2019-03-05 21:05:34 +00:00
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# Copyright (c) 2014-2019, The Monero Project
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2015-12-14 04:54:39 +00:00
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#
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2014-09-11 06:25:07 +00:00
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# All rights reserved.
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2015-12-14 04:54:39 +00:00
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#
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2014-09-11 06:25:07 +00:00
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# Redistribution and use in source and binary forms, with or without modification, are
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# permitted provided that the following conditions are met:
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2015-12-14 04:54:39 +00:00
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#
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2014-09-11 06:25:07 +00:00
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# 1. Redistributions of source code must retain the above copyright notice, this list of
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# conditions and the following disclaimer.
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2015-12-14 04:54:39 +00:00
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#
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2014-09-11 06:25:07 +00:00
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# 2. Redistributions in binary form must reproduce the above copyright notice, this list
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# of conditions and the following disclaimer in the documentation and/or other
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# materials provided with the distribution.
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2015-12-14 04:54:39 +00:00
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#
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2014-09-11 06:25:07 +00:00
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# 3. Neither the name of the copyright holder nor the names of its contributors may be
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# used to endorse or promote products derived from this software without specific
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# prior written permission.
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2015-12-14 04:54:39 +00:00
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#
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2014-09-11 06:25:07 +00:00
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# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY
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# EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
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# MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL
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# THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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# SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
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# PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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# INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
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# STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF
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# THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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2015-12-14 04:54:39 +00:00
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#
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2014-09-11 06:25:07 +00:00
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# Parts of this file are originally copyright (c) 2012-2013 The Cryptonote developers
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2014-10-24 19:52:01 +00:00
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if (WIN32 OR STATIC)
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2014-10-23 20:34:42 +00:00
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add_definitions(-DSTATICLIB)
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# miniupnp changed their static define
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add_definitions(-DMINIUPNP_STATICLIB)
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endif ()
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2014-04-09 12:14:35 +00:00
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2016-09-26 14:42:29 +00:00
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function (monero_private_headers group)
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2014-10-21 16:38:00 +00:00
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source_group("${group}\\Private"
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FILES
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${ARGN})
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endfunction ()
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2016-09-26 14:42:29 +00:00
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function (monero_install_headers subdir)
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2014-10-21 16:38:00 +00:00
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install(
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FILES ${ARGN}
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DESTINATION "include/${subdir}"
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COMPONENT development)
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endfunction ()
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2016-07-29 01:19:01 +00:00
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function (enable_stack_trace target)
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if(STACK_TRACE)
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set_property(TARGET ${target}
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2016-08-20 03:38:44 +00:00
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APPEND PROPERTY COMPILE_DEFINITIONS "STACK_TRACE")
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2016-07-29 01:19:01 +00:00
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if (STATIC)
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set_property(TARGET "${target}"
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APPEND PROPERTY LINK_FLAGS "-Wl,--wrap=__cxa_throw")
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endif()
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endif()
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endfunction()
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2016-09-26 14:42:29 +00:00
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function (monero_add_executable name)
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2014-10-21 15:21:28 +00:00
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source_group("${name}"
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FILES
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${ARGN})
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add_executable("${name}"
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${ARGN})
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target_link_libraries("${name}"
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2016-09-17 17:59:29 +00:00
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PRIVATE
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2014-10-21 15:21:28 +00:00
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${EXTRA_LIBRARIES})
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set_property(TARGET "${name}"
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PROPERTY
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FOLDER "prog")
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2014-11-18 22:02:28 +00:00
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set_property(TARGET "${name}"
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PROPERTY
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RUNTIME_OUTPUT_DIRECTORY "${CMAKE_BINARY_DIR}/bin")
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2016-07-29 01:19:01 +00:00
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enable_stack_trace("${name}")
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2014-10-21 15:21:28 +00:00
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endfunction ()
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2016-09-26 14:42:29 +00:00
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function (monero_add_library name)
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2017-10-21 02:07:34 +00:00
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monero_add_library_with_deps(NAME "${name}" SOURCES ${ARGN})
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endfunction()
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function (monero_add_library_with_deps)
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cmake_parse_arguments(MONERO_ADD_LIBRARY "" "NAME" "DEPENDS;SOURCES" ${ARGN})
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source_group("${MONERO_ADD_LIBRARY_NAME}" FILES ${MONERO_ADD_LIBRARY_SOURCES})
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2014-10-21 15:24:14 +00:00
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2016-08-29 14:58:52 +00:00
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# Define a ("virtual") object library and an actual library that links those
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# objects together. The virtual libraries can be arbitrarily combined to link
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# any subset of objects into one library archive. This is used for releasing
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# libwallet, which combines multiple components.
