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Some non-essential subroutines in fxEndSubroutine is not implemented. Support is currently the same as original game, so Roland GS and there are no conversion to GM. Music tracks requires at least MT32-compatible device with support of capital tone fallback in ROM. Game is also extensively uses extended sounds found in CM-32L for sound effects, MT-32 will produce silence for those. So using in combination with real CM-32L or emulated one is the best for now.
516 lines
14 KiB
C++
516 lines
14 KiB
C++
/* ScummVM - Graphic Adventure Engine
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*
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* ScummVM is the legal property of its developers, whose names
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* are too numerous to list here. Please refer to the COPYRIGHT
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* file distributed with this source distribution.
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program 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
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*
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*/
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// Disable symbol overrides so that we can use system headers.
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#define FORBIDDEN_SYMBOL_ALLOW_ALL
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#include "common/scummsys.h"
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#if defined(USE_ALSA)
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#include "common/config-manager.h"
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#include "common/error.h"
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#include "common/textconsole.h"
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#include "common/util.h"
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#include "audio/musicplugin.h"
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#include "audio/mpu401.h"
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#include <alsa/asoundlib.h>
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#define MIDI_USB_HACK
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/*
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* ALSA sequencer driver
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* Mostly cut'n'pasted from Virtual Tiny Keyboard (vkeybd) by Takashi Iwai
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* (you really rox, you know?)
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*/
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#if SND_LIB_MAJOR >= 1 || SND_LIB_MINOR >= 6
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#define snd_seq_flush_output(x) snd_seq_drain_output(x)
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#define snd_seq_set_client_group(x,name) /*nop */
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#define my_snd_seq_open(seqp) snd_seq_open(seqp, "hw", SND_SEQ_OPEN_DUPLEX, 0)
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#else
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/* SND_SEQ_OPEN_OUT causes oops on early version of ALSA */
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#define my_snd_seq_open(seqp) snd_seq_open(seqp, SND_SEQ_OPEN)
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#endif
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#define perm_ok(pinfo,bits) ((snd_seq_port_info_get_capability(pinfo) & (bits)) == (bits))
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static int check_permission(snd_seq_port_info_t *pinfo) {
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if (perm_ok(pinfo, SND_SEQ_PORT_CAP_WRITE | SND_SEQ_PORT_CAP_SUBS_WRITE)) {
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if (!(snd_seq_port_info_get_capability(pinfo) & SND_SEQ_PORT_CAP_NO_EXPORT))
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return 1;
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}
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return 0;
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}
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/*
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* parse address string
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*/
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#define ADDR_DELIM ".:"
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class MidiDriver_ALSA : public MidiDriver_MPU401 {
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public:
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MidiDriver_ALSA(int client, int port);
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int open() override;
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bool isOpen() const override { return _isOpen; }
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void close() override;
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void send(uint32 b) override;
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void sysEx(const byte *msg, uint16 length) override;
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private:
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void send_event(int do_flush);
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bool _isOpen;
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snd_seq_event_t ev;
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snd_seq_t *seq_handle;
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int seq_client, seq_port;
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int my_client, my_port;
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// The volume controller value of the first MIDI channel
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int8 _channel0Volume;
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};
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MidiDriver_ALSA::MidiDriver_ALSA(int client, int port)
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: _isOpen(false), seq_handle(0), seq_client(client), seq_port(port), my_client(0), my_port(0), _channel0Volume(127) {
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memset(&ev, 0, sizeof(ev));
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}
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int MidiDriver_ALSA::open() {
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if (_isOpen)
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return MERR_ALREADY_OPEN;
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_isOpen = true;
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if (my_snd_seq_open(&seq_handle) < 0) {
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error("Can't open sequencer");
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return -1;
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}
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my_client = snd_seq_client_id(seq_handle);
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if (snd_seq_set_client_name(seq_handle, "SCUMMVM") < 0) {
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error("Can't set sequencer client name");
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}
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snd_seq_set_client_group(seq_handle, "input");
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// According to
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// https://web.archive.org/web/20120505164948/http://www.alsa-project.org/~tiwai/alsa-subs.html
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// you can set read or write capabilities to allow other clients to
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// read or write the port. I don't think we need that, unless maybe
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// to be able to record the sound, but I can't get that to work even
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// with those capabilities.
