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https://github.com/Hamlib/Hamlib.git
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Remove remaining references to rpc
As rpc backends were removed some time ago, remove all remaining documentation and other references to rpc.
This commit is contained in:
parent
f632695131
commit
1bac099494
12
.gitignore
vendored
12
.gitignore
vendored
@ -43,18 +43,6 @@ macros/ltsugar.m4
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macros/ltversion.m4
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macros/lt~obsolete.m4
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macros/pkg.m4
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rpcrig/rpc.rigd
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rpcrig/rpcrig.h
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rpcrig/rpcrig_clnt.c
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rpcrig/rpcrig_svc.c
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rpcrig/rpcrig_xdr.c
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rpcrig/rpcrig_xdr_lt.c
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rpcrot/rpc.rotd
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rpcrot/rpcrot.h
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rpcrot/rpcrot_clnt.c
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rpcrot/rpcrot_svc.c
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rpcrot/rpcrot_xdr.c
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rpcrot/rpcrot_xdr_lt.c
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tests/rigctl
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tests/rigctld
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tests/rigmem
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@ -112,12 +112,6 @@
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/* If available, contains the Python version number currently in use. */
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/* #undef HAVE_PYTHON */
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/* Define to 1 if you have the <rpc/rpcent.h> header file. */
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/* #undef HAVE_RPC_RPCENT_H */
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/* Define to 1 if you have the <rpc/rpc.h> header file. */
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#define HAVE_RPC_RPC_H 1
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/* Define to 1 if you have the `select' function. */
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#define HAVE_SELECT 1
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@ -65,9 +65,6 @@ static int netrigctl_transaction(RIG *rig, char *cmd, int len, char *buf)
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}
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/*
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* mimics rpcrig_open() from rpcrig/rpcrig_backend.c
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*/
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static int netrigctl_open(RIG *rig)
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{
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int ret, len, i;
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@ -1426,4 +1423,3 @@ const struct rig_caps netrigctl_caps = {
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.set_channel = netrigctl_set_channel,
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.get_channel = netrigctl_get_channel,
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};
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@ -39,7 +39,7 @@ File change summary: (Hopefully, I'll keep this updated...)
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It just occured to me that it would be very nice to
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have a default hamlib menu. If a rig don't have any
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or no menu functions yet, the levels and other items
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can be presented as a default menu.
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can be presented as a default menu.
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ts2000.c Inserted my version. mv'd orig to ts2000.c.orig
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ts2000.h renamed ts2000.c to ts2000.h
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@ -64,7 +64,6 @@ File change summary: (Hopefully, I'll keep this updated...)
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kylix/hamlib_rigapi.pas // same as rig.h (Hold the Press!)
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kenwood/ // ok
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pcr/ // ok
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rpcrig/ // ok
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src/ // ok
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tests/dumpcaps.c // uses bitwise mask (&)
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yaesu/ft100.c // uses RIG_VFO1 directly, etc...
