
The main thing is that this DSL allows us to provide an interface that can be serialized to the JSON API. Changes: - Homebrew::Service - Adds `#service_name` and `#plist_name` methods - Each is now included in the `#serialize` method as well - Eval block on instantiation - Before we lazy evaluated this but the cost is not significant and it complicated the code a bunch. This only gets called during install, when evaluating caveats and in the `brew service` command. It skips this evaluation if the service block isn't there. - Add `#command?` helper to avoid `#command.blank?` and `#command.present?` - Formula - `#service` now returns a service whenever it's called. This call is hidden behind a call to `#service?` most of the time anyway so this should be fine. - `#plist_name` and `#service_name` now call the methods of the same name on the service class. This should have already been in the service object to begin with and keeping these methods here helps preserve backwards compatibility with people who were overwriting these methods before. - Caveats - Prefer `service#command?` - Add helpers for checking on service commands - This duplicates some of the work in `brew services`. Maybe we should merge that repo in at some point. - Check for installed service at `#plist_name` or `#service_name`. I think this should be used instead of `Keg#plist_installed?` which checked for any plist file. We should think about deprecating `#plist_installed?` in the future. - Stop using `ps aux | grep #{formula.plist_name}` to check for service files because it was inaccurate (it always returns true on my machine) because the grep process is started before the ps process. - Note: The behavior is the same as it was before. This means that caveats only show up for custom service files on install or if they're already installed. Otherwise it won't show up in `brew info`. This is because it has to check first if the service file has been installed. - Utils::Service - Add utils for evaluating if a service is installed and running. This duplicates some of the work already found in `brew services`. We should seriously consider merging `brew services` with the main brew repo in the future since it's already tightly coupled to the code in the main repo. - Formulary.load_formula_from_api - Be more explicit about which types can be deserialized into run params since it is now possible for run params to be nil. - Update and add tests
434 lines
13 KiB
Ruby
434 lines
13 KiB
Ruby
# typed: true
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# frozen_string_literal: true
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require "utils/shell"
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# Checks to perform on a formula's cellar.
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#
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# @api private
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module FormulaCellarChecks
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extend T::Helpers
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abstract!
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sig { abstract.returns(Formula) }
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def formula; end
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sig { abstract.params(output: T.nilable(String)).void }
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def problem_if_output(output); end
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def check_env_path(bin)
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# warn the user if stuff was installed outside of their PATH
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return unless bin.directory?
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return if bin.children.empty?
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prefix_bin = (HOMEBREW_PREFIX/bin.basename)
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return unless prefix_bin.directory?
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prefix_bin = prefix_bin.realpath
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return if ORIGINAL_PATHS.include? prefix_bin
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<<~EOS
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"#{prefix_bin}" is not in your PATH.
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You can amend this by altering your #{Utils::Shell.profile} file.
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EOS
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end
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def check_manpages
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# Check for man pages that aren't in share/man
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return unless (formula.prefix/"man").directory?
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<<~EOS
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A top-level "man" directory was found.
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Homebrew requires that man pages live under "share".
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This can often be fixed by passing `--mandir=\#{man}` to `configure`.
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EOS
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end
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def check_infopages
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# Check for info pages that aren't in share/info
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return unless (formula.prefix/"info").directory?
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<<~EOS
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A top-level "info" directory was found.
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Homebrew suggests that info pages live under "share".
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This can often be fixed by passing `--infodir=\#{info}` to `configure`.
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EOS
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end
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def check_jars
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return unless formula.lib.directory?
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jars = formula.lib.children.select { |g| g.extname == ".jar" }
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return if jars.empty?
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<<~EOS
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JARs were installed to "#{formula.lib}".
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Installing JARs to "lib" can cause conflicts between packages.
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For Java software, it is typically better for the formula to
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install to "libexec" and then symlink or wrap binaries into "bin".
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See formulae 'activemq', 'jruby', etc. for examples.
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The offending files are:
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#{jars * "\n "}
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EOS
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end
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VALID_LIBRARY_EXTENSIONS = %w[.a .jnilib .la .o .so .jar .prl .pm .sh].freeze
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def valid_library_extension?(filename)
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VALID_LIBRARY_EXTENSIONS.include? filename.extname
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end
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alias generic_valid_library_extension? valid_library_extension?
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def check_non_libraries
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return unless formula.lib.directory?
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non_libraries = formula.lib.children.reject do |g|
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next true if g.directory?
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valid_library_extension? g
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end
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return if non_libraries.empty?
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<<~EOS
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Non-libraries were installed to "#{formula.lib}".
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Installing non-libraries to "lib" is discouraged.
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The offending files are:
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#{non_libraries * "\n "}
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EOS
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end
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def check_non_executables(bin)
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return unless bin.directory?
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non_exes = bin.children.select { |g| g.directory? || !g.executable? }
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return if non_exes.empty?
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<<~EOS
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Non-executables were installed to "#{bin}".
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The offending files are:
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#{non_exes * "\n "}
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EOS
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end
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def check_generic_executables(bin)
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return unless bin.directory?
