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GNUmakefile
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###########################################################
##### System Attributes and Programs #####
###########################################################
# https://www.gnu.org/software/make/manual/make.html#Makefile-Conventions
# and https://www.gnu.org/prep/standards/standards.html
SHELL = /bin/sh
# If needed
TMPDIR ?= /tmp
# Used for feature tests
TOUT ?= a.out
TOUT := $(strip $(TOUT))
# Allow override for the cryptest.exe recipe. Change to
# ./libcryptopp.so or ./libcryptopp.dylib to suit your
# taste. https://github.com/weidai11/cryptopp/issues/866
LINK_LIBRARY ?= libcryptopp.a
LINK_LIBRARY_PATH ?= ./
# Command and arguments
AR ?= ar
ARFLAGS ?= -cr # ar needs the dash on OpenBSD
RANLIB ?= ranlib
CP ?= cp
MV ?= mv
RM ?= rm -f
GREP ?= grep
SED ?= sed
CHMOD ?= chmod
MKDIR ?= mkdir -p
LN ?= ln -sf
LDCONF ?= /sbin/ldconfig -n
# Solaris provides a non-Posix sed and grep at /usr/bin
# Solaris 10 is missing AR in /usr/bin
ifneq ($(wildcard /usr/xpg4/bin/grep),)
GREP := /usr/xpg4/bin/grep
endif
ifneq ($(wildcard /usr/xpg4/bin/sed),)
SED := /usr/xpg4/bin/sed
endif
ifneq ($(wildcard /usr/xpg4/bin/ar),)
AR := /usr/xpg4/bin/ar
endif
# Clang is reporting armv8l-unknown-linux-gnueabihf
# for ARMv7 images on Aarch64 hardware.
MACHINEX := $(shell $(CXX) $(CXXFLAGS) -dumpmachine 2>/dev/null)
HOSTX := $(shell echo $(MACHINEX) | cut -f 1 -d '-')
ifeq ($(HOSTX),)
HOSTX := $(shell uname -m 2>/dev/null)
endif
IS_X86 := $(shell echo "$(HOSTX)" | $(GREP) -v "64" | $(GREP) -i -c -E 'i.86|x86|i86')
IS_X64 := $(shell echo "$(HOSTX)" | $(GREP) -i -c -E '_64|d64')
IS_PPC32 := $(shell echo "$(HOSTX)" | $(GREP) -v "64" | $(GREP) -i -c -E 'ppc|power')
IS_PPC64 := $(shell echo "$(HOSTX)" | $(GREP) -i -c -E 'ppc64|powerpc64|power64')
IS_SPARC32 := $(shell echo "$(HOSTX)" | $(GREP) -v "64" | $(GREP) -i -c -E 'sun|sparc')
IS_SPARC64 := $(shell echo "$(HOSTX)" | $(GREP) -i -c -E 'sun|sparc64')
IS_ARM32 := $(shell echo "$(HOSTX)" | $(GREP) -v "64" | $(GREP) -i -c -E 'arm|armhf|armv7|eabihf|armv8')
IS_ARMV8 := $(shell echo "$(HOSTX)" | $(GREP) -i -c -E 'aarch32|aarch64|arm64')
# Attempt to determine platform
SYSTEMX := $(shell $(CXX) $(CXXFLAGS) -dumpmachine 2>/dev/null)
ifeq ($(SYSTEMX),)
SYSTEMX := $(shell uname -s 2>/dev/null)
endif
IS_LINUX := $(shell echo "$(SYSTEMX)" | $(GREP) -i -c "Linux")
IS_HURD := $(shell echo "$(SYSTEMX)" | $(GREP) -i -c -E "GNU|Hurd")
IS_MINGW := $(shell echo "$(SYSTEMX)" | $(GREP) -i -c "MinGW")
IS_CYGWIN := $(shell echo "$(SYSTEMX)" | $(GREP) -i -c "Cygwin")
IS_DARWIN := $(shell echo "$(SYSTEMX)" | $(GREP) -i -c "Darwin")
IS_NETBSD := $(shell echo "$(SYSTEMX)" | $(GREP) -i -c "NetBSD")
IS_AIX := $(shell echo "$(SYSTEMX)" | $(GREP) -i -c "aix")
IS_SUN := $(shell echo "$(SYSTEMX)" | $(GREP) -i -c -E "SunOS|Solaris")
SUN_COMPILER := $(shell $(CXX) -V 2>&1 | $(GREP) -i -c -E 'CC: (Sun|Studio)')
GCC_COMPILER := $(shell $(CXX) --version 2>/dev/null | $(GREP) -v -E '(llvm|clang)' | $(GREP) -i -c -E '(gcc|g\+\+)')
XLC_COMPILER := $(shell $(CXX) -qversion 2>/dev/null |$(GREP) -i -c "IBM XL")
CLANG_COMPILER := $(shell $(CXX) --version 2>/dev/null | $(GREP) -i -c -E '(llvm|clang)')
INTEL_COMPILER := $(shell $(CXX) --version 2>/dev/null | $(GREP) -i -c '\(icc\)')
# Enable shared object versioning for Linux and Solaris
HAS_SOLIB_VERSION ?= 0
ifneq ($(IS_LINUX)$(IS_HURD)$(IS_SUN),000)
