forked from Ivasoft/DSView
375 lines
12 KiB
C++
375 lines
12 KiB
C++
/*
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* This file is part of the DSLogic-gui project.
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* DSLogic-gui is based on PulseView.
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*
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* Copyright (C) 2012 Joel Holdsworth <joel@airwebreathe.org.uk>
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* Copyright (C) 2013 DreamSourceLab <dreamsourcelab@dreamsourcelab.com>
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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#include "dsspi.h"
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#include <math.h>
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using namespace boost;
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using namespace std;
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namespace pv {
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namespace decoder {
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const QColor dsSpi::ColorTable[TableSize] = {
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QColor(255, 255, 255, 150),
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QColor(255, 0, 0, 150),
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QColor(255, 0, 0, 150),
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QColor(0, 255, 255, 150),
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};
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const QString dsSpi::StateTable[TableSize] = {
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"UNKNOWN",
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"CLOCK POLARITY ERROR",
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"TOO FEW BITS",
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"DATA"
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};
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dsSpi::dsSpi(boost::shared_ptr<data::Logic> data, std::list <int > _sel_probes, QMap<QString, QVariant> &_options, QMap<QString, int> _options_index) :
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Decoder(data, _sel_probes, _options_index)
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{
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_cpol = _options.value("cpol").toBool();
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_cpha = _options.value("cpha").toBool();
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_order = _options.value("order").toBool();
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_bits = _options.value("bits").toUInt();
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_ssn = _options.value("ssn").toInt();
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if (_ssn == -1)
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assert(_sel_probes.size() == 3);
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else
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assert(_sel_probes.size() == 4);
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if (_ssn != -1) {
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_ssn_index = _sel_probes.front();
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_sel_probes.pop_front();
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}else{
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_ssn_index = 0;
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}
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_sclk_index = _sel_probes.front();
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_sel_probes.pop_front();
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_mosi_index = _sel_probes.front();
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_sel_probes.pop_front();
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_miso_index = _sel_probes.front();
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_sel_probes.pop_front();
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}
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dsSpi::~dsSpi()
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{
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}
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QString dsSpi::get_decode_name()
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{
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return "SPI";
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}
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void dsSpi::recode(std::list <int > _sel_probes, QMap <QString, QVariant>& _options, QMap<QString, int> _options_index)
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{
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_cpol = _options.value("cpol").toBool();
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_cpha = _options.value("cpha").toBool();
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_order = _options.value("order").toBool();
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_bits = _options.value("bits").toUInt();
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_ssn = _options.value("ssn").toInt();
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if (_ssn == -1)
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assert(_sel_probes.size() == 3);
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else
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assert(_sel_probes.size() == 4);
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if (_ssn != -1) {
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_ssn_index = _sel_probes.front();
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_sel_probes.pop_front();
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_sel_probes.push_back(_ssn_index);
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}else{
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_ssn_index = 0;
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}
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_sclk_index = _sel_probes.front();
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_sel_probes.pop_front();
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_sel_probes.push_back(_sclk_index);
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_mosi_index = _sel_probes.front();
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_sel_probes.pop_front();
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_sel_probes.push_back(_mosi_index);
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_miso_index = _sel_probes.front();
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_sel_probes.pop_front();
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_sel_probes.push_back(_miso_index);
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this->_sel_probes = _sel_probes;
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this->_options_index = _options_index;
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decode();
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}
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void dsSpi::decode()
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{
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assert(_data);
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_max_width = 0;
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uint8_t cur_state = Unknown;
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const deque< boost::shared_ptr<pv::data::LogicSnapshot> > &snapshots =
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_data->get_snapshots();
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if (snapshots.empty())
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return;
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const boost::shared_ptr<pv::data::LogicSnapshot> &snapshot =
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snapshots.front();
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const uint64_t ssn_mask = 1ULL << _ssn_index;
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const uint64_t sclk_mask = 1ULL << _sclk_index;
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uint64_t flag_index;
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uint64_t start_index;
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uint64_t stop_index;
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bool edge;
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uint64_t left = 0;
