2 * vpif - Video Port Interface driver
3 * VPIF is a receiver and transmitter for video data. It has two channels(0, 1)
4 * that receiveing video byte stream and two channels(2, 3) for video output.
5 * The hardware supports SDTV, HDTV formats, raw data capture.
6 * Currently, the driver supports NTSC and PAL standards.
8 * Copyright (C) 2009 Texas Instruments Incorporated - http://www.ti.com/
10 * This program is free software; you can redistribute it and/or
11 * modify it under the terms of the GNU General Public License as
12 * published by the Free Software Foundation version 2.
14 * This program is distributed .as is. WITHOUT ANY WARRANTY of any
15 * kind, whether express or implied; without even the implied warranty
16 * of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 * GNU General Public License for more details.
20 #include <linux/err.h>
21 #include <linux/init.h>
23 #include <linux/kernel.h>
24 #include <linux/module.h>
25 #include <linux/platform_device.h>
26 #include <linux/pm_runtime.h>
27 #include <linux/spinlock.h>
28 #include <linux/v4l2-dv-timings.h>
32 MODULE_DESCRIPTION("TI DaVinci Video Port Interface driver");
33 MODULE_LICENSE("GPL");
35 #define VPIF_CH0_MAX_MODES 22
36 #define VPIF_CH1_MAX_MODES 2
37 #define VPIF_CH2_MAX_MODES 15
38 #define VPIF_CH3_MAX_MODES 2
42 void __iomem *vpif_base;
43 EXPORT_SYMBOL_GPL(vpif_base);
46 * vpif_ch_params: video standard configuration parameters for vpif
47 * The table must include all presets from supported subdevices.
49 const struct vpif_channel_config_params vpif_ch_params[] = {
66 .dv_timings = V4L2_DV_BT_CEA_720X480P59_94,
83 .dv_timings = V4L2_DV_BT_CEA_720X576P50,
100 .dv_timings = V4L2_DV_BT_CEA_1280X720P50,
117 .dv_timings = V4L2_DV_BT_CEA_1280X720P60,
137 .dv_timings = V4L2_DV_BT_CEA_1920X1080I50,
157 .dv_timings = V4L2_DV_BT_CEA_1920X1080I60,
174 .dv_timings = V4L2_DV_BT_CEA_1920X1080P60,
196 .stdid = V4L2_STD_525_60,
199 .name = "PAL_BDGHIK",
216 .stdid = V4L2_STD_625_50,
219 EXPORT_SYMBOL_GPL(vpif_ch_params);
221 const unsigned int vpif_ch_params_count = ARRAY_SIZE(vpif_ch_params);
222 EXPORT_SYMBOL_GPL(vpif_ch_params_count);
224 static inline void vpif_wr_bit(u32 reg, u32 bit, u32 val)
227 vpif_set_bit(reg, bit);
229 vpif_clr_bit(reg, bit);
232 /* This structure is used to keep track of VPIF size register's offsets */
233 struct vpif_registers {
234 u32 h_cfg, v_cfg_00, v_cfg_01, v_cfg_02, v_cfg, ch_ctrl;
235 u32 line_offset, vanc0_strt, vanc0_size, vanc1_strt;
236 u32 vanc1_size, width_mask, len_mask;
240 static const struct vpif_registers vpifregs[VPIF_NUM_CHANNELS] = {
243 VPIF_CH0_H_CFG, VPIF_CH0_V_CFG_00, VPIF_CH0_V_CFG_01,
244 VPIF_CH0_V_CFG_02, VPIF_CH0_V_CFG_03, VPIF_CH0_CTRL,
245 VPIF_CH0_IMG_ADD_OFST, 0, 0, 0, 0, 0x1FFF, 0xFFF,
250 VPIF_CH1_H_CFG, VPIF_CH1_V_CFG_00, VPIF_CH1_V_CFG_01,
251 VPIF_CH1_V_CFG_02, VPIF_CH1_V_CFG_03, VPIF_CH1_CTRL,
252 VPIF_CH1_IMG_ADD_OFST, 0, 0, 0, 0, 0x1FFF, 0xFFF,
257 VPIF_CH2_H_CFG, VPIF_CH2_V_CFG_00, VPIF_CH2_V_CFG_01,
