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513 theseven 1
//
2
//
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//    Copyright 2010 TheSeven
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//
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//
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//    This file is part of emCORE.
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//
8
//    emCORE is free software: you can redistribute it and/or
9
//    modify it under the terms of the GNU General Public License as
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//    published by the Free Software Foundation, either version 2 of the
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//    License, or (at your option) any later version.
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//
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//    emCORE is distributed in the hope that it will be useful,
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//    but WITHOUT ANY WARRANTY; without even the implied warranty of
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//    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
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//    See the GNU General Public License for more details.
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//
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//    You should have received a copy of the GNU General Public License along
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//    with emCORE.  If not, see <http://www.gnu.org/licenses/>.
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//
21
//
22
 
23
 
24
#include "global.h"
25
#include "thread.h"
26
#include "s5l8702.h"
27
#include "util.h"
28
 
29
 
30
static struct dma_lli lcd_lli[(LCD_WIDTH * LCD_HEIGHT - 1) / 0xfff]
31
    IDATA_ATTR __attribute__((aligned(16)));
32
 
33
static uint16_t lcd_color IDATA_ATTR;
34
 
35
static struct mutex lcd_mutex;
36
 
37
 
38
void lcd_init()
39
{
40
}
41
 
42
int lcd_get_width()
43
{
44
    return LCD_WIDTH;
45
}
46
 
47
int lcd_get_height()
48
{
49
    return LCD_HEIGHT;
50
}
51
 
52
int lcd_get_bytes_per_pixel()
53
{
54
    return LCD_BYTESPERPIXEL;
55
}
56
 
57
int lcd_get_format()
58
{
59
    return LCD_FORMAT;
60
}
61
 
62
static void lcd_send_cmd(uint16_t cmd) ICODE_ATTR __attribute__((noinline));
63
static void lcd_send_cmd(uint16_t cmd)
64
{
65
    while (LCDSTATUS & 0x10);
66
    LCDWCMD = cmd;
67
}
68
 
69
static void lcd_send_data(uint16_t data) ICODE_ATTR __attribute__((noinline));
70
static void lcd_send_data(uint16_t data)
71
{
72
    while (LCDSTATUS & 0x10);
73
    LCDWDATA = (data & 0xff) | ((data & 0x7f00) << 1);
74
}
75
 
76
static uint32_t lcd_detect() ICODE_ATTR;
77
static uint32_t lcd_detect()
78
{
79
    return (PDAT6 & 0x30) >> 4;
80
}
81
 
82
bool displaylcd_busy() ICODE_ATTR;
83
bool displaylcd_busy()
84
{
85
    return DMAC0C4CONFIG & 1;
86
}
87
 
88
bool displaylcd_safe()
89
{
90
    return !(DMAC0C4CONFIG & 1);
91
}
92
 
93
void displaylcd_sync() ICODE_ATTR;
94
void displaylcd_sync()
95
{
96
    while (displaylcd_busy()) sleep(100);
97
}
98
 
99
void displaylcd_setup(unsigned int startx, unsigned int endx,
100
                      unsigned int starty, unsigned int endy) ICODE_ATTR;
101
void displaylcd_setup(unsigned int startx, unsigned int endx,
102
                      unsigned int starty, unsigned int endy)
103
{
521 theseven 104
    displaylcd_sync();
513 theseven 105
    mutex_lock(&lcd_mutex, TIMEOUT_BLOCK);
106
    if (lcd_detect() & 2)
107
    {
108
        lcd_send_cmd(0x210);
109
        lcd_send_data(startx);
110
        lcd_send_cmd(0x211);
111
        lcd_send_data(endx);
112
        lcd_send_cmd(0x212);
113
        lcd_send_data(starty);
114
        lcd_send_cmd(0x213);
115
        lcd_send_data(endy);
116
        lcd_send_cmd(0x200);
117
        lcd_send_data(startx);
118
        lcd_send_cmd(0x201);
119
        lcd_send_data(starty);
120
        lcd_send_cmd(0x202);
121
    }
122
    else
123
    {
124
        lcd_send_cmd(0x2a);
125
        lcd_send_data(startx >> 8);
126
        lcd_send_data(startx & 0xff);
127
        lcd_send_data(endx >> 8);
128
        lcd_send_data(endx & 0xff);
129
        lcd_send_cmd(0x2b);
130
        lcd_send_data(starty >> 8);
131
        lcd_send_data(starty & 0xff);
132
        lcd_send_data(endy >> 8);
133
        lcd_send_data(endy & 0xff);
134
        lcd_send_cmd(0x2c);
135
    }
136
}
137
 
