To support devices where not all memory is readable, the memory dump helper function needs an extra parameter to specify the start address.
249 lines
7.0 KiB
C
249 lines
7.0 KiB
C
/*
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* libdivecomputer
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*
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* Copyright (C) 2009 Jef Driesen
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library 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 GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston,
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* MA 02110-1301 USA
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*/
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#include <string.h> // memcpy, memcmp
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#include <stdlib.h> // malloc, free
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#include <assert.h> // assert
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#include "mares_puck.h"
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#include "mares_common.h"
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#include "context-private.h"
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#include "device-private.h"
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#include "checksum.h"
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#include "array.h"
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#define ISINSTANCE(device) dc_device_isinstance((device), &mares_puck_device_vtable)
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#define NEMOWIDE 1
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#define NEMOAIR 4
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#define PUCK 7
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#define PUCKAIR 19
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typedef struct mares_puck_device_t {
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mares_common_device_t base;
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const mares_common_layout_t *layout;
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unsigned char fingerprint[5];
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} mares_puck_device_t;
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static dc_status_t mares_puck_device_set_fingerprint (dc_device_t *abstract, const unsigned char data[], unsigned int size);
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static dc_status_t mares_puck_device_dump (dc_device_t *abstract, dc_buffer_t *buffer);
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static dc_status_t mares_puck_device_foreach (dc_device_t *abstract, dc_dive_callback_t callback, void *userdata);
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static const dc_device_vtable_t mares_puck_device_vtable = {
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sizeof(mares_puck_device_t),
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DC_FAMILY_MARES_PUCK,
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mares_puck_device_set_fingerprint, /* set_fingerprint */
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mares_common_device_read, /* read */
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NULL, /* write */
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mares_puck_device_dump, /* dump */
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mares_puck_device_foreach, /* foreach */
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NULL, /* timesync */
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NULL /* close */
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};
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static const mares_common_layout_t mares_puck_layout = {
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0x4000, /* memsize */
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0x0070, /* rb_profile_begin */
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0x4000, /* rb_profile_end */
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0x4000, /* rb_freedives_begin */
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0x4000 /* rb_freedives_end */
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};
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static const mares_common_layout_t mares_nemoair_layout = {
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0x8000, /* memsize */
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0x0070, /* rb_profile_begin */
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0x8000, /* rb_profile_end */
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0x8000, /* rb_freedives_begin */
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0x8000 /* rb_freedives_end */
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};
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static const mares_common_layout_t mares_nemowide_layout = {
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0x4000, /* memsize */
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0x0070, /* rb_profile_begin */
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0x3400, /* rb_profile_end */
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0x3400, /* rb_freedives_begin */
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0x4000 /* rb_freedives_end */
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};
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dc_status_t
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mares_puck_device_open (dc_device_t **out, dc_context_t *context, dc_iostream_t *iostream)
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{
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dc_status_t status = DC_STATUS_SUCCESS;
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mares_puck_device_t *device = NULL;
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if (out == NULL)
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return DC_STATUS_INVALIDARGS;
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// Allocate memory.
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device = (mares_puck_device_t *) dc_device_allocate (context, &mares_puck_device_vtable);
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if (device == NULL) {
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ERROR (context, "Failed to allocate memory.");
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return DC_STATUS_NOMEMORY;
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}
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// Initialize the base class.
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mares_common_device_init (&device->base, iostream);
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// Set the default values.
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device->layout = NULL;
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memset (device->fingerprint, 0, sizeof (device->fingerprint));
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// Set the serial communication protocol (38400 8N1).
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status = dc_iostream_configure (device->base.iostream, 38400, 8, DC_PARITY_NONE, DC_STOPBITS_ONE, DC_FLOWCONTROL_NONE);
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if (status != DC_STATUS_SUCCESS) {
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ERROR (context, "Failed to set the terminal attributes.");
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goto error_free;
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}
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// Set the timeout for receiving data (1000 ms).
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status = dc_iostream_set_timeout (device->base.iostream, 1000);
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if (status != DC_STATUS_SUCCESS) {
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ERROR (context, "Failed to set the timeout.");
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goto error_free;
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}
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// Clear the DTR line.
