173 lines
3.7 KiB
C++
173 lines
3.7 KiB
C++
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#include "externals.hh"
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#include "c-shaders.hh"
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namespace {
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const std::map< std::string , E_ShaderInput > InputTypes_( ([] {
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std::map< std::string , E_ShaderInput > t;
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t.emplace( "chunk" , E_ShaderInput::CHUNK );
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t.emplace( "library" , E_ShaderInput::LIBRARY );
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t.emplace( "lib" , E_ShaderInput::LIBRARY );
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t.emplace( "vertex" , E_ShaderInput::VERTEX );
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t.emplace( "fragment" , E_ShaderInput::FRAGMENT );
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t.emplace( "compute" , E_ShaderInput::COMPUTE );
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t.emplace( "geo" , E_ShaderInput::GEOMETRY );
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t.emplace( "geometry" , E_ShaderInput::GEOMETRY );
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return t;
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})());
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const std::regex PreprocDirective_( "^\\s*//!\\s*([a-z]+(\\s+([^\\s]+))*)\\s*$" );
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} // namespace <anon>
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/*============================================================================*/
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namespace {
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// Input reader state and functions, used when loading a source file
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struct T_InputReader_
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{
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using T_Tokens_ = std::vector< std::string >;
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FILE* const file;
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T_ShaderInput& input;
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uint32_t line{ 0 };
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char* buffer{ nullptr };
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ssize_t readCount;
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std::string accumulator{ };
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uint32_t accumLines{ 0 };
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T_InputReader_( FILE* const file ,
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T_ShaderInput& input )
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: file( file ) , input( input )
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{ }
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~T_InputReader_( );
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void read( );
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void handleDirective( T_Tokens_ const& tokens );
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void error( T_String const& err );
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void nl( );
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void addAccumulated( );
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};
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/*----------------------------------------------------------------------------*/
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T_InputReader_::~T_InputReader_( )
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{
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if ( buffer ) {
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free( buffer );
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}
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fclose( file );
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}
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void T_InputReader_::read( )
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{
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size_t bsz( 0 );
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while ( ( readCount = getline( &buffer , &bsz , file ) ) != -1 ) {
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line ++;
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std::cmatch match;
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if ( std::regex_match( buffer , match , PreprocDirective_ ) ) {
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const T_Tokens_ tokens( ([](std::string const& a) {
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using stri = std::istream_iterator< std::string >;
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std::istringstream iss( a );
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return T_Tokens_{ stri( iss ) , stri( ) };
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})( match[ 1 ].str( ) ) );
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assert( tokens.size( ) >= 1 );
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handleDirective( tokens );
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} else {
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accumulator += buffer;
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accumLines ++;
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}
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}
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addAccumulated( );
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}
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/*----------------------------------------------------------------------------*/
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void T_InputReader_::handleDirective(
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T_Tokens_ const& tokens )
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{
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auto const& directive( tokens[ 0 ] );
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if ( directive == "include" ) {
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if ( tokens.size( ) != 2 ) {
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nl( );
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error( "invalid arguments" );
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return;
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}
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addAccumulated( );
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auto& ck( input.chunks );
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ck.addNew( E_ShaderInputChunk::INCLUDE , tokens[ 1 ].c_str( ) , 1 );
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} else if ( directive == "type" ) {
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nl( );
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if ( tokens.size( ) != 2 ) {
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error( "invalid arguments" );
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return;
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}
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auto pos( InputTypes_.find( tokens[ 1 ] ) );
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if ( pos == InputTypes_.end( ) ) {
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error( "unknown type" );
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} else {
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input.type = pos->second;
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}
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} else {
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nl( );
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error( "unknown directive" );
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}
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}
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/*----------------------------------------------------------------------------*/
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void T_InputReader_::error(
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T_String const& err )
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{
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input.errors.addNew( line , err );
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}
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void T_InputReader_::nl( )
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{
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accumLines ++;
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accumulator += '\n';
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}
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void T_InputReader_::addAccumulated( )
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{
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if ( accumLines ) {
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auto& ck( input.chunks );
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ck.addNew( E_ShaderInputChunk::CODE ,
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accumulator.c_str( ) , accumLines );
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accumulator = {};
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accumLines = 0;
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}
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}
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} // namespace <anon>
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/*= T_ShaderInput ============================================================*/
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bool T_ShaderInput::load(
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T_String const& path )
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{
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type = E_ShaderInput::CHUNK;
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chunks.clear( );
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errors.clear( );
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FILE* const file{ fopen( (char const*) path.toOSString( ).data( ) , "r" ) };
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if ( !file ) {
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return false;
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}
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T_InputReader_ reader( file , *this );
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reader.read( );
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return true;
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}
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