DSView/libsigrok4DSL/libsigrok.h

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/*
* This file is part of the libsigrok project.
*
* Copyright (C) 2013 Bert Vermeulen <bert@biot.com>
*
* This program is free software: you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation, either version 3 of the License, or
* (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#ifndef LIBSIGROK_SIGROK_H
#define LIBSIGROK_SIGROK_H
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#include <sys/time.h>
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#include <stdio.h>
#include <sys/time.h>
#include <stdint.h>
#include <inttypes.h>
#include <glib.h>
#ifdef __cplusplus
extern "C" {
#endif
/**
* @file
*
* The public libsigrok header file to be used by frontends.
*
* This is the only file that libsigrok users (frontends) are supposed to
* use and \#include. There are other header files which get installed with
* libsigrok, but those are not meant to be used directly by frontends.
*
* The correct way to get/use the libsigrok API functions is:
*
* @code{.c}
* #include <libsigrok/libsigrok.h>
* @endcode
*/
/*
* All possible return codes of libsigrok functions must be listed here.
* Functions should never return hardcoded numbers as status, but rather
* use these enum values. All error codes are negative numbers.
*
* The error codes are globally unique in libsigrok, i.e. if one of the
* libsigrok functions returns a "malloc error" it must be exactly the same
* return value as used by all other functions to indicate "malloc error".
* There must be no functions which indicate two different errors via the
* same return code.
*
* Also, for compatibility reasons, no defined return codes are ever removed
* or reused for different errors later. You can only add new entries and
* return codes, but never remove or redefine existing ones.
*/
/** Status/error codes returned by libsigrok functions. */
enum {
SR_OK = 0, /**< No error. */
SR_ERR = -1, /**< Generic/unspecified error. */
SR_ERR_MALLOC = -2, /**< Malloc/calloc/realloc error. */
SR_ERR_ARG = -3, /**< Function argument error. */
SR_ERR_BUG = -4, /**< Errors hinting at internal bugs. */
SR_ERR_SAMPLERATE = -5, /**< Incorrect samplerate. */
SR_ERR_NA = -6, /**< Not applicable. */
SR_ERR_DEV_CLOSED = -7, /**< Device is closed, but needs to be open. */
/*
* Note: When adding entries here, don't forget to also update the
* sr_strerror() and sr_strerror_name() functions in error.c.
*/
};
/* Handy little macros */
#define SR_HZ(n) (n)
#define SR_KHZ(n) ((n) * (uint64_t)(1000ULL))
#define SR_MHZ(n) ((n) * (uint64_t)(1000000ULL))
#define SR_GHZ(n) ((n) * (uint64_t)(1000000000ULL))
#define SR_HZ_TO_NS(n) ((uint64_t)(1000000000ULL) / (n))
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#define SR_B(n) (n)
#define SR_KB(n) ((n) * (uint64_t)(1024ULL))
#define SR_MB(n) ((n) * (uint64_t)(1048576ULL))
#define SR_GB(n) ((n) * (uint64_t)(1073741824ULL))
#define SR_mV(n) (n)
#define SR_V(n) ((n) * (uint64_t)(1000ULL))
#define SR_KV(n) ((n) * (uint64_t)(1000000ULL))
#define SR_MV(n) ((n) * (uint64_t)(1000000000ULL))
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#define SR_MAX_PROBENAME_LEN 32
#define DS_MAX_ANALOG_PROBES_NUM 4
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#define DS_MAX_DSO_PROBES_NUM 2
#define TriggerStages 16
#define TriggerProbes 16
#define TriggerCountBits 16
#define STriggerDataStage 3
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#define DS_CONF_DSO_HDIVS 10
#define DS_CONF_DSO_VDIVS 10
#define DS_MAX_TRIG_PERCENT 90
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extern char DS_RES_PATH[256];
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/** libsigrok loglevels. */
enum {
SR_LOG_NONE = 0, /**< Output no messages at all. */
SR_LOG_ERR = 1, /**< Output error messages. */
SR_LOG_WARN = 2, /**< Output warnings. */
SR_LOG_INFO = 3, /**< Output informational messages. */
SR_LOG_DBG = 4, /**< Output debug messages. */
SR_LOG_SPEW = 5, /**< Output very noisy debug messages. */
};
/*
* Use SR_API to mark public API symbols, and SR_PRIV for private symbols.
