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82 Commits

Author SHA1 Message Date
jwinterm 21fa2b944b Merge pull request 'upstream' (#350) from wowario/wownero:up into master
continuous-integration/drone/push Build is passing Details
continuous-integration/drone/tag Build is passing Details
4 years ago
xiphon 711f8c9d34
epee: readline_buffer - fix thread safety, fix sync() after stop()
continuous-integration/drone/pr Build is passing Details
4 years ago
moneromooo-monero 4228f785c0
p2p: fix accessing non existent element of map
continuous-integration/drone/pr Build is passing Details
4 years ago
moneromooo-monero 9e86c1c90d
p2p: fix endianness when checking IPv6 addresses mapping to IPv4
continuous-integration/drone/pr Build is passing Details
4 years ago
moneromooo-monero c40d8f5672
p2p: make this work with boost <= 1.65 (pffff)
continuous-integration/drone/pr Build is passing Details
4 years ago
moneromooo 0f998b9b55
p2p: rewrite boost's make_address_v4 to cater for < 1.66
4 years ago
moneromooo-monero 38f0472a6e
p2p: use /16 filtering on IPv4-within-IPv6 addresses
4 years ago
xiphon 9774fc7868
rpc: on_send_raw_tx (bootstrap) - send to bootstrap daemon and P2P
4 years ago
moneromooo c14276fb7c
p2p: remove banned peers from the white list
4 years ago
moneromooo 755c308c23
p2p: give all hosts the same chance of being picked for connecting
4 years ago
selsta 4053e2ae14
functional_tests: inrease mining timeout
4 years ago
Lee Clagett df5779790c
Switch to Dandelion++ fluff mode if no out connections for stem mode
4 years ago
moneromooo-monero aae4bf32aa
protocol: reject empty incoming block messages
4 years ago
Lee Clagett d37785db0c
Fix tx flush callback queueing
4 years ago
selsta 2a38ee251a
net_node: add --ban-list option
4 years ago
jwinterm e49e6ae142 Merge pull request 'Fix CLI and unrestricted RPC relay_tx with stempool' (#347) from wowario/wownero:relay_tx into master
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4 years ago
jwinterm 5731efa127 Merge pull request 'cryptonote_core: Fix missing override warnings' (#343) from wowario/wownero:warnings into master
continuous-integration/drone/push Build is failing Details
4 years ago
Lee Clagett 26a64f99d3
Fix CLI and unrestricted RPC relay_tx with stempool
continuous-integration/drone/pr Build is passing Details
4 years ago
Nathan Dorfman e47fbe1476
cryptonote_core: Fix missing override warnings
continuous-integration/drone/pr Build is passing Details
4 years ago
wowario 4cc5e174d9 Update 'README.md'
continuous-integration/drone/push Build is passing Details
4 years ago
jwinterm 7bdf566225 Merge pull request 'update version and README' (#339) from wowario/wownero:version into master
continuous-integration/drone/push Build is passing Details
4 years ago
jwinterm 6b80ac2ae7 Merge pull request 'update checkpoints' (#338) from wowario/wownero:checkpoints into master
continuous-integration/drone/push Build was killed Details
4 years ago
jwinterm 4d15c0aa13 Merge pull request 'increase fake outs' (#337) from wowario/wownero:fake-outs into master
continuous-integration/drone/push Build was killed Details
4 years ago
jwinterm 8345e5b7bc Merge pull request 'upstream' (#336) from wowario/wownero:upstream into master
continuous-integration/drone/push Build was killed Details
4 years ago
wowario 12d81b4af1
update version and README
continuous-integration/drone/pr Build is passing Details
4 years ago
wowario e2260ab8ab
update checkpoints
continuous-integration/drone/pr Build is passing Details
4 years ago
wowario e28f22ba2f
increase fake outs
continuous-integration/drone/pr Build is passing Details
4 years ago
iamamyth 80a21da5ba
functional_tests: rewrite mining code, clearer timeout info
continuous-integration/drone/pr Build is passing Details
4 years ago
moneromooo-monero 94b5378a3b
fuzz_tests: fix build error in signature fuzz test
4 years ago
moneromooo-monero cfc8640492
bump default number of connections from 8 to 12
4 years ago
xiphon 69e41b9d4e
wallet2: wait for propagation timeout before marking tx as failed
4 years ago
Howard Chu bcc824cac3
Allow setting start block on export
4 years ago
xiphon 46b4016134
wallet2_api: implement stop() to interrupt refresh() loop once
4 years ago
dsc 8b73fabd2a
Allow AddressBook description edits via wallet/api interface
continuous-integration/drone/pr Build is passing Details
4 years ago
TheCharlatan b6dee49900
Depends: Bump qt to 5.15.1
4 years ago
xiphon 1bf5b86967
build: ARM - disable stack trace due to segfault in libunwind
4 years ago
Alexis Enston dc0ac9c252
fix next_seed_height regression in getblocktemplate rpc
4 years ago
xiphon 2051c5f078
core_rpc_server: on_get_blocks - forward bootstrap daemon error
4 years ago
Howard Chu 51169a6c2d
Force CMAKE_SKIP_RPATH=ON
4 years ago
xiphon b8396218a3
Dandelion++: skip desynced peers in stem phase
4 years ago
moneromooo-monero 17c5e8f949
wallet2: fix missing m_state field in wallet serialization
4 years ago
xiphon 3e8bf154eb
cmake: Version - use CMAKE_CURRENT_LIST_DIR
4 years ago
Howard Chu 498436c9b4
Fix lgamma/signgam dependency
4 years ago
wowario 9a58ac48d2
update checkpoints.dat
continuous-integration/drone/push Build is passing Details
4 years ago
wowario 90b7699717
bump version to v0.9.0.2
4 years ago
jwinterm 1917bd3d53 Merge pull request 'change log level find tx meta error' (#334) from wowario/wownero:meta into master
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continuous-integration/drone/tag Build is passing Details
4 years ago
jwinterm cb654bbc27 Merge pull request 'fix requested_outputs_count' (#333) from wowario/wownero:outs into master
continuous-integration/drone/push Build is failing Details
4 years ago
wowario ec60b05faa
change log level find tx meta error
continuous-integration/drone/pr Build is passing Details
4 years ago
jwinterm 58e1f2f02a Merge pull request 'upstream' (#332) from wowario/wownero:upstream into master
continuous-integration/drone/push Build is passing Details
4 years ago
wowario af941bed58
fix requested_outputs_count
continuous-integration/drone/pr Build is passing Details
4 years ago
moneromooo-monero 10c30ea5aa
link libzmq against libgssapi_krb5 if found
continuous-integration/drone/pr Build is passing Details
4 years ago
moneromooo-monero 83fe535888
fix a couple bugs found by OSS-fuzz
4 years ago
xiphon e52e01a445
daemon: Windows - fix FAT32 warning, trailing backslash is required
4 years ago
jwinterm 284ec84502 Merge pull request 'cryptonote_protocol: don't synced pruned blocks before HF_VERSION_SMALLER_BP' (#330) from wowario/wownero:dev-v0.9 into master
continuous-integration/drone/push Build is passing Details
4 years ago
wowario 86f12066f2
cryptonote_protocol: don't synced pruned blocks before HF_VERSION_SMALLER_BP
continuous-integration/drone/pr Build is passing Details
4 years ago
jwinterm c336e15f0c Merge pull request 'rpc: Add unlock height to getblocktemplate' (#328) from asymptotically/wownero:getblocktemplate-height into master
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4 years ago
jwinterm e09d17ba1f Merge pull request 'wowify gitian 0.9' (#327) from qvqc/wownero:master into master
continuous-integration/drone/push Build is failing Details
4 years ago
Matt Smith 9364b49ecb rpc: Add unlock height to getblocktemplate
continuous-integration/drone/pr Build is passing Details
4 years ago
qvqc 5cd3a15491
wowify gitian 0.9
continuous-integration/drone/pr Build is passing Details
4 years ago
jwinterm b303931b23 Merge pull request 'dev-v0.9' (#325) from dev-v0.9 into master
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4 years ago
jwinterm 7b4e1b0859 Merge pull request 'nudge estimate_blockchain_height' (#324) from wowario/wownero:height into dev-v0.9
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4 years ago
jwinterm 8fb16a3280 Merge pull request 'refactor diff' (#323) from wowario/wownero:diff into dev-v0.9
continuous-integration/drone/push Build is failing Details
4 years ago
jwinterm 4e097c26a2 Merge pull request 'refactor difficulty_blocks_count and timestamp check' (#322) from wowario/wownero:dev-v0.9 into dev-v0.9
continuous-integration/drone/push Build is failing Details
4 years ago
wowario 2aabc5863e
nudge estimate_blockchain_height
continuous-integration/drone/pr Build is passing Details
4 years ago
wowario 2a6d817ea1
declare version
continuous-integration/drone/pr Build is passing Details
4 years ago
wowario f6533856df
refactor diff
continuous-integration/drone/pr Build is failing Details
4 years ago
wowario 32497a641c
fix timestamp check
continuous-integration/drone/pr Build is passing Details
4 years ago
jwinterm aaa015b3e7 Merge pull request 'rebase v0.9' (#321) from wowario/wownero:dev-v0.9 into dev-v0.9
continuous-integration/drone/push Build is passing Details
4 years ago
wowario 9c35901592
testnet dynamic unlock
continuous-integration/drone/pr Build is failing Details
4 years ago
wowario f9c0871877
set testnet
continuous-integration/drone/pr Build is passing Details
4 years ago
wowario 96d1d08f48
add fork height
4 years ago
wowario 2e8fae1b4c
disable sanity_checks
continuous-integration/drone/pr Build is passing Details
4 years ago
wowario d99c27e24d
support old BP
4 years ago
qvqc 48eeca2077
update public and seed nodes
4 years ago
Matt Smith 96ae690083
cmake: Use job pool feature to limit concurrent jobs
4 years ago
wowario b9974f7bff
Dynamic Unlock from HF 16
4 years ago
wowario 389a02d93f
v0.9 ASCII art
4 years ago
Matt Smith a3c9befbb5
utils: Add AppArmor profiles
4 years ago
Matt Smith 08a0e737f9
readme: Add Gentoo install instructions
4 years ago
Suzyo Nyirenda 1396426d59
update ppa keyserver keys
4 years ago
qvqc 93cc82423e
WOW'up translations
4 years ago
wowario 572d7ea5ef
initial commit
4 years ago

@ -0,0 +1,10 @@
---
kind: pipeline
type: docker
name: linux-build
steps:
- name: linux-build
image: wownero/wow-dependencies:v1.0
commands:
- make -j2 release-static-linux-x86_64

@ -1 +1 @@
custom: https://www.getmonero.org/get-started/contributing/
custom: https://dev-funding.webui.wowkira.com

18
.gitmodules vendored

@ -1,21 +1,19 @@
[submodule "external/unbound"]
path = external/unbound
url = https://github.com/monero-project/unbound
url = https://git.wownero.com/wownero/unbound
branch = monero
[submodule "external/miniupnp"]
path = external/miniupnp
url = https://github.com/monero-project/miniupnp
url = https://git.wownero.com/wownero/miniupnp
branch = monero
[submodule "external/rapidjson"]
path = external/rapidjson
url = https://github.com/Tencent/rapidjson
[submodule "external/trezor-common"]
path = external/trezor-common
url = https://github.com/trezor/trezor-common.git
[submodule "external/randomx"]
path = external/randomx
url = https://github.com/tevador/RandomX
url = https://git.wownero.com/wownero/rapidjson
[submodule "external/RandomWOW"]
path = external/RandomWOW
url = https://git.wownero.com/wownero/RandomWOW
branch = 1.1.8-wow
[submodule "external/supercop"]
path = external/supercop
url = https://github.com/monero-project/supercop
url = https://git.wownero.com/wownero/supercop
branch = monero

@ -55,6 +55,21 @@ else()
message(STATUS "ccache deselected")
endif()
# Job pool feature requires Ninja.
if (${CMAKE_VERSION} VERSION_GREATER "3.0.0")
set(WOWNERO_PARALLEL_COMPILE_JOBS "" CACHE STRING "The maximum number of concurrent compilation jobs.")
if (WOWNERO_PARALLEL_COMPILE_JOBS)
set_property(GLOBAL APPEND PROPERTY JOB_POOLS compile_job_pool=${WOWNERO_PARALLEL_COMPILE_JOBS})
set(CMAKE_JOB_POOL_COMPILE compile_job_pool)
endif ()
set(WOWNERO_PARALLEL_LINK_JOBS "" CACHE STRING "The maximum number of concurrent link jobs.")
if (WOWNERO_PARALLEL_LINK_JOBS)
set_property(GLOBAL APPEND PROPERTY JOB_POOLS link_job_pool=${WOWNERO_PARALLEL_LINK_JOBS})
set(CMAKE_JOB_POOL_LINK link_job_pool)
endif ()
endif()
enable_language(C ASM)
function (die msg)
@ -190,6 +205,15 @@ else()
message(STATUS "Building without build tag")
endif()
# Update and init submodules by default
if(NOT MANUAL_SUBMODULES)
find_package(Git)
if(GIT_FOUND)
message(STATUS "Initializing submodules")
execute_process(COMMAND git "submodule" "update" "--init" "--recursive" WORKING_DIRECTORY ${CMAKE_SOURCE_DIR})
endif()
endif()
if(NOT MANUAL_SUBMODULES)
find_package(Git)
if(GIT_FOUND)
@ -208,8 +232,7 @@ if(NOT MANUAL_SUBMODULES)
check_submodule(external/miniupnp)
check_submodule(external/unbound)
check_submodule(external/rapidjson)
check_submodule(external/trezor-common)
check_submodule(external/randomx)
check_submodule(external/RandomWOW)
check_submodule(external/supercop)
endif()
endif()
@ -259,7 +282,7 @@ endif()
set_property(GLOBAL PROPERTY USE_FOLDERS ON)
enable_testing()
option(BUILD_DOCUMENTATION "Build the Doxygen documentation." ON)
option(BUILD_DOCUMENTATION "Build the Doxygen documentation." OFF)
option(BUILD_TESTS "Build tests." OFF)
if (CMAKE_BUILD_TYPE STREQUAL "Debug")
set(DEFAULT_BUILD_DEBUG_UTILITIES ON)
@ -395,7 +418,7 @@ elseif(CMAKE_C_COMPILER_ID STREQUAL "GNU" AND NOT MINGW)
set(DEFAULT_STACK_TRACE ON)
set(STACK_TRACE_LIB "easylogging++") # for diag output only
set(LIBUNWIND_LIBRARIES "")
elseif (ARM AND STATIC)
elseif (ARM)
set(DEFAULT_STACK_TRACE OFF)
set(LIBUNWIND_LIBRARIES "")
else()
@ -969,6 +992,7 @@ find_path(ZMQ_INCLUDE_PATH zmq.h)
find_library(ZMQ_LIB zmq)
find_library(PGM_LIBRARY pgm)
find_library(NORM_LIBRARY norm)
find_library(GSSAPI_LIBRARY gssapi_krb5)
find_library(PROTOLIB_LIBRARY protolib)
find_library(SODIUM_LIBRARY sodium)
@ -984,6 +1008,9 @@ endif()
if(NORM_LIBRARY)
set(ZMQ_LIB "${ZMQ_LIB};${NORM_LIBRARY}")
endif()
if(GSSAPI_LIBRARY)
set(ZMQ_LIB "${ZMQ_LIB};${GSSAPI_LIBRARY}")
endif()
if(PROTOLIB_LIBRARY)
set(ZMQ_LIB "${ZMQ_LIB};${PROTOLIB_LIBRARY}")
endif()

@ -1,18 +1,28 @@
# Multistage docker build, requires docker 17.05
ARG DEBIAN_VERSION="${DEBIAN_VERSION:-stable-slim}"
FROM debian:${DEBIAN_VERSION} as git-wow
# builder stage
FROM ubuntu:16.04 as builder
WORKDIR /data
RUN set -ex && \
apt-get update && \
apt-get --no-install-recommends --yes install \
#Cmake
ARG CMAKE_VERSION=3.14.6
ARG CMAKE_VERSION_DOT=v3.14
ARG CMAKE_HASH=4e8ea11cabe459308671b476469eace1622e770317a15951d7b55a82ccaaccb9
## Boost
ARG BOOST_VERSION=1_70_0
ARG BOOST_VERSION_DOT=1.70.0
ARG BOOST_HASH=430ae8354789de4fd19ee52f3b1f739e1fba576f0aded0897c3c2bc00fb38778
ENV CFLAGS='-fPIC -O2 -g'
ENV CXXFLAGS='-fPIC -O2 -g'
ENV LDFLAGS='-static-libstdc++'
ENV BASE_DIR /usr/local
RUN apt-get update -qq && apt-get --no-install-recommends -yqq install \
ca-certificates \
cmake \
g++ \
make \
pkg-config \
graphviz \
doxygen \
git \
curl \
libtool-bin \
@ -21,192 +31,193 @@ RUN set -ex && \
bzip2 \
xsltproc \
gperf \
unzip
WORKDIR /usr/local
ENV CFLAGS='-fPIC'
ENV CXXFLAGS='-fPIC'
#Cmake
ARG CMAKE_VERSION=3.14.6
ARG CMAKE_VERSION_DOT=v3.14
ARG CMAKE_HASH=4e8ea11cabe459308671b476469eace1622e770317a15951d7b55a82ccaaccb9
RUN set -ex \
&& curl -s -O https://cmake.org/files/${CMAKE_VERSION_DOT}/cmake-${CMAKE_VERSION}.tar.gz \
unzip > /dev/null \
&& cd /data || exit 1 \
&& echo "\e[32mbuilding: Cmake\e[39m" \
&& set -ex \
&& curl -s -O https://cmake.org/files/${CMAKE_VERSION_DOT}/cmake-${CMAKE_VERSION}.tar.gz > /dev/null \
&& echo "${CMAKE_HASH} cmake-${CMAKE_VERSION}.tar.gz" | sha256sum -c \
&& tar -xzf cmake-${CMAKE_VERSION}.tar.gz \
&& cd cmake-${CMAKE_VERSION} \
&& ./configure \
&& make \
&& make install
## Boost
ARG BOOST_VERSION=1_70_0
ARG BOOST_VERSION_DOT=1.70.0
ARG BOOST_HASH=430ae8354789de4fd19ee52f3b1f739e1fba576f0aded0897c3c2bc00fb38778
RUN set -ex \
&& curl -s -L -o boost_${BOOST_VERSION}.tar.bz2 https://dl.bintray.com/boostorg/release/${BOOST_VERSION_DOT}/source/boost_${BOOST_VERSION}.tar.bz2 \
&& tar -xzf cmake-${CMAKE_VERSION}.tar.gz > /dev/null \
&& cd cmake-${CMAKE_VERSION} || exit 1 \
&& echo "\e[32mmatrix style build text redirected to /dev/null. This will take some time. Go ahead make some coffee and check your emails.\e[39m" \
&& ./configure --prefix=$BASE_DIR > /dev/null \
&& make > /dev/null \
&& make install > /dev/null \
&& cd /data || exit 1 \
&& rm -rf /data/cmake-${CMAKE_VERSION} \
&& rm -rf /data/cmake-${CMAKE_VERSION}.tar.gz \
&& echo "\e[32mbuilding: Boost\e[39m" \
&& set -ex \
&& curl -s -L -o boost_${BOOST_VERSION}.tar.bz2 https://dl.bintray.com/boostorg/release/${BOOST_VERSION_DOT}/source/boost_${BOOST_VERSION}.tar.bz2 > /dev/null \
&& echo "${BOOST_HASH} boost_${BOOST_VERSION}.tar.bz2" | sha256sum -c \
&& tar -xvf boost_${BOOST_VERSION}.tar.bz2 \
&& cd boost_${BOOST_VERSION} \
&& ./bootstrap.sh \
&& ./b2 --build-type=minimal link=static runtime-link=static --with-chrono --with-date_time --with-filesystem --with-program_options --with-regex --with-serialization --with-system --with-thread --with-locale threading=multi threadapi=pthread cflags="$CFLAGS" cxxflags="$CXXFLAGS" stage
ENV BOOST_ROOT /usr/local/boost_${BOOST_VERSION}
&& tar -xvf boost_${BOOST_VERSION}.tar.bz2 > /dev/null \
&& cd boost_${BOOST_VERSION} || exit 1 \
&& ./bootstrap.sh > /dev/null \
&& ./b2 -a install --prefix=$BASE_DIR --build-type=minimal link=static runtime-link=static --with-chrono --with-date_time --with-filesystem --with-program_options --with-regex --with-serialization --with-system --with-thread --with-locale threading=multi threadapi=pthread cflags="$CFLAGS" cxxflags="$CXXFLAGS" stage > /dev/null \
&& cd /data || exit 1 \
&& rm -rf /data/boost_${BOOST_VERSION} \
&& rm -rf /data/boost_${BOOST_VERSION}.tar.bz2
WORKDIR /data
ENV BASE_DIR /usr/local
# OpenSSL
ARG OPENSSL_VERSION=1.1.1g
ARG OPENSSL_VERSION=1.1.1
ARG OPENSSL_FIX=g
ARG OPENSSL_HASH=ddb04774f1e32f0c49751e21b67216ac87852ceb056b75209af2443400636d46
RUN set -ex \
&& curl -s -O https://www.openssl.org/source/openssl-${OPENSSL_VERSION}.tar.gz \
&& echo "${OPENSSL_HASH} openssl-${OPENSSL_VERSION}.tar.gz" | sha256sum -c \
&& tar -xzf openssl-${OPENSSL_VERSION}.tar.gz \
&& cd openssl-${OPENSSL_VERSION} \
&& ./Configure linux-x86_64 no-shared --static "$CFLAGS" \
&& make build_generated \
&& make libcrypto.a \
&& make install
ENV OPENSSL_ROOT_DIR=/usr/local/openssl-${OPENSSL_VERSION}
# ZMQ
ARG ZMQ_VERSION=v4.3.2
ARG ZMQ_HASH=a84ffa12b2eb3569ced199660bac5ad128bff1f0
RUN set -ex \
&& git clone https://github.com/zeromq/libzmq.git -b ${ZMQ_VERSION} \
&& cd libzmq \
&& test `git rev-parse HEAD` = ${ZMQ_HASH} || exit 1 \
&& ./autogen.sh \
&& ./configure --enable-static --disable-shared \
&& make \
&& make install \
&& ldconfig
# zmq.hpp
ARG CPPZMQ_VERSION=v4.4.1
ARG CPPZMQ_HASH=f5b36e563598d48fcc0d82e589d3596afef945ae
RUN set -ex \
&& git clone https://github.com/zeromq/cppzmq.git -b ${CPPZMQ_VERSION} \
&& cd cppzmq \
&& test `git rev-parse HEAD` = ${CPPZMQ_HASH} || exit 1 \
&& mv *.hpp /usr/local/include
# Readline
ARG READLINE_VERSION=8.0
ARG READLINE_HASH=e339f51971478d369f8a053a330a190781acb9864cf4c541060f12078948e461
RUN set -ex \
&& curl -s -O https://ftp.gnu.org/gnu/readline/readline-${READLINE_VERSION}.tar.gz \
&& echo "${READLINE_HASH} readline-${READLINE_VERSION}.tar.gz" | sha256sum -c \
&& tar -xzf readline-${READLINE_VERSION}.tar.gz \
&& cd readline-${READLINE_VERSION} \
&& ./configure \
&& make \
&& make install
# Sodium
ARG SODIUM_VERSION=1.0.18
ARG SODIUM_HASH=4f5e89fa84ce1d178a6765b8b46f2b6f91216677
RUN set -ex \
&& git clone https://github.com/jedisct1/libsodium.git -b ${SODIUM_VERSION} \
&& cd libsodium \
ENV CFLAGS='-fPIC -O2 -g'
ENV CXXFLAGS='-fPIC -O2 -g'
ENV LDFLAGS='-static-libstdc++'
RUN echo "\e[32mbuilding: Openssl\e[39m" \
&& set -ex \
&& curl -s -O https://www.openssl.org/source/openssl-${OPENSSL_VERSION}${OPENSSL_FIX}.tar.gz > /dev/null \
# && curl -s -O https://www.openssl.org/source/old/${OPENSSL_VERSION}/openssl-${OPENSSL_VERSION}${OPENSSL_FIX}.tar.gz > /dev/null \
&& echo "${OPENSSL_HASH} openssl-${OPENSSL_VERSION}${OPENSSL_FIX}.tar.gz" | sha256sum -c \
&& tar -xzf openssl-${OPENSSL_VERSION}${OPENSSL_FIX}.tar.gz > /dev/null \
&& cd openssl-${OPENSSL_VERSION}${OPENSSL_FIX} || exit 1 \
&& ./Configure --prefix=$BASE_DIR linux-x86_64 no-shared --static "$CFLAGS" > /dev/null \
&& make build_generated > /dev/null \
&& make libcrypto.a > /dev/null \
&& echo "\e[32mblah, blah, shared libraries from the glib, something, something. Don't worry about it.\e[39m" \
&& make install > /dev/null \
&& cd /data || exit 1 \
&& rm -rf /data/openssl-${OPENSSL_VERSION}${OPENSSL_FIX} \
&& rm -rf /data/openssl-${OPENSSL_VERSION}${OPENSSL_FIX}.tar.gz \
&& echo "\e[32mbuilding: ZMQ\e[39m" \
&& set -ex \
&& git clone --branch ${ZMQ_VERSION} --single-branch --depth 1 https://github.com/zeromq/libzmq.git > /dev/null \
&& cd libzmq || exit 1 \
&& test `git rev-parse HEAD` = ${ZMQ_HASH} || exit 1 \
&& ./autogen.sh > /dev/null \
&& ./configure --prefix=$BASE_DIR --enable-libunwind=no --enable-static --disable-shared > /dev/null \
&& make > /dev/null \
&& make install > /dev/null \
&& ldconfig > /dev/null \
&& cd /data || exit 1 \
&& rm -rf /data/libzmq \
&& echo "\e[32mbuilding: zmq.hpp\e[39m" \
&& set -ex \
&& git clone --branch ${CPPZMQ_VERSION} --single-branch --depth 1 https://github.com/zeromq/cppzmq.git > /dev/null \
&& cd cppzmq || exit 1 \
&& test `git rev-parse HEAD` = ${CPPZMQ_HASH} || exit 1 \
&& mv *.hpp $BASE_DIR/include \
&& cd /data || exit 1 \
&& rm -rf /data/cppzmq \
&& echo "\e[32mbuilding: Readline\e[39m" \
&& set -ex \
&& curl -s -O https://ftp.gnu.org/gnu/readline/readline-${READLINE_VERSION}.tar.gz > /dev/null \
&& echo "${READLINE_HASH} readline-${READLINE_VERSION}.tar.gz" | sha256sum -c \
&& tar -xzf readline-${READLINE_VERSION}.tar.gz > /dev/null \
&& cd readline-${READLINE_VERSION} || exit 1 \
&& ./configure --prefix=$BASE_DIR > /dev/null \
&& make > /dev/null \
&& make install > /dev/null \
&& cd /data || exit 1 \
&& rm -rf /data/readline-${READLINE_VERSION} \
&& rm -rf readline-${READLINE_VERSION}.tar.gz \
&& echo "\e[32mbuilding: Sodium\e[39m" \
&& set -ex \
&& git clone --branch ${SODIUM_VERSION} --single-branch --depth 1 https://github.com/jedisct1/libsodium.git > /dev/null \
&& cd libsodium || exit 1 \
&& test `git rev-parse HEAD` = ${SODIUM_HASH} || exit 1 \
&& ./autogen.sh \
&& ./configure \
&& make \
&& make check \
&& make install
&& ./configure --prefix=$BASE_DIR > /dev/null \
&& make > /dev/null \
&& make check > /dev/null \
&& make install > /dev/null \
&& cd /data || exit 1 \
&& rm -rf /data/libsodium
WORKDIR /data
ENV BASE_DIR /usr/local
# Udev
ARG UDEV_VERSION=v3.2.8
ARG UDEV_HASH=d69f3f28348123ab7fa0ebac63ec2fd16800c5e0
RUN set -ex \
&& git clone https://github.com/gentoo/eudev -b ${UDEV_VERSION} \
&& cd eudev \
&& test `git rev-parse HEAD` = ${UDEV_HASH} || exit 1 \
&& ./autogen.sh \
&& ./configure --disable-gudev --disable-introspection --disable-hwdb --disable-manpages --disable-shared \
&& make \
&& make install
# Libusb
ARG USB_VERSION=v1.0.22
ARG USB_HASH=0034b2afdcdb1614e78edaa2a9e22d5936aeae5d
RUN set -ex \
&& git clone https://github.com/libusb/libusb.git -b ${USB_VERSION} \
&& cd libusb \
&& test `git rev-parse HEAD` = ${USB_HASH} || exit 1 \
&& ./autogen.sh \
&& ./configure --disable-shared \
&& make \
&& make install
# Hidapi
ARG HIDAPI_VERSION=hidapi-0.8.0-rc1
ARG HIDAPI_HASH=40cf516139b5b61e30d9403a48db23d8f915f52c
RUN set -ex \
&& git clone https://github.com/signal11/hidapi -b ${HIDAPI_VERSION} \
&& cd hidapi \
&& test `git rev-parse HEAD` = ${HIDAPI_HASH} || exit 1 \
&& ./bootstrap \
&& ./configure --enable-static --disable-shared \
&& make \
&& make install
# Protobuf
ARG PROTOBUF_VERSION=v3.7.1
ARG PROTOBUF_HASH=6973c3a5041636c1d8dc5f7f6c8c1f3c15bc63d6
RUN set -ex \
&& git clone https://github.com/protocolbuffers/protobuf -b ${PROTOBUF_VERSION} \
&& cd protobuf \
&& test `git rev-parse HEAD` = ${PROTOBUF_HASH} || exit 1 \
&& git submodule update --init --recursive \
&& ./autogen.sh \
&& ./configure --enable-static --disable-shared \
&& make \
&& make install \
&& ldconfig
WORKDIR /src
COPY . .
ENV CFLAGS='-fPIC -O2 -g'
ENV CXXFLAGS='-fPIC -O2 -g'
ENV LDFLAGS='-static-libstdc++'
RUN echo "\e[32mbuilding: Udev\e[39m" \
&& set -ex \
&& git clone --branch ${UDEV_VERSION} --single-branch --depth 1 https://github.com/gentoo/eudev > /dev/null \
&& cd eudev || exit 1 \
&& test `git rev-parse HEAD` = ${UDEV_HASH} || exit 1 \
&& ./autogen.sh \
&& ./configure --prefix=$BASE_DIR --disable-gudev --disable-introspection --disable-hwdb --disable-manpages --disable-shared > /dev/null \
&& make > /dev/null \
&& make install > /dev/null \
&& cd /data || exit 1 \
&& rm -rf /data/eudev \
&& echo "\e[32mbuilding: Libusb. Ahh, a dependency that shouldn't have been included in the codebase. Hardware wallets are way overrated.\e[39m" \
&& set -ex \
&& git clone --branch ${USB_VERSION} --single-branch --depth 1 https://github.com/libusb/libusb.git > /dev/null \
&& cd libusb || exit 1 \
&& test `git rev-parse HEAD` = ${USB_HASH} || exit 1 \
&& ./autogen.sh > /dev/null \
&& ./configure --prefix=$BASE_DIR --disable-shared > /dev/null \
&& make > /dev/null \
&& make install > /dev/null \
&& cd /data || exit 1 \
&& rm -rf /data/libusb \
&& echo "\e[32mbuilding: Hidapi\e[39m" \
&& set -ex \
&& git clone --branch ${HIDAPI_VERSION} --single-branch --depth 1 https://github.com/signal11/hidapi > /dev/null \
&& cd hidapi || exit 1 \
&& test `git rev-parse HEAD` = ${HIDAPI_HASH} || exit 1 \
&& ./bootstrap \
&& ./configure --prefix=$BASE_DIR --enable-static --disable-shared > /dev/null \
&& make > /dev/null \
&& make install > /dev/null \
&& cd /data || exit 1 \
&& rm -rf /data/hidapi \
&& echo "\e[32mbuilding: Protobuf <- fuck you protobuf, you worthless piece of shit!\e[39m" \
&& set -ex \
&& git clone --branch ${PROTOBUF_VERSION} --single-branch --depth 1 https://github.com/protocolbuffers/protobuf > /dev/null \
&& cd protobuf || exit 1 \
&& test `git rev-parse HEAD` = ${PROTOBUF_HASH} || exit 1 \
&& git submodule update --init --recursive > /dev/null \
&& ./autogen.sh > /dev/null \
&& ./configure --prefix=$BASE_DIR --enable-static --disable-shared > /dev/null \
&& make > /dev/null \
&& make install > /dev/null \
&& ldconfig \
&& cd /data || exit 1 \
&& rm -rf /data/protobuf
WORKDIR /home
ENV USE_SINGLE_BUILDDIR=1
ARG NPROC
RUN set -ex && \
git submodule init && git submodule update && \
rm -rf build && \
if [ -z "$NPROC" ] ; \
then make -j$(nproc) release-static ; \
else make -j$NPROC release-static ; \
fi
# runtime stage
FROM ubuntu:16.04
RUN set -ex && \
apt-get update && \
apt-get --no-install-recommends --yes install ca-certificates && \
apt-get clean && \
rm -rf /var/lib/apt
COPY --from=builder /src/build/release/bin /usr/local/bin/
# Create monero user
RUN adduser --system --group --disabled-password monero && \
mkdir -p /wallet /home/monero/.bitmonero && \
chown -R monero:monero /home/monero/.bitmonero && \
chown -R monero:monero /wallet
# Contains the blockchain
VOLUME /home/monero/.bitmonero
# Generate your wallet via accessing the container and run:
# cd /wallet
# monero-wallet-cli
VOLUME /wallet
EXPOSE 18080
EXPOSE 18081
# switch to user monero
USER monero
ENTRYPOINT ["monerod", "--p2p-bind-ip=0.0.0.0", "--p2p-bind-port=18080", "--rpc-bind-ip=0.0.0.0", "--rpc-bind-port=18081", "--non-interactive", "--confirm-external-bind"]
EXPOSE 34567
EXPOSE 34568
# Wownero
RUN echo "\e[32mbuilding: Wownero\e[39m" \
&& set -ex \
&& git clone https://git.wownero.com/wownero/wownero \
&& cd wownero \
&& make -j2 release-static-linux-x86_64 \
&& echo "\e[32mdone building Wownero, binaries located in: /home/wownero/build/release/bin\e[39m"

@ -73,7 +73,7 @@ debug-test-trezor:
debug-all:
mkdir -p $(builddir)/debug
cd $(builddir)/debug && cmake -D BUILD_TESTS=ON -D BUILD_SHARED_LIBS=OFF -D CMAKE_BUILD_TYPE=Debug $(topdir) && $(MAKE)
cd $(builddir)/debug && cmake -D BUILD_TESTS=OFF -D USE_DEVICE_TREZOR=OFF -D BUILD_SHARED_LIBS=OFF -D CMAKE_BUILD_TYPE=Debug $(topdir) && $(MAKE)
debug-static-all:
mkdir -p $(builddir)/debug
@ -89,7 +89,7 @@ debug-static-win32:
cmake-release:
mkdir -p $(builddir)/release
cd $(builddir)/release && cmake -D CMAKE_BUILD_TYPE=Release $(topdir)
cd $(builddir)/release && cmake -D BUILD_TESTS=OFF -D CMAKE_BUILD_TYPE=Release $(topdir)
release: cmake-release
cd $(builddir)/release && $(MAKE)
@ -100,11 +100,11 @@ release-test:
release-all:
mkdir -p $(builddir)/release
cd $(builddir)/release && cmake -D BUILD_TESTS=ON -D CMAKE_BUILD_TYPE=release $(topdir) && $(MAKE)
cd $(builddir)/release && cmake -D BUILD_TESTS=OFF -D USE_DEVICE_TREZOR=OFF -D CMAKE_BUILD_TYPE=release $(topdir) && $(MAKE)
release-static:
mkdir -p $(builddir)/release
cd $(builddir)/release && cmake -D STATIC=ON -D ARCH="x86-64" -D BUILD_64=ON -D CMAKE_BUILD_TYPE=release $(topdir) && $(MAKE)
cd $(builddir)/release && cmake -D BUILD_TESTS=OFF -D USE_DEVICE_TREZOR=OFF -D STATIC=ON -D ARCH="x86-64" -D BUILD_64=ON -D CMAKE_BUILD_TYPE=release $(topdir) && $(MAKE)
coverage:
mkdir -p $(builddir)/debug
@ -136,15 +136,15 @@ release-static-linux-armv8:
release-static-linux-x86_64:
mkdir -p $(builddir)/release
cd $(builddir)/release && cmake -D STATIC=ON -D ARCH="x86-64" -D BUILD_64=ON -D CMAKE_BUILD_TYPE=release -D BUILD_TAG="linux-x64" $(topdir) && $(MAKE)
cd $(builddir)/release && cmake -D STATIC=ON -D USE_DEVICE_TREZOR=OFF -D ARCH="x86-64" -D BUILD_64=ON -D CMAKE_BUILD_TYPE=release -D BUILD_TAG="linux-x64" $(topdir) && $(MAKE)
release-static-freebsd-x86_64:
mkdir -p $(builddir)/release
cd $(builddir)/release && cmake -D STATIC=ON -D ARCH="x86-64" -D BUILD_64=ON -D CMAKE_BUILD_TYPE=release -D BUILD_TAG="freebsd-x64" $(topdir) && $(MAKE)
cd $(builddir)/release && cmake -D STATIC=ON -D USE_DEVICE_TREZOR=OFF -D ARCH="x86-64" -D BUILD_64=ON -D CMAKE_BUILD_TYPE=release -D BUILD_TAG="freebsd-x64" $(topdir) && $(MAKE)
release-static-mac-x86_64:
mkdir -p $(builddir)/release
cd $(builddir)/release && cmake -D STATIC=ON -D ARCH="x86-64" -D BUILD_64=ON -D CMAKE_BUILD_TYPE=release -D BUILD_TAG="mac-x64" $(topdir) && $(MAKE)
cd $(builddir)/release && cmake -D STATIC=ON -D USE_DEVICE_TREZOR=OFF -D ARCH="x86-64" -D BUILD_64=ON -D CMAKE_BUILD_TYPE=release -D BUILD_TAG="mac-x64" $(topdir) && $(MAKE)
release-static-linux-i686:
mkdir -p $(builddir)/release
@ -152,7 +152,7 @@ release-static-linux-i686:
release-static-win64:
mkdir -p $(builddir)/release
cd $(builddir)/release && cmake -G "MSYS Makefiles" -D STATIC=ON -D ARCH="x86-64" -D BUILD_64=ON -D CMAKE_BUILD_TYPE=Release -D BUILD_TAG="win-x64" -D CMAKE_TOOLCHAIN_FILE=$(topdir)/cmake/64-bit-toolchain.cmake -D MSYS2_FOLDER=$(shell cd ${MINGW_PREFIX}/.. && pwd -W) $(topdir) && $(MAKE)
cd $(builddir)/release && cmake -G "MSYS Makefiles" -D STATIC=ON -D USE_DEVICE_TREZOR=OFF -D ARCH="x86-64" -D BUILD_64=ON -D CMAKE_BUILD_TYPE=Release -D BUILD_TAG="win-x64" -D CMAKE_TOOLCHAIN_FILE=$(topdir)/cmake/64-bit-toolchain.cmake -D MSYS2_FOLDER=$(shell cd ${MINGW_PREFIX}/.. && pwd -W) $(topdir) && $(MAKE)
release-static-win32:
mkdir -p $(builddir)/release

@ -0,0 +1,64 @@
# Maintainer: wowario <wowario[at]protonmail[dot]com>
pkgname=wownero-git
pkgver=0.8.0.0
pkgrel=1
pkgdesc="Wownero: a fairly launched privacy-centric meme coin with no premine and a finite supply"
license=('BSD')
arch=('x86_64')
url="https://wownero.org/"
depends=('boost-libs' 'libunwind' 'openssl' 'readline' 'zeromq' 'pcsclite' 'hidapi' 'protobuf')
makedepends=('git' 'cmake' 'boost')
source=(
"${pkgname}"::"git+https://github.com/wownero/wownero#tag=v${pkgver}"
"git+https://github.com/monero-project/unbound.git"
"git+https://github.com/monero-project/miniupnp.git"
"git+https://github.com/Tencent/rapidjson.git"
"git+https://github.com/trezor/trezor-common.git"
"git+https://github.com/wownero/RandomWOW.git"
"wownero.sysusers"
"wownero.tmpfiles")
sha512sums=('SKIP'
'SKIP'
'SKIP'
'SKIP'
'SKIP'
'SKIP'
'SKIP'
'SKIP')
prepare() {
cd "${pkgname}"
git submodule init
git config submodule.external/unbound.url "$srcdir/unbound"
git config submodule.external/miniupnp.url "$srcdir/miniupnp"
git config submodule.external/rapidjson.url "$srcdir/rapidjson"
git config submodule.external/RandomWOW.url "$srcdir/RandomWOW"
git submodule update
}
build() {
cd "${pkgname}"
mkdir -p build && cd build
cmake -D BUILD_TESTS=OFF -D CMAKE_BUILD_TYPE=release -D ARCH=default ../
make
}
package() {
backup=('etc/wownerod.conf')
cd "${pkgname}"
install -Dm644 "LICENSE" -t "${pkgdir}/usr/share/licenses/${pkgname}"
install -Dm644 "utils/conf/wownerod.conf" "${pkgdir}/etc/wownerod.conf"
install -Dm644 "utils/systemd/wownerod.service" "${pkgdir}/usr/lib/systemd/system/wownerod.service"
install -Dm644 "../wownero.sysusers" "${pkgdir}/usr/lib/sysusers.d/wownero.conf"
install -Dm644 "../wownero.tmpfiles" "${pkgdir}/usr/lib/tmpfiles.d/wownero.conf"
install -Dm755 "build/bin/wownero-wallet-cli" \
"build/bin/wownero-wallet-rpc" \
"build/bin/wownerod" \
-t "${pkgdir}/usr/bin"
}
# vim: ts=2 sw=2 et:

