mirror of
https://github.com/hajimehoshi/ebiten.git
synced 2024-12-26 03:38:55 +01:00
shader: Let parseExpr return multiple values
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parent
bee79e3b67
commit
1ca5dd16b2
@ -335,7 +335,7 @@ func (s *compileState) parseVariable(block *block, vs *ast.ValueSpec) ([]variabl
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var expr *shaderir.Expr
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if init != nil {
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e, ss := s.parseExpr(block, init)
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expr = &e
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expr = &e[0]
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stmts = append(stmts, ss...)
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}
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inits = append(inits, expr)
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@ -531,9 +531,10 @@ func (cs *compileState) parseBlock(outer *block, b *ast.BlockStmt, inParams, out
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lhs, stmts := cs.parseExpr(block, l.Lhs[i])
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block.ir.Stmts = append(block.ir.Stmts, stmts...)
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// TODO: Treat multiple expressions
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block.ir.Stmts = append(block.ir.Stmts, shaderir.Stmt{
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Type: shaderir.Assign,
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Exprs: []shaderir.Expr{lhs, rhs},
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Exprs: []shaderir.Expr{lhs[0], rhs[0]},
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})
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}
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case token.ASSIGN:
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@ -545,9 +546,10 @@ func (cs *compileState) parseBlock(outer *block, b *ast.BlockStmt, inParams, out
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lhs, stmts := cs.parseExpr(block, l.Lhs[i])
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block.ir.Stmts = append(block.ir.Stmts, stmts...)
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// TODO: Treat multiple expressions
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block.ir.Stmts = append(block.ir.Stmts, shaderir.Stmt{
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Type: shaderir.Assign,
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Exprs: []shaderir.Expr{lhs, rhs},
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Exprs: []shaderir.Expr{lhs[0], rhs[0]},
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})
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}
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}
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@ -563,8 +565,15 @@ func (cs *compileState) parseBlock(outer *block, b *ast.BlockStmt, inParams, out
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cs.parseDecl(block, l.Decl)
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case *ast.ReturnStmt:
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for i, r := range l.Results {
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e, stmts := cs.parseExpr(block, r)
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exprs, stmts := cs.parseExpr(block, r)
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block.ir.Stmts = append(block.ir.Stmts, stmts...)
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if len(exprs) == 0 {
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continue
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}
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if len(exprs) > 1 {
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cs.addError(r.Pos(), "multiple-context with return is not implemented yet")
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continue
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}
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block.ir.Stmts = append(block.ir.Stmts, shaderir.Stmt{
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Type: shaderir.Assign,
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Exprs: []shaderir.Expr{
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@ -572,7 +581,7 @@ func (cs *compileState) parseBlock(outer *block, b *ast.BlockStmt, inParams, out
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Type: shaderir.LocalVariable,
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Index: len(inParams) + i,
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},
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e,
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exprs[0],
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},
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})
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}
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@ -585,7 +594,7 @@ func (cs *compileState) parseBlock(outer *block, b *ast.BlockStmt, inParams, out
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return block
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}
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func (cs *compileState) parseExpr(block *block, expr ast.Expr) (shaderir.Expr, []shaderir.Stmt) {
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func (cs *compileState) parseExpr(block *block, expr ast.Expr) ([]shaderir.Expr, []shaderir.Stmt) {
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switch e := expr.(type) {
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case *ast.BasicLit:
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switch e.Kind {
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@ -593,21 +602,25 @@ func (cs *compileState) parseExpr(block *block, expr ast.Expr) (shaderir.Expr, [
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v, err := strconv.ParseInt(e.Value, 10, 32)
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if err != nil {
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cs.addError(e.Pos(), fmt.Sprintf("unexpected literal: %s", e.Value))
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return shaderir.Expr{}, nil
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return nil, nil
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}
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return shaderir.Expr{
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return []shaderir.Expr{
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{
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Type: shaderir.IntExpr,
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Int: int32(v),
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},
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}, nil
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case token.FLOAT:
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v, err := strconv.ParseFloat(e.Value, 32)
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if err != nil {
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cs.addError(e.Pos(), fmt.Sprintf("unexpected literal: %s", e.Value))
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return shaderir.Expr{}, nil
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return nil, nil
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}
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return shaderir.Expr{
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return []shaderir.Expr{
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{
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Type: shaderir.FloatExpr,
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Float: float32(v),
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},
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}, nil
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default:
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cs.addError(e.Pos(), fmt.Sprintf("literal not implemented: %#v", e))
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@ -655,21 +668,32 @@ func (cs *compileState) parseExpr(block *block, expr ast.Expr) (shaderir.Expr, [
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op = shaderir.OrOr
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default:
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cs.addError(e.Pos(), fmt.Sprintf("unexpected operator: %s", e.Op))
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return shaderir.Expr{}, nil
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return nil, nil
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}
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var stmts []shaderir.Stmt
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// Prase RHS first for the order of the statements.
