496 lines
16 KiB
C++
496 lines
16 KiB
C++
/*************************************/
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/* fichier gen_modules_placefile.cpp */
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/*************************************/
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/*
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* 1 - create ascii files for automatic placement of smd components
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* 2 - create a module report (pos and module descr) (ascii file)
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*/
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#include "fctsys.h"
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#include "common.h"
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#include "pcbnew.h"
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#include "trigo.h"
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class LIST_MOD /* Permet de lister les elements utiles des modules */
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{
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public:
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MODULE* m_Module;
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const wxChar* m_Reference;
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const wxChar* m_Value;
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};
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/* variables locale : */
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static wxPoint File_Place_Offset; /* Offset des coord de placement pour le fichier généré */
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/* Routines Locales */
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static void WriteDrawSegmentPcb( DRAWSEGMENT* PtDrawSegment, FILE* rptfile );
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/* Routine de tri utilisee par GenereModulesPosition() */
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static int ListeModCmp( LIST_MOD* Ref, LIST_MOD* Cmp )
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{
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return StrLenNumCmp( Ref->m_Reference, Cmp->m_Reference, 16 );
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}
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#if defined(DEBUG)
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/**
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* Function HasNonSMDPins
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* returns true if the given module has any non smd pins, such as through hole
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* and therefore cannot be placed automatically.
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*/
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static bool HasNonSMDPins( MODULE* aModule )
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{
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D_PAD* pad;
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for( pad = aModule->m_Pads; pad; pad = pad->Next() )
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{
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if( pad->m_Attribut != PAD_SMD )
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return true;
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}
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return false;
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}
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#endif
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/**************************************************************/
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void WinEDA_PcbFrame::GenModulesPosition( wxCommandEvent& event )
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/**************************************************************/
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/* Routine de generation du fichier de positionnement des modules,
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* utilisé pour les machines de placement de composants
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*/
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{
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float conv_unit;
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int NbMod, ii;
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bool GenCu = FALSE;
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MODULE* Module;
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LIST_MOD* Liste;
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char Line[1024], Buff[80];
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wxString NameLayerCu, NameLayerCmp, msg;
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FILE* LayerCu = NULL, * LayerCmp = NULL;
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/* Calcul des echelles de conversion */
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conv_unit = 0.0001; /* unites = INCHES */
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// if(IF_DRILL_METRIC) conv_unit = 0.000254; /* unites = mm */
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File_Place_Offset = m_Auxiliary_Axis_Position;
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/* Calcul du nombre de modules utiles ( Attribut CMS, non VIRTUAL ) ) */
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NbMod = 0;
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for( Module = m_Pcb->m_Modules; Module; Module = Module->Next() )
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{
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if( Module->m_Attributs & MOD_VIRTUAL )
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{
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D(printf("skipping module %s because its virtual\n", CONV_TO_UTF8(Module->GetReference()) );)
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continue;
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}
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if( (Module->m_Attributs & MOD_CMS) == 0 )
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{
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#if 0 && defined(DEBUG) // enable this code to fix a bunch of mis-labeled modules:
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if( !HasNonSMDPins( Module ) )
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Module->m_Attributs |= MOD_CMS; // all pins are SMD, fix the problem
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else
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{
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printf( "skipping %s because its attribute is not CMS and it has non SMD pins\n", CONV_TO_UTF8(Module->GetReference()) );
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continue;
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}
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#else
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continue;
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#endif
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}
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if( Module->GetLayer() == COPPER_LAYER_N )
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GenCu = TRUE;
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NbMod++;
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}
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if( NbMod == 0 )
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{
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DisplayError( this, _( "No Modules for Automated Placement" ), 20 ); return;
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}
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/* Init nom fichier */
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NameLayerCmp = GetScreen()->m_FileName;
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ChangeFileNameExt( NameLayerCmp, wxT( "-cmp.pos" ) );
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LayerCmp = wxFopen( NameLayerCmp, wxT( "wt" ) );
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if( LayerCmp == 0 )
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{
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msg = _( "Unable to create " ) + NameLayerCu;
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DisplayError( this, msg ); return;
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}
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if( GenCu )
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{
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NameLayerCu = GetScreen()->m_FileName;
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ChangeFileNameExt( NameLayerCu, wxT( "-copper.pos" ) );
