539 lines
14 KiB
C
539 lines
14 KiB
C
/*
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* This file is part of the sigrok project.
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*
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* Copyright (C) 2011-2012 Uwe Hermann <uwe@hermann-uwe.de>
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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 2 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, write to the Free Software
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* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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#include <ftdi.h>
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#include <glib.h>
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#include <string.h>
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#include "sigrok.h"
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#include "sigrok-internal.h"
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#include "driver.h"
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static GSList *dev_insts = NULL;
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/* Function prototypes. */
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static int hw_dev_acquisition_stop(int dev_index, void *cb_data);
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static int hw_init(const char *devinfo)
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{
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int ret;
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struct sr_dev_inst *sdi;
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struct context *ctx;
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/* Avoid compiler errors. */
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(void)devinfo;
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/* Allocate memory for our private driver context. */
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if (!(ctx = g_try_malloc(sizeof(struct context)))) {
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sr_err("la8: %s: struct context malloc failed", __func__);
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goto err_free_nothing;
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}
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/* Set some sane defaults. */
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ctx->ftdic = NULL;
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ctx->cur_samplerate = SR_MHZ(100); /* 100MHz == max. samplerate */
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ctx->limit_msec = 0;
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ctx->limit_samples = 0;
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ctx->session_dev_id = NULL;
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memset(ctx->mangled_buf, 0, BS);
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ctx->final_buf = NULL;
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ctx->trigger_pattern = 0x00; /* Value irrelevant, see trigger_mask. */
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ctx->trigger_mask = 0x00; /* All probes are "don't care". */
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ctx->trigger_timeout = 10; /* Default to 10s trigger timeout. */
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ctx->trigger_found = 0;
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ctx->done = 0;
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ctx->block_counter = 0;
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ctx->divcount = 0; /* 10ns sample period == 100MHz samplerate */
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/* Allocate memory where we'll store the de-mangled data. */
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if (!(ctx->final_buf = g_try_malloc(SDRAM_SIZE))) {
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sr_err("la8: %s: final_buf malloc failed", __func__);
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goto err_free_ctx;
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}
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/* Allocate memory for the FTDI context (ftdic) and initialize it. */
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if (!(ctx->ftdic = ftdi_new())) {
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sr_err("la8: %s: ftdi_new failed", __func__);
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goto err_free_final_buf;
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}
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/* Check for the device and temporarily open it. */
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if ((ret = ftdi_usb_open_desc(ctx->ftdic, USB_VENDOR_ID,
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USB_PRODUCT_ID, USB_DESCRIPTION, NULL)) < 0) {
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(void) la8_close_usb_reset_sequencer(ctx); /* Ignore errors. */
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goto err_free_ftdic;
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}
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sr_dbg("la8: Found LA8 device (%04x:%04x).", USB_VENDOR_ID,
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USB_PRODUCT_ID);
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/* Register the device with libsigrok. */
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sdi = sr_dev_inst_new(0, SR_ST_INITIALIZING,
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USB_VENDOR_NAME, USB_MODEL_NAME, USB_MODEL_VERSION);
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if (!sdi) {
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sr_err("la8: %s: sr_dev_inst_new failed", __func__);
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goto err_close_ftdic;
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}
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sdi->priv = ctx;
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dev_insts = g_slist_append(dev_insts, sdi);
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sr_spew("la8: Device init successful.");
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/* Close device. We'll reopen it again when we need it. */
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(void) la8_close(ctx); /* Log, but ignore errors. */
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return 1;
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err_close_ftdic:
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(void) la8_close(ctx); /* Log, but ignore errors. */
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err_free_ftdic:
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free(ctx->ftdic); /* NOT g_free()! */
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err_free_final_buf:
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g_free(ctx->final_buf);
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err_free_ctx:
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g_free(ctx);
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err_free_nothing:
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return 0;
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}
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static int hw_dev_open(int dev_index)
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{
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int ret;
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struct sr_dev_inst *sdi;
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struct context *ctx;
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if (!(sdi = sr_dev_inst_get(dev_insts, dev_index))) {
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sr_err("la8: %s: sdi was NULL", __func__);
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return SR_ERR_BUG;
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}
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if (!(ctx = sdi->priv)) {
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sr_err("la8: %s: sdi->priv was NULL", __func__);
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return SR_ERR_BUG;
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}
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sr_dbg("la8: Opening LA8 device (%04x:%04x).", USB_VENDOR_ID,
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USB_PRODUCT_ID);
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/* Open the device. */
