1<HTML> 2<HEAD> 3<TITLE> 4Building the TIFF Software Distribution 5</TITLE> 6</HEAD> 7<BODY BGCOLOR=white> 8<FONT FACE="Arial, Helvetica, Sans"> 9<H1> 10<IMG SRC=images/cramps.gif WIDTH=159 HEIGHT=203 ALIGN=left BORDER=1 HSPACE=6> 11Building the Software Distribution 12</H1> 13 14<UL> 15<LI><A HREF=#UNIX>Building on a UNIX system</A>. 16<LI><A HREf=#MacMPW>Building on a Macintosh system with MPW</A>. 17<LI><A HREf=#MacCW>Building on a Macintosh system with CodeWarrior</A>. 18<LI><A HREF=#PC>Building on an MS-DOS or Windows system</A>. 19<LI><A HREF=#DJGPP>Building on MS-DOS with the DJGPP v2 compiler</A>. 20<LI><A HREF=#VMS>Building on a VMS system</A>. 21<LI><A HREF=#Acorn>Building on an Acorn RISC OS system</A>. 22<LI><A HREF=#Other>Building the Software on Other Systems</A> 23</UL> 24 25<BR CLEAR=left> 26 27This chapter contains step-by-step instructions on how to configure 28and build the TIFF software distribution. 29The software is most easily built on a UNIX system, but with a little 30bit of work it can easily be built and used on other non-UNIX platforms. 31 32<A NAME=UNIX><HR><H2>Building on a UNIX System</H2></A> 33 34To build the software on a UNIX system you need to first run the configure 35shell script that is located in the top level of the source directory. This 36script probes the target system for necessary tools and functions and 37constructs a build environment in which the software may be compiled. 38 39Once configuration is done, you simply run <TT>make</TT> (or <TT>gmake</TT>) 40to build the software and then <TT>make install</TT> to do the installation; 41for example: 42 43<UL><PRE> 44hyla% <B>cd tiff-v3.4beta099</B> 45hyla% <B>./configure</B> 46 <I>...lots of messages...</I> 47hyla% <B>make</B> 48 <I>...lots of messages...</I> 49hyla# <B>make install</B> 50</PRE></UL> 51 52Supplied makefiles are depend on GNU <TT>make</TT> utility, so you will need 53the one. Depending on your installation <B>make</B> command may invoke 54standard system <TT>make</TT> and <B>gmake</B> invoke GNU make. In this case 55you should use former. If you don't have <TT>make</TT> at all, but only 56<TT>gmake</TT>, you should export environment variable <TT>MAKE=gmake</TT> 57before <B>./configure</B>. 58 59<P> 60 61In general, the software is designed such that the following should be 62``<I>make-able</I>'' in each directory: 63 64<UL><PRE> 65make [all] build stuff 66make install build&install stuff 67make clean remove .o files, executables and cruft 68make distclean remove everything, that can be recreated 69</PRE></UL> 70 71Note that after running "<TT>make distclean</TT>" the <TT>configure</TT> 72script must be run again to create the Makefiles and other make-related files. 73 74<A NAME="BuildTrees"><P><HR WIDTH=65% ALIGN=right><H3>Build Trees</H3></A> 75 76There are two schemes for configuring and building the software. If you intend 77to build the software for only one target system, you can configure the 78software so that it is built in the same directories as the source code. 79 80<UL><PRE> 81hyla% <B>cd tiff-v3.4beta099</B> 82hyla% <B>ls</B> 83COPYRIGHT VERSION config.sub dist man 84Makefile.in config.guess configure html port 85README config.site contrib libtiff tools 86hyla% <B>./configure</B> 87</PRE></UL> 88 89<P> 90Otherwise, you can configure a build tree that is parallel to the source tree 91hierarchy but which contains only configured files and files created during 92the build procedure. 93 94<UL><PRE> 95hyla% <B>cd tiff-v3.4beta099</B> 96hyla% <B>mkdir obj obj/mycpu</B> 97hyla% <B>cd obj/mycpu</B> 98hyla% <B>../../configure</B> 99</PRE></UL> 100 101This second scheme is useful for: 102 103<UL> 104<LI>building multiple targets from a single source tree 105<LI>building from a read-only source tree (e.g. if you receive 106 the distribution on CD-ROM) 107</UL> 108 109<A NAME="ConfigOptions"><P><HR WIDTH=65% ALIGN=right> 110 <H3>Configuration Options</H3></A> 111 112The configuration process is critical to the proper compilation, installation, 113and operation of the software. The configure script runs a series of tests to 114decide whether or not the target system supports required functionality and, 115if it does not, whether it can emulate or workaround the missing functions. 116This procedure is fairly complicated and, due to the nonstandard nature of 117most UNIX systems, prone to error. The first time that you configure the 118software for use you should check the output from the configure script and 119look for anything that does not make sense for your system. 120 121<P> 122A second function of the configure script is to set the default configuration 123parameters for the software. Of particular note are the directories where the 124software is to be installed. By default the software is installed in the 125<B>/usr/local</B> hierarchy. To change this behaviour the appropriate 126parameters can be specified on the command line to configure. Run 127<B>./configure --help</B> to get a list of possible options. Installation 128related options are shown below. 