*
* Variables and functions marked 'static' are private already and don't
* need SR_PRIV. However, functions which are not static (because they need
* to be used in other libsigrok-internal files) but are also not meant to
* be part of the public libsigrok API, must use SR_PRIV.
*
* This uses the 'visibility' feature of gcc (requires gcc >= 4.0).
*
* This feature is not available on MinGW/Windows, as it is a feature of
* ELF files and MinGW/Windows uses PE files.
*
* Details: http://gcc.gnu.org/wiki/Visibility
*/
/* Marks public libsigrok API symbols. */
#ifndef _WIN32
#define SR_API __attribute__((visibility("default")))
#else
#define SR_API
#endif
/* Marks private, non-public libsigrok symbols (not part of the API). */
#ifndef _WIN32
#define SR_PRIV __attribute__((visibility("hidden")))
#else
#define SR_PRIV
#endif
/** Data types used by sr_config_info(). */
enum {
SR_T_UINT64 = 10000,
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SR_T_UINT8,
SR_T_CHAR,
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SR_T_BOOL,
SR_T_FLOAT,
SR_T_RATIONAL_PERIOD,
SR_T_RATIONAL_VOLT,
SR_T_KEYVALUE,
};
/** Value for sr_datafeed_packet.type. */
enum {
SR_DF_HEADER = 10000,
SR_DF_END,
SR_DF_META,
SR_DF_TRIGGER,
SR_DF_LOGIC,
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SR_DF_DSO,
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SR_DF_ANALOG,
SR_DF_FRAME_BEGIN,
SR_DF_FRAME_END,
SR_DF_OVERFLOW,
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};
/** Values for sr_datafeed_analog.mq. */
enum {
SR_MQ_VOLTAGE = 10000,
SR_MQ_CURRENT,
SR_MQ_RESISTANCE,
SR_MQ_CAPACITANCE,
SR_MQ_TEMPERATURE,
SR_MQ_FREQUENCY,
SR_MQ_DUTY_CYCLE,
SR_MQ_CONTINUITY,
SR_MQ_PULSE_WIDTH,
SR_MQ_CONDUCTANCE,
/** Electrical power, usually in W, or dBm. */
SR_MQ_POWER,
/** Gain (a transistor's gain, or hFE, for example). */
SR_MQ_GAIN,
/** Logarithmic representation of sound pressure relative to a
* reference value. */
SR_MQ_SOUND_PRESSURE_LEVEL,
SR_MQ_CARBON_MONOXIDE,
SR_MQ_RELATIVE_HUMIDITY,
};
/** Values for sr_datafeed_analog.unit. */
enum {
SR_UNIT_VOLT = 10000,
SR_UNIT_AMPERE,
SR_UNIT_OHM,
SR_UNIT_FARAD,
SR_UNIT_KELVIN,
SR_UNIT_CELSIUS,
SR_UNIT_FAHRENHEIT,
SR_UNIT_HERTZ,
SR_UNIT_PERCENTAGE,
SR_UNIT_BOOLEAN,
SR_UNIT_SECOND,
/** Unit of conductance, the inverse of resistance. */
SR_UNIT_SIEMENS,
/**
* An absolute measurement of power, in decibels, referenced to
* 1 milliwatt (dBu).
*/
SR_UNIT_DECIBEL_MW,
/** Voltage in decibel, referenced to 1 volt (dBV). */
SR_UNIT_DECIBEL_VOLT,
/**
* Measurements that intrinsically do not have units attached, such
* as ratios, gains, etc. Specifically, a transistor's gain (hFE) is
* a unitless quantity, for example.
*/
SR_UNIT_UNITLESS,
/** Sound pressure level relative so 20 micropascals. */
SR_UNIT_DECIBEL_SPL,
/**
* Normalized (0 to 1) concentration of a substance or compound with 0
* representing a concentration of 0%, and 1 being 100%. This is
* represented as the fraction of number of particles of the substance.
