git-svn-id: svn://db.shs.com.ru/libs@586 a8b55f48-bf90-11e4-a774-851b48703e85

This commit is contained in:
2019-09-02 14:08:38 +00:00
parent f862381b68
commit 3d06d2095e
929 changed files with 66799 additions and 0 deletions

151
test/CMakeLists.txt Normal file
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cmake_minimum_required(VERSION 2.6)
if (POLICY CMP0020)
cmake_policy(SET CMP0020 NEW)
endif()
if (POLICY CMP0011)
cmake_policy(SET CMP0011 NEW)
endif()
#if (POLICY CMP0017)
#cmake_policy(SET CMP0017 OLD)
#endif()
if (POLICY CMP0053)
cmake_policy(SET CMP0053 NEW)
endif()
project(libs)
include(SDKMacros.cmake)
set(LIBPROJECT 1)
set(CMAKE_MODULE_PATH "${CMAKE_CURRENT_SOURCE_DIR}" "${CMAKE_CURRENT_SOURCE_DIR}/pip/")
include_directories(${CMAKE_CURRENT_BINARY_DIR}/pip)
if(APPLE)
include_directories(/usr/local/include)
link_directories(/usr/local/lib)
endif()
if(MINGW)
find_package(MinGW REQUIRED)
endif()
if (DEFINED ANDROID_PLATFORM)
include_directories(${ANDROID_SYSTEM_LIBRARY_PATH}/usr/include)
#set(TARGET_INSTALL_PATH "${ANDROID_SYSTEM_LIBRARY_PATH}/usr/")
#set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -I${ANDROID_NDK}/sysroot/usr/include")
#message("${ANDROID_SYSTEM_LIBRARY_PATH}/usr/include")
#message("${ANDROID_NDK}/sysroot/usr/include")
endif()
set(INSTALL_PREFIX "")
if(CMAKE_CROSSCOMPILING)
if (DEFINED ANDROID_PLATFORM)
set(INSTALL_PREFIX "${CMAKE_FIND_ROOT_PATH}/")
else()
set(INSTALL_PREFIX "${CMAKE_STAGING_PREFIX}")
endif()
endif()
option(LIB "System install" 1)
option(DEBUG "Build with -g3" 0)
option(QGLVIEW "Build QGLview library and utils" 1)
option(UTILS "Build various utils" 1)
set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -O3 -Wall")
set(CMAKE_C_FLAGS "${CMAKE_C_FLAGS} -O3 -Wall")
#set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -march=native")
#set(CMAKE_C_FLAGS "${CMAKE_C_FLAGS} -march=native")
if (DEBUG)
set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -g3")
set(CMAKE_C_FLAGS "${CMAKE_C_FLAGS} -g3")
endif ()
include(SDKMacros.cmake)
set(PIP_LIBRARY pip)
set(PIP_FOLDERS "." "core" "containers" "thread" "system" "io_devices" "io_utils" "console" "math" "code" "geo" "resources" "opencl" "crypt" "introspection")
set(PIP_INCLUDES)
if(LIB)
if(WIN32)
if(MINGW)
set(CMAKE_INSTALL_PREFIX ${MINGW_DIR})
endif()
else()
if(APPLE)
set(CMAKE_INSTALL_PREFIX ${INSTALL_PREFIX}/usr/local)
else()
if (DEFINED ANDROID_PLATFORM)
set(CMAKE_INSTALL_PREFIX ${ANDROID_SYSTEM_LIBRARY_PATH}/usr)
else()
if(CMAKE_CROSSCOMPILING)
set(CMAKE_INSTALL_PREFIX ${CMAKE_STAGING_PREFIX})
else()
set(CMAKE_INSTALL_PREFIX ${INSTALL_PREFIX}/usr)
endif()
endif()
endif()
endif()
message(STATUS "Install ${PROJECT_NAME} to system \"${CMAKE_INSTALL_PREFIX}\"")
else()
message(STATUS "Install ${PROJECT_NAME} to local \"bin\"")
endif()
foreach(F ${PIP_FOLDERS})
list(APPEND PIP_INCLUDES "${CMAKE_CURRENT_SOURCE_DIR}/pip/src_main/${F}")
endforeach(F)
#message(${PIP_INCLUDES})
if(CMAKE_CROSSCOMPILING OR (DEFINED ANDROID_PLATFORM))
set(PIP_CMG "pip_cmg")
set(PIP_RC "pip_rc")
else()
set(PIP_CMG "${CMAKE_CURRENT_BINARY_DIR}/pip/utils/code_model_generator/pip_cmg")
set(PIP_RC "${CMAKE_CURRENT_BINARY_DIR}/pip/utils/resources_compiler/pip_rc")
endif()
if(WIN32)
set(PIP_DLL_DIR "${CMAKE_CURRENT_BINARY_DIR}/pip")
endif()
set(QAD_DIR ${CMAKE_CURRENT_SOURCE_DIR}/qad)
include(qad/QtWraps.cmake)
find_qt(Core QUIET)
set(QtVersions)
set(SomeQtFound 0)
foreach(_v ${_QT_VERSIONS_})
option(Qt${_v} "Build for Qt${_v}" 1)
if (Qt${_v})
#message("Qt${_v} -> ${LOCAL_FOUND${_v}}")
if (LOCAL_FOUND${_v})
list(APPEND QtVersions Qt${_v})
set(SomeQtFound 1)
endif()
endif()
endforeach()
if(UTILS)
message(STATUS "Building with utils")
else()
message(STATUS "Building only libraries")
endif()
add_subdirectory(pip)
set(_DIRS)
if (SomeQtFound)
message(STATUS "Building Qt-derived targets for ${QtVersions}")
add_subdirectory(qad)
set(_DIRS piqt piqt_utils qcd_utils)
if (QGLVIEW)
list(APPEND _DIRS qglview)
endif()
foreach(_D ${_DIRS})
list(APPEND QT_MULTILIB_LIST ${_D})
endforeach(_D)
else()
message(STATUS "None of Qt found, skip Qt-derived targets")
endif()
list(INSERT _DIRS 0 cd_utils)
foreach(_D ${_DIRS})
include_directories(${_D})
add_subdirectory(${_D})
endforeach(_D)
if(WIN32)
foreach(PIP_LT ${PIP_LIBS_TARGETS})
if (SomeQtFound)
qt_install(FILES "${CMAKE_CURRENT_BINARY_DIR}/pip/lib${PIP_LT}.dll" DESTINATION QtBin)
endif()
endforeach()
set(CMAKES "FindMinGW.cmake")
install(FILES ${CMAKES} DESTINATION ${CMAKE_ROOT}/Modules)
endif()

25
test/FindMinGW.cmake Normal file
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if(${MINGW})
if(NOT DEFINED MINGW_DIR)
get_filename_component(MINGW_BIN ${CMAKE_CXX_COMPILER} PATH)
get_filename_component(MINGW_DIR ${MINGW_BIN} PATH)
find_path(MINGW_INCLUDE
windows.h
PATHS
ENV INCLUDE
${MINGW_DIR}
${MINGW_DIR}/i686-w64-mingw32
${MINGW_DIR}/x86_64-w64-mingw32
PATH_SUFFIXES
include)
#message(STATUS "Find MinGW = ${MINGW_INCLUDE}")
#if(NOT ${MINGW_INCLUDE}) MINGW_INCLUDE = ${MINGW_DIR}/include
find_library(MINGW_LIB m HINTS ${MINGW_BIN}/../lib ${MINGW_INCLUDE}/../lib)
get_filename_component(MINGW_LIB ${MINGW_LIB} PATH)
if (NOT _MGW_MSG)
set(_MGW_MSG 1 CACHE BOOL "msg_mingw" FORCE)
message(STATUS "Found MinGW binary path = ${MINGW_BIN}")
message(STATUS "Found MinGW include path = ${MINGW_INCLUDE}")
message(STATUS "Found MinGW library path = ${MINGW_LIB}")
endif()
endif()
endif(${MINGW})

18
test/README.txt Normal file
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Build steps for i686 architecture:
1. unzip mingw.7z to C:\mingw
2. unzip qt.7z to C:\qt
3. download and install cmake from https://cmake.org/download/
2. Prepare environment
- set prefix for mingw e.g.: for C:\mingw\7_1_x32\
set SDK_MINGW_DIR=C:\mingw\7_1_x
- set prefix for Qt5 e.g.: for C:\qt\qt5120_win32\
set SDK_QT5_DIR=C:\qt\qt5120_win
- set SDK_CMAKE_DIR=C:\cmake
4. run make_libs32.bat
Build steps for amd64 architecture:
-- follow previos steps, but replace '32' to '64'
Build steps for both architectures:
-- follow previos steps, but on '4' state run make_libs_all.bat

25
test/SDKMacros.cmake Normal file
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macro(sdk_install _DIR _TARGET _H_FILES _QM_FILES)
if(LIB)
if(WIN32)
if(NOT "x${_H_FILES}" STREQUAL "x")
#message("HFILES ${_H_FILES}")
install(FILES ${_H_FILES} DESTINATION ${MINGW_INCLUDE}/${_DIR})
endif()
qt_install(TARGETS ${_TARGET} DESTINATION ${MINGW_LIB})
qt_install(TARGETS ${_TARGET} DESTINATION ${MINGW_BIN})
qt_install(TARGETS ${_TARGET} DESTINATION QtBin)
qt_install(FILES ${_QM_FILES} DESTINATION QtLang)
else()
if (NOT "x${_H_FILES}" STREQUAL "x")
install(FILES ${_H_FILES} DESTINATION ${CMAKE_INSTALL_PREFIX}/include/${_DIR})
endif()
qt_install(TARGETS ${_TARGET} DESTINATION ${CMAKE_INSTALL_PREFIX}/lib)
qt_install(FILES ${_QM_FILES} DESTINATION QtLang)
endif()
#message(STATUS "Install ${_TARGET} to system \"${CMAKE_INSTALL_PREFIX}\"")
else()
qt_install(TARGETS ${_TARGET} DESTINATION bin)
#message(STATUS "Install ${_TARGET} to local \"bin\"")
endif()
endmacro()

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project(cd_utils)
cmake_minimum_required(VERSION 2.6)
if (POLICY CMP0017)
cmake_policy(SET CMP0017 NEW)
endif()
if (NOT LIBPROJECT)
find_package(PIP REQUIRED)
option(LIB "System install" 1)
option(DEBUG "Build with -g3" 0)
set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -O3 -Wall")
if (DEBUG)
set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -g3")
endif()
endif()
if (MINGW)
find_package(MinGW REQUIRED)
endif()
include_directories(${CMAKE_CURRENT_BINARY_DIR} ${CMAKE_CURRENT_SOURCE_DIR} ${PIP_INCLUDES})
#file(GLOB HDRS_UTILS "*.h")
#file(GLOB CPPS_UTILS "*.cpp")
file(GLOB CPPS_UTILS "cdutils_*.cpp")
file(GLOB HDRS_UTILS "cdutils_*.h")
if (DEFINED ENV{QNX_HOST})
add_library(${PROJECT_NAME} STATIC ${CPPS_UTILS} ${HDRS_UTILS})
else()
add_library(${PROJECT_NAME} SHARED ${CPPS_UTILS} ${HDRS_UTILS})
endif()
target_link_libraries(${PROJECT_NAME} ${PIP_LIBRARY})
add_executable(cdutilstest "cdutilstest.cpp" "cdtest.h")
target_link_libraries(cdutilstest ${PIP_LIBRARY} ${PROJECT_NAME})
message(STATUS "Building ${PROJECT_NAME}")
if(NOT LIBPROJECT)
if(LIB)
if(WIN32)
if(MINGW)
set(CMAKE_INSTALL_PREFIX ${MINGW_DIR})
endif()
else()
if(APPLE)
set(CMAKE_INSTALL_PREFIX ${INSTALL_PREFIX}/usr/local)
else()
if (DEFINED ANDROID_PLATFORM)
set(CMAKE_INSTALL_PREFIX ${ANDROID_SYSTEM_LIBRARY_PATH}/usr)
else()
if(CMAKE_CROSSCOMPILING)
set(CMAKE_INSTALL_PREFIX ${CMAKE_STAGING_PREFIX})
else()
set(CMAKE_INSTALL_PREFIX ${INSTALL_PREFIX}/usr)
endif()
endif()
endif()
endif()
message(STATUS "Install ${PROJECT_NAME} to system \"${CMAKE_INSTALL_PREFIX}\"")
else()
message(STATUS "Install ${PROJECT_NAME} to local \"bin\"")
endif()
endif()
if(LIB)
if(WIN32)
install(FILES ${HDRS_UTILS} DESTINATION ${MINGW_INCLUDE})
install(TARGETS ${PROJECT_NAME} DESTINATION ${MINGW_LIB})
install(TARGETS ${PROJECT_NAME} DESTINATION ${MINGW_BIN})
else()
install(FILES ${HDRS_UTILS} DESTINATION ${CMAKE_INSTALL_PREFIX}/include)
install(TARGETS ${PROJECT_NAME} DESTINATION ${CMAKE_INSTALL_PREFIX}/lib)
endif()
#message(STATUS "Install ${PROJECT_NAME} to system \"${CMAKE_INSTALL_PREFIX}\"")
else()
install(TARGETS ${PROJECT_NAME} DESTINATION bin)
#message(STATUS "Install ${PROJECT_NAME} to local \"bin\"")
endif()

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test/cd_utils/cdtest.h Normal file
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#ifndef CDTEST_H
#define CDTEST_H
enum KDescription {
First, //f Первый
Second, //b Второй
};
#endif // CDTEST_H

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#include "cdutils_c.h"
#include "cdutils_core.h"
using namespace CDUtils;
CInterface C;
CInterface::CInterface(): Interface(CDType::cdC) {
}
void CInterface::sendCommand(const CDType & c) {
core->sendCommand(c);
}
void CInterface::connect(const CDType & c, PIObject * o, Handler eh) {
core->registerCHandler(c, o, eh);
}
void CInterface::autoConnect(PIObject * o, const PIString & prefix) {
if (!o) return;
uint cid = o->classNameID();
if (!PIObject::__meta_data().contains(cid)) return;
PIMap<PIString, Handler> eh_map;
PIObject::__MetaData & md(PIObject::__meta_data()[cid]);
PIMap<const void * , __MetaFunc>::const_iterator it;
for (it = md.eh_func.constBegin(); it != md.eh_func.constEnd(); ++it) {
eh_map[it.value().func_name] = (Handler)it.value().addr;
//piCout << "func" << it.value().func_name;
}
PIVector<CDType * > cl = C.root().children();
piForeachC (CDType * c, cl) {
PIString cp = prefix + c->pathString().join("_");
if (cp.isEmpty()) continue;
if (!eh_map.contains(cp)) continue;
connect(*c, o, eh_map[cp]);
}
}

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test/cd_utils/cdutils_c.h Normal file
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#ifndef CDUTILS_C_H
#define CDUTILS_C_H
#include "cdutils_interface.h"
namespace CDUtils {
class CInterface: public Interface
{
PIOBJECT_SUBCLASS(CInterface, Interface)
public:
CInterface();
void sendCommand(const CDType & c);
void connect(const CDType & c, PIObject * o, Handler eh);
void autoConnect(PIObject * o, const PIString & prefix = PIStringAscii("c_"));
};
}
extern CDUtils::CInterface C;
#endif // CDUTILS_C_H

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#include "cdutils_core.h"
#include "cdutils_parser.h"
#include "piconfig.h"
#include "piiobytearray.h"
#include "piiostring.h"
#include "pifile.h"
using namespace CDUtils;
const char CDCore::app_config[] =
"include = cd_ip.conf\n\
port_rec = 2\n\
port_send = 1\n\
[connection]\n\
device.cd = peer://cd_app:cd_pult #s\n\
[]\n\
connectionmodel = 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\n\
";
const char CDCore::pult_config[] =
"include = cd_ip.conf\n\
port_rec = 1\n\
port_send = 2\n\
[connection]\n\
device.cd = peer://cd_pult:cd_app #s\n\
[]\n\
connectionmodel = 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\n\
";
int __Core_Initializer__::count_(0);
CDCore * __Core_Initializer__::__instance__(0);
const uchar header_direct = 0x80;
const uchar header_transfer = 0x81;
__Core_Initializer__::__Core_Initializer__() {
count_++;
if (count_ > 1) return;
__instance__ = new CDCore();
}
__Core_Initializer__::~__Core_Initializer__() {
count_--;
if (count_ < 0) {
count_ = 0;
return;
}
if (count_ > 0) return;
if (__instance__) {
delete __instance__;
__instance__ = 0;
}
}
CDCore::CDCore() {
setName("CDCore");
x_timer.setName("__S__.CDCore.x_timer");
datatr.setPacketSize(960);
CONNECTU(&connection, dataReceivedEvent, this, dataReceived);
CONNECTU(PICout::Notifier::object(), finished, this, piCoutFinished);
/*PIString s(app_config);
connection.configureFromString(&s);
connection.start();*/
need_rebuild_x = x_pult_side = false;
k_.cd_type_ = CDType::cdK;
x_.cd_type_ = CDType::cdX;
c_.cd_type_ = CDType::cdC;
m_.cd_type_ = CDType::cdM;
initRoot(&k_);
initRoot(&x_);
initRoot(&c_);
initRoot(&m_);
CONNECTU(&sendt, started, this, sendThread)
CONNECTU(&datatr, sendRequest, this, dtSendRequest)
CONNECTU(&datatr, receiveFinished, this, dtReceiveFinished)
CONNECTU(&x_timer, tickEvent, this, xTimerTick)
/*k_[1] = KType(1, "123", "120+3", "comment");
k_[2] = KType(2, "1", "2", "comm");
k_[4] = KType(4, "-0.6", "-6/10", "mment");
k_.section(10)[5] = KType(5, "8", "2*2*2", "88");
k_.section(10).section(50)[100] = KType(100, "8", "2*2*2", "88");
k_.section(11)[3] = KType(3, "1", "1", "88");
k_.section(11)[4] = KType(4, "0", "0", "88");
k_.section(11)[6] = KType(6, "0", "0", "88");*/
//piCout << s;
}
CDCore::~CDCore() {
x_timer.stop(true);
datatr.stop();
sendt.stop();
sendt.waitForFinish(10);
connection.stop();
}
void CDCore::cd_write(CDSection * cd, PIIODevice * d) {
cd->write(d, PIString());
}
void CDCore::cd_read(CDSection * cd, PIIODevice * d) {
PIConfig conf(d, PIIODevice::ReadOnly);
cd->read(&(conf.rootEntry()));
if (cd->cd_type_ == CDType::cdX)
x_selected = cd->collectX();
initRoot(cd);
raiseChangedGlobal(cd->cd_type_);
/*PIVector<PIIODevice * > ds = connection.allDevices();
piForeach(PIIODevice * d, ds) {
if (d)
piCoutObj << d->constructFullPath() << d->isOpened();
}*/
}
void CDCore::cd_parse(CDSection * cd, PIIODevice * d) {
*cd = CDParser::parse(d, cd->cd_type_);
initRoot(cd);
raiseChangedGlobal(cd->cd_type_);
}
void CDCore::cd_update(CDSection * cd, PIIODevice * d, UpdateModeFlags mode) {
CDSection ucd = *cd;
cd_parse(cd, d);
/*bool kn = true;
if (!ucd.isEmpty())
if (!ucd.isSameStructure(k_)) {
piCout << "ask for save names";
K_KeepNamesRequest(&kn);
}*/
ucd.update(*cd, mode);
//piCout << k_.count() << ucd.count();
*cd = ucd;
initRoot(cd);
raiseChangedGlobal(cd->cd_type_);
}
void CDCore::cd_calculate(CDSection * cd) {
cd->calculate();
raiseChangedGlobal(cd->cd_type_);
}
void CDCore::cd_send(CDSection * cd, CDPacketType pt, bool direct) {
if (!cd) return;
PIByteArray ba, sba;
PIIOByteArray iob(&ba, PIIODevice::ReadWrite);
cd_write(cd, &iob);
//piCoutObj << PIString(ba);
sba = makeHeader(pt, 0);
sba << ba;
if (direct)
sendDirect(sba);
else
sendThreaded(sba);
}
void CDCore::send(CDType::cdT cdt) {
CDPacketType pt = CD_Ping;
switch (cdt) {
case CDType::cdK: pt = CD_KSend; break;
case CDType::cdX: pt = CD_XSend; break;
case CDType::cdC: pt = CD_CSend; break;
case CDType::cdM: pt = CD_MSend; break;
default: break;
}
piCoutObj << "send" << typeLetter(cdt);
cd_send(root(cdt), pt);
}
void CDCore::request(CDType::cdT cdt) {
CDPacketType pt = CD_Ping;
switch (cdt) {
case CDType::cdK: pt = CD_KQuery; break;
case CDType::cdX: pt = CD_XQuery; break;
case CDType::cdC: pt = CD_CQuery; break;
case CDType::cdM: pt = CD_MQuery; break;
default: break;
}
piCoutObj << "request" << typeLetter(cdt);
PIByteArray sba = makeHeader(pt, 0);
sendThreaded(sba);
}
void CDCore::initApp() {
init(appConfig(), false);
}
void CDCore::initPult() {
init(pultConfig(), true);
}
void CDCore::init(const PIString & configuration, bool pult) {
PIString c = configuration;
//piCoutObj << "init" << c;
connection.stop();
connection.removeAllDevices();
connection.configureFromString(&c);
connection.start();
x_pult_side = pult;
}
void CDCore::stop() {
x_timer.stop();
x_timer.waitForFinish(1000);
connection.stop();
}
void CDCore::release() {
stop();
connection.removeAllDevices();
}
void CDCore::startX(double freq) {
//piCout << "start x" << x_timer.isRunning() << freq;
if (!x_timer.isRunning())
x_timer.start(1000. / piMaxd(freq, 0.01));
}
void CDCore::stopX() {
x_timer.stop();
x_timer.waitForFinish(1000);
}
void CDCore::sendCommand(const CDType & c) {
//piCoutObj << "C_sendCommand" << c;
PIByteArray sba = makeHeader(CD_Command, 0);
sba << c.path();
sendDirect(sba);
}
void CDCore::registerCHandler(const CDType & c, PIObject * o, Handler h) {
PIString sp = pathToString(c.path());
if (sp.isEmpty() || !h) return;
//piCout << "register" << sp;
c_handlers[sp] = OHPair(o, h);
}
void CDCore::sendMessage(const CDType & m, MessageType mt, const PIString & msg) {
if (msg.isEmpty() || (m.cd_type() != CDType::cdM)) return;
PIByteArray sba = makeHeader(CD_Message, 0);
sba << m.path() << int(mt) << msg;
sendDirect(sba);
}
CDSection * CDCore::root(CDType::cdT cdt) {
switch (cdt) {
case CDType::cdK: return &k_; break;
case CDType::cdX: return &x_; break;
case CDType::cdC: return &c_; break;
case CDType::cdM: return &m_; break;
default: break;
}
return 0;
}
PIString CDCore::typeLetter(CDType::cdT cdt) {
switch (cdt) {
case CDType::cdK: return PIStringAscii("k"); break;
case CDType::cdX: return PIStringAscii("x"); break;
case CDType::cdC: return PIStringAscii("c"); break;
case CDType::cdM: return PIStringAscii("m"); break;
default: break;
}
return PIString();
}
CDCore * CDCore::instance() {
/*static CDCore * ret = new CDCore();
return ret;*/
return __Core_Initializer__::__instance__;
}
bool CDCore::destroy() {
if (!__Core_Initializer__::__instance__) return false;
// piCout << "delete Core ...";
delete __Core_Initializer__::__instance__;
// piCout << "delete Core ok";
__Core_Initializer__::__instance__ = 0;
__Core_Initializer__::count_ = 0;
return true;
}
void CDUtils::CDCore::K_DirectChange(PIDeque<int> path, PIString value) {
// piCoutObj << "K_DirectChange";
PacketKDirectChange p;
p.path = path;
p.value = value;
PIByteArray sba = makeHeader(CD_KDirectChange, 0);
sba << p;
sendDirect(sba);
}
void CDCore::sendThread() {
if (send_data.size_s() < 4) return;
PacketHeader h;
memcpy(&h, send_data.data(), sizeof(h));
bool ok = datatr.send(send_data);
switch (h.type) {
case CD_KSend:
if (ok) K_Sended();
else K_SendFail();
break;
case CD_KQuery:
if (!ok) K_ReceiveFail();
break;
case CD_XSend:
if (ok) X_Sended();
else X_SendFail();
break;
case CD_XQuery:
if (!ok) X_ReceiveFail();
break;
case CD_CSend:
if (ok) C_Sended();
else C_SendFail();
break;
case CD_CQuery:
if (!ok) C_ReceiveFail();
break;
case CD_MSend:
if (ok) M_Sended();
else M_SendFail();
break;
case CD_MQuery:
if (!ok) M_ReceiveFail();
break;
default: break;
}
}
void CDCore::xTimerTick() {
//piCout << "x tick" << x_pult_side;
PIByteArray ba;
x_mutex.lock();
if (x_pult_side) {
ba = makeHeader(CD_XRequest, 0);
if (need_rebuild_x) {
x_selected = x_.collectX();
//piCout << "collectX" << x_selected.size();
need_rebuild_x = false;
}
ba << x_selected;
//piCout << "x pult send" << x_selected.size();
} else {
ba = makeHeader(CD_XValues, 0);
ba << x_selected;
piForeachC (PIDeque<int> & p, x_selected) {
x_[p].writeX(ba);
}
//piCout << "x app" << x_selected.size();
}
x_mutex.unlock();
sendDirect(ba);
}
void CDCore::piCoutFinished(int id, PIString * buffer) {
if (!buffer || !(id == 1)) return;
PIString sp = buffer->takeRange("[", "]");
PIDeque<int> p = CDCore::stringToPath(sp);
sendMessage(m_[p], Log, *buffer);
delete buffer;
}
void CDCore::initRoot(CDSection * r) {
r->name = "__root__";
r->alias = "root";
r->makePath();
r->calculate();
}
PIByteArray CDCore::makeHeader(CDPacketType type, int session_id) const {
PacketHeader h;
h.type = type;
h.session_id = session_id;
PIByteArray ret; ret << h;
return ret;
}
void CDCore::sendDirect(PIByteArray & ba) {
ba.push_front(header_direct);
connection.writeByName("cd", ba);
}
void CDCore::sendThreaded(PIByteArray & ba) {
if (sendt.isRunning()) {
piCoutObj << "Send in process, abort";
return;
}
send_data = ba;
sendt.startOnce();
}
void CDCore::procReceivedPacket(PIByteArray & ba) {
PacketHeader h;
ba >> h;
switch(h.type) {
case CD_Ping:
//piCoutObj << "ping";
break;
case CD_KQuery:
send(CDType::cdK);
break;
case CD_KSend: {
PIByteArray k;
ba >> k;
k << uchar(0);
PIString s = PIString::fromUTF8((const char *)k.data());
PIIOString ios(&s);
cd_read(&k_, &ios);
K_Received();
piCoutObj << "K received";
} break;
case CD_KDirectChange: {
PacketKDirectChange p;
ba >> p;
k_[p.path].setValue(p.value);
} break;
case CD_XQuery:
send(CDType::cdX);
break;
case CD_XSend: {
PIByteArray x;
ba >> x;
x << uchar(0);
PIString s = PIString::fromUTF8((const char *)x.data());
PIIOString ios(&s);
cd_read(&x_, &ios);
x_selected = x_.collectX();
X_Received();
piCoutObj << "X received";
} break;
case CD_XRequest: {
if (x_pult_side) break;
//break;
x_mutex.lock();
x_selected.clear();
ba >> x_selected;
//piCout << "X req" << x_selected.size();
x_.setSelectedX(false);
piForeachC (PIDeque<int> & p, x_selected) {
x_[p].x_enabled = true;
}
x_mutex.unlock();
} break;
case CD_XValues: {
if (!x_pult_side) break;
PIVector<PIDeque<int> > x_vals;
ba >> x_vals;
x_mutex.lock();
piForeachC (PIDeque<int> & p, x_vals) {
x_[p].readX(ba);
}
x_mutex.unlock();
X_ReceivedX(x_vals);
} break;
case CD_CQuery:
send(CDType::cdC);
break;
case CD_CSend: {
piCoutObj << "C received";
PIByteArray c;
ba >> c;
c << uchar(0);
PIString s = PIString::fromUTF8((const char *)c.data());
PIIOString ios(&s);
cd_read(&c_, &ios);
C_Received();
} break;
case CD_Command: {
piCoutObj << "C command";
PIDeque<int> p;
ba >> p;
if (p.isEmpty()) return;
PIString sp = pathToString(p);
OHPair h = c_handlers.value(sp, OHPair(0, 0));
//piCoutObj << "found" << sp << h.first;
if (h.first && h.second) h.second(h.first);
} break;
case CD_MQuery:
send(CDType::cdM);
break;
case CD_MSend: {
piCoutObj << "M received";
PIByteArray c;
ba >> c;
c << uchar(0);
PIString s = PIString::fromUTF8((const char *)c.data());
PIIOString ios(&s);
cd_read(&m_, &ios);
M_Received();
} break;
case CD_Message: {
PIDeque<int> p;
ba >> p;
piCoutObj << "M message" << p;
if (p.isEmpty()) return;
int t = 0;
PIString msg;
ba >> t >> msg;
//piCoutObj << "found" << sp << h.first;
//piCoutObj << "M message invoke";
M_Message(p, t, msg);
} break;
default: break;
}
}
void CDCore::raiseChangedGlobal(CDType::cdT cdt) {
switch (cdt) {
case CDType::cdK: K_ChangedGlobal(); break;
case CDType::cdX: X_ChangedGlobal(); break;
case CDType::cdC: C_ChangedGlobal(); break;
case CDType::cdM: M_ChangedGlobal(); break;
default: break;
}
}
PIString CDCore::pathToString(const PIDeque<int> & p) {
PIString ret;
for (int i = 0; i < p.size_s(); ++i) {
if (!ret.isEmpty()) ret += ".";
ret << p[i];
}
return ret;
}
PIDeque<int> CDCore::stringToPath(const PIString & p) {
PIDeque<int> ret;
PIStringList sl = p.split(".");
piForeachC (PIString & s, sl)
ret << s.toInt();
return ret;
}
void CDUtils::CDCore::dataReceived(const PIString & from, const PIByteArray & data) {
//piCoutObj << "dataReceived" << from << data.size();
PIIODevice * d = connection.deviceByName("cd");
if (d && d == connection.deviceByFullPath(from)) {
if (data.size() >= sizeof(4)) {
PIByteArray ba = data;
uchar header = ba.take_front();
if (header == header_transfer) {
datatr.received(ba);
}
if (header == header_direct) {
procReceivedPacket(ba);
}
}
}
}
void CDCore::dtSendRequest(PIByteArray & data) {
data.push_front(header_transfer);
connection.writeByName("cd", data);
//piCoutObj << "send" << data.size() << ret;
}
void CDCore::dtReceiveFinished(bool ok) {
if (!ok) return;
PIByteArray ba = datatr.data();
procReceivedPacket(ba);
}

