forked from KolibriOS/kolibrios
886c9d6c64
git-svn-id: svn://kolibrios.org@3292 a494cfbc-eb01-0410-851d-a64ba20cac60
659 lines
14 KiB
C
659 lines
14 KiB
C
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#include "system.h"
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#include <stdlib.h>
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#include <string.h>
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#include <stdio.h>
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#include <math.h>
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#include "winlib.h"
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int draw_frame(window_t *win);
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static int draw_window(window_t *win);
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uint32_t main_cursor;
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uint32_t cursor_ns;
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uint32_t cursor_we;
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uint32_t cursor_nwse;
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uint32_t cursor_nesw;
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int win_font;
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static pos_t old_pos;
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ctrl_t *mouse_capture = NULL;
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static link_t timers;
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static uint32_t realtime;
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static uint32_t wait_time;
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static uint32_t exp_time;
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static int need_update;
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#define LOAD_FROM_MEM 1
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void adjust_frame(window_t *win);
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#include "control.inc"
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//#include "io.inc"
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#include "timer.inc"
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//#include "button.inc"
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//#include "scroller.inc"
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static window_t Window;
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void init_frame(window_t *win);
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window_t *create_window(char *caption, int style, int x, int y,
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int w, int h, handler_t handler)
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{
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char proc_info[1024];
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int stride;
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// __asm__ __volatile__("int3");
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// ctx_t *ctx = &Window.client_ctx;
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if(handler==0) return 0;
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BeginDraw();
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DrawWindow(x, y, w-1, h-1,
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NULL,0,0x41);
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EndDraw();
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get_proc_info(proc_info);
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x = *(uint32_t*)(proc_info+34);
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y = *(uint32_t*)(proc_info+38);
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w = *(uint32_t*)(proc_info+42)+1;
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h = *(uint32_t*)(proc_info+46)+1;
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Window.handler = handler;
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// Window.ctx = ctx;
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list_initialize(&Window.link);
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list_initialize(&Window.child);
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// Window.bitmap.width = 1920;
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// Window.bitmap.height = 1080;
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// Window.bitmap.flags = 0;
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// if( create_bitmap(&Window.bitmap) )
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// {
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// printf("not enough memory for window bitmap\n");
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// return 0;
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// }
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// ctx->pixmap = &Window.bitmap;
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// ctx->offset_x = 0;
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// ctx->offset_y = 0;
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Window.rc.l = x;
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Window.rc.t = y;
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Window.rc.r = x + w;
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Window.rc.b = y + h;
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Window.w = w;
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Window.h = h;
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Window.caption_txt = caption;
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Window.style = style;
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Window.child_over = NULL;
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Window.child_focus = NULL;
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init_caption(&Window);
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init_panel(&Window);
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init_frame(&Window);
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send_message((ctrl_t*)&Window, MSG_SIZE, 0, 0);
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return &Window;
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};
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int def_window_proc(ctrl_t *ctrl, uint32_t msg, uint32_t arg1, uint32_t arg2)
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{
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ctrl_t *child;
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window_t *win = (window_t*)ctrl;
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switch(msg)
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{
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case MSG_PAINT:
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draw_window(win);
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break;
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case 2:
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child = (ctrl_t*)win->child.next;
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while( &child->link != &win->child)
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{
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send_message(child, 2, arg1, arg2);
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child = (ctrl_t*)child->link.next;
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};
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break;
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case MSG_MOUSEMOVE:
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child = win_get_child(win, arg2 & 0xFFFF, (arg2>>16));
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if( win->child_over )
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{
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if(child == win->child_over)
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send_message(child, msg, 0, arg2);
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else
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send_message(win->child_over, MSG_MOUSELEAVE, 0, arg2);
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}
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else if( child )
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send_message(child, MSG_MOUSEENTER, 0, arg2);
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win->child_over = child;
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if( child )
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send_message(child,msg,0,arg2);
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else if(main_cursor != 0)
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{
