mirror of
https://github.com/OrcaSlicer/OrcaSlicer.git
synced 2026-05-17 10:32:20 +00:00
ENH: support new auto cali method
jira: STUDIO-10798 Change-Id: Icb47d8502739f0d4217486e2d1805cd609cee67b (cherry picked from commit 6c2841e57f083cbc6d75eea2af55a8f78d2fa8df)
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@@ -842,7 +842,7 @@ void PressureAdvanceWizard::on_cali_start()
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int selected_tray_id = 0;
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CalibInfo calib_info;
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calib_info.dev_id = curr_obj->dev_id;
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calib_info.dev_id = curr_obj->get_dev_id();
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get_tray_ams_and_slot_id(curr_obj, item.first, calib_info.ams_id, calib_info.slot_id, selected_tray_id);
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calib_info.index = preset_page->get_index_by_tray_id(selected_tray_id);
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calib_info.extruder_id = preset_page->get_extruder_id(calib_info.ams_id);
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@@ -2169,9 +2169,9 @@ void CalibrationPresetPage::init_with_machine(MachineObject* obj)
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m_filament_list_panel->Hide();
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}
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else {
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if ((obj->m_extder_data.extders.size() > 0) && (obj->m_extder_data.extders[0].current_nozzle_flow_type != NozzleFlowType::NONE_FLOWTYPE)) {
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m_comboBox_nozzle_volume->SetSelection(obj->m_extder_data.extders[0].current_nozzle_flow_type - 1);
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if ((obj->GetExtderSystem()->GetTotalExtderCount() > 0) && (obj->GetExtderSystem()->GetNozzleFlowType(0) != NozzleFlowType::NONE_FLOWTYPE))
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{
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m_comboBox_nozzle_volume->SetSelection(obj->GetExtderSystem()->GetNozzleFlowType(0) - 1);
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} else {
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m_comboBox_nozzle_volume->SetSelection(0);
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}
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@@ -1632,78 +1632,6 @@ int MachineObject::command_ams_drying_stop()
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return this->publish_json(j);
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}
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int MachineObject::command_set_chamber_light(LIGHT_EFFECT effect, int on_time, int off_time, int loops, int interval)
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{
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json j;
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j["system"]["command"] = "ledctrl";
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j["system"]["led_node"] = "chamber_light";
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j["system"]["sequence_id"] = std::to_string(MachineObject::m_sequence_id++);
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j["system"]["led_mode"] = light_effect_str(effect);
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j["system"]["led_on_time"] = on_time;
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j["system"]["led_off_time"] = off_time;
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j["system"]["loop_times"] = loops;
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j["system"]["interval_time"] = interval;
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return this->publish_json(j);
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}
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int MachineObject::command_set_chamber_light2(LIGHT_EFFECT effect, int on_time /*= 500*/, int off_time /*= 500*/, int loops /*= 1*/, int interval /*= 1000*/)
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{
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json j;
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j["system"]["command"] = "ledctrl";
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j["system"]["led_node"] = "chamber_light2";
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j["system"]["sequence_id"] = std::to_string(MachineObject::m_sequence_id++);
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j["system"]["led_mode"] = light_effect_str(effect);
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j["system"]["led_on_time"] = on_time;
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j["system"]["led_off_time"] = off_time;
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j["system"]["loop_times"] = loops;
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j["system"]["interval_time"] = interval;
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return this->publish_json(j);
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}
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int MachineObject::command_set_printer_nozzle(std::string nozzle_type, float diameter)
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{
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nozzle_setting_hold_count = HOLD_COUNT_MAX * 2;
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json j;
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j["system"]["command"] = "set_accessories";
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j["system"]["sequence_id"] = std::to_string(MachineObject::m_sequence_id++);
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j["system"]["accessory_type"] = "nozzle";
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j["system"]["nozzle_type"] = nozzle_type;
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j["system"]["nozzle_diameter"] = diameter;
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return this->publish_json(j);
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}
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int MachineObject::command_set_printer_nozzle2(int id, std::string nozzle_type, float diameter)
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{
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nozzle_setting_hold_count = HOLD_COUNT_MAX * 2;
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json j;
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j["print"]["command"] = "set_nozzle";
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j["print"]["sequence_id"] = std::to_string(MachineObject::m_sequence_id++);
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j["print"]["id"] = id;
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j["print"]["type"] = nozzle_type;
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j["print"]["diameter"] = diameter;
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j["print"]["wear"] = 0;
