7 Commits
7 changed files with 87 additions and 55 deletions
+7
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@@ -16,12 +16,14 @@ Cross Platform device manager for driving and flight simulators, for use with co
- Includes utility to configure revburner tachometer - Includes utility to configure revburner tachometer
- Can send data to any serial device. So far only tested with arduino. Includes sample arduino sketch for sim lights. - Can send data to any serial device. So far only tested with arduino. Includes sample arduino sketch for sim lights.
- The support for haptic bass shakers is limited and needs the most work. So far the engine rev is a simple sine wave, which I find convincing. The gear shift event works but not convincing enough for me. - The support for haptic bass shakers is limited and needs the most work. So far the engine rev is a simple sine wave, which I find convincing. The gear shift event works but not convincing enough for me.
- Choice of Portaudio or Pulseaudio backend.
## Dependencies ## Dependencies
- libserialport - arduino serial devices - libserialport - arduino serial devices
- hidapi - usb hid devices - hidapi - usb hid devices
- libusb - used by hidapi - libusb - used by hidapi
- portaudio - sound devices (haptic bass shakers) - portaudio - sound devices (haptic bass shakers)
- pulseaudio - sound devices (haptic bass shakers)
- libenet - UDP support (not yet implemented) - libenet - UDP support (not yet implemented)
- libxml2 - libxml2
- argtable2 - argtable2
@@ -44,6 +46,11 @@ cmake ..
make make
``` ```
to use the pulseaudio backend use this cmake command
```
cmake -DUSE_PULSEAUDIO=YES ..
```
## Testing ## Testing
### Setting up Your Arduino Device ### Setting up Your Arduino Device
+10 -3
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@@ -6,11 +6,18 @@ devices = ( { device = "USB";
granularity = 4; granularity = 4;
config = "/home/paul/.config/monocoque/revburner1.xml"; }, config = "/home/paul/.config/monocoque/revburner1.xml"; },
{ device = "Sound"; { device = "Sound";
type = "Engine" type = "Engine";
devid = "98FD:83AC"; }, devid = "alsa_output.usb-Generic_USB2.0_Device_20170726905959-00.analog-stereo";
pan = 1;
volume = 90;
frequency = 27; },
{ device = "Sound"; { device = "Sound";
type = "Gear" type = "Gear"
devid = "98FD:83AC"; }, devid = "alsa_output.usb-Generic_USB2.0_Device_20170726905959-00.analog-stereo";
pan = 1;
duration = .25;
volume = 100;
frequency = 27; },
{ device = "Serial"; { device = "Serial";
type = "ShiftLights"; type = "ShiftLights";
config = "None"; config = "None";
+13 -3
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@@ -7,6 +7,16 @@
#define NUM_LEDS 6 #define NUM_LEDS 6
#define BRIGHTNESS 40 #define BRIGHTNESS 40
#define COLOR1A 0
#define COLOR1B 0
#define COLOR1C 255
#define COLOR2A 0
#define COLOR2B 255
#define COLOR2C 0
#define COLOR3A 255
#define COLOR3B 0
#define COLOR3C 0
CRGB leds[NUM_LEDS]; CRGB leds[NUM_LEDS];
SimData sd; SimData sd;
int maxrpm = 0; int maxrpm = 0;
@@ -75,15 +85,15 @@ void loop()
if (l >= numlights / 2) if (l >= numlights / 2)
{ {
leds[l] = CRGB ( 0, 0, 255); leds[l] = CRGB ( COLOR1A, COLOR1B, COLOR1C);
} }
if (l < numlights / 2) if (l < numlights / 2)
{ {
leds[l] = CRGB ( 0, 255, 0); leds[l] = CRGB ( COLOR2A, COLOR2B, COLOR2C);
} }
if (l == numlights - 1) if (l == numlights - 1)
{ {
leds[l] = CRGB ( 255, 0, 0); leds[l] = CRGB ( COLOR3A, COLOR3B, COLOR3C);
} }
if (lights[l] <= 0) if (lights[l] <= 0)