*/
SR_UNIT_CONCENTRATION,
};
/** Values for sr_datafeed_analog.flags. */
enum {
/** Voltage measurement is alternating current (AC). */
SR_MQFLAG_AC = 0x01,
/** Voltage measurement is direct current (DC). */
SR_MQFLAG_DC = 0x02,
/** This is a true RMS measurement. */
SR_MQFLAG_RMS = 0x04,
/** Value is voltage drop across a diode, or NAN. */
SR_MQFLAG_DIODE = 0x08,
/** Device is in "hold" mode (repeating the last measurement). */
SR_MQFLAG_HOLD = 0x10,
/** Device is in "max" mode, only updating upon a new max value. */
SR_MQFLAG_MAX = 0x20,
/** Device is in "min" mode, only updating upon a new min value. */
SR_MQFLAG_MIN = 0x40,
/** Device is in autoranging mode. */
SR_MQFLAG_AUTORANGE = 0x80,
/** Device is in relative mode. */
SR_MQFLAG_RELATIVE = 0x100,
/** Sound pressure level is A-weighted in the frequency domain,
* according to IEC 61672:2003. */
SR_MQFLAG_SPL_FREQ_WEIGHT_A = 0x200,
/** Sound pressure level is C-weighted in the frequency domain,
* according to IEC 61672:2003. */
SR_MQFLAG_SPL_FREQ_WEIGHT_C = 0x400,
/** Sound pressure level is Z-weighted (i.e. not at all) in the
* frequency domain, according to IEC 61672:2003. */
SR_MQFLAG_SPL_FREQ_WEIGHT_Z = 0x800,
/** Sound pressure level is not weighted in the frequency domain,
* albeit without standards-defined low and high frequency limits. */
SR_MQFLAG_SPL_FREQ_WEIGHT_FLAT = 0x1000,
/** Sound pressure level measurement is S-weighted (1s) in the
* time domain. */
SR_MQFLAG_SPL_TIME_WEIGHT_S = 0x2000,
/** Sound pressure level measurement is F-weighted (125ms) in the
* time domain. */
SR_MQFLAG_SPL_TIME_WEIGHT_F = 0x4000,
/** Sound pressure level is time-averaged (LAT), also known as
* Equivalent Continuous A-weighted Sound Level (LEQ). */
SR_MQFLAG_SPL_LAT = 0x8000,
/** Sound pressure level represented as a percentage of measurements
* that were over a preset alarm level. */
SR_MQFLAG_SPL_PCT_OVER_ALARM = 0x10000,
};
enum DSO_MEASURE_TYPE {
DSO_MS_BEGIN = 0,
DSO_MS_FREQ,
DSO_MS_PERD,
DSO_MS_VMAX,
DSO_MS_VMIN,
DSO_MS_VRMS,
DSO_MS_VMEA,
DSO_MS_VP2P,
DSO_MS_END,
};
enum {
SR_PKT_OK,
SR_PKT_SOURCE_ERROR,
SR_PKT_DATA_ERROR,
};
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struct sr_context;
struct sr_datafeed_packet {
uint16_t type;
uint16_t status;
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const void *payload;
};
struct sr_datafeed_header {
int feed_version;
struct timeval starttime;
};
struct sr_datafeed_meta {
GSList *config;
};
enum LA_DATA_FORMAT {
LA_CROSS_DATA,
LA_SPLIT_DATA,
};
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struct sr_datafeed_logic {
uint64_t length;
/** data format */
int format;
/** for LA_SPLIT_DATA, indicate the channel index */
uint16_t index;
uint16_t order;
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uint16_t unitsize;
uint16_t data_error;
uint64_t error_pattern;
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void *data;
};
struct sr_datafeed_trigger {
};
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struct sr_datafeed_dso {
/** The probes for which data is included in this packet. */
GSList *probes;
int num_samples;
/** Measured quantity (voltage, current, temperature, and so on). */
int mq;
/** Unit in which the MQ is measured. */
int unit;
/** Bitmap with extra information about the MQ. */
uint64_t mqflags;
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/** samplerate different from last packet */
gboolean samplerate_tog;
/** trig flag */
gboolean trig_flag;
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/** The analog value(s). The data is interleaved according to
* the probes list. */
void *data;
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};
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struct sr_datafeed_analog {
/** The probes for which data is included in this packet. */
GSList *probes;
int num_samples;
/** How many bits for each sample */
uint8_t unit_bits;
/** Interval between two valid samples */
uint16_t unit_pitch;
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/** Measured quantity (voltage, current, temperature, and so on). */
int mq;
/** Unit in which the MQ is measured. */
int unit;
/** Bitmap with extra information about the MQ. */
uint64_t mqflags;
/** The analog value(s). The data is interleaved according to
* the probes list. */
void *data;
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};
/** Input (file) format struct. */
struct sr_input {
/**
* A pointer to this input format's 'struct sr_input_format'.
* The frontend can use this to call the module's callbacks.