129 130<PRE><TT> 131Installation directories: 132 --prefix=PREFIX install architecture-independent files in PREFIX 133 [/usr/local] 134 --exec-prefix=EPREFIX install architecture-dependent files in EPREFIX 135 [PREFIX] 136 137By default, `make install' will install all the files in 138`/usr/local/bin', `/usr/local/lib' etc. You can specify 139an installation prefix other than `/usr/local' using `--prefix', 140for instance `--prefix=$HOME'. 141 142For better control, use the options below. 143 144Fine tuning of the installation directories: 145 --bindir=DIR user executables [EPREFIX/bin] 146 --sbindir=DIR system admin executables [EPREFIX/sbin] 147 --libexecdir=DIR program executables [EPREFIX/libexec] 148 --datadir=DIR read-only architecture-independent data [PREFIX/share] 149 --sysconfdir=DIR read-only single-machine data [PREFIX/etc] 150 --sharedstatedir=DIR modifiable architecture-independent data [PREFIX/com] 151 --localstatedir=DIR modifiable single-machine data [PREFIX/var] 152 --libdir=DIR object code libraries [EPREFIX/lib] 153 --includedir=DIR C header files [PREFIX/include] 154 --oldincludedir=DIR C header files for non-gcc [/usr/include] 155 --infodir=DIR info documentation [PREFIX/info] 156 --mandir=DIR man documentation [PREFIX/man] 157 158Program names: 159 --program-prefix=PREFIX prepend PREFIX to installed program names 160 --program-suffix=SUFFIX append SUFFIX to installed program names 161 --program-transform-name=PROGRAM run sed PROGRAM on installed program names 162</TT></PRE> 163 164<A NAME="Packages"><P><HR WIDTH=65% ALIGN=right> 165 <H3>Configuring Optional Packages/Support</H3></A> 166 167The TIFF software comes with several packages that are installed only as 168needed, or only if specifically configured at the time the configure script is 169run. Packages can be configured via the <B>configure</B> script commandline 170parameters. 171 172<DL> 173 <DT><I>Static/Shared Objects Support</I> 174 175 <DD><TT> 176 --enable-shared[=PKGS] build shared libraries [default=yes]<BR> 177 --enable-static[=PKGS] build static libraries [default=yes] 178 </TT> 179 180 <P>These options control whether or not to configure the software to 181 build a shared and static binaries for the TIFF library. Use of shared 182 libraries can significantly reduce the disk space needed for users of 183 the TIFF software. If shared libarries are not used then the code is 184 statically linked into each application that uses it. By default both 185 types of binaries is configured. 186 187 <P><TT> 188 --enable-rpath Enable runtime linker paths (-R libtool option) 189 </TT> 190 191 <P> Add library directories (see other options below) to the TIFF 192 library run-time linker path. 193 194 <P><DT><I>JPEG Support</I> 195 196 <DD><TT> 197 --disable-jpeg disable IJG JPEG library usage (required for JPEG compression, enabled by default) 198 --with-jpeg-include-dir=DIR location of IJG JPEG library headers 199 --with-jpeg-lib-dir=DIR location of IJG JPEG library binary) 200 </TT> 201 <DD>The <TT>JPEG</TT> package enables support for the handling of TIFF 202 images with JPEG-encoded data. Support for JPEG-encoded data requires 203 the Independent JPEG Group (IJG) <TT>libjpeg</TT> distribution; this 204 software is available at 205 <A HREF=ftp://ftp.uu.net/graphics/jpeg/>ftp.uu.net:/graphics/jpeg/</A>. 206 <B>configure</B> script automatically tries to search the working IJG 207 JPEG installation. If it fails to find library, JPEG support will be 208 automatically disabled.If you want specify the exact paths to library 209 binary and headers, use above switches for that. 210 211<P> 212<DT><I>ZIP Support</I> 213<DD>The <TT>ZIP</TT> support enables support for the handling 214of TIFF images with deflate-encoded data. 215Support for deflate-encoded data requires the freely available 216<TT>zlib</TT> distribution written by Jean-loup Gailly and Mark Adler; 217this software is available at 218<A HREF=ftp://ftp.uu.net/pub/archiving/zip/zlib/>ftp.uu.net:/pub/archiving/zip/zlib/</A> 219(or try <A HREF=ftp://quest.jpl.nasa.gov/beta/zlib/>quest.jpl.nasa.gov:/beta/zlib/</A>). 220If ZIP support is enabled the <TT>DIRS_LIBINC</TT> and <TT>DIR_GZLIB</TT> 221parameters should also be set (see below). 222By default this package is not configured. 223 224</DL> 225 226<A NAME="Sample"><P><HR WIDTH=65% ALIGN=right><H3>A Sample Configuration Session</H3></A> 227 228This section shows a sample configuration session and describes 229the work done. The session is shown indented in a <TT>fixed width 230font</TT> with user-supplied input in a <TT><B>bold font</B></TT>. 231Comments are shown in a normal or <I>italic</I> font. 232This session was collected on a 486 machine running BSDI 1.1. 233 234<UL><PRE><TT> 235wullbrandt% <B>mkdir tiff</B> 236wullbrandt% <B>cd tiff</B> 237wullbrandt% <B>ln -s /hosts/oxford/usr/people/sam/tiff src</B> 238</TT></PRE></UL> 239 240A build tree separate from the source tree is used here. 241In fact, in this case the distribution is accessed from 242a read-only NFS-mounted filesystem. 