific delay after the reconfiguration
  (e.g. volume setting). This option makes it configurable. In general
  the necessary delay may be as long as 0.5 seconds.

5973 5974 5975 5976 5977 5978 5979 5980 5981 5982 5983 5984 5985 5986 5987 5988 5989 5990
\item
  \texttt{VolumeAmplifier}\\
  \textbf{Type}: \texttt{plist\ integer}\\
  \textbf{Failsafe}: \texttt{0}\\
  \textbf{Description}: Multiplication coefficient for system volume to raw volume linear translation
  from \texttt{0} to \texttt{1000}.

  Volume level range read from \texttt{SystemAudioVolume} varies depending on the codec.
  To transform read value in \texttt{[0, 127]} range into raw volume range \texttt{[0, 100]}
  the read value is scaled to \texttt{VolumeAmplifier} percents:
  \begin{align*}
      RawVolume &= MIN(\frac{SystemAudioVolume * VolumeAmplifier}{100}, 100)
  \end{align*}
  \emph{Note}: the transformation used in macOS is not linear, but it is very close
  and this nuance is thus ignored.

\end{enumerate}

V
vit9696 已提交
5991 5992 5993 5994
\subsection{Input Properties}\label{uefiinputprops}

\begin{enumerate}

5995 5996 5997 5998 5999 6000
\item
  \texttt{KeyFiltering}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Enable keyboard input sanity checking.

D
dakanji 已提交
6001
  Apparently some boards such as the GA Z77P-D3 may return uninitialised data
6002 6003 6004 6005
  in \texttt{EFI\_INPUT\_KEY} with all input protocols.
  This option discards keys that are neither ASCII, nor are defined
  in the UEFI specification (see tables 107 and 108 in version 2.8).

V
vit9696 已提交
6006 6007 6008 6009 6010 6011 6012 6013 6014 6015 6016 6017
\item
  \texttt{KeyForgetThreshold}\\
  \textbf{Type}: \texttt{plist\ integer}\\
  \textbf{Failsafe}: \texttt{0}\\
  \textbf{Description}: Remove key unless it was submitted during this timeout in milliseconds.

  \texttt{AppleKeyMapAggregator} protocol is supposed to contain a fixed length buffer
  of currently pressed keys. However, the majority of the drivers only report key
  presses as interrupts and pressing and holding the key on the keyboard results in
  subsequent submissions of this key with some defined time interval. As a result
  we use a timeout to remove once pressed keys from the buffer once the timeout
  expires and no new submission of this key happened.
6018

6019
  This option allows to set this timeout based on the platform. The recommended
V
vit9696 已提交
6020 6021 6022 6023 6024 6025
  value that works on the majority of the platforms is \texttt{5} milliseconds.
  For reference, holding one key on VMware will repeat it roughly every \texttt{2}
  milliseconds and the same value for APTIO V is \texttt{3-4} milliseconds. Thus
  it is possible to set a slightly lower value on faster platforms
  and slightly higher value on slower platforms for more responsive input.

6026 6027 6028 6029 6030 6031
  \emph{Note}: Some platforms may require different values, higher or lower.
  For example, when detecting key misses in OpenCanopy try increasing this value
  (e.g. to \texttt{10}), and when detecting key stall, try decreasing this value.
  Since every platform is different it may be reasonable to check every value
  from \texttt{1} to \texttt{25}.

V
vit9696 已提交
6032 6033 6034 6035 6036 6037 6038 6039 6040 6041 6042 6043 6044 6045 6046 6047 6048 6049 6050 6051 6052 6053 6054 6055 6056 6057
\item
  \texttt{KeyMergeThreshold}\\
  \textbf{Type}: \texttt{plist\ integer}\\
  \textbf{Failsafe}: \texttt{0}\\
  \textbf{Description}: Assume simultaneous combination for keys submitted within
  this timeout in milliseconds.

  Similarly to \texttt{KeyForgetThreshold}, this option works around the sequential
  nature of key submission. To be able to recognise simultaneously pressed keys
  in the situation when all keys arrive sequentially, we are required to set
  a timeout within which we assume the keys were pressed together.

  Holding multiple keys results in reports every \texttt{2} and \texttt{1} milliseconds
  for VMware and APTIO V respectively. Pressing keys one after the other results in
  delays of at least \texttt{6} and \texttt{10} milliseconds for the same platforms.
  The recommended value for this option is \texttt{2} milliseconds, but it may be
  decreased for faster platforms and increased for slower.

\item
  \texttt{KeySupport}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Enable internal keyboard input translation to
  \texttt{AppleKeyMapAggregator} protocol.

  This option activates the internal keyboard interceptor driver, based on
M
Typo  
Michael Belyaev 已提交
6058
  \texttt{AppleGenericInput} aka (\texttt{AptioInputFix}), to fill
V
vit9696 已提交
6059
  \texttt{AppleKeyMapAggregator} database for input functioning. In case
V
vit9696 已提交
6060
  a separate driver is used, such as \texttt{OpenUsbKbDxe}, this option
V
vit9696 已提交
6061 6062 6063 6064 6065 6066 6067 6068 6069 6070 6071 6072 6073 6074 6075 6076 6077
  should never be enabled.

\item
  \texttt{KeySupportMode}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: empty string\\
  \textbf{Description}: Set internal keyboard input translation to
  \texttt{AppleKeyMapAggregator} protocol mode.

  \begin{itemize}
  \tightlist
  \item \texttt{Auto} --- Performs automatic choice as available with the following preference: \texttt{AMI}, \texttt{V2}, \texttt{V1}.
  \item \texttt{V1} --- Uses UEFI standard legacy input protocol \texttt{EFI\_SIMPLE\_TEXT\_INPUT\_PROTOCOL}.
  \item \texttt{V2} --- Uses UEFI standard modern input protocol \texttt{EFI\_SIMPLE\_TEXT\_INPUT\_EX\_PROTOCOL}.
  \item \texttt{AMI} --- Uses APTIO input protocol \texttt{AMI\_EFIKEYCODE\_PROTOCOL}.
  \end{itemize}

6078 6079 6080
  \emph{Note}: Currently \texttt{V1}, \texttt{V2}, and \texttt{AMI} unlike \texttt{Auto} only do filtering of
  the particular specified protocol. This may change in the future versions.

V
vit9696 已提交
6081 6082 6083 6084 6085 6086 6087 6088 6089 6090 6091 6092 6093 6094 6095 6096 6097 6098 6099 6100 6101 6102 6103 6104 6105 6106 6107 6108 6109 6110 6111 6112 6113 6114 6115 6116 6117 6118
\item
  \texttt{KeySwap}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Swap \texttt{Command} and \texttt{Option} keys during submission.

  This option may be useful for keyboard layouts with \texttt{Option} key situated to the right
  of \texttt{Command} key.

\item
  \texttt{PointerSupport}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Enable internal pointer driver.

  This option implements standard UEFI pointer protocol (\texttt{EFI\_SIMPLE\_POINTER\_PROTOCOL})
  through select OEM protocols. The option may be useful on Z87 ASUS boards, where
  \texttt{EFI\_SIMPLE\_POINTER\_PROTOCOL} is broken.

\item
  \texttt{PointerSupportMode}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: empty string\\
  \textbf{Description}: Set OEM protocol used for internal pointer driver.

  Currently the only supported variant is \texttt{ASUS}, using specialised protocol available
  on select Z87 and Z97 ASUS boards. More details can be found in
  \href{https://github.com/LongSoft/UEFITool/pull/116}{\texttt{LongSoft/UefiTool\#116}}.

\item
  \texttt{TimerResolution}\\
  \textbf{Type}: \texttt{plist\ integer}\\
  \textbf{Failsafe}: \texttt{0}\\
  \textbf{Description}: Set architecture timer resolution.

  This option allows to update firmware architecture timer period with the specified value
  in \texttt{100} nanosecond units. Setting a lower value generally improves performance
  and responsiveness of the interface and input handling.
6119

V
vit9696 已提交
6120 6121
  The recommended value is \texttt{50000} (\texttt{5} milliseconds) or slightly higher. Select
  ASUS Z87 boards use \texttt{60000} for the interface. Apple boards use \texttt{100000}.
6122
  In case of issues, this option can be left as \texttt{0}.
V
vit9696 已提交
6123 6124 6125

\end{enumerate}

6126 6127 6128 6129 6130 6131 6132 6133 6134 6135 6136 6137 6138 6139 6140 6141 6142 6143
\subsection{Output Properties}\label{uefioutputprops}

\begin{enumerate}

\item
  \texttt{TextRenderer}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: \texttt{BuiltinGraphics}\\
  \textbf{Description}: Chooses renderer for text going through standard
  console output.