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generic_names = %w[service start stop]
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generics = bin.children.select { |g| generic_names.include? g.basename.to_s }
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return if generics.empty?
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<<~EOS
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Generic binaries were installed to "#{bin}".
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Binaries with generic names are likely to conflict with other software.
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Homebrew suggests that this software is installed to "libexec" and then
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symlinked as needed.
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The offending files are:
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#{generics * "\n "}
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EOS
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end
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def check_easy_install_pth(lib)
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pth_found = Dir["#{lib}/python{2.7,3}*/site-packages/easy-install.pth"].map { |f| File.dirname(f) }
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return if pth_found.empty?
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<<~EOS
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'easy-install.pth' files were found.
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These '.pth' files are likely to cause link conflicts.
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Please invoke `setup.py` using 'Language::Python.setup_install_args'.
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The offending files are:
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#{pth_found * "\n "}
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EOS
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end
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def check_elisp_dirname(share, name)
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return unless (share/"emacs/site-lisp").directory?
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# Emacs itself can do what it wants
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return if name == "emacs"
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bad_dir_name = (share/"emacs/site-lisp").children.any? do |child|
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child.directory? && child.basename.to_s != name
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end
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return unless bad_dir_name
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<<~EOS
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Emacs Lisp files were installed into the wrong "site-lisp" subdirectory.
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They should be installed into:
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#{share}/emacs/site-lisp/#{name}
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EOS
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end
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def check_elisp_root(share, name)
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return unless (share/"emacs/site-lisp").directory?
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# Emacs itself can do what it wants
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return if name == "emacs"
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elisps = (share/"emacs/site-lisp").children.select do |file|
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Keg::ELISP_EXTENSIONS.include? file.extname
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end
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return if elisps.empty?
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<<~EOS
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Emacs Lisp files were linked directly to "#{HOMEBREW_PREFIX}/share/emacs/site-lisp".
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This may cause conflicts with other packages.
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They should instead be installed into:
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#{share}/emacs/site-lisp/#{name}
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The offending files are:
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#{elisps * "\n "}
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EOS
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end
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def check_python_packages(lib, deps)
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return unless lib.directory?
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lib_subdirs = lib.children
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.select(&:directory?)
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.map(&:basename)
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pythons = lib_subdirs.map do |p|
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match = p.to_s.match(/^python(\d+\.\d+)$/)
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next if match.blank?
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next if match.captures.blank?
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match.captures.first
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end.compact
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return if pythons.blank?
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python_deps = deps.map(&:name)
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.grep(/^python(@.*)?$/)
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.map { |d| Formula[d].version.to_s[/^\d+\.\d+/] }
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.compact
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return if python_deps.blank?
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return if pythons.any? { |v| python_deps.include? v }
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pythons = pythons.map { |v| "Python #{v}" }
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python_deps = python_deps.map { |v| "Python #{v}" }
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<<~EOS
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Packages have been installed for:
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#{pythons * "\n "}
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but this formula depends on:
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#{python_deps * "\n "}
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EOS
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end
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def check_shim_references(prefix)
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return unless prefix.directory?
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keg = Keg.new(prefix)
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matches = []
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keg.each_unique_file_matching(HOMEBREW_SHIMS_PATH) do |f|
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match = f.relative_path_from(keg.to_path)
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next if match.to_s.match? %r{^share/doc/.+?/INFO_BIN$}
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matches << match
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end
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return if matches.empty?
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<<~EOS
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Files were found with references to the Homebrew shims directory.
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The offending files are:
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#{matches * "\n "}
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EOS
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end
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def check_plist(prefix, plist)
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return unless prefix.directory?
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plist = begin
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Plist.parse_xml(plist, marshal: false)
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rescue
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nil
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end
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return if plist.blank?
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program_location = plist["ProgramArguments"]&.first
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key = "first ProgramArguments value"
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if program_location.blank?
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program_location = plist["Program"]
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key = "Program"
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end
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return if program_location.blank?
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Dir.chdir("/") do
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unless File.exist?(program_location)
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return <<~EOS
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The plist "#{key}" does not exist:
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#{program_location}
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EOS
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end
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return if File.executable?(program_location)
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end
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<<~EOS
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The plist "#{key}" is not executable:
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#{program_location}
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EOS
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end
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def check_python_symlinks(name, keg_only)
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return unless keg_only
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return unless name.start_with? "python"
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return if %w[pip3 wheel3].none? do |l|
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link = HOMEBREW_PREFIX/"bin"/l
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link.exist? && File.realpath(link).start_with?(HOMEBREW_CELLAR/name)
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end
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"Python formulae that are keg-only should not create `pip3` and `wheel3` symlinks."
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end
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def check_service_command(formula)
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return unless formula.prefix.directory?
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return unless formula.service?
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return unless formula.service.command?
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"Service command does not exist" unless File.exist?(formula.service.command.first)
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end
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def check_cpuid_instruction(formula)
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# Checking for `cpuid` only makes sense on Intel:
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# https://en.wikipedia.org/wiki/CPUID
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return unless Hardware::CPU.intel?
