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https://github.com/henrydcase/pqc.git
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SIKE: enable optimized version
Adds cpu_features library from Google to recognize CPU capabilities on which implementation is running. Uses that library to run either generic-C or assembly optimized implementation of some field operations
This commit is contained in:
parent
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commit
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3
.gitmodules
vendored
3
.gitmodules
vendored
@ -7,3 +7,6 @@
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[submodule "3rd/gbench"]
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path = 3rd/gbench
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url = https://github.com/henrydcase/benchmark.git
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[submodule "3rd/cpu_features"]
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path = 3rd/cpu_features
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url = https://github.com/henrydcase/cpu_features.git
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1
3rd/cpu_features
Submodule
1
3rd/cpu_features
Submodule
@ -0,0 +1 @@
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Subproject commit 2b07c2ab7df71d0b6c19afb93f68a808b412a7ff
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@ -1,10 +1,13 @@
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cmake_minimum_required(VERSION 3.13)
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project(cryptocore NONE)
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project(cryptocore VERSION 0.0.1 LANGUAGES C)
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enable_language(C)
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enable_language(CXX)
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enable_language(ASM)
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add_subdirectory(3rd/gtest)
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add_subdirectory(3rd/cpu_features)
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set(CMAKE_VERBOSE_MAKEFILE ON)
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set(CMAKE_MODULE_PATH ${CMAKE_MODULE_PATH} "~/.cmake/Modules")
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set(CMAKE_MODULE_PATH ${CMAKE_MODULE_PATH} "3rd/cmake-modules")
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@ -48,7 +51,6 @@ if(NOT CMAKE_BUILD_TYPE_LOWER STREQUAL "debug")
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add_subdirectory(${CMAKE_SOURCE_DIR}/3rd/gbench)
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endif()
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# Arch settings
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if (${CMAKE_SYSTEM_NAME} MATCHES "Darwin")
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@ -96,6 +98,7 @@ include_directories(
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public
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src/common/
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src
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3rd/cpu_features/include
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)
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set_property(GLOBAL PROPERTY obj_libs "")
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@ -168,7 +171,7 @@ add_subdirectory(src/kem/sike)
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if(${ARCH} STREQUAL "ARCH_x86_64")
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set(CMAKE_C_FLAGS
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"${CMAKE_C_FLAGS} -march=native -mtune=native")
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"${CMAKE_C_FLAGS} -march=haswell")
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set(SRC_COMMON_AVX2
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src/common/keccak4x/KeccakP-1600-times4-SIMD256.c
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)
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@ -256,12 +259,16 @@ get_property(OBJ_LIBS GLOBAL PROPERTY obj_libs)
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target_link_libraries(
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pqc
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common
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${OBJ_LIBS}
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cpu_features
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common
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)
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target_link_libraries(
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pqc_s
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cpu_features
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common
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${OBJ_LIBS}
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)
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@ -1,6 +1,7 @@
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#include <stdint.h>
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#include <stdbool.h>
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#include <pqc/pqc.h>
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#include <cpuinfo_x86.h>
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#include "schemes.h"
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@ -76,6 +77,13 @@ const sig_params_t sigs[] = {
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PQC_SUPPORTED_SIGS(REG_SIG)
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};
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// Contains capabilities on x86 CPU on which implementation is running
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X86Features CPU_CAPS;
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const X86Features * const get_cpu_caps(void) {
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return &CPU_CAPS;
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}
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const params_t *pqc_kem_alg_by_id(uint8_t id) {
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int i;
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for(i=0; i<PQC_ALG_KEM_MAX; i++) {
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@ -126,3 +134,8 @@ bool pqc_sig_verify(const params_t *p,
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const uint8_t *pk) {
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return !((sig_params_t *)p)->verify(sig, siglen, m, mlen, pk);
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}
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void static_initialization(void) __attribute__((constructor));
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void static_initialization(void) {
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CPU_CAPS = GetX86Info().features;
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}
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@ -1,3 +1,6 @@
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#ifndef PQC_SCHEMES_
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#define PQC_SCHEMES_
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// PQClean include
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#include "sign/rainbow/rainbowV-classic/clean/api.h"
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#include "sign/rainbow/rainbowI-classic/clean/api.h"
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@ -116,3 +119,5 @@
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#include "kem/hqc/hqc-rmrs-192/avx2/api.h"
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#include "kem/hqc/hqc-rmrs-256/avx2/api.h"
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#include "kem/sike/includes/sike/sike.h"
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#endif
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8
src/common/utils.h
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8
src/common/utils.h
