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authorArne Schwabe <arne@rfc2549.org>2014-02-13 15:53:13 +0100
committerArne Schwabe <arne@rfc2549.org>2014-02-13 15:53:13 +0100
commitdfd5ef42cf6b68bd7ee7b522ac3c9a55cd54c889 (patch)
tree39061cd184fac30537df44c379a4ecb18d119bc6 /openvpn/doc/doxygen
parentb91aedc11393608ba7fb38f358c35ece662fd1b7 (diff)
Move to new gradle project structure (drop Eclipse support, add initial remote demo project)
--HG-- rename : build.gradle => main/build.gradle rename : jni/Android.mk => main/jni/Android.mk rename : jni/Application.mk => main/jni/Application.mk rename : jni/dummy.cpp => main/jni/dummy.cpp rename : jni/jbcrypto.cpp => main/jni/jbcrypto.cpp rename : jni/jniglue.c => main/jni/jniglue.c rename : jni/jniglue.h => main/jni/jniglue.h rename : jni/minivpn.c => main/jni/minivpn.c rename : lzo/AUTHORS => main/lzo/AUTHORS rename : lzo/Android.mk => main/lzo/Android.mk rename : lzo/B/00README.TXT => main/lzo/B/00README.TXT rename : lzo/B/clean.bat => main/lzo/B/clean.bat rename : lzo/B/done.bat => main/lzo/B/done.bat rename : lzo/B/dos16/bc.bat => main/lzo/B/dos16/bc.bat rename : lzo/B/dos16/bc.rsp => main/lzo/B/dos16/bc.rsp rename : lzo/B/dos16/bc_286.bat => main/lzo/B/dos16/bc_286.bat rename : lzo/B/dos16/bc_pp.bat => main/lzo/B/dos16/bc_pp.bat rename : lzo/B/dos16/dm.bat => main/lzo/B/dos16/dm.bat rename : lzo/B/dos16/mc.bat => main/lzo/B/dos16/mc.bat rename : lzo/B/dos16/mc_qc.bat => main/lzo/B/dos16/mc_qc.bat rename : lzo/B/dos16/qc.bat => main/lzo/B/dos16/qc.bat rename : lzo/B/dos16/sc.bat => main/lzo/B/dos16/sc.bat rename : lzo/B/dos16/tc.bat => main/lzo/B/dos16/tc.bat rename : lzo/B/dos16/vc.bat => main/lzo/B/dos16/vc.bat rename : lzo/B/dos16/vc_qc.bat => main/lzo/B/dos16/vc_qc.bat rename : lzo/B/dos16/wc.bat => main/lzo/B/dos16/wc.bat rename : lzo/B/dos16/wc.rsp => main/lzo/B/dos16/wc.rsp rename : lzo/B/dos32/bc_pp.bat => main/lzo/B/dos32/bc_pp.bat rename : lzo/B/dos32/dj2.bat => main/lzo/B/dos32/dj2.bat rename : lzo/B/dos32/dj2.opt => main/lzo/B/dos32/dj2.opt rename : lzo/B/dos32/dm.bat => main/lzo/B/dos32/dm.bat rename : lzo/B/dos32/emx.bat => main/lzo/B/dos32/emx.bat rename : lzo/B/dos32/highc.bat => main/lzo/B/dos32/highc.bat rename : lzo/B/dos32/highc.rsp => main/lzo/B/dos32/highc.rsp rename : lzo/B/dos32/ndp.bat => main/lzo/B/dos32/ndp.bat rename : lzo/B/dos32/ndp.rsp => main/lzo/B/dos32/ndp.rsp rename : lzo/B/dos32/sc.bat => main/lzo/B/dos32/sc.bat rename : lzo/B/dos32/wc.bat => main/lzo/B/dos32/wc.bat rename : lzo/B/dos32/zc.bat => main/lzo/B/dos32/zc.bat rename : lzo/B/generic/Makefile => main/lzo/B/generic/Makefile rename : lzo/B/generic/build.sh => main/lzo/B/generic/build.sh rename : lzo/B/generic/build_freestanding.sh => main/lzo/B/generic/build_freestanding.sh rename : lzo/B/generic/build_gcc.sh => main/lzo/B/generic/build_gcc.sh rename : lzo/B/generic/clean.sh => main/lzo/B/generic/clean.sh rename : lzo/B/os2/emx.bat => main/lzo/B/os2/emx.bat rename : lzo/B/os2/wc.bat => main/lzo/B/os2/wc.bat rename : lzo/B/os2/zc.bat => main/lzo/B/os2/zc.bat rename : lzo/B/os2_16/mc.bat => main/lzo/B/os2_16/mc.bat rename : lzo/B/os2_16/wc.bat => main/lzo/B/os2_16/wc.bat rename : lzo/B/prepare.bat => main/lzo/B/prepare.bat rename : lzo/B/src.rsp => main/lzo/B/src.rsp rename : lzo/B/unset.bat => main/lzo/B/unset.bat rename : lzo/B/win16/bc.bat => main/lzo/B/win16/bc.bat rename : lzo/B/win16/dm.bat => main/lzo/B/win16/dm.bat rename : lzo/B/win16/mc.bat => main/lzo/B/win16/mc.bat rename : lzo/B/win16/sc.bat => main/lzo/B/win16/sc.bat rename : lzo/B/win16/vc.bat => main/lzo/B/win16/vc.bat rename : lzo/B/win16/wc.bat => main/lzo/B/win16/wc.bat rename : lzo/B/win32/bc.bat => main/lzo/B/win32/bc.bat rename : lzo/B/win32/bc.rsp => main/lzo/B/win32/bc.rsp rename : lzo/B/win32/cygwin.bat => main/lzo/B/win32/cygwin.bat rename : lzo/B/win32/cygwin.rsp => main/lzo/B/win32/cygwin.rsp rename : lzo/B/win32/dm.bat => main/lzo/B/win32/dm.bat rename : lzo/B/win32/ic.bat => main/lzo/B/win32/ic.bat rename : lzo/B/win32/lccwin32.bat => main/lzo/B/win32/lccwin32.bat rename : lzo/B/win32/mingw.bat => main/lzo/B/win32/mingw.bat rename : lzo/B/win32/mwerks.bat => main/lzo/B/win32/mwerks.bat rename : lzo/B/win32/pellesc.bat => main/lzo/B/win32/pellesc.bat rename : lzo/B/win32/pgi.bat => main/lzo/B/win32/pgi.bat rename : lzo/B/win32/pw32.bat => main/lzo/B/win32/pw32.bat rename : lzo/B/win32/rsxnt.bat => main/lzo/B/win32/rsxnt.bat rename : lzo/B/win32/sc.bat => main/lzo/B/win32/sc.bat rename : lzo/B/win32/vc.bat => main/lzo/B/win32/vc.bat rename : lzo/B/win32/vc.rsp => main/lzo/B/win32/vc.rsp rename : lzo/B/win32/vc_dll.bat => main/lzo/B/win32/vc_dll.bat rename : lzo/B/win32/vc_dll.def => main/lzo/B/win32/vc_dll.def rename : lzo/B/win32/wc.bat => main/lzo/B/win32/wc.bat rename : lzo/B/win32/wc.rsp => main/lzo/B/win32/wc.rsp rename : lzo/B/win64/ic.bat => main/lzo/B/win64/ic.bat rename : lzo/B/win64/ic_dll.bat => main/lzo/B/win64/ic_dll.bat rename : lzo/B/win64/vc.bat => main/lzo/B/win64/vc.bat rename : lzo/B/win64/vc.rsp => main/lzo/B/win64/vc.rsp rename : lzo/B/win64/vc_dll.bat => main/lzo/B/win64/vc_dll.bat rename : lzo/B/win64/vc_dll.def => main/lzo/B/win64/vc_dll.def rename : lzo/BUGS => main/lzo/BUGS rename : lzo/COPYING => main/lzo/COPYING rename : lzo/ChangeLog => main/lzo/ChangeLog rename : lzo/INSTALL => main/lzo/INSTALL rename : lzo/Makefile => main/lzo/Makefile rename : lzo/Makefile.am => main/lzo/Makefile.am rename : lzo/Makefile.in => main/lzo/Makefile.in rename : lzo/NEWS => main/lzo/NEWS rename : lzo/README => main/lzo/README rename : lzo/README.ANDROID => main/lzo/README.ANDROID rename : lzo/THANKS => main/lzo/THANKS rename : lzo/aclocal.m4 => main/lzo/aclocal.m4 rename : lzo/asm/i386/00README.TXT => main/lzo/asm/i386/00README.TXT rename : lzo/asm/i386/obj/coff32/lzo1c_s1.o => main/lzo/asm/i386/obj/coff32/lzo1c_s1.o rename : lzo/asm/i386/obj/coff32/lzo1c_s2.o => main/lzo/asm/i386/obj/coff32/lzo1c_s2.o rename : lzo/asm/i386/obj/coff32/lzo1f_f1.o => main/lzo/asm/i386/obj/coff32/lzo1f_f1.o rename : lzo/asm/i386/obj/coff32/lzo1f_f2.o => main/lzo/asm/i386/obj/coff32/lzo1f_f2.o rename : lzo/asm/i386/obj/coff32/lzo1x_f1.o => main/lzo/asm/i386/obj/coff32/lzo1x_f1.o rename : lzo/asm/i386/obj/coff32/lzo1x_f2.o => main/lzo/asm/i386/obj/coff32/lzo1x_f2.o rename : lzo/asm/i386/obj/coff32/lzo1x_s1.o => main/lzo/asm/i386/obj/coff32/lzo1x_s1.o rename : lzo/asm/i386/obj/coff32/lzo1x_s2.o => main/lzo/asm/i386/obj/coff32/lzo1x_s2.o rename : lzo/asm/i386/obj/coff32/lzo1y_f1.o => main/lzo/asm/i386/obj/coff32/lzo1y_f1.o rename : lzo/asm/i386/obj/coff32/lzo1y_f2.o => main/lzo/asm/i386/obj/coff32/lzo1y_f2.o rename : lzo/asm/i386/obj/coff32/lzo1y_s1.o => main/lzo/asm/i386/obj/coff32/lzo1y_s1.o rename : lzo/asm/i386/obj/coff32/lzo1y_s2.o => main/lzo/asm/i386/obj/coff32/lzo1y_s2.o rename : lzo/asm/i386/obj/elf32/lzo1c_s1.o => main/lzo/asm/i386/obj/elf32/lzo1c_s1.o rename : lzo/asm/i386/obj/elf32/lzo1c_s2.o => main/lzo/asm/i386/obj/elf32/lzo1c_s2.o rename : lzo/asm/i386/obj/elf32/lzo1f_f1.o => main/lzo/asm/i386/obj/elf32/lzo1f_f1.o rename : lzo/asm/i386/obj/elf32/lzo1f_f2.o => main/lzo/asm/i386/obj/elf32/lzo1f_f2.o rename : lzo/asm/i386/obj/elf32/lzo1x_f1.o => main/lzo/asm/i386/obj/elf32/lzo1x_f1.o rename : lzo/asm/i386/obj/elf32/lzo1x_f2.o => main/lzo/asm/i386/obj/elf32/lzo1x_f2.o rename : lzo/asm/i386/obj/elf32/lzo1x_s1.o => main/lzo/asm/i386/obj/elf32/lzo1x_s1.o rename : 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main/lzo/asm/i386/src/lzo1f_d.ash rename : lzo/asm/i386/src/lzo1f_f1.S => main/lzo/asm/i386/src/lzo1f_f1.S rename : lzo/asm/i386/src/lzo1f_f2.S => main/lzo/asm/i386/src/lzo1f_f2.S rename : lzo/asm/i386/src/lzo1x_d.ash => main/lzo/asm/i386/src/lzo1x_d.ash rename : lzo/asm/i386/src/lzo1x_f1.S => main/lzo/asm/i386/src/lzo1x_f1.S rename : lzo/asm/i386/src/lzo1x_f2.S => main/lzo/asm/i386/src/lzo1x_f2.S rename : lzo/asm/i386/src/lzo1x_s1.S => main/lzo/asm/i386/src/lzo1x_s1.S rename : lzo/asm/i386/src/lzo1x_s2.S => main/lzo/asm/i386/src/lzo1x_s2.S rename : lzo/asm/i386/src/lzo1y_f1.S => main/lzo/asm/i386/src/lzo1y_f1.S rename : lzo/asm/i386/src/lzo1y_f2.S => main/lzo/asm/i386/src/lzo1y_f2.S rename : lzo/asm/i386/src/lzo1y_s1.S => main/lzo/asm/i386/src/lzo1y_s1.S rename : lzo/asm/i386/src/lzo1y_s2.S => main/lzo/asm/i386/src/lzo1y_s2.S rename : lzo/asm/i386/src/lzo_asm.h => main/lzo/asm/i386/src/lzo_asm.h rename : lzo/asm/i386/src_gas/all/asm_all.S => main/lzo/asm/i386/src_gas/all/asm_all.S rename : lzo/asm/i386/src_gas/asminit.def => main/lzo/asm/i386/src_gas/asminit.def rename : lzo/asm/i386/src_gas/lzo1c_s1.S => main/lzo/asm/i386/src_gas/lzo1c_s1.S rename : lzo/asm/i386/src_gas/lzo1c_s2.S => main/lzo/asm/i386/src_gas/lzo1c_s2.S rename : lzo/asm/i386/src_gas/lzo1f_f1.S => main/lzo/asm/i386/src_gas/lzo1f_f1.S rename : lzo/asm/i386/src_gas/lzo1f_f2.S => main/lzo/asm/i386/src_gas/lzo1f_f2.S rename : lzo/asm/i386/src_gas/lzo1x_f1.S => main/lzo/asm/i386/src_gas/lzo1x_f1.S rename : lzo/asm/i386/src_gas/lzo1x_f2.S => main/lzo/asm/i386/src_gas/lzo1x_f2.S rename : lzo/asm/i386/src_gas/lzo1x_s1.S => main/lzo/asm/i386/src_gas/lzo1x_s1.S rename : lzo/asm/i386/src_gas/lzo1x_s2.S => main/lzo/asm/i386/src_gas/lzo1x_s2.S rename : lzo/asm/i386/src_gas/lzo1y_f1.S => main/lzo/asm/i386/src_gas/lzo1y_f1.S rename : lzo/asm/i386/src_gas/lzo1y_f2.S => main/lzo/asm/i386/src_gas/lzo1y_f2.S rename : lzo/asm/i386/src_gas/lzo1y_s1.S => main/lzo/asm/i386/src_gas/lzo1y_s1.S rename : lzo/asm/i386/src_gas/lzo1y_s2.S => main/lzo/asm/i386/src_gas/lzo1y_s2.S rename : lzo/asm/i386/src_masm/all/asm_all.asm => main/lzo/asm/i386/src_masm/all/asm_all.asm rename : lzo/asm/i386/src_masm/asminit.def => main/lzo/asm/i386/src_masm/asminit.def rename : lzo/asm/i386/src_masm/lzo1c_s1.asm => main/lzo/asm/i386/src_masm/lzo1c_s1.asm rename : lzo/asm/i386/src_masm/lzo1c_s2.asm => main/lzo/asm/i386/src_masm/lzo1c_s2.asm rename : lzo/asm/i386/src_masm/lzo1f_f1.asm => main/lzo/asm/i386/src_masm/lzo1f_f1.asm rename : lzo/asm/i386/src_masm/lzo1f_f2.asm => main/lzo/asm/i386/src_masm/lzo1f_f2.asm rename : lzo/asm/i386/src_masm/lzo1x_f1.asm => main/lzo/asm/i386/src_masm/lzo1x_f1.asm rename : lzo/asm/i386/src_masm/lzo1x_f2.asm => main/lzo/asm/i386/src_masm/lzo1x_f2.asm rename : lzo/asm/i386/src_masm/lzo1x_s1.asm => main/lzo/asm/i386/src_masm/lzo1x_s1.asm rename : lzo/asm/i386/src_masm/lzo1x_s2.asm => main/lzo/asm/i386/src_masm/lzo1x_s2.asm rename : lzo/asm/i386/src_masm/lzo1y_f1.asm => 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rename : openssl/crypto/asn1/asn_mime.c => main/openssl/crypto/asn1/asn_mime.c rename : openssl/crypto/asn1/asn_moid.c => main/openssl/crypto/asn1/asn_moid.c rename : openssl/crypto/asn1/asn_pack.c => main/openssl/crypto/asn1/asn_pack.c rename : openssl/crypto/asn1/bio_asn1.c => main/openssl/crypto/asn1/bio_asn1.c rename : openssl/crypto/asn1/bio_ndef.c => main/openssl/crypto/asn1/bio_ndef.c rename : openssl/crypto/asn1/charmap.h => main/openssl/crypto/asn1/charmap.h rename : openssl/crypto/asn1/charmap.pl => main/openssl/crypto/asn1/charmap.pl rename : openssl/crypto/asn1/d2i_pr.c => main/openssl/crypto/asn1/d2i_pr.c rename : openssl/crypto/asn1/d2i_pu.c => main/openssl/crypto/asn1/d2i_pu.c rename : openssl/crypto/asn1/evp_asn1.c => main/openssl/crypto/asn1/evp_asn1.c rename : openssl/crypto/asn1/f_enum.c => main/openssl/crypto/asn1/f_enum.c rename : openssl/crypto/asn1/f_int.c => main/openssl/crypto/asn1/f_int.c rename : openssl/crypto/asn1/f_string.c => 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main/openssl/crypto/bn/bn_err.c rename : openssl/crypto/bn/bn_exp.c => main/openssl/crypto/bn/bn_exp.c rename : openssl/crypto/bn/bn_exp2.c => main/openssl/crypto/bn/bn_exp2.c rename : openssl/crypto/bn/bn_gcd.c => main/openssl/crypto/bn/bn_gcd.c rename : openssl/crypto/bn/bn_gf2m.c => main/openssl/crypto/bn/bn_gf2m.c rename : openssl/crypto/bn/bn_kron.c => main/openssl/crypto/bn/bn_kron.c rename : openssl/crypto/bn/bn_lcl.h => main/openssl/crypto/bn/bn_lcl.h rename : openssl/crypto/bn/bn_lib.c => main/openssl/crypto/bn/bn_lib.c rename : openssl/crypto/bn/bn_mod.c => main/openssl/crypto/bn/bn_mod.c rename : openssl/crypto/bn/bn_mont.c => main/openssl/crypto/bn/bn_mont.c rename : openssl/crypto/bn/bn_mpi.c => main/openssl/crypto/bn/bn_mpi.c rename : openssl/crypto/bn/bn_mul.c => main/openssl/crypto/bn/bn_mul.c rename : openssl/crypto/bn/bn_nist.c => main/openssl/crypto/bn/bn_nist.c rename : openssl/crypto/bn/bn_prime.c => main/openssl/crypto/bn/bn_prime.c rename : 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main/openssl/crypto/bn/expspeed.c rename : openssl/crypto/bn/exptest.c => main/openssl/crypto/bn/exptest.c rename : openssl/crypto/bn/todo => main/openssl/crypto/bn/todo rename : openssl/crypto/buffer/buf_err.c => main/openssl/crypto/buffer/buf_err.c rename : openssl/crypto/buffer/buffer.c => main/openssl/crypto/buffer/buffer.c rename : openssl/crypto/buffer/buffer.h => main/openssl/crypto/buffer/buffer.h rename : openssl/crypto/comp/c_rle.c => main/openssl/crypto/comp/c_rle.c rename : openssl/crypto/comp/c_zlib.c => main/openssl/crypto/comp/c_zlib.c rename : openssl/crypto/comp/comp.h => main/openssl/crypto/comp/comp.h rename : openssl/crypto/comp/comp_err.c => main/openssl/crypto/comp/comp_err.c rename : openssl/crypto/comp/comp_lib.c => main/openssl/crypto/comp/comp_lib.c rename : openssl/crypto/conf/README => main/openssl/crypto/conf/README rename : openssl/crypto/conf/cnf_save.c => main/openssl/crypto/conf/cnf_save.c rename : openssl/crypto/conf/conf.h => main/openssl/crypto/conf/conf.h rename : openssl/crypto/conf/conf_api.c => main/openssl/crypto/conf/conf_api.c rename : openssl/crypto/conf/conf_api.h => main/openssl/crypto/conf/conf_api.h rename : openssl/crypto/conf/conf_def.c => main/openssl/crypto/conf/conf_def.c rename : openssl/crypto/conf/conf_def.h => main/openssl/crypto/conf/conf_def.h rename : openssl/crypto/conf/conf_err.c => main/openssl/crypto/conf/conf_err.c rename : openssl/crypto/conf/conf_lib.c => main/openssl/crypto/conf/conf_lib.c rename : openssl/crypto/conf/conf_mall.c => main/openssl/crypto/conf/conf_mall.c rename : openssl/crypto/conf/conf_mod.c => main/openssl/crypto/conf/conf_mod.c rename : openssl/crypto/conf/conf_sap.c => main/openssl/crypto/conf/conf_sap.c rename : openssl/crypto/conf/keysets.pl => main/openssl/crypto/conf/keysets.pl rename : openssl/crypto/conf/ssleay.cnf => main/openssl/crypto/conf/ssleay.cnf rename : openssl/crypto/conf/test.c => main/openssl/crypto/conf/test.c rename : openssl/crypto/cpt_err.c => main/openssl/crypto/cpt_err.c rename : openssl/crypto/cryptlib.c => main/openssl/crypto/cryptlib.c rename : openssl/crypto/cryptlib.h => main/openssl/crypto/cryptlib.h rename : openssl/crypto/crypto.h => main/openssl/crypto/crypto.h rename : openssl/crypto/cversion.c => main/openssl/crypto/cversion.c rename : openssl/crypto/des/COPYRIGHT => main/openssl/crypto/des/COPYRIGHT rename : openssl/crypto/des/DES.pm => main/openssl/crypto/des/DES.pm rename : openssl/crypto/des/DES.xs => main/openssl/crypto/des/DES.xs rename : openssl/crypto/des/FILES0 => main/openssl/crypto/des/FILES0 rename : openssl/crypto/des/INSTALL => main/openssl/crypto/des/INSTALL rename : openssl/crypto/des/Imakefile => main/openssl/crypto/des/Imakefile rename : openssl/crypto/des/KERBEROS => main/openssl/crypto/des/KERBEROS rename : openssl/crypto/des/README => main/openssl/crypto/des/README rename : openssl/crypto/des/VERSION => main/openssl/crypto/des/VERSION rename : openssl/crypto/des/asm/crypt586.pl => main/openssl/crypto/des/asm/crypt586.pl rename : openssl/crypto/des/asm/des-586.pl => main/openssl/crypto/des/asm/des-586.pl rename : openssl/crypto/des/asm/des_enc.m4 => main/openssl/crypto/des/asm/des_enc.m4 rename : openssl/crypto/des/asm/desboth.pl => main/openssl/crypto/des/asm/desboth.pl rename : openssl/crypto/des/asm/readme => main/openssl/crypto/des/asm/readme rename : openssl/crypto/des/cbc3_enc.c => main/openssl/crypto/des/cbc3_enc.c rename : openssl/crypto/des/cbc_cksm.c => main/openssl/crypto/des/cbc_cksm.c rename : openssl/crypto/des/cbc_enc.c => main/openssl/crypto/des/cbc_enc.c rename : openssl/crypto/des/cfb64ede.c => main/openssl/crypto/des/cfb64ede.c rename : openssl/crypto/des/cfb64enc.c => main/openssl/crypto/des/cfb64enc.c rename : openssl/crypto/des/cfb_enc.c => main/openssl/crypto/des/cfb_enc.c rename : openssl/crypto/des/des.c => main/openssl/crypto/des/des.c rename : openssl/crypto/des/des.h => main/openssl/crypto/des/des.h rename : openssl/crypto/des/des.pod => main/openssl/crypto/des/des.pod rename : openssl/crypto/des/des3s.cpp => main/openssl/crypto/des/des3s.cpp rename : openssl/crypto/des/des_enc.c => main/openssl/crypto/des/des_enc.c rename : openssl/crypto/des/des_locl.h => main/openssl/crypto/des/des_locl.h rename : openssl/crypto/des/des_old.c => main/openssl/crypto/des/des_old.c rename : openssl/crypto/des/des_old.h => main/openssl/crypto/des/des_old.h rename : openssl/crypto/des/des_old2.c => main/openssl/crypto/des/des_old2.c rename : openssl/crypto/des/des_opts.c => main/openssl/crypto/des/des_opts.c rename : openssl/crypto/des/des_ver.h => main/openssl/crypto/des/des_ver.h rename : openssl/crypto/des/dess.cpp => main/openssl/crypto/des/dess.cpp rename : openssl/crypto/des/destest.c => main/openssl/crypto/des/destest.c rename : openssl/crypto/des/ecb3_enc.c => main/openssl/crypto/des/ecb3_enc.c rename : openssl/crypto/des/ecb_enc.c => main/openssl/crypto/des/ecb_enc.c rename : openssl/crypto/des/ede_cbcm_enc.c => main/openssl/crypto/des/ede_cbcm_enc.c rename : openssl/crypto/des/enc_read.c => main/openssl/crypto/des/enc_read.c rename : openssl/crypto/des/enc_writ.c => main/openssl/crypto/des/enc_writ.c rename : openssl/crypto/des/fcrypt.c => main/openssl/crypto/des/fcrypt.c rename : openssl/crypto/des/fcrypt_b.c => main/openssl/crypto/des/fcrypt_b.c rename : openssl/crypto/des/makefile.bc => main/openssl/crypto/des/makefile.bc rename : openssl/crypto/des/ncbc_enc.c => main/openssl/crypto/des/ncbc_enc.c rename : openssl/crypto/des/ofb64ede.c => main/openssl/crypto/des/ofb64ede.c rename : openssl/crypto/des/ofb64enc.c => main/openssl/crypto/des/ofb64enc.c rename : openssl/crypto/des/ofb_enc.c => main/openssl/crypto/des/ofb_enc.c rename : openssl/crypto/des/options.txt => main/openssl/crypto/des/options.txt rename : openssl/crypto/des/pcbc_enc.c => main/openssl/crypto/des/pcbc_enc.c rename : openssl/crypto/des/qud_cksm.c => main/openssl/crypto/des/qud_cksm.c rename : openssl/crypto/des/rand_key.c => main/openssl/crypto/des/rand_key.c rename : openssl/crypto/des/read2pwd.c => main/openssl/crypto/des/read2pwd.c rename : openssl/crypto/des/read_pwd.c => main/openssl/crypto/des/read_pwd.c rename : openssl/crypto/des/rpc_des.h => main/openssl/crypto/des/rpc_des.h rename : openssl/crypto/des/rpc_enc.c => main/openssl/crypto/des/rpc_enc.c rename : openssl/crypto/des/rpw.c => main/openssl/crypto/des/rpw.c rename : openssl/crypto/des/set_key.c => main/openssl/crypto/des/set_key.c rename : openssl/crypto/des/speed.c => main/openssl/crypto/des/speed.c rename : openssl/crypto/des/spr.h => main/openssl/crypto/des/spr.h rename : openssl/crypto/des/str2key.c => main/openssl/crypto/des/str2key.c rename : openssl/crypto/des/t/test => main/openssl/crypto/des/t/test rename : openssl/crypto/des/times/486-50.sol => main/openssl/crypto/des/times/486-50.sol rename : openssl/crypto/des/times/586-100.lnx => main/openssl/crypto/des/times/586-100.lnx rename : openssl/crypto/des/times/686-200.fre => main/openssl/crypto/des/times/686-200.fre rename : openssl/crypto/des/times/aix.cc => main/openssl/crypto/des/times/aix.cc rename : openssl/crypto/des/times/alpha.cc => main/openssl/crypto/des/times/alpha.cc rename : openssl/crypto/des/times/hpux.cc => main/openssl/crypto/des/times/hpux.cc rename : openssl/crypto/des/times/sparc.gcc => main/openssl/crypto/des/times/sparc.gcc rename : openssl/crypto/des/times/usparc.cc => main/openssl/crypto/des/times/usparc.cc rename : openssl/crypto/des/typemap => main/openssl/crypto/des/typemap rename : openssl/crypto/des/xcbc_enc.c => main/openssl/crypto/des/xcbc_enc.c rename : openssl/crypto/dh/dh.h => main/openssl/crypto/dh/dh.h rename : openssl/crypto/dh/dh1024.pem => main/openssl/crypto/dh/dh1024.pem rename : openssl/crypto/dh/dh192.pem => main/openssl/crypto/dh/dh192.pem rename : openssl/crypto/dh/dh2048.pem => main/openssl/crypto/dh/dh2048.pem rename : openssl/crypto/dh/dh4096.pem => main/openssl/crypto/dh/dh4096.pem rename : openssl/crypto/dh/dh512.pem => main/openssl/crypto/dh/dh512.pem rename : openssl/crypto/dh/dh_ameth.c => main/openssl/crypto/dh/dh_ameth.c rename : openssl/crypto/dh/dh_asn1.c => main/openssl/crypto/dh/dh_asn1.c rename : openssl/crypto/dh/dh_check.c => main/openssl/crypto/dh/dh_check.c rename : openssl/crypto/dh/dh_depr.c => main/openssl/crypto/dh/dh_depr.c rename : openssl/crypto/dh/dh_err.c => main/openssl/crypto/dh/dh_err.c rename : openssl/crypto/dh/dh_gen.c => main/openssl/crypto/dh/dh_gen.c rename : openssl/crypto/dh/dh_key.c => main/openssl/crypto/dh/dh_key.c rename : openssl/crypto/dh/dh_lib.c => main/openssl/crypto/dh/dh_lib.c rename : openssl/crypto/dh/dh_pmeth.c => main/openssl/crypto/dh/dh_pmeth.c rename : openssl/crypto/dh/dhtest.c => main/openssl/crypto/dh/dhtest.c rename : openssl/crypto/dh/example => main/openssl/crypto/dh/example rename : openssl/crypto/dh/generate => main/openssl/crypto/dh/generate rename : openssl/crypto/dh/p1024.c => main/openssl/crypto/dh/p1024.c rename : openssl/crypto/dh/p192.c => main/openssl/crypto/dh/p192.c rename : openssl/crypto/dh/p512.c => main/openssl/crypto/dh/p512.c rename : openssl/crypto/dsa/README => main/openssl/crypto/dsa/README rename : openssl/crypto/dsa/dsa.h => main/openssl/crypto/dsa/dsa.h rename : openssl/crypto/dsa/dsa_ameth.c => main/openssl/crypto/dsa/dsa_ameth.c rename : openssl/crypto/dsa/dsa_asn1.c => main/openssl/crypto/dsa/dsa_asn1.c rename : openssl/crypto/dsa/dsa_depr.c => main/openssl/crypto/dsa/dsa_depr.c rename : openssl/crypto/dsa/dsa_err.c => main/openssl/crypto/dsa/dsa_err.c rename : openssl/crypto/dsa/dsa_gen.c => main/openssl/crypto/dsa/dsa_gen.c rename : openssl/crypto/dsa/dsa_key.c => main/openssl/crypto/dsa/dsa_key.c rename : openssl/crypto/dsa/dsa_lib.c => main/openssl/crypto/dsa/dsa_lib.c rename : openssl/crypto/dsa/dsa_locl.h => main/openssl/crypto/dsa/dsa_locl.h rename : openssl/crypto/dsa/dsa_ossl.c => main/openssl/crypto/dsa/dsa_ossl.c rename : openssl/crypto/dsa/dsa_pmeth.c => main/openssl/crypto/dsa/dsa_pmeth.c rename : openssl/crypto/dsa/dsa_prn.c => main/openssl/crypto/dsa/dsa_prn.c rename : openssl/crypto/dsa/dsa_sign.c => main/openssl/crypto/dsa/dsa_sign.c rename : openssl/crypto/dsa/dsa_vrf.c => main/openssl/crypto/dsa/dsa_vrf.c rename : openssl/crypto/dsa/dsagen.c => main/openssl/crypto/dsa/dsagen.c rename : openssl/crypto/dsa/dsatest.c => main/openssl/crypto/dsa/dsatest.c rename : openssl/crypto/dsa/fips186a.txt => main/openssl/crypto/dsa/fips186a.txt rename : openssl/crypto/dso/README => main/openssl/crypto/dso/README rename : openssl/crypto/dso/dso.h => main/openssl/crypto/dso/dso.h rename : openssl/crypto/dso/dso_dl.c => main/openssl/crypto/dso/dso_dl.c rename : openssl/crypto/dso/dso_dlfcn.c => main/openssl/crypto/dso/dso_dlfcn.c rename : openssl/crypto/dso/dso_err.c => main/openssl/crypto/dso/dso_err.c rename : openssl/crypto/dso/dso_lib.c => main/openssl/crypto/dso/dso_lib.c rename : openssl/crypto/dso/dso_null.c => main/openssl/crypto/dso/dso_null.c rename : openssl/crypto/dso/dso_openssl.c => main/openssl/crypto/dso/dso_openssl.c rename : openssl/crypto/ebcdic.c => main/openssl/crypto/ebcdic.c rename : openssl/crypto/ebcdic.h => main/openssl/crypto/ebcdic.h rename : openssl/crypto/ec/ec.h => main/openssl/crypto/ec/ec.h rename : openssl/crypto/ec/ec2_mult.c => main/openssl/crypto/ec/ec2_mult.c rename : openssl/crypto/ec/ec2_smpl.c => main/openssl/crypto/ec/ec2_smpl.c rename : openssl/crypto/ec/ec_ameth.c => main/openssl/crypto/ec/ec_ameth.c rename : openssl/crypto/ec/ec_asn1.c => main/openssl/crypto/ec/ec_asn1.c rename : openssl/crypto/ec/ec_check.c => main/openssl/crypto/ec/ec_check.c rename : openssl/crypto/ec/ec_curve.c => main/openssl/crypto/ec/ec_curve.c rename : openssl/crypto/ec/ec_cvt.c => main/openssl/crypto/ec/ec_cvt.c rename : openssl/crypto/ec/ec_err.c => main/openssl/crypto/ec/ec_err.c rename : openssl/crypto/ec/ec_key.c => main/openssl/crypto/ec/ec_key.c rename : openssl/crypto/ec/ec_lcl.h => main/openssl/crypto/ec/ec_lcl.h rename : openssl/crypto/ec/ec_lib.c => main/openssl/crypto/ec/ec_lib.c rename : openssl/crypto/ec/ec_mult.c => main/openssl/crypto/ec/ec_mult.c rename : openssl/crypto/ec/ec_pmeth.c => main/openssl/crypto/ec/ec_pmeth.c rename : openssl/crypto/ec/ec_print.c => main/openssl/crypto/ec/ec_print.c rename : openssl/crypto/ec/eck_prn.c => main/openssl/crypto/ec/eck_prn.c rename : openssl/crypto/ec/ecp_mont.c => main/openssl/crypto/ec/ecp_mont.c rename : openssl/crypto/ec/ecp_nist.c => main/openssl/crypto/ec/ecp_nist.c rename : openssl/crypto/ec/ecp_smpl.c => main/openssl/crypto/ec/ecp_smpl.c rename : openssl/crypto/ec/ectest.c => main/openssl/crypto/ec/ectest.c rename : openssl/crypto/ecdh/ecdh.h => main/openssl/crypto/ecdh/ecdh.h rename : openssl/crypto/ecdh/ecdhtest.c => main/openssl/crypto/ecdh/ecdhtest.c rename : openssl/crypto/ecdh/ech_err.c => main/openssl/crypto/ecdh/ech_err.c rename : openssl/crypto/ecdh/ech_key.c => main/openssl/crypto/ecdh/ech_key.c rename : openssl/crypto/ecdh/ech_lib.c => main/openssl/crypto/ecdh/ech_lib.c rename : openssl/crypto/ecdh/ech_locl.h => main/openssl/crypto/ecdh/ech_locl.h rename : openssl/crypto/ecdh/ech_ossl.c => main/openssl/crypto/ecdh/ech_ossl.c rename : openssl/crypto/ecdsa/ecdsa.h => main/openssl/crypto/ecdsa/ecdsa.h rename : openssl/crypto/ecdsa/ecdsatest.c => main/openssl/crypto/ecdsa/ecdsatest.c rename : openssl/crypto/ecdsa/ecs_asn1.c => main/openssl/crypto/ecdsa/ecs_asn1.c rename : openssl/crypto/ecdsa/ecs_err.c => main/openssl/crypto/ecdsa/ecs_err.c rename : openssl/crypto/ecdsa/ecs_lib.c => main/openssl/crypto/ecdsa/ecs_lib.c rename : openssl/crypto/ecdsa/ecs_locl.h => main/openssl/crypto/ecdsa/ecs_locl.h rename : openssl/crypto/ecdsa/ecs_ossl.c => main/openssl/crypto/ecdsa/ecs_ossl.c rename : openssl/crypto/ecdsa/ecs_sign.c => main/openssl/crypto/ecdsa/ecs_sign.c rename : openssl/crypto/ecdsa/ecs_vrf.c => main/openssl/crypto/ecdsa/ecs_vrf.c rename : openssl/crypto/engine/README => main/openssl/crypto/engine/README rename : openssl/crypto/engine/eng_all.c => main/openssl/crypto/engine/eng_all.c rename : openssl/crypto/engine/eng_cnf.c => main/openssl/crypto/engine/eng_cnf.c rename : openssl/crypto/engine/eng_cryptodev.c => main/openssl/crypto/engine/eng_cryptodev.c rename : openssl/crypto/engine/eng_ctrl.c => main/openssl/crypto/engine/eng_ctrl.c rename : openssl/crypto/engine/eng_dyn.c => main/openssl/crypto/engine/eng_dyn.c rename : openssl/crypto/engine/eng_err.c => main/openssl/crypto/engine/eng_err.c rename : openssl/crypto/engine/eng_fat.c => main/openssl/crypto/engine/eng_fat.c rename : openssl/crypto/engine/eng_init.c => main/openssl/crypto/engine/eng_init.c rename : openssl/crypto/engine/eng_int.h => main/openssl/crypto/engine/eng_int.h rename : openssl/crypto/engine/eng_lib.c => main/openssl/crypto/engine/eng_lib.c rename : openssl/crypto/engine/eng_list.c => main/openssl/crypto/engine/eng_list.c rename : openssl/crypto/engine/eng_openssl.c => main/openssl/crypto/engine/eng_openssl.c rename : openssl/crypto/engine/eng_pkey.c => main/openssl/crypto/engine/eng_pkey.c rename : openssl/crypto/engine/eng_table.c => main/openssl/crypto/engine/eng_table.c rename : openssl/crypto/engine/engine.h => main/openssl/crypto/engine/engine.h rename : openssl/crypto/engine/enginetest.c => main/openssl/crypto/engine/enginetest.c rename : openssl/crypto/engine/tb_cipher.c => main/openssl/crypto/engine/tb_cipher.c rename : openssl/crypto/engine/tb_dh.c => main/openssl/crypto/engine/tb_dh.c rename : openssl/crypto/engine/tb_digest.c => main/openssl/crypto/engine/tb_digest.c rename : openssl/crypto/engine/tb_dsa.c => main/openssl/crypto/engine/tb_dsa.c rename : openssl/crypto/engine/tb_ecdh.c => main/openssl/crypto/engine/tb_ecdh.c rename : openssl/crypto/engine/tb_ecdsa.c => main/openssl/crypto/engine/tb_ecdsa.c rename : openssl/crypto/engine/tb_rand.c => main/openssl/crypto/engine/tb_rand.c rename : openssl/crypto/engine/tb_rsa.c => main/openssl/crypto/engine/tb_rsa.c rename : openssl/crypto/engine/tb_store.c => main/openssl/crypto/engine/tb_store.c rename : openssl/crypto/err/err.c => main/openssl/crypto/err/err.c rename : openssl/crypto/err/err.h => main/openssl/crypto/err/err.h rename : openssl/crypto/err/err_all.c => main/openssl/crypto/err/err_all.c rename : openssl/crypto/err/err_prn.c => main/openssl/crypto/err/err_prn.c rename : openssl/crypto/err/openssl.ec => main/openssl/crypto/err/openssl.ec rename : openssl/crypto/evp/bio_b64.c => main/openssl/crypto/evp/bio_b64.c rename : openssl/crypto/evp/bio_enc.c => main/openssl/crypto/evp/bio_enc.c rename : openssl/crypto/evp/bio_md.c => main/openssl/crypto/evp/bio_md.c rename : openssl/crypto/evp/bio_ok.c => main/openssl/crypto/evp/bio_ok.c rename : openssl/crypto/evp/c_all.c => main/openssl/crypto/evp/c_all.c rename : openssl/crypto/evp/c_allc.c => main/openssl/crypto/evp/c_allc.c rename : openssl/crypto/evp/c_alld.c => main/openssl/crypto/evp/c_alld.c rename : openssl/crypto/evp/digest.c => main/openssl/crypto/evp/digest.c rename : openssl/crypto/evp/e_aes.c => main/openssl/crypto/evp/e_aes.c rename : openssl/crypto/evp/e_bf.c => main/openssl/crypto/evp/e_bf.c rename : openssl/crypto/evp/e_camellia.c => main/openssl/crypto/evp/e_camellia.c rename : openssl/crypto/evp/e_cast.c => main/openssl/crypto/evp/e_cast.c rename : openssl/crypto/evp/e_des.c => main/openssl/crypto/evp/e_des.c rename : openssl/crypto/evp/e_des3.c => main/openssl/crypto/evp/e_des3.c rename : openssl/crypto/evp/e_dsa.c => main/openssl/crypto/evp/e_dsa.c rename : openssl/crypto/evp/e_idea.c => main/openssl/crypto/evp/e_idea.c rename : openssl/crypto/evp/e_null.c => main/openssl/crypto/evp/e_null.c rename : openssl/crypto/evp/e_old.c => main/openssl/crypto/evp/e_old.c rename : openssl/crypto/evp/e_rc2.c => main/openssl/crypto/evp/e_rc2.c rename : openssl/crypto/evp/e_rc4.c => main/openssl/crypto/evp/e_rc4.c rename : openssl/crypto/evp/e_rc5.c => main/openssl/crypto/evp/e_rc5.c rename : openssl/crypto/evp/e_seed.c => main/openssl/crypto/evp/e_seed.c rename : openssl/crypto/evp/e_xcbc_d.c => main/openssl/crypto/evp/e_xcbc_d.c rename : openssl/crypto/evp/encode.c => main/openssl/crypto/evp/encode.c rename : openssl/crypto/evp/evp.h => main/openssl/crypto/evp/evp.h rename : openssl/crypto/evp/evp_acnf.c => main/openssl/crypto/evp/evp_acnf.c rename : openssl/crypto/evp/evp_enc.c => main/openssl/crypto/evp/evp_enc.c rename : openssl/crypto/evp/evp_err.c => main/openssl/crypto/evp/evp_err.c rename : openssl/crypto/evp/evp_key.c => main/openssl/crypto/evp/evp_key.c rename : openssl/crypto/evp/evp_lib.c => main/openssl/crypto/evp/evp_lib.c rename : openssl/crypto/evp/evp_locl.h => main/openssl/crypto/evp/evp_locl.h rename : openssl/crypto/evp/evp_pbe.c => main/openssl/crypto/evp/evp_pbe.c rename : openssl/crypto/evp/evp_pkey.c => main/openssl/crypto/evp/evp_pkey.c rename : openssl/crypto/evp/evp_test.c => main/openssl/crypto/evp/evp_test.c rename : openssl/crypto/evp/evptests.txt => main/openssl/crypto/evp/evptests.txt rename : openssl/crypto/evp/m_dss.c => main/openssl/crypto/evp/m_dss.c rename : openssl/crypto/evp/m_dss1.c => main/openssl/crypto/evp/m_dss1.c rename : openssl/crypto/evp/m_ecdsa.c => main/openssl/crypto/evp/m_ecdsa.c rename : openssl/crypto/evp/m_md4.c => main/openssl/crypto/evp/m_md4.c rename : openssl/crypto/evp/m_md5.c => main/openssl/crypto/evp/m_md5.c rename : openssl/crypto/evp/m_mdc2.c => main/openssl/crypto/evp/m_mdc2.c rename : openssl/crypto/evp/m_null.c => main/openssl/crypto/evp/m_null.c rename : openssl/crypto/evp/m_ripemd.c => main/openssl/crypto/evp/m_ripemd.c rename : openssl/crypto/evp/m_sha1.c => main/openssl/crypto/evp/m_sha1.c