<HTML><BODY><div class="cl-0u1zw232om"><div><div>Perhaps it would be better to post this on the <a href="https://gitlab.com/freepascal.org/fpc/source/-/work_items">FPC bug tracker</a>?</div><div> </div><div>Or on the "fpc-devel" mailing list.</div></div><br><div class="mail-quote-collapse"><blockquote style="border-left:1px solid #0857A6;margin:10px;padding:0 0 0 10px"><div><div id=""><div class="cl-gwbfz3ahak"><div class="js-helper_mr_css_attr js-readmsg-msg_mr_css_attr"><div id="style_17847294010710600985_mr_css_attr"><div id="style_17847294010710600985_BODY_mr_css_attr"><p>Hi,</p><p><span lang="en" class="HwtZe_mr_css_attr"><span class="jCAhz_mr_css_attr ChMk0b_mr_css_attr"><span class="ryNqvb_mr_css_attr">I suspect that my first message was blocked because I attached ODT document. Please ignore duplicate if it show up.</span></span></span></p><p>I mentioned about this issue some time ago in the topic about PasFLTK bindings which I made. I decided to make dedicated thread because it seems to be interesting.</p><p>So. I'm developing PasFLTK bindings for CFLTK which is flatten C binding for major FLTK UI framework written in C++. PasFLTK has two modes, shared library which work perfectly fine and experimental static linking.</p><p>Static linking has issues which I'm <span lang="en" class="HwtZe_mr_css_attr"><span class="jCAhz_mr_css_attr ChMk0b_mr_css_attr"><span class="ryNqvb_mr_css_attr">consistently</span></span></span> fixing. Major problem is that C++ classes are not initialized in proper way. Problem is not a matter of "Static Initialization Order Fiasco" because CFLTK/FLTK is designed to be static linking for default (and that is how other language bindings are using it). Problem is how FPC LD linker prepare "startup" routines. For example:</p><p>Class Fl_File_Chooser2.cxx has this public variable:</p><p>const char *Fl_File_Chooser::filesystems_label = Fl::system_driver()->filesystems_label();</p><p>System_driver is not initialized yet so filesystems_label become null which result with access violations. Since I'm linux user I started from this platform, working on this with Claude AI (which amazed me how deeply he can analyze binaries on low level). On linux, fix was small and easy (for Claude, not for me of course). LD linker prepare wrong init structure and doesn't call the __init_array_start in linux ELF standard. So patch looks like that:<br> </p><p>type<br> TCtorProc = procedure(); cdecl;<br> PCtorProc = ^TCtorProc;<br><br>var<br> __init_array_start: Byte; external name '__init_array_start';<br> __init_array_end: Byte; external name '__init_array_end';<br><br>procedure RunCppGlobalConstructorsLinux;<br>var<br> p, pend: PCtorProc;<br>begin<br> p := PCtorProc(@__init_array_start);<br> pend := PCtorProc(@__init_array_end);<br> while p < pend do<br> begin<br> if Assigned(p^) then<br> p^();<br> Inc(p);<br> end;<br>end; <br><br>That small piece of code fixed everything and static linking work like a charm on linux. I have project (which I publish soon) totally written as static linking and didn't notice any new issues so far.</p><p>Now windows version. Here complication start. First, build-in FPC linker is useless and throw error:</p><p>Error: Failed reading coff file, invalid section index while reading C:\Users\vboxuser\Documents\CFLTKlibs\libcfltk.a(cfl_window.cpp.obj)<br><br>I had to use -Xe flag which switch to external ld.exe linker. But then I had DWARF errors because LD support only up to 4 version and my MinGW toolchain (MSYS2 on windows) is using ver. 5. I had to call `strip --strip-debug` on all *.a files (including some MinGW - e.g libstd++.a).