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if ((ret = ftdi_usb_open_desc(ctx->ftdic, USB_VENDOR_ID,
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USB_PRODUCT_ID, USB_DESCRIPTION, NULL)) < 0) {
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sr_err("la8: %s: ftdi_usb_open_desc: (%d) %s",
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__func__, ret, ftdi_get_error_string(ctx->ftdic));
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(void) la8_close_usb_reset_sequencer(ctx); /* Ignore errors. */
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return SR_ERR;
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}
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sr_dbg("la8: Device opened successfully.");
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/* Purge RX/TX buffers in the FTDI chip. */
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if ((ret = ftdi_usb_purge_buffers(ctx->ftdic)) < 0) {
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sr_err("la8: %s: ftdi_usb_purge_buffers: (%d) %s",
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__func__, ret, ftdi_get_error_string(ctx->ftdic));
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(void) la8_close_usb_reset_sequencer(ctx); /* Ignore errors. */
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goto err_dev_open_close_ftdic;
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}
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sr_dbg("la8: FTDI buffers purged successfully.");
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/* Enable flow control in the FTDI chip. */
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if ((ret = ftdi_setflowctrl(ctx->ftdic, SIO_RTS_CTS_HS)) < 0) {
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sr_err("la8: %s: ftdi_setflowcontrol: (%d) %s",
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__func__, ret, ftdi_get_error_string(ctx->ftdic));
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(void) la8_close_usb_reset_sequencer(ctx); /* Ignore errors. */
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goto err_dev_open_close_ftdic;
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}
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sr_dbg("la8: FTDI flow control enabled successfully.");
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/* Wait 100ms. */
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g_usleep(100 * 1000);
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sdi->status = SR_ST_ACTIVE;
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return SR_OK;
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err_dev_open_close_ftdic:
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(void) la8_close(ctx); /* Log, but ignore errors. */
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return SR_ERR;
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}
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static int hw_dev_close(int dev_index)
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{
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struct sr_dev_inst *sdi;
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struct context *ctx;
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if (!(sdi = sr_dev_inst_get(dev_insts, dev_index))) {
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sr_err("la8: %s: sdi was NULL", __func__);
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return SR_ERR_BUG;
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}
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if (!(ctx = sdi->priv)) {
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sr_err("la8: %s: sdi->priv was NULL", __func__);
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return SR_ERR_BUG;
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}
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sr_dbg("la8: Closing device.");
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if (sdi->status == SR_ST_ACTIVE) {
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sr_dbg("la8: Status ACTIVE, closing device.");
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/* TODO: Really ignore errors here, or return SR_ERR? */
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(void) la8_close_usb_reset_sequencer(ctx); /* Ignore errors. */
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} else {
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sr_spew("la8: Status not ACTIVE, nothing to do.");
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}
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sdi->status = SR_ST_INACTIVE;
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sr_dbg("la8: Freeing sample buffer.");
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g_free(ctx->final_buf);
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return SR_OK;
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}
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static int hw_cleanup(void)
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{
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GSList *l;
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struct sr_dev_inst *sdi;
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int ret = SR_OK;
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/* Properly close all devices. */
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for (l = dev_insts; l; l = l->next) {
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if (!(sdi = l->data)) {
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/* Log error, but continue cleaning up the rest. */
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sr_err("la8: %s: sdi was NULL, continuing", __func__);
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ret = SR_ERR_BUG;
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continue;
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}
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sr_dev_inst_free(sdi); /* Returns void. */
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}
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g_slist_free(dev_insts); /* Returns void. */
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dev_insts = NULL;
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return ret;
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}
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static const void *hw_dev_info_get(int dev_index, int dev_info_id)
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{
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struct sr_dev_inst *sdi;
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struct context *ctx;
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const void *info;
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if (!(sdi = sr_dev_inst_get(dev_insts, dev_index))) {
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sr_err("la8: %s: sdi was NULL", __func__);
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return NULL;
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}
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if (!(ctx = sdi->priv)) {
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sr_err("la8: %s: sdi->priv was NULL", __func__);
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return NULL;
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}
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sr_spew("la8: %s: dev_index %d, dev_info_id %d.", __func__,
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dev_index, dev_info_id);
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switch (dev_info_id) {
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case SR_DI_INST:
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info = sdi;
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sr_spew("la8: %s: Returning sdi.", __func__);
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break;
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case SR_DI_NUM_PROBES:
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info = GINT_TO_POINTER(NUM_PROBES);
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sr_spew("la8: %s: Returning number of probes: %d.", __func__,
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NUM_PROBES);
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break;
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case SR_DI_PROBE_NAMES:
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info = probe_names;
