832 lines
23 KiB
C
832 lines
23 KiB
C
/*
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* This file is part of the libsigrok project.
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*
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* Copyright (C) 2014 Bert Vermeulen <bert@biot.com>
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* Copyright (C) 2017,2019 Frank Stettner <frank-stettner@gmx.net>
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <config.h>
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#include <string.h>
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#include <strings.h>
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#include "scpi.h"
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#include "protocol.h"
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static struct sr_dev_driver scpi_pps_driver_info;
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static struct sr_dev_driver hp_ib_pps_driver_info;
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static const uint32_t scanopts[] = {
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SR_CONF_CONN,
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SR_CONF_SERIALCOMM,
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};
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static const uint32_t drvopts[] = {
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SR_CONF_POWER_SUPPLY,
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};
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static const struct pps_channel_instance pci[] = {
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{ SR_MQ_VOLTAGE, SCPI_CMD_GET_MEAS_VOLTAGE, "V" },
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{ SR_MQ_CURRENT, SCPI_CMD_GET_MEAS_CURRENT, "I" },
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{ SR_MQ_POWER, SCPI_CMD_GET_MEAS_POWER, "P" },
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{ SR_MQ_FREQUENCY, SCPI_CMD_GET_MEAS_FREQUENCY, "F" },
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};
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static struct sr_dev_inst *probe_device(struct sr_scpi_dev_inst *scpi,
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int (*get_hw_id)(struct sr_scpi_dev_inst *scpi,
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struct sr_scpi_hw_info **scpi_response))
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{
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struct dev_context *devc;
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struct sr_dev_inst *sdi;
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struct sr_scpi_hw_info *hw_info;
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struct sr_channel_group *cg;
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struct sr_channel *ch;
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const struct scpi_pps *device;
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struct pps_channel *pch;
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struct channel_spec *channels;
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struct channel_group_spec *channel_groups, *cgs;
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struct pps_channel_group *pcg;
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GRegex *model_re;
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GMatchInfo *model_mi;
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GSList *l;
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uint64_t mask;
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unsigned int num_channels, num_channel_groups, ch_num, ch_idx, i, j;
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int ret;
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const char *vendor;
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char ch_name[16];
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if (get_hw_id(scpi, &hw_info) != SR_OK) {
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sr_info("Couldn't get IDN response.");
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return NULL;
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}
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device = NULL;
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for (i = 0; i < num_pps_profiles; i++) {
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vendor = sr_vendor_alias(hw_info->manufacturer);
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if (g_ascii_strcasecmp(vendor, pps_profiles[i].vendor))
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continue;
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model_re = g_regex_new(pps_profiles[i].model, 0, 0, NULL);
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if (g_regex_match(model_re, hw_info->model, 0, &model_mi))
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device = &pps_profiles[i];
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g_match_info_unref(model_mi);
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g_regex_unref(model_re);
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if (device)
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break;
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}
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if (!device) {
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sr_scpi_hw_info_free(hw_info);
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return NULL;
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}
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sdi = g_malloc0(sizeof(struct sr_dev_inst));
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sdi->vendor = g_strdup(vendor);
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sdi->model = g_strdup(hw_info->model);
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sdi->version = g_strdup(hw_info->firmware_version);
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sdi->conn = scpi;
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sdi->driver = &scpi_pps_driver_info;
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sdi->inst_type = SR_INST_SCPI;
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sdi->serial_num = g_strdup(hw_info->serial_number);
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devc = g_malloc0(sizeof(struct dev_context));
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devc->device = device;
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sr_sw_limits_init(&devc->limits);
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sdi->priv = devc;
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if (device->num_channels) {
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/* Static channels and groups. */
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channels = (struct channel_spec *)device->channels;
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num_channels = device->num_channels;
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channel_groups = (struct channel_group_spec *)device->channel_groups;
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num_channel_groups = device->num_channel_groups;
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} else {
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/* Channels and groups need to be probed. */
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ret = device->probe_channels(sdi, hw_info, &channels, &num_channels,
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&channel_groups, &num_channel_groups);
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if (ret != SR_OK) {
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sr_err("Failed to probe for channels.");
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return NULL;
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}
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/*
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* Since these were dynamically allocated, we'll need to free them
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* later.
