Project

General

Profile

Statistics
| Revision:

root / proj / libs / graph / src / graph.c @ 332

History | View | Annotate | Download (14.3 KB)

1
#include <lcom/lcf.h>
2

    
3
#include "graph.h"
4

    
5
#include "errors.h"
6
#include <stdio.h>
7

    
8
#define VC_BIOS_SERV  0x10 /** @brief Interrupt service of video card */
9
#define VBE_CALL      0x4F /** @brief VBE call function specifier */
10

    
11
#define MBYTE_BASE  0x0         /** @brief Base address (zero address) */
12
#define MBYTE_SIZE  0xFFFFF     /** @brief Size of a mebibyte */
13

    
14
// Graphics Functions
15
#define VBE_CTRL_INFO       0x00    /** @brief Get VBE Controller Information */
16
#define VBE_MD_INFO         0x01    /** @brief Get VBE Mode Information */
17
#define SET_VBE_MD          0x02    /** @brief Set VBE Mode */
18

    
19
// Error codes (AH)
20
#define AH_SUCCESS          0x00    /** @brief Success code on BIOS call */
21
#define AH_FUNC_CALL_FAIL   0x01    /** @brief Function call failed */
22
#define AH_FUNC_NOT_SUPP    0x02    /** @brief Function call is not supported in current HW configuration */
23
#define AH_FUNC_INVALID     0x03    /** @brief Invalid function in current video mode */
24

    
25
/// MACROS
26
#define FAR2PHYS(n)         ((((n)>>12) & 0xFFFFFFF0) + ((n) & 0x0000FFFF))
27

    
28
/// STRUCT
29
typedef struct __attribute__((packed)) {
30

    
31
    char        VbeSignature[4]     ;
32
    uint16_t    VbeVersion          ;
33
    uint32_t    OemStringPtr        ;
34
    uint8_t     Capabilities[4]     ;
35
    uint32_t    VideoModePtr        ;
36
    uint16_t    TotalMemory         ;
37

    
38
    uint16_t    OemSoftwareRev      ;
39
    uint32_t    OemVendorNamePtr    ;
40
    uint32_t    OemProductNamePtr   ;
41
    uint32_t    OemProductRevPtr    ;
42
    char        Reserved[222]       ;
43

    
44
    char        OemData[256]        ;
45
} VbeInfoBlock;
46

    
47
static vbe_mode_info_t vbe_mem_info;
48

    
49
/// PRIVATE GET
50
static uint16_t   (graph_get_bits_pixel)   (void){ return vbe_mem_info.BitsPerPixel; }
51
static phys_bytes (graph_get_phys_addr)    (void){ return vbe_mem_info.PhysBasePtr; }
52
static unsigned   (graph_get_vram_size)    (void){ return vbe_mem_info.XResolution * vbe_mem_info.YResolution * graph_get_bytes_pixel(); }
53
//static uint16_t   (graph_get_RedMaskSize)  (void){ return vbe_mem_info.RedMaskSize  ; }
54
//static uint16_t   (graph_get_GreenMaskSize)(void){ return vbe_mem_info.GreenMaskSize; }
55
//static uint16_t   (graph_get_BlueMaskSize) (void){ return vbe_mem_info.BlueMaskSize ; }
56

    
57
/// PUBLIC GET
58
uint16_t   (graph_get_XRes)         (void){ return vbe_mem_info.XResolution; }
59
uint16_t   (graph_get_YRes)         (void){ return vbe_mem_info.YResolution; }
60
uint16_t   (graph_get_bytes_pixel)  (void){ return (graph_get_bits_pixel() + 7) >> 3; }
61

    
62
///
63
static int (get_permission)(unsigned int base_addr, unsigned int size) {
64
    struct minix_mem_range mmr;
65
    mmr.mr_base = base_addr;
66
    mmr.mr_limit = base_addr + size;
67
    return sys_privctl(SELF, SYS_PRIV_ADD_MEM, &mmr);
68
}
69

    
70
//static int (get_permissions_first_mbyte)(void) {
71
//    return get_permission(MBYTE_BASE, MBYTE_SIZE);
72
//}
73