</p><p>Now, when binding are compiling fine, I fall to the same problem with initialization as on linux. I spent few evenings with Claude on this. We compared objdump -h and extracted objects on exactly the same demos written line by line one using C (CFLTK) and second Free Pascal. Since linux use ELF we get __init_array_start, on windows PE - it looks harder. LD.exe <span lang="en" class="HwtZe_mr_css_attr"><span class="jCAhz_mr_css_attr ChMk0b_mr_css_attr"><span class="ryNqvb_mr_css_attr">delivered with FPC is quite old and doesn't use modern standard. Demo written in C and linked by LD from toolchain has correct .ctors and __CTOR_LIST__ which FPC ld.exe is missing (in fact, filling it incorrectly). Tried using -FD"C:\msys64\mingw64\bin" which load ld.exe from MinGW toolchain but this result with dozens errors:</span></span></span></p><p><span lang="en" class="HwtZe_mr_css_attr"><span class="jCAhz_mr_css_attr ChMk0b_mr_css_attr"><span class="ryNqvb_mr_css_attr">C:\msys64\mingw64\bin\ld.exe: C:\programowanie\lazarus\fpc\3.2.2\units\x86_64-win64\rtl\sysutils.o: illegal relocation type 0 at address 0<br>C:\msys64\mingw64\bin\ld.exe: C:\programowanie\lazarus\fpc\3.2.2\units\x86_64-win64\rtl\math.o: illegal relocation type 0 at address 0</span></span></span></p><p><span lang="en" class="HwtZe_mr_css_attr"><span class="jCAhz_mr_css_attr ChMk0b_mr_css_attr"><span class="ryNqvb_mr_css_attr">Claude also compared rust bindings for CFLTK because it also use static linking. They had also problems and are stick to the specific toolchain. But there problem was easier to fix because Rust linker correctly linking crt2.o and has own guardians rsbegin.o and rsend.o (</span></span></span><span lang="en" class="HwtZe_mr_css_attr"><span class="jCAhz_mr_css_attr ChMk0b_mr_css_attr"><span class="ryNqvb_mr_css_attr">equivalent of </span></span></span>crtbegin.o and crtend.o) which are missing in FPC ld linker.</p><p>Finally I get it working with Claude but this require reorganize *.a and C++ objects with --globalize-symbol and this solution is not acceptable for me because it require <span lang="en" class="HwtZe_mr_css_attr"><span class="jCAhz_mr_css_attr ChMk0b_mr_css_attr"><span class="ryNqvb_mr_css_attr">engagement everytime when something changed in CFLT/FLTK source or even in MinGW.</span></span></span></p><p><span lang="en" class="HwtZe_mr_css_attr"><span class="jCAhz_mr_css_attr ChMk0b_mr_css_attr"><span class="ryNqvb_mr_css_attr">I'll be not writting anymore and just attach summary of our work which I asked Claude to write in short. It has more technical details. To sum up. Is there any plans to upgrade LD linker or exists any alpha / beta of upcoming release? </span></span></span><span lang="en" class="HwtZe_mr_css_attr"><span class="jCAhz_mr_css_attr ChMk0b_mr_css_attr"><span class="ryNqvb_mr_css_attr">The difference between FPC ld and GCC ld is almost 10 years. </span></span></span><span lang="en" class="HwtZe_mr_css_attr"><span class="jCAhz_mr_css_attr ChMk0b_mr_css_attr"><span class="ryNqvb_mr_css_attr">I read somewhere that FPC is not designed to link C++ (only C) but as we can see, it could be just small step to make it possible and that open huge door. </span></span></span></p><p><span lang="en" class="HwtZe_mr_css_attr"><span class="jCAhz_mr_css_attr ChMk0b_mr_css_attr"><span class="ryNqvb_mr_css_attr">Below is Claude's summary.</span></span></span></p><p><span lang="en" class="HwtZe_mr_css_attr"><span class="jCAhz_mr_css_attr ChMk0b_mr_css_attr"><span class="ryNqvb_mr_css_attr">Regards, Dibo.