  Currently two renderers are supported: \texttt{Builtin} and
  \texttt{System}. \texttt{System} renderer uses firmware services
  for text rendering. \texttt{Builtin} bypassing firmware services
  and performs text rendering on its own. Different renderers support
  a different set of options. It is recommended to use \texttt{Builtin}
  renderer, as it supports HiDPI mode and uses full screen resolution.

D
dakanji 已提交
6144 6145
  UEFI firmware generally supports \texttt{ConsoleControl} with two
  rendering modes: \texttt{Graphics} and \texttt{Text}. Some types of firmware
6146 6147 6148 6149 6150 6151 6152 6153 6154 6155 6156 6157
  do not support \texttt{ConsoleControl} and rendering modes. OpenCore
  and macOS expect text to only be shown in \texttt{Graphics} mode and
  graphics to be drawn in any mode. Since this is not required by UEFI
  specification, exact behaviour varies.

  Valid values are combinations of text renderer and rendering mode:

  \begin{itemize}
  \tightlist
  \item \texttt{BuiltinGraphics} --- Switch to \texttt{Graphics}
    mode and use \texttt{Builtin} renderer with
    custom \texttt{ConsoleControl}.
6158 6159 6160
  \item \texttt{BuiltinText} --- Switch to \texttt{Text}
    mode and use \texttt{Builtin} renderer with
    custom \texttt{ConsoleControl}.
6161 6162 6163 6164 6165 6166 6167 6168 6169 6170 6171 6172
  \item \texttt{SystemGraphics} --- Switch to \texttt{Graphics}
    mode and use \texttt{System} renderer with
    custom \texttt{ConsoleControl}.
  \item \texttt{SystemText} --- Switch to \texttt{Text}
    mode and use \texttt{System} renderer with
    custom \texttt{ConsoleControl}.
  \item \texttt{SystemGeneric} --- Use \texttt{System} renderer with
    system \texttt{ConsoleControl} assuming it behaves correctly.
  \end{itemize}

  The use of \texttt{BuiltinGraphics} is generally straightforward.
  For most platforms it is necessary to enable \texttt{ProvideConsoleGop},
6173 6174
  set \texttt{Resolution} to \texttt{Max}. \texttt{BuiltinText} variant is
  an alternative \texttt{BuiltinGraphics} for some very old and buggy laptop
D
dakanji 已提交
6175
  firmware, which can only draw in \texttt{Text} mode.
6176 6177 6178 6179 6180 6181 6182 6183 6184 6185 6186 6187 6188 6189 6190 6191 6192 6193 6194 6195 6196 6197 6198 6199 6200

  The use of \texttt{System} protocols is more complicated. In general
  the preferred setting is \texttt{SystemGraphics} or \texttt{SystemText}.
  Enabling \texttt{ProvideConsoleGop}, setting \texttt{Resolution} to
  \texttt{Max}, enabling \texttt{ReplaceTabWithSpace} is useful on almost
  all platforms. \texttt{SanitiseClearScreen}, \texttt{IgnoreTextInGraphics},
  and \texttt{ClearScreenOnModeSwitch} are more specific, and their use
  depends on the firmware.

  \emph{Note}: Some Macs, namely \texttt{MacPro5,1}, may have broken
  console output with newer GPUs, and thus only \texttt{BuiltinGraphics}
  may work for them.

\item
  \texttt{ConsoleMode}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: Empty string\\
  \textbf{Description}: Sets console output mode as specified
  with the \texttt{WxH} (e.g. \texttt{80x24}) formatted string.

  Set to empty string not to change console mode. Set to \texttt{Max}
  to try to use largest available console mode. Currently
  \texttt{Builtin} text renderer supports only one console mode, so
  this option is ignored.

D
dakanji 已提交
6201
  \emph{Note}: This field is best left empty on most types of firmware.
6202 6203 6204 6205 6206 6207 6208 6209 6210 6211 6212 6213 6214 6215 6216 6217 6218 6219

\item
  \texttt{Resolution}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: Empty string\\
  \textbf{Description}: Sets console output screen resolution.

  \begin{itemize}
  \tightlist
  \item Set to \texttt{WxH@Bpp} (e.g. \texttt{1920x1080@32}) or \texttt{WxH}
  (e.g. \texttt{1920x1080}) formatted string to request custom resolution
  from GOP if available.
  \item Set to empty string not to change screen resolution.
  \item Set to \texttt{Max} to try to use largest available screen resolution.
  \end{itemize}

  On HiDPI screens \texttt{APPLE\_VENDOR\_VARIABLE\_GUID} \texttt{UIScale}
  NVRAM variable may need to be set to \texttt{02} to enable HiDPI scaling
6220 6221 6222
  in \texttt{Builtin} text renderer, FileVault 2 UEFI password interface,
  and boot screen logo. Refer to \hyperref[nvramvarsrec]{Recommended Variables}
  section for more details.
6223 6224 6225 6226 6227

  \emph{Note}: This will fail when console handle has no GOP protocol. When
  the firmware does not provide it, it can be added with \texttt{ProvideConsoleGop}
  set to \texttt{true}.

6228 6229 6230 6231 6232 6233 6234 6235 6236 6237 6238 6239 6240 6241
\item
  \texttt{ForceResolution}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Forces \texttt{Resolution} to be set in cases where the desired
  resolution is not available by default, such as on legacy Intel GMA and first
  generation Intel HD Graphics (Ironlake/Arrandale). Setting \texttt{Resolution} to
  \texttt{Max} will try to pull the largest available resolution from the connected
  display's EDID.

  \emph{Note}: This option depends on the \href{https://github.com/acidanthera/OpenCorePkg/blob/master/Include/Acidanthera/Protocol/OcForceResolution.h}{\texttt{OC\_FORCE\_RESOLUTION\_PROTOCOL}}
  protocol being present. This protocol is currently only supported by \texttt{OpenDuetPkg}. The
  \texttt{OpenDuetPkg} implementation currently only supports Intel iGPUs.

6242 6243 6244 6245
\item
  \texttt{ClearScreenOnModeSwitch}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
D
dakanji 已提交
6246 6247
  \textbf{Description}: Some types of firmware only clear part of the screen when switching
  from graphics to text mode, leaving a fragment of previously drawn images visible.
V
vit9696 已提交
6248
  This option fills the entire graphics screen with black colour before switching to
6249 6250 6251 6252
  text mode.

  \emph{Note}: This option only applies to \texttt{System} renderer.

6253 6254 6255 6256 6257 6258
\item
  \texttt{DirectGopRendering}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Use builtin graphics output protocol renderer for console.

D
dakanji 已提交
6259 6260 6261
  On some types of firmware, such as on the \texttt{MacPro5,1}, this may provide better
  performance or fix rendering issues. However, this option is not recommended unless
  there is an obvious benefit as it may result in issues such as slower scrolling.
6262

6263 6264 6265 6266
\item
  \texttt{IgnoreTextInGraphics}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
D
dakanji 已提交
6267 6268
  \textbf{Description}: Some types of firmware output text onscreen in both graphics and
  text mode. This is typically unexpected as random text may appear over
6269
  graphical images and cause UI corruption. Setting this option to \texttt{true} will
D
dakanji 已提交
6270
  discard all text output when console control is in a different mode from \texttt{Text}.
6271

D
dakanji 已提交
6272
  \emph{Note}: This option only applies to the \texttt{System} renderer.
6273 6274 6275 6276 6277

\item
  \texttt{ReplaceTabWithSpace}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
D
dakanji 已提交
6278 6279
  \textbf{Description}: Some types of firmware do not print tab characters or everything
  that follows them, causing difficulties in using the UEFI Shell's builtin
6280 6281 6282 6283 6284 6285 6286 6287 6288 6289 6290
  text editor to edit property lists and other documents. This option makes the console
  output spaces instead of tabs.

  \emph{Note}: This option only applies to \texttt{System} renderer.

\item
  \texttt{ProvideConsoleGop}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Ensure GOP (Graphics Output Protocol) on console handle.

