79 lines
2.5 KiB
Go
79 lines
2.5 KiB
Go
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package analysis
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import (
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"log"
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"github.com/go-openapi/spec"
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)
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// FlattenOpts configuration for flattening a swagger specification.
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//
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// The BasePath parameter is used to locate remote relative $ref found in the specification.
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// This path is a file: it points to the location of the root document and may be either a local
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// file path or a URL.
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//
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// If none specified, relative references (e.g. "$ref": "folder/schema.yaml#/definitions/...")
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// found in the spec are searched from the current working directory.
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type FlattenOpts struct {
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Spec *Spec // The analyzed spec to work with
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flattenContext *context // Internal context to track flattening activity
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BasePath string // The location of the root document for this spec to resolve relative $ref
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// Flattening options
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Expand bool // When true, skip flattening the spec and expand it instead (if Minimal is false)
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Minimal bool // When true, do not decompose complex structures such as allOf
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Verbose bool // enable some reporting on possible name conflicts detected
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RemoveUnused bool // When true, remove unused parameters, responses and definitions after expansion/flattening
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ContinueOnError bool // Continue when spec expansion issues are found
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/* Extra keys */
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_ struct{} // require keys
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}
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// ExpandOpts creates a spec.ExpandOptions to configure expanding a specification document.
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func (f *FlattenOpts) ExpandOpts(skipSchemas bool) *spec.ExpandOptions {
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return &spec.ExpandOptions{
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RelativeBase: f.BasePath,
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SkipSchemas: skipSchemas,
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ContinueOnError: f.ContinueOnError,
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}
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}
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// Swagger gets the swagger specification for this flatten operation
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func (f *FlattenOpts) Swagger() *spec.Swagger {
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return f.Spec.spec
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}
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// croak logs notifications and warnings about valid, but possibly unwanted constructs resulting
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// from flattening a spec
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func (f *FlattenOpts) croak() {
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if !f.Verbose {
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return
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}
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reported := make(map[string]bool, len(f.flattenContext.newRefs))
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for _, v := range f.Spec.references.allRefs {
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// warns about duplicate handling
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for _, r := range f.flattenContext.newRefs {
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if r.isOAIGen && r.path == v.String() {
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reported[r.newName] = true
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}
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}
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}
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for k := range reported {
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log.Printf("warning: duplicate flattened definition name resolved as %s", k)
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}
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// warns about possible type mismatches
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uniqueMsg := make(map[string]bool)
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for _, msg := range f.flattenContext.warnings {
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if _, ok := uniqueMsg[msg]; ok {
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continue
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}
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log.Printf("warning: %s", msg)
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uniqueMsg[msg] = true
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}
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}
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