*/
struct sr_input_format *format;
GHashTable *param;
struct sr_dev_inst *sdi;
void *internal;
};
struct sr_input_format {
/** The unique ID for this input format. Must not be NULL. */
char *id;
/**
* A short description of the input format, which can (for example)
* be displayed to the user by frontends. Must not be NULL.
*/
char *description;
/**
* Check if this input module can load and parse the specified file.
*
* @param filename The name (and path) of the file to check.
*
* @return TRUE if this module knows the format, FALSE if it doesn't.
*/
int (*format_match) (const char *filename);
/**
* Initialize the input module.
*
* @param in A pointer to a valid 'struct sr_input' that the caller
* has to allocate and provide to this function. It is also
* the responsibility of the caller to free it later.
* @param filename The name (and path) of the file to use.
*
* @return SR_OK upon success, a negative error code upon failure.
*/
int (*init) (struct sr_input *in, const char *filename);
/**
* Load a file, parsing the input according to the file's format.
*
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* This function will send datafeed packets to the session bus, so
* the calling frontend must have registered its session callbacks
* beforehand.
*
* The packet types sent across the session bus by this function must
* include at least SR_DF_HEADER, SR_DF_END, and an appropriate data
* type such as SR_DF_LOGIC. It may also send a SR_DF_TRIGGER packet
* if appropriate.
*
* @param in A pointer to a valid 'struct sr_input' that the caller
* has to allocate and provide to this function. It is also
* the responsibility of the caller to free it later.
* @param filename The name (and path) of the file to use.
*
* @return SR_OK upon succcess, a negative error code upon failure.
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*/
int (*loadfile) (struct sr_input *in, const char *filename);
};
/** Output (file) format struct. */
struct sr_output {
/**
* A pointer to this output format's 'struct sr_output_format'.
* The frontend can use this to call the module's callbacks.
*/
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const struct sr_output_module *module;
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/**
* The device for which this output module is creating output. This
* can be used by the module to find out probe names and numbers.
*/
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const struct sr_dev_inst *sdi;
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/**
* An optional parameter which the frontend can pass in to the
* output module. How the string is interpreted is entirely up to
* the module.
*/
char *param;
/**
* A generic pointer which can be used by the module to keep internal
* state between calls into its callback functions.
*
* For example, the module might store a pointer to a chunk of output
* there, and only flush it when it reaches a certain size.
*/
void *priv;
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};
/** Generic option struct used by various subsystems. */
struct sr_option {
/* Short name suitable for commandline usage, [a-z0-9-]. */
char *id;
/* Short name suitable for GUI usage, can contain UTF-8. */
char *name;
/* Description of the option, in a sentence. */
char *desc;
/* Default value for this option. */
GVariant *def;
/* List of possible values, if this is an option with few values. */
GSList *values;
};
/** Output module driver. */
struct sr_output_module {
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/**
* A unique ID for this output module, suitable for use in command-line
* clients, [a-z0-9-]. Must not be NULL.
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*/
char *id;
/**
* A unique name for this output module, suitable for use in GUI
* clients, can contain UTF-8. Must not be NULL.
*/
const char *name;
/**
* A short description of the output module. Must not be NULL.
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*
* This can be displayed by frontends, e.g. when selecting the output
* module for saving a file.
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*/
char *desc;
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/**
* A NULL terminated array of strings containing a list of file name
* extensions typical for the input file format, or NULL if there is
* no typical extension for this file format.
*/
const char *const *exts;
/**
* Returns a NULL-terminated list of options this module can take.
* Can be NULL, if the module has no options.
*/
const struct sr_option *(*options) (void);
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/**
* This function is called once, at the beginning of an output stream.
*
* The device struct will be available in the output struct passed in,
* as well as the param field -- which may be NULL or an empty string,
* if no parameter was passed.
*
* The module can use this to initialize itself, create a struct for
* keeping state and storing it in the <code>internal</code> field.
*
* @param o Pointer to the respective 'struct sr_output'.
*
* @retval SR_OK Success
* @retval other Negative error code.
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*/
int (*init) (struct sr_output *o, GHashTable *options);
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/**
* This function is passed a copy of every packed in the data feed.
* Any output generated by the output module in response to the
* packet should be returned in a newly allocated GString
* <code>out</code>, which will be freed by the caller.
*
* Packets not of interest to the output module can just be ignored,
* and the <code>out</code> parameter set to NULL.
*
* @param o Pointer to the respective 'struct sr_output'.
* @param sdi The device instance that generated the packet.