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my_port = snd_seq_create_simple_port(seq_handle, "SCUMMVM port 0", 0,
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SND_SEQ_PORT_TYPE_MIDI_GENERIC | SND_SEQ_PORT_TYPE_APPLICATION);
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if (my_port < 0) {
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snd_seq_close(seq_handle);
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error("Can't create port");
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return -1;
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}
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if (seq_client != SND_SEQ_ADDRESS_SUBSCRIBERS) {
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// Subscribe to MIDI port. Prefer one that doesn't already have
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// any connections, unless we've forced a port number already.
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if (seq_port == -1) {
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snd_seq_client_info_t *cinfo;
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snd_seq_port_info_t *pinfo;
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snd_seq_client_info_alloca(&cinfo);
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snd_seq_port_info_alloca(&pinfo);
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snd_seq_get_any_client_info(seq_handle, seq_client, cinfo);
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int first_port = -1;
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int found_port = -1;
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snd_seq_port_info_set_client(pinfo, seq_client);
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snd_seq_port_info_set_port(pinfo, -1);
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while (found_port == -1 && snd_seq_query_next_port(seq_handle, pinfo) >= 0) {
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if (check_permission(pinfo)) {
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if (first_port == -1)
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first_port = snd_seq_port_info_get_port(pinfo);
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if (found_port == -1 && snd_seq_port_info_get_write_use(pinfo) == 0)
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found_port = snd_seq_port_info_get_port(pinfo);
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}
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}
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if (found_port == -1) {
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// Should we abort here? For now, use the first
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// available port.
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seq_port = first_port;
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warning("MidiDriver_ALSA: All ports on client %d (%s) are already in use", seq_client, snd_seq_client_info_get_name(cinfo));
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} else {
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seq_port = found_port;
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}
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}
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if (snd_seq_connect_to(seq_handle, my_port, seq_client, seq_port) < 0) {
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error("Can't subscribe to MIDI port (%d:%d) see README for help", seq_client, seq_port);
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}
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}
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printf("Connected to Alsa sequencer client [%d:%d]\n", seq_client, seq_port);
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printf("ALSA client initialized [%d:0]\n", my_client);
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return 0;
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}
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void MidiDriver_ALSA::close() {
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if (_isOpen) {
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_isOpen = false;
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MidiDriver_MPU401::close();
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if (seq_handle)
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snd_seq_close(seq_handle);
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} else
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warning("MidiDriver_ALSA: Closing the driver before opening it");
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}
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void MidiDriver_ALSA::send(uint32 b) {
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if (!_isOpen) {
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warning("MidiDriver_ALSA: Got event while not open");
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return;
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}
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midiDriverCommonSend(b);
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unsigned int midiCmd[4];
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ev.type = SND_SEQ_EVENT_OSS;
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midiCmd[3] = (b & 0xFF000000) >> 24;
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midiCmd[2] = (b & 0x00FF0000) >> 16;
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midiCmd[1] = (b & 0x0000FF00) >> 8;
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midiCmd[0] = (b & 0x000000FF);
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ev.data.raw32.d[0] = midiCmd[0];
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ev.data.raw32.d[1] = midiCmd[1];
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ev.data.raw32.d[2] = midiCmd[2];
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unsigned char chanID = midiCmd[0] & 0x0F;
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switch (midiCmd[0] & 0xF0) {
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case 0x80:
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snd_seq_ev_set_noteoff(&ev, chanID, midiCmd[1], midiCmd[2]);
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send_event(1);
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break;
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case 0x90:
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snd_seq_ev_set_noteon(&ev, chanID, midiCmd[1], midiCmd[2]);
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send_event(1);
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break;
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case 0xA0:
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snd_seq_ev_set_keypress(&ev, chanID, midiCmd[1], midiCmd[2]);
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send_event(1);
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break;
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case 0xB0:
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/* is it this simple ? Wow... */
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snd_seq_ev_set_controller(&ev, chanID, midiCmd[1], midiCmd[2]);
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#ifdef MIDI_USB_HACK
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// We save the volume of the first MIDI channel here to utilize it in
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// our workaround for broken USB-MIDI cables.
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if (chanID == 0 && midiCmd[1] == 0x07)
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_channel0Volume = midiCmd[2];
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#endif
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send_event(1);
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break;
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case 0xC0:
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snd_seq_ev_set_pgmchange(&ev, chanID, midiCmd[1]);
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send_event(0);
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#ifdef MIDI_USB_HACK
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// Send a volume change command to work around a firmware bug in common
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// USB-MIDI cables. If the first MIDI command in a USB packet is a
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// Cx or Dx command, the second command in the packet is dropped
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// somewhere.