243 244<UL><PRE><TT> 245wullbrandt% <B>src/configure</B> 246Configuring TIFF Software v3.4beta015. 247 248Reading site-wide parameters from ../tiff-v3.4beta015/config.site. 249Reading local parameters from config.local. 250Gosh, aren't you lucky to have a i386-unknown-bsdi1.1 system! 251</TT></PRE></UL> 252 253Note that configure announces the distribution version and the 254deduced target configuration (<TT>i386-unknown-bsdi1.1</TT> here). 255 256<UL><PRE><TT> 257Using /usr/local/bin/gcc for a C compiler (set CC to override). 258Looks like /usr/local/bin/gcc supports the -g option. 259Using " -g" for C compiler options. 260</TT></PRE></UL> 261 262configure checked the normal shell search path for potential 263ANSI C compilers. The compiler is selected according to it properly 264compiling a small ANSI C test program. A specific compiler may be requested 265by setting the <TT>CC</TT> environment variable to the appropriate 266pathname, by supplying the parameter on the command line, e.g. 267<TT>-with-CC=gcc</TT>, or by setting <TT>CC</TT> in a configuration 268file. 269 270<P> 271<IMG SRC="images/info.gif" ALIGN=left HSPACE=10> 272<EM>Note that an ANSI C compiler is required to build the software. 273If a C compiler requires options to enable ANSI C compilation, they 274can be specified with the <TT>ENVOPTS</TT> parameter.</EM> 275 276<P> 277Once a compiler is selected configure checks to see 278if the compiler accepts a -g option to enable the generation 279 of debugging symbols, and 280if the compiler includes an ANSI C preprocessor. 281 282<UL><PRE><TT> 283Using /usr/ucb/make to configure the software. 284</TT></PRE></UL> 285 286Next various system-specific libraries that may or may not be needed 287are checked for (none are needed in this case). 288If your system requires a library that is not 289automatically included it can be specified by setting the 290<TT>MACHDEPLIBS</TT> parameter. 291 292<P><I>Creating port.h.</I> 293The <B>port.h</B> file is included by all the C code 294in the library (but not the tools). 295It includes definitions for functions and type 296definitions that are missing from system include files, <TT>#defines</TT> 297to enable or disable system-specific functionality, and other 298odds and ends. 299 300<UL><PRE><TT> 301Creating libtiff/port.h with necessary definitions. 302... using LSB2MSB bit order for your i386 cpu 303... using big-endian byte order for your i386 cpu 304... configure use of mmap for memory-mapped files 305... O_RDONLY is in <fcntl.h> 306... using double for promoted floating point parameters 307... enabling use of inline functions 308Done creating libtiff/port.h. 309</TT></PRE></UL> 310 311This file can take a long time to create so configure 312generates the file only when it is needed, either because the 313file does not exist or because a different target or compiler 314is to be used. 315Note that running "<TT>make distclean</TT>" in the top-level directory 316of the build tree will remove the <B>port.h</B> file (along 317with all the other files generated by configure). 318 319<P><I>Selecting emulated library functions.</I> 320Certain library functions used by the tools are not present on all systems 321and can be emulated using other system functionality. 322configure checks for the presence of such functions and if they are 323missing, will configure emulation code from the <B>port</B> directory 324to use instead. Building the TIFF 325software on unsupported systems may require 326adding to the code to the <B>port</B> directory. 327 328<UL><PRE><TT> 329Checking system libraries for functionality to emulate. 330Done checking system libraries. 331</TT></PRE></UL> 332 333If a routine must be emulated and configure does not automatically 334check for it, the routine name can be specified using the <TT>PORTFUNCS</TT> 335parameter. To add emulation support for a new function <TT>foo</TT>, 336create a file <B>port/foo.c</B> that contains the emulation code 337and then set <TT>PORTFUNCS=foo</TT> in a configuration file or modify 338the configure script to automatically check for the missing function. 339 340<UL><PRE><TT> 341Checking for Dynamic Shared Object (DSO) support. 342Done checking for DSO support. 343</TT></PRE></UL> 344 345If the <TT>DSO</TT> package is enabled (<TT>DSO=auto</TT> or 346<TT>DSO=yes</TT>), then 347configure will verify the system and compiler are capable of 348constructing SVR4-style DSO's in the expected way. Note that 349while a system may support DSO's the compiler may not be 350capable of generating the required position-independent 351code and/or the compiler may not pass the needed options 352through to the loader. 353 354<P><I>Selecting utility programs.</I> 355configure locates various system utility programs that are 356used during installation of the software. 357 358<UL><PRE><TT> 359Selecting programs used during installation. 360Looks like mv supports the -f option to force a move. 361Looks like /bin/ln supports the -s option to create a symbolic link. 362Done selecting programs. 