convert to use PrivateData

This commit is contained in:
marschap
2006-04-10 07:17:00 +00:00
parent a8f03e8b9c
commit 55342f9c88
2 changed files with 156 additions and 82 deletions
+154 -82
View File
@@ -47,13 +47,18 @@
////////////////////// Base "class" to derive from ///////////////////////
//////////////////////////////////////////////////////////////////////////
static int fd = -1;
static int width = 0;
static int height = 0;
static int cellwidth = 5;
static int cellheight = 8;
static char *framebuf = NULL;
static char ccmode = CCMODE_STANDARD;
typedef struct driver_private_data {
char device[256];
int speed;
int fd;
int width;
int height;
int cellwidth;
int cellheight;
char *framebuf;
char ccmode;
} PrivateData;
/////////////////////////////////////////////////////////////
/* Declare a bunch of global, static custom character data */
@@ -340,57 +345,58 @@ MODULE_EXPORT char *symbol_prefix = "bayrad_";
MODULE_EXPORT int
bayrad_init(Driver *drvthis)
{
PrivateData *p;
struct termios portset;
char device[256] = BAYRAD_DEFAULT_DEVICE;
int speed = B9600;
struct termios portset;
width = 20;
height = 2;
framebuf = malloc(width * height);
if (framebuf == NULL) {
bayrad_close(drvthis);
report(RPT_ERR, "bayrad_init: Error: unable to create BayRAD framebuffer.");
/* Allocate and store private data */
p = (PrivateData *) calloc(1, sizeof(PrivateData));
if (p == NULL)
return -1;
if (drvthis->store_private_ptr(drvthis, p))
return -1;
}
memset(framebuf, ' ', width * height);
/* initialize private data */
p->fd = -1;
p->speed = B9600;
p->width = 20;
p->height = 2;
p->cellwidth = 5;
p->cellheight = 8;
p->framebuf = NULL;
p->ccmode = CCMODE_STANDARD;
//cellheight = 5;
//cellwidth = 8;
/* Read config file */
/* What device should be used */
strncpy(device, drvthis->config_get_string(drvthis->name, "Device", 0,
BAYRAD_DEFAULT_DEVICE), sizeof(device));
device[sizeof(device)-1] = '\0';
report(RPT_INFO, "%s: using Device %s", drvthis->name, device);
strncpy(p->device, drvthis->config_get_string(drvthis->name, "Device", 0,
BAYRAD_DEFAULT_DEVICE), sizeof(p->device));
p->device[sizeof(p->device)-1] = '\0';
report(RPT_INFO, "%s: using Device %s", drvthis->name, p->device);
/* What speed to use */
speed = drvthis->config_get_int(drvthis->name, "Speed", 0, 9600);
p->speed = drvthis->config_get_int(drvthis->name, "Speed", 0, 9600);
if (speed == 1200) speed = B1200;
else if (speed == 2400) speed = B2400;
else if (speed == 9600) speed = B9600;
else if (speed == 19200) speed = B19200;
if (p->speed == 1200) p->speed = B1200;
else if (p->speed == 2400) p->speed = B2400;
else if (p->speed == 9600) p->speed = B9600;
else if (p->speed == 19200) p->speed = B19200;
else {
report(RPT_WARNING, "%s: illegal Speed %d; must be one of 1200, 2400, 9600 or 19200; using default %d",
drvthis->name, speed, 9600);
speed = B9600;
drvthis->name, p->speed, 9600);
p->speed = B9600;
}
// Set up io port correctly, and open it...
fd = open(device, O_RDWR | O_NOCTTY | O_NDELAY);
if (fd == -1) {
report(RPT_ERR, "%s: open(%s) failed (%s)", drvthis->name, device, strerror(errno));
p->fd = open(p->device, O_RDWR | O_NOCTTY | O_NDELAY);
if (p->fd == -1) {
report(RPT_ERR, "%s: open(%s) failed (%s)", drvthis->name, p->device, strerror(errno));
return -1;
}
//else debug(RPT_DEBUG, "bayrad_init: opened device %s", device);
tcflush(fd, TCIOFLUSH);
tcflush(p->fd, TCIOFLUSH);
// We use RAW mode
#ifdef HAVE_CFMAKERAW
@@ -414,19 +420,27 @@ bayrad_init(Driver *drvthis)
cfsetispeed(&portset, B0);
// Do it...
