408 lines
11 KiB
C
408 lines
11 KiB
C
/*
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* This file is part of the sigrok project.
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*
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* Copyright (C) 2010 Bert Vermeulen <bert@biot.com>
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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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#ifndef SIGROK_SIGROK_H
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#define SIGROK_SIGROK_H
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#include <stdio.h>
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#include <sys/time.h>
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#include <stdint.h>
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#include <inttypes.h>
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#include <glib.h>
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#include <libusb.h>
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/*
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* Status/error codes returned by libsigrok functions.
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*
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* All possible return codes of libsigrok functions must be listed here.
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* Functions should never return hardcoded numbers as status, but rather
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* use these #defines instead. All error codes are negative numbers.
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*
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* The error codes are globally unique in libsigrok, i.e. if one of the
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* libsigrok functions returns a "malloc error" it must be exactly the same
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* return value as used by all other functions to indicate "malloc error".
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* There must be no functions which indicate two different errors via the
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* same return code.
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*
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* Also, for compatibility reasons, no defined return codes are ever removed
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* or reused for different #defines later. You can only add new #defines and
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* return codes, but never remove or redefine existing ones.
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*/
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#define SIGROK_OK 0 /* No error */
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#define SIGROK_ERR -1 /* Generic/unspecified error */
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#define SIGROK_ERR_MALLOC -2 /* Malloc/calloc/realloc error */
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#define SIGROK_ERR_SAMPLERATE -3 /* Incorrect samplerate */
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/* Handy little macros */
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#define KHZ(n) (n * 1000)
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#define MHZ(n) (n * 1000000)
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#define GHZ(n) (n * 1000000000)
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/* Data types, used by hardware plugins for set_configuration() */
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enum {
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T_UINT64,
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T_CHAR,
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};
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enum {
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PROTO_RAW,
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};
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/* (Unused) protocol decoder stack entry */
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struct protocol {
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char *name;
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int id;
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int stackindex;
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};
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/*
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* datafeed
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*/
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/* datafeed_packet.type values */
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enum {
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DF_HEADER,
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DF_END,
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DF_TRIGGER,
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DF_LOGIC8,
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DF_LOGIC16,
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DF_LOGIC24,
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DF_LOGIC32,
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DF_LOGIC48,
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DF_LOGIC64,
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};
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struct datafeed_packet {
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uint16_t type;
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uint16_t length;
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void *payload;
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};
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struct datafeed_header {
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int feed_version;
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struct timeval starttime;
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uint64_t samplerate;
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int protocol_id;
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int num_probes;
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};
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/*
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* output
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*/
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struct output {
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struct output_format *format;
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struct device *device;
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char *param;
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void *internal;
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};
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struct output_format {
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char *extension;
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char *description;
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int (*init) (struct output *o);
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int (*data) (struct output *o, char *data_in, uint64_t length_in,
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char **data_out, uint64_t *length_out);
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int (*event) (struct output *o, int event_type, char **data_out,
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uint64_t *length_out);
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};
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struct output_format **output_list(void);
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int filter_probes(int in_unitsize, int out_unitsize, int *probelist,
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char *data_in, uint64_t length_in, char **data_out,
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uint64_t *length_out);
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char *sigrok_samplerate_string(uint64_t samplerate);
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/*--- analyzer.c ------------------------------------------------------------*/
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struct analyzer {
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char *name;
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char *filename;
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/*
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* TODO: Parameters? If so, configured plugins need another struct.
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* TODO: Input and output format?