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@ -80,7 +80,6 @@ DEFINE_INITRIG_BACKEND(winradio);
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DEFINE_INITRIG_BACKEND(tentec);
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DEFINE_INITRIG_BACKEND(alinco);
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DEFINE_INITRIG_BACKEND(kachina);
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// DEFINE_INITRIG_BACKEND(rpc);
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DEFINE_INITRIG_BACKEND(tapr);
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DEFINE_INITRIG_BACKEND(flexradio);
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DEFINE_INITRIG_BACKEND(rft);
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@ -104,35 +103,34 @@ static struct {
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const char *be_name;
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int (* be_init_all)(void * handle);
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rig_model_t (* be_probe_all)(hamlib_port_t*, rig_probe_func_t, rig_ptr_t);
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} rig_backend_list[RIG_BACKEND_MAX] =
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{
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{ RIG_DUMMY, RIG_BACKEND_DUMMY, RIG_FUNCNAMA(dummy) },
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{ RIG_YAESU, RIG_BACKEND_YAESU, RIG_FUNCNAM(yaesu) },
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{ RIG_KENWOOD, RIG_BACKEND_KENWOOD, RIG_FUNCNAM(kenwood) },
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{ RIG_ICOM, RIG_BACKEND_ICOM, RIG_FUNCNAM(icom) },
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{ RIG_PCR, RIG_BACKEND_PCR, RIG_FUNCNAMA(pcr) },
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{ RIG_AOR, RIG_BACKEND_AOR, RIG_FUNCNAMA(aor) },
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{ RIG_JRC, RIG_BACKEND_JRC, RIG_FUNCNAMA(jrc) },
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{ RIG_UNIDEN, RIG_BACKEND_UNIDEN, RIG_FUNCNAM(uniden) },
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{ RIG_DRAKE, RIG_BACKEND_DRAKE, RIG_FUNCNAM(drake) },
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{ RIG_LOWE, RIG_BACKEND_LOWE, RIG_FUNCNAM(lowe) },
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{ RIG_RACAL, RIG_BACKEND_RACAL, RIG_FUNCNAMA(racal) },
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{ RIG_WJ, RIG_BACKEND_WJ, RIG_FUNCNAMA(wj) },
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{ RIG_SKANTI, RIG_BACKEND_SKANTI, RIG_FUNCNAMA(skanti) },
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{ RIG_WINRADIO, RIG_BACKEND_WINRADIO, RIG_FUNCNAMA(winradio) },
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{ RIG_TENTEC, RIG_BACKEND_TENTEC, RIG_FUNCNAMA(tentec) },
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{ RIG_ALINCO, RIG_BACKEND_ALINCO, RIG_FUNCNAMA(alinco) },
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{ RIG_KACHINA, RIG_BACKEND_KACHINA, RIG_FUNCNAMA(kachina) },
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/* { RIG_RPC, RIG_BACKEND_RPC, RIG_FUNCNAM(rpc) }, */
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{ RIG_TAPR, RIG_BACKEND_TAPR, RIG_FUNCNAMA(tapr) },
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{ RIG_FLEXRADIO, RIG_BACKEND_FLEXRADIO, RIG_FUNCNAMA(flexradio) },
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{ RIG_RFT, RIG_BACKEND_RFT, RIG_FUNCNAMA(rft) },
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{ RIG_KIT, RIG_BACKEND_KIT, RIG_FUNCNAMA(kit) },
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{ RIG_TUNER, RIG_BACKEND_TUNER, RIG_FUNCNAMA(tuner) },
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{ RIG_RS, RIG_BACKEND_RS, RIG_FUNCNAMA(rs) },
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{ RIG_PRM80, RIG_BACKEND_PRM80, RIG_FUNCNAMA(prm80) },
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{ RIG_ADAT, RIG_BACKEND_ADAT, RIG_FUNCNAM(adat) },
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{ 0, NULL }, /* end */
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} rig_backend_list[RIG_BACKEND_MAX] =
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{
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{ RIG_DUMMY, RIG_BACKEND_DUMMY, RIG_FUNCNAMA(dummy) },
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{ RIG_YAESU, RIG_BACKEND_YAESU, RIG_FUNCNAM(yaesu) },
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{ RIG_KENWOOD, RIG_BACKEND_KENWOOD, RIG_FUNCNAM(kenwood) },
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{ RIG_ICOM, RIG_BACKEND_ICOM, RIG_FUNCNAM(icom) },
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{ RIG_PCR, RIG_BACKEND_PCR, RIG_FUNCNAMA(pcr) },
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{ RIG_AOR, RIG_BACKEND_AOR, RIG_FUNCNAMA(aor) },
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{ RIG_JRC, RIG_BACKEND_JRC, RIG_FUNCNAMA(jrc) },
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{ RIG_UNIDEN, RIG_BACKEND_UNIDEN, RIG_FUNCNAM(uniden) },
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{ RIG_DRAKE, RIG_BACKEND_DRAKE, RIG_FUNCNAM(drake) },
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{ RIG_LOWE, RIG_BACKEND_LOWE, RIG_FUNCNAM(lowe) },