6291 6292 6293 6294
  macOS bootloader requires GOP or UGA (for 10.4 EfiBoot) to be present on console
  handle, yet the exact location of the graphics protocol is not covered by the
  UEFI specification. This option will ensure GOP and UGA, if present, are available
  on the console handle.
6295 6296 6297 6298 6299 6300 6301 6302 6303 6304

  \emph{Note}: This option will also replace broken GOP protocol on console handle,
  which may be the case on \texttt{MacPro5,1} with newer GPUs.

\item
  \texttt{ReconnectOnResChange}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Reconnect console controllers after changing screen resolution.

D
dakanji 已提交
6305 6306 6307
  On some types of firmware, the controllers that produce the console protocols
  (simple text out) must be reconnected when the screen resolution is changed via GOP.
  Otherwise they will not produce text based on the new resolution.
6308 6309 6310 6311 6312 6313 6314 6315 6316

  \emph{Note}: On several boards this logic may result in black screen when launching
  OpenCore from Shell and thus it is optional. In versions prior to 0.5.2 this option
  was mandatory and not configurable. Please do not use this unless required.

\item
  \texttt{SanitiseClearScreen}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
D
dakanji 已提交
6317 6318
  \textbf{Description}: Some types of firmware reset screen resolutions to a failsafe
  value (such as \texttt{1024x768}) on the attempts to clear screen contents
6319 6320 6321 6322 6323 6324 6325
  when large display (e.g. 2K or 4K) is used. This option attempts to apply
  a workaround.

  \emph{Note}: This option only applies to \texttt{System} renderer.
   On all known affected systems \texttt{ConsoleMode} had to be set to
   empty string for this to work.

6326 6327 6328 6329 6330 6331
\item
  \texttt{UgaPassThrough}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Provide UGA protocol instances on top of GOP protocol.

D
dakanji 已提交
6332 6333
  Some types of firmware do not implement the legacy UGA protocol but this may be required
  for screen output by older EFI applications such as EfiBoot from 10.4.
6334

6335 6336 6337
\end{enumerate}


6338
\subsection{ProtocolOverrides Properties}\label{uefiprotoprops}
6339 6340 6341

\begin{enumerate}

6342 6343 6344 6345 6346 6347 6348 6349 6350 6351 6352 6353 6354 6355 6356 6357 6358 6359 6360 6361 6362
\item
  \texttt{AppleAudio}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Reinstalls Apple audio protocols with builtin
  versions.

  Apple audio protocols allow macOS bootloader and OpenCore to play
  sounds and signals for screen reading or audible error reporting.
  Supported protocols are beep generation and VoiceOver. VoiceOver protocol
  is specific to Gibraltar machines (T2) and is not supported before
  macOS High Sierra (10.13). Instead older macOS versions use AppleHDA protocol,
  which is currently not implemented.

  Only one set of audio protocols can be available at a time, so in order
  to get audio playback in OpenCore user interface on Mac system implementing some
  of these protocols this setting should be enabled.

  \emph{Note}: Backend audio driver needs to be configured in \texttt{UEFI Audio}
  section for these protocols to be able to stream audio.

6363 6364 6365
\item
  \texttt{AppleBootPolicy}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
6366
  \textbf{Failsafe}: \texttt{false}\\
6367
  \textbf{Description}: Reinstalls Apple Boot Policy protocol with a builtin
6368 6369
  version. This may be used to ensure APFS compatibility on VMs or legacy Macs.

6370 6371 6372
  \emph{Note}: Some Macs, namely \texttt{MacPro5,1}, do have APFS compatibility,
  but their Apple Boot Policy protocol contains recovery detection issues, thus
  using this option is advised on them as well.
6373

6374 6375 6376 6377 6378 6379 6380
\item
  \texttt{AppleDebugLog}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Reinstalls Apple Debug Log protocol with a builtin
  version.

6381 6382 6383 6384 6385 6386 6387
\item
  \texttt{AppleEvent}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Reinstalls Apple Event protocol with a builtin
  version. This may be used to ensure File Vault 2 compatibility on VMs or legacy Macs.

6388 6389 6390 6391 6392 6393
\item
  \texttt{AppleFramebufferInfo}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Reinstalls Apple Framebuffer Info protocol with a builtin
  version. This may be used to override framebuffer information on VMs or legacy Macs
D
dakanji 已提交
6394
  to improve compatibility with legacy EfiBoot such as the one in macOS 10.4.
6395

6396 6397 6398 6399 6400 6401 6402
\item
  \texttt{AppleImageConversion}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Reinstalls Apple Image Conversion protocol with a builtin
  version.

6403 6404 6405 6406 6407 6408 6409 6410
\item
  \texttt{AppleImg4Verification}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Reinstalls Apple IMG4 Verification protocol with a builtin
  version. This protocol is used to verify \texttt{im4m} manifest files used by
  Apple Secure Boot.

6411 6412 6413 6414 6415 6416 6417
\item
  \texttt{AppleKeyMap}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Reinstalls Apple Key Map protocols with builtin
  versions.

6418
\item
R
Rodion Shingarev 已提交
6419
  \texttt{AppleRtcRam}\\
6420 6421 6422 6423 6424 6425 6426 6427 6428 6429
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Reinstalls Apple RTC RAM protocol with builtin
  version.

  \emph{Note}: Builtin version of Apple RTC RAM protocol may filter out
  I/O attempts to select RTC memory addresses. The list of addresses
  can be specified in \texttt{4D1FDA02-38C7-4A6A-9CC6-4BCCA8B30102:rtc-blacklist}
  variable as a data array.

6430 6431 6432 6433 6434 6435 6436
\item
  \texttt{AppleSecureBoot}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Reinstalls Apple Secure Boot protocol with a builtin
  version.

6437 6438 6439 6440 6441 6442 6443 6444 6445 6446 6447
\item
  \texttt{AppleSmcIo}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Reinstalls Apple SMC I/O protocol with a builtin
  version.

  This protocol replaces legacy \texttt{VirtualSmc} UEFI driver, and is compatible
  with any SMC kernel extension. However, in case \texttt{FakeSMC} kernel extension
  is used, manual NVRAM key variable addition may be needed.

6448 6449 6450 6451 6452 6453 6454
\item
  \texttt{AppleUserInterfaceTheme}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Reinstalls Apple User Interface Theme protocol with a builtin
  version.

6455 6456 6457
\item
  \texttt{DataHub}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
6458
  \textbf{Failsafe}: \texttt{false}\\
6459
  \textbf{Description}: Reinstalls Data Hub protocol with a builtin version.
6460
  This will delete all previous properties if the protocol was already installed.
6461

6462 6463 6464
\item
  \texttt{DeviceProperties}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
6465
  \textbf{Failsafe}: \texttt{false}\\
6466
  \textbf{Description}: Reinstalls Device Property protocol with a builtin
6467
  version. This will delete all previous properties if it was already installed.
6468 6469
  This may be used to ensure full compatibility on VMs or legacy Macs.

6470 6471 6472 6473 6474 6475 6476 6477
\item
  \texttt{FirmwareVolume}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Forcibly wraps Firmware Volume protocols or installs new
  to support custom cursor images for File Vault 2. Should be set to \texttt{true}
  to ensure File Vault 2 compatibility on everything but VMs and legacy Macs.

6478 6479 6480
  \emph{Note}: Several virtual machines including VMware may have corrupted
  cursor image in HiDPI mode and thus may also require this setting to be enabled.

6481 6482 6483 6484 6485 6486 6487 6488 6489 6490
\item
  \texttt{HashServices}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Forcibly reinstalls Hash Services protocols with builtin
  versions. Should be set to \texttt{true} to ensure File Vault 2 compatibility
  on platforms providing broken SHA-1 hashing. Can be diagnosed by invalid
  cursor size with \texttt{UIScale} set to \texttt{02}, in general platforms
  prior to APTIO V (Haswell and older) are affected.

6491 6492 6493 6494 6495 6496 6497 6498
\item
  \texttt{OSInfo}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Forcibly reinstalls OS Info protocol with builtin
  versions. This protocol is generally used to receive notifications from macOS
  bootloader, by the firmware or by other applications.

6499 6500 6501 6502 6503 6504 6505 6506 6507
\item
  \texttt{UnicodeCollation}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: Forcibly reinstalls unicode collation services with builtin
  version. Should be set to \texttt{true} to ensure UEFI Shell compatibility
  on platforms providing broken unicode collation. In general legacy Insyde and APTIO
  platforms on Ivy Bridge and earlier are affected.