HAS_SOLIB_VERSION := 1
endif
# Formerly adhoc.cpp was created from adhoc.cpp.proto when needed.
ifeq ($(wildcard adhoc.cpp),)
$(shell cp adhoc.cpp.proto adhoc.cpp)
endif
# Hack to skip CPU feature tests for some recipes
DETECT_FEATURES ?= 1
ifneq ($(findstring -DCRYPTOPP_DISABLE_ASM,$(CRYPTOPP_CPPFLAGS)$(CPPFLAGS)$(CXXFLAGS)),)
DETECT_FEATURES := 0
else
ifneq ($(findstring clean,$(MAKECMDGOALS)),)
DETECT_FEATURES := 0
else
ifneq ($(findstring distclean,$(MAKECMDGOALS)),)
DETECT_FEATURES := 0
else
ifneq ($(findstring trim,$(MAKECMDGOALS)),)
DETECT_FEATURES := 0
else
ifneq ($(findstring zip,$(MAKECMDGOALS)),)
DETECT_FEATURES := 0
endif # zip
endif # trim
endif # distclean
endif # clean
endif # CRYPTOPP_DISABLE_ASM
# Strip out -Wall, -Wextra and friends for feature testing. FORTIFY_SOURCE is removed
# because it requires -O1 or higher, but we use -O0 to tame the optimizer.
# Always print testing flags since some tests always happen, like 64-bit.
TCXXFLAGS := $(filter-out -D_FORTIFY_SOURCE=% -M -MM -Wall -Wextra -Werror% -Wunused -Wconversion -Wp%, $(CPPFLAGS) $(CXXFLAGS))
ifneq ($(strip $(TCXXFLAGS)),)
$(info Using testing flags: $(TCXXFLAGS))
endif
# TCOMMAND is used for just about all tests. Make will lazy-evaluate
# the variables when executed by $(shell $(TCOMMAND) ...).
TCOMMAND = $(CXX) -I. $(TCXXFLAGS) $(TEXTRA) $(ZOPT) $(TOPT) $(TPROG) -o $(TOUT)
# Fixup AIX
ifeq ($(IS_AIX),1)
TPROG = TestPrograms/test_64bit.cpp
TOPT =
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
IS_PPC64=1
else
IS_PPC32=1
endif
endif
# Uncomment for debugging
# $(info Here's what we found... IS_X86: $(IS_X86), IS_X64: $(IS_X64), IS_ARM32: $(IS_ARM32), IS_ARMV8: $(IS_ARMV8))
###########################################################
##### General Variables #####
###########################################################
# Base CPPFLAGS and CXXFLAGS used if the user did not specify them
ifeq ($(filter -DDEBUG -DNDEBUG,$(CPPFLAGS)$(CXXFLAGS)),)
CRYPTOPP_CPPFLAGS += -DNDEBUG
endif
ifeq ($(filter -g%,$(CPPFLAGS)$(CXXFLAGS)),)
ifeq ($(SUN_COMPILER),1)
CRYPTOPP_CXXFLAGS += -g
else
CRYPTOPP_CXXFLAGS += -g2
endif
endif
ifeq ($(filter -O% -xO%,$(CPPFLAGS)$(CXXFLAGS)),)
ifeq ($(SUN_COMPILER),1)
CRYPTOPP_CXXFLAGS += -xO3
ZOPT = -xO0
else
CRYPTOPP_CXXFLAGS += -O3
ZOPT = -O0
endif
endif
# Needed when the assembler is invoked
ifeq ($(findstring -Wa,--noexecstack,$(ASFLAGS)$(CXXFLAGS)),)
CRYPTOPP_ASFLAGS += -Wa,--noexecstack
endif
# Fix CXX on Cygwin 1.1.4
ifeq ($(CXX),gcc)
CXX := g++
endif
# On ARM we may compile aes_armv4.S, sha1_armv4.S, sha256_armv4.S, and
# sha512_armv4.S through the CC compiler
ifeq ($(GCC_COMPILER),1)
CC=gcc
else
ifeq ($(CLANG_COMPILER),1)
CC=clang
endif
endif
# http://www.gnu.org/prep/standards/html_node/Directory-Variables.html
ifeq ($(PREFIX),)
