package rigctld import ( "strings" "testing" ) // WSJT-X in "Split Operating: Rig" sends set_split_vfo then set_split_freq. Both // used to answer RPRT 0 and do NOTHING: the software believed it was // transmitting up the band while the radio stayed on the receive frequency — // on a pileup, straight onto the DX, with no trace anywhere. func TestSetSplitReachesTheRig(t *testing.T) { rig := &fakeRig{freq: 14074000, mode: "FT8"} s := New(0, rig, func(string, ...any) {}) if got, _ := s.handle("S 1 VFOB"); !strings.HasPrefix(got, "RPRT 0") { t.Fatalf("set_split_vfo answered %q", got) } // Arming alone must NOT touch the rig: without a frequency it would transmit // on whatever the second VFO happened to hold. if len(rig.splitCalls) != 0 { t.Errorf("split was armed before a frequency arrived: %v", rig.splitCalls) } if got, _ := s.handle("I 14075300.000000"); !strings.HasPrefix(got, "RPRT 0") { t.Fatalf("set_split_freq answered %q", got) } if len(rig.splitCalls) != 1 || rig.splitCalls[0] != "true:14075300" { t.Fatalf("rig saw %v, want one call arming split on 14075300", rig.splitCalls) } if got, _ := s.handle("S 0 VFOA"); !strings.HasPrefix(got, "RPRT 0") { t.Fatalf("split off answered %q", got) } if len(rig.splitCalls) != 2 || !strings.HasPrefix(rig.splitCalls[1], "false:") { t.Errorf("rig saw %v, want split cleared", rig.splitCalls) } } // A backend that cannot do split must produce an ERROR the client can report. // Answering success and doing nothing is what caused the original fault, and it // is the one outcome that must never come back. func TestSetSplitRefusalIsReported(t *testing.T) { rig := &fakeRig{freq: 14074000, noSplit: true} s := New(0, rig, func(string, ...any) {}) s.handle("S 1 VFOB") got, _ := s.handle("I 14075300.000000") if strings.HasPrefix(got, "RPRT 0") { t.Errorf("a rig that cannot split answered %q — the client will transmit on the wrong frequency", got) } }