{ {
+3 -3
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@@ -3,7 +3,7 @@
#define BYTE_SIZE sizeof(SimData) #define BYTE_SIZE sizeof(SimData)
#define KPHTOMPH .621317 #define KPHTOMPH .621317
#define FANPOWER .6
Adafruit_MotorShield AFMS = Adafruit_MotorShield(); Adafruit_MotorShield AFMS = Adafruit_MotorShield();
@@ -46,6 +46,6 @@ void loop() {
{ {
v = 255; v = 255;
} }
myMotor1->setSpeed(v); myMotor1->setSpeed(v*FANPOWER);
myMotor2->setSpeed(v); myMotor2->setSpeed(v*FANPOWER);
} }
@@ -123,7 +123,7 @@ int usb_generic_shaker_init(SoundDevice* sounddevice, pa_threaded_mainloop* main
// recommended settings, i.e. server uses sensible values // recommended settings, i.e. server uses sensible values
pa_buffer_attr buffer_attr; pa_buffer_attr buffer_attr;
buffer_attr.maxlength = (uint32_t) -1; buffer_attr.maxlength = (uint32_t) 32767;
buffer_attr.tlength = (uint32_t) -1; buffer_attr.tlength = (uint32_t) -1;
buffer_attr.prebuf = (uint32_t) -1; buffer_attr.prebuf = (uint32_t) -1;
buffer_attr.minreq = (uint32_t) -1; buffer_attr.minreq = (uint32_t) -1;
@@ -131,22 +131,17 @@ int usb_generic_shaker_init(SoundDevice* sounddevice, pa_threaded_mainloop* main
pa_cvolume cv; pa_cvolume cv;
uint16_t pvolume = ceil(((double) volume/100.0d)*65535); uint16_t pvolume = ceil(((double) volume/100.0d)*65535);
// Settings copied as per the chromium browser source // Settings copied as per the chromium browser source
pa_stream_flags_t stream_flags;
stream_flags = PA_STREAM_INTERPOLATE_TIMING |
PA_STREAM_NOT_MONOTONIC | PA_STREAM_AUTO_TIMING_UPDATE |
PA_STREAM_ADJUST_LATENCY;
//stream_flags = PA_STREAM_START_CORKED; pa_stream_flags_t stream_flags;
stream_flags = PA_STREAM_INTERPOLATE_TIMING | PA_STREAM_NOT_MONOTONIC | PA_STREAM_AUTO_TIMING_UPDATE | PA_STREAM_ADJUST_LATENCY | PA_STREAM_START_CORKED;
// Connect stream to the default audio output sink // Connect stream to the default audio output sink
pa_cvolume_set(&cv, sample_specifications.channels, pvolume); pa_cvolume_set(&cv, sample_specifications.channels, pvolume);
//pa_cvolume_set(&cv, 1, 0);
pa_cvolume_set_balance(&cv, &channel_map, pan); pa_cvolume_set_balance(&cv, &channel_map, pan);
assert(pa_stream_connect_playback(stream, devname, &buffer_attr, stream_flags, &cv, NULL) == 0); assert(pa_stream_connect_playback(stream, devname, &buffer_attr, stream_flags, &cv, NULL) == 0);
// Wait for the stream to be ready // Wait for the stream to be ready
for(;;) { for(;;) {
pa_stream_state_t stream_state = pa_stream_get_state(stream); pa_stream_state_t stream_state = pa_stream_get_state(stream);
+42 -29
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@@ -6,6 +6,7 @@
#include <sys/stat.h> #include <sys/stat.h>
#include <poll.h> #include <poll.h>
#include <termios.h> #include <termios.h>
#include <signal.h>
#include "gameloop.h" #include "gameloop.h"
#include "../helper/parameters.h" #include "../helper/parameters.h"
@@ -17,6 +18,19 @@
#define DEFAULT_UPDATE_RATE 240.0 #define DEFAULT_UPDATE_RATE 240.0
#define SIM_CHECK_RATE 1.0 #define SIM_CHECK_RATE 1.0
bool go = false;
bool go2 = false;
struct sigaction act;
void sighandler(int signum, siginfo_t* info, void* ptr)
{
sloge("caught signal");
go = false;
go2 = false;
//gfx_clear(pixels, pixels_len);
//gfx_swapbuffers();
//gfx_close();
}
int showstats(SimData* simdata) int showstats(SimData* simdata)
{ {
@@ -170,27 +184,13 @@ int showstats(SimData* simdata)
