181 lines
3.9 KiB
Go
181 lines
3.9 KiB
Go
package vm
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import (
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"errors"
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"fmt"
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"strconv"
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"github.com/mediocregopher/ginger/lang"
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"llvm.org/llvm/bindings/go/llvm"
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)
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type cmd interface {
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inType() valType
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outType() valType
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build(*Module) (llvm.Value, error)
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}
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type valType struct {
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term lang.Term
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llvm llvm.Type
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}
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func (vt valType) isInt() bool {
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return lang.Equal(Int, vt.term)
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}
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// most types don't have an input, so we use this as a shortcut
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type voidIn struct{}
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func (voidIn) inType() valType {
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return valType{
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term: lang.Tuple{},
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llvm: llvm.VoidType(),
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}
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}
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////////////////////////////////////////////////////////////////////////////////
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type intCmd struct {
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voidIn
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c lang.Const
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}
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func (ic intCmd) outType() valType {
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return valType{
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term: Int,
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llvm: llvm.Int64Type(),
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}
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}
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func (ic intCmd) build(mod *Module) (llvm.Value, error) {
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ci, err := strconv.ParseInt(string(ic.c), 10, 64)
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if err != nil {
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return llvm.Value{}, err
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}
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return llvm.ConstInt(llvm.Int64Type(), uint64(ci), false), nil
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}
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////////////////////////////////////////////////////////////////////////////////
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type tupCmd struct {
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voidIn
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els []cmd
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}
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func (tc tupCmd) outType() valType {
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termTypes := make(lang.Tuple, len(tc.els))
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llvmTypes := make([]llvm.Type, len(tc.els))
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for i := range tc.els {
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elValType := tc.els[i].outType()
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termTypes[i] = elValType.term
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llvmTypes[i] = elValType.llvm
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}
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vt := valType{term: lang.Tuple{Tuple, termTypes}}
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if len(llvmTypes) == 0 {
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vt.llvm = llvm.VoidType()
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} else {
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vt.llvm = llvm.StructType(llvmTypes, false)
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}
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return vt
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}
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func (tc tupCmd) build(mod *Module) (llvm.Value, error) {
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str := llvm.Undef(tc.outType().llvm)
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var val llvm.Value
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var err error
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for i := range tc.els {
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if val, err = tc.els[i].build(mod); err != nil {
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str = mod.b.CreateInsertValue(str, val, i, "")
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}
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}
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return str, err
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}
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////////////////////////////////////////////////////////////////////////////////
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type addCmd struct {
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voidIn
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a, b cmd
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}
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func (ac addCmd) outType() valType {
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return ac.a.outType()
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}
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func (ac addCmd) build(mod *Module) (llvm.Value, error) {
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av, err := ac.a.build(mod)
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if err != nil {
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return llvm.Value{}, err
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}
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bv, err := ac.b.build(mod)
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if err != nil {
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return llvm.Value{}, err
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}
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return mod.b.CreateAdd(av, bv, ""), nil
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}
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////////////////////////////////////////////////////////////////////////////////
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func matchCmd(t lang.Term) (cmd, error) {
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aPat := func(a lang.Atom) lang.Tuple {
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return lang.Tuple{lang.AAtom, a}
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}
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cPat := func(t lang.Term) lang.Tuple {
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return lang.Tuple{lang.AConst, t}
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}
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tPat := func(el ...lang.Term) lang.Tuple {
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return lang.Tuple{Tuple, lang.Tuple(el)}
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}
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if !lang.Match(tPat(aPat(lang.AUnder), lang.TDblUnder), t) {
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return nil, fmt.Errorf("term %v does not look like a vm command", t)
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}
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k := t.(lang.Tuple)[0].(lang.Atom)
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v := t.(lang.Tuple)[1]
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// for when v is a Tuple argument, convenience function for casting
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vAsTup := func(n int) ([]cmd, error) {
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vcmd, err := matchCmd(v)
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if err != nil {
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return nil, err
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}
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vtup, ok := vcmd.(tupCmd)
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if !ok || len(vtup.els) != n {
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return nil, fmt.Errorf("cmd %v expects a %d-tuple argument", k, n)
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}
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return vtup.els, nil
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}
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switch k {
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case Int:
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if !lang.Match(cPat(lang.AUnder), v) {
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return nil, errors.New("int requires constant arg")
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}
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return intCmd{c: v.(lang.Const)}, nil
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case Tuple:
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if !lang.Match(lang.Tuple{Tuple, lang.AUnder}, v) {
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return nil, errors.New("tup requires tuple arg")
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}
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tup := v.(lang.Tuple)
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tc := tupCmd{els: make([]cmd, len(tup))}
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var err error
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for i := range tup {
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if tc.els[i], err = matchCmd(tup[i]); err != nil {
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return nil, err
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}
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}
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return tc, nil
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case Add:
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els, err := vAsTup(2)
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if err != nil {
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return nil, err
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} else if !els[0].outType().isInt() || !els[1].outType().isInt() {
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return nil, errors.New("add args must be numbers of the same type")
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}
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return addCmd{a: els[0], b: els[1]}, nil
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default:
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return nil, fmt.Errorf("cmd %v unknown, or its args are malformed", t)
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}
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}
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