    
74
/// MEMORY
75
static uint8_t *video_mem = NULL; /** @brief Frame-buffer VM address. */
76
static uint8_t *video_buf = NULL; /** @brief Primary buffer for drawing before copying to video_mem. */
77
static mmap_t mem_map;
78
static int (graph_free_memory)(void) {
79
    int r = SUCCESS;
80
    free(video_buf); video_buf = NULL;
81
    r = !lm_free(&mem_map);
82
    return r;
83
}
84
static int (graph_map_vram)(void) {
85
    int r;
86
    const unsigned vram_base = graph_get_phys_addr();
87
    const unsigned vram_size = graph_get_vram_size();
88
    if ((r = get_permission(vram_base, vram_size))) {
89
        if (graph_free_memory()) {
90
            printf("%s: lm_free failed\n", __func__);
91
        }
92
        panic("%s: sys_privctl (ADD MEM) failed: %d\n", __func__, r);
93
    }
94

    
95
    video_mem = vm_map_phys(SELF, (void *)vram_base, vram_size);
96

    
97
    if (video_mem == MAP_FAILED) {
98
        if (graph_free_memory()) {
99
            printf("%s: lm_free failed\n", __func__);
100
        }
101
        panic("%s: couldn't map video memory.", __func__);
102
    }
103

    
104
    video_buf = malloc(vram_size);
105

    
106
    return SUCCESS;
107
}
108

    
109
/// INFO GET
110
static int (vbe_get_mode_information)(uint16_t mode) {
111
    memset(&vbe_mem_info, 0, sizeof(vbe_mode_info_t)); // reset values
112

    
113
    struct reg86 reg_86;
114
    memset(&reg_86, 0, sizeof(struct reg86)); // reset struct
115

    
116
    vbe_mode_info_t *virtual_addr = lm_alloc(sizeof(vbe_mode_info_t), &mem_map);
117

    
118
    reg_86.intno = VC_BIOS_SERV;
119
    reg_86.ah = VBE_CALL;
120
    reg_86.al = VBE_MD_INFO;
121
    reg_86.cx = mode;
122
    reg_86.es = PB2BASE(mem_map.phys);
123
    reg_86.di = PB2OFF(mem_map.phys);
124
    // BIOS CALL
125
    if (sys_int86(&reg_86) || reg_86.ah != AH_SUCCESS) {
126
        printf("%s: sys_int86 failed\n", __func__);
127
        if (graph_free_memory()) {
128
            printf("%s: lm_free failed\n", __func__);
129
        }
130
        return BIOS_CALL_ERROR;
131
    }
132

    
133
    memcpy((void*)&vbe_mem_info, (void*)virtual_addr, mem_map.size);
134
    return SUCCESS;
135
}
136
/*
137
static int (vbe_get_controller_information)(vg_vbe_contr_info_t *info_p) {
138
    memset(info_p, 0, sizeof(vg_vbe_contr_info_t)); // reset values
139

140
    mmap_t controller_map;
141

142
    struct reg86 reg_86;
143
    memset(&reg_86, 0, sizeof(struct reg86)); // reset struct
144

145
    VbeInfoBlock *virtual_addr = lm_alloc(sizeof(VbeInfoBlock), &controller_map);
146

147
    uint32_t virtual_base = (uint32_t)(virtual_addr) - controller_map.phys;
148

149
    virtual_addr->VbeSignature[0] = 'V';
150
    virtual_addr->VbeSignature[1] = 'B';
151
    virtual_addr->VbeSignature[2] = 'E';
152
    virtual_addr->VbeSignature[3] = '2';
153

154

155
    reg_86.intno = VC_BIOS_SERV;
156
    reg_86.ah = VBE_CALL;
157
    reg_86.al = VBE_CTRL_INFO;
158
    reg_86.es = PB2BASE(controller_map.phys);
159
    reg_86.di = PB2OFF(controller_map.phys);
160
    // BIOS CALL
161
    if (sys_int86(&reg_86) || reg_86.ah != AH_SUCCESS) {
162
        printf("%s: sys_int86 failed\n", __func__);
163
        if (!lm_free(&controller_map)) {
164
            printf("%s: lm_free failed\n", __func__);
165
        }
166
        return BIOS_CALL_ERROR;
167
    }
168

