1 | #define INCL_DOS
|
---|
2 | #define INCL_WIN
|
---|
3 | #define INCL_GPI
|
---|
4 |
|
---|
5 | #include <os2.h>
|
---|
6 | #include <stdlib.h>
|
---|
7 | #include <stdio.h>
|
---|
8 | #include <string.h>
|
---|
9 | #include <share.h>
|
---|
10 | #include "fm3dll.h"
|
---|
11 |
|
---|
12 | #pragma alloc_text(LOADBITMAP,LoadBitmapFromFile,LoadBitmapFromFileNum)
|
---|
13 |
|
---|
14 |
|
---|
15 | HBITMAP LoadBitmapFromFileNum (USHORT id) {
|
---|
16 |
|
---|
17 | char s[CCHMAXPATH];
|
---|
18 |
|
---|
19 | save_dir2(s);
|
---|
20 | sprintf(s + strlen(s),"\\%u.BMP",id);
|
---|
21 | return LoadBitmapFromFile(s);
|
---|
22 | }
|
---|
23 |
|
---|
24 |
|
---|
25 | HBITMAP LoadBitmapFromFile (CHAR *pszFileName) {
|
---|
26 |
|
---|
27 | HBITMAP hBmp = (HBITMAP)0;
|
---|
28 | FILE *File;
|
---|
29 | ULONG rc;
|
---|
30 | USHORT usType = 0; // #@!!! compiler warnings
|
---|
31 | PBITMAPARRAYFILEHEADER2 pbafh2 = NULL; // (MAM) chng init values to NULL instead of ptr to 0
|
---|
32 | PBITMAPFILEHEADER2 pbfh2 = NULL;
|
---|
33 | PBITMAPINFOHEADER2 pbih2 = NULL;
|
---|
34 | PBITMAPINFO2 pbmi2 = NULL;
|
---|
35 | PBITMAPARRAYFILEHEADER pbafh = NULL;
|
---|
36 | PBITMAPFILEHEADER pbfh = NULL;
|
---|
37 | PBITMAPINFOHEADER pbih = NULL;
|
---|
38 | BOOL f2; // format 1.x or 2.x
|
---|
39 | ULONG ulOffset;
|
---|
40 | PBYTE pData = NULL;
|
---|
41 | ULONG ulDataSize;
|
---|
42 | SIZEL sizel;
|
---|
43 | HPS hPS = WinGetPS(HWND_DESKTOP);
|
---|
44 |
|
---|
45 | //--- open the file
|
---|
46 | File = _fsopen(pszFileName,"r",SH_DENYWR);
|
---|
47 | if(!File)
|
---|
48 | goto ExitLoadBMP;
|
---|
49 |
|
---|
50 | /* Read image type, and reset the stream...................................*/
|
---|
51 | /* The image type is a USHORT, so we only read that........................*/
|
---|
52 | rc = fread(&usType,1,sizeof(usType),File);
|
---|
53 | if(rc != sizeof(usType))
|
---|
54 | goto ExitLoadBMP;
|
---|
55 |
|
---|
56 | /* Next read the bitmap info header........................................*/
|
---|
57 | // we allocate enough to hold a complete bitmap array file header
|
---|
58 | pbafh2 = (PBITMAPARRAYFILEHEADER2)malloc(sizeof(*pbafh2) +
|
---|
59 | 256 * sizeof(RGB2));
|
---|
60 | if(!pbafh2)
|
---|
61 | goto ExitLoadBMP;
|
---|
62 | /* Next we assign pointers to the file header and bitmap info header...*/
|
---|
63 | /* Both the 1.x and 2.x structures are assigned just in case...........*/
|
---|
64 | pbfh2 = &pbafh2->bfh2;
|
---|
65 | pbih2 = &pbfh2->bmp2;
|
---|
66 | pbmi2 = (PBITMAPINFO2)pbih2;
|
---|
67 | pbafh = (PBITMAPARRAYFILEHEADER)pbafh2;
|
---|
68 | pbfh = &pbafh->bfh;
|
---|
69 | pbih = &pbfh->bmp;
|
---|
70 | switch (usType) {
|
---|
71 | case BFT_BMAP:
