📄 tft_hx8309.c
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uint16 left, //the left value of the rectangel
uint16 top, //top of the rectangle
uint16 right, //right of the rectangle
uint16 bottom, //bottom of the rectangle
uint16 *buf_ptr,
uint8 is_invert//ignore
)
{
uint32 i, j;
//uint32 dummy_before, dummy_after;
uint32 row, column,rect_width;
left = (left >= MP4_MAX_WIDTH) ? MP4_MAX_WIDTH-1 : left;
right = (right >= MP4_MAX_WIDTH) ? MP4_MAX_WIDTH-1 : right;
top = (top >= MP4_MAX_HEIGHT) ? MP4_MAX_HEIGHT-1 : top;
bottom = (bottom >= MP4_MAX_HEIGHT) ? MP4_MAX_HEIGHT-1 : bottom;
if ( ( right < left ) || ( bottom < top ) )
{
return ERR_LCD_PARAMETER_WRONG;
}
HX8309_set_display_window(left, top, right, bottom);
// In High Speed RAM Write Mode. Maybe some dummy data are insterted.
//dummy_before = (left) % 4; // Inserted numbers befor every arrow.
//dummy_after = 3 - (right % 4); // Inserted numbers after every arrow.
#ifdef LCD_USE_DMA
HX8309_set_start_address(left, top);
HX8309_SEND_COMMAND(0x22); // send data.
rect_width = right-left+1;
for (j = top; j <= bottom; j++)
{
dma_request(0, (uint32)(buf_ptr + j * rect_width +left), 0x58008000, rect_width,
1, 0);
}
#else
row = bottom - top;
column = right - left;
HX8309_set_start_address(left, top);
HX8309_SEND_COMMAND(0x22); // send data.
for (i = 0; i <= row; i++)
{
//for(j = 0; j<dummy_before; j++) // Insert dummy write befor real write.
//R61500_SEND_DATA(0x00);
for (j = 0; j <= column; j++) // real write
HX8309_SEND_DATA( *(buf_ptr + (top+i)*HX8309_WIDTH + left+j) );
//for(j=0; j<dummy_after; j++) // Insert dummy write after real write.
//R61500_SEND_DATA(0x00);
}
#endif
return ERR_LCD_NONE;
}
/*@Zhemin.Lin, CR9122, begin*/
static LCD_SPEC_T g_HX8309_spec =
{
0, //uint8 rgb_sequence; /*rgb sequence*/
/*0: R-G-B, 1: B-G-R*/
10, //uint8 min_cycle_read; /*read cycle: ns*/
50, //uint8 min_cycle_write; /*write cycle: ns*/
0, //uint8 cyclenum_sendaddr; /*operation cycle to send address*/
/* 0: once, 1:twice*/
0, //uint8 cyclenum_senddata; /*operation cycle to send data */
/* 0; once, 1:twice*/
1, //uint8 cmd_num_setupwin; /*command number to settint up widnow space*/
/*0: 4 commands for setting up window space: x-start, x-end, y-start, y-end*/
/*1: 2 commands for setting up window space: x-address, y-address*/
/*2: 1 commanns for setting up window space window address*/
/*3: no commands for setting up window space*/
1, //uint8 method_send_cmdaddr;/*how to send command & address*/
/*0: sending together, 1:sending separately*/
1, //uint8 ads_is_high; /*status of ADS when sending parameter*/
/*0: low, 1: high*/
0, //uint8 sequence_cmdaddr; /*the sequence of command & address, if not send command & address together as 16 bits*/
/*0: write 2 window area on a 16bit bus, Hitachi*/
/*1, write 1 sindow area with one command, Casio*/
/*2, write 1 command and 2 parameters separately, Samsung*/
/*3, reserved*/
/*4, write 1 command, 2 parameters for page, 4 parameters for column, Epson*/
/*5, write 1 command, 4 parameters for page, 2 parameters for column*/
/*6, write 1 command, write 4 parameters for each page/column*/
4, //uint8 cyclenum_setupwin; /*operation cycle to set up window*/
1, //uint8 method_gram_access; /*select method to begin actul data read/write address for selected window area in GRAM*/
