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e237f29fb2
Not strictly necessary, but more idiomatic C++ and less polution of the global namespace. This one is so trivial that there seems to be no reason not to do it. Signed-off-by: Berthold Stoeger <bstoeger@mail.tuwien.ac.at>
112 lines
2.6 KiB
C++
112 lines
2.6 KiB
C++
// SPDX-License-Identifier: GPL-2.0
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#include "event.h"
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#include "divecomputer.h"
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#include "eventtype.h"
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#include "subsurface-string.h"
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event::event() : type(SAMPLE_EVENT_NONE), flags(0), value(0),
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divemode(OC), hidden(false)
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{
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/* That overwrites divemode. Is this a smart thing to do? */
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gas.index = -1;
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gas.mix = gasmix_air;
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}
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event::event(unsigned int time, int type, int flags, int value, const std::string &name) :
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type(type), flags(flags), value(value), divemode(OC),
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hidden(false), name(name)
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{
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int gas_index = -1;
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fraction_t he;
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this->time.seconds = time;
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/*
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* Expand the events into a sane format. Currently
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* just gas switches
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*/
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switch (type) {
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case SAMPLE_EVENT_GASCHANGE2:
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/* High 16 bits are He percentage */
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he.permille = (value >> 16) * 10;
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/* Extension to the GASCHANGE2 format: cylinder index in 'flags' */
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/* TODO: verify that gas_index < num_cylinders. */
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if (flags > 0)
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gas_index = flags-1;
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/* Fallthrough */
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case SAMPLE_EVENT_GASCHANGE:
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/* Low 16 bits are O2 percentage */
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gas.mix.he = he;
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gas.mix.o2.permille = (value & 0xffff) * 10;
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gas.index = gas_index;
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break;
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}
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remember_event_type(this);
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}
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event::~event()
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{
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}
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bool event::is_gaschange() const
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{
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return type == SAMPLE_EVENT_GASCHANGE || type == SAMPLE_EVENT_GASCHANGE2;
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}
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bool event::is_divemodechange() const
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{
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return name == "modechange";
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}
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bool event::operator==(const event &b) const
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{
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return std::tie(time.seconds, type, flags, value, name) ==
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std::tie(b.time.seconds, b.type, b.flags, b.value, b.name);
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}
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enum event_severity event::get_severity() const
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{
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switch (flags & SAMPLE_FLAGS_SEVERITY_MASK) {
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case SAMPLE_FLAGS_SEVERITY_INFO:
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return EVENT_SEVERITY_INFO;
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case SAMPLE_FLAGS_SEVERITY_WARN:
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return EVENT_SEVERITY_WARN;
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case SAMPLE_FLAGS_SEVERITY_ALARM:
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return EVENT_SEVERITY_ALARM;
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default:
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return EVENT_SEVERITY_NONE;
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}
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}
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event_loop::event_loop(const char *name) : name(name), idx(0)
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{
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}
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struct event *event_loop::next(struct divecomputer &dc)
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{
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if (name.empty())
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return nullptr;
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while (idx < dc.events.size()) {
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struct event &ev = dc.events[idx++];
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if (ev.name == name)
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return &ev;
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}
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return nullptr;
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}
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const struct event *event_loop::next(const struct divecomputer &dc)
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{
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return next(const_cast<divecomputer &>(dc));
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}
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struct event *get_first_event(struct divecomputer &dc, const std::string &name)
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{
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auto it = std::find_if(dc.events.begin(), dc.events.end(), [name](auto &ev) { return ev.name == name; });
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return it != dc.events.end() ? &*it : nullptr;
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}
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const struct event *get_first_event(const struct divecomputer &dc, const std::string &name)
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{
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return get_first_event(const_cast<divecomputer &>(dc), name);
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}
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