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2017-10-21 02:07:34 +00:00
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set(objlib obj_${MONERO_ADD_LIBRARY_NAME})
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add_library(${objlib} OBJECT ${MONERO_ADD_LIBRARY_SOURCES})
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add_library("${MONERO_ADD_LIBRARY_NAME}" $<TARGET_OBJECTS:${objlib}>)
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if (MONERO_ADD_LIBRARY_DEPENDS)
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add_dependencies(${objlib} ${MONERO_ADD_LIBRARY_DEPENDS})
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endif()
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set_property(TARGET "${MONERO_ADD_LIBRARY_NAME}" PROPERTY FOLDER "libs")
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2016-09-03 21:39:45 +00:00
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target_compile_definitions(${objlib}
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2017-10-21 02:07:34 +00:00
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PRIVATE $<TARGET_PROPERTY:${MONERO_ADD_LIBRARY_NAME},INTERFACE_COMPILE_DEFINITIONS>)
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2014-10-21 15:24:14 +00:00
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endfunction ()
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2017-10-21 02:07:34 +00:00
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include(Version)
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monero_add_library(version SOURCES ${CMAKE_BINARY_DIR}/version.cpp DEPENDS genversion)
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2017-09-13 23:28:23 +00:00
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2014-10-21 15:13:59 +00:00
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add_subdirectory(common)
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add_subdirectory(crypto)
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2016-05-13 19:45:20 +00:00
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add_subdirectory(ringct)
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2017-09-10 16:35:59 +00:00
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add_subdirectory(checkpoints)
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2017-01-26 15:07:23 +00:00
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add_subdirectory(cryptonote_basic)
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2014-10-21 15:13:59 +00:00
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add_subdirectory(cryptonote_core)
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2018-09-27 03:54:27 +00:00
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add_subdirectory(lmdb)
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2017-09-26 22:16:25 +00:00
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add_subdirectory(multisig)
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2018-12-16 17:57:44 +00:00
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add_subdirectory(net)
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2019-01-21 12:18:39 +00:00
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add_subdirectory(hardforks)
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2017-04-02 10:19:25 +00:00
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if(NOT IOS)
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add_subdirectory(blockchain_db)
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endif()
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2014-10-21 15:13:59 +00:00
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add_subdirectory(mnemonics)
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2017-04-02 10:19:25 +00:00
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if(NOT IOS)
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add_subdirectory(rpc)
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2017-09-05 16:20:27 +00:00
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add_subdirectory(serialization)
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2017-04-02 10:19:25 +00:00
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endif()
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2014-10-21 15:13:59 +00:00
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add_subdirectory(wallet)
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2017-04-02 10:19:25 +00:00
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if(NOT IOS)
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add_subdirectory(p2p)
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endif()
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2015-01-05 19:30:17 +00:00
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add_subdirectory(cryptonote_protocol)
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2017-04-02 10:19:25 +00:00
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if(NOT IOS)
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add_subdirectory(simplewallet)
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2017-06-30 16:36:31 +00:00
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add_subdirectory(gen_multisig)
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2019-04-25 16:40:02 +00:00
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add_subdirectory(gen_ssl_cert)
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2017-04-02 10:19:25 +00:00
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add_subdirectory(daemonizer)
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add_subdirectory(daemon)
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add_subdirectory(blockchain_utilities)
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2017-08-03 19:36:21 +00:00
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endif()
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2019-04-16 12:46:01 +00:00
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if(BUILD_DEBUG_UTILITIES)
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2017-08-03 15:18:24 +00:00
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add_subdirectory(debug_utilities)
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2017-04-02 10:19:25 +00:00
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endif()
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** CHANGES ARE EXPERIMENTAL (FOR TESTING ONLY)
Bockchain:
1. Optim: Multi-thread long-hash computation when encountering groups of blocks.
2. Optim: Cache verified txs and return result from cache instead of re-checking whenever possible.
3. Optim: Preload output-keys when encoutering groups of blocks. Sort by amount and global-index before bulk querying database and multi-thread when possible.
4. Optim: Disable double spend check on block verification, double spend is already detected when trying to add blocks.
5. Optim: Multi-thread signature computation whenever possible.
6. Patch: Disable locking (recursive mutex) on called functions from check_tx_inputs which causes slowdowns (only seems to happen on ubuntu/VMs??? Reason: TBD)
7. Optim: Removed looped full-tx hash computation when retrieving transactions from pool (???).
8. Optim: Cache difficulty/timestamps (735 blocks) for next-difficulty calculations so that only 2 db reads per new block is needed when a new block arrives (instead of 1470 reads).