PREFIX = /usr/local
PC_PREFIX = /usr/local
else
PC_PREFIX = $(PREFIX)
endif
ifeq ($(LIBDIR),)
LIBDIR := $(PREFIX)/lib
PC_LIBDIR = $${prefix}/lib
else
PC_LIBDIR = $(LIBDIR)
endif
ifeq ($(DATADIR),)
DATADIR := $(PREFIX)/share
PC_DATADIR = $${prefix}/share
else
PC_DATADIR = $(DATADIR)
endif
ifeq ($(INCLUDEDIR),)
INCLUDEDIR := $(PREFIX)/include
PC_INCLUDEDIR = $${prefix}/include
else
PC_INCLUDEDIR = $(INCLUDEDIR)
endif
ifeq ($(BINDIR),)
BINDIR := $(PREFIX)/bin
endif
# We honor ARFLAGS, but the "v" option used by default causes a noisy make
ifeq ($(ARFLAGS),rv)
ARFLAGS = r
else
ifeq ($(ARFLAGS),-rv)
ARFLAGS = -r
endif
endif
# Original MinGW targets Win2k by default, but lacks proper Win2k support
# if target Windows version is not specified, use Windows XP instead
ifeq ($(IS_MINGW),1)
ifeq ($(findstring -D_WIN32_WINNT,$(CRYPTOPP_CPPFLAGS)$(CPPFLAGS)$(CXXFLAGS)),)
ifeq ($(findstring -D_WIN32_WINDOWS,$(CRYPTOPP_CPPFLAGS)$(CPPFLAGS)$(CXXFLAGS)),)
ifeq ($(findstring -DWINVER,$(CRYPTOPP_CPPFLAGS)$(CPPFLAGS)$(CXXFLAGS)),)
ifeq ($(findstring -DNTDDI_VERSION,$(CRYPTOPP_CPPFLAGS)$(CPPFLAGS)$(CXXFLAGS)),)
CRYPTOPP_CPPFLAGS += -D_WIN32_WINNT=0x0501
endif # NTDDI_VERSION
endif # WINVER
endif # _WIN32_WINDOWS
endif # _WIN32_WINNT
endif # IS_MINGW
# Newlib needs _XOPEN_SOURCE=600 for signals
TPROG = TestPrograms/test_newlib.cpp
TOPT =
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
ifeq ($(findstring -D_XOPEN_SOURCE,$(CRYPTOPP_CPPFLAGS)$(CPPFLAGS)$(CXXFLAGS)),)
CRYPTOPP_CPPFLAGS += -D_XOPEN_SOURCE=600
endif
endif
###########################################################
##### X86/X32/X64 Options #####
###########################################################
ifneq ($(IS_X86)$(IS_X64)$(IS_MINGW),000)
ifeq ($(DETECT_FEATURES),1)
ifeq ($(SUN_COMPILER),1)
SSE2_FLAG = -xarch=sse2
SSE3_FLAG = -xarch=sse3
SSSE3_FLAG = -xarch=ssse3
SSE41_FLAG = -xarch=sse4_1
SSE42_FLAG = -xarch=sse4_2
CLMUL_FLAG = -xarch=aes
AESNI_FLAG = -xarch=aes
AVX_FLAG = -xarch=avx
AVX2_FLAG = -xarch=avx2
SHANI_FLAG = -xarch=sha
else
SSE2_FLAG = -msse2
SSE3_FLAG = -msse3
SSSE3_FLAG = -mssse3
SSE41_FLAG = -msse4.1
SSE42_FLAG = -msse4.2
CLMUL_FLAG = -mpclmul
AESNI_FLAG = -maes
AVX_FLAG = -mavx
AVX2_FLAG = -mavx2
SHANI_FLAG = -msha
endif
# Tell MacPorts and Homebrew GCC to use Clang integrated assembler
# Intel-based Macs. http://github.com/weidai11/cryptopp/issues/190
ifneq ($(IS_DARWIN),0)
ifeq ($(findstring -Wa,-q,$(CXXFLAGS)),)
TPROG = TestPrograms/test_cxx.cpp
TOPT = -Wa,-q
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
TEXTRA += -Wa,-q
CRYPTOPP_CXXFLAGS += -Wa,-q
endif
endif
endif
TPROG = TestPrograms/test_x86_sse2.cpp
TOPT = $(SSE2_FLAG)
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
CHACHA_FLAG = $(SSE2_FLAG)
SUN_LDFLAGS += $(SSE2_FLAG)