tcsetattr(fd, TCSANOW, &portset);
tcflush(fd, TCIOFLUSH);
tcsetattr(p->fd, TCSANOW, &portset);
tcflush(p->fd, TCIOFLUSH);
/*------------------------------------*/
p->framebuf = malloc(p->width * p->height);
if (p->framebuf == NULL) {
bayrad_close(drvthis);
report(RPT_ERR, "%s: Error: unable to create framebuffer", drvthis->name);
return -1;
}
memset(p->framebuf, ' ', p->width * p->height);
/*** Open the port write-only, then fork off a process that reads chars ?!!? ***/
/* Reset and clear the BayRAD */
write(fd, "\x80\x86\x00\x1a\x1e", 5); // sync,reset to type 0, clear screen, home
write(p->fd, "\x80\x86\x00\x1a\x1e", 5); // sync,reset to type 0, clear screen, home
report(RPT_DEBUG, "%s: init() done", drvthis->name);
return 0;
return 1;
}
@@ -437,15 +451,21 @@ bayrad_init(Driver *drvthis)
MODULE_EXPORT void
bayrad_close(Driver * drvthis)
{
//debug(RPT_DEBUG, "Closing BayRAD");
if (fd >= 0) {
write(fd, "\x8e\x00", 2); // Backlight OFF
close(fd);
}
PrivateData *p = drvthis->private_data;
if (framebuf != NULL)
free(framebuf);
framebuf = NULL;
//debug(RPT_DEBUG, "Closing BayRAD");
if (p != NULL) {
if (p->fd >= 0) {
write(p->fd, "\x8e\x00", 2); // Backlight OFF
close(p->fd);
}
if (p->framebuf != NULL)
free(p->framebuf);
free(p);
}
drvthis->store_private_ptr(drvthis, NULL);
}
@@ -455,7 +475,9 @@ bayrad_close(Driver * drvthis)
MODULE_EXPORT int
bayrad_width(Driver * drvthis)
{
return width;
PrivateData *p = drvthis->private_data;
return p->width;
}
@@ -465,7 +487,33 @@ bayrad_width(Driver * drvthis)
MODULE_EXPORT int
bayrad_height(Driver * drvthis)
{
return height;
PrivateData *p = drvthis->private_data;
return p->cellheight;
}
/////////////////////////////////////////////////////////////////
// Returns the display's cell width
//
MODULE_EXPORT int
bayrad_cellwidth(Driver * drvthis)
{
PrivateData *p = drvthis->private_data;
return p->width;
}
/////////////////////////////////////////////////////////////////
// Returns the display's cell height
//
MODULE_EXPORT int
bayrad_cellheight(Driver * drvthis)
{
PrivateData *p = drvthis->private_data;
return p->cellheight;
}
@@ -475,8 +523,10 @@ bayrad_height(Driver * drvthis)
MODULE_EXPORT void
bayrad_clear(Driver * drvthis)
{
memset(framebuf, ' ', width * height);
ccmode = CCMODE_STANDARD;
PrivateData *p = drvthis->private_data;
memset(p->framebuf, ' ', p->width * p->height);
p->ccmode = CCMODE_STANDARD;
}
@@ -486,11 +536,13 @@ bayrad_clear(Driver * drvthis)
MODULE_EXPORT void
bayrad_flush(Driver * drvthis)
{
PrivateData *p = drvthis->private_data;
//debug(RPT_DEBUG, "BayRAD flush");
write(fd, "\x80\x1e", 2); //sync, home
write(fd, framebuf, 20);
write(fd, "\x1e\x0a", 2); //home, LF
write(fd, framebuf+20, 20);
write(p->fd, "\x80\x1e", 2); //sync, home
write(p->fd, p->framebuf, 20);
write(p->fd, "\x1e\x0a", 2); //home, LF
write(p->fd, p->framebuf+20, 20);
}
/////////////////////////////////////////////////////////////////
@@ -500,6 +552,7 @@ bayrad_flush(Driver * drvthis)
MODULE_EXPORT void
bayrad_string(Driver * drvthis, int x, int y, char string[])
{
PrivateData *p = drvthis->private_data;
int i;
//debug(RPT_DEBUG, "Putting string %s at %i, %i", string, x, y);
@@ -511,7 +564,7 @@ bayrad_string(Driver * drvthis, int x, int y, char string[])
unsigned char c = (unsigned char) string[i];
// Check for buffer overflows...