Berkeley-DB:
1. Fix: 32-bit data errors causing wrong output global indices and failure to send blocks to peers (etc).
2. Fix: Unable to pop blocks on reorganize due to transaction errors.
3. Patch: Large number of transaction aborts when running multi-threaded bulk queries.
4. Patch: Insufficient locks error when running full sync.
5. Patch: Incorrect db stats when returning from an immediate exit from "pop block" operation.
6. Optim: Add bulk queries to get output global indices.
7. Optim: Modified output_keys table to store public_key+unlock_time+height for single transaction lookup (vs 3)
8. Optim: Used output_keys table retrieve public_keys instead of going through output_amounts->output_txs+output_indices->txs->output:public_key
9. Optim: Added thread-safe buffers used when multi-threading bulk queries.
10. Optim: Added support for nosync/write_nosync options for improved performance (*see --db-sync-mode option for details)
11. Mod: Added checkpoint thread and auto-remove-logs option.
12. *Now usable on 32-bit systems like RPI2.
LMDB:
1. Optim: Added custom comparison for 256-bit key tables (minor speed-up, TBD: get actual effect)
2. Optim: Modified output_keys table to store public_key+unlock_time+height for single transaction lookup (vs 3)
3. Optim: Used output_keys table retrieve public_keys instead of going through output_amounts->output_txs+output_indices->txs->output:public_key
4. Optim: Added support for sync/writemap options for improved performance (*see --db-sync-mode option for details)
5. Mod: Auto resize to +1GB instead of multiplier x1.5
ETC:
1. Minor optimizations for slow-hash for ARM (RPI2). Incomplete.
2. Fix: 32-bit saturation bug when computing next difficulty on large blocks.
[PENDING ISSUES]
1. Berkely db has a very slow "pop-block" operation. This is very noticeable on the RPI2 as it sometimes takes > 10 MINUTES to pop a block during reorganization.
This does not happen very often however, most reorgs seem to take a few seconds but it possibly depends on the number of outputs present. TBD.
2. Berkeley db, possible bug "unable to allocate memory". TBD.
[NEW OPTIONS] (*Currently all enabled for testing purposes)
1. --fast-block-sync arg=[0:1] (default: 1)
a. 0 = Compute long hash per block (may take a while depending on CPU)
b. 1 = Skip long-hash and verify blocks based on embedded known good block hashes (faster, minimal CPU dependence)
2. --db-sync-mode arg=[[safe|fast|fastest]:[sync|async]:[nblocks_per_sync]] (default: fastest:async:1000)
a. safe = fdatasync/fsync (or equivalent) per stored block. Very slow, but safest option to protect against power-out/crash conditions.
b. fast/fastest = Enables asynchronous fdatasync/fsync (or equivalent). Useful for battery operated devices or STABLE systems with UPS and/or systems with battery backed write cache/solid state cache.
Fast - Write meta-data but defer data flush.
Fastest - Defer meta-data and data flush.
Sync - Flush data after nblocks_per_sync and wait.
Async - Flush data after nblocks_per_sync but do not wait for the operation to finish.
3. --prep-blocks-threads arg=[n] (default: 4 or system max threads, whichever is lower)
Max number of threads to use when computing long-hash in groups.
4. --show-time-stats arg=[0:1] (default: 1)
Show benchmark related time stats.
5. --db-auto-remove-logs arg=[0:1] (default: 1)
For berkeley-db only. Auto remove logs if enabled.
**Note: lmdb and berkeley-db have changes to the tables and are not compatible with official git head version.
At the moment, you need a full resync to use this optimized version.
[PERFORMANCE COMPARISON]
**Some figures are approximations only.
Using a baseline machine of an i7-2600K+SSD+(with full pow computation):
1. The optimized lmdb/blockhain core can process blocks up to 585K for ~1.25 hours + download time, so it usually takes 2.5 hours to sync the full chain.
2. The current head with memory can process blocks up to 585K for ~4.2 hours + download time, so it usually takes 5.5 hours to sync the full chain.
3. The current head with lmdb can process blocks up to 585K for ~32 hours + download time and usually takes 36 hours to sync the full chain.
