Files
pmg/guard/guard_test.go
T
Sahilb315 1089d4b3cd refactor: Inject CommandExecutor into guard to fix dependency direction
guard depended on internal/runner, which inverted the intended layer
hierarchy. Now guard defines a CommandExecutor function type and accepts
it as a constructor argument. internal/flows (the composition root)
creates the executor closure wrapping runner.Execute and injects it,
keeping guard free of internal/ dependencies.
2026-04-14 20:34:33 +05:30

266 lines
9.1 KiB
Go

package guard
import (
"context"
"testing"
packagev1 "buf.build/gen/go/safedep/api/protocolbuffers/go/safedep/messages/package/v1"
"github.com/safedep/pmg/analyzer"
"github.com/safedep/pmg/internal/ui"
"github.com/safedep/pmg/packagemanager"
"github.com/stretchr/testify/assert"
)
// noopExecutor is a no-op executor for use in tests that set DryRun=true
// or otherwise don't reach actual command execution.
var noopExecutor CommandExecutor = func(_ context.Context, _ *packagemanager.ParsedCommand) error {
return nil
}
func TestGuardConcurrentlyAnalyzePackagesMalwareQueryService(t *testing.T) {
mq, err := analyzer.NewMalysisQueryAnalyzer(analyzer.MalysisQueryAnalyzerConfig{})
if err != nil {
t.Fatalf("failed to create mq: %v", err)
}
pg, err := NewPackageManagerGuard(DefaultPackageManagerGuardConfig(), nil, nil,
[]analyzer.PackageVersionAnalyzer{mq}, PackageManagerGuardInteraction{
ShowWarning: func(message string) {},
}, noopExecutor)
if err != nil {
t.Fatalf("failed to create pg: %v", err)
}
t.Run("should resolve a single known malicious package version", func(t *testing.T) {
r, trustedSkipped, err := pg.concurrentAnalyzePackages(context.Background(), []*packagev1.PackageVersion{
{
Package: &packagev1.Package{
Name: "nyc-config",
Ecosystem: packagev1.Ecosystem_ECOSYSTEM_NPM,
},
Version: "10.0.0",
},
})
if err != nil {
t.Fatalf("failed to analyze packages: %v", err)
}
assert.Equal(t, 0, trustedSkipped)
assert.Equal(t, 1, len(r))
assert.Equal(t, "nyc-config", r[0].PackageVersion.GetPackage().GetName())
assert.Equal(t, "10.0.0", r[0].PackageVersion.GetVersion())
assert.Equal(t, packagev1.Ecosystem_ECOSYSTEM_NPM, r[0].PackageVersion.GetPackage().GetEcosystem())
assert.NotEmpty(t, r[0].ReferenceURL)
assert.NotEmpty(t, r[0].Summary)
assert.NotNil(t, r[0].Data)
assert.Equal(t, analyzer.ActionBlock, r[0].Action)
})
}
func TestGuardInsecureInstallation(t *testing.T) {
mq, err := analyzer.NewMalysisQueryAnalyzer(analyzer.MalysisQueryAnalyzerConfig{})
if err != nil {
t.Fatalf("failed to create mq: %v", err)
}
t.Run("should bypass malware blocking when InsecureInstallation is enabled", func(t *testing.T) {
// Create guard with InsecureInstallation enabled
config := DefaultPackageManagerGuardConfig()
config.InsecureInstallation = true
config.DryRun = true // Enable dry run to avoid actual command execution
config.ResolveDependencies = false // Disable dependency resolution to avoid nil pointer issues
blockCalled := false
warningCalled := false
var warningMessage string
interaction := PackageManagerGuardInteraction{
ShowWarning: func(message string) {
warningCalled = true
warningMessage = message
},
Block: func(config *ui.BlockConfig) error {
blockCalled = true
return nil
},
}
pg, err := NewPackageManagerGuard(config, nil, nil,
[]analyzer.PackageVersionAnalyzer{mq}, interaction, noopExecutor)
if err != nil {
t.Fatalf("failed to create pg: %v", err)
}
// Create a parsed command with a known malicious package
parsedCommand := &packagemanager.ParsedCommand{
Command: packagemanager.Command{
Exe: "npm",
Args: []string{"install", "nyc-config@10.0.0"},
},
InstallTargets: []*packagemanager.PackageInstallTarget{
{
PackageVersion: &packagev1.PackageVersion{
Package: &packagev1.Package{
Name: "nyc-config",
Ecosystem: packagev1.Ecosystem_ECOSYSTEM_NPM,
},
Version: "10.0.0",
},
},
},
}
_, err = pg.Run(context.Background(), []string{"npm", "install", "nyc-config@10.0.0"}, parsedCommand)
// With dry run enabled, we expect no error even though we're bypassing execution
assert.NoError(t, err)
// Block should not be called because InsecureInstallation bypasses the analysis
assert.False(t, blockCalled, "Block should not be called when InsecureInstallation is enabled")
// Warning should be called to inform user about insecure installation
assert.True(t, warningCalled, "Warning should be called when InsecureInstallation is enabled")
assert.Contains(t, warningMessage, "INSECURE INSTALLATION MODE", "Warning message should mention insecure installation")
})
t.Run("should block malware when InsecureInstallation is disabled", func(t *testing.T) {
