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parser.go
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parser.go
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package parser
import (
"sync"
"golang.org/x/exp/slices"
"encr.dev/v2/internals/parsectx"
"encr.dev/v2/internals/pkginfo"
"encr.dev/v2/internals/scan"
"encr.dev/v2/internals/schema"
"encr.dev/v2/parser/apis"
"encr.dev/v2/parser/apis/api"
"encr.dev/v2/parser/apis/authhandler"
"encr.dev/v2/parser/apis/servicestruct"
"encr.dev/v2/parser/infra/caches"
"encr.dev/v2/parser/infra/config"
"encr.dev/v2/parser/infra/crons"
"encr.dev/v2/parser/infra/metrics"
"encr.dev/v2/parser/infra/pubsub"
"encr.dev/v2/parser/infra/secrets"
"encr.dev/v2/parser/infra/sqldb"
"encr.dev/v2/parser/resource"
"encr.dev/v2/parser/resource/resourceparser"
"encr.dev/v2/parser/resource/usage"
)
func NewParser(c *parsectx.Context) *Parser {
loader := pkginfo.New(c)
schemaParser := schema.NewParser(c, loader)
return &Parser{
c: c,
loader: loader,
schemaParser: schemaParser,
registry: resourceparser.NewRegistry(allParsers),
usageResolver: newUsageResolver(),
}
}
type Parser struct {
c *parsectx.Context
loader *pkginfo.Loader
schemaParser *schema.Parser
registry *resourceparser.Registry
usageResolver *usage.Resolver
}
func (p *Parser) MainModule() *pkginfo.Module {
return p.loader.MainModule()
}
func (p *Parser) RuntimeModule() *pkginfo.Module {
return p.loader.RuntimeModule()
}
// Parse parses the given application for uses of the Encore API Framework
// and the Encore infrastructure SDK.
func (p *Parser) Parse() *Result {
var (
mu sync.Mutex
pkgs []*pkginfo.Package
resources []resource.Resource
binds []resource.Bind
)
scan.ProcessModule(p.c.Errs, p.loader, p.c.MainModuleDir, func(pkg *pkginfo.Package) {
if pkg.Name == "main" {
// Ignore main packages that aren't the main package we're building, if any.
if mainPkg, ok := p.c.Build.MainPkg.Get(); !ok || pkg.ImportPath != mainPkg {
return
}
}
pass := &resourceparser.Pass{
Context: p.c,
SchemaParser: p.schemaParser,
Pkg: pkg,
}
interested := p.registry.InterestedParsers(pkg)
for _, p := range interested {
p.Run(pass)
}
mu.Lock()
pkgs = append(pkgs, pkg)
resources = append(resources, pass.Resources()...)
binds = append(binds, pass.Binds()...)
mu.Unlock()
})
// Normally every resource is independent, but in the case of implicit sqldb
// databases that come up as a result of having a "migrations" folder
// we can end up with duplicate resources if we also have a sqldb.NewDatabase call.
// Deduplicate them for now.
resources, binds = deduplicateSQLDBResources(resources, binds)
// Sort resources by package and position so the array is stable between runs
// as we process modules in parallel we can't rely on the order of the
// resources being stable coming into this function.
slices.SortFunc(resources, func(a, b resource.Resource) bool {
p1, p2 := p.c.FS.Position(a.Pos()), p.c.FS.Position(b.Pos())
if p1.Filename != p2.Filename {
return p1.Filename < p2.Filename
} else if p1.Line != p2.Line {
return p1.Line < p2.Line
} else if p1.Column != p2.Column {
return p1.Column < p2.Column
}
return a.Pos() < b.Pos()
})
// Then sort the binds binds
slices.SortFunc(binds, func(a, b resource.Bind) bool {
if a.Package() != b.Package() {
return a.Package().FSPath < b.Package().FSPath
}
return a.Pos() < b.Pos()
})
// Finally, sort the packages
slices.SortFunc(pkgs, func(a, b *pkginfo.Package) bool {
return a.FSPath < b.FSPath
})
// Because we've ordered pkgs and binds, usageExprs will be stable
usageExprs := usage.ParseExprs(p.schemaParser, pkgs, binds)
// Add the implicit sqldb usages.
