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// SPDX-License-Identifier: GPL-2.0-only
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/*
* Copyright ( C ) 2009 Nokia Corporation
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* Author : Tomi Valkeinen < tomi . valkeinen @ ti . com >
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*/
# define DSS_SUBSYS_NAME "SDI"
# include <linux/delay.h>
# include <linux/err.h>
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# include <linux/export.h>
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# include <linux/kernel.h>
# include <linux/of.h>
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# include <linux/platform_device.h>
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# include <linux/regulator/consumer.h>
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# include <linux/string.h>
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# include <drm/drm_bridge.h>
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# include "dss.h"
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# include "omapdss.h"
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struct sdi_device {
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struct platform_device * pdev ;
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struct dss_device * dss ;
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bool update_enabled ;
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struct regulator * vdds_sdi_reg ;
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struct dss_lcd_mgr_config mgr_config ;
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unsigned long pixelclock ;
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int datapairs ;
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OMAPDSS: combine omap_dss_output into omap_dss_device
We currently have omap_dss_device, which represents an external display
device, sometimes an external encoder, sometimes a panel. Then we have
omap_dss_output, which represents DSS's output encoder.
In the future with new display device model, we construct a video
pipeline from the display blocks. To accomplish this, all the blocks
need to be presented by the same entity.
Thus, this patch combines omap_dss_output into omap_dss_device. Some of
the fields in omap_dss_output are already found in omap_dss_device, but
some are not. This means we'll have DSS output specific fields in
omap_dss_device, which is not very nice. However, it is easier to just
keep those output specific fields there for now, and after transition to
new display device model is made, they can be cleaned up easier than
could be done now.
Signed-off-by: Tomi Valkeinen <tomi.valkeinen@ti.com>
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struct omap_dss_device output ;
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struct drm_bridge bridge ;
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} ;
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# define drm_bridge_to_sdi(bridge) \
container_of ( bridge , struct sdi_device , bridge )
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struct sdi_clk_calc_ctx {
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struct sdi_device * sdi ;
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unsigned long pck_min , pck_max ;
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unsigned long fck ;
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struct dispc_clock_info dispc_cinfo ;
} ;
static bool dpi_calc_dispc_cb ( int lckd , int pckd , unsigned long lck ,
unsigned long pck , void * data )
{
struct sdi_clk_calc_ctx * ctx = data ;
ctx - > dispc_cinfo . lck_div = lckd ;
ctx - > dispc_cinfo . pck_div = pckd ;
ctx - > dispc_cinfo . lck = lck ;
ctx - > dispc_cinfo . pck = pck ;
return true ;
}
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static bool dpi_calc_dss_cb ( unsigned long fck , void * data )
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{
struct sdi_clk_calc_ctx * ctx = data ;
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ctx - > fck = fck ;
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return dispc_div_calc ( ctx - > sdi - > dss - > dispc , fck ,
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ctx - > pck_min , ctx - > pck_max ,
dpi_calc_dispc_cb , ctx ) ;
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}
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static int sdi_calc_clock_div ( struct sdi_device * sdi , unsigned long pclk ,
unsigned long * fck ,
struct dispc_clock_info * dispc_cinfo )
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{
int i ;
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struct sdi_clk_calc_ctx ctx ;
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/*
* DSS fclk gives us very few possibilities , so finding a good pixel
* clock may not be possible . We try multiple times to find the clock ,
* each time widening the pixel clock range we look for , up to
* + / - 1 MHz .