int clilooper(SimDevice* devices, int numdevices, Parameters* p, SimData* simdata, SimMap* simmap) int clilooper(SimDevice* devices, int numdevices, Parameters* p, SimData* simdata, SimMap* simmap)
{ {
slogi("preparing game loop with %i devices...", numdevices);
slogi("sending initial data to devices");
simdata->velocity = 16;
simdata->rpms = 100;
for (int x = 0; x < numdevices; x++)
{
devices[x].update(&devices[x], simdata);
}
sleep(3);
struct pollfd mypoll = { STDIN_FILENO, POLLIN|POLLPRI }; struct pollfd mypoll = { STDIN_FILENO, POLLIN|POLLPRI };
double update_rate = DEFAULT_UPDATE_RATE; double update_rate = DEFAULT_UPDATE_RATE;
char ch; char ch;
int t=0; int t=0;
int s=0; int s=0;
bool go = true; go2 = true;
while (go == true && simdata->simstatus > 1) while (go2 == true && simdata->simstatus > 1)
{ {
simdatamap(simdata, simmap, p->sim); simdatamap(simdata, simmap, p->sim);
showstats(simdata); showstats(simdata);
@@ -203,15 +203,14 @@ int clilooper(SimDevice* devices, int numdevices, Parameters* p, SimData* simdat
for (int x = 0; x < numdevices; x++) for (int x = 0; x < numdevices; x++)
{ {
devices[x].update(&devices[x], simdata); devices[x].update(&devices[x], simdata);
} }
if( poll(&mypoll, 1, 1000.0/DEFAULT_UPDATE_RATE) ) if( poll(&mypoll, 1, 1000.0/update_rate) )
{ {
scanf("%c", &ch); scanf("%c", &ch);
if(ch == 'q') if(ch == 'q')
{ {
go = false; go2 = false;
} }
} }
} }
@@ -230,6 +229,12 @@ int clilooper(SimDevice* devices, int numdevices, Parameters* p, SimData* simdat
int looper(SimDevice* devices, int numdevices, Parameters* p) int looper(SimDevice* devices, int numdevices, Parameters* p)
{ {
memset(&act, 0, sizeof(act));
act.sa_sigaction = sighandler;
act.sa_flags = SA_SIGINFO;
sigaction(SIGTERM, &act, NULL);
sigaction(SIGINT, &act, NULL);
sigaction(SIGTSTP, &act, NULL);
SimData* simdata = malloc(sizeof(SimData)); SimData* simdata = malloc(sizeof(SimData));
SimMap* simmap = malloc(sizeof(SimMap)); SimMap* simmap = malloc(sizeof(SimMap));
@@ -245,23 +250,28 @@ int looper(SimDevice* devices, int numdevices, Parameters* p)
struct pollfd mypoll = { STDIN_FILENO, POLLIN|POLLPRI }; struct pollfd mypoll = { STDIN_FILENO, POLLIN|POLLPRI };
fprintf(stdout, "Searching for sim data... Press q to quit...\n"); fprintf(stdout, "Searching for sim data... Press q to quit...\n");
p->simon = false; p->simon = false;
double update_rate = SIM_CHECK_RATE; double update_rate = SIM_CHECK_RATE;
int go = true; go = true;
while (go == true) while (go == true)
{ {
p->simon = false;
if (p->simon == false)
{
getSim(simdata, simmap, &p->simon, &p->sim); getSim(simdata, simmap, &p->simon, &p->sim);
}
if (p->simon == true) if (p->simon == true && simdata->simstatus > 1)
{ {
slogi("preparing game loop with %i devices...", numdevices);
slogi("sending initial data to devices");
simdata->velocity = 16;
simdata->rpms = 100;
for (int x = 0; x < numdevices; x++)
{
devices[x].update(&devices[x], simdata);
}
sleep(3);
clilooper(devices, numdevices, p, simdata, simmap); clilooper(devices, numdevices, p, simdata, simmap);
} }
if (p->simon == true) if (p->simon == true)
@@ -272,6 +282,8 @@ int looper(SimDevice* devices, int numdevices, Parameters* p)
} }
if (poll(&mypoll, 1, 1000.0/update_rate) ) if (poll(&mypoll, 1, 1000.0/update_rate) )
{
if (go != false )
{ {
scanf("%c", &ch); scanf("%c", &ch);
if(ch == 'q') if(ch == 'q')
@@ -280,6 +292,7 @@ int looper(SimDevice* devices, int numdevices, Parameters* p)
} }
} }
} }
}
fprintf(stdout, "\n"); fprintf(stdout, "\n");
fflush(stdout); fflush(stdout);