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*/
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devc->channels = channels;
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devc->channel_groups = channel_groups;
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}
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ch_idx = 0;
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for (ch_num = 0; ch_num < num_channels; ch_num++) {
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/* Create one channel per measurable output unit. */
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for (i = 0; i < ARRAY_SIZE(pci); i++) {
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if (!sr_scpi_cmd_get(devc->device->commands, pci[i].command))
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continue;
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g_snprintf(ch_name, 16, "%s%s", pci[i].prefix,
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channels[ch_num].name);
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ch = sr_channel_new(sdi, ch_idx++, SR_CHANNEL_ANALOG, TRUE,
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ch_name);
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pch = g_malloc0(sizeof(struct pps_channel));
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pch->hw_output_idx = ch_num;
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pch->hwname = channels[ch_num].name;
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pch->mq = pci[i].mq;
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ch->priv = pch;
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}
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}
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for (i = 0; i < num_channel_groups; i++) {
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cgs = &channel_groups[i];
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cg = g_malloc0(sizeof(struct sr_channel_group));
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cg->name = g_strdup(cgs->name);
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for (j = 0, mask = 1; j < 64; j++, mask <<= 1) {
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if (cgs->channel_index_mask & mask) {
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for (l = sdi->channels; l; l = l->next) {
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ch = l->data;
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pch = ch->priv;
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/* Add mqflags from channel_group_spec only to voltage
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* and current channels
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*/
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if (pch->mq == SR_MQ_VOLTAGE || pch->mq == SR_MQ_CURRENT)
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pch->mqflags = cgs->mqflags;
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else
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pch->mqflags = 0;
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if (pch->hw_output_idx == j)
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cg->channels = g_slist_append(cg->channels, ch);
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}
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}
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}
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pcg = g_malloc0(sizeof(struct pps_channel_group));
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pcg->features = cgs->features;
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cg->priv = pcg;
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sdi->channel_groups = g_slist_append(sdi->channel_groups, cg);
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}
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sr_scpi_hw_info_free(hw_info);
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hw_info = NULL;
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/* Don't send SCPI_CMD_LOCAL for HP 66xxB devices using SCPI over GPIB */
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if (!(devc->device->dialect == SCPI_DIALECT_HP_66XXB &&
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scpi->transport == SCPI_TRANSPORT_LIBGPIB))
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sr_scpi_cmd(sdi, devc->device->commands, 0, NULL, SCPI_CMD_LOCAL);
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return sdi;
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}
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static gchar *hpib_get_revision(struct sr_scpi_dev_inst *scpi)
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{
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int ret;
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gboolean matches;
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char *response;
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GRegex *version_regex;
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ret = sr_scpi_get_string(scpi, "ROM?", &response);
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if (ret != SR_OK && !response)
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return NULL;
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/* Example version string: "B01 B01" */
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version_regex = g_regex_new("[A-Z][0-9]{2} [A-Z][0-9]{2}", 0, 0, NULL);
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matches = g_regex_match(version_regex, response, 0, NULL);
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g_regex_unref(version_regex);
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if (!matches) {
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/* Not a valid version string. Ignore it. */
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g_free(response);
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response = NULL;
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} else {
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/* Replace space with dot. */
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response[3] = '.';
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}
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return response;
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}
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/*
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* This function assumes the response is in the form "HP<model_number>"
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*
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* HP made many GPIB (then called HP-IB) instruments before the SCPI command
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* set was introduced into the standard. We haven't seen any non-HP instruments
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* which respond to the "ID?" query, so assume all are HP for now.