else
# Make does not have useful debugging facilities. Show the user
# what happened by compiling again without the pipe.
$(info Running make again to see what failed)
$(info $(shell $(TCOMMAND)))
SSE2_FLAG =
endif
ifeq ($(SSE2_FLAG),)
CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_ASM
endif
# Need SSE2 or higher for these tests
ifneq ($(SSE2_FLAG),)
TPROG = TestPrograms/test_x86_sse3.cpp
TOPT = $(SSE3_FLAG)
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifneq ($(strip $(HAVE_OPT)),0)
SSE3_FLAG =
endif
TPROG = TestPrograms/test_x86_ssse3.cpp
TOPT = $(SSSE3_FLAG)
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
ARIA_FLAG = $(SSSE3_FLAG)
CHAM_FLAG = $(SSSE3_FLAG)
KECCAK_FLAG = $(SSSE3_FLAG)
LEA_FLAG = $(SSSE3_FLAG)
LSH256_FLAG = $(SSSE3_FLAG)
LSH512_FLAG = $(SSSE3_FLAG)
SIMON128_FLAG = $(SSSE3_FLAG)
SPECK128_FLAG = $(SSSE3_FLAG)
SUN_LDFLAGS += $(SSSE3_FLAG)
else
SSSE3_FLAG =
endif
# The first Apple MacBooks were Core2's with SSE4.1
ifneq ($(IS_DARWIN),0)
# Add SSE2 algo's here as required
# They get a free upgrade
endif
TPROG = TestPrograms/test_x86_sse41.cpp
TOPT = $(SSE41_FLAG)
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
BLAKE2B_FLAG = $(SSE41_FLAG)
BLAKE2S_FLAG = $(SSE41_FLAG)
SUN_LDFLAGS += $(SSE41_FLAG)
else
SSE41_FLAG =
endif
TPROG = TestPrograms/test_x86_sse42.cpp
TOPT = $(SSE42_FLAG)
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
CRC_FLAG = $(SSE42_FLAG)
SUN_LDFLAGS += $(SSE42_FLAG)
else
SSE42_FLAG =
endif
TPROG = TestPrograms/test_x86_clmul.cpp
TOPT = $(CLMUL_FLAG)
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
GCM_FLAG = $(SSSE3_FLAG) $(CLMUL_FLAG)
GF2N_FLAG = $(CLMUL_FLAG)
SUN_LDFLAGS += $(CLMUL_FLAG)
else
CLMUL_FLAG =
endif
TPROG = TestPrograms/test_x86_aes.cpp
TOPT = $(AESNI_FLAG)
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
AES_FLAG = $(SSE41_FLAG) $(AESNI_FLAG)
SM4_FLAG = $(SSSE3_FLAG) $(AESNI_FLAG)
SUN_LDFLAGS += $(AESNI_FLAG)
else
AESNI_FLAG =
endif
TPROG = TestPrograms/test_x86_avx.cpp
TOPT = $(AVX_FLAG)
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
# XXX_FLAG = $(AVX_FLAG)
SUN_LDFLAGS += $(AVX_FLAG)
else
AVX_FLAG =
endif
TPROG = TestPrograms/test_x86_avx2.cpp
TOPT = $(AVX2_FLAG)
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
CHACHA_AVX2_FLAG = $(AVX2_FLAG)
LSH256_AVX2_FLAG = $(AVX2_FLAG)
LSH512_AVX2_FLAG = $(AVX2_FLAG)
SUN_LDFLAGS += $(AVX2_FLAG)
else
AVX2_FLAG =
endif
TPROG = TestPrograms/test_x86_sha.cpp
TOPT = $(SHANI_FLAG)
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
SHA_FLAG = $(SSE42_FLAG) $(SHANI_FLAG)
SUN_LDFLAGS += $(SHANI_FLAG)
else
SHANI_FLAG =
endif
ifeq ($(SUN_COMPILER),1)
CRYPTOPP_LDFLAGS += $(SUN_LDFLAGS)
endif
ifeq ($(SSE3_FLAG),)
CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_SSE3
else
ifeq ($(SSSE3_FLAG),)
CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_SSSE3
else
ifeq ($(SSE41_FLAG),)
CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_SSE4
else
ifeq ($(SSE42_FLAG),)
CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_SSE4
endif # SSE4.2
endif # SSE4.1
endif # SSSE3
endif # SSE3
ifneq ($(SSE42_FLAG),)
# Unusual GCC/Clang on Macports. It assembles AES, but not CLMUL.
# test_x86_clmul.s:15: no such instruction: 'pclmulqdq $0, %xmm1,%xmm0'
ifeq ($(CLMUL_FLAG),)
CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_CLMUL
endif
ifeq ($(AESNI_FLAG),)
CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_AESNI
endif
ifeq ($(AVX_FLAG),)
CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_AVX
else
ifeq ($(AVX2_FLAG),)
CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_AVX2
endif # AVX2
endif # AVX
# SHANI independent of AVX per GH #1045
ifeq ($(SHANI_FLAG),)
CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_SHANI
endif
endif
# Drop to SSE2 if available
ifeq ($(GCM_FLAG),)
GCM_FLAG = $(SSE2_FLAG)