6508 6509
\end{enumerate}

V
vit9696 已提交
6510 6511 6512 6513
\subsection{Quirks Properties}\label{uefiquirkprops}

\begin{enumerate}

6514 6515 6516
\item
  \texttt{ExitBootServicesDelay}\\
  \textbf{Type}: \texttt{plist\ integer}\\
6517
  \textbf{Failsafe}: \texttt{0}\\
6518 6519 6520
  \textbf{Description}: Adds delay in microseconds after \texttt{EXIT\_BOOT\_SERVICES}
  event.

D
dakanji 已提交
6521 6522 6523 6524 6525
  This is a very rough workaround to circumvent the \texttt{Still\ waiting\ for\ root\ device} message
  on some APTIO IV firmware (ASUS Z87-Pro) particularly when using FileVault 2.
  It appears that for some reason, they execute code in parallel to \texttt{EXIT\_BOOT\_SERVICES},
  which results in the SATA controller being inaccessible from macOS. A better approach should be
  found in some future. Expect 3 to 5 seconds to be adequate when this quirk is needed.
6526

V
vit9696 已提交
6527 6528 6529
\item
  \texttt{IgnoreInvalidFlexRatio}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
6530
  \textbf{Failsafe}: \texttt{false}\\
D
dakanji 已提交
6531
  \textbf{Description}: Some types of firmware (such as APTIO IV) may contain invalid values in the
V
vit9696 已提交
6532
  \texttt{MSR\_FLEX\_RATIO} (\texttt{0x194}) MSR register. These values may cause
D
dakanji 已提交
6533
  macOS boot failures on Intel platforms.
V
vit9696 已提交
6534

D
dakanji 已提交
6535 6536
  \emph{Note}: While the option is not expected to harm unaffected firmware,
  its use is only recommended when it is specifically required.
V
vit9696 已提交
6537

6538 6539 6540
\item
  \texttt{ReleaseUsbOwnership}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
6541
  \textbf{Failsafe}: \texttt{false}\\
6542
  \textbf{Description}: Attempt to detach USB controller ownership from
D
dakanji 已提交
6543 6544 6545
  the firmware driver. While most types of firmware manage to do that properly,
  or at least have an option for this, some do not. As a result,
  the operating system may freeze upon boot. Not recommended unless required.
6546

6547 6548 6549
\item
  \texttt{RequestBootVarRouting}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
6550
  \textbf{Failsafe}: \texttt{false}\\
6551 6552
  \textbf{Description}: Request redirect of all \texttt{Boot} prefixed variables from
  \texttt{EFI\_GLOBAL\_VARIABLE\_GUID} to \newline \texttt{OC\_VENDOR\_VARIABLE\_GUID}.
6553

6554
  This quirk requires \texttt{OC\_FIRMWARE\_RUNTIME} protocol implemented
V
vit9696 已提交
6555
  in \texttt{OpenRuntime.efi}. The quirk lets default boot entry
D
dakanji 已提交
6556 6557 6558
  preservation at times when the firmware deletes incompatible boot entries.
  In summary, this quirk is required to reliably
  use the \href{https://support.apple.com/HT202796}{Startup Disk} preference
6559
  pane in firmware that is not compatible with macOS boot entries by design.
6560

6561 6562 6563 6564 6565 6566 6567 6568 6569 6570 6571 6572 6573
  By redirecting \texttt{Boot} prefixed variables to a separate GUID namespace
  with the help of \texttt{RequestBootVarRouting} quirk we achieve multiple goals:
  \begin{itemize}
  \tightlist
  \item Operating systems are jailed and only controlled by OpenCore boot
  environment to enhance security.
  \item Operating systems do not mess with OpenCore boot priority, and guarantee
  fluent updates and hibernation wakes for cases that require reboots with OpenCore
  in the middle.
  \item Potentially incompatible boot entries, such as macOS entries, are not deleted
  or anyhow corrupted.
  \end{itemize}

6574 6575 6576 6577 6578 6579 6580 6581 6582 6583 6584 6585 6586 6587
\item
  \texttt{TscSyncTimeout}\\
  \textbf{Type}: \texttt{plist\ integer}\\
  \textbf{Failsafe}: \texttt{0}\\
  \textbf{Description}: Attempts to perform TSC synchronisation with a specified timeout.

  The primary purpose of this quirk is to enable early bootstrap TSC synchronisation
  on some server and laptop models when running a debug XNU kernel. For the debug kernel
  the TSC needs to be kept in sync across the cores before any kext could kick in rendering
  all other solutions problematic. The timeout is specified in microseconds and depends on the
  amount of cores present on the platform, the recommended starting value is \texttt{500000}.

  This is an experimental quirk, which should only be used for the aforementioned problem.
  In all other cases the quirk may render the operating system unstable and is not recommended.
D
dakanji 已提交
6588
  The recommended solution in the other cases is to install a kernel driver such as
6589 6590 6591 6592 6593 6594
  \href{https://github.com/RehabMan/VoodooTSCSync}{VoodooTSCSync},
  \href{https://github.com/interferenc/TSCAdjustReset}{TSCAdjustReset},
  or \href{https://github.com/lvs1974/CpuTscSync}{CpuTscSync} (a more specialised
  variant of VoodooTSCSync for newer laptops).

  \emph{Note}: The reason this quirk cannot replace the kernel driver is
D
dakanji 已提交
6595 6596
  because it cannot operate in ACPI S3 mode (sleep wake) and because the UEFI firmware
  provides very limited multicore support preventing the precise update of the MSR
6597 6598
  registers.

6599
\item
6600
  \texttt{UnblockFsConnect}\\
6601 6602
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
D
dakanji 已提交
6603 6604
  \textbf{Description}: Some types of firmware block partition handles by opening them
  in \texttt{By\ Driver} mode, resulting in being unable to install File System protocols.
6605

6606
  \emph{Note}: The quirk is mostly relevant for select HP laptops with no drives listed.
6607

V
vit9696 已提交
6608 6609
\end{enumerate}

6610 6611 6612 6613 6614 6615 6616 6617 6618 6619 6620 6621 6622 6623
\subsection{ReservedMemory Properties}\label{uefirsvdprops}

\begin{enumerate}

\item
  \texttt{Address}\\
  \textbf{Type}: \texttt{plist\ integer}\\
  \textbf{Failsafe}: \texttt{0}\\
  \textbf{Description}: Start address of the reserved memory region, which should be allocated
  as reserved effectively marking the memory of this type inaccessible to the operating system.

  The addresses written here must be part of the memory map, have \texttt{EfiConventionalMemory}
  type, and page-aligned (4 KBs).

D
dakanji 已提交
6624
  \emph{Note}: Some types of firmware may not allocate memory areas used by S3 (sleep) and S4 (hibernation)
6625
  code unless CSM is enabled causing wake failures. After comparing the memory maps with CSM disabled
6626
  and enabled, these areas can be found in the lower memory and can be fixed up by doing the reservation.
6627 6628
  See \texttt{Sample.plist} for more details.

6629 6630 6631 6632 6633 6634 6635 6636 6637 6638 6639 6640 6641 6642
\item
  \texttt{Comment}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: Empty string\\
  \textbf{Description}: Arbitrary ASCII string used to provide human readable
  reference for the entry. It is implementation defined whether this value is
  used.

\item
  \texttt{Size}\\
  \textbf{Type}: \texttt{plist\ integer}\\
  \textbf{Failsafe}: \texttt{0}\\
  \textbf{Description}: Size of the reserved memory region, must be page-aligned (4 KBs).