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send(0x07B0 | (_channel0Volume << 16));
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#endif
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break;
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case 0xD0:
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snd_seq_ev_set_chanpress(&ev, chanID, midiCmd[1]);
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send_event(1);
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#ifdef MIDI_USB_HACK
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// Send a volume change command to work around a firmware bug in common
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// USB-MIDI cables. If the first MIDI command in a USB packet is a
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// Cx or Dx command, the second command in the packet is dropped
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// somewhere.
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send(0x07B0 | (_channel0Volume << 16));
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#endif
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break;
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case 0xE0: {
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// long theBend = ((((long)midiCmd[1] + (long)(midiCmd[2] << 7))) - 0x2000) / 4;
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// snd_seq_ev_set_pitchbend(&ev, chanID, theBend);
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long theBend = ((long)midiCmd[1] + (long)(midiCmd[2] << 7)) - 0x2000;
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snd_seq_ev_set_pitchbend(&ev, chanID, theBend);
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send_event(1);
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} break;
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default:
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warning("Unknown MIDI Command: %08x", (int)b);
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/* I don't know if this works but, well... */
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send_event(1);
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break;
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}
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}
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void MidiDriver_ALSA::sysEx(const byte *msg, uint16 length) {
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if (!_isOpen) {
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warning("MidiDriver_ALSA: Got SysEx while not open");
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return;
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}
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unsigned char buf[270];
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assert(length + 2 <= ARRAYSIZE(buf));
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midiDriverCommonSysEx(msg, length);
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// Add SysEx frame
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buf[0] = 0xF0;
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memcpy(buf + 1, msg, length);
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buf[length + 1] = 0xF7;
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// Send it
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snd_seq_ev_set_sysex(&ev, length + 2, &buf);
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send_event(1);
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}
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void MidiDriver_ALSA::send_event(int do_flush) {
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snd_seq_ev_set_direct(&ev);
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snd_seq_ev_set_source(&ev, my_port);
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snd_seq_ev_set_dest(&ev, seq_client, seq_port);
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snd_seq_event_output(seq_handle, &ev);
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if (do_flush)
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snd_seq_flush_output(seq_handle);
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}
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// Plugin interface
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class AlsaDevice {
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public:
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AlsaDevice(Common::String name, MusicType mt, int client);
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Common::String getName();
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MusicType getType();
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int getClient();
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private:
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Common::String _name;
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MusicType _type;
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int _client;
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};
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typedef Common::List<AlsaDevice> AlsaDevices;
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AlsaDevice::AlsaDevice(Common::String name, MusicType mt, int client)
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: _name(name), _type(mt), _client(client) {
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// Make sure we do not get any trailing spaces to avoid problems when
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// storing the name in the configuration file.
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_name.trim();
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}
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Common::String AlsaDevice::getName() {
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return _name;
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}
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MusicType AlsaDevice::getType() {
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return _type;
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}
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int AlsaDevice::getClient() {
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return _client;
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}
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class AlsaMusicPlugin : public MusicPluginObject {
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public:
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const char *getName() const {
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return "ALSA";
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}
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const char *getId() const {
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return "alsa";
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}
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AlsaDevices getAlsaDevices() const;
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MusicDevices getDevices() const;
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Common::Error createInstance(MidiDriver **mididriver, MidiDriver::DeviceHandle = 0) const;
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private:
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static int parse_addr(const char *arg, int *client, int *port);
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};
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AlsaDevices AlsaMusicPlugin::getAlsaDevices() const {
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AlsaDevices devices;
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snd_seq_t *seq_handle;
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if (my_snd_seq_open(&seq_handle) < 0)
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return devices; // can't open sequencer
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snd_seq_client_info_t *cinfo;
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snd_seq_client_info_alloca(&cinfo);
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snd_seq_port_info_t *pinfo;
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snd_seq_port_info_alloca(&pinfo);
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snd_seq_client_info_set_client(cinfo, -1);
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while (snd_seq_query_next_client(seq_handle, cinfo) >= 0) {
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bool found_valid_port = false;
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/* reset query info */
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snd_seq_port_info_set_client(pinfo, snd_seq_client_info_get_client(cinfo));
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snd_seq_port_info_set_port(pinfo, -1);
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while (!found_valid_port && snd_seq_query_next_port(seq_handle, pinfo) >= 0) {
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if (check_permission(pinfo)) {
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found_valid_port = true;
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const char *name = snd_seq_client_info_get_name(cinfo);
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// TODO: Can we figure out the appropriate music type?