|
---|
72 | case BFT_ICON:
|
---|
73 | case BFT_POINTER:
|
---|
74 | case BFT_COLORICON:
|
---|
75 | case BFT_COLORPOINTER:
|
---|
76 | {
|
---|
77 | /* Now we assume the image is a 2.0 image and so we read a bitmap-file-*/
|
---|
78 | /* Now we reset the stream, next we'll read the bitmap info header. To do .*/
|
---|
79 | /* this we need to reset the stream to 0...................................*/
|
---|
80 | fseek(File,0,SEEK_SET);
|
---|
81 | /*-header-2 structure..................................................*/
|
---|
82 | rc = fread(pbfh2,1,sizeof(*pbfh2),File);
|
---|
83 | if(rc != sizeof(*pbfh2))
|
---|
84 | goto ExitLoadBMP;
|
---|
85 |
|
---|
86 | f2 = pbih2->cbFix > sizeof(*pbih); // 1.x or 2.x bitmap
|
---|
87 | /* We will need to read the color table. Thus we position the stream...*/
|
---|
88 | /* so that the next read will read IT. This, of course, depends on the.*/
|
---|
89 | /* type of the bitmap (old vs new), note that in the NEW case, we can..*/
|
---|
90 | /* not be certain of the size of the bitmap header.....................*/
|
---|
91 | ulOffset = (f2) ? sizeof(*pbfh2) + pbih->cbFix - sizeof(*pbih2) :
|
---|
92 | sizeof(*pbfh);
|
---|
93 | }
|
---|
94 | break;
|
---|
95 |
|
---|
96 | case BFT_BITMAPARRAY:
|
---|
97 | {
|
---|
98 | /* Now we are dealing with a bitmap array. This is a collection of ....*/
|
---|
99 | /* bitmap files and each has its own file header.......................*/
|
---|
100 |
|
---|
101 | BOOL bBest = FALSE;
|
---|
102 | ULONG ulCurOffset, ulOffsetTemp = 0;
|
---|
103 | LONG lScreenWidth;
|
---|
104 | LONG lScreenHeight;
|
---|
105 | LONG lClrsDev, lClrsTemp = 0;
|
---|
106 | LONG lClrs;
|
---|
107 | ULONG ulSizeDiff, ulSizeDiffTemp = 0xffffffff;
|
---|
108 | HDC hdc;
|
---|
109 |
|
---|
110 | // -- We will browse through the array and chose the bitmap best suited
|
---|
111 | // -- for the current display size and color capacities.
|
---|
112 | hdc = GpiQueryDevice( hPS );
|
---|
113 | DevQueryCaps(hdc,CAPS_COLORS,1,&lClrsDev);
|
---|
114 | DevQueryCaps(hdc,CAPS_WIDTH, 1,&lScreenWidth);
|
---|
115 | DevQueryCaps(hdc,CAPS_HEIGHT,1,&lScreenHeight);
|
---|
116 | pbafh2->offNext = 0;
|
---|
117 | do {
|
---|
118 | ulCurOffset = pbafh2->offNext;
|
---|
119 | rc = fseek(File,pbafh2->offNext,SEEK_SET);
|
---|
120 | if(rc)
|
---|
121 | goto ExitLoadBMP;
|
---|
122 | rc = fread(pbafh2,1,sizeof(*pbafh2),File);
|
---|
123 | if(rc != sizeof(*pbafh2))
|
---|
124 | goto ExitLoadBMP;
|
---|
125 | f2 = pbih2->cbFix > sizeof(*pbih);
|
---|
126 | if(f2)
|
---|
127 | lClrs = 1 << (pbafh2->bfh2.bmp2.cBitCount *
|
---|
128 | pbafh2->bfh2.bmp2.cPlanes);
|
---|
129 | else
|
---|
130 | lClrs = 1 << (pbafh->bfh.bmp.cBitCount *