@ -1,632 +1,163 @@
# Monero
[![Build Status](https://ci.wownero.com/api/badges/wownero/wownero/status.svg)](https://ci.wownero.com/wownero/wownero)
# ~~Mo~~Wownero - Such privacy! Many coins! Wow! 🐕
Copyright (c) 2014-2020 The Monero Project.
Portions Copyright (c) 2012-2013 The Cryptonote developers.
## Table of Contents
- [Development resources](#development-resources)
- [Vulnerability response](#vulnerability-response)
- [Research](#research)
- [Announcements](#announcements)
- [Translations](#translations)
- [Coverage](#coverage)
- [Introduction](#introduction)
- [About this project](#about-this-project)
- [Supporting the project](#supporting-the-project)
- [License](#license)
- [Contributing](#contributing)
- [Scheduled software upgrades](#scheduled-software-upgrades)
- [Release staging schedule and protocol](#release-staging-schedule-and-protocol)
- [Compiling Monero from source](#compiling-monero-from-source)
- [Dependencies](#dependencies)
- [Internationalization](#Internationalization)
- [Using Tor](#using-tor)
- [Pruning](#Pruning)
- [Debugging](#Debugging)
- [Known issues](#known-issues)
## Development resources
- Web: [getmonero.org](https://getmonero.org)
- Forum: [forum.getmonero.org](https://forum.getmonero.org)
- Mail: [dev@getmonero.org](mailto:dev@getmonero.org)
- GitHub: [https://github.com/monero-project/monero](https://github.com/monero-project/monero)
- IRC: [#monero-dev on Freenode](https://webchat.freenode.net/?randomnick=1&channels=%23monero-dev&prompt=1&uio=d4)
- It is HIGHLY recommended that you join the #monero-dev IRC channel if you are developing software that uses Monero. Due to the nature of this open source software project, joining this channel and idling is the best way to stay updated on best practices and new developments in the Monero ecosystem. All you need to do is join the IRC channel and idle to stay updated with the latest in Monero development. If you do not, you risk wasting resources on developing integrations that are not compatible with the Monero network. The Monero core team and community continuously make efforts to communicate updates, developments, and documentation via other platforms but for the best information, you need to talk to other Monero developers, and they are on IRC. #monero-dev is about Monero development, not getting help about using Monero, or help about development of other software, including yours, unless it also pertains to Monero code itself. For these cases, checkout #monero.
## Vulnerability response
- Our [Vulnerability Response Process](https://github.com/monero-project/meta/blob/master/VULNERABILITY_RESPONSE_PROCESS.md) encourages responsible disclosure
- We are also available via [HackerOne](https://hackerone.com/monero)
## Research
The [Monero Research Lab](https://src.getmonero.org/resources/research-lab/) is an open forum where the community coordinates research into Monero cryptography, protocols, fungibility, analysis, and more. We welcome collaboration and contributions from outside researchers! Because not all Lab work and publications are distributed as traditional preprints or articles, they may be easy to miss if you are conducting literature reviews for your own Monero research. You are encouraged to get in touch with our researchers if you have questions, wish to collaborate, or would like guidance to help avoid unnecessarily duplicating earlier or known work.
Our researchers are available on IRC in [#monero-research-lab on Freenode](https://webchat.freenode.net/?randomnick=1&channels=%23monero-research-lab&prompt=1&uio=d4) or by email:
- Sarang Noether, Ph.D.: [sarang@getmonero.org](mailto:sarang@getmonero.org) or [sarang.noether@protonmail.com](mailto:sarang.noether@protonmail.com); [research repository](https://github.com/SarangNoether/research-lab)
- Surae Noether (Brandon Goodell), Ph.D.: [surae@getmonero.org](mailto:surae@getmonero.org) or [surae.noether@protonmail.com](mailto:surae.noether@protonmail.com); [research repository](https://github.com/b-g-goodell/research-lab)
## Announcements
- You can subscribe to an [announcement listserv](https://lists.getmonero.org) to get critical announcements from the Monero core team. The announcement list can be very helpful for knowing when software updates are needed.
## Translations
The CLI wallet is available in different languages. If you want to help translate it, see our self-hosted localization platform, Weblate, on [translate.getmonero.org]( https://translate.getmonero.org/projects/monero/cli-wallet/). Every translation *must* be uploaded on the platform, pull requests directly editing the code in this repository will be closed. If you need help with Weblate, you can find a guide with screenshots [here](https://github.com/monero-ecosystem/monero-translations/blob/master/weblate.md).
&nbsp;
If you need help/support/info about translations, contact the localization workgroup. You can find the complete list of contacts on the repository of the workgroup: [monero-translations](https://github.com/monero-ecosystem/monero-translations#contacts).
## Coverage
| Type | Status |
|-----------|--------|
| Coverity | [![Coverity Status](https://scan.coverity.com/projects/9657/badge.svg)](https://scan.coverity.com/projects/9657/)
| Coveralls | [![Coveralls Status](https://coveralls.io/repos/github/monero-project/monero/badge.svg?branch=master)](https://coveralls.io/github/monero-project/monero?branch=master)
| License | [![License](https://img.shields.io/badge/license-BSD3-blue.svg)](https://opensource.org/licenses/BSD-3-Clause)
## Resources
- Web: [wownero.org](http://wownero.org)
- Twitter: [@w0wn3r0](https://twitter.com/w0wn3r0)
- Reddit: [/r/wownero](https://www.reddit.com/r/wownero)
- Mail: [wownero@protonmail.com](mailto:wownero@protonmail.com)
- GitHub: [git.wownero.com/wownero/wownero](https://git.wownero.com/wownero/wownero)
- IRC: [#wownero on Freenode](https://kiwiirc.com/client/irc.freenode.net/?nick=suchchatter|?#wownero)
- Bitmessage Chan: wownero (`BM-2cSzWtrj2pzLva9GF1Jp2TYsnLjrnJpvba`)
- Wownero Funding System: [funding.wownero.com](https://funding.wownero.com)
- Wownero Forum: [forum.wownero.com](https://forum.wownero.com)
- Discord: [discord.gg/DSC9TWx](https://discord.gg/DSC9TWx)
- Telegram: [t.me/wownero](https://t.me/wownero)
- Feather-WOW Desktop Wallet: [featherwallet.org/wownero](https://featherwallet.org/wownero)
- WOW Stash Web Wallet: [wowstash.app](https://wowstash.app)
- Public Node Status: [monero.fail](https://monero.fail/?crypto=wownero)
### Blockchain Explorers
- https://explore.wownero.com
- http://wow5eqtzqvsg5jctqzg5g7uk3u62sfqiacj5x6lo4by7bvnj6jkvubyd.onion
- https://wownero.club
### Free Public Nodes
- global.wownodes.com:34568 (Global)
- node.suchwow.xyz:34568 (US)
- wow.pwned.systems:34568 (NL)
- wowbux.org:34568 (CA)
- super.fast.node.xmr.pm:34568 (DE)
- wow.pwned.systems (NL)
- wowbuxx535x4exuexja2xfezpwcyznxkofui4ndjiectj4yuh2xheiid.onion:34568
### Tor Peers
- wowp2p5gelm6vhl2d5tvfqills63jilgy6hkvlrqljooov5ktaxgqdad.onion
- f3moshycuklu3mb3wnlfjwn26nsgzreqtfzfuyjjk46u7jqxlhf7d5id.onion
## Introduction
Monero is a private, secure, untraceable, decentralised digital currency. You are your bank, you control your funds, and nobody can trace your transfers unless you allow them to do so.
**Privacy:** Monero uses a cryptographically sound system to allow you to send and receive funds without your transactions being easily revealed on the blockchain (the ledger of transactions that everyone has). This ensures that your purchases, receipts, and all transfers remain absolutely private by default.
**Security:** Using the power of a distributed peer-to-peer consensus network, every transaction on the network is cryptographically secured. Individual wallets have a 25-word mnemonic seed that is only displayed once and can be written down to backup the wallet. Wallet files are encrypted with a passphrase to ensure they are useless if stolen.
Wownero is a privacy-centric memecoin that was fairly launched on April 1, 2018 with no pre-mine, stealth-mine or ICO. Wownero has a maximum supply of around 184 million WOW with a slow and steady emission over 50 years. It is a fork of Monero, but with its own genesis block, so there is no degradation of privacy due to ring signatures using different participants for the same tx outputs on opposing forks.
**Untraceability:** By taking advantage of ring signatures, a special property of a certain type of cryptography, Monero is able to ensure that transactions are not only untraceable but have an optional measure of ambiguity that ensures that transactions cannot easily be tied back to an individual user or computer.
**Decentralization:** The utility of Monero depends on its decentralised peer-to-peer consensus network - anyone should be able to run the monero software, validate the integrity of the blockchain, and participate in all aspects of the monero network using consumer-grade commodity hardware. Decentralization of the monero network is maintained by software development that minimizes the costs of running the monero software and inhibits the proliferation of specialized, non-commodity hardware.
## Supporting the project
## About this project
Wownero is a 100% community-sponsored endeavor. Supporting services are also graciously provided by sponsors:
This is the core implementation of Monero. It is open source and completely free to use without restrictions, except for those specified in the license agreement below. There are no restrictions on anyone creating an alternative implementation of Monero that uses the protocol and network in a compatible manner.
[<img src="https://git.wownero.com/wownero/meta/raw/branch/master/images/macstadium.png"
alt="MacStadium"
height="100">](https://www.macstadium.com)
As with many development projects, the repository on Github is considered to be the "staging" area for the latest changes. Before changes are merged into that branch on the main repository, they are tested by individual developers in their own branches, submitted as a pull request, and then subsequently tested by contributors who focus on testing and code reviews. That having been said, the repository should be carefully considered before using it in a production environment, unless there is a patch in the repository for a particular show-stopping issue you are experiencing. It is generally a better idea to use a tagged release for stability.
Developers are volunteers doing this mostly for shits and giggles. If you would like to support our shenanigans and stimulant addictions, please consider donating to [WFS proposals](https://funding.wownero.com/proposals) or the dev slush fund.
**Anyone is welcome to contribute to Monero's codebase!** If you have a fix or code change, feel free to submit it as a pull request directly to the "master" branch. In cases where the change is relatively small or does not affect other parts of the codebase, it may be merged in immediately by any one of the collaborators. On the other hand, if the change is particularly large or complex, it is expected that it will be discussed at length either well in advance of the pull request being submitted, or even directly on the pull request.
### Donation Addresses
## Supporting the project
WOW: `Wo3MWeKwtA918DU4c69hVSNgejdWFCRCuWjShRY66mJkU2Hv58eygJWDJS1MNa2Ge5M1WjUkGHuLqHkweDxwZZU42d16v94mP`
Monero is a 100% community-sponsored endeavor. If you want to join our efforts, the easiest thing you can do is support the project financially. Both Monero and Bitcoin donations can be made to **donate.getmonero.org** if using a client that supports the [OpenAlias](https://openalias.org) standard. Alternatively, you can send XMR to the Monero donation address via the `donate` command (type `help` in the command-line wallet for details).
- view key: `e62e40bfd5ca7e3a7f199602a3c97df511780489e1c1861884b00c28abaea406`
The Monero donation address is: `888tNkZrPN6JsEgekjMnABU4TBzc2Dt29EPAvkRxbANsAnjyPbb3iQ1YBRk1UXcdRsiKc9dhwMVgN5S9cQUiyoogDavup3H` (viewkey: `f359631075708155cc3d92a32b75a7d02a5dcf27756707b47a2b31b21c389501`)
XMR: `44SQVPGLufPasUcuUQSZiF5c9BFzjcP8ucDxzzFDgLf1VkCEFaidJ3u2AhSKMhPLKA3jc2iS8wQHFcaigM6fXmo6AnFRn5B`
The Bitcoin donation address is: `1KTexdemPdxSBcG55heUuTjDRYqbC5ZL8H`
- view key: `cb83681c31db0c79adf18f25b2a6d05f86db1109385b4928930e2acf49a3ed0b`
Core development funding and/or some supporting services are also graciously provided by sponsors:
BTC: `bc1qcw9zglp3fxyl25zswemw7jczlqryms2lsmu464`
[<img width="80" src="https://static.getmonero.org/images/sponsors/mymonero.png"/>](https://mymonero.com)
[<img width="150" src="https://static.getmonero.org/images/sponsors/kitware.png?1"/>](https://kitware.com)
[<img width="100" src="https://static.getmonero.org/images/sponsors/dome9.png"/>](https://dome9.com)
[<img width="150" src="https://static.getmonero.org/images/sponsors/araxis.png"/>](https://araxis.com)
[<img width="150" src="https://static.getmonero.org/images/sponsors/jetbrains.png"/>](https://www.jetbrains.com/)
[<img width="150" src="https://static.getmonero.org/images/sponsors/navicat.png"/>](https://www.navicat.com/)
[<img width="150" src="https://static.getmonero.org/images/sponsors/symas.png"/>](https://www.symas.com/)
## Release staging and Contributing
There are also several mining pools that kindly donate a portion of their fees, [a list of them can be found on our Bitcointalk post](https://bitcointalk.org/index.php?topic=583449.0).
**Anyone is welcome to contribute to Wownero's codebase!**
## License
If you have a fix or code change, feel free to submit it as a pull request. Ahead of a scheduled software upgrade, a development branch will be created with the new release version tag. Pull requests that address bugs should be made to Master. Pull requests that require review and testing (generally, optimizations and new features) should be made to the development branch. All pull requests will be considered safe until the US dollar valuation of 1 Wownero equals $1000. After this valuation has been reached, more research will be needed to introduce experimental cryptography and/or code into the codebase.
See [LICENSE](LICENSE).
Things to Do, Work in Progress, and Help Wanted tasks are tracked in the [Meta](https://git.wownero.com/wownero/meta/issues) repo.
## Contributing
If you want to help out, see [CONTRIBUTING](CONTRIBUTING.md) for a set of guidelines.
Join `#wownero-dev` on IRC freenode to participate in development conversation.
## Scheduled software upgrades
Monero uses a fixed-schedule software upgrade (hard fork) mechanism to implement new features. This means that users of Monero (end users and service providers) should run current versions and upgrade their software on a regular schedule. Software upgrades occur during the months of April and October. The required software for these upgrades will be available prior to the scheduled date. Please check the repository prior to this date for the proper Monero software version. Below is the historical schedule and the projected schedule for the next upgrade.
Dates are provided in the format YYYY-MM-DD.
Wownero uses a fixed-schedule software upgrade (hard fork) mechanism to implement new features. This means that users of Wownero (end users and service providers) should run current versions and upgrade their software on a regular schedule. The required software for these upgrades will be available prior to the scheduled date. Please check the repository prior to this date for the proper Wownero software version. Below is the historical schedule and the projected schedule for the next upgrade.
Dates are provided in the format YYYY-MM-DD.
| Software upgrade block height | Date | Fork version | Minimum Monero version | Recommended Monero version | Details |
| Software upgrade block height | Date | Release Name | Minimum Wownero version | Recommended Wownero version | Details |
| ------------------------------ | -----------| ----------------- | ---------------------- | -------------------------- | ---------------------------------------------------------------------------------- |
| 1009827 | 2016-03-22 | v2 | v0.9.4 | v0.9.4 | Allow only >= ringsize 3, blocktime = 120 seconds, fee-free blocksize 60 kb |
| 1141317 | 2016-09-21 | v3 | v0.9.4 | v0.10.0 | Splits coinbase into denominations |
| 1220516 | 2017-01-05 | v4 | v0.10.1 | v0.10.2.1 | Allow normal and RingCT transactions |
| 1288616 | 2017-04-15 | v5 | v0.10.3.0 | v0.10.3.1 | Adjusted minimum blocksize and fee algorithm |
| 1400000 | 2017-09-16 | v6 | v0.11.0.0 | v0.11.0.0 | Allow only RingCT transactions, allow only >= ringsize 5 |
| 1546000 | 2018-04-06 | v7 | v0.12.0.0 | v0.12.3.0 | Cryptonight variant 1, ringsize >= 7, sorted inputs
| 1685555 | 2018-10-18 | v8 | v0.13.0.0 | v0.13.0.4 | max transaction size at half the penalty free block size, bulletproofs enabled, cryptonight variant 2, fixed ringsize [11](https://youtu.be/KOO5S4vxi0o)
| 1686275 | 2018-10-19 | v9 | v0.13.0.0 | v0.13.0.4 | bulletproofs required
| 1788000 | 2019-03-09 | v10 | v0.14.0.0 | v0.14.1.2 | New PoW based on Cryptonight-R, new block weight algorithm, slightly more efficient RingCT format
| 1788720 | 2019-03-10 | v11 | v0.14.0.0 | v0.14.1.2 | forbid old RingCT transaction format
| 1978433 | 2019-11-30* | v12 | v0.15.0.0 | v0.16.0.0 | New PoW based on RandomX, only allow >= 2 outputs, change to the block median used to calculate penalty, v1 coinbases are forbidden, rct sigs in coinbase forbidden, 10 block lock time for incoming outputs
| 2210000 | 2020-10-17 | v13 | v0.17.0.0 | v0.17.0.0 | New CLSAG transaction format
| 2210720 | 2020-10-18 | v14 | v0.17.0.0 | v0.17.0.0 | forbid old MLSAG transaction format
| XXXXXXX | XXX-XX-XX | XXX | vX.XX.X.X | vX.XX.X.X | XXX |
| 1 | 2018-04-01 | Awesome Akita | v0.1.0.0 | v0.1.0.0 | Cryptonight variant 1, ringsize >= 8, sorted inputs
| 69,69 | 2018-04-24 | Busty Brazzers | v0.2.0.0 | v0.2.0.0 | Bulletproofs, LWMA difficulty algorithm, ringsize >= 10, reduce unlock to 4
| 53,666 | 2018-10-06 | Cool Cage | v0.3.0.0 | v0.3.1.3 | Cryptonight variant 2, LWMA v2, ringsize = 22, MMS
| 63,469 | 2018-11-11 | Dank Doge | v0.4.0.0 | v0.4.0.0 | LWMA v4
| 81,769 | 2019-02-19 | Erotic EggplantEmoji | v0.5.0.0 | v0.5.0.2 | Cryptonight/wow, LWMA v1 with N=144, Updated Bulletproofs, Fee Per Byte, Auto-churn
| 114,969 | 2019-06-14 | F For Fappening | v0.6.1.0 | v0.6.1.2 | RandomWOW, new block weight algorithm, slightly more efficient RingCT format
| 160,777 | 2019-11-20 | Gaping Goatse | v0.7.0.0 | v0.7.1.0 | Only allow >= 2 outputs, change to the block median used to calculate penalty, rct sigs in coinbase forbidden, 4 unlock time as protocol rule
| - | 2020-06-28 | Hallucinogenic Hypnotoad | v0.8.0.0 | v0.8.0.2 | Dandelion++ support
| 253,999 | 2020-10-09 | Illiterate Illuminati | v0.9.0.0 | v0.9.1.0 | Dynamic coinbase unlock (up to 1 mo.), Deterministic unlock times, Enforce maximum coinbase amount, show_qr_code wallet command, CLSAG
X's indicate that these details have not been determined as of commit date.
\* indicates estimate as of commit date
## Release staging schedule and protocol
Approximately three months prior to a scheduled software upgrade, a branch from master will be created with the new release version tag. Pull requests that address bugs should then be made to both master and the new release branch. Pull requests that require extensive review and testing (generally, optimizations and new features) should *not* be made to the release branch.
## Compiling Monero from source
### Dependencies
The following table summarizes the tools and libraries required to build. A
few of the libraries are also included in this repository (marked as
"Vendored"). By default, the build uses the library installed on the system
and ignores the vendored sources. However, if no library is found installed on
the system, then the vendored source will be built and used. The vendored
sources are also used for statically-linked builds because distribution
packages often include only shared library binaries (`.so`) but not static
library archives (`.a`).
| Dep | Min. version | Vendored | Debian/Ubuntu pkg | Arch pkg | Void pkg | Fedora pkg | Optional | Purpose |
| ------------ | ------------- | -------- | -------------------- | ------------ | ------------------ | ------------------- | -------- | --------------- |
| GCC | 4.7.3 | NO | `build-essential` | `base-devel` | `base-devel` | `gcc` | NO | |
| CMake | 3.5 | NO | `cmake` | `cmake` | `cmake` | `cmake` | NO | |
| pkg-config | any | NO | `pkg-config` | `base-devel` | `base-devel` | `pkgconf` | NO | |
| Boost | 1.58 | NO | `libboost-all-dev` | `boost` | `boost-devel` | `boost-devel` | NO | C++ libraries |
| OpenSSL | basically any | NO | `libssl-dev` | `openssl` | `libressl-devel` | `openssl-devel` | NO | sha256 sum |
| libzmq | 3.0.0 | NO | `libzmq3-dev` | `zeromq` | `zeromq-devel` | `zeromq-devel` | NO | ZeroMQ library |
| OpenPGM | ? | NO | `libpgm-dev` | `libpgm` | | `openpgm-devel` | NO | For ZeroMQ |
| libnorm[2] | ? | NO | `libnorm-dev` | | | | YES | For ZeroMQ |
| libunbound | 1.4.16 | YES | `libunbound-dev` | `unbound` | `unbound-devel` | `unbound-devel` | NO | DNS resolver |
| libsodium | ? | NO | `libsodium-dev` | `libsodium` | `libsodium-devel` | `libsodium-devel` | NO | cryptography |
| libunwind | any | NO | `libunwind8-dev` | `libunwind` | `libunwind-devel` | `libunwind-devel` | YES | Stack traces |
| liblzma | any | NO | `liblzma-dev` | `xz` | `liblzma-devel` | `xz-devel` | YES | For libunwind |
| libreadline | 6.3.0 | NO | `libreadline6-dev` | `readline` | `readline-devel` | `readline-devel` | YES | Input editing |
| ldns | 1.6.17 | NO | `libldns-dev` | `ldns` | `libldns-devel` | `ldns-devel` | YES | SSL toolkit |
| expat | 1.1 | NO | `libexpat1-dev` | `expat` | `expat-devel` | `expat-devel` | YES | XML parsing |
| GTest | 1.5 | YES | `libgtest-dev`[1] | `gtest` | `gtest-devel` | `gtest-devel` | YES | Test suite |
| Doxygen | any | NO | `doxygen` | `doxygen` | `doxygen` | `doxygen` | YES | Documentation |
| Graphviz | any | NO | `graphviz` | `graphviz` | `graphviz` | `graphviz` | YES | Documentation |
| lrelease | ? | NO | `qttools5-dev-tools` | `qt5-tools` | `qt5-tools` | `qt5-linguist` | YES | Translations |
| libhidapi | ? | NO | `libhidapi-dev` | `hidapi` | `hidapi-devel` | `hidapi-devel` | YES | Hardware wallet |
| libusb | ? | NO | `libusb-1.0-0-dev` | `libusb` | `libusb-devel` | `libusbx-devel` | YES | Hardware wallet |
| libprotobuf | ? | NO | `libprotobuf-dev` | `protobuf` | `protobuf-devel` | `protobuf-devel` | YES | Hardware wallet |
| protoc | ? | NO | `protobuf-compiler` | `protobuf` | `protobuf` | `protobuf-compiler` | YES | Hardware wallet |
| libudev | ? | No | `libudev-dev` | `systemd` | `eudev-libudev-devel` | `systemd-devel` | YES | Hardware wallet |
[1] On Debian/Ubuntu `libgtest-dev` only includes sources and headers. You must
build the library binary manually. This can be done with the following command ```sudo apt-get install libgtest-dev && cd /usr/src/gtest && sudo cmake . && sudo make && sudo mv libg* /usr/lib/ ```
[2] libnorm-dev is needed if your zmq library was built with libnorm, and not needed otherwise
Install all dependencies at once on Debian/Ubuntu:
``` sudo apt update && sudo apt install build-essential cmake pkg-config libboost-all-dev libssl-dev libzmq3-dev libunbound-dev libsodium-dev libunwind8-dev liblzma-dev libreadline6-dev libldns-dev libexpat1-dev doxygen graphviz libpgm-dev qttools5-dev-tools libhidapi-dev libusb-1.0-0-dev libprotobuf-dev protobuf-compiler libudev-dev```
Install all dependencies at once on macOS with the provided Brewfile:
``` brew update && brew bundle --file=contrib/brew/Brewfile ```
FreeBSD 12.1 one-liner required to build dependencies:
```pkg install git gmake cmake pkgconf boost-libs libzmq4 libsodium```
### Cloning the repository
Clone recursively to pull-in needed submodule(s):
`$ git clone --recursive https://github.com/monero-project/monero`
If you already have a repo cloned, initialize and update:
`$ cd monero && git submodule init && git submodule update`
### Build instructions
Monero uses the CMake build system and a top-level [Makefile](Makefile) that
invokes cmake commands as needed.
#### On Linux and macOS
* Install the dependencies
* Change to the root of the source code directory, change to the most recent release branch, and build:
```bash
cd monero
git checkout release-v0.17
make
```
*Optional*: If your machine has several cores and enough memory, enable
parallel build by running `make -j<number of threads>` instead of `make`. For
this to be worthwhile, the machine should have one core and about 2GB of RAM
available per thread.
*Note*: The instructions above will compile the most stable release of the
Monero software. If you would like to use and test the most recent software,
use ```git checkout master```. The master branch may contain updates that are
both unstable and incompatible with release software, though testing is always
encouraged.
* The resulting executables can be found in `build/release/bin`
* Add `PATH="$PATH:$HOME/monero/build/release/bin"` to `.profile`
* Run Monero with `monerod --detach`
* **Optional**: build and run the test suite to verify the binaries:
```bash
make release-test
```
*NOTE*: `core_tests` test may take a few hours to complete.
* **Optional**: to build binaries suitable for debugging:
```bash
make debug
```
* **Optional**: to build statically-linked binaries:
```bash
make release-static
```
Dependencies need to be built with -fPIC. Static libraries usually aren't, so you may have to build them yourself with -fPIC. Refer to their documentation for how to build them.
* **Optional**: build documentation in `doc/html` (omit `HAVE_DOT=YES` if `graphviz` is not installed):
```bash
HAVE_DOT=YES doxygen Doxyfile
```
#### On the Raspberry Pi
Tested on a Raspberry Pi Zero with a clean install of minimal Raspbian Stretch (2017-09-07 or later) from https://www.raspberrypi.org/downloads/raspbian/. If you are using Raspian Jessie, [please see note in the following section](#note-for-raspbian-jessie-users).
* `apt-get update && apt-get upgrade` to install all of the latest software
* Install the dependencies for Monero from the 'Debian' column in the table above.
* Increase the system swap size:
```bash
sudo /etc/init.d/dphys-swapfile stop
sudo nano /etc/dphys-swapfile
CONF_SWAPSIZE=2048
sudo /etc/init.d/dphys-swapfile start
```
* If using an external hard disk without an external power supply, ensure it gets enough power to avoid hardware issues when syncing, by adding the line "max_usb_current=1" to /boot/config.txt
* Clone Monero and checkout the most recent release version:
```bash
git clone https://github.com/monero-project/monero.git
cd monero
git checkout tags/v0.17.0.0
```
* Build:
```bash
make release
```
* Wait 4-6 hours
* The resulting executables can be found in `build/release/bin`
* Add `PATH="$PATH:$HOME/monero/build/release/bin"` to `.profile`
* Run Monero with `monerod --detach`
* You may wish to reduce the size of the swap file after the build has finished, and delete the boost directory from your home directory
#### *Note for Raspbian Jessie users:*
If you are using the older Raspbian Jessie image, compiling Monero is a bit more complicated. The version of Boost available in the Debian Jessie repositories is too old to use with Monero, and thus you must compile a newer version yourself. The following explains the extra steps and has been tested on a Raspberry Pi 2 with a clean install of minimal Raspbian Jessie.
* As before, `apt-get update && apt-get upgrade` to install all of the latest software, and increase the system swap size
```bash
sudo /etc/init.d/dphys-swapfile stop
sudo nano /etc/dphys-swapfile
CONF_SWAPSIZE=2048
sudo /etc/init.d/dphys-swapfile start
```
* Then, install the dependencies for Monero except for `libunwind` and `libboost-all-dev`
* Install the latest version of boost (this may first require invoking `apt-get remove --purge libboost*-dev` to remove a previous version if you're not using a clean install):
```bash
cd
wget https://sourceforge.net/projects/boost/files/boost/1.72.0/boost_1_72_0.tar.bz2
tar xvfo boost_1_72_0.tar.bz2
cd boost_1_72_0
./bootstrap.sh
sudo ./b2
```
* Wait ~8 hours
```bash
sudo ./bjam cxxflags=-fPIC cflags=-fPIC -a install
```
* Wait ~4 hours
* From here, follow the [general Raspberry Pi instructions](#on-the-raspberry-pi) from the "Clone Monero and checkout most recent release version" step.
#### On Windows:
Binaries for Windows are built on Windows using the MinGW toolchain within
[MSYS2 environment](https://www.msys2.org). The MSYS2 environment emulates a
POSIX system. The toolchain runs within the environment and *cross-compiles*
binaries that can run outside of the environment as a regular Windows
application.
**Preparing the build environment**
* Download and install the [MSYS2 installer](https://www.msys2.org), either the 64-bit or the 32-bit package, depending on your system.
* Open the MSYS shell via the `MSYS2 Shell` shortcut
* Update packages using pacman:
```bash
pacman -Syu
```
* Exit the MSYS shell using Alt+F4
* Edit the properties for the `MSYS2 Shell` shortcut changing "msys2_shell.bat" to "msys2_shell.cmd -mingw64" for 64-bit builds or "msys2_shell.cmd -mingw32" for 32-bit builds
* Restart MSYS shell via modified shortcut and update packages again using pacman:
```bash
pacman -Syu
```
* Install dependencies:
To build for 64-bit Windows:
```bash
pacman -S mingw-w64-x86_64-toolchain make mingw-w64-x86_64-cmake mingw-w64-x86_64-boost mingw-w64-x86_64-openssl mingw-w64-x86_64-zeromq mingw-w64-x86_64-libsodium mingw-w64-x86_64-hidapi
```
To build for 32-bit Windows:
```bash
pacman -S mingw-w64-i686-toolchain make mingw-w64-i686-cmake mingw-w64-i686-boost mingw-w64-i686-openssl mingw-w64-i686-zeromq mingw-w64-i686-libsodium mingw-w64-i686-hidapi
```
* Open the MingW shell via `MinGW-w64-Win64 Shell` shortcut on 64-bit Windows
or `MinGW-w64-Win64 Shell` shortcut on 32-bit Windows. Note that if you are
running 64-bit Windows, you will have both 64-bit and 32-bit MinGW shells.
**Cloning**
* To git clone, run:
```bash
git clone --recursive https://github.com/monero-project/monero.git
```
**Building**
* Change to the cloned directory, run:
```bash
cd monero
```
* If you would like a specific [version/tag](https://github.com/monero-project/monero/tags), do a git checkout for that version. eg. 'v0.17.0.0'. If you don't care about the version and just want binaries from master, skip this step:
```bash
git checkout v0.17.0.0
```
* If you are on a 64-bit system, run:
```bash
make release-static-win64
```
* If you are on a 32-bit system, run:
```bash
make release-static-win32
```
* The resulting executables can be found in `build/release/bin`
* **Optional**: to build Windows binaries suitable for debugging on a 64-bit system, run:
```bash
make debug-static-win64
```
* **Optional**: to build Windows binaries suitable for debugging on a 32-bit system, run:
```bash
make debug-static-win32
```
* The resulting executables can be found in `build/debug/bin`
### On FreeBSD:
The project can be built from scratch by following instructions for Linux above(but use `gmake` instead of `make`).
If you are running Monero in a jail, you need to add `sysvsem="new"` to your jail configuration, otherwise lmdb will throw the error message: `Failed to open lmdb environment: Function not implemented`.
Monero is also available as a port or package as 'monero-cli`.
### On OpenBSD:
You will need to add a few packages to your system. `pkg_add cmake gmake zeromq libiconv boost`.
The `doxygen` and `graphviz` packages are optional and require the xbase set.
Running the test suite also requires `py-requests` package.
Build monero: `env DEVELOPER_LOCAL_TOOLS=1 BOOST_ROOT=/usr/local gmake release-static`
Note: you may encounter the following error when compiling the latest version of Monero as a normal user:
```
LLVM ERROR: out of memory
c++: error: unable to execute command: Abort trap (core dumped)
```
Then you need to increase the data ulimit size to 2GB and try again: `ulimit -d 2000000`
### On NetBSD:
Check that the dependencies are present: `pkg_info -c libexecinfo boost-headers boost-libs protobuf readline libusb1 zeromq git-base pkgconf gmake cmake | more`, and install any that are reported missing, using `pkg_add` or from your pkgsrc tree. Readline is optional but worth having.
Third-party dependencies are usually under `/usr/pkg/`, but if you have a custom setup, adjust the "/usr/pkg" (below) accordingly.
Clone the monero repository recursively and checkout the most recent release as described above. Then build monero: `gmake BOOST_ROOT=/usr/pkg LDFLAGS="-Wl,-R/usr/pkg/lib" release`. The resulting executables can be found in `build/NetBSD/[Release version]/Release/bin/`.
### On Solaris:
The default Solaris linker can't be used, you have to install GNU ld, then run cmake manually with the path to your copy of GNU ld:
```bash
mkdir -p build/release
cd build/release
cmake -DCMAKE_LINKER=/path/to/ld -D CMAKE_BUILD_TYPE=Release ../..
cd ../..
```
Then you can run make as usual.
### On Linux for Android (using docker):
```bash
# Build image (for ARM 32-bit)
docker build -f utils/build_scripts/android32.Dockerfile -t monero-android .
# Build image (for ARM 64-bit)
docker build -f utils/build_scripts/android64.Dockerfile -t monero-android .
# Create container
docker create -it --name monero-android monero-android bash
# Get binaries
docker cp monero-android:/src/build/release/bin .
```
### Building portable statically linked binaries
By default, in either dynamically or statically linked builds, binaries target the specific host processor on which the build happens and are not portable to other processors. Portable binaries can be built using the following targets:
* ```make release-static-linux-x86_64``` builds binaries on Linux on x86_64 portable across POSIX systems on x86_64 processors
* ```make release-static-linux-i686``` builds binaries on Linux on x86_64 or i686 portable across POSIX systems on i686 processors
* ```make release-static-linux-armv8``` builds binaries on Linux portable across POSIX systems on armv8 processors
* ```make release-static-linux-armv7``` builds binaries on Linux portable across POSIX systems on armv7 processors
* ```make release-static-linux-armv6``` builds binaries on Linux portable across POSIX systems on armv6 processors
* ```make release-static-win64``` builds binaries on 64-bit Windows portable across 64-bit Windows systems
* ```make release-static-win32``` builds binaries on 64-bit or 32-bit Windows portable across 32-bit Windows systems
### Cross Compiling
You can also cross-compile static binaries on Linux for Windows and macOS with the `depends` system.
* ```make depends target=x86_64-linux-gnu``` for 64-bit linux binaries.
* ```make depends target=x86_64-w64-mingw32``` for 64-bit windows binaries.
* Requires: `python3 g++-mingw-w64-x86-64 wine1.6 bc`
* ```make depends target=x86_64-apple-darwin11``` for macOS binaries.
* Requires: `cmake imagemagick libcap-dev librsvg2-bin libz-dev libbz2-dev libtiff-tools python-dev`
* ```make depends target=i686-linux-gnu``` for 32-bit linux binaries.
* Requires: `g++-multilib bc`
* ```make depends target=i686-w64-mingw32``` for 32-bit windows binaries.
* Requires: `python3 g++-mingw-w64-i686`
* ```make depends target=arm-linux-gnueabihf``` for armv7 binaries.
* Requires: `g++-arm-linux-gnueabihf`
* ```make depends target=aarch64-linux-gnu``` for armv8 binaries.
* Requires: `g++-aarch64-linux-gnu`
* ```make depends target=riscv64-linux-gnu``` for RISC V 64 bit binaries.
* Requires: `g++-riscv64-linux-gnu`
* ```make depends target=x86_64-unknown-freebsd``` for freebsd binaries.
* Requires: `clang-8`
* ```make depends target=arm-linux-android``` for 32bit android binaries
* ```make depends target=aarch64-linux-android``` for 64bit android binaries
The required packages are the names for each toolchain on apt. Depending on your distro, they may have different names.
Using `depends` might also be easier to compile Monero on Windows than using MSYS. Activate Windows Subsystem for Linux (WSL) with a distro (for example Ubuntu), install the apt build-essentials and follow the `depends` steps as depicted above.
The produced binaries still link libc dynamically. If the binary is compiled on a current distribution, it might not run on an older distribution with an older installation of libc. Passing `-DBACKCOMPAT=ON` to cmake will make sure that the binary will run on systems having at least libc version 2.17.
## Installing Monero from a package
**DISCLAIMER: These packages are not part of this repository or maintained by this project's contributors, and as such, do not go through the same review process to ensure their trustworthiness and security.**
## Installing from a package
Packages are available for
* Debian Buster
* Arch Linux/Manjaro
See the [instructions in the whonix/monero-gui repository](https://gitlab.com/whonix/monero-gui#how-to-install-monero-using-apt-get)
yay -S wownero-git
* Debian Bullseye and Sid
* Gentoo - Russian hacking tool
```bash
sudo apt install monero
```
More info and versions in the [Debian package tracker](https://tracker.debian.org/pkg/monero).
emerge --noreplace eselect-repository
eselect repository enable monero
emaint sync -r monero
echo '*/*::monero ~amd64' >> /etc/portage/package.accept_keywords
emerge net-p2p/wownero
* Arch Linux (via Community packages):
[`monero`](https://www.archlinux.org/packages/community/x86_64/monero/)
* NixOS
* Void Linux:
nix-shell -p wownero
```bash
xbps-install -S monero
```
* Ubuntu 18.04/Ubuntu 16.04/Debian 9/Debian 8 (amd64)
* GuixSD
sudo apt-key adv --keyserver keyserver.ubuntu.com --recv-keys 8BC34ABB48E565F0
sudo add-apt-repository "deb http://ppa.wownero.com/ bionic main"
sudo apt-get update
sudo apt-get install wownero
```bash
guix package -i monero
```
Packaging for your favorite distribution would be a welcome contribution!
* Gentoo [Monero overlay](https://github.com/gentoo-monero/gentoo-monero)
**DISCLAIMER: These packages are not part of this repository, and as such, do not go through the same review process to ensure their trustworthiness and security.**
```bash
emerge --noreplace eselect-repository
eselect repository enable monero
emaint sync -r monero
echo '*/*::monero ~amd64' >> /etc/portage/package.accept_keywords
emerge net-p2p/monero
```
* macOS (homebrew)
```bash
brew install monero
```
## Building from Source
* Docker
```bash
# Build using all available cores
docker build -t monero .
git clone https://git.wownero.com/wownero/wownero && cd wownero
docker build -t git-wow:master -m 4g .
docker run -it -p 34567:34567 -p 34568:34568 -w /home/wownero/build/release/bin git-wow:master bash
# or build using a specific number of cores (reduce RAM requirement)
docker build --build-arg NPROC=1 -t monero .
* Arch Linux/Manjaro
# either run in foreground
docker run -it -v /monero/chain:/root/.bitmonero -v /monero/wallet:/wallet -p 18080:18080 monero
sudo pacman -Syu && sudo pacman -S base-devel cmake boost openssl zeromq libpgm unbound libsodium git libusb systemd
git clone https://git.wownero.com/wownero/wownero && cd wownero
make -j2
# or in background
docker run -it -d -v /monero/chain:/root/.bitmonero -v /monero/wallet:/wallet -p 18080:18080 monero
```
* Debian/Ubuntu
* The build needs 3 GB space.
* Wait one hour or more
sudo apt update && sudo apt install build-essential cmake pkg-config libboost-all-dev libssl-dev libzmq3-dev libunbound-dev libsodium-dev libunwind8-dev liblzma-dev libreadline6-dev libldns-dev libexpat1-dev libpgm-dev libhidapi-dev libusb-1.0-0-dev libprotobuf-dev protobuf-compiler libudev-dev git -y
git clone https://git.wownero.com/wownero/wownero && cd wownero
make -j2
Packaging for your favorite distribution would be a welcome contribution!
## Running monerod
## Running Binaries
The build places the binary in `bin/` sub-directory within the build directory
from which cmake was invoked (repository root by default). To run in the
foreground:
```bash
./bin/monerod
```
./bin/wownerod
To list all available options, run `./bin/monerod --help`. Options can be
To list all available options, run `./bin/wownerod --help`. Options can be
specified either on the command line or in a configuration file passed by the
`--config-file` argument. To specify an option in the configuration file, add
a line with the syntax `argumentname=value`, where `argumentname` is the name
@ -634,181 +165,43 @@ of the argument without the leading dashes, for example, `log-level=1`.
To run in background:
```bash
./bin/monerod --log-file monerod.log --detach
```
./bin/wownerod --log-file wownerod.log --detach
To run as a systemd service, copy
[monerod.service](utils/systemd/monerod.service) to `/etc/systemd/system/` and
[monerod.conf](utils/conf/monerod.conf) to `/etc/`. The [example
service](utils/systemd/monerod.service) assumes that the user `monero` exists
[wownerod.service](utils/systemd/wownerod.service) to `/etc/systemd/system/` and
[wownerod.conf](utils/conf/wownerod.conf) to `/etc/`. The [example
service](utils/systemd/wownerod.service) assumes that the user `wownero` exists
and its home is the data directory specified in the [example
config](utils/conf/monerod.conf).
If you're on Mac, you may need to add the `--max-concurrency 1` option to
monero-wallet-cli, and possibly monerod, if you get crashes refreshing.
## Internationalization
See [README.i18n.md](README.i18n.md).
## Using Tor
> There is a new, still experimental, [integration with Tor](ANONYMITY_NETWORKS.md). The
> feature allows connecting over IPv4 and Tor simultaneously - IPv4 is used for
> relaying blocks and relaying transactions received by peers whereas Tor is
> used solely for relaying transactions received over local RPC. This provides
> privacy and better protection against surrounding node (sybil) attacks.
While Monero isn't made to integrate with Tor, it can be used wrapped with torsocks, by
setting the following configuration parameters and environment variables:
* `--p2p-bind-ip 127.0.0.1` on the command line or `p2p-bind-ip=127.0.0.1` in
monerod.conf to disable listening for connections on external interfaces.
* `--no-igd` on the command line or `no-igd=1` in monerod.conf to disable IGD
(UPnP port forwarding negotiation), which is pointless with Tor.
* `DNS_PUBLIC=tcp` or `DNS_PUBLIC=tcp://x.x.x.x` where x.x.x.x is the IP of the
desired DNS server, for DNS requests to go over TCP, so that they are routed
through Tor. When IP is not specified, monerod uses the default list of
servers defined in [src/common/dns_utils.cpp](src/common/dns_utils.cpp).
* `TORSOCKS_ALLOW_INBOUND=1` to tell torsocks to allow monerod to bind to interfaces
to accept connections from the wallet. On some Linux systems, torsocks
allows binding to localhost by default, so setting this variable is only
necessary to allow binding to local LAN/VPN interfaces to allow wallets to
connect from remote hosts. On other systems, it may be needed for local wallets
as well.
* Do NOT pass `--detach` when running through torsocks with systemd, (see
[utils/systemd/monerod.service](utils/systemd/monerod.service) for details).
* If you use the wallet with a Tor daemon via the loopback IP (eg, 127.0.0.1:9050),
then use `--untrusted-daemon` unless it is your own hidden service.
Example command line to start monerod through Tor:
```bash
DNS_PUBLIC=tcp torsocks monerod --p2p-bind-ip 127.0.0.1 --no-igd
```
### Using Tor on Tails
TAILS ships with a very restrictive set of firewall rules. Therefore, you need
to add a rule to allow this connection too, in addition to telling torsocks to
allow inbound connections. Full example:
```bash
sudo iptables -I OUTPUT 2 -p tcp -d 127.0.0.1 -m tcp --dport 18081 -j ACCEPT
DNS_PUBLIC=tcp torsocks ./monerod --p2p-bind-ip 127.0.0.1 --no-igd --rpc-bind-ip 127.0.0.1 \
--data-dir /home/amnesia/Persistent/your/directory/to/the/blockchain
```
## Pruning
As of May 2020, the full Monero blockchain file is about 80 GB. One can store a pruned blockchain, which is about 28 GB.
A pruned blockchain can only serve part of the historical chain data to other peers, but is otherwise identical in
functionality to the full blockchain.
To use a pruned blockchain, it is best to start the initial sync with --prune-blockchain. However, it is also possible
to prune an existing blockchain using the monero-blockchain-prune tool or using the --prune-blockchain monerod option
with an existing chain. If an existing chain exists, pruning will temporarily require disk space to store both the full
and pruned blockchains.
config](utils/conf/wownerod.conf).
## Debugging
Once node is synced to network, run the CLI wallet by entering:
This section contains general instructions for debugging failed installs or problems encountered with Monero. First, ensure you are running the latest version built from the Github repo.
./bin/wownero-wallet-cli
### Obtaining stack traces and core dumps on Unix systems
Type `help` in CLI wallet to see standard commands (for advanced options, type `help_advanced`).
We generally use the tool `gdb` (GNU debugger) to provide stack trace functionality, and `ulimit` to provide core dumps in builds which crash or segfault.
## Tor Anonymity Network
* To use `gdb` in order to obtain a stack trace for a build that has stalled:
* Install [Tor Browser](https://www.torproject.org/download/)
* Open `torrc` file in a text editor ([installation directory]/Browser/TorBrowser/Data/Tor/torrc) and add hidden service information as follows:
Run the build.
Once it stalls, enter the following command:
```bash
gdb /path/to/monerod `pidof monerod`
```
Type `thread apply all bt` within gdb in order to obtain the stack trace
* If however the core dumps or segfaults:
Enter `ulimit -c unlimited` on the command line to enable unlimited filesizes for core dumps
Enter `echo core | sudo tee /proc/sys/kernel/core_pattern` to stop cores from being hijacked by other tools
Run the build.
When it terminates with an output along the lines of "Segmentation fault (core dumped)", there should be a core dump file in the same directory as monerod. It may be named just `core`, or `core.xxxx` with numbers appended.
You can now analyse this core dump with `gdb` as follows:
```bash
gdb /path/to/monerod /path/to/dumpfile`
HiddenServiceDir [installation directory]/Browser/TorBrowser/Data/Tor/wow_node
HiddenServiceVersion 3
HiddenServicePort 44568 127.0.0.1:44568
```
* Save `torrc` file and restart Tor Browser (keep open)
* Change directory to the `wow_node` folder, open `hostname` file, and copy your node's ".onion" address
* Start wownerod with the following parameters:
Print the stack trace with `bt`
* If a program crashed and cores are managed by systemd, the following can also get a stack trace for that crash:
```bash
coredumpctl -1 gdb
```
#### To run Monero within gdb:
Type `gdb /path/to/monerod`
Pass command-line options with `--args` followed by the relevant arguments
Type `run` to run monerod
### Analysing memory corruption
There are two tools available:
#### ASAN
Configure Monero with the -D SANITIZE=ON cmake flag, eg:
```bash
cd build/debug && cmake -D SANITIZE=ON -D CMAKE_BUILD_TYPE=Debug ../..
./wownerod --tx-proxy tor,127.0.0.1:9150,10 --add-peer hdps3qwnusz64r7odvynmae6myc2uyvrsc2emap6636qeuzll72eouid.onion:44568 --anonymous-inbound YOUR_NODE_ADDRESS.onion:44568,127.0.0.1:44568,25
```
You can then run the monero tools normally. Performance will typically halve.
#### valgrind
Install valgrind and run as `valgrind /path/to/monerod`. It will be very slow.
### LMDB
Instructions for debugging suspected blockchain corruption as per @HYC
### Access remote Tor node from CLI wallet
There is an `mdb_stat` command in the LMDB source that can print statistics about the database but it's not routinely built. This can be built with the following command:
```bash
cd ~/monero/external/db_drivers/liblmdb && make
```
./wownero-wallet-cli --proxy 127.0.0.1:9150 --daemon-address wow7dhbgiljnkspkzpjyy66auegbrye2ptfv4gucgbhireg5rrjza5ad.onion:34568
```
The output of `mdb_stat -ea <path to blockchain dir>` will indicate inconsistencies in the blocks, block_heights and block_info table.
The output of `mdb_dump -s blocks <path to blockchain dir>` and `mdb_dump -s block_info <path to blockchain dir>` is useful for indicating whether blocks and block_info contain the same keys.
These records are dumped as hex data, where the first line is the key and the second line is the data.
# Known Issues
## Protocols
### Socket-based
Because of the nature of the socket-based protocols that drive monero, certain protocol weaknesses are somewhat unavoidable at this time. While these weaknesses can theoretically be fully mitigated, the effort required (the means) may not justify the ends. As such, please consider taking the following precautions if you are a monero node operator:
- Run `monerod` on a "secured" machine. If operational security is not your forte, at a very minimum, have a dedicated a computer running `monerod` and **do not** browse the web, use email clients, or use any other potentially harmful apps on your `monerod` machine. **Do not click links or load URL/MUA content on the same machine**. Doing so may potentially exploit weaknesses in commands which accept "localhost" and "127.0.0.1".
- If you plan on hosting a public "remote" node, start `monerod` with `--restricted-rpc`. This is a must.
### Blockchain-based
Certain blockchain "features" can be considered "bugs" if misused correctly. Consequently, please consider the following:
- When receiving monero, be aware that it may be locked for an arbitrary time if the sender elected to, preventing you from spending that monero until the lock time expires. You may want to hold off acting upon such a transaction until the unlock time lapses. To get a sense of that time, you can consider the remaining blocktime until unlock as seen in the `show_transfers` command.
Use port `9050` instead of `9150` if you installed Tor as a standalone daemon. For more information, check out [ANONYMITY_NETWORKS](https://git.wownero.com/wownero/wownero/src/branch/master/ANONYMITY_NETWORKS.md).