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MusicType type = MT_GM;
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int client = snd_seq_client_info_get_client(cinfo);
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devices.push_back(AlsaDevice(name, type, client));
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}
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}
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}
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snd_seq_close(seq_handle);
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return devices;
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}
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MusicDevices AlsaMusicPlugin::getDevices() const {
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MusicDevices devices;
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AlsaDevices::iterator d;
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AlsaDevices alsaDevices = getAlsaDevices();
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// Since the default behavior is to use the first device in the list,
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// try to put something sensible there. We used to have 17:0 and 65:0
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// as defaults.
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for (d = alsaDevices.begin(); d != alsaDevices.end();) {
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const int client = d->getClient();
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if (client == 17 || client == 65) {
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devices.push_back(MusicDevice(this, d->getName(), d->getType()));
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d = alsaDevices.erase(d);
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} else {
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++d;
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}
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}
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// 128:0 is probably TiMidity, or something like that, so that's
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// probably a good second choice.
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for (d = alsaDevices.begin(); d != alsaDevices.end();) {
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if (d->getClient() == 128) {
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devices.push_back(MusicDevice(this, d->getName(), d->getType()));
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d = alsaDevices.erase(d);
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} else {
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++d;
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}
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}
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// Add the remaining devices in the order they were found.
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for (d = alsaDevices.begin(); d != alsaDevices.end(); ++d)
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devices.push_back(MusicDevice(this, d->getName(), d->getType()));
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return devices;
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}
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Common::Error AlsaMusicPlugin::createInstance(MidiDriver **mididriver, MidiDriver::DeviceHandle dev) const {
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bool found = false;
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int seq_client, seq_port;
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const char *var = NULL;
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// TODO: Upgrade from old alsa_port setting. This probably isn't the
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// right place to do that, though.
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if (ConfMan.hasKey("alsa_port")) {
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warning("AlsaMusicPlugin: Found old 'alsa_port' setting, which will be ignored");
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}
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// The SCUMMVM_PORT environment variable can still be used to override
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// any config setting.
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var = getenv("SCUMMVM_PORT");
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if (var) {
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warning("AlsaMusicPlugin: SCUMMVM_PORT environment variable overrides config settings");
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if (parse_addr(var, &seq_client, &seq_port) >= 0) {
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found = true;
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} else {
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warning("AlsaMusicPlugin: Invalid port %s, using config settings instead", var);
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}
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}
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// Try to match the setting to an available ALSA device.
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if (!found && dev) {
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AlsaDevices alsaDevices = getAlsaDevices();
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for (AlsaDevices::iterator d = alsaDevices.begin(); d != alsaDevices.end(); ++d) {
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MusicDevice device(this, d->getName(), d->getType());
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if (device.getCompleteId().equals(MidiDriver::getDeviceString(dev, MidiDriver::kDeviceId))) {
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found = true;
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seq_client = d->getClient();
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seq_port = -1;
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break;
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}
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}
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}
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// Still nothing? Try a sensible default.
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if (!found) {
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// TODO: What's a sensible default anyway? And exactly when do
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// we get to this case?
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warning("AlsaMusicPlugin: Using 17:0 as default ALSA port");
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seq_client = 17;
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seq_port = 0;
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}
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*mididriver = new MidiDriver_ALSA(seq_client, seq_port);
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return Common::kNoError;
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}
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|
|
int AlsaMusicPlugin::parse_addr(const char *arg, int *client, int *port) {
|
|
const char *p;
|
|
|
|
if (isdigit(*arg)) {
|
|
if ((p = strpbrk(arg, ADDR_DELIM)) == NULL)
|
|
return -1;
|
|
*client = atoi(arg);
|
|
*port = atoi(p + 1);
|
|
} else {
|
|
if (*arg == 's' || *arg == 'S') {
|
|
*client = SND_SEQ_ADDRESS_SUBSCRIBERS;
|
|
*port = 0;
|
|
} else
|
|
return -1;
|
|
}
|
|
return 0;
|
|
}
|
|
|
|
//#if PLUGIN_ENABLED_DYNAMIC(ALSA)
|
|
//REGISTER_PLUGIN_DYNAMIC(ALSA, PLUGIN_TYPE_MUSIC, AlsaMusicPlugin);
|
|
//#else
|
|
REGISTER_PLUGIN_STATIC(ALSA, PLUGIN_TYPE_MUSIC, AlsaMusicPlugin);
|
|
//#endif
|
|
|
|
#endif
|