if ((y * width) + x + i > (width * height))
if ((y * p->width) + x + i > (p->width * p->height))
break;
if ((c > 0x7F) && (c < 0x98)) {
@@ -524,7 +577,7 @@ bayrad_string(Driver * drvthis, int x, int y, char string[])
if (c < 8) /* The custom characters are mapped at 0x98 - 0x9F, */
c += 0x98; /* as 0x07 makes a beep instead of printing a character */
framebuf[(y * width) + x + i] = c;
p->framebuf[(y * p->width) + x + i] = c;
}
}
@@ -535,6 +588,7 @@ bayrad_string(Driver * drvthis, int x, int y, char string[])
MODULE_EXPORT void
bayrad_chr(Driver * drvthis, int x, int y, char c)
{
PrivateData *p = drvthis->private_data;
unsigned char ch = (unsigned char) c;
//debug(RPT_DEBUG, "Putting char %c (%#x) at %i, %i", c, c, x, y);
@@ -549,8 +603,7 @@ bayrad_chr(Driver * drvthis, int x, int y, char c)
}
/* No shifting the custom chars here, so bayrad_chr() can beep */
framebuf[(y * width) + x] = ch;
p->framebuf[(y * p->width) + x] = ch;
}
//////////////////////////////////////////////////////////////////////
@@ -559,6 +612,8 @@ bayrad_chr(Driver * drvthis, int x, int y, char c)
MODULE_EXPORT void
bayrad_backlight(Driver * drvthis, int on)
{
//PrivateData *p = drvthis->private_data;
/* This violates the LCDd driver model, but it does leave the
* backlight control entirely in the hands of the user via
* BayRAd buttons, which is nice, since the backlights have
@@ -566,12 +621,12 @@ bayrad_backlight(Driver * drvthis, int on)
if (on) {
;
//write(fd, "\x8e\x0f", 2);
//write(p->fd, "\x8e\x0f", 2);
//debug(RPT_DEBUG, "Backlight ON");
}
else {
;
//write(fd, "\x8e\x00", 2);
//write(p->fd, "\x8e\x00", 2);
//debug(RPT_DEBUG, "Backlight OFF");
}
}
@@ -582,20 +637,22 @@ bayrad_backlight(Driver * drvthis, int on)
void
bayrad_init_vbar(Driver * drvthis)
{
PrivateData *p = drvthis->private_data;
//debug(RPT_DEBUG,"Init Vertical bars.");
if (ccmode == CCMODE_VBAR) {
if (p->ccmode == CCMODE_VBAR) {
/* Work already done */
return;
}
if (ccmode != CCMODE_STANDARD) {
if (p->ccmode != CCMODE_STANDARD) {
/* Not supported (yet) */
report(RPT_WARNING, "%s: cannot combine two modes using user defined characters",
drvthis->name);
return;
}
ccmode = CCMODE_VBAR;
p->ccmode = CCMODE_VBAR;
bayrad_set_char(drvthis, 1, bar_up[0]);
bayrad_set_char(drvthis, 2, bar_up[1]);
@@ -612,20 +669,22 @@ bayrad_init_vbar(Driver * drvthis)
void
bayrad_init_hbar(Driver * drvthis)
{
PrivateData *p = drvthis->private_data;
//debug(RPT_DEBUG,"Init Horizontal bars.");
if (ccmode == CCMODE_HBAR) {
if (p->ccmode == CCMODE_HBAR) {
/* Work already done */
return;
}
if (ccmode != CCMODE_STANDARD) {
if (p->ccmode != CCMODE_STANDARD) {
/* Not supported (yet) */
report(RPT_WARNING, "%s: cannot combine two modes using user defined characters",
drvthis->name);
return;
}
ccmode = CCMODE_HBAR;
p->ccmode = CCMODE_HBAR;
bayrad_set_char(drvthis, 1, bar_right[0]);
bayrad_set_char(drvthis, 2, bar_right[1]);
@@ -640,6 +699,8 @@ bayrad_init_hbar(Driver * drvthis)
void
bayrad_init_num(Driver * drvthis)
{
//PrivateData *p = drvthis->private_data;
// debug(RPT_DEBUG,"Big Numbers.");
}
@@ -649,6 +710,8 @@ bayrad_init_num(Driver * drvthis)
MODULE_EXPORT void
bayrad_num(Driver * drvthis, int x, int num)
{
//PrivateData *p = drvthis->private_data;
// debug(RPT_DEBUG,"BigNum(%i, %i)", x, num);
}
@@ -658,6 +721,7 @@ bayrad_num(Driver * drvthis, int x, int num)
MODULE_EXPORT void
bayrad_set_char(Driver * drvthis, int n, char *dat)
{
PrivateData *p = drvthis->private_data;
char out[4];
int row, col;
@@ -671,20 +735,20 @@ bayrad_set_char(Driver * drvthis, int n, char *dat)
/* Set the LCD to accept data for rewrite-able char n */
snprintf(out, sizeof(out), "\x88%c", 0x40 + (n * 8));
write(fd, out, 2);
write(p->fd, out, 2);
for (row = 0; row < cellheight; row++) {
for (row = 0; row < p->cellheight; row++) {
char letter = 0;
for (col = 0; col < cellwidth; col++) {
for (col = 0; col < p->cellwidth; col++) {
letter <<= 1;
letter |= (dat[(row*cellwidth) + col] > 0);
letter |= (dat[(row * p->cellwidth) + col] > 0);
}
write(fd, &letter, 1);
write(p->fd, &letter, 1);
}
/* return the LCD to normal operation */
write(fd, "\x80", 1);
write(p->fd, "\x80", 1);
}
/////////////////////////////////////////////////////////////////
@@ -693,6 +757,8 @@ bayrad_set_char(Driver * drvthis, int n, char *dat)
MODULE_EXPORT void
bayrad_vbar(Driver * drvthis, int x, int y, int len, int promille, int options)
{
PrivateData *p = drvthis->private_data;
//debug(RPT_DEBUG, "Vbar at %i, length %i", x, len);
/* x and y are the start position of the bar.