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{ RIG_RACAL, RIG_BACKEND_RACAL, RIG_FUNCNAMA(racal) },
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{ RIG_WJ, RIG_BACKEND_WJ, RIG_FUNCNAMA(wj) },
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{ RIG_SKANTI, RIG_BACKEND_SKANTI, RIG_FUNCNAMA(skanti) },
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{ RIG_WINRADIO, RIG_BACKEND_WINRADIO, RIG_FUNCNAMA(winradio) },
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{ RIG_TENTEC, RIG_BACKEND_TENTEC, RIG_FUNCNAMA(tentec) },
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{ RIG_ALINCO, RIG_BACKEND_ALINCO, RIG_FUNCNAMA(alinco) },
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{ RIG_KACHINA, RIG_BACKEND_KACHINA, RIG_FUNCNAMA(kachina) },
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{ RIG_TAPR, RIG_BACKEND_TAPR, RIG_FUNCNAMA(tapr) },
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{ RIG_FLEXRADIO, RIG_BACKEND_FLEXRADIO, RIG_FUNCNAMA(flexradio) },
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{ RIG_RFT, RIG_BACKEND_RFT, RIG_FUNCNAMA(rft) },
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{ RIG_KIT, RIG_BACKEND_KIT, RIG_FUNCNAMA(kit) },
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{ RIG_TUNER, RIG_BACKEND_TUNER, RIG_FUNCNAMA(tuner) },
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{ RIG_RS, RIG_BACKEND_RS, RIG_FUNCNAMA(rs) },
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{ RIG_PRM80, RIG_BACKEND_PRM80, RIG_FUNCNAMA(prm80) },
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{ RIG_ADAT, RIG_BACKEND_ADAT, RIG_FUNCNAM(adat) },
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{ 0, NULL }, /* end */
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};
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/*
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@ -383,4 +381,3 @@ int HAMLIB_API rig_load_backend(const char *be_name)
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return -RIG_EINVAL;
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}
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@ -60,7 +60,6 @@
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DEFINE_INITROT_BACKEND(dummy);
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DEFINE_INITROT_BACKEND(rpc);
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DEFINE_INITROT_BACKEND(easycomm);
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DEFINE_INITROT_BACKEND(fodtrack);
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DEFINE_INITROT_BACKEND(rotorez);
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@ -90,25 +89,24 @@ static struct {
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const char *be_name;
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int (*be_init)(void *);
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rot_model_t (*be_probe)(hamlib_port_t *);
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} rot_backend_list[ROT_BACKEND_MAX] =
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{
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{ ROT_DUMMY, ROT_BACKEND_DUMMY, ROT_FUNCNAMA(dummy) },
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/* { ROT_RPC, ROT_BACKEND_RPC, ROT_FUNCNAMA(rpc) }, */
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{ ROT_EASYCOMM, ROT_BACKEND_EASYCOMM, ROT_FUNCNAMA(easycomm) },
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{ ROT_FODTRACK, ROT_BACKEND_FODTRACK, ROT_FUNCNAMA(fodtrack) },
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{ ROT_ROTOREZ, ROT_BACKEND_ROTOREZ, ROT_FUNCNAMA(rotorez) },
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{ ROT_SARTEK, ROT_BACKEND_SARTEK, ROT_FUNCNAMA(sartek) },
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{ ROT_GS232A, ROT_BACKEND_GS232A, ROT_FUNCNAMA(gs232a) },
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{ ROT_KIT, ROT_BACKEND_KIT, ROT_FUNCNAMA(kit) },
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{ ROT_HEATHKIT, ROT_BACKEND_HEATHKIT, ROT_FUNCNAMA(heathkit) },
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{ ROT_SPID, ROT_BACKEND_SPID, ROT_FUNCNAMA(spid) },
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{ ROT_M2, ROT_BACKEND_M2, ROT_FUNCNAMA(m2) },
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{ ROT_ARS, ROT_BACKEND_ARS, ROT_FUNCNAMA(ars) },
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{ ROT_AMSAT, ROT_BACKEND_AMSAT, ROT_FUNCNAMA(amsat) },
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{ ROT_TS7400, ROT_BACKEND_TS7400, ROT_FUNCNAMA(ts7400) },
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{ ROT_CELESTRON, ROT_BACKEND_CELESTRON, ROT_FUNCNAMA(celestron) },
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{ ROT_ETHER6, ROT_BACKEND_ETHER6, ROT_FUNCNAMA(ether6) },
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{ 0, NULL }, /* end */
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} rot_backend_list[ROT_BACKEND_MAX] =
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{
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{ ROT_DUMMY, ROT_BACKEND_DUMMY, ROT_FUNCNAMA(dummy) },
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{ ROT_EASYCOMM, ROT_BACKEND_EASYCOMM, ROT_FUNCNAMA(easycomm) },
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{ ROT_FODTRACK, ROT_BACKEND_FODTRACK, ROT_FUNCNAMA(fodtrack) },