363</TT></PRE></UL> 364 365<P><I>Selecting default configuration parameters.</I> 366The remainder of the work done by configure involves setting up 367configuration parameters that control the placement and 368setup of files during the installation procedure. 369 370<UL><PRE><TT> 371Selecting default TIFF configuration parameters. 372 373Looks like manual pages go in /usr/contrib/man. 374Looks like manual pages should be installed with bsd-nroff-gzip-0.gz. 375 376TIFF configuration parameters are: 377 378[ 1] Directory for tools: /usr/contrib/bin 379[ 2] Directory for libraries: /usr/contrib/lib 380[ 3] Directory for include files: /usr/contrib/include 381[ 4] Directory for manual pages: /usr/contrib/man 382[ 5] Manual page installation scheme: bsd-nroff-gzip-0.gz 383 384Are these ok [yes]? 385</TT></PRE></UL> 386 387 388 389At this point you can interactively modify any of the 390displayed parameters. Hitting a carriage return or typing 391<TT>yes</TT> will accept the current parameters. Typing one 392of the number displayed along the left hand side causes 393configure to prompt for a new value of the specified parameter. 394Typing anything else causes configure to prompt for a new 395value <EM>for each parameter</EM>. 396In general hitting carriage return will accept the current 397value and typing anything that is unacceptable will cause a 398help message to be displayed. 399A description of each of the configuration parameters is given below. 400 401<P> 402Once acceptable parameters are setup configure will generate 403all the files that depend on these parameters. Note that certain 404files may or may not be created based on the configuration of 405optional packages and/or the functions supported by target system. 406 407<UL><PRE><TT> 408Creating Makefile from ../tiff-v3.4beta015/Makefile.in 409Creating libtiff/Makefile from ../tiff-v3.4beta015/libtiff/Makefile.in 410Creating man/Makefile from ../tiff-v3.4beta015/man/Makefile.in 411Creating tools/Makefile from ../tiff-v3.4beta015/tools/Makefile.in 412Creating port/install.sh from ../tiff-v3.4beta015/port/install.sh.in 413Done. 414</TT></PRE></UL> 415 416<A NAME=DSOSupport><P><HR><H3>Shared Library Support</H3></A> 417 418It is desirable to make the TIFF library be a shared object 419on systems that have support for shared libraries. 420Unfortunately the rules to use to build a shared library 421vary between operating systems and even compilers. 422The distributed software includes support for building a shared 423version of the library on a number of different systems. 424This support is split between rules in the file 425<B>libtiff/Makefile.in</B> that construct the shared library 426and checks done by the <TT>configure</TT> script to verify that 427the expected rules are supported by compilation tools for 428the target system. 429 430<P> 431To add new support for building a shared library both these files 432must be updated. 433In the configure script search for the section where the autoconfiguration 434setting of the <TT>DSO</TT> parameter is handled and 435add a new case for the target system that sets the 436<TT>DSOSUF</TT>, 437<TT>DSOLD</TT>, 438<TT>DSOOPTS</TT>, 439and 440<TT>LIBCOPTS</TT> 441options as appropriate for the system. 442<TT>DSOSUF</TT> specifies the filename suffix used for the shared 443library (e.g. ``.so'' for Dynamic Shared Objects on most SVR4-based 444systems). 445<TT>DSOLD</TT> specifies the program to use to build the shared library 446from a compiled object file; typically ``${LD}'' though on some systems 447it is better to use the C compiler directly so system-dependent options and 448libraries are automatically supplied. 449<TT>DSOOPTS</TT> are options that must be specified to <TT>DSOLD</TT> 450when building the shared library. 451<TT>LIBCOPTS</TT> are options to pass to the C compiler when constructing 452a relocatable object file to include in a shared library; e.g. ``-K PIC'' 453on a Sun system. 454The <TT>DSO</TT> parameter must also be set to a unique label that identifies 455the target system and compilation tools. 456This label is used to select 457a target in <B>libtiff/Makefile.in</B> to do the actual work in building 458the shared library. 459Finally, to complete support for the shared library added the appropriate 460rules to <B>libtiff/Makefile.in</B> under the target specified in the 461<TT>configure</TT> script. 462 463<A NAME=PC><P><HR><H2>Building the Software under Windows 95/98/NT/2000 with MS VC++</H2></A> 464 465With Microsoft Visual C++ installed, and properly configured for commandline 466use (you will likely need to source VCVARS32.BAT in AUTOEXEC.bAT or somewhere 467similar) you should be able to use the provided <tt>makefile.vc</tt>.<p> 468 469<pre> 470C:\LIBTIFF\LIBTIFF> nmake /f makefile.vc 471C:\LIBTIFF\LIBTIFF> cd ..