360 lines
9.7 KiB
Go
360 lines
9.7 KiB
Go
// Copyright 2017 clair authors
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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 oracle implements a vulnerability source updater using the
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// Oracle Linux OVAL Database.
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package oracle
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import (
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"bufio"
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"encoding/xml"
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"io"
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"net/http"
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"regexp"
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"strconv"
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"strings"
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"github.com/coreos/clair/database"
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"github.com/coreos/clair/ext/versionfmt"
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"github.com/coreos/clair/ext/versionfmt/rpm"
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"github.com/coreos/clair/ext/vulnsrc"
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"github.com/coreos/clair/pkg/commonerr"
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"github.com/coreos/clair/utils/types"
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"github.com/coreos/pkg/capnslog"
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)
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const (
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firstOracle5ELSA = 20070057
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ovalURI = "https://linux.oracle.com/oval/"
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elsaFilePrefix = "com.oracle.elsa-"
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updaterFlag = "oracleUpdater"
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)
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var (
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ignoredCriterions = []string{
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" is signed with the Oracle Linux",
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".ksplice1.",
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}
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elsaRegexp = regexp.MustCompile(`com.oracle.elsa-(\d+).xml`)
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log = capnslog.NewPackageLogger("github.com/coreos/clair", "ext/vulnsrc/oracle")
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)
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type oval struct {
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Definitions []definition `xml:"definitions>definition"`
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}
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type definition struct {
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Title string `xml:"metadata>title"`
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Description string `xml:"metadata>description"`
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References []reference `xml:"metadata>reference"`
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Criteria criteria `xml:"criteria"`
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Severity string `xml:"metadata>advisory>severity"`
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}
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type reference struct {
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Source string `xml:"source,attr"`
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URI string `xml:"ref_url,attr"`
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}
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type criteria struct {
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Operator string `xml:"operator,attr"`
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Criterias []*criteria `xml:"criteria"`
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Criterions []criterion `xml:"criterion"`
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}
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type criterion struct {
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Comment string `xml:"comment,attr"`
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}
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type updater struct{}
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func init() {
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vulnsrc.RegisterUpdater("oracle", &updater{})
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}
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func (u *updater) Update(datastore database.Datastore) (resp vulnsrc.UpdateResponse, err error) {
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log.Info("fetching Oracle Linux vulnerabilities")
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// Get the first ELSA we have to manage.
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flagValue, err := datastore.GetKeyValue(updaterFlag)
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if err != nil {
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return resp, err
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}
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firstELSA, err := strconv.Atoi(flagValue)
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if firstELSA == 0 || err != nil {
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firstELSA = firstOracle5ELSA
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}
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// Fetch the update list.
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r, err := http.Get(ovalURI)
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if err != nil {
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log.Errorf("could not download Oracle's update list: %s", err)
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return resp, commonerr.ErrCouldNotDownload
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}
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defer r.Body.Close()
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// Get the list of ELSAs that we have to process.
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var elsaList []int
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scanner := bufio.NewScanner(r.Body)
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for scanner.Scan() {
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line := scanner.Text()
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r := elsaRegexp.FindStringSubmatch(line)
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if len(r) == 2 {
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elsaNo, _ := strconv.Atoi(r[1])
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if elsaNo > firstELSA {
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elsaList = append(elsaList, elsaNo)
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}
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}
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}
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for _, elsa := range elsaList {
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// Download the ELSA's XML file.
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r, err := http.Get(ovalURI + elsaFilePrefix + strconv.Itoa(elsa) + ".xml")
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if err != nil {
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log.Errorf("could not download Oracle's update file: %s", err)
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return resp, commonerr.ErrCouldNotDownload
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}
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// Parse the XML.
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vs, err := parseELSA(r.Body)
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if err != nil {
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return resp, err
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}
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// Collect vulnerabilities.
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for _, v := range vs {
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resp.Vulnerabilities = append(resp.Vulnerabilities, v)
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}
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}
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// Set the flag if we found anything.
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if len(elsaList) > 0 {
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resp.FlagName = updaterFlag
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resp.FlagValue = strconv.Itoa(elsaList[len(elsaList)-1])
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} else {
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log.Debug("no Oracle Linux update.")
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}
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return resp, nil
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}
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func (u *updater) Clean() {}
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func parseELSA(ovalReader io.Reader) (vulnerabilities []database.Vulnerability, err error) {
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// Decode the XML.
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var ov oval
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err = xml.NewDecoder(ovalReader).Decode(&ov)
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if err != nil {
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log.Errorf("could not decode Oracle's XML: %s", err)
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err = commonerr.ErrCouldNotParse
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return
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}
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// Iterate over the definitions and collect any vulnerabilities that affect
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// at least one package.
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for _, definition := range ov.Definitions {
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pkgs := toFeatureVersions(definition.Criteria)
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if len(pkgs) > 0 {
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vulnerability := database.Vulnerability{
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Name: name(definition),
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Link: link(definition),
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Severity: priority(definition),
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Description: description(definition),
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}
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for _, p := range pkgs {
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vulnerability.FixedIn = append(vulnerability.FixedIn, p)
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}
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vulnerabilities = append(vulnerabilities, vulnerability)
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}
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}
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return
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}
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func getCriterions(node criteria) [][]criterion {
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// Filter useless criterions.