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dot_brew_formula = formula.prefix/".brew/#{formula.name}.rb"
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return unless dot_brew_formula.exist?
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return unless dot_brew_formula.read.include? "ENV.runtime_cpu_detection"
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# macOS `objdump` is a bit slow, so we prioritise llvm's `llvm-objdump` (~5.7x faster)
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# or binutils' `objdump` (~1.8x faster) if they are installed.
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objdump = Formula["llvm"].opt_bin/"llvm-objdump" if Formula["llvm"].any_version_installed?
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objdump ||= Formula["binutils"].opt_bin/"objdump" if Formula["binutils"].any_version_installed?
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objdump ||= which("objdump")
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objdump ||= which("objdump", ORIGINAL_PATHS)
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unless objdump
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return <<~EOS
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No `objdump` found, so cannot check for a `cpuid` instruction. Install `objdump` with
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brew install binutils
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EOS
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end
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keg = Keg.new(formula.prefix)
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return if keg.binary_executable_or_library_files.any? do |file|
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cpuid_instruction?(file, objdump)
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end
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"No `cpuid` instruction detected. #{formula} should not use `ENV.runtime_cpu_detection`."
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end
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def check_binary_arches(formula)
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return unless formula.prefix.directory?
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keg = Keg.new(formula.prefix)
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mismatches = {}
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keg.binary_executable_or_library_files.each do |file|
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farch = file.arch
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mismatches[file] = farch if farch != Hardware::CPU.arch
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end
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return if mismatches.empty?
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compatible_universal_binaries, mismatches = mismatches.partition do |file, arch|
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arch == :universal && file.archs.include?(Hardware::CPU.arch)
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end.map(&:to_h) # To prevent transformation into nested arrays
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universal_binaries_expected = if formula.tap.present? && formula.tap.core_tap?
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formula.tap.audit_exception(:universal_binary_allowlist, formula.name)
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else
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true
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end
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return if mismatches.empty? && universal_binaries_expected
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mismatches_expected = formula.tap.blank? ||
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formula.tap.audit_exception(:mismatched_binary_allowlist, formula.name)
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return if compatible_universal_binaries.empty? && mismatches_expected
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return if universal_binaries_expected && mismatches_expected
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s = ""
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if mismatches.present? && !mismatches_expected
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s += <<~EOS
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Binaries built for a non-native architecture were installed into #{formula}'s prefix.
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The offending files are:
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#{mismatches.map { |m| "#{m.first}\t(#{m.last})" } * "\n "}
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EOS
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end
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if compatible_universal_binaries.present? && !universal_binaries_expected
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s += <<~EOS
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Unexpected universal binaries were found.
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The offending files are:
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#{compatible_universal_binaries.keys * "\n "}
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EOS
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end
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s
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end
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def audit_installed
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@new_formula ||= false
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problem_if_output(check_manpages)
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problem_if_output(check_infopages)
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problem_if_output(check_jars)
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problem_if_output(check_service_command(formula))
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problem_if_output(check_non_libraries) if @new_formula
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problem_if_output(check_non_executables(formula.bin))
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problem_if_output(check_generic_executables(formula.bin))
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problem_if_output(check_non_executables(formula.sbin))
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problem_if_output(check_generic_executables(formula.sbin))
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problem_if_output(check_easy_install_pth(formula.lib))
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problem_if_output(check_elisp_dirname(formula.share, formula.name))
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problem_if_output(check_elisp_root(formula.share, formula.name))
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problem_if_output(check_python_packages(formula.lib, formula.deps))
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problem_if_output(check_shim_references(formula.prefix))
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problem_if_output(check_plist(formula.prefix, formula.plist))
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problem_if_output(check_python_symlinks(formula.name, formula.keg_only?))
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problem_if_output(check_cpuid_instruction(formula))
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problem_if_output(check_binary_arches(formula))
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end
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alias generic_audit_installed audit_installed
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private
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def relative_glob(dir, pattern)
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File.directory?(dir) ? Dir.chdir(dir) { Dir[pattern] } : []
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end
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def cpuid_instruction?(file, objdump = "objdump")
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@instruction_column_index ||= {}
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@instruction_column_index[objdump] ||= begin
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objdump_version = Utils.popen_read(objdump, "--version")
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if (objdump_version.match?(/^Apple LLVM/) && MacOS.version <= :mojave) ||
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objdump_version.exclude?("LLVM")
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2 # Mojave `objdump` or GNU Binutils `objdump`
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else
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1 # `llvm-objdump` or Catalina+ `objdump`
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end
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end
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has_cpuid_instruction = T.let(false, T::Boolean)
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Utils.popen_read(objdump, "--disassemble", file) do |io|
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until io.eof?
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instruction = io.readline.split("\t")[@instruction_column_index[objdump]]&.strip
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has_cpuid_instruction = instruction == "cpuid" if instruction.present?
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break if has_cpuid_instruction
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end
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end
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has_cpuid_instruction
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end
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end
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require "extend/os/formula_cellar_checks"
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