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/* |
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* video_x.cpp - Video/graphics emulation, X11 specific stuff |
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* |
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* SheepShaver (C) 1997-2004 Marc Hellwig and Christian Bauer |
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* SheepShaver (C) 1997-2005 Marc Hellwig and Christian Bauer |
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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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* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA |
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*/ |
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|
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/* |
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* NOTES: |
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* The Ctrl key works like a qualifier for special actions: |
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* Ctrl-Tab = suspend DGA mode |
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* Ctrl-Esc = emergency quit |
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* Ctrl-F1 = mount floppy |
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* Ctrl-F5 = grab mouse (in windowed mode) |
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*/ |
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|
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#include "sysdeps.h" |
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#include <X11/Xlib.h> |
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#include <algorithm> |
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|
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#ifdef ENABLE_FBDEV_DGA |
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# include <linux/fb.h> |
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# include <sys/ioctl.h> |
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#endif |
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|
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#ifdef ENABLE_XF86_DGA |
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# include <X11/extensions/xf86dga.h> |
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#endif |
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#include "about_window.h" |
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#include "video.h" |
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#include "video_defs.h" |
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#include "video_blit.h" |
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|
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#define DEBUG 0 |
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#include "debug.h" |
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static int16 mouse_wheel_lines; |
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static bool redraw_thread_active = false; // Flag: Redraw thread installed |
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static pthread_attr_t redraw_thread_attr; // Redraw thread attributes |
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static volatile bool redraw_thread_cancel; // Flag: Cancel Redraw thread |
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static pthread_t redraw_thread; // Redraw thread |
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|
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static bool local_X11; // Flag: X server running on local machine? |
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|
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static bool palette_changed = false; // Flag: Palette changed, redraw thread must update palette |
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static bool ctrl_down = false; // Flag: Ctrl key pressed |
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static bool caps_on = false; // Flag: Caps Lock on |
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static bool quit_full_screen = false; // Flag: DGA close requested from redraw thread |
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static volatile bool quit_full_screen_ack = false; // Acknowledge for quit_full_screen |
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static bool emerg_quit = false; // Flag: Ctrl-Esc pressed, emergency quit requested from MacOS thread |
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static Window rootwin, the_win; // Root window and our window |
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static int num_depths = 0; // Number of available X depths |
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static int *avail_depths = NULL; // List of available X depths |
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static VisualFormat visualFormat; |
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static XVisualInfo visualInfo; |
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static Visual *vis; |
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static int color_class; |
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static int rshift, rloss, gshift, gloss, bshift, bloss; // Pixel format of DirectColor/TrueColor modes |
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static Colormap cmap[2]; // Two colormaps (DGA) for 8-bit mode |
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static XColor x_palette[256]; // Color palette to be used as CLUT and gamma table |
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static int orig_accel_numer, orig_accel_denom, orig_threshold; // Original mouse acceleration |
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|
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static XColor black, white; |
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static unsigned long black_pixel, white_pixel; |
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static uint32 the_buffer_size; // Size of allocated the_buffer |
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|
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// Variables for DGA mode |
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static bool is_fbdev_dga_mode = false; // Flag: Use FBDev DGA mode? |
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static int current_dga_cmap; |
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|
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#ifdef ENABLE_FBDEV_DGA |
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static int fb_dev_fd = -1; // Handle to fb device name |
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static struct fb_fix_screeninfo fb_finfo; // Fixed info |
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static struct fb_var_screeninfo fb_vinfo; // Variable info |
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static struct fb_var_screeninfo fb_orig_vinfo; // Variable info to restore later |
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static struct fb_cmap fb_oldcmap; // Colormap to restore later |
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#endif |
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|
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#ifdef ENABLE_XF86_VIDMODE |
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// Variables for XF86 VidMode support |
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static XF86VidModeModeInfo **x_video_modes; // Array of all available modes |
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#define UNLOCK_PALETTE |
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#endif |
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|
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// Mutex to protect frame buffer |
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#ifdef HAVE_SPINLOCKS |
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static spinlock_t frame_buffer_lock = SPIN_LOCK_UNLOCKED; |
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#define LOCK_FRAME_BUFFER spin_lock(&frame_buffer_lock) |
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#define UNLOCK_FRAME_BUFFER spin_unlock(&frame_buffer_lock) |