@@ -704,7 +770,7 @@ bayrad_vbar(Driver * drvthis, int x, int y, int len, int promille, int options)
bayrad_init_vbar(drvthis);
lib_vbar_static(drvthis, x, y, len, promille, options, cellheight, 0x98);
lib_vbar_static(drvthis, x, y, len, promille, options, p->cellheight, 0x98);
}
/////////////////////////////////////////////////////////////////
@@ -713,6 +779,8 @@ bayrad_vbar(Driver * drvthis, int x, int y, int len, int promille, int options)
MODULE_EXPORT void
bayrad_hbar(Driver * drvthis, int x, int y, int len, int promille, int options)
{
PrivateData *p = drvthis->private_data;
//debug(RPT_DEBUG, "Hbar at %i,%i; length %i", x, y, len);
/* x and y are the start position of the bar.
@@ -724,7 +792,7 @@ bayrad_hbar(Driver * drvthis, int x, int y, int len, int promille, int options)
bayrad_init_hbar(drvthis);
lib_hbar_static(drvthis, x, y, len, promille, options, cellwidth, 0x98);
lib_hbar_static(drvthis, x, y, len, promille, options, p->cellwidth, 0x98);
}
@@ -734,6 +802,8 @@ bayrad_hbar(Driver * drvthis, int x, int y, int len, int promille, int options)
MODULE_EXPORT int
bayrad_icon(Driver * drvthis, int x, int y, int icon)
{
//PrivateData *p = drvthis->private_data;
switch (icon) {
case ICON_BLOCK_FILLED:
bayrad_chr( drvthis, x, y, 0xFF );
@@ -753,6 +823,8 @@ bayrad_icon(Driver * drvthis, int x, int y, int icon)
MODULE_EXPORT const char *
bayrad_get_key(Driver * drvthis)
{
PrivateData *p = drvthis->private_data;
fd_set brfdset;
struct timeval twait;
char readchar;
@@ -766,21 +838,21 @@ bayrad_get_key(Driver * drvthis)
/* TODO: NEEDS TO BE ADAPTED TO RETURN REAL KEY DESCRIPTION STRINGS ! */
FD_ZERO(&brfdset);
FD_SET(fd, &brfdset);
FD_SET(p->fd, &brfdset);
twait.tv_sec = 0;
twait.tv_usec = 0;
if (select(fd+1, &brfdset, NULL, NULL, &twait)) {
retval = read(fd, &readchar, 1);
if (select(p->fd + 1, &brfdset, NULL, NULL, &twait)) {
retval = read(p->fd, &readchar, 1);
if (retval > 0) {
debug(RPT_INFO, "bayrad_get_key: Got key: %c", readchar);
if (readchar == 'Y') {
write(fd, "\x8e\x0f", 2);
write(p->fd, "\x8e\x0f", 2);
}
else if (readchar == 'N') {
write(fd, "\x8e\x00", 2);
write(p->fd, "\x8e\x00", 2);
}
} /* if read returned data */
else {
+2
View File
@@ -14,6 +14,8 @@ MODULE_EXPORT int bayrad_init(Driver * drvthis);
MODULE_EXPORT void bayrad_close(Driver * drvthis);
MODULE_EXPORT int bayrad_width(Driver * drvthis);
MODULE_EXPORT int bayrad_height(Driver * drvthis);
MODULE_EXPORT int bayrad_cellwidth(Driver * drvthis);
MODULE_EXPORT int bayrad_cellheight(Driver * drvthis);
MODULE_EXPORT void bayrad_clear(Driver * drvthis);
MODULE_EXPORT void bayrad_flush(Driver * drvthis);
MODULE_EXPORT void bayrad_string(Driver * drvthis, int x, int y, char string[]);