osmo-bts/src/osmo-bts-sysmo/calib_file.c

275 lines
5.9 KiB
C

/* sysmocom femtobts L1 calibration file routines*/
/* (C) 2012 by Harald Welte <laforge@gnumonks.org>
*
* All Rights Reserved
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU Affero General Public License as published by
* the Free Software Foundation; either version 3 of the License, or
* (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU Affero General Public License
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*
*/
#include <stdio.h>
#include <string.h>
#include <stdlib.h>
#include <fcntl.h>
#include <limits.h>
#include <osmocom/core/utils.h>
#include <osmo-bts/logging.h>
#include <sysmocom/femtobts/superfemto.h>
#include <sysmocom/femtobts/gsml1const.h>
#include "l1_if.h"
struct calib_file_desc {
const char *fname;
GsmL1_FreqBand_t band;
int uplink;
int rx;
};
static const struct calib_file_desc calib_files[] = {
{
.fname = "calib_rxu_850.cfg",
.band = GsmL1_FreqBand_850,
.uplink = 1,
.rx = 1,
}, {
.fname = "calib_rxu_900.cfg",
.band = GsmL1_FreqBand_900,
.uplink = 1,
.rx = 1,
}, {
.fname = "calib_rxu_1800.cfg",
.band = GsmL1_FreqBand_1800,
.uplink = 1,
.rx = 1,
}, {
.fname = "calib_rxu_1900.cfg",
.band = GsmL1_FreqBand_1900,
.uplink = 1,
.rx = 1,
}, {
.fname = "calib_rxd_850.cfg",
.band = GsmL1_FreqBand_850,
.uplink = 0,
.rx = 1,
}, {
.fname = "calib_rxd_900.cfg",
.band = GsmL1_FreqBand_900,
.uplink = 0,
.rx = 1,
}, {
.fname = "calib_rxd_1800.cfg",
.band = GsmL1_FreqBand_1800,
.uplink = 0,
.rx = 1,
}, {
.fname = "calib_rxd_1900.cfg",
.band = GsmL1_FreqBand_1900,
.uplink = 0,
.rx = 1,
}, {
.fname = "calib_tx_850.cfg",
.band = GsmL1_FreqBand_850,
.uplink = 0,
.rx = 0,
}, {
.fname = "calib_tx_900.cfg",
.band = GsmL1_FreqBand_900,
.uplink = 0,
.rx = 0,
}, {
.fname = "calib_tx_1800.cfg",
.band = GsmL1_FreqBand_1800,
.uplink = 0,
.rx = 0,
}, {
.fname = "calib_tx_1900.cfg",
.band = GsmL1_FreqBand_1900,
.uplink = 0,
.rx = 0,
},
};
static const unsigned int arrsize_by_band[] = {
[GsmL1_FreqBand_850] = 124,
[GsmL1_FreqBand_900] = 194,
[GsmL1_FreqBand_1800] = 374,
[GsmL1_FreqBand_1900] = 299
};
static float read_float(FILE *in)
{
float f;
fscanf(in, "%f\n", &f);
return f;
}
static int read_int(FILE *in)
{
int i;
fscanf(in, "%d\n", &i);
return i;
}
int calib_file_read(const char *path, const struct calib_file_desc *desc,
SuperFemto_Prim_t *prim)
{
FILE *in;
char fname[PATH_MAX];
int i;
fname[0] = '\0';
snprintf(fname, sizeof(fname)-1, "%s/%s", path, desc->fname);
fname[sizeof(fname)-1] = '\0';
in = fopen(fname, "r");
if (!in)
return -1;
#if SUPERFEMTO_API_VERSION >= SUPERFEMTO_API(2,4,0)
if (desc->rx) {
SuperFemto_SetRxCalibTblReq_t *rx = &prim->u.setRxCalibTblReq;
memset(rx, 0, sizeof(*rx));
prim->id = SuperFemto_PrimId_SetRxCalibTblReq;
rx->freqBand = desc->band;
rx->bUplink = desc->uplink;
rx->fExtRxGain = read_float(in);
rx->fRxMixGainCorr = read_float(in);
for (i = 0; i < ARRAY_SIZE(rx->fRxLnaGainCorr); i++)
rx->fRxLnaGainCorr[i] = read_float(in);
for (i = 0; i < arrsize_by_band[desc->band]; i++)
rx->fRxRollOffCorr[i] = read_float(in);
if (desc->uplink) {
rx->u8IqImbalMode = read_int(in);
printf("%s: u8IqImbalMode=%d\n", desc->fname, rx->u8IqImbalMode);
for (i = 0; i < ARRAY_SIZE(rx->u16IqImbalCorr); i++)
rx->u16IqImbalCorr[i] = read_int(in);
}
} else {
SuperFemto_SetTxCalibTblReq_t *tx = &prim->u.setTxCalibTblReq;
memset(tx, 0, sizeof(*tx));
prim->id = SuperFemto_PrimId_SetTxCalibTblReq;
tx->freqBand = desc->band;
for (i = 0; i < ARRAY_SIZE(tx->fTxGainGmsk); i++)
tx->fTxGainGmsk[i] = read_float(in);
tx->fTx8PskCorr = read_float(in);
for (i = 0; i < ARRAY_SIZE(tx->fTxExtAttCorr); i++)
tx->fTxExtAttCorr[i] = read_float(in);
for (i = 0; i < arrsize_by_band[desc->band]; i++)
tx->fTxRollOffCorr[i] = read_float(in);
}
#else
#warning Format of calibration tables before API version 2.4.0 not supported
#endif
fclose(in);
return 0;
}
/* iteratively download the calibration data into the L1 */
struct calib_send_state {
struct femtol1_hdl *fl1h;
const char *path;
int last_file_idx;
};
static int calib_send_compl_cb(struct msgb *l1_msg, void *data);
/* send the calibration table for a single specified file */
static int calib_file_send(struct femtol1_hdl *fl1h,
const struct calib_file_desc *desc, void *state)
{
struct msgb *msg;
int rc;
msg = sysp_msgb_alloc();
rc = calib_file_read(fl1h->calib_path, desc, msgb_sysprim(msg));
if (rc < 0) {
msgb_free(msg);
return rc;
}
return l1if_req_compl(fl1h, msg, 1, calib_send_compl_cb, state);
}
/* completion callback after every SetCalibTbl is confirmed */
static int calib_send_compl_cb(struct msgb *l1_msg, void *data)
{
struct calib_send_state *st = data;
LOGP(DL1C, LOGL_DEBUG, "L1 calibration table %s loaded\n",
calib_files[st->last_file_idx].fname);
st->last_file_idx++;
if (st->last_file_idx < ARRAY_SIZE(calib_files))
return calib_file_send(st->fl1h,
&calib_files[st->last_file_idx], st);
LOGP(DL1C, LOGL_INFO, "L1 calibration table loading complete!\n");
return 0;
}
int calib_load(struct femtol1_hdl *fl1h)
{
static struct calib_send_state st;
memset(&st, 0, sizeof(st));
st.fl1h = fl1h;
#if SUPERFEMTO_API_VERSION < SUPERFEMTO_API(2,4,0)
return -1;
#else
return calib_file_send(fl1h, &calib_files[0], &st);
#endif
}
#if 0
int main(int argc, char **argv)
{
SuperFemto_Prim_t p;
int i;
for (i = 0; i < ARRAY_SIZE(calib_files); i++) {
memset(&p, 0, sizeof(p));
calib_read_file(argv[1], &calib_files[i], &p);
}
exit(0);
}
#endif