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#ifndef CDUTILS_CORE_H
#define CDUTILS_CORE_H
#include "cdutils_types.h"
#include "cdutils_protocol.h"
#include "piconnection.h"
#include "pidatatransfer.h"
namespace CDUtils {
class CDCore;
class __Core_Initializer__ {
public:
__Core_Initializer__();
~__Core_Initializer__();
static int count_;
static CDCore * __instance__;
};
class CDCore: public PIObject
{
PIOBJECT(CDUtils::CDCore)
friend class __Core_Initializer__;
friend class CDSection;
friend class Interface;
friend class XInterface;
public:
static CDCore * instance();
static bool destroy();
EVENT(K_Sended)
EVENT(K_SendFail)
EVENT(K_Received)
EVENT(K_ReceiveFail)
EVENT(K_ChangedGlobal)
EVENT_HANDLER2(void, K_DirectChange, PIDeque<int>, path, PIString, value);
EVENT(X_Sended)
EVENT(X_SendFail)
EVENT(X_Received)
EVENT(X_ReceiveFail)
EVENT(X_ChangedGlobal)
EVENT1(X_ReceivedX, PIVector<PIDeque<int> >, pathes)
EVENT(C_Sended)
EVENT(C_SendFail)
EVENT(C_Received)
EVENT(C_ReceiveFail)
EVENT(C_ChangedGlobal)
EVENT(M_Sended)
EVENT(M_SendFail)
EVENT(M_Received)
EVENT(M_ReceiveFail)
EVENT(M_ChangedGlobal)
EVENT3(M_Message, PIDeque<int>, path, int, type, PIString, msg)
void cd_write (CDSection * cd, PIIODevice * d);
void cd_read (CDSection * cd, PIIODevice * d);
void cd_parse (CDSection * cd, PIIODevice * d);
void cd_update (CDSection * cd, PIIODevice * d, UpdateModeFlags mode);
void cd_calculate(CDSection * cd);
void cd_send (CDSection * cd, CDPacketType pt, bool direct = false);
void send(CDType::cdT cdt);
void request(CDType::cdT cdt);
void initApp();
void initPult();
void init(const PIString & configuration, bool pult = false);
void stop();
void release();
void startX(double freq = 20.);
void stopX();
void sendCommand(const CDType & c);
void registerCHandler(const CDType & c, PIObject * o, Handler h);
bool inProgress() {return sendt.isRunning();}
void sendMessage(const CDType & m, MessageType mt, const PIString & msg);
CDSection * root(CDType::cdT cdt);
PIString typeLetter(CDType::cdT cdt);
static PIString pathToString(const PIDeque<int> & p);
static PIDeque<int> stringToPath(const PIString & p);
static PIString pultConfig() {return PIString(pult_config);}
static PIString appConfig() {return PIString(app_config);}
private:
CDCore();
~CDCore();
EVENT_HANDLER2(void, dataReceived, const PIString &, from, const PIByteArray &, data);
EVENT_HANDLER1(void, dtSendRequest, PIByteArray &, data);
EVENT_HANDLER1(void, dtReceiveFinished, bool, ok);
EVENT_HANDLER(void, sendThread);
EVENT_HANDLER(void, xTimerTick);
EVENT_HANDLER2(void, piCoutFinished, int, id, PIString*, buffer);
void initRoot(CDSection * r);
PIByteArray makeHeader(CDPacketType type, int session_id = 0) const;
void sendDirect(PIByteArray & ba);
void sendThreaded(PIByteArray & ba);
void procReceivedPacket(PIByteArray & ba);
void raiseChangedGlobal(CDType::cdT cdt);
typedef PIPair<PIObject * , Handler> OHPair;
static const char app_config[], pult_config[];
PIConnection connection;
PIDataTransfer datatr;
PIByteArray send_data;
PIThread sendt;
PITimer x_timer;
CDSection k_, x_, c_, m_;
PIMutex x_mutex;
PIVector<PIDeque<int> > x_selected;
PIMap<PIString, OHPair> c_handlers;
bool need_rebuild_x, x_pult_side;
};
static __Core_Initializer__ __Core_initializer__;
}
#endif // CDUTILS_CORE_H

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#include "cdutils_interface.h"
#include "cdutils_core.h"
#include "piconfig.h"
#include "pifile.h"
using namespace CDUtils;
Interface::Interface(CDType::cdT type_) {
core = CDCore::instance();
s = core->root(type_);
type = type_;
//piCoutObj << (void*)this << core;
file_ = core->typeLetter(type_) + PIStringAscii(".dat");
file_size = 0;
switch (type) {
case CDType::cdK:
CONNECTU(core, K_Sended, this, sended);
CONNECTU(core, K_SendFail, this, sendFailed);
CONNECTU(core, K_Received, this, received);
CONNECTU(core, K_ReceiveFail, this, receiveFailed);
CONNECTU(core, K_ChangedGlobal, this, changedGlobal);
break;
case CDType::cdX:
CONNECTU(core, X_Sended, this, sended);
CONNECTU(core, X_SendFail, this, sendFailed);
CONNECTU(core, X_Received, this, received);
CONNECTU(core, X_ReceiveFail, this, receiveFailed);
CONNECTU(core, X_ChangedGlobal, this, changedGlobal);
break;
case CDType::cdC:
CONNECTU(core, C_Sended, this, sended);
CONNECTU(core, C_SendFail, this, sendFailed);
CONNECTU(core, C_Received, this, received);
CONNECTU(core, C_ReceiveFail, this, receiveFailed);
CONNECTU(core, C_ChangedGlobal, this, changedGlobal);
break;
case CDType::cdM:
CONNECTU(core, M_Sended, this, sended);
CONNECTU(core, M_SendFail, this, sendFailed);
CONNECTU(core, M_Received, this, received);
CONNECTU(core, M_ReceiveFail, this, receiveFailed);
CONNECTU(core, M_ChangedGlobal, this, changedGlobal);
break;
default: break;
}
}
bool Interface::test(int v) {
return s->test(v);
}
CDType & Interface::operator [](const PIString & name_) {
return (*s)[name_];
}
const CDType Interface::operator [](const PIString & name_) const {
return (*s)[name_];
}
CDType & Interface::operator [](const PIDeque<int> & path_) {
return (*s)[path_];
}
const CDType Interface::operator [](const PIDeque<int> & path_) const {
return (*s)[path_];
}
CDType & Interface::operator [](int v) {
//piCout << (void*)this << "[]" << core;
return (*s)[v];
}
const CDType Interface::operator [](int v) const {
//piCout << (void*)this << "[]" << core;
return (*s)[v];
}
CDSection & Interface::section(int v) {
// CDSection & ret = s->section(v);
// piCout << "[get section]" << v << ret.name;
return s->section(v);
}
const CDSection Interface::section(int v) const {
return s->section(v);
}
CDSection & Interface::section(const PIDeque<int> &path) {
PIDeque<int> spath = path;
CDSection * rs = s;
while (!spath.isEmpty()) {
rs = &(rs->section(spath.take_front()));
}
return *rs;
}
CDSection & Interface::root() {
return *s;
}
const CDSection & Interface::root() const {
return *s;
}
int Interface::count(bool recursive) const {
return s->count(recursive);
}
bool Interface::exists(PIDeque<int> path) const {
return s->exists(path);
}
void Interface::setFileName(const PIString & _file) {
file_ = _file;
}
bool Interface::configure(const PIString & config) {
PIConfig conf(config, PIIODevice::ReadOnly);
PIConfig::Entry & e(conf.getValue(core->typeLetter(s->cd_type_)));
bool ret = false;
setFileName(e.getValue("file", file(), &ret));
return ret;
}
void Interface::reinitConnection(const PIString & configuration) {
core->init(configuration);
}
void Interface::releaseConnection() {
core->release();
}
void Interface::write(PIIODevice * d) {
core->cd_write(s, d);
}
void Interface::read(PIIODevice * d) {
core->cd_read(s, d);
}
void Interface::parse(PIIODevice * d) {
core->cd_parse(s, d);
}
void Interface::update(PIIODevice * d, UpdateModeFlags mode) {
core->cd_update(s, d, mode);
}
void Interface::calculate() {
core->cd_calculate(s);
}
PIString Interface::appConfig() {
return core->appConfig();
}
PIString Interface::pultConfig() {
return core->pultConfig();
}
void Interface::readFile() {
if (file_.isEmpty()) return;
PIFile f(file_, PIIODevice::ReadOnly);
read(&f);
file_size = f.size();
}
void Interface::writeFile() {
if (file_.isEmpty()) return;
PIFile f(file_, PIIODevice::ReadWrite);
f.clear();
write(&f);
file_size = f.size();
}
bool Interface::inProgress() {
return core->inProgress();
}
void Interface::send() {
core->send(type);
}
void Interface::request() {
core->request(type);
}

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#ifndef CDUTILS_INTERFACE_H
#define CDUTILS_INTERFACE_H
#include "cdutils_types.h"
#include "piobject.h"
namespace CDUtils {
class CDCore;
class Interface: public PIObject
{
PIOBJECT(CDUtils::Interface)
public:
Interface(CDType::cdT type_);
bool test(int v);
CDType & operator [](int v);
const CDType operator [](int v) const;
CDType & operator [](const PIString & name_);
const CDType operator [](const PIString & name_) const;
CDType & operator [](const PIDeque<int> & path_);
const CDType operator [](const PIDeque<int> & path_) const;
CDSection & section(int v);
const CDSection section(int v) const;
CDSection & section(const PIDeque<int> & path);
CDSection & root();
const CDSection & root() const;
int count(bool recursive = true) const;
const PIString file() const {return file_;}
int fileSize() const {return file_size;}
CDType::cdT cdType() const {return type;}
bool exists(PIDeque<int> path) const;
void setFileName(const PIString & _file);
bool configure(const PIString & config);
void reinitConnection(const PIString & configuration);
void releaseConnection();
void write(PIIODevice * d);
void read(PIIODevice * d);
void parse(PIIODevice * d);
void update(PIIODevice * d, UpdateModeFlags mode = SaveByName);
void calculate();
PIString appConfig();
PIString pultConfig();
void readFile();
void writeFile();
bool inProgress();
EVENT(sended)
EVENT(sendFailed)
EVENT(received)
EVENT(receiveFailed)
EVENT(changedGlobal)
EVENT_HANDLER(void, send);
EVENT_HANDLER(void, request);
protected:
CDCore * core;
CDSection * s;
CDType::cdT type;
PIString file_;
int file_size;
};
}
#endif // CDUTILS_INTERFACE_H

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#include "cdutils_k.h"
#include "cdutils_core.h"
using namespace CDUtils;
KInterface K;
KInterface::KInterface(): Interface(CDType::cdK) {
}
void KInterface::directChange(const CDType & k) {
core->K_DirectChange(k.path(), k.value());
}
void KInterface::directChange(const CDType & k, double v) {
core->K_DirectChange(k.path(), PIString::fromNumber(v));
}

27
test/cd_utils/cdutils_k.h Normal file
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#ifndef CDUTILS_K_H
#define CDUTILS_K_H
#include "cdutils_interface.h"
namespace CDUtils {
class KInterface: public Interface
{
PIOBJECT_SUBCLASS(KInterface, Interface)
public:
KInterface();
EVENT1(keepNamesRequest, bool*, kn)
void directChange(const CDType & k);
void directChange(const CDType & k, double v);
};
}
extern CDUtils::KInterface K;
#endif // CDUTILS_K_H

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#include "cdutils_m.h"
#include "cdutils_core.h"
using namespace CDUtils;
MInterface M;
MInterface::MInterface(): Interface(CDType::cdM) {
CONNECTU(core, M_Message, this, messageReceived);
}
void MInterface::messageBox(const CDType & m, const PIString & msg) {
core->sendMessage(m, MessageBox, msg);
}
PICout MInterface::createPICout(const CDType & m) const {
PIString * buff = new PIString("[" + CDCore::pathToString(m.path()) + "]");
return PICout(buff, 1);
}

36
test/cd_utils/cdutils_m.h Normal file
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#ifndef CDUTILS_M_H
#define CDUTILS_M_H
#include "cdutils_interface.h"
namespace CDUtils {
class MInterface: public Interface
{
PIOBJECT_SUBCLASS(MInterface, Interface)
public:
MInterface();
PICout operator [](int v) {return createPICout((*s)[v]);}
PICout operator [](int v) const {return createPICout((*s)[v]);}
PICout operator [](const PIString & name_) {return createPICout((*s)[name_]);}
PICout operator [](const PIString & name_) const {return createPICout((*s)[name_]);}
PICout operator [](const PIDeque<int> & path_) {return createPICout((*s)[path_]);}
PICout operator [](const PIDeque<int> & path_) const {return createPICout((*s)[path_]);}
void messageBox(const CDType & m, const PIString & msg);
EVENT3(messageReceived, PIDeque<int>, path, int, type, PIString, msg)
private:
PICout createPICout(const CDType & m) const;
};
}
extern CDUtils::MInterface M;
#endif // CDUTILS_M_H

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#include "cdutils_parser.h"
#include "cdutils_types.h"
#include "piiostring.h"
#include "piiobytearray.h"
#include "pifile.h"
using namespace CDUtils;
enum Phase {
eName = 1,
eBracketOpen,
eBracketClose,
eMemberName,
eMemberEqual,
eMemberValue,
eMemberComma,
eComment,
eMultiComment
};
void removeComment(PIString & line, PIString * type, PIString * comment) {
int ci = line.find("//");
if (ci >= 0) {
if (comment) *comment = line.right(line.size_s() - ci - 2);
line.cutRight(line.size_s() - ci).trim();
if (type && comment && !line.isEmpty()) {
*type = comment->takeLeft(1);
comment->trim();
}
}
}
void parseEnumLine(PIString & line, int * value, PIString * type, PIString * comment) {
removeComment(line, type, comment);
int ci = line.find("=");
if (ci >= 0) {
if (value) *value = line.right(line.size_s() - ci - 1).trim().toInt();
line.cutRight(line.size_s() - ci).trim();
}
if (line.trim().endsWith(",")) line.cutRight(1);
}
void parseInsert(PIString line, PIString & alias, PIStringList & out) {
out.clear();
int ci = line.find("=");
if (ci < 0) return;
alias = line.right(line.size_s() - ci - 1).trim();
line.cutRight(line.size_s() - ci).trim();
while (line.find("[") > 0) {
int is = line.find("["), ie = line.find("]");
PIString arr = line.mid(is + 1, ie - is - 1);
out << arr;
line.cutMid(is, ie - is + 1);
}
if (!line.isEmpty()) out.insert(0, line);
}
PIVector<int> enumValues(const PIString & e, const PIMap<PIString, CDSection> & sections, PIStringList & enames) {
PIVector<int> ret;
enames.clear();
if (sections.contains(e)) {
ret = sections[e].indexes();
enames = sections[e].index_names();
} else {
int v = e.toInt();
if (v < 2) return ret;
for (int i = 0; i < v; ++i) {
ret << i;
enames << "";//PIString::fromNumber(i);
}
}
return ret;
}
CDSection CDParser::parse(PIIODevice * d, int cdsection_type) {
CDType::cdT et = (CDType::cdT)cdsection_type;
if (!d) return CDSection(et);
if (!d->canRead()) return CDSection(et);
//piCout << "[CDSection] parse start";
CDSection cs(et);
CDType ck;
PIMap<PIString, CDSection> sections;
PIMap<PIString, int> enum_values;
PIString content, line, alias, type, comment;
PIStringList iarr;
if (PIStringAscii(d->className()) == PIStringAscii("PIFile")) {
PIByteArray c = ((PIFile*)d)->readAll();
c << uchar(0);
content = PIString::fromUTF8((const char *)c.data());
}
if (PIStringAscii(d->className()) == PIStringAscii("PIIOString")) content = *(((PIIOString*)d)->string());
if (PIStringAscii(d->className()) == PIStringAscii("PIIOByteArray")) content = PIString(*(((PIIOByteArray*)d)->byteArray()));
PIIOString ios(&content);
//int phase = 0;
int cind = -1;
while ((cind = content.find("enum", cind)) >= 0) {
ios.seek(cind);
line = ios.readLine().trim();
type.clear();
comment.clear();
removeComment(line, &type, &comment);
if (line.find("{") < 0) {
cind += 4;
continue;
}
line.cutLeft(line.find("enum") + 4).trim();
line.cutRight(line.size_s() - line.find("{")).trim();
if (line.isEmpty()) {
cind += 4;
continue;
}
cs = CDSection(et);
cs.name = line;
//piCout << "enum" << cs.name;
int cev = 0;
// cevalues.clear();
while (!ios.isEnd()) {
line = ios.readLine().trim();
comment.clear();
removeComment(line, &type, &comment);
if (line.find("}") >= 0) break;
if (line.isEmpty()) {
if (comment.find("=") >= 0) {
parseInsert(comment, alias, iarr);
if (!iarr.isEmpty()) {
// piCout << "#" << enum_values;
if (!enum_values.contains(alias)) {
piCout << "Parse error: can`t find section alias \"" << alias << "\"!";
return CDSection(et);
}
if (!sections.contains(iarr.front())) {
piCout << "Parse error: can`t find section \"" << iarr.front() << "\"!";
return CDSection(et);
}
//piCout << "insert" << alias << iarr;
int aval = enum_values.value(alias);
CDSection is = sections.value(iarr.take_front()), ts;
int ibpos = is.name.size_s();
piForeachRC (PIString & a, iarr) {
PIStringList enames;
PIVector<int> evals = enumValues(a, sections, enames);
//piCout << a << evals;
for (int i = 0; i < evals.size_s(); ++i) {
ts.section(evals[i]) = is;
ts.section(evals[i]).alias = enames[i];
}
ts.name = is.name;
ts.name.insert(ibpos, PIString("[") << a << "]");
is = ts;
ts = CDSection(et);
}
is.alias = alias;
cs.section(aval) = is;
}
}
} else {
parseEnumLine(line, &cev, &type, &comment);
//piCout << line << "=" << cev << "//" << type << comment;
ck = CDType(cev, line, type, "", "", comment, et);
if (type == "e") {
if (comment.startsWith("${")) {
comment.cutLeft(1);
PIString en = comment.inBrackets('{', '}');
comment.cutLeft(en.size_s() + 2).trim();
ck.setEnumValues(sections.value(en).enumValues());
ck.setComment(comment);
//piCout << "enum" << en << ck.enumValues();
}
}
cs[cev] = ck;
//cevalues[line] = cev;
enum_values[line] = cev;
++cev;
}
}
//piCout << cs.name << cs.k;
sections[cs.name] = cs;
// piCout << "#" << cevalues;
// enum_values << cevalues;
cind += 4;
}
// piCout << "[CDSection] parse end";
switch (et) {
case CDType::cdK: return sections.value("KDescription");
case CDType::cdX: return sections.value("XDescription");
case CDType::cdC: return sections.value("CDescription");
case CDType::cdM: return sections.value("MDescription");
default: return CDSection(et);
}
return CDSection(et);
}

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@@ -0,0 +1,19 @@
#ifndef CDUTILS_PARSER_H
#define CDUTILS_PARSER_H
class PIIODevice;
namespace CDUtils {
class CDSection;
namespace CDParser {
CDSection parse(PIIODevice * d, int cdsection_type);
}
}
#endif // CDUTILS_PARSER_H

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@@ -0,0 +1,53 @@
#ifndef CDUTILS_PROTOCOL_H
#define CDUTILS_PROTOCOL_H
#include "pibytearray.h"
namespace CDUtils {
enum CDPacketType {
CD_Ping,
CD_Pong,
CD_KQuery,
CD_KSend,
CD_KDirectChange,
CD_XQuery,
CD_XSend,
CD_XRequest,
CD_XValues,
CD_CQuery,
CD_CSend,
CD_Command,
CD_MQuery,
CD_MSend,
CD_Message,
};
# pragma pack(push,1)
struct PacketHeader {
int type; // CDPacketType
int session_id;
};
struct PacketKDirectChange {
PIDeque<int> path;
PIString value;
};
# pragma pack(pop)
inline PIByteArray & operator <<(PIByteArray & s, const PacketHeader & v) {s << v.type << v.session_id; return s;}
inline PIByteArray & operator >>(PIByteArray & s, PacketHeader & v) {s >> v.type >> v.session_id; return s;}
inline PIByteArray & operator <<(PIByteArray & s, const PacketKDirectChange & v) {s << v.path << v.value; return s;}
inline PIByteArray & operator >>(PIByteArray & s, PacketKDirectChange & v) {s >> v.path >> v.value; return s;}
}
#endif // CDUTILS_PROTOCOL_H