\tools 472C:\LIBTIFF\TOOLS> nmake /f makefile.vc 473</pre> 474 475This will build the library file <TT>libtiff\libtiff\libtiff.lib</TT>. This 476can be used in Win32 programs.You may want to adjust the build options before start compiling. All parameters contained in the <TT>nmake.opt</TT> file.This is 477a plain text file you can open with your favorite text editor.<p> 478 479The makefile also builds a DLL (libtiff.dll) with an associated import 480library (libtiff_i.lib). Any builds using libtiff will need to include 481the LIBTIFF\LIBTIFF directory in the include path.<p> 482 483The <tt>libtiff\tools\makefile.vc</tt> should build .exe's for all the 484standard TIFF tool programs.<p> 485 486<A NAME=DJGPP><P><HR><H2>Building the Software under MS/DOS with the DJGPP v2 compiler</H2></A> 487 488[<I>From the file <B>contrib/dosdjgpp/README</B>.</I>] 489 490<P> 491The directory <B>contrib/dosdjgpp</B> 492contains the files necessary to build the library and tools 493with the DJGPP v2 compiler under MSDOS. 494 495<P> 496All you have to do is copy the files in the directory 497into the respective directories and run 498make. If you want, you can use the <B>conf.bat</B> script 499to do that for you, make sure that 500the file is stored with MSDOS text EOL-convention (CR/LF), otherwise the 501<B>command.com</B> will not do anything. 502 503<P> 504Note that you probably will not be able to build the library with the v1.x 505versions of djgpp, due to two problems. First, the top makefile calls a 506sub-make for each directory and you are likely to run out of memory, since 507each recursive invocation of a djgpp v1.x program requires about 130k, to 508avoid that, you can enter the directories manually and call make (well, there 509are only two dirs). The 2nd problem is that djgpp 1.x doesn't call the 510coff2exe (stubify) program when creating an executable. This means that all 511programs compiled are not converted to exe and consequently are not available 512for calling directly. For the tools directory, you can just call coff2exe for 513each program after make finishes, but in the libtiff directory, a few programs 514are created during the make process that have to be called for make to 515continue (e.g. mkg3states). Make will probably report an error at each 516such stage. To fix that, either add a coff2exe call before each program is 517called or call coff2exe manually and rerun make (there 2-3 such programs). 518 519 520<A NAME=MacMPW><P><HR><H2>Building the Software on a Macintosh with MPW</H2></A> 521 522The directory <B>contrib/mac-mpw</B> contains support for 523compiling the library and tools under the MPW Shell on a 524Macintosh system. 525This support was contributed by Niles Ritter 526(<A HREF=mailto:[email protected]>[email protected]</A>). 527 528<P> 529[<I>From the file <B>contrib/mac-mpw/README</B>.</I>] 530 531<P> 532This directory contains all of the utilities and makefile source 533to build the LIBTIFF library and tools from the MPW Shell. The 534file BUILD.mpw in this directory is an executable script 535which uses all of these files to create the MPW makefiles and 536run them. 537 538<P> 539The <file>.make files are not MPW makefiles as such, 540but are when run through the "mactrans" program, which turns 541the ascii "%nn" metacharacters into the standard weird MPW 542make characters. 543 544<P> 545This translation trick is necessary to protect the files when 546they are put into unix tarfiles, which tend to mangle the 547special characters. 548 549 550 551<A NAME=MacCW><P><HR><H2>Building the Software on a Macintosh with CodeWarrior</H2></A> 552 553The directory <B>contrib/mac-cw</B> contains support for 554compiling the library and tools with MetroWerks CodeWarrior 6.1 555on a Macintosh system. 556This support was contributed by Niles Ritter 557(<A HREF=mailto:[email protected]>[email protected]</A>). 558 559<P> 560[<I>From the file <B>contrib/mac-cw/README</B>.</I>] 561 562In this directory you will find a Makefile.script Applescript 563file, which should be run in order to build the libtiff code 564using MetroWerks CodeWarrior. 565 566Refer to the "metrowerks.note" instructions on building the 567library for 68k and PowerPC native code, as well as building 568some of the libtiff tools, which are rather unix-like, but 569at least give an example of how to link everything together. 570 571 572 573<A NAME=VMS><P><HR><H2>Building the Software on a VMS System</H2></A> 574 575The VMS port was done by Karsten Spang 576(<A HREF="mailto:[email protected]">[email protected]</a>), who also 577"sort of" maintains it. 578The VMS specific files are not in the main directories. Instead they 579are placed under <TT>[.CONTRIB.VMS...]</TT> in the distribution tree. 580 581Installation: 582 583It is assumed that you have unpacked the tar file into a VMS directory 584tree, in this text called DISK:[TIFF]. 585 586<OL> 587<LI>Move the VMS specific files to their proper directories. 588<PRE> 589$ SET DEFAULT DISK:[TIFF.CONTRIB.VMS] 590$ RENAME [.LIBTIFF]*.* [-.-.LIBTIFF] 591$ RENAME [.TOOLS]*.* [-.-.TOOLS] 592</PRE> 593<LI>Compile the library. 