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LayerCu = wxFopen( NameLayerCu, wxT( "wt" ) );
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if( LayerCu == 0 )
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{
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msg = _( "Unable to create " ) + NameLayerCu;
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DisplayError( this, msg );
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fclose( LayerCmp );
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return;
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}
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}
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// Switch the locale to standard C (needed to print floating point numbers like 1.3)
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SetLocaleTo_C_standard( );
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/* Affichage du bilan : */
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MsgPanel->EraseMsgBox();
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Affiche_1_Parametre( this, 0, _( "Component side place file:" ), NameLayerCmp, BLUE );
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if( GenCu )
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Affiche_1_Parametre( this, 32, _( "Copper side place file:" ), NameLayerCu, BLUE );
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msg.Empty(); msg << NbMod;
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Affiche_1_Parametre( this, 65, _( "Module count" ), msg, RED );
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/* Etablissement de la liste des modules par ordre alphabetique */
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Liste = (LIST_MOD*) MyZMalloc( NbMod * sizeof(LIST_MOD) );
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Module = m_Pcb->m_Modules;
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for( ii = 0; Module; Module = Module->Next() )
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{
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if( Module->m_Attributs & MOD_VIRTUAL )
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continue;
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if( (Module->m_Attributs & MOD_CMS) == 0 )
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continue;
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Liste[ii].m_Module = Module;
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Liste[ii].m_Reference = Module->m_Reference->m_Text;
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Liste[ii].m_Value = Module->m_Value->m_Text;
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ii++;
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}
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qsort( Liste, NbMod, sizeof(LIST_MOD),
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( int( * ) ( const void*, const void* ) )ListeModCmp );
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/* Generation entete du fichier 'commentaires) */
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sprintf( Line, "### Module positions - created on %s ###\n",
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DateAndTime( Buff ) );
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fputs( Line, LayerCmp );
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if( GenCu )
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fputs( Line, LayerCu );
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wxString Title = g_Main_Title + wxT( " " ) + GetBuildVersion();
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sprintf( Line, "### Printed by PcbNew version %s\n", CONV_TO_UTF8( Title ) );
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fputs( Line, LayerCmp );
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if( GenCu )
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fputs( Line, LayerCu );
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sprintf( Line, "## Unit = inches, Angle = deg.\n" );
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fputs( Line, LayerCmp );
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if( GenCu )
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fputs( Line, LayerCu );
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sprintf( Line, "## Side : Components\n" );
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fputs( Line, LayerCmp );
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if( GenCu )
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{
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sprintf( Line, "## Side : Copper\n" );
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fputs( Line, LayerCu );
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}
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sprintf( Line,
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"# Ref Val PosX PosY Rot Side\n" );
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fputs( Line, LayerCmp );
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if( GenCu )
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fputs( Line, LayerCu );
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/* Generation lignes utiles du fichier */
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for( ii = 0; ii < NbMod; ii++ )
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{
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wxPoint module_pos;
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wxString ref = Liste[ii].m_Reference;
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wxString val = Liste[ii].m_Value;
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sprintf( Line, "%-8.8s %-16.16s ", CONV_TO_UTF8( ref ), CONV_TO_UTF8( val ) );
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module_pos = Liste[ii].m_Module->m_Pos;
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module_pos.x -= File_Place_Offset.x;
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module_pos.y -= File_Place_Offset.y;
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char* text = Line + strlen( Line );
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sprintf( text, " %9.4f %9.4f %8.1f ",
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(float) module_pos.x * conv_unit,
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(float) module_pos.y * conv_unit,
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(float) Liste[ii].m_Module->m_Orient / 10 );
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if( Liste[ii].m_Module->GetLayer() == CMP_N )
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{
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strcat( Line, "Cmp.\n" );
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fputs( Line, LayerCmp );
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}
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else if( Liste[ii].m_Module->GetLayer() == COPPER_LAYER_N )
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{
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strcat( Line, "Cu\n" );
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fputs( Line, LayerCu );
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}
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}
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/* Generation fin du fichier */
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fputs( "## End\n", LayerCmp );
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fclose( LayerCmp );
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if( GenCu )
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{
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fputs( "## End\n", LayerCu );
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fclose( LayerCu );
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}
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MyFree( Liste );
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SetLocaleTo_Default( ); // revert to the current locale
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msg = wxT( "Cmp File: " ) + NameLayerCmp;
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if( GenCu )
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msg += wxT( "\nCu File: " ) + NameLayerCu;
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DisplayInfo( this, msg );
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}
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/**************************************************************/
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void WinEDA_PcbFrame::GenModuleReport( wxCommandEvent& event )
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/**************************************************************/
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/* Print a module report.