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sr_spew("la8: %s: Returning probenames.", __func__);
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break;
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case SR_DI_SAMPLERATES:
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fill_supported_samplerates_if_needed();
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info = &samplerates;
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sr_spew("la8: %s: Returning samplerates.", __func__);
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break;
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case SR_DI_TRIGGER_TYPES:
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info = (char *)TRIGGER_TYPES;
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sr_spew("la8: %s: Returning trigger types: %s.", __func__,
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TRIGGER_TYPES);
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break;
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case SR_DI_CUR_SAMPLERATE:
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info = &ctx->cur_samplerate;
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sr_spew("la8: %s: Returning samplerate: %" PRIu64 "Hz.",
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__func__, ctx->cur_samplerate);
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break;
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default:
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/* Unknown device info ID, return NULL. */
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sr_err("la8: %s: Unknown device info ID", __func__);
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info = NULL;
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break;
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}
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return info;
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}
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static int hw_dev_status_get(int dev_index)
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{
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struct sr_dev_inst *sdi;
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if (!(sdi = sr_dev_inst_get(dev_insts, dev_index))) {
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sr_err("la8: %s: sdi was NULL, device not found", __func__);
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return SR_ST_NOT_FOUND;
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}
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sr_dbg("la8: Returning status: %d.", sdi->status);
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return sdi->status;
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}
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static const int *hw_hwcap_get_all(void)
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{
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sr_spew("la8: Returning list of device capabilities.");
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return hwcaps;
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}
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static int hw_dev_config_set(int dev_index, int hwcap, const void *value)
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{
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struct sr_dev_inst *sdi;
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struct context *ctx;
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if (!(sdi = sr_dev_inst_get(dev_insts, dev_index))) {
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sr_err("la8: %s: sdi was NULL", __func__);
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return SR_ERR_BUG;
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}
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if (!(ctx = sdi->priv)) {
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sr_err("la8: %s: sdi->priv was NULL", __func__);
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return SR_ERR_BUG;
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}
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sr_spew("la8: %s: dev_index %d, hwcap %d", __func__, dev_index, hwcap);
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switch (hwcap) {
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case SR_HWCAP_SAMPLERATE:
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if (set_samplerate(sdi, *(const uint64_t *)value) == SR_ERR) {
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sr_err("la8: %s: setting samplerate failed.", __func__);
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return SR_ERR;
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}
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sr_dbg("la8: SAMPLERATE = %" PRIu64, ctx->cur_samplerate);
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break;
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case SR_HWCAP_PROBECONFIG:
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if (configure_probes(ctx, (const GSList *)value) != SR_OK) {
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sr_err("la8: %s: probe config failed.", __func__);
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return SR_ERR;
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}
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break;
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case SR_HWCAP_LIMIT_MSEC:
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if (*(const uint64_t *)value == 0) {
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sr_err("la8: %s: LIMIT_MSEC can't be 0.", __func__);
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return SR_ERR;
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}
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ctx->limit_msec = *(const uint64_t *)value;
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sr_dbg("la8: LIMIT_MSEC = %" PRIu64, ctx->limit_msec);
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break;
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case SR_HWCAP_LIMIT_SAMPLES:
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if (*(const uint64_t *)value < MIN_NUM_SAMPLES) {
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sr_err("la8: %s: LIMIT_SAMPLES too small.", __func__);
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return SR_ERR;
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}
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ctx->limit_samples = *(const uint64_t *)value;
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sr_dbg("la8: LIMIT_SAMPLES = %" PRIu64, ctx->limit_samples);
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break;
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default:
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/* Unknown capability, return SR_ERR. */
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sr_err("la8: %s: Unknown capability.", __func__);
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return SR_ERR;
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break;
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}
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return SR_OK;
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}
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static int receive_data(int fd, int revents, void *cb_data)
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{
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int i, ret;
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struct sr_dev_inst *sdi;
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struct context *ctx;
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/* Avoid compiler errors. */
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(void)fd;
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(void)revents;
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if (!(sdi = cb_data)) {
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sr_err("la8: %s: cb_data was NULL", __func__);
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return FALSE;
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}
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if (!(ctx = sdi->priv)) {
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sr_err("la8: %s: sdi->priv was NULL", __func__);
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return FALSE;
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}