594<PRE> 595$ SET DEFAULT DISK:[TIFF.LIBTIFF] 596$ @MAKEVMS 597</PRE> 598<LI>Compile the tools. 599<PRE> 600$ SET DEFAULT DISK:[TIFF.TOOLS] 601$ @MAKEVMS 602</PRE> 603<LI>Define the programs. 604<PRE> 605$ DEFINE TIFFSHR DISK:[TIFF.LIBTIFF]TIFFSHR 606$ FAX2PS :==$DISK:[TIFF.TOOLS]FAX2PS 607$ FAX2TIFF :==$DISK:[TIFF.TOOLS]FAX2TIFF 608$ GIF2TIFF :==$DISK:[TIFF.TOOLS]GIF2TIFF 609$ PAL2RGB :==$DISK:[TIFF.TOOLS]PAL2RGB 610$ PPM2TIFF :==$DISK:[TIFF.TOOLS]PPM2TIFF 611$ RAS2TIFF :==$DISK:[TIFF.TOOLS]RAS2TIFF 612$ RGB2YCBCR :==$DISK:[TIFF.TOOLS]RGB2YCBCR 613$ THUMBNAIL :==$DISK:[TIFF.TOOLS]THUMBNAIL 614$ TIFF2BW :==$DISK:[TIFF.TOOLS]TIFF2BW 615$ TIFF2PS :==$DISK:[TIFF.TOOLS]TIFF2PS 616$ TIFFCMP :==$DISK:[TIFF.TOOLS]TIFFCMP 617$ TIFFCP :==$DISK:[TIFF.TOOLS]TIFFCP 618$ TIFFDITHER:==$DISK:[TIFF.TOOLS]TIFFDITHER 619$ TIFFDUMP :==$DISK:[TIFF.TOOLS]TIFFDUMP 620$ TIFFINFO :==$DISK:[TIFF.TOOLS]TIFFINFO 621$ TIFFMEDIAN:==$DISK:[TIFF.TOOLS]TIFFMEDIAN 622$ TIFFSPLIT :==$DISK:[TIFF.TOOLS]TIFFSPLIT 623$ YCBCR :==$DISK:[TIFF.TOOLS]YCBCR 624</PRE> 625</OL> 626 627You will want to add these lines to your <TT>LOGIN.COM</TT> file, after 628changing the name of the directory that you have used on your machine. 629 630<P> 631This release has been tested on OpenVMS/VAX 5.5-2, using VAX C 3.2. 632A previous release was tested under OpenVMS/AXP ?.? using DEC C ?.?, it is 633believed that this release as well works on AXP. 634The code contains some GNU C specific things. This does *not* imply, 635however, that the VAX/GCC configuration has been tested, *it has not*. 636 637<P> 638The command procedures (<TT>MAKEVMS.COM</TT>) for building the 639library and tools, 640is believed to choose the correct options for the VAX and AXP cases 641automatically. 642 643<P> 644On the AXP, IEEE floating point is used by default. If you want VAX 645floating point, remove the <TT>/FLOAT=IEEE_FLOAT</TT> qualifier, and change 646<TT>HAVE_IEEEFP=1</TT> to <TT>HAVE_IEEEFP=0</TT> in the <TT>MAKEVMS.COM</TT> 647files in both the <B>libtiff</B> and <B>tools</B> directories. 648 649 650<H3>Compiling your own program on a VMS system:</H3> 651 652When compiling a source file in which you 653<TT>"#include <tiffio.h>"</TT>, use the 654following command 655<PRE> 656 $ CC/INCLUDE=DISK:[TIFF.LIBTIFF] 657</PRE> 658This ensures that the header file is found. 659On the AXP, also add <TT>/FLOAT=IEEE_FLOAT</TT> 660(if used when building the library). 661 662 663<H3>Linking your own program to the TIFF library on a VMS system:</H3> 664 665You can link to the library in two ways: Either using the shareable 666library, or using the object library. 667On the VAX these possibilities are: 668 669<OL> 670<LI>Using the shareable TIFF library. 671<PRE> 672$ LINK MY_PROGRAM,DISK:[TIFF.LIBTIFF]TIFF/OPTIONS,SYS$INPUT:/OPTIONS 673 SYS$SHARE:VAXCRTL/SHAREABLE 674</PRE> 675<LI>Using the TIFF object library. 676<PRE> 677$ LINK MY_PROGRAM, - 678 DISK:[TIFF.LIBTIFF]TIFF/LIBRARY/INCLUDE=(TIF_FAX3SM,TIF_CODEC), - 679 SYS$INPUT:/OPTIONS 680 SYS$SHARE:VAXCRTL/SHAREABLE 681</PRE> 682</OL> 683 684On AXP (and possibly also using DEC C on VAX) the corresponding commands are 685<OL> 686<LI>Using the shareable TIFF library. 687<PRE> 688$ LINK MY_PROGRAM,DISK:[TIFF.LIBTIFF]TIFF/OPTIONS 689</PRE> 690<LI>Using the TIFF object library. 691<PRE> 692$ LINK MY_PROGRAM,DISK:[TIFF.LIBTIFF]TIFF/LIBRARY 693</PRE> 694</OL> 695 696Method 1 uses the shortest link time and smallest <TT>.EXE</TT> 697files, but it 698requires that <TT>TIFFSHR</TT> is defined as above at link time and 699<STRONG>at run time</STRONG>. 700Using the compilation procedure above, the tools are linked in this way. 701 702<P> 703Method 2 gives somewhat longer link time and larger <TT>.EXE</TT> 704files, but does 705not require <TT>TIFFSHR</TT> to be defined. This method is recommended if you 706want to run your program on another machine, and for some reason don't 707want to have the library on that machine. If you plan to have more than 708one program (including the tools) on the machine, it is recommended that 709you copy the library to the other machine and use method 1. 710 711 712 713<A NAME=Acorn><P><HR><H2>Building the Software on an Acorn RISC OS system</H2></A> 714 715The directory <B>contrib/acorn</B> contains support for compiling the library 716under Acorn C/C++ under Acorn's RISC OS 3.10 or above. Subsequent pathnames 717will use the Acorn format: The full-stop or period character is a pathname 718delimeter, and the slash character is not interpreted; the reverse position 719from Unix. Thus "libtiff/tif_acorn.c" becomes "libtiff.tif_acorn/c". 720 721<P> 722This support was contributed by Peter Greenham. (<A HREF=mailto:[email protected]>[email protected]</A>). 723 724<P> 725<H3>Installing LibTIFF:</H3> 726 727<P> 728LIBTIFF uses several files which have names longer than the normal RISC OS 729maximum of ten characters. This complicates matters. Maybe one day Acorn will 730address the problem and implement long filenames properly. Until then this 731gets messy, especially as I'm trying to do this with obeyfiles and not have 732to include binaries in this distribution. 