169
    info_p->VBESignature[0] = virtual_addr->VbeSignature[0];
170
    info_p->VBESignature[1] = virtual_addr->VbeSignature[1];
171
    info_p->VBESignature[2] = virtual_addr->VbeSignature[2];
172
    info_p->VBESignature[3] = virtual_addr->VbeSignature[3];
173

174
    uint8_t lsb, msb;
175
    util_get_LSB(virtual_addr->VbeVersion, &lsb);
176
    util_get_MSB(virtual_addr->VbeVersion, &msb);
177
    info_p->VBEVersion[0] = lsb;
178
    info_p->VBEVersion[1] = msb;
179

180
    info_p->TotalMemory = (virtual_addr->TotalMemory << 6);
181

182
    // Convert Far Far Pointer to Virtual Address
183

184
    uint32_t phys_ptr = FAR2PHYS(virtual_addr->OemStringPtr);
185
    uint32_t virtual_ptr = phys_ptr + virtual_base;
186
    info_p->OEMString = (char*)(virtual_ptr);
187

188
    phys_ptr = FAR2PHYS(virtual_addr->VideoModePtr);
189
    virtual_ptr = phys_ptr + virtual_base;
190
    info_p->VideoModeList = (uint16_t*)(virtual_ptr);
191

192
    phys_ptr = FAR2PHYS(virtual_addr->OemVendorNamePtr);
193
    virtual_ptr = phys_ptr + virtual_base;
194
    info_p->OEMVendorNamePtr = (char*)(virtual_ptr);
195

196
    phys_ptr = FAR2PHYS(virtual_addr->OemProductNamePtr);
197
    virtual_ptr = phys_ptr + virtual_base;
198
    info_p->OEMProductNamePtr = (char*)(virtual_ptr);
199

200
    phys_ptr = FAR2PHYS(virtual_addr->OemProductRevPtr);
201
    virtual_ptr = phys_ptr + virtual_base;
202
    info_p->OEMProductRevPtr = (char*)(virtual_ptr);
203

204
    if (!lm_free(&controller_map)) {
205
        printf("%s: lm_free failed\n", __func__);
206
        return LCF_ERROR;
207
    }
208

209
    return SUCCESS;
210
}
211
*/
212

    
213
/// INIT
214
static int (graph_set_mode)(uint16_t mode) {
215
    struct reg86 reg_86;
216

    
217
    memset(&reg_86, 0, sizeof(struct reg86)); // reset struct
218

    
219
    // Set Reg86
220
    reg_86.intno = VC_BIOS_SERV;
221
    reg_86.ah = VBE_CALL;
222
    reg_86.al = SET_VBE_MD;
223
    reg_86.bx = mode | LINEAR_FRAME_BUFFER_MD;
224

    
225
    // BIOS CALL
226
    if (sys_int86(&reg_86) || reg_86.ah != AH_SUCCESS) {
227
        printf("%s: sys_int86 failed\n", __func__);
228
        return BIOS_CALL_ERROR;
229
    }
230

    
231
    return SUCCESS;
232
}
233
int (graph_init)(uint16_t mode){
234
    if (vbe_get_mode_information(mode)) {
235
        printf("%s: failed to get information for mode %x.\n", __func__, mode);
236
        return 1;
237
    }
238

    
239
    graph_map_vram(); // if function fails it aborts program
240

    
241
    if (graph_set_mode(mode)) {
242
        printf("%s: failed to set graphic mode %x.\n", __func__, mode);
243
        return 1;
244
    };
245
    return SUCCESS;
246
}
247

    
248
/// CLEANUP
249
int (graph_cleanup)(void){
250
    int r = SUCCESS;
251
    if ((r = vg_exit()))
252
        printf("%s: vg_exit failed to exit to text mode.\n", __func__);
253
    if ((r = graph_free_memory()))
254
        printf("%s: lm_free failed\n", __func__);
255
    return r;
256
}
257