|
---|
131 | pbafh->bfh.bmp.cPlanes);
|
---|
132 | if((pbafh2->cxDisplay == 0) && (pbafh2->cyDisplay == 0)) {
|
---|
133 | // This is a device independant bitmap
|
---|
134 | // Process it as a VGA
|
---|
135 | pbafh2->cxDisplay = 640;
|
---|
136 | pbafh2->cyDisplay = 480;
|
---|
137 | } // endif
|
---|
138 | ulSizeDiff = abs(pbafh2->cxDisplay - lScreenWidth) +
|
---|
139 | abs(pbafh2->cyDisplay - lScreenHeight);
|
---|
140 | if((lClrsDev == lClrs) &&
|
---|
141 | (ulSizeDiff == 0)) {
|
---|
142 | // We found the perfect match
|
---|
143 | bBest = TRUE;
|
---|
144 | ulOffsetTemp = ulCurOffset;
|
---|
145 | }
|
---|
146 | else {
|
---|
147 | if((ulOffsetTemp == 0) || // First time thru
|
---|
148 | (ulSizeDiff < ulSizeDiffTemp) || // Better fit than any previous
|
---|
149 | ((lClrs > lClrsTemp) && (lClrs < lClrsDev)) || // More colors than prev & less than device
|
---|
150 | ((lClrs < lClrsTemp) && (lClrs > lClrsDev))) {
|
---|
151 | ulOffsetTemp = ulCurOffset; // Make this our current pick
|
---|
152 | lClrsTemp = lClrs;
|
---|
153 | ulSizeDiffTemp = ulSizeDiff;
|
---|
154 | } // endif
|
---|
155 | } // endif
|
---|
156 | } while((pbafh2->offNext != 0) && !bBest); // enddo
|
---|
157 |
|
---|
158 | // Now retrieve the best bitmap
|
---|
159 | rc = fseek(File,ulOffsetTemp,SEEK_SET);
|
---|
160 | if(rc)
|
---|
161 | goto ExitLoadBMP;
|
---|
162 | rc = fread(pbafh2,1,sizeof(*pbafh2),File);
|
---|
163 | if(rc != sizeof(*pbafh2))
|
---|
164 | goto ExitLoadBMP;
|
---|
165 |
|
---|
166 | f2 = pbih2->cbFix > sizeof(*pbih);
|
---|
167 | /* as before, we calculate where to position the stream in order to ...*/
|
---|
168 | /* read the color table information....................................*/
|
---|
169 | ulOffset = ulOffsetTemp;
|
---|
170 | ulOffset += (f2) ? sizeof(*pbafh2) + pbih2->cbFix - sizeof(*pbih2):
|
---|
171 | sizeof(*pbafh);
|
---|
172 | }
|
---|
173 | break;
|
---|
174 |
|
---|
175 | default:
|
---|
176 | goto ExitLoadBMP;
|
---|
177 | } /* endswitch */
|
---|
178 |
|
---|
179 | /* We now position the stream on the color table information...............*/
|
---|
180 | rc = fseek(File,ulOffset,SEEK_SET);
|
---|
181 | if(rc)
|
---|
182 | goto ExitLoadBMP;
|
---|
183 |
|
---|
184 | /* Read the color table....................................................*/
|
---|
185 | if(f2) {
|
---|
186 | /* For a 2.0 bitmap, all we need to do is read the color table...........*/
|
---|
187 | /* The bitmap info structure is just the header + color table............*/
|
---|
188 | // If we have 24 bits per pel, there is usually no color table, unless
|
---|
189 | // pbih2->cclrUsed or pbih2->cclrImportant are non zero, we should
|
---|
190 | // test that !