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*/
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};
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/*--- backend.c -------------------------------------------------------------*/
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int sigrok_init(void);
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void sigrok_cleanup(void);
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/*--- datastore.c -----------------------------------------------------------*/
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/* Size of a chunk in units */
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#define DATASTORE_CHUNKSIZE 512000
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struct datastore {
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/* Size in bytes of the number of units stored in this datastore */
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int ds_unitsize;
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unsigned int num_units;
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GSList *chunklist;
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};
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struct datastore *datastore_new(int unitsize);
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void datastore_destroy(struct datastore *ds);
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void datastore_put(struct datastore *ds, void *data, unsigned int length,
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int in_unitsize, int *probelist);
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/*--- debug.c ---------------------------------------------------------------*/
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void hexdump(unsigned char *address, int length);
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/*--- device.c --------------------------------------------------------------*/
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/*
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* This represents a generic device connected to the system.
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* For device-specific information, ask the plugin. The plugin_index refers
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* to the device index within that plugin; it may be handling more than one
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* device. All relevant plugin calls take a device_index parameter for this.
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*/
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struct device {
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/* Which plugin handles this device */
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struct device_plugin *plugin;
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/* A plugin may handle multiple devices of the same type */
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int plugin_index;
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/* List of struct probe* */
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GSList *probes;
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/* Data acquired by this device, if any */
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struct datastore *datastore;
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};
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struct probe {
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int index;
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gboolean enabled;
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char *name;
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char *trigger;
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};
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extern GSList *devices;
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void device_scan(void);
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void device_close_all(void);
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GSList *device_list(void);
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struct device *device_new(struct device_plugin *plugin, int plugin_index);
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void device_clear(struct device *device);
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void device_destroy(struct device *dev);
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void device_probe_clear(struct device *device, int probenum);
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void device_probe_add(struct device *device, char *name);
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struct probe *probe_find(struct device *device, int probenum);
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void device_probe_name(struct device *device, int probenum, char *name);
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void device_trigger_clear(struct device *device);
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void device_trigger_set(struct device *device, int probenum, char *trigger);
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/*--- hwplugin.c ------------------------------------------------------------*/
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/* Hardware plugin capabilities */
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enum {
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HWCAP_DUMMY, // used to terminate lists
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HWCAP_LOGIC_ANALYZER,
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HWCAP_SAMPLERATE, // change samplerate
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HWCAP_PROBECONFIG, // configure probe mask
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HWCAP_CAPTURE_RATIO, // set pre-trigger / post-trigger ratio
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HWCAP_LIMIT_MSEC, // set a time limit for sample acquisition
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HWCAP_LIMIT_SAMPLES, // set a limit on number of samples
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};
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struct hwcap_option {
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int capability;
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int type;
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char *description;
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char *shortname;
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};
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struct sigrok_device_instance {
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int index;
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int status;
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int instance_type;
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char *vendor;
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char *model;
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char *version;
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union {
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struct usb_device_instance *usb;
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struct serial_device_instance *serial;
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};
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};
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/* sigrok_device_instance types */
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enum {
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USB_INSTANCE,
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SERIAL_INSTANCE,
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};
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struct usb_device_instance {
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uint8_t bus;
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uint8_t address;
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struct libusb_device_handle *devhdl;
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};
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struct serial_device_instance {
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char *port;
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int fd;
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};
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/* Device instance status */
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enum {
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ST_NOT_FOUND,
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/* Found, but still booting */
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ST_INITIALIZING,
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/* Live, but not in use */
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ST_INACTIVE,
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/* Actively in use in a session */
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ST_ACTIVE,
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};
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/*
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* TODO: This sucks, you just kinda have to "know" the returned type.
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* TODO: Need a DI to return the number of trigger stages supported.
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*/
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/* Device info IDs */
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enum {
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/* struct sigrok_device_instance for this specific device */
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DI_INSTANCE,
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/* The number of probes connected to this device */
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DI_NUM_PROBES,
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/* Samplerates supported by this device, (struct samplerates) */
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DI_SAMPLERATES,
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/* Types of trigger supported, out of "01crf" (char *) */
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DI_TRIGGER_TYPES,
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/* The currently set samplerate in Hz (uint64_t) */
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DI_CUR_SAMPLERATE,
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};
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/* a device supports either a range of samplerates with steps of a given
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* granularity, or is limited to a set of defined samplerates. use either
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* step or list, but not both.
