260 lines
		
	
	
		
			7.5 KiB
		
	
	
	
		
			Go
		
	
	
	
			
		
		
	
	
			260 lines
		
	
	
		
			7.5 KiB
		
	
	
	
		
			Go
		
	
	
	
// Copyright 2021 Google LLC
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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//      http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package main
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import (
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	"bytes"
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	"flag"
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	"fmt"
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	"io"
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	"io/fs"
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	"os"
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	"path/filepath"
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	"sort"
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	"strings"
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	"android/soong/response"
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	"android/soong/tools/compliance"
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)
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var (
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	failNoneRequested = fmt.Errorf("\nNo license metadata files requested")
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	failNoSources     = fmt.Errorf("\nNo projects or metadata files to trace back from")
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	failNoLicenses    = fmt.Errorf("No licenses found")
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)
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type context struct {
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	sources     []string
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	stripPrefix []string
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}
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func (ctx context) strip(installPath string) string {
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	for _, prefix := range ctx.stripPrefix {
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		if strings.HasPrefix(installPath, prefix) {
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			p := strings.TrimPrefix(installPath, prefix)
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			if 0 == len(p) {
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				continue
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			}
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			return p
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		}
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	}
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	return installPath
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}
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// newMultiString creates a flag that allows multiple values in an array.
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func newMultiString(flags *flag.FlagSet, name, usage string) *multiString {
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	var f multiString
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	flags.Var(&f, name, usage)
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	return &f
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}
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// multiString implements the flag `Value` interface for multiple strings.
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type multiString []string
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func (ms *multiString) String() string     { return strings.Join(*ms, ", ") }
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func (ms *multiString) Set(s string) error { *ms = append(*ms, s); return nil }
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func main() {
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	var expandedArgs []string
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	for _, arg := range os.Args[1:] {
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		if strings.HasPrefix(arg, "@") {
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			f, err := os.Open(strings.TrimPrefix(arg, "@"))
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			if err != nil {
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				fmt.Fprintln(os.Stderr, err.Error())
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				os.Exit(1)
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			}
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			respArgs, err := response.ReadRspFile(f)
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			f.Close()
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			if err != nil {
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				fmt.Fprintln(os.Stderr, err.Error())
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				os.Exit(1)
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			}
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			expandedArgs = append(expandedArgs, respArgs...)
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		} else {
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			expandedArgs = append(expandedArgs, arg)
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		}
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	}
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	flags := flag.NewFlagSet("flags", flag.ExitOnError)
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	flags.Usage = func() {
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		fmt.Fprintf(os.Stderr, `Usage: %s {options} file.meta_lic {file.meta_lic...}
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Outputs a space-separated Target ActsOn Origin Condition tuple for each
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resolution in the graph. When -dot flag given, outputs nodes and edges
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in graphviz directed graph format.
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If one or more '-c condition' conditions are given, outputs the
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resolution for the union of the conditions. Otherwise, outputs the
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resolution for all conditions.
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In plain text mode, when '-label_conditions' is requested, the Target
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and Origin have colon-separated license conditions appended:
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i.e. target:condition1:condition2 etc.
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Options:
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`, filepath.Base(os.Args[0]))
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		flags.PrintDefaults()
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	}
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	outputFile := flags.String("o", "-", "Where to write the output. (default stdout)")
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	sources := newMultiString(flags, "rtrace", "Projects or metadata files to trace back from. (required; multiple allowed)")
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	stripPrefix := newMultiString(flags, "strip_prefix", "Prefix to remove from paths. i.e. path to root (multiple allowed)")
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	flags.Parse(expandedArgs)
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	// Must specify at least one root target.
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	if flags.NArg() == 0 {
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		flags.Usage()
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		os.Exit(2)
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	}
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	if len(*sources) == 0 {
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		flags.Usage()
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		fmt.Fprintf(os.Stderr, "\nMust specify at least 1 --rtrace source.\n")
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		os.Exit(2)
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	}
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	if len(*outputFile) == 0 {
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		flags.Usage()
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		fmt.Fprintf(os.Stderr, "must specify file for -o; use - for stdout\n")
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		os.Exit(2)
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	} else {
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		dir, err := filepath.Abs(filepath.Dir(*outputFile))
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		if err != nil {
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			fmt.Fprintf(os.Stderr, "cannot determine path to %q: %s\n", *outputFile, err)
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			os.Exit(1)
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		}
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		fi, err := os.Stat(dir)
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		if err != nil {
