mirror of
https://github.com/cwinfo/matterbridge.git
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134 lines
3.1 KiB
Go
134 lines
3.1 KiB
Go
package compiler
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import (
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"fmt"
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"github.com/d5/tengo/compiler/ast"
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"github.com/d5/tengo/compiler/token"
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)
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func (c *Compiler) compileAssign(node ast.Node, lhs, rhs []ast.Expr, op token.Token) error {
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numLHS, numRHS := len(lhs), len(rhs)
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if numLHS > 1 || numRHS > 1 {
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return c.errorf(node, "tuple assignment not allowed")
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}
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// resolve and compile left-hand side
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ident, selectors := resolveAssignLHS(lhs[0])
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numSel := len(selectors)
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if op == token.Define && numSel > 0 {
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// using selector on new variable does not make sense
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return c.errorf(node, "operator ':=' not allowed with selector")
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}
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symbol, depth, exists := c.symbolTable.Resolve(ident)
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if op == token.Define {
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if depth == 0 && exists {
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return c.errorf(node, "'%s' redeclared in this block", ident)
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}
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symbol = c.symbolTable.Define(ident)
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} else {
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if !exists {
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return c.errorf(node, "unresolved reference '%s'", ident)
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}
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}
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// +=, -=, *=, /=
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if op != token.Assign && op != token.Define {
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if err := c.Compile(lhs[0]); err != nil {
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return err
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}
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}
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// compile RHSs
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for _, expr := range rhs {
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if err := c.Compile(expr); err != nil {
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return err
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}
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}
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switch op {
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case token.AddAssign:
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c.emit(node, OpBinaryOp, int(token.Add))
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case token.SubAssign:
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c.emit(node, OpBinaryOp, int(token.Sub))
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case token.MulAssign:
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c.emit(node, OpBinaryOp, int(token.Mul))
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case token.QuoAssign:
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c.emit(node, OpBinaryOp, int(token.Quo))
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case token.RemAssign:
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c.emit(node, OpBinaryOp, int(token.Rem))
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case token.AndAssign:
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c.emit(node, OpBinaryOp, int(token.And))
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case token.OrAssign:
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c.emit(node, OpBinaryOp, int(token.Or))
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case token.AndNotAssign:
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c.emit(node, OpBinaryOp, int(token.AndNot))
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case token.XorAssign:
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c.emit(node, OpBinaryOp, int(token.Xor))
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case token.ShlAssign:
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c.emit(node, OpBinaryOp, int(token.Shl))
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case token.ShrAssign:
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c.emit(node, OpBinaryOp, int(token.Shr))
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}
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// compile selector expressions (right to left)
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for i := numSel - 1; i >= 0; i-- {
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if err := c.Compile(selectors[i]); err != nil {
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return err
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}
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}
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switch symbol.Scope {
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case ScopeGlobal:
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if numSel > 0 {
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c.emit(node, OpSetSelGlobal, symbol.Index, numSel)
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} else {
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c.emit(node, OpSetGlobal, symbol.Index)
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}
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case ScopeLocal:
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if numSel > 0 {
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c.emit(node, OpSetSelLocal, symbol.Index, numSel)
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} else {
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if op == token.Define && !symbol.LocalAssigned {
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c.emit(node, OpDefineLocal, symbol.Index)
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} else {
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c.emit(node, OpSetLocal, symbol.Index)
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}
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}
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// mark the symbol as local-assigned
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symbol.LocalAssigned = true
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case ScopeFree:
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if numSel > 0 {
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c.emit(node, OpSetSelFree, symbol.Index, numSel)
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} else {
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c.emit(node, OpSetFree, symbol.Index)
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}
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default:
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panic(fmt.Errorf("invalid assignment variable scope: %s", symbol.Scope))
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}
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return nil
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}
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func resolveAssignLHS(expr ast.Expr) (name string, selectors []ast.Expr) {
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switch term := expr.(type) {
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case *ast.SelectorExpr:
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name, selectors = resolveAssignLHS(term.Expr)
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selectors = append(selectors, term.Sel)
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return
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case *ast.IndexExpr:
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name, selectors = resolveAssignLHS(term.Expr)
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selectors = append(selectors, term.Index)
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case *ast.Ident:
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name = term.Name
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}
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return
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}
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