@ -28,7 +28,7 @@
function (write_version tag)
set(VERSIONTAG "${tag}" CACHE STRING "The tag portion of the Monero software version" FORCE)
configure_file("${CMAKE_SOURCE_DIR}/src/version.cpp.in" "${CMAKE_BINARY_DIR}/version.cpp")
configure_file("${CMAKE_CURRENT_LIST_DIR}/../src/version.cpp.in" "${CMAKE_BINARY_DIR}/version.cpp")
endfunction ()
find_package(Git QUIET)

@ -1,18 +1,18 @@
PACKAGE=qt
$(package)_version=5.7.1
$(package)_download_path=http://linorg.usp.br/Qt/archive/qt/5.7/5.7.1/submodules
$(package)_suffix=opensource-src-$($(package)_version).tar.gz
$(package)_version=5.15.1
$(package)_download_path=https://download.qt.io/official_releases/qt/5.15/$($(package)_version)/submodules
$(package)_suffix=everywhere-src-$($(package)_version).tar.xz
$(package)_file_name=qtbase-$($(package)_suffix)
$(package)_sha256_hash=95f83e532d23b3ddbde7973f380ecae1bac13230340557276f75f2e37984e410
$(package)_sha256_hash=33960404d579675b7210de103ed06a72613bfc4305443e278e2d32a3eb1f3d8c
$(package)_build_subdir=qtbase
$(package)_qt_libs=corelib
$(package)_patches=pidlist_absolute.patch fix_qt_pkgconfig.patch qfixed-coretext.patch
$(package)_patches=fix_qt_pkgconfig.patch fix_no_printer.patch fix_rcc_determinism.patch no-xlib.patch
$(package)_qttranslations_file_name=qttranslations-$($(package)_suffix)
$(package)_qttranslations_sha256_hash=3a15aebd523c6d89fb97b2d3df866c94149653a26d27a00aac9b6d3020bc5a1d
$(package)_qttranslations_sha256_hash=46e0c0e3a511fbcc803a4146204062e47f6ed43b34d98a3c27372a03b8746bd8
$(package)_qttools_file_name=qttools-$($(package)_suffix)
$(package)_qttools_sha256_hash=22d67de915cb8cd93e16fdd38fa006224ad9170bd217c2be1e53045a8dd02f0f
$(package)_qttools_sha256_hash=c98ee5f0f980bf68cbf0c94d62434816a92441733de50bd9adbe9b9055f03498
$(package)_extra_sources = $($(package)_qttranslations_file_name)
$(package)_extra_sources += $($(package)_qttools_file_name)
@ -24,28 +24,26 @@ $(package)_config_opts += -bindir $(build_prefix)/bin
$(package)_config_opts += -c++std c++11
$(package)_config_opts += -confirm-license
$(package)_config_opts += -dbus-runtime
$(package)_config_opts += -no-alsa
$(package)_config_opts += -no-audio-backend
$(package)_config_opts += -hostprefix $(build_prefix)
$(package)_config_opts += -no-compile-examples
$(package)_config_opts += -no-cups
$(package)_config_opts += -no-egl
$(package)_config_opts += -no-eglfs
$(package)_config_opts += -no-feature-style-windowsmobile
$(package)_config_opts += -no-feature-style-windowsce
$(package)_config_opts += -no-evdev
$(package)_config_opts += -no-gui
$(package)_config_opts += -no-freetype
$(package)_config_opts += -no-gif
$(package)_config_opts += -no-glib
$(package)_config_opts += -no-gstreamer
$(package)_config_opts += -no-icu
$(package)_config_opts += -no-ico
$(package)_config_opts += -no-iconv
$(package)_config_opts += -no-kms
$(package)_config_opts += -no-linuxfb
$(package)_config_opts += -no-libjpeg
$(package)_config_opts += -no-libudev
$(package)_config_opts += -no-mitshm
$(package)_config_opts += -no-mtdev
$(package)_config_opts += -no-pulseaudio
$(package)_config_opts += -no-openvg
$(package)_config_opts += -no-reduce-relocations
$(package)_config_opts += -no-qml-debug
$(package)_config_opts += -no-sql-db2
$(package)_config_opts += -no-sql-ibase
$(package)_config_opts += -no-sql-oci
@ -56,8 +54,6 @@ $(package)_config_opts += -no-sql-psql
$(package)_config_opts += -no-sql-sqlite
$(package)_config_opts += -no-sql-sqlite2
$(package)_config_opts += -no-use-gold-linker
$(package)_config_opts += -no-xinput2
$(package)_config_opts += -no-xrender
$(package)_config_opts += -nomake examples
$(package)_config_opts += -nomake tests
$(package)_config_opts += -opensource
@ -65,25 +61,46 @@ $(package)_config_opts += -no-openssl
$(package)_config_opts += -optimized-qmake
$(package)_config_opts += -pch
$(package)_config_opts += -pkg-config
$(package)_config_opts += -prefix $(host_prefix)
$(package)_config_opts += -no-libpng
$(package)_config_opts += -no-libjpeg
$(package)_config_opts += -qt-pcre
$(package)_config_opts += -qt-harfbuzz
$(package)_config_opts += -no-zlib
$(package)_config_opts += -reduce-exports
$(package)_config_opts += -static
$(package)_config_opts += -silent
$(package)_config_opts += -v
$(package)_config_opts += -no-feature-printer
$(package)_config_opts += -no-feature-bearermanagement
$(package)_config_opts += -no-feature-colordialog
$(package)_config_opts += -no-feature-dial
$(package)_config_opts += -no-feature-filesystemwatcher
$(package)_config_opts += -no-feature-fontcombobox
$(package)_config_opts += -no-feature-ftp
$(package)_config_opts += -no-feature-image_heuristic_mask
$(package)_config_opts += -no-feature-keysequenceedit
$(package)_config_opts += -no-feature-lcdnumber
$(package)_config_opts += -no-feature-pdf
$(package)_config_opts += -no-feature-printdialog
$(package)_config_opts += -no-gui
$(package)_config_opts += -no-freetype
$(package)_config_opts += -no-sm
$(package)_config_opts += -no-fontconfig
$(package)_config_opts += -no-opengl
$(package)_config_opts += -no-xkb
$(package)_config_opts += -no-xcb
$(package)_config_opts += -no-xshape
$(package)_build_env = QT_RCC_TEST=1
$(package)_config_opts += -no-feature-printer
$(package)_config_opts += -no-feature-printpreviewdialog
$(package)_config_opts += -no-feature-printpreviewwidget
$(package)_config_opts += -no-feature-sessionmanager
$(package)_config_opts += -no-feature-sql
$(package)_config_opts += -no-feature-statemachine
$(package)_config_opts += -no-feature-syntaxhighlighter
$(package)_config_opts += -no-feature-textbrowser
$(package)_config_opts += -no-feature-textodfwriter
$(package)_config_opts += -no-feature-topleveldomain
$(package)_config_opts += -no-feature-udpsocket
$(package)_config_opts += -no-feature-undocommand
$(package)_config_opts += -no-feature-undogroup
$(package)_config_opts += -no-feature-undostack
$(package)_config_opts += -no-feature-undoview
$(package)_config_opts += -no-feature-vnc
$(package)_config_opts += -no-feature-wizard
$(package)_config_opts_linux = -no-fontconfig
$(package)_config_opts_linux += -no-opengl
$(package)_config_opts_linux += -no-xcb
$(package)_config_opts_linux += -no-feature-xlib
endef
define $(package)_fetch_cmds
@ -108,14 +125,24 @@ endef
define $(package)_preprocess_cmds
sed -i.old "s|FT_Get_Font_Format|FT_Get_X11_Font_Format|" qtbase/src/platformsupport/fontdatabases/freetype/qfontengine_ft.cpp && \
sed -i.old "s|updateqm.commands = \$$$$\$$$$LRELEASE|updateqm.commands = $($(package)_extract_dir)/qttools/bin/lrelease|" qttranslations/translations/translations.pro && \
sed -i.old "/updateqm.depends =/d" qttranslations/translations/translations.pro && \
patch -p1 < $($(package)_patch_dir)/pidlist_absolute.patch && \
patch -p1 < $($(package)_patch_dir)/fix_qt_pkgconfig.patch && \
patch -p1 < $($(package)_patch_dir)/qfixed-coretext.patch && \
sed -i.old "s/src_plugins.depends = src_sql src_network/src_plugins.depends = src_network/" qtbase/src/src.pro && \
cp -r qtbase/mkspecs/linux-arm-gnueabi-g++ qtbase/mkspecs/bitcoin-linux-g++ && \
sed -i.old "s/arm-linux-gnueabi-/$(host)-/g" qtbase/mkspecs/bitcoin-linux-g++/qmake.conf && \
patch -p1 -i $($(package)_patch_dir)/fix_qt_pkgconfig.patch && \
patch -p1 -i $($(package)_patch_dir)/fix_no_printer.patch && \
echo "!host_build: QMAKE_CFLAGS += $($(package)_cflags) $($(package)_cppflags)" >> qtbase/mkspecs/common/gcc-base.conf && \
echo "!host_build: QMAKE_CXXFLAGS += $($(package)_cxxflags) $($(package)_cppflags)" >> qtbase/mkspecs/common/gcc-base.conf && \
echo "!host_build: QMAKE_LFLAGS += $($(package)_ldflags)" >> qtbase/mkspecs/common/gcc-base.conf
echo "!host_build: QMAKE_LFLAGS += $($(package)_ldflags)" >> qtbase/mkspecs/common/gcc-base.conf && \
patch -p1 -i $($(package)_patch_dir)/no-xlib.patch && \
echo "QMAKE_LINK_OBJECT_MAX = 10" >> qtbase/mkspecs/win32-g++/qmake.conf && \
echo "QMAKE_LINK_OBJECT_SCRIPT = object_script" >> qtbase/mkspecs/win32-g++/qmake.conf && \
sed -i.old "s|QMAKE_CFLAGS += |!host_build: QMAKE_CFLAGS = $($(package)_cflags) $($(package)_cppflags) |" qtbase/mkspecs/win32-g++/qmake.conf && \
sed -i.old "s|QMAKE_CXXFLAGS += |!host_build: QMAKE_CXXFLAGS = $($(package)_cxxflags) $($(package)_cppflags) |" qtbase/mkspecs/win32-g++/qmake.conf && \
sed -i.old "0,/^QMAKE_LFLAGS_/s|^QMAKE_LFLAGS_|!host_build: QMAKE_LFLAGS = $($(package)_ldflags)\n&|" qtbase/mkspecs/win32-g++/qmake.conf && \
sed -i.old "s/LIBRARY_PATH/(CROSS_)?\0/g" qtbase/mkspecs/features/toolchain.prf
endef
define $(package)_config_cmds

@ -0,0 +1,19 @@
--- x/qtbase/src/plugins/platforms/cocoa/qprintengine_mac_p.h
+++ y/qtbase/src/plugins/platforms/cocoa/qprintengine_mac_p.h
@@ -52,6 +52,7 @@
//
#include <QtCore/qglobal.h>
+#include <qpa/qplatformprintdevice.h>
#ifndef QT_NO_PRINTER
--- x/qtbase/src/plugins/plugins.pro
+++ y/qtbase/src/plugins/plugins.pro
@@ -9,6 +9,3 @@ qtHaveModule(gui) {
!android:qtConfig(library): SUBDIRS *= generic
}
qtHaveModule(widgets): SUBDIRS += styles
-
-!winrt:qtHaveModule(printsupport): \
- SUBDIRS += printsupport

@ -1,11 +1,11 @@
--- old/qtbase/mkspecs/features/qt_module.prf
+++ new/qtbase/mkspecs/features/qt_module.prf
@@ -245,7 +245,7 @@
@@ -269,7 +269,7 @@ load(qt_installs)
load(qt_targets)
# this builds on top of qt_common
-!internal_module:!lib_bundle:if(unix|mingw) {
+unix|mingw {
-!internal_module:if(unix|mingw):!if(darwin:debug_and_release:CONFIG(debug, debug|release)) {
+if(unix|mingw):!if(darwin:debug_and_release:CONFIG(debug, debug|release)) {
CONFIG += create_pc
QMAKE_PKGCONFIG_DESTDIR = pkgconfig
host_build: \

@ -0,0 +1,15 @@
--- old/qtbase/src/tools/rcc/rcc.cpp
+++ new/qtbase/src/tools/rcc/rcc.cpp
@@ -207,7 +207,11 @@ void RCCFileInfo::writeDataInfo(RCCResourceLibrary &lib)
if (lib.formatVersion() >= 2) {
// last modified time stamp
const QDateTime lastModified = m_fileInfo.lastModified();
- lib.writeNumber8(quint64(lastModified.isValid() ? lastModified.toMSecsSinceEpoch() : 0));
+ quint64 lastmod = quint64(lastModified.isValid() ? lastModified.toMSecsSinceEpoch() : 0);
+ static const quint64 sourceDate = 1000 * qgetenv("QT_RCC_SOURCE_DATE_OVERRIDE").toULongLong();
+ if (sourceDate != 0)
+ lastmod = sourceDate;
+ lib.writeNumber8(lastmod);
if (text || pass1)
lib.writeChar('\n');
}

@ -0,0 +1,69 @@
From 9563cef873ae82e06f60708d706d054717e801ce Mon Sep 17 00:00:00 2001
From: Carl Dong <contact@carldong.me>
Date: Thu, 18 Jul 2019 17:22:05 -0400
Subject: [PATCH] Wrap xlib related code blocks in #if's
They are not necessary to compile QT.
---
qtbase/src/plugins/platforms/xcb/qxcbcursor.cpp | 8 ++++++++
1 file changed, 8 insertions(+)
diff --git a/qtbase/src/plugins/platforms/xcb/qxcbcursor.cpp b/qtbase/src/plugins/platforms/xcb/qxcbcursor.cpp
index 7c62c2e2b3..c05c6c0a07 100644
--- a/qtbase/src/plugins/platforms/xcb/qxcbcursor.cpp
+++ b/qtbase/src/plugins/platforms/xcb/qxcbcursor.cpp
@@ -49,7 +49,9 @@
#include <QtGui/QWindow>
#include <QtGui/QBitmap>
#include <QtGui/private/qguiapplication_p.h>
+#if QT_CONFIG(xcb_xlib) && QT_CONFIG(library)
#include <X11/cursorfont.h>
+#endif
#include <xcb/xfixes.h>
#include <xcb/xcb_image.h>
@@ -391,6 +393,7 @@ void QXcbCursor::changeCursor(QCursor *cursor, QWindow *window)
xcb_flush(xcb_connection());
}
+#if QT_CONFIG(xcb_xlib) && QT_CONFIG(library)
static int cursorIdForShape(int cshape)
{
int cursorId = 0;
@@ -444,6 +447,7 @@ static int cursorIdForShape(int cshape)
}
return cursorId;
}
+#endif
xcb_cursor_t QXcbCursor::createNonStandardCursor(int cshape)
{
@@ -556,7 +560,9 @@ static xcb_cursor_t loadCursor(void *dpy, int cshape)
xcb_cursor_t QXcbCursor::createFontCursor(int cshape)
{
xcb_connection_t *conn = xcb_connection();
+#if QT_CONFIG(xcb_xlib) && QT_CONFIG(library)
int cursorId = cursorIdForShape(cshape);
+#endif
xcb_cursor_t cursor = XCB_NONE;
// Try Xcursor first
@@ -586,6 +592,7 @@ xcb_cursor_t QXcbCursor::createFontCursor(int cshape)
// Non-standard X11 cursors are created from bitmaps
cursor = createNonStandardCursor(cshape);
+#if QT_CONFIG(xcb_xlib) && QT_CONFIG(library)
// Create a glpyh cursor if everything else failed
if (!cursor && cursorId) {
cursor = xcb_generate_id(conn);
@@ -593,6 +600,7 @@ xcb_cursor_t QXcbCursor::createFontCursor(int cshape)
cursorId, cursorId + 1,
0xFFFF, 0xFFFF, 0xFFFF, 0, 0, 0);
}
+#endif
if (cursor && cshape >= 0 && cshape < Qt::LastCursor && connection()->hasXFixes()) {
const char *name = cursorNames[cshape].front();
---
2.22.0

@ -1,37 +0,0 @@
diff -dur old/qtbase/src/plugins/platforms/windows/qwindowscontext.h new/qtbase/src/plugins/platforms/windows/qwindowscontext.h
--- old/qtbase/src/plugins/platforms/windows/qwindowscontext.h
+++ new/qtbase/src/plugins/platforms/windows/qwindowscontext.h
@@ -136,10 +136,18 @@
inline void init();
typedef HRESULT (WINAPI *SHCreateItemFromParsingName)(PCWSTR, IBindCtx *, const GUID&, void **);
+#if defined(Q_CC_MINGW) && (!defined(__MINGW64_VERSION_MAJOR) || __MINGW64_VERSION_MAJOR < 3)
+ typedef HRESULT (WINAPI *SHGetKnownFolderIDList)(const GUID &, DWORD, HANDLE, ITEMIDLIST **);
+#else
typedef HRESULT (WINAPI *SHGetKnownFolderIDList)(const GUID &, DWORD, HANDLE, PIDLIST_ABSOLUTE *);
+#endif
typedef HRESULT (WINAPI *SHGetStockIconInfo)(int , int , _SHSTOCKICONINFO *);
typedef HRESULT (WINAPI *SHGetImageList)(int, REFIID , void **);
+#if defined(Q_CC_MINGW) && (!defined(__MINGW64_VERSION_MAJOR) || __MINGW64_VERSION_MAJOR < 3)
+ typedef HRESULT (WINAPI *SHCreateItemFromIDList)(const ITEMIDLIST *, REFIID, void **);
+#else
typedef HRESULT (WINAPI *SHCreateItemFromIDList)(PCIDLIST_ABSOLUTE, REFIID, void **);
+#endif
SHCreateItemFromParsingName sHCreateItemFromParsingName;
SHGetKnownFolderIDList sHGetKnownFolderIDList;
diff -dur old/qtbase/src/plugins/platforms/windows/qwindowsdialoghelpers.cpp new/qtbase/src/plugins/platforms/windows/qwindowsdialoghelpers.cpp
--- old/qtbase/src/plugins/platforms/windows/qwindowsdialoghelpers.cpp
+++ new/qtbase/src/plugins/platforms/windows/qwindowsdialoghelpers.cpp
@@ -1016,7 +1016,11 @@
qWarning() << __FUNCTION__ << ": Invalid CLSID: " << url.path();
return Q_NULLPTR;
}
+#if defined(Q_CC_MINGW) && (!defined(__MINGW64_VERSION_MAJOR) || __MINGW64_VERSION_MAJOR < 3)
+ ITEMIDLIST *idList;
+#else
PIDLIST_ABSOLUTE idList;
+#endif
HRESULT hr = QWindowsContext::shell32dll.sHGetKnownFolderIDList(uuid, 0, 0, &idList);
if (FAILED(hr)) {
qErrnoWarning("%s: SHGetKnownFolderIDList(%s)) failed", __FUNCTION__, qPrintable(url.toString()));

@ -1,34 +0,0 @@
From dbdd5f0ffbce52c8b789ed09f1aa3f1da6c02e23 Mon Sep 17 00:00:00 2001
From: Gabriel de Dietrich <gabriel.dedietrich@qt.io>
Date: Fri, 30 Mar 2018 11:58:16 -0700
Subject: [PATCH] QCoreTextFontEngine: Fix build with Xcode 9.3
Apple LLVM version 9.1.0 (clang-902.0.39.1)
Error message:
.../qfontengine_coretext.mm:827:20: error: qualified reference to
'QFixed' is a constructor name rather than a type in this context
return QFixed::QFixed(int(CTFontGetUnitsPerEm(ctfont)));
Change-Id: Iebe26b3b087a16b10664208fc8851cbddb47f043
Reviewed-by: Konstantin Ritt <ritt.ks@gmail.com>
---
src/platformsupport/fontdatabases/mac/qfontengine_coretext.mm | 2 +-
1 file changed, 1 insertion(+), 1 deletion(-)
diff --git old/qtbase/src/platformsupport/fontdatabases/mac/qfontengine_coretext.mm new/qtbase/src/platformsupport/fontdatabases/mac/qfontengine_coretext.mm
index 25ff69d877d..98b753eff96 100644
--- old/qtbase/src/platformsupport/fontdatabases/mac/qfontengine_coretext.mm
+++ new/qtbase/src/platformsupport/fontdatabases/mac/qfontengine_coretext.mm
@@ -824,7 +824,7 @@ void QCoreTextFontEngine::getUnscaledGlyph(glyph_t glyph, QPainterPath *path, gl
QFixed QCoreTextFontEngine::emSquareSize() const
{
- return QFixed::QFixed(int(CTFontGetUnitsPerEm(ctfont)));
+ return QFixed(int(CTFontGetUnitsPerEm(ctfont)));
}
QFontEngine *QCoreTextFontEngine::cloneWithSize(qreal pixelSize) const
--
2.16.3

@ -51,6 +51,7 @@ rdln::readline_buffer::readline_buffer()
void rdln::readline_buffer::start()
{
boost::lock_guard<boost::mutex> lock(sync_mutex);
if(m_cout_buf != NULL)
return;
m_cout_buf = std::cout.rdbuf();
@ -60,6 +61,7 @@ void rdln::readline_buffer::start()
void rdln::readline_buffer::stop()
{
boost::lock_guard<boost::mutex> lock(sync_mutex);
if(m_cout_buf == NULL)
return;
std::cout.rdbuf(m_cout_buf);
@ -88,9 +90,9 @@ rdln::linestatus rdln::readline_buffer::get_line(std::string& line) const
void rdln::readline_buffer::set_prompt(const std::string& prompt)
{
boost::lock_guard<boost::mutex> lock(sync_mutex);
if(m_cout_buf == NULL)
return;
boost::lock_guard<boost::mutex> lock(sync_mutex);
rl_set_prompt(std::string(m_prompt_length, ' ').c_str());
rl_redisplay();
rl_set_prompt(prompt.c_str());
@ -113,6 +115,12 @@ const std::vector<std::string>& rdln::readline_buffer::get_completions()
int rdln::readline_buffer::sync()
{
boost::lock_guard<boost::mutex> lock(sync_mutex);
if (m_cout_buf == nullptr)
{
return -1;
}
#if RL_READLINE_VERSION < 0x0700
char lbuf[2] = {0,0};
char *line = NULL;

@ -1,5 +1,5 @@
---
name: "monero-android-0.17"
name: "wownero-android-0.9"
enable_cache: true
suites:
- "bionic"
@ -32,8 +32,8 @@ packages:
- "python3-zmq"
- "unzip"
remotes:
- "url": "https://github.com/monero-project/monero.git"
"dir": "monero"
- "url": "https://git.wownero.com/wownero/wownero.git"
"dir": "wownero"
files: []
script: |
@ -75,7 +75,7 @@ script: |
then
ABI=$i"eabi"
fi
NDKDIR="${BUILD_DIR}/monero/contrib/depends/$i/native/bin"
NDKDIR="${BUILD_DIR}/wownero/contrib/depends/$i/native/bin"
for prog in ${FAKETIME_HOST_PROGS}; do
WRAPPER=${WRAP_DIR}/${ABI}-${prog}
echo '#!/usr/bin/env bash' > ${WRAPPER}
@ -97,7 +97,7 @@ script: |
export SOURCE_DATE_EPOCH=`date -d 2000-01-01T12:00:00 +%s`
git config --global core.abbrev 9
cd monero
cd wownero
# Set the version string that gets added to the tar archive name
version="`git describe`"
if [[ $version == *"-"*"-"* ]]; then
@ -127,7 +127,7 @@ script: |
chmod 755 bin/*
cp ../LICENSE bin
chmod 644 bin/LICENSE
DISTNAME=monero-${i}-${version}
DISTNAME=wownero-${i}-${version}
mv bin ${DISTNAME}
find ${DISTNAME}/ | sort | tar --no-recursion --owner=0 --group=0 -c -T - | bzip2 -9 > ${OUTDIR}/${DISTNAME}.tar.bz2
cd ..

@ -5,8 +5,8 @@ import os
import subprocess
import sys
gsigs = 'https://github.com/monero-project/gitian.sigs.git'
gbrepo = 'https://github.com/devrandom/gitian-builder.git'
gsigs = 'https://git.wownero.com/qvqc/gitian.sigs.git'
gbrepo = 'https://git.wownero.com/qvqc/gitian-builder.git'
platforms = {'l': ['Linux', 'linux', 'tar.bz2'],
'a': ['Android', 'android', 'tar.bz2'],
@ -31,8 +31,8 @@ def setup():
subprocess.check_call(['git', 'checkout', 'c0f77ca018cb5332bfd595e0aff0468f77542c23'])
os.makedirs('inputs', exist_ok=True)
os.chdir('inputs')
if not os.path.isdir('monero'):
subprocess.check_call(['git', 'clone', args.url, 'monero'])
if not os.path.isdir('wownero'):
subprocess.check_call(['git', 'clone', args.url, 'wownero'])
os.chdir('..')
make_image_prog = ['bin/make-base-vm', '--suite', 'bionic', '--arch', 'amd64']
if args.docker:
@ -67,10 +67,10 @@ def rebuild():
suffix = platforms[i][2]
print('\nCompiling ' + args.version + ' ' + os_name)
infile = 'inputs/monero/contrib/gitian/gitian-' + tag_name + '.yml'
subprocess.check_call(['bin/gbuild', '-j', args.jobs, '-m', args.memory, '--commit', 'monero='+args.commit, '--url', 'monero='+args.url, infile])
infile = 'inputs/wownero/contrib/gitian/gitian-' + tag_name + '.yml'
subprocess.check_call(['bin/gbuild', '-j', args.jobs, '-m', args.memory, '--commit', 'wownero='+args.commit, '--url', 'wownero='+args.url, infile])
subprocess.check_call(['bin/gsign', '-p', args.sign_prog, '--signer', args.signer, '--release', args.version+'-'+tag_name, '--destination', '../sigs/', infile])
subprocess.check_call('mv build/out/monero-*.' + suffix + ' ../out/'+args.version, shell=True)
subprocess.check_call('mv build/out/wownero-*.' + suffix + ' ../out/'+args.version, shell=True)
print('Moving var/install.log to var/install-' + tag_name + '.log')
subprocess.check_call('mv var/install.log var/install-' + tag_name + '.log', shell=True)
print('Moving var/build.log to var/build-' + tag_name + '.log')
@ -98,7 +98,7 @@ def build():
subprocess.check_call(['wget', '-N', '-P', 'inputs', 'https://bitcoincore.org/cfields/osslsigncode-Backports-to-1.7.1.patch'])
subprocess.check_output(["echo 'a8c4e9cafba922f89de0df1f2152e7be286aba73f78505169bc351a7938dd911 inputs/osslsigncode-Backports-to-1.7.1.patch' | sha256sum -c"], shell=True)
subprocess.check_output(["echo 'f9a8cdb38b9c309326764ebc937cba1523a3a751a7ab05df3ecc99d18ae466c9 inputs/osslsigncode-1.7.1.tar.gz' | sha256sum -c"], shell=True)
subprocess.check_call(['make', '-C', 'inputs/monero/contrib/depends', 'download', 'SOURCES_PATH=' + os.getcwd() + '/cache/common'])
subprocess.check_call(['make', '-C', 'inputs/wownero/contrib/depends', 'download', 'SOURCES_PATH=' + os.getcwd() + '/cache/common'])
rebuild()
@ -109,7 +109,7 @@ def verify():
for i, v in platforms:
print('\nVerifying v'+args.version+' '+v[0]+'\n')
subprocess.check_call(['bin/gverify', '-v', '-d', '../sigs/', '-r', args.version+'-'+v[1], 'inputs/monero/contrib/gitian/gitian-'+v[1]+'.yml'])
subprocess.check_call(['bin/gverify', '-v', '-d', '../sigs/', '-r', args.version+'-'+v[1], 'inputs/wownero/contrib/gitian/gitian-'+v[1]+'.yml'])
os.chdir(workdir)
def main():
@ -118,7 +118,7 @@ def main():
parser = argparse.ArgumentParser(description='Script for running full Gitian builds.', usage='%(prog)s [options] signer version')
parser.add_argument('-c', '--commit', action='store_true', dest='commit', help='Indicate that the version argument is for a commit or branch')
parser.add_argument('-p', '--pull', action='store_true', dest='pull', help='Indicate that the version argument is the number of a github repository pull request')
parser.add_argument('-u', '--url', dest='url', default='https://github.com/monero-project/monero', help='Specify the URL of the repository. Default is %(default)s')
parser.add_argument('-u', '--url', dest='url', default='https://git.wownero.com/wownero/wownero', help='Specify the URL of the repository. Default is %(default)s')
parser.add_argument('-v', '--verify', action='store_true', dest='verify', help='Verify the Gitian build')
parser.add_argument('-b', '--build', action='store_true', dest='build', help='Do a Gitian build')
parser.add_argument('-B', '--buildsign', action='store_true', dest='buildsign', help='Build both signed and unsigned binaries')
@ -190,8 +190,8 @@ def main():
if args.setup:
setup()
os.makedirs('builder/inputs/monero', exist_ok=True)
os.chdir('builder/inputs/monero')
os.makedirs('builder/inputs/wownero', exist_ok=True)
os.chdir('builder/inputs/wownero')
if args.pull:
subprocess.check_call(['git', 'fetch', args.url, 'refs/pull/'+args.version+'/merge'])
args.commit = subprocess.check_output(['git', 'show', '-s', '--format=%H', 'FETCH_HEAD'], universal_newlines=True).strip()

@ -1,5 +1,5 @@
---
name: "monero-freebsd-0.17"
name: "wownero-freebsd-0.9"
enable_cache: true
suites:
- "bionic"
@ -32,8 +32,8 @@ packages:
- "libprotobuf-dev"
- "python3-zmq"
remotes:
- "url": "https://github.com/monero-project/monero.git"
"dir": "monero"
- "url": "https://git.wownero.com/wownero/wownero.git"
"dir": "wownero"
files: []
script: |
@ -92,7 +92,7 @@ script: |
export SOURCE_DATE_EPOCH=`date -d 2000-01-01T12:00:00 +%s`
git config --global core.abbrev 9
cd monero
cd wownero
# Set the version string that gets added to the tar archive name
version="`git describe`"
if [[ $version == *"-"*"-"* ]]; then
@ -119,12 +119,12 @@ script: |
for i in ${HOSTS}; do
export PATH=${WRAP_DIR}:${BASEPREFIX}/${i}/native/bin:${ORIGPATH}
mkdir build && cd build
cmake .. -DCMAKE_TOOLCHAIN_FILE=${BASEPREFIX}/${i}/share/toolchain.cmake -DCMAKE_BUILD_TYPE=Release
cmake .. -DCMAKE_TOOLCHAIN_FILE=${BASEPREFIX}/${i}/share/toolchain.cmake -DCMAKE_BUILD_TYPE=Release -DCMAKE_SKIP_RPATH=ON
make ${MAKEOPTS}
chmod 755 bin/*
cp ../LICENSE bin
chmod 644 bin/LICENSE
DISTNAME=monero-${i}-${version}
DISTNAME=wownero-${i}-${version}
mv bin ${DISTNAME}
find ${DISTNAME}/ | sort | tar --no-recursion --owner=0 --group=0 -c -T - | bzip2 -9 > ${OUTDIR}/${DISTNAME}.tar.bz2
cd ..

@ -1,5 +1,5 @@
---
name: "monero-linux-0.17"
name: "wownero-linux-0.9"
enable_cache: true
suites:
- "bionic"
@ -43,13 +43,13 @@ packages:
- "libprotobuf-dev"
- "python3-zmq"
remotes:
- "url": "https://github.com/monero-project/monero.git"
"dir": "monero"
- "url": "https://git.wownero.com/wownero/wownero.git"
"dir": "wownero"
files: []
script: |
WRAP_DIR=$HOME/wrapped
HOSTS="x86_64-linux-gnu arm-linux-gnueabihf aarch64-linux-gnu i686-linux-gnu"
HOSTS="x86_64-linux-gnu arm-linux-gnueabihf aarch64-linux-gnu"
FAKETIME_HOST_PROGS=""
FAKETIME_PROGS="date"
HOST_CFLAGS="-O2 -g"
@ -111,11 +111,16 @@ script: |
rm -f $WRAP_DIR/extra_includes/i686-linux-gnu/asm
ln -s /usr/include/x86_64-linux-gnu/asm $EXTRA_INCLUDES_BASE/i686-linux-gnu/asm
# glibc 2.23 breaks compatibility with <=2.19 use of lgamma function.
# Hack the math header to restore the old behavior.
mkdir $EXTRA_INCLUDES_BASE/bits
sed -e '/__REDIRFROM .lgamma,/,+3s/_USE_/_DONTUSE_/g' /usr/include/x86_64-linux-gnu/bits/math-finite.h > $EXTRA_INCLUDES_BASE/bits/math-finite.h
# gcc 7+ honors SOURCE_DATE_EPOCH, no faketime needed
export SOURCE_DATE_EPOCH=`date -d 2000-01-01T12:00:00 +%s`
git config --global core.abbrev 9
cd monero
cd wownero
# Set the version string that gets added to the tar archive name
version="`git describe`"
if [[ $version == *"-"*"-"* ]]; then
@ -127,14 +132,14 @@ script: |
# Build dependencies for each host
export TAR_OPTIONS=--mtime=2000-01-01T12:00:00
for i in $HOSTS; do
EXTRA_INCLUDES="$EXTRA_INCLUDES_BASE/$i"
if [ -d "$EXTRA_INCLUDES" ]; then
export C_INCLUDE_PATH="$EXTRA_INCLUDES"
export CPLUS_INCLUDE_PATH="$EXTRA_INCLUDES"
ARCH_INCLUDES="$EXTRA_INCLUDES_BASE/$i"
if [ -d "$ARCH_INCLUDES" ]; then
EXTRA_INCLUDES="${EXTRA_INCLUDES_BASE}:${ARCH_INCLUDES}"
else
unset C_INCLUDE_PATH
unset CPLUS_INCLUDE_PATH
EXTRA_INCLUDES="${EXTRA_INCLUDES_BASE}"
fi
export C_INCLUDE_PATH="$EXTRA_INCLUDES"
export CPLUS_INCLUDE_PATH="$EXTRA_INCLUDES"
make ${MAKEOPTS} -C ${BASEPREFIX} HOST="${i}" V=1
done
@ -151,20 +156,20 @@ script: |
for i in ${HOSTS}; do
export PATH=${BASEPREFIX}/${i}/native/bin:${ORIGPATH}
mkdir build && cd build
EXTRA_INCLUDES="$EXTRA_INCLUDES_BASE/$i"
if [ -d "$EXTRA_INCLUDES" ]; then
export C_INCLUDE_PATH="$EXTRA_INCLUDES"
export CPLUS_INCLUDE_PATH="$EXTRA_INCLUDES"
ARCH_INCLUDES="$EXTRA_INCLUDES_BASE/$i"
if [ -d "$ARCH_INCLUDES" ]; then
EXTRA_INCLUDES="${EXTRA_INCLUDES_BASE}:${ARCH_INCLUDES}"
else
unset C_INCLUDE_PATH
unset CPLUS_INCLUDE_PATH
EXTRA_INCLUDES="${EXTRA_INCLUDES_BASE}"
fi
cmake .. -DCMAKE_TOOLCHAIN_FILE=${BASEPREFIX}/${i}/share/toolchain.cmake -DBACKCOMPAT=ON
export C_INCLUDE_PATH="$EXTRA_INCLUDES"
export CPLUS_INCLUDE_PATH="$EXTRA_INCLUDES"
cmake .. -DCMAKE_TOOLCHAIN_FILE=${BASEPREFIX}/${i}/share/toolchain.cmake -DBACKCOMPAT=ON -DCMAKE_SKIP_RPATH=ON
make ${MAKEOPTS}
chmod 755 bin/*
cp ../LICENSE bin
chmod 644 bin/LICENSE
DISTNAME=monero-${i}-${version}
DISTNAME=wownero-${i}-${version}
mv bin ${DISTNAME}
find ${DISTNAME}/ | sort | tar --no-recursion --owner=0 --group=0 -c -T - | bzip2 -9 > ${OUTDIR}/${DISTNAME}.tar.bz2
cd ..

@ -1,5 +1,5 @@
---
name: "monero-osx-0.17"
name: "wownero-osx-0.9"
enable_cache: true
suites:
- "bionic"
@ -24,8 +24,8 @@ packages:
- "python-dev"
- "python-setuptools"
remotes:
- "url": "https://github.com/monero-project/monero.git"
"dir": "monero"
- "url": "https://git.wownero.com/wownero/wownero.git"
"dir": "wownero"
files:
- "MacOSX10.11.sdk.tar.gz"
script: |
@ -77,7 +77,7 @@ script: |
export PATH=${WRAP_DIR}:${PATH}
git config --global core.abbrev 9
cd monero
cd wownero
# Set the version string that gets added to the tar archive name
version="`git describe`"
if [[ $version == *"-"*"-"* ]]; then
@ -113,7 +113,7 @@ script: |
chmod 755 bin/*
cp ../LICENSE bin
chmod 644 bin/LICENSE
DISTNAME=monero-${i}-${version}
DISTNAME=wownero-${i}-${version}
mv bin ${DISTNAME}
find ${DISTNAME}/ | sort | tar --no-recursion --owner=0 --group=0 -c -T - | bzip2 -9 > ${OUTDIR}/${DISTNAME}.tar.bz2
cd ..

@ -1,5 +1,5 @@
---
name: "monero-win-0.17"
name: "wownero-win-0.9"
enable_cache: true
suites:
- "bionic"
@ -36,12 +36,12 @@ alternatives:
package: "x86_64-w64-mingw32-gcc"
path: "/usr/bin/x86_64-w64-mingw32-gcc-posix"
remotes:
- "url": "https://github.com/monero-project/monero.git"
"dir": "monero"
- "url": "https://git.wownero.com/wownero/wownero.git"
"dir": "wownero"
files: []
script: |
WRAP_DIR=$HOME/wrapped
HOSTS="i686-w64-mingw32 x86_64-w64-mingw32"
HOSTS="x86_64-w64-mingw32"
FAKETIME_HOST_PROGS="windres objcopy"
FAKETIME_PROGS="date zip"
HOST_CFLAGS="-O2 -g"
@ -91,7 +91,7 @@ script: |
export SOURCE_DATE_EPOCH=`date -d 2000-01-01T12:00:00 +%s`
git config --global core.abbrev 9
cd monero
cd wownero
# Set the version string that gets added to the tar archive name
version="`git describe`"
if [[ $version == *"-"*"-"* ]]; then
@ -128,7 +128,7 @@ script: |
cmake .. -DCMAKE_TOOLCHAIN_FILE=${BASEPREFIX}/${i}/share/toolchain.cmake
make ${MAKEOPTS}
cp ../LICENSE bin
DISTNAME=monero-${i}-${version}
DISTNAME=wownero-${i}-${version}
mv bin ${DISTNAME}
find ${DISTNAME}/ | sort | zip -X@ ${OUTDIR}/${DISTNAME}.zip
cd .. && rm -rf build

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After

Width:  |  Height:  |  Size: 18 KiB

@ -0,0 +1,76 @@
name: wownero
version: 0.5.0.0
summary: "Wownero: the secure, private, untraceable cryptocurrency http://wownero.org"
description: |
Wownero: a fairly launched privacy-centric meme coin with no premine and a finite supply.
grade: devel
confinement: strict
apps:
wownerod:
daemon: forking
command: |
wownerod-wrapper --detach --data-dir ${SNAP_COMMON} --config-file ${SNAP_USER_DATA}/etc/wownerod.conf
plugs:
- network
- network-bind
wownero-wallet-rpc:
command: |
wownero-wallet-rpc --log-file ${SNAP_USER_DATA}
plugs:
- home
- network
- network-bind
wownero-wallet-cli:
command: |
wownero-wallet-cli --log-file ${SNAP_USER_DATA}
plugs:
- home
- network
parts:
cmake-build:
plugin: cmake
configflags:
- -DBDB_STATIC=1
- -DBoost_USE_STATIC_LIBS=1
- -DBoost_USE_STATIC_RUNTIME=1
- -DARCH=default
source: .
build-packages:
- gcc
- pkg-config
- libunbound-dev
- libevent-dev
- libboost-all-dev
- libzmqpp-dev
- libzmq3-dev
- libsodium-dev
- libdb-dev
- libunwind-dev
- libminiupnpc-dev
- libldns-dev
- libexpat1-dev
- libreadline6-dev
- bison
- doxygen
- graphviz
stage-packages:
- libminiupnpc10
- libunbound2
- libunwind8
prime:
- bin
- usr/lib/
- -usr/lib/gcc
- -usr/share
dist-files:
plugin: dump
source: .
organize:
contrib/snap/wownerod.conf: etc/wownerod.conf
contrib/snap/wownerod-wrapper: bin/wownerod-wrapper
prime:
- etc
- bin

@ -0,0 +1,8 @@
#!/bin/sh
if [ ! -d "$SNAP_USER_DATA/etc" ]; then
mkdir $SNAP_USER_DATA/etc/
cp -R $SNAP/etc/wownerod.conf $SNAP_USER_DATA/etc/wownerod.conf
fi
exec "$SNAP/bin/wownerod" "$@"

@ -3,6 +3,8 @@
# Boolean options such as 'no-igd' are specified as 'no-igd=1'.
# See 'monerod --help' for all available options.
data-dir=/var/lib/monero
log-file=/var/log/monero/monero.log
# Overridden by snap:
# data-dir=/var/lib/wownero
# log-file=/var/log/wownero/wownero.log
log-level=0

@ -81,4 +81,4 @@ endif()
add_subdirectory(db_drivers)
add_subdirectory(easylogging++)
add_subdirectory(qrcodegen)
add_subdirectory(randomx EXCLUDE_FROM_ALL)
add_subdirectory(RandomWOW EXCLUDE_FROM_ALL)

@ -0,0 +1 @@
Subproject commit 89b7c02bba9100f5ed60056b1e7a82b742af56ce

1
external/randomx vendored

@ -1 +0,0 @@
Subproject commit 5ce5f4906c1eb166be980f6d83cc80f4112ffc2a

@ -1 +1 @@
Subproject commit 129d19ba7f496df5e33658527a7158c79b99c21c
Subproject commit 3729501db975b74d125f62f18d7bc7b236325f99

@ -1 +0,0 @@
Subproject commit bff7fdfe436c727982cc553bdfb29a9021b423b0

@ -126,15 +126,15 @@ endif()
add_subdirectory(cryptonote_protocol)
if(NOT IOS)
add_subdirectory(simplewallet)
add_subdirectory(gen_multisig)
add_subdirectory(gen_ssl_cert)
add_subdirectory(daemonizer)
add_subdirectory(daemon)
add_subdirectory(blockchain_utilities)
endif()
if(BUILD_DEBUG_UTILITIES)
add_subdirectory(debug_utilities)
add_subdirectory(blockchain_utilities)
add_subdirectory(gen_multisig)
add_subdirectory(gen_ssl_cert)
endif()
if(PER_BLOCK_CHECKPOINT)

@ -453,582 +453,7 @@ void BlockchainDB::fixup()
LOG_PRINT_L1("Database is opened read only - skipping fixup check");
return;
}
// There was a bug that would cause key images for transactions without
// any outputs to not be added to the spent key image set. There are two
// instances of such transactions, in blocks 202612 and 685498.
// The key images below are those from the inputs in those transactions.
// On testnet, there are no such transactions
// See commit 533acc30eda7792c802ea8b6417917fa99b8bc2b for the fix
static const char * const mainnet_genesis_hex = "418015bb9ae982a1975da7d79277c2705727a56894ba0fb246adaabb1f4632e3";
crypto::hash mainnet_genesis_hash;
epee::string_tools::hex_to_pod(mainnet_genesis_hex, mainnet_genesis_hash );
set_batch_transactions(true);
batch_start();
if (get_block_hash_from_height(0) == mainnet_genesis_hash)
{
// block 202612 (511 key images in 511 transactions)
static const char * const key_images_202612[] =
{
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"95d2556c8acd1457dce7bfd9c83b1d82b821a55a9c9588b04b7b5cf562a65949",
"4b5d987fee1bb563a162d23e41741ad73560c003e26a09b6655f09496538daac",
"1d25ea86323d1578579d3894a54b99ea1c3e2dca547c6726c44aef67db958b02",
"92e46fb70be5d9df39ca83c4fc6ae26c594118314bb75502a9c9752a781d0b33",
"924d0cb9060d429be7e59d164a0f80a4dabc3607d44401b26fb93e7182ab435d",
"f63e4a23fec860fd4c3734623891330ac1ff5af251e83a0e6247287818b8a72f",
"5b14c5ef13738d015619b61dacefc2ade3660d25b35ef96330a8f4e2afc26526",
"d5016b012a2fb6ca23fd56ece544d847962264b4aee15efe1465805fd824a8fb",
"0a7f3da1d9dd341cd96829e484b07163099763ac7bd60603b7ee14f7dbcb278d",
"d716c03d7447d2b693f6f61b6ad36bd57344033fc1a11feaf60d569f40014530",
"23154a812e99ce226f6a87087e0812f419aed51289f1c0c359b0b61303b53a36",
"03940341e1a99d5b0c68eacfdf5a20df90d7d0a3d6089d39709cdd964490755c",
"ef09648814cfe071f5d8e9cfde57247ad09409265c4b6c84697bbb046809bd7e",
"8843ec52b0496ca4e895813cfe00bb18ea777d3618e9bd2e200287e888e2f5c7",
"8558bf39baf3df62b5d33cdf97163a365e6c44f4d6deef920730b4982b66449f",
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"6beb64cb024f9c5c988f942177fc9c1ec5ecfa85b7db0f13a17f9f98e8e46fe7",
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"a1c5212730ccda34de393210e276bbd44720dda777bcfd602315a3eee582f7dc",
"08914ec63f6ef7fe1d678937dc0f6178883440b26b4aca29fce79068947e8397",
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"047c194111818b48ce93a4b006e4a09b9a2650757a87357111796e11e847bf23",
"5955b0baa8265341f35a6f24fdc79066ba3ca9c5354c69b6b37a9ef3a26be556",
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"dc3d78f43110d2aa9df83c5485ec33663ad5452b8cdeb1aeeac9d6b1487fb781",
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"bd1f97fd89183643423073f22733880616456ca41960699f18e868cb9ac35508",
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"0e886d49d88b82c9f8dbdd2f38a535992f35ab16629724d746394db3898235fa",
"76c22e965242d1ca5614e829d9028dcad9c4b09393bcbdd318b0365557335fb9",
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"0fa5131557db67b430d516530be939ff25882adf68a076602f3dfad8c77c963a",
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"9746da344e435a008d6acb4847211bb676376ecc76c825b5d44a28b89ceeb40e",
"3eafded1595516f032e33ec975f4c9c3a1055d13aa5575cf8a801d6103fdbeb4",
"e88a6d2daa863c0787cc523a2cab45c546fad788951b10d75e2b0954db24cca7",
"38f531e67f88f66de44d3357c8e8f2db456160ca31dd2024c9562f6afd260278",
};
// block 685498 (13 key images in one transaction)
static const char * const key_images_685498[] =
{
"749b7277aa21c70c417f255fb181c3a30b44277edf657eaaebf28a2709dd2a90",
"5a9b3e1a87332d735cedaa2b5623a6a5e99d99f5a2887c8fc84293577e8bf25c",
"bea438768445eb3650cf619bf6758e94035abfe0ccda91d4a58c582df143d835",
"376e237ff4da5e5cbd6e1bba4b01412fa751f2959c0c57006589f382413df429",
"14ac2f2e044f8635a3a42ecb46c575424073c1f6e5ed5e905f516d57f63184b5",
"2d1d2ecb77b69a2901de00897d0509c1b7855a3b2f8eb1afe419008fc03cd15a",
"ea01658f0972b77ae9112d525ec073e3ec5c3b98d5ad912d95ab2636354b70b6",
"d3934864a46101d8c242415282e7fc9ee73ad16cd40355535d226ab45ecdb61a",
"ee379b05c5d02432330ebd4ea9c4f1c87d14c388568d526a0f8a22649a14e453",
"aeb7b842b410b13ca4af7a5ffd5ae6caddc8bfec653df1b945e478839a2e0057",
"451806929d9f5c3a7f365472703871abadc25b2a5a2d75472a45e86cd76c610b",
"272d9b9fcc9e253c08da9caf8233471150019582eaefef461c1f9ceff7e2c337",
"633cdedeb3b96ec4f234c670254c6f721e0b368d00b48c6b26759db7d62cf52d",
};
if (height() > 202612)
{
for (const auto &kis: key_images_202612)
{
crypto::key_image ki;
epee::string_tools::hex_to_pod(kis, ki);
if (!has_key_image(ki))
{
LOG_PRINT_L1("Fixup: adding missing spent key " << ki);
add_spent_key(ki);
}
}
}
if (height() > 685498)
{
for (const auto &kis: key_images_685498)
{
crypto::key_image ki;
epee::string_tools::hex_to_pod(kis, ki);
if (!has_key_image(ki))
{
LOG_PRINT_L1("Fixup: adding missing spent key " << ki);
add_spent_key(ki);
}
}
}
}
batch_stop();
}
bool BlockchainDB::txpool_tx_matches_category(const crypto::hash& tx_hash, relay_category category)

@ -793,7 +793,7 @@ void BlockchainLMDB::add_block(const block& blk, size_t block_weight, uint64_t l
bi.bi_diff_lo = (cumulative_difficulty & 0xffffffffffffffff).convert_to<uint64_t>();
bi.bi_hash = blk_hash;
bi.bi_cum_rct = num_rct_outs;
if (blk.major_version >= 4)
if (m_height > 0 && blk.major_version >= 4)
{
uint64_t last_height = m_height-1;
MDB_val_set(h, last_height);
@ -1350,7 +1350,7 @@ void BlockchainLMDB::open(const std::string& filename, const int db_flags)
if (is_hdd_result)
{
if (is_hdd_result.value())
MCLOG_RED(el::Level::Warning, "global", "The blockchain is on a rotating drive: this will be very slow, use an SSD if possible");
MCLOG_RED(el::Level::Debug, "global", "The blockchain is on a rotating drive: this will be very slow, use an SSD if possible");
}
m_folder = filename;
@ -1505,7 +1505,7 @@ void BlockchainLMDB::open(const std::string& filename, const int db_flags)
mdb_env_close(m_env);
m_open = false;
MFATAL("Existing lmdb database needs to be converted, which cannot be done on a read-only database.");
MFATAL("Please run monerod once to convert the database.");
MFATAL("Please run wownerod once to convert the database.");
return;
}
// Note that there was a schema change within version 0 as well.