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@ -0,0 +1,8 @@
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#ifndef PQC_COMMON_UTILS_
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#define PQC_COMMON_UTILS_
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#include <cpuinfo_x86.h>
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const X86Features * const get_cpu_caps(void);
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#endif
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@ -1,12 +1,13 @@
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set(
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SRC_CLEAN_SIKE_P434
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p434/fpx.c
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p434/isogeny.c
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p434/fp_generic.c
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p434/fp_glue.c
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p434/fp-x86_64.S
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p434/isogeny.c
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p434/params.c
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p434/sike.c)
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define_kem_alg(
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sike_p434_clean
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PQC_SIKEP434_CLEAN "${SRC_CLEAN_SIKE_P434}" "${CMAKE_CURRENT_SOURCE_DIR}")
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@ -15,10 +15,10 @@
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.quad 0x6CFC5FD681C52056
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.quad 0x0002341F27177344
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.globl sike_fpadd
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.hidden sike_fpadd
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.type sike_fpadd,@function
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sike_fpadd:
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.globl sike_fpadd_asm
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.hidden sike_fpadd_asm
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.type sike_fpadd_asm,@function
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sike_fpadd_asm:
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.cfi_startproc
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pushq %r12
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.cfi_adjust_cfa_offset 8
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@ -107,14 +107,7 @@ sike_fpadd:
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.hidden sike_cswap_asm
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.type sike_cswap_asm,@function
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sike_cswap_asm:
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movq %rdx,%xmm3
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pshufd $68,%xmm3,%xmm3
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movdqu 0(%rdi),%xmm0
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@ -258,10 +251,10 @@ sike_cswap_asm:
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movdqu %xmm1,208(%rsi)
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.byte 0xf3,0xc3
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.globl sike_fpsub
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.hidden sike_fpsub
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.type sike_fpsub,@function
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sike_fpsub:
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.globl sike_fpsub_asm
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.hidden sike_fpsub_asm
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.type sike_fpsub_asm,@function
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sike_fpsub_asm:
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.cfi_startproc
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pushq %r12
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.cfi_adjust_cfa_offset 8
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@ -508,10 +501,10 @@ sike_mpdblsubx2_asm:
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.byte 0xf3,0xc3
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.cfi_endproc
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.globl sike_fprdc
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.hidden sike_fprdc
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.type sike_fprdc,@function
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sike_fprdc:
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.globl sike_fprdc_asm
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.hidden sike_fprdc_asm
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.type sike_fprdc_asm,@function
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sike_fprdc_asm:
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.cfi_startproc
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pushq %r12
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.cfi_adjust_cfa_offset 8
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@ -723,10 +716,10 @@ sike_fprdc:
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.cfi_adjust_cfa_offset -8
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.byte 0xf3,0xc3
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.cfi_endproc
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.globl sike_mpmul
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.hidden sike_mpmul
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.type sike_mpmul,@function
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sike_mpmul:
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.globl sike_mpmul_asm
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.hidden sike_mpmul_asm
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.type sike_mpmul_asm,@function
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sike_mpmul_asm:
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.cfi_startproc
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pushq %r12
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.cfi_adjust_cfa_offset 8
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@ -3,14 +3,17 @@
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*
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* Abstract: portable modular arithmetic for P503
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*********************************************************************************************/
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#include "common/utils.h"
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#include "utils.h"
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#include "fpx.h"
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// Global constants
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extern const struct params_t params;
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// Digit multiplication, digit * digit -> 2-digit result
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static void digit_x_digit(const crypto_word_t a, const crypto_word_t b, crypto_word_t* c)
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{ // Digit multiplication, digit * digit -> 2-digit result
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{
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crypto_word_t al, ah, bl, bh, temp;
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crypto_word_t albl, albh, ahbl, ahbh, res1, res2, res3, carry;
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crypto_word_t mask_low = (crypto_word_t)(-1) >> (sizeof(crypto_word_t)*4);
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@ -43,10 +46,11 @@ static void digit_x_digit(const crypto_word_t a, const crypto_word_t b, crypto_w
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c[1] ^= (ahbh & mask_high) + carry; // C11
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}
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// Modular addition, c = a+b mod p434.