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set_cursor(0);
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main_cursor = 0;
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}
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break;
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case MSG_SIZE:
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break;
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default:
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child = win_get_child(win, arg2 & 0xFFFF, (arg2>>16));
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win->child_over = child;
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if(child) send_message(child, msg, 0, arg2);
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};
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return 0;
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}
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static int draw_window(window_t *win)
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{
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ctrl_t *child;
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void *ctx;
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rect_t *rc = &win->client;
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draw_caption(&win->caption);
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draw_panel(&win->panel);
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// draw_frame(win);
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// child = (ctrl_t*)win->child.next;
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// while( &child->link != &win->child)
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// {
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// send_message(child, 1, 0, 0);
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// child = (ctrl_t*)child->link.next;
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// };
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return 0;
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};
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void blit_client(window_t *win)
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{
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int w, h;
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w = win->client.r - win->client.l;
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h = win->client.b - win->client.t;
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Blit(win->ctx->pixmap->data, win->client.l, win->client.t,
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0, 0, w, h, w, h,win->ctx->pixmap->pitch);
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};
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int show_window(window_t *win, int state)
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{
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win->win_state = state;
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draw_window(win);
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BeginDraw();
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DrawWindow(win->rc.l, win->rc.t, win->w-1, win->h-1,
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NULL,0,0x41);
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EndDraw();
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blit_caption(&win->caption);
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blit_panel(&win->panel);
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// blit_client(win);
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return 0;
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}
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void window_update_layout(window_t *win)
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{
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char proc_info[1024];
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int new_w, new_h;
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uint8_t state;
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int winx, winy, winw, winh;
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// __asm__ __volatile__("int3");
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get_proc_info(proc_info);
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winx = *(uint32_t*)(proc_info+34);
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winy = *(uint32_t*)(proc_info+38);
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winw = *(uint32_t*)(proc_info+42)+1;
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winh = *(uint32_t*)(proc_info+46)+1;
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state = *(uint8_t*)(proc_info+70);
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if(state & 2)
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{ win->win_state = MINIMIZED;
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return;
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}
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if(state & 4)
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{
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win->win_state = ROLLED;
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return;
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};
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if(state & 1)
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win->win_state = MAXIMIZED;
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else
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win->win_state = NORMAL;
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if( (winx != win->rc.l) || (winy != win->rc.t) )
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{
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win->rc.l = winx;
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win->rc.t = winy;
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win->rc.r = winx + win->w;
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win->rc.b = winy + win->h;
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};
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if( winw == win->w &&
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winh == win->h)
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return;
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#if 0
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int old_size;
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int new_size;
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int pitch;
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old_size = win->bitmap.pitch * win->bitmap.height;
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old_size = (old_size+4095) & ~4095;
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pitch = ALIGN(win->w*4, 16);
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new_size = pitch * win->h;
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new_size = (new_size+4095) & ~4095;
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if( new_size < old_size)
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user_unmap(win->bitmap.data, new_size, old_size-new_size);
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win->bitmap.width = win->w;
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win->bitmap.pitch = pitch;
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#endif
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win->rc.r = winx + winw;
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win->rc.b = winy + winh;
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win->w = winw;
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win->h = winh;
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update_caption_size(win);
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update_panel_size(win);
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adjust_frame(win);
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send_message((ctrl_t*)win, MSG_SIZE, 0, 0);
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draw_window(win);
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};
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int send_mouse_message(window_t *win, uint32_t msg)
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{
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ctrl_t *child;
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if(mouse_capture)
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return send_message(mouse_capture, msg, 0, old_pos.val);
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if(pt_in_rect(&win->caption.ctrl.rc, old_pos.x, old_pos.y))