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#elif defined(HAVE_PTHREADS) |
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static pthread_mutex_t frame_buffer_lock = PTHREAD_MUTEX_INITIALIZER; |
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#define LOCK_FRAME_BUFFER pthread_mutex_lock(&frame_buffer_lock); |
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#define UNLOCK_FRAME_BUFFER pthread_mutex_unlock(&frame_buffer_lock); |
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#else |
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#define LOCK_FRAME_BUFFER |
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#define UNLOCK_FRAME_BUFFER |
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#endif |
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|
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|
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// Prototypes |
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static void *redraw_func(void *arg); |
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* Open display (window or fullscreen) |
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*/ |
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|
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// Set window name and class |
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static void set_window_name(Window w, int name) |
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{ |
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const char *str = GetString(name); |
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XStoreName(x_display, w, str); |
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XSetIconName(x_display, w, str); |
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|
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XClassHint *hints; |
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hints = XAllocClassHint(); |
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if (hints) { |
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hints->res_name = "SheepShaver"; |
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hints->res_class = "SheepShaver"; |
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XSetClassHint(x_display, w, hints); |
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XFree(hints); |
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} |
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} |
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|
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// Set window input focus flag |
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static void set_window_focus(Window w) |
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{ |
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XWMHints *hints = XAllocWMHints(); |
426 |
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if (hints) { |
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hints->input = True; |
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hints->initial_state = NormalState; |
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hints->flags = InputHint | StateHint; |
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XSetWMHints(x_display, w, hints); |
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XFree(hints); |
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} |
433 |
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} |
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|
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// Set WM_DELETE_WINDOW protocol on window (preventing it from being destroyed by the WM when clicking on the "close" widget) |
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static Atom WM_DELETE_WINDOW = (Atom)0; |
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static void set_window_delete_protocol(Window w) |
457 |
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} while ((e.type != UnmapNotify) || (e.xmap.event != w)); |
458 |
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} |
459 |
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|
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// Disable mouse acceleration |
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static void disable_mouse_accel(void) |
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{ |
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XChangePointerControl(x_display, True, False, 1, 1, 0); |
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} |
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|
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// Restore mouse acceleration to original value |
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static void restore_mouse_accel(void) |
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{ |
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XChangePointerControl(x_display, True, True, orig_accel_numer, orig_accel_denom, orig_threshold); |
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} |
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|
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// Trap SHM errors |
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static bool shm_error = false; |
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static int (*old_error_handler)(Display *, XErrorEvent *); |
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the_win = XCreateWindow(x_display, rootwin, 0, 0, width, height, 0, xdepth, |
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InputOutput, vis, CWEventMask | CWBackPixel | CWBorderPixel | CWBackingStore | CWColormap, &wattr); |
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|
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// Set window name |
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XStoreName(x_display, the_win, GetString(STR_WINDOW_TITLE)); |
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// Set window name/class |
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set_window_name(the_win, STR_WINDOW_TITLE); |
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|
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// Indicate that we want keyboard input |
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set_window_focus(the_win); |
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|
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// Set delete protocol property |
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set_window_delete_protocol(the_win); |
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the_buffer = (uint8 *)malloc((aligned_height + 2) * img->bytes_per_line); |
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D(bug("the_buffer = %p, the_buffer_copy = %p\n", the_buffer, the_buffer_copy)); |
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#endif |
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screen_base = (uint32)the_buffer; |
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screen_base = Host2MacAddr(the_buffer); |
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|
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// Create GC |
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the_gc = XCreateGC(x_display, the_win, 0, 0); |
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native_byte_order = (XImageByteOrder(x_display) == LSBFirst); |
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#endif |
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#ifdef ENABLE_VOSF |
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Screen_blitter_init(&visualInfo, native_byte_order, depth); |
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Screen_blitter_init(visualFormat, native_byte_order, depth); |
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#endif |
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// Set bytes per row |
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return true; |
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} |
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|
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// Open FBDev display |
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static bool open_fbdev(int width, int height) |
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{ |
