tint: IntrinsicTable: Rename open/closed -> template

The concept of 'closing' an open type or number made sense when these
were immutable once the first type/number had been matched during
overload resolution.
In order to support abstract numerics, these template parameters need to
be constrained as the arguments are evaluated, so there's no longer a
binary open / closed state.

Give up on this concept, and rename everything to 'template type' and
'template number'. This is likely easier for people to understand
anyway.

Also fix a small typo in the ICE message printed when there's an
ambiguous overload resolution (should never happen with the current
entries in the table).

Bug: tint:1504
Change-Id: I2bf043c71e5afa757259968eae4af830c50f38e0
Reviewed-on: https://dawn-review.googlesource.com/c/dawn/+/90662
Commit-Queue: Ben Clayton <bclayton@chromium.org>
Kokoro: Kokoro <noreply+kokoro@google.com>
Commit-Queue: Ben Clayton <bclayton@google.com>
Reviewed-by: David Neto <dneto@google.com>
This commit is contained in:
Ben Clayton
2022-05-17 22:42:32 +00:00
committed by Dawn LUCI CQ
parent d968e28a9a
commit 4c9ed74b5e
8 changed files with 2139 additions and 2141 deletions

View File

@@ -27,39 +27,39 @@ type IntrinsicTable struct {
// The semantic info
Sem *sem.Sem
// TMatchers are all the sem.OpenType, sem.Type and sem.TypeMatchers.
// TMatchers are all the sem.TemplateType, sem.Type and sem.TypeMatchers.
// These are all implemented by classes deriving from tint::TypeMatcher
TMatchers []sem.Named
TMatcherIndex map[sem.Named]int // [object -> index] in TMatcher
// NMatchers are all the sem.OpenNumber and sem.EnumMatchers.
// NMatchers are all the sem.TemplateNumber and sem.EnumMatchers.
// These are all implemented by classes deriving from tint::NumberMatcher
NMatchers []sem.Named
NMatcherIndex map[sem.Named]int // [object -> index] in NMatchers
MatcherIndices []int // kMatcherIndices table content
OpenTypes []OpenType // kOpenTypes table content
OpenNumbers []OpenNumber // kOpenNumbers table content
Parameters []Parameter // kParameters table content
Overloads []Overload // kOverloads table content
Builtins []Intrinsic // kBuiltins table content
UnaryOperators []Intrinsic // kUnaryOperators table content
BinaryOperators []Intrinsic // kBinaryOperators table content
ConstructorsAndConverters []Intrinsic // kConstructorsAndConverters table content
MatcherIndices []int // kMatcherIndices table content
TemplateTypes []TemplateType // kTemplateTypes table content
TemplateNumbers []TemplateNumber // kTemplateNumbers table content
Parameters []Parameter // kParameters table content
Overloads []Overload // kOverloads table content
Builtins []Intrinsic // kBuiltins table content
UnaryOperators []Intrinsic // kUnaryOperators table content
BinaryOperators []Intrinsic // kBinaryOperators table content
ConstructorsAndConverters []Intrinsic // kConstructorsAndConverters table content
}
// OpenType is used to create the C++ OpenTypeInfo structure
type OpenType struct {
// Name of the open type (e.g. 'T')
// TemplateType is used to create the C++ TemplateTypeInfo structure
type TemplateType struct {
// Name of the template type (e.g. 'T')
Name string
// Optional type matcher constraint.
// Either an index in Matchers::type, or -1
MatcherIndex int
}
// OpenNumber is used to create the C++ OpenNumberInfo structure
type OpenNumber struct {
// Name of the open number (e.g. 'N')
// TemplateNumber is used to create the C++ TemplateNumberInfo structure
type TemplateNumber struct {
// Name of the template number (e.g. 'N')
Name string
// Optional type matcher constraint.
// Either an index in Matchers::type, or -1
@@ -83,14 +83,14 @@ type Parameter struct {
type Overload struct {
// Total number of parameters for the overload
NumParameters int
// Total number of open types for the overload
NumOpenTypes int
// Total number of open numbers for the overload
NumOpenNumbers int
// Index to the first open type in IntrinsicTable.OpenTypes
OpenTypesOffset *int
// Index to the first open number in IntrinsicTable.OpenNumbers