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{
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return send_message(&win->caption.ctrl, msg, 0, old_pos.val);
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}
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if(pt_in_rect(&win->panel.ctrl.rc, old_pos.x, old_pos.y))
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{
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// old_pos.x-= win->panel.ctrl.rc.l;
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// old_pos.y-= win->panel.ctrl.rc.t;
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return send_message(&win->panel.ctrl, msg, 0, old_pos.val);
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}
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if(pt_in_rect(&win->client, old_pos.x, old_pos.y))
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return send_message((ctrl_t*)win, msg, 0, old_pos.val);
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return send_message(&win->frame, msg, 0, old_pos .val);
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// if( ( old_pos.x < win->rc.r) && ( old_pos.y < win->rc.b))
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// send_message((ctrl_t*)win, msg, 0, old_pos.val);
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};
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void do_sys_draw(window_t *win)
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{
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// printf("%s win:%x\n", __FUNCTION__, win);
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window_update_layout(win);
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BeginDraw();
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DrawWindow(0,0,0,0, NULL, 0x000000,0x41);
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EndDraw();
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blit_caption(&win->caption);
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blit_panel(&win->panel);
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// blit_client(win);
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send_message((ctrl_t*)win, MSG_DRAW_CLIENT, 0, 0);
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need_update=0;
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};
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static void do_sys_mouse(window_t *win)
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{
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static uint32_t mouse_click_time;
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static int mouse_action;
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static int old_buttons;
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int buttons;
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uint32_t wheels;
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uint32_t click_time;
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int action;
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pos_t pos;
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mouse_action = 0;
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pos = get_mouse_pos();
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if(pos.val != old_pos.val)
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{
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mouse_action = 0x80000000;
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old_pos = pos;
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};
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// printf("pos x%d y%d\n", pos.x, pos.y);
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buttons = get_mouse_buttons();
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wheels = get_mouse_wheels();
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if( wheels & 0xFFFF){
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wheels = (short)wheels>0 ? MSG_WHEELDOWN : MSG_WHEELUP;
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send_mouse_message(win, wheels);
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}
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if((action = (buttons ^ old_buttons))!=0)
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{
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mouse_action|= action<<3;
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mouse_action|= buttons & ~old_buttons;
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}
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old_buttons = buttons;
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if(mouse_action & 0x80000000) {
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DBG("mouse move \n\r");
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send_mouse_message(win, MSG_MOUSEMOVE);
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};
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if(mouse_action & 0x09)
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{
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if((mouse_action & 0x09)==0x09)
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{
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// printf("left button down x= %d y= %d\n\r", old_x.x, old_x.y);
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click_time = get_tick_count();
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if(click_time < mouse_click_time+35) {
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mouse_click_time = click_time;
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send_mouse_message(win,MSG_LBTNDBLCLK);
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}
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else {
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mouse_click_time = click_time;
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send_mouse_message(win,MSG_LBTNDOWN);
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};
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}
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else {
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// printf("left button up \n\r");
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send_mouse_message(win,MSG_LBTNUP);
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}
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};
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if(mouse_action & 0x12)
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{
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if((mouse_action & 0x12)==0x12) {
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DBG("right button down \n\r");
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send_mouse_message(win,MSG_RBTNDOWN);
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}
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else {
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DBG("right button up \n\r");
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send_mouse_message(win,MSG_RBTNUP);
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};
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};
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if(mouse_action & 0x24)
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{
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if((mouse_action & 0x24)==0x24){
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DBG("middle button down \n\r");
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send_mouse_message(win,MSG_MBTNDOWN);
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}
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else {
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DBG("middle button up \n\r");
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send_mouse_message(win,MSG_MBTNUP);
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};
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};
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};
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void run_window(window_t *win)
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{
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int ev;
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oskey_t key;
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// buttons = get_mouse_buttons();
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// wheels = get_mouse_wheels();
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realtime = get_tick_count();
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exp_time = -1;
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while(1)