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#ifdef ENABLE_FBDEV_DGA |
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if (ioctl(fb_dev_fd, FBIOGET_FSCREENINFO, &fb_finfo) != 0) { |
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D(bug("[fbdev] Can't get FSCREENINFO: %s\n", strerror(errno))); |
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return false; |
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} |
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D(bug("[fbdev] Device ID: %s\n", fb_finfo.id)); |
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D(bug("[fbdev] smem_start: %p [%d bytes]\n", fb_finfo.smem_start, fb_finfo.smem_len)); |
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int fb_type = fb_finfo.type; |
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const char *fb_type_str = NULL; |
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switch (fb_type) { |
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case FB_TYPE_PACKED_PIXELS: fb_type_str = "Packed Pixels"; break; |
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case FB_TYPE_PLANES: fb_type_str = "Non interleaved planes"; break; |
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case FB_TYPE_INTERLEAVED_PLANES: fb_type_str = "Interleaved planes"; break; |
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case FB_TYPE_TEXT: fb_type_str = "Text/attributes"; break; |
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case FB_TYPE_VGA_PLANES: fb_type_str = "EGA/VGA planes"; break; |
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default: fb_type_str = "<unknown>"; break; |
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} |
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D(bug("[fbdev] type: %s\n", fb_type_str)); |
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int fb_visual = fb_finfo.visual; |
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const char *fb_visual_str; |
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switch (fb_visual) { |
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case FB_VISUAL_MONO01: fb_visual_str = "Monochrome 1=Black 0=White"; break; |
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case FB_VISUAL_MONO10: fb_visual_str = "Monochrome 1=While 0=Black"; break; |
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case FB_VISUAL_TRUECOLOR: fb_visual_str = "True color"; break; |
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case FB_VISUAL_PSEUDOCOLOR: fb_visual_str = "Pseudo color (like atari)"; break; |
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case FB_VISUAL_DIRECTCOLOR: fb_visual_str = "Direct color"; break; |
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case FB_VISUAL_STATIC_PSEUDOCOLOR: fb_visual_str = "Pseudo color readonly"; break; |
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default: fb_visual_str = "<unknown>"; break; |
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} |
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D(bug("[fbdev] visual: %s\n", fb_visual_str)); |
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|
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if (fb_type != FB_TYPE_PACKED_PIXELS) { |
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D(bug("[fbdev] type %s not supported\n", fb_type_str)); |
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return false; |
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} |
674 |
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|
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// Map frame buffer |
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the_buffer = (uint8 *)mmap(NULL, fb_finfo.smem_len, PROT_READ | PROT_WRITE, MAP_SHARED, fb_dev_fd, 0); |
677 |
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if (the_buffer == MAP_FAILED) { |
678 |
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D(bug("[fbdev] Can't mmap /dev/fb0: %s\n", strerror(errno))); |
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return false; |
680 |
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} |
681 |
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|
682 |
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// Set absolute mouse mode |
683 |
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ADBSetRelMouseMode(false); |
684 |
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|
685 |
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// Create window |
686 |
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XSetWindowAttributes wattr; |
687 |
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wattr.event_mask = eventmask = dga_eventmask; |
688 |
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wattr.override_redirect = True; |
689 |
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wattr.colormap = (depth == 1 ? DefaultColormap(x_display, screen) : cmap[0]); |
690 |
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the_win = XCreateWindow(x_display, rootwin, 0, 0, width, height, 0, xdepth, |
691 |
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InputOutput, vis, CWEventMask | CWOverrideRedirect | |
692 |
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(color_class == DirectColor ? CWColormap : 0), &wattr); |
693 |
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|
694 |
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// Show window |
695 |
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XMapRaised(x_display, the_win); |
696 |
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wait_mapped(the_win); |
697 |
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|
698 |
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// Grab mouse and keyboard |
699 |
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XGrabKeyboard(x_display, the_win, True, |
700 |
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GrabModeAsync, GrabModeAsync, CurrentTime); |
701 |
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XGrabPointer(x_display, the_win, True, |
702 |
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PointerMotionMask | ButtonPressMask | ButtonReleaseMask, |
703 |
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GrabModeAsync, GrabModeAsync, None, None, CurrentTime); |
704 |
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disable_mouse_accel(); |
705 |
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|
706 |
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// Create no_cursor |
707 |
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mac_cursor = XCreatePixmapCursor(x_display, |
708 |
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XCreatePixmap(x_display, the_win, 1, 1, 1), |
709 |
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XCreatePixmap(x_display, the_win, 1, 1, 1), |
710 |
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&black, &white, 0, 0); |
711 |
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XDefineCursor(x_display, the_win, mac_cursor); |
712 |
+ |
|
713 |
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// Init blitting routines |
714 |
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int bytes_per_row = TrivialBytesPerRow((width + 7) & ~7, DepthModeForPixelDepth(depth)); |
715 |
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#if ENABLE_VOSF |
716 |
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bool native_byte_order; |
717 |
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#ifdef WORDS_BIGENDIAN |
718 |
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native_byte_order = (XImageByteOrder(x_display) == MSBFirst); |
719 |
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#else |
720 |
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native_byte_order = (XImageByteOrder(x_display) == LSBFirst); |
721 |
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#endif |
722 |
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#if REAL_ADDRESSING || DIRECT_ADDRESSING |
723 |
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// Screen_blitter_init() returns TRUE if VOSF is mandatory |
724 |
+ |
// i.e. the framebuffer update function is not Blit_Copy_Raw |
725 |
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use_vosf = Screen_blitter_init(visualFormat, native_byte_order, depth); |