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@@ -0,0 +1,763 @@
#include "cdutils_types.h"
#include "piconfig.h"
#include "pifile.h"
#include "pievaluator.h"
#include "cdutils_core.h"
using namespace CDUtils;
//int cdtype_debug_cnt = 1;
const int cd_x_history_max_size = 4000;
CDType::CDType() {
index_ = -1;
value_d = 0.;
value_i = 0;
value_b = calculated = x_enabled = false;
cd_type_ = cdNull;
parent = 0;
avg_size = 1;
mode_ = rmode_ = X_Current;
// debug_cnt = cdtype_debug_cnt;
// cdtype_debug_cnt++;
// piCout << "[CDType]" << "create Null" << debug_cnt;
}
CDType::CDType(int i, const PIString & n, const PIString & t, const PIString & v, const PIString & f, const PIString & c, cdT cd_t) {
index_ = i;
name_ = n.trimmed();
type_ = t.trimmed();
value_s = v.trimmed();
formula_ = f.trimmed();
comment_ = c.trimmed();
value_d = v.toDouble();
value_i = v.toInt();
value_b = v.toBool();
cd_type_ = cd_t;
calculated = x_enabled = false;
parent = 0;
avg_size = 1;
mode_ = rmode_ = X_Current;
if (type_ == "e") {
enum_values = parseEnumComment(comment_);
// piCout << enum_values.size() << enum_values;
}
// piCout << type_.size() << type_.toUTF8();
// piCout << formula_.size() << formula_.toUTF8();
// piCout << comment_.size() << comment_.toUTF8();
// debug_cnt = cdtype_debug_cnt;
// cdtype_debug_cnt++;
// piCout << "[CDType] create" << name_ << ":" << type_ << ":" << value_s << ":" << value_d << ":" << formula_ << ":" << comment_ << ":" << (cd_type_ == cdK);
}
CDType & CDType::operator =(double x) {
value_d = x;
value_i = x;
value_b = x > 0.;
if (mode_ == X_All_Avg) {
avg_h << x;
double val = 0;
if (avg_h.size_s() >= avg_size) {
for (int i = 0; i < avg_h.size_s(); i++)
val += avg_h[i];
val /= avg_h.size();
avg_h.clear();
if (history.size() < cd_x_history_max_size)
history << val;
}
}
return *this;
}
PIString CDType::type() const {
if (type_.trimmed().isEmpty()) return "f";
// piCout << "type =" << type_.trimmed() << ";" << type_ << "#";
return type_;
}
PIString CDType::value() const {
if (type_ == "b") return PIString::fromBool(value_b);
return value_s;
}
PIVariant CDType::variantValue() const {
if (type_.isEmpty()) return PIVariant(value());
switch (type_[0].toAscii()) {
case 'b': return PIVariant(toBool()); break;
case 'n': return PIVariant(toInt()); break;
case 'f': return PIVariant(toDouble()); break;
case 'c': return PIVariant(PIVariantTypes::Color(toInt())); break;
case 'e': {
PIVariantTypes::Enum e = enum_values;
e.selectValue(toInt());
return PIVariant(e);
break;
}
default: break;
}
return PIVariant(value());
}
void CDType::setValue(const PIString & value_) {
formula_ = value_;
value_d = formula_.toDouble();
value_i = formula_.toInt();
value_b = formula_.toBool();
}
void CDType::setVariantValue(const PIVariant & value_) {
setValue(PIString::fromNumber(value_.toDouble()));
}
void CDType::setFormula(const PIString & f) {
formula_ = f;
calculated = false;
//PIEvaluator e;
//calculate(&e);
}
PIStringList CDType::pathString() const {
PIStringList ret;
CDSection * ps = CDCore::instance()->root(cd_type_);
if (!ps) return ret;
for (int i = 0; i < path_.size_s() - 1; ++i) {
ps = &(ps->section(path_[i]));
if (!ps->alias.isEmpty()) ret << ps->alias;
else ret << PIString::fromNumber(path_[i]);
}
if (!name_.isEmpty()) ret << name_;
else ret << PIString::fromNumber(index_);
return ret;
}
void CDType::readX(PIByteArray & ba) {
if (ba.size() < 5) return;
uchar t(0); ba >> t;
rmode_ = (XMode)t;
switch (rmode_) {
case X_Current:
ba >> value_d;
break;
case X_All_Avg: {
PIVector<double> ah;
ba >> ah;
history << ah;
if (!history.isEmpty())
value_d = history.back();
} break;
default: break;
}
value_i = value_d;
value_b = value_d > 0.;
}
void CDType::writeX(PIByteArray & ba) {
ba << uchar(mode_);
switch (mode_) {
case X_Current:
ba << value_d;
break;
case X_All_Avg:
ba << history;
history.clear();
break;
default: break;
}
}
bool CDType::calculate(PIEvaluator * e, PIVector<const CDType * > stack) {
if (stack.contains(this)) {
error_ = "Circular dependencies: ";
piForeachC (CDType * k, stack)
error_ << k->name() << " -> ";
error_ << name();
//piCout << error_;
return false;
}
stack << this;
if (calculated) return true;
calculated = true;
error_.clear();
if (!parent) return true;
//piCout << "calc" << name_ << (parent ? parent->alias : "root");
value_s = formula_.trimmed();
for (;;) {
int ki = value_s.find("K[");
if (ki < 0) break;
int ke = value_s.find("]", ki + 2);
if (ke < 0) break;
PIString kp = value_s.mid(ki + 2, ke - ki - 2);
//piCout << kp;
CDType & k((*parent)[kp]);
k.calculate(e, stack);
value_s.replace(ki, ke - ki + 1, PIString::fromNumber(k.value_d));
}
value_d = formula_.toDouble();
value_i = formula_.toInt();
value_b = formula_.toBool();
double ev = 0.;
if (!e->check(value_s) && value_d == 0. && value_i == 0 && !value_b) {
PIString f = formula_.trimmed().toLowerCase();
if (f != "off" && f != "false" && f != "no" && !value_b) {
error_ = e->error();
return false;
}
} else
if (e->isCorrect())
ev = e->evaluate().real();
//piCout << value_s << value_i << value_d << ev;
//if ((value_d == 0.) || (piAbsd(value_d) < piAbsd(ev))) value_d = ev;
//if ((value_i == 0) || (piAbsd(value_i) < piAbsd(ev))) value_i = int(ev);
if ((value_d == 0.) || (ev != 0.)) value_d = ev;
if ((value_i == 0) || (ev != 0.)) value_i = int(ev);
value_b = value_b || (ev > 0.);
if (value_i != 0) {
if (value_d == 0.) value_d = value_i;
value_b = value_i > 0;
}
if (value_d != 0.) {
if (value_i == 0) value_i = value_d;
value_b = value_d > 0.;
}
if (value_b) {
if (value_d == 0.) value_d = 1.;
if (value_i == 0) value_i = 1;
}
value_s = PIString::fromNumber(value_d);
return true;
}
PIVariantTypes::Enum CDType::parseEnumComment(PIString c) {
PIVariantTypes::Enum ret;
if (c.isEmpty()) return ret;
if (type_ == "e") {
PIStringList sl = c.inBrackets('{', '}').split(",");
int cval = 0;
piForeach (PIString & s, sl) {
s.trim();
if (s.isEmpty()) continue;
if (s[0].isDigit()) {
int ind = s.find("-");
if (ind > 0) {
cval = s.left(ind).toInt();
s.cutLeft(ind + 1).trim();
}
}
ret << PIVariantTypes::Enumerator(cval, s);
++cval;
}
}
//piCout << c << "=" << ret;
return ret;
}
//CDType::CDType(const CDType &cdt) {
// index_ = cdt.index_;
// name_ = cdt.name_;
// type_ = cdt.type_;
// value_s = cdt.value_s;
// formula_ = cdt.formula_;
// comment_ = cdt.comment_;
// value_d = cdt.value_d;
// value_i = cdt.value_i;
// value_b = cdt.value_b;
// cd_type_ = cdt.cd_type_;
// debug_cnt = cdtype_debug_cnt;
// cdtype_debug_cnt++;
// piCout << "[CDType] copy" << debug_cnt << "->" << cdt.debug_cnt << index_ << ":" << name_ << ":" << type_ << ":" << value_s << ":" << value_d << ":" << formula_ << ":" << comment_ << ":" << (cd_type_ == cdK);
//}
//CDType &CDType::operator =(const CDType &cdt) {
// index_ = cdt.index_;
// name_ = cdt.name_;
// type_ = cdt.type_;
// value_s = cdt.value_s;
// formula_ = cdt.formula_;
// comment_ = cdt.comment_;
// value_d = cdt.value_d;
// value_i = cdt.value_i;
// value_b = cdt.value_b;
// cd_type_ = cdt.cd_type_;
// piCout << "[CDType] assign" << debug_cnt << "=" << cdt.debug_cnt << index_ << ":" << name_ << ":" << type_ << ":" << value_s << ":" << value_d << ":" << formula_ << ":" << comment_ << ":" << (cd_type_ == cdK);
// //debug_cnt = cdt.debug_cnt;
// return *this;
//}
//CDType::~CDType() {
// piCout << "[CDType] delete" << debug_cnt << index_ << ":" << name_ << ":" << type_ << ":" << value_s << ":" << value_d << ":" << formula_ << ":" << comment_ << ":" << (cd_type_ == cdK);
//}
CDSection::CDSection(CDType::cdT type_) {
cd_type_ = type_;
null.cd_type_ = type_;
}
CDSection & CDSection::section(int v) {
CDSection & ret(s[v]);
ret.cd_type_ = cd_type_;
return ret;
}
const CDSection CDSection::section(int v) const {
CDSection & ret(s[v]);
ret.cd_type_ = cd_type_;
return s[v];
}
bool CDSection::exists(PIDeque<int> path) const {
if (path.isEmpty()) return false;
if (path.size_s() == 1) return cd.contains(path[0]);
int si = path[0];
if (!s.contains(si)) return false;
path.remove(0, 1);
return s[si].exists(path);
}
int CDSection::count(bool recursive) const {
int ret = cd.size_s();
if (recursive) {
PIMap<int, CDSection>::const_iterator i;
for (i = s.constBegin(); i != s.constEnd(); ++i)
ret += i->second.count(recursive);
}
return ret;
}
int CDSection::sectionsCount() const {
return s.size();
}
PIStringList CDSection::index_names() const {
PIStringList ret;
PIMap<int, CDType>::const_iterator i;
for (i = cd.begin(); i != cd.end(); ++i)
ret << i->second.name();
return ret;
}
void CDSection::calculate() {
prepareCalculate();
if (cd_type_ != CDType::cdK) return;
PIEvaluator e;
calculateRecursive(&e);
}
CDType & CDSection::getByName(const PIString & name_) {
PIStringList np = name_.split(".");
if (np.isEmpty()) return null;
//piCout << np;
CDSection * cs = this, * ns = 0;
if (np.front().isEmpty()) {
if (np.size_s() < 2) return null;
cs = CDCore::instance()->root(cd_type_);
np.pop_front();
}
for (int i = 0; i < np.size_s() - 1; ++i) {
if (np[i].isEmpty()) return null;
bool isd = np[i][0].isDigit() || (np[i][0] == '-');
int dv = 0;
if (isd) dv = np[i].toInt();
ns = 0;
PIMap<int, CDSection>::iterator it;
//piCout << np[i] << isd << dv;
for (it = cs->s.begin(); it != cs->s.end(); ++it) {
bool f = false;
if (isd) f = (dv == it.key());
else f = (np[i] == it.value().alias);
//piCout << "s..." << it.key() << it.value().alias << f;
if (f) {
ns = &(it.value());
break;
}
}
//piCout << ns;
if (!ns) return null;
cs = ns;
}
PIMap<int, CDType>::iterator it;
if (np.back().isEmpty()) return null;
bool isd = np.back()[0].isDigit() || (np.back()[0] == '-');
int dv = 0;
if (isd) dv = np.back().toInt();
//piCout << np.back() << isd << dv;
for (it = cs->cd.begin(); it != cs->cd.end(); ++it) {
bool f = false;
if (isd) f = (dv == it.key());
else f = (np.back() == it.value().name());
//piCout << "k..." << it.key() << it.value().name() << f;
if (f)
return cs->cd[it.key()];
}
return null;
}
CDType & CDSection::getByPath(const PIDeque<int> & path_) {
if (path_.isEmpty()) return null;
CDSection * s = this;
for (int i = 0; i < path_.size_s() - 1; ++i)
s = &(s->section(path_[i]));
if (!s) return null;
return (*s)[path_.back()];
}
void CDSection::write(PIIODevice * d, const PIString & prefix) {
if (!d) return;
if (cd.isEmpty() && s.isEmpty()) return;
// piCout << "[CDSection] write start";
PIString l;
PIStringList cdtl;
cdtl << "null" << "k" << "x" << "c" << "m";
if (prefix.isEmpty()) l = "[" + cdtl[cd_type_] + "]";
else l = "[" + prefix + "." + cdtl[cd_type_] + "]";
l += "\n";
d->write(l.toUTF8());
l = "name = " + name + " \n";
d->write(l.toUTF8());
l = "alias = " + alias + " \n";
d->write(l.toUTF8());
PIMap<int, CDType>::iterator i;
for (i = cd.begin(); i != cd.end(); ++i) {
CDType & ck(i.value());
if (ck.cd_type() != cd_type_) continue;
switch (cd_type_) {
case CDType::cdNull: break;
case CDType::cdK:
l.clear(); l << ck.index() << ".f = " << ck.formula() << " #s " << ck.comment() << " \n";
d->write(l.toUTF8());
l.clear(); l << ck.index() << ".v = " << ck.value() << " #" << ck.type() << " " << ck.name() << " \n";
d->write(l.toUTF8());
if (!ck.enumValues().enum_list.isEmpty()) {
l.clear(); l << ck.index() << ".ev = {";
//PIVector<CDType::Enumerator> el = ck.enumValues();
piForeachC (PIVariantTypes::Enumerator & e, ck.enumValues().enum_list)
l << e.value << " - " << e.name << ", ";
l.cutRight(2);
l << "} \n";
d->write(l.toUTF8());
}
break;
case CDType::cdX:
l.clear(); l << ck.index() << ".name = " << ck.name() << " #s " << ck.comment() << " \n";
d->write(l.toUTF8());
l.clear(); l << ck.index() << ".mode = " << ck.xmode() << " #e (0 - cur, 1 - all_avg) " << "\n";
d->write(l.toUTF8());
l.clear(); l << ck.index() << ".avg = " << ck.avg() << " #n " << "\n";
d->write(l.toUTF8());
l.clear(); l << ck.index() << ".sel = " << (ck.isSelectedX() ? "1" : "0") << " #n " << "\n";
d->write(l.toUTF8());
break;
case CDType::cdC:
case CDType::cdM:
l.clear(); l << ck.index() << ".name = " << ck.name() << " #s " << ck.comment() << " \n";
d->write(l.toUTF8());
break;
}
}
if (!s.isEmpty()) {
if (prefix.isEmpty()) l = "s";
else l = prefix + ".s";
PIMap<int, CDSection>::iterator j;
for (j = s.begin(); j != s.end(); ++j) {
j.value().write(d, l + "." + PIString::fromNumber(j.key()));
}
}
if (prefix.isEmpty()) {
l = "[]\n";
d->write(l.toUTF8());
}
// piCout << "[CDSection] write end";
}
void CDSection::read(const void * ep) {
// piCout << "[CDSection] read start";
PIStringList cdtl;
cdtl << "null" << "k" << "x" << "c" << "m";
cd.clear();
s.clear();
PIConfig::Entry & e(*(PIConfig::Entry*)ep);
name = e.getValue(cdtl[cd_type_] + ".name").value();
alias = e.getValue(cdtl[cd_type_] + ".alias").value();
PIConfig::Entry & cdl = e.getValue(cdtl[cd_type_]);
for (int i = 0; i < cdl.childCount(); ++i) {
const PIConfig::Entry * e(cdl.child(i));
bool ok = false;
int id = e->name().toInt(-1, &ok);
// piCout << "[read]" << ke->name() << ke->value() << ok;
// PIString n = ke->getValue("v").comment();
// PIString t = n.takeLeft(1);
if (ok) {
CDType c;
PIString ev;
switch (cd_type_) {
case CDType::cdNull: break;
case CDType::cdK:
c = CDType(id, e->getValue("v").comment(), e->getValue("v").type(), e->getValue("v").value(), e->getValue("f").value(), e->getValue("f").comment(), cd_type_);
ev = e->getValue("ev", "");
if (!ev.isEmpty())
c.enum_values = c.parseEnumComment(ev);
break;
case CDType::cdX:
c = CDType(id, e->getValue("name").value(), PIString(), PIString(), PIString() , e->getValue("name").comment(), cd_type_);
c.setXMode((CDType::XMode)e->getValue("mode", int(CDType::X_Current)).value().toInt());
c.setAvg((CDType::XMode)e->getValue("avg", 1).value().toInt());
c.x_enabled = e->getValue("sel", false).value().toBool();
break;
case CDType::cdC:
case CDType::cdM:
c = CDType(id, e->getValue("name").value(), PIString(), PIString(), PIString() , e->getValue("name").comment(), cd_type_);
break;
}
cd[id] = c;
}
}
PIConfig::Entry & sl = e.getValue("s");
for (int i = 0; i < sl.childCount(); ++i) {
const PIConfig::Entry * se(sl.child(i));
int sid = se->name().toInt();
CDSection & rs(s[sid]);
rs.cd_type_ = cd_type_;
rs.read(se);
}
// piCout << "[CDSection] read end";
}
void CDSection::update(CDSection & v, UpdateModeFlags mode) {
if (mode[SaveByIndex] && mode[SaveByName]) {
piCout << "[CDSection] update error: SaveByIndex | SaveByName mode is denied!";
return;
}
//piCout << "[CDSection] update start";
//piCout << "before" << k.size() << v.k.size();
PIMap<int, PIString> prev_cd_f_bi;
PIMap<PIString, PIString> prev_cd_f_bn;
PIMap<int, CDType>::iterator i;
if (mode[SaveByIndex]) {
for (i = cd.begin(); i != cd.end(); ++i)
prev_cd_f_bi[i.key()] = i.value().formula();
}
if (mode[SaveByName]) {
for (i = cd.begin(); i != cd.end(); ++i)
prev_cd_f_bn[i.value().name_] = i.value().formula();
}
if (!mode[Merge])
cd.clear();
for (i = v.cd.begin(); i != v.cd.end(); ++i) {
int id = i.key();
PIString n = i.value().name();
cd[id] = i.value();
if (mode[SaveByIndex]) {
if (prev_cd_f_bi.contains(id))
cd[id].setFormula(prev_cd_f_bi[id]);
}
if (mode[SaveByName]) {
if (prev_cd_f_bn.contains(n))
cd[id].setFormula(prev_cd_f_bn[n]);
}
}
PIMap<int, CDSection> prev_s_bi;
PIMap<PIString, CDSection> prev_s_bn;
PIMap<int, CDSection>::iterator j;
if (mode[SaveByIndex]) {
for (j = s.begin(); j != s.end(); ++j)
prev_s_bi[j.key()] = j.value();
}
if (mode[SaveByName]) {
for (j = s.begin(); j != s.end(); ++j)
prev_s_bn[j.value().alias] = j.value();
}
if (!mode[Merge])
s.clear();
for (j = v.s.begin(); j != v.s.end(); ++j) {
int id = j.key();
PIString n = j.value().alias;
s[id] = j.value();
if (mode[SaveByIndex]) {
if (prev_s_bi.contains(id))
s[id] = prev_s_bi[id];
}
if (mode[SaveByName]) {
if (prev_s_bn.contains(n))
s[id] = prev_s_bn[n];
}
s[id].update(j.value(), mode);
}
/*PISet<int> used;
for (i = k.begin(); i != k.end(); ++i) {
if (v.k.contains(i.key())) {
PIString f = k[i.key()].formula_;
CDType & cdt = v.k[i.key()];
cdt.formula_ = f;
k[i.key()] = cdt;
used << i.key();
}
if (mode) {
CDType & ck(k[i.key()]);
if (prev_k_f_bn.contains(ck.name_))
ck.setFormula(prev_k_f_bn[ck.name_]);
}
}
//piCout << " after" << k.size();
for (i = v.k.begin(); i != v.k.end(); ++i) {
if (!used.contains(i.key()))
k[i.key()] = i.value();
CDType & ck(k[i.key()]);
ck.setFormula(prev_k_f_bn.value(ck.name_));
}
used.clear();
PIMap<int, CDSection>::iterator j;
for (j = s.begin(); j != s.end(); ++j) {
if (v.s.contains(j.key()))
j.value().update(v.s[j.key()], mode);
used << j.key();
}
for (j = v.s.begin(); j != v.s.end(); ++j) {
if (!used.contains(j.key()))
s[j.key()] = j.value();
}*/
// piCout << "[CDSection] update end";
}
bool CDSection::isSameStructure(CDSection & v) {
PIMap<PIString, int> cd_ids;
PIMap<int, CDType>::iterator i;
for (i = cd.begin(); i != cd.end(); ++i)
cd_ids[i.value().name()] = i.key();
for (i = v.cd.begin(); i != v.cd.end(); ++i) {
if (!cd_ids.contains(i.value().name())) continue;
//piCout << i.key() << k[i.key()].name() << i.value().name();
if (cd[cd_ids[i.value().name()]].index() != i.key())
return false;
}
PIMap<int, CDSection>::iterator j;
for (j = v.s.begin(); j != v.s.end(); ++j) {
if (!s.contains(j.key())) continue;
if (!s[j.key()].isSameStructure(j.value()))
return false;
}
return true;
}
void CDSection::prepareCalculate() {
PIMap<int, CDType>::iterator i;
for (i = cd.begin(); i != cd.end(); ++i) {
i.value().parent = this;
i.value().calculated = false;
}
PIMap<int, CDSection>::iterator j;
for (j = s.begin(); j != s.end(); ++j)
j.value().prepareCalculate();
}
void CDSection::calculateRecursive(PIEvaluator * e) {
PIMap<int, CDType>::iterator i;
for (i = cd.begin(); i != cd.end(); ++i)
i.value().calculate(e);
PIMap<int, CDSection>::iterator j;
for (j = s.begin(); j != s.end(); ++j)
j.value().calculateRecursive(e);
}
void CDSection::setSelectedX(bool yes) {
PIMap<int, CDType>::iterator i;
for (i = cd.begin(); i != cd.end(); ++i)
i.value().x_enabled = yes;
PIMap<int, CDSection>::iterator j;
for (j = s.begin(); j != s.end(); ++j)
j.value().setSelectedX(yes);
}
PIVector<PIDeque<int> > CDSection::collectX() const {
PIVector<PIDeque<int> > ret;
PIMap<int, CDType>::const_iterator i;
for (i = cd.begin(); i != cd.end(); ++i) {
if (i.value().x_enabled)
ret << i.value().path();
}
PIMap<int, CDSection>::const_iterator j;
for (j = s.constBegin(); j != s.constEnd(); ++j)
ret << j.value().collectX();
return ret;
}
void CDSection::makePath(PIDeque<int> p) {
PIDeque<int> tp;
PIMap<int, CDType>::iterator i;
for (i = cd.begin(); i != cd.end(); ++i) {
tp = p;
tp << i.key();
i.value().path_ = tp;
//piCout << "path for" << i.value().name() << tp;
}
PIMap<int, CDSection>::iterator j;
for (j = s.begin(); j != s.end(); ++j) {
tp = p;
tp << j.key();
j.value().makePath(tp);
}
}
PIVector<CDType * > CDSection::children(bool recursive) const {
PIVector<CDType * > ret;
PIMap<int, CDType>::const_iterator i;
for (i = cd.begin(); i != cd.end(); ++i)
ret << const_cast<CDType * >(&(i.value()));
if (!recursive) return ret;
PIMap<int, CDSection>::const_iterator j;
for (j = s.constBegin(); j != s.constEnd(); ++j)
ret << j.value().children(true);
return ret;
}
PIVariantTypes::Enum CDSection::enumValues() const {
PIVariantTypes::Enum ret;
PIMap<int, CDType>::const_iterator i;
for (i = cd.constBegin(); i != cd.constEnd(); ++i)
ret << PIVariantTypes::Enumerator(i.key(), i.value().name());
return ret;
}

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#ifndef CDUTILS_TYPES_H
#define CDUTILS_TYPES_H
#include "pistring.h"
#include "pimap.h"
#include "pivariant.h"
class PIIODevice;
class PIEvaluator;
class CD_Pult;
class CDItem;
class CDItemModel;
namespace CDUtils {
class CDSection;
enum UpdateMode {
SaveByIndex = 0x01,
SaveByName = 0x02,
Merge = 0x04
};
enum MessageType {
Log = 1,
MessageBox,
};
typedef PIFlags<UpdateMode> UpdateModeFlags;
class CDType {
friend class CDSection;
friend class CDCore;
friend class Interface;
friend class XInterface;
public:
enum cdT {cdNull, cdK, cdX, cdC, cdM};
enum XMode {X_Current, X_All_Avg};
CDType();
CDType(int i, const PIString & n, const PIString & t, const PIString & v, const PIString & f, const PIString & c, cdT cd_t);
CDType & operator =(double x);
int index() const {return index_;}
PIString name() const {return name_;}
PIString type() const;
PIString value() const;
PIVariant variantValue() const;
PIString formula() const {return formula_;}
PIString comment() const {return comment_;}
double toDouble() const {return value_d;}
int toInt() const {return value_i;}
bool toBool() const {return value_b;}
cdT cd_type() const {return cd_type_;}
void setValue(const PIString & value_);
void setVariantValue(const PIVariant & value_);
void setFormula(const PIString & formula);
void setComment(const PIString & comment) {comment_ = comment;}
operator double() const {return value_d;}
const PIVariantTypes::Enum & enumValues() const {return enum_values;}
void setEnumValues(const PIVariantTypes::Enum & ev) {enum_values = ev;}
const PIString & errorString() const {return error_;}
PIDeque<int> path() const {return path_;}
PIStringList pathString() const;
void setXMode(XMode mode) {mode_ = mode;}
void setAvg(int avg) {avg_size = avg;}
XMode xmode() const {return mode_;}
XMode xmode_rec() const {return rmode_;}
int avg() const {return avg_size;}
bool isSelectedX() const {return x_enabled;}
void readX(PIByteArray & ba);
void writeX(PIByteArray & ba);
PIVector<double> history;
protected:
bool calculate(PIEvaluator * e, PIVector<const CDType * > stack = PIVector<const CDType * >());
PIVariantTypes::Enum parseEnumComment(PIString c);
cdT cd_type_;
int index_;
PIString name_, type_;
PIString value_s, formula_, comment_, error_;
PIVariantTypes::Enum enum_values;
CDSection * parent;
PIDeque<int> path_;
double value_d;
int value_i;
bool value_b, calculated, x_enabled;
PIVector<double> avg_h;
int avg_size;
XMode mode_, rmode_;
};
class CDSection {
friend class CDCore;
friend class Interface;
friend class XInterface;
friend class ::CD_Pult;
friend class ::CDItem;
friend class ::CDItemModel;
public:
CDSection(CDType::cdT type_ = CDType::cdNull);
bool test(int v) {return cd.value(v).toBool();}
// CDType & operator [](int v) {if (!k.contains(v)) k[v].index_ = v; return k[v];}
CDType & operator [](int v) {return cd[v];}
const CDType operator [](int v) const {return cd[v];}
CDType & operator [](const PIString & name_) {return getByName(name_);}
const CDType operator [](const PIString & name_) const {return const_cast<CDSection*>(this)->getByName(name_);}
CDType & operator [](const PIDeque<int> & path_) {return getByPath(path_);}
const CDType operator [](const PIDeque<int> & path_) const {return const_cast<CDSection*>(this)->getByPath(path_);}
CDSection & section(int v);
const CDSection section(int v) const;
bool isEmpty() const {return cd.isEmpty() && s.isEmpty();}
bool exists(PIDeque<int> path) const;
int count(bool recursive = true) const;
int sectionsCount() const;
PIVector<int> indexes() const {return cd.keys();}
PIStringList index_names() const;
void calculate();
void makePath(PIDeque<int> p = PIDeque<int>());
PIVector<CDType * > children(bool recursive = true) const;
PIVariantTypes::Enum enumValues() const;
PIString name;
PIString alias;
protected:
CDSection(PIMap<int, CDType> k_, PIMap<int, CDSection> s_) {
cd = k_;
s = s_;
}
CDType & getByName(const PIString & name_);
CDType & getByPath(const PIDeque<int> & path_);
void write(PIIODevice * d, const PIString & prefix = PIString());
void read(const void * ep);
void update(CDSection & v, UpdateModeFlags mode = SaveByName);
bool isSameStructure(CDSection & v);
void prepareCalculate();
void calculateRecursive(PIEvaluator * e);
void setSelectedX(bool yes);
PIVector<PIDeque<int> > collectX() const;
PIMap<int, CDType> cd;
mutable PIMap<int, CDSection> s;
CDType null;
CDType::cdT cd_type_;
};
}
inline PICout operator <<(PICout s, const CDUtils::CDType & v) {
s.space();
s.setControl(0, true);
switch (v.cd_type()) {
case CDUtils::CDType::cdK : s << "K["; break;
case CDUtils::CDType::cdX : s << "X["; break;
case CDUtils::CDType::cdC : s << "C["; break;
case CDUtils::CDType::cdM : s << "M["; break;
default : s << "Null["; break;
}
s << v.name() << "(" << v.index() << ")] = " << v.value();
s.restoreControl();
return s;
}
#endif // CDUTILS_TYPES_H

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#include "cdutils_x.h"
#include "cdutils_core.h"
using namespace CDUtils;
XInterface X;
XInterface::XInterface(): Interface(CDType::cdX) {
CONNECTU(core, X_ReceivedX, this, receivedX);
}
void XInterface::setEnabled(const CDType & x, bool en) {
core->x_mutex.lock();
CDType & t((*s)[x.path()]);
if (t.cd_type() != CDType::cdX) {
core->x_mutex.unlock();
return;
}
t.x_enabled = en;
//piCout << t << "x_enabled" << en;
core->need_rebuild_x = true;
core->x_mutex.unlock();
}
PIVector<PIDeque<int> > XInterface::enabledList() const {
return CDCore::instance()->x_selected;
}
void XInterface::setEnabledList(const PIVector<PIDeque<int> > & l) {
CDCore::instance()->x_selected = l;
}
void XInterface::lock() {
CDCore::instance()->x_mutex.lock();
}
void XInterface::unlock() {
CDCore::instance()->x_mutex.unlock();
}
void XInterface::start(double freq) {
core->startX(freq);
}
void XInterface::stop() {
core->stopX();
}

37
test/cd_utils/cdutils_x.h Normal file
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#ifndef CDUTILS_X_H
#define CDUTILS_X_H
#include "cdutils_interface.h"
namespace CDUtils {
class XInterface: public Interface
{
PIOBJECT_SUBCLASS(XInterface, Interface)
public:
XInterface();
EVENT1(keepNamesRequest, bool*, xn)
EVENT1(receivedX, PIVector<PIDeque<int> >, pathes)
void enable(const CDType & x) {setEnabled(x, true);}
void disable(const CDType & x) {setEnabled(x, false);}
void setEnabled(const CDType & x, bool en);
void setDisabled(const CDType & x, bool dis) {setEnabled(x, !dis);}
PIVector<PIDeque<int> > enabledList() const;
void setEnabledList(const PIVector<PIDeque<int> > & l);
void lock();
void unlock();
void start(double freq = 20.);
void stop();
};
}
extern CDUtils::XInterface X;
#endif // CDUTILS_X_H

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#include "cdutils_k.h"
#include "cdutils_x.h"
#include "cdutils_c.h"
#include "cdutils_m.h"
#include "cdutils_core.h"
#include "cdtest.h"
#include "pip.h"
#include "k_description.h"
using namespace CDUtils;
class Core : public PIObject
{
PIOBJECT(Core)
public:
Core() {
CDCore::instance()->initApp();
// piCout << "testCore";
CONNECTU(&timer, tickEvent, this, timerDone);
CONNECTU(&X, received, this, xrecv);
CONNECTU(&C, received, this, crecv);
t = 0.;
}
void load() {
rf.open("k.dat", PIIODevice::ReadWrite);
K.read(&rf);
rf.close();
}
void save() {
rf.open("k_out.txt", PIIODevice::ReadWrite);
rf.resize(0);
K.write(&rf);
rf.close();
// rf.open("k_out.txt", PIIODevice::ReadWrite);
// K.read(&rf);
// rf.close();
// rf.open("k_out2.txt", PIIODevice::ReadWrite);
// rf.resize(0);
// K.write(&rf);
// rf.close();
// rf.open("k_out2.txt", PIIODevice::ReadWrite);
// K.read(&rf);
// rf.close();
// rf.open("k_out3.txt", PIIODevice::ReadWrite);
// rf.resize(0);
// K.write(&rf);
// rf.close();
}
void test() {
X.lock();
X[KD::Frequency] = 100;
X.section(KD::Spectrometer)[KD::Temperature_default] = sin(t);
t += 0.01;
X.unlock();
/*piCout << "count" << K.count();
piCout << K[First];
piCout << K[Second];*/
}
EVENT_HANDLER(void, ksend) {piCout << "sended k";}
EVENT_HANDLER(void, crecv) {
piCout << "received c";
C.connect(C.section(KD::Logs).section(KD::Spec).section(KD::Formats)[KD::Binary], this, HANDLER(cmd));
C.autoConnect(this);
}
EVENT_HANDLER(void, xrecv) {
piCout << "received x";
if (!timer.isRunning()) timer.start(10);
X.start();
}
EVENT_HANDLER(void, timerDone) {test();}
EVENT_HANDLER(void, cmd) {piCout << "command cmd";}
EVENT_HANDLER(void, c_Pause) {
piCout << "command pause";
M[KD::Main] << "rec command" << C[KD::Pause];
M.messageBox(M.root()[KD::Core], "init successfull");
}
EVENT_HANDLER(void, c_Spectrometer_Connection) {piCout << "command spec_conn";}
private:
PIFile rf;
PITimer timer;
double t;
};
int main(int argc, char *argv[]) {
X.start();
piSleep(1);
//CDCore::instance()->destroy();
piCout << "DELETED";
return 0;
}

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#ifndef K_DESCRIPTION_H
#define K_DESCRIPTION_H
namespace KD {
enum Sections {
Startup,
Spectrometer,
Switch,
Formats,
Logs,
Detector,
CoreOutput,
};
enum LogFormat {
Text, //b text
Binary, //b binary
};
enum LogType {
Data, //b write data logs
Spec, //b write spectrogram logs
ARINC, //b ARINC
};
enum KLogConfig {
// LogFormat = Formats
StartupWrite, //b
ApplyBinaryLogHeader, //b Apply settings under ID = 255 for binary log
MaximumWriteFrequency, //f Maximum frequency for log in Hz, or 0 for unlimited
};
enum SwitchType {
BaySpec,
DiCon,
};
enum SpectrometerConnection {
TCP,
USB,
};
enum PeakSearchMode {
Left,
Max,
Right,
};
enum CoreMode {
ModeSpectrometer,
ModePlayer,
ModePeaks,
};
enum KSpectrometer {
Connection, //e ${SpectrometerConnection}
Temperature_compensation, //b Use temperature sensor or default temperature witout compensation
Temperature_default, //f Default temperature using if compensation disabled
};
enum KSwitch {
Enabled, //b 0 or 1 Use optical switch or not
Wait, //n Delay after switching channel, ms
Autoscan, //e {0 - scan with our forces, 1 - SDK autoscan}
Autoscan_offset, //n Offset for SDK autoscan
Type, //e ${SwitchType}
};
enum KDetector {
Threshold_Min, //f
Threshold_Max, //f
SideSize, //f
SideOffset, //f
PeaksSearch, //e ${PeakSearchMode}
};
enum KCoreOutput {
SendSpectrum, //b Send spectrum data or empty vector
SendOnlyCurrentValue, //b Send current values or all stored in 20Hz
};
enum CoreOutputChannel {
GUI,
SecGUI,
ThirdGUI,
};
enum KDescription {
// KSpectrometer = Spectrometer
// KSwitch = Switch
// KDetector = Detector
// KCoreOutput[CoreOutputChannel] = CoreOutput
// KLogConfig[LogType] = Logs
Gratings_history, //n Gratings peak values history, count
Amplitude_history_size, //n Count of history values to calculate sensors amplitude
Fourier_enabled, //b Global fourier enable flag
Fourier_size, //n Size of fourier window, in counts
Fourier_YScale, //f scale for fourier amplitude
Fourier_Max_or_Density, //n 0 - Maximum in fourier window, 1 - Density of fourier window
Mode, //e ${CoreMode} Work mode
SynchronizationEnabled, //b When enabled, start logs and reset time when sync signal received
SynchronizationMode, //e {0 - disabled, 1 - new file, 2 - column in log}
LambdasAutoReset, //b Set lambdas_0 to grating values on first data receive
Gauss_size, //n
//Peak_max_offset, //f in pixels
//Peak_LF_coeff, //f 1. - no filtering
GratingOverloadMax, //n
GratingOverloadMin, //n
SendLED, //b Send to LED Arduino serial port current state
SynchronizationClearValues, //b clear gratings and sensors values and history on sync
PeaksModeFrequency, //f
PeaksModeAdditionNm_1, //f Addition nm to peaks in ModePeaks, channel 1
PeaksModeAdditionNm_2, //f Addition nm to peaks in ModePeaks, channel 2
PeaksModeAdditionNm_3, //f Addition nm to peaks in ModePeaks, channel 3
PeaksModeAdditionNm_4, //f Addition nm to peaks in ModePeaks, channel 4
};
enum XDescription {
// KSpectrometer = Spectrometer
// KSwitch = Switch
// KDetector = Detector
// KCoreOutput[CoreOutputChannel] = CoreOutput
// KLogConfig[LogType] = Logs
State, //b
Frequency, //n cur freq
//Fourier_enabled, //b Global fourier enable flag
};
enum CDescription {
// KSpectrometer = Spectrometer
// KCoreOutput[CoreOutputChannel] = CoreOutput
// KLogConfig[LogType] = Logs
Halt, //b
Reboot, //n cur freq
Pause, //b Global fourier enable flag
};
enum MDescription {
Main, //b
Core, //s
Warnings, //b Global fourier enable flag
};
}
#endif // K_DESCRIPTION_H