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*/
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static int hpib_get_hw_id(struct sr_scpi_dev_inst *scpi,
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struct sr_scpi_hw_info **scpi_response)
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{
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int ret;
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char *response;
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struct sr_scpi_hw_info *hw_info;
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ret = sr_scpi_get_string(scpi, "ID?", &response);
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if ((ret != SR_OK) || !response)
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return SR_ERR;
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hw_info = g_malloc0(sizeof(struct sr_scpi_hw_info));
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*scpi_response = hw_info;
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hw_info->model = response;
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hw_info->firmware_version = hpib_get_revision(scpi);
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hw_info->manufacturer = g_strdup("HP");
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return SR_OK;
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}
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static struct sr_dev_inst *probe_scpi_pps_device(struct sr_scpi_dev_inst *scpi)
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{
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return probe_device(scpi, sr_scpi_get_hw_id);
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}
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static struct sr_dev_inst *probe_hpib_pps_device(struct sr_scpi_dev_inst *scpi)
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{
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return probe_device(scpi, hpib_get_hw_id);
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}
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static GSList *scan_scpi_pps(struct sr_dev_driver *di, GSList *options)
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{
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return sr_scpi_scan(di->context, options, probe_scpi_pps_device);
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}
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static GSList *scan_hpib_pps(struct sr_dev_driver *di, GSList *options)
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{
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return sr_scpi_scan(di->context, options, probe_hpib_pps_device);
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}
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static int dev_open(struct sr_dev_inst *sdi)
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{
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struct dev_context *devc;
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struct sr_scpi_dev_inst *scpi;
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GVariant *beeper;
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scpi = sdi->conn;
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if (sr_scpi_open(scpi) < 0)
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return SR_ERR;
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devc = sdi->priv;
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/* Don't send SCPI_CMD_REMOTE for HP 66xxB devices using SCPI over GPIB */
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if (!(devc->device->dialect == SCPI_DIALECT_HP_66XXB &&
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scpi->transport == SCPI_TRANSPORT_LIBGPIB))
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sr_scpi_cmd(sdi, devc->device->commands, 0, NULL, SCPI_CMD_REMOTE);
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devc->beeper_was_set = FALSE;
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if (sr_scpi_cmd_resp(sdi, devc->device->commands, 0, NULL,
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&beeper, G_VARIANT_TYPE_BOOLEAN, SCPI_CMD_BEEPER) == SR_OK) {
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if (g_variant_get_boolean(beeper)) {
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devc->beeper_was_set = TRUE;
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sr_scpi_cmd(sdi, devc->device->commands,
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0, NULL, SCPI_CMD_BEEPER_DISABLE);
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}
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g_variant_unref(beeper);
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}
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return SR_OK;
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}
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static int dev_close(struct sr_dev_inst *sdi)
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{
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struct sr_scpi_dev_inst *scpi;
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struct dev_context *devc;
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devc = sdi->priv;
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scpi = sdi->conn;
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if (!scpi)
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return SR_ERR_BUG;
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if (devc->beeper_was_set)
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sr_scpi_cmd(sdi, devc->device->commands,
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0, NULL, SCPI_CMD_BEEPER_ENABLE);
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/* Don't send SCPI_CMD_LOCAL for HP 66xxB devices using SCPI over GPIB */
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if (!(devc->device->dialect == SCPI_DIALECT_HP_66XXB &&
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scpi->transport == SCPI_TRANSPORT_LIBGPIB))
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sr_scpi_cmd(sdi, devc->device->commands, 0, NULL, SCPI_CMD_LOCAL);
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return sr_scpi_close(scpi);
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}
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static void clear_helper(struct dev_context *devc)
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{
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g_free(devc->channels);
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g_free(devc->channel_groups);
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}
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static int dev_clear(const struct sr_dev_driver *di)
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{
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return std_dev_clear_with_callback(di, (std_dev_clear_callback)clear_helper);
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}
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static int config_get(uint32_t key, GVariant **data,
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const struct sr_dev_inst *sdi, const struct sr_channel_group *cg)
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{
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struct dev_context *devc;
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const GVariantType *gvtype;
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unsigned int i;
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int channel_group_cmd;
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char *channel_group_name;
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int cmd, ret;
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const char *s;
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int reg;
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if (!sdi)
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return SR_ERR_ARG;
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devc = sdi->priv;
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if (cg) {
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/*
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* These options only apply to channel groups with a single
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* channel -- they're per-channel settings for the device.
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*/
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/*
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* Config keys are handled below depending on whether a channel
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* group was provided by the frontend. However some of these
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* take a CG on one PPS but not on others. Check the device's
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* profile for that here, and NULL out the channel group as needed.