@ -157,7 +157,7 @@ endif()
set_property(TARGET blockchain_import
PROPERTY
OUTPUT_NAME "monero-blockchain-import")
OUTPUT_NAME "wownero-blockchain-import")
install(TARGETS blockchain_import DESTINATION bin)
monero_add_executable(blockchain_export
@ -178,7 +178,7 @@ target_link_libraries(blockchain_export
set_property(TARGET blockchain_export
PROPERTY
OUTPUT_NAME "monero-blockchain-export")
OUTPUT_NAME "wownero-blockchain-export")
install(TARGETS blockchain_export DESTINATION bin)
monero_add_executable(blockchain_blackball
@ -200,7 +200,7 @@ target_link_libraries(blockchain_blackball
set_property(TARGET blockchain_blackball
PROPERTY
OUTPUT_NAME "monero-blockchain-mark-spent-outputs")
OUTPUT_NAME "wownero-blockchain-mark-spent-outputs")
install(TARGETS blockchain_blackball DESTINATION bin)
@ -222,7 +222,7 @@ target_link_libraries(blockchain_usage
set_property(TARGET blockchain_usage
PROPERTY
OUTPUT_NAME "monero-blockchain-usage")
OUTPUT_NAME "wownero-blockchain-usage")
install(TARGETS blockchain_usage DESTINATION bin)
monero_add_executable(blockchain_ancestry
@ -243,7 +243,7 @@ target_link_libraries(blockchain_ancestry
set_property(TARGET blockchain_ancestry
PROPERTY
OUTPUT_NAME "monero-blockchain-ancestry")
OUTPUT_NAME "wownero-blockchain-ancestry")
install(TARGETS blockchain_ancestry DESTINATION bin)
monero_add_executable(blockchain_depth
@ -264,7 +264,7 @@ target_link_libraries(blockchain_depth
set_property(TARGET blockchain_depth
PROPERTY
OUTPUT_NAME "monero-blockchain-depth")
OUTPUT_NAME "wownero-blockchain-depth")
install(TARGETS blockchain_depth DESTINATION bin)
monero_add_executable(blockchain_stats
@ -285,7 +285,7 @@ target_link_libraries(blockchain_stats
set_property(TARGET blockchain_stats
PROPERTY
OUTPUT_NAME "monero-blockchain-stats")
OUTPUT_NAME "wownero-blockchain-stats")
install(TARGETS blockchain_stats DESTINATION bin)
monero_add_executable(blockchain_prune_known_spent_data
@ -307,7 +307,7 @@ target_link_libraries(blockchain_prune_known_spent_data
set_property(TARGET blockchain_prune_known_spent_data
PROPERTY
OUTPUT_NAME "monero-blockchain-prune-known-spent-data")
OUTPUT_NAME "wownero-blockchain-prune-known-spent-data")
install(TARGETS blockchain_prune_known_spent_data DESTINATION bin)
monero_add_executable(blockchain_prune
@ -316,7 +316,7 @@ monero_add_executable(blockchain_prune
set_property(TARGET blockchain_prune
PROPERTY
OUTPUT_NAME "monero-blockchain-prune")
OUTPUT_NAME "wownero-blockchain-prune")
install(TARGETS blockchain_prune DESTINATION bin)
target_link_libraries(blockchain_prune

@ -385,12 +385,12 @@ int main(int argc, char* argv[])
if (command_line::get_arg(vm, command_line::arg_help))
{
std::cout << "Monero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << "Wownero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << desc_options << std::endl;
return 1;
}
mlog_configure(mlog_get_default_log_path("monero-blockchain-ancestry.log"), true);
mlog_configure(mlog_get_default_log_path("wownero-blockchain-ancestry.log"), true);
if (!command_line::is_arg_defaulted(vm, arg_log_level))
mlog_set_log(command_line::get_arg(vm, arg_log_level).c_str());
else

@ -134,7 +134,7 @@ static std::string get_default_db_path()
boost::filesystem::path dir = tools::get_default_data_dir();
// remove .bitmonero, replace with .shared-ringdb
dir = dir.remove_filename();
dir /= ".shared-ringdb";
dir /= ".wow-shared-ringdb";
return dir.string();
}
@ -1183,7 +1183,7 @@ int main(int argc, char* argv[])
const command_line::arg_descriptor<bool> arg_rct_only = {"rct-only", "Only work on ringCT outputs", false};
const command_line::arg_descriptor<bool> arg_check_subsets = {"check-subsets", "Check ring subsets (very expensive)", false};
const command_line::arg_descriptor<bool> arg_verbose = {"verbose", "Verbose output)", false};
const command_line::arg_descriptor<std::vector<std::string> > arg_inputs = {"inputs", "Path to Monero DB, and path to any fork DBs"};
const command_line::arg_descriptor<std::vector<std::string> > arg_inputs = {"inputs", "Path to Wownero DB, and path to any fork DBs"};
const command_line::arg_descriptor<std::string> arg_db_sync_mode = {
"db-sync-mode"
, "Specify sync option, using format [safe|fast|fastest]:[nrecords_per_sync]."
@ -1226,12 +1226,12 @@ int main(int argc, char* argv[])
if (command_line::get_arg(vm, command_line::arg_help))
{
std::cout << "Monero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << "Wownero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << desc_options << std::endl;
return 1;
}
mlog_configure(mlog_get_default_log_path("monero-blockchain-mark-spent-outputs.log"), true);
mlog_configure(mlog_get_default_log_path("wownero-blockchain-mark-spent-outputs.log"), true);
if (!command_line::is_arg_defaulted(vm, arg_log_level))
mlog_set_log(command_line::get_arg(vm, arg_log_level).c_str());
else

@ -87,12 +87,12 @@ int main(int argc, char* argv[])
if (command_line::get_arg(vm, command_line::arg_help))
{
std::cout << "Monero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << "Wownero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << desc_options << std::endl;
return 1;
}
mlog_configure(mlog_get_default_log_path("monero-blockchain-depth.log"), true);
mlog_configure(mlog_get_default_log_path("wownero-blockchain-depth.log"), true);
if (!command_line::is_arg_defaulted(vm, arg_log_level))
mlog_set_log(command_line::get_arg(vm, arg_log_level).c_str());
else

@ -47,6 +47,7 @@ int main(int argc, char* argv[])
epee::string_tools::set_module_name_and_folder(argv[0]);
uint32_t log_level = 0;
uint64_t block_start = 0;
uint64_t block_stop = 0;
bool blocks_dat = false;
@ -58,6 +59,7 @@ int main(int argc, char* argv[])
po::options_description desc_cmd_sett("Command line options and settings options");
const command_line::arg_descriptor<std::string> arg_output_file = {"output-file", "Specify output file", "", true};
const command_line::arg_descriptor<std::string> arg_log_level = {"log-level", "0-4 or categories", ""};
const command_line::arg_descriptor<uint64_t> arg_block_start = {"block-start", "Start at block number", block_start};
const command_line::arg_descriptor<uint64_t> arg_block_stop = {"block-stop", "Stop at block number", block_stop};
const command_line::arg_descriptor<bool> arg_blocks_dat = {"blocksdat", "Output in blocks.dat format", blocks_dat};
@ -67,6 +69,7 @@ int main(int argc, char* argv[])
command_line::add_arg(desc_cmd_sett, cryptonote::arg_testnet_on);
command_line::add_arg(desc_cmd_sett, cryptonote::arg_stagenet_on);
command_line::add_arg(desc_cmd_sett, arg_log_level);
command_line::add_arg(desc_cmd_sett, arg_block_start);
command_line::add_arg(desc_cmd_sett, arg_block_stop);
command_line::add_arg(desc_cmd_sett, arg_blocks_dat);
@ -87,16 +90,17 @@ int main(int argc, char* argv[])
if (command_line::get_arg(vm, command_line::arg_help))
{
std::cout << "Monero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << "Wownero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << desc_options << std::endl;
return 1;
}
mlog_configure(mlog_get_default_log_path("monero-blockchain-export.log"), true);
mlog_configure(mlog_get_default_log_path("wownero-blockchain-export.log"), true);
if (!command_line::is_arg_defaulted(vm, arg_log_level))
mlog_set_log(command_line::get_arg(vm, arg_log_level).c_str());
else
mlog_set_log(std::string(std::to_string(log_level) + ",bcutil:INFO").c_str());
block_start = command_line::get_arg(vm, arg_block_start);
block_stop = command_line::get_arg(vm, arg_block_stop);
LOG_PRINT_L0("Starting...");
@ -178,7 +182,7 @@ int main(int argc, char* argv[])
else
{
BootstrapFile bootstrap;
r = bootstrap.store_blockchain_raw(core_storage, NULL, output_file_path, block_stop);
r = bootstrap.store_blockchain_raw(core_storage, NULL, output_file_path, block_start, block_stop);
}
CHECK_AND_ASSERT_MES(r, 1, "Failed to export blockchain raw data");
LOG_PRINT_L0("Blockchain raw data exported OK");

@ -227,6 +227,7 @@ int import_from_file(cryptonote::core& core, const std::string& import_file_path
return false;
}
uint64_t block_first, block_last;
uint64_t start_height = 1, seek_height;
if (opt_resume)
start_height = core.get_blockchain_storage().get_current_blockchain_height();
@ -235,10 +236,10 @@ int import_from_file(cryptonote::core& core, const std::string& import_file_path
BootstrapFile bootstrap;
std::streampos pos;
// BootstrapFile bootstrap(import_file_path);
uint64_t total_source_blocks = bootstrap.count_blocks(import_file_path, pos, seek_height);
MINFO("bootstrap file last block number: " << total_source_blocks-1 << " (zero-based height) total blocks: " << total_source_blocks);
uint64_t total_source_blocks = bootstrap.count_blocks(import_file_path, pos, seek_height, block_first);
MINFO("bootstrap file last block number: " << total_source_blocks+block_first-1 << " (zero-based height) total blocks: " << total_source_blocks);
if (total_source_blocks-1 <= start_height)
if (total_source_blocks+block_first-1 <= start_height)
{
return false;
}
@ -260,7 +261,8 @@ int import_from_file(cryptonote::core& core, const std::string& import_file_path
// 4 byte magic + (currently) 1024 byte header structures
uint8_t major_version, minor_version;
bootstrap.seek_to_first_chunk(import_file, major_version, minor_version);
uint64_t dummy;
bootstrap.seek_to_first_chunk(import_file, major_version, minor_version, dummy, dummy);
std::string str1;
char buffer1[1024];
@ -275,7 +277,7 @@ int import_from_file(cryptonote::core& core, const std::string& import_file_path
if (! block_stop)
{
block_stop = total_source_blocks - 1;
block_stop = total_source_blocks+block_first - 1;
}
// These are what we'll try to use, and they don't have to be a determination
@ -629,7 +631,7 @@ int main(int argc, char* argv[])
if (command_line::get_arg(vm, command_line::arg_help))
{
std::cout << "Monero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << "Wownero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << desc_options << std::endl;
return 1;
}
@ -666,7 +668,7 @@ int main(int argc, char* argv[])
}
m_config_folder = command_line::get_arg(vm, cryptonote::arg_data_dir);
mlog_configure(mlog_get_default_log_path("monero-blockchain-import.log"), true);
mlog_configure(mlog_get_default_log_path("wownero-blockchain-import.log"), true);
if (!command_line::is_arg_defaulted(vm, arg_log_level))
mlog_set_log(command_line::get_arg(vm, arg_log_level).c_str());
else

@ -480,12 +480,12 @@ int main(int argc, char* argv[])
if (command_line::get_arg(vm, command_line::arg_help))
{
std::cout << "Monero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << "Wownero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << desc_options << std::endl;
return 1;
}
mlog_configure(mlog_get_default_log_path("monero-blockchain-prune.log"), true);
mlog_configure(mlog_get_default_log_path("wownero-blockchain-prune.log"), true);
if (!command_line::is_arg_defaulted(vm, arg_log_level))
mlog_set_log(command_line::get_arg(vm, arg_log_level).c_str());
else

@ -137,12 +137,12 @@ int main(int argc, char* argv[])
if (command_line::get_arg(vm, command_line::arg_help))
{
std::cout << "Monero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << "Wownero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << desc_options << std::endl;
return 1;
}
mlog_configure(mlog_get_default_log_path("monero-blockchain-prune-known-spent-data.log"), true);
mlog_configure(mlog_get_default_log_path("wownero-blockchain-prune-known-spent-data.log"), true);
if (!command_line::is_arg_defaulted(vm, arg_log_level))
mlog_set_log(command_line::get_arg(vm, arg_log_level).c_str());
else

@ -103,12 +103,12 @@ int main(int argc, char* argv[])
if (command_line::get_arg(vm, command_line::arg_help))
{
std::cout << "Monero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << "Wownero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << desc_options << std::endl;
return 1;
}
mlog_configure(mlog_get_default_log_path("monero-blockchain-stats.log"), true);
mlog_configure(mlog_get_default_log_path("wownero-blockchain-stats.log"), true);
if (!command_line::is_arg_defaulted(vm, arg_log_level))
mlog_set_log(command_line::get_arg(vm, arg_log_level).c_str());
else

@ -119,12 +119,12 @@ int main(int argc, char* argv[])
if (command_line::get_arg(vm, command_line::arg_help))
{
std::cout << "Monero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << "Wownero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << desc_options << std::endl;
return 1;
}
mlog_configure(mlog_get_default_log_path("monero-blockchain-usage.log"), true);
mlog_configure(mlog_get_default_log_path("wownero-blockchain-usage.log"), true);
if (!command_line::is_arg_defaulted(vm, arg_log_level))
mlog_set_log(command_line::get_arg(vm, arg_log_level).c_str());
else

@ -52,7 +52,7 @@ namespace
bool BootstrapFile::open_writer(const boost::filesystem::path& file_path)
bool BootstrapFile::open_writer(const boost::filesystem::path& file_path, uint64_t start_block, uint64_t stop_block)
{
const boost::filesystem::path dir_path = file_path.parent_path();
if (!dir_path.empty())
@ -78,7 +78,7 @@ bool BootstrapFile::open_writer(const boost::filesystem::path& file_path)
m_raw_data_file = new std::ofstream();
bool do_initialize_file = false;
uint64_t num_blocks = 0;
uint64_t num_blocks = 0, block_first = 0;
if (! boost::filesystem::exists(file_path))
{
@ -88,10 +88,12 @@ bool BootstrapFile::open_writer(const boost::filesystem::path& file_path)
}
else
{
num_blocks = count_blocks(file_path.string());
MDEBUG("appending to existing file with height: " << num_blocks-1 << " total blocks: " << num_blocks);
std::streampos dummy_pos;
uint64_t dummy_height = 0;
num_blocks = count_blocks(file_path.string(), dummy_pos, dummy_height, block_first);
MDEBUG("appending to existing file with height: " << num_blocks+block_first-1 << " total blocks: " << num_blocks);
}
m_height = num_blocks;
m_height = num_blocks+block_first;
if (do_initialize_file)
m_raw_data_file->open(file_path.string(), std::ios_base::binary | std::ios_base::out | std::ios::trunc);
@ -106,13 +108,12 @@ bool BootstrapFile::open_writer(const boost::filesystem::path& file_path)
return false;
if (do_initialize_file)
initialize_file();
initialize_file(start_block, stop_block);
return true;
}
bool BootstrapFile::initialize_file()
bool BootstrapFile::initialize_file(uint64_t first_block, uint64_t last_block)
{
const uint32_t file_magic = blockchain_raw_magic;
@ -129,8 +130,8 @@ bool BootstrapFile::initialize_file()
bfi.header_size = header_size;
bootstrap::blocks_info bbi;
bbi.block_first = 0;
bbi.block_last = 0;
bbi.block_first = first_block;
bbi.block_last = last_block;
bbi.block_last_pos = 0;
buffer_type buffer2;
@ -261,7 +262,7 @@ bool BootstrapFile::close()
}
bool BootstrapFile::store_blockchain_raw(Blockchain* _blockchain_storage, tx_memory_pool* _tx_pool, boost::filesystem::path& output_file, uint64_t requested_block_stop)
bool BootstrapFile::store_blockchain_raw(Blockchain* _blockchain_storage, tx_memory_pool* _tx_pool, boost::filesystem::path& output_file, uint64_t start_block, uint64_t requested_block_stop)
{
uint64_t num_blocks_written = 0;
m_max_chunk = 0;
@ -269,17 +270,11 @@ bool BootstrapFile::store_blockchain_raw(Blockchain* _blockchain_storage, tx_mem
m_tx_pool = _tx_pool;
uint64_t progress_interval = 100;
MINFO("Storing blocks raw data...");
if (!BootstrapFile::open_writer(output_file))
{
MFATAL("failed to open raw file for write");
return false;
}
block b;
// block_start, block_stop use 0-based height. m_height uses 1-based height. So to resume export
// from last exported block, block_start doesn't need to add 1 here, as it's already at the next
// height.
uint64_t block_start = m_height;
uint64_t block_stop = 0;
MINFO("source blockchain height: " << m_blockchain_storage->get_current_blockchain_height()-1);
if ((requested_block_stop > 0) && (requested_block_stop < m_blockchain_storage->get_current_blockchain_height()))
@ -292,6 +287,13 @@ bool BootstrapFile::store_blockchain_raw(Blockchain* _blockchain_storage, tx_mem
block_stop = m_blockchain_storage->get_current_blockchain_height() - 1;
MINFO("Using block height of source blockchain: " << block_stop);
}
if (!BootstrapFile::open_writer(output_file, start_block, block_stop))
{
MFATAL("failed to open raw file for write");
return false;
}
uint64_t block_start = m_height ? m_height : start_block;
MINFO("Starting block height: " << block_start);
for (m_cur_height = block_start; m_cur_height <= block_stop; ++m_cur_height)
{
// this method's height refers to 0-based height (genesis block = height 0)
@ -323,7 +325,8 @@ bool BootstrapFile::store_blockchain_raw(Blockchain* _blockchain_storage, tx_mem
return BootstrapFile::close();
}
uint64_t BootstrapFile::seek_to_first_chunk(std::ifstream& import_file, uint8_t &major_version, uint8_t &minor_version)
uint64_t BootstrapFile::seek_to_first_chunk(std::ifstream& import_file, uint8_t &major_version, uint8_t &minor_version,
uint64_t &block_first, uint64_t &block_last)
{
uint32_t file_magic;
@ -368,11 +371,35 @@ uint64_t BootstrapFile::seek_to_first_chunk(std::ifstream& import_file, uint8_t
MINFO("bootstrap magic size: " << sizeof(file_magic));
MINFO("bootstrap header size: " << bfi.header_size);
uint32_t buflen_blocks_info;
import_file.read(buf1, sizeof(buflen_blocks_info));
str1.assign(buf1, sizeof(buflen_blocks_info));
if (! import_file)
throw std::runtime_error("Error reading expected number of bytes");
if (! ::serialization::parse_binary(str1, buflen_blocks_info))
throw std::runtime_error("Error in deserialization of buflen_blocks_info");
MINFO("bootstrap::blocks_info size: " << buflen_blocks_info);
if (buflen_blocks_info > sizeof(buf1))
throw std::runtime_error("Error: bootstrap::blocks_info size exceeds buffer size");
import_file.read(buf1, buflen_blocks_info);
if (! import_file)
throw std::runtime_error("Error reading expected number of bytes");
str1.assign(buf1, buflen_blocks_info);
bootstrap::blocks_info bbi;
if (! ::serialization::parse_binary(str1, bbi))
throw std::runtime_error("Error in deserialization of bootstrap::blocks_info");
MINFO("bootstrap first block:" << bbi.block_first);
MINFO("bootstrap last block:" << bbi.block_last);
uint64_t full_header_size = sizeof(file_magic) + bfi.header_size;
import_file.seekg(full_header_size);
major_version = bfi.major_version;
minor_version = bfi.minor_version;
block_first = bbi.block_first;
block_last = bbi.block_last;
return full_header_size;
}
@ -436,13 +463,14 @@ uint64_t BootstrapFile::count_blocks(const std::string& import_file_path)
{
std::streampos dummy_pos;
uint64_t dummy_height = 0;
return count_blocks(import_file_path, dummy_pos, dummy_height);
return count_blocks(import_file_path, dummy_pos, dummy_height, dummy_height);
}
// If seek_height is non-zero on entry, return a stream position <= this height when finished.
// And return the actual height corresponding to this position. Allows the caller to locate its
// starting position without having to reread the entire file again.
uint64_t BootstrapFile::count_blocks(const std::string& import_file_path, std::streampos &start_pos, uint64_t& seek_height)
uint64_t BootstrapFile::count_blocks(const std::string& import_file_path, std::streampos &start_pos,
uint64_t& seek_height, uint64_t &block_first)
{
boost::filesystem::path raw_file_path(import_file_path);
boost::system::error_code ec;
@ -464,7 +492,8 @@ uint64_t BootstrapFile::count_blocks(const std::string& import_file_path, std::s
uint64_t full_header_size; // 4 byte magic + length of header structures
uint8_t major_version, minor_version;
full_header_size = seek_to_first_chunk(import_file, major_version, minor_version);
uint64_t block_last;
full_header_size = seek_to_first_chunk(import_file, major_version, minor_version, block_first, block_last);
MINFO("Scanning blockchain from bootstrap file...");
bool quit = false;
@ -473,11 +502,11 @@ uint64_t BootstrapFile::count_blocks(const std::string& import_file_path, std::s
while (! quit)
{
if (start_height && h + progress_interval >= start_height - 1)
if (start_height && h + block_first + progress_interval >= start_height - 1)
{
start_height = 0;
start_pos = import_file.tellg();
seek_height = h;
seek_height = h + block_first;
}
bytes_read += count_bytes(import_file, progress_interval, blocks, quit);
h += blocks;

@ -57,12 +57,12 @@ class BootstrapFile
public:
uint64_t count_bytes(std::ifstream& import_file, uint64_t blocks, uint64_t& h, bool& quit);
uint64_t count_blocks(const std::string& dir_path, std::streampos& start_pos, uint64_t& seek_height);
uint64_t count_blocks(const std::string& dir_path, std::streampos& start_pos, uint64_t& seek_height, uint64_t& block_first);
uint64_t count_blocks(const std::string& dir_path);
uint64_t seek_to_first_chunk(std::ifstream& import_file, uint8_t &major_version, uint8_t &minor_version);
uint64_t seek_to_first_chunk(std::ifstream& import_file, uint8_t &major_version, uint8_t &minor_version, uint64_t &block_first, uint64_t &block_last);
bool store_blockchain_raw(cryptonote::Blockchain* cs, cryptonote::tx_memory_pool* txp,
boost::filesystem::path& output_file, uint64_t use_block_height=0);
boost::filesystem::path& output_file, uint64_t start_block=0, uint64_t stop_block=0);
protected:
@ -75,8 +75,8 @@ protected:
boost::iostreams::stream<boost::iostreams::back_insert_device<buffer_type>>* m_output_stream;
// open export file for write
bool open_writer(const boost::filesystem::path& file_path);
bool initialize_file();
bool open_writer(const boost::filesystem::path& file_path, uint64_t start_block, uint64_t stop_block);
bool initialize_file(uint64_t start_block, uint64_t stop_block);
bool close();
void write_block(block& block);
void flush_chunk();

@ -28,7 +28,7 @@
set(GENERATED_SOURCES "")
foreach(BLOB_NAME checkpoints testnet_blocks stagenet_blocks)
foreach(BLOB_NAME checkpoints)
set(OUTPUT_C_SOURCE "generated_${BLOB_NAME}.c")
list(APPEND GENERATED_SOURCES ${OUTPUT_C_SOURCE})
set(INPUT_DAT_FILE "${BLOB_NAME}.dat")

@ -4,18 +4,12 @@
extern const unsigned char checkpoints[];
extern const size_t checkpoints_len;
extern const unsigned char stagenet_blocks[];
extern const size_t stagenet_blocks_len;
extern const unsigned char testnet_blocks[];
extern const size_t testnet_blocks_len;
namespace blocks
{
const std::unordered_map<cryptonote::network_type, const epee::span<const unsigned char>, std::hash<size_t>> CheckpointsByNetwork = {
{cryptonote::network_type::MAINNET, {checkpoints, checkpoints_len}},
{cryptonote::network_type::STAGENET, {stagenet_blocks, stagenet_blocks_len}},
{cryptonote::network_type::TESTNET, {testnet_blocks, testnet_blocks_len}}
{cryptonote::network_type::MAINNET, {checkpoints, checkpoints_len}}
};
const epee::span<const unsigned char> GetCheckpointsData(cryptonote::network_type network)

Binary file not shown.

@ -182,61 +182,38 @@ namespace cryptonote
{
if (nettype == TESTNET)
{
ADD_CHECKPOINT2(0, "48ca7cd3c8de5b6a4d53d2861fbdaedca141553559f9be9520068053cda8430b", "0x1");
ADD_CHECKPOINT2(1000000, "46b690b710a07ea051bc4a6b6842ac37be691089c0f7758cfeec4d5fc0b4a258", "0x7aaad7153");
ADD_CHECKPOINT2(1058600, "12904f6b4d9e60fd875674e07147d2c83d6716253f046af7b894c3e81da7e1bd", "0x971efd119");
ADD_CHECKPOINT2(1450000, "87562ca6786f41556b8d5b48067303a57dc5ca77155b35199aedaeca1550f5a0", "0xa639e2930e");
ADD_CHECKPOINT2(1, "c47b8effcc84e22ddd1b876d059c8fbd3e26e4bdffb6bed8b8f4fe283104a7af", "0x2");
ADD_CHECKPOINT2(5, "292add330f6cf5f3845dc4cd2f28ce8d211dd487ddcfe1b5d1d545d7b90ff7d1", "0x5df"); //Hard fork to v8
ADD_CHECKPOINT2(10, "fbdf7d812aa6dd4c5915aadcbf023e722eab1d8ad47c24a230634e688d314798", "0xfa3"); //Hard fork to v9
ADD_CHECKPOINT2(15, "9b86e40b959d7cfe75366686dfd2657699e85b8c658aa8c20b23f7bc01b38af0", "0x1967"); //Hard fork to v10
ADD_CHECKPOINT2(20, "8f65c309ba3ed2bf25df2b7d91e1db40c864230aa3caaf823db81bc19e0bd6a3", "0x232b"); //Hard fork to v11
ADD_CHECKPOINT2(25, "35f2957fdba45d5421561ba2f126a61ec0101b5c2eb79b9e296310acbbdbbe58", "0x2cef"); //Hard fork to v12
ADD_CHECKPOINT2(30, "32cc5aacce8bea10ae869313e194ba51a30720810f3665433ffeea2818938429", "0x36b3"); //Hard fork to v13
ADD_CHECKPOINT2(35, "7f1cdd2c4a6002772343ad9de6c5dba743a0be1d326a6f63924511f08b15863a", "0x4077"); //Hard fork to v14
ADD_CHECKPOINT2(40, "63cf4f703489a881baf63bacd6a3af2b5bde79b558ce123e97313890be6f747f", "0x4a3b"); //Hard fork to v15
ADD_CHECKPOINT2(45, "65da4c966ae02983c6c8b7ab9b959df612863c379c5e48669061cbbb1e02a3ab", "0x53ff"); //Hard fork to v16
ADD_CHECKPOINT2(50, "8c68a444b6743a14152f130357be9751e42e82a84f69f25320eda532a830c7b0", "0x5dc3"); //Hard fork to v17
return true;
}
if (nettype == STAGENET)
{
ADD_CHECKPOINT2(0, "76ee3cc98646292206cd3e86f74d88b4dcc1d937088645e9b0cbca84b7ce74eb", "0x1");
ADD_CHECKPOINT2(10000, "1f8b0ce313f8b9ba9a46108bfd285c45ad7c2176871fd41c3a690d4830ce2fd5", "0x1d73ba");
ADD_CHECKPOINT2(550000, "409f68cddd8e74b37469b41c1e61250d81c5776b42264f416d5d27c4626383ed", "0x5f3d4d03e");
return true;
}
ADD_CHECKPOINT2(1, "771fbcd656ec1464d3a02ead5e18644030007a0fc664c0a964d30922821a8148", "0x2");
ADD_CHECKPOINT2(10, "c0e3b387e47042f72d8ccdca88071ff96bff1ac7cde09ae113dbb7ad3fe92381", "0x2a974");
ADD_CHECKPOINT2(100, "ac3e11ca545e57c49fca2b4e8c48c03c23be047c43e471e1394528b1f9f80b2d", "0x35d14b");
ADD_CHECKPOINT2(1000, "5acfc45acffd2b2e7345caf42fa02308c5793f15ec33946e969e829f40b03876", "0x36a0373");
ADD_CHECKPOINT2(10000, "c758b7c81f928be3295d45e230646de8b852ec96a821eac3fea4daf3fcac0ca2", "0x60a91390");
ADD_CHECKPOINT2(22231, "7cb10e29d67e1c069e6e11b17d30b809724255fee2f6868dc14cfc6ed44dfb25", "0x1e288793d");
ADD_CHECKPOINT2(29556, "53c484a8ed91e4da621bb2fa88106dbde426fe90d7ef07b9c1e5127fb6f3a7f6", "0x71f64cce8");
ADD_CHECKPOINT2(50000, "0fe8758ab06a8b9cb35b7328fd4f757af530a5d37759f9d3e421023231f7b31c", "0x893044b400");
ADD_CHECKPOINT2(80000, "a62dcd7b536f22e003ebae8726e9e7276f63d594e264b6f0cd7aab27b66e75e3", "0x5cc113f1076");
ADD_CHECKPOINT2(202612, "bbd604d2ba11ba27935e006ed39c9bfdd99b76bf4a50654bc1e1e61217962698", "0x73310a259eb2");
ADD_CHECKPOINT2(202613, "e2aa337e78df1f98f462b3b1e560c6b914dec47b610698b7b7d1e3e86b6197c2", "0x733154039b97");
ADD_CHECKPOINT2(202614, "c29e3dc37d8da3e72e506e31a213a58771b24450144305bcba9e70fa4d6ea6fb", "0x73319dc90cb6");
ADD_CHECKPOINT2(205000, "5d3d7a26e6dc7535e34f03def711daa8c263785f73ec1fadef8a45880fde8063", "0x75fcc3d85123");
ADD_CHECKPOINT2(220000, "9613f455933c00e3e33ac315cc6b455ee8aa0c567163836858c2d9caff111553", "0x89cfed0cae3c");
ADD_CHECKPOINT2(230300, "bae7a80c46859db355556e3a9204a337ae8f24309926a1312323fdecf1920e61", "0x967d13e5baa9");
ADD_CHECKPOINT2(230700, "93e631240ceac831da1aebfc5dac8f722c430463024763ebafa888796ceaeedf", "0x96fb9663ebe7");
ADD_CHECKPOINT2(231350, "b5add137199b820e1ea26640e5c3e121fd85faa86a1e39cf7e6cc097bdeb1131", "0x97b9919177bf");
ADD_CHECKPOINT2(232150, "955de8e6b6508af2c24f7334f97beeea651d78e9ade3ab18fec3763be3201aa8", "0x98a038b612e8");
ADD_CHECKPOINT2(249380, "654fb0a81ce3e5caf7e3264a70f447d4bd07586c08fa50f6638cc54da0a52b2d", "0xac9739634e6d");
ADD_CHECKPOINT2(460000, "75037a7aed3e765db96c75bcf908f59d690a5f3390baebb9edeafd336a1c4831", "0x167799549bdda");
ADD_CHECKPOINT2(500000, "2428f0dbe49796be05ed81b347f53e1f7f44aed0abf641446ec2b94cae066b02", "0x188ce145e4ba9");
ADD_CHECKPOINT2(600000, "f5828ebf7d7d1cb61762c4dfe3ccf4ecab2e1aad23e8113668d981713b7a54c5", "0x1d9f3759e1554");
ADD_CHECKPOINT2(700000, "12be9b3d210b93f574d2526abb9c1ab2a881b479131fd0d4f7dac93875f503cd", "0x2201e4ee39c2c");
ADD_CHECKPOINT2(825000, "56503f9ad766774b575be3aff73245e9d159be88132c93d1754764f28da2ff60", "0x27565a442d5df");
ADD_CHECKPOINT2(900000, "d9958d0e7dcf91a5a7b11de225927bf7efc6eb26240315ce12372be902cc1337", "0x2a6334031546e");
ADD_CHECKPOINT2(913193, "5292d5d56f6ba4de33a58d9a34d263e2cb3c6fee0aed2286fd4ac7f36d53c85f", "0x2aefe7f40f5ea");
ADD_CHECKPOINT2(1000000, "a886ef5149902d8342475fee9bb296341b891ac67c4842f47a833f23c00ed721", "0x2edd71370f0e5");
ADD_CHECKPOINT2(1100000, "3fd720c5c8b3072fc1ccda922dec1ef25f9ed88a1e6ad4103d0fe00b180a5903", "0x390eb0035c53a");
ADD_CHECKPOINT2(1150000, "1dd16f626d18e1e988490dfd06de5920e22629c972c58b4d8daddea0038627b2", "0x422d5662e9e37");
ADD_CHECKPOINT2(1200000, "fa7d13a90850882060479d100141ff84286599ae39c3277c8ea784393f882d1f", "0x4c73503fc4aa3");
ADD_CHECKPOINT2(1300000, "31b34272343a44a9f4ac7de7a8fcf3b7d8a3124d7d6870affd510d2f37e74cd0", "0x723f49bc249d5");
ADD_CHECKPOINT2(1390000, "a8f5649dd4ded60eedab475f2bec8c934681c07e3cf640e9be0617554f13ff6c", "0xb4bba65e2841b");
ADD_CHECKPOINT2(1450000, "ac94e8860093bc7c83e4e91215cba1d663421ecf4067a0ae609c3a8b52bcfac2", "0x11a4aabdca9511");
ADD_CHECKPOINT2(1530000, "01759bce497ec38e63c78b1038892169203bb78f87e488172f6b854fcd63ba7e", "0x2819ce9f9e91e5");
ADD_CHECKPOINT2(1579000, "7d0d7a2346373afd41ed1e744a939fc5d474a7dbaa257be5c6fff4009e789241", "0x357a590e7dda83");
ADD_CHECKPOINT2(1668900, "ac2dcaf3d2f58ffcf8391639f0f1ebafcb8eac43c49479c7c37f611868d07568", "0x474226e475cc3b");
ADD_CHECKPOINT2(1775600, "1c6e01c661dc22cab939e79ec6a5272190624ce8356d2f7b958e4f9a57fdb05e", "0x5e3b9d206a27c6");
ADD_CHECKPOINT2(1856000, "9b57f17f29c71a3acd8a7904b93c41fa6eb8d2b7c73936ce4f1702d14880ba29", "0x6bde5e1caccee1");
ADD_CHECKPOINT2(1958000, "98a5d6e51afdf3146e0eefb10a66e8648d8d4d5c2742be8835e976ba217c9bb2", "0x79dd46d2a0971a");
ADD_CHECKPOINT2(2046000, "5e867f0b8baefed9244a681df97fc885d8ab36c3dfcd24c7a3abf3b8ac8b8314", "0x9cb8b6ff2978c6");
ADD_CHECKPOINT2(2092500, "c4e00820c9c7989b49153d5e90ae095a18a11d990e82fcc3be54e6ed785472b5", "0xb4e585a31369cb");
ADD_CHECKPOINT2(2182500, "0d22b5f81982eff21d094af9e821dc2007e6342069e3b1a37b15d97646353124", "0xead4a874083492");
// make RPC call to daemon
// curl http://127.0.0.1:34568/json_rpc -d '{"jsonrpc":"2.0","id":"0","method":"get_block","params":{"height":247600}}' -H 'Content-Type: application/json'
// "wide_cumulative_difficulty": "0x14eb4d0131fe8",
ADD_CHECKPOINT2(1, "97f4ce4d7879b3bea54dcec738cd2ebb7952b4e9bb9743262310cd5fec749340", "0x2");
ADD_CHECKPOINT2(6969, "aa7b66e8c461065139b55c29538a39c33ceda93e587f84d490ed573d80511c87", "0x118eef693fd"); //Hard fork to v8
ADD_CHECKPOINT2(53666, "3f43f56f66ef0c43cf2fd14d0d28fa2aae0ef8f40716773511345750770f1255", "0xb677d6405ae"); //Hard fork to v9
ADD_CHECKPOINT2(63469, "4e33a9343fc5b86661ec0affaeb5b5a065290602c02d817337e4a979fe5747d8", "0xe7cd9819062"); //Hard fork to v10
ADD_CHECKPOINT2(81769, "41db9fef8d0ccfa78b570ee9525d4f55de77b510c3ae4b08a1d51b9aec9ade1d", "0x150066455b88"); //Hard fork to v11
ADD_CHECKPOINT2(82069, "fdea800d23d0b2eea19dec8af31e453e883e8315c97e25c8bb3e88ca164f8369", "0x15079b5fdaa8"); //Hard fork to v12
ADD_CHECKPOINT2(114969, "b48245956b87f243048fd61021f4b3e5443e57eee7ff8ba4762d18926e80b80c", "0x1ca552b3ec68"); //Hard fork to v13
ADD_CHECKPOINT2(115257, "338e056551087fe23d6c4b4280244bc5362b004716d85ec799a775f190f9fea9", "0x1cb25f5d4628"); //Hard fork to v14
ADD_CHECKPOINT2(160777, "9496690579af21f38f00e67e11c2e85a15912fe4f412aad33d1162be1579e755", "0x5376eaa196a8"); //Hard fork to v15
ADD_CHECKPOINT2(253999, "755a289fe8a68e96a0f69069ba4007b676ec87dce2e47dfb9647fe5691f49883", "0x172d026ef7fe8"); //Hard fork to v16
ADD_CHECKPOINT2(254287, "b37cb55abe73965b424f8028bf71bef98d069645077ffa52f0c134907b7734e3", "0x1746622f56668"); //Hard fork to v17
ADD_CHECKPOINT2(256700, "389a8ab95a80e84ec74639c1078bc67b33af208ef00f53bd9609cfc40efa7059", "0x185ace3c1bd68");
return true;
}
@ -281,22 +258,13 @@ namespace cryptonote
std::vector<std::string> records;
// All four MoneroPulse domains have DNSSEC on and valid
static const std::vector<std::string> dns_urls = { "checkpoints.moneropulse.se"
, "checkpoints.moneropulse.org"
, "checkpoints.moneropulse.net"
, "checkpoints.moneropulse.co"
static const std::vector<std::string> dns_urls = {
};
static const std::vector<std::string> testnet_dns_urls = { "testpoints.moneropulse.se"
, "testpoints.moneropulse.org"
, "testpoints.moneropulse.net"
, "testpoints.moneropulse.co"
static const std::vector<std::string> testnet_dns_urls = {
};
static const std::vector<std::string> stagenet_dns_urls = { "stagenetpoints.moneropulse.se"
, "stagenetpoints.moneropulse.org"
, "stagenetpoints.moneropulse.net"
, "stagenetpoints.moneropulse.co"
static const std::vector<std::string> stagenet_dns_urls = {
};
if (!tools::dns_utils::load_txt_records_from_dns(records, nettype == TESTNET ? testnet_dns_urls : nettype == STAGENET ? stagenet_dns_urls : dns_urls))

@ -101,8 +101,6 @@ get_builtin_ds(void)
{
static const char * const ds[] =
{
". IN DS 19036 8 2 49AAC11D7B6F6446702E54A1607371607A1A41855200FD2CE1CDDE32F24E8FB5\n",
". IN DS 20326 8 2 E06D44B80B8F1D39A95C0B0D7C65D08458E880409BBC683457104237C7F8EC8D\n",
NULL
};
return ds;

@ -46,10 +46,6 @@ namespace tools
// All four MoneroPulse domains have DNSSEC on and valid
static const std::vector<std::string> dns_urls = {
"updates.moneropulse.org",
"updates.moneropulse.net",
"updates.moneropulse.co",
"updates.moneropulse.se"
};
if (!tools::dns_utils::load_txt_records_from_dns(records, dns_urls))
@ -99,7 +95,7 @@ namespace tools
std::string get_update_url(const std::string &software, const std::string &subdir, const std::string &buildtag, const std::string &version, bool user)
{
const char *base = user ? "https://downloads.getmonero.org/" : "https://updates.getmonero.org/";
const char *base = user ? "" : "";
#ifdef _WIN32
static const char *extension = strncmp(buildtag.c_str(), "source", 6) ? (strncmp(buildtag.c_str(), "install-", 8) ? ".zip" : ".exe") : ".tar.bz2";
#elif defined(__APPLE__)

@ -88,7 +88,7 @@ void hash_extra_skein(const void *data, size_t length, char *hash);
void tree_hash(const char (*hashes)[HASH_SIZE], size_t count, char *root_hash);
#define RX_BLOCK_VERSION 12
#define RX_BLOCK_VERSION 13
void rx_slow_hash_allocate_state(void);
void rx_slow_hash_free_state(void);
uint64_t rx_seedheight(const uint64_t height);

