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1. Add backlight framework for graphic. 2. Add framebuffer and plane, power, EDID for graphic framework 3. Add boot logo render for graphic 4. Update lcd.h Signed-off-by: GuEe-GUI <2991707448@qq.com>
311 lines
7.4 KiB
C
311 lines
7.4 KiB
C
/*
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* Copyright (c) 2006-2021, RT-Thread Development Team
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*
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* SPDX-License-Identifier: Apache-2.0
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*
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* Change Logs:
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* Date Author Notes
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* 2023-02-25 GuEe-GUI the first version
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*/
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#include <rtthread.h>
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#include <rtdevice.h>
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#include <drivers/misc.h>
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#ifdef RT_USING_GRAPHIC
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typedef rt_int32_t fixed; /* Q16.16 */
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#define FIX_ONE 65536
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#define FIX_06 19661 /* 0.3 */
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#define FIX_35 22938 /* 0.35 */
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#define FIX_14 917504 /* 14.0 */
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#define FIX_286 187432 /* 2.86 */
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#define FIX_75 49152 /* 0.75 */
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#define FIX_1_3 21845
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#define FIX_2_3 43690
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#define FIX_6 393216
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#define FIX_3 196608
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#define FIX_255 16711680 /* 255 */
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#define FMUL(a,b) ((fixed)(((rt_int64_t)(a) * (b)) >> 16))
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#define FDIV(a,b) ((fixed)(((rt_int64_t)(a) << 16) / (b)))
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typedef struct { fixed x, y, z; } vec3f;
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rt_inline fixed fix_floor(fixed x)
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{
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return x & 0xffff0000;
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}
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rt_inline fixed fix_fract(fixed x)
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{
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return x & 0x0000ffff;
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}
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rt_inline fixed fix_abs(fixed x)
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{
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return rt_abs(x);
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}
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rt_inline fixed fix_clamp(fixed x, fixed a, fixed b)
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{
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return rt_clamp(x, a, b);
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}
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static vec3f clamp3(vec3f v, fixed a, fixed b)
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{
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vec3f r =
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{
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.x = fix_clamp(v.x, a, b),
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.y = fix_clamp(v.y, a, b),
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.z = fix_clamp(v.z, a, b),
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};
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return r;
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}
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static vec3f mix3(vec3f A, vec3f B, fixed t)
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{
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fixed omt = FIX_ONE - t;
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vec3f r =
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{
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.x = FMUL(A.x, omt) + FMUL(B.x, t),
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.y = FMUL(A.y, omt) + FMUL(B.y, t),
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.z = FMUL(A.z, omt) + FMUL(B.z, t),
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};
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return r;
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}
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static vec3f hsv2rgb(vec3f c)
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{
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vec3f t, r, base, mixed;
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fixed pX = FMUL(fix_fract(c.x + FIX_ONE), FIX_6);
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fixed pY = FMUL(fix_fract(c.x + FIX_2_3), FIX_6);
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fixed pZ = FMUL(fix_fract(c.x + FIX_1_3), FIX_6);
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pX = fix_abs(pX - FIX_3);
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pY = fix_abs(pY - FIX_3);
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pZ = fix_abs(pZ - FIX_3);
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t.x = pX - FIX_ONE;
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t.y = pY - FIX_ONE;
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t.z = pZ - FIX_ONE;
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t = clamp3(t, 0, FIX_ONE);
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base.x = FIX_ONE;
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base.y = FIX_ONE;
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base.z = FIX_ONE;
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mixed = mix3(base, t, c.y);
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r.x = FMUL(c.z, mixed.x);
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r.y = FMUL(c.z, mixed.y);
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r.z = FMUL(c.z, mixed.z);