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project(kx_utils)
cmake_minimum_required(VERSION 2.6)
if (POLICY CMP0017)
cmake_policy(SET CMP0017 NEW)
endif()
if (NOT LIBPROJECT)
find_package(PIP REQUIRED)
endif ()
if (MINGW)
find_package(MinGW REQUIRED)
endif()
include_directories(${CMAKE_CURRENT_BINARY_DIR} ${CMAKE_CURRENT_SOURCE_DIR} ${PIP_INCLUDES})
set(KX_PULT_NAME "kx_pult")
option(KX_PULT "Build ${KX_PULT_NAME}" 1)
option(LIB "System install" 1)
option(DEBUG "Build with -g3" 0)
set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -O2 -Wall")
if (DEBUG)
set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -g3")
endif()
set(CPPS_UTILS "kx_coeffs.cpp" "piprotocol.cpp")
set(HDRS_UTILS "kx_coeffs.h" "kx_protocol_x.h" "kx_protocol_c.h" "piprotocol.h")
if (DEFINED ENV{QNX_HOST})
add_library(${PROJECT_NAME} STATIC ${CPPS_UTILS})
else()
add_library(${PROJECT_NAME} SHARED ${CPPS_UTILS})
endif()
target_link_libraries(${PROJECT_NAME} ${PIP_LIBRARY})
message(STATUS "Building ${PROJECT_NAME}")
if (NOT DEFINED ENV{QNX_HOST})
if (KX_PULT)
find_package(Qt4 REQUIRED)
find_package(QAD REQUIRED)
find_package(OpenGL REQUIRED)
include_directories(${QT_INCLUDES} ${QAD_INCLUDES})
set(CPPS "kx_pult.cpp" "kx_pult.h" "kx_pult.ui" "main_kx_pult.cpp")
set(MOCS "kx_pult.h")
file(GLOB UIS "*.ui")
file(GLOB RES "*.qrc")
qt4_wrap_cpp(CMOCS ${MOCS} OPTIONS -nw)
qt4_wrap_ui(CUIS ${UIS})
qt4_add_resources(RESS ${RES})
add_executable(${KX_PULT_NAME} WIN32 ${CPPS} ${CMOCS} ${CUIS} ${RESS} ${MOCS})
set(LIBS ${QT_QTCORE_LIBRARY} ${QT_QTGUI_LIBRARY} ${QT_QTOPENGL_LIBRARY} ${OPENGL_LIBRARIES} ${PIP_LIBRARY} qad_graphic4 qad_utils4 qad_widgets4)
target_link_libraries(${KX_PULT_NAME} ${LIBS} ${PROJECT_NAME})
endif()
endif()
if (LIB)
if (WIN32)
set(CMAKE_INSTALL_PREFIX ${MINGW_DIR})
install(FILES ${HDRS_UTILS} DESTINATION ${MINGW_INCLUDE})
install(TARGETS ${PROJECT_NAME} DESTINATION ${MINGW_LIB})
install(TARGETS ${PROJECT_NAME} DESTINATION ${MINGW_BIN})
else()
if(APPLE)
set(CMAKE_INSTALL_PREFIX /usr/local)
else()
if (DEFINED ANDROID_PLATFORM)
set(CMAKE_INSTALL_PREFIX ${ANDROID_SYSTEM_LIBRARY_PATH}/usr)
else()
set(CMAKE_INSTALL_PREFIX /usr)
endif()
endif()
install(FILES ${HDRS_UTILS} DESTINATION ${CMAKE_INSTALL_PREFIX}/include)
install(TARGETS ${PROJECT_NAME} DESTINATION ${CMAKE_INSTALL_PREFIX}/lib)
endif()
message(STATUS "Install ${PROJECT_NAME} to system \"${CMAKE_INSTALL_PREFIX}\"")
else()
install(TARGETS ${PROJECT_NAME} DESTINATION bin)
message(STATUS "Install ${PROJECT_NAME} to local \"bin\"")
endif()
if (NOT DEFINED ENV{QNX_HOST})
if (KX_PULT)
install(TARGETS ${KX_PULT_NAME} DESTINATION ${CMAKE_INSTALL_PREFIX}/bin)
endif()
endif()

4
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#! /bin/bash
VERBOSE=1 make clean
rm -rvf CMakeFiles
rm -vf CMakeCache.txt Makefile cmake_install.cmake install_manifest.txt *.user* *~ *cxx moc_* ui_* qrc_* *.o

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#make clean
del /q /f /s CMakeFiles
rmdir /q /s CMakeFiles
del /q /f CMakeCache.txt Makefile cmake_install.cmake install_manifest.txt *.user* *~ *cxx moc_* ui_* qrc_* *.o *.exe *.a *.dll *.lib core *.qrc.depends

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#include "kx_coeffs.h"
#include "kx_protocol_x.h"
double X[KX_X_COUNT];
PIVector<double> K;
KX_Coefficients::KX_Coefficients(const PIString & config, const PIString & name, bool _pult) {
setName("kx_coeffs");
PIConfig conf(config, PIIODevice::ReadOnly);
fname = conf.getValue(name).getValue("file", "k.dat");
readCoeffs();
int ns = piMaxi(conf.getValue(name).getValue("count", 0), K.size_s());
if (ns > K.size_s()) {
K.resize(ns, 0.f);
formulas.resize(ns);
writeCoeffs();
}
config_ = config;
name_ = name;
pult_ = _pult;
k_protocol = 0;
renew();
//readCoeffs();
}
KX_Coefficients::~KX_Coefficients() {
stop();
k_protocol->stop();
delete k_protocol;
}
void KX_Coefficients::readCoeffs() {
{
PIConfig conf(fname, PIIODevice::ReadOnly);
int cnt = conf.rootEntry().childCount();
K.resize(cnt);
formulas.resize(cnt);
PIString kn, cf;
for (int i = 0; i < cnt; i++) {
kn = "k" + PIString::fromNumber(i);
K[i] = (double)conf.getValue(kn, 0.f);
cf = conf.getValue(kn + ".formula", "");
if (cf.isEmpty()) cf = PIString::fromNumber(K[i]);
formulas[i] = cf;
}
}
k_content = PIFile(fname, PIIODevice::ReadOnly).readAll();
//piCout << k_content.size();
piCoutObj << "Readed" << K.size_s() << "coefficients in" << k_content.size_s() << "bytes";
coeffs_cnt = K.size_s();
}
void KX_Coefficients::writeCoeffs() {
PIFile::remove(fname);
PIFile conf(fname, PIIODevice::ReadWrite);
//conf.clear();
for (int i = 0; i < K.size_s(); i++) {
conf << "k" + PIString::fromNumber(i) << " = " << PIString::fromNumber(K[i]).replaceAll(",", ".") << "\n";
conf << "k" + PIString::fromNumber(i) << ".formula = " << formulas[i] << "\n";
}
//conf.close();
//conf.writeAll();
k_content = conf.readAll();
//piCout << k_content.size();
piCoutObj << "Written" << K.size_s() << "coefficients in" << k_content.size_s() << "bytes";
coeffs_cnt = K.size_s();
}
void KX_Coefficients::setKFile(const PIString & f) {
fname = f;
readCoeffs();
}
void KX_Coefficients::sendCoeffs() {
stop();
int curcnt, pcnt = (k_content.size_s() - 1) / __BYTES_IN_PACKET + 1;
k_protocol->to_k.full_count = k_content.size_s();
for (int i = 0; i < pcnt; i++) {
k_protocol->to_k.first_index = i * __BYTES_IN_PACKET;
if (i == pcnt - 1) curcnt = k_content.size_s() % __BYTES_IN_PACKET;
else curcnt = __BYTES_IN_PACKET;
//cout << "send " << curcnt << " coeffs\n";
k_protocol->to_k.count = curcnt;
memcpy(k_protocol->to_k.coeffs, k_content.data(k_protocol->to_k.first_index), curcnt);
//for (int j = 0; j < curcnt; j++) k_protocol->to_k.coeffs[j] = K.at(k_protocol->to_k.first_index + j);
k_protocol->send();
piMSleep(5);
}
//cout << "waiting for commit ...\n";
waitingCommit = true;
tm.reset();
start(10);
}
void KX_Coefficients::receiveCoeffs() {
stop();
k_protocol->to_k.full_count = k_protocol->to_k.first_index = k_protocol->to_k.count = -6;
k_protocol->send();
//cout << "request send\n";
//cout << "waiting for receive ...\n";
waitingCommit = false;
tm.reset();
start(10);
}
void KX_Coefficients::received(bool correct) {
//cout << "kpi received " << correct << endl;
if (!correct) return;
k_syns = k_protocol->from_k;
if (waitingCommit) {
if (k_syns.first_index != -1 ||
k_syns.full_count != -1 ||
k_syns.count != -k_content.size_s()) return;
//cout << "commit received\n";
waitingCommit = false;
stop();
//cout << "send succeed\n";
//emit sendSucceed();
sendSucceed();
return;
} else {
if (k_syns.first_index == -6 && k_syns.full_count == -6 && k_syns.count == -6) {
//cout << "request received\n";
sendCoeffs();
return;
};
}
if (k_syns.first_index < 0 || k_syns.count < 0) return;
if (k_syns.first_index == 0) {
//cout << "first receive\n";
k_tmp.resize(k_syns.full_count);
received_cnt = 0;
}
//for (int i = 0; i < k_syns.count; i++) K.at(k_syns.first_index + i) = k_syns.coeffs[i];
//piCout << k_tmp.size() << k_syns.first_index << k_syns.count;
memcpy(k_tmp.data(k_syns.first_index), k_syns.coeffs, k_syns.count);
received_cnt += k_syns.count;
tm.reset();
//cout << "received " << k_syns.count << " bytes with " << k_syns.first_index << " first\n";
if (received_cnt < k_syns.full_count) return;
//cout << "finally received " << received_cnt << " bytes\n";
stop();
PIFile::remove(fname);
PIFile conf(fname, PIIODevice::ReadWrite);
conf.write(k_tmp.data(), k_tmp.size_s());
conf.close();
readCoeffs();
//writeCoeffs();
k_protocol->to_k.full_count = k_protocol->to_k.first_index = -1;
k_protocol->to_k.count = -received_cnt;
k_protocol->send();
waitingCommit = false;
//emit receiveSucceed();
receiveSucceed();
//cout << "receive succeed\n";
}
void KX_Coefficients::renew() {
if (k_protocol != 0) {
k_protocol->stop();
delete k_protocol;
}
k_protocol = new __KPi(config_, name_, pult_);
CONNECT1(void, bool, k_protocol, received, this, received)
waitingCommit = false;
}
void KX_Coefficients::tick(void * , int ) {
//piCout << "timer" << tm.elapsed_s();
if (tm.elapsed_s() < 10.) return;
if (waitingCommit) {
//cout << "commit timeout\n";
//cout << "send failed\n";
//emit sendFailed();
sendFailed();
} else {
//cout << "receive timeout\n";
//cout << "receive failed\n";
//emit receiveFailed();
receiveFailed();
}
waitingCommit = false;
stop();
}

95
test/kx_utils/kx_coeffs.h Normal file
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#ifndef KX_COEFFS_H
#define KX_COEFFS_H
#include "piprotocol.h"
#define __BYTES_IN_PACKET 4000
extern PIVector<double> K;
class __KPi: public PIProtocol
{
PIOBJECT_SUBCLASS(__KPi, PIProtocol)
public:
#pragma pack (push, 1)
struct KX_K_Sync {
uchar type;
uchar addr_to;
int count;
int full_count;
int first_index;
uchar coeffs[__BYTES_IN_PACKET];
uint checksum;
};
#pragma pack (pop)
__KPi(const PIString & config, const PIString & name, bool _pult = false): PIProtocol(config, name, &from_k, 2, &(from_k.count), sizeof(from_k) - 2, &to_k, sizeof(to_k)) {
PIConfig conf(config, PIIODevice::ReadOnly);
PIConfig::Entry ce = conf.getValue(name);
to_k.type = from_k.type = ce.getValue("type", 0xA);
to_k.addr_to = ce.getValue("addr_k", 0x15);
from_k.addr_to = ce.getValue("addr_pult", 0x75);
if (_pult) piSwap<uchar>(to_k.addr_to, from_k.addr_to);
packetExtractor()->setHeader(PIByteArray(&from_k, 2));
start();
}
KX_K_Sync to_k, from_k;
private:
bool validate() {
return (from_k.checksum == checksum_i(&from_k, sizeof(from_k) - 4));
}
bool aboutSend() {
to_k.checksum = checksum_i(&to_k, sizeof(to_k) - 4);
return true;
}
};
class KX_Coefficients: public PITimer
{
PIOBJECT_SUBCLASS(KX_Coefficients, PITimer)
friend class KX_Pult;
public:
KX_Coefficients(const PIString & config, const PIString & name = "k", bool _pult = false);
~KX_Coefficients();
void readCoeffs();
void writeCoeffs();
void sendCoeffs();
void receiveCoeffs();
bool isReady() const {return !waitingCommit;}
const PIString & fileName() const {return fname;}
const PIString * fileName_ptr() const {return &fname;}
int coeffsCount() {coeffs_cnt = K.size_s(); return coeffs_cnt;}
const int * coeffsCount_ptr() const {return &coeffs_cnt;}
const PIString & formula(int index) const {return formulas[index];}
void setFormula(int index, const PIString & f) {formulas[index] = f;}
void setKFile(const PIString & f);
EVENT(sendSucceed)
EVENT(sendFailed)
EVENT(receiveSucceed)
EVENT(receiveFailed)
__KPi * k_protocol;
private:
EVENT_HANDLER1(void, received, bool, correct);
void renew();
void tick(void *, int);
__KPi::KX_K_Sync k_syns;
bool pult_, waitingCommit;
int received_cnt, coeffs_cnt;
PIString fname, config_, name_;
PIStringList formulas;
PIByteArray k_content, k_tmp;
PITimeMeasurer tm;
};
#endif // KX_COEFFS_H

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#ifndef KX_PROTOCOL_C_H
#define KX_PROTOCOL_C_H
#include "piprotocol.h"
#pragma pack (push, 1)
struct KX_C_Header {
uchar type;
uchar addr_to;
};
struct KX_C_Command: KX_C_Header {
KX_C_Command() {command = -1;}
int command;
uint checksum;
};
struct KX_C_Event: KX_C_Header {
KX_C_Event() {event = -1;}
PISystemTime time;
int event;
uint checksum;
};
#pragma pack (pop)
// Client side
class KX_Protocol_C: public PIProtocol
{
PIOBJECT_SUBCLASS(KX_Protocol_C, PIProtocol)
public:
KX_Protocol_C(const PIString & config, const PIString & name = "c"): PIProtocol(config, name, &from_buff, 2, &(from_buff.command), sizeof(from_buff) - 2, &to_pult, sizeof(to_pult)) {
PIConfig conf(config, PIIODevice::ReadOnly);
PIConfig::Entry ce = conf.getValue(name);
to_pult.type = from_buff.type = ce.getValue("type", 0xC);
to_pult.addr_to = ce.getValue("addr_pult", 0x15);
from_buff.addr_to = ce.getValue("addr_c", 0x75);
from_pult = from_buff;
packetExtractor()->setSplitMode(PIPacketExtractor::Header);
packetExtractor()->setHeader(PIByteArray(&from_buff, 2));
startReceive();
}
void sendEvent(int ev) {
to_pult.time = PISystemTime::current();
to_pult.event = ev;
send();
}
EVENT1(commandReceived, int, command)
KX_C_Command from_pult;
KX_C_Event to_pult;
private:
bool validate() {
if (checksum_i(&from_buff, sizeof(from_buff) - 4) != from_buff.checksum) return false;
from_pult = from_buff;
commandReceived(from_pult.command);
return true;
}
bool aboutSend() {
to_pult.checksum = checksum_i(&to_pult, sizeof(to_pult) - 4);
return true;
}
KX_C_Command from_buff;
};
// Pult side
class __KX_Protocol_C: public PIProtocol
{
PIOBJECT_SUBCLASS(__KX_Protocol_C, PIProtocol)
public:
__KX_Protocol_C(const PIString & config, const PIString & name): PIProtocol(config, name, &from_buff, 2, &(from_buff.time), sizeof(from_buff) - 2, &to_c, sizeof(to_c)) {
PIConfig conf(config, PIIODevice::ReadOnly);
PIConfig::Entry ce = conf.getValue(name);
to_c.type = from_buff.type = ce.getValue("type", 0xC);
to_c.addr_to = ce.getValue("addr_c", 0x75);
from_buff.addr_to = ce.getValue("addr_pult", 0x15);
from_c = from_buff;
packetExtractor()->setSplitMode(PIPacketExtractor::Header);
packetExtractor()->setHeader(PIByteArray(&from_buff, 2));
startReceive();
}
void sendCommand(int cmd) {
to_c.command = cmd;
send();
}
EVENT2(eventReceived, int, event, PISystemTime, time)
KX_C_Event from_c;
KX_C_Command to_c;
private:
bool validate() {
if (checksum_i(&from_buff, sizeof(from_buff) - 4) != from_buff.checksum) return false;
from_c = from_buff;
eventReceived(from_c.event, from_c.time);
return true;
}
bool aboutSend() {
//piCout << "send command" << to_c.command;
to_c.checksum = checksum_i(&to_c, sizeof(to_c) - 4);
return true;
}
KX_C_Event from_buff;
};
#endif // KX_PROTOCOL_C_H

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#ifndef KX_PROTOCOL_X_H
#define KX_PROTOCOL_X_H
#include "piprotocol.h"
#define KX_X_PACKET_NUM 20
#define KX_X_COUNT 16384
extern double X[KX_X_COUNT];
#pragma pack (push, 1)
struct KX_X_Header {
uchar type;
uchar addr_to;
};
struct KX_X_Numbers: KX_X_Header {
int x_num[KX_X_PACKET_NUM];
uint checksum;
};
struct KX_X_Data: KX_X_Header {
int x_num[KX_X_PACKET_NUM];
double x_data[KX_X_PACKET_NUM];
uint checksum;
};
#pragma pack (pop)
// Client side
class KX_Protocol_X: public PIProtocol
{
PIOBJECT_SUBCLASS(KX_Protocol_X, PIProtocol)
public:
KX_Protocol_X(const PIString & config, const PIString & name = "x"): PIProtocol(config, name, &from_buff, 2, &(from_buff.x_num[0]), sizeof(from_buff) - 2, &to_pult, sizeof(to_pult)) {
PIConfig conf(config, PIIODevice::ReadOnly);
PIConfig::Entry ce = conf.getValue(name);
to_pult.type = from_buff.type = ce.getValue("type", 0xB);
to_pult.addr_to = ce.getValue("addr_pult", 0x15);
from_buff.addr_to = ce.getValue("addr_x", 0x75);
from_pult = from_buff;
for (int i = 0; i < KX_X_PACKET_NUM; ++i)
to_pult.x_num[i] = from_pult.x_num[i] = -1;
packetExtractor()->setSplitMode(PIPacketExtractor::Header);
packetExtractor()->setHeader(PIByteArray(&from_buff, 2));
start();
}
KX_X_Numbers from_pult;
KX_X_Data to_pult;
private:
bool validate() {
if (checksum_i(&from_buff, sizeof(from_buff) - 4) != from_buff.checksum) return false;
from_pult = from_buff;
return true;
}
bool aboutSend() {
for (int i = 0; i < KX_X_PACKET_NUM; ++i) {
to_pult.x_num[i] = from_pult.x_num[i];
to_pult.x_data[i] = from_pult.x_num[i] < 0 ? 0. : X[from_pult.x_num[i]];
}
to_pult.checksum = checksum_i(&to_pult, sizeof(to_pult) - 4);
return true;
}
KX_X_Numbers from_buff;
};
// Pult side
class __KX_Protocol_X: public PIProtocol
{
PIOBJECT_SUBCLASS(__KX_Protocol_X, PIProtocol)
public:
__KX_Protocol_X(const PIString & config, const PIString & name): PIProtocol(config, name, &from_buff, 2, &(from_buff.x_num[0]), sizeof(from_buff) - 2, &to_x, sizeof(to_x)) {
PIConfig conf(config, PIIODevice::ReadOnly);
PIConfig::Entry ce = conf.getValue(name);
to_x.type = from_buff.type = ce.getValue("type", 0xB);
to_x.addr_to = ce.getValue("addr_x", 0x75);
from_buff.addr_to = ce.getValue("addr_pult", 0x15);
from_x = from_buff;
for (int i = 0; i < KX_X_PACKET_NUM; ++i)
to_x.x_num[i] = -1;
packetExtractor()->setSplitMode(PIPacketExtractor::Header);
packetExtractor()->setHeader(PIByteArray(&from_buff, 2));
start();
}
KX_X_Data from_x;
KX_X_Numbers to_x;
private:
bool validate() {
if (checksum_i(&from_buff, sizeof(from_buff) - 4) != from_buff.checksum) return false;
from_x = from_buff;
return true;
}
bool aboutSend() {
to_x.checksum = checksum_i(&to_x, sizeof(to_x) - 4);
return true;
}
KX_X_Data from_buff;
};
#endif // KX_PROTOCOL_X_H