</span></span></span></p><p><span lang="en" class="HwtZe_mr_css_attr"><span class="jCAhz_mr_css_attr ChMk0b_mr_css_attr"><span class="ryNqvb_mr_css_attr">Environment:<br><br> Free Pascal Compiler 3.2.2, Windows target x86_64-win64<br><br> Bundled linker: C:\programowanie\lazarus\fpc\3.2.2\bin\x86_64-win64\ld.exe — GNU ld (GNU Binutils) 2.28<br><br> Comparison linker: ld.exe from MSYS2 mingw-w64-x86_64-binutils package, located at C:\msys64\mingw64\bin\ld.exe — GNU ld (GNU Binutils) 2.46.1<br><br> GCC/G++ used to build FLTK, CFLTK, and the comparison C++ demo: 16.1.0 (MSYS2 mingw-w64-x86_64-gcc, reported as "GCC 16.1.0"<br><br> FLTK version: 1.4.5, CFLTK version: 1.5.23<br><br>Root cause identified: FPC 3.2.2's bundled ld.exe fails to correctly merge .ctors input sections (containing C++ global constructor pointers) from object files compiled by a modern GCC (16.1.0, MinGW-w64/MSYS2) into the final __CTOR_LIST__ array — even though the linker script (identical KEEP(*(.ctors)) rule, confirmed via ld.exe --verbose on both linkers) is present in both the old bundled ld.exe and a current MSYS2 ld.exe.<br><br>Evidence:<br><br> A raw hex dump of __CTOR_LIST__ in an FPC-linked executable (with 10 real global constructors from a statically-linked FLTK/CFLTK library present and confirmed via nm) shows: sentinel (-1) immediately followed by terminator (0) — zero constructor pointers, despite the constructor functions (_GLOBAL__sub_I_*) physically existing in the binary.<br><br> The same source compiled and linked natively with g++.exe/current MSYS2 ld.exe produces a fully populated __CTOR_LIST__ with all 10 pointers correctly resolved to the matching _GLOBAL__sub_I_* addresses.<br><br> Attempting to relink the FPC-built binary with the current MSYS2 ld.exe (via -FD<path>) fails with illegal relocation type 0 / invalid section index errors on FPC's own RTL object files (sysutils.o, math.o) — indicating FPC's internal object emitter and modern binutils have diverged in mutually incompatible ways. rtl\sysutils.o: illegal relocation type 0 at address 0 etc<br><br> The input .o files from the affected FLTK library use COMDAT sections (LINK_ONCE_DISCARD) extensively (confirmed via objdump -h), which may be related to how the old ld.exe mishandles their .ctors content during merging — this is hypothesis<br><br> Consequently, statically linking modern C++ libraries (FLTK/CFLTK, built with current MinGW-w64/GCC) into an FPC/Lazarus Windows executable silently drops all global C++ constructors, causing use of uninitialized static objects downstream (observed as intermittent access violations depending on which code paths touch affected statics).<br><br>Workaround currently used: manually enumerating _GLOBAL__sub_I_* symbols via nm on the linked (even if crashing) executable, globalizing their linkage scope via objcopy --globalize-symbol (they are emitted as local/t symbols), and generating a small Pascal unit that calls them all explicitly at program startup. This resolves some but not all downstream issues, suggesting missing constructor invocation is necessary but possibly not sufficient — full mainCRTStartup context (TLS/locale/guard-variable state) may also matter for some lazily-initialized C++ singletons. - this is last hypothesis<br><br>Question for the list: Is there a newer/beta ld.exe (or plan to update the bundled binutils) for the Windows FPC toolchain that correctly handles .ctors/COMDAT sections as emitted by current GCC, without breaking compatibility with FPC's own object file emitter?</span></span></span></p><p> </p></div><div>_______________________________________________<br>fpc-pascal maillist - <a href="mailto:fpc-pascal@lists.freepascal.org">fpc-pascal@lists.freepascal.org</a><br><a href="https://lists.freepascal.org/cgi-bin/mailman/listinfo/fpc-pascal">https://lists.freepascal.org/cgi-bin/mailman/listinfo/fpc-pascal</a></div></div></div></div></div></div></blockquote></div></div></BODY></HTML>