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var criterions []criterion
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for _, c := range node.Criterions {
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ignored := false
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for _, ignoredItem := range ignoredCriterions {
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if strings.Contains(c.Comment, ignoredItem) {
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ignored = true
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break
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}
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}
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if !ignored {
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criterions = append(criterions, c)
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}
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}
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if node.Operator == "AND" {
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return [][]criterion{criterions}
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} else if node.Operator == "OR" {
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var possibilities [][]criterion
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for _, c := range criterions {
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possibilities = append(possibilities, []criterion{c})
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}
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return possibilities
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}
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return [][]criterion{}
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}
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func getPossibilities(node criteria) [][]criterion {
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if len(node.Criterias) == 0 {
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return getCriterions(node)
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}
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var possibilitiesToCompose [][][]criterion
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for _, criteria := range node.Criterias {
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possibilitiesToCompose = append(possibilitiesToCompose, getPossibilities(*criteria))
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}
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if len(node.Criterions) > 0 {
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possibilitiesToCompose = append(possibilitiesToCompose, getCriterions(node))
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}
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var possibilities [][]criterion
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if node.Operator == "AND" {
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for _, possibility := range possibilitiesToCompose[0] {
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possibilities = append(possibilities, possibility)
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}
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for _, possibilityGroup := range possibilitiesToCompose[1:] {
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var newPossibilities [][]criterion
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for _, possibility := range possibilities {
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for _, possibilityInGroup := range possibilityGroup {
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var p []criterion
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p = append(p, possibility...)
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p = append(p, possibilityInGroup...)
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newPossibilities = append(newPossibilities, p)
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}
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}
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possibilities = newPossibilities
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}
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} else if node.Operator == "OR" {
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for _, possibilityGroup := range possibilitiesToCompose {
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for _, possibility := range possibilityGroup {
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possibilities = append(possibilities, possibility)
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}
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}
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}
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return possibilities
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}
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func toFeatureVersions(criteria criteria) []database.FeatureVersion {
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// There are duplicates in Oracle .xml files.
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// This map is for deduplication.
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featureVersionParameters := make(map[string]database.FeatureVersion)
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possibilities := getPossibilities(criteria)
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for _, criterions := range possibilities {
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var (
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featureVersion database.FeatureVersion
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osVersion int
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err error
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)
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// Attempt to parse package data from trees of criterions.
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for _, c := range criterions {
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if strings.Contains(c.Comment, " is installed") {
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const prefixLen = len("Oracle Linux ")
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osVersion, err = strconv.Atoi(strings.TrimSpace(c.Comment[prefixLen : prefixLen+strings.Index(c.Comment[prefixLen:], " ")]))
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if err != nil {
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log.Warningf("could not parse Oracle Linux release version from: '%s'.", c.Comment)
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}
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} else if strings.Contains(c.Comment, " is earlier than ") {
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const prefixLen = len(" is earlier than ")
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featureVersion.Feature.Name = strings.TrimSpace(c.Comment[:strings.Index(c.Comment, " is earlier than ")])
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version := c.Comment[strings.Index(c.Comment, " is earlier than ")+prefixLen:]
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err := versionfmt.Valid(rpm.ParserName, version)
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if err != nil {
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log.Warningf("could not parse package version '%s': %s. skipping", version, err.Error())
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} else {
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featureVersion.Version = version
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}
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}
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}
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featureVersion.Feature.Namespace.Name = "oracle" + ":" + strconv.Itoa(osVersion)
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featureVersion.Feature.Namespace.VersionFormat = rpm.ParserName
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if featureVersion.Feature.Namespace.Name != "" && featureVersion.Feature.Name != "" && featureVersion.Version != "" {
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featureVersionParameters[featureVersion.Feature.Namespace.Name+":"+featureVersion.Feature.Name] = featureVersion
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} else {
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log.Warningf("could not determine a valid package from criterions: %v", criterions)
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}
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}
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// Convert the map to slice.
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var featureVersionParametersArray []database.FeatureVersion
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for _, fv := range featureVersionParameters {
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featureVersionParametersArray = append(featureVersionParametersArray, fv)
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}
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return featureVersionParametersArray
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}
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func description(def definition) (desc string) {
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// It is much more faster to proceed like this than using a Replacer.
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desc = strings.Replace(def.Description, "\n\n\n", " ", -1)
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desc = strings.Replace(desc, "\n\n", " ", -1)
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desc = strings.Replace(desc, "\n", " ", -1)
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return
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}
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func name(def definition) string {
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return strings.TrimSpace(def.Title[:strings.Index(def.Title, ": ")])
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}
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func link(def definition) (link string) {
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for _, reference := range def.References {
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if reference.Source == "elsa" {
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link = reference.URI
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break
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}
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}
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return
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}
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func priority(def definition) types.Priority {
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// Parse the priority.
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priority := strings.ToLower(def.Severity)
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// Normalize the priority.
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switch priority {
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case "n/a":
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return types.Negligible
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case "low":
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return types.Low
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case "moderate":
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return types.Medium
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case "important":
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return types.High
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case "critical":
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return types.Critical
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default:
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log.Warningf("could not determine vulnerability priority from: %s.", priority)
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return types.Unknown
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}
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}
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