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848
test/kx_utils/kx_pult.cpp Normal file
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#include <QScrollBar>
#include <QMessageBox>
#include <math.h>
#include "kx_pult.h"
#include "ui_kx_pult.h"
#include "piqt.h"
#include "qpiconfig.h"
bool isNormalDouble(const double & v) {
#ifdef WINDOWS
return true;
#else
return !isnan(v) && !isinf(v);
#endif
}
XCheck::XCheck(int index): QWidget() {
index_ = index;
setProperty("index", index);
setMouseTracking(true);
check.setText(QString::number(index + 1) + " ");
check.setAutoFillBackground(true);
spin.setMaximum(KX_X_COUNT - 1);
QBoxLayout * l = new QBoxLayout(QBoxLayout::LeftToRight);
l->setMargin(0);
l->setSpacing(2);
l->addWidget(&check);
l->addWidget(&spin);
setLayout(l);
//check.installEventFilter(this);
//spin.installEventFilter(this);
connect(&spin, SIGNAL(valueChanged(int)), this, SLOT(spinChanged(int)));
connect(&check, SIGNAL(toggled(bool)), this, SLOT(checkChanged_(bool)));
}
bool XCheck::eventFilter(QObject * o, QEvent * e) {
if (e->type() == QEvent::Enter)
qApp->postEvent(this, new QEvent(e->type()));
return QWidget::eventFilter(o, e);
}
KX_Pult::KX_Pult(): QMainWindow(), config_("kx_pult.conf"), name_x("x"), name_c("c"),
config(piqt(config_), QIODevice::ReadWrite), coeffs(config_, "k", true) {
//cout << sizeof(coeffsK.k_protocol->to_k) << endl;
ui = new Ui::KX_Pult();
ui->setupUi(this);
ui->configWidget->setQPIConfig(&config);
ui->configWidget->expandAll();
ui->list->viewport()->installEventFilter(this);
ui->treeK->viewport()->installEventFilter(this);
ui->scrollArea->setAutoFillBackground(false);
ui->scrollAreaWidgetContents->setAutoFillBackground(false);
ui->widget->setAutoFillBackground(false);
ui->label_17->setFixedSize(preferredIconSize(1.25, this));
log_menu.addAction(ui->actionClear);
prot_x = 0;
prot_c = 0;
show_x = config.getValue("show_x", true);
if (!show_x)
ui->tabWidget->removeTab(1);
session.setFile("session_KX_Pult.conf");
session.addEntry(this);
session.addEntry(ui->tabWidget);
session.addEntry(ui->checkKHideEmpty);
session.addEntry(ui->checkKHideNormal);
session.addEntry(ui->checkKHideExpressions);
session.addEntry(ui->checkKAutoCalculate);
needWrite = isPause = false;
timer = 0;
//x.resize(KX_X_PACKET_NUM);
//k.resize(K_NUM);
QPalette pal = palette();
QColor col;
ui->graphic->setGraphicsCount(0);
for (int i = 0; i < KX_X_PACKET_NUM; ++i) {
XCheck * xc = new XCheck(i);
xc->installEventFilter(this);
connect(xc, SIGNAL(valueChanged(int, int)), this, SLOT(changedX(int,int)));
connect(xc, SIGNAL(checkChanged(int, bool)), this, SLOT(toggledX(int, bool)));
col = QColor::fromHsv(360 / KX_X_PACKET_NUM * i, 255, 200);
pal.setColor(QPalette::Button, col);
pal.setColor(QPalette::Window, col);
pal.setColor(QPalette::WindowText, invertColor(col));
xc->check.setPalette(pal);
ui->graphic->addGraphic(QString::number(i), col);
ui->graphic->setGraphicVisible(false, i);
checks << xc;
((QGridLayout * )(ui->widgetChecks->layout()))->addWidget(xc, (i / 10) * 2, i % 10);
QLabel * lbl = new QLabel("0"); lbl->setAlignment(Qt::AlignVCenter | Qt::AlignLeft);
values << lbl;
((QGridLayout * )(ui->widgetChecks->layout()))->addWidget(lbl, (i / 10) * 2 + 1, i % 10);
//xc->show();
}
renew();
icon_record = QIcon(":/icons/media-record.png");
icon_stop = QIcon(":/icons/media-playback-stop.png");
outdir = dir.absolutePath();
if (!dir.exists()) dir.mkdir(outdir);
outdir += "/";
ui->treeK->setColumnWidth(0, 60);
ui->treeK->setColumnWidth(1, 250);
ui->treeK->setColumnWidth(3, 100);
ui->treeK->setColumnWidth(4, 100);
//ui->table->setK(coeffsK.k()->data(), coeffsK.count());
ui->spinSize->setValue(K.size_s());
addToList(trUtf8("Read K file \"%1\": %2 coeffs, %3 bytes").arg(PI2QString(coeffs.fileName())).arg(K.size_s()).arg(coeffs.k_content.size_s()), Qt::darkMagenta);
CONNECT(void, &coeffs, sendFailed, this, pip_sendFailed);
CONNECT(void, &coeffs, sendSucceed, this, pip_sendSucceed);
CONNECT(void, &coeffs, receiveFailed, this, pip_receiveFailed);
CONNECT(void, &coeffs, receiveSucceed, this, pip_receiveSucceed);
connect(this, SIGNAL(q_k_sendFailed()), this, SLOT(k_sendFailed()), Qt::QueuedConnection);
connect(this, SIGNAL(q_k_sendSucceed()), this, SLOT(k_sendSucceed()), Qt::QueuedConnection);
connect(this, SIGNAL(q_k_receiveFailed()), this, SLOT(k_receiveFailed()), Qt::QueuedConnection);
connect(this, SIGNAL(q_k_receiveSucceed()), this, SLOT(k_receiveSucceed()), Qt::QueuedConnection);
connect(&timer_diag, SIGNAL(timeout()), this, SLOT(updateDiag()));
connect(&session, SIGNAL(loading(QPIConfig&)), this, SLOT(loading(QPIConfig&)));
connect(&session, SIGNAL(saving(QPIConfig&)), this, SLOT(saving(QPIConfig&)));
connect(ui->checkKHideEmpty, SIGNAL(toggled(bool)), this, SLOT(filterTree()));
connect(ui->checkKHideNormal, SIGNAL(toggled(bool)), this, SLOT(filterTree()));
connect(ui->checkKHideExpressions, SIGNAL(toggled(bool)), this, SLOT(filterTree()));
connect(ui->lineKSearch, SIGNAL(textChanged(QString)), this, SLOT(filterTree()));
session.load();
updateKDesc();
updateCDesc();
timer_diag.start(40);
timer_update = startTimer(25);
}
KX_Pult::~KX_Pult() {
session.save();
}
void KX_Pult::loading(QPIConfig & conf) {
kdesc_file = conf.getValue("kdesc_file").stringValue();
cdesc_file = conf.getValue("cdesc_file").stringValue();
}
void KX_Pult::saving(QPIConfig & conf) {
conf.setValue("kdesc_file", kdesc_file);
conf.setValue("cdesc_file", cdesc_file);
}
bool KX_Pult::eventFilter(QObject * o, QEvent * e) {
if (o == ui->list->viewport()) {
if (e->type() == QEvent::ContextMenu) {
clear_target = 0;
log_menu.popup(((QContextMenuEvent*)e)->globalPos());
}
return QMainWindow::eventFilter(o, e);
}
if (o == ui->treeK->viewport()) {
if (e->type() == QEvent::ContextMenu) {
clear_target = 1;
log_menu.popup(((QContextMenuEvent*)e)->globalPos());
}
return QMainWindow::eventFilter(o, e);
}
int ind = o->property("index").toInt();
//qDebug() << "event" << i << e->type();
switch (e->type()) {
case QEvent::Enter:
ui->graphic->setAutoUpdate(false);
for (int i = 0; i < KX_X_PACKET_NUM; ++i)
ui->graphic->setGraphicLineWidth(ind == i ? 3. : 1., i);
ui->graphic->setAutoUpdate(true);
ui->graphic->update();
break;
case QEvent::Leave:
ui->graphic->setAutoUpdate(false);
for (int i = 0; i < KX_X_PACKET_NUM; ++i)
ui->graphic->setGraphicLineWidth(1., i);
ui->graphic->setAutoUpdate(true);
ui->graphic->update();
break;
default: break;
}
return QMainWindow::eventFilter(o, e);
}
void KX_Pult::timerEvent(QTimerEvent * e) {
if (e->timerId() == timer_update) {
if (need_update) {
need_update = false;
ui->graphic->updateGraphics();
}
}
if (e->timerId() == timer) {
static QString sPI = QString::number(atan(1) * 4., 'f', 14).leftJustified(14);
static int cnt = 0;
int si = qMax<int>(cnt - 6, 0);
++cnt;
cnt %= 23;
ui->labelWait->setText(QString(si, QChar(' ')) + sPI.mid(cnt - 6, 6).trimmed());
if (!coeffs.isReady()) return;
//ui->table->setK(coeffsK.k()->data(), coeffsK.count());
//ui->table->showK();
}
}
void KX_Pult::setControlsEnable(bool enable) {
foreach (XCheck * i, checks)
i->setEnabled(enable);
ui->buttonShowAll->setEnabled(enable);
ui->buttonHideAll->setEnabled(enable);
}
void KX_Pult::setX(const KX_X_Data & data) {
if (!show_x) return;
//ui->graphic->lock();
for (int i = 0; i < KX_X_PACKET_NUM; ++i) {
if (!isNormalDouble(data.x_data[i])) continue;
ui->graphic->addPoint(data.x_data[i], i, false);
values[i]->setText(QString("(%1): %2").arg(data.x_num[i]).arg(data.x_data[i]));
}
//ui->graphic->unlock();
if (!isPause) {
need_update = true;
}
if (!needWrite) return;
stream << QString::number(tm.elapsed() / 1000., 'f', 3) << " " << QTime::currentTime().toString("hh:mm:ss") << " " << wcnt++;
for (int i = 0; i < KX_X_PACKET_NUM; ++i)
stream << " " << QString::number(data.x_data[i], 'f', 4);
stream << "\n";
}
void KX_Pult::addToList(const QString & s, const QColor & c) {
ui->list->addItem(QDateTime::currentDateTime().toString("dd/MM/yyyy hh:ss - ") + s);
ui->list->item(ui->list->count() - 1)->setTextColor(c);
ui->list->scrollToBottom();
}
void KX_Pult::on_buttonRecord_clicked() {
static bool isRec = false;
int cinc = 0;
QString str;
isRec = !isRec;
setControlsEnable(!isRec);
if (isRec) {
tm.restart();
file.close();
file.setFileName(outdir + getNewFileName(cinc));
while (file.exists())
file.setFileName(outdir + getNewFileName(cinc++));
file.open(QIODevice::ReadWrite);
stream.setDevice(&file);
stream << "T V C";
for (int i = 0; i < KX_X_PACKET_NUM; ++i)
stream << " X" + QString::number(checks[i]->spin.value());
stream << "\n";
wcnt = 0;
needWrite = true;
ui->buttonRecord->setText(trUtf8("Finish record"));
ui->buttonRecord->setIcon(icon_stop);
emit recordStarted(QFileInfo(file).completeBaseName());
} else {
needWrite = false;
stream.setDevice(0);
file.close();
ui->buttonRecord->setText(trUtf8("Start record"));
ui->buttonRecord->setIcon(icon_record);
emit recordStopped(QFileInfo(file).completeBaseName());
}
}
void KX_Pult::on_actionClear_triggered() {
switch (clear_target) {
case 0:
ui->list->clear();
break;
case 1:
clearSelected();
break;
default: break;
}
}
void KX_Pult::clearSelected() {
QList<QTreeWidgetItem * > si = ui->treeK->selectedItems();
ui->treeK->setUpdatesEnabled(false);
ui->treeK->blockSignals(true);
foreach (QTreeWidgetItem * i, si) {
int ki = i->text(0).toInt();
i->setText(2, "");
coeffs.setFormula(ki, "");
}
ui->treeK->blockSignals(false);
ui->treeK->setUpdatesEnabled(true);
if (ui->checkKAutoCalculate->isChecked()) {
QApplication::processEvents();
calculate();
}
}
QString KX_Pult::typeName(const QString & n) const {
if (n.isEmpty()) return "";
switch (n[0].toLatin1()) {
case 'l': return trUtf8("list"); break;
case 'b': return trUtf8("bool"); break;
case 'n': return trUtf8("int"); break;
case 'f': return trUtf8("double"); break;
case 'c': return trUtf8("color"); break;
case 'r': return trUtf8("rect"); break;
case 'a': return trUtf8("rect"); break;
case 'p': return trUtf8("point"); break;
case 'v': return trUtf8("vector"); break;
case 'i': return trUtf8("IP"); break;
case 'e': return trUtf8("enum"); break;
case 'F': return trUtf8("file"); break;
case 'D': return trUtf8("dir"); break;
}
return "";
}
void KX_Pult::received(bool ok) {
if (!ok) return;
setX(prot_x->from_x);
}
void KX_Pult::on_treeK_itemClicked(QTreeWidgetItem * item, int column) {
Qt::ItemFlags f = Qt::ItemIsEnabled | Qt::ItemIsSelectable;
if (column == 2) f |= Qt::ItemIsEditable;
item->setFlags(f);
}
void KX_Pult::on_treeK_itemChanged(QTreeWidgetItem * item, int column) {
if (column != 2) return;
int ki = item->text(0).toInt();
coeffs.setFormula(ki, piqt(item->text(column)));
if (ui->checkKAutoCalculate->isChecked())
calculate();
}
QString KX_Pult::getNewFileName(int inc) {
dir.refresh();
dir.setNameFilters(QStringList("Experiment_*.txt"));
return "Experiment_" + QDateTime::currentDateTime().toString("dd_MM_yy__hh_mm_ss") + "__" +
QString::number(dir.entryList().count() + inc) + ".txt";
}
void KX_Pult::on_buttonSendK_clicked() {
on_buttonWrite_clicked();
coeffs.sendCoeffs();
if (timer != 0) killTimer(timer);
timer = startTimer(100);
}
void KX_Pult::on_buttonReceiveK_clicked() {
coeffs.receiveCoeffs();
if (timer != 0) killTimer(timer);
timer = startTimer(100);
}
void KX_Pult::on_buttonShowAll_clicked() {
for (int i = 0; i < KX_X_PACKET_NUM; ++i) {
checks[i]->check.setChecked(true);
//ui->graphic->setGraphicVisible(true, i);
}
}
void KX_Pult::on_buttonHideAll_clicked() {
for (int i = 0; i < KX_X_PACKET_NUM; ++i) {
checks[i]->check.setChecked(false);
//ui->graphic->setGraphicVisible(false, i);
}
}
void KX_Pult::on_buttonRead_clicked() {
coeffs.readCoeffs();
addToList(trUtf8("Read K file \"%1\": %2 coeffs, %3 bytes").arg(PI2QString(coeffs.fileName())).arg(K.size_s()).arg(coeffs.k_content.size_s()), Qt::darkMagenta);
updateTree();
}
void KX_Pult::on_buttonWrite_clicked() {
coeffs.writeCoeffs();
addToList(trUtf8("Write K file \"%1\": %2 coeffs, %3 bytes").arg(PI2QString(coeffs.fileName())).arg(K.size_s()).arg(coeffs.k_content.size_s()), Qt::darkMagenta);
}
void KX_Pult::on_buttonResize_clicked() {
K.resize(ui->spinSize->value());
coeffs.formulas.resize(ui->spinSize->value());
ui->spinSize->setStyleSheet("");
updateTree();
}
void KX_Pult::on_buttonSetKDesc_clicked() {
QString ret = QFileDialog::getOpenFileName(this, trUtf8("Select *.h file with K description"), kdesc_file, "C/C++ header files(*.h *.hpp);;All files(*)");
if (ret.isEmpty()) return;
kdesc_file = QDir::current().relativeFilePath(ret);
updateKDesc(true);
}
void KX_Pult::on_buttonSetCDesc_clicked() {
QString ret = QFileDialog::getOpenFileName(this, trUtf8("Select *.h file with C description"), cdesc_file, "C/C++ header files(*.h *.hpp);;All files(*)");
if (ret.isEmpty()) return;
cdesc_file = QDir::current().relativeFilePath(ret);
updateCDesc();
}
void KX_Pult::on_spinSize_valueChanged(int) {
ui->spinSize->setStyleSheet("");
}
void KX_Pult::k_sendFailed() {
stopWait();
addToList(trUtf8("K not sended"), Qt::darkRed);
}
void KX_Pult::k_sendSucceed() {
stopWait();
addToList(trUtf8("K sended"), Qt::darkGreen);
}
void KX_Pult::k_receiveFailed() {
stopWait();
addToList(trUtf8("K not received"), Qt::darkRed);
}
void KX_Pult::k_receiveSucceed() {
stopWait();
addToList(trUtf8("K received"), Qt::darkGreen);
addToList(trUtf8("Write K file \"%1\": %2 coeffs, %3 bytes").arg(PI2QString(coeffs.fileName())).arg(K.size_s()).arg(coeffs.k_content.size_s()), Qt::darkMagenta);
ui->spinSize->setValue(K.size_s());
updateTree();
//ui->table->setK(coeffsK.k()->data(), coeffsK.count());
}
void KX_Pult::on_spinBuffer_editingFinished() {
ui->graphic->setHistorySize(ui->spinBuffer->value());
}
void KX_Pult::stopWait() {
killTimer(timer);
timer = 0;
ui->labelWait->setText(" ");
}
void KX_Pult::updateGraph() {
ui->graphic->updateGraphics();
}
void KX_Pult::updateDiag() {
ui->labelKReceiver->setText(piqt(coeffs.k_protocol->receiverDeviceName() + " - " + coeffs.k_protocol->receiverDeviceState()));
ui->labelKSender->setText(piqt(coeffs.k_protocol->senderDeviceName()));
ui->spinKSended->setValue(coeffs.k_protocol->sendCount());
ui->spinKReceived->setValue(coeffs.k_protocol->receiveCount());
ui->spinKWrong->setValue(coeffs.k_protocol->wrongCount());
ui->spinKMissed->setValue(coeffs.k_protocol->missedCount());
ui->labelKType->setText("0x" + QString::number(coeffs.k_protocol->from_k.type, 16).toUpper().rightJustified(2, '0'));
ui->labelKAddrPult->setText("0x" + QString::number(coeffs.k_protocol->from_k.addr_to, 16).toUpper().rightJustified(2, '0'));
ui->labelKAddr->setText("0x" + QString::number(coeffs.k_protocol->to_k.addr_to, 16).toUpper().rightJustified(2, '0'));
ui->labelXReceiver->setText(piqt(prot_x->receiverDeviceName() + " - " + prot_x->receiverDeviceState()));
ui->labelXSender->setText(piqt(prot_x->senderDeviceName()));
ui->spinXSended->setValue(prot_x->sendCount());
ui->spinXReceived->setValue(prot_x->receiveCount());
ui->spinXWrong->setValue(prot_x->wrongCount());
ui->spinXMissed->setValue(prot_x->missedCount());
ui->labelXType->setText("0x" + QString::number(prot_x->from_x.type, 16).toUpper().rightJustified(2, '0'));
ui->labelXAddrPult->setText("0x" + QString::number(prot_x->from_x.addr_to, 16).toUpper().rightJustified(2, '0'));
ui->labelXAddr->setText("0x" + QString::number(prot_x->to_x.addr_to, 16).toUpper().rightJustified(2, '0'));
ui->labelCReceiver->setText(piqt(prot_c->receiverDeviceName() + " - " + prot_c->receiverDeviceState()));
ui->labelCSender->setText(piqt(prot_c->senderDeviceName()));
ui->spinCSended->setValue(prot_c->sendCount());
ui->spinCReceived->setValue(prot_c->receiveCount());
ui->spinCWrong->setValue(prot_c->wrongCount());
ui->spinCMissed->setValue(prot_c->missedCount());
ui->labelCType->setText("0x" + QString::number(prot_c->from_c.type, 16).toUpper().rightJustified(2, '0'));
ui->labelCAddrPult->setText("0x" + QString::number(prot_c->from_c.addr_to, 16).toUpper().rightJustified(2, '0'));
ui->labelCAddr->setText("0x" + QString::number(prot_c->to_c.addr_to, 16).toUpper().rightJustified(2, '0'));
}
int KX_Pult::parseHeader(const QString & file, QMap<int, KX_Pult::KDesc> & map) {
map.clear();
QFile f(file);
if (!f.open(QIODevice::ReadOnly)) {
updateTree();
addToList(trUtf8("Update descriptions from \"%1\": error").arg(file), Qt::darkRed);
return 0;
}
addToList(trUtf8("Update descriptions from \"%1\"").arg(file), Qt::darkMagenta);
QTextStream s(&f);
int cind = -1;
bool found = false;
//qDebug() << "\nparse" << file;
while (!s.atEnd()) {
QString line = s.readLine().trimmed(), num, name, type, comment;
int i = line.indexOf("//");
if (i >= 0) {
comment = line.right(line.length() - i - 2);
type = comment.left(1);
comment = comment.right(comment.length() - 1).trimmed();
line = line.left(i).trimmed();
}
if (line.isEmpty()) continue;
if (line.contains("enum")) {
found = true;
continue;
}
if (!found) continue;
if (line.contains('}'))
break;
line.remove(',').remove(' ').remove('\t');
i = line.indexOf("=");
if (i >= 0) {
num = line.right(line.length() - i - 1).trimmed();
line = line.left(i).trimmed();
}
name = line;
if (num.isEmpty())
++cind;
else
cind = Q2PIString(num).toInt();
KDesc kd;
kd.index = cind;
kd.name = name;
kd.type = type;
kd.comment = comment;
map[kd.index] = kd;
//qDebug() << name << cind << type << comment;
}
cind++;
return cind;
}
void KX_Pult::updateKDesc(bool ask_move) {
int cind = parseHeader(kdesc_file, kdesc);
if (K.size_s() < cind) {
ui->spinSize->setValue(cind);
ui->spinSize->setStyleSheet("background-color: rgb(220, 220, 255);");
}
bool move = false;
if (ask_move)
move = (QMessageBox::question(this, "KX Pult", "Save values at associated names?", QMessageBox::Yes | QMessageBox::No, QMessageBox::Yes) == QMessageBox::Yes);
updateTree(move);
}
void KX_Pult::updateCDesc() {
parseHeader(cdesc_file, cdesc);
updateCommands();
}
bool stringComp(const QString & s1, const QString & s2) {
if (s1.size() != s2.size())
return s1.size() > s2.size();
return s1 > s2;
}
void KX_Pult::updateTree(bool move) {
int sp = ui->treeK->verticalScrollBar()->value();
QApplication::setOverrideCursor(Qt::WaitCursor);
//qDebug() << "fill tree ...";
QMap<QString, QString> prev_val;
if (move) {
for (int i = 0; i < ui->treeK->topLevelItemCount(); ++i) {
QTreeWidgetItem * ti = ui->treeK->topLevelItem(i);
if (!ti->text(1).isEmpty())
prev_val[ti->text(1)] = ti->text(2);
}
}
ui->treeK->clear();
ui->treeK->setUpdatesEnabled(false);
eval.clearCustomVariables();
for (int i = 0; i < K.size_s(); ++i) {
QTreeWidgetItem * ti = new QTreeWidgetItem();
KDesc kd = kdesc[i];
QString kn = QString("k%1").arg(i);
knames[kn] = i;
knames_sort << kn;
if (eval.content.findVariable(kn) < 0)
eval.content.addVariable(kn, 0., false);
if (!kd.name.isEmpty()) {
knames[kd.name] = i;
knames_sort << kd.name;
eval.content.addVariable(kd.name, 0., false);
}
if (move && !kd.name.isEmpty()) {
if (prev_val.contains(kd.name))
coeffs.setFormula(i, Q2PIString(prev_val[kd.name]));
}
ti->setText(0, QString::number(i));
ti->setText(1, kd.name);
ti->setText(2, PI2QString(coeffs.formula(i)));
ti->setText(3, QString::number(K[i]));
ti->setText(4, typeName(kd.type));
ti->setText(5, kd.comment);
ui->treeK->addTopLevelItem(ti);
}
eval.content.sortVariables();
//qDebug() << "fill tree ok";
//qDebug() << "sort ...";
qSort(knames_sort.begin(), knames_sort.end(), stringComp);
//qDebug() << "names" << knames_sort;
//qDebug() << "sort ok";
QApplication::restoreOverrideCursor();
ui->treeK->setUpdatesEnabled(true);
ui->treeK->verticalScrollBar()->setValue(sp);
calculate();
filterTree();
}
void KX_Pult::updateCommands() {
while (ui->layoutCommands->count() > 0)
delete ui->layoutCommands->itemAt(0)->widget();
QMapIterator<int, KDesc> it(cdesc);
while (it.hasNext()) {
it.next();
KDesc kd = it.value();
QPushButton * b = new QPushButton();
QString text = kd.name;
if (!kd.comment.isEmpty())
text += QString("\n(%1)").arg(kd.comment);
b->setText(text);
b->setProperty("_command", kd.index);
connect(b, SIGNAL(clicked()), this, SLOT(commandClicked()));
ui->layoutCommands->addWidget(b);
}
}
void KX_Pult::filterTree() {
bool he = ui->checkKHideEmpty->isChecked();
bool hn = ui->checkKHideNormal->isChecked();
bool hs = ui->checkKHideExpressions->isChecked();
bool ok = false;
QString fl = ui->lineKSearch->text();
int lc = ui->treeK->topLevelItemCount();
for (int i = 0; i < lc; ++i) {
QTreeWidgetItem * ti = ui->treeK->topLevelItem(i);
if (ti->text(1).isEmpty() && he)
ti->setHidden(true);
else
if (fl.isEmpty())
ti->setHidden(false);
else
ti->setHidden(!ti->text(0).contains(fl, Qt::CaseInsensitive) &&
!ti->text(1).contains(fl, Qt::CaseInsensitive) &&
!ti->text(2).contains(fl, Qt::CaseInsensitive) &&
!ti->text(3).contains(fl, Qt::CaseInsensitive) &&
!ti->text(4).contains(fl, Qt::CaseInsensitive));
if (hn)
if (ti->data(0, Qt::UserRole).toBool())
ti->setHidden(true);
if (hs) {
ti->data(2, Qt::DisplayRole).toDouble(&ok);
if (!ok)
ti->setHidden(true);
}
}
}
void KX_Pult::calculate() {
calculated.clear();
ui->treeK->setUpdatesEnabled(false);
ui->treeK->blockSignals(true);
QApplication::setOverrideCursor(Qt::WaitCursor);
progress(0, 100);
ui->buttonCalculate->setEnabled(false);
QApplication::processEvents();
for (int i = 0; i < K.size_s(); ++i) {
ui->treeK->topLevelItem(i)->setToolTip(2, QString());
ui->treeK->topLevelItem(i)->setToolTip(3, QString());
}
for (int i = 0; i < K.size_s(); ++i) {
progress(i, K.size_s());
calculateExpression(i, QVector<int>());
}
ui->buttonCalculate->setEnabled(true);
ui->progress->setValue(100);
QApplication::restoreOverrideCursor();
ui->treeK->blockSignals(false);
ui->treeK->setUpdatesEnabled(true);
}
bool KX_Pult::calculateExpression(int i, QVector<int> trace) {
if (calculated.contains(i)) return true;
trace << i;
QTreeWidgetItem * ti = ui->treeK->topLevelItem(i);
QString expr = ti->text(2);
if (expr.isEmpty() || expr == "0" || expr == "0,00000000" || expr == "0.00000000") {
markNormal(ti);
calculated << i;
K[i] = 0.;
ti->setText(3, "0");
return true;
}
//ti->setToolTip(2, QString());
if (!eval.check(expr)) {
markError(ti, eval.error());
return false;
}
foreach (const QString & n, knames_sort) {
if (expr.contains(n)) {
int ki = knames.value(n, -1);
if (trace.contains(ki)) {
QString strace;
trace << ki;
for (int j = 0; j < trace.size(); ++j) {
//calculated << trace[j];
if (j > 0) strace += " -> ";
strace += "k" + QString::number(trace[j]);
}
for (int j = 0; j < trace.size(); ++j) {
QTreeWidgetItem * pti = ui->treeK->topLevelItem(trace[j]);
markError(pti, QString("Circular dependency: %1!").arg(strace));
}
return false;
}
if (ki < 0) {
markError(ti);
return false;
}
if (calculated.contains(ki)) {
eval.setVariable(n, K[ki]);
} else {
if (calculateExpression(ki, trace))
eval.setVariable(n, K[ki]);
else {
markError(ti);
return false;
}
}
}
}
markNormal(ti);
calculated << i;
complexd ret = eval.evaluate();
K[i] = ret.real();
ti->setText(3, QString::number(K[i]));
return true;
}
void KX_Pult::markError(QTreeWidgetItem * item, const QString & tool_tip) {
int cc = item->columnCount();
for (int i = 0; i < cc; ++i)
item->setBackgroundColor(i, QColor(255, 200, 200));
if (item->toolTip(2).isEmpty())
item->setToolTip(2, tool_tip);
if (item->toolTip(3).isEmpty())
item->setToolTip(3, tool_tip);
item->setData(0, Qt::UserRole, false);
item->setText(3, "Error");
}
void KX_Pult::markNormal(QTreeWidgetItem * item) {
int cc = item->columnCount();
for (int i = 0; i < cc; ++i)
item->setBackground(i, Qt::NoBrush);
item->setToolTip(2, QString());
item->setToolTip(3, QString());
item->setData(0, Qt::UserRole, true);
}
void KX_Pult::progress(int val, int max) {
if (ctm.elapsed() < 50) return;
ctm.restart();
ui->progress->setValue(qRound(val * 100. / max));
QApplication::processEvents();
}
void KX_Pult::renew(bool write) {
addToList(trUtf8("Update settings from \"%1\"").arg(PI2QString(config_)), Qt::darkMagenta);
dir.setPath(config.getValue("x.output_dir", "./Experiments/").stringValue());
setWindowTitle(config.getValue("title", "Noname").stringValue() + trUtf8(" - KX Pult"));
//if (write) ui->configWidget->write();
if (prot_x != 0) {
prot_x->stop();
delete prot_x;
}
if (prot_c != 0) {
prot_c->stop();
delete prot_c;
}
prot_x = new __KX_Protocol_X(config_, name_x);
prot_c = new __KX_Protocol_C(config_, name_c);
ui->graphic->setAutoXIncrement(prot_x->expectedFrequency() > 0. ? 1. / prot_x->expectedFrequency() : 1.);
coeffs.renew();
CONNECT1(void, bool, prot_x, received, this, received);
}
void KX_Pult::toggledX(int index, bool on) {
ui->graphic->setGraphicVisible(on, index);
}
void KX_Pult::changedX(int index, int num) {
prot_x->to_x.x_num[index] = num;
}
void KX_Pult::commandClicked() {
QPushButton * b = qobject_cast<QPushButton*>(sender());
if (!b) return;
prot_c->sendCommand(b->property("_command").toInt());
}

170
test/kx_utils/kx_pult.h Normal file
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#ifndef KX_PULT_H
#define KX_PULT_H
#include <QDialog>
#include <QSpinBox>
#include <QFont>
#include <QRect>
#include <QFile>
#include <QVector>
#include <QDir>
#include <QTextStream>
#include <QDebug>
#include <QBoxLayout>
#include <QCheckBox>
#include <QMainWindow>
#include <QTimer>
#include <QTime>
#include <QMenu>
#include <QMetaObject>
#include <QTreeWidgetItem>
#include <QLabel>
#include "kx_coeffs.h"
#include "kx_protocol_x.h"
#include "kx_protocol_c.h"
#include "piqt.h"
#include "session_manager.h"
#include "qpievaluator.h"
class XCheck: public QWidget {
Q_OBJECT
public:
explicit XCheck(int index);
QCheckBox check;
QSpinBox spin;
private:
bool eventFilter(QObject * o, QEvent * e);
int index_;
private slots:
void spinChanged(int value) {check.setChecked(true); emit valueChanged(index_, value);}
void checkChanged_(bool value) {emit checkChanged(index_, value);}
signals:
void valueChanged(int index, int value);
void checkChanged(int index, bool on);
};
namespace Ui {
class KX_Pult;
};
class KX_Pult: public QMainWindow, public PIObject
{
Q_OBJECT
PIOBJECT(KX_Pult)
public:
KX_Pult();
~KX_Pult();
private:
struct KDesc {
KDesc() {index = -1;}
int index;
QString name;
QString type;
QString comment;
QString value;
};
bool eventFilter(QObject * o, QEvent * e);
void timerEvent(QTimerEvent * );
void setControlsEnable(bool enable);
void setX(const KX_X_Data & data);
void addToList(const QString & s, const QColor & c);
QString getNewFileName(int inc);
QColor invertColor(QColor col) {return QColor(255 - col.red(), 255 - col.green(), 255 - col.blue());}
void stopWait();
bool calculateExpression(int i, QVector<int> trace);
void markError(QTreeWidgetItem * item, const QString & tool_tip = QString());
void markNormal(QTreeWidgetItem * item);
void progress(int val, int max);
void clearSelected();
QString typeName(const QString & n) const;
int parseHeader(const QString & file, QMap<int, KDesc> & map);
EVENT_HANDLER1(void, received, bool, ok);
EVENT_HANDLER(void, pip_sendFailed) {emit q_k_sendFailed();}
EVENT_HANDLER(void, pip_sendSucceed) {emit q_k_sendSucceed();}
EVENT_HANDLER(void, pip_receiveFailed) {emit q_k_receiveFailed();}
EVENT_HANDLER(void, pip_receiveSucceed) {emit q_k_receiveSucceed();}
QVector<XCheck * > checks;
QVector<QLabel * > values;
Ui::KX_Pult * ui;
PIString config_, name_x, name_c;
QDir dir;
QString outdir, kdesc_file, cdesc_file;
QFile file;
QTime tm, ctm;
QIcon icon_record, icon_stop;
QTextStream stream;
QTimer timer_diag;
QMap<int, KDesc> kdesc, cdesc;
QMap<QString, int> knames;
QSet<int> calculated;
QStringList knames_sort;
QPIEvaluator eval;
SessionManager session;
QPIConfig config;
QMenu log_menu;
//QVector<float> k, x;
KX_Coefficients coeffs;
__KX_Protocol_X * prot_x;
__KX_Protocol_C * prot_c;
int csize, wcnt, timer, timer_update, clear_target;
bool needWrite, isPause, need_update, show_x;
private slots:
void loading(QPIConfig & conf);
void saving(QPIConfig & conf);
void updateGraph();
void updateDiag();
void updateKDesc(bool ask_move = false);
void updateCDesc();
void updateTree(bool move = false);
void updateCommands();
void filterTree();
void calculate();
void renew(bool write = true);
void toggledX(int index, bool on);
void changedX(int index, int num);
void commandClicked();
void k_sendFailed();
void k_sendSucceed();
void k_receiveFailed();
void k_receiveSucceed();
void on_spinBuffer_editingFinished();
void on_buttonSendK_clicked();
void on_buttonReceiveK_clicked();
void on_buttonShowAll_clicked();
void on_buttonHideAll_clicked();
void on_buttonRead_clicked();
void on_buttonWrite_clicked();
void on_buttonResize_clicked();
void on_buttonSetKDesc_clicked();
void on_buttonReparseKDesc_clicked() {updateKDesc(true);}
void on_buttonSetCDesc_clicked();
void on_buttonReparseCDesc_clicked() {updateCDesc();}
void on_buttonCalculate_clicked() {calculate();}
void on_buttonApply_clicked() {renew();}
void on_spinSize_valueChanged(int);
void on_buttonPause_toggled(bool on) {isPause = on;}
void on_buttonRecord_clicked();
void on_treeK_itemClicked(QTreeWidgetItem * item, int column);
void on_treeK_itemChanged(QTreeWidgetItem * item, int column);
void on_actionClear_triggered();
signals:
void q_k_sendFailed();
void q_k_sendSucceed();
void q_k_receiveFailed();
void q_k_receiveSucceed();
void recordStarted(const QString & fileName);
void recordStopped(const QString & fileName);
};
#endif // KX_PULT_H

40
test/kx_utils/kx_pult.qrc Normal file
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<RCC>
<qresource prefix="/">
<file>icons/dialog-close.png</file>
<file>icons/edit-clear-.png</file>
<file>icons/edit-guides.png</file>
<file>icons/view-grid.png</file>
<file>icons/zoom-fit-best.png</file>
<file>icons/configure.png</file>
<file>icons/alpha.png</file>
<file>icons/document-save.png</file>
<file>icons/edit-clear-locationbar-rtl.png</file>
<file>icons/edit-find.png</file>
<file>icons/list-add.png</file>
<file>icons/edit-delete.png</file>
<file>icons/item-add.png</file>
<file>icons/item.png</file>
<file>icons/node-add.png</file>
<file>icons/node.png</file>
<file>icons/edit-copy.png</file>
<file>icons/edit-paste.png</file>
<file>icons/expand_s_x.png</file>
<file>icons/expand_s_y.png</file>
<file>icons/expand_x.png</file>
<file>icons/expand_y.png</file>
<file>icons/media-playback-pause.png</file>
<file>icons/media-playback-stop.png</file>
<file>icons/media-record.png</file>
<file>icons/application-exit.png</file>
<file>icons/document-save-.png</file>
<file>icons/view-refresh.png</file>
<file>icons/document-open.png</file>
<file>icons/archive-extract.png</file>
<file>icons/document-export.png</file>
<file>icons/document-import.png</file>
<file>icons/zoom-fit-height.png</file>
<file>icons/layer-visible-off.png</file>
<file>icons/layer-visible-on.png</file>
<file>icons/accessories-calculator.png</file>
</qresource>
</RCC>

