11/19/2022 0 Comments Zenmap os x# Create packages (.pkg) for all the components to install in the installer (.mpkg) $( IMAGE_STAGING_DIR)/ $( PKG_NAME): check-nmap check-ncat check-ndiff check-zenmap check-nping LICENSE.formattedĬp -rf $( EXTRA_DIST) $( IMAGE_STAGING_DIR)/ #$(IMAGE_STAGING_DIR)/$(PKG_NAME): check-nmap check-ncat check-ndiff check-zenmap check-nping LICENSE.formatted Tool-checks: have- $( CC) have-jhbuild have-gtk-mac-bundler check_test.sh $( README_FILE) $( LICENSE_FILE) $( 3RD_P_LIC_FILE) $( LICENSES_FILE) # Check the created disk image for the sizes, backgrounds and icons presence and positions createdmg.sh $( IMAGE_STAGING_DIR) $( README_FILE) $( LICENSE_FILE) $( 3RD_P_LIC_FILE) $( LICENSES_FILE) Rm -f Create the dmg disk image and convert it to read only disk $( IMAGE_NAME): tool-checks $( IMAGE_STAGING_DIR)/ $( PKG_NAME) # These are the positions used by the createdmg.sh and check_test.sh scripts LIBZ_STATIC = $( JHBUILD_PREFIX)/lib/libz.a OPENSSL_STATIC = $( JHBUILD_PREFIX)/lib/libssl.a $( JHBUILD_PREFIX)/lib/libcrypto.a PYTHON = $( JHBUILD_PREFIX)/bin/python2.7 UNIVERSAL_LDFLAGS = -stdlib=libstdc++ -Wl,-syslibroot,/Applications/Xcode.app/Contents/Developer/Platforms/atform/Developer/SDKs/MacOSX $( OSX_VERSION).sdk -mmacosx-version-min= $( OSX_MIN_VERSION) $( UNIVERSAL_ARCHFLAGS)ĬONFIGURE_ARGS += $( UNIVERSAL_CONFIGURE_ARGS) UNIVERSAL_CXXFLAGS = $( UNIVERSAL_CFLAGS) UNIVERSAL_CFLAGS = $( UNIVERSAL_CPPFLAGS) -mmacosx-version-min= $( OSX_MIN_VERSION) $( UNIVERSAL_ARCHFLAGS) UNIVERSAL_CPPFLAGS = -isysroot /Applications/Xcode.app/Contents/Developer/Platforms/atform/Developer/SDKs/MacOSX $( OSX_VERSION).sdk # turn uses the arch value to decide which of its bootstrappers to # ("fat" or "universal") or a single one ("i386" or "ppc"). # sniffs it to determine whether to return a universal architecture # Setting ARCHFLAGS separately is required. UNIVERSAL_CONFIGURE_ARGS = -disable-dependency-tracking docs/licensesĬONFIGURE_ARGS = -prefix=" $( PREFIX)" -with-libdnet=included -with-libpcap=included -with-libpcre=included -with-liblua=included CC=" $( CC)" CXX=" $( CXX)" CFLAGS=" $( CFLAGS)" CXXFLAGS=" $( CXXFLAGS)" LDFLAGS=" $( LDFLAGS)" PYTHON=" $( PYTHON)" NAME_VERSION = nmap- $( NMAP_VERSION)$( if $( APPENDAGE),- $( APPENDAGE))ĮXTRA_DIST = README.md. #OSX_VERSION=$(shell sw_vers -productVersion | cut -d'.' -f1,2 | tr -d ' ') Click the “Controls” button and use the Zoom functions to enlarge the picture if necessary.# This makefile builds a disk image (.dmg) containing the installer for Nmap,Įxport NMAP_VERSION := $( shell echo NMAP_VERSION | $( CPP) -imacros. Click the “Topology” tab to see the overview of your entire network. You can also see a graphic representation of your network, called a network topology. After the scan, the OS icons will change in the hosts list on the left and the Ports/Hosts tab plus the “Host Details” tab will offer more information about each host. Run an Intense scan against 192.168.1.1/24 to discover all the open ports and operating system on each host. Zenmap will scan the host for open ports and populate the “Ports/Hosts” tab: But if we start a port scan of that host, the “Ports/Hosts” tab will be populated with the new information.Įnter one of the hosts in your network into the “Target” field, select “Regular scan” from the Profile drop-down list and click “Scan”. If you select a host from the list on the left and then click on the “Ports/Hosts” tab, there will be no information. This means the more scans you do, the more information is available.Īfter a Ping scan, there is no information about the open ports. Each one of these tabs shows more information about your network and the information presented is accumulative. Above the output pane is a set of tabs: “Nmap Output”, “Ports/Hosts”, “Topology”, “Host Details” and “Scans”. Down the left side of the window, you will see a list of the devices (hosts) found on your network and on the right, the output from the nmap command.
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