@ -40,9 +40,6 @@
#include "oaes_lib.h"
#include "variant2_int_sqrt.h"
#include "variant4_random_math.h"
#include "CryptonightR_JIT.h"
#include <errno.h>
#define MEMORY (1 << 21) // 2MB scratchpad
#define ITER (1 << 20)
@ -54,41 +51,6 @@
extern void aesb_single_round(const uint8_t *in, uint8_t *out, const uint8_t *expandedKey);
extern void aesb_pseudo_round(const uint8_t *in, uint8_t *out, const uint8_t *expandedKey);
static void local_abort(const char *msg)
{
fprintf(stderr, "%s\n", msg);
#ifdef NDEBUG
_exit(1);
#else
abort();
#endif
}
volatile int use_v4_jit_flag = -1;
static inline int use_v4_jit(void)
{
#if defined(__x86_64__)
if (use_v4_jit_flag != -1)
return use_v4_jit_flag;
const char *env = getenv("MONERO_USE_CNV4_JIT");
if (!env) {
use_v4_jit_flag = 1;
}
else if (!strcmp(env, "0") || !strcmp(env, "no")) {
use_v4_jit_flag = 0;
}
else {
use_v4_jit_flag = 1;
}
return use_v4_jit_flag;
#else
return 0;
#endif
}
#define VARIANT1_1(p) \
do if (variant == 1) \
{ \
@ -155,74 +117,48 @@ static inline int use_v4_jit(void)
#define VARIANT2_SHUFFLE_ADD_SSE2(base_ptr, offset) \
do if (variant >= 2) \
{ \
__m128i chunk1 = _mm_load_si128((__m128i *)((base_ptr) + ((offset) ^ 0x10))); \
const __m128i chunk1 = _mm_load_si128((__m128i *)((base_ptr) + ((offset) ^ 0x10))); \
const __m128i chunk2 = _mm_load_si128((__m128i *)((base_ptr) + ((offset) ^ 0x20))); \
const __m128i chunk3 = _mm_load_si128((__m128i *)((base_ptr) + ((offset) ^ 0x30))); \
_mm_store_si128((__m128i *)((base_ptr) + ((offset) ^ 0x10)), _mm_add_epi64(chunk3, _b1)); \
_mm_store_si128((__m128i *)((base_ptr) + ((offset) ^ 0x20)), _mm_add_epi64(chunk1, _b)); \
_mm_store_si128((__m128i *)((base_ptr) + ((offset) ^ 0x30)), _mm_add_epi64(chunk2, _a)); \
if (variant >= 4) \
{ \
chunk1 = _mm_xor_si128(chunk1, chunk2); \
_c = _mm_xor_si128(_c, chunk3); \
_c = _mm_xor_si128(_c, chunk1); \
} \
} while (0)
#define VARIANT2_SHUFFLE_ADD_NEON(base_ptr, offset) \
do if (variant >= 2) \
{ \
uint64x2_t chunk1 = vld1q_u64(U64((base_ptr) + ((offset) ^ 0x10))); \
const uint64x2_t chunk1 = vld1q_u64(U64((base_ptr) + ((offset) ^ 0x10))); \
const uint64x2_t chunk2 = vld1q_u64(U64((base_ptr) + ((offset) ^ 0x20))); \
const uint64x2_t chunk3 = vld1q_u64(U64((base_ptr) + ((offset) ^ 0x30))); \
vst1q_u64(U64((base_ptr) + ((offset) ^ 0x10)), vaddq_u64(chunk3, vreinterpretq_u64_u8(_b1))); \
vst1q_u64(U64((base_ptr) + ((offset) ^ 0x20)), vaddq_u64(chunk1, vreinterpretq_u64_u8(_b))); \
vst1q_u64(U64((base_ptr) + ((offset) ^ 0x30)), vaddq_u64(chunk2, vreinterpretq_u64_u8(_a))); \
if (variant >= 4) \
{ \
chunk1 = veorq_u64(chunk1, chunk2); \
_c = vreinterpretq_u8_u64(veorq_u64(vreinterpretq_u64_u8(_c), chunk3)); \
_c = vreinterpretq_u8_u64(veorq_u64(vreinterpretq_u64_u8(_c), chunk1)); \
} \
} while (0)
#define VARIANT2_PORTABLE_SHUFFLE_ADD(out, a_, base_ptr, offset) \
#define VARIANT2_PORTABLE_SHUFFLE_ADD(base_ptr, offset) \
do if (variant >= 2) \
{ \
uint64_t* chunk1 = U64((base_ptr) + ((offset) ^ 0x10)); \
uint64_t* chunk2 = U64((base_ptr) + ((offset) ^ 0x20)); \
uint64_t* chunk3 = U64((base_ptr) + ((offset) ^ 0x30)); \
\
uint64_t chunk1_old[2] = { SWAP64LE(chunk1[0]), SWAP64LE(chunk1[1]) }; \
const uint64_t chunk2_old[2] = { SWAP64LE(chunk2[0]), SWAP64LE(chunk2[1]) }; \
const uint64_t chunk3_old[2] = { SWAP64LE(chunk3[0]), SWAP64LE(chunk3[1]) }; \
const uint64_t chunk1_old[2] = { chunk1[0], chunk1[1] }; \
\
uint64_t b1[2]; \
memcpy_swap64le(b1, b + 16, 2); \
chunk1[0] = SWAP64LE(chunk3_old[0] + b1[0]); \
chunk1[1] = SWAP64LE(chunk3_old[1] + b1[1]); \
chunk1[0] = SWAP64LE(SWAP64LE(chunk3[0]) + b1[0]); \
chunk1[1] = SWAP64LE(SWAP64LE(chunk3[1]) + b1[1]); \
\
uint64_t a0[2]; \
memcpy_swap64le(a0, a_, 2); \
chunk3[0] = SWAP64LE(chunk2_old[0] + a0[0]); \
chunk3[1] = SWAP64LE(chunk2_old[1] + a0[1]); \
memcpy_swap64le(a0, a, 2); \
chunk3[0] = SWAP64LE(SWAP64LE(chunk2[0]) + a0[0]); \
chunk3[1] = SWAP64LE(SWAP64LE(chunk2[1]) + a0[1]); \
\
uint64_t b0[2]; \
memcpy_swap64le(b0, b, 2); \
chunk2[0] = SWAP64LE(chunk1_old[0] + b0[0]); \
chunk2[1] = SWAP64LE(chunk1_old[1] + b0[1]); \
if (variant >= 4) \
{ \
uint64_t out_copy[2]; \
memcpy_swap64le(out_copy, out, 2); \
chunk1_old[0] ^= chunk2_old[0]; \
chunk1_old[1] ^= chunk2_old[1]; \
out_copy[0] ^= chunk3_old[0]; \
out_copy[1] ^= chunk3_old[1]; \
out_copy[0] ^= chunk1_old[0]; \
out_copy[1] ^= chunk1_old[1]; \
memcpy_swap64le(out, out_copy, 2); \
} \
chunk2[0] = SWAP64LE(SWAP64LE(chunk1_old[0]) + b0[0]); \
chunk2[1] = SWAP64LE(SWAP64LE(chunk1_old[1]) + b0[1]); \
} while (0)
#define VARIANT2_INTEGER_MATH_DIVISION_STEP(b, ptr) \
@ -265,18 +201,18 @@ static inline int use_v4_jit(void)
#endif
#define VARIANT2_2_PORTABLE() \
if (variant == 2 || variant == 3) { \
if (variant >= 2) { \
xor_blocks(long_state + (j ^ 0x10), d); \
xor_blocks(d, long_state + (j ^ 0x20)); \
}
#define VARIANT2_2() \
do if (variant == 2 || variant == 3) \
do if (variant >= 2) \
{ \
*U64(local_hp_state + (j ^ 0x10)) ^= SWAP64LE(hi); \
*(U64(local_hp_state + (j ^ 0x10)) + 1) ^= SWAP64LE(lo); \
hi ^= SWAP64LE(*U64(local_hp_state + (j ^ 0x20))); \
lo ^= SWAP64LE(*(U64(local_hp_state + (j ^ 0x20)) + 1)); \
*U64(hp_state + (j ^ 0x10)) ^= SWAP64LE(hi); \
*(U64(hp_state + (j ^ 0x10)) + 1) ^= SWAP64LE(lo); \
hi ^= SWAP64LE(*U64(hp_state + (j ^ 0x20))); \
lo ^= SWAP64LE(*(U64(hp_state + (j ^ 0x20)) + 1)); \
} while (0)
#define V4_REG_LOAD(dst, src) \
@ -289,56 +225,34 @@ static inline int use_v4_jit(void)
} while (0)
#define VARIANT4_RANDOM_MATH_INIT() \
v4_reg r[9]; \
struct V4_Instruction code[NUM_INSTRUCTIONS_MAX + 1]; \
int jit = use_v4_jit(); \
v4_reg r[8]; \
struct V4_Instruction code[TOTAL_LATENCY * ALU_COUNT + 1]; \
do if (variant >= 4) \
{ \
for (int i = 0; i < 4; ++i) \
V4_REG_LOAD(r + i, (uint8_t*)(state.hs.w + 12) + sizeof(v4_reg) * i); \
v4_random_math_init(code, height); \
if (jit) \
{ \
int ret = v4_generate_JIT_code(code, hp_jitfunc, 4096); \
if (ret < 0) \
local_abort("Error generating CryptonightR code"); \
} \
} while (0)
#define VARIANT4_RANDOM_MATH(a, b, r, _b, _b1) \
do if (variant >= 4) \
{ \
uint64_t t[2]; \
memcpy(t, b, sizeof(uint64_t)); \
uint64_t t; \
memcpy(&t, b, sizeof(uint64_t)); \
\
if (sizeof(v4_reg) == sizeof(uint32_t)) \
t[0] ^= SWAP64LE((r[0] + r[1]) | ((uint64_t)(r[2] + r[3]) << 32)); \
t ^= SWAP64LE((r[0] + r[1]) | ((uint64_t)(r[2] + r[3]) << 32)); \
else \
t[0] ^= SWAP64LE((r[0] + r[1]) ^ (r[2] + r[3])); \
t ^= SWAP64LE((r[0] + r[1]) ^ (r[2] + r[3])); \
\
memcpy(b, t, sizeof(uint64_t)); \
memcpy(b, &t, sizeof(uint64_t)); \
\
V4_REG_LOAD(r + 4, a); \
V4_REG_LOAD(r + 5, (uint64_t*)(a) + 1); \
V4_REG_LOAD(r + 6, _b); \
V4_REG_LOAD(r + 7, _b1); \
V4_REG_LOAD(r + 8, (uint64_t*)(_b1) + 1); \
\
if (jit) \
(*hp_jitfunc)(r); \
else \
v4_random_math(code, r); \
\
memcpy(t, a, sizeof(uint64_t) * 2); \
\
if (sizeof(v4_reg) == sizeof(uint32_t)) { \
t[0] ^= SWAP64LE(r[2] | ((uint64_t)(r[3]) << 32)); \
t[1] ^= SWAP64LE(r[0] | ((uint64_t)(r[1]) << 32)); \
} else { \
t[0] ^= SWAP64LE(r[2] ^ r[3]); \
t[1] ^= SWAP64LE(r[0] ^ r[1]); \
} \
memcpy(a, t, sizeof(uint64_t) * 2); \
v4_random_math(code, r); \
} while (0)
@ -404,7 +318,7 @@ static inline int use_v4_jit(void)
#define pre_aes() \
j = state_index(a); \
_c = _mm_load_si128(R128(&local_hp_state[j])); \
_c = _mm_load_si128(R128(&hp_state[j])); \
_a = _mm_load_si128(R128(a)); \
/*
@ -417,20 +331,20 @@ static inline int use_v4_jit(void)
* This code is based upon an optimized implementation by dga.
*/
#define post_aes() \
VARIANT2_SHUFFLE_ADD_SSE2(local_hp_state, j); \
VARIANT2_SHUFFLE_ADD_SSE2(hp_state, j); \
_mm_store_si128(R128(c), _c); \
_mm_store_si128(R128(&local_hp_state[j]), _mm_xor_si128(_b, _c)); \
VARIANT1_1(&local_hp_state[j]); \
_mm_store_si128(R128(&hp_state[j]), _mm_xor_si128(_b, _c)); \
VARIANT1_1(&hp_state[j]); \
j = state_index(c); \
p = U64(&local_hp_state[j]); \
p = U64(&hp_state[j]); \
b[0] = p[0]; b[1] = p[1]; \
VARIANT2_INTEGER_MATH_SSE2(b, c); \
VARIANT4_RANDOM_MATH(a, b, r, &_b, &_b1); \
__mul(); \
VARIANT2_2(); \
VARIANT2_SHUFFLE_ADD_SSE2(local_hp_state, j); \
VARIANT2_SHUFFLE_ADD_SSE2(hp_state, j); \
a[0] += hi; a[1] += lo; \
p = U64(&local_hp_state[j]); \
p = U64(&hp_state[j]); \
p[0] = a[0]; p[1] = a[1]; \
a[0] ^= b[0]; a[1] ^= b[1]; \
VARIANT1_2(p + 1); \
@ -457,9 +371,6 @@ union cn_slow_hash_state
THREADV uint8_t *hp_state = NULL;
THREADV int hp_allocated = 0;
THREADV v4_random_math_JIT_func hp_jitfunc = NULL;
THREADV uint8_t *hp_jitfunc_memory = NULL;
THREADV int hp_jitfunc_allocated = 0;
#if defined(_MSC_VER)
#define cpuid(info,x) __cpuidex(info,x,0)
@ -755,10 +666,10 @@ void cn_slow_hash_allocate_state(void)
#if defined(__APPLE__) || defined(__FreeBSD__) || defined(__OpenBSD__) || \
defined(__DragonFly__) || defined(__NetBSD__)
hp_state = mmap(0, MEMORY, PROT_READ | PROT_WRITE,
MAP_PRIVATE | MAP_ANON, -1, 0);
MAP_PRIVATE | MAP_ANON, 0, 0);
#else
hp_state = mmap(0, MEMORY, PROT_READ | PROT_WRITE,
MAP_PRIVATE | MAP_ANONYMOUS | MAP_HUGETLB, -1, 0);
MAP_PRIVATE | MAP_ANONYMOUS | MAP_HUGETLB, 0, 0);
#endif
if(hp_state == MAP_FAILED)
hp_state = NULL;
@ -769,35 +680,6 @@ void cn_slow_hash_allocate_state(void)
hp_allocated = 0;
hp_state = (uint8_t *) malloc(MEMORY);
}
#if defined(_MSC_VER) || defined(__MINGW32__)
hp_jitfunc_memory = (uint8_t *) VirtualAlloc(hp_jitfunc_memory, 4096 + 4095,
MEM_COMMIT | MEM_RESERVE, PAGE_EXECUTE_READWRITE);
#else
#if defined(__APPLE__) || defined(__FreeBSD__) || defined(__OpenBSD__) || \
defined(__DragonFly__) || defined(__NetBSD__)
#ifdef __NetBSD__
#define RESERVED_FLAGS PROT_MPROTECT(PROT_EXEC)
#else
#define RESERVED_FLAGS 0
#endif
hp_jitfunc_memory = mmap(0, 4096 + 4096, PROT_READ | PROT_WRITE | RESERVED_FLAGS,
MAP_PRIVATE | MAP_ANON, -1, 0);
#else
hp_jitfunc_memory = mmap(0, 4096 + 4096, PROT_READ | PROT_WRITE | PROT_EXEC,
MAP_PRIVATE | MAP_ANONYMOUS, -1, 0);
#endif
if(hp_jitfunc_memory == MAP_FAILED)
hp_jitfunc_memory = NULL;
#endif
hp_jitfunc_allocated = 1;
if (hp_jitfunc_memory == NULL)
{
hp_jitfunc_allocated = 0;
hp_jitfunc_memory = malloc(4096 + 4095);
}
hp_jitfunc = (v4_random_math_JIT_func)((size_t)(hp_jitfunc_memory + 4095) & ~4095);
}
/**
@ -820,22 +702,8 @@ void cn_slow_hash_free_state(void)
#endif
}
if(!hp_jitfunc_allocated)
free(hp_jitfunc_memory);
else
{
#if defined(_MSC_VER) || defined(__MINGW32__)
VirtualFree(hp_jitfunc_memory, 0, MEM_RELEASE);
#else
munmap(hp_jitfunc_memory, 4096 + 4095);
#endif
}
hp_state = NULL;
hp_allocated = 0;
hp_jitfunc = NULL;
hp_jitfunc_memory = NULL;
hp_jitfunc_allocated = 0;
}
/**
@ -919,7 +787,7 @@ void cn_slow_hash(const void *data, size_t length, char *hash, int variant, int
for(i = 0; i < MEMORY / INIT_SIZE_BYTE; i++)
{
aes_pseudo_round(text, text, expandedKey, INIT_SIZE_BLK);
memcpy(&local_hp_state[i * INIT_SIZE_BYTE], text, INIT_SIZE_BYTE);
memcpy(&hp_state[i * INIT_SIZE_BYTE], text, INIT_SIZE_BYTE);
}
}
else
@ -931,7 +799,7 @@ void cn_slow_hash(const void *data, size_t length, char *hash, int variant, int
for(j = 0; j < INIT_SIZE_BLK; j++)
aesb_pseudo_round(&text[AES_BLOCK_SIZE * j], &text[AES_BLOCK_SIZE * j], aes_ctx->key->exp_data);
memcpy(&local_hp_state[i * INIT_SIZE_BYTE], text, INIT_SIZE_BYTE);
memcpy(&hp_state[i * INIT_SIZE_BYTE], text, INIT_SIZE_BYTE);
}
}
@ -979,7 +847,7 @@ void cn_slow_hash(const void *data, size_t length, char *hash, int variant, int
for(i = 0; i < MEMORY / INIT_SIZE_BYTE; i++)
{
// add the xor to the pseudo round
aes_pseudo_round_xor(text, text, expandedKey, &local_hp_state[i * INIT_SIZE_BYTE], INIT_SIZE_BLK);
aes_pseudo_round_xor(text, text, expandedKey, &hp_state[i * INIT_SIZE_BYTE], INIT_SIZE_BLK);
}
}
else
@ -989,7 +857,7 @@ void cn_slow_hash(const void *data, size_t length, char *hash, int variant, int
{
for(j = 0; j < INIT_SIZE_BLK; j++)
{
xor_blocks(&text[j * AES_BLOCK_SIZE], &local_hp_state[i * INIT_SIZE_BYTE + j * AES_BLOCK_SIZE]);
xor_blocks(&text[j * AES_BLOCK_SIZE], &hp_state[i * INIT_SIZE_BYTE + j * AES_BLOCK_SIZE]);
aesb_pseudo_round(&text[AES_BLOCK_SIZE * j], &text[AES_BLOCK_SIZE * j], aes_ctx->key->exp_data);
}
}
@ -1033,8 +901,6 @@ void cn_slow_hash_free_state(void)
#define U64(x) ((uint64_t *) (x))
#define hp_jitfunc ((v4_random_math_JIT_func)NULL)
STATIC INLINE void xor64(uint64_t *a, const uint64_t b)
{
*a ^= b;
@ -1069,24 +935,24 @@ union cn_slow_hash_state
#define pre_aes() \
j = state_index(a); \
_c = vld1q_u8(&local_hp_state[j]); \
_c = vld1q_u8(&hp_state[j]); \
_a = vld1q_u8((const uint8_t *)a); \
#define post_aes() \
VARIANT2_SHUFFLE_ADD_NEON(local_hp_state, j); \
VARIANT2_SHUFFLE_ADD_NEON(hp_state, j); \
vst1q_u8((uint8_t *)c, _c); \
vst1q_u8(&local_hp_state[j], veorq_u8(_b, _c)); \
VARIANT1_1(&local_hp_state[j]); \
vst1q_u8(&hp_state[j], veorq_u8(_b, _c)); \
VARIANT1_1(&hp_state[j]); \
j = state_index(c); \
p = U64(&local_hp_state[j]); \
p = U64(&hp_state[j]); \
b[0] = p[0]; b[1] = p[1]; \
VARIANT2_PORTABLE_INTEGER_MATH(b, c); \
VARIANT4_RANDOM_MATH(a, b, r, &_b, &_b1); \
__mul(); \
VARIANT2_2(); \
VARIANT2_SHUFFLE_ADD_NEON(local_hp_state, j); \
VARIANT2_SHUFFLE_ADD_NEON(hp_state, j); \
a[0] += hi; a[1] += lo; \
p = U64(&local_hp_state[j]); \
p = U64(&hp_state[j]); \
p[0] = a[0]; p[1] = a[1]; \
a[0] ^= b[0]; a[1] ^= b[1]; \
VARIANT1_2(p + 1); \
@ -1100,47 +966,47 @@ union cn_slow_hash_state
*/
static void aes_expand_key(const uint8_t *key, uint8_t *expandedKey) {
static const int rcon[] = {
0x01,0x01,0x01,0x01,
0x0c0f0e0d,0x0c0f0e0d,0x0c0f0e0d,0x0c0f0e0d, // rotate-n-splat
0x1b,0x1b,0x1b,0x1b };
0x01,0x01,0x01,0x01,
0x0c0f0e0d,0x0c0f0e0d,0x0c0f0e0d,0x0c0f0e0d, // rotate-n-splat
0x1b,0x1b,0x1b,0x1b };
__asm__(
" eor v0.16b,v0.16b,v0.16b\n"
" ld1 {v3.16b},[%0],#16\n"
" ld1 {v1.4s,v2.4s},[%2],#32\n"
" ld1 {v4.16b},[%0]\n"
" mov w2,#5\n"
" st1 {v3.4s},[%1],#16\n"
" eor v0.16b,v0.16b,v0.16b\n"
" ld1 {v3.16b},[%0],#16\n"
" ld1 {v1.4s,v2.4s},[%2],#32\n"
" ld1 {v4.16b},[%0]\n"
" mov w2,#5\n"
" st1 {v3.4s},[%1],#16\n"
"\n"
"1:\n"
" tbl v6.16b,{v4.16b},v2.16b\n"
" ext v5.16b,v0.16b,v3.16b,#12\n"
" st1 {v4.4s},[%1],#16\n"
" aese v6.16b,v0.16b\n"
" subs w2,w2,#1\n"
" tbl v6.16b,{v4.16b},v2.16b\n"
" ext v5.16b,v0.16b,v3.16b,#12\n"
" st1 {v4.4s},[%1],#16\n"
" aese v6.16b,v0.16b\n"
" subs w2,w2,#1\n"
"\n"
" eor v3.16b,v3.16b,v5.16b\n"
" ext v5.16b,v0.16b,v5.16b,#12\n"
" eor v3.16b,v3.16b,v5.16b\n"
" ext v5.16b,v0.16b,v5.16b,#12\n"
" eor v6.16b,v6.16b,v1.16b\n"
" eor v3.16b,v3.16b,v5.16b\n"
" shl v1.16b,v1.16b,#1\n"
" eor v3.16b,v3.16b,v6.16b\n"
" st1 {v3.4s},[%1],#16\n"
" b.eq 2f\n"
" eor v3.16b,v3.16b,v5.16b\n"
" ext v5.16b,v0.16b,v5.16b,#12\n"
" eor v3.16b,v3.16b,v5.16b\n"
" ext v5.16b,v0.16b,v5.16b,#12\n"
" eor v6.16b,v6.16b,v1.16b\n"
" eor v3.16b,v3.16b,v5.16b\n"
" shl v1.16b,v1.16b,#1\n"
" eor v3.16b,v3.16b,v6.16b\n"
" st1 {v3.4s},[%1],#16\n"
" b.eq 2f\n"
"\n"
" dup v6.4s,v3.s[3] // just splat\n"
" ext v5.16b,v0.16b,v4.16b,#12\n"
" aese v6.16b,v0.16b\n"
" dup v6.4s,v3.s[3] // just splat\n"
" ext v5.16b,v0.16b,v4.16b,#12\n"
" aese v6.16b,v0.16b\n"
"\n"
" eor v4.16b,v4.16b,v5.16b\n"
" ext v5.16b,v0.16b,v5.16b,#12\n"
" eor v4.16b,v4.16b,v5.16b\n"
" ext v5.16b,v0.16b,v5.16b,#12\n"
" eor v4.16b,v4.16b,v5.16b\n"
" eor v4.16b,v4.16b,v5.16b\n"
" ext v5.16b,v0.16b,v5.16b,#12\n"
" eor v4.16b,v4.16b,v5.16b\n"
" ext v5.16b,v0.16b,v5.16b,#12\n"
" eor v4.16b,v4.16b,v5.16b\n"
"\n"
" eor v4.16b,v4.16b,v6.16b\n"
" b 1b\n"
" eor v4.16b,v4.16b,v6.16b\n"
" b 1b\n"
"\n"
"2:\n" : : "r"(key), "r"(expandedKey), "r"(rcon));
}
@ -1155,71 +1021,71 @@ __asm__(
*/
STATIC INLINE void aes_pseudo_round(const uint8_t *in, uint8_t *out, const uint8_t *expandedKey, int nblocks)
{
const uint8x16_t *k = (const uint8x16_t *)expandedKey, zero = {0};
uint8x16_t tmp;
int i;
for (i=0; i<nblocks; i++)
{
uint8x16_t tmp = vld1q_u8(in + i * AES_BLOCK_SIZE);
tmp = vaeseq_u8(tmp, zero);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[0]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[1]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[2]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[3]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[4]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[5]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[6]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[7]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[8]);
tmp = vaesmcq_u8(tmp);
tmp = veorq_u8(tmp, k[9]);
vst1q_u8(out + i * AES_BLOCK_SIZE, tmp);
}
const uint8x16_t *k = (const uint8x16_t *)expandedKey, zero = {0};
uint8x16_t tmp;
int i;
for (i=0; i<nblocks; i++)
{
uint8x16_t tmp = vld1q_u8(in + i * AES_BLOCK_SIZE);
tmp = vaeseq_u8(tmp, zero);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[0]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[1]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[2]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[3]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[4]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[5]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[6]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[7]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[8]);
tmp = vaesmcq_u8(tmp);
tmp = veorq_u8(tmp, k[9]);
vst1q_u8(out + i * AES_BLOCK_SIZE, tmp);
}
}
STATIC INLINE void aes_pseudo_round_xor(const uint8_t *in, uint8_t *out, const uint8_t *expandedKey, const uint8_t *xor, int nblocks)
{
const uint8x16_t *k = (const uint8x16_t *)expandedKey;
const uint8x16_t *x = (const uint8x16_t *)xor;
uint8x16_t tmp;
int i;
for (i=0; i<nblocks; i++)
{
uint8x16_t tmp = vld1q_u8(in + i * AES_BLOCK_SIZE);
tmp = vaeseq_u8(tmp, x[i]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[0]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[1]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[2]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[3]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[4]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[5]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[6]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[7]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[8]);
tmp = vaesmcq_u8(tmp);
tmp = veorq_u8(tmp, k[9]);
vst1q_u8(out + i * AES_BLOCK_SIZE, tmp);
}
const uint8x16_t *k = (const uint8x16_t *)expandedKey;
const uint8x16_t *x = (const uint8x16_t *)xor;
uint8x16_t tmp;
int i;
for (i=0; i<nblocks; i++)
{
uint8x16_t tmp = vld1q_u8(in + i * AES_BLOCK_SIZE);
tmp = vaeseq_u8(tmp, x[i]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[0]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[1]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[2]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[3]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[4]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[5]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[6]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[7]);
tmp = vaesmcq_u8(tmp);
tmp = vaeseq_u8(tmp, k[8]);
tmp = vaesmcq_u8(tmp);
tmp = veorq_u8(tmp, k[9]);
vst1q_u8(out + i * AES_BLOCK_SIZE, tmp);
}
}
#ifdef FORCE_USE_HEAP
@ -1249,9 +1115,9 @@ void cn_slow_hash(const void *data, size_t length, char *hash, int variant, int
RDATA_ALIGN16 uint8_t expandedKey[240];
#ifndef FORCE_USE_HEAP
RDATA_ALIGN16 uint8_t local_hp_state[MEMORY];
RDATA_ALIGN16 uint8_t hp_state[MEMORY];
#else
uint8_t *local_hp_state = (uint8_t *)aligned_malloc(MEMORY,16);
uint8_t *hp_state = (uint8_t *)aligned_malloc(MEMORY,16);
#endif
uint8_t text[INIT_SIZE_BYTE];
@ -1291,7 +1157,7 @@ void cn_slow_hash(const void *data, size_t length, char *hash, int variant, int
for(i = 0; i < MEMORY / INIT_SIZE_BYTE; i++)
{
aes_pseudo_round(text, text, expandedKey, INIT_SIZE_BLK);
memcpy(&local_hp_state[i * INIT_SIZE_BYTE], text, INIT_SIZE_BYTE);
memcpy(&hp_state[i * INIT_SIZE_BYTE], text, INIT_SIZE_BYTE);
}
U64(a)[0] = U64(&state.k[0])[0] ^ U64(&state.k[32])[0];
@ -1326,7 +1192,7 @@ void cn_slow_hash(const void *data, size_t length, char *hash, int variant, int
for(i = 0; i < MEMORY / INIT_SIZE_BYTE; i++)
{
// add the xor to the pseudo round
aes_pseudo_round_xor(text, text, expandedKey, &local_hp_state[i * INIT_SIZE_BYTE], INIT_SIZE_BLK);
aes_pseudo_round_xor(text, text, expandedKey, &hp_state[i * INIT_SIZE_BYTE], INIT_SIZE_BLK);
}
/* CryptoNight Step 5: Apply Keccak to the state again, and then
@ -1341,7 +1207,7 @@ void cn_slow_hash(const void *data, size_t length, char *hash, int variant, int
extra_hashes[state.hs.b[0] & 3](&state, 200, hash);
#ifdef FORCE_USE_HEAP
aligned_free(local_hp_state);
aligned_free(hp_state);
#endif
}
#else /* aarch64 && crypto */
@ -1385,7 +1251,7 @@ void mul(const uint8_t *ca, const uint8_t *cb, uint8_t *cres) {
#else // !NO_OPTIMIZED_MULTIPLY_ON_ARM
#ifdef __aarch64__ /* ARM64, no crypto */
#define mul(a, b, c) cn_mul128((const uint64_t *)a, (const uint64_t *)b, (uint64_t *)c)
#define mul(a, b, c) cn_mul128((const uint64_t *)a, (const uint64_t *)b, (uint64_t *)c)
STATIC void cn_mul128(const uint64_t *a, const uint64_t *b, uint64_t *r)
{
uint64_t lo, hi;
@ -1395,7 +1261,7 @@ STATIC void cn_mul128(const uint64_t *a, const uint64_t *b, uint64_t *r)
r[1] = lo;
}
#else /* ARM32 */
#define mul(a, b, c) cn_mul128((const uint32_t *)a, (const uint32_t *)b, (uint32_t *)c)
#define mul(a, b, c) cn_mul128((const uint32_t *)a, (const uint32_t *)b, (uint32_t *)c)
STATIC void cn_mul128(const uint32_t *aa, const uint32_t *bb, uint32_t *r)
{
uint32_t t0, t1, t2=0, t3=0;
@ -1464,7 +1330,6 @@ void cn_slow_hash(const void *data, size_t length, char *hash, int variant, int
{
uint8_t text[INIT_SIZE_BYTE];
uint8_t a[AES_BLOCK_SIZE];
uint8_t a1[AES_BLOCK_SIZE];
uint8_t b[AES_BLOCK_SIZE * 2];
uint8_t c[AES_BLOCK_SIZE];
uint8_t c1[AES_BLOCK_SIZE];
@ -1524,10 +1389,10 @@ void cn_slow_hash(const void *data, size_t length, char *hash, int variant, int
// Iteration 1
j = state_index(a);
p = &long_state[j];
aesb_single_round(p, c1, a);
aesb_single_round(p, p, a);
copy_block(c1, p);
VARIANT2_PORTABLE_SHUFFLE_ADD(c1, a, long_state, j);
copy_block(p, c1);
VARIANT2_PORTABLE_SHUFFLE_ADD(long_state, j);
xor_blocks(p, b);
VARIANT1_1(p);
@ -1536,15 +1401,14 @@ void cn_slow_hash(const void *data, size_t length, char *hash, int variant, int
p = &long_state[j];
copy_block(c, p);
copy_block(a1, a);
VARIANT2_PORTABLE_INTEGER_MATH(c, c1);
VARIANT4_RANDOM_MATH(a1, c, r, b, b + AES_BLOCK_SIZE);
VARIANT4_RANDOM_MATH(a, c, r, b, b + AES_BLOCK_SIZE);
mul(c1, c, d);
VARIANT2_2_PORTABLE();
VARIANT2_PORTABLE_SHUFFLE_ADD(c1, a, long_state, j);
sum_half_blocks(a1, d);
swap_blocks(a1, c);
xor_blocks(a1, c);
VARIANT2_PORTABLE_SHUFFLE_ADD(long_state, j);
sum_half_blocks(a, d);
swap_blocks(a, c);
xor_blocks(a, c);
VARIANT1_2(U64(c) + 1);
copy_block(p, c);
@ -1552,7 +1416,6 @@ void cn_slow_hash(const void *data, size_t length, char *hash, int variant, int
copy_block(b + AES_BLOCK_SIZE, b);
}
copy_block(b, c1);
copy_block(a, a1);
}
memcpy(text, state.init, INIT_SIZE_BYTE);
@ -1580,9 +1443,7 @@ void cn_slow_hash(const void *data, size_t length, char *hash, int variant, int
#else
// Portable implementation as a fallback
#define hp_jitfunc ((v4_random_math_JIT_func)NULL)
void cn_slow_hash_allocate_state(void)
void slow_hash_allocate_state(void)
{
// Do nothing, this is just to maintain compatibility with the upgraded slow-hash.c
return;
@ -1675,7 +1536,6 @@ void cn_slow_hash(const void *data, size_t length, char *hash, int variant, int
union cn_slow_hash_state state;
uint8_t text[INIT_SIZE_BYTE];
uint8_t a[AES_BLOCK_SIZE];
uint8_t a1[AES_BLOCK_SIZE];
uint8_t b[AES_BLOCK_SIZE * 2];
uint8_t c1[AES_BLOCK_SIZE];
uint8_t c2[AES_BLOCK_SIZE];
@ -1719,7 +1579,7 @@ void cn_slow_hash(const void *data, size_t length, char *hash, int variant, int
j = e2i(a, MEMORY / AES_BLOCK_SIZE) * AES_BLOCK_SIZE;
copy_block(c1, &long_state[j]);
aesb_single_round(c1, c1, a);
VARIANT2_PORTABLE_SHUFFLE_ADD(c1, a, long_state, j);
VARIANT2_PORTABLE_SHUFFLE_ADD(long_state, j);
copy_block(&long_state[j], c1);
xor_blocks(&long_state[j], b);
assert(j == e2i(a, MEMORY / AES_BLOCK_SIZE) * AES_BLOCK_SIZE);
@ -1727,22 +1587,23 @@ void cn_slow_hash(const void *data, size_t length, char *hash, int variant, int
/* Iteration 2 */
j = e2i(c1, MEMORY / AES_BLOCK_SIZE) * AES_BLOCK_SIZE;
copy_block(c2, &long_state[j]);
copy_block(a1, a);
VARIANT2_PORTABLE_INTEGER_MATH(c2, c1);
VARIANT4_RANDOM_MATH(a1, c2, r, b, b + AES_BLOCK_SIZE);
VARIANT4_RANDOM_MATH(a, c2, r, b, b + AES_BLOCK_SIZE);
mul(c1, c2, d);
VARIANT2_2_PORTABLE();
VARIANT2_PORTABLE_SHUFFLE_ADD(c1, a, long_state, j);
sum_half_blocks(a1, d);
swap_blocks(a1, c2);
xor_blocks(a1, c2);
VARIANT2_PORTABLE_SHUFFLE_ADD(long_state, j);
swap_blocks(a, c1);
sum_half_blocks(c1, d);
swap_blocks(c1, c2);
xor_blocks(c1, c2);
VARIANT1_2(c2 + 8);
copy_block(&long_state[j], c2);
assert(j == e2i(a, MEMORY / AES_BLOCK_SIZE) * AES_BLOCK_SIZE);
if (variant >= 2) {
copy_block(b + AES_BLOCK_SIZE, b);
}
copy_block(b, c1);
copy_block(a, a1);
copy_block(b, a);
copy_block(a, c1);
}
memcpy(text, state.init, INIT_SIZE_BYTE);

@ -10,11 +10,8 @@ enum V4_Settings
TOTAL_LATENCY = 15 * 3,
// Always generate at least 60 instructions
NUM_INSTRUCTIONS_MIN = 60,
// Never generate more than 70 instructions (final RET instruction doesn't count here)
NUM_INSTRUCTIONS_MAX = 70,
NUM_INSTRUCTIONS = 60,
// Available ALUs for MUL
// Modern CPUs typically have only 1 ALU which can do multiplications
ALU_COUNT_MUL = 1,
@ -39,9 +36,10 @@ enum V4_InstructionList
// V4_InstructionDefinition is used to generate code from random data
// Every random sequence of bytes is a valid code
//
// There are 9 registers in total:
// There are 8 registers in total:
// - 4 variable registers
// - 5 constant registers initialized from loop variables
// - 4 constant registers initialized from loop variables
//
// This is why dst_index is 2 bits
enum V4_InstructionDefinition
{
@ -59,9 +57,9 @@ struct V4_Instruction
};
#ifndef FORCEINLINE
#if defined(__GNUC__)
#ifdef __GNUC__
#define FORCEINLINE __attribute__((always_inline)) inline
#elif defined(_MSC_VER)
#elif _MSC_VER
#define FORCEINLINE __forceinline
#else
#define FORCEINLINE inline
@ -69,9 +67,9 @@ struct V4_Instruction
#endif
#ifndef UNREACHABLE_CODE
#if defined(__GNUC__)
#ifdef __GNUC__
#define UNREACHABLE_CODE __builtin_unreachable()
#elif defined(_MSC_VER)
#elif _MSC_VER
#define UNREACHABLE_CODE __assume(false)
#else
#define UNREACHABLE_CODE
@ -143,16 +141,16 @@ static FORCEINLINE void v4_random_math(const struct V4_Instruction* code, v4_reg
// Generated program can have 60 + a few more (usually 2-3) instructions to achieve required latency
// I've checked all block heights < 10,000,000 and here is the distribution of program sizes:
//
// 60 27960
// 61 105054
// 62 2452759
// 63 5115997
// 64 1022269
// 65 1109635
// 66 153145
// 67 8550
// 68 4529
// 69 102
// 60 28495
// 61 106077
// 62 2455855
// 63 5114930
// 64 1020868
// 65 1109026
// 66 151756
// 67 8429
// 68 4477
// 69 87
// Unroll 70 instructions here
V4_EXEC_10(0); // instructions 0-9
@ -178,7 +176,6 @@ static FORCEINLINE void check_data(size_t* data_index, const size_t bytes_needed
}
// Generates as many random math operations as possible with given latency and ALU restrictions
// "code" array must have space for NUM_INSTRUCTIONS_MAX+1 instructions
static inline int v4_random_math_init(struct V4_Instruction* code, const uint64_t height)
{
// MUL is 3 cycles, 3-way addition and rotations are 2 cycles, SUB/XOR are 1 cycle
@ -200,7 +197,6 @@ static inline int v4_random_math_init(struct V4_Instruction* code, const uint64_
memset(data, 0, sizeof(data));
uint64_t tmp = SWAP64LE(height);
memcpy(data, &tmp, sizeof(uint64_t));
data[20] = -38; // change seed
// Set data_index past the last byte in data
// to trigger full data update with blake hash
@ -208,22 +204,18 @@ static inline int v4_random_math_init(struct V4_Instruction* code, const uint64_
size_t data_index = sizeof(data);
int code_size;
// There is a small chance (1.8%) that register R8 won't be used in the generated program
// So we keep track of it and try again if it's not used
bool r8_used;
do {
int latency[9];
int asic_latency[9];
int latency[8];
int asic_latency[8];
// Tracks previous instruction and value of the source operand for registers R0-R3 throughout code execution
// byte 0: current value of the destination register
// byte 1: instruction opcode
// byte 2: current value of the source register
//
// Registers R4-R8 are constant and are treated as having the same value because when we do
// Registers R4-R7 are constant and are treated as having the same value because when we do
// the same operation twice with two constant source registers, it can be optimized into a single operation
uint32_t inst_data[9] = { 0, 1, 2, 3, 0xFFFFFF, 0xFFFFFF, 0xFFFFFF, 0xFFFFFF, 0xFFFFFF };
uint32_t inst_data[8] = { 0, 1, 2, 3, 0xFFFFFF, 0xFFFFFF, 0xFFFFFF, 0xFFFFFF };
bool alu_busy[TOTAL_LATENCY + 1][ALU_COUNT];
bool is_rotation[V4_INSTRUCTION_COUNT];
@ -242,7 +234,6 @@ static inline int v4_random_math_init(struct V4_Instruction* code, const uint64_
code_size = 0;
int total_iterations = 0;
r8_used = false;
// Generate random code to achieve minimal required latency for our abstract CPU
// Try to get this latency for all 4 registers
@ -286,9 +277,9 @@ static inline int v4_random_math_init(struct V4_Instruction* code, const uint64_
// Don't do ADD/SUB/XOR with the same register
if (((opcode == ADD) || (opcode == SUB) || (opcode == XOR)) && (a == b))
{
// Use register R8 as source instead
b = 8;
src_index = 8;
// a is always < 4, so we don't need to check bounds here
b = a + 4;
src_index = b;
}
// Don't do rotation with the same destination twice because it's equal to a single rotation
@ -368,11 +359,6 @@ static inline int v4_random_math_init(struct V4_Instruction* code, const uint64_
code[code_size].src_index = src_index;
code[code_size].C = 0;
if (src_index == 8)
{
r8_used = true;
}
if (opcode == ADD)
{
// ADD instruction is implemented as two 1-cycle instructions on a real CPU, so mark ALU as busy for the next cycle too
@ -387,7 +373,7 @@ static inline int v4_random_math_init(struct V4_Instruction* code, const uint64_
}
++code_size;
if (code_size >= NUM_INSTRUCTIONS_MIN)
if (code_size >= NUM_INSTRUCTIONS)
{
break;
}
@ -402,7 +388,7 @@ static inline int v4_random_math_init(struct V4_Instruction* code, const uint64_
// We need to add a few more MUL and ROR instructions to achieve minimal required latency for ASIC
// Get this latency for at least 1 of the 4 registers
const int prev_code_size = code_size;
while ((code_size < NUM_INSTRUCTIONS_MAX) && (asic_latency[0] < TOTAL_LATENCY) && (asic_latency[1] < TOTAL_LATENCY) && (asic_latency[2] < TOTAL_LATENCY) && (asic_latency[3] < TOTAL_LATENCY))
while ((asic_latency[0] < TOTAL_LATENCY) && (asic_latency[1] < TOTAL_LATENCY) && (asic_latency[2] < TOTAL_LATENCY) && (asic_latency[3] < TOTAL_LATENCY))
{
int min_idx = 0;
int max_idx = 0;
@ -424,11 +410,9 @@ static inline int v4_random_math_init(struct V4_Instruction* code, const uint64_
++code_size;
}
// There is ~98.15% chance that loop condition is false, so this loop will execute only 1 iteration most of the time
// It never does more than 4 iterations for all block heights < 10,000,000
} while (!r8_used || (code_size < NUM_INSTRUCTIONS_MIN) || (code_size > NUM_INSTRUCTIONS_MAX));
// There is ~99.8% chance that code_size >= NUM_INSTRUCTIONS here, so second iteration is required rarely
} while (code_size < NUM_INSTRUCTIONS);
// It's guaranteed that NUM_INSTRUCTIONS_MIN <= code_size <= NUM_INSTRUCTIONS_MAX here
// Add final instruction to stop the interpreter
code[code_size].opcode = RET;
code[code_size].dst_index = 0;

@ -87,7 +87,7 @@ namespace cryptonote {
const int emission_speed_factor = EMISSION_SPEED_FACTOR_PER_MINUTE - (target_minutes-1);
uint64_t base_reward = (MONEY_SUPPLY - already_generated_coins) >> emission_speed_factor;
if (base_reward < FINAL_SUBSIDY_PER_MINUTE*target_minutes)
if (base_reward <= FINAL_SUBSIDY_PER_MINUTE*target_minutes)
{
base_reward = FINAL_SUBSIDY_PER_MINUTE*target_minutes;
}

@ -305,7 +305,7 @@ namespace boost
a & x.type;
if (x.type == rct::RCTTypeNull)
return;
if (x.type != rct::RCTTypeFull && x.type != rct::RCTTypeSimple && x.type != rct::RCTTypeBulletproof && x.type != rct::RCTTypeBulletproof2 && x.type != rct::RCTTypeCLSAG)
if (x.type != rct::RCTTypeFull && x.type != rct::RCTTypeSimple && x.type != rct::RCTTypeBulletproof && x.type != rct::RCTTypeBulletproof2 && x.type != rct::RCTTypeFullBulletproof && x.type != rct::RCTTypeSimpleBulletproof && x.type != rct::RCTTypeCLSAG)
throw boost::archive::archive_exception(boost::archive::archive_exception::other_exception, "Unsupported rct type");
// a & x.message; message is not serialized, as it can be reconstructed from the tx data
// a & x.mixRing; mixRing is not serialized, as it can be reconstructed from the offsets
@ -335,7 +335,7 @@ namespace boost
a & x.type;
if (x.type == rct::RCTTypeNull)
return;
if (x.type != rct::RCTTypeFull && x.type != rct::RCTTypeSimple && x.type != rct::RCTTypeBulletproof && x.type != rct::RCTTypeBulletproof2 && x.type != rct::RCTTypeCLSAG)
if (x.type != rct::RCTTypeFull && x.type != rct::RCTTypeSimple && x.type != rct::RCTTypeBulletproof && x.type != rct::RCTTypeBulletproof2 && x.type != rct::RCTTypeFullBulletproof && x.type != rct::RCTTypeSimpleBulletproof && x.type != rct::RCTTypeCLSAG)
throw boost::archive::archive_exception(boost::archive::archive_exception::other_exception, "Unsupported rct type");
// a & x.message; message is not serialized, as it can be reconstructed from the tx data
// a & x.mixRing; mixRing is not serialized, as it can be reconstructed from the offsets
@ -351,7 +351,7 @@ namespace boost
a & x.p.MGs;
if (ver >= 1u)
a & x.p.CLSAGs;
if (x.type == rct::RCTTypeBulletproof || x.type == rct::RCTTypeBulletproof2 || x.type == rct::RCTTypeCLSAG)
if (x.type == rct::RCTTypeBulletproof || x.type == rct::RCTTypeBulletproof2 || x.type == rct::RCTTypeSimpleBulletproof || x.type == rct::RCTTypeCLSAG)
a & x.p.pseudoOuts;
}

@ -180,7 +180,7 @@ namespace cryptonote
if (!base_only)
{
const bool bulletproof = rct::is_rct_bulletproof(rv.type);
if (bulletproof)
if (rct::is_rct_new_bulletproof(rv.type))
{
if (rv.p.bulletproofs.size() != 1)
{
@ -193,7 +193,7 @@ namespace cryptonote
return false;
}
const size_t max_outputs = 1 << (rv.p.bulletproofs[0].L.size() - 6);
if (max_outputs < tx.vout.size())
if (max_outputs < tx.vout.size() && rv.type == rct::RCTTypeBulletproof)
{
LOG_PRINT_L1("Failed to parse transaction from blob, bad bulletproofs max outputs in tx " << get_transaction_hash(tx));
return false;
@ -204,6 +204,26 @@ namespace cryptonote
for (size_t i = 0; i < n_amounts; ++i)
rv.p.bulletproofs[0].V[i] = rct::scalarmultKey(rv.outPk[i].mask, rct::INV_EIGHT);
}
else if (bulletproof)
{
if (rct::n_bulletproof_v1_amounts(rv.p.bulletproofs) != tx.vout.size())
{
LOG_PRINT_L1("Failed to parse transaction from blob, bad bulletproofs size in tx " << get_transaction_hash(tx));
return false;
}
size_t idx = 0;
for (size_t n = 0; n < rv.outPk.size(); ++n)
{
//rv.p.bulletproofs[n].V.resize(1);
//rv.p.bulletproofs[n].V[0] = rv.outPk[n].mask;
CHECK_AND_ASSERT_MES(rv.p.bulletproofs[n].L.size() >= 6, false, "Bad bulletproofs L size"); // at least 64 bits
const size_t n_amounts = rct::n_bulletproof_v1_amounts(rv.p.bulletproofs[n]);
CHECK_AND_ASSERT_MES(idx + n_amounts <= rv.outPk.size(), false, "Internal error filling out V");
rv.p.bulletproofs[n].V.resize(n_amounts);
for (size_t i = 0; i < n_amounts; ++i)
rv.p.bulletproofs[n].V[i] = rv.outPk[idx++].mask;
}
}
}
}
return true;
@ -426,6 +446,12 @@ namespace cryptonote
const rct::rctSig &rv = tx.rct_signatures;
if (!rct::is_rct_bulletproof(rv.type))
return blob_size;
const size_t n_outputs = tx.vout.size();
if (n_outputs <= 2)
return blob_size;
if (rct::is_rct_old_bulletproof(rv.type))
return blob_size;
const uint64_t bp_base = 368;
const size_t n_padded_outputs = rct::n_bulletproof_max_amounts(rv.p.bulletproofs);
uint64_t bp_clawback = get_transaction_weight_clawback(tx, n_padded_outputs);
CHECK_AND_ASSERT_THROW_MES_L1(bp_clawback <= std::numeric_limits<uint64_t>::max() - blob_size, "Weight overflow");
@ -975,7 +1001,7 @@ namespace cryptonote
{
switch (decimal_point)
{
case 12:
case 11:
case 9:
case 6:
case 3:
@ -998,8 +1024,8 @@ namespace cryptonote
decimal_point = default_decimal_point;
switch (decimal_point)
{
case 12:
return "monero";
case 11:
return "wownero";
case 9:
return "millinero";
case 6:
@ -1247,47 +1273,7 @@ namespace cryptonote
//---------------------------------------------------------------
bool calculate_block_hash(const block& b, crypto::hash& res, const blobdata_ref *blob)
{
blobdata bd;
blobdata_ref bdref;
if (!blob)
{
bd = block_to_blob(b);
bdref = bd;
blob = &bdref;
}
bool hash_result = get_object_hash(get_block_hashing_blob(b), res);
if (!hash_result)
return false;
if (b.miner_tx.vin.size() == 1 && b.miner_tx.vin[0].type() == typeid(cryptonote::txin_gen))
{
const cryptonote::txin_gen &txin_gen = boost::get<cryptonote::txin_gen>(b.miner_tx.vin[0]);
if (txin_gen.height != 202612)
return true;
}
// EXCEPTION FOR BLOCK 202612
const std::string correct_blob_hash_202612 = "3a8a2b3a29b50fc86ff73dd087ea43c6f0d6b8f936c849194d5c84c737903966";
const std::string existing_block_id_202612 = "bbd604d2ba11ba27935e006ed39c9bfdd99b76bf4a50654bc1e1e61217962698";
crypto::hash block_blob_hash = get_blob_hash(*blob);
if (string_tools::pod_to_hex(block_blob_hash) == correct_blob_hash_202612)
{
string_tools::hex_to_pod(existing_block_id_202612, res);
return true;
}
{
// make sure that we aren't looking at a block with the 202612 block id but not the correct blobdata
if (string_tools::pod_to_hex(res) == existing_block_id_202612)
{
LOG_ERROR("Block with block id for 202612 but incorrect block blob hash found!");
res = null_hash;
return false;
}
}
return hash_result;
return get_object_hash(get_block_hashing_blob(b), res);
}
//---------------------------------------------------------------
bool get_block_hash(const block& b, crypto::hash& res)

@ -33,6 +33,7 @@
#include <cstddef>
#include <cstdint>
#include <vector>
#include <boost/math/special_functions/round.hpp>
#include "int-util.h"
#include "crypto/hash.h"
@ -200,20 +201,19 @@ namespace cryptonote {
return check_hash_128(hash, difficulty);
}
difficulty_type next_difficulty(std::vector<uint64_t> timestamps, std::vector<difficulty_type> cumulative_difficulties, size_t target_seconds) {
difficulty_type next_difficulty(std::vector<uint64_t> timestamps, network_type m_nettype, std::vector<difficulty_type> cumulative_difficulties, size_t target_seconds, uint64_t HEIGHT) {
//cutoff DIFFICULTY_LAG
if(timestamps.size() > DIFFICULTY_WINDOW)
{
timestamps.resize(DIFFICULTY_WINDOW);
cumulative_difficulties.resize(DIFFICULTY_WINDOW);
}
size_t length = timestamps.size();
assert(length == cumulative_difficulties.size());
if (length <= 1) {
return 1;
}
if (HEIGHT < 200 && HEIGHT > 2 && m_nettype == TESTNET) { return 500; }
static_assert(DIFFICULTY_WINDOW >= 2, "Window is too small");
assert(length <= DIFFICULTY_WINDOW);
sort(timestamps.begin(), timestamps.end());
@ -254,4 +254,152 @@ namespace cryptonote {
return "0x" + s;
}
// LWMA difficulty algorithm
// Background: https://github.com/zawy12/difficulty-algorithms/issues/3
// Copyright (c) 2017-2018 Zawy
difficulty_type next_difficulty_v2(std::vector<std::uint64_t> timestamps, network_type m_nettype, std::vector<difficulty_type> cumulative_difficulties, size_t target_seconds, uint64_t HEIGHT) {
const int64_t T = static_cast<int64_t>(target_seconds);
size_t N = DIFFICULTY_WINDOW_V2;
if (m_nettype == MAINNET) {
if (timestamps.size() < 4) {
return 1;
} else if ( timestamps.size() < N+1 ) {
N = timestamps.size() - 1;
} else {
timestamps.resize(N+1);
cumulative_difficulties.resize(N+1);
}
}
if (HEIGHT < 200 && m_nettype == TESTNET) { return 500; }
const double adjust = 0.998;
const double k = N * (N + 1) / 2;
double LWMA(0), sum_inverse_D(0), harmonic_mean_D(0), nextDifficulty(0);
int64_t solveTime(0);
uint64_t difficulty(0), next_difficulty(0);
for (size_t i = 1; i <= N; i++) {
solveTime = static_cast<int64_t>(timestamps[i]) - static_cast<int64_t>(timestamps[i - 1]);
solveTime = std::min<int64_t>((T * 7), std::max<int64_t>(solveTime, (-7 * T)));
difficulty = static_cast<uint64_t>(cumulative_difficulties[i] - cumulative_difficulties[i - 1]);
LWMA += (int64_t)(solveTime * i) / k;
sum_inverse_D += 1 / static_cast<double>(difficulty);
}
harmonic_mean_D = N / sum_inverse_D;
if (static_cast<int64_t>(boost::math::round(LWMA)) < T / 20)
LWMA = static_cast<double>(T / 20);
nextDifficulty = harmonic_mean_D * T / LWMA * adjust;
next_difficulty = static_cast<uint64_t>(nextDifficulty);
return next_difficulty;
}
// LWMA-2
difficulty_type next_difficulty_v3(std::vector<uint64_t> timestamps, network_type m_nettype, std::vector<difficulty_type> cumulative_difficulties, uint64_t HEIGHT) {
int64_t T = DIFFICULTY_TARGET_V2;
int64_t N = DIFFICULTY_WINDOW_V2;
int64_t L(0), ST, sum_3_ST(0), next_D, prev_D;
assert(timestamps.size() == cumulative_difficulties.size() && timestamps.size() <= static_cast<uint64_t>(N+1) );
if (HEIGHT < 200 && m_nettype == TESTNET) { return 500; }
for ( int64_t i = 1; i <= N; i++ ) {
ST = static_cast<int64_t>(timestamps[i]) - static_cast<int64_t>(timestamps[i-1]);
ST = std::max(-4*T, std::min(ST, 6*T));
L += ST * i ;
if ( i > N-3 ) {
sum_3_ST += ST;
}
}
next_D = (static_cast<int64_t>(cumulative_difficulties[N] - cumulative_difficulties[0])*T*(N+1)*99)/(100*2*L);
prev_D = static_cast<int64_t>(cumulative_difficulties[N] - cumulative_difficulties[N-1]);
next_D = std::max((prev_D*67)/100, std::min(next_D, (prev_D*150)/100));
if ( sum_3_ST < (8*T)/10) {
next_D = std::max(next_D,(prev_D*108)/100);
}
return static_cast<uint64_t>(next_D);
}
// LWMA-4
difficulty_type next_difficulty_v4(std::vector<uint64_t> timestamps, network_type m_nettype, std::vector<difficulty_type> cumulative_difficulties, uint64_t HEIGHT) {
uint64_t T = DIFFICULTY_TARGET_V2;
uint64_t N = DIFFICULTY_WINDOW_V2;
uint64_t L(0), ST(0), next_D, prev_D, avg_D, i;
assert(timestamps.size() == cumulative_difficulties.size() && timestamps.size() <= N+1 );
if (HEIGHT <= 63469 + 1 && m_nettype == MAINNET) { return 100000069; }
if (HEIGHT < 200 && m_nettype == TESTNET) { return 500; }
std::vector<uint64_t>TS(N+1);
TS[0] = timestamps[0];
for ( i = 1; i <= N; i++) {
if ( timestamps[i] > TS[i-1] ) { TS[i] = timestamps[i]; }
else { TS[i] = TS[i-1]; }
}
for ( i = 1; i <= N; i++) {
if ( i > 4 && TS[i]-TS[i-1] > 5*T && TS[i-1] - TS[i-4] < (14*T)/10 ) { ST = 2*T; }
else if ( i > 7 && TS[i]-TS[i-1] > 5*T && TS[i-1] - TS[i-7] < 4*T ) { ST = 2*T; }
else {
ST = std::min(5*T ,TS[i] - TS[i-1]);
}
L += ST * i ;
}
if (L < N*N*T/20 ) { L = N*N*T/20; }
avg_D = static_cast<uint64_t>(( cumulative_difficulties[N] - cumulative_difficulties[0] )/ N);
if (avg_D > 2000000*N*N*T) {
next_D = (avg_D/(200*L))*(N*(N+1)*T*97);
}
else { next_D = (avg_D*N*(N+1)*T*97)/(200*L); }
prev_D = static_cast<uint64_t>(cumulative_difficulties[N] - cumulative_difficulties[N-1]);
if ( ( TS[N] - TS[N-1] < (2*T)/10 ) ||
( TS[N] - TS[N-2] < (5*T)/10 ) ||
( TS[N] - TS[N-3] < (8*T)/10 ) )
{
next_D = std::max( next_D, std::min( (prev_D*110)/100, (105*avg_D)/100 ) );
}
i = 1000000000;
while (i > 1) {
if ( next_D > i*100 ) { next_D = ((next_D+i/2)/i)*i; break; }
else { i /= 10; }
}
if ( next_D > 100000 ) {
next_D = ((next_D+500)/1000)*1000 + std::min(static_cast<uint64_t>(999), (TS[N]-TS[N-10])/10);
}
return static_cast<uint64_t>(next_D);
}
// LWMA-1 difficulty algorithm
// Copyright (c) 2017-2019 Zawy, MIT License
// https://github.com/zawy12/difficulty-algorithms/issues/3
difficulty_type next_difficulty_v5(std::vector<std::uint64_t> timestamps, network_type m_nettype, std::vector<difficulty_type> cumulative_difficulties, uint64_t T, uint64_t N, uint64_t HEIGHT) {
assert(timestamps.size() == cumulative_difficulties.size() && timestamps.size() <= N+1 );
if (HEIGHT >= 81769 && HEIGHT < 81769 + N && m_nettype == MAINNET) { return 10000000; }
if (HEIGHT < 200 && m_nettype == TESTNET) { return 500; }
assert(timestamps.size() == N+1);
uint64_t L(0), next_D, i, this_timestamp(0), previous_timestamp(0), avg_D;
previous_timestamp = timestamps[0]-T;
for ( i = 1; i <= N; i++) {
// Safely prevent out-of-sequence timestamps
if ( timestamps[i] > previous_timestamp ) { this_timestamp = timestamps[i]; }
else { this_timestamp = previous_timestamp+1; }
L += i*std::min(6*T ,this_timestamp - previous_timestamp);
previous_timestamp = this_timestamp;
}
if (L < N*N*T/20 ) { L = N*N*T/20; }
avg_D = static_cast<uint64_t>(( cumulative_difficulties[N] - cumulative_difficulties[0] )/ N);
// Prevent round off error for small D and overflow for large D.
if (avg_D > 2000000*N*N*T) {
next_D = (avg_D/(200*L))*(N*(N+1)*T*99);
}
else { next_D = (avg_D*N*(N+1)*T*99)/(200*L); }
// Make all insignificant digits zero for easy reading.
i = 1000000000;
while (i > 1) {
if ( next_D > i*100 ) { next_D = ((next_D+i/2)/i)*i; break; }
else { i /= 10; }
}
return next_D;
}
}