1311
test/kx_utils/kx_pult.ui Normal file
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<?xml version="1.0" encoding="UTF-8"?>
<ui version="4.0">
<class>KX_Pult</class>
<widget class="QMainWindow" name="KX_Pult">
<property name="geometry">
<rect>
<x>0</x>
<y>0</y>
<width>1759</width>
<height>852</height>
</rect>
</property>
<property name="windowTitle">
<string>KX Pult</string>
</property>
<widget class="QWidget" name="page_2">
<layout class="QVBoxLayout" name="verticalLayout">
<item>
<widget class="QTabWidget" name="tabWidget">
<property name="currentIndex">
<number>0</number>
</property>
<widget class="QWidget" name="tab">
<attribute name="title">
<string>Coefficients (K)</string>
</attribute>
<layout class="QVBoxLayout" name="verticalLayout_2">
<item>
<layout class="QGridLayout" name="gridLayout">
<item row="3" column="1">
<widget class="QPushButton" name="buttonReparseKDesc">
<property name="text">
<string>Reparse K desc</string>
</property>
<property name="icon">
<iconset resource="kx_pult.qrc">
<normaloff>:/icons/view-refresh.png</normaloff>:/icons/view-refresh.png</iconset>
</property>
</widget>
</item>
<item row="4" column="0">
<widget class="QPushButton" name="buttonResize">
<property name="text">
<string>Resize</string>
</property>
<property name="icon">
<iconset resource="kx_pult.qrc">
<normaloff>:/icons/zoom-fit-height.png</normaloff>:/icons/zoom-fit-height.png</iconset>
</property>
</widget>
</item>
<item row="2" column="0">
<widget class="QPushButton" name="buttonRead">
<property name="text">
<string>Read file K</string>
</property>
<property name="icon">
<iconset resource="kx_pult.qrc">
<normaloff>:/icons/archive-extract.png</normaloff>:/icons/archive-extract.png</iconset>
</property>
</widget>
</item>
<item row="0" column="0">
<widget class="QPushButton" name="buttonSendK">
<property name="text">
<string>Send</string>
</property>
<property name="icon">
<iconset resource="kx_pult.qrc">
<normaloff>:/icons/document-export.png</normaloff>:/icons/document-export.png</iconset>
</property>
</widget>
</item>
<item row="2" column="1">
<widget class="QPushButton" name="buttonWrite">
<property name="text">
<string>Write file K</string>
</property>
<property name="icon">
<iconset resource="kx_pult.qrc">
<normaloff>:/icons/document-save-.png</normaloff>:/icons/document-save-.png</iconset>
</property>
</widget>
</item>
<item row="0" column="2" rowspan="5">
<widget class="QListWidget" name="list">
<property name="sizePolicy">
<sizepolicy hsizetype="Expanding" vsizetype="Preferred">
<horstretch>0</horstretch>
<verstretch>0</verstretch>
</sizepolicy>
</property>
<property name="contextMenuPolicy">
<enum>Qt::CustomContextMenu</enum>
</property>
<property name="editTriggers">
<set>QAbstractItemView::NoEditTriggers</set>
</property>
<property name="selectionMode">
<enum>QAbstractItemView::NoSelection</enum>
</property>
<property name="verticalScrollMode">
<enum>QAbstractItemView::ScrollPerPixel</enum>
</property>
<property name="horizontalScrollMode">
<enum>QAbstractItemView::ScrollPerPixel</enum>
</property>
</widget>
</item>
<item row="0" column="1">
<widget class="QPushButton" name="buttonReceiveK">
<property name="text">
<string>Receive</string>
</property>
<property name="icon">
<iconset resource="kx_pult.qrc">
<normaloff>:/icons/document-import.png</normaloff>:/icons/document-import.png</iconset>
</property>
</widget>
</item>
<item row="3" column="0">
<widget class="QPushButton" name="buttonSetKDesc">
<property name="text">
<string>Set K desc file ...</string>
</property>
<property name="icon">
<iconset resource="kx_pult.qrc">
<normaloff>:/icons/document-open.png</normaloff>:/icons/document-open.png</iconset>
</property>
</widget>
</item>
<item row="4" column="1">
<widget class="QSpinBox" name="spinSize">
<property name="maximum">
<number>65536</number>
</property>
</widget>
</item>
<item row="1" column="0" colspan="2">
<widget class="QLabel" name="labelWait">
<property name="sizePolicy">
<sizepolicy hsizetype="Preferred" vsizetype="Fixed">
<horstretch>0</horstretch>
<verstretch>0</verstretch>
</sizepolicy>
</property>
<property name="minimumSize">
<size>
<width>200</width>
<height>0</height>
</size>
</property>
<property name="text">
<string/>
</property>
</widget>
</item>
</layout>
</item>
<item>
<layout class="QHBoxLayout" name="horizontalLayout_4">
<item>
<widget class="QCheckBox" name="checkKHideEmpty">
<property name="text">
<string>Hide empty</string>
</property>
</widget>
</item>
<item>
<spacer name="horizontalSpacer_5">
<property name="orientation">
<enum>Qt::Horizontal</enum>
</property>
<property name="sizeType">
<enum>QSizePolicy::Preferred</enum>
</property>
<property name="sizeHint" stdset="0">
<size>
<width>20</width>
<height>20</height>
</size>
</property>
</spacer>
</item>
<item>
<widget class="QCheckBox" name="checkKHideExpressions">
<property name="text">
<string>Hide expressions</string>
</property>
</widget>
</item>
<item>
<spacer name="horizontalSpacer_9">
<property name="orientation">
<enum>Qt::Horizontal</enum>
</property>
<property name="sizeType">
<enum>QSizePolicy::Preferred</enum>
</property>
<property name="sizeHint" stdset="0">
<size>
<width>20</width>
<height>20</height>
</size>
</property>
</spacer>
</item>
<item>
<widget class="QCheckBox" name="checkKHideNormal">
<property name="text">
<string>Hide without errors</string>
</property>
</widget>
</item>
<item>
<spacer name="horizontalSpacer_8">
<property name="orientation">
<enum>Qt::Horizontal</enum>
</property>
<property name="sizeType">
<enum>QSizePolicy::Preferred</enum>
</property>
<property name="sizeHint" stdset="0">
<size>
<width>20</width>
<height>20</height>
</size>
</property>
</spacer>
</item>
<item>
<widget class="QLabel" name="label_17">
<property name="pixmap">
<pixmap resource="kx_pult.qrc">:/icons/edit-find.png</pixmap>
</property>
<property name="scaledContents">
<bool>true</bool>
</property>
<property name="alignment">
<set>Qt::AlignCenter</set>
</property>
</widget>
</item>
<item>
<widget class="QLabel" name="label_16">
<property name="text">
<string> Search:</string>
</property>
</widget>
</item>
<item>
<widget class="CLineEdit" name="lineKSearch">
<property name="sizePolicy">
<sizepolicy hsizetype="Preferred" vsizetype="Fixed">
<horstretch>0</horstretch>
<verstretch>0</verstretch>
</sizepolicy>
</property>
</widget>
</item>
<item>
<spacer name="horizontalSpacer_7">
<property name="orientation">
<enum>Qt::Horizontal</enum>
</property>
<property name="sizeType">
<enum>QSizePolicy::Preferred</enum>
</property>
<property name="sizeHint" stdset="0">
<size>
<width>40</width>
<height>20</height>
</size>
</property>
</spacer>
</item>
<item>
<widget class="QCheckBox" name="checkKAutoCalculate">
<property name="text">
<string>Auto calculate</string>
</property>
<property name="checked">
<bool>true</bool>
</property>
</widget>
</item>
<item>
<spacer name="horizontalSpacer_6">
<property name="orientation">
<enum>Qt::Horizontal</enum>
</property>
<property name="sizeType">
<enum>QSizePolicy::Preferred</enum>
</property>
<property name="sizeHint" stdset="0">
<size>
<width>20</width>
<height>20</height>
</size>
</property>
</spacer>
</item>
<item>
<widget class="QToolButton" name="buttonCalculate">
<property name="toolTip">
<string>Calculate</string>
</property>
<property name="statusTip">
<string>Calculate</string>
</property>
<property name="icon">
<iconset resource="kx_pult.qrc">
<normaloff>:/icons/accessories-calculator.png</normaloff>:/icons/accessories-calculator.png</iconset>
</property>
</widget>
</item>
<item>
<widget class="QProgressBar" name="progress">
<property name="value">
<number>100</number>
</property>
<property name="format">
<string>Calculate %p%</string>
</property>
</widget>
</item>
</layout>
</item>
<item>
<widget class="QTreeWidget" name="treeK">
<property name="contextMenuPolicy">
<enum>Qt::CustomContextMenu</enum>
</property>
<property name="editTriggers">
<set>QAbstractItemView::AnyKeyPressed|QAbstractItemView::DoubleClicked|QAbstractItemView::EditKeyPressed</set>
</property>
<property name="alternatingRowColors">
<bool>true</bool>
</property>
<property name="selectionMode">
<enum>QAbstractItemView::ExtendedSelection</enum>
</property>
<property name="verticalScrollMode">
<enum>QAbstractItemView::ScrollPerPixel</enum>
</property>
<property name="horizontalScrollMode">
<enum>QAbstractItemView::ScrollPerPixel</enum>
</property>
<property name="rootIsDecorated">
<bool>false</bool>
</property>
<property name="itemsExpandable">
<bool>false</bool>
</property>
<property name="columnCount">
<number>6</number>
</property>
<attribute name="headerDefaultSectionSize">
<number>200</number>
</attribute>
<attribute name="headerMinimumSectionSize">
<number>20</number>
</attribute>
<column>
<property name="text">
<string>Index</string>
</property>
</column>
<column>
<property name="text">
<string>Name</string>
</property>
</column>
<column>
<property name="text">
<string>Expression</string>
</property>
</column>
<column>
<property name="text">
<string>Calculated</string>
</property>
</column>
<column>
<property name="text">
<string>Type</string>
</property>
</column>
<column>
<property name="text">
<string>Comment</string>
</property>
</column>
</widget>
</item>
</layout>
</widget>
<widget class="QWidget" name="tab_4">
<attribute name="title">
<string>Commands (C)</string>
</attribute>
<layout class="QHBoxLayout" name="horizontalLayout_5">
<item>
<layout class="QVBoxLayout" name="verticalLayout_5">
<item>
<widget class="QPushButton" name="buttonSetCDesc">
<property name="text">
<string>Set C desc file ...</string>
</property>
<property name="icon">
<iconset resource="kx_pult.qrc">
<normaloff>:/icons/document-open.png</normaloff>:/icons/document-open.png</iconset>
</property>
</widget>
</item>
<item>
<widget class="QPushButton" name="buttonReparseCDesc">
<property name="text">
<string>Reparse C desc</string>
</property>
<property name="icon">
<iconset resource="kx_pult.qrc">
<normaloff>:/icons/view-refresh.png</normaloff>:/icons/view-refresh.png</iconset>
</property>
</widget>
</item>
<item>
<spacer name="verticalSpacer">
<property name="orientation">
<enum>Qt::Vertical</enum>
</property>
<property name="sizeHint" stdset="0">
<size>
<width>20</width>
<height>40</height>
</size>
</property>
</spacer>
</item>
</layout>
</item>
<item>
<layout class="QVBoxLayout" name="verticalLayout_6">
<item>
<widget class="QGroupBox" name="groupCommands">
<property name="title">
<string>Commands</string>
</property>
<layout class="QVBoxLayout" name="layout_">
<item>
<widget class="QScrollArea" name="scrollArea">
<property name="frameShape">
<enum>QFrame::NoFrame</enum>
</property>
<property name="widgetResizable">
<bool>true</bool>
</property>
<widget class="QWidget" name="scrollAreaWidgetContents">
<property name="geometry">
<rect>
<x>0</x>
<y>0</y>
<width>1370</width>
<height>655</height>
</rect>
</property>
<layout class="QVBoxLayout" name="verticalLayout_7">
<property name="spacing">
<number>0</number>
</property>
<property name="margin">
<number>0</number>
</property>
<item>
<widget class="QWidget" name="widget" native="true">
<layout class="QVBoxLayout" name="layoutCommands"/>
</widget>
</item>
<item>
<spacer name="verticalSpacer_3">
<property name="orientation">
<enum>Qt::Vertical</enum>
</property>
<property name="sizeType">
<enum>QSizePolicy::Expanding</enum>
</property>
<property name="sizeHint" stdset="0">
<size>
<width>66</width>
<height>441</height>
</size>
</property>
</spacer>
</item>
</layout>
</widget>
</widget>
</item>
</layout>
</widget>
</item>
</layout>
</item>
</layout>
</widget>
<widget class="QWidget" name="tab_2">
<attribute name="title">
<string>Graphics (X)</string>
</attribute>
<layout class="QVBoxLayout" name="verticalLayout_3">
<item>
<widget class="QWidget" name="widgetChecks" native="true">
<layout class="QGridLayout" name="gridLayout_2">
<property name="horizontalSpacing">
<number>10</number>
</property>
</layout>
</widget>
</item>
<item>
<layout class="QHBoxLayout" name="horizontalLayout_2">
<item>
<widget class="QPushButton" name="buttonShowAll">
<property name="sizePolicy">
<sizepolicy hsizetype="Preferred" vsizetype="Preferred">
<horstretch>0</horstretch>
<verstretch>0</verstretch>
</sizepolicy>
</property>
<property name="text">
<string>Show all</string>
</property>
<property name="icon">
<iconset resource="kx_pult.qrc">
<normaloff>:/icons/layer-visible-on.png</normaloff>:/icons/layer-visible-on.png</iconset>
</property>
</widget>
</item>
<item>
<widget class="QPushButton" name="buttonHideAll">
<property name="sizePolicy">
<sizepolicy hsizetype="Minimum" vsizetype="Preferred">
<horstretch>0</horstretch>
<verstretch>0</verstretch>
</sizepolicy>
</property>
<property name="text">
<string>Hide all</string>
</property>
<property name="icon">
<iconset resource="kx_pult.qrc">
<normaloff>:/icons/layer-visible-off.png</normaloff>:/icons/layer-visible-off.png</iconset>
</property>
</widget>
</item>
<item>
<spacer name="horizontalSpacer_2">
<property name="orientation">
<enum>Qt::Horizontal</enum>
</property>
<property name="sizeHint" stdset="0">
<size>
<width>40</width>
<height>20</height>
</size>
</property>
</spacer>
</item>
<item>
<widget class="QPushButton" name="buttonRecord">
<property name="text">
<string>Start record</string>
</property>
<property name="icon">
<iconset resource="kx_pult.qrc">
<normaloff>:/icons/media-record.png</normaloff>:/icons/media-record.png</iconset>
</property>
</widget>
</item>
</layout>
</item>
<item>
<layout class="QHBoxLayout" name="horizontalLayout_3">
<item>
<widget class="QPushButton" name="buttonPause">
<property name="text">
<string>Pause</string>
</property>
<property name="icon">
<iconset resource="kx_pult.qrc">
<normaloff>:/icons/media-playback-pause.png</normaloff>:/icons/media-playback-pause.png</iconset>
</property>
<property name="checkable">
<bool>true</bool>
</property>
</widget>
</item>
<item>
<spacer name="horizontalSpacer">
<property name="orientation">
<enum>Qt::Horizontal</enum>
</property>
<property name="sizeHint" stdset="0">
<size>
<width>40</width>
<height>20</height>
</size>
</property>
</spacer>
</item>
<item>
<widget class="QLabel" name="label_5">
<property name="text">
<string>Show</string>
</property>
</widget>
</item>
<item>
<widget class="QDoubleSpinBox" name="spinHistory">
<property name="sizePolicy">
<sizepolicy hsizetype="Preferred" vsizetype="Fixed">
<horstretch>0</horstretch>
<verstretch>0</verstretch>
</sizepolicy>
</property>
<property name="suffix">
<string> с</string>
</property>
<property name="decimals">
<number>1</number>
</property>
<property name="minimum">
<double>0.100000000000000</double>
</property>
<property name="maximum">
<double>9999.000000000000000</double>
</property>
<property name="value">
<double>10.000000000000000</double>
</property>
</widget>
</item>
<item>
<spacer name="horizontalSpacer_4">
<property name="orientation">
<enum>Qt::Horizontal</enum>
</property>
<property name="sizeType">
<enum>QSizePolicy::Preferred</enum>
</property>
<property name="sizeHint" stdset="0">
<size>
<width>40</width>
<height>20</height>
</size>
</property>
</spacer>
</item>
<item>
<widget class="QLabel" name="label_6">
<property name="text">
<string>Save</string>
</property>
</widget>
</item>
<item>
<widget class="QDoubleSpinBox" name="spinBuffer">
<property name="sizePolicy">
<sizepolicy hsizetype="Preferred" vsizetype="Fixed">
<horstretch>0</horstretch>
<verstretch>0</verstretch>
</sizepolicy>
</property>
<property name="suffix">
<string> с</string>
</property>
<property name="decimals">
<number>1</number>
</property>
<property name="minimum">
<double>0.100000000000000</double>
</property>
<property name="maximum">
<double>9999.000000000000000</double>
</property>
<property name="value">
<double>60.000000000000000</double>
</property>
</widget>
</item>
</layout>
</item>
<item>
<widget class="Graphic" name="graphic">
<property name="buttons">
<set>Graphic::Autofit|Graphic::BorderInputs|Graphic::Clear|Graphic::Configure|Graphic::CursorAxis|Graphic::Grid|Graphic::OnlyExpandX|Graphic::OnlyExpandY|Graphic::Save</set>
</property>
<property name="borderInputsVisible">
<bool>false</bool>
</property>
<property name="legendVisible">
<bool>false</bool>
</property>
<property name="historySize">
<double>60.000000000000000</double>
</property>
<property name="maxVisibleTime">
<double>10.000000000000000</double>
</property>
</widget>
</item>
</layout>
</widget>
<widget class="QWidget" name="tab_3">
<attribute name="title">
<string>Configuration</string>
</attribute>
<layout class="QHBoxLayout" name="horizontalLayout">
<item>
<widget class="QGroupBox" name="groupBox">
<property name="title">
<string>K</string>
</property>
<layout class="QFormLayout" name="formLayout">
<property name="fieldGrowthPolicy">
<enum>QFormLayout::AllNonFixedFieldsGrow</enum>
</property>
<property name="labelAlignment">
<set>Qt::AlignRight|Qt::AlignTrailing|Qt::AlignVCenter</set>
</property>
<property name="formAlignment">
<set>Qt::AlignLeading|Qt::AlignLeft|Qt::AlignTop</set>
</property>
<item row="0" column="0">
<widget class="QLabel" name="label">
<property name="text">
<string>receiver:</string>
</property>
</widget>
</item>
<item row="0" column="1">
<widget class="QLabel" name="labelKReceiver">
<property name="text">
<string/>
</property>
</widget>
</item>
<item row="1" column="0">
<widget class="QLabel" name="label_2">
<property name="text">
<string>sender:</string>
</property>
</widget>
</item>
<item row="1" column="1">
<widget class="QLabel" name="labelKSender">
<property name="text">
<string/>
</property>
</widget>
</item>
<item row="5" column="0">
<widget class="QLabel" name="label_4">
<property name="text">
<string>sended count:</string>
</property>
</widget>
</item>
<item row="5" column="1">
<widget class="QSpinBox" name="spinKSended">
<property name="readOnly">
<bool>true</bool>
</property>
<property name="minimum">
<number>0</number>
</property>
<property name="maximum">
<number>1999999999</number>
</property>
</widget>
</item>
<item row="6" column="0">
<widget class="QLabel" name="label_3">
<property name="text">
<string>received count:</string>
</property>
</widget>
</item>
<item row="6" column="1">
<widget class="QSpinBox" name="spinKReceived">
<property name="readOnly">
<bool>true</bool>
</property>
<property name="minimum">
<number>0</number>
</property>
<property name="maximum">
<number>1999999999</number>
</property>
</widget>
</item>
<item row="7" column="0">
<widget class="QLabel" name="label_7">
<property name="text">
<string>wrong received count:</string>
</property>
</widget>
</item>
<item row="7" column="1">
<widget class="QSpinBox" name="spinKWrong">
<property name="readOnly">
<bool>true</bool>
</property>
<property name="minimum">
<number>0</number>
</property>
<property name="maximum">
<number>1999999999</number>
</property>
</widget>
</item>
<item row="2" column="0">
<widget class="QLabel" name="label_13">
<property name="text">
<string>type:</string>
</property>
</widget>
</item>
<item row="2" column="1">
<widget class="QLabel" name="labelKType">
<property name="text">
<string/>
</property>
</widget>
</item>
<item row="3" column="0">
<widget class="QLabel" name="labelKType_2">
<property name="text">
<string>address K:</string>
</property>
</widget>
</item>
<item row="3" column="1">
<widget class="QLabel" name="labelKAddr">
<property name="text">
<string/>
</property>
</widget>
</item>
<item row="4" column="1">
<widget class="QLabel" name="labelKAddrPult">
<property name="text">
<string/>
</property>
</widget>
</item>
<item row="8" column="0">
<widget class="QLabel" name="label_14">
<property name="text">
<string>missed received count:</string>
</property>
</widget>
</item>
<item row="8" column="1">
<widget class="QSpinBox" name="spinKMissed">
<property name="readOnly">
<bool>true</bool>
</property>
<property name="minimum">
<number>0</number>
</property>
<property name="maximum">
<number>1999999999</number>
</property>
</widget>
</item>
<item row="4" column="0">
<widget class="QLabel" name="labelKType_3">
<property name="text">
<string>address pult:</string>
</property>
</widget>
</item>
</layout>
</widget>
</item>
<item>
<widget class="QGroupBox" name="groupBox_2">
<property name="title">
<string>X</string>
</property>
<layout class="QFormLayout" name="formLayout_2">
<property name="fieldGrowthPolicy">
<enum>QFormLayout::AllNonFixedFieldsGrow</enum>
</property>
<property name="labelAlignment">
<set>Qt::AlignRight|Qt::AlignTrailing|Qt::AlignVCenter</set>
</property>
<property name="formAlignment">
<set>Qt::AlignLeading|Qt::AlignLeft|Qt::AlignTop</set>
</property>
<item row="0" column="0">
<widget class="QLabel" name="label_11">
<property name="text">
<string>receiver:</string>
</property>
</widget>
</item>
<item row="0" column="1">
<widget class="QLabel" name="labelXReceiver">
<property name="text">
<string/>
</property>
</widget>
</item>
<item row="1" column="0">
<widget class="QLabel" name="label_9">
<property name="text">
<string>sender:</string>
</property>
</widget>
</item>
<item row="1" column="1">
<widget class="QLabel" name="labelXSender">
<property name="text">
<string/>
</property>
</widget>
</item>
<item row="2" column="0">
<widget class="QLabel" name="labelKType_4">
<property name="text">
<string>type:</string>
</property>
</widget>
</item>
<item row="2" column="1">
<widget class="QLabel" name="labelXType">
<property name="text">
<string/>
</property>
</widget>
</item>
<item row="3" column="0">
<widget class="QLabel" name="labelKType_5">
<property name="text">
<string>address X:</string>
</property>
</widget>
</item>
<item row="4" column="0">
<widget class="QLabel" name="labelKType_6">
<property name="text">
<string>address pult:</string>
</property>
</widget>
</item>
<item row="4" column="1">
<widget class="QLabel" name="labelXAddrPult">
<property name="text">
<string/>
</property>
</widget>
</item>
<item row="5" column="0">
<widget class="QLabel" name="label_10">
<property name="text">
<string>sended count:</string>
</property>
</widget>
</item>
<item row="5" column="1">
<widget class="QSpinBox" name="spinXSended">
<property name="readOnly">
<bool>true</bool>
</property>
<property name="minimum">
<number>0</number>
</property>
<property name="maximum">
<number>1999999999</number>
</property>
</widget>
</item>
<item row="6" column="0">
<widget class="QLabel" name="label_12">
<property name="text">
<string>received count:</string>
</property>
</widget>
</item>
<item row="6" column="1">
<widget class="QSpinBox" name="spinXReceived">
<property name="readOnly">
<bool>true</bool>
</property>
<property name="minimum">
<number>0</number>
</property>
<property name="maximum">
<number>1999999999</number>
</property>
</widget>
</item>
<item row="7" column="0">
<widget class="QLabel" name="label_8">
<property name="text">
<string>wrong received count:</string>
</property>
</widget>
</item>
<item row="7" column="1">
<widget class="QSpinBox" name="spinXWrong">
<property name="readOnly">
<bool>true</bool>
</property>
<property name="minimum">
<number>0</number>
</property>
<property name="maximum">
<number>1999999999</number>
</property>
</widget>
</item>
<item row="3" column="1">
<widget class="QLabel" name="labelXAddr">
<property name="text">
<string/>
</property>
</widget>
</item>
<item row="8" column="0">
<widget class="QLabel" name="label_15">
<property name="text">
<string>missed received count:</string>
</property>
</widget>
</item>
<item row="8" column="1">
<widget class="QSpinBox" name="spinXMissed">
<property name="readOnly">
<bool>true</bool>
</property>
<property name="minimum">
<number>0</number>
</property>
<property name="maximum">
<number>1999999999</number>
</property>
</widget>
</item>
</layout>
</widget>
</item>
<item>
<widget class="QGroupBox" name="groupBox_3">
<property name="title">
<string>C</string>
</property>
<layout class="QFormLayout" name="formLayout_3">
<property name="fieldGrowthPolicy">
<enum>QFormLayout::AllNonFixedFieldsGrow</enum>
</property>
<property name="labelAlignment">
<set>Qt::AlignRight|Qt::AlignTrailing|Qt::AlignVCenter</set>
</property>
<property name="formAlignment">
<set>Qt::AlignLeading|Qt::AlignLeft|Qt::AlignTop</set>
</property>
<item row="0" column="0">
<widget class="QLabel" name="label_18">
<property name="text">
<string>receiver:</string>
</property>
</widget>
</item>
<item row="0" column="1">
<widget class="QLabel" name="labelCReceiver">
<property name="text">
<string/>
</property>
</widget>
</item>
<item row="1" column="0">
<widget class="QLabel" name="label_19">
<property name="text">
<string>sender:</string>
</property>
</widget>
</item>
<item row="1" column="1">
<widget class="QLabel" name="labelCSender">
<property name="text">
<string/>
</property>
</widget>
</item>
<item row="2" column="0">
<widget class="QLabel" name="labelKType_7">
<property name="text">
<string>type:</string>
</property>
</widget>
</item>
<item row="2" column="1">
<widget class="QLabel" name="labelCType">
<property name="text">
<string/>
</property>
</widget>
</item>
<item row="3" column="0">
<widget class="QLabel" name="labelKType_8">
<property name="text">
<string>address C:</string>
</property>
</widget>
</item>
<item row="4" column="0">
<widget class="QLabel" name="labelKType_9">
<property name="text">
<string>address pult:</string>
</property>
</widget>
</item>
<item row="4" column="1">
<widget class="QLabel" name="labelCAddrPult">
<property name="text">
<string/>
</property>
</widget>
</item>
<item row="5" column="0">
<widget class="QLabel" name="label_20">
<property name="text">
<string>sended count:</string>
</property>
</widget>
</item>
<item row="5" column="1">
<widget class="QSpinBox" name="spinCSended">
<property name="readOnly">
<bool>true</bool>
</property>
<property name="minimum">
<number>0</number>
</property>
<property name="maximum">
<number>1999999999</number>
</property>
</widget>
</item>
<item row="6" column="0">
<widget class="QLabel" name="label_21">
<property name="text">
<string>received count:</string>
</property>
</widget>
</item>
<item row="6" column="1">
<widget class="QSpinBox" name="spinCReceived">
<property name="readOnly">
<bool>true</bool>
</property>
<property name="minimum">
<number>0</number>
</property>
<property name="maximum">
<number>1999999999</number>
</property>
</widget>
</item>
<item row="7" column="0">
<widget class="QLabel" name="label_22">
<property name="text">
<string>wrong received count:</string>
</property>
</widget>
</item>
<item row="7" column="1">
<widget class="QSpinBox" name="spinCWrong">
<property name="readOnly">
<bool>true</bool>
</property>
<property name="minimum">
<number>0</number>
</property>
<property name="maximum">
<number>1999999999</number>
</property>
</widget>
</item>
<item row="3" column="1">
<widget class="QLabel" name="labelCAddr">
<property name="text">
<string/>
</property>
</widget>
</item>
<item row="8" column="0">
<widget class="QLabel" name="label_23">
<property name="text">
<string>missed received count:</string>
</property>
</widget>
</item>
<item row="8" column="1">
<widget class="QSpinBox" name="spinCMissed">
<property name="readOnly">
<bool>true</bool>
</property>
<property name="minimum">
<number>0</number>
</property>
<property name="maximum">
<number>1999999999</number>
</property>
</widget>
</item>
</layout>
</widget>
</item>
<item>
<layout class="QVBoxLayout" name="verticalLayout_4">
<item>
<widget class="QPIConfigWidget" name="configWidget">
<property name="readOnlyName">
<bool>true</bool>
</property>
<property name="readOnlyType">
<bool>true</bool>
</property>
<property name="readOnlyComment">
<bool>true</bool>
</property>
<property name="columnTypeVisible">
<bool>false</bool>
</property>
<attribute name="headerMinimumSectionSize">
<number>20</number>
</attribute>
</widget>
</item>
<item>
<widget class="QPushButton" name="buttonApply">
<property name="text">
<string>Apply</string>
</property>
<property name="icon">
<iconset resource="kx_pult.qrc">
<normaloff>:/icons/document-save-.png</normaloff>:/icons/document-save-.png</iconset>
</property>
</widget>
</item>
</layout>
</item>
</layout>
</widget>
</widget>
</item>
</layout>
</widget>
<action name="actionClear">
<property name="icon">
<iconset resource="kx_pult.qrc">
<normaloff>:/icons/edit-clear-.png</normaloff>:/icons/edit-clear-.png</iconset>
</property>
<property name="text">
<string>Clear</string>
</property>
</action>
</widget>
<customwidgets>
<customwidget>
<class>Graphic</class>
<extends>QFrame</extends>
<header>graphic.h</header>
</customwidget>
<customwidget>
<class>CLineEdit</class>
<extends>QLineEdit</extends>
<header>clineedit.h</header>
</customwidget>
<customwidget>
<class>QPIConfigWidget</class>
<extends>QTreeWidget</extends>
<header>qpiconfigwidget.h</header>
</customwidget>
</customwidgets>
<resources>
<include location="kx_pult.qrc"/>
</resources>
<connections>
<connection>
<sender>spinHistory</sender>
<signal>valueChanged(double)</signal>
<receiver>graphic</receiver>
<slot>setMaxVisibleTime(double)</slot>
<hints>
<hint type="sourcelabel">
<x>919</x>
<y>107</y>
</hint>
<hint type="destinationlabel">
<x>932</x>
<y>132</y>
</hint>
</hints>
</connection>
</connections>
</ui>

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@@ -0,0 +1,10 @@
#include <QtGui/QApplication>
#include "kx_pult.h"
int main(int argc, char *argv[]) {
QApplication a(argc, argv);
KX_Pult w;
w.show();
return a.exec();
}

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@@ -0,0 +1 @@
cmake -G "MinGW Makefiles" -DLIB=1 && make install . %*

