#include "cdutils_k.h" #include "cdutils_core.h" #include "piconfig.h" #include "pifile.h" using namespace CDUtils; KInterface K; KInterface::KInterface() { core = CDCore::instance(); //piCoutObj << (void*)this << core; k_file = PIStringAscii("k.dat"); k_file_size = 0; 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_KeepNamesRequest, this, keepNamesRequest); } bool KInterface::test(int v) { return core->k_.test(v); } CDType & KInterface::operator [](const PIDeque & path_) { return core->k_[path_]; } CDType & KInterface::operator [](const PIString & name_) { return core->k_[name_]; } CDType & KInterface::operator [](int v) { //piCout << (void*)this << "[]" << core; return core->k_[v]; } const CDType KInterface::operator [](int v) const { //piCout << (void*)this << "[]" << core; return core->k_[v]; } CDSection & KInterface::section(int v) { // CDSection & ret = core->k_.section(v); // piCout << "[get section]" << v << ret.name; return core->k_.section(v); } const CDSection KInterface::section(int v) const { return core->k_.section(v); } CDSection & KInterface::section(const PIDeque &path) { PIDeque spath = path; CDSection * rs = &core->k_; while (!spath.isEmpty()) { rs = &rs->section(spath.take_front()); } return *rs; } CDSection & KInterface::root() { return core->k_; } const CDSection KInterface::root() const { return core->k_; } int KInterface::count(bool recursive) const { return core->k_.count(recursive); } void KInterface::send() { core->K_Send(); } void KInterface::request() { core->K_Request(); } bool KInterface::configure(const PIString & config, const PIString & sect) { PIConfig conf(config, PIIODevice::ReadOnly); PIConfig::Entry & e(conf.getValue(sect)); bool ret = false; k_file = e.getValue("file", "k.dat", &ret); return ret; } void KInterface::reinitConnection(const PIString &configuration) { core->init(configuration); } void KInterface::startPing() { core->startPing(); } void KInterface::write(PIIODevice * d) { core->k_write(d); } void KInterface::read(PIIODevice * d) { core->k_read(d); } void KInterface::parse(PIIODevice * d) { core->k_parse(d); } void KInterface::update(PIIODevice * d) { core->k_update(d); } void KInterface::calculate() { core->k_calculate(); } PIString KInterface::appConfig() { return core->appConfig(); } PIString KInterface::pultConfig() { return core->pultConfig(); } void KInterface::readFile() { if (k_file.isEmpty()) return; PIFile f(k_file, PIIODevice::ReadOnly); read(&f); k_file_size = f.size(); } void KInterface::writeFile() { if (k_file.isEmpty()) return; PIFile f(k_file, PIIODevice::ReadWrite); f.clear(); write(&f); k_file_size = f.size(); } bool KInterface::inProgress() { return core->inProgress(); }