6643 6644 6645 6646 6647 6648 6649 6650 6651 6652 6653 6654 6655 6656 6657 6658 6659 6660 6661 6662 6663 6664 6665 6666 6667 6668
\item
  \texttt{Type}\\
  \textbf{Type}: \texttt{plist\ string}\\
  \textbf{Failsafe}: \texttt{Reserved}\\
  \textbf{Description}: Memory region type matching the UEFI specification memory descriptor
  types. Mapping:

  \begin{itemize}
    \tightlist
    \item \texttt{Reserved} --- \texttt{EfiReservedMemoryType}
    \item \texttt{LoaderCode} --- \texttt{EfiLoaderCode}
    \item \texttt{LoaderData} --- \texttt{EfiLoaderData}
    \item \texttt{BootServiceCode} --- \texttt{EfiBootServicesCode}
    \item \texttt{BootServiceData} --- \texttt{EfiBootServicesData}
    \item \texttt{RuntimeCode} --- \texttt{EfiRuntimeServicesCode}
    \item \texttt{RuntimeData} --- \texttt{EfiRuntimeServicesData}
    \item \texttt{Available} --- \texttt{EfiConventionalMemory}
    \item \texttt{Persistent} --- \texttt{EfiPersistentMemory}
    \item \texttt{UnusableMemory} --- \texttt{EfiUnusableMemory}
    \item \texttt{ACPIReclaimMemory} --- \texttt{EfiACPIReclaimMemory}
    \item \texttt{ACPIMemoryNVS} --- \texttt{EfiACPIMemoryNVS}
    \item \texttt{MemoryMappedIO} --- \texttt{EfiMemoryMappedIO}
    \item \texttt{MemoryMappedIOPortSpace} --- \texttt{EfiMemoryMappedIOPortSpace}
    \item \texttt{PalCode} --- \texttt{EfiPalCode}
  \end{itemize}

6669 6670 6671 6672 6673 6674 6675 6676
\item
  \texttt{Enabled}\\
  \textbf{Type}: \texttt{plist\ boolean}\\
  \textbf{Failsafe}: \texttt{false}\\
  \textbf{Description}: This region will not be reserved unless set to \texttt{true}.

\end{enumerate}

V
vit9696 已提交
6677 6678
\section{Troubleshooting}\label{troubleshooting}

6679 6680
\subsection{Legacy Apple OS}\label{legacyapple}

6681 6682
Older operating systems may be more complicated to install, but sometimes can
be necessary to use for all kinds of reasons. While a compatible board identifier
G
Goldfish64 已提交
6683
and CPUID are the obvious requirements for proper functioning of an older
6684
operating system, there are many other less obvious things to consider.
6685 6686 6687
This section tries to cover a common set of issues relevant to installing
older macOS operating systems.

V
vit9696 已提交
6688 6689 6690 6691 6692 6693 6694 6695 6696
While newer operating systems can be downloaded over the internet,
older operating systems did not have installation media for every minor
release, so to get a compatible distribution one may have to download
a device-specific image and mod it if necessary. To get the list of
the bundled device-specific builds for legacy operating systems
one can visit this archived Apple Support
\href{https://web.archive.org/web/20170705003629/https://support.apple.com/en-us/HT204319}{article}.
Since it is not always accurate, the latest versions are listed below.

6697 6698 6699 6700 6701 6702 6703 6704 6705 6706
\subsubsection{macOS 10.8 and 10.9}\label{legacy108}

\begin{itemize}
  \item Disk images on these systems use Apple Partitioning Scheme
    and will require the proprietary \texttt{PartitionDxe} driver
    to run DMG recovery and installation. It is possible to set
    \texttt{DmgLoading} to \texttt{Disabled} to run the recovery
    without DMG loading avoiding the need for \texttt{PartitionDxe}.
  \item Cached kernel images often do not contain family drivers
    for networking (\texttt{IONetworkingFamily}) or audio
6707
    (\texttt{IOAudioFamily}) requiring the use of \texttt{Force}
6708 6709 6710 6711 6712 6713 6714
    loading in order to inject networking or audio drivers.
\end{itemize}

\subsubsection{macOS 10.7}\label{legacy107}

\begin{itemize}
  \item All previous issues apply.
V
vit9696 已提交
6715 6716 6717 6718
  \item \texttt{SSSE3} support (not to be confused with \texttt{SSE3} support)
    is a hard requirement for macOS 10.7 kernel.
  \item Many kexts, including \texttt{Lilu} when 32-bit kernel
    is used and a lot of \texttt{Lilu} plugins, are
6719 6720 6721
    unsupported on macOS~10.7 and older as they require newer
    kernel APIs, which are not part of the macOS~10.7 SDK.
  \item Prior to macOS~10.8 KASLR sliding is not supported, which
D
dakanji 已提交
6722
    will result in memory allocation failures on firmware
6723 6724 6725 6726 6727 6728 6729 6730 6731
    that utilise lower memory for their own purposes. Refer to
    \href{https://github.com/acidanthera/bugtracker/issues/1125}{acidanthera/bugtracker\#1125}
    for tracking.
\end{itemize}

\subsubsection{macOS 10.6}\label{legacy106}

\begin{itemize}
  \item All previous issues apply.
V
vit9696 已提交
6732 6733 6734
  \item \texttt{SSSE3} support is a requirement for macOS 10.6 kernel
    with 64-bit userspace enabled. This limitation can mostly be lifted
    by enabling the \texttt{LegacyCommpage} quirk.
6735
  \item Last released installer images for macOS~10.6 are macOS~10.6.7
6736 6737 6738 6739 6740 6741
    builds \texttt{10J3250} (for \texttt{MacBookPro8,x}) and
    \texttt{10J4139} (for \texttt{iMac12,x}), without Xcode). These
    images are limited to their target model identifiers and have no
    \texttt{-no\_compat\_check} boot argument support. Modified images
    (with \texttt{ACDT} suffix) without model restrictions can be found
    \href{https://mega.nz/folder/z5YUhYTb#gA\_IRY5KMuYpnNCg7kR3ug}{here},
6742 6743
    assuming macOS~10.6 is legally owned. Read \texttt{DIGEST.txt}
    for more details. Note that these are the earliest tested
6744 6745 6746
    versions of macOS~10.6 with OpenCore.
\end{itemize}

6747
  Model checking may also be erased by editing \texttt{OSInstall.mpkg}
6748 6749 6750 6751 6752 6753 6754 6755 6756 6757 6758 6759 6760 6761 6762 6763 6764 6765 6766 6767 6768 6769 6770 6771 6772 6773 6774
  with e.g. \texttt{Flat Package Editor} by making \texttt{Distribution}
  script to always return \texttt{true} in \texttt{hwbeModelCheck} function.
  Since updating the only file in the image and not corrupting other files
  can be difficult and may cause slow booting due to kernel cache date
  changes, it is recommended to script image rebuilding as shown below:

\begin{lstlisting}[label=snowrebuild, style=ocbash]
#!/bin/bash
# Original.dmg is original image, OSInstall.mpkg is patched package
mkdir RO
hdiutil mount Original.dmg -noverify -noautoopen -noautoopenrw -noautofsck -mountpoint RO
cp RO/.DS_Store DS_STORE
hdiutil detach RO -force
rm -rf RO
hdiutil convert Original.dmg -format UDRW -o ReadWrite.dmg
mkdir RW
xattr -c OSInstall.mpkg
hdiutil mount ReadWrite.dmg -noverify -noautoopen -noautoopenrw -noautofsck -mountpoint RW
cp OSInstall.mpkg RW/System/Installation/Packages/OSInstall.mpkg
killall Finder fseventsd
rm -rf RW/.fseventsd
cp DS_STORE RW/.DS_Store
hdiutil detach RW -force
rm -rf DS_STORE RW
hdiutil convert ReadWrite.dmg -format UDZO -o ReadOnly.dmg
\end{lstlisting}

V
vit9696 已提交
6775 6776 6777 6778 6779 6780 6781 6782 6783 6784 6785 6786 6787 6788 6789 6790
\subsubsection{macOS 10.5}\label{legacy105}

\begin{itemize}
  \item All previous issues apply.
  \item This macOS version does not support \texttt{x86\_64} kernel
    and requires \texttt{i386} kernel extensions and patches.
  \item This macOS version uses the first (V1) version of \texttt{prelinkedkernel},
    which has kext symbol tables corrupted by the kext tools. This nuance
    renders \texttt{prelinkedkernel} kext injection impossible in OpenCore.
    \texttt{Mkext} kext injection will still work without noticeable
    performance drain and will be chosen automatically when
    \texttt{KernelCache} is set to \texttt{Auto}.
  \item Last released installer image for macOS~10.5 is macOS~10.5.7
    build \texttt{9J3050} (for \texttt{MacBookPro5,3}). Unlike the others,
    this image is not limited to the target model identifiers and can be used
    as is. The original \texttt{9J3050} image can be found
M
Mykola Grymalyuk 已提交
6791
    \href{https://mega.nz/folder/inRBTarD#zanf7fUbviwz3WHBU5xpCg}{here},
V
vit9696 已提交
6792 6793 6794 6795 6796 6797 6798 6799 6800 6801 6802 6803 6804 6805 6806
    assuming macOS~10.5 is legally owned. Read \texttt{DIGEST.txt}
    for more details. Note that this is the earliest tested
    version of macOS~10.5 with OpenCore.
\end{itemize}