138
static void displaylcd_dma(void* data, int pixels, bool solid) ICODE_ATTR;
139
static void displaylcd_dma(void* data, int pixels, bool solid)
140
{
141
    int i;
142
    for (i = -1; i < (int)ARRAYLEN(lcd_lli) && pixels > 0; i++, pixels -= 0xfff)
143
    {
144
        bool last = i + 1 >= ARRAYLEN(lcd_lli) || pixels <= 0xfff;
145
        struct dma_lli* lli = i < 0 ? (struct dma_lli*)((int)&DMAC0C4LLI) : &lcd_lli[i];
146
        lli->srcaddr = data;
147
        lli->dstaddr = (void*)((int)&LCDWDATA);
148
        lli->nextlli = last ? NULL : &lcd_lli[i + 1];
149
        lli->control = 0x70240000 | (last ? pixels : 0xfff)
150
                     | (last ? 0x80000000 : 0) | (solid ? 0 : 0x4000000);
521 theseven 151
        if (!solid) data = (void*)(((uint32_t)data) + 0x1ffe);
513 theseven 152
    }
153
    clean_dcache();
154
    DMAC0C4CONFIG = 0x88c1;
155
}
156
 
157
void displaylcd_native(unsigned int startx, unsigned int endx,
158
                       unsigned int starty, unsigned int endy, void* data)
159
{
160
    int pixels = (endx - startx + 1) * (endy - starty + 1);
161
    if (pixels <= 0) return;
162
    displaylcd_setup(startx, endx, starty, endy);
163
    displaylcd_dma(data, pixels, false);
164
    mutex_unlock(&lcd_mutex);
165
}
166
 
167
void filllcd_native(unsigned int startx, unsigned int endx,
168
                    unsigned int starty, unsigned int endy, int color)
169
{
170
    int pixels = (endx - startx + 1) * (endy - starty + 1);
171
    if (pixels <= 0) return;
172
    displaylcd_setup(startx, endx, starty, endy);
173
    lcd_color = color;
174
    displaylcd_dma(&lcd_color, pixels, true);
175
    mutex_unlock(&lcd_mutex);
176
}
177
 
