/* --------------------------------------------------------------------------- * writes netlist data */ static void WritePCBNetlistData (FILE * FP) { /* write out the netlist if it exists */ if (PCB->NetlistLib.MenuN) { int n, p; fprintf (FP, "NetList()\n(\n"); for (n = 0; n < PCB->NetlistLib.MenuN; n++) { LibraryMenuType *menu = &PCB->NetlistLib.Menu[n]; fprintf (FP, "\tNet("); PrintQuotedString(FP, &menu->Name[2]); fprintf (FP, " "); PrintQuotedString(FP, (char *)UNKNOWN (menu->Style)); fprintf (FP, ")\n\t(\n"); for (p = 0; p < menu->EntryN; p++) { LibraryEntryType *entry = &menu->Entry[p]; fprintf (FP, "\t\tConnect("); PrintQuotedString (FP, entry->ListEntry); fprintf (FP, ")\n"); } fprintf (FP, "\t)\n"); } fprintf (FP, ")\n"); } }
/* --------------------------------------------------------------------------- * writes via data */ static void WriteViaData (FILE * FP, DataType *Data) { GList *iter; /* write information about vias */ for (iter = Data->Via; iter != NULL; iter = g_list_next (iter)) { PinType *via = iter->data; pcb_fprintf (FP, "Via[%mr %mr %mr %mr %mr %mr ", via->X, via->Y, via->Thickness, via->Clearance, via->Mask, via->DrillingHole); PrintQuotedString (FP, (char *)EMPTY (via->Name)); fprintf (FP, " %s]\n", F2S (via, VIA_TYPE)); } }
/* --------------------------------------------------------------------------- * writes via data */ static void WriteViaData (FILE * FP, DataTypePtr Data) { int n; /* write information about vias */ for (n = 0; n < Data->ViaN; n++) { PinTypePtr via = &Data->Via[n]; fprintf (FP, "Via[%i %i %i %i %i %i ", via->X, via->Y, via->Thickness, via->Clearance, via->Mask, via->DrillingHole); PrintQuotedString (FP, (char *)EMPTY (via->Name)); fprintf (FP, " %s]\n", F2S (via, VIA_TYPE)); } }
/* --------------------------------------------------------------------------- * writes data header * the name of the PCB, cursor location, zoom and grid * layergroups and some flags */ static void WritePCBDataHeader (FILE * FP) { Cardinal group; /* * ************************** README ******************* * ************************** README ******************* * * If the file format is modified in any way, update * PCB_FILE_VERSION in file.h * * ************************** README ******************* * ************************** README ******************* */ fprintf (FP, "\n# To read pcb files, the pcb version (or the git source date) must be >= the file version\n"); fprintf (FP, "FileVersion[%i]\n", PCB_FILE_VERSION); fputs ("\nPCB[", FP); PrintQuotedString (FP, (char *)EMPTY (PCB->Name)); fprintf (FP, " %i %i]\n\n", (int) PCB->MaxWidth, (int) PCB->MaxHeight); fprintf (FP, "Grid[%s %i %i %i]\n", c_dtostr (PCB->Grid), (int) PCB->GridOffsetX, (int) PCB->GridOffsetY, (int) Settings.DrawGrid); fprintf (FP, "Cursor[%i %i %s]\n", (int) TO_PCB_X (Output.Width / 2), (int) TO_PCB_Y (Output.Height / 2), c_dtostr (PCB->Zoom)); fprintf (FP, "PolyArea[%s]\n", c_dtostr (PCB->IsleArea)); fprintf (FP, "Thermal[%s]\n", c_dtostr (PCB->ThermScale)); fprintf (FP, "DRC[%i %i %i %i %i %i]\n", PCB->Bloat, PCB->Shrink, PCB->minWid, PCB->minSlk, PCB->minDrill, PCB->minRing); fprintf (FP, "Flags(%s)\n", pcbflags_to_string(PCB->Flags)); fprintf (FP, "Groups(\"%s\")\n", LayerGroupsToString (&PCB->LayerGroups)); fputs ("Styles[\"", FP); for (group = 0; group < NUM_STYLES - 1; group++) fprintf (FP, "%s,%i,%i,%i,%i:", PCB->RouteStyle[group].Name, PCB->RouteStyle[group].Thick, PCB->RouteStyle[group].Diameter, PCB->RouteStyle[group].Hole, PCB->RouteStyle[group].Keepaway); fprintf (FP, "%s,%i,%i,%i,%i\"]\n\n", PCB->RouteStyle[group].Name, PCB->RouteStyle[group].Thick, PCB->RouteStyle[group].Diameter, PCB->RouteStyle[group].Hole, PCB->RouteStyle[group].Keepaway); }
/* --------------------------------------------------------------------------- * writes data header * the name of the PCB, cursor location, zoom and grid * layergroups and some flags */ static void WritePCBDataHeader (FILE * FP) { Cardinal group; /* * ************************** README ******************* * ************************** README ******************* * * If the file format is modified in any way, update * PCB_FILE_VERSION in file.h as well as PCBFileVersionNeeded() * at the top of this file. * * ************************** README ******************* * ************************** README ******************* */ fprintf (FP, "\n# To read pcb files, the pcb version (or the git source date) must be >= the file version\n"); fprintf (FP, "FileVersion[%i]\n", PCBFileVersionNeeded ()); fputs ("\nPCB[", FP); PrintQuotedString (FP, (char *)EMPTY (PCB->Name)); pcb_fprintf (FP, " %mr %mr]\n\n", PCB->MaxWidth, PCB->MaxHeight); pcb_fprintf (FP, "Grid[%.1mr %mr %mr %d]\n", PCB->Grid, PCB->GridOffsetX, PCB->GridOffsetY, Settings.DrawGrid); pcb_fprintf (FP, "Cursor[%mr %mr %s]\n", Crosshair.X, Crosshair.Y, c_dtostr (PCB->Zoom)); /* PolyArea should be output in square cmils, no suffix */ fprintf (FP, "PolyArea[%s]\n", c_dtostr (COORD_TO_MIL (COORD_TO_MIL (PCB->IsleArea) * 100) * 100)); pcb_fprintf (FP, "Thermal[%s]\n", c_dtostr (PCB->ThermScale)); pcb_fprintf (FP, "DRC[%mr %mr %mr %mr %mr %mr]\n", PCB->Bloat, PCB->Shrink, PCB->minWid, PCB->minSlk, PCB->minDrill, PCB->minRing); fprintf (FP, "Flags(%s)\n", pcbflags_to_string(PCB->Flags)); fprintf (FP, "Groups(\"%s\")\n", LayerGroupsToString (&PCB->LayerGroups)); fputs ("Styles[\"", FP); for (group = 0; group < NUM_STYLES - 1; group++) pcb_fprintf (FP, "%s,%mr,%mr,%mr,%mr:", PCB->RouteStyle[group].Name, PCB->RouteStyle[group].Thick, PCB->RouteStyle[group].Diameter, PCB->RouteStyle[group].Hole, PCB->RouteStyle[group].Keepaway); pcb_fprintf (FP, "%s,%mr,%mr,%mr,%mr\"]\n\n", PCB->RouteStyle[group].Name, PCB->RouteStyle[group].Thick, PCB->RouteStyle[group].Diameter, PCB->RouteStyle[group].Hole, PCB->RouteStyle[group].Keepaway); }