726 |
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|
727 |
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if (use_vosf) { |
728 |
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// Allocate memory for frame buffer (SIZE is extended to page-boundary) |
729 |
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the_host_buffer = the_buffer; |
730 |
+ |
the_buffer_size = page_extend((height + 2) * bytes_per_row); |
731 |
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the_buffer_copy = (uint8 *)malloc(the_buffer_size); |
732 |
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the_buffer = (uint8 *)vm_acquire(the_buffer_size); |
733 |
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D(bug("the_buffer = %p, the_buffer_copy = %p, the_host_buffer = %p\n", the_buffer, the_buffer_copy, the_host_buffer)); |
734 |
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} |
735 |
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#else |
736 |
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use_vosf = false; |
737 |
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#endif |
738 |
+ |
#endif |
739 |
+ |
|
740 |
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// Set frame buffer base |
741 |
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D(bug("the_buffer = %p, use_vosf = %d\n", the_buffer, use_vosf)); |
742 |
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screen_base = Host2MacAddr(the_buffer); |
743 |
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VModes[cur_mode].viRowBytes = bytes_per_row; |
744 |
+ |
return true; |
745 |
+ |
#else |
746 |
+ |
ErrorAlert("SheepShaver has been compiled with DGA support disabled."); |
747 |
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return false; |
748 |
+ |
#endif |
749 |
+ |
} |
750 |
+ |
|
751 |
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// Open DGA display (!! should use X11 VidMode extensions to set mode) |
752 |
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static bool open_dga(int width, int height) |
753 |
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{ |
754 |
+ |
if (is_fbdev_dga_mode) |
755 |
+ |
return false; |
756 |
+ |
|
757 |
|
#ifdef ENABLE_XF86_DGA |
758 |
|
// Set relative mouse mode |
759 |
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ADBSetRelMouseMode(true); |
817 |
|
#if REAL_ADDRESSING || DIRECT_ADDRESSING |
818 |
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// Screen_blitter_init() returns TRUE if VOSF is mandatory |
819 |
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// i.e. the framebuffer update function is not Blit_Copy_Raw |
820 |
< |
use_vosf = Screen_blitter_init(&visualInfo, native_byte_order, depth); |
820 |
> |
use_vosf = Screen_blitter_init(visualFormat, native_byte_order, depth); |
821 |
|
|
822 |
|
if (use_vosf) { |
823 |
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// Allocate memory for frame buffer (SIZE is extended to page-boundary) |
834 |
|
|
835 |
|
// Set frame buffer base |
836 |
|
D(bug("the_buffer = %p, use_vosf = %d\n", the_buffer, use_vosf)); |
837 |
< |
screen_base = (uint32)the_buffer; |
837 |
> |
screen_base = Host2MacAddr(the_buffer); |
838 |
|
VModes[cur_mode].viRowBytes = bytes_per_row; |
839 |
|
return true; |
840 |
|
#else |
848 |
|
D(bug("open_display()\n")); |
849 |
|
const VideoInfo &mode = VModes[cur_mode]; |
850 |
|
|
851 |
+ |
// Get original mouse acceleration |
852 |
+ |
XGetPointerControl(x_display, &orig_accel_numer, &orig_accel_denom, &orig_threshold); |
853 |
+ |
|
854 |
|
// Find best available X visual |
855 |
|
if (!find_visual_for_depth(mode.viAppleMode)) { |
856 |
|
ErrorAlert(GetString(STR_NO_XVISUAL_ERR)); |
857 |
|
return false; |
858 |
|
} |
859 |
|
|
860 |
+ |
// Build up visualFormat structure |
861 |
+ |
visualFormat.depth = visualInfo.depth; |
862 |
+ |
visualFormat.Rmask = visualInfo.red_mask; |
863 |
+ |
visualFormat.Gmask = visualInfo.green_mask; |
864 |
+ |
visualFormat.Bmask = visualInfo.blue_mask; |
865 |
+ |
|
866 |
|
// Create color maps |
867 |
|
if (color_class == PseudoColor || color_class == DirectColor) { |
868 |
|
cmap[0] = XCreateColormap(x_display, rootwin, vis, AllocAll); |
931 |
|
depth = depth_of_video_mode(mode.viAppleMode); |
932 |
|
|
933 |
|
bool display_open = false; |
934 |
< |
if (display_type == DIS_SCREEN) |
934 |
> |
if (display_type == DIS_SCREEN) { |
935 |
|
display_open = open_dga(VModes[cur_mode].viXsize, VModes[cur_mode].viYsize); |
936 |
+ |
#ifdef ENABLE_FBDEV_DGA |
937 |
+ |
// Try to fallback to FBDev DGA mode |
938 |
+ |
if (!display_open) { |
939 |
+ |
is_fbdev_dga_mode = true; |
940 |
+ |
display_open = open_fbdev(VModes[cur_mode].viXsize, VModes[cur_mode].viYsize); |
941 |
+ |
} |
942 |
+ |
#endif |
943 |
+ |
|
944 |
+ |
} |
945 |
|
else if (display_type == DIS_WINDOW) |
946 |
|
display_open = open_window(VModes[cur_mode].viXsize, VModes[cur_mode].viYsize); |
947 |
|
|
990 |
|
XSync(x_display, false); |
991 |
|
} |
992 |
|
|
993 |
+ |
// Close FBDev mode |
994 |
+ |
static void close_fbdev(void) |
995 |
+ |
{ |
996 |
+ |
#ifdef ENABLE_FBDEV_DGA |
997 |
+ |
XUngrabPointer(x_display, CurrentTime); |
998 |
+ |
XUngrabKeyboard(x_display, CurrentTime); |
999 |
+ |
|
1000 |
+ |
uint8 *fb_base; |
1001 |
+ |
if (!use_vosf) { |
1002 |
+ |
// don't free() the screen buffer in driver_base dtor |
1003 |
+ |
fb_base = the_buffer; |
1004 |
+ |
the_buffer = NULL; |
1005 |
+ |
} |
1006 |
+ |
#ifdef ENABLE_VOSF |
1007 |
+ |
else { |
1008 |
+ |
// don't free() the screen buffer in driver_base dtor |
1009 |
+ |
fb_base = the_host_buffer; |
1010 |
+ |
the_host_buffer = NULL; |
1011 |
+ |
} |
1012 |
+ |
#endif |
1013 |
+ |
munmap(fb_base, fb_finfo.smem_len); |
1014 |
+ |
#endif |
1015 |
+ |
} |
1016 |
+ |
|
1017 |
|
// Close DGA mode |
1018 |
|
static void close_dga(void) |
1019 |
|
{ |
1020 |
+ |
if (is_fbdev_dga_mode) |
1021 |
+ |
return; |
1022 |
+ |
|
1023 |
|
#ifdef ENABLE_XF86_DGA |
1024 |
|
XF86DGADirectVideo(x_display, screen, 0); |
1025 |
|
XUngrabPointer(x_display, CurrentTime); |
1045 |
|
|
1046 |
|
static void close_display(void) |
1047 |
|
{ |
1048 |
< |
if (display_type == DIS_SCREEN) |
1049 |
< |
close_dga(); |
1048 |
> |
if (display_type == DIS_SCREEN) { |
1049 |
> |
if (is_fbdev_dga_mode) |
1050 |
> |
close_fbdev(); |
1051 |
> |
else |
1052 |
> |
close_dga(); |
1053 |
> |
} |
1054 |
|
else if (display_type == DIS_WINDOW) |
1055 |
|
close_window(); |
1056 |
|
|
1105 |
|
} |
1106 |
|
} |
1107 |
|
#endif |
1108 |
+ |
|
1109 |
+ |
// Restore mouse acceleration |
1110 |
+ |
restore_mouse_accel(); |
1111 |
|
} |
1112 |
|
|
1113 |
|
|
1139 |
|
|
1140 |
|
// Search for server vendor string, then read keycodes |
1141 |
|
const char *vendor = ServerVendor(x_display); |
1142 |
+ |
// Force use of MacX mappings on MacOS X with Apple's X server |
1143 |
+ |
int dummy; |
1144 |
+ |
if (XQueryExtension(x_display, "Apple-DRI", &dummy, &dummy, &dummy)) |
1145 |
+ |
vendor = "MacX"; |
1146 |
|
bool vendor_found = false; |
1147 |
|
char line[256]; |
1148 |
|
while (fgets(line, 255, f)) { |
1217 |
|
return -1; |
1218 |
|
} |
1219 |
|
|
1220 |
+ |
// Add custom video mode |
1221 |
+ |
static void add_custom_mode(VideoInfo *&p, int type, uint32 x, uint32 y, int apple_mode, int apple_id) |
1222 |
+ |
{ |
1223 |
+ |
p->viType = type; |
1224 |
+ |
p->viXsize = x; |
1225 |
+ |
p->viYsize = y; |
1226 |
+ |
p->viRowBytes = TrivialBytesPerRow(p->viXsize, apple_mode); |
1227 |
+ |
p->viAppleMode = apple_mode; |
1228 |
+ |
p->viAppleID = apple_id; |
1229 |
+ |
p++; |
1230 |
+ |
} |
1231 |
+ |
|
1232 |
|
// Add mode to list of supported modes |
1233 |
|
static void add_mode(VideoInfo *&p, uint32 allow, uint32 test, int apple_mode, int apple_id, int type) |
1234 |
|
{ |
1235 |
|
if (allow & test) { |
1236 |
< |
p->viType = type; |
1236 |
> |
uint32 x = 0, y = 0; |
1237 |
|
switch (apple_id) { |
1238 |
|
case APPLE_W_640x480: |
1239 |
|
case APPLE_640x480: |
1240 |
< |
p->viXsize = 640; |
1241 |
< |
p->viYsize = 480; |
1240 |
> |
x = 640; |
1241 |
> |
y = 480; |
1242 |
|
break; |
1243 |
|
case APPLE_W_800x600: |
1244 |
|
case APPLE_800x600: |
1245 |
< |
p->viXsize = 800; |
1246 |
< |
p->viYsize = 600; |
1245 |
> |
x = 800; |
1246 |
> |
y = 600; |
1247 |
