Add Layer Time/Layer time(Log).

Main logic is ported from SuperSlicer

Signed-off-by: SoftFever <103989404+SoftFever@users.noreply.github.com>
This commit is contained in:
SoftFever 2022-12-19 23:58:24 +08:00 committed by Lane.Wei
parent dfc1eec49b
commit f42ae3239e
4 changed files with 62 additions and 7 deletions

View file

@ -75,6 +75,10 @@ static std::string get_view_type_string(GCodeViewer::EViewType view_type)
return _u8L("Tool");
else if (view_type == GCodeViewer::EViewType::ColorPrint)
return _u8L("Filament");
else if (view_type == GCodeViewer::EViewType::LayerTime)
return _u8L("Layer Time");
else if (view_type == GCodeViewer::EViewType::LayerTimeLog)
return _u8L("Layer Time (log)");
return "";
}
@ -210,7 +214,7 @@ bool GCodeViewer::Path::matches(const GCodeProcessorResult::MoveVertex& move) co
return type == move.type && extruder_id == move.extruder_id && cp_color_id == move.cp_color_id && role == move.extrusion_role &&
move.position.z() <= sub_paths.front().first.position.z() && feedrate == move.feedrate && fan_speed == move.fan_speed &&
height == round_to_bin(move.height) && width == round_to_bin(move.width) &&
matches_percent(volumetric_rate, move.volumetric_rate(), 0.05f);
matches_percent(volumetric_rate, move.volumetric_rate(), 0.05f) && layer_time == move.layer_duration;
}
case EMoveType::Travel: {
return type == move.type && feedrate == move.feedrate && extruder_id == move.extruder_id && cp_color_id == move.cp_color_id;
@ -244,7 +248,7 @@ void GCodeViewer::TBuffer::add_path(const GCodeProcessorResult::MoveVertex& move
paths.push_back({ move.type, move.extrusion_role, move.delta_extruder,
round_to_bin(move.height), round_to_bin(move.width),
move.feedrate, move.fan_speed, move.temperature,
move.volumetric_rate(), move.extruder_id, move.cp_color_id, { { endpoint, endpoint } } });
move.volumetric_rate(), move.layer_duration, move.extruder_id, move.cp_color_id, { { endpoint, endpoint } } });
}
GCodeViewer::Color GCodeViewer::Extrusions::Range::get_color_at(float value) const
@ -270,6 +274,17 @@ GCodeViewer::Color GCodeViewer::Extrusions::Range::get_color_at(float value) con
return ret;
}
float GCodeViewer::Extrusions::Range::step_size(bool is_log) const {
if (is_log)
{
float min_range = min;
if (min_range == 0)
min_range = 0.001f;
return (std::log(max / min_range) / (static_cast<float>(Range_Colors.size()) - 1.0f));
} else
return (max - min) / (static_cast<float>(Range_Colors.size()) - 1.0f);
}
GCodeViewer::SequentialRangeCap::~SequentialRangeCap() {
if (ibo > 0)
glsafe(::glDeleteBuffers(1, &ibo));
@ -361,6 +376,8 @@ void GCodeViewer::SequentialView::Marker::render(int canvas_width, int canvas_he
std::string width = ImGui::ColorMarkerStart + _u8L("Width: ") + ImGui::ColorMarkerEnd;
std::string speed = ImGui::ColorMarkerStart + _u8L("Speed: ") + ImGui::ColorMarkerEnd;
std::string flow = ImGui::ColorMarkerStart + _u8L("Flow: ") + ImGui::ColorMarkerEnd;
std::string layer_time = ImGui::ColorMarkerStart + _u8L("Layer Time: ") + ImGui::ColorMarkerEnd;
std::string layer_time_log = ImGui::ColorMarkerStart + _u8L("Layer Time (log): ") + ImGui::ColorMarkerEnd;
std::string fanspeed = ImGui::ColorMarkerStart + _u8L("Fan Speed: ") + ImGui::ColorMarkerEnd;
std::string temperature = ImGui::ColorMarkerStart + _u8L("Temperature: ") + ImGui::ColorMarkerEnd;
const float item_size = imgui.calc_text_size("X: 000.000 ").x;
@ -372,6 +389,8 @@ void GCodeViewer::SequentialView::Marker::render(int canvas_width, int canvas_he
view_type == EViewType::Width ||
view_type == EViewType::Feedrate ||
view_type == EViewType::VolumetricRate ||
view_type == EViewType::LayerTime ||
view_type == EViewType::LayerTimeLog ||
view_type == EViewType::FanSpeed ||
view_type == EViewType::Temperature)
{
@ -893,6 +912,8 @@ void GCodeViewer::update_by_mode(ConfigOptionMode mode)
view_type_items.push_back(EViewType::Height);