// Create guard with InsecureInstallation disabled (default)
config := DefaultPackageManagerGuardConfig()
config.InsecureInstallation = false
config.DryRun = true
config.ResolveDependencies = false // Disable dependency resolution to avoid nil pointer issues
interaction := PackageManagerGuardInteraction{
ShowWarning: func(message string) {},
}
pg, err := NewPackageManagerGuard(config, nil, nil,
[]analyzer.PackageVersionAnalyzer{mq}, interaction, noopExecutor)
if err != nil {
t.Fatalf("failed to create pg: %v", err)
}
// Create a parsed command with a known malicious package
parsedCommand := &packagemanager.ParsedCommand{
Command: packagemanager.Command{
Exe: "npm",
Args: []string{"install", "nyc-config@10.0.0"},
},
InstallTargets: []*packagemanager.PackageInstallTarget{
{
PackageVersion: &packagev1.PackageVersion{
Package: &packagev1.Package{
Name: "nyc-config",
Ecosystem: packagev1.Ecosystem_ECOSYSTEM_NPM,
},
Version: "10.0.0",
},
},
},
}
r, err := pg.Run(context.Background(), []string{"npm", "install", "nyc-config@10.0.0"}, parsedCommand)
// We expect no error from the guard itself (blocking is handled via the Block callback)
assert.NoError(t, err)
// Verify that the malicious package was detected and blocked
assert.NotEmpty(t, r.BlockedPackages, "Blocked packages should not be empty")
assert.Greater(t, r.BlockedCount, 0)
assert.Equal(t, "nyc-config", r.BlockedPackages[0].PackageVersion.GetPackage().GetName())
assert.Equal(t, "10.0.0", r.BlockedPackages[0].PackageVersion.GetVersion())
assert.Equal(t, analyzer.ActionBlock, r.BlockedPackages[0].Action)
})
t.Run("should continue execution for commands without install targets when InsecureInstallation is enabled", func(t *testing.T) {
// Create guard with InsecureInstallation enabled
config := DefaultPackageManagerGuardConfig()
config.InsecureInstallation = true
config.DryRun = true
config.ResolveDependencies = false // Disable dependency resolution to avoid nil pointer issues
blockCalled := false
interaction := PackageManagerGuardInteraction{
ShowWarning: func(message string) {},
Block: func(config *ui.BlockConfig) error {
blockCalled = true
return nil
},
}
pg, err := NewPackageManagerGuard(config, nil, nil,
[]analyzer.PackageVersionAnalyzer{mq}, interaction, noopExecutor)
if err != nil {
t.Fatalf("failed to create pg: %v", err)
}
// Create a parsed command without install targets (e.g., npm list)
parsedCommand := &packagemanager.ParsedCommand{
Command: packagemanager.Command{
Exe: "npm",
Args: []string{"list"},
},
InstallTargets: []*packagemanager.PackageInstallTarget{}, // No install targets
}
_, err = pg.Run(context.Background(), []string{"npm", "list"}, parsedCommand)
// Should not error since there are no install targets to analyze
assert.NoError(t, err)
// Block should not be called since there are no packages to analyze
assert.False(t, blockCalled, "Block should not be called when there are no install targets")
})
t.Run("should handle manifest-based installation when InsecureInstallation is enabled", func(t *testing.T) {
// Create guard with InsecureInstallation enabled
config := DefaultPackageManagerGuardConfig()
config.InsecureInstallation = true
config.DryRun = true
config.ResolveDependencies = false // Disable dependency resolution to avoid nil pointer issues
blockCalled := false
interaction := PackageManagerGuardInteraction{
ShowWarning: func(message string) {},
Block: func(config *ui.BlockConfig) error {
blockCalled = true
return nil
},
}
pg, err := NewPackageManagerGuard(config, nil, nil,
[]analyzer.PackageVersionAnalyzer{mq}, interaction, noopExecutor)
if err != nil {
t.Fatalf("failed to create pg: %v", err)
}
// Create a parsed command for manifest-based installation
parsedCommand := &packagemanager.ParsedCommand{
Command: packagemanager.Command{
Exe: "npm",
Args: []string{"install"},
},
InstallTargets: []*packagemanager.PackageInstallTarget{}, // No direct install targets
IsManifestInstall: true,
ManifestFiles: []string{"package.json"},
}
_, err = pg.Run(context.Background(), []string{"npm", "install"}, parsedCommand)
// Should not error and should bypass malware checking
assert.NoError(t, err)
// Block should not be called because InsecureInstallation bypasses analysis
assert.False(t, blockCalled, "Block should not be called when InsecureInstallation is enabled for manifest installation")
})
t.Run("should verify InsecureInstallation defaults to false", func(t *testing.T) {
config := DefaultPackageManagerGuardConfig()
// Verify that InsecureInstallation defaults to false
assert.False(t, config.InsecureInstallation, "InsecureInstallation should default to false")
})
}