|
break; |
1248 |
|
case APPLE_1024x768: |
1249 |
< |
p->viXsize = 1024; |
1250 |
< |
p->viYsize = 768; |
1249 |
> |
x = 1024; |
1250 |
> |
y = 768; |
1251 |
|
break; |
1252 |
|
case APPLE_1152x768: |
1253 |
< |
p->viXsize = 1152; |
1254 |
< |
p->viYsize = 768; |
1253 |
> |
x = 1152; |
1254 |
> |
y = 768; |
1255 |
|
break; |
1256 |
|
case APPLE_1152x900: |
1257 |
< |
p->viXsize = 1152; |
1258 |
< |
p->viYsize = 900; |
1257 |
> |
x = 1152; |
1258 |
> |
y = 900; |
1259 |
|
break; |
1260 |
|
case APPLE_1280x1024: |
1261 |
< |
p->viXsize = 1280; |
1262 |
< |
p->viYsize = 1024; |
1261 |
> |
x = 1280; |
1262 |
> |
y = 1024; |
1263 |
|
break; |
1264 |
|
case APPLE_1600x1200: |
1265 |
< |
p->viXsize = 1600; |
1266 |
< |
p->viYsize = 1200; |
1265 |
> |
x = 1600; |
1266 |
> |
y = 1200; |
1267 |
|
break; |
1268 |
|
} |
1269 |
< |
p->viRowBytes = TrivialBytesPerRow(p->viXsize, apple_mode); |
997 |
< |
p->viAppleMode = apple_mode; |
998 |
< |
p->viAppleID = apple_id; |
999 |
< |
p++; |
1269 |
> |
add_custom_mode(p, type, x, y, apple_mode, apple_id); |
1270 |
|
} |
1271 |
|
} |
1272 |
|
|
1335 |
|
#ifdef ENABLE_XF86_DGA |
1336 |
|
// DGA available? |
1337 |
|
int event_base, error_base; |
1338 |
+ |
is_fbdev_dga_mode = false; |
1339 |
|
if (local_X11 && XF86DGAQueryExtension(x_display, &event_base, &error_base)) { |
1340 |
|
int dga_flags = 0; |
1341 |
|
XF86DGAQueryDirectVideo(x_display, screen, &dga_flags); |
1342 |
|
has_dga = dga_flags & XF86DGADirectPresent; |
1343 |
+ |
#if defined(__linux__) |
1344 |
+ |
// Check r/w permission on /dev/mem for DGA mode to work |
1345 |
+ |
if (has_dga && access("/dev/mem", R_OK | W_OK) != 0) |
1346 |
+ |
has_dga = false; |
1347 |
+ |
#endif |
1348 |
|
} else |
1349 |
|
has_dga = false; |
1350 |
|
#endif |
1357 |
|
XF86VidModeGetAllModeLines(x_display, screen, &num_x_video_modes, &x_video_modes); |
1358 |
|
#endif |
1359 |
|
|
1360 |
+ |
#ifdef ENABLE_FBDEV_DGA |
1361 |
+ |
// FBDev available? |
1362 |
+ |
bool has_fbdev_dga = false; |
1363 |
+ |
if (local_X11) { |
1364 |
+ |
if ((fb_dev_fd = open("/dev/fb0", O_RDWR)) > 0) { |
1365 |
+ |
if (ioctl(fb_dev_fd, FBIOGET_VSCREENINFO, &fb_vinfo) != 0) |
1366 |
+ |
close(fb_dev_fd); |
1367 |
+ |
else { |
1368 |
+ |
has_fbdev_dga = true; |
1369 |
+ |
if (!has_dga) { |
1370 |
+ |
// Fallback to FBDev DGA mode if XF86 DGA is not possible |
1371 |
+ |
has_dga = true; |
1372 |
+ |
is_fbdev_dga_mode = true; |
1373 |
+ |
} |
1374 |
+ |
fb_orig_vinfo = fb_vinfo; |
1375 |
+ |
D(bug("Frame buffer device initial resolution: %dx%dx%d\n", fb_vinfo.xres, fb_vinfo.yres, fb_vinfo.bits_per_pixel)); |
1376 |
+ |
} |
1377 |
+ |
} |
1378 |
+ |
} |
1379 |
+ |
#endif |
1380 |
+ |
|
1381 |
|
// Find black and white colors |
1382 |
|
XParseColor(x_display, DefaultColormap(x_display, screen), "rgb:00/00/00", &black); |
1383 |
|
XAllocColor(x_display, DefaultColormap(x_display, screen), &black); |
1403 |
|
break; |
1404 |
|
} |
1405 |
|
|
1406 |
+ |
// Get screen mode from preferences |
1407 |
+ |
const char *mode_str = PrefsFindString("screen"); |
1408 |
+ |
int default_width = 640, default_height = 480; |
1409 |
+ |
if (mode_str) { |
1410 |
+ |
display_type = DIS_INVALID; |
1411 |
+ |
if (sscanf(mode_str, "win/%d/%d", &default_width, &default_height) == 2) |
1412 |
+ |
display_type = DIS_WINDOW; |
1413 |
+ |
#ifdef ENABLE_XF86_DGA |
1414 |
+ |
else if (has_dga && sscanf(mode_str, "dga/%d/%d", &default_width, &default_height) == 2) |
1415 |
+ |
display_type = DIS_SCREEN; |
1416 |
+ |
#endif |
1417 |
+ |
#ifdef ENABLE_FBDEV_DGA |
1418 |
+ |
else if (has_fbdev_dga && sscanf(mode_str, "fbdev/%d/%d", &default_width, &default_height) == 2) { |
1419 |
+ |
is_fbdev_dga_mode = true; |
1420 |
+ |
display_type = DIS_SCREEN; |
1421 |
+ |
} |
1422 |
+ |
#endif |
1423 |
+ |
if (display_type == DIS_INVALID) { |
1424 |
+ |
D(bug("Invalid screen mode specified, defaulting to old modes selection\n")); |
1425 |
+ |
mode_str = NULL; |
1426 |
+ |
} |
1427 |
+ |
else { |
1428 |
+ |
if (default_width <= 0) |
1429 |
+ |
default_width = DisplayWidth(x_display, screen); |
1430 |
+ |
else if (default_width > DisplayWidth(x_display, screen)) |
1431 |
+ |
default_width = DisplayWidth(x_display, screen); |
1432 |
+ |
if (default_height <= 0) |
1433 |
+ |
default_height = DisplayHeight(x_display, screen); |
1434 |
+ |
else if (default_height > DisplayHeight(x_display, screen)) |
1435 |
+ |
default_height = DisplayHeight(x_display, screen); |
1436 |
+ |
} |
1437 |
+ |
} |
1438 |
+ |
|
1439 |
|
// Construct video mode table |
1440 |
|
uint32 window_modes = PrefsFindInt32("windowmodes"); |
1441 |
|
uint32 screen_modes = PrefsFindInt32("screenmodes"); |
1442 |
|
if (!has_dga) |
1443 |
|
screen_modes = 0; |
1444 |
< |
if (window_modes == 0 && screen_modes == 0) |
1444 |
> |
if (mode_str) |
1445 |
> |
window_modes = screen_modes = 0; |
1446 |
> |
else if (window_modes == 0 && screen_modes == 0) |
1447 |
|
window_modes |= 3; // Allow at least 640x480 and 800x600 window modes |
1448 |
|
|
1449 |
|
VideoInfo *p = VModes; |
1450 |
< |
for (unsigned int d = APPLE_1_BIT; d <= APPLE_32_BIT; d++) |
1451 |
< |
if (find_visual_for_depth(d)) |
1452 |
< |
add_window_modes(p, window_modes, d); |
1453 |
< |
|
1454 |
< |
if (has_vidmode) { |
1450 |
> |
if (mode_str) { |
1451 |
> |
if (display_type == DIS_WINDOW) { |
1452 |
> |
for (unsigned int d = APPLE_1_BIT; d <= APPLE_32_BIT; d++) { |
1453 |
> |
if (find_visual_for_depth(d)) { |
1454 |
> |
if (default_width > 640 && default_height > 480) |
1455 |
> |
add_mode(p, 3, 1, d, APPLE_W_640x480, DIS_WINDOW); |
1456 |
> |
if (default_width > 800 && default_height > 600) |
1457 |
> |
add_mode(p, 3, 2, d, APPLE_W_800x600, DIS_WINDOW); |
1458 |
> |
add_custom_mode(p, display_type, default_width, default_height, d, APPLE_CUSTOM); |
1459 |
> |
} |
1460 |
> |
} |
1461 |
> |
} else |
1462 |
> |
add_custom_mode(p, display_type, default_width, default_height, default_mode, APPLE_CUSTOM); |
1463 |
> |
} else if (window_modes) { |
1464 |
> |
for (unsigned int d = APPLE_1_BIT; d <= APPLE_32_BIT; d++) |
1465 |
> |
if (find_visual_for_depth(d)) |
1466 |
> |
add_window_modes(p, window_modes, d); |
1467 |
> |
} else if (has_vidmode) { |
1468 |
|
if (has_mode(640, 480)) |
1469 |
|
add_mode(p, screen_modes, 1, default_mode, APPLE_640x480, DIS_SCREEN); |
1470 |
|
if (has_mode(800, 600)) |
1505 |
|
int apple_id = find_apple_resolution(screen_width, screen_height); |
1506 |
|
if (apple_id != -1) |
1507 |
|
cur_mode = find_mode(default_mode, apple_id, DIS_SCREEN); |
1508 |
+ |
} else if (has_dga && mode_str) |
1509 |
+ |
cur_mode = find_mode(default_mode, APPLE_CUSTOM, DIS_SCREEN); |
1510 |
+ |
|
1511 |
+ |
if (cur_mode == -1) { |
1512 |
+ |
// pick up first windowed mode available |
1513 |
+ |
for (VideoInfo *p = VModes; p->viType != DIS_INVALID; p++) { |
1514 |
+ |
if (p->viType == DIS_WINDOW && p->viAppleMode == default_mode) { |
1515 |
+ |
cur_mode = p - VModes; |
1516 |
+ |
break; |
1517 |
+ |
} |
1518 |
+ |
} |
1519 |
|
} |
1164 |
– |
if (cur_mode == -1) |
1165 |
– |
cur_mode = find_mode(default_mode, APPLE_W_640x480, DIS_WINDOW); |
1520 |
|
assert(cur_mode != -1); |
1521 |
|
|
1522 |
|
#if DEBUG |
1536 |
|
XSetErrorHandler(ignore_errors); |
1537 |
|
#endif |
1538 |
|
|
1539 |
+ |
// Lock down frame buffer |
1540 |
+ |
XSync(x_display, false); |
1541 |
+ |
LOCK_FRAME_BUFFER; |
1542 |
+ |
|
1543 |
|
// Start periodic thread |
1544 |
|
XSync(x_display, false); |
1545 |
|
Set_pthread_attr(&redraw_thread_attr, 0); |
1546 |
+ |
redraw_thread_cancel = false; |
1547 |
|
redraw_thread_active = (pthread_create(&redraw_thread, &redraw_thread_attr, redraw_func, NULL) == 0); |
1548 |
|
D(bug("Redraw thread installed (%ld)\n", redraw_thread)); |
1549 |
|
return true; |
1558 |
|
{ |
1559 |
|
// Stop redraw thread |
1560 |
|
if (redraw_thread_active) { |
1561 |
+ |
redraw_thread_cancel = true; |
1562 |
|
pthread_cancel(redraw_thread); |
1563 |
|
pthread_join(redraw_thread, NULL); |
1564 |
|
redraw_thread_active = false; |
1565 |
|
} |
1566 |
|
|
1567 |
+ |
// Unlock frame buffer |
1568 |
+ |
UNLOCK_FRAME_BUFFER; |
1569 |
+ |
XSync(x_display, false); |
1570 |
+ |
D(bug(" frame buffer unlocked\n")); |
1571 |
+ |
|
1572 |
|
#ifdef ENABLE_VOSF |
1573 |
|
if (use_vosf) { |
1574 |
|
// Deinitialize VOSF |
1583 |
|
XFlush(x_display); |
