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https://github.com/Rockbox/rockbox.git
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Get rid of disabling irq. Simply blocking does it too, it also caused problems (particulary with scrolling lines).
git-svn-id: svn://svn.rockbox.org/rockbox/trunk@20040 a1c6a512-1295-4272-9138-f99709370657
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parent
6a3779b543
commit
30255d53da
2 changed files with 26 additions and 21 deletions
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@ -36,6 +36,10 @@
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static bool display_on = false; /* is the display turned on? */
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static bool display_on = false; /* is the display turned on? */
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static bool display_flipped = false;
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static bool display_flipped = false;
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static int y_offset = 0; /* needed for flip */
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static int y_offset = 0; /* needed for flip */
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/* we need to write a red pixel for correct button reads
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* (see lcd_button_support()), but that must not happen while the lcd is updating
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* so block lcd_button_support the during updates */
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static volatile bool lcd_busy = false;
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/* register defines */
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/* register defines */
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#define R_START_OSC 0x00
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#define R_START_OSC 0x00
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@ -366,11 +370,9 @@ void lcd_update(void)
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if (!display_on)
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if (!display_on)
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return;
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return;
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/* we must disable interrupts because buttondriver also writes to lcd */
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disable_irq();
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lcd_write_reg(R_ENTRY_MODE, R_ENTRY_MODE_HORZ);
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lcd_write_reg(R_ENTRY_MODE, R_ENTRY_MODE_HORZ);
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lcd_busy = true;
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/* Set start position and window */
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/* Set start position and window */
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lcd_write_reg(R_HORIZ_RAM_ADDR_POS, (LCD_WIDTH-1) << 8);
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lcd_write_reg(R_HORIZ_RAM_ADDR_POS, (LCD_WIDTH-1) << 8);
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lcd_write_reg(R_VERT_RAM_ADDR_POS,
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lcd_write_reg(R_VERT_RAM_ADDR_POS,
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@ -381,7 +383,7 @@ void lcd_update(void)
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lcd_write_data((unsigned short *)lcd_framebuffer, LCD_WIDTH*LCD_HEIGHT);
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lcd_write_data((unsigned short *)lcd_framebuffer, LCD_WIDTH*LCD_HEIGHT);
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enable_irq();
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lcd_busy = false;
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} /* lcd_update */
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} /* lcd_update */
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@ -409,10 +411,8 @@ void lcd_update_rect(int x, int y, int width, int height)
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if (y >= ymax)
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if (y >= ymax)
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return; /* nothing left to do */
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return; /* nothing left to do */
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/* we must disable interrupts because buttondriver also writes to lcd */
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disable_irq();
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lcd_write_reg(R_ENTRY_MODE, R_ENTRY_MODE_HORZ);
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lcd_write_reg(R_ENTRY_MODE, R_ENTRY_MODE_HORZ);
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lcd_busy = true;
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/* Set start position and window */
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/* Set start position and window */
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lcd_write_reg(R_HORIZ_RAM_ADDR_POS,
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lcd_write_reg(R_HORIZ_RAM_ADDR_POS,
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((x + width-1) << 8) | x);
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((x + width-1) << 8) | x);
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@ -431,7 +431,7 @@ void lcd_update_rect(int x, int y, int width, int height)
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}
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}
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while (++y < ymax);
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while (++y < ymax);
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enable_irq();
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lcd_busy = false;
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} /* lcd_update_rect */
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} /* lcd_update_rect */
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/* writes one read pixel outside the visible area, needed for correct dbop reads */
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/* writes one read pixel outside the visible area, needed for correct dbop reads */
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@ -443,6 +443,9 @@ void lcd_button_support(void)
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int height=1;
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int height=1;
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unsigned short data = (0xf<<12);
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unsigned short data = (0xf<<12);
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if (lcd_busy)
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return;
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lcd_write_reg(R_ENTRY_MODE, R_ENTRY_MODE_HORZ);
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lcd_write_reg(R_ENTRY_MODE, R_ENTRY_MODE_HORZ);
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/* Set start position and window */
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/* Set start position and window */
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lcd_write_reg(R_HORIZ_RAM_ADDR_POS,
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lcd_write_reg(R_HORIZ_RAM_ADDR_POS,
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@ -41,8 +41,10 @@
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static bool display_on = false; /* is the display turned on? */
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static bool display_on = false; /* is the display turned on? */
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static bool display_flipped = false;
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static bool display_flipped = false;
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static int xoffset = 20; /* needed for flip */
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static int xoffset = 20; /* needed for flip */
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/* we need to write a red pixel for correct button reads
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static volatile int _ystart, _ymax, _xstart, _xmax;
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* (see lcd_button_support()), but that must not happen while the lcd is updating
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* so block lcd_button_support the during updates */
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static volatile bool lcd_busy = false;
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static void as3525_dbop_init(void)
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static void as3525_dbop_init(void)
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{
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{
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@ -285,8 +287,7 @@ void lcd_update(void)
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lcd_write_reg(R_ENTRY_MODE, R_ENTRY_MODE_HORZ);
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lcd_write_reg(R_ENTRY_MODE, R_ENTRY_MODE_HORZ);
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/* we must disable interrupts because buttondriver also writes to lcd */
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lcd_busy = true;
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disable_irq();
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lcd_window_x(0, LCD_WIDTH - 1);
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lcd_window_x(0, LCD_WIDTH - 1);
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lcd_window_y(0, LCD_HEIGHT - 1);
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lcd_window_y(0, LCD_HEIGHT - 1);
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@ -295,7 +296,7 @@ void lcd_update(void)
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/* Write data */
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/* Write data */
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lcd_write_data((unsigned short *)lcd_framebuffer, LCD_WIDTH*LCD_HEIGHT);
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lcd_write_data((unsigned short *)lcd_framebuffer, LCD_WIDTH*LCD_HEIGHT);
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enable_irq();
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lcd_busy = false;
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}
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}
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/* Update a fraction of the display. */
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/* Update a fraction of the display. */
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@ -327,8 +328,7 @@ void lcd_update_rect(int x, int y, int width, int height)
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lcd_write_reg(R_ENTRY_MODE, R_ENTRY_MODE_HORZ);
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lcd_write_reg(R_ENTRY_MODE, R_ENTRY_MODE_HORZ);
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/* we must disable interrupts because buttondriver also writes to lcd */
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lcd_busy = true;
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disable_irq();
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lcd_window_x(x, xmax);
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lcd_window_x(x, xmax);
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lcd_window_y(y, ymax);
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lcd_window_y(y, ymax);
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@ -343,13 +343,15 @@ void lcd_update_rect(int x, int y, int width, int height)
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ptr += LCD_WIDTH;
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ptr += LCD_WIDTH;
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}
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}
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while (++y <= ymax);
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while (++y <= ymax);
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enable_irq();
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lcd_busy = false;
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}
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}
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/* writes one read pixel outside the visible area, needed for correct dbop reads */
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/* writes one read pixel outside the visible area, needed for correct dbop reads */
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void lcd_button_support(void)
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void lcd_button_support(void)
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{
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{
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fb_data data = 0xf<<12;
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fb_data data = 0xf<<12;
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if (lcd_busy)
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return;
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lcd_write_reg(R_ENTRY_MODE, R_ENTRY_MODE_HORZ);
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lcd_write_reg(R_ENTRY_MODE, R_ENTRY_MODE_HORZ);
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/* Set start position and window */
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/* Set start position and window */
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