* @param packet The complete packet.
* @param out A pointer where a GString * should be stored if
* the module generates output, or NULL if not.
*
* @retval SR_OK Success
* @retval other Negative error code.
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*/
int (*receive) (const struct sr_output *o,
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const struct sr_datafeed_packet *packet, GString **out);
/**
* This function is called after the caller is finished using
* the output module, and can be used to free any internal
* resources the module may keep.
*
* @retval SR_OK Success
* @retval other Negative error code.
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*/
int (*cleanup) (struct sr_output *o);
};
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enum {
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SR_CHANNEL_LOGIC = 10000,
SR_CHANNEL_DSO,
SR_CHANNEL_ANALOG,
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SR_CHANNEL_GROUP,
SR_CHANNEL_DECODER,
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SR_CHANNEL_FFT,
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};
enum {
LOGIC = 0,
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DSO = 1,
ANALOG = 2,
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};
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struct sr_channel {
/* The index field will go: use g_slist_length(sdi->channels) instead. */
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uint16_t index;
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int type;
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gboolean enabled;
char *name;
char *trigger;
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uint64_t vdiv;
uint16_t vfactor;
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double vpos;
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uint16_t vpos_trans;
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uint8_t coupling;
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uint8_t trig_value;
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int8_t comb_diff_top;
int8_t comb_diff_bom;
gboolean ms_show;
gboolean ms_en[DSO_MS_END - DSO_MS_BEGIN];
const char *map_unit;
double map_min;
double map_max;
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};
/** Structure for groups of channels that have common properties. */
struct sr_channel_group {
/** Name of the channel group. */
char *name;
/** List of sr_channel structs of the channels belonging to this group. */
GSList *channels;
/** Private data for driver use. */
void *priv;
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};
struct sr_config {
int key;
GVariant *data;
};
struct sr_config_info {
int key;
int datatype;
char *id;
char *name;
char *label;
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char *description;
};
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enum {
SR_STATUS_TRIG_BEGIN = 0,
SR_STATUS_TRIG_END = 4,
SR_STATUS_CH0_BEGIN = 5,
SR_STATUS_CH0_END = 14,
SR_STATUS_CH1_BEGIN = 15,
SR_STATUS_CH1_END = 24,
SR_STATUS_ZERO_BEGIN = 128,
SR_STATUS_ZERO_END = 135,
};
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struct sr_status {
uint8_t trig_hit;
uint8_t captured_cnt3;
uint8_t captured_cnt2;
uint8_t captured_cnt1;
uint8_t captured_cnt0;
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uint8_t ch0_max;
uint8_t ch0_min;
uint64_t ch0_period;
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uint32_t ch0_pcnt;
uint8_t ch1_max;
uint8_t ch1_min;
uint64_t ch1_period;
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uint32_t ch1_pcnt;
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int vlen;
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gboolean stream_mode;
uint32_t sample_divider;
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gboolean sample_divider_tog;
gboolean trig_flag;
uint16_t pkt_id;
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};
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enum {
/*--- Device classes ------------------------------------------------*/
/** The device can act as logic analyzer. */
SR_CONF_LOGIC_ANALYZER = 10000,
/** The device can act as an oscilloscope. */
SR_CONF_OSCILLOSCOPE,
/** The device can act as a multimeter. */
SR_CONF_MULTIMETER,
/** The device is a demo device. */
SR_CONF_DEMO_DEV,
/** The device can act as a sound level meter. */
SR_CONF_SOUNDLEVELMETER,
/** The device can measure temperature. */
SR_CONF_THERMOMETER,
/** The device can measure humidity. */
SR_CONF_HYGROMETER,
/*--- Driver scan options -------------------------------------------*/
/**
* Specification on how to connect to a device.
*
* In combination with SR_CONF_SERIALCOMM, this is a serial port in
* the form which makes sense to the OS (e.g., /dev/ttyS0).
* Otherwise this specifies a USB device, either in the form of
* @verbatim <bus>.<address> @endverbatim (decimal, e.g. 1.65) or
* @verbatim <vendorid>.<productid> @endverbatim
* (hexadecimal, e.g. 1d6b.0001).