*/
for ( i = 0 ; i < 10 ; + + i ) {
bool ok ;
memset ( & ctx , 0 , sizeof ( ctx ) ) ;
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ctx . sdi = sdi ;
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if ( pclk > 1000 * i * i * i )
ctx . pck_min = max ( pclk - 1000 * i * i * i , 0lu ) ;
else
ctx . pck_min = 0 ;
ctx . pck_max = pclk + 1000 * i * i * i ;
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ok = dss_div_calc ( sdi - > dss , pclk , ctx . pck_min ,
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dpi_calc_dss_cb , & ctx ) ;
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if ( ok ) {
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* fck = ctx . fck ;
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* dispc_cinfo = ctx . dispc_cinfo ;
return 0 ;
}
}
return - EINVAL ;
}
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static void sdi_config_lcd_manager ( struct sdi_device * sdi )
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{
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sdi - > mgr_config . io_pad_mode = DSS_IO_PAD_MODE_BYPASS ;
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sdi - > mgr_config . stallmode = false ;
sdi - > mgr_config . fifohandcheck = false ;
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sdi - > mgr_config . video_port_width = 24 ;
sdi - > mgr_config . lcden_sig_polarity = 1 ;
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dss_mgr_set_lcd_config ( & sdi - > output , & sdi - > mgr_config ) ;
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}
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/* -----------------------------------------------------------------------------
* DRM Bridge Operations
*/
static int sdi_bridge_attach ( struct drm_bridge * bridge ,
enum drm_bridge_attach_flags flags )
{
struct sdi_device * sdi = drm_bridge_to_sdi ( bridge ) ;
if ( ! ( flags & DRM_BRIDGE_ATTACH_NO_CONNECTOR ) )
return - EINVAL ;
return drm_bridge_attach ( bridge - > encoder , sdi - > output . next_bridge ,
bridge , flags ) ;
}
static enum drm_mode_status
sdi_bridge_mode_valid ( struct drm_bridge * bridge ,
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const struct drm_display_info * info ,
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const struct drm_display_mode * mode )
{
struct sdi_device * sdi = drm_bridge_to_sdi ( bridge ) ;
unsigned long pixelclock = mode - > clock * 1000 ;
struct dispc_clock_info dispc_cinfo ;
unsigned long fck ;
int ret ;
if ( pixelclock = = 0 )
return MODE_NOCLOCK ;
ret = sdi_calc_clock_div ( sdi , pixelclock , & fck , & dispc_cinfo ) ;
if ( ret < 0 )
return MODE_CLOCK_RANGE ;
return MODE_OK ;
}
static bool sdi_bridge_mode_fixup ( struct drm_bridge * bridge ,
const struct drm_display_mode * mode ,
struct drm_display_mode * adjusted_mode )
{
struct sdi_device * sdi = drm_bridge_to_sdi ( bridge ) ;
unsigned long pixelclock = mode - > clock * 1000 ;
struct dispc_clock_info dispc_cinfo ;
unsigned long fck ;
unsigned long pck ;
int ret ;
ret = sdi_calc_clock_div ( sdi , pixelclock , & fck , & dispc_cinfo ) ;
if ( ret < 0 )
return false ;
pck = fck / dispc_cinfo . lck_div / dispc_cinfo . pck_div ;
if ( pck ! = pixelclock )
dev_dbg ( & sdi - > pdev - > dev ,
" pixel clock adjusted from %lu Hz to %lu Hz \n " ,
pixelclock , pck ) ;
adjusted_mode - > clock = pck / 1000 ;
return true ;
}
static void sdi_bridge_mode_set ( struct drm_bridge * bridge ,
const struct drm_display_mode * mode ,
const struct drm_display_mode * adjusted_mode )
{
struct sdi_device * sdi = drm_bridge_to_sdi ( bridge ) ;
sdi - > pixelclock = adjusted_mode - > clock * 1000 ;
}
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static void sdi_bridge_enable ( struct drm_bridge * bridge )
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{
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struct sdi_device * sdi = drm_bridge_to_sdi ( bridge ) ;
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struct dispc_clock_info dispc_cinfo ;
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unsigned long fck ;
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int r ;
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r = regulator_enable ( sdi - > vdds_sdi_reg ) ;
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if ( r )
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return ;
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r = dispc_runtime_get ( sdi - > dss - > dispc ) ;
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if ( r )
goto err_get_dispc ;
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r = sdi_calc_clock_div ( sdi , sdi - > pixelclock , & fck , & dispc_cinfo ) ;
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if ( r )
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goto err_calc_clock_div ;
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sdi - > mgr_config . clock_info = dispc_cinfo ;
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r = dss_set_fck_rate ( sdi - > dss , fck ) ;
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if ( r )
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goto err_set_dss_clock_div ;
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sdi_config_lcd_manager ( sdi ) ;
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/*
* LCLK and PCLK divisors are located in shadow registers , and we
* normally write them to DISPC registers when enabling the output .
* However , SDI uses pck - free as source clock for its PLL , and pck - free
* is affected by the divisors . And as we need the PLL before enabling
* the output , we need to write the divisors early .
*
* It seems just writing to the DISPC register is enough , and we don ' t
* need to care about the shadow register mechanism for pck - free . The
* exact reason for this is unknown .