rename : openssl/crypto/evp/m_sigver.c => main/openssl/crypto/evp/m_sigver.c rename : openssl/crypto/evp/m_wp.c => main/openssl/crypto/evp/m_wp.c rename : openssl/crypto/evp/names.c => main/openssl/crypto/evp/names.c rename : openssl/crypto/evp/openbsd_hw.c => main/openssl/crypto/evp/openbsd_hw.c rename : openssl/crypto/evp/p5_crpt.c => main/openssl/crypto/evp/p5_crpt.c rename : openssl/crypto/evp/p5_crpt2.c => main/openssl/crypto/evp/p5_crpt2.c rename : openssl/crypto/evp/p_dec.c => main/openssl/crypto/evp/p_dec.c rename : openssl/crypto/evp/p_enc.c => main/openssl/crypto/evp/p_enc.c rename : openssl/crypto/evp/p_lib.c => main/openssl/crypto/evp/p_lib.c rename : openssl/crypto/evp/p_open.c => main/openssl/crypto/evp/p_open.c rename : openssl/crypto/evp/p_seal.c => main/openssl/crypto/evp/p_seal.c rename : openssl/crypto/evp/p_sign.c => main/openssl/crypto/evp/p_sign.c rename : openssl/crypto/evp/p_verify.c => main/openssl/crypto/evp/p_verify.c rename : openssl/crypto/evp/pmeth_fn.c => main/openssl/crypto/evp/pmeth_fn.c rename : openssl/crypto/evp/pmeth_gn.c => main/openssl/crypto/evp/pmeth_gn.c rename : openssl/crypto/evp/pmeth_lib.c => main/openssl/crypto/evp/pmeth_lib.c rename : openssl/crypto/ex_data.c => main/openssl/crypto/ex_data.c rename : openssl/crypto/hmac/hm_ameth.c => main/openssl/crypto/hmac/hm_ameth.c rename : openssl/crypto/hmac/hm_pmeth.c => main/openssl/crypto/hmac/hm_pmeth.c rename : openssl/crypto/hmac/hmac.c => main/openssl/crypto/hmac/hmac.c rename : openssl/crypto/hmac/hmac.h => main/openssl/crypto/hmac/hmac.h rename : openssl/crypto/hmac/hmactest.c => main/openssl/crypto/hmac/hmactest.c rename : openssl/crypto/ia64cpuid.S => main/openssl/crypto/ia64cpuid.S rename : openssl/crypto/jpake/jpake.c => main/openssl/crypto/jpake/jpake.c rename : openssl/crypto/jpake/jpake.h => main/openssl/crypto/jpake/jpake.h rename : openssl/crypto/jpake/jpake_err.c => main/openssl/crypto/jpake/jpake_err.c rename : openssl/crypto/jpake/jpaketest.c => main/openssl/crypto/jpake/jpaketest.c rename : openssl/crypto/krb5/krb5_asn.c => main/openssl/crypto/krb5/krb5_asn.c rename : openssl/crypto/krb5/krb5_asn.h => main/openssl/crypto/krb5/krb5_asn.h rename : openssl/crypto/lhash/lh_stats.c => main/openssl/crypto/lhash/lh_stats.c rename : openssl/crypto/lhash/lh_test.c => main/openssl/crypto/lhash/lh_test.c rename : openssl/crypto/lhash/lhash.c => main/openssl/crypto/lhash/lhash.c rename : openssl/crypto/lhash/lhash.h => main/openssl/crypto/lhash/lhash.h rename : openssl/crypto/lhash/num.pl => main/openssl/crypto/lhash/num.pl rename : openssl/crypto/md32_common.h => main/openssl/crypto/md32_common.h rename : openssl/crypto/md4/md4.c => main/openssl/crypto/md4/md4.c rename : openssl/crypto/md4/md4.h => main/openssl/crypto/md4/md4.h rename : openssl/crypto/md4/md4_dgst.c => main/openssl/crypto/md4/md4_dgst.c rename : openssl/crypto/md4/md4_locl.h => main/openssl/crypto/md4/md4_locl.h rename : openssl/crypto/md4/md4_one.c => main/openssl/crypto/md4/md4_one.c rename : openssl/crypto/md4/md4s.cpp => main/openssl/crypto/md4/md4s.cpp rename : openssl/crypto/md4/md4test.c => main/openssl/crypto/md4/md4test.c rename : openssl/crypto/md5/asm/md5-586.pl => main/openssl/crypto/md5/asm/md5-586.pl rename : openssl/crypto/md5/asm/md5-ia64.S => main/openssl/crypto/md5/asm/md5-ia64.S rename : openssl/crypto/md5/asm/md5-x86_64.pl => main/openssl/crypto/md5/asm/md5-x86_64.pl rename : openssl/crypto/md5/md5.c => main/openssl/crypto/md5/md5.c rename : openssl/crypto/md5/md5.h => main/openssl/crypto/md5/md5.h rename : openssl/crypto/md5/md5_dgst.c => main/openssl/crypto/md5/md5_dgst.c rename : openssl/crypto/md5/md5_locl.h => main/openssl/crypto/md5/md5_locl.h rename : openssl/crypto/md5/md5_one.c => main/openssl/crypto/md5/md5_one.c rename : openssl/crypto/md5/md5s.cpp => main/openssl/crypto/md5/md5s.cpp rename : openssl/crypto/md5/md5test.c => main/openssl/crypto/md5/md5test.c rename : openssl/crypto/mdc2/mdc2.h => main/openssl/crypto/mdc2/mdc2.h rename : openssl/crypto/mdc2/mdc2_one.c => main/openssl/crypto/mdc2/mdc2_one.c rename : openssl/crypto/mdc2/mdc2dgst.c => main/openssl/crypto/mdc2/mdc2dgst.c rename : openssl/crypto/mdc2/mdc2test.c => main/openssl/crypto/mdc2/mdc2test.c rename : openssl/crypto/mem.c => main/openssl/crypto/mem.c rename : openssl/crypto/mem_clr.c => main/openssl/crypto/mem_clr.c rename : openssl/crypto/mem_dbg.c => main/openssl/crypto/mem_dbg.c rename : openssl/crypto/modes/cbc128.c => main/openssl/crypto/modes/cbc128.c rename : openssl/crypto/modes/cfb128.c => main/openssl/crypto/modes/cfb128.c rename : openssl/crypto/modes/ctr128.c => main/openssl/crypto/modes/ctr128.c rename : openssl/crypto/modes/ofb128.c => main/openssl/crypto/modes/ofb128.c rename : openssl/crypto/o_dir.c => main/openssl/crypto/o_dir.c rename : openssl/crypto/o_dir.h => main/openssl/crypto/o_dir.h rename : openssl/crypto/o_dir_test.c => main/openssl/crypto/o_dir_test.c rename : openssl/crypto/o_str.c => main/openssl/crypto/o_str.c rename : openssl/crypto/o_str.h => main/openssl/crypto/o_str.h rename : openssl/crypto/o_time.c => main/openssl/crypto/o_time.c rename : openssl/crypto/o_time.h => main/openssl/crypto/o_time.h rename : openssl/crypto/objects/o_names.c => main/openssl/crypto/objects/o_names.c rename : openssl/crypto/objects/obj_dat.c => main/openssl/crypto/objects/obj_dat.c rename : openssl/crypto/objects/obj_dat.h => main/openssl/crypto/objects/obj_dat.h rename : openssl/crypto/objects/obj_dat.pl => main/openssl/crypto/objects/obj_dat.pl rename : openssl/crypto/objects/obj_err.c => main/openssl/crypto/objects/obj_err.c rename : openssl/crypto/objects/obj_lib.c => main/openssl/crypto/objects/obj_lib.c rename : openssl/crypto/objects/obj_mac.h => main/openssl/crypto/objects/obj_mac.h rename : openssl/crypto/objects/obj_mac.num => main/openssl/crypto/objects/obj_mac.num rename : openssl/crypto/objects/obj_xref.c => main/openssl/crypto/objects/obj_xref.c rename : openssl/crypto/objects/obj_xref.h => main/openssl/crypto/objects/obj_xref.h rename : openssl/crypto/objects/obj_xref.txt => main/openssl/crypto/objects/obj_xref.txt rename : openssl/crypto/objects/objects.README => main/openssl/crypto/objects/objects.README rename : openssl/crypto/objects/objects.h => main/openssl/crypto/objects/objects.h rename : openssl/crypto/objects/objects.pl => main/openssl/crypto/objects/objects.pl rename : openssl/crypto/objects/objects.txt => main/openssl/crypto/objects/objects.txt rename : openssl/crypto/objects/objxref.pl => main/openssl/crypto/objects/objxref.pl rename : openssl/crypto/ocsp/ocsp.h => main/openssl/crypto/ocsp/ocsp.h rename : openssl/crypto/ocsp/ocsp_asn.c => main/openssl/crypto/ocsp/ocsp_asn.c rename : openssl/crypto/ocsp/ocsp_cl.c => main/openssl/crypto/ocsp/ocsp_cl.c rename : openssl/crypto/ocsp/ocsp_err.c => main/openssl/crypto/ocsp/ocsp_err.c rename : openssl/crypto/ocsp/ocsp_ext.c => main/openssl/crypto/ocsp/ocsp_ext.c rename : openssl/crypto/ocsp/ocsp_ht.c => main/openssl/crypto/ocsp/ocsp_ht.c rename : openssl/crypto/ocsp/ocsp_lib.c => main/openssl/crypto/ocsp/ocsp_lib.c rename : openssl/crypto/ocsp/ocsp_prn.c => main/openssl/crypto/ocsp/ocsp_prn.c rename : openssl/crypto/ocsp/ocsp_srv.c => main/openssl/crypto/ocsp/ocsp_srv.c rename : openssl/crypto/ocsp/ocsp_vfy.c => main/openssl/crypto/ocsp/ocsp_vfy.c rename : openssl/crypto/opensslconf.h => main/openssl/crypto/opensslconf.h rename : openssl/crypto/opensslconf.h.in => main/openssl/crypto/opensslconf.h.in rename : openssl/crypto/opensslv.h => main/openssl/crypto/opensslv.h rename : openssl/crypto/ossl_typ.h => main/openssl/crypto/ossl_typ.h rename : openssl/crypto/pem/message => main/openssl/crypto/pem/message rename : openssl/crypto/pem/pem.h => main/openssl/crypto/pem/pem.h rename : openssl/crypto/pem/pem2.h => main/openssl/crypto/pem/pem2.h rename : openssl/crypto/pem/pem_all.c => main/openssl/crypto/pem/pem_all.c rename : openssl/crypto/pem/pem_err.c => main/openssl/crypto/pem/pem_err.c rename : openssl/crypto/pem/pem_info.c => main/openssl/crypto/pem/pem_info.c rename : openssl/crypto/pem/pem_lib.c => main/openssl/crypto/pem/pem_lib.c rename : openssl/crypto/pem/pem_oth.c => main/openssl/crypto/pem/pem_oth.c rename : openssl/crypto/pem/pem_pk8.c => main/openssl/crypto/pem/pem_pk8.c rename : openssl/crypto/pem/pem_pkey.c => main/openssl/crypto/pem/pem_pkey.c rename : openssl/crypto/pem/pem_seal.c => main/openssl/crypto/pem/pem_seal.c rename : openssl/crypto/pem/pem_sign.c => main/openssl/crypto/pem/pem_sign.c rename : openssl/crypto/pem/pem_x509.c => main/openssl/crypto/pem/pem_x509.c rename : openssl/crypto/pem/pem_xaux.c => main/openssl/crypto/pem/pem_xaux.c rename : openssl/crypto/pem/pkcs7.lis => main/openssl/crypto/pem/pkcs7.lis rename : openssl/crypto/pem/pvkfmt.c => main/openssl/crypto/pem/pvkfmt.c rename : openssl/crypto/perlasm/cbc.pl => main/openssl/crypto/perlasm/cbc.pl rename : openssl/crypto/perlasm/ppc-xlate.pl => main/openssl/crypto/perlasm/ppc-xlate.pl rename : openssl/crypto/perlasm/readme => main/openssl/crypto/perlasm/readme rename : openssl/crypto/perlasm/x86_64-xlate.pl => main/openssl/crypto/perlasm/x86_64-xlate.pl rename : openssl/crypto/perlasm/x86asm.pl => main/openssl/crypto/perlasm/x86asm.pl rename : openssl/crypto/perlasm/x86gas.pl => main/openssl/crypto/perlasm/x86gas.pl rename : openssl/crypto/perlasm/x86masm.pl => main/openssl/crypto/perlasm/x86masm.pl rename : openssl/crypto/perlasm/x86nasm.pl => main/openssl/crypto/perlasm/x86nasm.pl rename : openssl/crypto/pkcs12/p12_add.c => main/openssl/crypto/pkcs12/p12_add.c rename : openssl/crypto/pkcs12/p12_asn.c => main/openssl/crypto/pkcs12/p12_asn.c rename : openssl/crypto/pkcs12/p12_attr.c => main/openssl/crypto/pkcs12/p12_attr.c rename : openssl/crypto/pkcs12/p12_crpt.c => main/openssl/crypto/pkcs12/p12_crpt.c rename : openssl/crypto/pkcs12/p12_crt.c => main/openssl/crypto/pkcs12/p12_crt.c rename : openssl/crypto/pkcs12/p12_decr.c => main/openssl/crypto/pkcs12/p12_decr.c rename : openssl/crypto/pkcs12/p12_init.c => main/openssl/crypto/pkcs12/p12_init.c rename : openssl/crypto/pkcs12/p12_key.c => main/openssl/crypto/pkcs12/p12_key.c rename : openssl/crypto/pkcs12/p12_kiss.c => main/openssl/crypto/pkcs12/p12_kiss.c rename : openssl/crypto/pkcs12/p12_mutl.c => main/openssl/crypto/pkcs12/p12_mutl.c rename : openssl/crypto/pkcs12/p12_npas.c => main/openssl/crypto/pkcs12/p12_npas.c rename : openssl/crypto/pkcs12/p12_p8d.c => main/openssl/crypto/pkcs12/p12_p8d.c rename : openssl/crypto/pkcs12/p12_p8e.c => main/openssl/crypto/pkcs12/p12_p8e.c rename : openssl/crypto/pkcs12/p12_utl.c => main/openssl/crypto/pkcs12/p12_utl.c rename : openssl/crypto/pkcs12/pk12err.c => main/openssl/crypto/pkcs12/pk12err.c rename : openssl/crypto/pkcs12/pkcs12.h => main/openssl/crypto/pkcs12/pkcs12.h rename : openssl/crypto/pkcs7/bio_ber.c => main/openssl/crypto/pkcs7/bio_ber.c rename : openssl/crypto/pkcs7/dec.c => main/openssl/crypto/pkcs7/dec.c rename : openssl/crypto/pkcs7/des.pem => main/openssl/crypto/pkcs7/des.pem rename : openssl/crypto/pkcs7/doc => main/openssl/crypto/pkcs7/doc rename : openssl/crypto/pkcs7/enc.c => main/openssl/crypto/pkcs7/enc.c rename : openssl/crypto/pkcs7/es1.pem => main/openssl/crypto/pkcs7/es1.pem rename : openssl/crypto/pkcs7/example.c => main/openssl/crypto/pkcs7/example.c rename : openssl/crypto/pkcs7/example.h => main/openssl/crypto/pkcs7/example.h rename : openssl/crypto/pkcs7/info.pem => main/openssl/crypto/pkcs7/info.pem rename : openssl/crypto/pkcs7/infokey.pem => main/openssl/crypto/pkcs7/infokey.pem rename : openssl/crypto/pkcs7/p7/a1 => main/openssl/crypto/pkcs7/p7/a1 rename : openssl/crypto/pkcs7/p7/a2 => main/openssl/crypto/pkcs7/p7/a2 rename : openssl/crypto/pkcs7/p7/cert.p7c => main/openssl/crypto/pkcs7/p7/cert.p7c rename : openssl/crypto/pkcs7/p7/smime.p7m => main/openssl/crypto/pkcs7/p7/smime.p7m rename : openssl/crypto/pkcs7/p7/smime.p7s => main/openssl/crypto/pkcs7/p7/smime.p7s rename : openssl/crypto/pkcs7/pk7_asn1.c => main/openssl/crypto/pkcs7/pk7_asn1.c rename : openssl/crypto/pkcs7/pk7_attr.c => main/openssl/crypto/pkcs7/pk7_attr.c rename : openssl/crypto/pkcs7/pk7_dgst.c => main/openssl/crypto/pkcs7/pk7_dgst.c rename : openssl/crypto/pkcs7/pk7_doit.c => main/openssl/crypto/pkcs7/pk7_doit.c rename : openssl/crypto/pkcs7/pk7_enc.c => main/openssl/crypto/pkcs7/pk7_enc.c rename : openssl/crypto/pkcs7/pk7_lib.c => main/openssl/crypto/pkcs7/pk7_lib.c rename : openssl/crypto/pkcs7/pk7_mime.c => main/openssl/crypto/pkcs7/pk7_mime.c rename : openssl/crypto/pkcs7/pk7_smime.c => main/openssl/crypto/pkcs7/pk7_smime.c rename : openssl/crypto/pkcs7/pkcs7.h => main/openssl/crypto/pkcs7/pkcs7.h rename : openssl/crypto/pkcs7/pkcs7err.c => main/openssl/crypto/pkcs7/pkcs7err.c rename : openssl/crypto/pkcs7/server.pem => main/openssl/crypto/pkcs7/server.pem rename : openssl/crypto/pkcs7/sign.c => main/openssl/crypto/pkcs7/sign.c rename : openssl/crypto/pkcs7/t/3des.pem => main/openssl/crypto/pkcs7/t/3des.pem rename : openssl/crypto/pkcs7/t/3dess.pem => main/openssl/crypto/pkcs7/t/3dess.pem rename : openssl/crypto/pkcs7/t/c.pem => main/openssl/crypto/pkcs7/t/c.pem rename : openssl/crypto/pkcs7/t/ff => main/openssl/crypto/pkcs7/t/ff rename : openssl/crypto/pkcs7/t/msie-e => main/openssl/crypto/pkcs7/t/msie-e rename : openssl/crypto/pkcs7/t/msie-e.pem => main/openssl/crypto/pkcs7/t/msie-e.pem rename : openssl/crypto/pkcs7/t/msie-enc-01 => main/openssl/crypto/pkcs7/t/msie-enc-01 rename : openssl/crypto/pkcs7/t/msie-enc-01.pem => main/openssl/crypto/pkcs7/t/msie-enc-01.pem rename : openssl/crypto/pkcs7/t/msie-enc-02 => main/openssl/crypto/pkcs7/t/msie-enc-02 rename : openssl/crypto/pkcs7/t/msie-enc-02.pem => main/openssl/crypto/pkcs7/t/msie-enc-02.pem rename : openssl/crypto/pkcs7/t/msie-s-a-e => main/openssl/crypto/pkcs7/t/msie-s-a-e rename : openssl/crypto/pkcs7/t/msie-s-a-e.pem => main/openssl/crypto/pkcs7/t/msie-s-a-e.pem rename : openssl/crypto/pkcs7/t/nav-smime => main/openssl/crypto/pkcs7/t/nav-smime rename : openssl/crypto/pkcs7/t/s.pem => main/openssl/crypto/pkcs7/t/s.pem rename : openssl/crypto/pkcs7/t/server.pem => main/openssl/crypto/pkcs7/t/server.pem rename : openssl/crypto/pkcs7/verify.c => main/openssl/crypto/pkcs7/verify.c rename : openssl/crypto/ppccpuid.pl => main/openssl/crypto/ppccpuid.pl rename : openssl/crypto/pqueue/pq_test.c => main/openssl/crypto/pqueue/pq_test.c rename : openssl/crypto/pqueue/pqueue.c => main/openssl/crypto/pqueue/pqueue.c rename : openssl/crypto/pqueue/pqueue.h => main/openssl/crypto/pqueue/pqueue.h rename : openssl/crypto/rand/md_rand.c => main/openssl/crypto/rand/md_rand.c rename : openssl/crypto/rand/rand.h => main/openssl/crypto/rand/rand.h rename : openssl/crypto/rand/rand_egd.c => main/openssl/crypto/rand/rand_egd.c rename : openssl/crypto/rand/rand_err.c => main/openssl/crypto/rand/rand_err.c rename : openssl/crypto/rand/rand_lcl.h => main/openssl/crypto/rand/rand_lcl.h rename : openssl/crypto/rand/rand_lib.c => main/openssl/crypto/rand/rand_lib.c rename : openssl/crypto/rand/rand_nw.c => main/openssl/crypto/rand/rand_nw.c rename : openssl/crypto/rand/rand_os2.c => main/openssl/crypto/rand/rand_os2.c rename : openssl/crypto/rand/rand_unix.c => main/openssl/crypto/rand/rand_unix.c rename : openssl/crypto/rand/rand_win.c => main/openssl/crypto/rand/rand_win.c rename : openssl/crypto/rand/randfile.c => main/openssl/crypto/rand/randfile.c rename : openssl/crypto/rand/randtest.c => main/openssl/crypto/rand/randtest.c rename : openssl/crypto/rc2/rc2.h => main/openssl/crypto/rc2/rc2.h rename : openssl/crypto/rc2/rc2_cbc.c => main/openssl/crypto/rc2/rc2_cbc.c rename : openssl/crypto/rc2/rc2_ecb.c => main/openssl/crypto/rc2/rc2_ecb.c rename : openssl/crypto/rc2/rc2_locl.h => main/openssl/crypto/rc2/rc2_locl.h rename : openssl/crypto/rc2/rc2_skey.c => main/openssl/crypto/rc2/rc2_skey.c rename : openssl/crypto/rc2/rc2cfb64.c => main/openssl/crypto/rc2/rc2cfb64.c rename : openssl/crypto/rc2/rc2ofb64.c => main/openssl/crypto/rc2/rc2ofb64.c rename : openssl/crypto/rc2/rc2speed.c => main/openssl/crypto/rc2/rc2speed.c rename : openssl/crypto/rc2/rc2test.c => main/openssl/crypto/rc2/rc2test.c rename : openssl/crypto/rc2/rrc2.doc => main/openssl/crypto/rc2/rrc2.doc rename : openssl/crypto/rc2/tab.c => main/openssl/crypto/rc2/tab.c rename : openssl/crypto/rc2/version => main/openssl/crypto/rc2/version rename : openssl/crypto/rc4/asm/rc4-586.pl => main/openssl/crypto/rc4/asm/rc4-586.pl rename : openssl/crypto/rc4/asm/rc4-ia64.pl => main/openssl/crypto/rc4/asm/rc4-ia64.pl rename : openssl/crypto/rc4/asm/rc4-s390x.pl => main/openssl/crypto/rc4/asm/rc4-s390x.pl rename : openssl/crypto/rc4/asm/rc4-x86_64.pl => main/openssl/crypto/rc4/asm/rc4-x86_64.pl rename : openssl/crypto/rc4/rc4.c => main/openssl/crypto/rc4/rc4.c rename : openssl/crypto/rc4/rc4.h => main/openssl/crypto/rc4/rc4.h rename : openssl/crypto/rc4/rc4_enc.c => main/openssl/crypto/rc4/rc4_enc.c rename : openssl/crypto/rc4/rc4_locl.h => main/openssl/crypto/rc4/rc4_locl.h rename : openssl/crypto/rc4/rc4_skey.c => main/openssl/crypto/rc4/rc4_skey.c rename : openssl/crypto/rc4/rc4s.cpp => main/openssl/crypto/rc4/rc4s.cpp rename : openssl/crypto/rc4/rc4speed.c => main/openssl/crypto/rc4/rc4speed.c rename : openssl/crypto/rc4/rc4test.c => main/openssl/crypto/rc4/rc4test.c rename : openssl/crypto/rc4/rrc4.doc => main/openssl/crypto/rc4/rrc4.doc rename : openssl/crypto/ripemd/README => main/openssl/crypto/ripemd/README rename : openssl/crypto/ripemd/asm/rips.cpp => main/openssl/crypto/ripemd/asm/rips.cpp rename : openssl/crypto/ripemd/asm/rmd-586.pl => main/openssl/crypto/ripemd/asm/rmd-586.pl rename : openssl/crypto/ripemd/ripemd.h => main/openssl/crypto/ripemd/ripemd.h rename : openssl/crypto/ripemd/rmd160.c => main/openssl/crypto/ripemd/rmd160.c rename : openssl/crypto/ripemd/rmd_dgst.c => main/openssl/crypto/ripemd/rmd_dgst.c rename : openssl/crypto/ripemd/rmd_locl.h => main/openssl/crypto/ripemd/rmd_locl.h rename : openssl/crypto/ripemd/rmd_one.c => main/openssl/crypto/ripemd/rmd_one.c rename : openssl/crypto/ripemd/rmdconst.h => main/openssl/crypto/ripemd/rmdconst.h rename : openssl/crypto/ripemd/rmdtest.c => main/openssl/crypto/ripemd/rmdtest.c rename : openssl/crypto/rsa/rsa.h => main/openssl/crypto/rsa/rsa.h rename : openssl/crypto/rsa/rsa_ameth.c => main/openssl/crypto/rsa/rsa_ameth.c rename : openssl/crypto/rsa/rsa_asn1.c => main/openssl/crypto/rsa/rsa_asn1.c rename : openssl/crypto/rsa/rsa_chk.c => main/openssl/crypto/rsa/rsa_chk.c rename : openssl/crypto/rsa/rsa_depr.c => main/openssl/crypto/rsa/rsa_depr.c rename : openssl/crypto/rsa/rsa_eay.c => main/openssl/crypto/rsa/rsa_eay.c rename : openssl/crypto/rsa/rsa_err.c => main/openssl/crypto/rsa/rsa_err.c rename : openssl/crypto/rsa/rsa_gen.c => main/openssl/crypto/rsa/rsa_gen.c rename : openssl/crypto/rsa/rsa_lib.c => main/openssl/crypto/rsa/rsa_lib.c rename : openssl/crypto/rsa/rsa_locl.h => main/openssl/crypto/rsa/rsa_locl.h rename : openssl/crypto/rsa/rsa_none.c => main/openssl/crypto/rsa/rsa_none.c rename : openssl/crypto/rsa/rsa_null.c => main/openssl/crypto/rsa/rsa_null.c rename : openssl/crypto/rsa/rsa_oaep.c => main/openssl/crypto/rsa/rsa_oaep.c rename : openssl/crypto/rsa/rsa_pk1.c => main/openssl/crypto/rsa/rsa_pk1.c rename : openssl/crypto/rsa/rsa_pmeth.c => main/openssl/crypto/rsa/rsa_pmeth.c rename : openssl/crypto/rsa/rsa_prn.c => main/openssl/crypto/rsa/rsa_prn.c rename : openssl/crypto/rsa/rsa_pss.c => main/openssl/crypto/rsa/rsa_pss.c rename : openssl/crypto/rsa/rsa_saos.c => main/openssl/crypto/rsa/rsa_saos.c rename : openssl/crypto/rsa/rsa_sign.c => main/openssl/crypto/rsa/rsa_sign.c rename : openssl/crypto/rsa/rsa_ssl.c => main/openssl/crypto/rsa/rsa_ssl.c rename : openssl/crypto/rsa/rsa_test.c => main/openssl/crypto/rsa/rsa_test.c rename : openssl/crypto/rsa/rsa_x931.c => main/openssl/crypto/rsa/rsa_x931.c rename : openssl/crypto/s390xcap.c => main/openssl/crypto/s390xcap.c rename : openssl/crypto/s390xcpuid.S => main/openssl/crypto/s390xcpuid.S rename : openssl/crypto/sha/asm/README => main/openssl/crypto/sha/asm/README rename : openssl/crypto/sha/asm/sha1-586.pl => main/openssl/crypto/sha/asm/sha1-586.pl rename : openssl/crypto/sha/asm/sha1-armv4-large.pl => main/openssl/crypto/sha/asm/sha1-armv4-large.pl rename : openssl/crypto/sha/asm/sha1-armv4-large.s => main/openssl/crypto/sha/asm/sha1-armv4-large.s rename : openssl/crypto/sha/asm/sha1-ia64.pl => main/openssl/crypto/sha/asm/sha1-ia64.pl rename : openssl/crypto/sha/asm/sha1-ppc.pl => main/openssl/crypto/sha/asm/sha1-ppc.pl rename : openssl/crypto/sha/asm/sha1-s390x.pl => main/openssl/crypto/sha/asm/sha1-s390x.pl rename : openssl/crypto/sha/asm/sha1-sparcv9.pl => main/openssl/crypto/sha/asm/sha1-sparcv9.pl rename : openssl/crypto/sha/asm/sha1-sparcv9a.pl => main/openssl/crypto/sha/asm/sha1-sparcv9a.pl rename : openssl/crypto/sha/asm/sha1-thumb.pl => main/openssl/crypto/sha/asm/sha1-thumb.pl rename : openssl/crypto/sha/asm/sha1-x86_64.pl => main/openssl/crypto/sha/asm/sha1-x86_64.pl rename : openssl/crypto/sha/asm/sha256-586.pl => main/openssl/crypto/sha/asm/sha256-586.pl rename : openssl/crypto/sha/asm/sha256-armv4.pl => main/openssl/crypto/sha/asm/sha256-armv4.pl rename : openssl/crypto/sha/asm/sha256-armv4.s => main/openssl/crypto/sha/asm/sha256-armv4.s rename : openssl/crypto/sha/asm/sha512-586.pl => main/openssl/crypto/sha/asm/sha512-586.pl rename : openssl/crypto/sha/asm/sha512-armv4.pl => main/openssl/crypto/sha/asm/sha512-armv4.pl rename : openssl/crypto/sha/asm/sha512-armv4.s => main/openssl/crypto/sha/asm/sha512-armv4.s rename : openssl/crypto/sha/asm/sha512-ia64.pl => main/openssl/crypto/sha/asm/sha512-ia64.pl rename : openssl/crypto/sha/asm/sha512-ppc.pl => main/openssl/crypto/sha/asm/sha512-ppc.pl rename : openssl/crypto/sha/asm/sha512-s390x.pl => main/openssl/crypto/sha/asm/sha512-s390x.pl rename : openssl/crypto/sha/asm/sha512-sparcv9.pl => main/openssl/crypto/sha/asm/sha512-sparcv9.pl rename : openssl/crypto/sha/asm/sha512-x86_64.pl => main/openssl/crypto/sha/asm/sha512-x86_64.pl rename : openssl/crypto/sha/sha.c => main/openssl/crypto/sha/sha.c rename : openssl/crypto/sha/sha.h => main/openssl/crypto/sha/sha.h rename : openssl/crypto/sha/sha1.c => main/openssl/crypto/sha/sha1.c rename : openssl/crypto/sha/sha1_one.c => main/openssl/crypto/sha/sha1_one.c rename : openssl/crypto/sha/sha1dgst.c => main/openssl/crypto/sha/sha1dgst.c rename : openssl/crypto/sha/sha1test.c => main/openssl/crypto/sha/sha1test.c rename : openssl/crypto/sha/sha256.c => main/openssl/crypto/sha/sha256.c rename : openssl/crypto/sha/sha256t.c => main/openssl/crypto/sha/sha256t.c rename : openssl/crypto/sha/sha512.c => main/openssl/crypto/sha/sha512.c rename : openssl/crypto/sha/sha512t.c => main/openssl/crypto/sha/sha512t.c rename : openssl/crypto/sha/sha_dgst.c => main/openssl/crypto/sha/sha_dgst.c rename : openssl/crypto/sha/sha_locl.h => main/openssl/crypto/sha/sha_locl.h rename : openssl/crypto/sha/shatest.c => main/openssl/crypto/sha/shatest.c rename : openssl/crypto/sparccpuid.S => main/openssl/crypto/sparccpuid.S rename : openssl/crypto/sparcv9cap.c => main/openssl/crypto/sparcv9cap.c rename : openssl/crypto/stack/safestack.h => main/openssl/crypto/stack/safestack.h rename : openssl/crypto/stack/stack.c => main/openssl/crypto/stack/stack.c rename : openssl/crypto/stack/stack.h => main/openssl/crypto/stack/stack.h rename : openssl/crypto/store/README => main/openssl/crypto/store/README rename : openssl/crypto/store/store.h => main/openssl/crypto/store/store.h rename : openssl/crypto/store/str_err.c => main/openssl/crypto/store/str_err.c rename : openssl/crypto/store/str_lib.c => main/openssl/crypto/store/str_lib.c rename : openssl/crypto/store/str_locl.h => 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main/openvpn/src/openvpn/reliable.h rename : openvpn/src/openvpn/route.c => main/openvpn/src/openvpn/route.c rename : openvpn/src/openvpn/route.h => main/openvpn/src/openvpn/route.h rename : openvpn/src/openvpn/schedule.c => main/openvpn/src/openvpn/schedule.c rename : openvpn/src/openvpn/schedule.h => main/openvpn/src/openvpn/schedule.h rename : openvpn/src/openvpn/session_id.c => main/openvpn/src/openvpn/session_id.c rename : openvpn/src/openvpn/session_id.h => main/openvpn/src/openvpn/session_id.h rename : openvpn/src/openvpn/shaper.c => main/openvpn/src/openvpn/shaper.c rename : openvpn/src/openvpn/shaper.h => main/openvpn/src/openvpn/shaper.h rename : openvpn/src/openvpn/sig.c => main/openvpn/src/openvpn/sig.c rename : openvpn/src/openvpn/sig.h => main/openvpn/src/openvpn/sig.h rename : openvpn/src/openvpn/snappy.c => main/openvpn/src/openvpn/snappy.c rename : openvpn/src/openvpn/snappy.h => main/openvpn/src/openvpn/snappy.h rename : openvpn/src/openvpn/socket.c => main/openvpn/src/openvpn/socket.c rename : openvpn/src/openvpn/socket.h => main/openvpn/src/openvpn/socket.h rename : openvpn/src/openvpn/socks.c => main/openvpn/src/openvpn/socks.c rename : openvpn/src/openvpn/socks.h => main/openvpn/src/openvpn/socks.h rename : openvpn/src/openvpn/ssl.c => main/openvpn/src/openvpn/ssl.c rename : openvpn/src/openvpn/ssl.h => main/openvpn/src/openvpn/ssl.h rename : openvpn/src/openvpn/ssl_backend.h => main/openvpn/src/openvpn/ssl_backend.h rename : openvpn/src/openvpn/ssl_common.h => main/openvpn/src/openvpn/ssl_common.h rename : openvpn/src/openvpn/ssl_openssl.c => main/openvpn/src/openvpn/ssl_openssl.c rename : openvpn/src/openvpn/ssl_openssl.h => main/openvpn/src/openvpn/ssl_openssl.h rename : openvpn/src/openvpn/ssl_polarssl.c => main/openvpn/src/openvpn/ssl_polarssl.c rename : openvpn/src/openvpn/ssl_polarssl.h => main/openvpn/src/openvpn/ssl_polarssl.h rename : openvpn/src/openvpn/ssl_verify.c => main/openvpn/src/openvpn/ssl_verify.c rename : openvpn/src/openvpn/ssl_verify.h => main/openvpn/src/openvpn/ssl_verify.h rename : openvpn/src/openvpn/ssl_verify_backend.h => main/openvpn/src/openvpn/ssl_verify_backend.h rename : openvpn/src/openvpn/ssl_verify_openssl.c => main/openvpn/src/openvpn/ssl_verify_openssl.c rename : openvpn/src/openvpn/ssl_verify_openssl.h => main/openvpn/src/openvpn/ssl_verify_openssl.h rename : openvpn/src/openvpn/ssl_verify_polarssl.c => main/openvpn/src/openvpn/ssl_verify_polarssl.c rename : openvpn/src/openvpn/ssl_verify_polarssl.h => main/openvpn/src/openvpn/ssl_verify_polarssl.h rename : openvpn/src/openvpn/status.c => main/openvpn/src/openvpn/status.c rename : openvpn/src/openvpn/status.h => main/openvpn/src/openvpn/status.h rename : openvpn/src/openvpn/syshead.h => main/openvpn/src/openvpn/syshead.h rename : openvpn/src/openvpn/tun.c => main/openvpn/src/openvpn/tun.c rename : openvpn/src/openvpn/tun.h => main/openvpn/src/openvpn/tun.h rename : openvpn/src/openvpn/win32.c => main/openvpn/src/openvpn/win32.c rename : openvpn/src/openvpn/win32.h => main/openvpn/src/openvpn/win32.h rename : openvpn/src/openvpnserv/Makefile.am => main/openvpn/src/openvpnserv/Makefile.am rename : openvpn/src/openvpnserv/openvpnserv.c => main/openvpn/src/openvpnserv/openvpnserv.c rename : openvpn/src/openvpnserv/openvpnserv.vcxproj => main/openvpn/src/openvpnserv/openvpnserv.vcxproj rename : openvpn/src/openvpnserv/openvpnserv.vcxproj.filters => main/openvpn/src/openvpnserv/openvpnserv.vcxproj.filters rename : openvpn/src/openvpnserv/openvpnserv_resources.rc => main/openvpn/src/openvpnserv/openvpnserv_resources.rc rename : openvpn/src/openvpnserv/service.c => main/openvpn/src/openvpnserv/service.c rename : openvpn/src/openvpnserv/service.h => main/openvpn/src/openvpnserv/service.h rename : openvpn/src/plugins/Makefile.am => main/openvpn/src/plugins/Makefile.am rename : openvpn/src/plugins/Makefile.in => main/openvpn/src/plugins/Makefile.in rename : openvpn/src/plugins/auth-pam/Makefile.am => main/openvpn/src/plugins/auth-pam/Makefile.am rename : openvpn/src/plugins/auth-pam/Makefile.in => main/openvpn/src/plugins/auth-pam/Makefile.in rename : openvpn/src/plugins/auth-pam/README.auth-pam => main/openvpn/src/plugins/auth-pam/README.auth-pam rename : openvpn/src/plugins/auth-pam/auth-pam.c => main/openvpn/src/plugins/auth-pam/auth-pam.c rename : openvpn/src/plugins/auth-pam/auth-pam.exports => main/openvpn/src/plugins/auth-pam/auth-pam.exports rename : openvpn/src/plugins/auth-pam/pamdl.c => main/openvpn/src/plugins/auth-pam/pamdl.c rename : openvpn/src/plugins/auth-pam/pamdl.h => main/openvpn/src/plugins/auth-pam/pamdl.h rename : openvpn/src/plugins/down-root/Makefile.am => main/openvpn/src/plugins/down-root/Makefile.am rename : openvpn/src/plugins/down-root/Makefile.in => main/openvpn/src/plugins/down-root/Makefile.in rename : openvpn/src/plugins/down-root/README.down-root => main/openvpn/src/plugins/down-root/README.down-root rename : openvpn/src/plugins/down-root/down-root.c => main/openvpn/src/plugins/down-root/down-root.c rename : openvpn/src/plugins/down-root/down-root.exports => main/openvpn/src/plugins/down-root/down-root.exports rename : openvpn/tests/Makefile.am => main/openvpn/tests/Makefile.am rename : openvpn/tests/t_client.rc-sample => main/openvpn/tests/t_client.rc-sample rename : openvpn/tests/t_client.sh.in => main/openvpn/tests/t_client.sh.in rename : openvpn/tests/t_cltsrv-down.sh => main/openvpn/tests/t_cltsrv-down.sh rename : openvpn/tests/t_cltsrv.sh => main/openvpn/tests/t_cltsrv.sh rename : openvpn/tests/t_lpback.sh => main/openvpn/tests/t_lpback.sh rename : openvpn/version.m4 => main/openvpn/version.m4 rename : openvpn/version.sh.in => main/openvpn/version.sh.in rename : snappy/Android.mk => main/snappy/Android.mk rename : snappy/COPYING => main/snappy/COPYING rename : snappy/conf/config.h => main/snappy/conf/config.h rename : snappy/snappy-c.cc => main/snappy/snappy-c.cc rename : snappy/snappy-c.h => main/snappy/snappy-c.h rename : snappy/snappy-internal.h => main/snappy/snappy-internal.h rename : snappy/snappy-sinksource.cc => main/snappy/snappy-sinksource.cc rename : snappy/snappy-sinksource.h => main/snappy/snappy-sinksource.h rename : snappy/snappy-stubs-internal.cc => main/snappy/snappy-stubs-internal.cc rename : snappy/snappy-stubs-internal.h => main/snappy/snappy-stubs-internal.h rename : snappy/snappy-stubs-public.h => main/snappy/snappy-stubs-public.h rename : snappy/snappy-stubs-public.h.in => main/snappy/snappy-stubs-public.h.in rename : snappy/snappy-test.cc => main/snappy/snappy-test.cc rename : snappy/snappy-test.h => main/snappy/snappy-test.h rename : snappy/snappy.cc => main/snappy/snappy.cc rename : snappy/snappy.h => main/snappy/snappy.h rename : snappy/snappy_unittest.cc => main/snappy/snappy_unittest.cc rename : AndroidManifest.xml => main/src/main/AndroidManifest.xml rename : src/de/blinkt/openvpn/FileProvider.java => main/src/main/java/de/blinkt/openvpn/FileProvider.java rename : src/de/blinkt/openvpn/LaunchVPN.java => main/src/main/java/de/blinkt/openvpn/LaunchVPN.java rename : src/de/blinkt/openvpn/OnBootReceiver.java => main/src/main/java/de/blinkt/openvpn/OnBootReceiver.java rename : src/de/blinkt/openvpn/VpnProfile.java => main/src/main/java/de/blinkt/openvpn/VpnProfile.java rename : src/de/blinkt/openvpn/activities/ConfigConverter.java => main/src/main/java/de/blinkt/openvpn/activities/ConfigConverter.java rename : src/de/blinkt/openvpn/activities/CreateShortcuts.java => main/src/main/java/de/blinkt/openvpn/activities/CreateShortcuts.java rename : src/de/blinkt/openvpn/activities/DisconnectVPN.java => main/src/main/java/de/blinkt/openvpn/activities/DisconnectVPN.java rename : src/de/blinkt/openvpn/activities/FileSelect.java => main/src/main/java/de/blinkt/openvpn/activities/FileSelect.java rename : src/de/blinkt/openvpn/activities/LogWindow.java => main/src/main/java/de/blinkt/openvpn/activities/LogWindow.java rename : src/de/blinkt/openvpn/activities/MainActivity.java => main/src/main/java/de/blinkt/openvpn/activities/MainActivity.java rename : src/de/blinkt/openvpn/activities/VPNPreferences.java => main/src/main/java/de/blinkt/openvpn/activities/VPNPreferences.java rename : src/de/blinkt/openvpn/api/APIVpnProfile.java => main/src/main/java/de/blinkt/openvpn/api/APIVpnProfile.java rename : src/de/blinkt/openvpn/api/ConfirmDialog.java => main/src/main/java/de/blinkt/openvpn/api/ConfirmDialog.java rename : src/de/blinkt/openvpn/api/ExternalAppDatabase.java => main/src/main/java/de/blinkt/openvpn/api/ExternalAppDatabase.java rename : src/de/blinkt/openvpn/api/ExternalOpenVPNService.java => main/src/main/java/de/blinkt/openvpn/api/ExternalOpenVPNService.java rename : src/de/blinkt/openvpn/api/GrantPermissionsActivity.java => main/src/main/java/de/blinkt/openvpn/api/GrantPermissionsActivity.java rename : src/de/blinkt/openvpn/api/SecurityRemoteException.java => main/src/main/java/de/blinkt/openvpn/api/SecurityRemoteException.java rename : src/de/blinkt/openvpn/core/CIDRIP.java => main/src/main/java/de/blinkt/openvpn/core/CIDRIP.java rename : src/de/blinkt/openvpn/core/ConfigParser.java => main/src/main/java/de/blinkt/openvpn/core/ConfigParser.java rename : src/de/blinkt/openvpn/core/DeviceStateReceiver.java => main/src/main/java/de/blinkt/openvpn/core/DeviceStateReceiver.java rename : src/de/blinkt/openvpn/core/GetRestrictionReceiver.java => main/src/main/java/de/blinkt/openvpn/core/GetRestrictionReceiver.java rename : src/de/blinkt/openvpn/core/ICSOpenVPNApplication.java => main/src/main/java/de/blinkt/openvpn/core/ICSOpenVPNApplication.java rename : src/de/blinkt/openvpn/core/NativeUtils.java => main/src/main/java/de/blinkt/openvpn/core/NativeUtils.java rename : src/de/blinkt/openvpn/core/NetworkSpace.java => main/src/main/java/de/blinkt/openvpn/core/NetworkSpace.java rename : src/de/blinkt/openvpn/core/OpenVPNManagement.java => main/src/main/java/de/blinkt/openvpn/core/OpenVPNManagement.java rename : src/de/blinkt/openvpn/core/OpenVPNThread.java => main/src/main/java/de/blinkt/openvpn/core/OpenVPNThread.java rename : src/de/blinkt/openvpn/core/OpenVpnManagementThread.java => main/src/main/java/de/blinkt/openvpn/core/OpenVpnManagementThread.java rename : src/de/blinkt/openvpn/core/OpenVpnService.java => main/src/main/java/de/blinkt/openvpn/core/OpenVpnService.java rename : src/de/blinkt/openvpn/core/PRNGFixes.java => main/src/main/java/de/blinkt/openvpn/core/PRNGFixes.java rename : src/de/blinkt/openvpn/core/ProfileManager.java => main/src/main/java/de/blinkt/openvpn/core/ProfileManager.java rename : src/de/blinkt/openvpn/core/ProxyDetection.java => main/src/main/java/de/blinkt/openvpn/core/ProxyDetection.java rename : src/de/blinkt/openvpn/core/VPNLaunchHelper.java => main/src/main/java/de/blinkt/openvpn/core/VPNLaunchHelper.java rename : src/de/blinkt/openvpn/core/VpnStatus.java => main/src/main/java/de/blinkt/openvpn/core/VpnStatus.java rename : src/de/blinkt/openvpn/core/X509Utils.java => main/src/main/java/de/blinkt/openvpn/core/X509Utils.java rename : src/de/blinkt/openvpn/fragments/AboutFragment.java => main/src/main/java/de/blinkt/openvpn/fragments/AboutFragment.java rename : src/de/blinkt/openvpn/fragments/FaqFragment.java => main/src/main/java/de/blinkt/openvpn/fragments/FaqFragment.java rename : src/de/blinkt/openvpn/fragments/FileSelectionFragment.java => main/src/main/java/de/blinkt/openvpn/fragments/FileSelectionFragment.java rename : src/de/blinkt/openvpn/fragments/GeneralSettings.java => main/src/main/java/de/blinkt/openvpn/fragments/GeneralSettings.java rename : src/de/blinkt/openvpn/fragments/InlineFileTab.java => main/src/main/java/de/blinkt/openvpn/fragments/InlineFileTab.java rename : src/de/blinkt/openvpn/fragments/LogFragment.java => main/src/main/java/de/blinkt/openvpn/fragments/LogFragment.java rename : src/de/blinkt/openvpn/fragments/OpenVpnPreferencesFragment.java => main/src/main/java/de/blinkt/openvpn/fragments/OpenVpnPreferencesFragment.java rename : src/de/blinkt/openvpn/fragments/SendDumpFragment.java => main/src/main/java/de/blinkt/openvpn/fragments/SendDumpFragment.java rename : src/de/blinkt/openvpn/fragments/Settings_Authentication.java => main/src/main/java/de/blinkt/openvpn/fragments/Settings_Authentication.java rename : src/de/blinkt/openvpn/fragments/Settings_Basic.java => main/src/main/java/de/blinkt/openvpn/fragments/Settings_Basic.java rename : src/de/blinkt/openvpn/fragments/Settings_IP.java => main/src/main/java/de/blinkt/openvpn/fragments/Settings_IP.java rename : src/de/blinkt/openvpn/fragments/Settings_Obscure.java => main/src/main/java/de/blinkt/openvpn/fragments/Settings_Obscure.java rename : src/de/blinkt/openvpn/fragments/Settings_Routing.java => main/src/main/java/de/blinkt/openvpn/fragments/Settings_Routing.java rename : src/de/blinkt/openvpn/fragments/ShowConfigFragment.java => main/src/main/java/de/blinkt/openvpn/fragments/ShowConfigFragment.java rename : src/de/blinkt/openvpn/fragments/Utils.java => main/src/main/java/de/blinkt/openvpn/fragments/Utils.java rename : src/de/blinkt/openvpn/fragments/VPNProfileList.java => main/src/main/java/de/blinkt/openvpn/fragments/VPNProfileList.java rename : src/de/blinkt/openvpn/views/FileSelectLayout.java => main/src/main/java/de/blinkt/openvpn/views/FileSelectLayout.java rename : src/de/blinkt/openvpn/views/RemoteCNPreference.java => main/src/main/java/de/blinkt/openvpn/views/RemoteCNPreference.java rename : src/de/blinkt/openvpn/views/SeekBarTicks.java => main/src/main/java/de/blinkt/openvpn/views/SeekBarTicks.java rename : src/org/spongycastle/util/encoders/Base64.java => main/src/main/java/org/spongycastle/util/encoders/Base64.java rename : src/org/spongycastle/util/encoders/Base64Encoder.java => main/src/main/java/org/spongycastle/util/encoders/Base64Encoder.java rename : src/org/spongycastle/util/encoders/Encoder.java => main/src/main/java/org/spongycastle/util/encoders/Encoder.java rename : src/org/spongycastle/util/io/pem/PemGenerationException.java => main/src/main/java/org/spongycastle/util/io/pem/PemGenerationException.java rename : src/org/spongycastle/util/io/pem/PemHeader.java => main/src/main/java/org/spongycastle/util/io/pem/PemHeader.java rename : src/org/spongycastle/util/io/pem/PemObject.java => main/src/main/java/org/spongycastle/util/io/pem/PemObject.java rename : src/org/spongycastle/util/io/pem/PemObjectGenerator.java => main/src/main/java/org/spongycastle/util/io/pem/PemObjectGenerator.java rename : src/org/spongycastle/util/io/pem/PemReader.java => main/src/main/java/org/spongycastle/util/io/pem/PemReader.java rename : src/org/spongycastle/util/io/pem/PemWriter.java => main/src/main/java/org/spongycastle/util/io/pem/PemWriter.java
Diffstat (limited to 'openvpn/doc/doxygen')
-rw-r--r--openvpn/doc/doxygen/doc_compression.h92
-rw-r--r--openvpn/doc/doxygen/doc_control_processor.h189
-rw-r--r--openvpn/doc/doxygen/doc_control_tls.h105
-rw-r--r--openvpn/doc/doxygen/doc_data_control.h103
-rw-r--r--openvpn/doc/doxygen/doc_data_crypto.h75
-rw-r--r--openvpn/doc/doxygen/doc_eventloop.h67
-rw-r--r--openvpn/doc/doxygen/doc_external_multiplexer.h46
-rw-r--r--openvpn/doc/doxygen/doc_fragmentation.h96
-rw-r--r--openvpn/doc/doxygen/doc_internal_multiplexer.h44
-rw-r--r--openvpn/doc/doxygen/doc_key_generation.h153
-rw-r--r--openvpn/doc/doxygen/doc_mainpage.h162
-rw-r--r--openvpn/doc/doxygen/doc_memory_management.h99
-rw-r--r--openvpn/doc/doxygen/doc_protocol_overview.h199
-rw-r--r--openvpn/doc/doxygen/doc_reliable.h49
-rw-r--r--openvpn/doc/doxygen/doc_tunnel_state.h155
-rw-r--r--openvpn/doc/doxygen/openvpn.doxyfile279
16 files changed, 0 insertions, 1913 deletions
diff --git a/openvpn/doc/doxygen/doc_compression.h b/openvpn/doc/doxygen/doc_compression.h
deleted file mode 100644
index bdc4a7ed..00000000
--- a/openvpn/doc/doxygen/doc_compression.h
+++ /dev/null
@@ -1,92 +0,0 @@
-/*
- * OpenVPN -- An application to securely tunnel IP networks
- * over a single TCP/UDP port, with support for SSL/TLS-based
- * session authentication and key exchange,
- * packet encryption, packet authentication, and
- * packet compression.
- *
- * Copyright (C) 2010 Fox Crypto B.V. <openvpn@fox-it.com>
- *
- *
- * This program is free software; you can redistribute it and/or modify
- * it under the terms of the GNU General Public License version 2
- * as published by the Free Software Foundation.
- *
- * This program is distributed in the hope that it will be useful,
- * but WITHOUT ANY WARRANTY; without even the implied warranty of
- * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
- * GNU General Public License for more details.
- *
- * You should have received a copy of the GNU General Public License
- * along with this program (see the file COPYING included with this
- * distribution); if not, write to the Free Software Foundation, Inc.,
- * 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
- */
-
-/**
- * @file Data Channel Compression module documentation file.
- */
-
-/**
- * @defgroup compression Data Channel Compression module
- *
- * This module offers compression of data channel packets.
- *
- * @par State structures
- * The Data Channel Compression module stores its internal state in a \c
- * lzo_compress_workspace structure. This state includes flags which
- * control the module's behavior and preallocated working memory. One
- * such structure is present for each VPN tunnel, and is stored in the \c
- * context.c2.lzo_compwork of the \c context associated with that VPN
- * tunnel.
- *
- * @par Initialization and cleanup
- * Every time a new \c lzo_compress_workspace is needed, it must be
- * initialized using the \c lzo_compress_init() function. Similarly,
- * every time a \c lzo_compress_workspace is no longer needed, it must be
- * cleaned up using the \c lzo_compress_uninit() function. These
- * functions take care of the allocation and freeing of internal working
- * memory, but not of the \c lzo_compress_workspace structures themselves.
- *
- * @par
- * Because of the one-to-one relationship between \c
- * lzo_compress_workspace structures and VPN tunnels, the above-mentioned
- * initialization and cleanup functions are called directly from the \c
- * init_instance() and \c close_instance() functions, which control the
- * initialization and cleanup of VPN tunnel instances and their associated
- * \c context structures.
- *
- * @par Packet processing functions
- * This module receives data channel packets from the \link data_control
- * Data Channel Control module\endlink and processes them according to the
- * settings of the packet's VPN tunnel. The \link data_control Data
- * Channel Control module\endlink uses the following interface functions:
- * - For packets which will be sent to a remote OpenVPN peer: \c
- * lzo_compress()
- * - For packets which have been received from a remote OpenVPN peer: \c
- * lzo_decompress()
- *
- * @par Settings that control this module's activity
- * Whether or not the Data Channel Compression module is active depends on
- * the compile-time \c ENABLE_LZO preprocessor macro and the runtime flags
- * stored in \c lzo_compress_workspace.flags of the associated VPN tunnel.
- * The latter are initialized from \c options.lzo, which gets its value
- * from the process's configuration sources, such as its configuration
- * file or command line %options.
- *
- * @par Adaptive compression
- * The compression module supports adaptive compression. If this feature
- * is enabled, the compression routines monitor their own performance and
- * turn compression on or off depending on whether it is leading to
- * significantly reduced payload size.
- *
- * @par Compression algorithms
- * This module uses the Lempel-Ziv-Oberhumer (LZO) compression algorithms.
- * These offer lossless compression and are designed for high-performance
- * decompression. This module uses the external \c lzo library's
- * implementation of the algorithms.
- *
- * @par
- * For more information on the LZO library, see:\n
- * http://www.oberhumer.com/opensource/lzo/
- */
diff --git a/openvpn/doc/doxygen/doc_control_processor.h b/openvpn/doc/doxygen/doc_control_processor.h
deleted file mode 100644
index 072dc372..00000000
--- a/openvpn/doc/doxygen/doc_control_processor.h
+++ /dev/null
@@ -1,189 +0,0 @@
-/*
- * OpenVPN -- An application to securely tunnel IP networks
- * over a single TCP/UDP port, with support for SSL/TLS-based
- * session authentication and key exchange,
- * packet encryption, packet authentication, and
- * packet compression.
- *
- * Copyright (C) 2010 Fox Crypto B.V. <openvpn@fox-it.com>
- *
- *
- * This program is free software; you can redistribute it and/or modify
- * it under the terms of the GNU General Public License version 2
- * as published by the Free Software Foundation.
- *
- * This program is distributed in the hope that it will be useful,
- * but WITHOUT ANY WARRANTY; without even the implied warranty of
- * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
- * GNU General Public License for more details.
- *
- * You should have received a copy of the GNU General Public License
- * along with this program (see the file COPYING included with this
- * distribution); if not, write to the Free Software Foundation, Inc.,
- * 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
- */
-
-/**
- * @file
- * Control Channel Processor module documentation file.
- */
-
-/**
- * @defgroup control_processor Control Channel Processor module
- *
- * This module controls the setup and maintenance of VPN tunnels and the
- * associated security parameters.
- *
- * @par This module's role
- * The Control Channel Processor module lies at the core of OpenVPN's
- * activities. It handles the setup of new VPN tunnels, the negotiation
- * of data channel security parameters, the managing of active VPN
- * tunnels, and finally the cleanup of expired VPN tunnels.
- *
- * @par State structures
- * A large amount of VPN tunnel state information must be stored within an
- * OpenVPN process. A wide variety of container structures are used by
- * this module for that purpose. Several of these structures are listed
- * below, and the function of the first three VPN tunnel state containers
- * is described in more detail later.
- * - VPN tunnel state containers:
- * - \c tls_multi, security parameter state for a single VPN tunnel.
- * Contains three instances of the \c tls_session structure.
- * - \c tls_session, security parameter state of a single session
- * within a VPN tunnel. Contains two instances of the \c key_state
- * structure.
- * - \c key_state, security parameter state of one TLS and data
- * channel %key set.
- * - Data channel security parameter containers:
- * - \c key_ctx_bi, container for two sets of OpenSSL cipher and/or
- * HMAC context (both directions). Contains two instances of the \c
- * key_ctx structure.
- * - \c key_ctx, container for one set of OpenSSL cipher and/or HMAC
- * context (one directions.
- * - Key material containers:
- * - \c key2, container for two sets of cipher and/or HMAC %key
- * material (both directions). Contains two instances of the \c key
- * structure.
- * - \c key, container for one set of cipher and/or HMAC %key material
- * (one direction).
- * - \c key_direction_state, ordering of %key material within the \c
- * key2.key array.
- * - Key method 2 random material containers:
- * - \c key_source2, container for both halves of random material used
- * for %key method 2. Contains two instances of the \c key_source
- * structure.
- * - \c key_source, container for one half of random material used for
- * %key method 2.
- *
- * @par The life of a \c tls_multi object
- * A \c tls_multi structure contains all the security parameter state
- * information related to the control and data channels of one VPN tunnel.
- * Its life cycle can be summarized as follows:
- * -# Initialization: \c tls_multi_init() and \c
- * tls_multi_init_finalize(), which are called (indirectly) from \c
- * init_instance() when initializing a new \c context structure.
- * - Initializes a \c tls_multi structure.
- * - Allocates the three \c tls_session objects contained by the \c
- * tls_multi structure, and initializes as appropriate.
- * -# Management: \c tls_multi_process() and \c tls_pre_decrypt()
- * - If a new session is initiated by the remote peer, then \c
- * tls_pre_decrypt() starts the new session negotiation in the
- * un-trusted \c tls_session.