1584 |
|
XSync(x_display, false); |
1585 |
|
} |
1586 |
+ |
|
1587 |
+ |
#ifdef ENABLE_FBDEV_DGA |
1588 |
+ |
// Close framebuffer device |
1589 |
+ |
if (fb_dev_fd >= 0) { |
1590 |
+ |
close(fb_dev_fd); |
1591 |
+ |
fb_dev_fd = -1; |
1592 |
+ |
} |
1593 |
+ |
#endif |
1594 |
|
} |
1595 |
|
|
1596 |
|
|
1598 |
|
* Suspend/resume emulator |
1599 |
|
*/ |
1600 |
|
|
1228 |
– |
extern void PauseEmulator(void); |
1229 |
– |
extern void ResumeEmulator(void); |
1230 |
– |
|
1601 |
|
static void suspend_emul(void) |
1602 |
|
{ |
1603 |
|
if (display_type == DIS_SCREEN) { |
1605 |
|
ADBKeyUp(0x36); |
1606 |
|
ctrl_down = false; |
1607 |
|
|
1608 |
< |
// Pause MacOS thread |
1609 |
< |
PauseEmulator(); |
1240 |
< |
emul_suspended = true; |
1608 |
> |
// Lock frame buffer (this will stop the MacOS thread) |
1609 |
> |
LOCK_FRAME_BUFFER; |
1610 |
|
|
1611 |
|
// Save frame buffer |
1612 |
|
fb_save = malloc(VModes[cur_mode].viYsize * VModes[cur_mode].viRowBytes); |
1613 |
|
if (fb_save) |
1614 |
< |
memcpy(fb_save, (void *)screen_base, VModes[cur_mode].viYsize * VModes[cur_mode].viRowBytes); |
1614 |
> |
Mac2Host_memcpy(fb_save, screen_base, VModes[cur_mode].viYsize * VModes[cur_mode].viRowBytes); |
1615 |
|
|
1616 |
|
// Close full screen display |
1617 |
+ |
#if defined(ENABLE_XF86_DGA) || defined(ENABLE_FBDEV_DGA) |
1618 |
|
#ifdef ENABLE_XF86_DGA |
1619 |
< |
XF86DGADirectVideo(x_display, screen, 0); |
1619 |
> |
if (!is_fbdev_dga_mode) |
1620 |
> |
XF86DGADirectVideo(x_display, screen, 0); |
1621 |
> |
#endif |
1622 |
|
XUngrabPointer(x_display, CurrentTime); |
1623 |
|
XUngrabKeyboard(x_display, CurrentTime); |
1624 |
|
#endif |
1625 |
+ |
restore_mouse_accel(); |
1626 |
+ |
XUnmapWindow(x_display, the_win); |
1627 |
+ |
wait_unmapped(the_win); |
1628 |
|
XSync(x_display, false); |
1629 |
|
|
1630 |
|
// Open "suspend" window |
1631 |
|
XSetWindowAttributes wattr; |
1632 |
|
wattr.event_mask = KeyPressMask; |
1633 |
< |
wattr.background_pixel = black_pixel; |
1259 |
< |
wattr.border_pixel = black_pixel; |
1633 |
> |
wattr.background_pixel = (vis == DefaultVisual(x_display, screen) ? black_pixel : 0); |
1634 |
|
wattr.backing_store = Always; |
1635 |
< |
wattr.backing_planes = xdepth; |
1636 |
< |
wattr.colormap = DefaultColormap(x_display, screen); |
1263 |
< |
XSync(x_display, false); |
1635 |
> |
wattr.colormap = (depth == 1 ? DefaultColormap(x_display, screen) : cmap[0]); |
1636 |
> |
|
1637 |
|
suspend_win = XCreateWindow(x_display, rootwin, 0, 0, 512, 1, 0, xdepth, |
1638 |
< |
InputOutput, vis, CWEventMask | CWBackPixel | CWBorderPixel | |
1639 |
< |
CWBackingStore | CWBackingPlanes | (xdepth == 8 ? CWColormap : 0), &wattr); |
1640 |
< |
XSync(x_display, false); |
1641 |
< |
XStoreName(x_display, suspend_win, GetString(STR_SUSPEND_WINDOW_TITLE)); |
1642 |
< |
XMapRaised(x_display, suspend_win); |
1270 |
< |
XSync(x_display, false); |
1638 |
> |
InputOutput, vis, CWEventMask | CWBackPixel | CWBackingStore | CWColormap, &wattr); |
1639 |
> |
set_window_name(suspend_win, STR_SUSPEND_WINDOW_TITLE); |
1640 |
> |
set_window_focus(suspend_win); |
1641 |
> |
XMapWindow(x_display, suspend_win); |
1642 |
> |
emul_suspended = true; |
1643 |
|
} |
1644 |
|
} |
1645 |
|
|
1650 |
|
XSync(x_display, false); |
1651 |
|
|
1652 |
|
// Reopen full screen display |
1653 |
< |
XGrabKeyboard(x_display, rootwin, 1, GrabModeAsync, GrabModeAsync, CurrentTime); |
1654 |
< |
XGrabPointer(x_display, rootwin, 1, PointerMotionMask | ButtonPressMask | ButtonReleaseMask, GrabModeAsync, GrabModeAsync, None, None, CurrentTime); |
1653 |
> |
XMapRaised(x_display, the_win); |
1654 |
> |
wait_mapped(the_win); |
1655 |
> |
XWarpPointer(x_display, None, rootwin, 0, 0, 0, 0, 0, 0); |
1656 |
> |
Window w = is_fbdev_dga_mode ? the_win : rootwin; |
1657 |
> |
XGrabKeyboard(x_display, w, True, GrabModeAsync, GrabModeAsync, CurrentTime); |
1658 |
> |
XGrabPointer(x_display, w, True, PointerMotionMask | ButtonPressMask | ButtonReleaseMask, GrabModeAsync, GrabModeAsync, None, None, CurrentTime); |
1659 |
> |
disable_mouse_accel(); |
1660 |
|
#ifdef ENABLE_XF86_DGA |
1661 |
< |
XF86DGADirectVideo(x_display, screen, XF86DGADirectGraphics | XF86DGADirectKeyb | XF86DGADirectMouse); |
1662 |
< |
XF86DGASetViewPort(x_display, screen, 0, 0); |
1661 |
> |
if (!is_fbdev_dga_mode) { |
1662 |
> |
XF86DGADirectVideo(x_display, screen, XF86DGADirectGraphics | XF86DGADirectKeyb | XF86DGADirectMouse); |
1663 |
> |
XF86DGASetViewPort(x_display, screen, 0, 0); |
1664 |
> |
} |
1665 |
|
#endif |
1666 |
|
XSync(x_display, false); |
1667 |
|
|
1683 |
|
// Don't copy fb_save to the temporary frame buffer in VOSF mode |
1684 |
|
if (!use_vosf) |
1685 |
|
#endif |
1686 |
< |
memcpy((void *)screen_base, fb_save, VModes[cur_mode].viYsize * VModes[cur_mode].viRowBytes); |
1686 |
> |
Host2Mac_memcpy(screen_base, fb_save, VModes[cur_mode].viYsize * VModes[cur_mode].viRowBytes); |
1687 |
|
free(fb_save); |
1688 |
|
fb_save = NULL; |
1689 |
|
} |
1311 |
– |
if (depth == 8) |
1312 |
– |
palette_changed = true; |
1690 |
|
|
1691 |
< |
// Resume MacOS thread |
1691 |
> |
// Unlock frame buffer (and continue MacOS thread) |
1692 |
> |
UNLOCK_FRAME_BUFFER; |
1693 |
|
emul_suspended = false; |
1316 |
– |
ResumeEmulator(); |
1694 |
|
} |
1695 |
|
|
1696 |
|
|
1854 |
|
return -1; |
1855 |
|
} |
1856 |
|
|
1857 |
< |
static int event2keycode(XKeyEvent &ev) |
1857 |
> |
static int event2keycode(XKeyEvent &ev, bool key_down) |
1858 |
|
{ |
1859 |
|
KeySym ks; |
1483 |
– |
int as; |
1860 |
|
int i = 0; |
1861 |
|
|
1862 |
|
do { |
1863 |
|
ks = XLookupKeysym(&ev, i++); |
1864 |
< |
as = kc_decode(ks); |
1865 |
< |
if (as != -1) |
1864 |
> |
int as = kc_decode(ks); |
1865 |
> |
if (as >= 0) |
1866 |
> |
return as; |
1867 |
> |
if (as == -2) |
1868 |
|
return as; |
1869 |
|
} while (ks != NoSymbol); |
1870 |
|
|
1939 |
|
|
1940 |
|
// Keyboard |
1941 |
|
case KeyPress: { |
1942 |
< |
int code = event2keycode(event.xkey); |
1943 |
< |
if (use_keycodes && code != -1) |
1944 |
< |
code = keycode_table[event.xkey.keycode & 0xff]; |
1945 |
< |
if (code != -1) { |
1942 |
> |
int code = -1; |
1943 |
> |
if (use_keycodes) { |
1944 |
> |
if (event2keycode(event.xkey, true) != -2) // This is called to process the hotkeys |
1945 |
> |
code = keycode_table[event.xkey.keycode & 0xff]; |
1946 |
> |
} else |
1947 |
> |
code = event2keycode(event.xkey, true); |
1948 |
> |
if (code >= 0) { |
1949 |
|
if (!emul_suspended) { |
1950 |
< |
ADBKeyDown(code); |
1950 |
> |
if (code == 0x39) { // Caps Lock pressed |
1951 |
> |
if (caps_on) { |
1952 |
> |
ADBKeyUp(code); |
1953 |
> |
caps_on = false; |
1954 |
> |
} else { |
1955 |
> |
ADBKeyDown(code); |
1956 |
> |
caps_on = true; |
1957 |
> |
} |
1958 |
> |
} else |
1959 |
> |
ADBKeyDown(code); |
1960 |
|
if (code == 0x36) |
1961 |
|
ctrl_down = true; |
1962 |
|
} else { |
1967 |
|
break; |
1968 |
|
} |
1969 |
|
case KeyRelease: { |
1970 |
< |
int code = event2keycode(event.xkey); |
1971 |
< |
if (use_keycodes && code != 1) |
1972 |
< |
code = keycode_table[event.xkey.keycode & 0xff]; |
1973 |
< |
if (code != -1) { |
1970 |
> |
int code = -1; |
1971 |
> |
if (use_keycodes) { |
1972 |
> |
if (event2keycode(event.xkey, false) != -2) // This is called to process the hotkeys |
1973 |
> |
code = keycode_table[event.xkey.keycode & 0xff]; |
1974 |
> |
} else |
1975 |
> |
code = event2keycode(event.xkey, false); |
1976 |
> |
if (code >= 0 && code != 0x39) { // Don't propagate Caps Lock releases |
1977 |
|
ADBKeyUp(code); |
1978 |
|
if (code == 0x36) |
1979 |
|
ctrl_down = false; |
2006 |
|
if (emerg_quit) |
2007 |
|
QuitEmulator(); |
2008 |
|
|
2009 |
+ |
// Temporarily give up frame buffer lock (this is the point where |
2010 |
+ |
// we are suspended when the user presses Ctrl-Tab) |
2011 |
+ |
UNLOCK_FRAME_BUFFER; |
2012 |
+ |
LOCK_FRAME_BUFFER; |
2013 |
+ |
|
2014 |
|
// Execute video VBL |
2015 |
|
if (private_data != NULL && private_data->interruptsEnabled) |
2016 |
|
VSLDoInterruptService(private_data->vslServiceID); |
2018 |
|
|
2019 |
|
|
2020 |
|
/* |
1623 |
– |
* Install graphics acceleration |
1624 |
– |
*/ |
1625 |
– |
|
1626 |
– |
// Rectangle inversion |
1627 |
– |
template< int bpp > |
1628 |
– |
static inline void do_invrect(uint8 *dest, uint32 length) |
1629 |
– |
{ |
1630 |