/* --------------------------------------------------------------------------- * writes layer data */ static void WriteLayerData (FILE * FP, Cardinal Number, LayerType *layer) { GList *n; /* write information about non empty layers */ if (layer->LineN || layer->ArcN || layer->TextN || layer->PolygonN || (layer->Name && *layer->Name)) { fprintf (FP, "Layer(%i ", (int) Number + 1); PrintQuotedString (FP, (char *)EMPTY (layer->Name)); fputs (")\n(\n", FP); WriteAttributeList (FP, &layer->Attributes, "\t"); for (n = layer->Line; n != NULL; n = g_list_next (n)) { LineType *line = n->data; pcb_fprintf (FP, "\tLine[%mr %mr %mr %mr %mr %mr %s]\n", line->Point1.X, line->Point1.Y, line->Point2.X, line->Point2.Y, line->Thickness, line->Clearance, F2S (line, LINE_TYPE)); } for (n = layer->Arc; n != NULL; n = g_list_next (n)) { ArcType *arc = n->data; pcb_fprintf (FP, "\tArc[%mr %mr %mr %mr %mr %mr %ma %ma %s]\n", arc->X, arc->Y, arc->Width, arc->Height, arc->Thickness, arc->Clearance, arc->StartAngle, arc->Delta, F2S (arc, ARC_TYPE)); } for (n = layer->Text; n != NULL; n = g_list_next (n)) { TextType *text = n->data; pcb_fprintf (FP, "\tText[%mr %mr %d %d ", text->X, text->Y, text->Direction, text->Scale); PrintQuotedString (FP, (char *)EMPTY (text->TextString)); fprintf (FP, " %s]\n", F2S (text, TEXT_TYPE)); } for (n = layer->Polygon; n != NULL; n = g_list_next (n)) { PolygonType *polygon = n->data; int p, i = 0; Cardinal hole = 0; fprintf (FP, "\tPolygon(%s)\n\t(", F2S (polygon, POLYGON_TYPE)); for (p = 0; p < polygon->PointN; p++) { PointType *point = &polygon->Points[p]; if (hole < polygon->HoleIndexN && p == polygon->HoleIndex[hole]) { if (hole > 0) fputs ("\n\t\t)", FP); fputs ("\n\t\tHole (", FP); hole++; i = 0; } if (i++ % 5 == 0) { fputs ("\n\t\t", FP); if (hole) fputs ("\t", FP); } pcb_fprintf (FP, "[%mr %mr] ", point->X, point->Y); } if (hole > 0) fputs ("\n\t\t)", FP); fputs ("\n\t)\n", FP); } fputs (")\n", FP); } }
/* --------------------------------------------------------------------------- * writes element data */ static void WriteElementData (FILE * FP, DataType *Data) { GList *n, *p; for (n = Data->Element; n != NULL; n = g_list_next (n)) { ElementType *element = n->data; /* only non empty elements */ if (!element->LineN && !element->PinN && !element->ArcN && !element->PadN) continue; /* the coordinates and text-flags are the same for * both names of an element */ fprintf (FP, "\nElement[%s ", F2S (element, ELEMENT_TYPE)); PrintQuotedString (FP, (char *)EMPTY (DESCRIPTION_NAME (element))); fputc (' ', FP); PrintQuotedString (FP, (char *)EMPTY (NAMEONPCB_NAME (element))); fputc (' ', FP); PrintQuotedString (FP, (char *)EMPTY (VALUE_NAME (element))); pcb_fprintf (FP, " %mr %mr %mr %mr %d %d %s]\n(\n", element->MarkX, element->MarkY, DESCRIPTION_TEXT (element).X - element->MarkX, DESCRIPTION_TEXT (element).Y - element->MarkY, DESCRIPTION_TEXT (element).Direction, DESCRIPTION_TEXT (element).Scale, F2S (&(DESCRIPTION_TEXT (element)), ELEMENTNAME_TYPE)); WriteAttributeList (FP, &element->Attributes, "\t"); for (p = element->Pin; p != NULL; p = g_list_next (p)) { PinType *pin = p->data; pcb_fprintf (FP, "\tPin[%mr %mr %mr %mr %mr %mr ", pin->X - element->MarkX, pin->Y - element->MarkY, pin->Thickness, pin->Clearance, pin->Mask, pin->DrillingHole); PrintQuotedString (FP, (char *)EMPTY (pin->Name)); fprintf (FP, " "); PrintQuotedString (FP, (char *)EMPTY (pin->Number)); fprintf (FP, " %s]\n", F2S (pin, PIN_TYPE)); } for (p = element->Pad; p != NULL; p = g_list_next (p)) { PadType *pad = p->data; pcb_fprintf (FP, "\tPad[%mr %mr %mr %mr %mr %mr %mr ", pad->Point1.X - element->MarkX, pad->Point1.Y - element->MarkY, pad->Point2.X - element->MarkX, pad->Point2.Y - element->MarkY, pad->Thickness, pad->Clearance, pad->Mask); PrintQuotedString (FP, (char *)EMPTY (pad->Name)); fprintf (FP, " "); PrintQuotedString (FP, (char *)EMPTY (pad->Number)); fprintf (FP, " %s]\n", F2S (pad, PAD_TYPE)); } for (p = element->Line; p != NULL; p = g_list_next (p)) { LineType *line = p->data; pcb_fprintf (FP, "\tElementLine [%mr %mr %mr %mr %mr]\n", line->Point1.X - element->MarkX, line->Point1.Y - element->MarkY, line->Point2.X - element->MarkX, line->Point2.Y - element->MarkY, line->Thickness); } for (p = element->Arc; p != NULL; p = g_list_next (p)) { ArcType *arc = p->data; pcb_fprintf (FP, "\tElementArc [%mr %mr %mr %mr %ma %ma %mr]\n", arc->X - element->MarkX, arc->Y - element->MarkY, arc->Width, arc->Height, arc->StartAngle, arc->Delta, arc->Thickness); } fputs ("\n\t)\n", FP); } }
/* --------------------------------------------------------------------------- * writes layer data */ static void WriteLayerData (FILE * FP, Cardinal Number, LayerTypePtr layer) { int n; /* write information about non empty layers */ if (layer->LineN || layer->ArcN || layer->TextN || layer->PolygonN || (layer->Name && *layer->Name)) { fprintf (FP, "Layer(%i ", (int) Number + 1); PrintQuotedString (FP, (char *)EMPTY (layer->Name)); fputs (")\n(\n", FP); WriteAttributeList (FP, &layer->Attributes, "\t"); for (n = 0; n < layer->LineN; n++) { LineTypePtr line = &layer->Line[n]; fprintf (FP, "\tLine[%i %i %i %i %i %i %s]\n", (int) line->Point1.X, (int) line->Point1.Y, (int) line->Point2.X, (int) line->Point2.Y, (int) line->Thickness, (int) line->Clearance, F2S (line, LINE_TYPE)); } for (n = 0; n < layer->ArcN; n++) { ArcTypePtr arc = &layer->Arc[n]; fprintf (FP, "\tArc[%i %i %i %i %i %i %i %i %s]\n", (int) arc->X, (int) arc->Y, (int) arc->Width, (int) arc->Height, (int) arc->Thickness, (int) arc->Clearance, (int) arc->StartAngle, (int) arc->Delta, F2S (arc, ARC_TYPE)); } for (n = 0; n < layer->TextN; n++) { TextTypePtr text = &layer->Text[n]; fprintf (FP, "\tText[%i %i %i %i ", (int) text->X, (int) text->Y, (int) text->Direction, (int) text->Scale); PrintQuotedString (FP, (char *)EMPTY (text->TextString)); fprintf (FP, " %s]\n", F2S (text, TEXT_TYPE)); } for (n = 0; n < layer->PolygonN; n++) { PolygonTypePtr polygon = &layer->Polygon[n]; int p, i = 0; Cardinal hole = 0; fprintf (FP, "\tPolygon(%s)\n\t(", F2S (polygon, POLYGON_TYPE)); for (p = 0; p < polygon->PointN; p++) { PointTypePtr point = &polygon->Points[p]; if (hole < polygon->HoleIndexN && p == polygon->HoleIndex[hole]) { if (hole > 0) fputs ("\n\t\t)", FP); fputs ("\n\t\tHole (", FP); hole++; i = 0; } if (i++ % 5 == 0) { fputs ("\n\t\t", FP); if (hole) fputs ("\t", FP); } fprintf (FP, "[%i %i] ", (int) point->X, (int) point->Y); } if (hole > 0) fputs ("\n\t\t)", FP); fputs ("\n\t)\n", FP); } fputs (")\n", FP); } }