usageExprs = append(usageExprs, sqldb.ComputeImplicitUsage(p.c.Errs, pkgs, binds)...)
return computeResult(p.c.Errs, p.MainModule(), p.usageResolver, pkgs, resources, binds, usageExprs)
}
// allParsers are all the resource parsers we support.
var allParsers = []*resourceparser.Parser{
apis.Parser,
caches.ClusterParser,
caches.KeyspaceParser,
config.LoadParser,
crons.JobParser,
metrics.MetricParser,
pubsub.TopicParser,
pubsub.SubscriptionParser,
secrets.SecretsParser,
sqldb.DatabaseParser,
sqldb.MigrationParser,
sqldb.NamedParser,
}
func newUsageResolver() *usage.Resolver {
r := usage.NewResolver()
// Infrastructure SDK
usage.RegisterUsageResolver[*caches.Keyspace](r, caches.ResolveKeyspaceUsage)
usage.RegisterUsageResolver[*config.Load](r, config.ResolveConfigUsage)
usage.RegisterUsageResolver[*pubsub.Topic](r, pubsub.ResolveTopicUsage)
usage.RegisterUsageResolver[*sqldb.Database](r, sqldb.ResolveDatabaseUsage)
// API Framework
usage.RegisterUsageResolver[*api.Endpoint](r, api.ResolveEndpointUsage)
usage.RegisterUsageResolver[*authhandler.AuthHandler](r, authhandler.ResolveAuthHandlerUsage)
usage.RegisterUsageResolver[*servicestruct.ServiceStruct](r, servicestruct.ResolveServiceStructUsage)
return r
}
// deduplicateSQLDBResources deduplicates SQL Database resources and their associated binds
// in the case where we have multiple SQL Database resources with the same name,
// as a result of having an explicit bind (via sqldb.NewDatabase) and an implicit bind (via a "migrations" folder).
func deduplicateSQLDBResources(resources []resource.Resource, binds []resource.Bind) ([]resource.Resource, []resource.Bind) {
bindsPerDB := make(map[string][]resource.Bind)
for _, b := range binds {
// All the binds we're interested in contain a resource and not a path.
r := b.ResourceRef().Resource
if db, ok := r.(*sqldb.Database); ok {
bindsPerDB[db.Name] = append(bindsPerDB[db.Name], b)
}
}
resourcesToRemove := make(map[resource.Resource]bool)
bindsToRemove := make(map[resource.Bind]bool)
for _, binds := range bindsPerDB {
implicitIdx := slices.IndexFunc(binds, func(b resource.Bind) bool {
_, ok := b.(*resource.ImplicitBind)
return ok
})
explicitIdx := slices.IndexFunc(binds, func(b resource.Bind) bool {
_, ok := b.(*resource.ImplicitBind)
return !ok
})
if implicitIdx >= 0 && explicitIdx >= 0 {
// We have both types of binds. Delete the implicit one.
implicit := binds[implicitIdx]
bindsToRemove[implicit] = true
// If they refer to different underlying resources, delete the implicit resource.
explicit := binds[explicitIdx]
if res := implicit.ResourceRef().Resource; res != nil && res != explicit.ResourceRef().Resource {
resourcesToRemove[res] = true
}
}
}
if len(resourcesToRemove) == 0 && len(bindsToRemove) == 0 {
// Nothing to do.
return resources, binds
}
updatedResources := make([]resource.Resource, 0, len(resources))
updatedBinds := make([]resource.Bind, 0, len(binds))
for _, r := range resources {
if !resourcesToRemove[r] {
updatedResources = append(updatedResources, r)
}
}
for _, b := range binds {
if !bindsToRemove[b] {
updatedBinds = append(updatedBinds, b)
}
}
return updatedResources, updatedBinds
}