258 VPIF_CH2_V_CFG_02, VPIF_CH2_V_CFG_03, VPIF_CH2_CTRL,
259 VPIF_CH2_IMG_ADD_OFST, VPIF_CH2_VANC0_STRT, VPIF_CH2_VANC0_SIZE,
260 VPIF_CH2_VANC1_STRT, VPIF_CH2_VANC1_SIZE, 0x7FF, 0x7FF,
265 VPIF_CH3_H_CFG, VPIF_CH3_V_CFG_00, VPIF_CH3_V_CFG_01,
266 VPIF_CH3_V_CFG_02, VPIF_CH3_V_CFG_03, VPIF_CH3_CTRL,
267 VPIF_CH3_IMG_ADD_OFST, VPIF_CH3_VANC0_STRT, VPIF_CH3_VANC0_SIZE,
268 VPIF_CH3_VANC1_STRT, VPIF_CH3_VANC1_SIZE, 0x7FF, 0x7FF,
273 /* vpif_set_mode_info:
274 * This function is used to set horizontal and vertical config parameters
275 * As per the standard in the channel, configure the values of L1, L3,
276 * L5, L7 L9, L11 in VPIF Register , also write width and height
278 static void vpif_set_mode_info(const struct vpif_channel_config_params *config,
279 u8 channel_id, u8 config_channel_id)
283 value = (config->eav2sav & vpifregs[config_channel_id].width_mask);
284 value <<= VPIF_CH_LEN_SHIFT;
285 value |= (config->sav2eav & vpifregs[config_channel_id].width_mask);
286 regw(value, vpifregs[channel_id].h_cfg);
288 value = (config->l1 & vpifregs[config_channel_id].len_mask);
289 value <<= VPIF_CH_LEN_SHIFT;
290 value |= (config->l3 & vpifregs[config_channel_id].len_mask);
291 regw(value, vpifregs[channel_id].v_cfg_00);
293 value = (config->l5 & vpifregs[config_channel_id].len_mask);
294 value <<= VPIF_CH_LEN_SHIFT;
295 value |= (config->l7 & vpifregs[config_channel_id].len_mask);
296 regw(value, vpifregs[channel_id].v_cfg_01);
298 value = (config->l9 & vpifregs[config_channel_id].len_mask);
299 value <<= VPIF_CH_LEN_SHIFT;
300 value |= (config->l11 & vpifregs[config_channel_id].len_mask);
301 regw(value, vpifregs[channel_id].v_cfg_02);
303 value = (config->vsize & vpifregs[config_channel_id].len_mask);
304 regw(value, vpifregs[channel_id].v_cfg);
307 /* config_vpif_params
308 * Function to set the parameters of a channel
309 * Mainly modifies the channel ciontrol register
310 * It sets frame format, yc mux mode
312 static void config_vpif_params(struct vpif_params *vpifparams,
313 u8 channel_id, u8 found)
315 const struct vpif_channel_config_params *config = &vpifparams->std_info;
316 u32 value, ch_nip, reg;
321 end = channel_id + found;
323 for (i = start; i < end; i++) {
324 reg = vpifregs[i].ch_ctrl;
326 ch_nip = VPIF_CAPTURE_CH_NIP;
328 ch_nip = VPIF_DISPLAY_CH_NIP;
330 vpif_wr_bit(reg, ch_nip, config->frm_fmt);
331 vpif_wr_bit(reg, VPIF_CH_YC_MUX_BIT, config->ycmux_mode);
332 vpif_wr_bit(reg, VPIF_CH_INPUT_FIELD_FRAME_BIT,
333 vpifparams->video_params.storage_mode);
335 /* Set raster scanning SDR Format */
336 vpif_clr_bit(reg, VPIF_CH_SDR_FMT_BIT);
337 vpif_wr_bit(reg, VPIF_CH_DATA_MODE_BIT, config->capture_format);
339 if (channel_id > 1) /* Set the Pixel enable bit */
340 vpif_set_bit(reg, VPIF_DISPLAY_PIX_EN_BIT);
341 else if (config->capture_format) {
342 /* Set the polarity of various pins */
343 vpif_wr_bit(reg, VPIF_CH_FID_POLARITY_BIT,
344 vpifparams->iface.fid_pol);