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*/
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for (i = 0; i < devc->device->num_devopts; i++) {
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if (devc->device->devopts[i] == key) {
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cg = NULL;
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break;
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}
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}
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}
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gvtype = NULL;
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cmd = -1;
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switch (key) {
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case SR_CONF_ENABLED:
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gvtype = G_VARIANT_TYPE_BOOLEAN;
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cmd = SCPI_CMD_GET_OUTPUT_ENABLED;
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break;
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case SR_CONF_VOLTAGE:
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gvtype = G_VARIANT_TYPE_DOUBLE;
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cmd = SCPI_CMD_GET_MEAS_VOLTAGE;
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break;
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case SR_CONF_VOLTAGE_TARGET:
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gvtype = G_VARIANT_TYPE_DOUBLE;
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cmd = SCPI_CMD_GET_VOLTAGE_TARGET;
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break;
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case SR_CONF_OUTPUT_FREQUENCY:
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gvtype = G_VARIANT_TYPE_DOUBLE;
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cmd = SCPI_CMD_GET_MEAS_FREQUENCY;
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break;
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case SR_CONF_OUTPUT_FREQUENCY_TARGET:
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gvtype = G_VARIANT_TYPE_DOUBLE;
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cmd = SCPI_CMD_GET_FREQUENCY_TARGET;
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break;
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case SR_CONF_CURRENT:
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gvtype = G_VARIANT_TYPE_DOUBLE;
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cmd = SCPI_CMD_GET_MEAS_CURRENT;
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break;
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case SR_CONF_CURRENT_LIMIT:
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gvtype = G_VARIANT_TYPE_DOUBLE;
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cmd = SCPI_CMD_GET_CURRENT_LIMIT;
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break;
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case SR_CONF_OVER_VOLTAGE_PROTECTION_ENABLED:
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gvtype = G_VARIANT_TYPE_BOOLEAN;
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cmd = SCPI_CMD_GET_OVER_VOLTAGE_PROTECTION_ENABLED;
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break;
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case SR_CONF_OVER_VOLTAGE_PROTECTION_ACTIVE:
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if (devc->device->dialect == SCPI_DIALECT_HP_66XXB ||
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devc->device->dialect == SCPI_DIALECT_HP_COMP)
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gvtype = G_VARIANT_TYPE_STRING;
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else
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gvtype = G_VARIANT_TYPE_BOOLEAN;
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cmd = SCPI_CMD_GET_OVER_VOLTAGE_PROTECTION_ACTIVE;
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break;
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case SR_CONF_OVER_VOLTAGE_PROTECTION_THRESHOLD:
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gvtype = G_VARIANT_TYPE_DOUBLE;
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cmd = SCPI_CMD_GET_OVER_VOLTAGE_PROTECTION_THRESHOLD;
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break;
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case SR_CONF_OVER_CURRENT_PROTECTION_ENABLED:
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gvtype = G_VARIANT_TYPE_BOOLEAN;
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cmd = SCPI_CMD_GET_OVER_CURRENT_PROTECTION_ENABLED;
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break;
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case SR_CONF_OVER_CURRENT_PROTECTION_ACTIVE:
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if (devc->device->dialect == SCPI_DIALECT_HP_66XXB ||
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devc->device->dialect == SCPI_DIALECT_HP_COMP)
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gvtype = G_VARIANT_TYPE_STRING;
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else
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gvtype = G_VARIANT_TYPE_BOOLEAN;
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cmd = SCPI_CMD_GET_OVER_CURRENT_PROTECTION_ACTIVE;
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break;
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case SR_CONF_OVER_CURRENT_PROTECTION_THRESHOLD:
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gvtype = G_VARIANT_TYPE_DOUBLE;
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cmd = SCPI_CMD_GET_OVER_CURRENT_PROTECTION_THRESHOLD;
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break;
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case SR_CONF_OVER_TEMPERATURE_PROTECTION:
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gvtype = G_VARIANT_TYPE_BOOLEAN;
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cmd = SCPI_CMD_GET_OVER_TEMPERATURE_PROTECTION;
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break;
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case SR_CONF_OVER_TEMPERATURE_PROTECTION_ACTIVE:
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if (devc->device->dialect == SCPI_DIALECT_HP_66XXB ||
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devc->device->dialect == SCPI_DIALECT_HP_COMP)
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gvtype = G_VARIANT_TYPE_STRING;
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else
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gvtype = G_VARIANT_TYPE_BOOLEAN;
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cmd = SCPI_CMD_GET_OVER_TEMPERATURE_PROTECTION_ACTIVE;
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break;
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case SR_CONF_REGULATION:
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gvtype = G_VARIANT_TYPE_STRING;
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cmd = SCPI_CMD_GET_OUTPUT_REGULATION;
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break;
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default:
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return sr_sw_limits_config_get(&devc->limits, key, data);
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}
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if (!gvtype)
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return SR_ERR_NA;
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channel_group_cmd = 0;
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channel_group_name = NULL;
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if (cg) {
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channel_group_cmd = SCPI_CMD_SELECT_CHANNEL;
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channel_group_name = g_strdup(cg->name);
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}
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ret = sr_scpi_cmd_resp(sdi, devc->device->commands,
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channel_group_cmd, channel_group_name, data, gvtype, cmd);
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g_free(channel_group_name);
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/*
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* Handle special cases
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*/
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if (cmd == SCPI_CMD_GET_OUTPUT_REGULATION) {
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if (devc->device->dialect == SCPI_DIALECT_PHILIPS) {
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/*
|
|
* The Philips PM2800 series returns VOLT/CURR. We always return
|
|
* a GVariant string in the Rigol notation (CV/CC/UR).