endif
# Most Clang cannot handle mixed asm with positional arguments, where the
# body is Intel style with no prefix and the templates are AT&T style.
# Also see https://bugs.llvm.org/show_bug.cgi?id=39895 .
# CRYPTOPP_DISABLE_MIXED_ASM is now being added in config_asm.h for all
# Clang compilers. This test will need to be re-enabled if Clang fixes it.
#TPROG = TestPrograms/test_asm_mixed.cpp
#TOPT =
#HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
#ifneq ($(strip $(HAVE_OPT)),0)
# CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_MIXED_ASM
#endif
# SSE2_FLAGS
endif
# DETECT_FEATURES
endif
ifneq ($(INTEL_COMPILER),0)
CRYPTOPP_CXXFLAGS += -wd68 -wd186 -wd279 -wd327 -wd161 -wd3180
ICC111_OR_LATER := $(shell $(CXX) --version 2>&1 | $(GREP) -c -E "\(ICC\) ([2-9][0-9]|1[2-9]|11\.[1-9])")
ifeq ($(ICC111_OR_LATER),0)
# "internal error: backend signals" occurs on some x86 inline assembly with ICC 9 and
# some x64 inline assembly with ICC 11.0. If you want to use Crypto++'s assembly code
# with ICC, try enabling it on individual files
CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_ASM
endif
endif
# Allow use of "/" operator for GNU Assembler.
# http://sourceware.org/bugzilla/show_bug.cgi?id=4572
ifeq ($(findstring -DCRYPTOPP_DISABLE_ASM,$(CRYPTOPP_CPPFLAGS)$(CPPFLAGS)$(CXXFLAGS)),)
ifeq ($(IS_SUN)$(GCC_COMPILER),11)
CRYPTOPP_CXXFLAGS += -Wa,--divide
endif
endif
# IS_X86 and IS_X64
endif
###########################################################
##### ARM A-32 and NEON #####
###########################################################
ifneq ($(IS_ARM32),0)
# No need for feature detection on this platform if NEON is disabled
ifneq ($(findstring -DCRYPTOPP_DISABLE_ARM_NEON,$(CRYPTOPP_CPPFLAGS)$(CPPFLAGS)$(CXXFLAGS)),)
DETECT_FEATURES := 0
endif
ifeq ($(DETECT_FEATURES),1)
# Clang needs an option to include <arm_neon.h>
TPROG = TestPrograms/test_arm_neon_header.cpp
TOPT = -DCRYPTOPP_ARM_NEON_HEADER=1 -march=armv7-a -mfpu=neon
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
TEXTRA += -DCRYPTOPP_ARM_NEON_HEADER=1
endif
TPROG = TestPrograms/test_arm_neon.cpp
TOPT = -march=armv7-a -mfpu=neon
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
NEON_FLAG = -march=armv7-a -mfpu=neon
ARIA_FLAG = -march=armv7-a -mfpu=neon
GCM_FLAG = -march=armv7-a -mfpu=neon
BLAKE2B_FLAG = -march=armv7-a -mfpu=neon
BLAKE2S_FLAG = -march=armv7-a -mfpu=neon
CHACHA_FLAG = -march=armv7-a -mfpu=neon
CHAM_FLAG = -march=armv7-a -mfpu=neon
LEA_FLAG = -march=armv7-a -mfpu=neon
SIMON128_FLAG = -march=armv7-a -mfpu=neon
SPECK128_FLAG = -march=armv7-a -mfpu=neon
SM4_FLAG = -march=armv7-a -mfpu=neon
else
# Make does not have useful debugging facilities. Show the user
# what happened by compiling again without the pipe.
# $(info Running make again to see what failed)
# $(info $(shell $(TCOMMAND)))
NEON_FLAG =
endif
ifeq ($(NEON_FLAG),)
CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_ARM_NEON
endif
# DETECT_FEATURES
endif
# IS_ARM32
endif
###########################################################
##### Aach32 and Aarch64 #####
###########################################################
ifneq ($(IS_ARMV8),0)
ifeq ($(DETECT_FEATURES),1)