    
258
/// PIXEL DRAWING
259
void (graph_set_pixel)(uint16_t x, uint16_t y, uint32_t color) {
260
    memcpy(video_buf + (x+y*graph_get_XRes())*graph_get_bytes_pixel(), &color, graph_get_bytes_pixel());
261
}
262
void (graph_set_pixel_pos)(unsigned pos, uint32_t color){
263
    memcpy(video_buf + pos, &color, graph_get_bytes_pixel());
264
}
265
int (graph_clear_screen)(void){ memset(video_buf, 0, graph_get_vram_size()); return SUCCESS; }
266
int (graph_draw)(void){ memcpy(video_mem, video_buf, graph_get_vram_size()); return SUCCESS; }
267

    
268
///SPRITE
269
#include "sprite.h"
270

    
271
#include "utils.h"
272
#include "fast_math.h"
273
#include <math.h>
274

    
275
struct basic_sprite{
276
    uint8_t *map;
277
    uint16_t w, h;
278
    int16_t u0, v0;
279
};
280
basic_sprite_t* (basic_sprite_ctor)(const char *const *xpm, int16_t u0, int16_t v0){
281
    basic_sprite_t *ret = malloc(sizeof(basic_sprite_t));
282
    if(ret == NULL) return NULL;
283
    enum xpm_image_type type = XPM_8_8_8_8;
284
    xpm_image_t img;
285
    ret->map = xpm_load((xpm_map_t)xpm, type, &img);
286
    if(ret->map == NULL){
287
        basic_sprite_dtor(ret);
288
        return NULL;
289
    }
290
    ret->w = img.width;
291
    ret->h = img.height;
292
    ret->u0 = u0;
293
    ret->v0 = v0;
294
    return ret;
295
}
296
void (basic_sprite_dtor)(basic_sprite_t *p){
297
    if(p == NULL) return;
298
    free(p->map);
299
    free(p);
300
}
301
const uint8_t* (basic_sprite_get_map)(const basic_sprite_t *p){ return p->map; }
302
uint16_t       (basic_sprite_get_w)  (const basic_sprite_t *p){ return p->w  ; }
303
uint16_t       (basic_sprite_get_h)  (const basic_sprite_t *p){ return p->h  ; }
304
int16_t        (basic_sprite_get_u0) (const basic_sprite_t *p){ return p->u0 ; }
305
int16_t        (basic_sprite_get_v0) (const basic_sprite_t *p){ return p->v0 ; }
306

    
307
struct sprite{
308
    const basic_sprite_t *bsp;
309
    int16_t x, y; //position in screen
310
    int16_t su0, sv0;
311
    double theta, s, c;
312
    double scale;
313
    uint8_t *sbuf;
314
};
315
sprite_t* (sprite_ctor)(const basic_sprite_t *bsp){
316
    sprite_t *ret = malloc(sizeof(sprite_t));
317
    if(ret == NULL) return NULL;
318
    ret->bsp = bsp;
319
    ret->sbuf = NULL;
320
    ret->x = 0;
321
    ret->y = 0;
322
    sprite_set_angle(ret, 0.0);
323
    sprite_set_scale(ret, 1.0);
324
    return ret;
325
}
326
void (sprite_dtor)(sprite_t *p){
327
    if(p == NULL) return;
328
    free(p->sbuf);
329
    free(p);
330
}
331
void (sprite_set_pos)   (sprite_t *p, int16_t x , int16_t y ){ p->x = x; p->y = y; }
332
void (sprite_set_angle) (sprite_t *p, double angle          ){ p->theta = angle; p->c = fm_cos(p->theta); p->s = fm_sin(p->theta); }
333
void (sprite_set_scale) (sprite_t *p, double scale          ){
334
    if(deq(p->scale, scale)) return;
335
    p->scale = scale;
336

    
337
    p->su0 = (int16_t)(p->bsp->u0*p->scale);
338
    p->sv0 = (int16_t)(p->bsp->u0*p->scale);
339