OpenNumbersOffset *int
// Total number of template types for the overload
NumTemplateTypes int
// Total number of template numbers for the overload
NumTemplateNumbers int
// Index to the first template type in IntrinsicTable.TemplateTypes
TemplateTypesOffset *int
// Index to the first template number in IntrinsicTable.TemplateNumbers
TemplateNumbersOffset *int
// Index to the first parameter in IntrinsicTable.Parameters
ParametersOffset *int
// Index into IntrinsicTable.MatcherIndices, beginning the list of matchers
@@ -123,25 +123,25 @@ type IntrinsicTableBuilder struct {
// Lookup tables.
// These are packed (compressed) once all the entries have been added.
lut struct {
matcherIndices lut.LUT
openTypes lut.LUT
openNumbers lut.LUT
parameters lut.LUT
overloads lut.LUT
matcherIndices lut.LUT
templateTypes lut.LUT
templateNumbers lut.LUT
parameters lut.LUT
overloads lut.LUT
}
}
// Helper for building a single overload
type overloadBuilder struct {
*IntrinsicTableBuilder
// Maps TemplateParam to index in openTypes
openTypeIndex map[sem.TemplateParam]int
// Maps TemplateParam to index in openNumbers
openNumberIndex map[sem.TemplateParam]int
// Open types used by the overload
openTypes []OpenType
// Open numbers used by the overload
openNumbers []OpenNumber
// Maps TemplateParam to index in templateTypes
templateTypeIndex map[sem.TemplateParam]int
// Maps TemplateParam to index in templateNumbers
templateNumberIndex map[sem.TemplateParam]int
// Template types used by the overload
templateTypes []TemplateType
// Template numbers used by the overload
templateNumbers []TemplateNumber
// All parameters declared by the overload
parameters []Parameter
// Index into IntrinsicTable.MatcherIndices, beginning the list of matchers
@@ -155,8 +155,8 @@ type overloadBuilder struct {
// layoutMatchers assigns each of the TMatchers and NMatchers a unique index
// in the C++ Matchers::type and Matchers::number arrays, respectively.
func (b *IntrinsicTableBuilder) layoutMatchers(s *sem.Sem) {
// First MaxOpenTypes of TMatchers are open types
b.TMatchers = make([]sem.Named, s.MaxOpenTypes)
// First MaxTemplateTypes of TMatchers are template types
b.TMatchers = make([]sem.Named, s.MaxTemplateTypes)
for _, m := range s.Types {
b.TMatcherIndex[m] = len(b.TMatchers)
b.TMatchers = append(b.TMatchers, m)
@@ -166,8 +166,8 @@ func (b *IntrinsicTableBuilder) layoutMatchers(s *sem.Sem) {
b.TMatchers = append(b.TMatchers, m)
}
// First MaxOpenNumbers of NMatchers are open numbers
b.NMatchers = make([]sem.Named, s.MaxOpenNumbers)
// First MaxTemplateNumbers of NMatchers are template numbers
b.NMatchers = make([]sem.Named, s.MaxTemplateNumbers)
for _, m := range s.EnumMatchers {
b.NMatcherIndex[m] = len(b.NMatchers)
b.NMatchers = append(b.NMatchers, m)
@@ -178,14 +178,14 @@ func (b *IntrinsicTableBuilder) layoutMatchers(s *sem.Sem) {
func (b *IntrinsicTableBuilder) buildOverload(o *sem.Overload) (Overload, error) {
ob := overloadBuilder{
IntrinsicTableBuilder: b,
openTypeIndex: map[sem.TemplateParam]int{},
openNumberIndex: map[sem.TemplateParam]int{},
templateTypeIndex: map[sem.TemplateParam]int{},
templateNumberIndex: map[sem.TemplateParam]int{},
}
if err := ob.buildOpenTypes(o); err != nil {
if err := ob.buildTemplateTypes(o); err != nil {
return Overload{}, err
}
if err := ob.buildOpenNumbers(o); err != nil {
if err := ob.buildTemplateNumbers(o); err != nil {
return Overload{}, err
}
if err := ob.buildParameters(o); err != nil {
@@ -197,10 +197,10 @@ func (b *IntrinsicTableBuilder) buildOverload(o *sem.Overload) (Overload, error)
return Overload{
NumParameters: len(ob.parameters),
NumOpenTypes: len(ob.openTypes),
NumOpenNumbers: len(ob.openNumbers),
OpenTypesOffset: b.lut.openTypes.Add(ob.openTypes),
OpenNumbersOffset: b.lut.openNumbers.Add(ob.openNumbers),
NumTemplateTypes: len(ob.templateTypes),
NumTemplateNumbers: len(ob.templateNumbers),
TemplateTypesOffset: b.lut.templateTypes.Add(ob.templateTypes),
TemplateNumbersOffset: b.lut.templateNumbers.Add(ob.templateNumbers),
ParametersOffset: b.lut.parameters.Add(ob.parameters),