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rhs, ss := cs.parseExpr(block, e.Y)
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stmts = append(stmts, ss...)
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lhs, ss := cs.parseExpr(block, e.X)
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if len(rhs) != 1 {
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cs.addError(e.Pos(), fmt.Sprintf("multiple-value context is not available at a binary operator: %s", e.Y))
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return nil, nil
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}
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stmts = append(stmts, ss...)
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return shaderir.Expr{
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lhs, ss := cs.parseExpr(block, e.X)
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if len(lhs) != 1 {
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cs.addError(e.Pos(), fmt.Sprintf("multiple-value context is not available at a binary operator: %s", e.X))
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return nil, nil
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}
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stmts = append(stmts, ss...)
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return []shaderir.Expr{
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{
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Type: shaderir.Binary,
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Op: op,
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Exprs: []shaderir.Expr{lhs, rhs},
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Exprs: []shaderir.Expr{lhs[0], rhs[0]},
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},
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}, stmts
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case *ast.CallExpr:
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var (
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@ -680,30 +704,42 @@ func (cs *compileState) parseExpr(block *block, expr ast.Expr) (shaderir.Expr, [
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// Parse the argument first for the order of the statements.
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for _, a := range e.Args {
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e, ss := cs.parseExpr(block, a)
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es, ss := cs.parseExpr(block, a)
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if len(es) > 1 && len(e.Args) > 1 {
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cs.addError(e.Pos(), fmt.Sprintf("single-value context and multiple-value context cannot be mixed: %s", e.Fun))
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return nil, nil
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}
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// TODO: Convert integer literals to float literals if necessary.
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args = append(args, e)
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args = append(args, es...)
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stmts = append(stmts, ss...)
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}
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// TODO: When len(ss) is not 0?
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expr, ss := cs.parseExpr(block, e.Fun)
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callee = expr
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es, ss := cs.parseExpr(block, e.Fun)
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if len(es) != 1 {
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cs.addError(e.Pos(), fmt.Sprintf("multiple-value context is not available at a callee: %s", e.Fun))
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return nil, nil
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}
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callee = es[0]
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stmts = append(stmts, ss...)
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// For built-in functions, we can call this in this position. Return an expression for the function
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// call.
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if expr.Type == shaderir.BuiltinFuncExpr {
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return shaderir.Expr{
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if callee.Type == shaderir.BuiltinFuncExpr {
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return []shaderir.Expr{
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{
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Type: shaderir.Call,
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Exprs: append([]shaderir.Expr{callee}, args...),
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},
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}, stmts
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}
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if expr.Type != shaderir.FunctionExpr {
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if callee.Type != shaderir.FunctionExpr {
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cs.addError(e.Pos(), fmt.Sprintf("function callee must be a funciton name but %s", e.Fun))
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return nil, nil
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}
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f := cs.funcs[expr.Index]
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f := cs.funcs[callee.Index]
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var outParams []int
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for _, p := range f.ir.OutParams {
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@ -741,9 +777,11 @@ func (cs *compileState) parseExpr(block *block, expr ast.Expr) (shaderir.Expr, [
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// The actual expression here is just a local variable that includes the result of the
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// function call.
