/* Copyright (c) 2019, Lars Brubaker, John Lewin All rights reserved. Redistribution and use in source and binary forms, with or without modification, are permitted provided that the following conditions are met: 1. Redistributions of source code must retain the above copyright notice, this list of conditions and the following disclaimer. 2. Redistributions in binary form must reproduce the above copyright notice, this list of conditions and the following disclaimer in the documentation and/or other materials provided with the distribution. THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. The views and conclusions contained in the software and documentation are those of the authors and should not be interpreted as representing official policies, either expressed or implied, of the FreeBSD Project. */ using System; using System.Collections.Generic; using System.Diagnostics; using System.IO; using System.Linq; using System.Text; using System.Threading; using System.Threading.Tasks; using MatterHackers.Agg; using MatterHackers.Agg.Platform; using MatterHackers.DataConverters3D; using MatterHackers.MatterControl.DataStorage; using MatterHackers.MatterControl.PartPreviewWindow; using MatterHackers.MatterControl.SettingsManagement; using MatterHackers.PolygonMesh; using MatterHackers.PolygonMesh.Processors; using MatterHackers.VectorMath; namespace MatterHackers.MatterControl.SlicerConfiguration { public static class Slicer { private static Dictionary meshPrintOutputSettings = new Dictionary(); public static List extrudersUsed = new List(); public static bool RunInProcess { get; set; } = false; public static List<(Matrix4X4 matrix, string fileName)> GetStlFileLocations(IObject3D object3D, ref string mergeRules, PrinterConfig printer, IProgress progressReporter, CancellationToken cancellationToken) { var progressStatus = new ProgressStatus(); extrudersUsed.Clear(); int extruderCount = printer.Settings.GetValue(SettingsKey.extruder_count); for (int extruderIndex = 0; extruderIndex < extruderCount; extruderIndex++) { extrudersUsed.Add(false); } // If we have support enabled and are using an extruder other than 0 for it if (object3D.VisibleMeshes().Any(i => i.WorldOutputType() == PrintOutputTypes.Support)) { if (printer.Settings.GetValue(SettingsKey.support_material_extruder) != 0) { int supportExtruder = Math.Max(0, Math.Min(printer.Settings.GetValue(SettingsKey.extruder_count) - 1, printer.Settings.GetValue(SettingsKey.support_material_extruder) - 1)); extrudersUsed[supportExtruder] = true; } } // If we have raft enabled and are using an extruder other than 0 for it if (printer.Settings.GetValue(SettingsKey.create_raft)) { if (printer.Settings.GetValue(SettingsKey.raft_extruder) != 0) { int raftExtruder = Math.Max(0, Math.Min(printer.Settings.GetValue(SettingsKey.extruder_count) - 1, printer.Settings.GetValue(SettingsKey.raft_extruder) - 1)); extrudersUsed[raftExtruder] = true; } } { // TODO: Once graph parsing is added to MatterSlice we can remove and avoid this flattening meshPrintOutputSettings.Clear(); // Flatten the scene, filtering out items outside of the build volume var meshItemsOnBuildPlate = printer.PrintableItems(object3D); if (meshItemsOnBuildPlate.Any()) { int maxExtruderIndex = 0; var itemsByExtruder = new List>(); for (int extruderIndexIn = 0; extruderIndexIn < extruderCount; extruderIndexIn++) { var extruderIndex = extruderIndexIn; var itemsThisExtruder = meshItemsOnBuildPlate.Where((item) => (File.Exists(item.MeshPath) // Drop missing files || File.Exists(Path.Combine(Object3D.AssetsPath, item.MeshPath))) && (item.WorldMaterialIndex() == extruderIndex || (extruderIndex == 0 && (item.WorldMaterialIndex() >= extruderCount || item.WorldMaterialIndex() == -1))) && (item.WorldOutputType() == PrintOutputTypes.Solid || item.WorldOutputType() == PrintOutputTypes.Default)); itemsByExtruder.Add(itemsThisExtruder); extrudersUsed[extruderIndex] |= itemsThisExtruder.Any(); if (extrudersUsed[extruderIndex]) { maxExtruderIndex = extruderIndex; } } var outputOptions = new List<(Matrix4X4 matrix, string fileName)>(); int savedStlCount = 0; bool first = true; for (int extruderIndex = 0; extruderIndex < itemsByExtruder.Count; extruderIndex++) { if (!first) { mergeRules += ","; first = false; } mergeRules += AddObjectsForExtruder(itemsByExtruder[extruderIndex], outputOptions, ref savedStlCount); } var supportObjects = meshItemsOnBuildPlate.Where((item) => item.WorldOutputType() == PrintOutputTypes.Support); // if we added user generated support if (supportObjects.Any()) { // add a flag to the merge rules to let us know there was support mergeRules += ",S" + AddObjectsForExtruder(supportObjects, outputOptions, ref savedStlCount); } mergeRules += " "; return outputOptions; } } return new List<(Matrix4X4 matrix, string fileName)>(); } private static string AddObjectsForExtruder(IEnumerable items, List<(Matrix4X4 matrix, string fileName)> outputItems, ref int savedStlCount) { string mergeString = ""; if (items.Any()) { bool first = true; foreach (var item in items) { if (!first) { mergeString += ","; } // TODO: Use existing AssetsPath property string assetsDirectory = Path.Combine(ApplicationDataStorage.Instance.ApplicationLibraryDataPath, "Assets"); outputItems.Add((item.WorldMatrix(), Path.Combine(assetsDirectory, item.MeshPath))); mergeString += $"({savedStlCount++}"; first = false; } mergeString += new String(')', items.Count()); } else { // TODO: consider dropping the custom path and using the AssetPath as above string folderToSaveStlsTo = Path.Combine(ApplicationDataStorage.Instance.ApplicationTempDataPath, "amf_to_stl"); // Create directory if needed Directory.CreateDirectory(folderToSaveStlsTo); Mesh tinyMesh = PlatonicSolids.CreateCube(.001, .001, .001); string tinyObjectFileName = Path.Combine(folderToSaveStlsTo, Path.ChangeExtension("non_printing_extruder_change_mesh", ".stl")); StlProcessing.Save(tinyMesh, tinyObjectFileName, CancellationToken.None); outputItems.Add((Matrix4X4.Identity, tinyObjectFileName)); mergeString += $"({savedStlCount++})"; } return mergeString; } public static Task SliceItem(IObject3D object3D, string gcodeFilePath, PrinterConfig printer, IProgress progressReporter, CancellationToken cancellationToken) { string mergeRules = ""; var stlFileLocations = GetStlFileLocations(object3D, ref mergeRules, printer, progressReporter, cancellationToken); if (stlFileLocations.Count > 0) { return SliceItem(stlFileLocations, mergeRules, gcodeFilePath, printer, progressReporter, cancellationToken); } return Task.FromResult(false); } public static Task SliceItem(List<(Matrix4X4 matrix, string fileName)> stlFileLocations, string mergeRules, string gcodeFilePath, PrinterConfig printer, IProgress reporter, CancellationToken cancellationToken) { // Wrap the reporter with a specialized MatterSlice string parser for percent from string results var sliceProgressReporter = new SliceProgressReporter(reporter, printer); bool slicingSucceeded = true; if(stlFileLocations.Count > 0) { var progressStatus = new ProgressStatus() { Status = "Generating Config" }; sliceProgressReporter.Report(progressStatus); string configFilePath = Path.Combine( ApplicationDataStorage.Instance.GCodeOutputPath, string.Format("config_{0}.ini", printer.Settings.GetLongHashCode().ToString())); progressStatus.Status = "Starting slicer"; sliceProgressReporter.Report(progressStatus); if (!File.Exists(gcodeFilePath) || !HasCompletedSuccessfully(gcodeFilePath)) { string commandArgs; var matrixAndMeshArgs = new StringBuilder(); foreach (var matrixAndFile in stlFileLocations) { var matrixString = ""; bool first = true; for (int i = 0; i < 4; i++) { for (int j = 0; j < 4; j++) { if (!first) { matrixString += ","; } matrixString += matrixAndFile.matrix[i, j].ToString("0.