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if (!ctx->ftdic) {
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sr_err("la8: %s: ctx->ftdic was NULL", __func__);
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return FALSE;
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}
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/* Get one block of data. */
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if ((ret = la8_read_block(ctx)) < 0) {
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sr_err("la8: %s: la8_read_block error: %d", __func__, ret);
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hw_dev_acquisition_stop(sdi->index, sdi);
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return FALSE;
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}
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/* We need to get exactly NUM_BLOCKS blocks (i.e. 8MB) of data. */
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if (ctx->block_counter != (NUM_BLOCKS - 1)) {
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ctx->block_counter++;
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return TRUE;
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}
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sr_dbg("la8: Sampling finished, sending data to session bus now.");
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/* All data was received and demangled, send it to the session bus. */
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for (i = 0; i < NUM_BLOCKS; i++)
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send_block_to_session_bus(ctx, i);
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hw_dev_acquisition_stop(sdi->index, sdi);
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// return FALSE; /* FIXME? */
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return TRUE;
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}
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static int hw_dev_acquisition_start(int dev_index, void *cb_data)
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{
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struct sr_dev_inst *sdi;
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struct context *ctx;
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struct sr_datafeed_packet packet;
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struct sr_datafeed_header header;
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struct sr_datafeed_meta_logic meta;
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uint8_t buf[4];
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int bytes_written;
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if (!(sdi = sr_dev_inst_get(dev_insts, dev_index))) {
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sr_err("la8: %s: sdi was NULL", __func__);
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return SR_ERR_BUG;
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}
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if (!(ctx = sdi->priv)) {
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sr_err("la8: %s: sdi->priv was NULL", __func__);
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return SR_ERR_BUG;
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}
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if (!ctx->ftdic) {
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sr_err("la8: %s: ctx->ftdic was NULL", __func__);
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return SR_ERR_BUG;
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}
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ctx->divcount = samplerate_to_divcount(ctx->cur_samplerate);
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if (ctx->divcount == 0xff) {
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sr_err("la8: %s: invalid divcount/samplerate", __func__);
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return SR_ERR;
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}
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sr_dbg("la8: Starting acquisition.");
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/* Fill acquisition parameters into buf[]. */
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buf[0] = ctx->divcount;
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buf[1] = 0xff; /* This byte must always be 0xff. */
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buf[2] = ctx->trigger_pattern;
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buf[3] = ctx->trigger_mask;
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/* Start acquisition. */
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bytes_written = la8_write(ctx, buf, 4);
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if (bytes_written < 0) {
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sr_err("la8: Acquisition failed to start.");
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return SR_ERR;
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} else if (bytes_written != 4) {
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sr_err("la8: Acquisition failed to start.");
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return SR_ERR; /* TODO: Other error and return code? */
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}
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sr_dbg("la8: Acquisition started successfully.");
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ctx->session_dev_id = cb_data;
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/* Send header packet to the session bus. */
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sr_dbg("la8: Sending SR_DF_HEADER.");
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packet.type = SR_DF_HEADER;
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packet.payload = &header;
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header.feed_version = 1;
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gettimeofday(&header.starttime, NULL);
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sr_session_send(ctx->session_dev_id, &packet);
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/* Send metadata about the SR_DF_LOGIC packets to come. */
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packet.type = SR_DF_META_LOGIC;
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packet.payload = &meta;
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meta.samplerate = ctx->cur_samplerate;
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meta.num_probes = NUM_PROBES;
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sr_session_send(ctx->session_dev_id, &packet);
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/* Time when we should be done (for detecting trigger timeouts). */
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ctx->done = (ctx->divcount + 1) * 0.08388608 + time(NULL)
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+ ctx->trigger_timeout;
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ctx->block_counter = 0;
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ctx->trigger_found = 0;
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|
|
|
/* Hook up a dummy handler to receive data from the LA8. */
|
|
sr_source_add(-1, G_IO_IN, 0, receive_data, sdi);
|
|
|
|
return SR_OK;
|
|
}
|
|
|
|
static int hw_dev_acquisition_stop(int dev_index, void *cb_data)
|
|
{
|
|
struct sr_dev_inst *sdi;
|
|
struct context *ctx;
|
|
struct sr_datafeed_packet packet;
|
|
|
|
sr_dbg("la8: Stopping acquisition.");
|
|
|
|
if (!(sdi = sr_dev_inst_get(dev_insts, dev_index))) {
|
|
sr_err("la8: %s: sdi was NULL", __func__);
|
|
return SR_ERR_BUG;
|
|
}
|
|
|
|
if (!(ctx = sdi->priv)) {
|
|
sr_err("la8: %s: sdi->priv was NULL", __func__);
|
|
return SR_ERR_BUG;
|
|
}
|
|
|
|
/* Send end packet to the session bus. */
|
|
sr_dbg("la8: Sending SR_DF_END.");
|
|
packet.type = SR_DF_END;
|
|
sr_session_send(cb_data, &packet);
|
|
|
|
return SR_OK;
|
|
}
|
|
|
|
SR_PRIV struct sr_dev_driver chronovu_la8_driver_info = {
|
|
.name = "chronovu-la8",
|
|
.longname = "ChronoVu LA8",
|
|
.api_version = 1,
|
|
.init = hw_init,
|
|
.cleanup = hw_cleanup,
|
|
.dev_open = hw_dev_open,
|
|
.dev_close = hw_dev_close,
|
|
.dev_info_get = hw_dev_info_get,
|
|
.dev_status_get = hw_dev_status_get,
|
|
.hwcap_get_all = hw_hwcap_get_all,
|
|
.dev_config_set = hw_dev_config_set,
|
|
.dev_acquisition_start = hw_dev_acquisition_start,
|
|
.dev_acquisition_stop = hw_dev_acquisition_stop,
|
|
};
|