diff options
Diffstat (limited to 'cmd/swarm/access_test.go')
-rw-r--r-- | cmd/swarm/access_test.go | 79 |
1 files changed, 44 insertions, 35 deletions
diff --git a/cmd/swarm/access_test.go b/cmd/swarm/access_test.go index e812cd8fd..9357c577e 100644 --- a/cmd/swarm/access_test.go +++ b/cmd/swarm/access_test.go @@ -14,8 +14,6 @@ // You should have received a copy of the GNU General Public License // along with go-ethereum. If not, see <http://www.gnu.org/licenses/>. -// +build !windows - package main import ( @@ -28,6 +26,7 @@ import ( gorand "math/rand" "net/http" "os" + "runtime" "strings" "testing" "time" @@ -37,8 +36,7 @@ import ( "github.com/ethereum/go-ethereum/crypto/sha3" "github.com/ethereum/go-ethereum/log" "github.com/ethereum/go-ethereum/swarm/api" - swarm "github.com/ethereum/go-ethereum/swarm/api/client" - swarmhttp "github.com/ethereum/go-ethereum/swarm/api/http" + swarmapi "github.com/ethereum/go-ethereum/swarm/api/client" "github.com/ethereum/go-ethereum/swarm/testutil" ) @@ -49,22 +47,41 @@ const ( var DefaultCurve = crypto.S256() -// TestAccessPassword tests for the correct creation of an ACT manifest protected by a password. +func TestACT(t *testing.T) { + if runtime.GOOS == "windows" { + t.Skip() + } + + initCluster(t) + + cases := []struct { + name string + f func(t *testing.T) + }{ + {"Password", testPassword}, + {"PK", testPK}, + {"ACTWithoutBogus", testACTWithoutBogus}, + {"ACTWithBogus", testACTWithBogus}, + } + + for _, tc := range cases { + t.Run(tc.name, tc.f) + } +} + +// testPassword tests for the correct creation of an ACT manifest protected by a password. // The test creates bogus content, uploads it encrypted, then creates the wrapping manifest with the Access entry // The parties participating - node (publisher), uploads to second node then disappears. Content which was uploaded // is then fetched through 2nd node. since the tested code is not key-aware - we can just // fetch from the 2nd node using HTTP BasicAuth -func TestAccessPassword(t *testing.T) { - srv := swarmhttp.NewTestSwarmServer(t, serverFunc, nil) - defer srv.Close() - +func testPassword(t *testing.T) { dataFilename := testutil.TempFileWithContent(t, data) defer os.RemoveAll(dataFilename) // upload the file with 'swarm up' and expect a hash up := runSwarm(t, "--bzzapi", - srv.URL, //it doesn't matter through which node we upload content + cluster.Nodes[0].URL, "up", "--encrypt", dataFilename) @@ -138,16 +155,17 @@ func TestAccessPassword(t *testing.T) { if a.Publisher != "" { t.Fatal("should be empty") } - client := swarm.NewClient(srv.URL) + + client := swarmapi.NewClient(cluster.Nodes[0].URL) hash, err := client.UploadManifest(&m, false) if err != nil { t.Fatal(err) } - httpClient := &http.Client{} + url := cluster.Nodes[0].URL + "/" + "bzz:/" + hash - url := srv.URL + "/" + "bzz:/" + hash + httpClient := &http.Client{} response, err := httpClient.Get(url) if err != nil { t.Fatal(err) @@ -189,7 +207,7 @@ func TestAccessPassword(t *testing.T) { //download file with 'swarm down' with wrong password up = runSwarm(t, "--bzzapi", - srv.URL, + cluster.Nodes[0].URL, "down", "bzz:/"+hash, tmp, @@ -203,16 +221,12 @@ func TestAccessPassword(t *testing.T) { up.ExpectExit() } -// TestAccessPK tests for the correct creation of an ACT manifest between two parties (publisher and grantee). +// testPK tests for the correct creation of an ACT manifest between two parties (publisher and grantee). // The test creates bogus content, uploads it encrypted, then creates the wrapping manifest with the Access entry // The parties participating - node (publisher), uploads to second node (which is also the grantee) then disappears. // Content which was uploaded is then fetched through the grantee's http proxy. Since the tested code is private-key aware, // the test will fail if the proxy's given private key is not granted on the ACT. -func TestAccessPK(t *testing.T) { - // Setup Swarm and upload a test file to it - cluster := newTestCluster(t, 2) - defer cluster.Shutdown() - +func testPK(t *testing.T) { dataFilename := testutil.TempFileWithContent(t, data) defer os.RemoveAll(dataFilename) @@ -318,7 +332,7 @@ func TestAccessPK(t *testing.T) { if a.Publisher != pkComp { t.Fatal("publisher key did not match") } - client := swarm.NewClient(cluster.Nodes[0].URL) + client := swarmapi.NewClient(cluster.Nodes[0].URL) hash, err := client.UploadManifest(&m, false) if err != nil { @@ -344,29 +358,24 @@ func TestAccessPK(t *testing.T) { } } -// TestAccessACT tests the creation of the ACT manifest end-to-end, without any bogus entries (i.e. default scenario = 3 nodes 1 unauthorized) -func TestAccessACT(t *testing.T) { - testAccessACT(t, 0) +// testACTWithoutBogus tests the creation of the ACT manifest end-to-end, without any bogus entries (i.e. default scenario = 3 nodes 1 unauthorized) +func testACTWithoutBogus(t *testing.T) { + testACT(t, 0) } -// TestAccessACTScale tests the creation of the ACT manifest end-to-end, with 1000 bogus entries (i.e. 1000 EC keys + default scenario = 3 nodes 1 unauthorized = 1003 keys in the ACT manifest) -func TestAccessACTScale(t *testing.T) { - testAccessACT(t, 1000) +// testACTWithBogus tests the creation of the ACT manifest end-to-end, with 100 bogus entries (i.e. 100 EC keys + default scenario = 3 nodes 1 unauthorized = 103 keys in the ACT manifest) +func testACTWithBogus(t *testing.T) { + testACT(t, 100) } -// TestAccessACT tests the e2e creation, uploading and downloading of an ACT access control with both EC keys AND password protection +// testACT tests the e2e creation, uploading and downloading of an ACT access control with both EC keys AND password protection // the test fires up a 3 node cluster, then randomly picks 2 nodes which will be acting as grantees to the data // set and also protects the ACT with a password. the third node should fail decoding the reference as it will not be granted access. // the third node then then tries to download using a correct password (and succeeds) then uses a wrong password and fails. // the publisher uploads through one of the nodes then disappears. -func testAccessACT(t *testing.T, bogusEntries int) { - // Setup Swarm and upload a test file to it - const clusterSize = 3 - cluster := newTestCluster(t, clusterSize) - defer cluster.Shutdown() - +func testACT(t *testing.T, bogusEntries int) { var uploadThroughNode = cluster.Nodes[0] - client := swarm.NewClient(uploadThroughNode.URL) + client := swarmapi.NewClient(uploadThroughNode.URL) r1 := gorand.New(gorand.NewSource(time.Now().UnixNano())) nodeToSkip := r1.Intn(clusterSize) // a number between 0 and 2 (node indices in `cluster`) |