*/
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dispc_mgr_set_clock_div ( sdi - > dss - > dispc , sdi - > output . dispc_channel ,
& sdi - > mgr_config . clock_info ) ;
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dss_sdi_init ( sdi - > dss , sdi - > datapairs ) ;
r = dss_sdi_enable ( sdi - > dss ) ;
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if ( r )
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goto err_sdi_enable ;
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mdelay ( 2 ) ;
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r = dss_mgr_enable ( & sdi - > output ) ;
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if ( r )
goto err_mgr_enable ;
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return ;
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err_mgr_enable :
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dss_sdi_disable ( sdi - > dss ) ;
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err_sdi_enable :
err_set_dss_clock_div :
err_calc_clock_div :
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dispc_runtime_put ( sdi - > dss - > dispc ) ;
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err_get_dispc :
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regulator_disable ( sdi - > vdds_sdi_reg ) ;
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}
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static void sdi_bridge_disable ( struct drm_bridge * bridge )
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{
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struct sdi_device * sdi = drm_bridge_to_sdi ( bridge ) ;
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dss_mgr_disable ( & sdi - > output ) ;
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dss_sdi_disable ( sdi - > dss ) ;
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dispc_runtime_put ( sdi - > dss - > dispc ) ;
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regulator_disable ( sdi - > vdds_sdi_reg ) ;
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}
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static const struct drm_bridge_funcs sdi_bridge_funcs = {
. attach = sdi_bridge_attach ,
. mode_valid = sdi_bridge_mode_valid ,
. mode_fixup = sdi_bridge_mode_fixup ,
. mode_set = sdi_bridge_mode_set ,
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. enable = sdi_bridge_enable ,
. disable = sdi_bridge_disable ,
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} ;
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static void sdi_bridge_init ( struct sdi_device * sdi )
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{
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sdi - > bridge . funcs = & sdi_bridge_funcs ;
sdi - > bridge . of_node = sdi - > pdev - > dev . of_node ;
sdi - > bridge . type = DRM_MODE_CONNECTOR_LVDS ;
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drm_bridge_add ( & sdi - > bridge ) ;
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}
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static void sdi_bridge_cleanup ( struct sdi_device * sdi )
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{
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drm_bridge_remove ( & sdi - > bridge ) ;
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}
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/* -----------------------------------------------------------------------------
* Initialisation and Cleanup
*/
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static int sdi_init_output ( struct sdi_device * sdi )
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{
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struct omap_dss_device * out = & sdi - > output ;
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int r ;
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sdi_bridge_init ( sdi ) ;
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out - > dev = & sdi - > pdev - > dev ;
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out - > id = OMAP_DSS_OUTPUT_SDI ;
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out - > type = OMAP_DISPLAY_TYPE_SDI ;
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out - > name = " sdi.0 " ;
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out - > dispc_channel = OMAP_DSS_CHANNEL_LCD ;
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/* We have SDI only on OMAP3, where it's on port 1 */
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out - > of_port = 1 ;
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out - > bus_flags = DRM_BUS_FLAG_PIXDATA_DRIVE_POSEDGE /* 15.5.9.1.2 */
| DRM_BUS_FLAG_SYNC_DRIVE_POSEDGE ;
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r = omapdss_device_init_output ( out , & sdi - > bridge ) ;
if ( r < 0 ) {
sdi_bridge_cleanup ( sdi ) ;
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return r ;
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}
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omapdss_device_register ( out ) ;
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return 0 ;
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}
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static void sdi_uninit_output ( struct sdi_device * sdi )
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{
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omapdss_device_unregister ( & sdi - > output ) ;
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omapdss_device_cleanup_output ( & sdi - > output ) ;
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sdi_bridge_cleanup ( sdi ) ;
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}
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int sdi_init_port ( struct dss_device * dss , struct platform_device * pdev ,
struct device_node * port )
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{
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struct sdi_device * sdi ;
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struct device_node * ep ;
u32 datapairs ;
int r ;
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sdi = kzalloc ( sizeof ( * sdi ) , GFP_KERNEL ) ;
if ( ! sdi )
return - ENOMEM ;
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ep = of_get_next_child ( port , NULL ) ;
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if ( ! ep ) {
r = 0 ;
goto err_free ;
}
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r = of_property_read_u32 ( ep , " datapairs " , & datapairs ) ;
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of_node_put ( ep ) ;
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if ( r ) {
DSSERR ( " failed to parse datapairs \n " ) ;
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goto err_free ;
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}
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sdi - > datapairs = datapairs ;
sdi - > dss = dss ;
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sdi - > pdev = pdev ;
port - > data = sdi ;
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sdi - > vdds_sdi_reg = devm_regulator_get ( & pdev - > dev , " vdds_sdi " ) ;
if ( IS_ERR ( sdi - > vdds_sdi_reg ) ) {
r = PTR_ERR ( sdi - > vdds_sdi_reg ) ;
if ( r ! = - EPROBE_DEFER )
DSSERR ( " can't get VDDS_SDI regulator \n " ) ;
goto err_free ;
}
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r = sdi_init_output ( sdi ) ;
if ( r )
goto err_free ;
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return 0 ;
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err_free :
kfree ( sdi ) ;
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return r ;
}
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void sdi_uninit_port ( struct device_node * port )
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{
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struct sdi_device * sdi = port - > data ;
if ( ! sdi )
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return ;
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sdi_uninit_output ( sdi ) ;
kfree ( sdi ) ;
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}