implement basic context
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63fead5d8b
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24
expr/ctx.go
Normal file
24
expr/ctx.go
Normal file
@ -0,0 +1,24 @@
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package expr
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// Ctx contains all the Macros and Identifiers available. A Ctx is based on the
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// parent it was created from. If the current Ctx doesn't have a particular key
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// being looked up, the parent is called instead, and so on. A consequence of
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// this is that keys in the children take precedence over the parent's
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type Ctx struct {
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Parent *Ctx
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Macros map[Macro]func(Expr) (Expr, error)
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}
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// GetMacro returns the first instance of the given of the given Macro found. If
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// not found nil is returned.
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func (c *Ctx) GetMacro(m Macro) func(Expr) (Expr, error) {
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if c.Macros != nil {
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if fn, ok := c.Macros[m]; ok {
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return fn
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}
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}
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if c.Parent != nil {
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return c.Parent.GetMacro(m)
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}
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return nil
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}
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29
expr/expr.go
29
expr/expr.go
@ -19,7 +19,7 @@ import (
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// information, like the token to which Actual was originally parsed from
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type Actual interface {
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// Initializes an llvm.Value and returns it.
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LLVMVal(llvm.Builder) llvm.Value
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LLVMVal(*Ctx, llvm.Builder) llvm.Value
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}
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// equaler is used to compare two expressions. The comparison should not take
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@ -43,9 +43,9 @@ type Expr struct {
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// LLVMVal passes its arguments to the underlying Actual instance. It caches the
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// result, so if this is called multiple times the underlying one is only called
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// the first time.
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func (e Expr) LLVMVal(builder llvm.Builder) llvm.Value {
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func (e Expr) LLVMVal(ctx *Ctx, builder llvm.Builder) llvm.Value {
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if e.val == nil {
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v := e.Actual.LLVMVal(builder)
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v := e.Actual.LLVMVal(ctx, builder)
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e.val = &v
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}
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return *e.val
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@ -67,7 +67,7 @@ func (e Expr) equal(e2 Expr) bool {
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type Bool bool
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// LLVMVal implements the Actual interface method
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func (b Bool) LLVMVal(builder llvm.Builder) llvm.Value {
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func (b Bool) LLVMVal(ctx *Ctx, builder llvm.Builder) llvm.Value {
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return llvm.Value{}
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}
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@ -85,7 +85,7 @@ func (b Bool) equal(e equaler) bool {
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type Int int64
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// LLVMVal implements the Actual interface method
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func (i Int) LLVMVal(builder llvm.Builder) llvm.Value {
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func (i Int) LLVMVal(ctx *Ctx, builder llvm.Builder) llvm.Value {
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v := builder.CreateAlloca(llvm.Int64Type(), "")
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builder.CreateStore(llvm.ConstInt(llvm.Int64Type(), uint64(i), false), v)
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return v
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@ -105,7 +105,7 @@ func (i Int) equal(e equaler) bool {
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type String string
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// LLVMVal implements the Actual interface method
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func (s String) LLVMVal(builder llvm.Builder) llvm.Value {
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func (s String) LLVMVal(ctx *Ctx, builder llvm.Builder) llvm.Value {
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return llvm.Value{}
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}
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@ -124,7 +124,7 @@ func (s String) equal(e equaler) bool {
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type Identifier string
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// LLVMVal implements the Actual interface method
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func (id Identifier) LLVMVal(builder llvm.Builder) llvm.Value {
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func (id Identifier) LLVMVal(ctx *Ctx, builder llvm.Builder) llvm.Value {
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return llvm.Value{}
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}
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@ -149,7 +149,7 @@ func (m Macro) String() string {
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}
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// LLVMVal implements the Actual interface method
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func (m Macro) LLVMVal(builder llvm.Builder) llvm.Value {
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func (m Macro) LLVMVal(ctx *Ctx, builder llvm.Builder) llvm.Value {
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panic("Macros have no inherent LLVMVal")
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}
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@ -176,7 +176,7 @@ func (tup Tuple) String() string {
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}
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// LLVMVal implements the Actual interface method
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func (tup Tuple) LLVMVal(builder llvm.Builder) llvm.Value {
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func (tup Tuple) LLVMVal(ctx *Ctx, builder llvm.Builder) llvm.Value {
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return llvm.Value{}
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}
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@ -208,14 +208,15 @@ func (s Statement) String() string {
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}
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// LLVMVal implements the Actual interface method
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func (s Statement) LLVMVal(builder llvm.Builder) llvm.Value {
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func (s Statement) LLVMVal(ctx *Ctx, builder llvm.Builder) llvm.Value {
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m, ok := s.To.Actual.(Macro)
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if !ok {
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// TODO proper error
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panic("statement To is not a macro")
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}
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fn, ok := macros[m]
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if !ok {
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fn := ctx.GetMacro(m)
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if fn == nil {
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// TODO proper error
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panic(fmt.Sprintf("unknown macro %q", m))
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}
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@ -224,7 +225,7 @@ func (s Statement) LLVMVal(builder llvm.Builder) llvm.Value {
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// TODO proper error
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panic(err)
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}
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return newe.LLVMVal(builder)
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return newe.LLVMVal(ctx, builder)
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}
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func (s Statement) equal(e equaler) bool {
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@ -248,7 +249,7 @@ func (b Block) String() string {
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}
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// LLVMVal implements the Actual interface method
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func (b Block) LLVMVal(builder llvm.Builder) llvm.Value {
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func (b Block) LLVMVal(ctx *Ctx, builder llvm.Builder) llvm.Value {
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return llvm.Value{}
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}
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@ -8,25 +8,30 @@ import (
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type addActual []Expr
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func (aa addActual) LLVMVal(builder llvm.Builder) llvm.Value {
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a := builder.CreateLoad(aa[0].LLVMVal(builder), "")
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func (aa addActual) LLVMVal(ctx *Ctx, builder llvm.Builder) llvm.Value {
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a := builder.CreateLoad(aa[0].LLVMVal(ctx, builder), "")
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for i := range aa[1:] {
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b := builder.CreateLoad(aa[i+1].LLVMVal(builder), "")
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b := builder.CreateLoad(aa[i+1].LLVMVal(ctx, builder), "")
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a = builder.CreateAdd(a, b, "")
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}
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return a
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}
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var macros = map[Macro]func(Expr) (Expr, error){
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// RootCtx describes what's available to *all* contexts, and is what all
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// contexts should have as the root parent in the tree
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var RootCtx = &Ctx{
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Macros: map[Macro]func(Expr) (Expr, error){
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"add": func(e Expr) (Expr, error) {
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tup, ok := e.Actual.(Tuple)
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if !ok {
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// TODO proper error
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return Expr{}, errors.New("add only accepts a tuple")
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}
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// TODO check that it's a tuple of integers too
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return Expr{
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Actual: addActual(tup),
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Token: e.Token,
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}, nil
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},
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},
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}
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