\subsubsection{macOS 10.4}\label{legacy104}

\begin{itemize}
  \item All previous issues apply.
  \item This macOS version has a hard requirement to access all the optional
    packages on the second DVD disk installation media, requiring either two
    disks or USB media installation.
  \item Last released installer images for macOS~10.4 are macOS~10.4.10
    builds \texttt{8R4061a} (for \texttt{MacBookPro3,1}) and
    \texttt{8R4088} (for \texttt{iMac7,1})). These images are limited
D
dakanji 已提交
6807
    to their target model identifiers as on newer macOS versions.
V
vit9696 已提交
6808 6809 6810 6811 6812 6813 6814
    Modified \texttt{8R4088} images (with \texttt{ACDT} suffix) without
    model restrictions can be found
    \href{https://mega.nz/folder/D3ASzLzA\#7sjYXE2X09f6aGjol\_C7dg}{here},
    assuming macOS~10.4 is legally owned. Read \texttt{DIGEST.txt}
    for more details. Note that these are the earliest tested
    versions of macOS~10.4 with OpenCore.
\end{itemize}
6815 6816 6817

\subsection{UEFI Secure Boot}\label{uefisecureboot}

6818 6819
OpenCore is designed to provide a secure boot chain between firmware
and operating system. On most x86 platforms trusted loading is implemented
V
vit9696 已提交
6820 6821 6822 6823 6824 6825 6826 6827
via \href{https://en.wikipedia.org/wiki/UEFI_Secure_Boot}{UEFI Secure Boot} model.
Not only OpenCore fully supports this model, but it also extends its capabilities
to ensure sealed configuration via \hyperref[securevaulting]{vaulting} and
provide trusted loading to the operating systems using custom verification,
such as \hyperref[secureapplesb]{Apple Secure Boot}. Proper secure boot chain
requires several steps and careful configuration of select settings as explained below:

\begin{enumerate}
6828
\item Enable Apple Secure Boot by setting \texttt{SecureBootModel} to
V
vit9696 已提交
6829 6830 6831 6832
  run macOS. Note, that not every macOS is compatible with Apple Secure Boot and
  there are several other restrictions as explained in
  \hyperref[secureapplesb]{Apple Secure Boot} section.
\item Disable DMG loading by setting \texttt{DmgLoading} to \texttt{Disabled}
6833
  if users have concerns of loading old vulnerable DMG recoveries. This is
V
vit9696 已提交
6834 6835 6836 6837 6838
  \textbf{not} required, but recommended. For the actual tradeoffs
  see the details in \hyperref[securedmgloading]{DMG loading} section.
\item Make sure that APFS JumpStart functionality restricts the loading
  of old vulnerable drivers by setting \texttt{MinDate} and \texttt{MinVersion}
  to \texttt{0}. More details are provided in \hyperref[uefiapfsprops]{APFS JumpStart}
6839
  section. An alternative is to install \texttt{apfs.efi} driver manually.
6840 6841
\item Make sure that \texttt{Force} driver loading is not needed and
  all the operating systems are still bootable.
V
vit9696 已提交
6842 6843 6844
\item Make sure that \texttt{ScanPolicy} restricts loading from undesired
  devices. It is a good idea to prohibit all removable drivers or unknown
  filesystems.
6845
\item Sign all the installed drivers and tools with the private key. Do not sign
D
dakanji 已提交
6846
  tools that provide administrative access to the computer, such as UEFI Shell.
6847
\item Vault the configuration as explained \hyperref[securevaulting]{Vaulting}
V
vit9696 已提交
6848 6849 6850 6851 6852
  section.
\item Sign all OpenCore binaries (\texttt{BOOTX64.efi}, \texttt{BOOTIa32.efi},
  \texttt{Bootstrap.efi}, \texttt{OpenCore.efi}) used on this system with
  the same private key.
\item Sign all third-party operating system (not made by Microsoft or Apple)
6853
  bootloaders if needed. For Linux there is an option to install
V
vit9696 已提交
6854
  Microsoft-signed Shim bootloader as explained on e.g.
6855
  \href{https://wiki.debian.org/SecureBoot}{Debian Wiki}.
6856
\item Enable UEFI Secure Boot in firmware preferences and install the
6857
  certificate with a private key. Details on how to generate a certificate
D
dakanji 已提交
6858
  can be found in various articles, such as \href{https://habr.com/en/post/273497}{this one},
6859
  and are out of the scope of this document. If Windows is needed one
V
vit9696 已提交
6860 6861
  will also need to add the
  \href{http://go.microsoft.com/fwlink/?LinkID=321192}{Microsoft Windows Production CA 2011}.
6862
  To launch option ROMs or to use signed Linux drivers,
6863
  \href{http://go.microsoft.com/fwlink/?LinkId=321194}{Microsoft UEFI Driver Signing CA} will also be needed.
V
vit9696 已提交
6864
\item Password-protect changing firmware settings to ensure that UEFI Secure Boot
6865
  cannot be disabled without the user's knowledge.
V
vit9696 已提交
6866
\end{enumerate}
6867

V
vit9696 已提交
6868
\subsection{Windows support}\label{troubleshootingwin}
V
vit9696 已提交
6869

V
vit9696 已提交
6870 6871 6872
  \textbf{Can I install Windows?}

  While no official Windows support is provided, 64-bit UEFI Windows installations (Windows 8 and
V
vit9696 已提交
6873
  above) prepared with Boot Camp are supposed to work. Third-party UEFI installations
D
dakanji 已提交
6874
  as well as systems partially supporting UEFI boot, such as Windows 7, might work with
6875
  some extra precautions. Things to consider:
6876

V
vit9696 已提交
6877 6878 6879
  \begin{itemize}
  \item MBR (Master Boot Record) installations are legacy and will not be supported.
  \item All the modifications applied (to ACPI, NVRAM, SMBIOS, etc.) are supposed
V
vit9696 已提交
6880
  to be operating system agnostic, i.e. apply equally regardless of the OS booted.
V
vit9696 已提交
6881 6882 6883 6884 6885 6886
  This enables Boot Camp software experience on Windows.
  \item macOS requires the first partition to be EFI System Partition, and does
  not support the default Windows layout. While OpenCore does have a
  \href{https://github.com/acidanthera/bugtracker/issues/327}{workaround}
  for this, it is highly recommend not to rely on it and install properly.
  \item Windows may need to be reactivated. To avoid it consider
D
dakanji 已提交
6887 6888
  setting SystemUUID to the original firmware UUID. Be aware that it may be invalid
  on old firmware, i.e., not random. If there still are issues,
6889 6890
  consider using HWID or KMS38 license or making the use \texttt{Custom}
  \texttt{UpdateSMBIOSMode}. Other nuances of Windows activation are out of the
6891
  scope of this document and can be found online.
V
vit9696 已提交
6892 6893 6894
  \end{itemize}

  \textbf{What additional software do I need?}
6895

6896
  To enable operating system switching and install relevant drivers in the majority of
6897 6898
  cases Windows support software from
  \href{https://support.apple.com/boot-camp}{Boot Camp} is required. For simplicity of the download
6899 6900
  process or when configuring an already installed Windows version a third-party utility,
  \href{https://github.com/timsutton/brigadier}{Brigadier}, can be used successfully.
6901
  Note, that \href{https://www.7-zip.org}{7-Zip} may be downloaded and installed
V
vit9696 已提交
6902 6903
  prior to using Brigadier.

V
vit9696 已提交
6904 6905 6906 6907 6908
  Remember to always use the latest version of Windows support software from Boot Camp,
  as versions prior to 6.1 do not support APFS, and thus will not function correctly.
  To download newest software pass most recent Mac model to Brigadier, for example
  \texttt{./brigadier.exe -m iMac19,1}. To install Boot Camp on an unsupported Mac model
  afterwards run PowerShell as Administrator and enter \texttt{msiexec /i BootCamp.msi}.
6909 6910
  If there is a previous version of Boot Camp installed it should be
  removed first by running \texttt{msiexec /x BootCamp.msi} command. \texttt{BootCamp.msi}
V
vit9696 已提交
6911 6912 6913
  file is located in \texttt{BootCamp/Drivers/Apple} directory and can be reached through
  Windows Explorer.