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uint64_t right = snapshot->get_sample_count() - 1;
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if (!_state_index.empty())
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_state_index.clear();
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while(1)
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{
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// search start flag
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if (_ssn != -1) {
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if (_ssn == ((snapshot->get_sample(left) & ssn_mask) != 0)) {
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if (snapshot->get_first_edge(flag_index, edge, left, right, _ssn_index, !_ssn, _ssn_index, -1) == SR_OK) {
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start_index = left;
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stop_index = flag_index - 1;
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} else {
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start_index = left;
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stop_index = right;
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}
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} else {
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if (snapshot->get_first_edge(flag_index, edge, left, right, _ssn_index, _ssn, _ssn_index, -1) == SR_OK)
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start_index = flag_index;
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else
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break;
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if (snapshot->get_first_edge(flag_index, edge, left, right, _ssn_index, !_ssn, _ssn_index, -1) == SR_OK)
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stop_index = flag_index - 1;
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else
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stop_index = right;
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}
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} else {
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start_index = left;
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stop_index = right;
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}
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if (stop_index - start_index > 15) {
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if (_cpol == ((snapshot->get_sample(start_index) & sclk_mask) != 0)) {
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snapshot->get_edges(_cur_edges, start_index, stop_index, _sclk_index, !(_cpha ^ _cpol));
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data_decode(snapshot);
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} else {
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cur_state = ClockErr;
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_state_index.push_back(std::make_pair(std::make_pair(start_index, stop_index - start_index),
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std::make_pair(cur_state, 0)));
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_max_width = max(_max_width, stop_index - start_index);
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}
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}
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left = stop_index + 1;
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if (left >= right)
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break;
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}
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}
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void dsSpi::data_decode(const boost::shared_ptr<data::LogicSnapshot> &snapshot)
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{
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uint8_t cur_state;
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const uint8_t *src_ptr;
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const int unit_size = snapshot->get_unit_size();
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const uint64_t miso_mask = 1ULL << _miso_index;
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const uint64_t mosi_mask = 1ULL << _mosi_index;
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uint64_t edge_size = _cur_edges.size();
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uint64_t index = 0;
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src_ptr = (uint8_t*)snapshot->get_data();
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while (edge_size >= index + _bits) {
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uint8_t mosi = 0;
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uint8_t miso = 0;
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int i;
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if (_order) {
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for (i = 0; i < _bits; i++) {
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mosi = (mosi << 1) + ((*(uint64_t*)(src_ptr + _cur_edges[index + i].first * unit_size) & mosi_mask) != 0);
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miso = (miso << 1) + ((*(uint64_t*)(src_ptr + _cur_edges[index + i].first * unit_size) & miso_mask) != 0);
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}
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} else {
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for (i = 0; i < _bits; i++) {
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mosi = mosi + (((*(uint64_t*)(src_ptr + _cur_edges[index + i].first * unit_size) & mosi_mask) != 0) << i);
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miso = miso + (((*(uint64_t*)(src_ptr + _cur_edges[index + i].first * unit_size) & miso_mask) != 0) << i);
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}
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}
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cur_state = Data;
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_state_index.push_back(std::make_pair(std::make_pair(_cur_edges.at(index).first - 1, _cur_edges.at(index + _bits - 1).first - _cur_edges.at(index).first + 2),
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std::make_pair(cur_state, mosi)));
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_max_width = max(_max_width, _cur_edges.at(index + _bits - 1).first - _cur_edges.at(index).first + 2);
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index += 8;
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}
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if (edge_size > index + 1 && edge_size < index + _bits) {
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cur_state = BitsErr;
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_state_index.push_back(std::make_pair(std::make_pair(_cur_edges.at(index + 1).first - 1, _cur_edges.at(_cur_edges.size() - 1).first - _cur_edges.at(index + 1).first + 2),
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std::make_pair(cur_state, 0)));
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}
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}
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void dsSpi::fill_color_table(std::vector <QColor>& _color_table)
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{
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int i;
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for(i = 0; i < TableSize; i++)
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_color_table.push_back(ColorTable[i]);
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}
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void dsSpi::fill_state_table(std::vector <QString>& _state_table)
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{
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int i;
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for(i = 0; i < TableSize; i++)
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_state_table.push_back(StateTable[i]);
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}
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void dsSpi::get_subsampled_states(std::vector<struct ds_view_state> &states,
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uint64_t start, uint64_t end,
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float min_length)
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{
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ds_view_state view_state;
