187 lines
5.8 KiB
C++
187 lines
5.8 KiB
C++
#include "externals.hh"
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#include "control.hh"
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#include "globals.hh"
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#include "sync.hh"
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using namespace ops;
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using namespace ebcl;
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/*= OPCODE INFORMATIONS ========================================================*/
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namespace {
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struct T_OpInfo
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{
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char const* name;
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uint32_t nArgs;
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int32_t sdMain{ 0 };
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int32_t sdFPU{ 0 };
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uint32_t fpuReq{ 0 };
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template< typename ... Mods >
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constexpr T_OpInfo( char const* name ,
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uint32_t nArgs ,
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Mods&&... mods );
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constexpr T_OpInfo( char const* name );
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};
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template< typename ... Mods >
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constexpr void ApplyMods_( T_OpInfo& op , Mods&&... mods );
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template< >
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constexpr void ApplyMods_( T_OpInfo& )
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{ }
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template< typename M0 , typename ... Mods >
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constexpr void ApplyMods_(
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T_OpInfo& op ,
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M0&& mod ,
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Mods&&... mods )
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{
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mod.applyTo( op );
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ApplyMods_( op , std::forward< Mods >( mods ) ... );
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}
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template< typename ... Mods >
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constexpr T_OpInfo::T_OpInfo(
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char const* name ,
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uint32_t nArgs ,
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Mods&&... mods )
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: name( name ) , nArgs( nArgs )
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{
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ApplyMods_( *this , std::forward< Mods >( mods ) ... );
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}
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constexpr T_OpInfo::T_OpInfo( char const* name )
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: T_OpInfo( name , 0 )
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{}
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struct OpStackMain
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{
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int32_t value;
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explicit constexpr OpStackMain( int32_t v ) : value( v ) { }
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constexpr void applyTo( T_OpInfo& op )
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{ op.sdMain = value; }
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};
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struct OpStackFPU
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{
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int32_t value;
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explicit constexpr OpStackFPU( int32_t v ) : value( v ) { }
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constexpr void applyTo( T_OpInfo& op )
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{ op.sdFPU = value; }
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};
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static T_KeyValueTable< E_OpType , T_OpInfo > OpInfoTable_{ ([]() {
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T_KeyValueTable< E_OpType , T_OpInfo > infos;
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infos.add( E_OpType::OP_END , T_OpInfo{ "end" } );
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//
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infos.add( E_OpType::OP_CALL , T_OpInfo{ "call" , 1 } );
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infos.add( E_OpType::OP_RET , T_OpInfo{ "ret" , 1 , OpStackMain{ -1 } } );
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//
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infos.add( E_OpType::OP_SKIP , T_OpInfo{ "skip" , 1 } );
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infos.add( E_OpType::OP_COND_SKIP , T_OpInfo{ "cond-skip" , 2 } );
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//
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infos.add( E_OpType::OP_RES_STACK , T_OpInfo{ "res-stack" , 1 } );
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infos.add( E_OpType::OP_PUSH , T_OpInfo{ "push" , 0 , OpStackMain{ 1 } } );
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infos.add( E_OpType::OP_POP , T_OpInfo{ "pop" , 1 } );
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infos.add( E_OpType::OP_POP , T_OpInfo{ "dup" , 1 , OpStackMain{ 1 } } );
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//
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infos.add( E_OpType::OP_LOAD , T_OpInfo{ "load" , 1 } );
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infos.add( E_OpType::OP_SLOAD , T_OpInfo{ "load-stack" , 1 } );
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//
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infos.add( E_OpType::OP_FP_LOAD , T_OpInfo{ "fp-load" , 1 , OpStackFPU{ 1 } } );
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infos.add( E_OpType::OP_FP_SLOAD , T_OpInfo{ "fp-load-stack" , 1 , OpStackFPU{ 1 } } );
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infos.add( E_OpType::OP_FP_STORE , T_OpInfo{ "fp-store" , 1 , OpStackFPU{ -1 } } );
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infos.add( E_OpType::OP_FP_SSTORE , T_OpInfo{ "fp-store-stack" , 1 , OpStackFPU{ -1 } } );
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infos.add( E_OpType::OP_FP_SSTORE_INT , T_OpInfo{ "fp-store-stack-int" , 1 , OpStackFPU{ -1 } } );