*/
SR_CONF_CONN = 20000,
/**
* Serial communication specification, in the form:
*
* @verbatim <baudrate>/<databits><parity><stopbits> @endverbatim
*
* Example: 9600/8n1
*
* The string may also be followed by one or more special settings,
* in the form "/key=value". Supported keys and their values are:
*
* rts 0,1 set the port's RTS pin to low or high
* dtr 0,1 set the port's DTR pin to low or high
* flow 0 no flow control
* 1 hardware-based (RTS/CTS) flow control
* 2 software-based (XON/XOFF) flow control
*
* This is always an optional parameter, since a driver typically
* knows the speed at which the device wants to communicate.
*/
SR_CONF_SERIALCOMM,
/*--- Device configuration ------------------------------------------*/
/** The device supports setting its samplerate, in Hz. */
SR_CONF_SAMPLERATE = 30000,
/** The device supports setting a pre/post-trigger capture ratio. */
SR_CONF_CAPTURE_RATIO,
/** */
SR_CONF_DEVICE_MODE,
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SR_CONF_INSTANT,
SR_CONF_STATUS,
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/** The device supports setting a pattern (pattern generator mode). */
SR_CONF_PATTERN_MODE,
/** The device supports Run Length Encoding. */
SR_CONF_RLE,
/** Need wait to uplad captured data */
SR_CONF_WAIT_UPLOAD,
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/** The device supports setting trigger slope. */
SR_CONF_TRIGGER_SLOPE,
/** Trigger source. */
SR_CONF_TRIGGER_SOURCE,
/** Trigger channel */
SR_CONF_TRIGGER_CHANNEL,
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/** Trigger Value. */
SR_CONF_TRIGGER_VALUE,
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/** Horizontal trigger position. */
SR_CONF_HORIZ_TRIGGERPOS,
/** Trigger hold off time */
SR_CONF_TRIGGER_HOLDOFF,
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/** Trigger Margin */
SR_CONF_TRIGGER_MARGIN,
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/** Buffer size. */
SR_CONF_BUFFERSIZE,
/** Time base. */
SR_CONF_TIMEBASE,
/** Filter. */
SR_CONF_FILTER,
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/** DSO configure sync */
SR_CONF_DSO_SYNC,
/** How many bits for each sample */
SR_CONF_UNIT_BITS,
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/** Valid channel number */
SR_CONF_VLD_CH_NUM,
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/** Zero */
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SR_CONF_ZERO_SET,
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SR_CONF_ZERO_LOAD,
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SR_CONF_COMB_SET,
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SR_CONF_ZERO,
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SR_CONF_ZERO_OVER,
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SR_CONF_VOCM,
SR_CONF_CALI,
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/** status for dso channel */
SR_CONF_STATUS_PERIOD,
SR_CONF_STATUS_PCNT,
SR_CONF_STATUS_MAX,
SR_CONF_STATUS_MIN,
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/** Stream */
SR_CONF_STREAM,
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/** DSO Roll */
SR_CONF_ROLL,
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/** Test */
SR_CONF_TEST,
SR_CONF_EEPROM,
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/** Data lock */
SR_CONF_DATALOCK,
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/** Trigger types. */
SR_CONF_TRIGGER_TYPE,
/** The device supports setting its sample interval, in ms. */
SR_CONF_SAMPLE_INTERVAL,
/** Number of timebases, as related to SR_CONF_TIMEBASE. */
SR_CONF_NUM_TIMEBASE,
/** Number of vertical divisions, as related to SR_CONF_PROBE_VDIV. */
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SR_CONF_NUM_VDIV,
/** clock type (internal/external) */
SR_CONF_CLOCK_TYPE,
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/** clock edge (posedge/negedge) */
SR_CONF_CLOCK_EDGE,
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/** Device operation mode */
SR_CONF_OPERATION_MODE,
/** Device buffer options */
SR_CONF_BUFFER_OPTIONS,
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/** Device channel mode */
SR_CONF_CHANNEL_MODE,
/** Signal max height **/
SR_CONF_MAX_HEIGHT,
SR_CONF_MAX_HEIGHT_VALUE,
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/** Device sample threshold */
SR_CONF_THRESHOLD,
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SR_CONF_VTH,
/** Hardware capacity **/
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SR_CONF_MAX_DSO_SAMPLERATE,
SR_CONF_MAX_DSO_SAMPLELIMITS,
SR_CONF_HW_DEPTH,
/*--- Probe configuration -------------------------------------------*/
/** Probe options */
SR_CONF_PROBE_CONFIGS,