– |
#define INVERT_1(PTR, OFS) ((uint8 *)(PTR))[OFS] = ~((uint8 *)(PTR))[OFS] |
1631 |
– |
#define INVERT_2(PTR, OFS) ((uint16 *)(PTR))[OFS] = ~((uint16 *)(PTR))[OFS] |
1632 |
– |
#define INVERT_4(PTR, OFS) ((uint32 *)(PTR))[OFS] = ~((uint32 *)(PTR))[OFS] |
1633 |
– |
#define INVERT_8(PTR, OFS) ((uint64 *)(PTR))[OFS] = ~((uint64 *)(PTR))[OFS] |
1634 |
– |
|
1635 |
– |
#ifndef UNALIGNED_PROFITABLE |
1636 |
– |
// Align on 16-bit boundaries |
1637 |
– |
if (bpp < 16 && (((uintptr)dest) & 1)) { |
1638 |
– |
INVERT_1(dest, 0); |
1639 |
– |
dest += 1; length -= 1; |
1640 |
– |
} |
1641 |
– |
|
1642 |
– |
// Align on 32-bit boundaries |
1643 |
– |
if (bpp < 32 && (((uintptr)dest) & 2)) { |
1644 |
– |
INVERT_2(dest, 0); |
1645 |
– |
dest += 2; length -= 2; |
1646 |
– |
} |
1647 |
– |
#endif |
1648 |
– |
|
1649 |
– |
// Invert 8-byte words |
1650 |
– |
if (length >= 8) { |
1651 |
– |
const int r = (length / 8) % 8; |
1652 |
– |
dest += r * 8; |
1653 |
– |
|
1654 |
– |
int n = ((length / 8) + 7) / 8; |
1655 |
– |
switch (r) { |
1656 |
– |
case 0: do { |
1657 |
– |
dest += 64; |
1658 |
– |
INVERT_8(dest, -8); |
1659 |
– |
case 7: INVERT_8(dest, -7); |
1660 |
– |
case 6: INVERT_8(dest, -6); |
1661 |
– |
case 5: INVERT_8(dest, -5); |
1662 |
– |
case 4: INVERT_8(dest, -4); |
1663 |
– |
case 3: INVERT_8(dest, -3); |
1664 |
– |
case 2: INVERT_8(dest, -2); |
1665 |
– |
case 1: INVERT_8(dest, -1); |
1666 |
– |
} while (--n > 0); |
1667 |
– |
} |
1668 |
– |
} |
1669 |
– |
|
1670 |
– |
// 32-bit cell to invert? |
1671 |
– |
if (length & 4) { |
1672 |
– |
INVERT_4(dest, 0); |
1673 |
– |
if (bpp <= 16) |
1674 |
– |
dest += 4; |
1675 |
– |
} |
1676 |
– |
|
1677 |
– |
// 16-bit cell to invert? |
1678 |
– |
if (bpp <= 16 && (length & 2)) { |
1679 |
– |
INVERT_2(dest, 0); |
1680 |
– |
if (bpp <= 8) |
1681 |
– |
dest += 2; |
1682 |
– |
} |
1683 |
– |
|
1684 |
– |
// 8-bit cell to invert? |
1685 |
– |
if (bpp <= 8 && (length & 1)) |
1686 |
– |
INVERT_1(dest, 0); |
1687 |
– |
|
1688 |
– |
#undef INVERT_1 |
1689 |
– |
#undef INVERT_2 |
1690 |
– |
#undef INVERT_4 |
1691 |
– |
#undef INVERT_8 |
1692 |
– |
} |
1693 |
– |
|
1694 |
– |
void NQD_invrect(uint32 p) |
1695 |
– |
{ |
1696 |
– |
D(bug("accl_invrect %08x\n", p)); |
1697 |
– |
|
1698 |
– |
// Get inversion parameters |
1699 |
– |
int16 dest_X = (int16)ReadMacInt16(p + acclDestRect + 2) - (int16)ReadMacInt16(p + acclDestBoundsRect + 2); |
1700 |
– |
int16 dest_Y = (int16)ReadMacInt16(p + acclDestRect + 0) - (int16)ReadMacInt16(p + acclDestBoundsRect + 0); |
1701 |
– |
int16 width = (int16)ReadMacInt16(p + acclDestRect + 6) - (int16)ReadMacInt16(p + acclDestRect + 2); |
1702 |
– |
int16 height = (int16)ReadMacInt16(p + acclDestRect + 4) - (int16)ReadMacInt16(p + acclDestRect + 0); |
1703 |
– |
D(bug(" dest X %d, dest Y %d\n", dest_X, dest_Y)); |
1704 |
– |
D(bug(" width %d, height %d, bytes_per_row %d\n", width, height, (int32)ReadMacInt32(p + acclDestRowBytes))); |
1705 |
– |
|
1706 |
– |
//!!?? pen_mode == 14 |
1707 |
– |
|
1708 |
– |
// And perform the inversion |
1709 |
– |
const int bpp = bytes_per_pixel(ReadMacInt32(p + acclDestPixelSize)); |
1710 |
– |
const int dest_row_bytes = (int32)ReadMacInt32(p + acclDestRowBytes); |
1711 |
– |
uint8 *dest = Mac2HostAddr(ReadMacInt32(p + acclDestBaseAddr) + (dest_Y * dest_row_bytes) + (dest_X * bpp)); |
1712 |
– |
width *= bpp; |
1713 |
– |
switch (bpp) { |
1714 |
– |
case 1: |
1715 |
– |
for (int i = 0; i < height; i++) { |
1716 |
– |
do_invrect<8>(dest, width); |
1717 |
– |
dest += dest_row_bytes; |
1718 |
– |
} |
1719 |
– |
break; |
1720 |
– |
case 2: |
1721 |
– |
for (int i = 0; i < height; i++) { |
1722 |
– |
do_invrect<16>(dest, width); |
1723 |
– |
dest += dest_row_bytes; |
1724 |
– |
} |
1725 |
– |
break; |
1726 |
– |
case 4: |
1727 |
– |
for (int i = 0; i < height; i++) { |
1728 |
– |
do_invrect<32>(dest, width); |
1729 |
– |
dest += dest_row_bytes; |
1730 |
– |
} |
1731 |
– |
break; |
1732 |
– |
} |
1733 |
– |
} |
1734 |
– |
|
1735 |
– |
// Rectangle filling |
1736 |
– |
template< int bpp > |
1737 |
– |
static inline void do_fillrect(uint8 *dest, uint32 color, uint32 length) |
1738 |
– |
{ |
1739 |
– |
#define FILL_1(PTR, OFS, VAL) ((uint8 *)(PTR))[OFS] = (VAL) |
1740 |
– |
#define FILL_2(PTR, OFS, VAL) ((uint16 *)(PTR))[OFS] = (VAL) |
1741 |
– |
#define FILL_4(PTR, OFS, VAL) ((uint32 *)(PTR))[OFS] = (VAL) |
1742 |
– |
#define FILL_8(PTR, OFS, VAL) ((uint64 *)(PTR))[OFS] = (VAL) |
1743 |
– |
|
1744 |
– |
#ifndef UNALIGNED_PROFITABLE |
1745 |
– |
// Align on 16-bit boundaries |
1746 |
– |
if (bpp < 16 && (((uintptr)dest) & 1)) { |
1747 |
– |
FILL_1(dest, 0, color); |
1748 |
– |
dest += 1; length -= 1; |
1749 |
– |
} |
1750 |
– |
|
1751 |
– |
// Align on 32-bit boundaries |
1752 |
– |
if (bpp < 32 && (((uintptr)dest) & 2)) { |
1753 |
– |
FILL_2(dest, 0, color); |
1754 |
– |
dest += 2; length -= 2; |
1755 |
– |
} |
1756 |
– |
#endif |
1757 |
– |
|
1758 |
– |
// Fill 8-byte words |
1759 |
– |
if (length >= 8) { |
1760 |
– |
const uint64 c = (((uint64)color) << 32) | color; |
1761 |
– |
const int r = (length / 8) % 8; |
1762 |
– |
dest += r * 8; |
1763 |
– |
|
1764 |
– |
int n = ((length / 8) + 7) / 8; |
1765 |
– |
switch (r) { |
1766 |
– |
case 0: do { |
1767 |
– |
dest += 64; |
1768 |
– |
FILL_8(dest, -8, c); |
1769 |
– |
case 7: FILL_8(dest, -7, c); |
1770 |
– |
case 6: FILL_8(dest, -6, c); |
1771 |
– |
case 5: FILL_8(dest, -5, c); |
1772 |
– |
case 4: FILL_8(dest, -4, c); |
1773 |
– |
case 3: FILL_8(dest, -3, c); |
1774 |
– |
case 2: FILL_8(dest, -2, c); |
1775 |
– |
case 1: FILL_8(dest, -1, c); |
1776 |
– |
} while (--n > 0); |
1777 |
– |
} |
1778 |
– |
} |
1779 |
– |
|
1780 |
– |
// 32-bit cell to fill? |
1781 |
– |
if (length & 4) { |
1782 |
– |
FILL_4(dest, 0, color); |
1783 |
– |
if (bpp <= 16) |
1784 |
– |
dest += 4; |
1785 |
– |
} |
1786 |
– |
|
1787 |
– |
// 16-bit cell to fill? |
1788 |
– |
if (bpp <= 16 && (length & 2)) { |
1789 |
– |
FILL_2(dest, 0, color); |
1790 |
– |
if (bpp <= 8) |
1791 |
– |
dest += 2; |
1792 |
– |
} |
1793 |
– |
|
1794 |
– |
// 8-bit cell to fill? |
1795 |
– |
if (bpp <= 8 && (length & 1)) |
1796 |
– |
FILL_1(dest, 0, color); |
1797 |
– |
|
1798 |
– |
#undef FILL_1 |
1799 |
– |
#undef FILL_2 |
1800 |
– |
#undef FILL_4 |
1801 |
– |
#undef FILL_8 |
1802 |
– |
} |
1803 |
– |
|
1804 |
– |
void NQD_fillrect(uint32 p) |
1805 |
– |
{ |
1806 |
– |
D(bug("accl_fillrect %08x\n", p)); |
1807 |
– |
|
1808 |
– |
// Get filling parameters |
1809 |
– |
int16 dest_X = (int16)ReadMacInt16(p + acclDestRect + 2) - (int16)ReadMacInt16(p + acclDestBoundsRect + 2); |
1810 |
– |
int16 dest_Y = (int16)ReadMacInt16(p + acclDestRect + 0) - (int16)ReadMacInt16(p + acclDestBoundsRect + 0); |
1811 |
– |
int16 width = (int16)ReadMacInt16(p + acclDestRect + 6) - (int16)ReadMacInt16(p + acclDestRect + 2); |
1812 |
– |
int16 height = (int16)ReadMacInt16(p + acclDestRect + 4) - (int16)ReadMacInt16(p + acclDestRect + 0); |
1813 |
– |
uint32 color = ReadMacInt32(p + acclPenMode) == 8 ? ReadMacInt32(p + acclForePen) : ReadMacInt32(p + acclBackPen); |
1814 |
– |
D(bug(" dest X %d, dest Y %d\n", dest_X, dest_Y)); |
1815 |
– |
D(bug(" width %d, height %d\n", width, height)); |
1816 |
– |
D(bug(" bytes_per_row %d color %08x\n", (int32)ReadMacInt32(p + acclDestRowBytes), color)); |
1817 |
– |
|
1818 |
– |
// And perform the fill |
1819 |
– |
const int bpp = bytes_per_pixel(ReadMacInt32(p + acclDestPixelSize)); |
1820 |
– |
const int dest_row_bytes = (int32)ReadMacInt32(p + acclDestRowBytes); |
1821 |
– |
uint8 *dest = Mac2HostAddr(ReadMacInt32(p + acclDestBaseAddr) + (dest_Y * dest_row_bytes) + (dest_X * bpp)); |
1822 |
– |
width *= bpp; |
1823 |
– |
switch (bpp) { |
1824 |
– |
case 1: |
1825 |
– |
for (int i = 0; i < height; i++) { |
1826 |
– |
memset(dest, color, width); |
1827 |
– |
dest += dest_row_bytes; |
1828 |
– |
} |
1829 |
– |
break; |
1830 |
– |
case 2: |
1831 |
– |
for (int i = 0; i < height; i++) { |
1832 |
– |
do_fillrect<16>(dest, color, width); |
1833 |
– |
dest += dest_row_bytes; |
1834 |
– |
} |
1835 |
– |
break; |
1836 |
– |
case 4: |
1837 |
– |
for (int i = 0; i < height; i++) { |
1838 |
– |
do_fillrect<32>(dest, color, width); |
1839 |
– |
dest += dest_row_bytes; |
1840 |
– |
} |
1841 |
– |
break; |
1842 |
– |
} |
1843 |
– |
} |
1844 |