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			fmt.Fprintf(os.Stderr, "cannot read directory %q of %q: %s\n", dir, *outputFile, err)
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			os.Exit(1)
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		}
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		if !fi.IsDir() {
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			fmt.Fprintf(os.Stderr, "parent %q of %q is not a directory\n", dir, *outputFile)
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			os.Exit(1)
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		}
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	}
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	var ofile io.Writer
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	ofile = os.Stdout
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	var obuf *bytes.Buffer
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	if *outputFile != "-" {
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		obuf = &bytes.Buffer{}
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		ofile = obuf
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	}
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	ctx := &context{
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		sources:     *sources,
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		stripPrefix: *stripPrefix,
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	}
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	_, err := traceRestricted(ctx, ofile, os.Stderr, compliance.FS, flags.Args()...)
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	if err != nil {
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		if err == failNoneRequested {
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			flags.Usage()
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		}
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		fmt.Fprintf(os.Stderr, "%s\n", err.Error())
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		os.Exit(1)
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	}
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	if *outputFile != "-" {
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		err := os.WriteFile(*outputFile, obuf.Bytes(), 0666)
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		if err != nil {
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			fmt.Fprintf(os.Stderr, "could not write output to %q from %q: %s\n", *outputFile, os.Getenv("PWD"), err)
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			os.Exit(1)
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		}
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	}
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	os.Exit(0)
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}
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// traceRestricted implements the rtrace utility.
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func traceRestricted(ctx *context, stdout, stderr io.Writer, rootFS fs.FS, files ...string) (*compliance.LicenseGraph, error) {
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	if len(files) < 1 {
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		return nil, failNoneRequested
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	}
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	if len(ctx.sources) < 1 {
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		return nil, failNoSources
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	}
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	// Read the license graph from the license metadata files (*.meta_lic).
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	licenseGraph, err := compliance.ReadLicenseGraph(rootFS, stderr, files)
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	if err != nil {
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		return nil, fmt.Errorf("Unable to read license metadata file(s) %q: %v\n", files, err)
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	}
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	if licenseGraph == nil {
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		return nil, failNoLicenses
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	}
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	sourceMap := make(map[string]struct{})
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	for _, source := range ctx.sources {
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		sourceMap[source] = struct{}{}
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	}
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	compliance.TraceTopDownConditions(licenseGraph, func(tn *compliance.TargetNode) compliance.LicenseConditionSet {
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		if _, isPresent := sourceMap[tn.Name()]; isPresent {
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			return compliance.ImpliesRestricted
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		}
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		for _, project := range tn.Projects() {
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			if _, isPresent := sourceMap[project]; isPresent {
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				return compliance.ImpliesRestricted
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			}
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		}
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		return compliance.NewLicenseConditionSet()
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	})
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	// targetOut calculates the string to output for `target` adding `sep`-separated conditions as needed.
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	targetOut := func(target *compliance.TargetNode, sep string) string {
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		tOut := ctx.strip(target.Name())
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		return tOut
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	}
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	// outputResolution prints a resolution in the requested format to `stdout`, where one can read
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	// a resolution as `tname` resolves conditions named in `cnames`.
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	// `tname` is the name of the target the resolution traces back to.
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	// `cnames` is the list of conditions to resolve.
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	outputResolution := func(tname string, cnames []string) {
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		// ... one edge per line with names in a colon-separated tuple.
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		fmt.Fprintf(stdout, "%s %s\n", tname, strings.Join(cnames, ":"))
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	}
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	// Sort the resolutions by targetname for repeatability/stability.
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	actions := compliance.WalkResolutionsForCondition(licenseGraph, compliance.ImpliesShared).AllActions()
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	targets := make(compliance.TargetNodeList, 0, len(actions))
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	for tn := range actions {
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		if tn.LicenseConditions().MatchesAnySet(compliance.ImpliesRestricted) {
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			targets = append(targets, tn)
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		}
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	}
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	sort.Sort(targets)
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	// Output the sorted targets.
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	for _, target := range targets {
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		var tname string
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		tname = targetOut(target, ":")
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		// cnames accumulates the list of condition names originating at a single origin that apply to `target`.
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		cnames := target.LicenseConditions().Names()
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		// Output 1 line for each attachesTo+actsOn combination.
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		outputResolution(tname, cnames)
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	}
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	fmt.Fprintf(stdout, "restricted conditions trace to %d targets\n", len(targets))
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	if 0 == len(targets) {
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		fmt.Fprintln(stdout, "  (check for typos in project names or metadata files)")
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	}
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	return licenseGraph, nil
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}
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