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return r;
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}
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static void shader_frame(int px, int py, int width, int height, int frame,
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rt_uint8_t *r, rt_uint8_t *g, rt_uint8_t *b)
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{
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vec3f col;
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fixed uv_x, uv_y, shift, size_computed, st, x;
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uv_x = FDIV((fixed)(px << 16), (fixed)(width << 16));
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uv_y = FDIV((fixed)(py << 16), (fixed)(width << 16));
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shift = fix_fract(FDIV(FMUL((frame << 16), FIX_06), FIX_286));
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shift = FMUL(shift, FIX_286);
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size_computed = FMUL(uv_x + shift - uv_y, FIX_35);
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st = FMUL(size_computed, FIX_14);
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x = FDIV(fix_floor(st), FIX_14);
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col = hsv2rgb((vec3f){ x, FIX_75, FIX_ONE });
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*r = (rt_uint8_t)((FMUL(col.x, FIX_255) >> 16) & 255);
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*g = (rt_uint8_t)((FMUL(col.y, FIX_255) >> 16) & 255);
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*b = (rt_uint8_t)((FMUL(col.z, FIX_255) >> 16) & 255);
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}
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static void conv_gray4(rt_uint8_t r, rt_uint8_t g, rt_uint8_t b, void *pixel)
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{
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rt_uint8_t gray = (r * 30 + g * 59 + b * 11) / 100;
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*(rt_uint8_t *)pixel = gray >> 4;
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}
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static void conv_gray16(rt_uint8_t r, rt_uint8_t g, rt_uint8_t b, void *pixel)
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{
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rt_uint16_t gray = (r * 30 + g * 59 + b * 11) / 100;
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rt_uint16_t out = (gray << 8) | gray;
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*(rt_uint16_t *)pixel = out;
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}
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static void conv_rgb332(rt_uint8_t r, rt_uint8_t g, rt_uint8_t b, void *pixel)
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{
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*(rt_uint8_t*)pixel = ((r >> 5) << 5) | ((g >> 5) << 2) | (b >> 6);
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}
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static void conv_rgb444(rt_uint8_t r, rt_uint8_t g, rt_uint8_t b, void *pixel)
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{
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*(rt_uint16_t *)pixel = ((r >> 4) << 8) | ((g >> 4) << 4) | (b >> 4);
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}
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static void conv_rgb565(rt_uint8_t r, rt_uint8_t g, rt_uint8_t b, void *pixel)
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{
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*(rt_uint16_t *)pixel = ((r >> 3) << 11) | ((g >> 2) << 5) | (b >> 3);
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}
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static void conv_rgb565p(rt_uint8_t r, rt_uint8_t g, rt_uint8_t b, void *pixel)
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{
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*(rt_uint16_t *)pixel = ((g >> 2) << 10) | ((r >> 3) << 5) | (b >> 3);
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}
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static void conv_bgr565(rt_uint8_t r, rt_uint8_t g, rt_uint8_t b, void *pixel)
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{
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*(rt_uint16_t *)pixel = ((b >> 3) << 11) | ((g >> 2) << 5) | (r >> 3);
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}
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static void conv_rgb666(rt_uint8_t r, rt_uint8_t g, rt_uint8_t b, void *pixel)
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{
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rt_uint8_t *p = (rt_uint8_t *)pixel;
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p[0] = r & 0xfc;
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p[1] = g & 0xfc;
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p[2] = b & 0xfc;
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}
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static void conv_rgb888(rt_uint8_t r, rt_uint8_t g, rt_uint8_t b, void *pixel)
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{
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rt_uint8_t *p = (rt_uint8_t *)pixel;
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p[0] = r;
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p[1] = g;
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p[2] = b;
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}
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static void conv_bgr888(rt_uint8_t r, rt_uint8_t g, rt_uint8_t b, void *pixel)
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{
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rt_uint8_t *p = (rt_uint8_t*)pixel;
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p[0] = b;
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p[1] = g;
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p[2] = r;
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}
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static void conv_argb888(rt_uint8_t r, rt_uint8_t g, rt_uint8_t b, void *pixel)
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{
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*(rt_uint32_t *)pixel = (0xffU << 24) | (r << 16) | (g << 8) | b;
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}
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static void conv_abgr888(rt_uint8_t r, rt_uint8_t g, rt_uint8_t b, void *pixel)
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{