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return shaderir.Expr{
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return []shaderir.Expr{
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{
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Type: shaderir.LocalVariable,
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Index: idx,
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},
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}, stmts
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}
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@ -761,51 +799,67 @@ func (cs *compileState) parseExpr(block *block, expr ast.Expr) (shaderir.Expr, [
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// TODO: What about the other params?
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if len(outParams) > 0 {
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return shaderir.Expr{
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return []shaderir.Expr{
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{
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Type: shaderir.LocalVariable,
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Index: outParams[0],
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},
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}, stmts
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}
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// TODO: Is an empty expression work?
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return shaderir.Expr{}, stmts
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return nil, stmts
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case *ast.Ident:
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if i, ok := block.findLocalVariable(e.Name); ok {
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return shaderir.Expr{
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return []shaderir.Expr{
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{
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Type: shaderir.LocalVariable,
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Index: i,
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},
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}, nil
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}
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if i, ok := cs.findFunction(e.Name); ok {
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return shaderir.Expr{
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return []shaderir.Expr{
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{
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Type: shaderir.FunctionExpr,
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Index: i,
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},
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}, nil
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}
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if i, ok := cs.findUniformVariable(e.Name); ok {
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return shaderir.Expr{
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return []shaderir.Expr{
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{
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Type: shaderir.UniformVariable,
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Index: i,
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},
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}, nil
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}
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if f, ok := shaderir.ParseBuiltinFunc(e.Name); ok {
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return shaderir.Expr{
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return []shaderir.Expr{
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{
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Type: shaderir.BuiltinFuncExpr,
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BuiltinFunc: f,
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},
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}, nil
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}
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cs.addError(e.Pos(), fmt.Sprintf("unexpected identifier: %s", e.Name))
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case *ast.SelectorExpr:
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expr, stmts := cs.parseExpr(block, e.X)
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return shaderir.Expr{
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exprs, stmts := cs.parseExpr(block, e.X)
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if len(exprs) != 1 {
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cs.addError(e.Pos(), fmt.Sprintf("multiple-value context is not available at a selector: %s", e.X))
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return nil, nil
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}
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return []shaderir.Expr{
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{
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Type: shaderir.FieldSelector,
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Exprs: []shaderir.Expr{
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expr,
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exprs[0],
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{
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Type: shaderir.SwizzlingExpr,
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Swizzling: e.Sel.Name,
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},
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},
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},
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}, stmts
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case *ast.UnaryExpr:
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var op shaderir.Op
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@ -818,16 +872,22 @@ func (cs *compileState) parseExpr(block *block, expr ast.Expr) (shaderir.Expr, [
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op = shaderir.NotOp
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default:
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cs.addError(e.Pos(), fmt.Sprintf("unexpected operator: %s", e.Op))
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return shaderir.Expr{}, nil
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return nil, nil
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}
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expr, stmts := cs.parseExpr(block, e.X)
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return shaderir.Expr{
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exprs, stmts := cs.parseExpr(block, e.X)
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if len(exprs) != 1 {
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cs.addError(e.Pos(), fmt.Sprintf("multiple-value context is not available at a unary operator: %s", e.X))
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return nil, nil
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}
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return []shaderir.Expr{
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{
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Type: shaderir.Unary,
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Op: op,
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Exprs: []shaderir.Expr{expr},
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Exprs: exprs,
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},
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}, stmts
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default:
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cs.addError(e.Pos(), fmt.Sprintf("expression not implemented: %#v", e))
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}
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return shaderir.Expr{}, nil
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return nil, nil
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}
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