/*0: without any assigning x/y address, use initial start address of window*/
/*1: assign 1 x/y set command and parameter onto 16bit bus at onece*/
/*2: use separate for X and Y, with upper byte consists of command and lower byte for parameter*/
/*3, 1 command for selecting X/Y adn 2 parameters, us command and parameter separately*/
/*4, set different command for x and y, and command and parameter differs*/
1, //uint8 sequence_gram_access;/*read/write command and sequence for GRAM*/
/*0: perform read/write without seperate read/write command but by strobe 'high' ADS(RS)pin, samsung*/
/*1: data cycle comes right afer read/write command, Toshiba/Matsushita/Hitachi/NEC*/
/*2: after read/write command follows start address parameter for X and Y and follows data cycle, Casio*/
/*3: similiar to 2 but sends X and Y parameters together on 16 bit BUS*/
0, //uint8 order_xy; /*order of x and y address, I think, this field is active when sequence_gram_access = 2*/
/*0: X first*/
/*1: Y first*/
1, //uint8 is_dummy_read; /*deciding first read data when reading GRAM*/
/*0: acknowledge first data as valid data*/
/*1: acknowledge first data as dummy data*/
3, //uint8 cyclenum_read; /*total cycle numbers needed to access GRAM read/write*/
0x44, //uint8 win_setstartx_cmd; /*window x start address set command*/
0x00, //uint8 win_setendx_cmd; /*window x end address set command*/
0x45, //uint8 win_setstarty_cmd; /*window y start address set command*/
0x00, //uint8 win_setendy_cmd; /*window y end address set command*/
0x21, //uint8 gram_setx_cmd; /*gram x address set command*/
0x00, //uint8 gram_sety_cmd; /*gram y address set command*/
0x22, //uint8 gram_read_cmd; /*gram read command*/
0x22, //uint8 gram_write_cmd; /*gram write command*/
//@zhemin.lin, add 1 line, CR9590
0x00, //uint8 line_offset; /*line offset for display on lcd*/
0x00 //uint8 colum_offset /*columoffset for display on lcd*/
};
/******************************************************************************/
// Description: get the important parameter for digital camera
// Global resource dependence:
// Author: Zhemin.lin
// Note:
/******************************************************************************/
LOCAL ERR_LCD_E HX8309_GetMainLcdSpec(
LCD_SPEC_T *spec_ptr //spec struct pointer
)
{
if (spec_ptr == PNULL)
{
return 1;
}
memcpy(spec_ptr, &g_HX8309_spec, sizeof(LCD_SPEC_T));
return ERR_LCD_NONE;
}
/******************************************************************************/
// Description: Enter/Exit sleep mode .
// Global resource dependence:
// Author: Jim.zhang
// Note:
/******************************************************************************/
LOCAL ERR_LCD_E HX8309_EnterSleep(
BOOLEAN is_sleep //SCI_TRUE: exter sleep mode;SCI_FALSE:exit sleep mode.
)
{
SCI_TRACE_LOW("HX8309_EnterSleep,%d", is_sleep);
if ( is_sleep ) // enter sleep mode.
{
//HX8309_sendcommand1(0x0007, 0x0000); //DTE=0, D1-0=0, GON=0
//HX8309_sendcommand1(0x0003, 0x0002); //SLP=1
//Delayms(40);
HX8309_GoSleep();
}
else // out sleep mode
{
HX8309_reset();
//HX8309_ExitSleep();
HX8309_Invalidate();
}
/*
if( !GetUdiskState())
DC_EnterSleep(is_sleep);
*/
return ERR_LCD_NONE;
}
/*****************************************************************************/
// Description: Enable lcd to partial display mode, so can save power.