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return this->publish_json(j);
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}
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int MachineObject::command_set_work_light(LIGHT_EFFECT effect, int on_time, int off_time, int loops, int interval)
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{
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json j;
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j["system"]["command"] = "ledctrl";
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j["system"]["led_node"] = "work_light";
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j["system"]["sequence_id"] = std::to_string(MachineObject::m_sequence_id++);
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j["system"]["led_mode"] = light_effect_str(effect);
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j["system"]["led_on_time"] = on_time;
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j["system"]["led_off_time"] = off_time;
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j["system"]["loop_times"] = loops;
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j["system"]["interval_time"] = interval;
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return this->publish_json(j);
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}
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int MachineObject::command_start_extrusion_cali(int tray_index, int nozzle_temp, int bed_temp, float max_volumetric_speed, std::string setting_id)
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{
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BOOST_LOG_TRIVIAL(trace) << "extrusion_cali: tray_id = " << tray_index << ", nozzle_temp = " << nozzle_temp << ", bed_temp = " << bed_temp
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@@ -1433,16 +1433,16 @@ bool CalibUtils::check_printable_status_before_cali(const MachineObject *obj, co
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}
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}
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if (extruder_id >= obj->m_extder_data.extders.size()) {
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if (extruder_id >= obj->GetExtderSystem()->GetExtruders().size()) {
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error_message = _L("The number of printer extruders and the printer selected for calibration does not match.");
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return false;
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}
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float diameter = obj->m_extder_data.extders[extruder_id].current_nozzle_diameter;
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float diameter = obj->GetExtderSystem()->GetNozzleDiameter(extruder_id);
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bool is_multi_extruder = obj->is_multi_extruders();
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std::vector<NozzleFlowType> nozzle_volume_types;
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if (is_multi_extruder) {
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for (const Extder &extruder : obj->m_extder_data.extders) { nozzle_volume_types.emplace_back(extruder.current_nozzle_flow_type); }
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for (auto &extruder : obj->GetExtderSystem()->GetExtruders()) { nozzle_volume_types.emplace_back(extruder.GetNozzleFlowType()); }
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}
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for (const auto &cali_info : cali_infos) {
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@@ -1859,19 +1859,19 @@ void CalibUtils::send_to_print(const std::vector<CalibInfo> &calib_infos, wxStri
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return;
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}
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else if (!obj_->is_support_print_without_sd && (obj_->get_sdcard_state() == MachineObject::SdcardState::NO_SDCARD)) {
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else if (!obj_->GetConfig()->SupportPrintWithoutSD() && (obj_->GetStorage()->get_sdcard_state() == DevStorage::SdcardState::NO_SDCARD)) {
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error_message = _L("Storage needs to be inserted before printing.");
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return;
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}
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if (obj_->is_lan_mode_printer()) {
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if (obj_->get_sdcard_state() == MachineObject::SdcardState::NO_SDCARD) {
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if (obj_->GetStorage()->get_sdcard_state() == DevStorage::SdcardState::NO_SDCARD) {
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error_message = _L("Storage needs to be inserted before printing via LAN.");
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return;
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}
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}
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auto print_job = std::make_shared<PrintJob>(dev_id);
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print_job->m_dev_ip = obj_->dev_ip;
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print_job->m_dev_ip = obj_->get_dev_ip();
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print_job->m_ftp_folder = obj_->get_ftp_folder();
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print_job->m_access_code = obj_->get_access_code();
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@@ -1931,8 +1931,8 @@ void CalibUtils::send_to_print(const std::vector<CalibInfo> &calib_infos, wxStri
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print_job->m_project_name = get_calib_mode_name(cali_mode, flow_ratio_mode);
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print_job->set_calibration_task(true);
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print_job->has_sdcard = obj_->get_sdcard_state() == MachineObject::SdcardState::HAS_SDCARD_NORMAL;
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print_job->set_print_config(MachineBedTypeString[bed_type], true, false, false, false, true, false, 0, 1, 0);
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print_job->has_sdcard = obj_->GetStorage()->get_sdcard_state() == DevStorage::HAS_SDCARD_NORMAL;
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print_job->set_print_config(MachineBedTypeString[bed_type], true, true, false, false, true, false, 0, 1, 0);
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print_job->set_print_job_finished_event(wxGetApp().plater()->get_send_calibration_finished_event(), print_job->m_project_name);
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{ // after send: record the print job
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