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{
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wait_time = exp_time - realtime;
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ev = wait_for_event(wait_time);
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realtime = get_tick_count();
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// if(exp_time < realtime)
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// exp_time = update_timers(realtime);
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switch(ev)
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{
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case MSG_PAINT:
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do_sys_draw(win);
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continue;
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case 2:
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key = get_key();
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if( key.state == 0)
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send_message((ctrl_t*)win, ev, 0, key.code);
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continue;
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case 6:
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do_sys_mouse(win);
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continue;
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default:
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continue;
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};
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};
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}
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void render_time(void *render);
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void run_render(window_t *win, void *render)
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{
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int ev;
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oskey_t key;
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realtime = get_tick_count();
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exp_time = -1;
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while(win->win_command != WIN_CLOSED)
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{
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wait_time = exp_time - realtime;
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ev = check_os_event();
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realtime = get_tick_count();
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// if(exp_time < realtime)
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// exp_time = update_timers(realtime);
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switch(ev)
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{
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case MSG_PAINT:
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do_sys_draw(win);
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break;
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case 2:
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key = get_key();
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if( key.state == 0)
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send_message((ctrl_t*)win, ev, 0, key.code);
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break;
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case 6:
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do_sys_mouse(win);
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break;
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default:
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break;
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};
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render_time(render);
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};
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};
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extern unsigned char res_cursor_ns[];
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extern unsigned char res_cursor_we[];
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extern unsigned char res_cursor_nwse[];
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extern unsigned char res_cursor_nesw[];
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int init_resources()
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{
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cursor_ns = load_cursor(res_cursor_ns, LOAD_FROM_MEM);
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cursor_we = load_cursor(res_cursor_we, LOAD_FROM_MEM);
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cursor_nwse = load_cursor(res_cursor_nwse, LOAD_FROM_MEM);
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cursor_nesw = load_cursor(res_cursor_nesw, LOAD_FROM_MEM);
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win_font = init_fontlib();
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return 1;
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}
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int fini_winlib()
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{
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int ret;
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ret = destroy_cursor(cursor_nesw);
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ret |= destroy_cursor(cursor_nwse);
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ret |= destroy_cursor(cursor_we);
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ret |= destroy_cursor(cursor_ns);
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return ret;
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};
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void init_winlib(void)
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{
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__asm__ __volatile__(
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"int $0x40"
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::"a"(40), "b"(0xC0000027));
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init_resources();
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list_initialize(&timers);
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};
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//ctx_t *get_window_ctx()
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//{
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// return &Window.client_ctx;
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//};
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void update_rect(ctrl_t *ctrl)
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{
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int ctx_w, ctx_h;
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int src_x, src_y;
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src_x = ctrl->rc.l - ctrl->ctx->offset_x;
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src_y = ctrl->rc.t - ctrl->ctx->offset_y;
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ctx_w = ctrl->parent->w;
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ctx_h = ctrl->parent->h;
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Blit(ctrl->ctx->pixmap->data, ctrl->rc.l, ctrl->rc.t, src_x, src_y,
|
|
ctrl->w, ctrl->h, ctx_w, ctx_h, ctrl->ctx->pixmap->pitch);
|
|
|
|
// need_update++;
|
|
};
|
|
|
|
|
|
void Blit(void *bitmap, int dst_x, int dst_y,
|
|
int src_x, int src_y, int w, int h,
|
|
int src_w, int src_h, int stride)
|
|
{
|
|
volatile struct blit_call bc;
|
|
|
|
bc.dstx = dst_x;
|
|
bc.dsty = dst_y;
|
|
bc.w = w;
|
|
bc.h = h;
|
|
bc.srcx = src_x;
|
|
bc.srcy = src_y;
|
|
bc.srcw = src_w;
|
|
bc.srch = src_h;
|
|
bc.stride = stride;
|
|
bc.bitmap = bitmap;
|
|
|
|
__asm__ __volatile__(
|
|
"int $0x40"
|
|
::"a"(73),"b"(0x20),"c"(&bc.dstx));
|
|
|
|
};
|
|
|
|
ctrl_t *get_child(ctrl_t *ctrl, int x, int y)
|
|
{
|
|
ctrl_t *child = NULL;
|
|
|
|
ctrl_t *tmp = (ctrl_t*)ctrl->child.next;
|
|
|
|
while( &tmp->link != &ctrl->child )
|
|
{
|
|
if(pt_in_rect(&tmp->rc, x, y))
|
|
{
|
|
child = get_child(tmp, x, y);
|
|
return child == NULL ? tmp : child;
|
|
};
|
|
tmp = (ctrl_t*)tmp->link.next;
|
|
};
|
|
return child;
|
|
};
|
|
|
|
ctrl_t *capture_mouse(ctrl_t *newm)
|
|
{
|
|
ctrl_t *old = mouse_capture;
|
|
|
|
mouse_capture = newm;
|
|
|
|
__asm__ __volatile__(
|
|
"int $0x40"
|
|
::"a"(40), "b"(0x80000027));
|
|
|
|
return old;
|
|
}
|
|
|
|
void release_mouse(void)
|
|
{
|
|
mouse_capture = NULL;
|
|
__asm__ __volatile__(
|
|
"int $0x40"
|
|
::"a"(40), "b"(0xC0000027));
|
|
}
|