Averate procesing times (with full pow computation):
lmdb-optimized:
1. tx_ave = 2.5 ms / tx
2. block_ave = 5.87 ms / block
memory-official-repo:
1. tx_ave = 8.85 ms / tx
2. block_ave = 19.68 ms / block
lmdb-official-repo (0f4a036437fd41a5498ee5e74e2422ea6177aa3e)
1. tx_ave = 47.8 ms / tx
2. block_ave = 64.2 ms / block
**Note: The following data denotes processing times only (does not include p2p download time)
lmdb-optimized processing times (with full pow computation):
1. Desktop, Quad-core / 8-threads 2600k (8Mb) - 1.25 hours processing time (--db-sync-mode=fastest:async:1000).
2. Laptop, Dual-core / 4-threads U4200 (3Mb) - 4.90 hours processing time (--db-sync-mode=fastest:async:1000).
3. Embedded, Quad-core / 4-threads Z3735F (2x1Mb) - 12.0 hours processing time (--db-sync-mode=fastest:async:1000).
lmdb-optimized processing times (with per-block-checkpoint)
1. Desktop, Quad-core / 8-threads 2600k (8Mb) - 10 minutes processing time (--db-sync-mode=fastest:async:1000).
berkeley-db optimized processing times (with full pow computation)
1. Desktop, Quad-core / 8-threads 2600k (8Mb) - 1.8 hours processing time (--db-sync-mode=fastest:async:1000).
2. RPI2. Improved from estimated 3 months(???) into 2.5 days (*Need 2AMP supply + Clock:1Ghz + [usb+ssd] to achieve this speed) (--db-sync-mode=fastest:async:1000).
berkeley-db optimized processing times (with per-block-checkpoint)
1. RPI2. 12-15 hours (*Need 2AMP supply + Clock:1Ghz + [usb+ssd] to achieve this speed) (--db-sync-mode=fastest:async:1000).
2015-07-10 20:09:32 +00:00
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if(PER_BLOCK_CHECKPOINT)
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2015-12-14 04:54:39 +00:00
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add_subdirectory(blocks)
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** CHANGES ARE EXPERIMENTAL (FOR TESTING ONLY)
Bockchain:
1. Optim: Multi-thread long-hash computation when encountering groups of blocks.
2. Optim: Cache verified txs and return result from cache instead of re-checking whenever possible.
3. Optim: Preload output-keys when encoutering groups of blocks. Sort by amount and global-index before bulk querying database and multi-thread when possible.
4. Optim: Disable double spend check on block verification, double spend is already detected when trying to add blocks.
5. Optim: Multi-thread signature computation whenever possible.
6. Patch: Disable locking (recursive mutex) on called functions from check_tx_inputs which causes slowdowns (only seems to happen on ubuntu/VMs??? Reason: TBD)
7. Optim: Removed looped full-tx hash computation when retrieving transactions from pool (???).
8. Optim: Cache difficulty/timestamps (735 blocks) for next-difficulty calculations so that only 2 db reads per new block is needed when a new block arrives (instead of 1470 reads).
Berkeley-DB:
1. Fix: 32-bit data errors causing wrong output global indices and failure to send blocks to peers (etc).
2. Fix: Unable to pop blocks on reorganize due to transaction errors.
3. Patch: Large number of transaction aborts when running multi-threaded bulk queries.
4. Patch: Insufficient locks error when running full sync.
5. Patch: Incorrect db stats when returning from an immediate exit from "pop block" operation.
6. Optim: Add bulk queries to get output global indices.
7. Optim: Modified output_keys table to store public_key+unlock_time+height for single transaction lookup (vs 3)
8. Optim: Used output_keys table retrieve public_keys instead of going through output_amounts->output_txs+output_indices->txs->output:public_key
9. Optim: Added thread-safe buffers used when multi-threading bulk queries.
10. Optim: Added support for nosync/write_nosync options for improved performance (*see --db-sync-mode option for details)
11. Mod: Added checkpoint thread and auto-remove-logs option.
12. *Now usable on 32-bit systems like RPI2.
LMDB:
1. Optim: Added custom comparison for 256-bit key tables (minor speed-up, TBD: get actual effect)
2. Optim: Modified output_keys table to store public_key+unlock_time+height for single transaction lookup (vs 3)
3. Optim: Used output_keys table retrieve public_keys instead of going through output_amounts->output_txs+output_indices->txs->output:public_key
4. Optim: Added support for sync/writemap options for improved performance (*see --db-sync-mode option for details)
5. Mod: Auto resize to +1GB instead of multiplier x1.5
ETC:
1. Minor optimizations for slow-hash for ARM (RPI2). Incomplete.
2. Fix: 32-bit saturation bug when computing next difficulty on large blocks.
[PENDING ISSUES]
1. Berkely db has a very slow "pop-block" operation. This is very noticeable on the RPI2 as it sometimes takes > 10 MINUTES to pop a block during reorganization.