– |
|
1845 |
– |
bool NQD_fillrect_hook(uint32 p) |
1846 |
– |
{ |
1847 |
– |
D(bug("accl_fillrect_hook %08x\n", p)); |
1848 |
– |
|
1849 |
– |
// Check if we can accelerate this fillrect |
1850 |
– |
if (ReadMacInt32(p + 0x284) != 0 && ReadMacInt32(p + acclDestPixelSize) >= 8) { |
1851 |
– |
const int transfer_mode = ReadMacInt32(p + acclTransferMode); |
1852 |
– |
if (transfer_mode == 8) { |
1853 |
– |
// Fill |
1854 |
– |
WriteMacInt32(p + acclDrawProc, NativeTVECT(NATIVE_FILLRECT)); |
1855 |
– |
return true; |
1856 |
– |
} |
1857 |
– |
else if (transfer_mode == 10) { |
1858 |
– |
// Invert |
1859 |
– |
WriteMacInt32(p + acclDrawProc, NativeTVECT(NATIVE_INVRECT)); |
1860 |
– |
return true; |
1861 |
– |
} |
1862 |
– |
} |
1863 |
– |
return false; |
1864 |
– |
} |
1865 |
– |
|
1866 |
– |
// Rectangle blitting |
1867 |
– |
// TODO: optimize for VOSF and target pixmap == screen |
1868 |
– |
void NQD_bitblt(uint32 p) |
1869 |
– |
{ |
1870 |
– |
D(bug("accl_bitblt %08x\n", p)); |
1871 |
– |
|
1872 |
– |
// Get blitting parameters |
1873 |
– |
int16 src_X = (int16)ReadMacInt16(p + acclSrcRect + 2) - (int16)ReadMacInt16(p + acclSrcBoundsRect + 2); |
1874 |
– |
int16 src_Y = (int16)ReadMacInt16(p + acclSrcRect + 0) - (int16)ReadMacInt16(p + acclSrcBoundsRect + 0); |
1875 |
– |
int16 dest_X = (int16)ReadMacInt16(p + acclDestRect + 2) - (int16)ReadMacInt16(p + acclDestBoundsRect + 2); |
1876 |
– |
int16 dest_Y = (int16)ReadMacInt16(p + acclDestRect + 0) - (int16)ReadMacInt16(p + acclDestBoundsRect + 0); |
1877 |
– |
int16 width = (int16)ReadMacInt16(p + acclDestRect + 6) - (int16)ReadMacInt16(p + acclDestRect + 2); |
1878 |
– |
int16 height = (int16)ReadMacInt16(p + acclDestRect + 4) - (int16)ReadMacInt16(p + acclDestRect + 0); |
1879 |
– |
D(bug(" src addr %08x, dest addr %08x\n", ReadMacInt32(p + acclSrcBaseAddr), ReadMacInt32(p + acclDestBaseAddr))); |
1880 |
– |
D(bug(" src X %d, src Y %d, dest X %d, dest Y %d\n", src_X, src_Y, dest_X, dest_Y)); |
1881 |
– |
D(bug(" width %d, height %d\n", width, height)); |
1882 |
– |
|
1883 |
– |
// And perform the blit |
1884 |
– |
const int bpp = bytes_per_pixel(ReadMacInt32(p + acclSrcPixelSize)); |
1885 |
– |
width *= bpp; |
1886 |
– |
if ((int32)ReadMacInt32(p + acclSrcRowBytes) > 0) { |
1887 |
– |
const int src_row_bytes = (int32)ReadMacInt32(p + acclSrcRowBytes); |
1888 |
– |
const int dst_row_bytes = (int32)ReadMacInt32(p + acclDestRowBytes); |
1889 |
– |
uint8 *src = Mac2HostAddr(ReadMacInt32(p + acclSrcBaseAddr) + (src_Y * src_row_bytes) + (src_X * bpp)); |
1890 |
– |
uint8 *dst = Mac2HostAddr(ReadMacInt32(p + acclDestBaseAddr) + (dest_Y * dst_row_bytes) + (dest_X * bpp)); |
1891 |
– |
for (int i = 0; i < height; i++) { |
1892 |
– |
memcpy(dst, src, width); |
1893 |
– |
src += src_row_bytes; |
1894 |
– |
dst += dst_row_bytes; |
1895 |
– |
} |
1896 |
– |
} |
1897 |
– |
else { |
1898 |
– |
const int src_row_bytes = -(int32)ReadMacInt32(p + acclSrcRowBytes); |
1899 |
– |
const int dst_row_bytes = -(int32)ReadMacInt32(p + acclDestRowBytes); |
1900 |
– |
uint8 *src = Mac2HostAddr(ReadMacInt32(p + acclSrcBaseAddr) + ((src_Y + height - 1) * src_row_bytes) + (src_X * bpp)); |
1901 |
– |
uint8 *dst = Mac2HostAddr(ReadMacInt32(p + acclDestBaseAddr) + ((dest_Y + height - 1) * dst_row_bytes) + (dest_X * bpp)); |
1902 |
– |
for (int i = height - 1; i >= 0; i--) { |
1903 |
– |
memcpy(dst, src, width); |
1904 |
– |
src -= src_row_bytes; |
1905 |
– |
dst -= dst_row_bytes; |
1906 |
– |
} |
1907 |
– |
} |
1908 |
– |
} |
1909 |
– |
|
1910 |
– |
/* |
1911 |
– |
BitBlt transfer modes: |
1912 |
– |
0 : srcCopy |
1913 |
– |
1 : srcOr |
1914 |
– |
2 : srcXor |
1915 |
– |
3 : srcBic |
1916 |
– |
4 : notSrcCopy |
1917 |
– |
5 : notSrcOr |
1918 |
– |
6 : notSrcXor |
1919 |
– |
7 : notSrcBic |
1920 |
– |
32 : blend |
1921 |
– |
33 : addPin |
1922 |
– |
34 : addOver |
1923 |
– |
35 : subPin |
1924 |
– |
36 : transparent |
1925 |
– |
37 : adMax |
1926 |
– |
38 : subOver |
1927 |
– |
39 : adMin |
1928 |
– |
50 : hilite |
1929 |
– |
*/ |
1930 |
– |
|
1931 |
– |
bool NQD_bitblt_hook(uint32 p) |
1932 |
– |
{ |
1933 |
– |
D(bug("accl_draw_hook %08x\n", p)); |
1934 |
– |
|
1935 |
– |
// Check if we can accelerate this bitblt |
1936 |
– |
if (ReadMacInt32(p + 0x018) + ReadMacInt32(p + 0x128) == 0 && |
1937 |
– |
ReadMacInt32(p + 0x130) == 0 && |
1938 |
– |
ReadMacInt32(p + acclSrcPixelSize) >= 8 && |
1939 |
– |
ReadMacInt32(p + acclSrcPixelSize) == ReadMacInt32(p + acclDestPixelSize) && |
1940 |
– |
(ReadMacInt32(p + acclSrcRowBytes) ^ ReadMacInt32(p + acclDestRowBytes)) >= 0 && // same sign? |
1941 |
– |
ReadMacInt32(p + acclTransferMode) == 0 && // srcCopy? |
1942 |
– |
ReadMacInt32(p + 0x15c) > 0) { |
1943 |
– |
|
1944 |
– |
// Yes, set function pointer |
1945 |
– |
WriteMacInt32(p + acclDrawProc, NativeTVECT(NATIVE_BITBLT)); |
1946 |
– |
return true; |
1947 |
– |
} |
1948 |
– |
return false; |
1949 |
– |
} |
1950 |
– |
|
1951 |
– |
// Wait for graphics operation to finish |
1952 |
– |
bool NQD_sync_hook(uint32 arg) |
1953 |
– |
{ |
1954 |
– |
D(bug("accl_sync_hook %08x\n", arg)); |
1955 |
– |
return true; |
1956 |
– |
} |
1957 |
– |
|
1958 |
– |
void VideoInstallAccel(void) |
1959 |
– |
{ |
1960 |
– |
// Temporary hack until it's fixed for e.g. little-endian & 64-bit platforms |
1961 |
– |
#ifndef __powerpc__ |
1962 |
– |
return; |
1963 |
– |
#endif |
1964 |
– |
|
1965 |
– |
// Install acceleration hooks |
1966 |
– |
if (PrefsFindBool("gfxaccel")) { |
1967 |
– |
D(bug("Video: Installing acceleration hooks\n")); |
1968 |
– |
uint32 base; |
1969 |
– |
|
1970 |
– |
SheepVar bitblt_hook_info(sizeof(accl_hook_info)); |
1971 |
– |
base = bitblt_hook_info.addr(); |
1972 |
– |
WriteMacInt32(base + 0, NativeTVECT(NATIVE_BITBLT_HOOK)); |
1973 |
– |
WriteMacInt32(base + 4, NativeTVECT(NATIVE_SYNC_HOOK)); |
1974 |
– |
WriteMacInt32(base + 8, ACCL_BITBLT); |
1975 |
– |
NQDMisc(6, bitblt_hook_info.ptr()); |
1976 |
– |
|
1977 |
– |
SheepVar fillrect_hook_info(sizeof(accl_hook_info)); |
1978 |
– |
base = fillrect_hook_info.addr(); |
1979 |
– |
WriteMacInt32(base + 0, NativeTVECT(NATIVE_FILLRECT_HOOK)); |
1980 |
– |
WriteMacInt32(base + 4, NativeTVECT(NATIVE_SYNC_HOOK)); |
1981 |
– |
WriteMacInt32(base + 8, ACCL_FILLRECT); |
1982 |
– |
NQDMisc(6, fillrect_hook_info.ptr()); |
1983 |
– |
} |
1984 |
– |
} |
1985 |
– |
|
1986 |
– |
|
1987 |
– |
/* |
2021 |
|
* Change video mode |
2022 |
|
*/ |
2023 |
|
|
2290 |
|
} |
2291 |
|
|
2292 |
|
#ifdef ENABLE_XF86_DGA |
2293 |
< |
if (display_type == DIS_SCREEN) { |
2293 |
> |
if (display_type == DIS_SCREEN && !is_fbdev_dga_mode) { |
2294 |
|
current_dga_cmap ^= 1; |
2295 |
|
if (!IsDirectMode(mode) && cmap[current_dga_cmap]) |
2296 |
|
XF86DGAInstallColormap(x_display, screen, cmap[current_dga_cmap]); |
2309 |
|
int64 ticks = 0; |
2310 |
|
uint64 next = GetTicks_usec() + VIDEO_REFRESH_DELAY; |
2311 |
|
|
2312 |
< |
for (;;) { |
2312 |
> |
while (!redraw_thread_cancel) { |
2313 |
|
|
2314 |
|
// Pause if requested (during video mode switches) |
2315 |
|
while (thread_stop_req) |
2335 |
|
quit_full_screen = false; |
2336 |
|
if (display_type == DIS_SCREEN) { |
2337 |
|
XDisplayLock(); |
2338 |
+ |
#if defined(ENABLE_XF86_DGA) || defined(ENABLE_FBDEV_DGA) |
2339 |
|
#ifdef ENABLE_XF86_DGA |
2340 |
< |
XF86DGADirectVideo(x_display, screen, 0); |
2340 |
> |
if (is_fbdev_dga_mode) |
2341 |
> |
XF86DGADirectVideo(x_display, screen, 0); |
2342 |
> |
#endif |
2343 |
|
XUngrabPointer(x_display, CurrentTime); |
2344 |
|
XUngrabKeyboard(x_display, CurrentTime); |
2345 |
|
XUnmapWindow(x_display, the_win); |
2379 |
|
// Set new cursor image if it was changed |
2380 |
|
if (hw_mac_cursor_accl && cursor_changed) { |
2381 |
|
cursor_changed = false; |
2382 |
< |
memcpy(cursor_image->data, MacCursor + 4, 32); |
2383 |
< |
memcpy(cursor_mask_image->data, MacCursor + 36, 32); |
2382 |
> |
uint8 *x_data = (uint8 *)cursor_image->data; |
2383 |
> |
uint8 *x_mask = (uint8 *)cursor_mask_image->data; |
2384 |
> |
for (int i = 0; i < 32; i++) { |
2385 |
> |
x_mask[i] = MacCursor[4 + i] | MacCursor[36 + i]; |
2386 |
> |
x_data[i] = MacCursor[4 + i]; |
2387 |
> |
} |
2388 |
|
XDisplayLock(); |
2389 |
|
XFreeCursor(x_display, mac_cursor); |
2390 |
|
XPutImage(x_display, cursor_map, cursor_gc, cursor_image, 0, 0, 0, 0, 16, 16); |