|
---|
191 | if(pbih2->cBitCount < 24) {
|
---|
192 |
|
---|
193 | ULONG ul = (1 << pbih2->cBitCount) * sizeof(RGB2);
|
---|
194 |
|
---|
195 | rc = fread(&pbmi2->argbColor[0],1,ul,File);
|
---|
196 | if(rc != ul)
|
---|
197 | goto ExitLoadBMP;
|
---|
198 | } // endif
|
---|
199 | /* remember the bitmap info we mentioned just above?.....................*/
|
---|
200 | pbmi2 = (PBITMAPINFO2)pbih2;
|
---|
201 | }
|
---|
202 | else {
|
---|
203 | /* This is an old format bitmap. Since the common format is the 2.0......*/
|
---|
204 | /* We have to convert all the RGB entries to RGB2........................*/
|
---|
205 |
|
---|
206 | ULONG ul, cColors;
|
---|
207 | RGB rgb;
|
---|
208 |
|
---|
209 | if(pbih->cBitCount <24)
|
---|
210 | cColors = 1 << pbih->cBitCount;
|
---|
211 | else
|
---|
212 | // If there are 24 bits per pel, the 24 bits are assumed to be a RGB value
|
---|
213 | cColors = 0;
|
---|
214 | /* Loop over the original table and create the new table, the extra byte.*/
|
---|
215 | /* has to be 0...........................................................*/
|
---|
216 | for(ul = 0; ul < cColors; ul++) {
|
---|
217 | fread(&rgb,1,sizeof(rgb),File);
|
---|
218 | pbmi2->argbColor[ul].bRed = rgb.bRed;
|
---|
219 | pbmi2->argbColor[ul].bGreen = rgb.bGreen;
|
---|
220 | pbmi2->argbColor[ul].bBlue = rgb.bBlue;
|
---|
221 | pbmi2->argbColor[ul].fcOptions = 0;
|
---|
222 | } /* endfor */
|
---|
223 |
|
---|
224 | // we have to convert the old to the new version header
|
---|
225 | pbmi2->cbFix = sizeof(*pbih2);
|
---|
226 | pbmi2->cBitCount = pbih->cBitCount;
|
---|
227 | pbmi2->cPlanes = pbih->cPlanes;
|
---|
228 | pbmi2->cy = pbih->cy;
|
---|
229 | pbmi2->cx = pbih->cx;
|
---|
230 | // set rest to zero
|
---|
231 | memset((PCHAR)pbmi2 + 16,0,sizeof(*pbih2) - 16);
|
---|
232 | } /* endif */
|
---|
233 |
|
---|
234 | /* We have the 2.0 bitmap info structure set...............................*/
|
---|
235 | /* move to the stream to the start of the bitmap data......................*/
|
---|
236 | rc = fseek(File,pbfh2->offBits,SEEK_SET);
|
---|
237 | if(rc)
|
---|
238 | goto ExitLoadBMP;
|
---|
239 |
|
---|
240 | /* Read the bitmap data, the read size is derived using the magic formula..*/
|
---|
241 | /* The bitmap scan line is aligned on a doubleword boundary................*/
|
---|
242 | /* The size of the scan line is the number of pels times the bpp...........*/
|
---|
243 | /* After aligning it, we divide by 4 to get the number of bytes, and.......*/
|
---|
244 | /* multiply by the number of scan lines and the number of pel planes.......*/
|
---|
245 | if(pbmi2->ulCompression)
|
---|
246 | ulDataSize = pbmi2->cbImage;
|
---|
247 | else
|
---|
248 | ulDataSize = (((pbmi2->cBitCount * pbmi2->cx) + 31) / 32) * 4 *
|
---|
249 | pbmi2->cy * pbmi2->cPlanes;
|
---|
250 | pData = (PBYTE)malloc(ulDataSize);
|
---|
251 | if(!pData)
|
---|
252 | goto ExitLoadBMP;
|
---|
253 | rc = fread(pData, 1, ulDataSize, File);
|
---|
254 | if(rc != ulDataSize)
|
---|
255 | goto ExitLoadBMP;
|
---|
256 |
|
---|
257 | /* Now, we create the bitmap...............................................*/
|
---|
258 | sizel.cx = pbmi2->cx;
|
---|
259 | sizel.cy = pbmi2->cy;
|
---|
260 |
|
---|
261 | hBmp = GpiCreateBitmap(hPS,(PBITMAPINFOHEADER2)pbmi2,CBM_INIT,
|
---|
262 | pData,pbmi2);
|
---|
263 |
|
---|
264 | ExitLoadBMP:
|
---|
265 | if(pData)
|
---|
266 | free(pData);
|
---|
267 | if(pbafh2)
|
---|
268 | free(pbafh2);
|
---|
269 | fclose(File);
|
---|
270 | WinReleasePS(hPS);
|
---|
271 | return(hBmp);
|
---|
272 | }
|
---|
273 |
|
---|