/* --------------------------------------------------------------------------- * writes element data */ static void WriteElementData (FILE * FP, DataTypePtr Data) { int n, p; for (n = 0; n < Data->ElementN; n++) { ElementTypePtr element = &Data->Element[n]; /* only non empty elements */ if (!element->LineN && !element->PinN && !element->ArcN && !element->PadN) continue; /* the coordinates and text-flags are the same for * both names of an element */ fprintf (FP, "\nElement[%s ", F2S (element, ELEMENT_TYPE)); PrintQuotedString (FP, (char *)EMPTY (DESCRIPTION_NAME (element))); fputc (' ', FP); PrintQuotedString (FP, (char *)EMPTY (NAMEONPCB_NAME (element))); fputc (' ', FP); PrintQuotedString (FP, (char *)EMPTY (VALUE_NAME (element))); fprintf (FP, " %i %i %i %i %i %i %s]\n(\n", (int) element->MarkX, (int) element->MarkY, (int) (DESCRIPTION_TEXT (element).X - element->MarkX), (int) (DESCRIPTION_TEXT (element).Y - element->MarkY), (int) DESCRIPTION_TEXT (element).Direction, (int) DESCRIPTION_TEXT (element).Scale, F2S (&(DESCRIPTION_TEXT (element)), ELEMENTNAME_TYPE)); WriteAttributeList (FP, &element->Attributes, "\t"); for (p = 0; p < element->PinN; p++) { PinTypePtr pin = &element->Pin[p]; fprintf (FP, "\tPin[%i %i %i %i %i %i ", (int) (pin->X - element->MarkX), (int) (pin->Y - element->MarkY), (int) pin->Thickness, (int) pin->Clearance, (int) pin->Mask, (int) pin->DrillingHole); PrintQuotedString (FP, (char *)EMPTY (pin->Name)); fprintf (FP, " "); PrintQuotedString (FP, (char *)EMPTY (pin->Number)); fprintf (FP, " %s]\n", F2S (pin, PIN_TYPE)); } for (p = 0; p < element->PadN; p++) { PadTypePtr pad = &element->Pad[p]; fprintf (FP, "\tPad[%i %i %i %i %i %i %i ", (int) (pad->Point1.X - element->MarkX), (int) (pad->Point1.Y - element->MarkY), (int) (pad->Point2.X - element->MarkX), (int) (pad->Point2.Y - element->MarkY), (int) pad->Thickness, (int) pad->Clearance, (int) pad->Mask); PrintQuotedString (FP, (char *)EMPTY (pad->Name)); fprintf (FP, " "); PrintQuotedString (FP, (char *)EMPTY (pad->Number)); fprintf (FP, " %s]\n", F2S (pad, PAD_TYPE)); } for (p = 0; p < element->LineN; p++) { LineTypePtr line = &element->Line[p]; fprintf (FP, "\tElementLine [%i %i %i %i %i]\n", (int) (line->Point1.X - element->MarkX), (int) (line->Point1.Y - element->MarkY), (int) (line->Point2.X - element->MarkX), (int) (line->Point2.Y - element->MarkY), (int) line->Thickness); } for (p = 0; p < element->ArcN; p++) { ArcTypePtr arc = &element->Arc[p]; fprintf (FP, "\tElementArc [%i %i %i %i %i %i %i]\n", (int) (arc->X - element->MarkX), (int) (arc->Y - element->MarkY), (int) arc->Width, (int) arc->Height, (int) arc->StartAngle, (int) arc->Delta, (int) arc->Thickness); } fputs ("\n\t)\n", FP); } }