// Global resource dependence:
// Author: Jim.zhang
// Return: SCI_TRUE:SUCCESS ,SCI_FALSE:failed.
// Note: If all input parameters are 0, exit partial display mode.
/*****************************************************************************/
LOCAL ERR_LCD_E HX8309_SetDisplayWindow(
uint16 left, //left of the window
uint16 top, //top of the window
uint16 right, //right of the window
uint16 bottom //bottom of the window
)
{
HX8309_set_display_window(left, top, right, bottom);
//@David.Jia 2005.12.27 cr37434 begin
HX8309_set_start_address(left, top);
//@David.Jia 2005.12.27 cr37434 end
HX8309_SEND_COMMAND(0x0022);
return ERR_LCD_NONE;
}
/*********************************************************************/
// Description: Initialize color LCD : HX8309
// Input:
// None.
// Author: yinchun.li
// Return:
// None.
// Note:
// modify: jim.cui 2005.0728 add dma init
/*********************************************************************/
LOCAL ERR_LCD_E HX8309_Init(void)
{
//dma init
#ifdef LCD_USE_DMA
dma_init ();
#endif
//HX8309_HW_reset();
HX8309_reset();
HX8309_Clear( 0xf25f );
return ERR_LCD_NONE;
}
/******************************************************************************/
// Description: set the contrast value
// Global resource dependence:
// Author: Jim.zhang
// Note:
/******************************************************************************/
LOCAL ERR_LCD_E HX8309_SetContrast(
uint16 contrast //contrast value to set
)
{
return ERR_LCD_FUNC_NOT_SUPPORT;
}
/*****************************************************************************/
// Description: Set the brightness of LCD.
// Global resource dependence:
// Author: Jim.zhang
// Note:
/*****************************************************************************/
LOCAL ERR_LCD_E HX8309_SetBrightness(
uint16 brightness //birghtness to set
)
{
return ERR_LCD_FUNC_NOT_SUPPORT;
}
/******************************************************************************/
// Description: Close the lcd.(include sub lcd.)
// Global resource dependence:
// Author: Jim.zhang
// Note:
/******************************************************************************/
LOCAL void HX8309_Close()
{
GPIO_SetLcdBackLight( SCI_FALSE );
HX8309_EnterSleep( SCI_TRUE );
}
LOCAL LCD_OPERATIONS_T HX8309_operations =
{
HX8309_Init,
HX8309_EnterSleep,
HX8309_SetContrast,
HX8309_SetBrightness,
HX8309_SetDisplayWindow,
HX8309_GetInfo,
HX8309_InvalidateRect,
HX8309_InvalidateRectImage,
HX8309_Invalidate,
HX8309_Clear,
HX8309_Close,
HX8309_GetMainLcdSpec
};
/******************************************************************************/
// Description: return the HX8309 lcd driver funtion pointer
// Global resource dependence:
// Author: Jim.zhang
// Note:
/******************************************************************************/
PUBLIC LCD_OPERATIONS_T* HX8309_GetOperations()
{
return &HX8309_operations;
}
#define ADC_NUM 10
PUBLIC BOOLEAN HX8309_Probe(void)
{
uint32 i, adc_val = 0, adc_sum = 0;
/*Delayms(500);
for(i=0; i<ADC_NUM; i++)
{
adc_val = ADC_GetResultDirectly(ADIN_1, FALSE);
adc_sum += adc_val;
SCI_TRACE_LOW("adc_rlt[%d]: %d", i, adc_val);
Delayms(50);
}
adc_val = adc_sum / ADC_NUM;*/
adc_val = LCD_GetADCValue(ADIN_1);//added by lipengyu.
SCI_TRACE_LOW("average adc_val: %d", adc_val);
if((adc_val >= ADC_HX8309_LOW) && (adc_val <= ADC_HX8309_HIGH)) //
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