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const deque< boost::shared_ptr<pv::data::LogicSnapshot> > &snapshots =
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_data->get_snapshots();
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if (snapshots.empty())
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return;
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const boost::shared_ptr<pv::data::LogicSnapshot> &snapshot =
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snapshots.front();
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assert(end <= snapshot->get_sample_count());
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assert(start <= end);
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assert(min_length > 0);
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if (!states.empty())
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states.clear();
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if (_state_index.empty())
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return;
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if (start > _state_index.at(_state_index.size() - 1).first.first)
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return;
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if (end < _state_index.at(0).first.first)
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return;
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if (min_length * _view_scale > _max_width) {
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view_state.index = _state_index.at(0).first.first;
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view_state.samples = _state_index.at(_state_index.size() - 1).first.first +
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_state_index.at(_state_index.size() - 1).first.second - _state_index.at(0).first.first;
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view_state.type = DEC_NODETAIL;
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view_state.state = 0;
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view_state.data = 0;
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states.push_back(view_state);
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return;
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}
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uint64_t view_start = 0;
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uint64_t view_end = 0;
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uint64_t minIndex = 0;
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uint64_t maxIndex = _state_index.size() - 1;
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uint64_t i = start * 1.0f / snapshot->get_sample_count() * maxIndex;
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bool check_flag = false;
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int times = 0;
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while(times <= 32) {
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if (_state_index.at(i).first.first + _state_index.at(i).first.second >= start) {
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check_flag = true;
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} else {
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minIndex = i;
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i = ceil((i + maxIndex) / 2.0f);
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}
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if (check_flag) {
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if (i == 0) {
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view_start = i;
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break;
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} else if (_state_index.at(i-1).first.first + _state_index.at(i-1).first.second < start) {
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view_start = i;
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break;
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} else {
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maxIndex = i;
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i = (i + minIndex) / 2;
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}
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check_flag = false;
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}
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times++;
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}
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i = view_start;
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check_flag = false;
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times = 0;
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minIndex = view_start;
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//maxIndex = _state_index.size() - 1;
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maxIndex = min(_state_index.size() - 1, (size_t)end);
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view_end = view_start;
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while(times <= 32) {
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if (_state_index.at(i).first.first <= end) {
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check_flag = true;
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} else {
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maxIndex = i;
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i = (i + minIndex) / 2;
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}
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if (check_flag) {
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if (i == maxIndex) {
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view_end = i;
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break;
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} else if (_state_index.at(i+1).first.first > end) {
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view_end = i;
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break;
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} else {
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minIndex = i;
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i = ceil((i + maxIndex) / 2.0f);
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}
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check_flag = false;
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}
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times++;
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}
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assert(view_end >= view_start);
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for (uint64_t i = view_start; i <= view_end; i++) {
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if (_state_index.at(i).first.second >= min_length * _view_scale) {
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view_state.index = _state_index.at(i).first.first;
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view_state.samples = _state_index.at(i).first.second;
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view_state.type = (_state_index.at(i).second.first == Data) ? DEC_DATA : DEC_CMD;
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view_state.state = _state_index.at(i).second.first;
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view_state.data = _state_index.at(i).second.second;
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states.push_back(view_state);
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} else {
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view_state.index = _state_index.at(i).first.first;
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view_state.samples = _state_index.at(i).first.second;
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view_state.type = DEC_NODETAIL;
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view_state.state = 0;
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view_state.data = 0;
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states.push_back(view_state);
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}
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}
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}
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} // namespace decoder
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} // namespace pv
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