|
|
*/
|
|
s = g_variant_get_string(*data, NULL);
|
|
if (!g_strcmp0(s, "VOLT")) {
|
|
g_variant_unref(*data);
|
|
*data = g_variant_new_string("CV");
|
|
} else if (!g_strcmp0(s, "CURR")) {
|
|
g_variant_unref(*data);
|
|
*data = g_variant_new_string("CC");
|
|
}
|
|
}
|
|
if (devc->device->dialect == SCPI_DIALECT_HP_COMP) {
|
|
/* Evaluate Status Register from a HP 66xx in COMP mode. */
|
|
s = g_variant_get_string(*data, NULL);
|
|
sr_atoi(s, ®);
|
|
g_variant_unref(*data);
|
|
if (reg & (1 << 0))
|
|
*data = g_variant_new_string("CV");
|
|
else if (reg & (1 << 1))
|
|
*data = g_variant_new_string("CC");
|
|
else if (reg & (1 << 2))
|
|
*data = g_variant_new_string("UR");
|
|
else if (reg & (1 << 9))
|
|
*data = g_variant_new_string("CC-");
|
|
else
|
|
*data = g_variant_new_string("");
|
|
}
|
|
if (devc->device->dialect == SCPI_DIALECT_HP_66XXB) {
|
|
/* Evaluate Operational Status Register from a HP 66xxB. */
|
|
s = g_variant_get_string(*data, NULL);
|
|
sr_atoi(s, ®);
|
|
g_variant_unref(*data);
|
|
if (reg & (1 << 8))
|
|
*data = g_variant_new_string("CV");
|
|
else if (reg & (1 << 10))
|
|
*data = g_variant_new_string("CC");
|
|
else if (reg & (1 << 11))
|
|
*data = g_variant_new_string("CC-");
|
|
else
|
|
*data = g_variant_new_string("UR");
|
|
}
|
|
|
|
s = g_variant_get_string(*data, NULL);
|
|
if (g_strcmp0(s, "CV") && g_strcmp0(s, "CC") && g_strcmp0(s, "CC-") &&
|
|
g_strcmp0(s, "UR") && g_strcmp0(s, "")) {
|
|
|
|
sr_err("Unknown response to SCPI_CMD_GET_OUTPUT_REGULATION: %s", s);
|
|
ret = SR_ERR_DATA;
|
|
}
|
|
}
|
|
|
|
if (cmd == SCPI_CMD_GET_OVER_VOLTAGE_PROTECTION_ACTIVE) {
|
|
if (devc->device->dialect == SCPI_DIALECT_HP_COMP) {
|
|
/* Evaluate Status Register from a HP 66xx in COMP mode. */
|
|
s = g_variant_get_string(*data, NULL);
|
|
sr_atoi(s, ®);
|
|
g_variant_unref(*data);
|
|
*data = g_variant_new_boolean(reg & (1 << 3));
|
|
}
|
|
if (devc->device->dialect == SCPI_DIALECT_HP_66XXB) {
|
|
/* Evaluate Questionable Status Register bit 0 from a HP 66xxB. */
|
|
s = g_variant_get_string(*data, NULL);
|
|
sr_atoi(s, ®);
|
|
g_variant_unref(*data);
|
|
*data = g_variant_new_boolean(reg & (1 << 0));
|
|
}
|
|
}
|
|
|
|
if (cmd == SCPI_CMD_GET_OVER_CURRENT_PROTECTION_ACTIVE) {
|
|
if (devc->device->dialect == SCPI_DIALECT_HP_COMP) {
|
|
/* Evaluate Status Register from a HP 66xx in COMP mode. */
|
|
s = g_variant_get_string(*data, NULL);
|
|
sr_atoi(s, ®);
|
|
g_variant_unref(*data);
|
|
*data = g_variant_new_boolean(reg & (1 << 6));
|
|
}
|
|
if (devc->device->dialect == SCPI_DIALECT_HP_66XXB) {
|
|
/* Evaluate Questionable Status Register bit 1 from a HP 66xxB. */
|
|
s = g_variant_get_string(*data, NULL);
|
|
sr_atoi(s, ®);
|
|
g_variant_unref(*data);
|
|
*data = g_variant_new_boolean(reg & (1 << 1));