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{ ROT_ROTOREZ, ROT_BACKEND_ROTOREZ, ROT_FUNCNAMA(rotorez) },
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{ ROT_SARTEK, ROT_BACKEND_SARTEK, ROT_FUNCNAMA(sartek) },
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{ ROT_GS232A, ROT_BACKEND_GS232A, ROT_FUNCNAMA(gs232a) },
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{ ROT_KIT, ROT_BACKEND_KIT, ROT_FUNCNAMA(kit) },
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{ ROT_HEATHKIT, ROT_BACKEND_HEATHKIT, ROT_FUNCNAMA(heathkit) },
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{ ROT_SPID, ROT_BACKEND_SPID, ROT_FUNCNAMA(spid) },
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{ ROT_M2, ROT_BACKEND_M2, ROT_FUNCNAMA(m2) },
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{ ROT_ARS, ROT_BACKEND_ARS, ROT_FUNCNAMA(ars) },
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{ ROT_AMSAT, ROT_BACKEND_AMSAT, ROT_FUNCNAMA(amsat) },
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{ ROT_TS7400, ROT_BACKEND_TS7400, ROT_FUNCNAMA(ts7400) },
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{ ROT_CELESTRON, ROT_BACKEND_CELESTRON, ROT_FUNCNAMA(celestron) },
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{ ROT_ETHER6, ROT_BACKEND_ETHER6, ROT_FUNCNAMA(ether6) },
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{ 0, NULL }, /* end */
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};
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// Apparently, no rotator can be probed.
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@ -340,4 +338,3 @@ int HAMLIB_API rot_load_backend(const char *be_name)
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return -EINVAL;
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}
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bkendlst[16]="tentec"
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bkendlst[17]="alinco"
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bkendlst[18]="kachina"
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bkendlst[19]="rpcrig"
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bkendlst[20]="gnuradio"
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bkendlst[21]="microtune"
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bkendlst[22]="tapr"
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@ -87,4 +86,3 @@ END {
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print "</table></center></body></html>" >> lst_dir"/"bkendlst[bke]"_lst.html"
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}
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}
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@ -666,14 +666,15 @@ $ rigctld -m 114 -r /dev/ttyUSB1 -s 4800 -C stop_bits=2 &
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Start \fBrigctld\fP for an Elecraft K3 using COM2 on Win32:
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.sp
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$ rigctld -m 229 -r COM2
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.sp
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.PP
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Connect to the already running \fBrigctld\fP, and set current frequency to
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14.266 MHz with a 1 second read timeout using the default protocol from the
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shell prompt:
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.PP
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.sp
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$ echo "\\set_freq 14266000" | nc -w 1 localhost 4532
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Connect to a running \fBrigctld\fP with \fBrigctl\fP on the local host:
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.PP
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Connect to a running \fBrigctld\fP with \fBrigctl\fP on the local host:
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.sp
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$ rigctl -m2
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.SH DIAGNOSTICS
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The \fB-v\fP, \fB--verbose\fP, option allows different levels of diagnostics
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@ -273,10 +273,6 @@ Start \fBrotctl\fP for RotorEZ using COM2 on Win32:
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.sp
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$ rotctl -m 401 -r COM2
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.sp
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Start \fBrotctl\fP using \fBrpc.rotd\fP and querying the position:
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.sp
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$ rotctl -m 101 -r localhost \\get_pos
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.sp
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Connect to a running \fBrotctld\fP with rotor model 2 ("NET rotctl") on the
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local host and specifying the TCP port, and querying the position:
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.sp
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