view_type_items.push_back(EViewType::Width);
view_type_items.push_back(EViewType::VolumetricRate);
view_type_items.push_back(EViewType::LayerTime);
view_type_items.push_back(EViewType::LayerTimeLog);
view_type_items.push_back(EViewType::FanSpeed);
view_type_items.push_back(EViewType::Temperature);
if (mode == ConfigOptionMode::comDevelop) {
@ -1128,6 +1149,9 @@ void GCodeViewer::refresh(const GCodeProcessorResult& gcode_result, const std::v
m_extrusions.ranges.temperature.update_from(curr.temperature);
if (curr.extrusion_role != erCustom || is_visible(erCustom))
m_extrusions.ranges.volumetric_rate.update_from(round_to_bin(curr.volumetric_rate()));
if (curr.layer_duration > 0.f)
m_extrusions.ranges.layer_duration.update_from(curr.layer_duration);
[[fallthrough]];
}
case EMoveType::Travel:
@ -3187,6 +3211,8 @@ void GCodeViewer::refresh_render_paths(bool keep_sequential_current_first, bool
case EViewType::Feedrate: { color = m_extrusions.ranges.feedrate.get_color_at(path.feedrate); break; }
case EViewType::FanSpeed: { color = m_extrusions.ranges.fan_speed.get_color_at(path.fan_speed); break; }
case EViewType::Temperature: { color = m_extrusions.ranges.temperature.get_color_at(path.temperature); break; }
case EViewType::LayerTime: { color = m_extrusions.ranges.layer_duration.get_color_at(path.layer_time); break; }
case EViewType::LayerTimeLog: { color = m_extrusions.ranges.layer_duration.get_color_at(path.layer_time); break; }
case EViewType::VolumetricRate: { color = m_extrusions.ranges.volumetric_rate.get_color_at(path.volumetric_rate); break; }
case EViewType::Tool: { color = m_tools.m_tool_colors[path.extruder_id]; break; }
case EViewType::ColorPrint: {
@ -4204,7 +4230,7 @@ void GCodeViewer::render_legend(float &legend_height, int canvas_width, int canv
};
auto append_range = [append_item](const Extrusions::Range& range, unsigned int decimals) {
auto append_range = [append_item](const Extrusions::Range& range, unsigned int decimals, bool is_log = false) {
auto append_range_item = [append_item](int i, float value, unsigned int decimals) {
char buf[1024];
::sprintf(buf, "%.*f", decimals, value);
@ -4219,9 +4245,14 @@ void GCodeViewer::render_legend(float &legend_height, int canvas_width, int canv
append_range_item(0, range.min, decimals);
}
else {
const float step_size = range.step_size();
const float step_size = range.step_size(is_log);
for (int i = static_cast<int>(Range_Colors.size()) - 1; i >= 0; --i) {
append_range_item(i, range.min + static_cast<float>(i) * step_size, decimals);
if (!is_log)
append_range_item(i, range.min + static_cast<float>(i) * step_size, decimals);
else
append_range_item(i, std::exp(std::log(range.min) + static_cast<float>(i) * step_size),decimals);
}
}
};
@ -4448,6 +4479,9 @@ void GCodeViewer::render_legend(float &legend_height, int canvas_width, int canv
case EViewType::FanSpeed: { imgui.title(_u8L("Fan Speed (%)")); break; }
case EViewType::Temperature: { imgui.title(_u8L("Temperature (°C)")); break; }
case EViewType::VolumetricRate: { imgui.title(_u8L("Volumetric flow rate (mm³/s)")); break; }
case EViewType::LayerTime: { imgui.title(_u8L("Layer Time")); break; }
case EViewType::LayerTimeLog: { imgui.title(_u8L("Layer Time (log)")); break; }
case EViewType::Tool:
{
// calculate used filaments data
@ -4585,6 +4619,8 @@ void GCodeViewer::render_legend(float &legend_height, int canvas_width, int canv
}
case EViewType::FanSpeed: { append_range(m_extrusions.ranges.fan_speed, 0); break; }
case EViewType::Temperature: { append_range(m_extrusions.ranges.temperature, 0); break; }
case EViewType::LayerTime: { append_range(m_extrusions.ranges.layer_duration, true); break; }
case EViewType::LayerTimeLog: { append_range(m_extrusions.ranges.layer_duration, true, true); break; }
case EViewType::VolumetricRate: { append_range(m_extrusions.ranges.volumetric_rate, 2); break; }
case EViewType::Tool:
{