subsurface/divecomputer.cpp
Dirk Hohndel 1ee447b5a9 When saving only selected dives, only include referenced dive computers
Since we should have far fewer dive computers than dives this straight
forward algorithm shouldn't cause any performance issues.

Signed-off-by: Dirk Hohndel <dirk@hohndel.org>
2015-06-10 09:29:04 -07:00

200 lines
5.4 KiB
C++

#include "divecomputer.h"
#include "dive.h"
#include <QSettings>
const char *default_dive_computer_vendor;
const char *default_dive_computer_product;
const char *default_dive_computer_device;
DiveComputerList dcList;
DiveComputerList::DiveComputerList()
{
}
DiveComputerList::~DiveComputerList()
{
}
bool DiveComputerNode::operator==(const DiveComputerNode &a) const
{
return model == a.model &&
deviceId == a.deviceId &&
firmware == a.firmware &&
serialNumber == a.serialNumber &&
nickName == a.nickName;
}
bool DiveComputerNode::operator!=(const DiveComputerNode &a) const
{
return !(*this == a);
}
bool DiveComputerNode::changesValues(const DiveComputerNode &b) const
{
if (model != b.model || deviceId != b.deviceId) {
qDebug("DiveComputerNodes were not for the same DC");
return false;
}
return (firmware != b.firmware) ||
(serialNumber != b.serialNumber) ||
(nickName != b.nickName);
}
const DiveComputerNode *DiveComputerList::getExact(const QString &m, uint32_t d)
{
for (QMap<QString, DiveComputerNode>::iterator it = dcMap.find(m); it != dcMap.end() && it.key() == m; ++it)
if (it->deviceId == d)
return &*it;
return NULL;
}
const DiveComputerNode *DiveComputerList::get(const QString &m)
{
QMap<QString, DiveComputerNode>::iterator it = dcMap.find(m);
if (it != dcMap.end())
return &*it;
return NULL;
}
void DiveComputerList::addDC(const QString &m, uint32_t d, const QString &n, const QString &s, const QString &f)
{
if (m.isEmpty() || d == 0)
return;
const DiveComputerNode *existNode = this->getExact(m, d);
DiveComputerNode newNode(m, d, s, f, n);
if (existNode) {
if (newNode.changesValues(*existNode)) {
if (n.size() && existNode->nickName != n)
qDebug("new nickname %s for DC model %s deviceId 0x%x", n.toUtf8().data(), m.toUtf8().data(), d);
if (f.size() && existNode->firmware != f)
qDebug("new firmware version %s for DC model %s deviceId 0x%x", f.toUtf8().data(), m.toUtf8().data(), d);
if (s.size() && existNode->serialNumber != s)
qDebug("new serial number %s for DC model %s deviceId 0x%x", s.toUtf8().data(), m.toUtf8().data(), d);
} else {
return;
}
dcMap.remove(m, *existNode);
}
dcMap.insert(m, newNode);
}
extern "C" void create_device_node(const char *model, uint32_t deviceid, const char *serial, const char *firmware, const char *nickname)
{
dcList.addDC(model, deviceid, nickname, serial, firmware);
}
extern "C" bool compareDC(const DiveComputerNode &a, const DiveComputerNode &b)
{
return a.deviceId < b.deviceId;
}
extern "C" void call_for_each_dc (void *f, void (*callback)(void *, const char *, uint32_t,
const char *, const char *, const char *),
bool select_only)
{
QList<DiveComputerNode> values = dcList.dcMap.values();
qSort(values.begin(), values.end(), compareDC);
for (int i = 0; i < values.size(); i++) {
const DiveComputerNode *node = &values.at(i);
bool found = false;
if (select_only) {
int j;
struct dive *d;
for_each_dive (j, d) {
struct divecomputer *dc;
if (!d->selected)
continue;
for_each_dc(d, dc) {
if (dc->deviceid == node->deviceId) {
found = true;
break;
}
}
if (found)
break;
}
} else {
found = true;
}
if (found)
callback(f, node->model.toUtf8().data(), node->deviceId, node->nickName.toUtf8().data(),
node->serialNumber.toUtf8().data(), node->firmware.toUtf8().data());
}
}
extern "C" int is_default_dive_computer(const char *vendor, const char *product)
{
return default_dive_computer_vendor && !strcmp(vendor, default_dive_computer_vendor) &&
default_dive_computer_product && !strcmp(product, default_dive_computer_product);
}
extern "C" int is_default_dive_computer_device(const char *name)
{
return default_dive_computer_device && !strcmp(name, default_dive_computer_device);
}
void set_default_dive_computer(const char *vendor, const char *product)
{
QSettings s;
if (!vendor || !*vendor)
return;
if (!product || !*product)
return;
if (is_default_dive_computer(vendor, product))
return;
free((void *)default_dive_computer_vendor);
free((void *)default_dive_computer_product);
default_dive_computer_vendor = strdup(vendor);
default_dive_computer_product = strdup(product);
s.beginGroup("DiveComputer");
s.setValue("dive_computer_vendor", vendor);
s.setValue("dive_computer_product", product);
s.endGroup();
}
void set_default_dive_computer_device(const char *name)
{
QSettings s;
if (!name || !*name)
return;
if (is_default_dive_computer_device(name))
return;
free((void *)default_dive_computer_device);
default_dive_computer_device = strdup(name);
s.beginGroup("DiveComputer");
s.setValue("dive_computer_device", name);
s.endGroup();
}
extern "C" void set_dc_nickname(struct dive *dive)
{
if (!dive)
return;
struct divecomputer *dc;
for_each_dc (dive, dc) {
if (dc->model && *dc->model && dc->deviceid &&
!dcList.getExact(dc->model, dc->deviceid)) {
// we don't have this one, yet
const DiveComputerNode *existNode = dcList.get(dc->model);
if (existNode) {
// we already have this model but a different deviceid
QString simpleNick(dc->model);
if (dc->deviceid == 0)
simpleNick.append(" (unknown deviceid)");
else
simpleNick.append(" (").append(QString::number(dc->deviceid, 16)).append(")");
dcList.addDC(dc->model, dc->deviceid, simpleNick);
} else {
dcList.addDC(dc->model, dc->deviceid);
}
}
}
}