@ -57,7 +57,11 @@ namespace cryptonote
bool check_hash_128(const crypto::hash &hash, difficulty_type difficulty);
bool check_hash(const crypto::hash &hash, difficulty_type difficulty);
difficulty_type next_difficulty(std::vector<std::uint64_t> timestamps, std::vector<difficulty_type> cumulative_difficulties, size_t target_seconds);
difficulty_type next_difficulty(std::vector<std::uint64_t> timestamps, network_type m_nettype, std::vector<difficulty_type> cumulative_difficulties, size_t target_seconds, uint64_t HEIGHT);
difficulty_type next_difficulty_v2(std::vector<std::uint64_t> timestamps, network_type m_nettype, std::vector<difficulty_type> cumulative_difficulties, size_t target_seconds, uint64_t HEIGHT);
difficulty_type next_difficulty_v3(std::vector<std::uint64_t> timestamps, network_type m_nettype, std::vector<difficulty_type> cumulative_difficulties, uint64_t HEIGHT);
difficulty_type next_difficulty_v4(std::vector<std::uint64_t> timestamps, network_type m_nettype, std::vector<difficulty_type> cumulative_difficulties, uint64_t HEIGHT);
difficulty_type next_difficulty_v5(std::vector<std::uint64_t> timestamps, network_type m_nettype, std::vector<difficulty_type> cumulative_difficulties, uint64_t T, uint64_t N, uint64_t HEIGHT);
std::string hex(difficulty_type v);
}

@ -40,19 +40,20 @@
#define CRYPTONOTE_MAX_TX_SIZE 1000000
#define CRYPTONOTE_MAX_TX_PER_BLOCK 0x10000000
#define CRYPTONOTE_PUBLIC_ADDRESS_TEXTBLOB_VER 0
#define CRYPTONOTE_MINED_MONEY_UNLOCK_WINDOW 60
#define CURRENT_TRANSACTION_VERSION 2
#define CURRENT_BLOCK_MAJOR_VERSION 1
#define CURRENT_BLOCK_MINOR_VERSION 0
#define CURRENT_BLOCK_MAJOR_VERSION 7
#define CURRENT_BLOCK_MINOR_VERSION 7
#define CRYPTONOTE_BLOCK_FUTURE_TIME_LIMIT_V2 300*2
#define CRYPTONOTE_BLOCK_FUTURE_TIME_LIMIT 60*60*2
#define CRYPTONOTE_DEFAULT_TX_SPENDABLE_AGE 10
#define CRYPTONOTE_DEFAULT_TX_SPENDABLE_AGE 4
#define BLOCKCHAIN_TIMESTAMP_CHECK_WINDOW_V2 11
#define BLOCKCHAIN_TIMESTAMP_CHECK_WINDOW 60
// MONEY_SUPPLY - total number coins to be generated
#define MONEY_SUPPLY ((uint64_t)(-1))
#define EMISSION_SPEED_FACTOR_PER_MINUTE (20)
#define FINAL_SUBSIDY_PER_MINUTE ((uint64_t)300000000000) // 3 * pow(10, 11)
#define EMISSION_SPEED_FACTOR_PER_MINUTE (24)
#define FINAL_SUBSIDY_PER_MINUTE ((uint64_t)(0))
#define CRYPTONOTE_REWARD_BLOCKS_WINDOW 100
#define CRYPTONOTE_BLOCK_GRANTED_FULL_REWARD_ZONE_V2 60000 //size of block (bytes) after which reward for block calculated using block size
@ -61,9 +62,9 @@
#define CRYPTONOTE_LONG_TERM_BLOCK_WEIGHT_WINDOW_SIZE 100000 // size in blocks of the long term block weight median window
#define CRYPTONOTE_SHORT_TERM_BLOCK_WEIGHT_SURGE_FACTOR 50
#define CRYPTONOTE_COINBASE_BLOB_RESERVED_SIZE 600
#define CRYPTONOTE_DISPLAY_DECIMAL_POINT 12
#define CRYPTONOTE_DISPLAY_DECIMAL_POINT 11
// COIN - number of smallest units in one coin
#define COIN ((uint64_t)1000000000000) // pow(10, 12)
#define COIN ((uint64_t)100000000000) // pow(10, 11)
#define FEE_PER_KB_OLD ((uint64_t)10000000000) // pow(10, 10)
#define FEE_PER_KB ((uint64_t)2000000000) // 2 * pow(10, 9)
@ -76,14 +77,17 @@
#define ORPHANED_BLOCKS_MAX_COUNT 100
#define DIFFICULTY_TARGET_V2 120 // seconds
#define DIFFICULTY_TARGET_V1 60 // seconds - before first fork
#define DIFFICULTY_TARGET_V2 300
#define DIFFICULTY_TARGET_V1 300
#define DIFFICULTY_WINDOW_V3 144
#define DIFFICULTY_WINDOW_V2 60
#define DIFFICULTY_WINDOW 720 // blocks
#define DIFFICULTY_LAG 15 // !!!
#define DIFFICULTY_CUT 60 // timestamps to cut after sorting
#define DIFFICULTY_BLOCKS_COUNT_V3 DIFFICULTY_WINDOW_V3 + 1 // added +1 to make N=N
#define DIFFICULTY_BLOCKS_COUNT_V2 DIFFICULTY_WINDOW_V2 + 1 // added +1 to make N=N
#define DIFFICULTY_BLOCKS_COUNT DIFFICULTY_WINDOW + DIFFICULTY_LAG
#define CRYPTONOTE_LOCKED_TX_ALLOWED_DELTA_SECONDS_V1 DIFFICULTY_TARGET_V1 * CRYPTONOTE_LOCKED_TX_ALLOWED_DELTA_BLOCKS
#define CRYPTONOTE_LOCKED_TX_ALLOWED_DELTA_SECONDS_V2 DIFFICULTY_TARGET_V2 * CRYPTONOTE_LOCKED_TX_ALLOWED_DELTA_BLOCKS
#define CRYPTONOTE_LOCKED_TX_ALLOWED_DELTA_BLOCKS 1
@ -128,7 +132,7 @@
#define P2P_LOCAL_WHITE_PEERLIST_LIMIT 1000
#define P2P_LOCAL_GRAY_PEERLIST_LIMIT 5000
#define P2P_DEFAULT_CONNECTIONS_COUNT 8
#define P2P_DEFAULT_CONNECTIONS_COUNT 12
#define P2P_DEFAULT_HANDSHAKE_INTERVAL 60 //secondes
#define P2P_DEFAULT_PACKET_MAX_SIZE 50000000 //50000000 bytes maximum packet size
#define P2P_DEFAULT_PEERS_IN_HANDSHAKE 250
@ -153,7 +157,8 @@
#define RPC_IP_FAILS_BEFORE_BLOCK 3
#define CRYPTONOTE_NAME "bitmonero"
#define CRYPTONOTE_NAME "wownero"
#define CRYPTONOTE_POOLDATA_FILENAME "poolstate.bin"
#define CRYPTONOTE_BLOCKCHAINDATA_FILENAME "data.mdb"
#define CRYPTONOTE_BLOCKCHAINDATA_LOCK_FILENAME "lock.mdb"
#define P2P_NET_DATA_FILENAME "p2pstate.bin"
@ -164,21 +169,22 @@
#define HF_VERSION_DYNAMIC_FEE 4
#define HF_VERSION_MIN_MIXIN_4 6
#define HF_VERSION_MIN_MIXIN_6 7
#define HF_VERSION_MIN_MIXIN_10 8
#define HF_VERSION_MIN_MIXIN_7 7
#define HF_VERSION_MIN_MIXIN_21 9
#define HF_VERSION_ENFORCE_RCT 6
#define HF_VERSION_PER_BYTE_FEE 8
#define HF_VERSION_SMALLER_BP 10
#define HF_VERSION_LONG_TERM_BLOCK_WEIGHT 10
#define HF_VERSION_MIN_2_OUTPUTS 12
#define HF_VERSION_MIN_V2_COINBASE_TX 12
#define HF_VERSION_SAME_MIXIN 12
#define HF_VERSION_REJECT_SIGS_IN_COINBASE 12
#define HF_VERSION_ENFORCE_MIN_AGE 12
#define HF_VERSION_EFFECTIVE_SHORT_TERM_MEDIAN_IN_PENALTY 12
#define HF_VERSION_EXACT_COINBASE 13
#define HF_VERSION_CLSAG 13
#define HF_VERSION_DETERMINISTIC_UNLOCK_TIME 13
#define HF_VERSION_PER_BYTE_FEE 12
#define HF_VERSION_SMALLER_BP 13
#define HF_VERSION_LONG_TERM_BLOCK_WEIGHT 13
#define HF_VERSION_MIN_2_OUTPUTS 15
#define HF_VERSION_MIN_V2_COINBASE_TX 15
#define HF_VERSION_SAME_MIXIN 15
#define HF_VERSION_REJECT_SIGS_IN_COINBASE 15
#define HF_VERSION_ENFORCE_MIN_AGE 15
#define HF_VERSION_EFFECTIVE_SHORT_TERM_MEDIAN_IN_PENALTY 15
#define HF_VERSION_EXACT_COINBASE 16
#define HF_VERSION_CLSAG 16
#define HF_VERSION_DETERMINISTIC_UNLOCK_TIME 16
#define HF_VERSION_DYNAMIC_UNLOCK 16
#define PER_KB_FEE_QUANTIZATION_DECIMALS 8
@ -203,17 +209,17 @@ namespace config
uint64_t const DEFAULT_DUST_THRESHOLD = ((uint64_t)2000000000); // 2 * pow(10, 9)
uint64_t const BASE_REWARD_CLAMP_THRESHOLD = ((uint64_t)100000000); // pow(10, 8)
uint64_t const CRYPTONOTE_PUBLIC_ADDRESS_BASE58_PREFIX = 18;
uint64_t const CRYPTONOTE_PUBLIC_INTEGRATED_ADDRESS_BASE58_PREFIX = 19;
uint64_t const CRYPTONOTE_PUBLIC_SUBADDRESS_BASE58_PREFIX = 42;
uint16_t const P2P_DEFAULT_PORT = 18080;
uint16_t const RPC_DEFAULT_PORT = 18081;
uint16_t const ZMQ_RPC_DEFAULT_PORT = 18082;
uint64_t const CRYPTONOTE_PUBLIC_ADDRESS_BASE58_PREFIX = 4146;
uint64_t const CRYPTONOTE_PUBLIC_INTEGRATED_ADDRESS_BASE58_PREFIX = 6810;
uint64_t const CRYPTONOTE_PUBLIC_SUBADDRESS_BASE58_PREFIX = 12208;
uint16_t const P2P_DEFAULT_PORT = 34567;
uint16_t const RPC_DEFAULT_PORT = 34568;
uint16_t const ZMQ_RPC_DEFAULT_PORT = 34569;
boost::uuids::uuid const NETWORK_ID = { {
0x12 ,0x30, 0xF1, 0x71 , 0x61, 0x04 , 0x41, 0x61, 0x17, 0x31, 0x00, 0x82, 0x16, 0xA1, 0xA1, 0x10
0x11, 0x33, 0xFF, 0x77 , 0x61, 0x04 , 0x41, 0x61, 0x17, 0x31, 0x00, 0x82, 0x16, 0xA1, 0xA1, 0x10
} }; // Bender's nightmare
std::string const GENESIS_TX = "013c01ff0001ffffffffffff03029b2e4c0281c0b02e7c53291a94d1d0cbff8883f8024f5142ee494ffbbd08807121017767aafcde9be00dcfd098715ebcf7f410daebc582fda69d24a28e9d0bc890d1";
uint32_t const GENESIS_NONCE = 10000;
std::string const GENESIS_TX = "013c01ff0001ffffffffff1f029b2e4c0281c0b02e7c53291a94d1d0cbff8883f8024f5142ee494ffbbd08807121012a1a936be5d91c01ee876e38c13fab0ee11cbe86011a2bf7740fb5ebd39d267d";
uint32_t const GENESIS_NONCE = 70;
// Hash domain separators
const char HASH_KEY_BULLETPROOF_EXPONENT[] = "bulletproof";
@ -236,14 +242,14 @@ namespace config
uint64_t const CRYPTONOTE_PUBLIC_ADDRESS_BASE58_PREFIX = 53;
uint64_t const CRYPTONOTE_PUBLIC_INTEGRATED_ADDRESS_BASE58_PREFIX = 54;
uint64_t const CRYPTONOTE_PUBLIC_SUBADDRESS_BASE58_PREFIX = 63;
uint16_t const P2P_DEFAULT_PORT = 28080;
uint16_t const RPC_DEFAULT_PORT = 28081;
uint16_t const ZMQ_RPC_DEFAULT_PORT = 28082;
uint16_t const P2P_DEFAULT_PORT = 11180;
uint16_t const RPC_DEFAULT_PORT = 11181;
uint16_t const ZMQ_RPC_DEFAULT_PORT = 11182;
boost::uuids::uuid const NETWORK_ID = { {
0x12 ,0x30, 0xF1, 0x71 , 0x61, 0x04 , 0x41, 0x61, 0x17, 0x31, 0x00, 0x82, 0x16, 0xA1, 0xA1, 0x11
0x11, 0x33, 0xFF, 0x77 , 0x61, 0x04 , 0x41, 0x61, 0x17, 0x31, 0x00, 0x82, 0x16, 0xA1, 0xA1, 0x11
} }; // Bender's daydream
std::string const GENESIS_TX = "013c01ff0001ffffffffffff03029b2e4c0281c0b02e7c53291a94d1d0cbff8883f8024f5142ee494ffbbd08807121017767aafcde9be00dcfd098715ebcf7f410daebc582fda69d24a28e9d0bc890d1";
uint32_t const GENESIS_NONCE = 10001;
std::string const GENESIS_TX = "013c01ff0001ffffffffff1f029b2e4c0281c0b02e7c53291a94d1d0cbff8883f8024f5142ee494ffbbd088071210160eb755f618a2336055dee60f307fe0ded81c5b37b53d310175ca9ee69b0c8ad";
uint32_t const GENESIS_NONCE = 70;
}
namespace stagenet

@ -306,9 +306,9 @@ bool Blockchain::init(BlockchainDB* db, const network_type nettype, bool offline
if (m_nettype == FAKECHAIN || m_nettype == STAGENET)
m_hardfork = new HardFork(*db, 1, 0);
else if (m_nettype == TESTNET)
m_hardfork = new HardFork(*db, 1, testnet_hard_fork_version_1_till);
m_hardfork = new HardFork(*db, 1, 0);
else
m_hardfork = new HardFork(*db, 1, mainnet_hard_fork_version_1_till);
m_hardfork = new HardFork(*db, 1, 0);
}
if (m_nettype == FAKECHAIN)
{
@ -366,9 +366,9 @@ bool Blockchain::init(BlockchainDB* db, const network_type nettype, bool offline
uint64_t top_block_timestamp = m_db->get_top_block_timestamp();
uint64_t timestamp_diff = time(NULL) - top_block_timestamp;
// genesis block has no timestamp, could probably change it to have timestamp of 1397818133...
// genesis block has no timestamp, could probably change it to have timestamp of 1522624244 (2018-04-01 23:10:44, block 1)...
if(!top_block_timestamp)
timestamp_diff = time(NULL) - 1397818133;
timestamp_diff = time(NULL) - 1522624244;
// create general purpose async service queue
@ -864,6 +864,8 @@ start:
if (!(new_top_hash == top_hash)) D=0;
ss << "Re-locked, height " << height << ", tail id " << new_top_hash << (new_top_hash == top_hash ? "" : " (different)") << std::endl;
top_hash = new_top_hash;
uint8_t version = get_current_hard_fork_version();
uint64_t difficulty_blocks_count = version >= 11 ? DIFFICULTY_BLOCKS_COUNT_V3 : version <= 10 && version >= 8 ? DIFFICULTY_BLOCKS_COUNT_V2 : DIFFICULTY_BLOCKS_COUNT;
// ND: Speedup
// 1. Keep a list of the last 735 (or less) blocks that is used to compute difficulty,
@ -873,15 +875,15 @@ start:
bool check = false;
if (m_reset_timestamps_and_difficulties_height)
m_timestamps_and_difficulties_height = 0;
if (m_timestamps_and_difficulties_height != 0 && ((height - m_timestamps_and_difficulties_height) == 1) && m_timestamps.size() >= DIFFICULTY_BLOCKS_COUNT)
if (m_timestamps_and_difficulties_height != 0 && ((height - m_timestamps_and_difficulties_height) == 1) && m_timestamps.size() >= difficulty_blocks_count)
{
uint64_t index = height - 1;
m_timestamps.push_back(m_db->get_block_timestamp(index));
m_difficulties.push_back(m_db->get_block_cumulative_difficulty(index));
while (m_timestamps.size() > DIFFICULTY_BLOCKS_COUNT)
while (m_timestamps.size() > difficulty_blocks_count)
m_timestamps.erase(m_timestamps.begin());
while (m_difficulties.size() > DIFFICULTY_BLOCKS_COUNT)
while (m_difficulties.size() > difficulty_blocks_count)
m_difficulties.erase(m_difficulties.begin());
m_timestamps_and_difficulties_height = height;
@ -894,7 +896,7 @@ start:
std::vector<difficulty_type> difficulties_from_cache = difficulties;
{
uint64_t offset = height - std::min <uint64_t> (height, static_cast<uint64_t>(DIFFICULTY_BLOCKS_COUNT));
uint64_t offset = height - std::min <uint64_t> (height, static_cast<uint64_t>(difficulty_blocks_count));
if (offset == 0)
++offset;
@ -940,19 +942,35 @@ start:
}
size_t target = get_difficulty_target();
difficulty_type diff = next_difficulty(timestamps, difficulties, target);
uint64_t T = DIFFICULTY_TARGET_V2;
uint64_t N = DIFFICULTY_WINDOW_V3;
uint64_t HEIGHT = m_db->height();
difficulty_type diff = next_difficulty(timestamps, m_nettype, difficulties, target, HEIGHT);
if (version >= 11) {
diff = next_difficulty_v5(timestamps, m_nettype, difficulties, T, N, HEIGHT);
} else if (version == 10) {
diff = next_difficulty_v4(timestamps, m_nettype, difficulties, HEIGHT);
} else if (version == 9) {
diff = next_difficulty_v3(timestamps, m_nettype, difficulties, HEIGHT);
} else if (version == 8) {
diff = next_difficulty_v2(timestamps, m_nettype, difficulties, target, HEIGHT);
} else {
diff = next_difficulty(timestamps, m_nettype, difficulties, target, HEIGHT);
}
CRITICAL_REGION_LOCAL1(m_difficulty_lock);
m_difficulty_for_next_block_top_hash = top_hash;
m_difficulty_for_next_block = diff;
if (D && D != diff)
if (D && D != diff && m_nettype == MAINNET)
{
ss << "XXX Mismatch at " << height << "/" << top_hash << "/" << get_tail_id() << ": cached " << D << ", real " << diff << std::endl;
print = true;
}
++done;
if (done == 1 && D && D != diff)
if (done == 1 && D && D != diff && m_nettype == MAINNET)
{
print = true;
ss << "Might be a race. Let's see what happens if we try again..." << std::endl;
@ -960,12 +978,12 @@ start:
goto start;
}
ss << "Diff for " << top_hash << ": " << diff << std::endl;
if (print)
if (print && m_nettype == MAINNET)
{
MGINFO("START DUMP");
MGINFO(ss.str());
MGINFO("END DUMP");
MGINFO("Please send moneromooo on Freenode the contents of this log, from a couple dozen lines before START DUMP to END DUMP");
MGINFO("Please send wowario on Freenode #wownero-dev the contents of this log, from a couple dozen lines before START DUMP to END DUMP");
}
return diff;
}
@ -996,14 +1014,15 @@ size_t Blockchain::recalculate_difficulties(boost::optional<uint64_t> start_heig
const uint64_t start_height = start_height_opt ? *start_height_opt : check_difficulty_checkpoints().second;
const uint64_t top_height = m_db->height() - 1;
MGINFO("Recalculating difficulties from height " << start_height << " to height " << top_height);
uint8_t version = get_current_hard_fork_version();
uint64_t difficulty_blocks_count = version >= 11 ? DIFFICULTY_BLOCKS_COUNT_V3 : version <= 10 && version >= 8 ? DIFFICULTY_BLOCKS_COUNT_V2 : DIFFICULTY_BLOCKS_COUNT;
std::vector<uint64_t> timestamps;
std::vector<difficulty_type> difficulties;
timestamps.reserve(DIFFICULTY_BLOCKS_COUNT + 1);
difficulties.reserve(DIFFICULTY_BLOCKS_COUNT + 1);
timestamps.reserve(difficulty_blocks_count + 1);
difficulties.reserve(difficulty_blocks_count + 1);
if (start_height > 1)
{
for (uint64_t i = 0; i < DIFFICULTY_BLOCKS_COUNT; ++i)
for (uint64_t i = 0; i < difficulty_blocks_count; ++i)
{
uint64_t height = start_height - 1 - i;
if (height == 0)
@ -1017,8 +1036,24 @@ size_t Blockchain::recalculate_difficulties(boost::optional<uint64_t> start_heig
std::vector<difficulty_type> new_cumulative_difficulties;
for (uint64_t height = start_height; height <= top_height; ++height)
{
uint8_t version = get_current_hard_fork_version();
uint64_t T = DIFFICULTY_TARGET_V2;
uint64_t N = DIFFICULTY_WINDOW_V3;
uint64_t HEIGHT = m_db->height();
size_t target = get_ideal_hard_fork_version(height) < 2 ? DIFFICULTY_TARGET_V1 : DIFFICULTY_TARGET_V2;
difficulty_type recalculated_diff = next_difficulty(timestamps, difficulties, target);
difficulty_type recalculated_diff = next_difficulty(timestamps, m_nettype, difficulties, target, HEIGHT);
if (version >= 11) {
recalculated_diff = next_difficulty_v5(timestamps, m_nettype, difficulties, T, N, HEIGHT);
} else if (version == 10) {
recalculated_diff = next_difficulty_v4(timestamps, m_nettype, difficulties, HEIGHT);
} else if (version == 9) {
recalculated_diff = next_difficulty_v3(timestamps, m_nettype, difficulties, HEIGHT);
} else if (version == 8) {
recalculated_diff = next_difficulty_v2(timestamps, m_nettype, difficulties, target, HEIGHT);
} else {
recalculated_diff = next_difficulty(timestamps, m_nettype, difficulties, target, HEIGHT);
}
boost::multiprecision::uint256_t recalculated_cum_diff_256 = boost::multiprecision::uint256_t(recalculated_diff) + last_cum_diff;
CHECK_AND_ASSERT_THROW_MES(recalculated_cum_diff_256 <= std::numeric_limits<difficulty_type>::max(), "Difficulty overflow!");
@ -1046,9 +1081,9 @@ size_t Blockchain::recalculate_difficulties(boost::optional<uint64_t> start_heig
timestamps.push_back(m_db->get_block_timestamp(height));
difficulties.push_back(recalculated_cum_diff);
}
if (timestamps.size() > DIFFICULTY_BLOCKS_COUNT)
if (timestamps.size() > difficulty_blocks_count)
{
CHECK_AND_ASSERT_THROW_MES(timestamps.size() == DIFFICULTY_BLOCKS_COUNT + 1, "Wrong timestamps size: " << timestamps.size());
CHECK_AND_ASSERT_THROW_MES(timestamps.size() == difficulty_blocks_count + 1, "Wrong timestamps size: " << timestamps.size());
timestamps.erase(timestamps.begin());
difficulties.erase(difficulties.begin());
}
@ -1261,15 +1296,19 @@ difficulty_type Blockchain::get_next_difficulty_for_alternative_chain(const std:
std::vector<uint64_t> timestamps;
std::vector<difficulty_type> cumulative_difficulties;
uint8_t version = get_current_hard_fork_version();
size_t height = m_db->height();
size_t difficulty_blocks_count = version >= 11 ? DIFFICULTY_BLOCKS_COUNT_V3 : version <= 10 && version >= 8 ? DIFFICULTY_BLOCKS_COUNT_V2 : DIFFICULTY_BLOCKS_COUNT;
// if the alt chain isn't long enough to calculate the difficulty target
// based on its blocks alone, need to get more blocks from the main chain
if(alt_chain.size()< DIFFICULTY_BLOCKS_COUNT)
if(alt_chain.size()< difficulty_blocks_count)
{
CRITICAL_REGION_LOCAL(m_blockchain_lock);
// Figure out start and stop offsets for main chain blocks
size_t main_chain_stop_offset = alt_chain.size() ? alt_chain.front().height : bei.height;
size_t main_chain_count = DIFFICULTY_BLOCKS_COUNT - std::min(static_cast<size_t>(DIFFICULTY_BLOCKS_COUNT), alt_chain.size());
size_t main_chain_count = difficulty_blocks_count - std::min(static_cast<size_t>(difficulty_blocks_count), alt_chain.size());
main_chain_count = std::min(main_chain_count, main_chain_stop_offset);
size_t main_chain_start_offset = main_chain_stop_offset - main_chain_count;
@ -1284,7 +1323,7 @@ difficulty_type Blockchain::get_next_difficulty_for_alternative_chain(const std:
}
// make sure we haven't accidentally grabbed too many blocks...maybe don't need this check?
CHECK_AND_ASSERT_MES((alt_chain.size() + timestamps.size()) <= DIFFICULTY_BLOCKS_COUNT, false, "Internal error, alt_chain.size()[" << alt_chain.size() << "] + vtimestampsec.size()[" << timestamps.size() << "] NOT <= DIFFICULTY_WINDOW[]" << DIFFICULTY_BLOCKS_COUNT);
CHECK_AND_ASSERT_MES((alt_chain.size() + timestamps.size()) <= difficulty_blocks_count, false, "Internal error, alt_chain.size()[" << alt_chain.size() << "] + vtimestampsec.size()[" << timestamps.size() << "] NOT <= DIFFICULTY_WINDOW[]" << difficulty_blocks_count);
for (const auto &bei : alt_chain)
{
@ -1296,8 +1335,8 @@ difficulty_type Blockchain::get_next_difficulty_for_alternative_chain(const std:
// and timestamps from it alone
else
{
timestamps.resize(static_cast<size_t>(DIFFICULTY_BLOCKS_COUNT));
cumulative_difficulties.resize(static_cast<size_t>(DIFFICULTY_BLOCKS_COUNT));
timestamps.resize(static_cast<size_t>(difficulty_blocks_count));
cumulative_difficulties.resize(static_cast<size_t>(difficulty_blocks_count));
size_t count = 0;
size_t max_i = timestamps.size()-1;
// get difficulties and timestamps from most recent blocks in alt chain
@ -1306,16 +1345,30 @@ difficulty_type Blockchain::get_next_difficulty_for_alternative_chain(const std:
timestamps[max_i - count] = bei.bl.timestamp;
cumulative_difficulties[max_i - count] = bei.cumulative_difficulty;
count++;
if(count >= DIFFICULTY_BLOCKS_COUNT)
if(count >= difficulty_blocks_count)
break;
}
}
// FIXME: This will fail if fork activation heights are subject to voting
size_t target = get_ideal_hard_fork_version(bei.height) < 2 ? DIFFICULTY_TARGET_V1 : DIFFICULTY_TARGET_V2;
uint64_t T = DIFFICULTY_TARGET_V2;
uint64_t N = DIFFICULTY_WINDOW_V3;
uint64_t HEIGHT = m_db->height();
// calculate the difficulty target for the block and return it
return next_difficulty(timestamps, cumulative_difficulties, target);
if (version >= 11) {
return next_difficulty_v5(timestamps, m_nettype, cumulative_difficulties, T, N, HEIGHT);
} else if (version == 10) {
return next_difficulty_v4(timestamps, m_nettype, cumulative_difficulties, HEIGHT);
} else if (version == 9) {
return next_difficulty_v3(timestamps, m_nettype, cumulative_difficulties, HEIGHT);
} else if (version == 8) {
return next_difficulty_v2(timestamps, m_nettype, cumulative_difficulties, target, HEIGHT);
} else {
return next_difficulty(timestamps, m_nettype, cumulative_difficulties, target, HEIGHT);
}
return next_difficulty(timestamps, m_nettype, cumulative_difficulties, target, HEIGHT);
}
//------------------------------------------------------------------
// This function does a sanity check on basic things that all miner
@ -1342,7 +1395,32 @@ bool Blockchain::prevalidate_miner_transaction(const block& b, uint64_t height,
return false;
}
MDEBUG("Miner tx hash: " << get_transaction_hash(b.miner_tx));
CHECK_AND_ASSERT_MES(b.miner_tx.unlock_time == height + CRYPTONOTE_MINED_MONEY_UNLOCK_WINDOW, false, "coinbase transaction transaction has the wrong unlock time=" << b.miner_tx.unlock_time << ", expected " << height + CRYPTONOTE_MINED_MONEY_UNLOCK_WINDOW);
// Dynamic unlock time from HF 16
// To calculate unlock window, get the block hash at height-1337, convert the
// first 3 characters from hexadecimal to decimal, multiply by 2, and then add 288.
// Unlock minimum 1 day (288 blocks), maximum is ~29 days ((4095*2)+288 = 8478 blocks)
// unlock time = unlock_window + height
if (hf_version >= HF_VERSION_DYNAMIC_UNLOCK)
{
uint64_t N = m_nettype == MAINNET ? 1337 : 5;
crypto::hash blk_id = get_block_id_by_height(height-N);
std::string hex_str = epee::string_tools::pod_to_hex(blk_id).substr(0, 3);
uint64_t blk_num = std::stol(hex_str,nullptr,16)*2;
uint64_t unlock_window = blk_num + 288;
if (b.miner_tx.unlock_time != height + unlock_window) {
MWARNING("Coinbase transaction has the wrong unlock time=" << b.miner_tx.unlock_time << ", expected " << height + unlock_window);
return false;
}
LOG_PRINT_L1("+++++ MINER TX UNLOCK TIME INFO" <<
"\nHeight: " << height << ", Unlock window: " << unlock_window << ", Unlock time: " << b.miner_tx.unlock_time <<
"\nblk_height: " << height-N << ", blk_id: " << blk_id <<
"\nhex_str: " << hex_str << ", blk_num: " << blk_num);
} else {
CHECK_AND_ASSERT_MES(b.miner_tx.unlock_time == height + 60, false, "coinbase transaction transaction has the wrong unlock time="
<< b.miner_tx.unlock_time << ", expected " << height + 60);
}
//check outs overflow
//NOTE: not entirely sure this is necessary, given that this function is
@ -1714,7 +1792,7 @@ bool Blockchain::create_block_template(block& b, const crypto::hash *from_block,
//make blocks coin-base tx looks close to real coinbase tx to get truthful blob weight
uint8_t hf_version = b.major_version;
size_t max_outs = hf_version >= 4 ? 1 : 11;
bool r = construct_miner_tx(height, median_weight, already_generated_coins, txs_weight, fee, miner_address, b.miner_tx, ex_nonce, max_outs, hf_version);
bool r = construct_miner_tx(this, m_nettype, height, median_weight, already_generated_coins, txs_weight, fee, miner_address, b.miner_tx, ex_nonce, max_outs, hf_version);
CHECK_AND_ASSERT_MES(r, false, "Failed to construct miner tx, first chance");
size_t cumulative_weight = txs_weight + get_transaction_weight(b.miner_tx);
#if defined(DEBUG_CREATE_BLOCK_TEMPLATE)
@ -1723,7 +1801,7 @@ bool Blockchain::create_block_template(block& b, const crypto::hash *from_block,
#endif
for (size_t try_count = 0; try_count != 10; ++try_count)
{
r = construct_miner_tx(height, median_weight, already_generated_coins, cumulative_weight, fee, miner_address, b.miner_tx, ex_nonce, max_outs, hf_version);
r = construct_miner_tx(this, m_nettype, height, median_weight, already_generated_coins, cumulative_weight, fee, miner_address, b.miner_tx, ex_nonce, max_outs, hf_version);
CHECK_AND_ASSERT_MES(r, false, "Failed to construct miner tx, second chance");
size_t coinbase_weight = get_transaction_weight(b.miner_tx);
@ -1785,12 +1863,13 @@ bool Blockchain::create_block_template(block& b, const account_public_address& m
bool Blockchain::complete_timestamps_vector(uint64_t start_top_height, std::vector<uint64_t>& timestamps) const
{
LOG_PRINT_L3("Blockchain::" << __func__);
if(timestamps.size() >= BLOCKCHAIN_TIMESTAMP_CHECK_WINDOW)
uint8_t version = get_current_hard_fork_version();
size_t blockchain_timestamp_check_window = version >= 10 ? BLOCKCHAIN_TIMESTAMP_CHECK_WINDOW_V2 : BLOCKCHAIN_TIMESTAMP_CHECK_WINDOW;
if(timestamps.size() >= blockchain_timestamp_check_window)
return true;
CRITICAL_REGION_LOCAL(m_blockchain_lock);
size_t need_elements = BLOCKCHAIN_TIMESTAMP_CHECK_WINDOW - timestamps.size();
size_t need_elements = blockchain_timestamp_check_window - timestamps.size();
CHECK_AND_ASSERT_MES(start_top_height < m_db->height(), false, "internal error: passed start_height not < " << " m_db->height() -- " << start_top_height << " >= " << m_db->height());
size_t stop_offset = start_top_height > need_elements ? start_top_height - need_elements : 0;
timestamps.reserve(timestamps.size() + start_top_height - stop_offset);
@ -3014,20 +3093,20 @@ bool Blockchain::check_tx_outputs(const transaction& tx, tx_verification_context
}
}
// from v9, forbid borromean range proofs
if (hf_version > 8) {
// from v12, forbid borromean range proofs
if (hf_version > 11) {
if (tx.version >= 2) {
const bool borromean = rct::is_rct_borromean(tx.rct_signatures.type);
if (borromean)
{
MERROR_VER("Borromean range proofs are not allowed after v8");
MERROR_VER("Borromean range proofs are not allowed after v11");
tvc.m_invalid_output = true;
return false;
}
}
}
// from v10, allow bulletproofs v2
// from v13, allow bulletproofs v2
if (hf_version < HF_VERSION_SMALLER_BP) {
if (tx.version >= 2) {
if (tx.rct_signatures.type == rct::RCTTypeBulletproof2)
@ -3039,7 +3118,7 @@ bool Blockchain::check_tx_outputs(const transaction& tx, tx_verification_context
}
}
// from v11, allow only bulletproofs v2
// from v14, allow only bulletproofs v2
if (hf_version > HF_VERSION_SMALLER_BP) {
if (tx.version >= 2) {
if (tx.rct_signatures.type == rct::RCTTypeBulletproof)
@ -3051,7 +3130,7 @@ bool Blockchain::check_tx_outputs(const transaction& tx, tx_verification_context
}
}
// from v13, allow CLSAGs
// from v16, allow CLSAGs
if (hf_version < HF_VERSION_CLSAG) {
if (tx.version >= 2) {
if (tx.rct_signatures.type == rct::RCTTypeCLSAG)
@ -3063,7 +3142,7 @@ bool Blockchain::check_tx_outputs(const transaction& tx, tx_verification_context
}
}
// from v14, allow only CLSAGs
// from v17, allow only CLSAGs
if (hf_version > HF_VERSION_CLSAG) {
if (tx.version >= 2) {
if (tx.rct_signatures.type <= rct::RCTTypeBulletproof2)
@ -3075,6 +3154,19 @@ bool Blockchain::check_tx_outputs(const transaction& tx, tx_verification_context
}
}
// from v12, forbid old bulletproofs
if (hf_version > 11) {
if (tx.version >= 2) {
const bool old_bulletproof = rct::is_rct_old_bulletproof(tx.rct_signatures.type);
if (old_bulletproof)
{
MERROR_VER("Old Bulletproofs are not allowed after v11");
tvc.m_invalid_output = true;
return false;
}
}
}
return true;
}
//------------------------------------------------------------------
@ -3100,7 +3192,7 @@ bool Blockchain::expand_transaction_2(transaction &tx, const crypto::hash &tx_pr
rv.message = rct::hash2rct(tx_prefix_hash);
// mixRing - full and simple store it in opposite ways
if (rv.type == rct::RCTTypeFull)
if (rv.type == rct::RCTTypeFull || rv.type == rct::RCTTypeFullBulletproof)
{
CHECK_AND_ASSERT_MES(!pubkeys.empty() && !pubkeys[0].empty(), false, "empty pubkeys");
rv.mixRing.resize(pubkeys[0].size());
@ -3115,7 +3207,7 @@ bool Blockchain::expand_transaction_2(transaction &tx, const crypto::hash &tx_pr
}
}
}
else if (rv.type == rct::RCTTypeSimple || rv.type == rct::RCTTypeBulletproof || rv.type == rct::RCTTypeBulletproof2 || rv.type == rct::RCTTypeCLSAG)
else if (rv.type == rct::RCTTypeSimple || rv.type == rct::RCTTypeBulletproof || rv.type == rct::RCTTypeBulletproof2 || rv.type == rct::RCTTypeSimpleBulletproof || rv.type == rct::RCTTypeCLSAG)
{
CHECK_AND_ASSERT_MES(!pubkeys.empty() && !pubkeys[0].empty(), false, "empty pubkeys");
rv.mixRing.resize(pubkeys.size());
@ -3142,7 +3234,7 @@ bool Blockchain::expand_transaction_2(transaction &tx, const crypto::hash &tx_pr
}
// II
if (rv.type == rct::RCTTypeFull)
if (rv.type == rct::RCTTypeFull || rv.type == rct::RCTTypeFullBulletproof)
{
if (!tx.pruned)
{
@ -3152,7 +3244,7 @@ bool Blockchain::expand_transaction_2(transaction &tx, const crypto::hash &tx_pr
rv.p.MGs[0].II[n] = rct::ki2rct(boost::get<txin_to_key>(tx.vin[n]).k_image);
}
}
else if (rv.type == rct::RCTTypeSimple || rv.type == rct::RCTTypeBulletproof || rv.type == rct::RCTTypeBulletproof2)
else if (rv.type == rct::RCTTypeSimple || rv.type == rct::RCTTypeBulletproof || rv.type == rct::RCTTypeBulletproof2 || rv.type == rct::RCTTypeSimpleBulletproof)
{
if (!tx.pruned)
{
@ -3226,7 +3318,7 @@ bool Blockchain::check_tx_inputs(transaction& tx, tx_verification_context &tvc,
size_t n_unmixable = 0, n_mixable = 0;
size_t min_actual_mixin = std::numeric_limits<size_t>::max();
size_t max_actual_mixin = 0;
const size_t min_mixin = hf_version >= HF_VERSION_MIN_MIXIN_10 ? 10 : hf_version >= HF_VERSION_MIN_MIXIN_6 ? 6 : hf_version >= HF_VERSION_MIN_MIXIN_4 ? 4 : 2;
const size_t min_mixin = hf_version >= HF_VERSION_MIN_MIXIN_21 ? 21 : hf_version >= HF_VERSION_MIN_MIXIN_7 ? 7 : hf_version >= HF_VERSION_MIN_MIXIN_4 ? 4 : 2;
for (const auto& txin : tx.vin)
{
// non txin_to_key inputs will be rejected below
@ -3269,9 +3361,9 @@ bool Blockchain::check_tx_inputs(transaction& tx, tx_verification_context &tvc,
}
}
if (((hf_version == HF_VERSION_MIN_MIXIN_10 || hf_version == HF_VERSION_MIN_MIXIN_10+1) && min_actual_mixin != 10) || (hf_version >= HF_VERSION_MIN_MIXIN_10+2 && min_actual_mixin > 10))
if (((hf_version == HF_VERSION_MIN_MIXIN_21 || hf_version == HF_VERSION_MIN_MIXIN_21+1) && min_actual_mixin != 21) || (hf_version >= HF_VERSION_MIN_MIXIN_21+2 && min_actual_mixin > 21))
{
MERROR_VER("Tx " << get_transaction_hash(tx) << " has invalid ring size (" << (min_actual_mixin + 1) << "), it should be 11");
MERROR_VER("Tx " << get_transaction_hash(tx) << " has invalid ring size (" << (min_actual_mixin + 1) << "), it should be 22");
tvc.m_low_mixin = true;
return false;
}
@ -3454,6 +3546,7 @@ bool Blockchain::check_tx_inputs(transaction& tx, tx_verification_context &tvc,
return false;
}
case rct::RCTTypeSimple:
case rct::RCTTypeSimpleBulletproof:
case rct::RCTTypeBulletproof:
case rct::RCTTypeBulletproof2:
case rct::RCTTypeCLSAG:
@ -3520,6 +3613,7 @@ bool Blockchain::check_tx_inputs(transaction& tx, tx_verification_context &tvc,
break;
}
case rct::RCTTypeFull:
case rct::RCTTypeFullBulletproof:
{
// check all this, either reconstructed (so should really pass), or not
{
@ -3848,15 +3942,18 @@ uint64_t Blockchain::get_adjusted_time(uint64_t height) const
{
LOG_PRINT_L3("Blockchain::" << __func__);
uint8_t version = get_current_hard_fork_version();
size_t blockchain_timestamp_check_window = version >= 10 ? BLOCKCHAIN_TIMESTAMP_CHECK_WINDOW_V2 : BLOCKCHAIN_TIMESTAMP_CHECK_WINDOW;
// if not enough blocks, no proper median yet, return current time
if(height < BLOCKCHAIN_TIMESTAMP_CHECK_WINDOW)
if(height < blockchain_timestamp_check_window)
{
return static_cast<uint64_t>(time(NULL));
}
std::vector<uint64_t> timestamps;
// need most recent 60 blocks, get index of first of those
size_t offset = height - BLOCKCHAIN_TIMESTAMP_CHECK_WINDOW;
size_t offset = height - blockchain_timestamp_check_window;
timestamps.reserve(height - offset);
for(;offset < height; ++offset)
{
@ -3866,7 +3963,7 @@ uint64_t Blockchain::get_adjusted_time(uint64_t height) const
// project the median to match approximately when the block being validated will appear
// the median is calculated from a chunk of past blocks, so we use +1 to offset onto the current block
median_ts += (BLOCKCHAIN_TIMESTAMP_CHECK_WINDOW + 1) * DIFFICULTY_TARGET_V2 / 2;
median_ts += (blockchain_timestamp_check_window + 1) * DIFFICULTY_TARGET_V2 / 2;
// project the current block's time based on the previous block's time
// we don't use the current block's time directly to mitigate timestamp manipulation
@ -3882,10 +3979,11 @@ bool Blockchain::check_block_timestamp(std::vector<uint64_t>& timestamps, const
{
LOG_PRINT_L3("Blockchain::" << __func__);
median_ts = epee::misc_utils::median(timestamps);
uint8_t version = get_current_hard_fork_version();
size_t blockchain_timestamp_check_window = version >= 10 ? BLOCKCHAIN_TIMESTAMP_CHECK_WINDOW_V2 : BLOCKCHAIN_TIMESTAMP_CHECK_WINDOW;
if(b.timestamp < median_ts)
{
MERROR_VER("Timestamp of block with id: " << get_block_hash(b) << ", " << b.timestamp << ", less than median of last " << BLOCKCHAIN_TIMESTAMP_CHECK_WINDOW << " blocks, " << median_ts);
MERROR_VER("Timestamp of block with id: " << get_block_hash(b) << ", " << b.timestamp << ", less than median of last " << blockchain_timestamp_check_window << " blocks, " << median_ts);
return false;
}
@ -3902,16 +4000,21 @@ bool Blockchain::check_block_timestamp(std::vector<uint64_t>& timestamps, const
bool Blockchain::check_block_timestamp(const block& b, uint64_t& median_ts) const
{
LOG_PRINT_L3("Blockchain::" << __func__);
if(b.timestamp > (uint64_t)time(NULL) + CRYPTONOTE_BLOCK_FUTURE_TIME_LIMIT)
uint8_t version = get_current_hard_fork_version();
uint64_t cryptonote_block_future_time_limit = version >= 8 ? CRYPTONOTE_BLOCK_FUTURE_TIME_LIMIT_V2 : CRYPTONOTE_BLOCK_FUTURE_TIME_LIMIT;
size_t blockchain_timestamp_check_window = version >= 10 ? BLOCKCHAIN_TIMESTAMP_CHECK_WINDOW_V2 : BLOCKCHAIN_TIMESTAMP_CHECK_WINDOW;
if(b.timestamp > (uint64_t)time(NULL) + cryptonote_block_future_time_limit)
{
MERROR_VER("Timestamp of block with id: " << get_block_hash(b) << ", " << b.timestamp << ", bigger than local time + 2 hours");
MERROR_VER("Timestamp of block with id: " << get_block_hash(b) << ", " << b.timestamp << ", bigger than local time + 10 minutes");
return false;
}
const auto h = m_db->height();
// if not enough blocks, no proper median yet, return true
if(h < BLOCKCHAIN_TIMESTAMP_CHECK_WINDOW)
if(h < blockchain_timestamp_check_window)
{
return true;
}
@ -3919,7 +4022,7 @@ bool Blockchain::check_block_timestamp(const block& b, uint64_t& median_ts) cons
std::vector<uint64_t> timestamps;
// need most recent 60 blocks, get index of first of those
size_t offset = h - BLOCKCHAIN_TIMESTAMP_CHECK_WINDOW;
size_t offset = h - blockchain_timestamp_check_window;
timestamps.reserve(h - offset);
for(;offset < h; ++offset)
{
@ -5364,7 +5467,7 @@ void Blockchain::cancel()
}
#if defined(PER_BLOCK_CHECKPOINT)
static const char expected_block_hashes_hash[] = "8da80ca560793f252d1d4ed449c85d75c74867f3f86b8832c8e3f88b1cbb6ae3";
static const char expected_block_hashes_hash[] = "5b78fd258ef3078654d2b15c9c2d6baab371805b94a9aa748f615995b207d045";
void Blockchain::load_compiled_in_block_hashes(const GetCheckpointsCallback& get_checkpoints)
{
if (get_checkpoints == nullptr || !m_fast_sync)