TPROG = TestPrograms/test_arm_neon_header.cpp
TOPT = -DCRYPTOPP_ARM_NEON_HEADER=1
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
TEXTRA += -DCRYPTOPP_ARM_NEON_HEADER=1
endif
TPROG = TestPrograms/test_arm_acle_header.cpp
TOPT = -DCRYPTOPP_ARM_ACLE_HEADER=1 -march=armv8-a
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
TEXTRA += -DCRYPTOPP_ARM_ACLE_HEADER=1
endif
TPROG = TestPrograms/test_arm_asimd.cpp
TOPT = -march=armv8-a
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
ASIMD_FLAG = -march=armv8-a
ARIA_FLAG = -march=armv8-a
BLAKE2B_FLAG = -march=armv8-a
BLAKE2S_FLAG = -march=armv8-a
CHACHA_FLAG = -march=armv8-a
CHAM_FLAG = -march=armv8-a
LEA_FLAG = -march=armv8-a
NEON_FLAG = -march=armv8-a
SIMON128_FLAG = -march=armv8-a
SPECK128_FLAG = -march=armv8-a
SM4_FLAG = -march=armv8-a
else
# Make does not have useful debugging facilities. Show the user
# what happened by compiling again without the pipe.
$(info Running make again to see what failed)
$(info $(shell $(TCOMMAND)))
ASIMD_FLAG =
endif
ifeq ($(ASIMD_FLAG),)
CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_ASM
endif
ifneq ($(ASIMD_FLAG),)
TPROG = TestPrograms/test_arm_crc.cpp
TOPT = -march=armv8-a+crc
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
CRC_FLAG = -march=armv8-a+crc
else
CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_ARM_CRC32
endif
TPROG = TestPrograms/test_arm_aes.cpp
TOPT = -march=armv8-a+crypto
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
AES_FLAG = -march=armv8-a+crypto
else
CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_ARM_AES
endif
TPROG = TestPrograms/test_arm_pmull.cpp
TOPT = -march=armv8-a+crypto
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
GCM_FLAG = -march=armv8-a+crypto
GF2N_FLAG = -march=armv8-a+crypto
else
CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_ARM_PMULL
endif
TPROG = TestPrograms/test_arm_sha1.cpp
TOPT = -march=armv8-a+crypto
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
SHA_FLAG = -march=armv8-a+crypto
else
CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_ARM_SHA1
endif
TPROG = TestPrograms/test_arm_sha256.cpp
TOPT = -march=armv8-a+crypto
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
SHA_FLAG = -march=armv8-a+crypto
else
CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_ARM_SHA2
endif
TPROG = TestPrograms/test_arm_sm3.cpp
TOPT = -march=armv8.4-a+sm3
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
SM3_FLAG = -march=armv8.4-a+sm3
SM4_FLAG = -march=armv8.4-a+sm3
else
#CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_ARM_SM3
#CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_ARM_SM4
endif
TPROG = TestPrograms/test_arm_sha3.cpp
TOPT = -march=armv8.4-a+sha3
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
SHA3_FLAG = -march=armv8.4-a+sha3
else
#CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_ARM_SHA3
endif
TPROG = TestPrograms/test_arm_sha512.cpp
TOPT = -march=armv8.4-a+sha512
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
SHA512_FLAG = -march=armv8.4-a+sha512
else
#CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_ARM_SHA512
endif
# ASIMD_FLAG
endif
# DETECT_FEATURES
endif
# IS_ARMV8
endif
###########################################################
##### PowerPC #####
###########################################################
# PowerPC and PowerPC64. Altivec is available with POWER4 with GCC and
# POWER6 with XLC. The tests below are crafted for IBM XLC and the LLVM
# front-end. XLC/LLVM only supplies POWER8 so we have to set the flags for
# XLC/LLVM to POWER8. I've got a feeling LLVM is going to cause trouble.
ifneq ($(IS_PPC32)$(IS_PPC64),00)
ifeq ($(DETECT_FEATURES),1)
# IBM XL C/C++ has the -qaltivec flag really screwed up. We can't seem
# to get it enabled without an -qarch= option. And -qarch= produces an
# error on later versions of the compiler. The only thing that seems
# to work consistently is -qarch=auto. -qarch=auto is equivalent to
# GCC's -march=native, which we don't really want.
# XLC requires -qaltivec in addition to Arch or CPU option
ifeq ($(XLC_COMPILER),1)
# POWER9_FLAG = -qarch=pwr9 -qaltivec
POWER8_FLAG = -qarch=pwr8 -qaltivec
POWER7_VSX_FLAG = -qarch=pwr7 -qvsx -qaltivec
POWER7_PWR_FLAG = -qarch=pwr7 -qaltivec
ALTIVEC_FLAG = -qarch=auto -qaltivec
else
# POWER9_FLAG = -mcpu=power9
POWER8_FLAG = -mcpu=power8
POWER7_VSX_FLAG = -mcpu=power7 -mvsx
POWER7_PWR_FLAG = -mcpu=power7
ALTIVEC_FLAG = -maltivec
endif
# GCC 10 is giving us trouble in CPU_ProbePower9() and
# CPU_ProbeDARN(). GCC is generating POWER9 instructions
# on POWER8 for ppc_power9.cpp. The compiler folks did
# not think through the consequences of requiring us to
# use -mcpu=power9 to unlock the ISA. Epic fail.
# https:#github.com/weidai11/cryptopp/issues/986
POWER9_FLAG =
# XLC with LLVM front-ends failed to define XLC defines.
#ifeq ($(findstring -qxlcompatmacros,$(CXXFLAGS)),)
# TPROG = TestPrograms/test_ppc_altivec.cpp
# TOPT = -qxlcompatmacros
# HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
# ifeq ($(strip $(HAVE_OPT)),0)
# CRYPTOPP_CXXFLAGS += -qxlcompatmacros
# endif
#endif
#####################################################################
# Looking for a POWER9 option
#TPROG = TestPrograms/test_ppc_power9.cpp
#TOPT = $(POWER9_FLAG)
#HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
#ifeq ($(strip $(HAVE_OPT)),0)
# DARN_FLAG = $(POWER9_FLAG)
#else
# POWER9_FLAG =
#endif
#####################################################################
# Looking for a POWER8 option
TPROG = TestPrograms/test_ppc_power8.cpp
TOPT = $(POWER8_FLAG)
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
AES_FLAG = $(POWER8_FLAG)
BLAKE2B_FLAG = $(POWER8_FLAG)
CRC_FLAG = $(POWER8_FLAG)
GCM_FLAG = $(POWER8_FLAG)
GF2N_FLAG = $(POWER8_FLAG)
LEA_FLAG = $(POWER8_FLAG)
SHA_FLAG = $(POWER8_FLAG)
SHACAL2_FLAG = $(POWER8_FLAG)