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//
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infos.add( E_OpType::OP_FP_CMP , T_OpInfo{ "fp-cmp" , 1 , OpStackFPU{ -1 } } );
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infos.add( E_OpType::OP_FP_ADD , T_OpInfo{ "fp-add" , 0 , OpStackFPU{ -1 } } );
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infos.add( E_OpType::OP_FP_SUB , T_OpInfo{ "fp-sub" , 0 , OpStackFPU{ -1 } } );
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infos.add( E_OpType::OP_FP_MUL , T_OpInfo{ "fp-mul" , 0 , OpStackFPU{ -1 } } );
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infos.add( E_OpType::OP_FP_DIV , T_OpInfo{ "fp-div" , 0 , OpStackFPU{ -1 } } );
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infos.add( E_OpType::OP_FP_POW , T_OpInfo{ "fp-pow" , 0 , OpStackFPU{ -1 } } );
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//
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infos.add( E_OpType::OP_FP_NEG , T_OpInfo{ "fp-neg" , 0 } );
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infos.add( E_OpType::OP_FP_INV , T_OpInfo{ "fp-inv" , 0 } );
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infos.add( E_OpType::OP_FP_NOT , T_OpInfo{ "fp-not" , 0 } );
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infos.add( E_OpType::OP_FP_SIN , T_OpInfo{ "fp-sin" , 0 } );
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infos.add( E_OpType::OP_FP_COS , T_OpInfo{ "fp-cos" , 0 } );
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infos.add( E_OpType::OP_FP_TAN , T_OpInfo{ "fp-tan" , 0 } );
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infos.add( E_OpType::OP_FP_SQRT , T_OpInfo{ "fp-sqrt" , 0 } );
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infos.add( E_OpType::OP_FP_EXP , T_OpInfo{ "fp-exp" , 0 } );
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infos.add( E_OpType::OP_FP_LN , T_OpInfo{ "fp-ln" , 0 } );
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//
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infos.add( E_OpType::OP_INIT_PIPELINE , T_OpInfo{ "pipeline" , 1 , OpStackMain{ -1 } } );
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infos.add( E_OpType::OP_INIT_PROGRAM , T_OpInfo{ "program" , 1 , OpStackMain{ -1 } } );
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infos.add( E_OpType::OP_INIT_TEXTURE , T_OpInfo{ "texture" , 2 , OpStackMain{ -3 } } );
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infos.add( E_OpType::OP_FB_ATTACH , T_OpInfo{ "fb-attach" , 2 , OpStackMain{ -1 } } );
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//
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infos.add( E_OpType::OP_USE_FRAMEBUFFER , T_OpInfo{ "use-framebuffer" , 0 , OpStackMain{ -1 } } );
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infos.add( E_OpType::OP_FB_TOGGLE , T_OpInfo{ "fb-toggle" , 2 } );
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infos.add( E_OpType::OP_USE_PIPELINE , T_OpInfo{ "use-pipeline" , 0 , OpStackMain{ -1 } } );
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infos.add( E_OpType::OP_USE_PROGRAM , T_OpInfo{ "use-program" , 0 , OpStackMain{ -1 } } );
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infos.add( E_OpType::OP_USE_TEXTURE , T_OpInfo{ "use-texture" , 1 , OpStackMain{ -2 } } );
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//
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infos.add( E_OpType::OP_FULLSCREEN , T_OpInfo{ "fullscreen" } );
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infos.add( E_OpType::OP_CLEAR , T_OpInfo{ "clear" , 0 , OpStackMain{ -4 } } );
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//
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infos.add( E_OpType::OP_UI_PENTER , T_OpInfo{ "ui-prof-enter" , 1 } );
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infos.add( E_OpType::OP_UI_PEXIT , T_OpInfo{ "ui-prof-exit" } );
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return infos;
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})( ) };
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} // namespace
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uint32_t ops::ArgumentsFor(
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const E_OpType op ) noexcept
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{
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assert( OpInfoTable_.contains( op ) );
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return OpInfoTable_.get( op )->nArgs;
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}
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int32_t ops::DeltaMainStack(
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const E_OpType op ) noexcept
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{
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assert( OpInfoTable_.contains( op ) );
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return OpInfoTable_.get( op )->sdMain;
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}
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int32_t ops::DeltaFPUStack(
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const E_OpType op ) noexcept
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{
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assert( OpInfoTable_.contains( op ) );
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return OpInfoTable_.get( op )->sdFPU;
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}
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/*= STRING FORMATTING ==========================================================*/
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T_StringBuilder& ops::operator<<(
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T_StringBuilder& sb ,
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const E_OpType et )
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{
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assert( OpInfoTable_.contains( et ) );
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sb << OpInfoTable_.get( et )->name;
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return sb;
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}
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T_StringBuilder& ops::operator<<(
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T_StringBuilder& sb ,
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T_Op const& op )
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{
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sb << op.op;
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const auto args{ OpInfoTable_.get( op.op )->nArgs };
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for ( auto i = 0u ; i < args ; i ++ ) {
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sb << ' ' << op.args[ i ];
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}
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return sb;
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}
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