Merge branch 'master' into atomics
commit
d2fada4417
26
GNUmakefile
26
GNUmakefile
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@ -22,7 +22,8 @@ IS_X86 := $(shell uname -m | $(EGREP) -v "x86_64" | $(EGREP) -i -c "i.86|x86|i86
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IS_X32 ?= 0
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IS_X86_64 := $(shell uname -m | $(EGREP) -i -c "(_64|d64)")
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IS_PPC := $(shell uname -m | $(EGREP) -i -c "ppc|power")
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IS_AARCH64 := $(shell uname -m | $(EGREP) -i -c "aarch64")
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IS_ARM32 := $(shell uname -m | $(EGREP) -i -c "arm")
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IS_ARM64 := $(shell uname -m | $(EGREP) -i -c "aarch64")
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IS_SUN := $(shell uname | $(EGREP) -i -c "SunOS")
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IS_LINUX := $(shell $(CXX) -dumpmachine 2>&1 | $(EGREP) -i -c "Linux")
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@ -325,9 +326,13 @@ endif # HAS_SOLIB_VERSION
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# is the second candidate for explicit initialization order.
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SRCS := cryptlib.cpp cpu.cpp $(filter-out cryptlib.cpp cpu.cpp pch.cpp simple.cpp winpipes.cpp cryptlib_bds.cpp,$(wildcard *.cpp))
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# No need for CPU or RDRAND on non-X86 systems. X32 is represented with X64.
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# Need CPU for X86/X64/X32 and ARM
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ifeq ($(IS_X86)$(IS_X86_64)$(IS_ARM32)$(IS_ARM64),0000)
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SRCS := $(filter-out cpu.cpp, $(SRCS))
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endif
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# Need RDRAND for X86/X64/X32
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ifeq ($(IS_X86)$(IS_X86_64),00)
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SRCS := $(filter-out cpu.cpp rdrand.cpp, $(SRCS))
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SRCS := $(filter-out rdrand.cpp, $(SRCS))
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endif
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ifneq ($(IS_MINGW),0)
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@ -522,16 +527,16 @@ ifeq ($(HAS_SOLIB_VERSION),1)
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endif
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endif
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libcryptopp.a: $(LIBOBJS) | public_service
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libcryptopp.a: $(LIBOBJS) | config_warning
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$(AR) $(ARFLAGS) $@ $(LIBOBJS)
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$(RANLIB) $@
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ifeq ($(HAS_SOLIB_VERSION),1)
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.PHONY: libcryptopp.so
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libcryptopp.so: libcryptopp.so$(SOLIB_VERSION_SUFFIX)
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libcryptopp.so: libcryptopp.so$(SOLIB_VERSION_SUFFIX) | so_warning
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endif
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libcryptopp.so$(SOLIB_VERSION_SUFFIX): $(LIBOBJS) | public_service
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libcryptopp.so$(SOLIB_VERSION_SUFFIX): $(LIBOBJS)
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$(CXX) -shared $(SOLIB_FLAGS) -o $@ $(CXXFLAGS) $(LDFLAGS) $(LIBOBJS) $(LDLIBS)
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ifeq ($(HAS_SOLIB_VERSION),1)
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-$(LN) libcryptopp.so$(SOLIB_VERSION_SUFFIX) libcryptopp.so
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@ -541,7 +546,7 @@ endif
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libcryptopp.dylib: $(LIBOBJS)
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$(CXX) -dynamiclib -o $@ $(CXXFLAGS) -install_name "$@" -current_version "$(LIB_MAJOR).$(LIB_MINOR).$(LIB_PATCH)" -compatibility_version "$(LIB_MAJOR).$(LIB_MINOR)" -headerpad_max_install_names $(LDFLAGS) $(LIBOBJS)
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cryptest.exe: libcryptopp.a $(TESTOBJS) | public_service
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cryptest.exe: libcryptopp.a $(TESTOBJS) | config_warning
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$(CXX) -o $@ $(CXXFLAGS) $(TESTOBJS) ./libcryptopp.a $(LDFLAGS) $(LDLIBS)
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# Makes it faster to test changes
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@ -673,8 +678,8 @@ endif
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UNALIGNED_ACCESS := $(shell $(EGREP) -c "^[[:space:]]*//[[:space:]]*\#[[:space:]]*define[[:space:]]*CRYPTOPP_NO_UNALIGNED_DATA_ACCESS" config.h)
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NO_INIT_PRIORITY := $(shell $(EGREP) -c "^[[:space:]]*//[[:space:]]*\#[[:space:]]*define[[:space:]]*CRYPTOPP_INIT_PRIORITY" config.h)
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COMPATIBILITY_562 := $(shell $(EGREP) -c "^[[:space:]]*\#[[:space:]]*define[[:space:]]*CRYPTOPP_MAINTAIN_BACKWARDS_COMPATIBILITY_562" config.h)
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.PHONY: public_service
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public_service:
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.PHONY: config_warning
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config_warning:
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ifneq ($(UNALIGNED_ACCESS),0)
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$(info WARNING: CRYPTOPP_NO_UNALIGNED_DATA_ACCESS is not defined in config.h.)