else
POWER8_FLAG =
endif
#####################################################################
# Looking for a POWER7 option
# GCC needs -mvsx for Power7 to enable 64-bit vector elements.
# XLC provides 64-bit vector elements without an option.
TPROG = TestPrograms/test_ppc_power7.cpp
TOPT = $(POWER7_VSX_FLAG)
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
POWER7_FLAG = $(POWER7_VSX_FLAG)
else
TPROG = TestPrograms/test_ppc_power7.cpp
TOPT = $(POWER7_PWR_FLAG)
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
POWER7_FLAG = $(POWER7_PWR_FLAG)
else
POWER7_FLAG =
endif
endif
#####################################################################
# Looking for an Altivec option
TPROG = TestPrograms/test_ppc_altivec.cpp
TOPT = $(ALTIVEC_FLAG)
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
ALTIVEC_FLAG := $(ALTIVEC_FLAG)
else
# Make does not have useful debugging facilities. Show the user
# what happened by compiling again without the pipe.
$(info Running make again to see what failed)
$(info $(shell $(TCOMMAND)))
ALTIVEC_FLAG =
endif
ifneq ($(ALTIVEC_FLAG),)
BLAKE2S_FLAG = $(ALTIVEC_FLAG)
CHACHA_FLAG = $(ALTIVEC_FLAG)
SPECK128_FLAG = $(ALTIVEC_FLAG)
SIMON128_FLAG = $(ALTIVEC_FLAG)
endif
#####################################################################
# Fixups for algorithms that can drop to a lower ISA, if needed
# Drop to Altivec if higher Power is not available
ifneq ($(ALTIVEC_FLAG),)
ifeq ($(GCM_FLAG),)
GCM_FLAG = $(ALTIVEC_FLAG)
endif
endif
#####################################################################
# Fixups for missing ISAs
ifeq ($(ALTIVEC_FLAG),)
CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_ALTIVEC
else
ifeq ($(POWER7_FLAG),)
CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_POWER7
else
ifeq ($(POWER8_FLAG),)
CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_POWER8
#else ifeq ($(POWER9_FLAG),)
# CRYPTOPP_CPPFLAGS += -DCRYPTOPP_DISABLE_POWER9
endif # POWER8
endif # POWER7
endif # Altivec
# DETECT_FEATURES
endif
# IBM XL C++ compiler
ifeq ($(XLC_COMPILER),1)
ifeq ($(findstring -qmaxmem,$(CXXFLAGS)),)
CRYPTOPP_CXXFLAGS += -qmaxmem=-1
endif
# http://www-01.ibm.com/support/docview.wss?uid=swg21007500
ifeq ($(findstring -qrtti,$(CXXFLAGS)),)
CRYPTOPP_CXXFLAGS += -qrtti
endif
endif
# IS_PPC32, IS_PPC64
endif
###########################################################
##### Common #####
###########################################################
# Add -fPIC for targets *except* X86, X32, Cygwin or MinGW
ifeq ($(IS_X86)$(IS_CYGWIN)$(IS_MINGW),000)
ifeq ($(findstring -fpic,$(CXXFLAGS))$(findstring -fPIC,$(CXXFLAGS)),)
CRYPTOPP_CXXFLAGS += -fPIC
endif
endif
# Fix for GH #1134 and GH #1141. We need to add -fno-devirtualize because GCC is removing
# code we are using. https://github.com/weidai11/cryptopp/issues/1134 and
# https://github.com/weidai11/cryptopp/issues/1141
ifeq ($(findstring -fno-devirtualize,$(CXXFLAGS)),)
TPROG = TestPrograms/test_nodevirtualize.cpp
TOPT = -fno-devirtualize
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
CRYPTOPP_CXXFLAGS += -fno-devirtualize
endif # CRYPTOPP_CXXFLAGS
endif # -fno-devirtualize
# Use -pthread whenever it is available. See http://www.hpl.hp.com/techreports/2004/HPL-2004-209.pdf
# http://stackoverflow.com/questions/2127797/gcc-significance-of-pthread-flag-when-compiling
ifeq ($(DETECT_FEATURES),1)