345 vpif_wr_bit(reg, VPIF_CH_V_VALID_POLARITY_BIT,
346 vpifparams->iface.vd_pol);
347 vpif_wr_bit(reg, VPIF_CH_H_VALID_POLARITY_BIT,
348 vpifparams->iface.hd_pol);
353 VPIF_CH_DATA_WIDTH_BIT);
354 value |= ((vpifparams->params.data_sz) <<
355 VPIF_CH_DATA_WIDTH_BIT);
359 /* Write the pitch in the driver */
360 regw((vpifparams->video_params.hpitch),
361 vpifregs[i].line_offset);
365 /* vpif_set_video_params
366 * This function is used to set video parameters in VPIF register
368 int vpif_set_video_params(struct vpif_params *vpifparams, u8 channel_id)
370 const struct vpif_channel_config_params *config = &vpifparams->std_info;
373 vpif_set_mode_info(config, channel_id, channel_id);
374 if (!config->ycmux_mode) {
375 /* YC are on separate channels (HDTV formats) */
376 vpif_set_mode_info(config, channel_id + 1, channel_id);
380 config_vpif_params(vpifparams, channel_id, found);
382 regw(0x80, VPIF_REQ_SIZE);
383 regw(0x01, VPIF_EMULATION_CTRL);
387 EXPORT_SYMBOL(vpif_set_video_params);
389 void vpif_set_vbi_display_params(struct vpif_vbi_params *vbiparams,
394 value = 0x3F8 & (vbiparams->hstart0);
395 value |= 0x3FFFFFF & ((vbiparams->vstart0) << 16);
396 regw(value, vpifregs[channel_id].vanc0_strt);
398 value = 0x3F8 & (vbiparams->hstart1);
399 value |= 0x3FFFFFF & ((vbiparams->vstart1) << 16);
400 regw(value, vpifregs[channel_id].vanc1_strt);
402 value = 0x3F8 & (vbiparams->hsize0);
403 value |= 0x3FFFFFF & ((vbiparams->vsize0) << 16);
404 regw(value, vpifregs[channel_id].vanc0_size);
406 value = 0x3F8 & (vbiparams->hsize1);
407 value |= 0x3FFFFFF & ((vbiparams->vsize1) << 16);
408 regw(value, vpifregs[channel_id].vanc1_size);
411 EXPORT_SYMBOL(vpif_set_vbi_display_params);
413 int vpif_channel_getfid(u8 channel_id)
415 return (regr(vpifregs[channel_id].ch_ctrl) & VPIF_CH_FID_MASK)
416 >> VPIF_CH_FID_SHIFT;
418 EXPORT_SYMBOL(vpif_channel_getfid);
420 static int vpif_probe(struct platform_device *pdev)
422 static struct resource *res;
424 res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
425 vpif_base = devm_ioremap_resource(&pdev->dev, res);
426 if (IS_ERR(vpif_base))
427 return PTR_ERR(vpif_base);
429 pm_runtime_enable(&pdev->dev);
430 pm_runtime_get(&pdev->dev);
432 spin_lock_init(&vpif_lock);
433 dev_info(&pdev->dev, "vpif probe success\n");
437 static int vpif_remove(struct platform_device *pdev)
439 pm_runtime_disable(&pdev->dev);
444 static int vpif_suspend(struct device *dev)
450 static int vpif_resume(struct device *dev)
456 static const struct dev_pm_ops vpif_pm = {
457 .suspend = vpif_suspend,
458 .resume = vpif_resume,
461 #define vpif_pm_ops (&vpif_pm)
463 #define vpif_pm_ops NULL
466 static struct platform_driver vpif_driver = {
469 .owner = THIS_MODULE,
472 .remove = vpif_remove,
476 static void vpif_exit(void)
478 platform_driver_unregister(&vpif_driver);
481 static int __init vpif_init(void)
483 return platform_driver_register(&vpif_driver);
485 subsys_initcall(vpif_init);
486 module_exit(vpif_exit);