178
void displaylcd_dither(unsigned int x, unsigned int y, unsigned int width,
179
                       unsigned int height, void* data, unsigned int datax,
180
                       unsigned int datay, unsigned int stride, bool solid)
181
     ICODE_ATTR __attribute__((naked,noinline));
182
void displaylcd_dither(unsigned int x, unsigned int y, unsigned int width,
183
                       unsigned int height, void* data, unsigned int datax,
184
                       unsigned int datay, unsigned int stride, bool solid)
185
{
186
    __asm__ volatile("    muls r12, r2, r3             \n");
187
    __asm__ volatile("    bxeq lr                      \n");
188
    __asm__ volatile("    stmfd sp!, {r2-r11,lr}       \n");
189
    __asm__ volatile("    mov r12, r2                  \n");
190
    __asm__ volatile("    add r8, r2, r2,lsl#1         \n");
191
    __asm__ volatile("    add r3, r1, r3               \n");
192
    __asm__ volatile("    sub r3, r3, #1               \n");
193
    __asm__ volatile("    mov r2, r1                   \n");
194
    __asm__ volatile("    add r1, r0, r12              \n");
195
    __asm__ volatile("    sub r1, r1, #1               \n");
196
    __asm__ volatile("    bl displaylcd_setup          \n");
197
    __asm__ volatile("    mov r0, r8                   \n");
198
    __asm__ volatile("    bl malloc                    \n");
199
    __asm__ volatile("    cmp r0, #0                   \n");
200
    __asm__ volatile("    beq displaylcd_dither_unlock \n");
201
    __asm__ volatile("    mov r2, r8                   \n");
202
    __asm__ volatile("    mov r1, #0                   \n");
203
    __asm__ volatile("    mov r8, r0                   \n");
204
    __asm__ volatile("    bl memset                    \n");
205
    __asm__ volatile("    ldr r0, [sp,#0x30]           \n");
206
    __asm__ volatile("    ldr r1, [sp,#0x34]           \n");
207
    __asm__ volatile("    ldr r11, [sp,#0x38]          \n");
208
    __asm__ volatile("    ldr r3, [sp,#0x2c]           \n");
209
    __asm__ volatile("    mla r0, r1, r11, r0          \n");
210
    __asm__ volatile("    ldr r12, [sp,#0x04]          \n");
211
    __asm__ volatile("    ldr r2, [sp,#0x3c]           \n");
212
    __asm__ volatile("    add r3, r3, r0,lsl#1         \n");
213
    __asm__ volatile("    cmp r2, #0                   \n");
214
    __asm__ volatile("    ldreq r1, [sp]               \n");
215
    __asm__ volatile("    add r3, r3, r0               \n");
216
    __asm__ volatile("    subeq r11, r11, r1           \n");
217
    __asm__ volatile("    add r11, r11, r11,lsl#1      \n");
218
    __asm__ volatile("    movne r10, #3                \n");
219
    __asm__ volatile("    moveq r10, #0                \n");
220
    __asm__ volatile("    ldr r9, =0x38300040          \n");
221
    __asm__ volatile("displaylcd_dither_y:             \n");
222
    __asm__ volatile("    ldr lr, [sp]                 \n");
223
    __asm__ volatile("    mov r4, #0                   \n");
224
    __asm__ volatile("    mov r5, #0                   \n");
225
    __asm__ volatile("    mov r6, #0                   \n");
226
    __asm__ volatile("    mov r7, r8                   \n");
227
    __asm__ volatile("displaylcd_dither_x:             \n");
228
    __asm__ volatile("    mov r2, #0                   \n");
229
    __asm__ volatile("    ldrb r1, [r3], #1            \n");
230
    __asm__ volatile("    ldrsb r0, [r7]               \n");
231
    __asm__ volatile("    add r1, r1, r4               \n");
232
    __asm__ volatile("    add r1, r1, r0               \n");
233
    __asm__ volatile("    cmp r1, #0                   \n");
234
    __asm__ volatile("    movlt r1, #0                 \n");
235
    __asm__ volatile("    cmp r1, #0xff                \n");
236
    __asm__ volatile("    movgt r1, #0xff              \n");
237
    __asm__ volatile("    mov r0, r1,lsr#3             \n");
238
    __asm__ volatile("    orr r2, r0,lsl#11            \n");
239
    __asm__ volatile("    sub r1, r1, r0,lsl#3         \n");
240
    __asm__ volatile("    sub r1, r1, r0,lsr#2         \n");
241
    __asm__ volatile("    mov r4, r4,lsr#1             \n");
242
    __asm__ volatile("    add r4, r4, r1,lsr#2         \n");
243
    __asm__ volatile("    strb r4, [r7], #1            \n");
244
    __asm__ volatile("    mov r4, r1,asr#1             \n");
245
    __asm__ volatile("    ldrb r1, [r3], #1            \n");
246
    __asm__ volatile("    ldrsb r0, [r7]               \n");
247
    __asm__ volatile("    add r1, r1, r5               \n");
248
    __asm__ volatile("    add r1, r1, r0               \n");
249
    __asm__ volatile("    cmp r1, #0                   \n");
250
    __asm__ volatile("    movlt r1, #0                 \n");
251
    __asm__ volatile("    cmp r1, #0xff                \n");
252
    __asm__ volatile("    movgt r1, #0xff              \n");
253
    __asm__ volatile("    mov r0, r1,lsr#2             \n");
254
    __asm__ volatile("    orr r2, r0,lsl#5             \n");
255
    __asm__ volatile("    sub r1, r1, r0,lsl#2         \n");
256
    __asm__ volatile("    sub r1, r1, r0,lsr#4         \n");
257
    __asm__ volatile("    mov r5, r5,lsr#1             \n");
258
    __asm__ volatile("    add r5, r5, r1,lsr#2         \n");
259
    __asm__ volatile("    strb r5, [r7], #1            \n");
260
    __asm__ volatile("    mov r5, r1,asr#1             \n");
261
    __asm__ volatile("    ldrb r1, [r3], #1            \n");
262
    __asm__ volatile("    ldrsb r0, [r7]               \n");
263
    __asm__ volatile("    add r1, r1, r6               \n");
264
    __asm__ volatile("    add r1, r1, r0               \n");
265
    __asm__ volatile("    cmp r1, #0                   \n");
266
    __asm__ volatile("    movlt r1, #0                 \n");
267
    __asm__ volatile("    cmp r1, #0xff                \n");
268
    __asm__ volatile("    movgt r1, #0xff              \n");
269
    __asm__ volatile("    mov r0, r1,lsr#3             \n");
270
    __asm__ volatile("    orr r2, r0                   \n");
271
    __asm__ volatile("    sub r1, r1, r0,lsl#3         \n");
272
    __asm__ volatile("    sub r1, r1, r0,lsr#2         \n");
273
    __asm__ volatile("    mov r6, r6,lsr#1             \n");
274
    __asm__ volatile("    add r6, r6, r1,lsr#2         \n");
275
    __asm__ volatile("    strb r6, [r7], #1            \n");
276
    __asm__ volatile("    mov r6, r1,asr#1             \n");
277
    __asm__ volatile("    str r2, [r9]                 \n");
278
    __asm__ volatile("    sub r3, r3, r10              \n");
279
    __asm__ volatile("    subs lr, lr, #1              \n");
280
    __asm__ volatile("    bne displaylcd_dither_x      \n");
281
    __asm__ volatile("    add r3, r3, r11              \n");
282
    __asm__ volatile("    subs r12, r12, #1            \n");
283
    __asm__ volatile("    bne displaylcd_dither_y      \n");
284
    __asm__ volatile("displaylcd_dither_free:          \n");
285
    __asm__ volatile("    mov r0, r8                   \n");
286
    __asm__ volatile("    bl free                      \n");
287
    __asm__ volatile("displaylcd_dither_unlock:        \n");
288
    __asm__ volatile("    ldr r0, =lcd_mutex           \n");
289
    __asm__ volatile("    bl mutex_unlock              \n");
290
    __asm__ volatile("    ldmfd sp!, {r2-r11,pc}       \n");
291
}
292
 