/** Probe options */
SR_CONF_PROBE_SESSIONS,
/** Enable */
SR_CONF_PROBE_EN,
/** Coupling */
SR_CONF_PROBE_COUPLING,
/** Volts/div */
SR_CONF_PROBE_VDIV,
/** Factor */
SR_CONF_PROBE_FACTOR,
/** Vertical position */
SR_CONF_PROBE_VPOS,
/** Mapping */
SR_CONF_PROBE_MAP_UNIT,
SR_CONF_PROBE_MAP_MIN,
SR_CONF_PROBE_MAP_MAX,
/** Vertical offset */
SR_CONF_PROBE_VOFF,
SR_CONF_PROBE_VOFF_DEFAULT,
SR_CONF_PROBE_VOFF_RANGE,
/** VGain */
SR_CONF_PROBE_VGAIN,
SR_CONF_PROBE_VGAIN_DEFAULT,
SR_CONF_PROBE_VGAIN_RANGE,
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/*--- Special stuff -------------------------------------------------*/
/** Scan options supported by the driver. */
SR_CONF_SCAN_OPTIONS = 40000,
/** Device options for a particular device. */
SR_CONF_DEVICE_OPTIONS,
SR_CONF_DEVICE_CONFIGS,
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/** Sessions */
SR_CONF_DEVICE_SESSIONS,
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/** Session filename. */
SR_CONF_SESSIONFILE,
/** The device supports specifying a capturefile to inject. */
SR_CONF_CAPTUREFILE,
/** Session file version */
SR_CONF_FILE_VERSION,
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/** The device supports setting the number of probes. */
SR_CONF_CAPTURE_NUM_PROBES,
/** The device supports setting the number of data blocks. */
SR_CONF_NUM_BLOCKS,
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/*--- Acquisition modes ---------------------------------------------*/
/**
* The device supports setting a sample time limit (how long
* the sample acquisition should run, in ms).
*/
SR_CONF_LIMIT_MSEC = 50000,
/**
* The device supports setting a sample number limit (how many
* samples should be acquired).
*/
SR_CONF_LIMIT_SAMPLES,
/**
* Absolute time record for session driver
*/
SR_CONF_TRIGGER_TIME,
/**
* Trigger position for session driver
*/
SR_CONF_TRIGGER_POS,
/**
* The actual sample count received
*/
SR_CONF_ACTUAL_SAMPLES,
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/**
* The device supports setting a frame limit (how many
* frames should be acquired).
*/
SR_CONF_LIMIT_FRAMES,
/**
* The device supports continuous sampling. Neither a time limit
* nor a sample number limit has to be supplied, it will just acquire
* samples continuously, until explicitly stopped by a certain command.
*/
SR_CONF_CONTINUOUS,
/** The device has internal storage, into which data is logged. This
* starts or stops the internal logging. */
SR_CONF_DATALOG,
};
struct sr_dev_inst {
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/** Device driver. */
struct sr_dev_driver *driver;
/** Index of device in driver. */
int index;
/** Device instance status. SR_ST_NOT_FOUND, etc. */
int status;
/** Device instance type. SR_INST_USB, etc. */
int inst_type;
/** Device mode. LA/DAQ/OSC, etc. */
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int mode;
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/** Device vendor. */
char *vendor;
/** Device model. */
char *model;
/** Device version. */
char *version;
/** List of channels. */
GSList *channels;
/** List of sr_channel_group structs */
GSList *channel_groups;
/** Device instance connection data (used?) */
void *conn;
/** Device instance private data (used?) */
void *priv;
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};
/** Types of device instances (sr_dev_inst). */
enum {
/** Device instance type for USB devices. */
SR_INST_USB = 10000,
/** Device instance type for serial port devices. */
SR_INST_SERIAL,
};
/** Device instance status. */
enum {
/** The device instance was not found. */
SR_ST_NOT_FOUND = 10000,
/** The device instance was found, but is still booting. */
SR_ST_INITIALIZING,
/** The device instance is live, but not in use. */
SR_ST_INACTIVE,
/** The device instance has an imcompatible firmware */
SR_ST_INCOMPATIBLE,
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/** The device instance is actively in use in a session. */
SR_ST_ACTIVE,
/** The device is winding down its session. */
SR_ST_STOPPING,
};
/** Device test modes. */
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enum {
/** No test mode */
SR_TEST_NONE,
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/** Internal pattern test mode */
SR_TEST_INTERNAL,
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/** External pattern test mode */
SR_TEST_EXTERNAL,
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/** SDRAM loopback test mode */
SR_TEST_LOOPBACK,
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};
/** Device buffer mode */
enum {
/** Stop immediately */
SR_BUF_STOP = 0,
/** Upload captured data */
SR_BUF_UPLOAD = 1,
};