|
|
}
|
|
}
|
|
|
|
if (cmd == SCPI_CMD_GET_OVER_TEMPERATURE_PROTECTION_ACTIVE) {
|
|
if (devc->device->dialect == SCPI_DIALECT_HP_COMP) {
|
|
/* Evaluate Status Register from a HP 66xx in COMP mode. */
|
|
s = g_variant_get_string(*data, NULL);
|
|
sr_atoi(s, ®);
|
|
g_variant_unref(*data);
|
|
*data = g_variant_new_boolean(reg & (1 << 4));
|
|
}
|
|
if (devc->device->dialect == SCPI_DIALECT_HP_66XXB) {
|
|
/* Evaluate Questionable Status Register bit 4 from a HP 66xxB. */
|
|
s = g_variant_get_string(*data, NULL);
|
|
sr_atoi(s, ®);
|
|
g_variant_unref(*data);
|
|
*data = g_variant_new_boolean(reg & (1 << 4));
|
|
}
|
|
}
|
|
|
|
return ret;
|
|
}
|
|
|
|
static int config_set(uint32_t key, GVariant *data,
|
|
const struct sr_dev_inst *sdi, const struct sr_channel_group *cg)
|
|
{
|
|
struct dev_context *devc;
|
|
double d;
|
|
int channel_group_cmd;
|
|
char *channel_group_name;
|
|
int ret;
|
|
|
|
if (!sdi)
|
|
return SR_ERR_ARG;
|
|
|
|
channel_group_cmd = 0;
|
|
channel_group_name = NULL;
|
|
if (cg) {
|
|
channel_group_cmd = SCPI_CMD_SELECT_CHANNEL;
|
|
channel_group_name = g_strdup(cg->name);
|
|
}
|
|
|
|
devc = sdi->priv;
|
|
|
|
switch (key) {
|
|
case SR_CONF_ENABLED:
|
|
if (g_variant_get_boolean(data))
|
|
ret = sr_scpi_cmd(sdi, devc->device->commands,
|
|
channel_group_cmd, channel_group_name,
|
|
SCPI_CMD_SET_OUTPUT_ENABLE);
|
|
else
|
|
ret = sr_scpi_cmd(sdi, devc->device->commands,
|
|
channel_group_cmd, channel_group_name,
|
|
SCPI_CMD_SET_OUTPUT_DISABLE);
|
|
break;
|
|
case SR_CONF_VOLTAGE_TARGET:
|
|
d = g_variant_get_double(data);
|
|
ret = sr_scpi_cmd(sdi, devc->device->commands,
|
|
channel_group_cmd, channel_group_name,
|
|
SCPI_CMD_SET_VOLTAGE_TARGET, d);
|
|
break;
|
|
case SR_CONF_OUTPUT_FREQUENCY_TARGET:
|
|
d = g_variant_get_double(data);
|
|
ret = sr_scpi_cmd(sdi, devc->device->commands,
|
|
channel_group_cmd, channel_group_name,
|
|
SCPI_CMD_SET_FREQUENCY_TARGET, d);
|
|
break;
|
|
case SR_CONF_CURRENT_LIMIT:
|
|
d = g_variant_get_double(data);
|
|
ret = sr_scpi_cmd(sdi, devc->device->commands,
|
|
channel_group_cmd, channel_group_name,
|
|
SCPI_CMD_SET_CURRENT_LIMIT, d);
|
|
break;
|
|
case SR_CONF_OVER_VOLTAGE_PROTECTION_ENABLED:
|
|
if (g_variant_get_boolean(data))
|
|
ret = sr_scpi_cmd(sdi, devc->device->commands,
|
|
channel_group_cmd, channel_group_name,
|
|
SCPI_CMD_SET_OVER_VOLTAGE_PROTECTION_ENABLE);
|
|
else
|
|
ret = sr_scpi_cmd(sdi, devc->device->commands,
|
|
channel_group_cmd, channel_group_name,
|
|
SCPI_CMD_SET_OVER_VOLTAGE_PROTECTION_DISABLE);
|
|
break;
|
|
case SR_CONF_OVER_VOLTAGE_PROTECTION_THRESHOLD:
|
|
d = g_variant_get_double(data);
|
|
ret = sr_scpi_cmd(sdi, devc->device->commands,
|
|
channel_group_cmd, channel_group_name,
|
|