293
void displaylcd(unsigned int x, unsigned int y, unsigned int width, unsigned int height,
294
                void* data, unsigned int datax, unsigned int datay, unsigned int stride)
295
{
296
    displaylcd_dither(x, y, width, height, data, datax, datay, stride, false);
297
}
298
 
299
void filllcd(unsigned int x, unsigned int y, unsigned int width, unsigned int height, int color)
300
{
301
    if (width * height <= 0) return;
521 theseven 302
    displaylcd_sync();
513 theseven 303
    mutex_lock(&lcd_mutex, TIMEOUT_BLOCK);
304
    lcd_color = color;
305
    displaylcd_dither(x, y, width, height, &lcd_color, 0, 0, 0, true);
306
    mutex_unlock(&lcd_mutex);
307
}
308
 
309
void lcd_shutdown()
310
{
311
    displaylcd_sync();
312
    uint32_t type = lcd_detect();
313
    if (type & 2)
314
    {
315
        lcd_send_cmd(0x7);
316
        lcd_send_data(0x172);
317
        lcd_send_cmd(0x30);
318
        lcd_send_data(0x3ff);
319
        sleep(90000);
320
        lcd_send_cmd(0x7);
321
        lcd_send_data(0x120);
322
        lcd_send_cmd(0x30);
323
        lcd_send_data(0x0);
324
        lcd_send_cmd(0x100);
325
        lcd_send_data(0x780);
326
        lcd_send_cmd(0x7);
327
        lcd_send_data(0x0);
328
        lcd_send_cmd(0x101);
329
        lcd_send_data(0x260);
330
        lcd_send_cmd(0x102);
331
        lcd_send_data(0xa9);
332
        sleep(30000);
333
        lcd_send_cmd(0x100);
334
        lcd_send_data(0x700);
335
        lcd_send_cmd(0x100);
336
        lcd_send_data(0x704);
337
    }
338
    else if (type == 1)
339
    {
340
        lcd_send_cmd(0x28);
341
        lcd_send_cmd(0x10);
342
        sleep(100000);
343
    }
344
    else
345
    {
346
        lcd_send_cmd(0x28);
347
        sleep(50000);
348
        lcd_send_cmd(0x10);
349
        sleep(50000);
350
    }
351
}
352
 
353
void INT_DMAC0C4()
354
{
355
    DMAC0INTTCCLR = 0x10;
356
    lcdconsole_callback();
357
}
358
 
359
int lcd_translate_color(uint8_t alpha, uint8_t red, uint8_t green, uint8_t blue)
360
    ICODE_ATTR __attribute__((naked, noinline));
361
int lcd_translate_color(uint8_t alpha, uint8_t red, uint8_t green, uint8_t blue)
362
{
363
    asm volatile(
364
        "cmp r0, #0xff             \n\t"
365
        "moveq r0, #-1             \n\t"
366
        "moveq pc, lr              \n\t"
367
        "cmp r0, #0                \n\t"
368
        "movne r0, #0xff000000     \n\t"
369
        "orrne r0, r0, #0xff0000   \n\t"
370
        "mov r2, r2,lsr#2          \n\t"
371
        "orr r0, r0, r3,lsr#3      \n\t"
372
        "mov r1, r1,lsr#3          \n\t"
373
        "orr r0, r0, r2,lsl#5      \n\t"
374
        "orr r0, r0, r1,lsl#11     \n\t"
375
        "mov pc, lr                \n\t"
376
    );
377
}