733 734<P> 735First of all, ensure you have Truncate configured on (type <TT>*Configure 736Truncate On</TT>) 737 738<P> 739Although it is, of course, preferable to have long filenames, LIBTIFF can be 740installed with short filenames, and it will compile and link without 741problems. However, <I>getting</I> it there is more problematic. 742<B>contrib.acorn.install</B> is an installation obeyfile which will create a normal 743Acorn-style library from the source (ie: with c, h and o folders etc.), but 744needs the distribution library to have been unpacked into a location which is 745capable of supporting long filenames, even if only temporarily. 746 747<P> 748My recommendation, until Acorn address this problem properly, is to use Jason 749Tribbeck's <A 750HREF=ftp://ftp.demon.co.uk/pub/mirrors/hensa/micros/arch/riscos/c/c020/longfiles.arc>LongFilenames</A>, or any other 751working system that gives you long filenames, like a nearby NFS server for 752instance. 753 754<P> 755If you are using Longfilenames, even if only temporarily to install LIBTIFF, 756unpack the TAR into a RAMDisc which has been longfilenamed (ie: <TT>*addlongfs 757ram</TT>) and then install from there to the hard disk. Unfortunately 758Longfilenames seems a bit unhappy about copying a bunch of long-named files 759across the same filing system, but is happy going between systems. You'll 760need to create a ramdisk of about 2Mb. 761 762<P> 763Now you can run the installation script I've supplied (in contrib.acorn), 764which will automate the process of installing LIBTIFF as an Acorn-style 765library. The syntax is as follows: 766 767<P><TT> 768install <source_dir> <dest_dir> 769 770</TT><P> 771Install will then create <dest_dir> and put the library in there. For 772example, having used LongFilenames on the RAMDisk and unpacked the library 773into there, you can then type: 774 775<P><TT> 776Obey RAM::RamDisc0.$.contrib.acorn.install RAM::RamDisc0.$ ADFS::4.$.LIBTIFF 777</TT><P> 778 779It doesn't matter if the destination location can cope with long filenames or 780not. The filenames will be truncated if necessary (*Configure Truncate On if 781you get errors) and all will be well. 782 783<P> 784<H3>Compiling LibTIFF:</H3> 785 786<P> 787Once the LibTIFF folder has been created and the files put inside, making the 788library should be just a matter of running '<B>SetVars</B>' to set the 789appropriate system variables, then running '<B>Makefile</B>'. 790 791<P> 792<B>OSLib</B> 793 794<P> 795<A HREF=ftp://ftp.acorn.co.uk/pub/riscos/releases/oslib/oslib.arc>OSLib</A> 796is a comprehensive API for RISC OS machines, written by Jonathan Coxhead of 797Acorn Computers (although OSLib is not an official Acorn product). Using the 798OSLib SWI veneers produces code which is more compact and more efficient than 799code written using _kernel_swi or _swi. The Acorn port of LibTIFF can take 800advantage of this if present. Edit the Makefile and go to the Static 801dependencies section. The first entry is: 802 803<PRE> 804# Static dependencies: 805@.o.tif_acorn: @.c.tif_acorn 806 cc $(ccflags) -o @.o.tif_acorn @.c.tif_acorn 807</PRE> 808<P> 809Change the cc line to: 810<PRE> 811 cc $(ccflags) -DINCLUDE_OSLIB -o @.o.tif_acorn @.c.tif_acorn 812</PRE> 813<P> 814Remember, however, that OSLib is only <I>recommended</I> for efficiency's 815sake. It is not required. 816 817 818 819<A NAME=Other><P><HR><H2>Building the Software on Other Systems</H2></A> 820 821This section contains information that might be useful 822if you are working on a non-UNIX system that is not directly supported. 823All library-related files described below are located in the <B>libtiff</B> 824directory. 825 826<P> 827The library requires two files that are generated <I>on-the-fly</I>. 828The file <B>tif_fax3sm.c</B> has the state tables for the 829Group 3 and Group 4 decoders. 830This file is generated by the <TT>mkg3states</TT> program 831on a UNIX system; for example, 832 833<UL><PRE><TT> 834cd libtiff 835cc -o mkg3states mkg3states.c 836rm -f tif_fax3sm.c 837./mkg3states -c const tif_fax3sm.c 838</TT></PRE></UL> 839 840The <TT>-c</TT> option can be used to control whether or not the 841resutling tables are generated with a <TT>const</TT> declaration. 842The <TT>-s</TT> option can be used to specify a C storage class 843for the table declarations. 844The <TT>-b</TT> option can be used to force data values to be 845explicitly bracketed with ``{}'' (apparently needed for some 846MS-Windows compilers); otherwise the structures are emitted in 847as compact a format as possible. 848Consult the source code for this program if you have questions. 849 850<P> 851The second file required to build the library, <B>version.h</B>, 852contains the version 853information returned by the <TT>TIFFGetVersion</TT> routine. 