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endif
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@ -690,6 +695,9 @@ ifneq ($(UNALIGNED_ACCESS)$(NO_INIT_PRIORITY)$(COMPATIBILITY_562),000)
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$(info WARNING: See http://cryptopp.com/wiki/config.h for more details.)
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$(info )
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endif
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.PHONY: so_warning
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so_warning:
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ifeq ($(HAS_SOLIB_VERSION),1)
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$(info WARNING: Only the symlinks to the shared-object library have been updated.)
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$(info WARNING: If the library is installed in a system directory you will need)
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12
misc.h
12
misc.h
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@ -2107,15 +2107,15 @@ private:
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//! \tparam T class or type
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//! \tparam B enumeration indicating endianess
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//! \tparam A flag indicating alignment
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//! \details GetBlock() provides alternate write access to a block of memory. The enumeration B is
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//! \details PutBlock() provides alternate write access to a block of memory. The enumeration B is
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//! BigEndian or LittleEndian. The flag A indicates if the memory block is aligned for class or type T.
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//! Repeatedly applying operator() results in advancing in the block of memory.
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//! \details An example of reading two word32 values from a block of memory is shown below. <tt>w1</tt>
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//! will be <tt>0x03020100</tt> and <tt>w1</tt> will be <tt>0x07060504</tt>.
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//! \details An example of writing two word32 values from a block of memory is shown below. After the code
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//! executes, the byte buffer will be <tt>{0,1,2,3,4,5,6,7}</tt>.
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//! <pre>
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//! word32 w1, w2;
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//! byte buffer[8] = {0,1,2,3,4,5,6,7};
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//! GetBlock<word32, LittleEndian> block(buffer);
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//! word32 w1=0x03020100, w2=0x07060504;
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//! byte buffer[8];
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//! PutBlock<word32, LittleEndian> block(NULL, buffer);
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//! block(w1)(w2);
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//! </pre>
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template <class T, class B, bool A=false>
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@ -217,9 +217,9 @@ void Rijndael::Base::UncheckedSetKey(const byte *userKey, unsigned int keylen, c
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word32 *rk = m_key;
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#if (CRYPTOPP_BOOL_AESNI_INTRINSICS_AVAILABLE && (!defined(_MSC_VER) || _MSC_VER >= 1600 || CRYPTOPP_BOOL_X86 || CRYPTOPP_BOOL_X32))
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#if (CRYPTOPP_BOOL_AESNI_INTRINSICS_AVAILABLE && CRYPTOPP_BOOL_SSE4_INTRINSICS_AVAILABLE && (!defined(_MSC_VER) || _MSC_VER >= 1600 || CRYPTOPP_BOOL_X86 || CRYPTOPP_BOOL_X32))
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// MSVC 2008 SP1 generates bad code for _mm_extract_epi32() when compiling for X64
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if (HasAESNI())
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if (HasAESNI() && HasSSE4())
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{
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static const word32 rcLE[] = {
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0x01, 0x02, 0x04, 0x08,
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@ -110,7 +110,7 @@ case "$THE_ARCH" in
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TOOLNAME_BASE="arm-linux-androideabi"
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AOSP_ABI="armeabi-v7a"
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AOSP_ARCH="arch-arm"
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AOSP_FLAGS="-march=armv7-a -mfpu=vfpv3-d16 -mfloat-abi=softfp -Wl,--fix-cortex-a8 -funwind-tables -fexceptions -frtti"
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AOSP_FLAGS="-march=armv7-a -mfpu=neon -mfloat-abi=softfp -Wl,--fix-cortex-a8 -funwind-tables -fexceptions -frtti"
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;;
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armv8|armv8a|aarch64|arm64|arm64-v8a)
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TOOLCHAIN_BASE="aarch64-linux-android"
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Reference in New Issue