    
340
    const uint16_t W = basic_sprite_get_w(p->bsp),
341
                   H = basic_sprite_get_h(p->bsp);
342
    uint16_t sW = (uint16_t)(W*scale), sH = (uint16_t)(H*scale);
343
    p->sbuf = realloc(p->sbuf, sW*sH*4);
344
    const uint8_t *map = basic_sprite_get_map(p->bsp);
345
    for(uint16_t sx = 0; sx < sW; ++sx){
346
        for(uint16_t sy = 0; sy < sH; ++sy){
347
            uint16_t x = (uint16_t)(sx/scale), y = (uint16_t)(sy/scale);
348
            if(x > W || y > H) continue;
349
            memcpy(p->sbuf+4*(sx+sy*sW), map+4*(x+y*W), 4);
350
        }
351
    }
352
}
353
int16_t  (sprite_get_x)(const sprite_t *p){ return p->x; }
354
int16_t  (sprite_get_y)(const sprite_t *p){ return p->y; }
355
double   (sprite_get_angle)(const sprite_t *p){ return p->theta; }
356
uint16_t (sprite_get_w)(const sprite_t *p){ return basic_sprite_get_w(p->bsp); }
357
uint16_t (sprite_get_h)(const sprite_t *p){ return basic_sprite_get_h(p->bsp); }
358
static void (sprite_src2sbuf)(const sprite_t *p, int16_t x, int16_t y, int16_t *u, int16_t *v){
359
    if(p->theta == 0.0){
360
        *u = x - p->x + p->su0;
361
        *v = y - p->y + p->sv0;
362
    }else{
363
        double dx = x - p->x;
364
        double dy = y - p->y;
365
        int16_t du = (int16_t)(dx*p->c - dy*p->s - 0.5f);
366
        int16_t dv = (int16_t)(dx*p->s + dy*p->c - 0.5f);
367
        *u = du + p->su0;
368
        *v = dv + p->sv0;
369
    }
370
}
371
static void (sprite_sbuf2src)(const sprite_t *p, int16_t u, int16_t v, int16_t *x, int16_t *y){
372
    int16_t du = u - p->su0;
373
    int16_t dv = v - p->sv0;
374
    double dx =  du*p->c + dv*p->s;
375
    double dy = -du*p->s + dv*p->c;
376
    *x = (int16_t)(dx + 0.5 + p->x);
377
    *y = (int16_t)(dy + 0.5 + p->y);
378
}
379

    
380
void (sprite_draw)(const sprite_t *p){
381
    const uint16_t sw = (uint16_t)(p->scale*basic_sprite_get_w(p->bsp));
382
    const uint16_t sh = (uint16_t)(p->scale*basic_sprite_get_h(p->bsp));
383
    int16_t xmin, xmax, ymin, ymax; {
384
        int16_t x, y;
385
        sprite_sbuf2src(p, 0          , 0          , &x, &y);
386
        xmin = x; xmax = x; ymin = y; ymax = y;
387
        sprite_sbuf2src(p, (int16_t)sw, 0          , &x, &y);
388
        xmin = min16(x, xmin); xmax = max16(x, xmax); ymin = min16(y, ymin); ymax = max16(y, ymax);
389
        sprite_sbuf2src(p, 0          , (int16_t)sh, &x, &y);
390
        xmin = min16(x, xmin); xmax = max16(x, xmax); ymin = min16(y, ymin); ymax = max16(y, ymax);
391
        sprite_sbuf2src(p, (int16_t)sw, (int16_t)sh, &x, &y);
392
        xmin = min16(x, xmin); xmax = max16(x, xmax); ymin = min16(y, ymin); ymax = max16(y, ymax);
393
        xmin = max16(xmin-2, 0); xmax = min16(xmax+2, (int16_t)graph_get_XRes());
394
        ymin = max16(ymin-2, 0); ymax = min16(ymax+2, (int16_t)graph_get_YRes());
395
    }
396
    const uint16_t bytes_pixel = 3/*graph_get_bytes_pixel()*/;
397
    for(int16_t u, v, y = ymin; y < ymax; ++y){
398
        uint8_t *place = video_buf + (xmin + y*graph_get_XRes())*bytes_pixel;
399
        for(int16_t x = xmin; x < xmax; ++x, place += bytes_pixel){
400
            sprite_src2sbuf(p, x, y, &u, &v);
401
            //u = x; v = y;
402
            if(0 <= u && u < sw && 0 <= v && v < sh){
403
                const uint8_t *c_p = p->sbuf+(v*sw+u)*4;
404
                if(*(c_p+3) < ALPHA_THRESHOLD){ //alpha
405
                    memcpy(place, c_p, bytes_pixel);
406
                }
407
            }
408
        }
409
    }
410
}