SCPI_CMD_SET_OVER_VOLTAGE_PROTECTION_THRESHOLD, d);
|
|
break;
|
|
case SR_CONF_OVER_CURRENT_PROTECTION_ENABLED:
|
|
if (g_variant_get_boolean(data))
|
|
ret = sr_scpi_cmd(sdi, devc->device->commands,
|
|
channel_group_cmd, channel_group_name,
|
|
SCPI_CMD_SET_OVER_CURRENT_PROTECTION_ENABLE);
|
|
else
|
|
ret = sr_scpi_cmd(sdi, devc->device->commands,
|
|
channel_group_cmd, channel_group_name,
|
|
SCPI_CMD_SET_OVER_CURRENT_PROTECTION_DISABLE);
|
|
break;
|
|
case SR_CONF_OVER_CURRENT_PROTECTION_THRESHOLD:
|
|
d = g_variant_get_double(data);
|
|
ret = sr_scpi_cmd(sdi, devc->device->commands,
|
|
channel_group_cmd, channel_group_name,
|
|
SCPI_CMD_SET_OVER_CURRENT_PROTECTION_THRESHOLD, d);
|
|
break;
|
|
case SR_CONF_OVER_TEMPERATURE_PROTECTION:
|
|
if (g_variant_get_boolean(data))
|
|
ret = sr_scpi_cmd(sdi, devc->device->commands,
|
|
channel_group_cmd, channel_group_name,
|
|
SCPI_CMD_SET_OVER_TEMPERATURE_PROTECTION_ENABLE);
|
|
else
|
|
ret = sr_scpi_cmd(sdi, devc->device->commands,
|
|
channel_group_cmd, channel_group_name,
|
|
SCPI_CMD_SET_OVER_TEMPERATURE_PROTECTION_DISABLE);
|
|
break;
|
|
default:
|
|
ret = sr_sw_limits_config_set(&devc->limits, key, data);
|
|
}
|
|
|
|
g_free(channel_group_name);
|
|
|
|
return ret;
|
|
}
|
|
|
|
static int config_list(uint32_t key, GVariant **data,
|
|
const struct sr_dev_inst *sdi, const struct sr_channel_group *cg)
|
|
{
|
|
struct dev_context *devc;
|
|
struct sr_channel *ch;
|
|
const struct channel_spec *ch_spec;
|
|
int i;
|
|
const char *s[16];
|
|
|
|
devc = (sdi) ? sdi->priv : NULL;
|
|
|
|
if (!cg) {
|
|
switch (key) {
|
|
case SR_CONF_SCAN_OPTIONS:
|
|
case SR_CONF_DEVICE_OPTIONS:
|
|
return std_opts_config_list(key, data, sdi, cg,
|
|
ARRAY_AND_SIZE(scanopts),
|
|
ARRAY_AND_SIZE(drvopts),
|
|
(devc && devc->device) ? devc->device->devopts : NULL,
|
|
(devc && devc->device) ? devc->device->num_devopts : 0);
|
|
break;
|
|
case SR_CONF_CHANNEL_CONFIG:
|
|
if (!devc || !devc->device)
|
|
return SR_ERR_ARG;
|
|
/* Not used. */
|
|
i = 0;
|
|
if (devc->device->features & PPS_INDEPENDENT)
|
|
s[i++] = "Independent";
|
|
if (devc->device->features & PPS_SERIES)
|
|
s[i++] = "Series";
|
|
if (devc->device->features & PPS_PARALLEL)
|
|
s[i++] = "Parallel";
|
|
if (i == 0) {
|
|
/*
|
|
* Shouldn't happen: independent-only devices
|
|
* shouldn't advertise this option at all.
|
|
*/
|
|
return SR_ERR_NA;
|
|
}
|
|
*data = g_variant_new_strv(s, i);
|
|
break;
|
|
default:
|
|
return SR_ERR_NA;
|
|
}
|
|
} else {
|
|
/*
|
|
* Per-channel-group options depending on a channel are actually
|
|
* done with the first channel. Channel groups in PPS can have
|
|
* more than one channel, but they will typically be of equal
|
|
* specification for use in series or parallel mode.