- * - If the, as yet, un-trusted \c tls_session authenticates
- * successfully, then \c tls_multi_process() moves it so as to be
- * the active \c tls_session.
- * - If an error occurs during processing of a \c key_state object,
- * then \c tls_multi_process() cleans up and initializes the
- * associated \c tls_session object. If the error occurred in the
- * active \c key_state of the active \c tls_session and the
- * lame-duck \c key_state of that \c tls_session has not yet
- * expired, it is preserved as fallback.
- * -# Cleanup: \c tls_multi_free(), which is called (indirectly) from \c
- * close_instance() when cleaning up a \c context structure.
- * - Cleans up a \c tls_multi structure.
- * - Cleans up the three \c tls_session objects contained by the \c
- * tls_multi structure.
- *
- * @par The life of a \c tls_session object
- * A \c tls_session structure contains the state information related to an
- * active and a lame-duck \c key_state. Its life cycle can be summarized
- * as follows:
- * -# Initialization: \c tls_session_init()
- * - Initializes a \c tls_session structure.
- * - Initializes the primary \c key_state by calling \c
- * key_state_init().
- * -# Renegotiation: \c key_state_soft_reset()
- * - Cleans up the old lame-duck \c key_state by calling \c
- * key_state_free().
- * - Moves the old primary \c key_state to be the new lame-duck \c
- * key_state.
- * - Initializes a new primary \c key_state by calling \c
- * key_state_init().
- * -# Cleanup: \c tls_session_free()
- * - Cleans up a \c tls_session structure.
- * - Cleans up all \c key_state objects associated with the session by
- * calling \c key_state_free() for each.
- *
- * @par The life of a \c key_state object
- * A \c key_state structure represents one control and data channel %key
- * set. It contains an OpenSSL TLS object that encapsulates the control
- * channel, and the data channel security parameters needed by the \link
- * data_crypto Data Channel Crypto module\endlink to perform cryptographic
- * operations on data channel packets. Its life cycle can be summarized
- * as follows:
- * -# Initialization: \c key_state_init()
- * - Initializes a \c key_state structure.
- * - Creates a new OpenSSL TLS object to encapsulate this new control
- * channel session.
- * - Sets \c key_state.state to \c S_INITIAL.
- * - Allocates several internal buffers.
- * - Initializes new reliability layer structures for this key set.
- * -# Negotiation: \c tls_process()
- * - The OpenSSL TLS object negotiates a TLS session between itself
- * and the remote peer's TLS object.
- * - Key material is generated and exchanged through the TLS session
- * between OpenVPN peers.
- * - Both peers initialize their data channel cipher and HMAC key
- * contexts.
- * - On successful negotiation, the \c key_state.state will progress
- * from \c S_INITIAL to \c S_ACTIVE and \c S_NORMAL.
- * -# Active tunneling: \link data_crypto Data Channel Crypto
- * module\endlink
- * - Data channel packet to be sent to a remote OpenVPN peer:
- * - \c tls_pre_encrypt() loads the security parameters from the \c
- * key_state into a \c crypto_options structure.
- * - \c openvpn_encrypt() uses the \c crypto_options to an encrypt
- * and HMAC sign the data channel packet.
- * - Data channel packet received from a remote OpenVPN peer:
- * - \c tls_pre_decrypt() loads the security parameters from the \c
- * key_state into a \c crypto_options structure.
- * - \c openvpn_encrypt() uses the \c crypto_options to
- * authenticate and decrypt the data channel packet.
- * -# Cleanup: \c key_state_free()
- * - Cleans up a \c key_state structure together with its OpenSSL TLS
- * object, key material, internal buffers, and reliability layer
- * structures.
- *
- * @par Control functions
- * The following two functions drive the Control Channel Processor's
- * activities.
- * - \c tls_multi_process(), iterates through the \c tls_session objects
- * within a given \c tls_multi of a VPN tunnel, and calls \c
- * tls_process() for each \c tls_session which is being set up, is
- * already active, or is busy expiring.
- * - \c tls_process(), performs the Control Channel Processor module's
- * core handling of received control channel messages, and generates
- * appropriate messages to be sent.
- *
- * @par Functions which control data channel key generation
- * - Key method 1 key exchange functions:
- * - \c key_method_1_write(), generates and processes key material to
- * be sent to the remote OpenVPN peer.
- * - \c key_method_1_read(), processes key material received from the
- * remote OpenVPN peer.
- * - Key method 2 key exchange functions:
- * - \c key_method_2_write(), generates and processes key material to
- * be sent to the remote OpenVPN peer.
- * - \c key_method_2_read(), processes key material received from the
- * remote OpenVPN peer.
- */
diff --git a/openvpn/doc/doxygen/doc_control_tls.h b/openvpn/doc/doxygen/doc_control_tls.h
deleted file mode 100644
index aba55f77..00000000
--- a/openvpn/doc/doxygen/doc_control_tls.h
+++ /dev/null
@@ -1,105 +0,0 @@
-/*
- * OpenVPN -- An application to securely tunnel IP networks
- * over a single TCP/UDP port, with support for SSL/TLS-based
- * session authentication and key exchange,
- * packet encryption, packet authentication, and
- * packet compression.
- *
- * Copyright (C) 2010 Fox Crypto B.V. <openvpn@fox-it.com>
- *
- *
- * This program is free software; you can redistribute it and/or modify
- * it under the terms of the GNU General Public License version 2
- * as published by the Free Software Foundation.
- *
- * This program is distributed in the hope that it will be useful,
- * but WITHOUT ANY WARRANTY; without even the implied warranty of
- * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
- * GNU General Public License for more details.
- *
- * You should have received a copy of the GNU General Public License
- * along with this program (see the file COPYING included with this
- * distribution); if not, write to the Free Software Foundation, Inc.,
- * 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
- */
-
-/**
- * @file
- * Control Channel TLS module documentation file.
- */
-
-/**
- * @defgroup control_tls Control Channel TLS module
- *
- * This module provides secure encapsulation of control channel messages
- * exchanged between OpenVPN peers.
- *
- * The Control Channel TLS module uses the Transport Layer Security (TLS)
- * protocol to provide an encrypted communication channel between the
- * local OpenVPN process and a remote peer. This protocol simultaneously
- * offers certificate-based authentication of the communicating parties.
- *
- * @par This module's roles
- * The Control Channel TLS module is essential for the security of any
- * OpenVPN-based system. On the one hand, it performs the security
- * operations necessary to protect control channel messages exchanged
- * between OpenVPN peers. On the other hand, before the control and data
- * channels are even setup, it controls the exchange of certificates and
- * verification of the remote's identity during negotiation of VPN
- * tunnels.
- *
- * @par
- * The former role is described below. The latter is described in the
- * documentation for the \c verify_callback() function.
- *
- * @par
- * In other words, this module takes care of the confidentiality and
- * integrity of data channel communications, and the authentication of
- * both the communicating parties and the control channel messages
- * exchanged.
- *
- * @par Initialization and cleanup
- * Because of the one-to-one relationship between control channel TLS
- * state and \c key_state structures, the initialization and cleanup of an
- * instance of the Control Channel TLS module's state happens within the
- * \c key_state_init() and \c key_state_free() functions. In other words,
- * each \c key_state object contains exactly one OpenSSL SSL-BIO object,
- * which is initialized and cleaned up together with the rest of the \c
- * key_state object.
- *
- * @par Packet processing functions
- * This object behaves somewhat like a black box with a ciphertext and a
- * plaintext I/O port. Its interaction with OpenVPN's control channel
- * during operation takes place within the \c tls_process() function of
- * the \link control_processor Control Channel Processor\endlink. The
- * following functions are available for processing packets:
- * - If ciphertext received from the remote peer is available in the \link
- * reliable Reliability Layer\endlink:
- * - Insert it into the ciphertext-side of the SSL-BIO.
- * - Use function: \c key_state_write_ciphertext()
- * - If ciphertext can be extracted from the ciphertext-side of the
- * SSL-BIO:
- * - Pass it to the \link reliable Reliability Layer\endlink for sending
- * to the remote peer.
- * - Use function: \c key_state_read_ciphertext()
- * - If plaintext can be extracted from the plaintext-side of the SSL-BIO:
- * - Pass it on to the \link control_processor Control Channel
- * Processor\endlink for local processing.
- * - Use function: \c key_state_read_plaintext()
- * - If plaintext from the \link control_processor Control Channel
- * Processor\endlink is available to be sent to the remote peer:
- * - Insert it into the plaintext-side of the SSL-BIO.
- * - Use function: \c key_state_write_plaintext() or \c
- * key_state_write_plaintext_const()
- *
- * @par Transport Layer Security protocol implementation
- * This module uses the OpenSSL library's implementation of the TLS
- * protocol in the form of an OpenSSL SSL-BIO object.
- *
- * @par
- * For more information on the OpenSSL library's BIO objects, please see:
- * - OpenSSL's generic BIO objects:
- * http://www.openssl.org/docs/crypto/bio.html
- * - OpenSSL's SSL-BIO object:
- * http://www.openssl.org/docs/crypto/BIO_f_ssl.html
- */
diff --git a/openvpn/doc/doxygen/doc_data_control.h b/openvpn/doc/doxygen/doc_data_control.h
deleted file mode 100644
index d0f65ba3..00000000
--- a/openvpn/doc/doxygen/doc_data_control.h
+++ /dev/null
@@ -1,103 +0,0 @@
-/*
- * OpenVPN -- An application to securely tunnel IP networks
- * over a single TCP/UDP port, with support for SSL/TLS-based
- * session authentication and key exchange,
- * packet encryption, packet authentication, and
- * packet compression.
- *
- * Copyright (C) 2010 Fox Crypto B.V. <openvpn@fox-it.com>
- *
- *
- * This program is free software; you can redistribute it and/or modify
- * it under the terms of the GNU General Public License version 2
- * as published by the Free Software Foundation.
- *
- * This program is distributed in the hope that it will be useful,
- * but WITHOUT ANY WARRANTY; without even the implied warranty of
- * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
- * GNU General Public License for more details.
- *
- * You should have received a copy of the GNU General Public License
- * along with this program (see the file COPYING included with this
- * distribution); if not, write to the Free Software Foundation, Inc.,
- * 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
- */
-
-/**
- * @file
- * Data Channel Control module documentation file.
- */
-
-/**
- * @defgroup data_control Data Channel Control module
- *
- * This module controls the processing of packets as they pass through the
- * data channel.
- *
- * The Data Channel Control module controls the processing of packets as
- * they pass through the data channel. The processing includes packet
- * compression, fragmentation, and the performing of security operations
- * on the packets. This module does not do the processing itself, but
- * passes the packet to other data channel modules to perform the
- * appropriate actions.
- *
- * Packets can travel in two directions through the data channel. They
- * can be going to a remote destination which is reachable through a VPN
- * tunnel, in which case this module prepares them to be sent out through
- * a VPN tunnel. On the other hand, they can have been received through a
- * VPN tunnel from a remote OpenVPN peer, in which case this module
- * retrieves the packet in its original form as it was before entering the
- * VPN tunnel on the remote OpenVPN peer. How this module processes
- * packets traveling in the two directions is discussed in more detail
- * below.
- *
- * @par Packets to be sent to a remote OpenVPN peer
- * This module's main function for processing packets traveling in this
- * direction is \c encrypt_sign(), which performs the following processing
- * steps:
- * - Call the \link compression Data Channel Compression module\endlink to
- * perform packet compression if necessary.
- * - Call the \link fragmentation Data Channel Fragmentation
- * module\endlink to perform packet fragmentation if necessary.
- * - Call the \link data_crypto Data Channel Crypto module\endlink to
- * perform the required security operations.
- *
- * @par
- * See the \c encrypt_sign() documentation for details of these
- * interactions.
- *
- * @par
- * After the above processing is complete, the packet is ready to be sent
- * to a remote OpenVPN peer as a VPN tunnel packet. The actual sending of
- * the packet is handled by the \link external_multiplexer External
- * Multiplexer\endlink.
- *
- * @par Packets received from a remote OpenVPN peer
- * The function that controls how packets traveling in this direction are
- * processed is \c process_incoming_link(). That function, however, also
- * performs some of the tasks required for the \link external_multiplexer
- * External Multiplexer\endlink and is therefore listed as part of that
- * module, instead of here.
- *
- * @par
- * After the \c process_incoming_link() function has determined that a
- * received packet is a data channel packet, it performs the following
- * processing steps:
- * - Call the \link data_crypto Data Channel Crypto module\endlink to
- * perform the required security operations.
- * - Call the \link fragmentation Data Channel Fragmentation
- * module\endlink to perform packet reassembly if necessary.
- * - Call the \link compression Data Channel Compression module\endlink to
- * perform packet decompression if necessary.
- *
- * @par
- * See the \c process_incoming_link() documentation for details of these
- * interactions.
- *
- * @par
- * After the above processing is complete, the packet is in its original
- * form again as it was received by the remote OpenVPN peer. It can now
- * be routed further to its final destination. If that destination is a
- * locally reachable host, then the \link internal_multiplexer Internal
- * Multiplexer\endlink will send it there.
- */
diff --git a/openvpn/doc/doxygen/doc_data_crypto.h b/openvpn/doc/doxygen/doc_data_crypto.h
deleted file mode 100644
index ee72b8cd..00000000
--- a/openvpn/doc/doxygen/doc_data_crypto.h
+++ /dev/null
@@ -1,75 +0,0 @@
-/*
- * OpenVPN -- An application to securely tunnel IP networks
- * over a single TCP/UDP port, with support for SSL/TLS-based
- * session authentication and key exchange,
- * packet encryption, packet authentication, and
- * packet compression.
- *
- * Copyright (C) 2010 Fox Crypto B.V. <openvpn@fox-it.com>
- *
- *
- * This program is free software; you can redistribute it and/or modify
- * it under the terms of the GNU General Public License version 2
- * as published by the Free Software Foundation.
- *
- * This program is distributed in the hope that it will be useful,
- * but WITHOUT ANY WARRANTY; without even the implied warranty of
- * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
- * GNU General Public License for more details.
- *
- * You should have received a copy of the GNU General Public License
- * along with this program (see the file COPYING included with this
- * distribution); if not, write to the Free Software Foundation, Inc.,
- * 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
- */
-
-/**
- * @file
- * Data Channel Crypto module documentation file.
- */
-
-/**
- * @addtogroup data_crypto Data Channel Crypto module
- *
- * The Data Channel Crypto Module performs cryptographic operations on
- * data channel packets.
- *
- * @par Security parameters
- * This module is merely the user of a VPN tunnel's security parameters.
- * It does not perform the negotiation and setup of the security
- * parameters, nor the %key generation involved. These actions are done
- * by the \link control_processor Control Channel Processor\endlink. This
- * module receives the appropriate security parameters from that module in
- * the form of a \c crypto_options structure when they are necessary for
- * processing a packet.
- *
- * @par Packet processing functions
- * This module receives data channel packets from the \link data_control
- * Data Channel Control module\endlink and processes them according to the
- * security parameters of the packet's VPN tunnel. The \link data_control
- * Data Channel Control module\endlink uses the following interface
- * functions:
- * - For packets which will be sent to a remote OpenVPN peer:
- * - \c tls_pre_encrypt()
- * - \c openvpn_encrypt()
- * - \c tls_post_encrypt()
- * - For packets which have been received from a remote OpenVPN peer:
- * - \c tls_pre_decrypt() (documented as part of the \link
- * external_multiplexer External Multiplexer\endlink)
- * - \c openvpn_decrypt()
- *
- * @par Settings that control this module's activity
- * Whether or not the Data Channel Crypto module is active depends on the
- * compile-time \c ENABLE_CRYPTO and \c ENABLE_SSL preprocessor macros. How it
- * processes packets received from the \link data_control Data Channel
- * Control module\endlink at runtime depends on the associated \c
- * crypto_options structure. To perform cryptographic operations, the \c
- * crypto_options.key_ctx_bi must contain the correct cipher and HMAC
- * security parameters for the direction the packet is traveling in.
- *
- * @par Crypto algorithms
- * This module uses the crypto algorithm implementations of the external
- * OpenSSL library. More precisely, it uses the OpenSSL library's \c
- * EVP_Cipher* and \c HMAC_* set of functions to perform cryptographic
- * operations on data channel packets.
- */
diff --git a/openvpn/doc/doxygen/doc_eventloop.h b/openvpn/doc/doxygen/doc_eventloop.h
deleted file mode 100644
index a860db68..00000000
--- a/openvpn/doc/doxygen/doc_eventloop.h
+++ /dev/null
@@ -1,67 +0,0 @@
-/*
- * OpenVPN -- An application to securely tunnel IP networks
- * over a single TCP/UDP port, with support for SSL/TLS-based
- * session authentication and key exchange,
- * packet encryption, packet authentication, and
- * packet compression.
- *
- * Copyright (C) 2010 Fox Crypto B.V. <openvpn@fox-it.com>
- *
- *
- * This program is free software; you can redistribute it and/or modify
- * it under the terms of the GNU General Public License version 2
- * as published by the Free Software Foundation.
- *
- * This program is distributed in the hope that it will be useful,
- * but WITHOUT ANY WARRANTY; without even the implied warranty of
- * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
- * GNU General Public License for more details.
- *
- * You should have received a copy of the GNU General Public License
- * along with this program (see the file COPYING included with this
- * distribution); if not, write to the Free Software Foundation, Inc.,
- * 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
- */
-
-/**
- * @file
- * Main Event Loop module documentation file.
- */
-
-/**
- * @defgroup eventloop Main Event Loop module
- *
- * This main event loop module drives the packet processing of OpenVPN.
- *
- * OpenVPN is an event driven system. Its activities are driven by a main
- * event loop, which repeatedly waits for one of several predefined events
- * to occur, and then calls the appropriate module to handle the event.
- * The major types of network events that OpenVPN processes are:
- * - A packet can be read from the external network interface.
- * - The main event loop activates the \link external_multiplexer
- * External Multiplexer\endlink to read and process the packet.
- * - A packet can be read from the virtual tun/tap network interface.
- * - The main event loop activates the \link internal_multiplexer
- * Internal Multiplexer\endlink to read and process the packet.
- * - If a packet is ready to be sent out as a VPN tunnel packet: the
- * external network interface can be written to.
- * - The main event loop activates the \link external_multiplexer
- * External Multiplexer\endlink to send the packet.
- * - If a packet is ready to be sent to a locally reachable destination:
- * the virtual tun/tap network interface can be written to.
- * - The main event loop activates the \link internal_multiplexer
- * Internal Multiplexer\endlink to send the packet.
- *
- * Beside these external events, OpenVPN also processes other types of
- * internal events. These include scheduled events, such as resending of
- * non-acknowledged control channel messages.
- *
- * @par Main event loop implementations
- *
- * Depending on the mode in which OpenVPN is running, a different main
- * event loop function is called to drive the event processing. The
- * following implementations are available:
- * - Client mode using UDP or TCP: \c tunnel_point_to_point()
- * - Server mode using UDP: \c tunnel_server_udp_single_threaded()
- * - Server mode using TCP: \c tunnel_server_tcp()
- */
diff --git a/openvpn/doc/doxygen/doc_external_multiplexer.h b/openvpn/doc/doxygen/doc_external_multiplexer.h
deleted file mode 100644
index 76532557..00000000
--- a/openvpn/doc/doxygen/doc_external_multiplexer.h
+++ /dev/null
@@ -1,46 +0,0 @@
-/*
- * OpenVPN -- An application to securely tunnel IP networks
- * over a single TCP/UDP port, with support for SSL/TLS-based
- * session authentication and key exchange,
- * packet encryption, packet authentication, and
- * packet compression.
- *
- * Copyright (C) 2010 Fox Crypto B.V. <openvpn@fox-it.com>
- *
- *
- * This program is free software; you can redistribute it and/or modify
- * it under the terms of the GNU General Public License version 2
- * as published by the Free Software Foundation.
- *
- * This program is distributed in the hope that it will be useful,
- * but WITHOUT ANY WARRANTY; without even the implied warranty of
- * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
- * GNU General Public License for more details.
- *
- * You should have received a copy of the GNU General Public License
- * along with this program (see the file COPYING included with this
- * distribution); if not, write to the Free Software Foundation, Inc.,
- * 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
- */
-
-/**
- * @file
- * External Multiplexer module documentation file.
- */
-
-/**
- * @addtogroup external_multiplexer External Multiplexer module
- *
- * The External Multiplexer is the link between the external network
- * interface and the other OpenVPN modules. It reads packets from the
- * external network interface, determines which remote OpenVPN peer and
- * VPN tunnel they are associated with, and whether they are data channel
- * or control channel packets. It then passes the packets on to the
- * appropriate processing module.
- *
- * This module also handles packets traveling in the reverse direction,
- * which have been generated by the local control channel or which have
- * already been processed by the \link data_control Data Channel Control
- * module\endlink and are destined for a remote host reachable through a
- * VPN tunnel.