ReturnMatcherIndicesOffset: ob.returnTypeMatcherIndicesOffset,
CanBeUsedInStage: o.CanBeUsedInStage,
@@ -209,12 +209,12 @@ func (b *IntrinsicTableBuilder) buildOverload(o *sem.Overload) (Overload, error)
}, nil
}
// buildOpenTypes constructs the OpenTypes used by the overload, populating
// b.openTypes
func (b *overloadBuilder) buildOpenTypes(o *sem.Overload) error {
b.openTypes = make([]OpenType, len(o.OpenTypes))
for i, t := range o.OpenTypes {
b.openTypeIndex[t] = i
// buildTemplateTypes constructs the TemplateTypes used by the overload, populating
// b.templateTypes
func (b *overloadBuilder) buildTemplateTypes(o *sem.Overload) error {
b.templateTypes = make([]TemplateType, len(o.TemplateTypes))
for i, t := range o.TemplateTypes {
b.templateTypeIndex[t] = i
matcherIndex := -1
if t.Type != nil {
var err error
@@ -223,7 +223,7 @@ func (b *overloadBuilder) buildOpenTypes(o *sem.Overload) error {
return err
}
}
b.openTypes[i] = OpenType{
b.templateTypes[i] = TemplateType{
Name: t.Name,
MatcherIndex: matcherIndex,
}
@@ -231,12 +231,12 @@ func (b *overloadBuilder) buildOpenTypes(o *sem.Overload) error {
return nil
}
// buildOpenNumbers constructs the OpenNumbers used by the overload, populating
// b.openNumbers
func (b *overloadBuilder) buildOpenNumbers(o *sem.Overload) error {
b.openNumbers = make([]OpenNumber, len(o.OpenNumbers))
for i, t := range o.OpenNumbers {
b.openNumberIndex[t] = i
// buildTemplateNumbers constructs the TemplateNumbers used by the overload, populating
// b.templateNumbers
func (b *overloadBuilder) buildTemplateNumbers(o *sem.Overload) error {
b.templateNumbers = make([]TemplateNumber, len(o.TemplateNumbers))
for i, t := range o.TemplateNumbers {
b.templateNumberIndex[t] = i
matcherIndex := -1
if e, ok := t.(*sem.TemplateEnumParam); ok && e.Matcher != nil {
var err error
@@ -245,7 +245,7 @@ func (b *overloadBuilder) buildOpenNumbers(o *sem.Overload) error {
return err
}
}
b.openNumbers[i] = OpenNumber{
b.templateNumbers[i] = TemplateNumber{
Name: t.GetName(),
MatcherIndex: matcherIndex,
}
@@ -295,25 +295,25 @@ func (b *overloadBuilder) matcherIndex(n sem.Named) (int, error) {
}
return 0, fmt.Errorf("matcherIndex missing entry for %v %T", n.GetName(), n)
case *sem.TemplateTypeParam:
if i, ok := b.openTypeIndex[n]; ok {
if i, ok := b.templateTypeIndex[n]; ok {
return i, nil
}
return 0, fmt.Errorf("openTypeIndex missing entry for %v %T", n.Name, n)
return 0, fmt.Errorf("templateTypeIndex missing entry for %v %T", n.Name, n)
case *sem.EnumMatcher:
if i, ok := b.NMatcherIndex[n]; ok {
return i, nil
}
return 0, fmt.Errorf("matcherIndex missing entry for %v %T", n.GetName(), n)
case *sem.TemplateEnumParam:
if i, ok := b.openNumberIndex[n]; ok {
if i, ok := b.templateNumberIndex[n]; ok {
return i, nil
}
return 0, fmt.Errorf("openNumberIndex missing entry for %v %T", n, n)
return 0, fmt.Errorf("templateNumberIndex missing entry for %v %T", n, n)
case *sem.TemplateNumberParam:
if i, ok := b.openNumberIndex[n]; ok {
if i, ok := b.templateNumberIndex[n]; ok {
return i, nil
}
return 0, fmt.Errorf("openNumberIndex missing entry for %v %T", n, n)
return 0, fmt.Errorf("templateNumberIndex missing entry for %v %T", n, n)
default:
return 0, fmt.Errorf("overload.matcherIndex() does not handle %v %T", n, n)
}
@@ -359,8 +359,8 @@ func buildIntrinsicTable(s *sem.Sem) (*IntrinsicTable, error) {
},
}
b.lut.matcherIndices = lut.New(list.Wrap(&b.MatcherIndices))
b.lut.openTypes = lut.New(list.Wrap(&b.OpenTypes))
b.lut.openNumbers = lut.New(list.Wrap(&b.OpenNumbers))
b.lut.templateTypes = lut.New(list.Wrap(&b.TemplateTypes))
b.lut.templateNumbers = lut.New(list.Wrap(&b.TemplateNumbers))
b.lut.parameters = lut.New(list.Wrap(&b.Parameters))
b.lut.overloads = lut.New(list.Wrap(&b.Overloads))
@@ -397,8 +397,8 @@ func buildIntrinsicTable(s *sem.Sem) (*IntrinsicTable, error) {
}
b.lut.matcherIndices.Compact()
b.lut.openTypes.Compact()
b.lut.openNumbers.Compact()
b.lut.templateTypes.Compact()
b.lut.templateNumbers.Compact()
b.lut.parameters.Compact()
b.lut.overloads.Compact()