@ -495,8 +495,8 @@ namespace cryptonote
if (boost::filesystem::exists(old_files / "blockchain.bin"))
{
MWARNING("Found old-style blockchain.bin in " << old_files.string());
MWARNING("Monero now uses a new format. You can either remove blockchain.bin to start syncing");
MWARNING("the blockchain anew, or use monero-blockchain-export and monero-blockchain-import to");
MWARNING("Wownero now uses a new format. You can either remove blockchain.bin to start syncing");
MWARNING("the blockchain anew, or use wownero-blockchain-export and wownero-blockchain-import to");
MWARNING("convert your existing blockchain.bin to the new format. See README.md for instructions.");
return false;
}
@ -849,6 +849,44 @@ namespace cryptonote
return false;
}
// resolve outPk references in rct txes
// outPk aren't the only thing that need resolving for a fully resolved tx,
// but outPk (1) are needed now to check range proof semantics, and
// (2) do not need access to the blockchain to find data
if (tx.version >= 2)
{
rct::rctSig &rv = tx.rct_signatures;
if (!rct::is_rct_new_bulletproof(rv.type)){
if (rv.outPk.size() != tx.vout.size())
{
LOG_PRINT_L1("WRONG TRANSACTION BLOB, Bad outPk size in tx " << tx_hash << ", rejected");
tvc.m_verifivation_failed = true;
return false;
}
for (size_t n = 0; n < tx.rct_signatures.outPk.size(); ++n)
rv.outPk[n].dest = rct::pk2rct(boost::get<txout_to_key>(tx.vout[n].target).key);
const bool bulletproof = rct::is_rct_bulletproof(rv.type);
if (bulletproof)
{
if (rct::n_bulletproof_v1_amounts(rv.p.bulletproofs) != tx.vout.size())
{
LOG_PRINT_L1("WRONG TRANSACTION BLOB, Bad bulletproofs size in tx " << tx_hash << ", rejected");
tvc.m_verifivation_failed = true;
return false;
}
size_t idx = 0;
for (size_t n = 0; n < rv.p.bulletproofs.size(); ++n)
{
CHECK_AND_ASSERT_MES(rv.p.bulletproofs[n].L.size() >= 6, false, "Bad bulletproofs L size"); // at least 64 bits
const size_t n_amounts = rct::n_bulletproof_v1_amounts(rv.p.bulletproofs[n]);
CHECK_AND_ASSERT_MES(idx + n_amounts <= rv.outPk.size(), false, "Internal error filling out V");
rv.p.bulletproofs[n].V.clear();
for (size_t i = 0; i < n_amounts; ++i)
rv.p.bulletproofs[n].V.push_back(rv.outPk[idx++].mask);
}
}
}
}
return true;
}
//-----------------------------------------------------------------------------------------------
@ -907,6 +945,7 @@ namespace cryptonote
tx_info[n].result = false;
break;
case rct::RCTTypeSimple:
case rct::RCTTypeSimpleBulletproof:
if (!rct::verRctSemanticsSimple(rv))
{
MERROR_VER("rct signature semantics check failed");
@ -917,6 +956,7 @@ namespace cryptonote
}
break;
case rct::RCTTypeFull:
case rct::RCTTypeFullBulletproof:
if (!rct::verRct(rv, true))
{
MERROR_VER("rct signature semantics check failed");
@ -1183,7 +1223,7 @@ namespace cryptonote
//-----------------------------------------------------------------------------------------------
size_t core::get_block_sync_size(uint64_t height) const
{
static const uint64_t quick_height = m_nettype == TESTNET ? 801219 : m_nettype == MAINNET ? 1220516 : 0;
static const uint64_t quick_height = m_nettype == TESTNET ? 801219 : m_nettype == MAINNET ? 53666 : 0;
size_t res = 0;
if (block_sync_size > 0)
res = block_sync_size;
@ -1713,9 +1753,43 @@ namespace cryptonote
main_message = "The daemon is running offline and will not attempt to sync to the Monero network.";
else
main_message = "The daemon will start synchronizing with the network. This may take a long time to complete.";
MGINFO_MAGENTA(ENDL <<
"\n \n"
" ... . -..- \n"
" `-. .-'. \n"
" `-. -./\\.- .-' \n"
" -. /__\\ .- \n"
" `-. `/__|_\\' .-'. \n"
" `-. -./ .-- \\.- ' \n"
" `-. / <(O)> \\ .-' \n"
" - .`/__ .-- ___\\ .- Magnus \n"
" ,...`-./___|__|__|__\\.-'.,. Frater \n"
" -.. .-. ..- --. ... Spectat Te \n"
" .-. --- -.-. -.- -. .-. --- .-.. .-.. \n"
" ,-' ________________ `-, \n"
" /'/____|_____|_____\\ \n"
" / /__|___|___|___|___\\ \n"
" / /|_____|_____|____|__\\ \n"
" ' /_____|____|_____|_____\\ \n"
" ' /__|_____|______|_____|__\\ \n"
" /' /_|_____|_____|_____|____|_\\ \n"
" .. - . .-. .- - .. ...- ./ /____|_____|_____|_____|_____\\-.. .. ... -.-. --- ..- .-. ... .\n"
" / /__|_____|_____|_____|_____|___\\ \n"
" / /|_____|_____|_____|_____|_____|_\\ \n"
" / /____|_____|_____|_____|_____|_____\\ \n"
" / /__|_____|_____|_____|_____|_____|___\\ \n"
" / /|_____|_____|_____|_____|_____|_____|_\\ \n"
" / /____|_____|_____|_____|_____|_____|_____\\ \n"
" \\ /___________.-- --- .-- -. . .-. ---_______\\ \n"
" IV.I.MMXVIII \n"
" .- / -... .-.. .- -.-. -.- .... .- - / -.-. ..- .-.. - ..- .-. . \n"
"\n \n" << ENDL);
MGINFO_YELLOW(ENDL << "**********************************************************************" << ENDL
<< main_message << ENDL
<< ENDL
<< "Caution: Wownero is highly experimental software compiled by a ragtag team of stoners with as much" << ENDL
<< "skill as Verge developers. Storing your life savings in WOW is probably not a good idea." << ENDL
<< ENDL
<< "You can set the level of process detailization through \"set_log <level|categories>\" command," << ENDL
<< "where <level> is between 0 (no details) and 4 (very verbose), or custom category based levels (eg, *:WARNING)." << ENDL
<< ENDL
@ -1953,7 +2027,7 @@ namespace cryptonote
MDEBUG("blocks in the last " << seconds[n] / 60 << " minutes: " << b << " (probability " << p << ")");
if (p < threshold)
{
MWARNING("There were " << b << (b == max_blocks_checked ? " or more" : "") << " blocks in the last " << seconds[n] / 60 << " minutes, there might be large hash rate changes, or we might be partitioned, cut off from the Monero network or under attack, or your computer's time is off. Or it could be just sheer bad luck.");
MDEBUG("There were " << b << (b == max_blocks_checked ? " or more" : "") << " blocks in the last " << seconds[n] / 60 << " minutes, there might be large hash rate changes, or we might be partitioned, cut off from the Wownero network or under attack, or your computer's time is off. Or it could be just sheer bad luck.");
std::shared_ptr<tools::Notify> block_rate_notify = m_block_rate_notify;
if (block_rate_notify)

@ -224,14 +224,14 @@ namespace cryptonote
*
* @return true if the block was added to the main chain, otherwise false
*/
virtual bool handle_block_found(block& b, block_verification_context &bvc);
virtual bool handle_block_found(block& b, block_verification_context &bvc) override;
/**
* @copydoc Blockchain::create_block_template
*
* @note see Blockchain::create_block_template
*/
virtual bool get_block_template(block& b, const account_public_address& adr, difficulty_type& diffic, uint64_t& height, uint64_t& expected_reward, const blobdata& ex_nonce, uint64_t &seed_height, crypto::hash &seed_hash);
virtual bool get_block_template(block& b, const account_public_address& adr, difficulty_type& diffic, uint64_t& height, uint64_t& expected_reward, const blobdata& ex_nonce, uint64_t &seed_height, crypto::hash &seed_hash) override;
virtual bool get_block_template(block& b, const crypto::hash *prev_block, const account_public_address& adr, difficulty_type& diffic, uint64_t& height, uint64_t& expected_reward, const blobdata& ex_nonce, uint64_t &seed_height, crypto::hash &seed_hash);
/**
@ -663,7 +663,7 @@ namespace cryptonote
*
* @param target_blockchain_height the target height
*/
uint64_t get_target_blockchain_height() const;
virtual uint64_t get_target_blockchain_height() const override;
/**
* @brief returns the newest hardfork version known to the blockchain

@ -76,7 +76,7 @@ namespace cryptonote
LOG_PRINT_L2("destinations include " << num_stdaddresses << " standard addresses and " << num_subaddresses << " subaddresses");
}
//---------------------------------------------------------------
bool construct_miner_tx(size_t height, size_t median_weight, uint64_t already_generated_coins, size_t current_block_weight, uint64_t fee, const account_public_address &miner_address, transaction& tx, const blobdata& extra_nonce, size_t max_outs, uint8_t hard_fork_version) {
bool construct_miner_tx(const Blockchain *pb, network_type m_nettype, size_t height, size_t median_weight, uint64_t already_generated_coins, size_t current_block_weight, uint64_t fee, const account_public_address &miner_address, transaction& tx, const blobdata& extra_nonce, size_t max_outs, uint8_t hard_fork_version) {
tx.vin.clear();
tx.vout.clear();
tx.extra.clear();
@ -167,7 +167,17 @@ namespace cryptonote
tx.version = 1;
//lock
tx.unlock_time = height + CRYPTONOTE_MINED_MONEY_UNLOCK_WINDOW;
if (hard_fork_version >= HF_VERSION_DYNAMIC_UNLOCK)
{
uint64_t N = m_nettype == MAINNET ? 1337 : 5;
crypto::hash blk_id = pb->get_block_id_by_height(height-N);
std::string hex_str = epee::string_tools::pod_to_hex(blk_id).substr(0, 3);
uint64_t blk_num = std::stol(hex_str,nullptr,16)*2;
uint64_t unlock_window = blk_num + 288;
tx.unlock_time = height + unlock_window;
} else {
tx.unlock_time = height + 60;
}
tx.vin.push_back(in);
tx.invalidate_hashes();
@ -592,7 +602,9 @@ namespace cryptonote
crypto::hash tx_prefix_hash;
get_transaction_prefix_hash(tx, tx_prefix_hash, hwdev);
rct::ctkeyV outSk;
if (use_simple_rct)
if (rct_config.range_proof_type != rct::RangeProofPaddedBulletproof && use_simple_rct)
tx.rct_signatures = rct::genRctSimple_old(rct::hash2rct(tx_prefix_hash), inSk, destinations, inamounts, outamounts, amount_in - amount_out, mixRing, amount_keys, msout ? &kLRki : NULL, msout, index, outSk, rct_config, hwdev);
else if (use_simple_rct && rct_config.range_proof_type == rct::RangeProofPaddedBulletproof)
tx.rct_signatures = rct::genRctSimple(rct::hash2rct(tx_prefix_hash), inSk, destinations, inamounts, outamounts, amount_in - amount_out, mixRing, amount_keys, msout ? &kLRki : NULL, msout, index, outSk, rct_config, hwdev);
else
tx.rct_signatures = rct::genRct(rct::hash2rct(tx_prefix_hash), inSk, destinations, outamounts, mixRing, amount_keys, msout ? &kLRki[0] : NULL, msout, sources[0].real_output, outSk, rct_config, hwdev); // same index assumption
@ -703,7 +715,7 @@ namespace cryptonote
}
rx_slow_hash(main_height, seed_height, hash.data, bd.data(), bd.size(), res.data, seed_hash ? 0 : miners, !!seed_hash);
} else {
const int pow_variant = b.major_version >= 7 ? b.major_version - 6 : 0;
const int pow_variant = b.major_version >= 11 ? 4 : b.major_version >= 9 ? 2 : 1;
crypto::cn_slow_hash(bd.data(), bd.size(), res, pow_variant, height);
}
return true;

@ -37,7 +37,8 @@
namespace cryptonote
{
//---------------------------------------------------------------
bool construct_miner_tx(size_t height, size_t median_weight, uint64_t already_generated_coins, size_t current_block_weight, uint64_t fee, const account_public_address &miner_address, transaction& tx, const blobdata& extra_nonce = blobdata(), size_t max_outs = 999, uint8_t hard_fork_version = 1);
class Blockchain;
bool construct_miner_tx(const Blockchain *pb, network_type m_nettype, size_t height, size_t median_weight, uint64_t already_generated_coins, size_t current_block_weight, uint64_t fee, const account_public_address &miner_address, transaction& tx, const blobdata& extra_nonce = blobdata(), size_t max_outs = 999, uint8_t hard_fork_version = 1);
struct tx_source_entry
{

@ -39,6 +39,7 @@ namespace cryptonote
virtual ~i_core_events() noexcept
{}
virtual uint64_t get_target_blockchain_height() const = 0;
virtual void on_transactions_relayed(epee::span<const cryptonote::blobdata> tx_blobs, relay_method tx_relay) = 0;
};
}

@ -109,8 +109,8 @@ namespace cryptonote
uint64_t get_transaction_weight_limit(uint8_t version)
{
// from v8, limit a tx to 50% of the minimum block weight
if (version >= 8)
// from v12, limit a tx to 50% of the minimum block weight
if (version >= 12)
return get_min_block_weight(version) / 2 - CRYPTONOTE_COINBASE_BLOB_RESERVED_SIZE;
else
return get_min_block_weight(version) - CRYPTONOTE_COINBASE_BLOB_RESERVED_SIZE;
@ -1299,7 +1299,7 @@ namespace cryptonote
txpool_tx_meta_t meta;
if (!m_blockchain.get_txpool_tx_meta(txid, meta))
{
MERROR("Failed to find tx meta in txpool");
MDEBUG("Failed to find tx meta in txpool");
// continue, not fatal
continue;
}
@ -1391,7 +1391,7 @@ namespace cryptonote
txpool_tx_meta_t meta;
if (!m_blockchain.get_txpool_tx_meta(sorted_it->second, meta))
{
MERROR(" failed to find tx meta");
MDEBUG(" failed to find tx meta");
continue;
}
LOG_PRINT_L2("Considering " << sorted_it->second << ", weight " << meta.weight << ", current block weight " << total_weight << "/" << max_total_weight << ", current coinbase " << print_money(best_coinbase) << ", relay method " << (unsigned)meta.get_relay_method());

@ -360,7 +360,7 @@ namespace cryptonote
int64_t diff = static_cast<int64_t>(hshd.current_height) - static_cast<int64_t>(m_core.get_current_blockchain_height());
uint64_t abs_diff = std::abs(diff);
uint64_t max_block_height = std::max(hshd.current_height,m_core.get_current_blockchain_height());
uint64_t last_block_v1 = m_core.get_nettype() == TESTNET ? 624633 : m_core.get_nettype() == MAINNET ? 1009826 : (uint64_t)-1;
uint64_t last_block_v1 = m_core.get_nettype() == TESTNET ? 0 : m_core.get_nettype() == MAINNET ? 0 : (uint64_t)-1;
uint64_t diff_v2 = max_block_height > last_block_v1 ? std::min(abs_diff, max_block_height - last_block_v1) : 0;
MCLOG(is_inital ? el::Level::Info : el::Level::Debug, "global", el::Color::Yellow, context << "Sync data returned a new top block candidate: " << m_core.get_current_blockchain_height() << " -> " << hshd.current_height
<< " [Your node is " << abs_diff << " blocks (" << tools::get_human_readable_timespan((abs_diff - diff_v2) * DIFFICULTY_TARGET_V1 + diff_v2 * DIFFICULTY_TARGET_V2) << ") "
@ -1091,6 +1091,13 @@ namespace cryptonote
//epee::net_utils::network_throttle_manager::get_global_throttle_inreq().logger_handle_net("log/dr-monero/net/req-all.data", sec, get_avg_block_size());
if(arg.blocks.empty())
{
LOG_ERROR_CCONTEXT("sent wrong NOTIFY_HAVE_OBJECTS: no blocks");
drop_connection(context, true, false);
++m_sync_bad_spans_downloaded;
return 1;
}
if(context.m_last_response_height > arg.current_blockchain_height)
{
LOG_ERROR_CCONTEXT("sent wrong NOTIFY_HAVE_OBJECTS: arg.m_current_blockchain_height=" << arg.current_blockchain_height
@ -2116,7 +2123,7 @@ skip:
skip_unneeded_hashes(context, false);
const uint64_t first_block_height = context.m_last_response_height - context.m_needed_objects.size() + 1;
static const uint64_t bp_fork_height = m_core.get_earliest_ideal_height_for_version(8);
static const uint64_t bp_fork_height = m_core.get_earliest_ideal_height_for_version(HF_VERSION_SMALLER_BP);
bool sync_pruned_blocks = m_sync_pruned_blocks && first_block_height >= bp_fork_height && m_core.get_blockchain_pruning_seed();
span = m_block_queue.reserve_span(first_block_height, context.m_last_response_height, count_limit, context.m_connection_id, sync_pruned_blocks, m_core.get_blockchain_pruning_seed(), context.m_pruning_seed, context.m_remote_blockchain_height, context.m_needed_objects);
MDEBUG(context << " span from " << first_block_height << ": " << span.first << "/" << span.second);
@ -2345,7 +2352,7 @@ skip:
}
}
MGINFO_YELLOW(ENDL << "**********************************************************************" << ENDL
<< "You are now synchronized with the network. You may now start monero-wallet-cli." << ENDL
<< "You are now synchronized with the network. You may now start wownero-wallet-cli." << ENDL
<< ENDL
<< "Use the \"help\" command to see the list of available commands." << ENDL
<< "**********************************************************************");
@ -2538,7 +2545,7 @@ skip:
local mempool before doing the relay. The code was already updating the
DB twice on received transactions - it is difficult to workaround this
due to the internal design. */
return m_p2p->send_txs(std::move(arg.txs), zone, source, m_core, tx_relay) != epee::net_utils::zone::invalid;
return m_p2p->send_txs(std::move(arg.txs), zone, source, tx_relay) != epee::net_utils::zone::invalid;
}
//------------------------------------------------------------------------------------------------------------------------
template<class t_core>
@ -2667,7 +2674,7 @@ skip:
m_core.set_target_blockchain_height(target);
if (target == 0 && context.m_state > cryptonote_connection_context::state_before_handshake && !m_stopping)
{
MCWARNING("global", "monerod is now disconnected from the network");
MCWARNING("global", "wownerod is now disconnected from the network");
m_ask_for_txpool_complement = true;
}
}

@ -105,8 +105,8 @@ namespace levin
return std::chrono::steady_clock::duration{crypto::rand_range(rep(0), range.count())};
}
//! \return All outgoing connections supporting fragments in `connections`.
std::vector<boost::uuids::uuid> get_out_connections(connections& p2p)
//! \return Outgoing connections supporting fragments in `connections` filtered by remote blockchain height.
std::vector<boost::uuids::uuid> get_out_connections(connections& p2p, uint64_t min_blockchain_height)
{
std::vector<boost::uuids::uuid> outs;
outs.reserve(connection_id_reserve_size);
@ -115,8 +115,8 @@ namespace levin
the reserve call so a strand is not used. Investigate if there is lots
of waiting in here. */
p2p.foreach_connection([&outs] (detail::p2p_context& context) {
if (!context.m_is_income)
p2p.foreach_connection([&outs, min_blockchain_height] (detail::p2p_context& context) {
if (!context.m_is_income && context.m_remote_blockchain_height >= min_blockchain_height)
outs.emplace_back(context.m_connection_id);
return true;
});
@ -241,8 +241,8 @@ namespace levin
strand(io_service),
map(),
channels(),
flush_time(std::chrono::steady_clock::time_point::max()),
connection_count(0),
flush_callbacks(0),
is_public(is_public),
pad_txs(pad_txs),
fluffing(false)
@ -258,8 +258,8 @@ namespace levin
boost::asio::io_service::strand strand;
net::dandelionpp::connection_map map;//!< Tracks outgoing uuid's for noise channels or Dandelion++ stems
std::deque<noise_channel> channels; //!< Never touch after init; only update elements on `noise_channel.strand`
std::chrono::steady_clock::time_point flush_time; //!< Next expected Dandelion++ fluff flush
std::atomic<std::size_t> connection_count; //!< Only update in strand, can be read at any time
std::uint32_t flush_callbacks; //!< Number of active fluff flush callbacks queued
const bool is_public; //!< Zone is public ipv4/ipv6 connections
const bool pad_txs; //!< Pad txs to the next boundary for privacy
bool fluffing; //!< Zone is in Dandelion++ fluff epoch
@ -305,7 +305,6 @@ namespace levin
struct fluff_flush
{
std::shared_ptr<detail::zone> zone_;
std::chrono::steady_clock::time_point flush_time_;
static void queue(std::shared_ptr<detail::zone> zone, const std::chrono::steady_clock::time_point flush_time)
{
@ -313,28 +312,21 @@ namespace levin
assert(zone->strand.running_in_this_thread());
detail::zone& this_zone = *zone;
this_zone.flush_time = flush_time;
++this_zone.flush_callbacks;
this_zone.flush_txs.expires_at(flush_time);
this_zone.flush_txs.async_wait(this_zone.strand.wrap(fluff_flush{std::move(zone), flush_time}));
this_zone.flush_txs.async_wait(this_zone.strand.wrap(fluff_flush{std::move(zone)}));
}
void operator()(const boost::system::error_code error)
{
if (!zone_ || !zone_->p2p)
if (!zone_ || !zone_->flush_callbacks || --zone_->flush_callbacks || !zone_->p2p)
return;
assert(zone_->strand.running_in_this_thread());
const bool timer_error = bool(error);
if (timer_error)
{
if (error != boost::system::errc::operation_canceled)
throw boost::system::system_error{error, "fluff_flush timer failed"};
// new timer canceled this one set in future
if (zone_->flush_time < flush_time_)
return;
}
if (timer_error && error != boost::system::errc::operation_canceled)
throw boost::system::system_error{error, "fluff_flush timer failed"};
const auto now = std::chrono::steady_clock::now();
auto next_flush = std::chrono::steady_clock::time_point::max();
@ -370,8 +362,6 @@ namespace levin
if (next_flush != std::chrono::steady_clock::time_point::max())
fluff_flush::queue(std::move(zone_), next_flush);
else
zone_->flush_time = next_flush; // signal that no timer is set
}
};
@ -406,13 +396,11 @@ namespace levin
MDEBUG("Queueing " << txs.size() << " transaction(s) for Dandelion++ fluffing");
bool available = false;
zone->p2p->foreach_connection([txs, now, &zone, &source, &in_duration, &out_duration, &next_flush, &available] (detail::p2p_context& context)
zone->p2p->foreach_connection([txs, now, &zone, &source, &in_duration, &out_duration, &next_flush] (detail::p2p_context& context)
{
// When i2p/tor, only fluff to outbound connections
if (source != context.m_connection_id && (zone->is_public || !context.m_is_income))
{
available = true;
if (context.fluff_txs.empty())
context.flush_time = now + (context.m_is_income ? in_duration() : out_duration());
@ -424,10 +412,9 @@ namespace levin
return true;
});
if (!available)
if (next_flush == std::chrono::steady_clock::time_point::max())
MWARNING("Unable to send transaction(s), no available connections");
if (next_flush < zone->flush_time)
else if (!zone->flush_callbacks || next_flush < zone->flush_txs.expires_at())
fluff_flush::queue(std::move(zone), next_flush);
}
};
@ -524,12 +511,7 @@ namespace levin
if (!zone_ || !core_ || txs_.empty())
return;
if (zone_->fluffing)
{
core_->on_transactions_relayed(epee::to_span(txs_), relay_method::fluff);
fluff_notify::run(std::move(zone_), epee::to_span(txs_), source_);
}
else // forward tx in stem
if (!zone_->fluffing)
{
core_->on_transactions_relayed(epee::to_span(txs_), relay_method::stem);
for (int tries = 2; 0 < tries; tries--)
@ -544,11 +526,14 @@ namespace levin
}
// connection list may be outdated, try again
update_channels::run(zone_, get_out_connections(*zone_->p2p));
update_channels::run(zone_, get_out_connections(*zone_->p2p, core_->get_target_blockchain_height()));
}
MERROR("Unable to send transaction(s) via Dandelion++ stem");
}
core_->on_transactions_relayed(epee::to_span(txs_), relay_method::fluff);
fluff_notify::run(std::move(zone_), epee::to_span(txs_), source_);
}
};
@ -591,8 +576,9 @@ namespace levin
{
std::shared_ptr<detail::zone> zone_;
const std::size_t channel_;
const i_core_events* core_;
static void wait(const std::chrono::steady_clock::time_point start, std::shared_ptr<detail::zone> zone, const std::size_t index)
static void wait(const std::chrono::steady_clock::time_point start, std::shared_ptr<detail::zone> zone, const std::size_t index, const i_core_events* core)
{
if (!zone)
return;
@ -600,7 +586,7 @@ namespace levin
noise_channel& channel = zone->channels.at(index);
channel.next_noise.expires_at(start + noise_min_delay + random_duration(noise_delay_range));
channel.next_noise.async_wait(
channel.strand.wrap(send_noise{std::move(zone), index})
channel.strand.wrap(send_noise{std::move(zone), index, core})
);
}
@ -645,7 +631,7 @@ namespace levin
channel.active = nullptr;
channel.connection = boost::uuids::nil_uuid();
auto connections = get_out_connections(*zone_->p2p);
auto connections = get_out_connections(*zone_->p2p, core_->get_target_blockchain_height());
if (connections.empty())
MWARNING("Lost all outbound connections to anonymity network - currently unable to send transaction(s)");
@ -653,7 +639,7 @@ namespace levin
}
}
wait(start, std::move(zone_), channel_);
wait(start, std::move(zone_), channel_, core_);
}
};
@ -665,6 +651,7 @@ namespace levin
std::chrono::seconds min_epoch_;
std::chrono::seconds epoch_range_;
std::size_t count_;
const i_core_events* core_;
//! \pre Should not be invoked within any strand to prevent blocking.
void operator()(const boost::system::error_code error = {})
@ -677,8 +664,9 @@ namespace levin
const bool fluffing = crypto::rand_idx(unsigned(100)) < CRYPTONOTE_DANDELIONPP_FLUFF_PROBABILITY;
const auto start = std::chrono::steady_clock::now();
auto connections = get_out_connections(*(zone_->p2p), core_->get_target_blockchain_height());
zone_->strand.dispatch(
change_channels{zone_, net::dandelionpp::connection_map{get_out_connections(*(zone_->p2p)), count_}, fluffing}
change_channels{zone_, net::dandelionpp::connection_map{std::move(connections), count_}, fluffing}
);
detail::zone& alias = *zone_;
@ -688,8 +676,9 @@ namespace levin
};
} // anonymous
notify::notify(boost::asio::io_service& service, std::shared_ptr<connections> p2p, epee::byte_slice noise, const bool is_public, const bool pad_txs)
notify::notify(boost::asio::io_service& service, std::shared_ptr<connections> p2p, epee::byte_slice noise, const bool is_public, const bool pad_txs, i_core_events& core)
: zone_(std::make_shared<detail::zone>(service, std::move(p2p), std::move(noise), is_public, pad_txs))
, core_(std::addressof(core))
{
if (!zone_->p2p)
throw std::logic_error{"cryptonote::levin::notify cannot have nullptr p2p argument"};
@ -702,10 +691,10 @@ namespace levin
const auto epoch_range = noise_enabled ? noise_epoch_range : dandelionpp_epoch_range;
const std::size_t out_count = noise_enabled ? CRYPTONOTE_NOISE_CHANNELS : CRYPTONOTE_DANDELIONPP_STEMS;
start_epoch{zone_, min_epoch, epoch_range, out_count}();
start_epoch{zone_, min_epoch, epoch_range, out_count, core_}();
for (std::size_t channel = 0; channel < zone_->channels.size(); ++channel)
send_noise::wait(now, zone_, channel);
send_noise::wait(now, zone_, channel, core_);
}
}
@ -726,7 +715,7 @@ namespace levin
return;
zone_->strand.dispatch(
update_channels{zone_, get_out_connections(*(zone_->p2p))}
update_channels{zone_, get_out_connections(*(zone_->p2p), core_->get_target_blockchain_height())}
);
}
@ -753,7 +742,7 @@ namespace levin
zone_->flush_txs.cancel();
}
bool notify::send_txs(std::vector<blobdata> txs, const boost::uuids::uuid& source, i_core_events& core, relay_method tx_relay)
bool notify::send_txs(std::vector<blobdata> txs, const boost::uuids::uuid& source, relay_method tx_relay)
{
if (txs.empty())
return true;
@ -785,7 +774,7 @@ namespace levin
tx_relay = relay_method::local; // do not put into stempool embargo (hopefully not there already!).
}
core.on_transactions_relayed(epee::to_span(txs), tx_relay);
core_->on_transactions_relayed(epee::to_span(txs), tx_relay);
// Padding is not useful when using noise mode. Send as stem so receiver
// forwards in Dandelion++ mode.
@ -821,7 +810,7 @@ namespace levin
{
// this will change a local/forward tx to stem or fluff ...
zone_->strand.dispatch(
dandelionpp_notify{zone_, std::addressof(core), std::move(txs), source}
dandelionpp_notify{zone_, core_, std::move(txs), source}
);
break;
}
@ -832,7 +821,7 @@ namespace levin
routine. A "fluff" over i2p/tor is not the same as a "fluff" over
ipv4/6. Marking it as "fluff" here will make the tx immediately
visible externally from this node, which is not desired. */
core.on_transactions_relayed(epee::to_span(txs), tx_relay);
core_->on_transactions_relayed(epee::to_span(txs), tx_relay);
zone_->strand.dispatch(fluff_notify{zone_, std::move(txs), source});
break;
}

@ -69,6 +69,7 @@ namespace levin
class notify
{
std::shared_ptr<detail::zone> zone_;
i_core_events* core_;
public:
struct status
@ -80,10 +81,11 @@ namespace levin
//! Construct an instance that cannot notify.
notify() noexcept
: zone_(nullptr)
, core_(nullptr)
{}
//! Construct an instance with available notification `zones`.
explicit notify(boost::asio::io_service& service, std::shared_ptr<connections> p2p, epee::byte_slice noise, bool is_public, bool pad_txs);
explicit notify(boost::asio::io_service& service, std::shared_ptr<connections> p2p, epee::byte_slice noise, bool is_public, bool pad_txs, i_core_events& core);
notify(const notify&) = delete;
notify(notify&&) = default;
@ -123,7 +125,7 @@ namespace levin
particular stem.
\return True iff the notification is queued for sending. */
bool send_txs(std::vector<blobdata> txs, const boost::uuids::uuid& source, i_core_events& core, relay_method tx_relay);
bool send_txs(std::vector<blobdata> txs, const boost::uuids::uuid& source, relay_method tx_relay);
};
} // levin
} // net

@ -94,5 +94,5 @@ target_link_libraries(daemon
${Blocks})
set_property(TARGET daemon
PROPERTY
OUTPUT_NAME "monerod")
OUTPUT_NAME "wownerod")
install(TARGETS daemon DESTINATION bin)

@ -824,10 +824,10 @@ bool t_command_parser_executor::prune_blockchain(const std::vector<std::string>&
if (args.empty() || args[0] != "confirm")
{
std::cout << "Warning: pruning from within monerod will not shrink the database file size." << std::endl;
std::cout << "Warning: pruning from within wownerod will not shrink the database file size." << std::endl;
std::cout << "Instead, parts of the file will be marked as free, so the file will not grow" << std::endl;
std::cout << "until that newly free space is used up. If you want a smaller file size now," << std::endl;
std::cout << "exit monerod and run monero-blockchain-prune (you will temporarily need more" << std::endl;
std::cout << "exit wownerod and run wownero-blockchain-prune (you will temporarily need more" << std::endl;
std::cout << "disk space for the database conversion though). If you are OK with the database" << std::endl;
std::cout << "file keeping the same size, re-run this command with the \"confirm\" parameter." << std::endl;
return true;

@ -410,7 +410,7 @@ bool t_command_server::apropos(const std::vector<std::string>& args)
std::string t_command_server::get_commands_str()
{
std::stringstream ss;
ss << "Monero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << std::endl;
ss << "Wownero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << std::endl;
ss << "Commands: " << std::endl;
std::string usage = m_command_lookup.get_usage();
boost::replace_all(usage, "\n", "\n ");

@ -40,7 +40,7 @@
namespace daemonize
{
std::string const t_executor::NAME = "Monero Daemon";
std::string const t_executor::NAME = "Wownero Daemon";
void t_executor::init_options(
boost::program_options::options_description & configurable_options
@ -58,7 +58,7 @@ namespace daemonize
boost::program_options::variables_map const & vm
)
{
LOG_PRINT_L0("Monero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ") Daemonised");
LOG_PRINT_L0("Wownero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ") Daemonised");
return t_daemon{vm, public_rpc_port};
}

@ -187,7 +187,7 @@ int main(int argc, char const * argv[])
if (command_line::get_arg(vm, command_line::arg_help))
{
std::cout << "Monero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << "Wownero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << "Usage: " + std::string{argv[0]} + " [options|settings] [daemon_command...]" << std::endl << std::endl;
std::cout << visible_options << std::endl;
return 0;
@ -196,7 +196,7 @@ int main(int argc, char const * argv[])
// Monero Version
if (command_line::get_arg(vm, command_line::arg_version))
{
std::cout << "Monero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL;
std::cout << "Wownero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL;
return 0;
}
@ -249,7 +249,7 @@ int main(int argc, char const * argv[])
command_line::get_arg(vm, cryptonote::arg_data_dir));
#ifdef WIN32
if (isFat32(data_dir.root_name().c_str()))
if (isFat32(data_dir.root_path().c_str()))
{
MERROR("Data directory resides on FAT32 volume that has 4GiB file size limit, blockchain might get corrupted.");
}
@ -290,7 +290,7 @@ int main(int argc, char const * argv[])
tools::set_max_concurrency(command_line::get_arg(vm, daemon_args::arg_max_concurrency));
// logging is now set up
MGINFO("Monero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")");
MGINFO("Wownero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")");
// If there are positional options, we're running a daemon command
{

@ -610,8 +610,8 @@ bool t_rpc_command_executor::mining_status() {
uint64_t daily = 86400ull / mres.block_target * mres.block_reward * ratio;
uint64_t monthly = 86400ull / mres.block_target * 30.5 * mres.block_reward * ratio;
uint64_t yearly = 86400ull / mres.block_target * 356 * mres.block_reward * ratio;
tools::msg_writer() << "Expected: " << cryptonote::print_money(daily) << " monero daily, "
<< cryptonote::print_money(monthly) << " monero monthly, " << cryptonote::print_money(yearly) << " yearly";
tools::msg_writer() << "Expected: " << cryptonote::print_money(daily) << " WOW daily, "
<< cryptonote::print_money(monthly) << " WOW monthly, " << cryptonote::print_money(yearly) << " yearly";
}
return true;
@ -1456,10 +1456,10 @@ bool t_rpc_command_executor::print_status()
bool daemon_is_alive = m_rpc_client->check_connection();
if(daemon_is_alive) {
tools::success_msg_writer() << "monerod is running";
tools::success_msg_writer() << "wownerod is running";
}
else {
tools::fail_msg_writer() << "monerod is NOT running";
tools::fail_msg_writer() << "wownerod is NOT running";
}
return true;

@ -46,7 +46,7 @@ target_link_libraries(cn_deserialize
set_property(TARGET cn_deserialize
PROPERTY
OUTPUT_NAME "monero-utils-deserialize")
OUTPUT_NAME "wownero-utils-deserialize")
set(object_sizes_sources
@ -67,7 +67,7 @@ target_link_libraries(object_sizes
set_property(TARGET object_sizes
PROPERTY
OUTPUT_NAME "monero-utils-object-sizes")
OUTPUT_NAME "wownero-utils-object-sizes")
set(dns_checks_sources

@ -103,7 +103,7 @@ int main(int argc, char* argv[])
if (command_line::get_arg(vm, command_line::arg_help))
{
std::cout << "Monero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << "Wownero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << desc_options << std::endl;
return 1;
}

@ -121,7 +121,7 @@ int main(int argc, char* argv[])
if (command_line::get_arg(vm, command_line::arg_help))
{
std::cout << "Monero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << "Wownero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << desc_options << std::endl;
return 1;
}

@ -50,5 +50,5 @@ add_dependencies(gen_multisig
version)
set_property(TARGET gen_multisig
PROPERTY
OUTPUT_NAME "monero-gen-trusted-multisig")
OUTPUT_NAME "wownero-gen-trusted-multisig")
install(TARGETS gen_multisig DESTINATION bin)

@ -45,5 +45,5 @@ add_dependencies(gen_ssl_cert
version)
set_property(TARGET gen_ssl_cert
PROPERTY
OUTPUT_NAME "monero-gen-ssl-cert")
OUTPUT_NAME "wownero-gen-ssl-cert")
install(TARGETS gen_ssl_cert DESTINATION bin)

@ -121,13 +121,13 @@ int main(int argc, char* argv[])
if (command_line::get_arg(vm, command_line::arg_help))
{
std::cout << "Monero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << "Wownero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL << ENDL;
std::cout << desc_options << std::endl;
return 0;
}
if (command_line::get_arg(vm, command_line::arg_version))
{
std::cout << "Monero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL;
std::cout << "Wownero '" << MONERO_RELEASE_NAME << "' (v" << MONERO_VERSION_FULL << ")" << ENDL;
return 0;
}

@ -32,72 +32,34 @@
#define MONERO_DEFAULT_LOG_CATEGORY "blockchain.hardforks"
const hardfork_t mainnet_hard_forks[] = {
// version 1 from the start of the blockchain
{ 1, 1, 0, 1341378000 },
// version 2 starts from block 1009827, which is on or around the 20th of March, 2016. Fork time finalised on 2015-09-20. No fork voting occurs for the v2 fork.
{ 2, 1009827, 0, 1442763710 },
// version 3 starts from block 1141317, which is on or around the 24th of September, 2016. Fork time finalised on 2016-03-21.
{ 3, 1141317, 0, 1458558528 },
// version 4 starts from block 1220516, which is on or around the 5th of January, 2017. Fork time finalised on 2016-09-18.
{ 4, 1220516, 0, 1483574400 },
// version 5 starts from block 1288616, which is on or around the 15th of April, 2017. Fork time finalised on 2017-03-14.
{ 5, 1288616, 0, 1489520158 },
// version 6 starts from block 1400000, which is on or around the 16th of September, 2017. Fork time finalised on 2017-08-18.
{ 6, 1400000, 0, 1503046577 },
// version 7 starts from block 1546000, which is on or around the 6th of April, 2018. Fork time finalised on 2018-03-17.
{ 7, 1546000, 0, 1521303150 },
// version 8 starts from block 1685555, which is on or around the 18th of October, 2018. Fork time finalised on 2018-09-02.
{ 8, 1685555, 0, 1535889547 },
// version 9 starts from block 1686275, which is on or around the 19th of October, 2018. Fork time finalised on 2018-09-02.
{ 9, 1686275, 0, 1535889548 },
// version 10 starts from block 1788000, which is on or around the 9th of March, 2019. Fork time finalised on 2019-02-10.
{ 10, 1788000, 0, 1549792439 },
// version 11 starts from block 1788720, which is on or around the 10th of March, 2019. Fork time finalised on 2019-02-15.
{ 11, 1788720, 0, 1550225678 },
// version 12 starts from block 1978433, which is on or around the 30th of November, 2019. Fork time finalised on 2019-10-18.
{ 12, 1978433, 0, 1571419280 },
{ 13, 2210000, 0, 1598180817 },
{ 14, 2210720, 0, 1598180818 },
{ 7, 1, 0, 1519605000 },
{ 8, 6969, 0, 1524214739 },
{ 9, 53666, 0, 1538689773 },
{ 10, 63469, 0, 1541700352 },
{ 11, 81769, 0, 1549238400 },
{ 12, 82069, 0, 1549318761 },
{ 13, 114969, 0, 1559292691 },
{ 14, 115257, 0, 1559292774 },
{ 15, 160777, 0, 1573280497 },
{ 16, 253999, 0, 1600576508 },
{ 17, 254287, 0, 1600576524 },
};
const size_t num_mainnet_hard_forks = sizeof(mainnet_hard_forks) / sizeof(mainnet_hard_forks[0]);
const uint64_t mainnet_hard_fork_version_1_till = 1009826;
const hardfork_t testnet_hard_forks[] = {
// version 1 from the start of the blockchain
{ 1, 1, 0, 1341378000 },
// version 2 starts from block 624634, which is on or around the 23rd of November, 2015. Fork time finalised on 2015-11-20. No fork voting occurs for the v2 fork.
{ 2, 624634, 0, 1445355000 },
// versions 3-5 were passed in rapid succession from September 18th, 2016
{ 3, 800500, 0, 1472415034 },
{ 4, 801219, 0, 1472415035 },
{ 5, 802660, 0, 1472415036 + 86400*180 }, // add 5 months on testnet to shut the update warning up since there's a large gap to v6
{ 6, 971400, 0, 1501709789 },
{ 7, 1057027, 0, 1512211236 },
{ 8, 1057058, 0, 1533211200 },
{ 9, 1057778, 0, 1533297600 },
{ 10, 1154318, 0, 1550153694 },
{ 11, 1155038, 0, 1550225678 },
{ 12, 1308737, 0, 1569582000 },
{ 13, 1543939, 0, 1599069376 },
{ 14, 1544659, 0, 1599069377 },
{ 7, 1, 0, 1519605000 },
{ 8, 5, 0, 1524214739 },
{ 9, 10, 0, 1538689773 },
{ 10, 15, 0, 1541700352 },
{ 11, 20, 0, 1549238400 },
{ 12, 25, 0, 1549318761 },
{ 13, 30, 0, 1559292691 },
{ 14, 35, 0, 1559292774 },
{ 15, 40, 0, 1573280497 },
{ 16, 45, 0, 1600576508 },
{ 17, 50, 0, 1600576524 },
};
const size_t num_testnet_hard_forks = sizeof(testnet_hard_forks) / sizeof(testnet_hard_forks[0]);
const uint64_t testnet_hard_fork_version_1_till = 624633;
const hardfork_t stagenet_hard_forks[] = {
// version 1 from the start of the blockchain

@ -41,11 +41,9 @@ struct hardfork_t
};
extern const hardfork_t mainnet_hard_forks[];
extern const uint64_t mainnet_hard_fork_version_1_till;
extern const size_t num_mainnet_hard_forks;
extern const hardfork_t testnet_hard_forks[];
extern const uint64_t testnet_hard_fork_version_1_till;
extern const size_t num_testnet_hard_forks;
extern const hardfork_t stagenet_hard_forks[];

@ -146,6 +146,7 @@ namespace nodetool
const command_line::arg_descriptor<std::vector<std::string> > arg_p2p_seed_node = {"seed-node", "Connect to a node to retrieve peer addresses, and disconnect"};
const command_line::arg_descriptor<std::vector<std::string> > arg_tx_proxy = {"tx-proxy", "Send local txes through proxy: <network-type>,<socks-ip:port>[,max_connections][,disable_noise] i.e. \"tor,127.0.0.1:9050,100,disable_noise\""};
const command_line::arg_descriptor<std::vector<std::string> > arg_anonymous_inbound = {"anonymous-inbound", "<hidden-service-address>,<[bind-ip:]port>[,max_connections] i.e. \"x.onion,127.0.0.1:18083,100\""};
const command_line::arg_descriptor<std::string> arg_ban_list = {"ban-list", "Specify ban list file, one IP address per line"};
const command_line::arg_descriptor<bool> arg_p2p_hide_my_port = {"hide-my-port", "Do not announce yourself as peerlist candidate", false, true};
const command_line::arg_descriptor<bool> arg_no_sync = {"no-sync", "Don't synchronize the blockchain with other peers", false};

@ -292,10 +292,7 @@ namespace nodetool
private:
const std::vector<std::string> m_seed_nodes_list =
{ "seeds.moneroseeds.se"
, "seeds.moneroseeds.ae.org"
, "seeds.moneroseeds.ch"
, "seeds.moneroseeds.li"
{
};
bool islimitup=false;
@ -334,7 +331,7 @@ namespace nodetool
virtual void callback(p2p_connection_context& context);
//----------------- i_p2p_endpoint -------------------------------------------------------------
virtual bool relay_notify_to_list(int command, const epee::span<const uint8_t> data_buff, std::vector<std::pair<epee::net_utils::zone, boost::uuids::uuid>> connections);
virtual epee::net_utils::zone send_txs(std::vector<cryptonote::blobdata> txs, const epee::net_utils::zone origin, const boost::uuids::uuid& source, cryptonote::i_core_events& core, cryptonote::relay_method tx_relay);
virtual epee::net_utils::zone send_txs(std::vector<cryptonote::blobdata> txs, const epee::net_utils::zone origin, const boost::uuids::uuid& source, cryptonote::relay_method tx_relay);
virtual bool invoke_command_to_peer(int command, const epee::span<const uint8_t> req_buff, std::string& resp_buff, const epee::net_utils::connection_context_base& context);
virtual bool invoke_notify_to_peer(int command, const epee::span<const uint8_t> req_buff, const epee::net_utils::connection_context_base& context);
virtual bool drop_connection(const epee::net_utils::connection_context_base& context);
@ -523,6 +520,7 @@ namespace nodetool
extern const command_line::arg_descriptor<std::vector<std::string> > arg_p2p_seed_node;
extern const command_line::arg_descriptor<std::vector<std::string> > arg_tx_proxy;
extern const command_line::arg_descriptor<std::vector<std::string> > arg_anonymous_inbound;
extern const command_line::arg_descriptor<std::string> arg_ban_list;
extern const command_line::arg_descriptor<bool> arg_p2p_hide_my_port;
extern const command_line::arg_descriptor<bool> arg_no_sync;