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*/
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struct samplerates {
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uint64_t low;
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uint64_t high;
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uint64_t step;
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uint64_t *list;
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};
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struct device_plugin {
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/* plugin-specific */
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char *name;
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int api_version;
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int (*init) (char *deviceinfo);
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void (*cleanup) (void);
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/* device-specific */
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int (*open) (int device_index);
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void (*close) (int device_index);
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void *(*get_device_info) (int device_index, int device_info_id);
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int (*get_status) (int device_index);
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int *(*get_capabilities) (void);
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int (*set_configuration) (int device_index, int capability, void *value);
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int (*start_acquisition) (int device_index, gpointer session_device_id);
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void (*stop_acquisition) (int device_index, gpointer session_device_id);
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};
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struct gsource_fd {
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GSource source;
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GPollFD gpfd;
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/* Not really using this */
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GSource *timeout_source;
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};
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typedef int (*receive_data_callback) (int fd, int revents, void *user_data);
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int load_hwplugins(void);
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GSList *list_hwplugins(void);
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/* Generic device instances */
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struct sigrok_device_instance *sigrok_device_instance_new(int index,
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int status, char *vendor, char *model, char *version);
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struct sigrok_device_instance *get_sigrok_device_instance(GSList *device_instances, int device_index);
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void sigrok_device_instance_free(struct sigrok_device_instance *sdi);
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/* USB-specific instances */
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struct usb_device_instance *usb_device_instance_new(uint8_t bus,
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uint8_t address, struct libusb_device_handle *hdl);
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void usb_device_instance_free(struct usb_device_instance *usb);
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/* Serial-specific instances */
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struct serial_device_instance *serial_device_instance_new(char *port, int fd);
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void serial_device_instance_free(struct serial_device_instance *serial);
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int find_hwcap(int *capabilities, int hwcap);
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struct hwcap_option *find_hwcap_option(int hwcap);
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void source_remove(int fd);
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void source_add(int fd, int events, int timeout, receive_data_callback rcv_cb, void *user_data);
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/*--- session.c -------------------------------------------------------------*/
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typedef void (*source_callback_remove) (int fd);
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typedef void (*source_callback_add) (int fd, int events, int timeout,
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receive_data_callback callback, void *user_data);
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typedef void (*datafeed_callback) (struct device *device,
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struct datafeed_packet *packet);
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struct session {
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/* List of struct device* */
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GSList *devices;
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/* List of struct analyzer* */
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GSList *analyzers;
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/* datafeed callbacks */
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GSList *datafeed_callbacks;
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GTimeVal starttime;
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};
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/* Session setup */
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struct session *session_load(char *filename);
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struct session *session_new(void);
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void session_destroy(void);
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void session_device_clear(void);
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int session_device_add(struct device *device);
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/* Protocol analyzers setup */
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void session_pa_clear(void);
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void session_pa_add(struct analyzer *pa);
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/* Datafeed setup */
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void session_datafeed_callback_clear(void);
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void session_datafeed_callback_add(datafeed_callback callback);
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/* Session control */
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int session_start(void);
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void session_stop(void);
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void session_bus(struct device *device, struct datafeed_packet *packet);
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void make_metadata(char *filename);
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int session_save(char *filename);
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/*--- hwcommon.c ------------------------------------------------------------*/
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int ezusb_reset(struct libusb_device_handle *hdl, int set_clear);
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int ezusb_install_firmware(libusb_device_handle *hdl, char *filename);
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int ezusb_upload_firmware(libusb_device *dev, int configuration,
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const char *filename);
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GSList *list_serial_ports(void);
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int serial_open(const char *pathname, int flags);
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int serial_close(int fd);
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void *serial_backup_params(int fd);
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void serial_restore_params(int fd, void *backup);
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int serial_set_params(int fd, int speed, int bits, int parity, int stopbits, int flowcontrol);
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#endif
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