- */
diff --git a/openvpn/doc/doxygen/doc_fragmentation.h b/openvpn/doc/doxygen/doc_fragmentation.h
deleted file mode 100644
index ef34cdb2..00000000
--- a/openvpn/doc/doxygen/doc_fragmentation.h
+++ /dev/null
@@ -1,96 +0,0 @@
-/*
- * OpenVPN -- An application to securely tunnel IP networks
- * over a single TCP/UDP port, with support for SSL/TLS-based
- * session authentication and key exchange,
- * packet encryption, packet authentication, and
- * packet compression.
- *
- * Copyright (C) 2010 Fox Crypto B.V. <openvpn@fox-it.com>
- *
- *
- * This program is free software; you can redistribute it and/or modify
- * it under the terms of the GNU General Public License version 2
- * as published by the Free Software Foundation.
- *
- * This program is distributed in the hope that it will be useful,
- * but WITHOUT ANY WARRANTY; without even the implied warranty of
- * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
- * GNU General Public License for more details.
- *
- * You should have received a copy of the GNU General Public License
- * along with this program (see the file COPYING included with this
- * distribution); if not, write to the Free Software Foundation, Inc.,
- * 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
- */
-
-/**
- * @file
- * Data Channel Fragmentation module documentation file.
- */
-
-/**
- * @defgroup fragmentation Data Channel Fragmentation module
- *
- * The Data Channel Fragmentation module offers fragmentation of data
- * channel packets.
- *
- * @par State structures
- * The Data Channel Fragmentation module stores its internal state in a \c
- * fragment_master structure. One such structure is present for each VPN
- * tunnel, and is stored in \c context.c2.fragment of the \c context
- * associated with that VPN tunnel.
- *
- * @par
- * The \c fragment_master structure contains one \c fragment_list
- * structure \c fragment_master.incoming. This is a list of \c fragment
- * structures, each of which can store the parts of one fragmented packet
- * while it is being reassembled. The \c fragment_master structure also
- * contains one \c buffer called \c fragment_master.outgoing, in which a
- * data channel large packet to be sent to a remote OpenVPN peer can be
- * broken up into parts to be sent one by one.
- *
- * @par Initialization and cleanup
- * Every time a new \c fragment_master is needed, it must be allocated and
- * initialized by the \c fragment_init() function. Similarly, every time
- * a \c fragment_master is no longer needed, it must be cleaned up using
- * the \c fragment_free() function. These functions take care of the
- * allocation and freeing of the \c fragment_master structure itself and
- * all internal memory required for the use of that structure. Note that
- * this behavior is different from that displayed by the \link compression
- * Data Channel Compression module\endlink.
- *
- * @par
- * Because of the one-to-one relationship between \c fragment_master
- * structures and VPN tunnels, the above-mentioned initialization and
- * cleanup functions are called directly from the \c init_instance() and
- * \c close_instance() functions, which control the initialization and
- * cleanup of VPN tunnel instances and their associated \c context
- * structures.
- *
- * @par Packet processing functions
- * This module receives data channel packets from the \link data_control
- * Data Channel Control module\endlink and processes them according to the
- * settings of the packet's VPN tunnel. The \link data_control Data
- * Channel Control module\endlink uses the following interface functions:
- * - For packets which will be sent to a remote OpenVPN peer: \c
- * fragment_outgoing() \n This function inspects data channel packets as
- * they are being made ready to be sent as VPN tunnel packets to a
- * remote OpenVPN peer. If a packet's size is larger than its
- * destination VPN tunnel's maximum transmission unit (MTU), then this
- * module breaks that packet up into smaller parts, each of which is
- * smaller than or equal to the VPN tunnel's MTU. See \c
- * fragment_outgoing() for details.
- * - For packets which have been received from a remote OpenVPN peer: \c
- * fragment_incoming() \n This function inspects data channel packets
- * that have been received from a remote OpenVPN peer through a VPN
- * tunnel. It reads the fragmentation header of the packet, and
- * depending on its value performs the appropriate action. See \c
- * fragment_incoming() for details.
- *
- * @par Settings that control this module's activity
- * Whether the Data Channel Fragmentation module is active or not depends
- * on the compile-time \c ENABLE_FRAGMENT preprocessor macro and the
- * runtime flag \c options.fragment, which gets its value from the
- * process's configuration sources, such as the configuration file and
- * commandline %options.
- */
diff --git a/openvpn/doc/doxygen/doc_internal_multiplexer.h b/openvpn/doc/doxygen/doc_internal_multiplexer.h
deleted file mode 100644
index 5142dd0d..00000000
--- a/openvpn/doc/doxygen/doc_internal_multiplexer.h
+++ /dev/null
@@ -1,44 +0,0 @@
-/*
- * OpenVPN -- An application to securely tunnel IP networks
- * over a single TCP/UDP port, with support for SSL/TLS-based
- * session authentication and key exchange,
- * packet encryption, packet authentication, and
- * packet compression.
- *
- * Copyright (C) 2010 Fox Crypto B.V. <openvpn@fox-it.com>
- *
- *
- * This program is free software; you can redistribute it and/or modify
- * it under the terms of the GNU General Public License version 2
- * as published by the Free Software Foundation.
- *
- * This program is distributed in the hope that it will be useful,
- * but WITHOUT ANY WARRANTY; without even the implied warranty of
- * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
- * GNU General Public License for more details.
- *
- * You should have received a copy of the GNU General Public License
- * along with this program (see the file COPYING included with this
- * distribution); if not, write to the Free Software Foundation, Inc.,
- * 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
- */
-
-/**
- * @file
- * Internal Multiplexer module documentation file.
- */
-
-/**
- * @addtogroup internal_multiplexer Internal Multiplexer module
- *
- * The Internal Multiplexer is the link between the virtual tun/tap
- * network interface and the \link data_control Data Channel Control
- * module\endlink. It reads packets from the virtual network interface,
- * determines for which remote OpenVPN peer they are destined, and then
- * passes the packets on to the Data Channel Control module together with
- * information about their destination VPN tunnel instance.
- *
- * This module also handles packets traveling in the reverse direction,
- * which have already been processed by the Data Channel Control module
- * and are destined for a locally reachable host.
- */
diff --git a/openvpn/doc/doxygen/doc_key_generation.h b/openvpn/doc/doxygen/doc_key_generation.h
deleted file mode 100644
index 903a4652..00000000
--- a/openvpn/doc/doxygen/doc_key_generation.h
+++ /dev/null
@@ -1,153 +0,0 @@
-/*
- * OpenVPN -- An application to securely tunnel IP networks
- * over a single TCP/UDP port, with support for SSL/TLS-based
- * session authentication and key exchange,
- * packet encryption, packet authentication, and
- * packet compression.
- *
- * Copyright (C) 2010 Fox Crypto B.V. <openvpn@fox-it.com>
- *
- *
- * This program is free software; you can redistribute it and/or modify
- * it under the terms of the GNU General Public License version 2
- * as published by the Free Software Foundation.
- *
- * This program is distributed in the hope that it will be useful,
- * but WITHOUT ANY WARRANTY; without even the implied warranty of
- * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
- * GNU General Public License for more details.
- *
- * You should have received a copy of the GNU General Public License
- * along with this program (see the file COPYING included with this
- * distribution); if not, write to the Free Software Foundation, Inc.,
- * 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
- */
-
-/**
- * @file
- * Key generation documentation file.
- */
-
-/**
- * @page key_generation Data channel %key generation
- *
- * This section describes how OpenVPN peers generate and exchange %key
- * material necessary for the security operations performed on data
- * channel packets.
- *
- * The %key generation and exchange process between OpenVPN client and
- * server occurs every time data channel security parameters are
- * negotiated, for example during the initial setup of a VPN tunnel or
- * when the active security parameters expire. In source code terms, this
- * is when a new key_state structure is initialized.
- *
- * @section key_generation_method Key methods
- *
- * OpenVPN supports two different ways of generating and exchanging %key
- * material between client and server. These are known as %key method 1
- * and %key method 2. %Key method 2 is the recommended method. Both are
- * explained below.
- *
- * @subsection key_generation_method_1 Key method 1
- *
- * -# Each host generates its own random material.
- * -# Each host uses its locally generated random material as %key data
- * for encrypting and signing packets sent to the remote peer.
- * -# Each host then sends its random material to the remote peer, so that
- * the remote peer can use that %key data for authenticating and
- * decrypting received packets.
- *
- * @subsection key_generation_method_2 Key method 2
- *
- * -# The client generates random material in the following amounts:
- * - Pre-master secret: 48 bytes
- * - Client's PRF seed for master secret: 32 bytes
- * - Client's PRF seed for %key expansion: 32 bytes
- * -# The client sends its share of random material to the server.
- * -# The server generates random material in the following amounts:
- * - Server's PRF seed for master secret: 32 bytes
- * - Server's PRF seed for %key expansion: 32 bytes
- * -# The server computes the %key expansion using its own and the
- * client's random material.
- * -# The server sends its share of random material to the client.
- * -# The client computes the %key expansion using its own and the
- * server's random material.
- *
- * %Key method 2 %key expansion is performed by the \c
- * generate_key_expansion() function. Please refer to its source code for
- * details of the %key expansion process.
- *
- * @subsection key_generation_random Source of random material
- *
- * OpenVPN uses the either the OpenSSL library or the PolarSSL library as its
- * source of random material.
- *
- * In OpenSSL, the \c RAND_bytes() function is called
- * to supply cryptographically strong pseudo-random data. The following links
- * contain more information on this subject:
- * - For OpenSSL's \c RAND_bytes() function:
- * http://www.openssl.org/docs/crypto/RAND_bytes.html
- * - For OpenSSL's pseudo-random number generating system:
- * http://www.openssl.org/docs/crypto/rand.html
- * - For OpenSSL's support for external crypto modules:
- * http://www.openssl.org/docs/crypto/engine.html
- *
- * In PolarSSL, the Havege random number generator is used. For details, see
- * the PolarSSL documentation.
- *
- * @section key_generation_exchange Key exchange:
- *
- * The %key exchange process is initiated by the OpenVPN process running
- * in client mode. After the initial three-way handshake has successfully
- * completed, the client sends its share of random material to the server,
- * after which the server responds with its part. This process is
- * depicted below:
- *
-@verbatim
- Client Client Server Server
- State Action Action State
----------- -------------------- -------------------- ----------
-
- ... waiting until three-way handshake complete ...
-S_START S_START
- key_method_?_write()
- send to server --> --> --> --> receive from client
-S_SENT_KEY key_method_?_read()
- S_GOT_KEY
- key_method_?_write()
- receive from server <-- <-- <-- <-- send to client
- key_method_?_read() S_SENT_KEY
-S_GOT_KEY
- ... waiting until control channel fully synchronized ...
-S_ACTIVE S_ACTIVE
-@endverbatim
- *
- * For more information about the client and server state values, see the
- * \link control_processor Control Channel Processor module\endlink.
- *
- * Depending on which %key method is used, the \c ? in the function names
- * of the diagram above is a \c 1 or a \c 2. For example, if %key method
- * 2 is used, that %key exchange would be started by the client calling \c
- * key_method_2_write(). These functions are called from the \link
- * control_processor Control Channel Processor module's\endlink \c
- * tls_process() function and control the %key generation and exchange
- * process as follows:
- * - %Key method 1:
- * - \c key_method_1_write(): generate random material locally, and load
- * as "sending" keys.
- * - \c key_method_1_read(): read random material received from remote
- * peer, and load as "receiving" keys.
- * - %Key method 2:
- * - \c key_method_2_write(): generate random material locally, and if
- * in server mode generate %key expansion.
- * - \c key_method_2_read(): read random material received from remote
- * peer, and if in client mode generate %key expansion.
- *
- * @subsection key_generation_encapsulation Transmission of key material
- *
- * The OpenVPN client and server communicate with each other through their
- * control channel. This means that all of the data transmitted over the
- * network, such as random material for %key generation, is encapsulated
- * in a TLS layer. For more details, see the \link control_tls Control
- * Channel TLS module\endlink documentation.
- */
diff --git a/openvpn/doc/doxygen/doc_mainpage.h b/openvpn/doc/doxygen/doc_mainpage.h
deleted file mode 100644
index 821b2e87..00000000
--- a/openvpn/doc/doxygen/doc_mainpage.h
+++ /dev/null
@@ -1,162 +0,0 @@
-/*
- * OpenVPN -- An application to securely tunnel IP networks
- * over a single TCP/UDP port, with support for SSL/TLS-based
- * session authentication and key exchange,
- * packet encryption, packet authentication, and
- * packet compression.
- *
- * Copyright (C) 2010 Fox Crypto B.V. <openvpn@fox-it.com>
- *
- *
- * This program is free software; you can redistribute it and/or modify
- * it under the terms of the GNU General Public License version 2
- * as published by the Free Software Foundation.
- *
- * This program is distributed in the hope that it will be useful,
- * but WITHOUT ANY WARRANTY; without even the implied warranty of
- * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
- * GNU General Public License for more details.
- *
- * You should have received a copy of the GNU General Public License
- * along with this program (see the file COPYING included with this
- * distribution); if not, write to the Free Software Foundation, Inc.,
- * 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
- */
-
-/**
- * @file
- * Main page documentation file.
- */
-
-/**
- * @mainpage OpenVPN v2.1 source code documentation
- *
- * This documentation describes the internal structure of OpenVPN. It was
- * automatically generated from specially formatted comment blocks in
- * OpenVPN's source code using Doxygen. (See
- * http://www.stack.nl/~dimitri/doxygen/ for more information on Doxygen)
- *
- * The \ref mainpage_modules "Modules section" below gives an introduction
- * into the high-level module concepts used throughout this documentation.
- * The \ref mainpage_relatedpages "Related Pages section" below describes
- * various special subjects related to OpenVPN's implementation which are
- * discussed in the related pages section.
- *
- * @section mainpage_modules Modules
- *
- * For the purpose of describing the internal structure of OpenVPN, this
- * documentation and the underlying source code has been broken up into a
- * number of conceptually well-defined parts, known as modules. Each
- * module plays a specific role within the OpenVPN process, and in most
- * cases each module has a clear interfacing strategy for interacting with
- * other modules.
- *
- * The following modules have been defined:
- * - Driver module:
- * - The \link eventloop Main Event Loop\endlink: this module drives the
- * event handling of OpenVPN. It implements various types of
- * select-loop which wait until an event happens, and then delegate
- * the handling of that event to the appropriate module.
- * - Network interface modules:
- * - The \link external_multiplexer External Multiplexer\endlink: this
- * module sends and receives packets to and from remote OpenVPN peers
- * over the external network interface. It also takes care of
- * demultiplexing received packets to their appropriate VPN tunnel and
- * splitting control channel and data channel packets.
- * - The \link internal_multiplexer Internal Multiplexer\endlink: this
- * module sends and receives packets to and from locally reachable
- * posts over the virtual tun/tap network interface. It also takes
- * care of determining through which VPN tunnel a received packet must
- * be sent to reach its destination.
- * - Control channel modules:
- * - The \link reliable Reliability Layer\endlink: this module offers a
- * %reliable and sequential transport layer for control channel
- * messages.
- * - The \link control_tls Control Channel TLS module\endlink: this
- * module offers a secure encapsulation of control channel messages
- * using the TLS protocol.
- * - The \link control_processor Control Channel Processor\endlink: his
- * module manages the setup, maintenance, and shut down of VPN
- * tunnels.
- * - Data channel modules:
- * - The \link data_control Data Channel Control module\endlink: this
- * module controls the processing of data channel packets and,
- * depending on the settings of the packet's VPN tunnel, passes the
- * packet to the three modules below for handling.
- * - The \link data_crypto Data Channel Crypto module\endlink: this
- * module performs security operations on data channel packets.
- * - The \link fragmentation Data Channel Fragmentation module\endlink:
- * this module offers fragmentation of data channel packets larger
- * than the VPN tunnel's MTU.
- * - The \link compression Data Channel Compression module\endlink: this
- * module offers compression of data channel packets.
- *
- * @subsection mainpage_modules_example Example event: receiving a packet
- *
- * OpenVPN handles many types of events during operation. These include
- * external events, such as network traffic being received, and internal
- * events, such as a %key session timing out causing renegotiation. An
- * example event, receiving a packet over the network, is described here
- * together with which modules play what roles:
- * -# The \link eventloop Main Event Loop\endlink detects that a packet
- * can be read from the external or the virtual tun/tap network
- * interface.
- * -# The \link eventloop Main Event Loop\endlink calls the \link
- * external_multiplexer External Multiplexer\endlink or \link
- * internal_multiplexer Internal Multiplexer\endlink to read and
- * process the packet.
- * -# The multiplexer module determines the type of packet and its
- * destination, and passes the packet on to the appropriate handling
- * module:
- * - A control channel packet received by the \link
- * external_multiplexer External Multiplexer\endlink is passed on
- * through the \link reliable Reliability Layer\endlink and the \link
- * control_tls Control Channel TLS module\endlink to the \link
- * control_processor Control Channel Processor\endlink.
- * - A data channel packet received by either multiplexer module is
- * passed on to the \link data_control Data Channel Control
- * module\endlink.
- * -# The packet is processed by the appropriate control channel or data
- * channel modules.
- * -# If, after processing the packet, a resulting packet is generated
- * that needs to be sent to a local or remote destination, it is given
- * to the \link external_multiplexer External Multiplexer\endlink or
- * \link internal_multiplexer Internal Multiplexer\endlink for sending.
- * -# If a packet is waiting to be sent by either multiplexer module and
- * the \link eventloop Main Event Loop\endlink detects that data can be
- * written to the associated network interface, it calls the
- * multiplexer module to send the packet.
- *
- * @section mainpage_relatedpages Related pages
- *
- * This documentation includes a number of descriptions of various aspects
- * of OpenVPN and its implementation. These are not directly related to
- * one module, function, or data structure, and are therefore listed
- * separately under "Related Pages".
- *
- * @subsection mainpage_relatedpages_key_generation Data channel key generation
- *
- * The @ref key_generation "Data channel key generation" related page
- * describes how, during VPN tunnel setup and renegotiation, OpenVPN peers
- * generate and exchange the %key material required for the symmetric
- * encryption/decryption and HMAC signing/verifying security operations
- * performed on data channel packets.
- *
- * @subsection mainpage_relatedpages_tunnel_state VPN tunnel state
- *
- * The @ref tunnel_state "Structure of VPN tunnel state storage" related
- * page describes how an OpenVPN process manages the state information
- * associated with its active VPN tunnels.
- *
- * @subsection mainpage_relatedpages_network_protocol Network protocol
- *
- * The @ref network_protocol "Network protocol" related page describes the
- * format and content of VPN tunnel packets exchanged between OpenVPN
- * peers.
- *
- * @subsection mainpage_relatedpages_memory_management Memory management
- *
- * The @ref memory_management "Memory management strategies" related page
- * gives a brief introduction into OpenVPN's memory %buffer library and
- * garbage collection facilities.
- */
diff --git a/openvpn/doc/doxygen/doc_memory_management.h b/openvpn/doc/doxygen/doc_memory_management.h
deleted file mode 100644
index f948783e..00000000
--- a/openvpn/doc/doxygen/doc_memory_management.h
+++ /dev/null
@@ -1,99 +0,0 @@
-/*
- * OpenVPN -- An application to securely tunnel IP networks
- * over a single TCP/UDP port, with support for SSL/TLS-based
- * session authentication and key exchange,
- * packet encryption, packet authentication, and
- * packet compression.
- *
- * Copyright (C) 2010 Fox Crypto B.V. <openvpn@fox-it.com>
- *
- *
- * This program is free software; you can redistribute it and/or modify
- * it under the terms of the GNU General Public License version 2
- * as published by the Free Software Foundation.
- *
- * This program is distributed in the hope that it will be useful,
- * but WITHOUT ANY WARRANTY; without even the implied warranty of
- * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
- * GNU General Public License for more details.
- *
- * You should have received a copy of the GNU General Public License
- * along with this program (see the file COPYING included with this
- * distribution); if not, write to the Free Software Foundation, Inc.,
- * 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
- */
-
-/**
- * @file
- * Memory management strategies documentation file.
- */
-
-/**
- * @page memory_management OpenVPN's memory management strategies
- *
- * This section describes several implementation details relating to
- * OpenVPN's memory management strategies.
- *
- * During operation, the OpenVPN process performs all kinds of operations
- * on blocks of data. Receiving packets, encrypting content, prepending
- * headers, etc. To make the programmer's job easier and to decrease the
- * likelihood of memory-related bugs, OpenVPN uses its own memory %buffer
- * library and garbage collection facilities. These are described in
- * brief here.
- *
- * @section memory_management_buffer The buffer structure
- *
- * The \c buffer structure is a wrapper around a block of dynamically
- * allocated memory which keeps track of the block's capacity \c
- * buffer.capacity and location in memory \c buffer.data. This structure
- * supports efficient prepending and appending within the allocated memory
- * through the use of offset \c buffer.offset and length \c buffer.len
- * fields. See the \c buffer documentation for more details on the
- * structure itself.