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status = dc_iostream_set_dtr (device->base.iostream, 0);
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if (status != DC_STATUS_SUCCESS) {
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ERROR (context, "Failed to clear the DTR line.");
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goto error_free;
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}
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// Clear the RTS line.
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status = dc_iostream_set_rts (device->base.iostream, 0);
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if (status != DC_STATUS_SUCCESS) {
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ERROR (context, "Failed to clear the RTS line.");
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goto error_free;
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}
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// Make sure everything is in a sane state.
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dc_iostream_purge (device->base.iostream, DC_DIRECTION_ALL);
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// Identify the model number.
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unsigned char header[PACKETSIZE] = {0};
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status = mares_common_device_read ((dc_device_t *) device, 0, header, sizeof (header));
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if (status != DC_STATUS_SUCCESS) {
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goto error_free;
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}
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// Override the base class values.
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switch (header[1]) {
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case NEMOWIDE:
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device->layout = &mares_nemowide_layout;
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break;
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case NEMOAIR:
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case PUCKAIR:
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device->layout = &mares_nemoair_layout;
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break;
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case PUCK:
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device->layout = &mares_puck_layout;
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break;
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default: // Unknown, try puck
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device->layout = &mares_puck_layout;
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break;
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}
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*out = (dc_device_t*) device;
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return DC_STATUS_SUCCESS;
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error_free:
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dc_device_deallocate ((dc_device_t *) device);
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return status;
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}
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static dc_status_t
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mares_puck_device_set_fingerprint (dc_device_t *abstract, const unsigned char data[], unsigned int size)
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{
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mares_puck_device_t *device = (mares_puck_device_t *) abstract;
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if (size && size != sizeof (device->fingerprint))
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return DC_STATUS_INVALIDARGS;
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if (size)
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memcpy (device->fingerprint, data, sizeof (device->fingerprint));
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else
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memset (device->fingerprint, 0, sizeof (device->fingerprint));
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return DC_STATUS_SUCCESS;
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}
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static dc_status_t
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mares_puck_device_dump (dc_device_t *abstract, dc_buffer_t *buffer)
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{
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dc_status_t status = DC_STATUS_SUCCESS;
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mares_puck_device_t *device = (mares_puck_device_t *) abstract;
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assert (device->layout != NULL);
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// Allocate the required amount of memory.
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if (!dc_buffer_resize (buffer, device->layout->memsize)) {
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ERROR (abstract->context, "Insufficient buffer space available.");
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return DC_STATUS_NOMEMORY;
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}
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// Download the memory dump.
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status = device_dump_read (abstract, 0, dc_buffer_get_data (buffer),
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dc_buffer_get_size (buffer), PACKETSIZE);
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if (status != DC_STATUS_SUCCESS) {
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return status;
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}
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// Emit a device info event.
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unsigned char *data = dc_buffer_get_data (buffer);
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dc_event_devinfo_t devinfo;
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devinfo.model = data[1];
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devinfo.firmware = 0;
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devinfo.serial = array_uint16_be (data + 8);
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device_event_emit (abstract, DC_EVENT_DEVINFO, &devinfo);
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return status;
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}
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static dc_status_t
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mares_puck_device_foreach (dc_device_t *abstract, dc_dive_callback_t callback, void *userdata)
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{
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mares_puck_device_t *device = (mares_puck_device_t *) abstract;
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assert (device->layout != NULL);
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dc_buffer_t *buffer = dc_buffer_new (device->layout->memsize);
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if (buffer == NULL)
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return DC_STATUS_NOMEMORY;
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dc_status_t rc = mares_puck_device_dump (abstract, buffer);
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if (rc != DC_STATUS_SUCCESS) {
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dc_buffer_free (buffer);
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return rc;
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}
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rc = mares_common_extract_dives (abstract->context, device->layout, device->fingerprint,
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dc_buffer_get_data (buffer), callback, userdata);
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dc_buffer_free (buffer);
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return rc;
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}
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