V
vit9696 已提交
6914
  While Windows support software from Boot Camp solves most of compatibility problems,
6915
  the rest may still have to be addressed manually:
6916

V
vit9696 已提交
6917 6918 6919 6920 6921
  \begin{itemize}
  \item To invert mouse wheel scroll direction \texttt{FlipFlopWheel} must be set
  to \texttt{1} as explained on \href{https://superuser.com/a/364353}{SuperUser}.
  \item \texttt{RealTimeIsUniversal} must be set to \texttt{1} to avoid time
  desync between Windows and macOS as explained on
6922
  \href{https://superuser.com/q/494432}{SuperUser} (this is usually not needed).
D
dakanji 已提交
6923
  \item To access Apple filesystems such as HFS+ and APFS, separate software may need to
V
vit9696 已提交
6924
  be installed. Some of the known utilities are:
V
vit9696 已提交
6925
  \href{https://forums.macrumors.com/threads/apple-hfs-windows-driver-download.1368010/}{Apple HFS+ driver}
A
Andrey1970AppleLife 已提交
6926
  (\href{https://forums.macrumors.com/threads/apple-hfs-windows-driver-download.1368010/post-24180079}{hack for Windows 10}),
V
vit9696 已提交
6927 6928 6929 6930
  \href{http://www.catacombae.org/hfsexplorer}{HFSExplorer}, MacDrive, Paragon APFS,
  Paragon HFS+, TransMac, etc. Remember to never ever attempt to modify Apple file systems
  from Windows as this often leads to irrecoverable data loss.
  \end{itemize}
6931

6932
  \textbf{Why do I see \texttt{Basic data partition} in Boot Camp Startup Disk control panel?}
6933 6934

  Boot Camp control panel uses GPT partition table to obtain each boot option name.
6935
  After installing Windows separately the partition will have to be relabelled manually.
V
vit9696 已提交
6936
  This can be done with many utilities including open-source
6937 6938 6939 6940 6941 6942 6943 6944 6945 6946 6947 6948 6949 6950 6951 6952 6953 6954 6955 6956 6957 6958 6959 6960 6961 6962 6963 6964 6965 6966 6967 6968 6969 6970 6971 6972
  \href{https://sourceforge.net/projects/gptfdisk}{gdisk} utility. Reference example:

\begin{lstlisting}[caption=Relabeling Windows volume, label=relabel, style=ocbash]
PS C:\gdisk> .\gdisk64.exe \\.\physicaldrive0
GPT fdisk (gdisk) version 1.0.4

Command (? for help): p
Disk \\.\physicaldrive0: 419430400 sectors, 200.0 GiB
Sector size (logical): 512 bytes
Disk identifier (GUID): DEC57EB1-B3B5-49B2-95F5-3B8C4D3E4E12
Partition table holds up to 128 entries
Main partition table begins at sector 2 and ends at sector 33
First usable sector is 34, last usable sector is 419430366
Partitions will be aligned on 2048-sector boundaries
Total free space is 4029 sectors (2.0 MiB)

Number  Start (sector)    End (sector)  Size       Code  Name
   1            2048         1023999   499.0 MiB   2700  Basic data partition
   2         1024000         1226751   99.0 MiB    EF00  EFI system partition
   3         1226752         1259519   16.0 MiB    0C01  Microsoft reserved ...
   4         1259520       419428351   199.4 GiB   0700  Basic data partition

Command (? for help): c
Partition number (1-4): 4
Enter name: BOOTCAMP

Command (? for help): w

Final checks complete. About to write GPT data. THIS WILL OVERWRITE EXISTING PARTITIONS!!

Do you want to proceed? (Y/N): Y
OK; writing new GUID partition table (GPT) to \\.\physicaldrive0.
Disk synchronization succeeded! The computer should now use the new partition table.
The operation has completed successfully.
\end{lstlisting}

V
vit9696 已提交
6973

6974 6975 6976 6977
  \textbf{How to choose Windows BOOTCAMP with custom NTFS drivers?}

  Third-party drivers providing NTFS support, such as
  \href{https://www.tuxera.com/community/open-source-ntfs-3g}{NTFS-3G}, Paragon NTFS,
6978 6979
  Tuxera NTFS or \href{https://www.seagate.com/support/software/paragon}{Seagate Paragon Driver}
  break certain macOS functionality, including
6980 6981 6982
  \href{https://support.apple.com/HT202796}{Startup Disk} preference
  pane normally used for operating system selection. While the recommended option
  remains not to use such drivers as they commonly corrupt the filesystem, and prefer
6983 6984 6985
  the driver bundled with macOS with optional write support (
  \href{http://osxdaily.com/2013/10/02/enable-ntfs-write-support-mac-os-x}{command} or
  \href{https://mounty.app}{GUI}),
6986 6987 6988 6989
  there still exist vendor-specific workarounds for their products:
  \href{https://www.tuxera.com/products/tuxera-ntfs-for-mac/faq}{Tuxera},
  \href{https://kb.paragon-software.com/article/6604}{Paragon}, etc.

V
vit9696 已提交
6990 6991 6992 6993 6994 6995
\subsection{Debugging}\label{troubleshootingdebug}

Similar to other projects working with hardware OpenCore supports auditing and debugging.
The use of \texttt{NOOPT} or \texttt{DEBUG} build modes instead of \texttt{RELEASE}
can produce a lot more debug output. With \texttt{NOOPT} source level debugging with
GDB or IDA Pro is also available. For GDB check
6996
\href{https://github.com/acidanthera/OpenCorePkg/tree/master/Debug}{OpenCore Debug}
6997
page. For IDA Pro, version 7.3 or newer is needed, and
6998
\href{https://www.hex-rays.com/products/ida/support/tutorials/index.shtml}{Debugging the XNU Kernel with IDA Pro}
6999
may also help.
V
vit9696 已提交
7000

7001
To obtain the log during boot serial port debugging can be used. Serial port
7002 7003
debugging is enabled in \texttt{Target}, e.g. \texttt{0xB} for onscreen with serial. To
initialise serial within OpenCore use \texttt{SerialInit} configuration option.
7004
For macOS the best choice is CP2102-based UART devices. Connect motherboard \texttt{TX}
7005
to USB UART \texttt{RX}, and motherboard \texttt{GND} to USB UART \texttt{GND}. Use
V
vit9696 已提交
7006 7007 7008
\texttt{screen} utility to get the output, or download GUI software, such as
\href{https://freeware.the-meiers.org}{CoolTerm}.

7009
\emph{Note}: On several motherboards (and possibly USB UART dongles) PIN naming may be
7010 7011
incorrect. It is very common to have \texttt{GND} swapped with \texttt{RX}, thus,
motherboard ``\texttt{TX}'' must be connected to USB UART \texttt{GND}, and motherboard ``\texttt{GND}''
7012 7013
to USB UART \texttt{RX}.

V
vit9696 已提交
7014 7015
Remember to enable \texttt{COM} port in firmware settings, and never use USB cables longer
than 1 meter to avoid output corruption. To additionally enable XNU kernel serial output
7016
\texttt{debug=0x8} boot argument is needed.
V
vit9696 已提交
7017

V
vit9696 已提交
7018 7019 7020 7021 7022 7023 7024 7025 7026 7027
\subsection{Tips and Tricks}\label{troubleshootingtricks}

\begin{enumerate}
\item
  \textbf{How to debug boot failure?}

  Normally it is enough to obtain the actual error message. For this
  ensure that:
  \begin{itemize}
  \tightlist
7028
  \item A \texttt{DEBUG} or \texttt{NOOPT} version of OpenCore is used.
V
vit9696 已提交
7029 7030 7031 7032 7033 7034 7035 7036
  \item Logging is enabled (\texttt{1}) and shown onscreen (\texttt{2}):
  \texttt{Misc} $\rightarrow$ \texttt{Debug} $\rightarrow$ \texttt{Target}
  $=$ \texttt{3}.
  \item Logged messages from at least \texttt{DEBUG\_ERROR}
  (\texttt{0x80000000}), \texttt{DEBUG\_WARN} (\texttt{0x00000002}), and
  \texttt{DEBUG\_INFO} (\texttt{0x00000040}) levels are visible onscreen:
  \texttt{Misc} $\rightarrow$ \texttt{Debug} $\rightarrow$ \texttt{DisplayLevel}
  $=$ \texttt{0x80000042}.
D
dakanji 已提交
7037
  \item Critical error messages, such as \texttt{DEBUG\_ERROR}, stop booting:
V
vit9696 已提交
7038 7039 7040
  \texttt{Misc} $\rightarrow$ \texttt{Security}
  $\rightarrow$ \texttt{HaltLevel} $=$ \texttt{0x80000000}.
  \item Watch Dog is disabled to prevent automatic reboot:
A
Andrey1970AppleLife 已提交
7041
  \texttt{Misc} $\rightarrow$ \texttt{Debug} $\rightarrow$
V
vit9696 已提交
7042 7043 7044 7045 7046 7047
  \texttt{DisableWatchDog} $=$ \texttt{true}.
  \item Boot Picker (entry selector) is enabled: \texttt{Misc}
  $\rightarrow$ \texttt{Boot} $\rightarrow$ \texttt{ShowPicker} $=$ \texttt{true}.
  \end{itemize}