This does not happen very often however, most reorgs seem to take a few seconds but it possibly depends on the number of outputs present. TBD.
2. Berkeley db, possible bug "unable to allocate memory". TBD.
[NEW OPTIONS] (*Currently all enabled for testing purposes)
1. --fast-block-sync arg=[0:1] (default: 1)
a. 0 = Compute long hash per block (may take a while depending on CPU)
b. 1 = Skip long-hash and verify blocks based on embedded known good block hashes (faster, minimal CPU dependence)
2. --db-sync-mode arg=[[safe|fast|fastest]:[sync|async]:[nblocks_per_sync]] (default: fastest:async:1000)
a. safe = fdatasync/fsync (or equivalent) per stored block. Very slow, but safest option to protect against power-out/crash conditions.
b. fast/fastest = Enables asynchronous fdatasync/fsync (or equivalent). Useful for battery operated devices or STABLE systems with UPS and/or systems with battery backed write cache/solid state cache.
Fast - Write meta-data but defer data flush.
Fastest - Defer meta-data and data flush.
Sync - Flush data after nblocks_per_sync and wait.
Async - Flush data after nblocks_per_sync but do not wait for the operation to finish.
3. --prep-blocks-threads arg=[n] (default: 4 or system max threads, whichever is lower)
Max number of threads to use when computing long-hash in groups.
4. --show-time-stats arg=[0:1] (default: 1)
Show benchmark related time stats.
5. --db-auto-remove-logs arg=[0:1] (default: 1)
For berkeley-db only. Auto remove logs if enabled.
**Note: lmdb and berkeley-db have changes to the tables and are not compatible with official git head version.
At the moment, you need a full resync to use this optimized version.
[PERFORMANCE COMPARISON]
**Some figures are approximations only.
Using a baseline machine of an i7-2600K+SSD+(with full pow computation):
1. The optimized lmdb/blockhain core can process blocks up to 585K for ~1.25 hours + download time, so it usually takes 2.5 hours to sync the full chain.
2. The current head with memory can process blocks up to 585K for ~4.2 hours + download time, so it usually takes 5.5 hours to sync the full chain.
3. The current head with lmdb can process blocks up to 585K for ~32 hours + download time and usually takes 36 hours to sync the full chain.
Averate procesing times (with full pow computation):
lmdb-optimized:
1. tx_ave = 2.5 ms / tx
2. block_ave = 5.87 ms / block
memory-official-repo:
1. tx_ave = 8.85 ms / tx
2. block_ave = 19.68 ms / block
lmdb-official-repo (0f4a036437fd41a5498ee5e74e2422ea6177aa3e)
1. tx_ave = 47.8 ms / tx
2. block_ave = 64.2 ms / block
**Note: The following data denotes processing times only (does not include p2p download time)
lmdb-optimized processing times (with full pow computation):
1. Desktop, Quad-core / 8-threads 2600k (8Mb) - 1.25 hours processing time (--db-sync-mode=fastest:async:1000).
2. Laptop, Dual-core / 4-threads U4200 (3Mb) - 4.90 hours processing time (--db-sync-mode=fastest:async:1000).
3. Embedded, Quad-core / 4-threads Z3735F (2x1Mb) - 12.0 hours processing time (--db-sync-mode=fastest:async:1000).
lmdb-optimized processing times (with per-block-checkpoint)
1. Desktop, Quad-core / 8-threads 2600k (8Mb) - 10 minutes processing time (--db-sync-mode=fastest:async:1000).
berkeley-db optimized processing times (with full pow computation)
1. Desktop, Quad-core / 8-threads 2600k (8Mb) - 1.8 hours processing time (--db-sync-mode=fastest:async:1000).
2. RPI2. Improved from estimated 3 months(???) into 2.5 days (*Need 2AMP supply + Clock:1Ghz + [usb+ssd] to achieve this speed) (--db-sync-mode=fastest:async:1000).
berkeley-db optimized processing times (with per-block-checkpoint)
1. RPI2. 12-15 hours (*Need 2AMP supply + Clock:1Ghz + [usb+ssd] to achieve this speed) (--db-sync-mode=fastest:async:1000).
2015-07-10 20:09:32 +00:00
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endif()
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2018-02-20 16:01:27 +00:00
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add_subdirectory(device)
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2018-08-23 21:50:53 +00:00
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add_subdirectory(device_trezor)
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