- *
- * OpenVPN's %buffer library, implemented in the \c buffer.h and \c
- * buffer.c files, contains many utility functions for working with \c
- * buffer structures. These functions facilitate common operations, such
- * as allocating, freeing, reading and writing to \c buffer structures,
- * and even offer several more advanced operations, such as string
- * matching and creating sub-buffers.
- *
- * Not only do these utility functions make working with \c buffer
- * structures easy, they also perform extensive error checking. Each
- * function, where necessary, checks whether enough space is available
- * before performing its actions. This minimizes the chance of bugs
- * leading to %buffer overflows and other vulnerabilities.
- *
- * @section memory_management_frame The frame structure
- *
- * The \c frame structure keeps track of the maximum allowed packet
- * geometries of a network connection.
- *
- * It is used, for example, to determine the size of \c buffer structures
- * in which to store data channel packets. This is done by having each
- * data channel processing module register the maximum amount of extra
- * space it will need for header prepending and content expansion in the
- * \c frame structure. Once these parameters are known, \c buffer
- * structures can be allocated, based on the \c frame parameters, so that
- * they are large enough to allow efficient prepending of headers and
- * processing of content.
- *
- * @section memory_management_garbage Garbage collection
- *
- * OpenVPN has many sizable functions which perform various actions
- * depending on their %context. This makes it difficult to know in advance
- * exactly how much memory must be allocated. The garbage collection
- * facilities are used to keep track of dynamic allocations, thereby
- * allowing easy collective freeing of the allocated memory.
- *
- * The garbage collection system is implemented by the \c gc_arena and \c
- * gc_entry structures. The arena represents a garbage collecting unit,
- * and contains a linked list of entries. Each entry represents one block
- * of dynamically allocated memory.
- *
- * The garbage collection system also contains various utility functions
- * for working with the garbage collection structures. These include
- * functions for initializing new arenas, allocating memory of a given
- * size and registering the allocation in an arena, and freeing all the
- * allocated memory associated with an arena.
- */
diff --git a/openvpn/doc/doxygen/doc_protocol_overview.h b/openvpn/doc/doxygen/doc_protocol_overview.h
deleted file mode 100644
index 26fed331..00000000
--- a/openvpn/doc/doxygen/doc_protocol_overview.h
+++ /dev/null
@@ -1,199 +0,0 @@
-/*
- * OpenVPN -- An application to securely tunnel IP networks
- * over a single TCP/UDP port, with support for SSL/TLS-based
- * session authentication and key exchange,
- * packet encryption, packet authentication, and
- * packet compression.
- *
- * Copyright (C) 2010 Fox Crypto B.V. <openvpn@fox-it.com>
- *
- *
- * This program is free software; you can redistribute it and/or modify
- * it under the terms of the GNU General Public License version 2
- * as published by the Free Software Foundation.
- *
- * This program is distributed in the hope that it will be useful,
- * but WITHOUT ANY WARRANTY; without even the implied warranty of
- * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
- * GNU General Public License for more details.
- *
- * You should have received a copy of the GNU General Public License
- * along with this program (see the file COPYING included with this
- * distribution); if not, write to the Free Software Foundation, Inc.,
- * 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
- */
-
-/**
- * @file Network protocol overview documentation file.
- */
-
-/**
- * @page network_protocol OpenVPN's network protocol
- *
- * Description of packet structure in OpenVPN's network protocol.
- *
- * This document describes the structure of packets exchanged between
- * OpenVPN peers. It is based on the protocol description in the \c ssl.h
- * file.
- *
- * @section network_protocol_external Outer structure of packets exchanged between OpenVPN peers
- *
- * VPN tunnel packets are transported between OpenVPN peers using the UDP
- * or TCP protocols. Their structure is described below.
- *
- * @subsection network_protocol_external_structure External packet structure
- *
- * - packet length (16 bits, unsigned) [TCP-mode only]: always sent as
- * plain text. Since TCP is a stream protocol, this packet length
- * defines the packetization of the stream.
- * - packet opcode and key_id (8 bits) [TLS-mode only]:
- * - package message type (high 5 bits)
- * - key_id (low 3 bits): the key_id refers to an already negotiated
- * TLS session. OpenVPN seamlessly renegotiates the TLS session by
- * using a new key_id for the new session. Overlap (controlled by
- * user definable parameters) between old and new TLS sessions is
- * allowed, providing a seamless transition during tunnel operation.
- * - payload (n bytes)
- *
- * @subsection network_protocol_external_types Message types
- *
- * The type of a VPN tunnel packet is indicated by its opcode. The
- * following describes the various opcodes available.
- *
- * - Control channel messages:
- * - \c P_CONTROL_HARD_RESET_CLIENT_V1 -- %Key method 1, initial %key
- * from client, forget previous state.
- * - \c P_CONTROL_HARD_RESET_SERVER_V1 -- %Key method 1, initial %key
- * from server, forget previous state.
- * - \c P_CONTROL_HARD_RESET_CLIENT_V2 -- %Key method 2, initial %key
- * from client, forget previous state.
- * - \c P_CONTROL_HARD_RESET_SERVER_V2 -- %Key method 2, initial %key
- * from server, forget previous state.
- * - \c P_CONTROL_SOFT_RESET_V1 -- New %key, with a graceful
- * transition from old to new %key in the sense that a transition
- * window exists where both the old or new key_id can be used.
- * - \c P_CONTROL_V1 -- Control channel packet (usually TLS
- * ciphertext).
- * - \c P_ACK_V1 -- Acknowledgement for control channel packets
- * received.
- * - Data channel messages:
- * - \c P_DATA_V1 -- Data channel packet containing data channel
- * ciphertext.
- *
- * @subsection network_protocol_external_key_id Session IDs and Key IDs
- *
- * OpenVPN uses two different forms of packet identifiers:
- * - The first form is 64 bits and is used for all control channel
- * messages. This form is referred to as a \c session_id.
- * - Data channel messages on the other hand use a shortened form of 3
- * bits for efficiency reasons since the vast majority of OpenVPN
- * packets in an active tunnel will be data channel messages. This
- * form is referred to as a \c key_id.
- *
- * The control and data channels use independent packet-id sequences,
- * because the data channel is an unreliable channel while the control
- * channel is a %reliable channel. Each use their own independent HMAC
- * keys.
- *
- * @subsection network_protocol_external_reliable Control channel reliability layer
- *
- * Control channel messages (\c P_CONTROL_* and \c P_ACK_* message types)
- * are TLS ciphertext packets which have been encapsulated inside of a
- * reliability layer. The reliability layer is implemented as a
- * straightforward acknowledge and retransmit model.
- *
- * Acknowledgments of received messages can be encoded in either the
- * dedicated \c P_ACK_* record or they can be prepended to a \c
- * P_CONTROL_* message.
- *
- * See the \link reliable Reliability Layer\endlink module for a detailed
- * description.
- *
- * @section network_protocol_control Structure of control channel messages
- *
- * @subsection network_protocol_control_ciphertext Structure of ciphertext control channel messages
- *
- * Control channel packets in ciphertext form consist of the following
- * parts:
- *
- * - local \c session_id (random 64 bit value to identify TLS session).
- * - HMAC signature of entire encapsulation header for HMAC firewall
- * [only if \c --tls-auth is specified] (usually 16 or 20 bytes).
- * - packet-id for replay protection (4 or 8 bytes, includes sequence
- * number and optional \c time_t timestamp).
- * - acknowledgment packet-id array length (1 byte).
- * - acknowledgment packet-id array (if length > 0).
- * - acknowledgment remote session-id (if length > 0).
- * - packet-id of this message (4 bytes).
- * - TLS payload ciphertext (n bytes) (only for \c P_CONTROL_V1).
- *
- * Note that when \c --tls-auth is used, all message types are protected
- * with an HMAC signature, even the initial packets of the TLS handshake.
- * This makes it easy for OpenVPN to throw away bogus packets quickly,
- * without wasting resources on attempting a TLS handshake which will
- * ultimately fail.
- *
- * @subsection network_protocol_control_key_methods Control channel key methods and
- *
- * Once the TLS session has been initialized and authenticated, the TLS
- * channel is used to exchange random %key material for bidirectional
- * cipher and HMAC keys which will be used to secure data channel packets.
- * OpenVPN currently implements two %key methods. %Key method 1 directly
- * derives keys using random bits obtained from the \c RAND_bytes()
- * OpenSSL function. %Key method 2 mixes random %key material from both
- * sides of the connection using the TLS PRF mixing function. %Key method
- * 2 is the preferred method and is the default for OpenVPN 2.0.
- *
- * The @ref key_generation "Data channel key generation" related page
- * describes the %key methods in more detail.
- *
- * @subsection network_protocol_control_plaintext Structure of plaintext control channel messages
- *
- * - %Key method 1:
- * - Cipher %key length in bytes (1 byte).
- * - Cipher %key (n bytes).
- * - HMAC %key length in bytes (1 byte).
- * - HMAC %key (n bytes).
- * - %Options string (n bytes, null terminated, client/server %options
- * string should match).
- * - %Key method 2:
- * - Literal 0 (4 bytes).
- * - %Key method (1 byte).
- * - \c key_source structure (\c key_source.pre_master only defined
- * for client -> server).
- * - %Options string length, including null (2 bytes).
- * - %Options string (n bytes, null terminated, client/server %options
- * string must match).
- * - [The username/password data below is optional, record can end at
- * this point.]
- * - Username string length, including null (2 bytes).
- * - Username string (n bytes, null terminated).
- * - Password string length, including null (2 bytes).
- * - Password string (n bytes, null terminated).
- *
- * @section network_protocol_data Structure of data channel messages
- *
- * @subsection network_protocol_data_ciphertext Structure of ciphertext data channel messages
- *
- * The P_DATA_* payload represents encrypted, encapsulated tunnel packets
- * which tend to be either IP packets or Ethernet frames. This is
- * essentially the "payload" of the VPN.
- *
- * Data channel packets in ciphertext form consist of the following parts:
- * - HMAC of ciphertext IV + ciphertext (if not disabled by \c --auth
- * none).
- * - Ciphertext IV (size is cipher-dependent, if not disabled by \c
- * --no-iv).
- * - Tunnel packet ciphertext.
- *
- * @subsection network_protocol_data_plaintext Structure of plaintext data channel messages
- *
- * Data channel packets in plaintext form consist of the following parts:
- * - packet-id (4 or 8 bytes, if not disabled by --no-replay).
- * - In TLS mode, 4 bytes are used because the implementation can
- * force a TLS renegotation before \c 2^32 packets are sent.
- * - In pre-shared %key mode, 8 bytes are used (sequence number and \c
- * time_t value) to allow long-term %key usage without packet-id
- * collisions.
- * - User plaintext (n bytes).
- */
diff --git a/openvpn/doc/doxygen/doc_reliable.h b/openvpn/doc/doxygen/doc_reliable.h
deleted file mode 100644
index 5264906a..00000000
--- a/openvpn/doc/doxygen/doc_reliable.h
+++ /dev/null
@@ -1,49 +0,0 @@
-/*
- * OpenVPN -- An application to securely tunnel IP networks
- * over a single TCP/UDP port, with support for SSL/TLS-based
- * session authentication and key exchange,
- * packet encryption, packet authentication, and
- * packet compression.
- *
- * Copyright (C) 2010 Fox Crypto B.V. <openvpn@fox-it.com>
- *
- *
- * This program is free software; you can redistribute it and/or modify
- * it under the terms of the GNU General Public License version 2
- * as published by the Free Software Foundation.
- *
- * This program is distributed in the hope that it will be useful,
- * but WITHOUT ANY WARRANTY; without even the implied warranty of
- * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
- * GNU General Public License for more details.
- *
- * You should have received a copy of the GNU General Public License
- * along with this program (see the file COPYING included with this
- * distribution); if not, write to the Free Software Foundation, Inc.,
- * 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
- */
-
-/**
- * @file
- * Reliability Layer module documentation file.
- */
-
-/**
- * @defgroup reliable Reliability Layer module
- *
- * The Reliability Layer is part of OpenVPN's control channel. It
- * provides a reliable and sequential transport mechanism for control
- * channel messages between OpenVPN peers. This module forms the
- * interface between the \link external_multiplexer External
- * Multiplexer\endlink and the \link control_tls Control Channel TLS
- * module\endlink.
- *
- * @par UDP or TCP as VPN tunnel transport
- *
- * This is especially important when OpenVPN is configured to communicate
- * over UDP, because UDP does not offer a reliable and sequential
- * transport. OpenVPN endpoints can also communicate over TCP which does
- * provide a reliable and sequential transport. In both cases, using UDP
- * or TCP as an external transport, the internal Reliability Layer is
- * active.
- */
diff --git a/openvpn/doc/doxygen/doc_tunnel_state.h b/openvpn/doc/doxygen/doc_tunnel_state.h
deleted file mode 100644
index 6c93e71b..00000000
--- a/openvpn/doc/doxygen/doc_tunnel_state.h
+++ /dev/null
@@ -1,155 +0,0 @@
-/*
- * OpenVPN -- An application to securely tunnel IP networks
- * over a single TCP/UDP port, with support for SSL/TLS-based
- * session authentication and key exchange,
- * packet encryption, packet authentication, and
- * packet compression.
- *
- * Copyright (C) 2010 Fox Crypto B.V. <openvpn@fox-it.com>
- *
- *
- * This program is free software; you can redistribute it and/or modify
- * it under the terms of the GNU General Public License version 2
- * as published by the Free Software Foundation.
- *
- * This program is distributed in the hope that it will be useful,
- * but WITHOUT ANY WARRANTY; without even the implied warranty of
- * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
- * GNU General Public License for more details.
- *
- * You should have received a copy of the GNU General Public License
- * along with this program (see the file COPYING included with this
- * distribution); if not, write to the Free Software Foundation, Inc.,
- * 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
- */
-
-/**
- * @file
- * VPN tunnel state documentation file.
- */
-
-/**
- * @page tunnel_state Structure of the VPN tunnel state storage
- *
- * This section describes how OpenVPN stores its VPN tunnel state during
- * operation.
- *
- * OpenVPN uses several data structures as storage containers for state
- * information of active VPN tunnels. These are described in this
- * section, together with a little bit of history to help understand the
- * origin of the current architecture.
- *
- * Whether an OpenVPN process is running in client-mode or server-mode
- * determines whether it can support only one or multiple simultaneously
- * active VPN tunnels. This consequently also determines how the
- * associated state information is wrapped up internally. This section
- * gives an overview of the differences.
- *
- * @section tunnel_state_history Historic developments
- *
- * In the old v1.x series, an OpenVPN process managed only one single VPN
- * tunnel. This allowed the VPN tunnel state to be stored together with
- * process-global information in one single \c context structure.
- *
- * This changed, however, in the v2.x series, as new OpenVPN versions
- * running in server-mode can support multiple simultaneously active VPN
- * tunnels. This necessitated a redesign of the VPN tunnel state
- * container structures, and modification of the \link
- * external_multiplexer External Multiplexer\endlink and \link
- * internal_multiplexer Internal Multiplexer\endlink systems. The
- * majority of these changes are only relevant for OpenVPN processes
- * running in server-mode, and the client-mode structure has remained very
- * similar to the v1.x single-tunnel form.
- *
- * @section tunnel_state_client Client-mode state
- *
- * An OpenVPN process running in client-mode can manage at most one single
- * VPN tunnel at any one time. The state information for a client's VPN
- * tunnel is stored in a \c context structure.
- *
- * The \c context structure is created in the \c main() function. That is
- * also where process-wide initialization takes place, such as parsing
- * command line %options and reading configuration files. The \c context
- * is then passed to \c tunnel_point_to_point() which drives OpenVPN's
- * main event processing loop. These functions are both part of the \link
- * eventloop Main Event Loop\endlink module.
- *
- * @subsection tunnel_state_client_init Initialization and cleanup
- *
- * Because there is only one \c context structure present, it can be
- * initialized and cleaned up from the client's main event processing
- * function. Before the \c tunnel_point_to_point() function enters its
- * event loop, it calls \c init_instance_handle_signals() which calls \c
- * init_instance() to initialize the single \c context structure. After
- * the event loop stops, it calls \c close_instance() to clean up the \c
- * context.
- *
- * @subsection tunnel_state_client_event Event processing
- *
- * When the main event processing loop activates the external or internal
- * multiplexer to handle a network event, it is not necessary to determine
- * which VPN tunnel the event is associated with, because there is only
- * one VPN tunnel active.
- *
- * @section tunnel_state_server Server-mode state
- *
- * An OpenVPN process running in server-mode can manage multiple
- * simultaneously active VPN tunnels. For every VPN tunnel active, in
- * other words for every OpenVPN client which is connected to a server,
- * the OpenVPN server has one \c context structure in which it stores that
- * particular VPN tunnel's state information.
- *
- * @subsection tunnel_state_server_multi Multi_context and multi_instance structures
- *
- * To support multiple \c context structures, each is wrapped in a \c
- * multi_instance structure, and all the \c multi_instance structures are
- * registered in one single \c multi_context structure. The \link
- * external_multiplexer External Multiplexer\endlink and \link
- * internal_multiplexer Internal Multiplexer\endlink then use the \c
- * multi_context to retrieve the correct \c multi_instance and \c context
- * associated with a given network address.
- *
- * @subsection tunnel_state_server_init Startup and initialization
- *
- * An OpenVPN process running in server-mode starts in the same \c main()
- * function as it would in client-mode. The same process-wide
- * initialization is performed, and the resulting state and configuration
- * is stored in a \c context structure. The server-mode and client-mode
- * processes diverge when the \c main() function calls one of \c
- * tunnel_point_to_point() or \c tunnel_server().
- *
- * In server-mode, \c main() calls the \c tunnel_server() function, which
- * transfers control to \c tunnel_server_udp_single_threaded() or \c
- * tunnel_server_tcp() depending on the external transport protocol.
- *
- * These functions receive the \c context created in \c main(). This
- * object has a special status in server-mode, as it does not represent an
- * active VPN tunnel, but does contain process-wide configuration
- * parameters. In the source code, it is often stored in "top" variables.
- * To distinguish this object from other instances of the same type, its
- * \c context.mode value is set to \c CM_TOP. Other \c context objects,
- * which do represent active VPN tunnels, have a \c context.mode set to \c
- * CM_CHILD_UDP or \c CM_CHILD_TCP, depending on the external transport
- * protocol.
- *
- * Both \c tunnel_server_udp_single_threaded() and \c tunnel_server_tcp()
- * perform similar initialization. In either case, a \c multi_context
- * structure is created, and it is initialized according to the
- * configuration stored in the top \c context by the \c multi_init() and
- * \c multi_top_init() functions.
- *
- * @subsection tunnel_state_server_tunnels Creating and destroying VPN tunnels
- *
- * When an OpenVPN client makes a new connection to a server, the server
- * creates a new \c context and \c multi_instance. The latter is
- * registered in the \c multi_context, which makes it possible for the
- * external and internal multiplexers to retrieve the correct \c
- * multi_instance and \c context when a network event occurs.
- *
- * @subsection tunnel_state_server_cleanup Final cleanup
- *
- * After the main event loop exits, both \c
- * tunnel_server_udp_single_threaded() and \c tunnel_server_tcp() perform
- * similar cleanup. They call \c multi_uninit() followed by \c
- * multi_top_free() to clean up the \c multi_context structure.
- */
diff --git a/openvpn/doc/doxygen/openvpn.doxyfile b/openvpn/doc/doxygen/openvpn.doxyfile
deleted file mode 100644
index cf26c42a..00000000
--- a/openvpn/doc/doxygen/openvpn.doxyfile
+++ /dev/null
@@ -1,279 +0,0 @@
-# Doxyfile 1.5.5
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-WARN_FORMAT = "$file:$line: $text"
-WARN_LOGFILE =
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-UML_LOOK = NO
-TEMPLATE_RELATIONS = NO
-INCLUDE_GRAPH = YES
-INCLUDED_BY_GRAPH = YES
-CALL_GRAPH = NO # YES
-CALLER_GRAPH = NO # YES
-GRAPHICAL_HIERARCHY = YES
-DIRECTORY_GRAPH = YES
-DOT_IMAGE_FORMAT = png
-DOT_PATH = "/usr/bin/dot"
-DOTFILE_DIRS =
-DOT_GRAPH_MAX_NODES = 50
-MAX_DOT_GRAPH_DEPTH = 1000
-DOT_TRANSPARENT = YES
-DOT_MULTI_TARGETS = NO
-GENERATE_LEGEND = YES
-DOT_CLEANUP = YES
-#---------------------------------------------------------------------------
-# Configuration::additions related to the search engine
-#---------------------------------------------------------------------------
-SEARCHENGINE = NO