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*(rt_uint32_t *)pixel = (0xffU << 24) | (b << 16) | (g << 8) | r;
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}
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static void (*conv_funcs[])(rt_uint8_t r, rt_uint8_t g, rt_uint8_t b, void *pixel) =
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{
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[RTGRAPHIC_PIXEL_FORMAT_GRAY4] = conv_gray4,
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[RTGRAPHIC_PIXEL_FORMAT_GRAY16] = conv_gray16,
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[RTGRAPHIC_PIXEL_FORMAT_RGB332] = conv_rgb332,
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[RTGRAPHIC_PIXEL_FORMAT_RGB444] = conv_rgb444,
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[RTGRAPHIC_PIXEL_FORMAT_RGB565] = conv_rgb565,
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[RTGRAPHIC_PIXEL_FORMAT_RGB565P] = conv_rgb565p,
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[RTGRAPHIC_PIXEL_FORMAT_BGR565] = conv_bgr565,
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[RTGRAPHIC_PIXEL_FORMAT_RGB666] = conv_rgb666,
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[RTGRAPHIC_PIXEL_FORMAT_RGB888] = conv_rgb888,
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[RTGRAPHIC_PIXEL_FORMAT_BGR888] = conv_bgr888,
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[RTGRAPHIC_PIXEL_FORMAT_ARGB888] = conv_argb888,
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[RTGRAPHIC_PIXEL_FORMAT_ABGR888] = conv_abgr888,
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};
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rt_err_t graphic_start(const char *gdev, int count)
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{
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rt_err_t err;
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rt_uint8_t *vfb, *fb, *pixel, bpp;
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struct rt_device_graphic_info info;
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struct rt_device *dev = rt_device_find(gdev);
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void (*conv_func)(rt_uint8_t r, rt_uint8_t g, rt_uint8_t b, void *pixel);
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if (!dev)
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{
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return -RT_EINVAL;
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}
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if ((err = rt_device_open(dev, 0)))
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{
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return err;
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}
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if ((err = rt_device_control(dev, RTGRAPHIC_CTRL_GET_INFO, &info)))
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{
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goto _end;
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}
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if (!(vfb = rt_malloc(info.smem_len)))
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{
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err = -RT_ENOMEM;
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goto _end;
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}
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bpp = info.bits_per_pixel / 8;
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conv_func = conv_funcs[info.pixel_format];
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for (int frame = 0; frame < count; ++frame)
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{
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fb = vfb;
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for (int y = 0; y < info.height; ++y)
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{
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pixel = fb;
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for (int x = 0; x < info.width; ++x)
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{
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rt_uint8_t r, g, b;
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shader_frame(x, y, info.width, info.height, frame, &r, &g, &b);
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conv_func(r, g, b, pixel);
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pixel += bpp;
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}
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fb += info.pitch;
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}
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rt_memcpy(info.framebuffer, vfb, info.smem_len);
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}
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rt_free(vfb);
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_end:
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rt_device_close(dev);
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return err;
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}
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#ifdef RT_USING_FINSH
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#include <stdlib.h>
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static int _graphic_start(int argc, char**argv)
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{
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int count = 10;
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const char *gdev = "fb0";
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if (argc > 1)
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{
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gdev = argv[1];
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}
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if (argc > 2)
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{
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count = atoi(argv[2]);
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}
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return (int)graphic_start(gdev, count);
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}
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MSH_CMD_EXPORT_ALIAS(_graphic_start, graphic_start, fixed resolution only e.g: graphic_start("fb0", 10));
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#endif /* RT_USING_FINSH */
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#endif /* RT_USING_GRAPHIC */
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