View File

@@ -32,7 +32,7 @@ type Permuter struct {
// buildPermuter returns a new initialized Permuter
func buildPermuter(s *sem.Sem) (*Permuter, error) {
// allTypes are the list of FQNs that are used for open, unconstrained types
// allTypes are the list of FQNs that are used for unconstrained types
allTypes := []sem.FullyQualifiedName{}
for _, ty := range s.Types {
if len(ty.TemplateParams) > 0 {
@@ -58,10 +58,10 @@ type Permutation struct {
// Permute generates a set of permutations for the given intrinsic overload
func (p *Permuter) Permute(overload *sem.Overload) ([]Permutation, error) {
state := permutationState{
Permuter: p,
closedTypes: map[sem.TemplateParam]sem.FullyQualifiedName{},
closedNumbers: map[sem.TemplateParam]interface{}{},
parameters: map[int]sem.FullyQualifiedName{},
Permuter: p,
templateTypes: map[sem.TemplateParam]sem.FullyQualifiedName{},
templateNumbers: map[sem.TemplateParam]interface{}{},
parameters: map[int]sem.FullyQualifiedName{},
}
out := []Permutation{}
@@ -144,15 +144,15 @@ func (p *Permuter) Permute(overload *sem.Overload) ([]Permutation, error) {
var err error
types, err = state.permutateFQN(sem.FullyQualifiedName{Target: t.Type})
if err != nil {
return nil, fmt.Errorf("while permutating open types: %w", err)
return nil, fmt.Errorf("while permutating template types: %w", err)
}
}
if len(types) == 0 {
return nil, fmt.Errorf("open type %v has no permutations", t.Name)
return nil, fmt.Errorf("template type %v has no permutations", t.Name)
}
permutate = func() error {
for _, ty := range types {
state.closedTypes[t] = ty
state.templateTypes[t] = ty
if err := next(); err != nil {
return err
}
@@ -168,14 +168,14 @@ func (p *Permuter) Permute(overload *sem.Overload) ([]Permutation, error) {
permutations, err = state.permutateFQN(sem.FullyQualifiedName{Target: t.Enum})
}
if err != nil {
return nil, fmt.Errorf("while permutating open numbers: %w", err)
return nil, fmt.Errorf("while permutating template numbers: %w", err)
}
if len(permutations) == 0 {
return nil, fmt.Errorf("open type %v has no permutations", t.Name)
return nil, fmt.Errorf("template type %v has no permutations", t.Name)
}
permutate = func() error {
for _, n := range permutations {
state.closedNumbers[t] = n
state.templateNumbers[t] = n
if err := next(); err != nil {
return err
}
@@ -187,7 +187,7 @@ func (p *Permuter) Permute(overload *sem.Overload) ([]Permutation, error) {
permutations := []int{2, 3, 4}
permutate = func() error {
for _, n := range permutations {
state.closedNumbers[t] = n
state.templateNumbers[t] = n
if err := next(); err != nil {
return err
}
@@ -206,19 +206,19 @@ func (p *Permuter) Permute(overload *sem.Overload) ([]Permutation, error) {
type permutationState struct {
*Permuter
closedTypes map[sem.TemplateParam]sem.FullyQualifiedName
closedNumbers map[sem.TemplateParam]interface{}
parameters map[int]sem.FullyQualifiedName
templateTypes map[sem.TemplateParam]sem.FullyQualifiedName
templateNumbers map[sem.TemplateParam]interface{}
parameters map[int]sem.FullyQualifiedName
}
func (s permutationState) String() string {
sb := &strings.Builder{}
sb.WriteString("Closed types:\n")
for ct, ty := range s.closedTypes {
sb.WriteString("Template types:\n")
for ct, ty := range s.templateTypes {
fmt.Fprintf(sb, " %v: %v\n", ct.GetName(), ty)
}
sb.WriteString("Closed numbers:\n")
for cn, v := range s.closedNumbers {
sb.WriteString("Template numbers:\n")
for cn, v := range s.templateNumbers {
fmt.Fprintf(sb, " %v: %v\n", cn.GetName(), v)
}
return sb.String()
@@ -240,13 +240,13 @@ func (s *permutationState) permutateFQN(in sem.FullyQualifiedName) ([]sem.FullyQ
return nil
}
case sem.TemplateParam:
if ty, ok := s.closedTypes[target]; ok {
if ty, ok := s.templateTypes[target]; ok {
permutate = func() error {
out = append(out, ty)
return nil
}
} else {
return nil, fmt.Errorf("'%v' was not found in closedTypes", target.GetName())
return nil, fmt.Errorf("'%v' was not found in templateTypes", target.GetName())
}
case *sem.TypeMatcher:
permutate = func() error {
@@ -284,12 +284,12 @@ func (s *permutationState) permutateFQN(in sem.FullyQualifiedName) ([]sem.FullyQ
case sem.FullyQualifiedName:
switch target := arg.Target.(type) {
case sem.TemplateParam:
if ty, ok := s.closedTypes[target]; ok {
if ty, ok := s.templateTypes[target]; ok {
args[i] = ty
} else if num, ok := s.closedNumbers[target]; ok {
} else if num, ok := s.templateNumbers[target]; ok {
args[i] = num
} else {
return nil, fmt.Errorf("'%v' was not found in closedTypes or closedNumbers", target.GetName())
return nil, fmt.Errorf("'%v' was not found in templateTypes or templateNumbers", target.GetName())
}
default:
perms, err := s.permutateFQN(arg)