854This file is built on most systems using the 855<TT>mkversion</TT> program and the contents of the 856<TT>VERSION</TT> and <TT>tiff.alpha</TT> files; for example, 857 858<UL><PRE> 859cd libtiff 860cc -o mkversion mkversion.c 861rm -f version.h 862./mkversion -v ../VERSION -a ../dist/tiff.alpha version.h 863</PRE></UL> 864 865<P> 866Otherwise, when building the library on a non-UNIX system be sure to 867consult the files <B>tiffcomp.h</B> and <B>tiffconf.h</B>. 868The former contains system compatibility definitions while the latter 869is provided so that the software configuration can be controlled 870on systems that do not support the make facility for building 871the software. 872 873<P> 874Systems without a 32-bit compiler may not be able to handle some 875of the codecs in the library; especially the Group 3 and 4 decoder. 876If you encounter problems try disabling support for a particular 877codec; consult the <A HREF=internals.html#Config>documentation</A>. 878 879<P> 880Programs in the tools directory are written to assume an ANSI C 881compilation environment. 882There may be a few POSIX'isms as well. 883The code in the <B>port</B> directory is provided to emulate routines 884that may be missing on some systems. 885On UNIX systems the <TT>configure</TT> script automatically figures 886out which routines are not present on a system and enables the use 887of the equivalent emulation routines from the <B>port</B> directory. 888It may be necessary to manually do this work on a non-UNIX system. 889 890 891<A NAME=Testing><P><HR><H2>Checking out the Software</H2></A> 892 893<P> 894Assuming you have working versions of <TT>tiffgt</TT> and <TT>tiffsv</TT>, 895you can just 896use them to view any of the sample images available for testing 897(see the <A HREF=images.html>section on obtaining the test images</A>). 898Otherwise, you can do a cursory check of the library with 899the <TT>tiffcp</TT> and <TT>tiffcmp</TT> programs. For example, 900 901<UL><PRE> 902tiffcp -lzw cramps.tif x.tif 903tiffcmp cramps.tif x.tif 904</PRE></UL> 905 906<P> 907(<TT>tiffcmp</TT> should be silent if the files compare correctly). 908 909 910 911<A NAME=TOC><P><HR><H2>Table of Contents</H2></A> 912 913The following files makup the core library: 914 915<PRE> 916libtiff/tiff.h TIFF spec definitions 917libtiff/tiffcomp.h non-UNIX OS-compatibility definitions 918libtiff/tiffconf.h non-UNIX configuration definitions 919libtiff/tiffio.h public TIFF library definitions 920libtiff/tiffiop.h private TIFF library definitions 921libtiff/t4.h CCITT Group 3/4 code tables+definitions 922libtiff/tif_dir.h private defs for TIFF directory handling 923libtiff/tif_fax3.h CCITT Group 3/4-related definitions 924libtiff/tif_predict.h private defs for Predictor tag support 925libtiff/uvcode.h LogL/LogLuv codec-specific definitions 926libtiff/version.h version string (generated by Makefile) 927 928libtiff/tif_acorn.c Acorn-related OS support 929libtiff/tif_apple.c Apple-related OS support 930libtiff/tif_atari.c Atari-related OS support 931libtiff/tif_aux.c auxilary directory-related functions 932libtiff/tif_close.c close an open TIFF file 933libtiff/tif_codec.c configuration table of builtin codecs 934libtiff/tif_compress.c compression scheme support 935libtiff/tif_dir.c directory tag interface code 936libtiff/tif_dirinfo.c directory known tag support code 937libtiff/tif_dirread.c directory reading code 938libtiff/tif_dirwrite.c directory writing code 939libtiff/tif_dumpmode.c "no" compression codec 940libtiff/tif_error.c library error handler 941libtiff/tif_fax3.c CCITT Group 3 and 4 codec 942libtiff/tif_fax3sm.c G3/G4 state tables (generated by mkg3states) 943libtiff/tif_flush.c i/o and directory state flushing 944libtiff/tif_getimage.c TIFFRGBAImage support 945libtiff/tif_jpeg.c JPEG codec (interface to the IJG distribution) 946libtiff/tif_luv.c SGI LogL/LogLuv codec 947libtiff/tif_lzw.c LZW codec 948libtiff/tif_msdos.c MSDOS-related OS support 949libtiff/tif_next.c NeXT 2-bit scheme codec (decoding only) 950libtiff/tif_open.c open and simply query code 951libtiff/tif_packbits.c Packbits codec 952libtiff/tif_pixarlog.c Pixar codec 953libtiff/tif_predict.c Predictor tag support 954libtiff/tif_print.c directory printing support 955libtiff/tif_read.c image data reading support 956libtiff/tif_strip.c some strip-related code 957libtiff/tif_swab.c byte and bit swapping support 958libtiff/tif_thunder.c Thunderscan codec (decoding only) 959libtiff/tif_tile.c some tile-related code 960libtiff/tif_unix.c UNIX-related OS support 961libtiff/tif_version.c library version support 962libtiff/tif_vms.c VMS-related OS support 963libtiff/tif_warning.c library warning handler 964libtiff/tif_win3.c Windows-3.1-related OS support 965libtiff/tif_win32.c Win32 (95/98/NT) related OS support 966libtiff/tif_write.c image data writing support 967libtiff/tif_zip.c Deflate codec 968 969libtiff/mkg3states.c program to generate G3/G4 decoder state tables 970libtiff/mkspans.c program to generate black-white span tables 971libtiff/mkversion.c program to generate libtiff/version.h. 972</PRE> 973 974<P> 975<HR> 976 977Last updated: $Date: 2005-04-02 17:25:58 $ 978 979</BODY> 980</HTML> 981