ifeq ($(XLC_COMPILER),1)
ifeq ($(findstring -qthreaded,$(CXXFLAGS)),)
TPROG = TestPrograms/test_pthreads.cpp
TOPT = -qthreaded
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
CRYPTOPP_CXXFLAGS += -qthreaded
endif # CRYPTOPP_CXXFLAGS
endif # -qthreaded
else
ifeq ($(findstring -pthread,$(CXXFLAGS)),)
TPROG = TestPrograms/test_pthreads.cpp
TOPT = -pthread
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
CRYPTOPP_CXXFLAGS += -pthread
endif # CRYPTOPP_CXXFLAGS
endif # -pthread
endif # XLC/GCC and friends
endif # DETECT_FEATURES
# Remove -fPIC if present. SunCC use -KPIC, and needs the larger GOT table
# https://docs.oracle.com/cd/E19205-01/819-5267/bkbaq/index.html
ifeq ($(SUN_COMPILER),1)
CRYPTOPP_CXXFLAGS := $(subst -fPIC,-KPIC,$(CRYPTOPP_CXXFLAGS))
CRYPTOPP_CXXFLAGS := $(subst -fpic,-KPIC,$(CRYPTOPP_CXXFLAGS))
endif
# Remove -fPIC if present. IBM XL C++ uses -qpic
ifeq ($(XLC_COMPILER),1)
CRYPTOPP_CXXFLAGS := $(subst -fPIC,-qpic,$(CRYPTOPP_CXXFLAGS))
CRYPTOPP_CXXFLAGS := $(subst -fpic,-qpic,$(CRYPTOPP_CXXFLAGS))
endif
# Disable IBM XL C++ "1500-036: (I) The NOSTRICT option (default at OPT(3))
# has the potential to alter the semantics of a program."
ifeq ($(XLC_COMPILER),1)
TPROG = TestPrograms/test_cxx.cpp
TOPT = -qsuppress=1500-036
HAVE_OPT = $(shell $(TCOMMAND) 2>&1 | wc -w)
ifeq ($(strip $(HAVE_OPT)),0)
CRYPTOPP_CXXFLAGS += -qsuppress=1500-036
endif # -qsuppress
endif # IBM XL C++ compiler
# libc++ is LLVM's standard C++ library. If we add libc++
# here then all user programs must use it too. The open
# question is, which choice is easier on users?
ifneq ($(IS_DARWIN),0)
CXX ?= c++
# CRYPTOPP_CXXFLAGS += -stdlib=libc++
ifeq ($(findstring -fno-common,$(CXXFLAGS)),)
CRYPTOPP_CXXFLAGS += -fno-common
endif
IS_APPLE_LIBTOOL=$(shell libtool -V 2>&1 | $(GREP) -i -c 'Apple')
ifeq ($(IS_APPLE_LIBTOOL),1)
AR = libtool
else
AR = /usr/bin/libtool
endif
ARFLAGS = -static -o
endif
# Add -xregs=no%appl SPARC. SunCC should not use certain registers in library code.
# https://docs.oracle.com/cd/E18659_01/html/821-1383/bkamt.html
ifneq ($(IS_SPARC32)$(IS_SPARC64),00)
ifeq ($(SUN_COMPILER),1)
ifeq ($(findstring -xregs=no%appl,$(CXXFLAGS)),)
CRYPTOPP_CXXFLAGS += -xregs=no%appl
endif # -xregs
endif # SunCC
ifeq ($(GCC_COMPILER),1)
ifeq ($(findstring -mno-app-regs,$(CXXFLAGS)),)
CRYPTOPP_CXXFLAGS += -mno-app-regs
endif # no-app-regs
endif # GCC
endif # Sparc
# Add -pipe for everything except IBM XL C++, SunCC and ARM.
# Allow ARM-64 because they seems to have >1 GB of memory
ifeq ($(XLC_COMPILER)$(SUN_COMPILER)$(IS_ARM32),000)
ifeq ($(findstring -save-temps,$(CXXFLAGS)),)
CRYPTOPP_CXXFLAGS += -pipe
endif
endif
# For SunOS, create a Mapfile that allows our object files
# to contain additional bits (like SSE4 and AES on old Xeon)
# http://www.oracle.com/technetwork/server-storage/solaris/hwcap-modification-139536.html
ifeq ($(IS_SUN)$(SUN_COMPILER),11)
ifneq ($(IS_X86)$(IS_X64),00)
ifeq ($(findstring -DCRYPTOPP_DISABLE_ASM,$(CRYPTOPP_CPPFLAGS)$(CPPFLAGS)$(CXXFLAGS)),)
CRYPTOPP_LDFLAGS += -M cryptopp.mapfile
endif # No CRYPTOPP_DISABLE_ASM
endif # X86/X32/X64
endif # SunOS
ifneq ($(IS_LINUX)$(IS_HURD),00)
ifeq ($(findstring -fopenmp,$(CXXFLAGS)),-fopenmp)
ifeq ($(findstring -lgomp,$(LDLIBS)),)
LDLIBS += -lgomp
endif # LDLIBS
endif # OpenMP
endif # IS_LINUX or IS_HURD