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@@ -328,22 +328,22 @@ func (r *resolver) intrinsic(
intrinsic.Overloads = append(intrinsic.Overloads, overload)
// Sort the template parameters by resolved type. Append these to
// sem.Overload.OpenTypes or sem.Overload.OpenNumbers based on their kind.
// sem.Overload.TemplateTypes or sem.Overload.TemplateNumbers based on their kind.
for _, param := range templateParams {
switch param := param.(type) {
case *sem.TemplateTypeParam:
overload.OpenTypes = append(overload.OpenTypes, param)
overload.TemplateTypes = append(overload.TemplateTypes, param)
case *sem.TemplateEnumParam, *sem.TemplateNumberParam:
overload.OpenNumbers = append(overload.OpenNumbers, param)
overload.TemplateNumbers = append(overload.TemplateNumbers, param)
}
}
// Update high-water marks of open types / numbers
if r.s.MaxOpenTypes < len(overload.OpenTypes) {
r.s.MaxOpenTypes = len(overload.OpenTypes)
// Update high-water marks of template types and numbers
if r.s.MaxTemplateTypes < len(overload.TemplateTypes) {
r.s.MaxTemplateTypes = len(overload.TemplateTypes)
}
if r.s.MaxOpenNumbers < len(overload.OpenNumbers) {
r.s.MaxOpenNumbers = len(overload.OpenNumbers)
if r.s.MaxTemplateNumbers < len(overload.TemplateNumbers) {
r.s.MaxTemplateNumbers = len(overload.TemplateNumbers)
}
// Resolve the parameters

View File

@@ -30,10 +30,10 @@ type Sem struct {
UnaryOperators []*Intrinsic
BinaryOperators []*Intrinsic
ConstructorsAndConverters []*Intrinsic
// Maximum number of open-types used across all builtins
MaxOpenTypes int
// Maximum number of open-numbers used across all builtins
MaxOpenNumbers int
// Maximum number of template types used across all builtins
MaxTemplateTypes int
// Maximum number of template numbers used across all builtins
MaxTemplateNumbers int
// The alphabetically sorted list of unique parameter names
UniqueParameterNames []string
}
@@ -137,8 +137,8 @@ type Overload struct {
Decl ast.IntrinsicDecl
Intrinsic *Intrinsic
TemplateParams []TemplateParam
OpenTypes []*TemplateTypeParam
OpenNumbers []TemplateParam
TemplateTypes []*TemplateTypeParam
TemplateNumbers []TemplateParam
ReturnType *FullyQualifiedName
Parameters []Parameter
CanBeUsedInStage StageUses