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*/
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{
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float conv_unit;
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MODULE* Module;
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D_PAD* pad;
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char Line[1024], Buff[80];
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wxString FullFileName, NameLayerCmp, msg;
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FILE* rptfile;
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wxPoint module_pos;
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/* Calcul des echelles de conversion */
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conv_unit = 0.0001; /* unites = INCHES */
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// if(IF_DRILL_METRIC) conv_unit = 0.000254; /* unites = mm */
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File_Place_Offset = wxPoint( 0, 0 );
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/* Init nom fichier */
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FullFileName = GetScreen()->m_FileName;
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ChangeFileNameExt( FullFileName, wxT( ".rpt" ) );
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rptfile = wxFopen( FullFileName, wxT( "wt" ) );
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if( rptfile == NULL )
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{
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msg = _( "Unable to create " ) + FullFileName;
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DisplayError( this, msg ); return;
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}
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// Switch the locale to standard C (needed to print floating point numbers like 1.3)
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SetLocaleTo_C_standard( );
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/* Generation entete du fichier 'commentaires) */
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sprintf( Line, "## Module report - date %s\n", DateAndTime( Buff ) );
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fputs( Line, rptfile );
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wxString Title = g_Main_Title + wxT( " " ) + GetBuildVersion();
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sprintf( Line, "## Created by PcbNew version %s\n", CONV_TO_UTF8( Title ) );
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fputs( Line, rptfile );
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fputs( "## Unit = inches, Angle = deg.\n", rptfile );
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/* Generation lignes utiles du fichier */
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fputs( "##\n", rptfile );
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fputs( "\n$BeginDESCRIPTION\n", rptfile );
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m_Pcb->ComputeBoundaryBox();
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fputs( "\n$BOARD\n", rptfile );
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fputs( "unit INCH\n", rptfile );
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sprintf( Line, "upper_left_corner %9.6f %9.6f\n",
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(float) m_Pcb->m_BoundaryBox.GetX() * conv_unit,
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(float) m_Pcb->m_BoundaryBox.GetY() * conv_unit );
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fputs( Line, rptfile );
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sprintf( Line, "lower_right_corner %9.6f %9.6f\n",
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(float) ( m_Pcb->m_BoundaryBox.GetRight() ) * conv_unit,
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(float) ( m_Pcb->m_BoundaryBox.GetBottom() ) * conv_unit );
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fputs( Line, rptfile );
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fputs( "$EndBOARD\n\n", rptfile );
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Module = (MODULE*) m_Pcb->m_Modules;
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for( ; Module != NULL; Module = Module->Next() )
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{
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sprintf( Line, "$MODULE \"%s\"\n", CONV_TO_UTF8( Module->m_Reference->m_Text ) );
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fputs( Line, rptfile );
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sprintf( Line, "reference \"%s\"\n", CONV_TO_UTF8( Module->m_Reference->m_Text ) );
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fputs( Line, rptfile );
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sprintf( Line, "value \"%s\"\n", CONV_TO_UTF8( Module->m_Value->m_Text ) );
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fputs( Line, rptfile );
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sprintf( Line, "footprint \"%s\"\n", CONV_TO_UTF8( Module->m_LibRef ) );
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fputs( Line, rptfile );
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msg = wxT( "attribut" );
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if( Module->m_Attributs & MOD_VIRTUAL )
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msg += wxT( " virtual" );
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if( Module->m_Attributs & MOD_CMS )
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msg += wxT( " smd" );
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if( ( Module->m_Attributs & (MOD_VIRTUAL | MOD_CMS) ) == 0 )
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msg += wxT( " none" );
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msg += wxT( "\n" );
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fputs( CONV_TO_UTF8( msg ), rptfile );
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module_pos = Module->m_Pos;
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module_pos.x -= File_Place_Offset.x;
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module_pos.y -= File_Place_Offset.y;
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sprintf( Line, "position %9.6f %9.6f\n",
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(float) module_pos.x * conv_unit,
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(float) module_pos.y * conv_unit );
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fputs( Line, rptfile );
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sprintf( Line, "orientation %.2f\n", (float) Module->m_Orient / 10 );
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if( Module->GetLayer() == CMP_N )
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strcat( Line, "layer component\n" );
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else if( Module->GetLayer() == COPPER_LAYER_N )
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strcat( Line, "layer copper\n" );
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else
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strcat( Line, "layer other\n" );
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fputs( Line, rptfile );
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Module->Write_3D_Descr( rptfile );
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for( pad = Module->m_Pads; pad != NULL; pad = pad->Next() )
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{
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fprintf( rptfile, "$PAD \"%.4s\"\n", pad->m_Padname );
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sprintf( Line, "position %9.6f %9.6f\n",
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(float) pad->m_Pos0.x * conv_unit,
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(float) pad->m_Pos0.y * conv_unit );
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fputs( Line, rptfile );
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sprintf( Line, "size %9.6f %9.6f\n",
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(float) pad->m_Size.x * conv_unit,