|
|
*/
|
|
ch = cg->channels->data;
|
|
if (!devc || !devc->device)
|
|
return SR_ERR_ARG;
|
|
ch_spec = &(devc->device->channels[ch->index]);
|
|
|
|
switch (key) {
|
|
case SR_CONF_DEVICE_OPTIONS:
|
|
*data = std_gvar_array_u32(devc->device->devopts_cg, devc->device->num_devopts_cg);
|
|
break;
|
|
case SR_CONF_VOLTAGE_TARGET:
|
|
*data = std_gvar_min_max_step_array(ch_spec->voltage);
|
|
break;
|
|
case SR_CONF_OUTPUT_FREQUENCY_TARGET:
|
|
*data = std_gvar_min_max_step_array(ch_spec->frequency);
|
|
break;
|
|
case SR_CONF_CURRENT_LIMIT:
|
|
*data = std_gvar_min_max_step_array(ch_spec->current);
|
|
break;
|
|
case SR_CONF_OVER_VOLTAGE_PROTECTION_THRESHOLD:
|
|
*data = std_gvar_min_max_step_array(ch_spec->ovp);
|
|
break;
|
|
case SR_CONF_OVER_CURRENT_PROTECTION_THRESHOLD:
|
|
*data = std_gvar_min_max_step_array(ch_spec->ocp);
|
|
break;
|
|
default:
|
|
return SR_ERR_NA;
|
|
}
|
|
}
|
|
|
|
return SR_OK;
|
|
}
|
|
|
|
static int dev_acquisition_start(const struct sr_dev_inst *sdi)
|
|
{
|
|
struct dev_context *devc;
|
|
struct sr_scpi_dev_inst *scpi;
|
|
int ret;
|
|
|
|
devc = sdi->priv;
|
|
scpi = sdi->conn;
|
|
|
|
/* Prime the pipe with the first channel. */
|
|
devc->cur_acquisition_channel = sr_next_enabled_channel(sdi, NULL);
|
|
|
|
/* Device specific initialization before acquisition starts. */
|
|
if (devc->device->init_acquisition)
|
|
devc->device->init_acquisition(sdi);
|
|
|
|
if ((ret = sr_scpi_source_add(sdi->session, scpi, G_IO_IN, 10,
|
|
scpi_pps_receive_data, (void *)sdi)) != SR_OK)
|
|
return ret;
|
|
std_session_send_df_header(sdi);
|
|
sr_sw_limits_acquisition_start(&devc->limits);
|
|
|
|
return SR_OK;
|
|
}
|
|
|
|
static int dev_acquisition_stop(struct sr_dev_inst *sdi)
|
|
{
|
|
struct sr_scpi_dev_inst *scpi;
|
|
|
|
scpi = sdi->conn;
|
|
|
|
sr_scpi_source_remove(sdi->session, scpi);
|
|
|
|
std_session_send_df_end(sdi);
|
|
|
|
return SR_OK;
|
|
}
|
|
|
|
static struct sr_dev_driver scpi_pps_driver_info = {
|
|
.name = "scpi-pps",
|
|
.longname = "SCPI PPS",
|
|
.api_version = 1,
|
|
.init = std_init,
|
|
.cleanup = std_cleanup,
|
|
.scan = scan_scpi_pps,
|
|
.dev_list = std_dev_list,
|
|
.dev_clear = dev_clear,
|
|
.config_get = config_get,
|
|
.config_set = config_set,
|
|
.config_list = config_list,
|
|
.dev_open = dev_open,
|
|
.dev_close = dev_close,
|
|
.dev_acquisition_start = dev_acquisition_start,
|
|
.dev_acquisition_stop = dev_acquisition_stop,
|
|
.context = NULL,
|
|
};
|
|
|
|
static struct sr_dev_driver hp_ib_pps_driver_info = {
|
|
.name = "hpib-pps",
|
|
.longname = "HP-IB PPS",
|
|
.api_version = 1,
|
|
.init = std_init,
|
|
.cleanup = std_cleanup,
|
|
.scan = scan_hpib_pps,
|
|
.dev_list = std_dev_list,
|
|
.dev_clear = dev_clear,
|
|
.config_get = config_get,
|
|
.config_set = config_set,
|
|
.config_list = config_list,
|
|
.dev_open = dev_open,
|
|
.dev_close = dev_close,
|
|
.dev_acquisition_start = dev_acquisition_start,
|
|
.dev_acquisition_stop = dev_acquisition_stop,
|
|
.context = NULL,
|
|
};
|
|
SR_REGISTER_DEV_DRIVER(scpi_pps_driver_info);
|
|
SR_REGISTER_DEV_DRIVER(hp_ib_pps_driver_info);
|