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@@ -0,0 +1,718 @@
/*
PIP - Platform Independent Primitives
Protocol, input/output channel (COM, UDP)
Copyright (C) 2019 Ivan Pelipenko peri4ko@yandex.ru, Andrey Bychkov work.a.b@yandex.ru
This program is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#include "piprotocol.h"
/** \class PIProtocol
* \brief
* \details
* \section PIProtocol_sec0 Synopsis
*
*
*
* */
/// DEPRECATED
PIProtocol::PIProtocol(const PIString & config, const PIString & name_, void * recHeaderPtr, int recHeaderSize, void * recDataPtr, int recDataSize, void * sendDataPtr_, int sendDataSize_): PIObject() {
init();
protName = name_;
PIObject::setName(name_);
PIConfig conf(config, PIIODevice::ReadOnly);
if (!conf.isOpened()) {
piCoutObj << "Can`t open \"" << config << "\"!";
devReceiverState = devSenderState = "Config error";
return;
}
PIConfig::Entry & b(conf.getValue(name_)),
& rb(b.getValue("receiver")),
& sb(b.getValue("sender"));
init_receiver(b, rb, config);
init_sender(b, sb, config);
headerPtr = (uchar * )recHeaderPtr;
headerSize = recHeaderSize;
dataPtr = (uchar * )recDataPtr;
dataSize = recDataSize;
sendDataPtr = (uchar * )sendDataPtr_;
sendDataSize = sendDataSize_;
packet_ext->setHeader(PIByteArray(recHeaderPtr, recHeaderSize));
packet_ext->setPayloadSize(recDataSize);
packet_ext->setPacketSize(recDataSize);
packet_ext->setSplitMode(PIPacketExtractor::Header);
bool null_h = (recHeaderPtr == 0 || recHeaderSize == 0), null_d = (recDataPtr == 0 || recDataSize == 0);
if (null_h && null_d) packet_ext->setSplitMode(PIPacketExtractor::None);
else {
if (null_h) packet_ext->setSplitMode(PIPacketExtractor::Size);
}
}
PIProtocol::~PIProtocol() {
delete diagTimer;
delete sendTimer;
delete secTimer;
delete packet_ext;
if (eth != 0) delete eth;
if (ser != 0) delete ser;
}
void PIProtocol::init() {
packet_ext = new PIPacketExtractor(0, PIPacketExtractor::None);
packet_ext->setThreadedReadData(this);
packet_ext->setThreadedReadSlot(receiveEvent);
packet_ext->setHeaderCheckSlot(headerValidateEvent);
packet_ext->setName("__S__PIProtocol::packet_ext");
work = new_mp_prot = false;
eth = 0;
ser = 0;
ret_func = 0;
mp_owner = 0;
net_diag = PIProtocol::Unknown;
cur_pckt = 0;
packets[0] = packets[1] = pckt_cnt = pckt_cnt_max = 0;
diagTimer = 0;
timeout_ = 3.f;
sendTimer = new PITimer(sendEvent, this);
diagTimer = new PITimer(diagEvent, this);
secTimer = new PITimer(secEvent, this);
sendTimer->setName("__S__PIProtocol::sendTimer");
diagTimer->setName("__S__PIProtocol::diagTimer");
secTimer->setName("__S__PIProtocol::secTimer");
wrong_count = receive_count = send_count = missed_count = 0;
packets_in_sec = packets_out_sec = bytes_in_sec = bytes_out_sec = 0;
immediate_freq = integral_freq = ifreq = 0.f;
headerPtr = dataPtr = sendDataPtr = 0;
headerSize = dataSize = sendDataSize = 0;
type_rec = type_send = PIProtocol::None;
devSenderState = devReceiverState = "Unknown";
devSenderName = devReceiverName = "no device";
secTimer->start(1000.);
/*addEvent("receiver started");
addEvent("receiver stopped");
addEvent("sender started");
addEvent("sender stopped");
addEvent<bool>("received");
addEvent<PIProtocol::Quality>("quality changed");
addEventHandler<float>(HANDLER(PIProtocol, startReceive));
addEventHandler<float>(HANDLER(PIProtocol, startSend));
addEventHandler(HANDLER(PIProtocol, start));
addEventHandler(HANDLER(PIProtocol, stopReceive));
addEventHandler(HANDLER(PIProtocol, stopSend));
addEventHandler(HANDLER(PIProtocol, stop));*/
}
void PIProtocol::init_sender(PIConfig::Entry & b, PIConfig::Entry & sb, const PIString & config) {
int ps, gps;
bool ok, gok, flag, gflag, has_dev = false;
float freq, gfreq;
PIFlags<PISerial::Parameters> pp(0);
PIString dev, gdev;
if (sb.isEntryExists("ip") && sb.isEntryExists("device")) {
piCoutObj << "Ambiguous sender type in \"" << config << "\"!";
devSenderState = "Config error";
return;
}
dev = sb.getValue("ip", "", &ok);
gdev = b.getValue("ip", "", &gok);
has_dev = false;
if (ok || gok) {
if (gok && !ok) dev = gdev;
if (gok && ok && (dev != gdev)) {
piCoutObj << "Ambiguous sender type in \"" << config << "\"!";
devSenderState = "Config error";
return;
}
ps = sb.getValue("port", 0, &ok);
gps = b.getValue("port", 0, &gok);
if (ok || gok) {
if (gok && !ok) ps = gps;
if (gok && ok && (ps != gps)) {
piCoutObj << "Ambiguous send port in \"" << config << "\"!";
devSenderState = "Config error";
return;
}
type_send = PIProtocol::Ethernet;
if (eth == 0) eth = new PIEthernet();
eth->setName("__S__PIProtocol::eth");
setSenderAddress(dev, ps);
//setReceiverAddress(dev, ps);
has_dev = true;
flag = sb.getValue("reconnectEnabled", true, &ok);
gflag = b.getValue("reconnectEnabled", true, &gok);
if (ok || gok) {
if (gok && !ok) flag = gflag;
if (gok && ok && (flag != gflag)) {
piCoutObj << "Ambiguous \"reconnectEnabled\" flag in \"" << config << "\"!";
devReceiverState = "Config error";
return;
}
eth->setReopenEnabled(flag);
}
freq = sb.getValue("reconnectTimeout", 1., &ok);
gfreq = b.getValue("reconnectTimeout", 1., &gok);
if (ok || gok) {
if (gok && !ok) freq = gfreq;
if (gok && ok && (freq != gfreq)) {
piCoutObj << "Ambiguous \"reconnectTimeout\" value in \"" << config << "\"!";
devReceiverState = "Config error";
return;
}
eth->setReopenTimeout(freq * 1000);
}
/*if (sendDataPtr_ == 0)
piCoutObj << "Warning: null send data pointer!";
if (sendDataSize_ == 0)
piCoutObj << "Warning: null send data size!";*/
} else {
piCoutObj << "Can`t find \"" << name() << ".sender.port\" or \"" << name() << ".port\" in \"" << config << "\"!";
devSenderState = "Config error";
return;
}
}
dev = sb.getValue("device", "", &ok);
gdev = b.getValue("device", "", &gok);
if (ok || gok) {
if (gok && !ok) dev = gdev;
if (gok && ok && (dev != gdev)) {
piCoutObj << "Ambiguous sender type in \"" << config << "\"!";
devSenderState = "Config error";
return;
}
ps = sb.getValue("speed", 0, &ok);
gps = b.getValue("speed", 0, &gok);
if (ok || gok) {
if (gok && !ok) ps = gps;
if (gok && ok && (ps != gps)) {
piCoutObj << "Ambiguous send \"speed\" in \"" << config << "\"!";
devSenderState = "Config error";
return;
}
flag = sb.getValue("parity", false, &ok);
gflag = b.getValue("parity", false, &gok);
if (ok || gok) {
if (gok && !ok) flag = gflag;
if (gok && ok && (flag != gflag)) {
piCoutObj << "Ambiguous send \"parity\" in \"" << config << "\"!";
devSenderState = "Config error";
return;
}
pp.setFlag(PISerial::ParityControl, flag);
}
flag = sb.getValue("twoStopBits", false, &ok);
gflag = b.getValue("twoStopBits", false, &gok);
if (ok || gok) {
if (gok && !ok) flag = gflag;
if (gok && ok && (flag != gflag)) {
piCoutObj << "Ambiguous send \"twoStopBits\" parity in \"" << config << "\"!";
devSenderState = "Config error";
return;
}
pp.setFlag(PISerial::TwoStopBits, flag);
}
} else {
piCoutObj << "Can`t find \"" << name() << ".sender.speed\" or \"" << name() << ".speed\" in \"" << config << "\"!";
devSenderState = "Config error";
return;
}
type_send = PIProtocol::Serial;
if (ser == 0) ser = new PISerial(dev);
ser->setName("__S__PIProtocol::ser");
setSenderDevice(dev, (PISerial::Speed)ps);
ser->setOutSpeed((PISerial::Speed)ps);
ser->setParameters(pp);
has_dev = true;
/*if (sendDataPtr_ == 0)
piCoutObj << "Warning: null send data pointer!";
if (sendDataSize_ == 0)
piCoutObj << "Warning: null send data size!";*/
}
freq = sb.getValue("frequency", -1.f, &ok);
gfreq = b.getValue("frequency", -1.f, &gok);
if (gok && !ok) freq = gfreq;
if (gok && ok && (freq != gfreq)) {
piCoutObj << "Ambiguous sender frequency in \"" << config << "\"!";
devSenderState = "Config error";
return;
}
if (freq > 0.f && !has_dev)
piCoutObj << "Warning: no sender device and not null send frequency!";
setSenderFrequency(freq);
}
void PIProtocol::init_receiver(PIConfig::Entry & b, PIConfig::Entry & rb, const PIString & config) {
int ps, gps;
bool ok, gok, flag, gflag, has_dev = false;
float freq, gfreq;
PIFlags<PISerial::Parameters> pp(0);
PIString dev, gdev;
if (rb.isEntryExists("ip") && rb.isEntryExists("device")) {
piCoutObj << "Ambiguous receiver type in \"" << config << "\"!";
devReceiverState = "Config error";
return;
}
dev = rb.getValue("ip", "", &ok);
gdev = b.getValue("ip", "", &gok);
if (ok || gok) {
if (gok && !ok) dev = gdev;
if (gok && ok && (dev != gdev)) {
piCoutObj << "Ambiguous receiver type in \"" << config << "\"!";
devReceiverState = "Config error";
return;
}
ps = rb.getValue("port", 0, &ok);
gps = b.getValue("port", 0, &gok);
if (ok || gok) {
if (gok && !ok) ps = gps;
if (gok && ok && (ps != gps)) {
piCoutObj << "Ambiguous receive port in \"" << config << "\"!";
devReceiverState = "Config error";
return;
}
type_rec = PIProtocol::Ethernet;
eth = new PIEthernet();
eth->setName("__S__PIProtocol::eth");
packet_ext->setDevice(eth);
//setSenderAddress(dev, ps);
setReceiverAddress(dev, ps);
has_dev = true;
flag = rb.getValue("reconnectEnabled", true, &ok);
gflag = b.getValue("reconnectEnabled", true, &gok);
if (ok || gok) {
if (gok && !ok) flag = gflag;
if (gok && ok && (flag != gflag)) {
piCoutObj << "Ambiguous \"reconnectEnabled\" flag in \"" << config << "\"!";
devReceiverState = "Config error";
return;
}
eth->setReopenEnabled(flag);
}
freq = rb.getValue("reconnectTimeout", 1., &ok);
gfreq = b.getValue("reconnectTimeout", 1., &gok);
if (ok || gok) {
if (gok && !ok) freq = gfreq;
if (gok && ok && (freq != gfreq)) {
piCoutObj << "Ambiguous \"reconnectTimeout\" value in \"" << config << "\"!";
devReceiverState = "Config error";
return;
}
eth->setReopenTimeout(freq * 1000);
}
/*if (recDataPtr == 0)
piCoutObj << "Warning: null receive data pointer!";
if (recDataSize == 0)
piCoutObj << "Warning: null receive data size!";*/
} else {
piCoutObj << "Can`t find \"" << name() << ".receiver.port\" or \"" << name() << ".port\" in \"" << config << "\"!";
devReceiverState = "Config error";
return;
}
}
dev = rb.getValue("device", "", &ok);
gdev = b.getValue("device", "", &gok);
if (ok || gok) {
if (gok && !ok) dev = gdev;
if (gok && ok && (dev != gdev)) {
piCoutObj << "Ambiguous receiver type in \"" << config << "\"!";
devReceiverState = "Config error";
return;
}
ps = rb.getValue("speed", 0, &ok);
gps = b.getValue("speed", 0, &gok);
if (ok || gok) {
if (gok && !ok) ps = gps;
if (gok && ok && (ps != gps)) {
piCoutObj << "Ambiguous receive \"speed\" in \"" << config << "\"!";
devReceiverState = "Config error";
return;
}
flag = rb.getValue("parity", false, &ok);
gflag = b.getValue("parity", false, &gok);
if (ok || gok) {
if (gok && !ok) flag = gflag;
if (gok && ok && (flag != gflag)) {
piCoutObj << "Ambiguous receive \"parity\" in \"" << config << "\"!";
devReceiverState = "Config error";
return;
}
pp.setFlag(PISerial::ParityControl, flag);
}
flag = rb.getValue("twoStopBits", false, &ok);
gflag = b.getValue("twoStopBits", false, &gok);
if (ok || gok) {
if (gok && !ok) flag = gflag;
if (gok && ok && (flag != gflag)) {
piCoutObj << "Ambiguous receive \"twoStopBits\" parity in \"" << config << "\"!";
devReceiverState = "Config error";
return;
}
pp.setFlag(PISerial::TwoStopBits, flag);
}
type_rec = PIProtocol::Serial;
type_send = PIProtocol::Serial;
ser = new PISerial(dev);
ser->setName("__S__PIProtocol::ser");
packet_ext->setDevice(ser);
//setSenderDevice(dev, (PISerial::Speed)ps);
setReceiverDevice(dev, (PISerial::Speed)ps);
ser->setInSpeed((PISerial::Speed)ps);
ser->setParameters(pp);
ps = rb.getValue("vtime", 1, &ok);
gps = b.getValue("vtime", 1, &gok);
if (ok || gok) {
if (gok && !ok) ps = gps;
if (gok && ok && (ps != gps)) {
piCoutObj << "Ambiguous receive \"vtime\" in \"" << config << "\"!";
devReceiverState = "Config error";
return;
}
ser->setVTime(ps);
}
has_dev = true;
/*if (recDataPtr == 0)
piCoutObj << "Warning: null receive data pointer!";
if (recDataSize == 0)
piCoutObj << "Warning: null receive data size!";*/
} else {
piCoutObj << "Can`t find \"" << name() << ".receiver.speed\" or \"" << name() << ".speed\" in \"" << config << "\"!";
devReceiverState = "Config error";
return;
}
}
freq = rb.getValue("frequency", -1.f, &ok);
gfreq = b.getValue("frequency", -1.f, &gok);
if (gok && !ok) freq = gfreq;
if (gok && ok && (freq != gfreq)) {
piCoutObj << "Ambiguous expected frequency in \"" << config << "\"!";
devReceiverState = "Config error";
return;
}
if (freq > 0.f && !has_dev)
piCoutObj << "Warning: no receiver device and not null expected frequency!";
float tm = b.getValue("disconnectTimeout", 3.f);
if (tm <= 0.f)
piCoutObj << "Warning: diconnect timeout <= 0 s!";
timeout_ = (tm < 0.f) ? 0.f : tm;
setExpectedFrequency(freq);
}
void PIProtocol::setReceiverDevice(const PIString & device, PISerial::Speed speed, bool force) {
if (force) {
type_send = type_rec = PIProtocol::Serial;
if (ser == 0) {
ser = new PISerial();
ser->setName("__S__PIProtocol::ser");
packet_ext->setDevice(ser);
}
}
if (type_rec == PIProtocol::Serial && ser != 0) {
ser->setDevice(device);
ser->setSpeed(speed);
devReceiverName = device;
devSenderName = device;
}
}
void PIProtocol::setReceiverAddress(const PIString & ip, int port, bool force) {
if (force) {
type_rec = PIProtocol::Ethernet;
if (eth == 0) {
eth = new PIEthernet();
eth->setName("__S__PIProtocol::eth");
packet_ext->setDevice(eth);
}
}
if (type_rec == PIProtocol::Ethernet && eth != 0) {
eth->setReadAddress(ip, port);
if (ip.trimmed().isEmpty()) devReceiverName = "no ip";
else devReceiverName = ip + ":" + PIString::fromNumber(port);
}
}
void PIProtocol::setSenderDevice(const PIString & device, PISerial::Speed speed, bool force) {
if (force) {
type_send = type_rec = PIProtocol::Serial;
if (ser == 0) ser = new PISerial();
ser->setName("__S__PIProtocol::ser");
}
if (type_send == PIProtocol::Serial && ser != 0) {
ser->setDevice(device);
ser->setSpeed(speed);
ser->open();
devSenderName = device;
}
}
void PIProtocol::setSenderAddress(const PIString & ip, int port, bool force) {
if (force) {
type_send = PIProtocol::Ethernet;
if (eth == 0) eth = new PIEthernet();
eth->setName("__S__PIProtocol::eth");
}
if (type_send == PIProtocol::Ethernet && eth != 0) {
eth->setSendAddress(ip, port);
if (ip.isEmpty()) devSenderName = "no ip";
else devSenderName = ip + ":" + PIString::fromNumber(port);
}
}
void PIProtocol::setSenderIP(const PIString & ip, bool force) {
if (force) {
type_send = PIProtocol::Ethernet;
if (eth == 0) eth = new PIEthernet();
}
if (type_send == PIProtocol::Ethernet && eth != 0) {
eth->setSendIP(ip);
if (ip.isEmpty()) devSenderName = "no ip";
else devSenderName = ip + ":" + PIString::fromNumber(eth->sendPort());
}
}
void PIProtocol::setSenderPort(int port, bool force) {
if (force) {
type_send = PIProtocol::Ethernet;
if (eth == 0) eth = new PIEthernet();
eth->setName("__S__PIProtocol::eth");
}
if (type_send == PIProtocol::Ethernet && eth != 0) {
eth->setSendPort(port);
if (eth->sendIP().isEmpty()) devSenderName = "no ip";
else devSenderName = eth->sendIP() + ":" + PIString::fromNumber(port);
}
}
void PIProtocol::setExpectedFrequency(float frequency) {
exp_freq = frequency;
changeDisconnectTimeout();
}
void PIProtocol::changeDisconnectTimeout() {
pckt_cnt_max = int(piRound(timeout_ * exp_freq));
if (pckt_cnt_max < 3) pckt_cnt_max = 3;
last_packets.resize(pckt_cnt_max);
}
void PIProtocol::startReceive(float exp_frequency) {
if (exp_frequency > 0.f) exp_freq = exp_frequency;
//if (type_rec == PIProtocol::Serial) ser->start();
//if (type_rec == PIProtocol::Ethernet) eth->start();
packet_ext->startThreadedRead();
msleep(1);
check_state();
if (exp_freq <= 0.f) return;
setExpectedFrequency(exp_freq);
diagTimer->start(1000. / exp_freq);
diag_tm.reset();
receiverStarted();
}
void PIProtocol::startSend(float frequency) {
//cout << "** start send " << send_freq << ", " << frequency << endl;
if (frequency > 0.f) send_freq = frequency;
msleep(1);
check_state();
if (send_freq <= 0.f) return;
sendTimer->start(1000. / send_freq);
diag_tm.reset();
senderStarted();
}
void PIProtocol::stopReceive() {
//if (type_rec == PIProtocol::Serial) ser->stop();
//if (type_rec == PIProtocol::Ethernet) eth->stop();
packet_ext->stop();
diagTimer->stop();
receiverStopped();
}
bool PIProtocol::receiveEvent(void * t, uchar * data, int size) {
PIProtocol * p = (PIProtocol * )t;
if (!p->receive(data, size)) return false;
p->work = true;
//p->lock();
if (p->validate()) {
p->received(true);
//p->unlock();
p->ifreq = p->diag_tm.elapsed_m();
if (p->ifreq > 0.) p->ifreq = 1000. / p->ifreq;
p->diag_tm.reset();
p->receive_count++;
p->packets_in_sec++;
p->bytes_in_sec += size;
p->cur_pckt = 1;
if (p->ret_func != 0) p->ret_func(p);
if (p->mp_owner != 0) PIMultiProtocolBase::receiveEvent(p->mp_owner, p, true, data, size);
return true;
}
p->received(false);
//p->unlock();
p->wrong_count++;
if (p->mp_owner != 0) PIMultiProtocolBase::receiveEvent(p->mp_owner, p, false, data, size);
return false;
}
void PIProtocol::diagEvent(void * t, int) {
PIProtocol * p = (PIProtocol * )t;
p->calc_freq();
p->calc_diag();
p->check_state();
if (p->ser != 0) p->missed_count = p->packet_ext->missedPackets();
}
void PIProtocol::secEvent(void * t, int ) {
PIProtocol * p = (PIProtocol * )t;
p->speedIn = PIString::readableSize(p->bytes_in_sec) + "/s";
p->speedOut = PIString::readableSize(p->bytes_out_sec) + "/s";
p->bytes_in_sec = p->bytes_out_sec = p->packets_in_sec = p->packets_out_sec = 0;
if (p->ser != 0) p->missed_count = p->packet_ext->missedPackets();
}
void PIProtocol::calc_diag() {
PIProtocol::Quality diag;
if (!work) {
diag = PIProtocol::Unknown;
return;
}
if (pckt_cnt < pckt_cnt_max) {
last_packets[pckt_cnt] = cur_pckt;
pckt_cnt++;
} else {
packets[(int)last_packets.back()]--;
if (!last_packets.isEmpty()) last_packets.pop_back();
last_packets.push_front(cur_pckt);
}
packets[(int)cur_pckt]++;
cur_pckt = 0;
float good_percents;
good_percents = (float)packets[1] / pckt_cnt * 100.f;
if (good_percents == 0.f) diag = PIProtocol::Failure;
else if (good_percents <= 20.f) diag = PIProtocol::Bad;
else if (good_percents > 20.f && good_percents <= 80.f) diag = PIProtocol::Average;
else diag = PIProtocol::Good;
if (diag != net_diag) {
qualityChanged(diag, net_diag);
net_diag = diag;
}
}
void PIProtocol::calc_freq() {
float tf;// = float(1000.f / diagTimer->elapsed_m());
tf = immediate_freq = ifreq;
ifreq = 0.f;
if (last_freq.size_s() >= pckt_cnt_max && last_freq.size_s() > 0) last_freq.pop_front();
last_freq.push_back(tf);
tf = last_freq[0];
for (uint i = 1; i < last_freq.size(); ++i)
tf += last_freq[i];
integral_freq = tf / last_freq.size();
}
void PIProtocol::check_state() {
if (type_rec == PIProtocol::Serial) {
if (ser != 0) {
if (ser->isOpened()) devReceiverState = "Opened";
else devReceiverState = "Not opened";
}
else devReceiverState = "Not exists";
}
if (type_rec == PIProtocol::Ethernet) {
if (eth != 0) {
if (eth->isOpened()) devReceiverState = "Opened";
else devReceiverState = "Not opened";
}
else devReceiverState = "Not exists";
}
if (type_send == PIProtocol::Serial) {
if (ser != 0) {
if (ser->isOpened()) devSenderState = "Opened";
else devSenderState = "Not opened";
}
else devSenderState = "Not exists";
}
if (type_send == PIProtocol::Ethernet) {
if (eth != 0) {
if (eth->isOpened()) devSenderState = "Opened";
else devSenderState = "Not opened";
}
else devSenderState = "Not exists";
}
}
void PIProtocol::send(const void * data, int size, bool direct) {
if (!direct) {
if (data == 0 || size == 0) return;
if (!aboutSend()) return;
}
if (type_send == PIProtocol::Serial)
if (ser->send(data, size)) {
send_count++;
packets_out_sec++;
bytes_out_sec += size;
}
if (type_send == PIProtocol::Ethernet)
if (eth->send(data, size)) {
send_count++;
packets_out_sec++;
bytes_out_sec += size;
}
}
void PIProtocol::send() {
//lock();
//memcpy(packet, sendDataPtr, sendDataSize);
//unlock();
if (!aboutSend()) return;
if (sendDataPtr == 0 || sendDataSize == 0) return;
if (type_send == PIProtocol::Serial)
if (ser->send(sendDataPtr, sendDataSize)) {
send_count++;
packets_out_sec++;
bytes_out_sec += sendDataSize;
}
if (type_send == PIProtocol::Ethernet)
if (eth->send(sendDataPtr, sendDataSize)) {
send_count++;
packets_out_sec++;
bytes_out_sec += sendDataSize;
}
}

238
test/kx_utils/piprotocol.h Normal file
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/*! \file piprotocol.h
* \brief Highly configurable from file I/O channel
*/
/*
PIP - Platform Independent Primitives
Protocol, input/output channel (COM, UDP)
Copyright (C) 2019 Ivan Pelipenko peri4ko@yandex.ru, Andrey Bychkov work.a.b@yandex.ru
This program is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#ifndef PIPROTOCOL_H
#define PIPROTOCOL_H
#include "piserial.h"
#include "piethernet.h"
#include "pipacketextractor.h"
#include "pitimer.h"
#include "piconfig.h"
#include "pifile.h"
class PIProtocol; /// DEPRECATED
class PIP_EXPORT PIMultiProtocolBase: protected PIObject /// DEPRECATED
{
PIOBJECT_SUBCLASS(PIMultiProtocolBase, PIObject)
friend class PIProtocol;
public:
PIMultiProtocolBase() {;} /// DEPRECATED
virtual ~PIMultiProtocolBase() {;}
protected:
virtual void received(PIProtocol * prot, bool corrected, uchar * data, int size) {;}
private:
static void receiveEvent(PIMultiProtocolBase * p, PIProtocol * prot, bool corrected, uchar * data, int size) {p->mutex_receive.lock(); p->received(prot, corrected, data, size); p->mutex_receive.unlock();}
PIMutex mutex_receive;
};
typedef void (*ReceiveFunc)(void * );
/// events:
/// void receiverStarted()
/// void receiverStopped()
/// void senderStarted()
/// void senderStopped()
/// void received(bool validate_is_ok)
/// void qualityChanged(PIProtocol::Quality old_quality, PIProtocol::Quality new_quality)
///
/// handlers:
/// void startReceive(float exp_frequency = -1.f)
/// void stopReceive()
/// void startSend(float frequency = -1.f)
/// void stopSend()
/// void start()
/// void stop()
/// void send()
/// void send(const void * data, int size, bool direct = false)
class PIP_EXPORT PIProtocol: public PIObject /// DEPRECATED
{
PIOBJECT_SUBCLASS(PIProtocol, PIObject)
friend class PIMultiProtocolBase;
friend class PIMultiProtocol;
enum Type {None, Serial, Ethernet};
public:
//! Contructs an empty unconfigured protocol
PIProtocol(): PIObject() {init();} /// DEPRECATED
//! Contructs protocol configured from file "config", config file section "name"
PIProtocol(const PIString & config, const PIString & name, void * recHeaderPtr = 0, int recHeaderSize = 0,
void * recDataPtr = 0, int recDataSize = 0, void * sendDataPtr = 0, int sendDataSize = 0); // from config
virtual ~PIProtocol();
//! Connection quality
enum Quality {
Unknown /** Unknown, no one packet received yet */ = 1,
Failure /** No connection, no one correct packet received for last period */ = 2,
Bad /** Bad connection, correct packets received <= 20% */ = 3,
Average /** Average connection, correct packets received > 20% and <= 80% */ = 4,
Good /** Good connection, correct packets received > 80% */ = 5
};
EVENT_HANDLER0(void, startReceive) {startReceive(-1.f);}
EVENT_HANDLER1(void, startReceive, float, exp_frequency); // if "frequency = -1" used last passed value
EVENT_HANDLER0(void, stopReceive);
void setExpectedFrequency(float frequency); // for connection quality diagnostic
void setReceiverDevice(const PIString & device, PISerial::Speed speed, bool force = false); // for Serial
void setReceiverData(void * dataPtr, int dataSize) {this->dataPtr = (uchar * )dataPtr; this->dataSize = dataSize; packet_ext->setHeader(PIByteArray(headerPtr, headerSize)); packet_ext->setPayloadSize(dataSize); packet_ext->setPacketSize(dataSize);}
void setReceiverDataHeader(void * headerPtr, int headerSize) {this->headerPtr = (uchar * )headerPtr; this->headerSize = headerSize; packet_ext->setHeader(PIByteArray(headerPtr, headerSize)); packet_ext->setPayloadSize(dataSize); packet_ext->setPacketSize(dataSize);}
void setReceiverAddress(const PIString & ip, int port, bool force = false); // for Ethernet
void setReceiverParameters(PIFlags<PISerial::Parameters> parameters) {if (type_rec == PIProtocol::Serial || type_send == PIProtocol::Serial) ser->setParameters(parameters);} // for Serial
void setReceiveSlot(ReceiveFunc slot) {ret_func = slot;}
float expectedFrequency() const {return exp_freq;}
EVENT_HANDLER0(void, startSend) {startSend(-1.f);} // if "frequency = -1" used last passed value
EVENT_HANDLER1(void, startSend, float, frequency); // if "frequency = -1" used last passed value
EVENT_HANDLER0(void, stopSend) {sendTimer->stop(); senderStopped();}
void setSenderFrequency(float frequency) {send_freq = frequency;}
void setSenderDevice(const PIString & device, PISerial::Speed speed, bool force = false); // for Serial
void setSenderData(void * dataPtr, int dataSize) {sendDataPtr = (uchar * )dataPtr; sendDataSize = dataSize;}
void setSenderAddress(const PIString & ip, int port, bool force = false); // for Ethernet
void setSenderIP(const PIString & ip, bool force = false); // for Ethernet
void setSenderPort(int port, bool force = false); // for Ethernet
void setSenderParameters(PIFlags<PISerial::Parameters> parameters) {if (type_send == PIProtocol::Serial) ser->setParameters(parameters);} // for Serial
float senderFrequency() const {return send_freq;}
EVENT_HANDLER0(void, start) {startReceive(); startSend();}
EVENT_HANDLER0(void, stop) {stopReceive(); stopSend();}
EVENT_HANDLER0(void, send);
EVENT_HANDLER2(void, send, const void *, data, int, size) {send(data, size, false);}
EVENT_HANDLER3(void, send, const void *, data, int, size, bool, direct);
void setName(const PIString & name) {protName = name; PIObject::setName(name);}
PIString name() const {return protName;}
void setDisconnectTimeout(float timeout) {timeout_ = timeout; changeDisconnectTimeout();}
float disconnectTimeout() const {return timeout_;}
const float * disconnectTimeout_ptr() const {return &timeout_;}
float immediateFrequency() const {return immediate_freq;}
float integralFrequency() const {return integral_freq;}
const float * immediateFrequency_ptr() const {return &immediate_freq;}
const float * integralFrequency_ptr() const {return &integral_freq;}
ullong receiveCountPerSec() const {return packets_in_sec;}
const ullong * receiveCountPerSec_ptr() const {return &packets_in_sec;}
ullong sendCountPerSec() const {return packets_out_sec;}
const ullong * sendCountPerSec_ptr() const {return &packets_out_sec;}
ullong receiveBytesPerSec() const {return bytes_in_sec;}
const ullong * receiveBytesPerSec_ptr() const {return &bytes_in_sec;}
ullong sendBytesPerSec() const {return bytes_out_sec;}
const ullong * sendBytesPerSec_ptr() const {return &bytes_out_sec;}
ullong receiveCount() const {return receive_count;}
const ullong * receiveCount_ptr() const {return &receive_count;}
ullong wrongCount() const {return wrong_count;}
const ullong * wrongCount_ptr() const {return &wrong_count;}
ullong sendCount() const {return send_count;}
const ullong * sendCount_ptr() const {return &send_count;}
ullong missedCount() const {return missed_count;}
const ullong * missedCount_ptr() const {return &missed_count;}
PIProtocol::Quality quality() const {return net_diag;} // receive quality
const int * quality_ptr() const {return (int * )&net_diag;} // receive quality pointer
PIString receiverDeviceName() const {return devReceiverName;}
PIString senderDeviceName() const {return devSenderName;}
PIString receiverDeviceState() const {return devReceiverState;}
const PIString * receiverDeviceState_ptr() const {return &devReceiverState;}
PIString senderDeviceState() const {return devSenderState;}
const PIString * senderDeviceState_ptr() const {return &devSenderState;}
PIString receiveSpeed() const {return speedIn;}
const PIString * receiveSpeed_ptr() const {return &speedIn;}
PIString sendSpeed() const {return speedOut;}
const PIString * sendSpeed_ptr() const {return &speedOut;}
void * receiveData() {return dataPtr;}
void * sendData() {return sendDataPtr;}
PIPacketExtractor * packetExtractor() {return packet_ext;}
// PIByteArray lastHeader() {return packet_ext->lastHeader();}
EVENT0(receiverStarted)
EVENT0(receiverStopped)
EVENT0(senderStarted)
EVENT0(senderStopped)
EVENT1(received, bool, validate_is_ok)
EVENT2(qualityChanged, PIProtocol::Quality, new_quality, PIProtocol::Quality, old_quality)
protected:
virtual bool receive(uchar * data, int size) {if (dataPtr != 0) memcpy(dataPtr, data, size); return true;} // executed when raw data received, break if 'false' return
virtual bool validate() {return true;} // function for validate algorithm and save data from dataPtr to external struct
virtual bool headerValidate(uchar * src, uchar * rec, int size) {for (int i = 0; i < size; ++i) if (src[i] != rec[i]) return false; return true;} // function for validate header (COM-port and headerSize > 0)
virtual uint checksum_i(void * data, int size) { // function for checksum (uint)
uint c = 0;
for (int i = 0; i < size; ++i)
c += ((uchar*)data)[i];
return ~(c + 1);
}
virtual uchar checksum_c(void * data, int size) { // function for checksum (uchar)
uchar c = 0;
for (int i = 0; i < size; ++i)
c += ((uchar*)data)[i];
return ~(c + 1);
}
virtual bool aboutSend() {return true;} // executed before send data, if return 'false' then data is not sending
void init();
void init_sender(PIConfig::Entry & b, PIConfig::Entry & sb, const PIString & config);
void init_receiver(PIConfig::Entry & b, PIConfig::Entry & rb, const PIString & config);
void check_state();
void calc_freq();
void calc_diag();
PISerial * ser;
PIEthernet * eth;
uint dataSize, headerSize, sendDataSize;
uchar * dataPtr, * headerPtr, * sendDataPtr;
private:
static void sendEvent(void * e, int) {((PIProtocol * )e)->send();}
static bool receiveEvent(void * t, uchar * data, int size);
static bool headerValidateEvent(void * t, uchar * src, uchar * rec, int size) {return ((PIProtocol * )t)->headerValidate(src, rec, size);}
static void diagEvent(void * t, int);
static void secEvent(void * t, int);
void setMultiProtocolOwner(PIMultiProtocolBase * mp) {mp_owner = mp;}
PIMultiProtocolBase * multiProtocolOwner() const {return mp_owner;}
void changeDisconnectTimeout();
ReceiveFunc ret_func;
PIPacketExtractor * packet_ext;
PITimer * diagTimer, * sendTimer, * secTimer;
PITimeMeasurer diag_tm;
PIMultiProtocolBase * mp_owner;
PIProtocol::Type type_send, type_rec;
PIProtocol::Quality net_diag;
PIDeque<float> last_freq;
PIDeque<char> last_packets;
PIString protName, devReceiverName, devReceiverState, devSenderName, devSenderState, speedIn, speedOut;
bool work, new_mp_prot;
float exp_freq, send_freq, ifreq, immediate_freq, integral_freq, timeout_;
int packets[2], pckt_cnt, pckt_cnt_max;
char cur_pckt;
ullong wrong_count, receive_count, send_count, missed_count, packets_in_sec, packets_out_sec, bytes_in_sec, bytes_out_sec;
};
#endif // PIPROTOCOL_H