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(float) pad->m_Size.y * conv_unit );
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fputs( Line, rptfile );
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sprintf( Line, "drill %9.6f\n", (float) pad->m_Drill.x * conv_unit );
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fputs( Line, rptfile );
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sprintf( Line, "shape_offset %9.6f %9.6f\n",
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(float) pad->m_Offset.x * conv_unit,
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(float) pad->m_Offset.y * conv_unit );
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fputs( Line, rptfile );
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sprintf( Line, "orientation %.2f\n", (float) (pad->m_Orient - Module->m_Orient) / 10 );
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fputs( Line, rptfile );
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const char* shape_name[6] =
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{ "??? ", "Circ", "Rect", "Oval", "trap", "spec" };
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sprintf( Line, "Shape %s\n", shape_name[pad->m_PadShape] );
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fputs( Line, rptfile );
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int layer = 0;
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if( pad->m_Masque_Layer & CUIVRE_LAYER )
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layer = 1;
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if( pad->m_Masque_Layer & CMP_LAYER )
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layer |= 2;
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const char* layer_name[4] = { "??? ", "copper", "component", "all" };
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sprintf( Line, "Layer %s\n", layer_name[layer] );
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fputs( Line, rptfile );
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fprintf( rptfile, "$EndPAD\n" );
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}
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fprintf( rptfile, "$EndMODULE %s\n\n",
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(const char*) Module->m_Reference->m_Text.GetData() );
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}
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/* Write board Edges */
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EDA_BaseStruct* PtStruct;
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for( PtStruct = m_Pcb->m_Drawings; PtStruct != NULL; PtStruct = PtStruct->Pnext )
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{
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if( PtStruct->Type() != TYPEDRAWSEGMENT )
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continue;
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if( ( (DRAWSEGMENT*) PtStruct )->GetLayer() != EDGE_N )
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continue;
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WriteDrawSegmentPcb( (DRAWSEGMENT*) PtStruct, rptfile );
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}
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/* Generation fin du fichier */
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fputs( "$EndDESCRIPTION\n", rptfile );
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fclose( rptfile );
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SetLocaleTo_Default( ); // revert to the current locale
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}
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/*******************************************************************/
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void WriteDrawSegmentPcb( DRAWSEGMENT* PtDrawSegment, FILE* rptfile )
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/*******************************************************************/
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/* Sortie dsur rptfile d'un segment type drawing PCB:
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* Les contours sont de differents type:
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* segment
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* cercle
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* arc
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*/
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{
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double conv_unit, ux0, uy0, dx, dy;
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double rayon, width;
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char Line[1024];
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/* Calcul des echelles de conversion */
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conv_unit = 0.0001; /* unites = INCHES */
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/* coord de depart */
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ux0 = PtDrawSegment->m_Start.x * conv_unit;
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uy0 = PtDrawSegment->m_Start.y * conv_unit;
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/* coord d'arrivee */
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dx = PtDrawSegment->m_End.x * conv_unit;
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dy = PtDrawSegment->m_End.y * conv_unit;
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width = PtDrawSegment->m_Width * conv_unit;
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switch( PtDrawSegment->m_Shape )
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{
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case S_CIRCLE:
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rayon = hypot( dx - ux0, dy - uy0 );
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sprintf( Line, "$CIRCLE \n" ); fputs( Line, rptfile );
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sprintf( Line, "centre %.6lf %.6lf\n", ux0, uy0 );
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sprintf( Line, "radius %.6lf\n", rayon );
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sprintf( Line, "width %.6lf\n", width );
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sprintf( Line, "$EndCIRCLE \n" );
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fputs( Line, rptfile );
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break;
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case S_ARC:
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{
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int endx = PtDrawSegment->m_End.x, endy = PtDrawSegment->m_End.y;
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rayon = hypot( dx - ux0, dy - uy0 );
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RotatePoint( &endx,
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&endy,
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PtDrawSegment->m_Start.x,
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PtDrawSegment->m_Start.y,
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PtDrawSegment->m_Angle );
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sprintf( Line, "$ARC \n" ); fputs( Line, rptfile );
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sprintf( Line, "centre %.6lf %.6lf\n", ux0, uy0 );
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sprintf( Line, "start %.6lf %.6lf\n", endx * conv_unit, endy * conv_unit );
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sprintf( Line, "end %.6lf %.6lf\n", dx, dy );
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sprintf( Line, "width %.6lf\n", width );
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sprintf( Line, "$EndARC \n" );
|
|
fputs( Line, rptfile );
|
|
}
|
|
break;
|
|
|
|
default:
|
|
sprintf( Line, "$LINE \n" );
|
|
fputs( Line, rptfile );
|
|
sprintf( Line, "start %.6lf %.6lf\n", ux0, uy0 );
|
|
sprintf( Line, "end %.6lf %.6lf\n", dx, dy );
|
|
sprintf( Line, "width %.6lf\n", width );
|
|
sprintf( Line, "$EndLINE \n" );
|
|
fputs( Line, rptfile );
|
|
break;
|
|
}
|
|
}
|