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// Inputs: a, b in [0, 2*p434-1]
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// Output: c in [0, 2*p434-1]
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void sike_fpadd(const felm_t a, const felm_t b, felm_t c)
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{ // Modular addition, c = a+b mod p434.
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// Inputs: a, b in [0, 2*p434-1]
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// Output: c in [0, 2*p434-1]
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{
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unsigned int i, carry = 0;
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crypto_word_t mask;
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@ -84,12 +88,20 @@ void sike_fpsub(const felm_t a, const felm_t b, felm_t c)
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}
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}
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// Multiprecision comba multiply, c = a*b, where lng(a) = lng(b) = NWORDS_FIELD.
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void sike_mpmul_asm(const felm_t a, const felm_t b, dfelm_t c);
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void sike_mpmul(const felm_t a, const felm_t b, dfelm_t c)
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{ // Multiprecision comba multiply, c = a*b, where lng(a) = lng(b) = NWORDS_FIELD.
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{
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unsigned int i, j;
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crypto_word_t t = 0, u = 0, v = 0, UV[2];
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unsigned int carry = 0;
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// TODO: faster would be to use bitmap
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if (get_cpu_caps()->bmi2 && get_cpu_caps()->adx) {
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sike_mpmul_asm(a,b,c);
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return;
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}
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for (i = 0; i < NWORDS_FIELD; i++) {
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for (j = 0; j <= i; j++) {
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MUL(a[j], b[i-j], UV+1, UV[0]);
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@ -118,11 +130,18 @@ void sike_mpmul(const felm_t a, const felm_t b, dfelm_t c)
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c[2*NWORDS_FIELD-1] = v;
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}
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// Efficient Montgomery reduction using comba and exploiting the special form of the prime p434.
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// mc = ma*R^-1 mod p434x2, where R = 2^448.
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// If ma < 2^448*p434, the output mc is in the range [0, 2*p434-1].
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// ma is assumed to be in Montgomery representation.
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void sike_fprdc_asm(const felm_t ma, felm_t mc);
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void sike_fprdc(const felm_t ma, felm_t mc)
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{ // Efficient Montgomery reduction using comba and exploiting the special form of the prime p434.
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// mc = ma*R^-1 mod p434x2, where R = 2^448.
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// If ma < 2^448*p434, the output mc is in the range [0, 2*p434-1].
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// ma is assumed to be in Montgomery representation.
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{
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if (get_cpu_caps()->bmi2 && get_cpu_caps()->adx) {
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sike_fprdc_asm(ma, mc);
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return;
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}
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unsigned int i, j, carry, count = ZERO_WORDS;
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crypto_word_t UV[2], t = 0, u = 0, v = 0;
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4
src/kem/sike/p434/fp_glue.c
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4
src/kem/sike/p434/fp_glue.c
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#include "fpx.h"
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#include "utils.h"
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void sike_mpmul_asm_X(const felm_t a, const felm_t b, dfelm_t c);
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@ -10,6 +10,8 @@ fn main() {
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println!("cargo:rustc-link-search=native={}/lib", dst.display());
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println!("cargo:rustc-link-lib=static=pqc_s");
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// For some reason GetX86Info symbol is undefined in the pqc_s. Hence this line
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println!("cargo:rustc-link-lib=static=cpu_features");
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println!("cargo:rerun-if-changed=../../../capi/*,../../../kem/*,../../../sign/*,../../../../public/pqc/pqc.h");
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// The bindgen::Builder is the main entry point
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