  If there is no obvious error, check the available hacks in \texttt{Quirks} sections
V
vit9696 已提交
7048
  one by one. For early boot troubleshooting, for instance, when OpenCore menu does not appear,
A
Andrey1970AppleLife 已提交
7049
  using \texttt{UEFI Shell} (bundled with OpenCore) may help to see
V
vit9696 已提交
7050
  early debug messages.
V
vit9696 已提交
7051

V
vit9696 已提交
7052 7053 7054 7055 7056
\item
  \textbf{How to debug macOS boot failure?}

  \begin{itemize}
  \tightlist
D
dakanji 已提交
7057
  \item Refer to \texttt{boot-args} values such as \texttt{debug=0x100}, \texttt{keepsyms=1},
V
vit9696 已提交
7058 7059 7060
    \texttt{-v}, and similar.
  \item Do not forget about \texttt{AppleDebug} and \texttt{ApplePanic} properties.
  \item Take care of \texttt{Booter}, \texttt{Kernel}, and \texttt{UEFI} quirks.
7061 7062
  \item Consider using serial port to inspect early kernel boot failures. For this
    \texttt{debug=0x108}, \texttt{serial=5}, and \texttt{msgbuf=1048576} boot arguments are needed.
V
vit9696 已提交
7063 7064 7065 7066
    Refer to the patches in Sample.plist when dying before serial init.
  \item Always read the logs carefully.
  \end{itemize}

V
vit9696 已提交
7067 7068 7069 7070 7071 7072 7073 7074
\item
  \textbf{How to customise boot entries?}

  OpenCore follows standard Apple Bless model and extracts the entry name
  from \texttt{.contentDetails} and \texttt{.disk\_label.contentDetails} files in the
  booter directory if present. These files contain an ASCII string with an entry title,
  which may then be customised by the user.

V
vit9696 已提交
7075 7076 7077 7078 7079 7080 7081 7082
\item
  \textbf{How to choose the default boot entry?}

  OpenCore uses the primary UEFI boot option to select the default entry. This choice
  can be altered from UEFI Setup, with the macOS
  \href{https://support.apple.com/HT202796}{Startup Disk} preference, or the Windows
  \href{https://support.apple.com/guide/bootcamp-control-panel/start-up-your-mac-in-windows-or-macos-bcmp29b8ac66/mac}{Boot Camp} Control Panel.
  Since choosing OpenCore's \texttt{BOOTx64.EFI} as a primary boot option limits this
D
dakanji 已提交
7083
  functionality in addition to several types of firmware deleting incompatible boot options,
7084 7085
  potentially including those created by macOS, users are strongly encouraged to use the
  \texttt{RequestBootVarRouting} quirk, which will preserve the selection made in
V
vit9696 已提交
7086 7087 7088
  the operating system within the OpenCore variable space. Note, that \texttt{RequestBootVarRouting}
  requires a separate driver for functioning.

7089
\item \label{reinstallmacos}
V
vit9696 已提交
7090 7091 7092 7093 7094 7095 7096
  \textbf{What is the simplest way to install macOS?}

  Copy online recovery image (\texttt{*.dmg} and \texttt{*.chunklist} files)
  to \texttt{com.apple.recovery.boot} directory on a FAT32 partition with OpenCore.
  Load OpenCore Boot Picker and choose the entry, it will have a \texttt{(dmg)} suffix.
  Custom name may be created by providing \texttt{.contentDetails} file.

7097 7098 7099
  To download recovery online
  \href{https://github.com/acidanthera/OpenCorePkg/blob/master/Utilities/macrecovery/macrecovery.py}{macrecovery.py}
  can be used.
V
vit9696 已提交
7100

V
vit9696 已提交
7101 7102
  For offline installation refer to
  \href{https://support.apple.com/HT201372}{How to create a bootable installer for macOS}
7103
  article. Apart from App Store and \texttt{softwareupdate} utility there also are
V
vit9696 已提交
7104
  \href{https://github.com/corpnewt/gibMacOS}{third-party utilities} to download an offline image.
V
vit9696 已提交
7105

7106
\item
V
vit9696 已提交
7107
  \textbf{Why do online recovery images (\texttt{*.dmg}) fail to load?}
7108 7109

  This may be caused by missing HFS+ driver, as all presently known recovery volumes
A
Andrey1970AppleLife 已提交
7110
  have HFS+ filesystem.
7111

V
vit9696 已提交
7112 7113 7114 7115 7116
\item
  \textbf{Can I use this on Apple hardware or virtual machines?}

  Sure, most relatively modern Mac models including \texttt{MacPro5,1} and virtual machines
  are fully supported. Even though there are little to none specific details relevant to
V
vit9696 已提交
7117 7118
  Mac hardware, some ongoing instructions can be found on
  \href{https://forums.macrumors.com/threads/opencore-on-the-mac-pro.2207814}{MacRumors.com}.
V
vit9696 已提交
7119

7120 7121 7122
\item
  \textbf{Why do Find\&Replace patches must equal in length?}

A
Andrey1970AppleLife 已提交
7123
  For machine code (x86 code) it is not possible to do differently sized replacements due to
7124 7125 7126
  \href{https://en.wikipedia.org/w/index.php?title=Relative_addressing}{relative addressing}.
  For ACPI code this is risky, and is technically equivalent to ACPI table replacement,
  thus not implemented. More detailed explanation can be found on
V
vit9696 已提交
7127 7128 7129 7130 7131 7132 7133 7134
  \href{https://applelife.ru/posts/819790}{AppleLife.ru} or in the ACPI section of this document.

\item
  \textbf{How can I decide which \texttt{Booter} quirks to use?}

  These quirks originate from \texttt{AptioMemoryFix} driver but provide a wider
  set of changes specific to modern systems. Note, that \texttt{OpenRuntime}
  driver is required for most configurations. To get a configuration similar
7135
  to \texttt{AptioMemoryFix} the following set of quirks should be enabled:
V
vit9696 已提交
7136 7137 7138 7139 7140 7141 7142 7143 7144 7145 7146 7147 7148 7149
  \begin{itemize}
  \tightlist
  \item \texttt{ProvideConsoleGop} (UEFI quirk)
  \item \texttt{AvoidRuntimeDefrag}
  \item \texttt{DiscardHibernateMap}
  \item \texttt{EnableSafeModeSlide}
  \item \texttt{EnableWriteUnprotector}
  \item \texttt{ForceExitBootServices}
  \item \texttt{ProtectMemoryRegions}
  \item \texttt{ProvideCustomSlide}
  \item \texttt{RebuildAppleMemoryMap}
  \item \texttt{SetupVirtualMap}
  \end{itemize}

D
dakanji 已提交
7150
  However, as of today, such set is strongly discouraged as some of these quirks
V
vit9696 已提交
7151 7152 7153 7154 7155
  are not necessary to be enabled or need additional quirks. For example,
  \texttt{DevirtualiseMmio} and \texttt{ProtectUefiServices} are often required,
  while \texttt{DiscardHibernateMap} and \texttt{ForceExitBootServices} are rarely
  necessary.

D
dakanji 已提交
7156
  Unfortunately for some quirks such as \texttt{RebuildAppleMemoryMap},
V
vit9696 已提交
7157
  \texttt{EnableWriteUnprotector}, \texttt{ProtectMemoryRegions},
7158 7159 7160 7161
  \texttt{SetupVirtualMap}, and \texttt{SyncRuntimePermissions} there
  is no definite approach even on similar systems, so trying all their
  combinations may be required for optimal setup. Refer to individual quirk
  descriptions in this document for more details.
7162

V
vit9696 已提交
7163
\end{enumerate}
V
vit9696 已提交
7164 7165

\end{document}