subsurface/core/libdivecomputer.h
Linus Torvalds 270e9eccad Make device enumeration use the device transport data
This removes some special-case code for Uemis, replacing it with simply
passing in the device transport information.

This makes device enumeration work for the Garmin Descent (if it is
listed by libdivecomputer as a USB storage device, that is).

I don't actually do any of the libdivecomputer parsing yet, and only
have a stub for the Garmin Descent, but now the directory selection
works with that stub. The actual download obviously does not.

[Dirk Hohndel: removed obsolete FIXME from code]

Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org>
Signed-off-by: Dirk Hohndel <dirk@hohndel.org>
2018-08-27 22:10:38 -07:00

77 lines
2.3 KiB
C

// SPDX-License-Identifier: GPL-2.0
#ifndef LIBDIVECOMPUTER_H
#define LIBDIVECOMPUTER_H
/* libdivecomputer */
#ifdef DC_VERSION /* prevent a warning with wingdi.h */
#undef DC_VERSION
#endif
#include <libdivecomputer/version.h>
#include <libdivecomputer/device.h>
#include <libdivecomputer/parser.h>
// Even if we have an old libdivecomputer, Uemis uses this
#ifndef DC_TRANSPORT_USBSTORAGE
#define DC_TRANSPORT_USBSTORAGE (1 << 6)
#endif
#include "dive.h"
#ifdef __cplusplus
extern "C" {
#endif
/* don't forget to include the UI toolkit specific display-XXX.h first
to get the definition of progressbar_t */
typedef struct dc_user_device_t
{
dc_descriptor_t *descriptor;
const char *vendor, *product, *devname;
const char *model;
unsigned char *fingerprint;
unsigned int fsize, fdiveid;
uint32_t libdc_firmware, libdc_serial;
uint32_t deviceid, diveid;
dc_device_t *device;
dc_context_t *context;
dc_iostream_t *iostream;
struct dive_trip *trip;
int preexisting;
bool force_download;
bool create_new_trip;
bool libdc_log;
bool libdc_dump;
bool bluetooth_mode;
FILE *libdc_logfile;
struct dive_table *download_table;
} device_data_t;
const char *errmsg (dc_status_t rc);
const char *do_libdivecomputer_import(device_data_t *data);
const char *do_uemis_import(device_data_t *data);
dc_status_t libdc_buffer_parser(struct dive *dive, device_data_t *data, unsigned char *buffer, int size);
void logfunc(dc_context_t *context, dc_loglevel_t loglevel, const char *file, unsigned int line, const char *function, const char *msg, void *userdata);
dc_descriptor_t *get_descriptor(dc_family_t type, unsigned int model);
extern int import_thread_cancelled;
extern const char *progress_bar_text;
extern void (*progress_callback)(const char *text);
extern double progress_bar_fraction;
extern char *logfile_name;
extern char *dumpfile_name;
dc_status_t ble_packet_open(dc_iostream_t **iostream, dc_context_t *context, const char* devaddr, void *userdata);
dc_status_t rfcomm_stream_open(dc_iostream_t **iostream, dc_context_t *context, const char* devaddr);
dc_status_t ftdi_open(dc_iostream_t **iostream, dc_context_t *context);
dc_status_t divecomputer_device_open(device_data_t *data);
unsigned int get_supported_transports(device_data_t *data);
#ifdef __cplusplus
}
#endif
#endif // LIBDIVECOMPUTER_H