@ -71,6 +71,17 @@
#define MIN_WANTED_SEED_NODES 12
static inline boost::asio::ip::address_v4 make_address_v4_from_v6(const boost::asio::ip::address_v6& a)
{
const auto &bytes = a.to_bytes();
uint32_t v4 = 0;
v4 = (v4 << 8) | bytes[12];
v4 = (v4 << 8) | bytes[13];
v4 = (v4 << 8) | bytes[14];
v4 = (v4 << 8) | bytes[15];
return boost::asio::ip::address_v4(v4);
}
namespace nodetool
{
template<class t_payload_net_handler>
@ -106,6 +117,7 @@ namespace nodetool
command_line::add_arg(desc, arg_p2p_seed_node);
command_line::add_arg(desc, arg_tx_proxy);
command_line::add_arg(desc, arg_anonymous_inbound);
command_line::add_arg(desc, arg_ban_list);
command_line::add_arg(desc, arg_p2p_hide_my_port);
command_line::add_arg(desc, arg_no_sync);
command_line::add_arg(desc, arg_no_igd);
@ -245,6 +257,10 @@ namespace nodetool
zone.second.m_net_server.get_config_object().close(c);
conns.clear();
peerlist_entry pe{};
pe.adr = addr;
zone.second.m_peerlist.remove_from_peer_white(pe);
}
MCLOG_CYAN(el::Level::Info, "global", "Host " << addr.host_str() << " blocked.");
@ -386,7 +402,7 @@ namespace nodetool
m_use_ipv6 = command_line::get_arg(vm, arg_p2p_use_ipv6);
m_require_ipv4 = !command_line::get_arg(vm, arg_p2p_ignore_ipv4);
public_zone.m_notifier = cryptonote::levin::notify{
public_zone.m_net_server.get_io_service(), public_zone.m_net_server.get_config_shared(), nullptr, true, pad_txs
public_zone.m_net_server.get_io_service(), public_zone.m_net_server.get_config_shared(), nullptr, true, pad_txs, m_payload_handler.get_core()
};
if (command_line::has_arg(vm, arg_p2p_add_peer))
@ -441,6 +457,36 @@ namespace nodetool
return false;
}
if (!command_line::is_arg_defaulted(vm, arg_ban_list))
{
const std::string ban_list = command_line::get_arg(vm, arg_ban_list);
const boost::filesystem::path ban_list_path(ban_list);
boost::system::error_code ec;
if (!boost::filesystem::exists(ban_list_path, ec))
{
throw std::runtime_error("Can't find ban list file " + ban_list + " - " + ec.message());
}
std::string banned_ips;
if (!epee::file_io_utils::load_file_to_string(ban_list_path.string(), banned_ips))
{
throw std::runtime_error("Failed to read ban list file " + ban_list);
}
std::istringstream iss(banned_ips);
for (std::string line; std::getline(iss, line); )
{
const expect<epee::net_utils::network_address> parsed_addr = net::get_network_address(line, 0);
if (!parsed_addr)
{
MERROR("Invalid IP address: " << line << " - " << parsed_addr.error());
continue;
}
block_host(*parsed_addr, std::numeric_limits<time_t>::max());
}
}
if(command_line::has_arg(vm, arg_p2p_hide_my_port))
m_hide_my_port = true;
@ -499,7 +545,7 @@ namespace nodetool
}
zone.m_notifier = cryptonote::levin::notify{
zone.m_net_server.get_io_service(), zone.m_net_server.get_config_shared(), std::move(this_noise), false, pad_txs
zone.m_net_server.get_io_service(), zone.m_net_server.get_config_shared(), std::move(this_noise), false, pad_txs, m_payload_handler.get_core()
};
}
@ -603,28 +649,24 @@ namespace nodetool
std::set<std::string> full_addrs;
if (nettype == cryptonote::TESTNET)
{
full_addrs.insert("212.83.175.67:28080");
full_addrs.insert("212.83.172.165:28080");
full_addrs.insert("192.110.160.146:28080");
full_addrs.insert("207.254.29.107:11180");
full_addrs.insert("51.81.32.130:11180");
}
else if (nettype == cryptonote::STAGENET)
{
full_addrs.insert("162.210.173.150:38080");
full_addrs.insert("192.110.160.146:38080");
}
else if (nettype == cryptonote::FAKECHAIN)
{
}
else
{
full_addrs.insert("212.83.175.67:18080");
full_addrs.insert("212.83.172.165:18080");
full_addrs.insert("192.110.160.146:18080");
full_addrs.insert("88.198.163.90:18080");
full_addrs.insert("95.217.25.101:18080");
full_addrs.insert("209.250.243.248:18080");
full_addrs.insert("104.238.221.81:18080");
full_addrs.insert("66.85.74.134:18080");
full_addrs.insert("158.69.60.225:34567"); // OVH France
full_addrs.insert("159.65.91.59:34567"); // DigiO london
full_addrs.insert("164.90.230.176:34567"); // de1.wownodes.com
full_addrs.insert("64.227.81.144:34567"); // us1.wownodes.com
full_addrs.insert("188.166.237.187:34567"); // sg1.wownodes.com
full_addrs.insert("54.185.62.197:34567"); // node.suchwow.xyz
full_addrs.insert("167.114.196.241:34567"); // wowbux.org
}
return full_addrs;
}
@ -1232,7 +1274,10 @@ namespace nodetool
template<class t_payload_net_handler>
bool node_server<t_payload_net_handler>::try_to_connect_and_handshake_with_new_peer(const epee::net_utils::network_address& na, bool just_take_peerlist, uint64_t last_seen_stamp, PeerType peer_type, uint64_t first_seen_stamp)
{
network_zone& zone = m_network_zones.at(na.get_zone());
const auto i = m_network_zones.find(na.get_zone());
if (i == m_network_zones.end())
return false;
network_zone& zone = i->second;
if (zone.m_connect == nullptr) // outgoing connections in zone not possible
return false;
@ -1432,17 +1477,44 @@ namespace nodetool
const uint32_t actual_ip = na.as<const epee::net_utils::ipv4_network_address>().ip();
classB.insert(actual_ip & 0x0000ffff);
}
else if (cntxt.m_remote_address.get_type_id() == epee::net_utils::ipv6_network_address::get_type_id())
{
const epee::net_utils::network_address na = cntxt.m_remote_address;
const boost::asio::ip::address_v6 &actual_ip = na.as<const epee::net_utils::ipv6_network_address>().ip();
if (actual_ip.is_v4_mapped())
{
boost::asio::ip::address_v4 v4ip = make_address_v4_from_v6(actual_ip);
uint32_t actual_ipv4;
memcpy(&actual_ipv4, v4ip.to_bytes().data(), sizeof(actual_ipv4));
classB.insert(actual_ipv4 & ntohl(0xffff0000));
}
}
return true;
});
}
auto get_host_string = [](const epee::net_utils::network_address &address) {
if (address.get_type_id() == epee::net_utils::ipv6_network_address::get_type_id())
{
boost::asio::ip::address_v6 actual_ip = address.as<const epee::net_utils::ipv6_network_address>().ip();
if (actual_ip.is_v4_mapped())
{
boost::asio::ip::address_v4 v4ip = make_address_v4_from_v6(actual_ip);
uint32_t actual_ipv4;
memcpy(&actual_ipv4, v4ip.to_bytes().data(), sizeof(actual_ipv4));
return epee::net_utils::ipv4_network_address(actual_ipv4, 0).host_str();
}
}
return address.host_str();
};
std::unordered_set<std::string> hosts_added;
std::deque<size_t> filtered;
const size_t limit = use_white_list ? 20 : std::numeric_limits<size_t>::max();
for (int step = 0; step < 2; ++step)
{
bool skip_duplicate_class_B = step == 0;
size_t idx = 0, skipped = 0;
zone.m_peerlist.foreach (use_white_list, [&classB, &filtered, &idx, &skipped, skip_duplicate_class_B, limit, next_needed_pruning_stripe](const peerlist_entry &pe){
zone.m_peerlist.foreach (use_white_list, [&classB, &filtered, &idx, &skipped, skip_duplicate_class_B, limit, next_needed_pruning_stripe, &hosts_added, &get_host_string](const peerlist_entry &pe){
if (filtered.size() >= limit)
return false;
bool skip = false;
@ -1452,6 +1524,27 @@ namespace nodetool
uint32_t actual_ip = na.as<const epee::net_utils::ipv4_network_address>().ip();
skip = classB.find(actual_ip & 0x0000ffff) != classB.end();
}
else if (skip_duplicate_class_B && pe.adr.get_type_id() == epee::net_utils::ipv6_network_address::get_type_id())
{
const epee::net_utils::network_address na = pe.adr;
const boost::asio::ip::address_v6 &actual_ip = na.as<const epee::net_utils::ipv6_network_address>().ip();
if (actual_ip.is_v4_mapped())
{
boost::asio::ip::address_v4 v4ip = make_address_v4_from_v6(actual_ip);
uint32_t actual_ipv4;
memcpy(&actual_ipv4, v4ip.to_bytes().data(), sizeof(actual_ipv4));
skip = classB.find(actual_ipv4 & ntohl(0xffff0000)) != classB.end();
}
}
// consider each host once, to avoid giving undue inflence to hosts running several nodes
if (!skip)
{
const auto i = hosts_added.find(get_host_string(pe.adr));
if (i != hosts_added.end())
skip = true;
}
if (skip)
++skipped;
else if (next_needed_pruning_stripe == 0 || pe.pruning_seed == 0)
@ -1459,16 +1552,17 @@ namespace nodetool
else if (next_needed_pruning_stripe == tools::get_pruning_stripe(pe.pruning_seed))
filtered.push_front(idx);
++idx;
hosts_added.insert(get_host_string(pe.adr));
return true;
});
if (skipped == 0 || !filtered.empty())
break;
if (skipped)
MINFO("Skipping " << skipped << " possible peers as they share a class B with existing peers");
MDEBUG("Skipping " << skipped << " possible peers as they share a class B with existing peers");
}
if (filtered.empty())
{
MDEBUG("No available peer in " << (use_white_list ? "white" : "gray") << " list filtered by " << next_needed_pruning_stripe);
MINFO("No available peer in " << (use_white_list ? "white" : "gray") << " list filtered by " << next_needed_pruning_stripe);
return false;
}
if (use_white_list)
@ -1848,7 +1942,7 @@ namespace nodetool
else
{
const el::Level level = el::Level::Warning;
MCLOG_RED(level, "global", "No incoming connections - check firewalls/routers allow port " << get_this_peer_port());
MCLOG_RED(level, "Debug", "No incoming connections - check firewalls/routers allow port " << get_this_peer_port());
}
}
}
@ -1994,13 +2088,13 @@ namespace nodetool
}
//-----------------------------------------------------------------------------------
template<class t_payload_net_handler>
epee::net_utils::zone node_server<t_payload_net_handler>::send_txs(std::vector<cryptonote::blobdata> txs, const epee::net_utils::zone origin, const boost::uuids::uuid& source, cryptonote::i_core_events& core, const cryptonote::relay_method tx_relay)
epee::net_utils::zone node_server<t_payload_net_handler>::send_txs(std::vector<cryptonote::blobdata> txs, const epee::net_utils::zone origin, const boost::uuids::uuid& source, const cryptonote::relay_method tx_relay)
{
namespace enet = epee::net_utils;
const auto send = [&txs, &source, &core, tx_relay] (std::pair<const enet::zone, network_zone>& network)
const auto send = [&txs, &source, tx_relay] (std::pair<const enet::zone, network_zone>& network)
{
if (network.second.m_notifier.send_txs(std::move(txs), source, core, tx_relay))
if (network.second.m_notifier.send_txs(std::move(txs), source, tx_relay))
return network.first;
return enet::zone::invalid;
};

@ -50,7 +50,7 @@ namespace nodetool
struct i_p2p_endpoint
{
virtual bool relay_notify_to_list(int command, const epee::span<const uint8_t> data_buff, std::vector<std::pair<epee::net_utils::zone, boost::uuids::uuid>> connections)=0;
virtual epee::net_utils::zone send_txs(std::vector<cryptonote::blobdata> txs, const epee::net_utils::zone origin, const boost::uuids::uuid& source, cryptonote::i_core_events& core, cryptonote::relay_method tx_relay)=0;
virtual epee::net_utils::zone send_txs(std::vector<cryptonote::blobdata> txs, const epee::net_utils::zone origin, const boost::uuids::uuid& source, cryptonote::relay_method tx_relay)=0;
virtual bool invoke_command_to_peer(int command, const epee::span<const uint8_t> req_buff, std::string& resp_buff, const epee::net_utils::connection_context_base& context)=0;
virtual bool invoke_notify_to_peer(int command, const epee::span<const uint8_t> req_buff, const epee::net_utils::connection_context_base& context)=0;
virtual bool drop_connection(const epee::net_utils::connection_context_base& context)=0;
@ -75,7 +75,7 @@ namespace nodetool
{
return false;
}
virtual epee::net_utils::zone send_txs(std::vector<cryptonote::blobdata> txs, const epee::net_utils::zone origin, const boost::uuids::uuid& source, cryptonote::i_core_events& core, cryptonote::relay_method tx_relay)
virtual epee::net_utils::zone send_txs(std::vector<cryptonote::blobdata> txs, const epee::net_utils::zone origin, const boost::uuids::uuid& source, cryptonote::relay_method tx_relay)
{
return epee::net_utils::zone::invalid;
}

@ -31,7 +31,8 @@ set(ringct_basic_sources
rctTypes.cpp
rctCryptoOps.c
multiexp.cc
bulletproofs.cc)
bulletproofs.cc
bulletproofs2.cc)
set(ringct_basic_private_headers
rctOps.h

@ -42,9 +42,16 @@ Bulletproof bulletproof_PROVE(const rct::key &v, const rct::key &gamma);
Bulletproof bulletproof_PROVE(uint64_t v, const rct::key &gamma);
Bulletproof bulletproof_PROVE(const rct::keyV &v, const rct::keyV &gamma);
Bulletproof bulletproof_PROVE(const std::vector<uint64_t> &v, const rct::keyV &gamma);
Bulletproof bulletproof_PROVE_old(const rct::key &v, const rct::key &gamma);
Bulletproof bulletproof_PROVE_old(uint64_t v, const rct::key &gamma);
Bulletproof bulletproof_PROVE_old(const rct::keyV &v, const rct::keyV &gamma);
Bulletproof bulletproof_PROVE_old(const std::vector<uint64_t> &v, const rct::keyV &gamma);
bool bulletproof_VERIFY(const Bulletproof &proof);
bool bulletproof_VERIFY(const std::vector<const Bulletproof*> &proofs);
bool bulletproof_VERIFY(const std::vector<Bulletproof> &proofs);
bool bulletproof_VERIFY_old(const Bulletproof &proof);
bool bulletproof_VERIFY_old(const std::vector<const Bulletproof*> &proofs);
bool bulletproof_VERIFY_old(const std::vector<Bulletproof> &proofs);
}

File diff suppressed because it is too large Load Diff

@ -93,6 +93,24 @@ namespace rct {
return proof;
}
Bulletproof proveRangeBulletproof_old(key &C, key &mask, uint64_t amount)
{
mask = rct::skGen();
Bulletproof proof = bulletproof_PROVE_old(amount, mask);
CHECK_AND_ASSERT_THROW_MES(proof.V.size() == 1, "V has not exactly one element");
C = proof.V[0];
return proof;
}
Bulletproof proveRangeBulletproof_old(keyV &C, keyV &masks, const std::vector<uint64_t> &amounts)
{
masks = rct::skvGen(amounts.size());
Bulletproof proof = bulletproof_PROVE_old(amounts, masks);
CHECK_AND_ASSERT_THROW_MES(proof.V.size() == amounts.size(), "V does not have the expected size");
C = proof.V;
return proof;
}
bool verBulletproof(const Bulletproof &proof)
{
try { return bulletproof_VERIFY(proof); }
@ -107,6 +125,20 @@ namespace rct {
catch (...) { return false; }
}
bool verBulletproof_old(const Bulletproof &proof)
{
try { return bulletproof_VERIFY_old(proof); }
// we can get deep throws from ge_frombytes_vartime if input isn't valid
catch (...) { return false; }
}
bool verBulletproof_old(const std::vector<const Bulletproof*> &proofs)
{
try { return bulletproof_VERIFY_old(proofs); }
// we can get deep throws from ge_frombytes_vartime if input isn't valid
catch (...) { return false; }
}
//Borromean (c.f. gmax/andytoshi's paper)
boroSig genBorromean(const key64 x, const key64 P1, const key64 P2, const bits indices) {
key64 L[2], alpha;
@ -589,7 +621,7 @@ namespace rct {
hashes.push_back(hash2rct(h));
keyV kv;
if (rv.type == RCTTypeBulletproof || rv.type == RCTTypeBulletproof2 || rv.type == RCTTypeCLSAG)
if (rv.type == RCTTypeBulletproof || rv.type == RCTTypeBulletproof2 || rv.type == RCTTypeSimpleBulletproof || rv.type == RCTTypeFullBulletproof || rv.type == RCTTypeCLSAG)
{
kv.reserve((6*2+9) * rv.p.bulletproofs.size());
for (const auto &p: rv.p.bulletproofs)
@ -1003,6 +1035,7 @@ namespace rct {
// Note: For txn fees, the last index in the amounts vector should contain that
// Thus the amounts vector will be "one" longer than the destinations vectort
rctSig genRct(const key &message, const ctkeyV & inSk, const keyV & destinations, const vector<xmr_amount> & amounts, const ctkeyM &mixRing, const keyV &amount_keys, const multisig_kLRki *kLRki, multisig_out *msout, unsigned int index, ctkeyV &outSk, const RCTConfig &rct_config, hw::device &hwdev) {
const bool bulletproof = rct_config.range_proof_type != RangeProofBorromean;
CHECK_AND_ASSERT_THROW_MES(amounts.size() == destinations.size() || amounts.size() == destinations.size() + 1, "Different number of amounts/destinations");
CHECK_AND_ASSERT_THROW_MES(amount_keys.size() == destinations.size(), "Different number of amount_keys/destinations");
CHECK_AND_ASSERT_THROW_MES(index < mixRing.size(), "Bad index into mixRing");
@ -1013,10 +1046,11 @@ namespace rct {
CHECK_AND_ASSERT_THROW_MES(inSk.size() < 2, "genRct is not suitable for 2+ rings");
rctSig rv;
rv.type = RCTTypeFull;
rv.type = bulletproof ? RCTTypeFullBulletproof : RCTTypeFull;
rv.message = message;
rv.outPk.resize(destinations.size());
rv.p.rangeSigs.resize(destinations.size());
if (!bulletproof)
rv.p.rangeSigs.resize(destinations.size());
rv.ecdhInfo.resize(destinations.size());
size_t i = 0;
@ -1026,10 +1060,45 @@ namespace rct {
//add destination to sig
rv.outPk[i].dest = copy(destinations[i]);
//compute range proof
rv.p.rangeSigs[i] = proveRange(rv.outPk[i].mask, outSk[i].mask, amounts[i]);
if (!bulletproof)
{
rv.p.rangeSigs[i] = proveRange(rv.outPk[i].mask, outSk[i].mask, amounts[i]);
#ifdef DBG
CHECK_AND_ASSERT_THROW_MES(verRange(rv.outPk[i].mask, rv.p.rangeSigs[i]), "verRange failed on newly created proof");
#endif
}
}
rv.p.bulletproofs.clear();
if (bulletproof)
{
std::vector<uint64_t> proof_amounts;
size_t amounts_proved = 0;
while (amounts_proved < amounts.size())
{
size_t batch_size = 1;
if (rct_config.range_proof_type == RangeProofMultiOutputBulletproof)
while (batch_size * 2 + amounts_proved <= amounts.size())
batch_size *= 2;
rct::keyV C, masks;
std::vector<uint64_t> batch_amounts(batch_size);
for (i = 0; i < batch_size; ++i)
batch_amounts[i] = amounts[i + amounts_proved];
rv.p.bulletproofs.push_back(proveRangeBulletproof_old(C, masks, batch_amounts));
#ifdef DBG
CHECK_AND_ASSERT_THROW_MES(verBulletproof_old(rv.p.bulletproofs.back()), "verBulletproof failed on newly created proof");
#endif
for (i = 0; i < batch_size; ++i)
{
rv.outPk[i + amounts_proved].mask = C[i];
outSk[i + amounts_proved].mask = masks[i];
}
amounts_proved += batch_size;
}
}
for (i = 0; i < outSk.size(); ++i)
{
//mask amount and mask
rv.ecdhInfo[i].mask = copy(outSk[i].mask);
rv.ecdhInfo[i].amount = d2h(amounts[i]);
@ -1249,6 +1318,104 @@ namespace rct {
return genRctSimple(message, inSk, destinations, inamounts, outamounts, txnFee, mixRing, amount_keys, kLRki, msout, index, outSk, rct_config, hwdev);
}
//RCT simple
//for post-rct only
rctSig genRctSimple_old(const key &message, const ctkeyV & inSk, const keyV & destinations, const vector<xmr_amount> &inamounts, const vector<xmr_amount> &outamounts, xmr_amount txnFee, const ctkeyM & mixRing, const keyV &amount_keys, const std::vector<multisig_kLRki> *kLRki, multisig_out *msout, const std::vector<unsigned int> & index, ctkeyV &outSk, const RCTConfig &rct_config, hw::device &hwdev) {
const bool bulletproof = rct_config.range_proof_type != RangeProofBorromean;
CHECK_AND_ASSERT_THROW_MES(inamounts.size() > 0, "Empty inamounts");
CHECK_AND_ASSERT_THROW_MES(inamounts.size() == inSk.size(), "Different number of inamounts/inSk");
CHECK_AND_ASSERT_THROW_MES(outamounts.size() == destinations.size(), "Different number of amounts/destinations");
CHECK_AND_ASSERT_THROW_MES(amount_keys.size() == destinations.size(), "Different number of amount_keys/destinations");
CHECK_AND_ASSERT_THROW_MES(index.size() == inSk.size(), "Different number of index/inSk");
CHECK_AND_ASSERT_THROW_MES(mixRing.size() == inSk.size(), "Different number of mixRing/inSk");
for (size_t n = 0; n < mixRing.size(); ++n) {
CHECK_AND_ASSERT_THROW_MES(index[n] < mixRing[n].size(), "Bad index into mixRing");
}
CHECK_AND_ASSERT_THROW_MES((kLRki && msout) || (!kLRki && !msout), "Only one of kLRki/msout is present");
if (kLRki && msout) {
CHECK_AND_ASSERT_THROW_MES(kLRki->size() == inamounts.size(), "Mismatched kLRki/inamounts sizes");
}
rctSig rv;
rv.type = bulletproof ? RCTTypeSimpleBulletproof : RCTTypeSimple;
rv.message = message;
rv.outPk.resize(destinations.size());
if (bulletproof)
rv.p.bulletproofs.resize(destinations.size());
else
rv.p.rangeSigs.resize(destinations.size());
rv.ecdhInfo.resize(destinations.size());
size_t i;
keyV masks(destinations.size()); //sk mask..
outSk.resize(destinations.size());
key sumout = zero();
for (i = 0; i < destinations.size(); i++) {
//add destination to sig
rv.outPk[i].dest = copy(destinations[i]);
//compute range proof
if (bulletproof)
rv.p.bulletproofs[i] = proveRangeBulletproof_old(rv.outPk[i].mask, outSk[i].mask, outamounts[i]);
else
rv.p.rangeSigs[i] = proveRange(rv.outPk[i].mask, outSk[i].mask, outamounts[i]);
#ifdef DBG
if (bulletproof)
CHECK_AND_ASSERT_THROW_MES(verBulletproof_old(rv.p.bulletproofs[i]), "verBulletproof failed on newly created proof");
else
CHECK_AND_ASSERT_THROW_MES(verRange(rv.outPk[i].mask, rv.p.rangeSigs[i]), "verRange failed on newly created proof");
#endif
sc_add(sumout.bytes, outSk[i].mask.bytes, sumout.bytes);
//mask amount and mask
rv.ecdhInfo[i].mask = copy(outSk[i].mask);
rv.ecdhInfo[i].amount = d2h(outamounts[i]);
hwdev.ecdhEncode(rv.ecdhInfo[i], amount_keys[i], rv.type == RCTTypeSimpleBulletproof);
}
//set txn fee
rv.txnFee = txnFee;
// TODO: unused ??
// key txnFeeKey = scalarmultH(d2h(rv.txnFee));
rv.mixRing = mixRing;
keyV &pseudoOuts = bulletproof ? rv.p.pseudoOuts : rv.pseudoOuts;
pseudoOuts.resize(inamounts.size());
rv.p.MGs.resize(inamounts.size());
key sumpouts = zero(); //sum pseudoOut masks
keyV a(inamounts.size());
for (i = 0 ; i < inamounts.size() - 1; i++) {
skGen(a[i]);
sc_add(sumpouts.bytes, a[i].bytes, sumpouts.bytes);
genC(pseudoOuts[i], a[i], inamounts[i]);
}
rv.mixRing = mixRing;
sc_sub(a[i].bytes, sumout.bytes, sumpouts.bytes);
genC(pseudoOuts[i], a[i], inamounts[i]);
DP(pseudoOuts[i]);
key full_message = get_pre_mlsag_hash(rv,hwdev);
if (msout)
msout->c.resize(inamounts.size());
for (i = 0 ; i < inamounts.size(); i++) {
rv.p.MGs[i] = proveRctMGSimple(full_message, rv.mixRing[i], inSk[i], a[i], pseudoOuts[i], kLRki ? &(*kLRki)[i]: NULL, msout ? &msout->c[i] : NULL, index[i], hwdev);
}
return rv;
}
rctSig genRctSimple_old(const key &message, const ctkeyV & inSk, const ctkeyV & inPk, const keyV & destinations, const vector<xmr_amount> &inamounts, const vector<xmr_amount> &outamounts, const keyV &amount_keys, const std::vector<multisig_kLRki> *kLRki, multisig_out *msout, xmr_amount txnFee, unsigned int mixin, const RCTConfig &rct_config, hw::device &hwdev) {
std::vector<unsigned int> index;
index.resize(inPk.size());
ctkeyM mixRing;
ctkeyV outSk;
mixRing.resize(inPk.size());
for (size_t i = 0; i < inPk.size(); ++i) {
mixRing[i].resize(mixin+1);
index[i] = populateFromBlockchainSimple(mixRing[i], inPk[i], mixin);
}
return genRctSimple_old(message, inSk, destinations, inamounts, outamounts, txnFee, mixRing, amount_keys, kLRki, msout, index, outSk, rct_config, hwdev);
}
//RingCT protocol
//genRct:
// creates an rctSig with all data necessary to verify the rangeProofs and that the signer owns one of the
@ -1261,10 +1428,13 @@ namespace rct {
// must know the destination private key to find the correct amount, else will return a random number
bool verRct(const rctSig & rv, bool semantics) {
PERF_TIMER(verRct);
CHECK_AND_ASSERT_MES(rv.type == RCTTypeFull, false, "verRct called on non-full rctSig");
const bool bulletproof = is_rct_bulletproof(rv.type);
CHECK_AND_ASSERT_MES(rv.type == RCTTypeFull || rv.type == RCTTypeFullBulletproof, false, "verRct called on non-full rctSig");
if (semantics)
{
if (rv.type == RCTTypeBulletproof)
CHECK_AND_ASSERT_MES(rv.outPk.size() == rv.p.rangeSigs.size(), false, "Mismatched sizes of outPk and rv.p.rangeSigs");
else
CHECK_AND_ASSERT_MES(rv.outPk.size() == rv.ecdhInfo.size(), false, "Mismatched sizes of outPk and rv.ecdhInfo");
CHECK_AND_ASSERT_MES(rv.p.MGs.size() == 1, false, "full rctSig has not one MG");
}
@ -1279,10 +1449,23 @@ namespace rct {
if (semantics) {
tools::threadpool& tpool = tools::threadpool::getInstance();
tools::threadpool::waiter waiter(tpool);
std::deque<bool> results(rv.outPk.size(), false);
std::deque<bool> results(bulletproof ? rv.p.bulletproofs.size() : rv.outPk.size(), false);
DP("range proofs verified?");
for (size_t i = 0; i < rv.outPk.size(); i++)
tpool.submit(&waiter, [&, i] { results[i] = verRange(rv.outPk[i].mask, rv.p.rangeSigs[i]); });
if (rct::is_rct_new_bulletproof(rv.type))
{
for (size_t i = 0; i < rv.p.bulletproofs.size(); i++)
tpool.submit(&waiter, [&, i] { results[i] = verBulletproof(rv.p.bulletproofs[i]); });
}
else if (bulletproof)
{
for (size_t i = 0; i < rv.p.bulletproofs.size(); i++)
tpool.submit(&waiter, [&, i] { results[i] = verBulletproof_old(rv.p.bulletproofs[i]); });
}
else
{
for (size_t i = 0; i < rv.outPk.size(); i++)
tpool.submit(&waiter, [&, i] { results[i] = verRange(rv.outPk[i].mask, rv.p.rangeSigs[i]); });
}
if (!waiter.wait())
return false;
@ -1337,7 +1520,7 @@ namespace rct {
{
CHECK_AND_ASSERT_MES(rvp, false, "rctSig pointer is NULL");
const rctSig &rv = *rvp;
CHECK_AND_ASSERT_MES(rv.type == RCTTypeSimple || rv.type == RCTTypeBulletproof || rv.type == RCTTypeBulletproof2 || rv.type == RCTTypeCLSAG,
CHECK_AND_ASSERT_MES(rv.type == RCTTypeSimple || rv.type == RCTTypeBulletproof || rv.type == RCTTypeBulletproof2 || rv.type == RCTTypeSimpleBulletproof || rv.type == RCTTypeCLSAG,
false, "verRctSemanticsSimple called on non simple rctSig");
const bool bulletproof = is_rct_bulletproof(rv.type);
if (bulletproof)
@ -1405,12 +1588,23 @@ namespace rct {
offset += rv.p.rangeSigs.size();
}
}
for (const rctSig *rvp: rvv)
{
const rctSig &rv = *rvp;
if (!rct::is_rct_new_bulletproof(rv.type)){
if (!proofs.empty() && !verBulletproof_old(proofs))
{
LOG_PRINT_L1("Aggregate range proof verified failed");
return false;
}
} else {
if (!proofs.empty() && !verBulletproof(proofs))
{
LOG_PRINT_L1("Aggregate range proof verified failed");
return false;
}
}
}
if (!waiter.wait())
return false;
for (size_t i = 0; i < results.size(); ++i) {
@ -1447,7 +1641,7 @@ namespace rct {
{
PERF_TIMER(verRctNonSemanticsSimple);
CHECK_AND_ASSERT_MES(rv.type == RCTTypeSimple || rv.type == RCTTypeBulletproof || rv.type == RCTTypeBulletproof2 || rv.type == RCTTypeCLSAG,
CHECK_AND_ASSERT_MES(rv.type == RCTTypeSimple || rv.type == RCTTypeBulletproof || rv.type == RCTTypeBulletproof2 || rv.type == RCTTypeSimpleBulletproof || rv.type == RCTTypeCLSAG,
false, "verRctNonSemanticsSimple called on non simple rctSig");
const bool bulletproof = is_rct_bulletproof(rv.type);
// semantics check is early, and mixRing/MGs aren't resolved yet
@ -1514,7 +1708,7 @@ namespace rct {
// uses the attached ecdh info to find the amounts represented by each output commitment
// must know the destination private key to find the correct amount, else will return a random number
xmr_amount decodeRct(const rctSig & rv, const key & sk, unsigned int i, key & mask, hw::device &hwdev) {
CHECK_AND_ASSERT_MES(rv.type == RCTTypeFull, false, "decodeRct called on non-full rctSig");
CHECK_AND_ASSERT_MES(rv.type == RCTTypeFull || rv.type == RCTTypeFullBulletproof, false, "decodeRct called on non-full rctSig");
CHECK_AND_ASSERT_THROW_MES(i < rv.ecdhInfo.size(), "Bad index");
CHECK_AND_ASSERT_THROW_MES(rv.outPk.size() == rv.ecdhInfo.size(), "Mismatched sizes of rv.outPk and rv.ecdhInfo");
@ -1544,7 +1738,7 @@ namespace rct {
}
xmr_amount decodeRctSimple(const rctSig & rv, const key & sk, unsigned int i, key &mask, hw::device &hwdev) {
CHECK_AND_ASSERT_MES(rv.type == RCTTypeSimple || rv.type == RCTTypeBulletproof || rv.type == RCTTypeBulletproof2 || rv.type == RCTTypeCLSAG, false, "decodeRct called on non simple rctSig");
CHECK_AND_ASSERT_MES(rv.type == RCTTypeSimple || rv.type == RCTTypeBulletproof || rv.type == RCTTypeBulletproof2 || rv.type == RCTTypeSimpleBulletproof || rv.type == RCTTypeCLSAG, false, "decodeRct called on non simple rctSig");
CHECK_AND_ASSERT_THROW_MES(i < rv.ecdhInfo.size(), "Bad index");
CHECK_AND_ASSERT_THROW_MES(rv.outPk.size() == rv.ecdhInfo.size(), "Mismatched sizes of rv.outPk and rv.ecdhInfo");
@ -1574,13 +1768,13 @@ namespace rct {
}
bool signMultisigMLSAG(rctSig &rv, const std::vector<unsigned int> &indices, const keyV &k, const multisig_out &msout, const key &secret_key) {
CHECK_AND_ASSERT_MES(rv.type == RCTTypeFull || rv.type == RCTTypeSimple || rv.type == RCTTypeBulletproof || rv.type == RCTTypeBulletproof2,
CHECK_AND_ASSERT_MES(rv.type == RCTTypeFull || rv.type == RCTTypeSimple || rv.type == RCTTypeBulletproof || rv.type == RCTTypeBulletproof2 || rv.type == RCTTypeFullBulletproof || rv.type == RCTTypeSimpleBulletproof,
false, "unsupported rct type");
CHECK_AND_ASSERT_MES(indices.size() == k.size(), false, "Mismatched k/indices sizes");
CHECK_AND_ASSERT_MES(k.size() == rv.p.MGs.size(), false, "Mismatched k/MGs size");
CHECK_AND_ASSERT_MES(k.size() == msout.c.size(), false, "Mismatched k/msout.c size");
CHECK_AND_ASSERT_MES(rv.p.CLSAGs.empty(), false, "CLSAGs not empty for MLSAGs");
if (rv.type == RCTTypeFull)
if (rv.type == RCTTypeFull || rv.type == RCTTypeFullBulletproof)
{
CHECK_AND_ASSERT_MES(rv.p.MGs.size() == 1, false, "MGs not a single element");
}

@ -127,6 +127,8 @@ namespace rct {
rctSig genRct(const key &message, const ctkeyV & inSk, const ctkeyV & inPk, const keyV & destinations, const std::vector<xmr_amount> & amounts, const keyV &amount_keys, const multisig_kLRki *kLRki, multisig_out *msout, const int mixin, const RCTConfig &rct_config, hw::device &hwdev);
rctSig genRctSimple(const key & message, const ctkeyV & inSk, const ctkeyV & inPk, const keyV & destinations, const std::vector<xmr_amount> & inamounts, const std::vector<xmr_amount> & outamounts, const keyV &amount_keys, const std::vector<multisig_kLRki> *kLRki, multisig_out *msout, xmr_amount txnFee, unsigned int mixin, const RCTConfig &rct_config, hw::device &hwdev);
rctSig genRctSimple(const key & message, const ctkeyV & inSk, const keyV & destinations, const std::vector<xmr_amount> & inamounts, const std::vector<xmr_amount> & outamounts, xmr_amount txnFee, const ctkeyM & mixRing, const keyV &amount_keys, const std::vector<multisig_kLRki> *kLRki, multisig_out *msout, const std::vector<unsigned int> & index, ctkeyV &outSk, const RCTConfig &rct_config, hw::device &hwdev);
rctSig genRctSimple_old(const key & message, const ctkeyV & inSk, const ctkeyV & inPk, const keyV & destinations, const std::vector<xmr_amount> & inamounts, const std::vector<xmr_amount> & outamounts, const keyV &amount_keys, const std::vector<multisig_kLRki> *kLRki, multisig_out *msout, xmr_amount txnFee, unsigned int mixin, const RCTConfig &rct_config, hw::device &hwdev);
rctSig genRctSimple_old(const key & message, const ctkeyV & inSk, const keyV & destinations, const std::vector<xmr_amount> & inamounts, const std::vector<xmr_amount> & outamounts, xmr_amount txnFee, const ctkeyM & mixRing, const keyV &amount_keys, const std::vector<multisig_kLRki> *kLRki, multisig_out *msout, const std::vector<unsigned int> & index, ctkeyV &outSk, const RCTConfig &rct_config, hw::device &hwdev);
bool verRct(const rctSig & rv, bool semantics);
static inline bool verRct(const rctSig & rv) { return verRct(rv, true) && verRct(rv, false); }
bool verRctSemanticsSimple(const rctSig & rv);

@ -193,6 +193,7 @@ namespace rct {
switch (type)
{
case RCTTypeSimple:
case RCTTypeSimpleBulletproof:
case RCTTypeBulletproof:
case RCTTypeBulletproof2:
case RCTTypeCLSAG:
@ -206,6 +207,8 @@ namespace rct {
{
switch (type)
{
case RCTTypeSimpleBulletproof:
case RCTTypeFullBulletproof:
case RCTTypeBulletproof:
case RCTTypeBulletproof2:
case RCTTypeCLSAG:
@ -215,6 +218,23 @@ namespace rct {
}
}
bool is_rct_old_bulletproof(int type)
{
switch (type)
{
case RCTTypeSimpleBulletproof:
case RCTTypeFullBulletproof:
return true;
default:
return false;
}
}
bool is_rct_new_bulletproof(int type)
{
return is_rct_bulletproof(type) && !is_rct_old_bulletproof(type);
}
bool is_rct_borromean(int type)
{
switch (type)
@ -227,6 +247,25 @@ namespace rct {
}
}
size_t n_bulletproof_v1_amounts(const Bulletproof &proof)
{
CHECK_AND_ASSERT_MES(proof.L.size() >= 6, 0, "Invalid bulletproof L size");
CHECK_AND_ASSERT_MES(proof.L.size() <= 31, 0, "Insane bulletproof L size");
return 1 << (proof.L.size() - 6);
}
size_t n_bulletproof_v1_amounts(const std::vector<Bulletproof> &proofs)
{
size_t n = 0;
for (const Bulletproof &proof: proofs)
{
size_t n2 = n_bulletproof_v1_amounts(proof);
CHECK_AND_ASSERT_MES(n2 < std::numeric_limits<uint32_t>::max() - n, 0, "Invalid number of bulletproofs");
if (n2 == 0)
return 0;
n += n2;
}
return n;
}
size_t n_bulletproof_amounts(const Bulletproof &proof)
{
CHECK_AND_ASSERT_MES(proof.L.size() >= 6, 0, "Invalid bulletproof L size");

@ -239,8 +239,10 @@ namespace rct {
};
size_t n_bulletproof_amounts(const Bulletproof &proof);
size_t n_bulletproof_v1_amounts(const Bulletproof &proof);
size_t n_bulletproof_max_amounts(const Bulletproof &proof);
size_t n_bulletproof_amounts(const std::vector<Bulletproof> &proofs);
size_t n_bulletproof_v1_amounts(const std::vector<Bulletproof> &proofs);
size_t n_bulletproof_max_amounts(const std::vector<Bulletproof> &proofs);
//A container to hold all signatures necessary for RingCT
@ -254,9 +256,11 @@ namespace rct {
RCTTypeNull = 0,
RCTTypeFull = 1,
RCTTypeSimple = 2,
RCTTypeBulletproof = 3,
RCTTypeBulletproof2 = 4,
RCTTypeCLSAG = 5,
RCTTypeFullBulletproof = 3,
RCTTypeSimpleBulletproof = 4,
RCTTypeBulletproof = 5,
RCTTypeBulletproof2 = 6,
RCTTypeCLSAG = 7,
};
enum RangeProofType { RangeProofBorromean, RangeProofBulletproof, RangeProofMultiOutputBulletproof, RangeProofPaddedBulletproof };
struct RCTConfig {
@ -285,7 +289,7 @@ namespace rct {
FIELD(type)
if (type == RCTTypeNull)
return ar.stream().good();
if (type != RCTTypeFull && type != RCTTypeSimple && type != RCTTypeBulletproof && type != RCTTypeBulletproof2 && type != RCTTypeCLSAG)
if (type != RCTTypeFull && type != RCTTypeSimple && type != RCTTypeBulletproof && type != RCTTypeBulletproof2 && type != RCTTypeFullBulletproof && type != RCTTypeSimpleBulletproof && type != RCTTypeCLSAG)
return false;
VARINT_FIELD(txnFee)
// inputs/outputs not saved, only here for serialization help
@ -368,11 +372,32 @@ namespace rct {
template<bool W, template <bool> class Archive>
bool serialize_rctsig_prunable(Archive<W> &ar, uint8_t type, size_t inputs, size_t outputs, size_t mixin)
{
if (inputs >= 0xffffffff)
return false;
if (outputs >= 0xffffffff)
return false;
if (mixin >= 0xffffffff)
return false;
if (type == RCTTypeNull)
return ar.stream().good();
if (type != RCTTypeFull && type != RCTTypeSimple && type != RCTTypeBulletproof && type != RCTTypeBulletproof2 && type != RCTTypeCLSAG)
if (type != RCTTypeFull && type != RCTTypeSimple && type != RCTTypeBulletproof && type != RCTTypeBulletproof2 && type != RCTTypeFullBulletproof && type != RCTTypeSimpleBulletproof && type != RCTTypeCLSAG)
return false;
if (type == RCTTypeBulletproof || type == RCTTypeBulletproof2 || type == RCTTypeCLSAG)
if (type == RCTTypeSimpleBulletproof || type == RCTTypeFullBulletproof)
{
ar.tag("bp");
ar.begin_array();
PREPARE_CUSTOM_VECTOR_SERIALIZATION(outputs, bulletproofs);
if (bulletproofs.size() != outputs)
return false;
for (size_t i = 0; i < outputs; ++i)
{
FIELDS(bulletproofs[i])
if (outputs - i > 1)
ar.delimit_array();
}
ar.end_array();
}
else if (type == RCTTypeBulletproof || type == RCTTypeBulletproof2 || type == RCTTypeCLSAG)
{
uint32_t nbp = bulletproofs.size();
if (type == RCTTypeBulletproof2 || type == RCTTypeCLSAG)
@ -456,7 +481,7 @@ namespace rct {
ar.begin_array();
// we keep a byte for size of MGs, because we don't know whether this is
// a simple or full rct signature, and it's starting to annoy the hell out of me
size_t mg_elements = (type == RCTTypeSimple || type == RCTTypeBulletproof || type == RCTTypeBulletproof2) ? inputs : 1;
size_t mg_elements = (type == RCTTypeSimple || type == RCTTypeBulletproof || type == RCTTypeBulletproof2 || type == RCTTypeSimpleBulletproof) ? inputs : 1;
PREPARE_CUSTOM_VECTOR_SERIALIZATION(mg_elements, MGs);
if (MGs.size() != mg_elements)
return false;
@ -474,7 +499,7 @@ namespace rct {
for (size_t j = 0; j < mixin + 1; ++j)
{
ar.begin_array();
size_t mg_ss2_elements = ((type == RCTTypeSimple || type == RCTTypeBulletproof || type == RCTTypeBulletproof2) ? 1 : inputs) + 1;
size_t mg_ss2_elements = ((type == RCTTypeSimple || type == RCTTypeBulletproof || type == RCTTypeBulletproof2 || type == RCTTypeSimpleBulletproof) ? 1 : inputs) + 1;
PREPARE_CUSTOM_VECTOR_SERIALIZATION(mg_ss2_elements, MGs[i].ss[j]);
if (MGs[i].ss[j].size() != mg_ss2_elements)
return false;
@ -501,7 +526,7 @@ namespace rct {
}
ar.end_array();
}
if (type == RCTTypeBulletproof || type == RCTTypeBulletproof2 || type == RCTTypeCLSAG)
if (type == RCTTypeBulletproof || type == RCTTypeBulletproof2 || type == RCTTypeSimpleBulletproof || type == RCTTypeCLSAG)
{
ar.tag("pseudoOuts");
ar.begin_array();
@ -532,12 +557,16 @@ namespace rct {
keyV& get_pseudo_outs()
{
return type == RCTTypeBulletproof || type == RCTTypeBulletproof2 || type == RCTTypeCLSAG ? p.pseudoOuts : pseudoOuts;
if (type == RCTTypeBulletproof)
return type == RCTTypeBulletproof || type == RCTTypeBulletproof2 || type == RCTTypeCLSAG ? p.pseudoOuts : pseudoOuts;
return type == RCTTypeSimpleBulletproof ? p.pseudoOuts : pseudoOuts;
}
keyV const& get_pseudo_outs() const
{
return type == RCTTypeBulletproof || type == RCTTypeBulletproof2 || type == RCTTypeCLSAG ? p.pseudoOuts : pseudoOuts;
if (type == RCTTypeBulletproof)
return type == RCTTypeBulletproof || type == RCTTypeBulletproof2 || type == RCTTypeCLSAG ? p.pseudoOuts : pseudoOuts;
return type == RCTTypeSimpleBulletproof ? p.pseudoOuts : pseudoOuts;
}
BEGIN_SERIALIZE_OBJECT()
@ -649,6 +678,8 @@ namespace rct {
bool is_rct_simple(int type);
bool is_rct_bulletproof(int type);
bool is_rct_old_bulletproof(int type);
bool is_rct_new_bulletproof(int type);
bool is_rct_borromean(int type);
static inline const rct::key &pk2rct(const crypto::public_key &pk) { return (const rct::key&)pk; }

@ -60,8 +60,8 @@ using namespace epee;
#undef MONERO_DEFAULT_LOG_CATEGORY
#define MONERO_DEFAULT_LOG_CATEGORY "daemon.rpc"
#define MAX_RESTRICTED_FAKE_OUTS_COUNT 40
#define MAX_RESTRICTED_GLOBAL_FAKE_OUTS_COUNT 5000
#define MAX_RESTRICTED_FAKE_OUTS_COUNT 8478
#define MAX_RESTRICTED_GLOBAL_FAKE_OUTS_COUNT 8478
#define OUTPUT_HISTOGRAM_RECENT_CUTOFF_RESTRICTION (3 * 86400) // 3 days max, the wallet requests 1.8 days
@ -521,9 +521,17 @@ namespace cryptonote
bool core_rpc_server::on_get_blocks(const COMMAND_RPC_GET_BLOCKS_FAST::request& req, COMMAND_RPC_GET_BLOCKS_FAST::response& res, const connection_context *ctx)
{
RPC_TRACKER(get_blocks);
bool r;
if (use_bootstrap_daemon_if_necessary<COMMAND_RPC_GET_BLOCKS_FAST>(invoke_http_mode::BIN, "/getblocks.bin", req, res, r))
return r;
bool use_bootstrap_daemon;
{
boost::shared_lock<boost::shared_mutex> lock(m_bootstrap_daemon_mutex);
use_bootstrap_daemon = m_should_use_bootstrap_daemon;
}
if (use_bootstrap_daemon)
{
bool r;
return use_bootstrap_daemon_if_necessary<COMMAND_RPC_GET_BLOCKS_FAST>(invoke_http_mode::BIN, "/getblocks.bin", req, res, r);
}
CHECK_PAYMENT(req, res, 1);
@ -1123,6 +1131,11 @@ namespace cryptonote
{
RPC_TRACKER(send_raw_tx);
{
bool ok;
use_bootstrap_daemon_if_necessary<COMMAND_RPC_SEND_RAW_TX>(invoke_http_mode::JON, "/sendrawtransaction", req, res, ok);
}
const bool restricted = m_restricted && ctx;
bool skip_validation = false;
@ -1301,15 +1314,15 @@ namespace cryptonote
if (lMiner.is_mining() || lMiner.get_is_background_mining_enabled())
res.address = get_account_address_as_str(nettype(), false, lMiningAdr);
const uint8_t major_version = m_core.get_blockchain_storage().get_current_hard_fork_version();
const unsigned variant = major_version >= 7 ? major_version - 6 : 0;
const unsigned variant = major_version >= 13 ? 6 : major_version >= 11 && major_version <= 12 ? 4 : 2;
switch (variant)
{
case 0: res.pow_algorithm = "Cryptonight"; break;
case 1: res.pow_algorithm = "CNv1 (Cryptonight variant 1)"; break;
case 2: case 3: res.pow_algorithm = "CNv2 (Cryptonight variant 2)"; break;
case 4: case 5: res.pow_algorithm = "CNv4 (Cryptonight variant 4)"; break;
case 6: case 7: case 8: case 9: res.pow_algorithm = "RandomX"; break;
default: res.pow_algorithm = "RandomX"; break; // assumed
case 4: case 5: res.pow_algorithm = "CN/WOW"; break;
case 6: case 7: case 8: case 9: res.pow_algorithm = "RandomWOW"; break;
default: res.pow_algorithm = "RandomWOW"; break; // assumed
}
if (res.is_background_mining_enabled)
{
@ -1661,6 +1674,13 @@ namespace cryptonote
return false;
}
uint64_t next_height;
crypto::rx_seedheights(height, &seed_height, &next_height);
if (next_height != seed_height)
next_seed_hash = m_core.get_block_id_by_height(next_height);
else
next_seed_hash = seed_hash;
if (extra_nonce.empty())
{
reserved_offset = 0;
@ -1773,6 +1793,7 @@ namespace cryptonote
}
res.reserved_offset = reserved_offset;
res.unlock_height = b.miner_tx.unlock_time;
store_difficulty(wdiff, res.difficulty, res.wide_difficulty, res.difficulty_top64);
blobdata block_blob = t_serializable_object_to_blob(b);
blobdata hashing_blob = get_block_hashing_blob(b);
@ -2812,6 +2833,8 @@ namespace cryptonote
RPC_TRACKER(relay_tx);
CHECK_PAYMENT_MIN1(req, res, req.txids.size() * COST_PER_TX_RELAY, false);
const bool restricted = m_restricted && ctx;
bool failed = false;
res.status = "";
for (const auto &str: req.txids)
@ -2825,12 +2848,16 @@ namespace cryptonote
continue;
}
//TODO: The get_pool_transaction could have an optional meta parameter
bool broadcasted = false;
cryptonote::blobdata txblob;
if (m_core.get_pool_transaction(txid, txblob, relay_category::legacy))
if ((broadcasted = m_core.get_pool_transaction(txid, txblob, relay_category::broadcasted)) || (!restricted && m_core.get_pool_transaction(txid, txblob, relay_category::all)))
{
// The settings below always choose i2p/tor if enabled. Otherwise, do fluff iff previously relayed else dandelion++ stem.
NOTIFY_NEW_TRANSACTIONS::request r;
r.txs.push_back(std::move(txblob));
m_core.get_protocol()->relay_transactions(r, boost::uuids::nil_uuid(), epee::net_utils::zone::invalid, relay_method::local);
const auto tx_relay = broadcasted ? relay_method::fluff : relay_method::local;
m_core.get_protocol()->relay_transactions(r, boost::uuids::nil_uuid(), epee::net_utils::zone::invalid, tx_relay);
//TODO: make sure that tx has reached other nodes here, probably wait to receive reflections from other nodes
}
else

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