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@echo off
rem please add to environment ANDROID_QT5_DIR (path to Qt directory) and ANDROID_NDK_HOME (path to android ndk directory)
rem execute with Android API version and arch e. g. : #make_android.bat 24 arm ../libs
set _usage_=0
if [%~1]==[] set _usage_=1
if [%~2]==[] set _usage_=1
if [%~3]==[] set _usage_=1
if %_usage_%==1 (
echo Usage: make_android.bat ^<API_LEVEL^> ^<ARCH^> ^<SRC^>
echo ^ ^ ^<API_LEVEL^> - number of API ^(e.g. 19^)
echo ^ ^ ^<ARCH^> - architecture ^(arm, arm64, x86, x86_64^)
echo ^ ^ ^<SRC^> - path to sources
echo.
echo You also have to set next env variables^:
echo ^ ^ ANDROID_QT5_DIR - path to Qt dir, contains subdirs for arch
echo ^ ^ ANDROID_NDK_HOME - path to android ndk directory
exit /b
)
set QARCH=
set AARCH=
if %~2==arm (
set QARCH=armv7
set AARCH=armeabi-v7a
)
if %~2==arm64 (
set QARCH=arm64_v8a
set AARCH=arm64-v8a
)
if %~2==x86 (
set QARCH=x86
set AARCH=x86
)
if %~2==x86_64 (
echo Qt doesn`t support x86_64, building without Qt
set AARCH=x86_64
)
set Qt5_ROOT=%ANDROID_QT5_DIR%\android_%QARCH%\lib\cmake
set Qt5_DIR=%Qt5_ROOT%\Qt5
if NOT [%QARCH%]==[] (
@echo on
cmake_mgw -Wno-dev -DCMAKE_TOOLCHAIN_FILE=%ANDROID_NDK_HOME%\build\cmake\android.toolchain.cmake -DANDROID_STL=c++_shared -DANDROID_PLATFORM=android-%~1 -DANDROID_ABI=%AARCH% -DICU=0 -DQt4=0 -DQt5=1 -DQGLVIEW=0 -DQt5_DIR=%Qt5_ROOT%\Qt5 -DQt5LinguistTools_DIR=%Qt5_ROOT%\Qt5LinguistTools -DQt5UiPlugin_DIR=%Qt5_ROOT%\Qt5UiPlugin -DQt5Widgets_DIR=%Qt5_ROOT%\Qt5Widgets -DQt5Core_DIR=%Qt5_ROOT%\Qt5Core -DQt5Gui_DIR=%Qt5_ROOT%\Qt5Gui -DQt5Sql_DIR=%Qt5_ROOT%\Qt5Sql -DQt5OpenGL_DIR=%Qt5_ROOT%\Qt5OpenGL -DQt5PrintSupport_DIR=%Qt5_ROOT%\Qt5PrintSupport -DQt5Script_DIR=%Qt5_ROOT%\Qt5Script -DQt5Positioning_DIR=%Qt5_ROOT%\Qt5Positioning %~3 %~4 %~5 %~6
) else (
@echo on
cmake_mgw -Wno-dev -DCMAKE_TOOLCHAIN_FILE=%ANDROID_NDK_HOME%\build\cmake\android.toolchain.cmake -DANDROID_STL=c++_shared -DANDROID_PLATFORM=android-%~1 -DANDROID_ABI=%AARCH% -DICU=0 -DQt4=0 -DQt5=0 -DQGLVIEW=0 %~3 %~4 %~5 %~6
)

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export Qt5_ROOT=/mnt/data/Qt_5.9.1_linux/5.9.1/android_armv7/lib/cmake
export Qt5_DIR=${Qt5_ROOT}/Qt5
export Qt5LinguistTools_DIR=${Qt5_ROOT}/Qt5LinguistTools
export Qt5UiPlugin_DIR=${Qt5_ROOT}/Qt5UiPlugin
export Qt5Widgets_DIR=${Qt5_ROOT}/Qt5Widgets
export Qt5Core_DIR=${Qt5_ROOT}/Qt5Core
export Qt5Gui_DIR=${Qt5_ROOT}/Qt5Gui
export Qt5Sql_DIR=${Qt5_ROOT}/Qt5Sql
export Qt5OpenGL_DIR=${Qt5_ROOT}/Qt5OpenGL
export Qt5Designer_DIR=${Qt5_ROOT}/Qt5Designer
rm -rf * && cmake -Wno-dev -DCMAKE_TOOLCHAIN_FILE=/mnt/data/Distrib/Android/android-sdk-linux/ndk-bundle/build/cmake/android.toolchain.cmake -DANDROID_PLATFORM=android-24 -DICU=0 -DQt4=0 -DQt5=1 -DQt5_DIR=${Qt5_ROOT}/Qt5 -DQt5LinguistTools_DIR=${Qt5_ROOT}/Qt5LinguistTools -DQt5UiPlugin_DIR=${Qt5_ROOT}/Qt5UiPlugin -DQt5Widgets_DIR=${Qt5_ROOT}/Qt5Widgets -DQt5Core_DIR=${Qt5_ROOT}/Qt5Core -DQt5Gui_DIR=${Qt5_ROOT}/Qt5Gui -DQt5Sql_DIR=${Qt5_ROOT}/Qt5Sql -DQt5OpenGL_DIR=${Qt5_ROOT}/Qt5OpenGL ../libs

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@echo off
set ARCH=%~1
set PATH=%SDK_MINGW_DIR%%ARCH%\bin;%SDK_QT4_DIR%%ARCH%\bin;%SDK_CMAKE_DIR%\bin
if defined SDK_QT5_DIR set Qt5_DIR=%SDK_QT5_DIR%%ARCH%
mkdir ..\libs_build_win%ARCH%
cd ../libs_build_win%ARCH% && cmake_mgw -Wno-dev -DQGLVIEW=1 ../libs && make install -j4 && cd ../libs && pause

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#! /bin/bash
cd ..
mkdir libs_build_linux
cd libs_build_linux
cmake ../libs
make install $@

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make_libs.bat 32

1
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make_libs.bat 64

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start cmd /C make_libs32.bat
start cmd /C make_libs64.bat

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@echo off
mkdir ..\libs_build_android_%~1
cd ..\libs_build_android_%~1
call ..\libs\make_android 19 %~1 ..\libs "-DUTILS=0"
call make install -j4
cd ..\libs

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@echo off
for %%a in (x86,arm) do (
call .\make_libs_android %%a
)

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project(piqt)
cmake_minimum_required(VERSION 2.6)
if (POLICY CMP0017)
cmake_policy(SET CMP0017 NEW)
endif()
if(NOT LIBPROJECT)
find_package(PIP REQUIRED)
option(LIB "System install" 0)
option(DEBUG "Build with -g3" 0)
set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -O3 -Wall")
if(DEBUG)
set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -g3")
endif()
endif()
find_package(QAD REQUIRED)
list(APPEND QT_MULTILIB_LIST ${PROJECT_NAME})
set(QT_MULTILIB_LIST ${QT_MULTILIB_LIST} PARENT_SCOPE)
include_directories(${PIP_INCLUDES} ${QAD_INCLUDES})
file(GLOB SRC "*.h" "*.cpp" "*.ui" "*.qrc" "lang/*.ts")
find_qt(${QtVersions} Core Gui Positioning)
qt_wrap(${SRC} HDRS out_HDR CPPS out_CPP QMS out_QM)
qt_add_library(${PROJECT_NAME} SHARED out_CPP)
qt_target_link_libraries(${PROJECT_NAME} pip qad_utils qad_widgets)
message(STATUS "Building ${PROJECT_NAME}")
if(LIBPROJECT)
sdk_install("pip" "${PROJECT_NAME}" "${out_HDR}" "${out_QM}")
else()
if(LIB)
if(WIN32)
install(FILES ${out_HDR} DESTINATION ${MINGW_INCLUDE}/pip)
if(NOT "x${out_QM}" STREQUAL "x")
qt_install(FILES ${out_QM} DESTINATION QtLang)
endif()
qt_install(TARGETS ${PROJECT_NAME} DESTINATION ${MINGW_LIB})
qt_install(TARGETS ${PROJECT_NAME} DESTINATION ${MINGW_BIN})
qt_install(TARGETS ${PROJECT_NAME} DESTINATION QtBin)
else()
install(FILES ${out_HDR} DESTINATION ${CMAKE_INSTALL_PREFIX}/include/pip)
qt_install(TARGETS ${PROJECT_NAME} DESTINATION ${CMAKE_INSTALL_PREFIX}/lib)
endif()
message(STATUS "Install ${PROJECT_NAME} to system \"${CMAKE_INSTALL_PREFIX}\"")
else()
qt_install(TARGETS ${PROJECT_NAME} DESTINATION bin)
message(STATUS "Install ${PROJECT_NAME} to local \"bin\"")
endif()
endif()

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#! /bin/bash
VERBOSE=1 make clean
rm -rvf CMakeFiles
rm -vf CMakeCache.txt Makefile cmake_install.cmake install_manifest.txt *.dll *.a *.so *.user* *~ *cxx moc_* ui_* qrc_* *.o *.bak

4
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#make clean
del /q /f /s CMakeFiles
rmdir /q /s CMakeFiles
del /q /f CMakeCache.txt Makefile cmake_install.cmake install_manifest.txt *.user* *~ *cxx moc_* ui_* qrc_* *.o *.exe *.a *.dll *.lib core *.bak

1
test/piqt/make_lib.bat Normal file
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cmake -G "MinGW Makefiles" -DLIB=1 && make install . %*

141
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#include "piqt.h"
#include "qvariantedit.h"
#if QT_VERSION >= 0x050200
# include <QGeoCoordinate>
#endif
const QAD::Enum PI2QADEnum(const PIVariantTypes::Enum & el) {
QAD::Enum ret;
piForeachC (PIVariantTypes::Enumerator & e, el.enum_list)
ret << QAD::Enumerator(e.value, PI2QString(e.name));
ret.selectValue(el.selectedValue());
return ret;
}
const PIVariantTypes::Enum QAD2PIEnum(const QAD::Enum & el) {
PIVariantTypes::Enum ret;
foreach (const QAD::Enumerator & e, el.enum_list)
ret << PIVariantTypes::Enumerator(e.value, Q2PIString(e.name));
ret.selectValue(el.selectedValue());
return ret;
}
const QVariant PI2QVariant(const PIVariant & v) {
switch (v.type()) {
case PIVariant::pivBool: return QVariant(v.toBool());
case PIVariant::pivChar:
case PIVariant::pivUChar:
case PIVariant::pivShort:
case PIVariant::pivUShort:
case PIVariant::pivInt: return QVariant(v.toInt());
case PIVariant::pivUInt: return QVariant(uint(v.toInt()));
case PIVariant::pivLLong: return QVariant(v.toLLong());
case PIVariant::pivULLong: return QVariant(ullong(v.toLLong()));
case PIVariant::pivFloat: return QVariant(v.toFloat());
case PIVariant::pivDouble: return QVariant(v.toDouble());
case PIVariant::pivLDouble: return QVariant(v.toDouble());
case PIVariant::pivByteArray: return QVariant(PI2QByteArray(v.toByteArray()));
case PIVariant::pivString: return QVariant(PI2QString(v.toString()));
case PIVariant::pivStringList: return QVariant(PI2QStringList(v.toStringList()));
case PIVariant::pivTime: return QVariant(PI2QTime(v.toTime()));
case PIVariant::pivDate: return QVariant(PI2QDate(v.toDate()));
case PIVariant::pivDateTime: return QVariant(PI2QDateTime(v.toDateTime()));
case PIVariant::pivEnum: return QVariant::fromValue(PI2QADEnum(v.toEnum()));
case PIVariant::pivFile: return QVariant::fromValue(PI2QADFile(v.toFile()));
case PIVariant::pivDir: return QVariant::fromValue(PI2QADDir(v.toDir()));
case PIVariant::pivColor: return QVariant::fromValue(PI2QColor(v.toColor()));
case PIVariant::pivPoint: return QVariant(PI2QPoint(v.toPoint()));
case PIVariant::pivRect: return QVariant(PI2QRect(v.toRect()));
case PIVariant::pivIODevice: return QVariant::fromValue(PI2QADIODevice(v.toIODevice()));
case PIVariant::pivMathVector: return QVariant::fromValue(PI2QMathVector(v.toMathVector()));
case PIVariant::pivMathMatrix: return QVariant::fromValue(PI2QMathMatrix(v.toMathMatrix()));
//case PIVariant::pivSystemTime: return QVariant(v.to());
default: return QVariant();
}
return QVariant();
}
const PIVariant Q2PIVariant(const QVariant & v) {
switch (v.type()) {
case QVariant::Bool: return PIVariant(v.toBool());
case QVariant::Int: return PIVariant(v.toInt());
case QVariant::UInt: return PIVariant(v.toUInt());
case QVariant::LongLong: return PIVariant(v.toLongLong());
case QVariant::ULongLong: return PIVariant(v.toULongLong());
case QVariant::Double: return PIVariant(v.toDouble());
case QVariant::ByteArray: return PIVariant(Q2PIByteArray(v.toByteArray()));
case QVariant::String: return PIVariant(Q2PIString(v.toString()));
case QVariant::StringList: return PIVariant(Q2PIStringList(v.toStringList()));
case QVariant::Time: return PIVariant(Q2PITime(v.toTime()));
case QVariant::Date: return PIVariant(Q2PIDate(v.toDate()));
case QVariant::DateTime: return PIVariant(Q2PIDateTime(v.toDateTime()));
case QVariant::Color: return PIVariant(Q2PIColor(v.value<QColor>()));
case QVariant::Point:
case QVariant::PointF: return PIVariant(Q2PIPoint(v.toPointF()));
case QVariant::Rect:
case QVariant::RectF: return PIVariant(Q2PIRect(v.toRectF()));
default: break;
}
if (v.canConvert<QAD::Enum>()) return PIVariant(QAD2PIEnum(v.value<QAD::Enum>()));
if (v.canConvert<QAD::File>()) return PIVariant(QAD2PIFile(v.value<QAD::File>()));
if (v.canConvert<QAD::Dir>()) return PIVariant(QAD2PIDir(v.value<QAD::Dir>()));
if (v.canConvert<QAD::IODevice>()) return PIVariant(QAD2PIIODevice(v.value<QAD::IODevice>()));
if (v.canConvert<QAD::MathVector>()) return PIVariant(Q2PIMathVector(v.value<QAD::MathVector>()));
if (v.canConvert<QAD::MathMatrix>()) return PIVariant(Q2PIMathMatrix(v.value<QAD::MathMatrix>()));
return PIVariant();
}
const PIVariantTypes::IODevice QAD2PIIODevice(const QAD::IODevice & v) {
PIVariantTypes::IODevice d;
d.set(Q2PIPropertyStorage(v.props));
d.prefix = Q2PIString(v.prefix);
d.mode = v.mode;
d.options = v.options;
return d;
}
const QAD::IODevice PI2QADIODevice(const PIVariantTypes::IODevice & v) {
return QAD::IODevice(PI2QString(v.prefix), PI2QPropertyStorage(v.get()), v.mode, v.options);
}
const QAD::File PI2QADFile(const PIVariantTypes::File & v) {
return QAD::File(PI2QString(v.file), PI2QString(v.filter), v.is_abs);
}
const QAD::Dir PI2QADDir(const PIVariantTypes::Dir & v) {
return QAD::Dir(PI2QString(v.dir), v.is_abs);
}
const PIVariantTypes::File QAD2PIFile(const QAD::File & v) {
return PIVariantTypes::File(Q2PIString(v.file), Q2PIString(v.filter), v.is_abs);
}
const PIVariantTypes::Dir QAD2PIDir(const QAD::Dir & v) {
return PIVariantTypes::Dir(Q2PIString(v.dir), v.is_abs);
}
#if QT_VERSION >= 0x050200
const QGeoCoordinate PI2QGeoPosition(const PIGeoPosition & v) {
PIGeoPosition p(v);
p.transformTo(PIGeoPosition::Cartesian);
p.setEllipsoidModel(PIEllipsoidModel::WGS84Ellipsoid());
p.transformTo(PIGeoPosition::Geodetic);
return QGeoCoordinate(p.latitudeGeodetic(), p.longitude(), p.height());
}
const PIGeoPosition Q2PIGeoPosition(const QGeoCoordinate & v) {
return PIGeoPosition(createVectorT3d(v.latitude(), v.longitude(), v.altitude()), PIGeoPosition::Geodetic);
}
#endif

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#ifndef PIQT_H
#define PIQT_H
#include "pimathmatrix.h"
#include "pipropertystorage.h"
#include "qad_types.h"
#include <QVector3D>
#include <QDateTime>
#include <QColor>
#if QT_VERSION >= 0x050200
# include "pigeoposition.h"
#endif
class QGeoCoordinate;
const QVariant PI2QVariant(const PIVariant & v);
const PIVariant Q2PIVariant(const QVariant & v);
//inline const QString PI2QString(const PIString & v) {return QString::fromLocal8Bit(v.data());}
inline const QString PI2QString(const PIString & v) {return QString::fromUtf8(v.dataUTF8());}
//inline const PIString Q2PIString(const QString & v) {return PIString(v.toLocal8Bit().data());}
inline const PIString Q2PIString(const QString & v) {return PIString::fromUTF8(v.toUtf8().data());}
inline const QStringList PI2QStringList(const PIStringList & v) {QStringList ret; piForeachC (PIString & s, v) ret << PI2QString(s); return ret;}
inline const PIStringList Q2PIStringList(const QStringList & v) {PIStringList ret; foreach (const QString & s, v) ret << Q2PIString(s); return ret;}
inline const QByteArray PI2QByteArray(const PIByteArray & v) {return QByteArray((const char *)(v.data()), v.size_s());}
inline const PIByteArray Q2PIByteArray(const QByteArray & v) {return PIByteArray(v.constData(), v.size());}
inline const QPointF PI2QVector2(const PIMathVectorT2d & v) {return QPointF(v[0], v[1]);}
inline const QVector3D PI2QVector3(const PIMathVectorT3d & v) {return QVector3D(v[0], v[1], v[2]);}
inline const PIMathVectorT2d Q2PIVector2(const QPointF & v) {return createVectorT2d(double(v.x()), double(v.y()));}
inline const PIMathVectorT3d Q2PIVector3(const QVector3D & v) {return createVectorT3d(double(v.x()), double(v.y()), double(v.z()));}
inline const QPointF PI2QPoint(const PIPointd & v) {return QPointF(v.x, v.y);}
inline const PIPointd Q2PIPoint(const QPointF & v) {return PIPointd(v.x(), v.y());}
inline const QRectF PI2QRect(const PIRectd & v) {return QRectF(v.x0, v.y0, v.width(), v.height());}
inline const PIRectd Q2PIRect(const QRectF & v) {return PIRectd(v.x(), v.y(), v.width(), v.height());}
inline const QAD::MathVector PI2QMathVector(const PIMathVectord & v) {
QVector<double> q = QVector<double>(v.size());
memcpy(q.data(), v.data(), q.size()*sizeof(double));
return QAD::MathVector(q);
}
inline const PIMathVectord Q2PIMathVector(const QAD::MathVector & v) {
PIMathVectord p = PIMathVectord(v.v.size());
memcpy(p.data(), v.v.data(), p.size()*sizeof(double));
return p;
}
inline const QAD::MathMatrix PI2QMathMatrix(const PIMathMatrixd & v) {
PIVector<PIVector<double> > p = v.toVectors();
QVector<QVector<double> > q = QVector<QVector<double> >(p.size());
for (int i = 0; i < q.size(); ++i) {
q[i].resize(p[i].size());
memcpy(q[i].data(), p[i].data(), q[i].size()*sizeof(double));
}
return QAD::MathMatrix(q);
}
inline const PIMathMatrixd Q2PIMathMatrix(const QAD::MathMatrix & v) {
PIVector<PIVector<double> > p = PIVector<PIVector<double> >(v.m.size());
for (int i = 0; i < v.m.size(); ++i) {
p[i].resize(v.m[i].size());
memcpy(p[i].data(), v.m[i].data(), p[i].size()*sizeof(double));
}
return PIMathMatrixd(p);
}
inline const QDate PI2QDate(const PIDate & v) {return QDate(v.year, v.month, v.day);}
inline const QTime PI2QTime(const PITime & v) {return QTime(v.hours, v.minutes, v.seconds, v.milliseconds);}
inline const QDateTime PI2QDateTime(const PIDateTime & v) {return QDateTime(PI2QDate(v.date()), PI2QTime(v.time()));}
inline const PIDate Q2PIDate(const QDate & v) {return PIDate(v.year(), v.month(), v.day());}
inline const PITime Q2PITime(const QTime & v) {return PITime(v.hour(), v.minute(), v.second(), v.msec());}
inline const PIDateTime Q2PIDateTime(const QDateTime & v) {return PIDateTime(Q2PIDate(v.date()), Q2PITime(v.time()));}
inline const QColor PI2QColor(const PIVariantTypes::Color & v) {return QColor::fromRgba(v.rgba);}
inline const PIVariantTypes::Color Q2PIColor(const QColor & v) {return PIVariantTypes::Color(v.rgba());}
inline PIPropertyStorage Q2PIPropertyStorage(const PropertyStorage & props) {
PIPropertyStorage ret;
foreach (const PropertyStorage::Property & p, props)
ret.addProperty(Q2PIString(p.name), Q2PIVariant(p.value), Q2PIString(p.comment), p.flags);
return ret;
}
inline PropertyStorage PI2QPropertyStorage(const PIPropertyStorage & props) {
PropertyStorage ret;
piForeachC (PIPropertyStorage::Property & p, props)
ret.addProperty(PI2QString(p.name), PI2QVariant(p.value), PI2QString(p.comment), p.flags);
return ret;
}
const QAD::Enum PI2QADEnum(const PIVariantTypes::Enum & el);
const QAD::File PI2QADFile(const PIVariantTypes::File & v);
const QAD::Dir PI2QADDir(const PIVariantTypes::Dir & v);
const QAD::IODevice PI2QADIODevice(const PIVariantTypes::IODevice & v);
const PIVariantTypes::Enum QAD2PIEnum(const QAD::Enum & el);
const PIVariantTypes::File QAD2PIFile(const QAD::File & v);
const PIVariantTypes::Dir QAD2PIDir(const QAD::Dir & v);
const PIVariantTypes::IODevice QAD2PIIODevice(const QAD::IODevice & v);
//inline const PIVariant QString2PIVariant(const QString & v) {return PIVariant::readFromString(QString2PIString(v));}
#if QT_VERSION >= 0x050200
const QGeoCoordinate PI2QGeoPosition(const PIGeoPosition & v);
const PIGeoPosition Q2PIGeoPosition(const QGeoCoordinate & v);
#endif
template <typename From>
class __PIQtConverter {
public:
__PIQtConverter(const From & v): val(v) {}
template <typename To> operator To() {return To();}
From val;
};
template<typename From> inline __PIQtConverter<From> __PIQtConvert(const From & f) {return __PIQtConverter<From>(f);}
#define _PIQt_CONVERT(ft, tt, ftc, tfc) \
template<> template<> inline __PIQtConverter<ft>::operator tt() {return ftc(val);} \
template<> template<> inline __PIQtConverter<tt>::operator ft() {return tfc(val);}
#define _PIQt_CONVERT_S(t) _PIQt_CONVERT(PI##t, Q##t, PI2Q##t, Q2PI##t)
_PIQt_CONVERT_S(String)
_PIQt_CONVERT_S(ByteArray)
_PIQt_CONVERT_S(Time)
_PIQt_CONVERT_S(Date)
_PIQt_CONVERT_S(DateTime)
_PIQt_CONVERT(PIMathVectorT2d, QPointF, PI2QVector2, Q2PIVector2)
_PIQt_CONVERT(PIMathVectorT3d, QVector3D, PI2QVector3, Q2PIVector3)
#define piqt __PIQtConvert
#define qtpi __PIQtConvert
#endif // PIQT_H

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@@ -0,0 +1,70 @@
project(piqt_utils)
cmake_minimum_required(VERSION 2.6)
if (POLICY CMP0017)
cmake_policy(SET CMP0017 NEW)
endif()
set(PIQT_UTILS_UTILS 1)
if(LIBPROJECT)
include(PIPMacros)
include(SDKMacros)
set(PIQT_UTILS_UTILS ${UTILS})
else()
find_package(PIP REQUIRED)
option(LIB "System install" 0)
option(DEBUG "Build with -g3" 0)
set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -O3 -Wall")
if(DEBUG)
set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -g3")
endif()
endif()
set(LIBTYPE SHARED)
if(DEFINED ENV{QNX_HOST})
set(LIBTYPE STATIC)
endif()
find_package(QAD REQUIRED)
list(APPEND QT_MULTILIB_LIST ${PROJECT_NAME})
set(QT_MULTILIB_LIST ${QT_MULTILIB_LIST} PARENT_SCOPE)
include_directories(${PIP_INCLUDES} ${QAD_INCLUDES})
file(GLOB SRC "*.h" "*.cpp" "*.ui" "*.qrc" "lang/*.ts")
pip_code_model(CCM "../pip/src_main/io_devices/piiodevice.h" "../pip/src_main/io_utils/pipacketextractor.h" OPTIONS "-DPIP_EXPORT" "-Es")
find_qt(${QtVersions} Core Gui)
qt_wrap(${SRC} HDRS out_HDR CPPS out_CPP QMS out_QM)
qt_add_library(${PROJECT_NAME} ${LIBTYPE} out_CPP CCM)
qt_target_link_libraries(${PROJECT_NAME} pip qad_utils qad_widgets qad_blockview piqt)
message(STATUS "Building ${PROJECT_NAME}")
if (LIBPROJECT)
foreach(_v ${_QT_VERSIONS_})
if (LOCAL_FOUND${_v})
add_dependencies(piqt_utils${_v} pip_cmg)
endif()
endforeach()
endif()
if (NOT DEFINED ENV{QNX_HOST})
if (PIQT_UTILS_UTILS)
add_subdirectory(piconnedit)
add_subdirectory(pidumper)
add_subdirectory(piintrospector)
endif()
endif()
if(LIBPROJECT)
sdk_install("pip" "${PROJECT_NAME}" "${out_HDR}" "${out_QM}")
else()
if(LIB)
if(WIN32)
install(FILES ${out_HDR} DESTINATION ${MINGW_INCLUDE}/pip)
qt_install(TARGETS ${PROJECT_NAME} DESTINATION ${MINGW_LIB})
qt_install(TARGETS ${PROJECT_NAME} DESTINATION ${MINGW_BIN})
qt_install(TARGETS ${PROJECT_NAME} DESTINATION QtBin)
else()
install(FILES ${out_HDR} DESTINATION ${CMAKE_INSTALL_PREFIX}/include/pip)
qt_install(TARGETS ${PROJECT_NAME} DESTINATION ${CMAKE_INSTALL_PREFIX}/lib)
endif()
message(STATUS "Install ${PROJECT_NAME} to system \"${CMAKE_INSTALL_PREFIX}\"")
else()
qt_install(TARGETS ${PROJECT_NAME} DESTINATION bin)
message(STATUS "Install ${PROJECT_NAME} to local \"bin\"")
endif()
endif()

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@@ -0,0 +1,26 @@
project(piconnedit)
file(GLOB SRC "*.h" "*.cpp" "*.ui" "*.qrc" "lang/*.ts")
find_qt(${QtVersions} Core Gui)
qt_wrap(${SRC} HDRS out_HDR CPPS out_CPP QMS out_QM)
qt_add_executable(${PROJECT_NAME} WIN32 out_CPP)
qt_target_link_libraries(${PROJECT_NAME} pip qad_utils qad_widgets piqt_utils)
message(STATUS "Building ${PROJECT_NAME}")
if(LIB)
if(WIN32)
qt_install(TARGETS ${PROJECT_NAME} DESTINATION ${MINGW_BIN})
else()
if(APPLE)
qt_install(TARGETS ${PROJECT_NAME} DESTINATION /usr/local/bin)
else()
if (DEFINED ANDROID_PLATFORM)
qt_install(TARGETS ${PROJECT_NAME} DESTINATION ${ANDROID_SYSTEM_LIBRARY_PATH}/usr/bin)
else()
qt_install(TARGETS ${PROJECT_NAME} DESTINATION /usr/bin)
endif()
endif()
endif()
#message(STATUS "Install ${PROJECT_NAME} to system \"${CMAKE_INSTALL_PREFIX}\"")
else()
qt_install(TARGETS ${PROJECT_NAME} DESTINATION bin)
#message(STATUS "Install ${PROJECT_NAME} to local \"bin\"")
endif()

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