######"); first = false; } } matrixAndMeshArgs.Append($" -m \"{matrixString}\""); matrixAndMeshArgs.Append($" \"{matrixAndFile.fileName}\" "); } printer.EngineMappingsMatterSlice.WriteSliceSettingsFile(configFilePath, rawLines: new[] { $"booleanOperations = {mergeRules}", $"additionalArgsToProcess ={matrixAndMeshArgs}" }); commandArgs = $"-v -o \"{gcodeFilePath}\" -c \"{configFilePath}\""; bool forcedExit = false; if (AggContext.OperatingSystem == OSType.Android || AggContext.OperatingSystem == OSType.Mac || RunInProcess) { EventHandler WriteOutput = (s, e) => { if (cancellationToken.IsCancellationRequested) { MatterHackers.MatterSlice.MatterSlice.Stop(); forcedExit = true; } if (s is string stringValue) { sliceProgressReporter?.Report(new ProgressStatus() { Status = stringValue }); } }; MatterSlice.LogOutput.GetLogWrites += WriteOutput; MatterSlice.MatterSlice.ProcessArgs(commandArgs); MatterSlice.LogOutput.GetLogWrites -= WriteOutput; slicingSucceeded = !forcedExit; } else { var slicerProcess = new Process() { StartInfo = new ProcessStartInfo() { Arguments = commandArgs, CreateNoWindow = true, WindowStyle = ProcessWindowStyle.Hidden, RedirectStandardError = true, RedirectStandardOutput = true, FileName = MatterSliceInfo.GetEnginePath(), UseShellExecute = false } }; slicerProcess.OutputDataReceived += (s, e) => { if (e.Data is string stringValue) { if (cancellationToken.IsCancellationRequested) { slicerProcess?.Kill(); slicerProcess?.Dispose(); forcedExit = true; } string message = stringValue.Replace("=>", "").Trim(); if (message.Contains(".gcode")) { message = "Saving intermediate file"; } message += "..."; sliceProgressReporter?.Report(new ProgressStatus() { Status = message }); } }; slicerProcess.Start(); slicerProcess.BeginOutputReadLine(); string stdError = slicerProcess.StandardError.ReadToEnd(); if (!forcedExit) { slicerProcess.WaitForExit(); } slicingSucceeded = !forcedExit; } } try { if (slicingSucceeded && File.Exists(gcodeFilePath) && File.Exists(configFilePath)) { // make sure we have not already written the settings onto this file bool fileHasSettings = false; int bufferSize = 32000; using (Stream fileStream = File.OpenRead(gcodeFilePath)) { // Read the tail of the file to determine if the given token exists byte[] buffer = new byte[bufferSize]; fileStream.Seek(Math.Max(0, fileStream.Length - bufferSize), SeekOrigin.Begin); int numBytesRead = fileStream.Read(buffer, 0, bufferSize); string fileEnd = System.Text.Encoding.UTF8.GetString(buffer); if (fileEnd.Contains("GCode settings used")) { fileHasSettings = true; } } if (!fileHasSettings) { using (StreamWriter gcodeWriter = File.AppendText(gcodeFilePath)) { string oemName = "MatterControl"; if (OemSettings.Instance.WindowTitleExtra != null && OemSettings.Instance.WindowTitleExtra.Trim().Length > 0) { oemName += $" - {OemSettings.Instance.WindowTitleExtra}"; } gcodeWriter.WriteLine("; {0} Version {1} Build {2} : GCode settings used", oemName, VersionInfo.Instance.ReleaseVersion, VersionInfo.Instance.BuildVersion); gcodeWriter.WriteLine("; Date {0} Time {1}:{2:00}", DateTime.Now.Date, DateTime.Now.Hour, DateTime.Now.Minute); foreach (string line in File.ReadLines(configFilePath)) { gcodeWriter.WriteLine("; {0}", line); } } } } } catch (Exception) { } } return Task.FromResult(slicingSucceeded); } private static bool HasCompletedSuccessfully(string gcodeFilePath) { using (var reader = new StreamReader(gcodeFilePath)) { if (reader.BaseStream.Length > 10000) { reader.BaseStream.Seek(-10000, SeekOrigin.End); } string endText = reader.ReadToEnd(); return endText.Contains("; MatterSlice Completed Successfully"); } } } }