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/** Device threshold level. */
enum {
/** 1.8/2.5/3.3 level */
SR_TH_3V3 = 0,
/** 5.0 level */
SR_TH_5V0 = 1,
};
/** Device input filter. */
enum {
/** None */
SR_FILTER_NONE = 0,
/** One clock cycle */
SR_FILTER_1T = 1,
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};
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/** Coupling. */
enum {
/** DC */
SR_DC_COUPLING = 0,
/** AC */
SR_AC_COUPLING = 1,
/** Ground */
SR_GND_COUPLING = 2,
};
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struct sr_dev_mode {
char *name;
int mode;
};
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struct sr_dev_driver {
/* Driver-specific */
char *name;
char *longname;
int api_version;
int (*init) (struct sr_context *sr_ctx);
int (*cleanup) (void);
GSList *(*scan) (GSList *options);
GSList *(*dev_list) (void);
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GSList *(*dev_mode_list) (const struct sr_dev_inst *sdi);
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int (*dev_clear) (void);
int (*config_get) (int id, GVariant **data,
const struct sr_dev_inst *sdi,
const struct sr_channel *ch,
const struct sr_channel_group *cg);
int (*config_set) (int id, GVariant *data,
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struct sr_dev_inst *sdi,
struct sr_channel *ch,
struct sr_channel_group *cg);
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int (*config_list) (int info_id, GVariant **data,
const struct sr_dev_inst *sdi,
const struct sr_channel_group *cg);
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/* Device-specific */
int (*dev_open) (struct sr_dev_inst *sdi);
int (*dev_close) (struct sr_dev_inst *sdi);
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int (*dev_status_get) (const struct sr_dev_inst *sdi,
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struct sr_status *status,
gboolean prg, int begin, int end);
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int (*dev_acquisition_start) (struct sr_dev_inst *sdi,
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void *cb_data);
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int (*dev_acquisition_stop) (const struct sr_dev_inst *sdi,
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void *cb_data);
/* Dynamic */
void *priv;
};
struct sr_session {
/** List of struct sr_dev pointers. */
GSList *devs;
/** List of struct datafeed_callback pointers. */
GSList *datafeed_callbacks;
GTimeVal starttime;
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gboolean running;
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unsigned int num_sources;
/*
* Both "sources" and "pollfds" are of the same size and contain pairs
* of descriptor and callback function. We can not embed the GPollFD
* into the source struct since we want to be able to pass the array
* of all poll descriptors to g_poll().
*/
struct source *sources;
GPollFD *pollfds;
int source_timeout;
/*
* These are our synchronization primitives for stopping the session in
* an async fashion. We need to make sure the session is stopped from
* within the session thread itself.
*/
GMutex stop_mutex;
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gboolean abort_session;
};
enum {
SIMPLE_TRIGGER = 0,
ADV_TRIGGER,
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SERIAL_TRIGGER,
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};
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enum {
DSO_TRIGGER_AUTO = 0,
DSO_TRIGGER_CH0,
DSO_TRIGGER_CH1,
DSO_TRIGGER_CH0A1,
DSO_TRIGGER_CH0O1,
};
enum {
DSO_TRIGGER_RISING = 0,
DSO_TRIGGER_FALLING,
};
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struct ds_trigger {
uint16_t trigger_en;
uint16_t trigger_mode;
uint16_t trigger_pos;
uint16_t trigger_stages;
unsigned char trigger_logic[TriggerStages+1];
unsigned char trigger0_inv[TriggerStages+1];
unsigned char trigger1_inv[TriggerStages+1];
char trigger0[TriggerStages+1][TriggerProbes];
char trigger1[TriggerStages+1][TriggerProbes];
uint32_t trigger0_count[TriggerStages+1];
uint32_t trigger1_count[TriggerStages+1];
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};
struct ds_trigger_pos {
uint32_t check_id;
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uint32_t real_pos;
uint32_t ram_saddr;
uint32_t remain_cnt_l;
uint32_t remain_cnt_h;
uint32_t status;
unsigned char first_block[488];
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};
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typedef int (*sr_receive_data_callback_t)(int fd, int revents, const struct sr_dev_inst *sdi);
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#include "proto.h"
#include "version.h"
#ifdef __cplusplus
}
#endif
#endif