blob: 0f604d2dd1c74a19724eecdda3ac4a6cde0a039d [file] [log] [blame]
Rob Clarke7792ce2013-01-08 19:21:02 -06001/*
2 * Copyright (C) 2012 Texas Instruments
3 * Author: Rob Clark <robdclark@gmail.com>
4 *
5 * This program is free software; you can redistribute it and/or modify it
6 * under the terms of the GNU General Public License version 2 as published by
7 * the Free Software Foundation.
8 *
9 * This program is distributed in the hope that it will be useful, but WITHOUT
10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
12 * more details.
13 *
14 * You should have received a copy of the GNU General Public License along with
15 * this program. If not, see <http://www.gnu.org/licenses/>.
16 */
17
Russell Kingc707c362014-02-07 19:49:44 +000018#include <linux/component.h>
Russell King893c3e52013-08-27 01:27:42 +010019#include <linux/hdmi.h>
Rob Clarke7792ce2013-01-08 19:21:02 -060020#include <linux/module.h>
Jean-Francois Moine12473b72014-01-25 18:14:38 +010021#include <linux/irq.h>
Jean-Francois Moinef0b33b22014-01-25 18:14:39 +010022#include <sound/asoundef.h>
Jyri Sarha7e567622016-08-09 22:00:05 +030023#include <sound/hdmi-codec.h>
Rob Clarke7792ce2013-01-08 19:21:02 -060024
25#include <drm/drmP.h>
Liviu Dudau (ARM)9736e9882015-11-23 16:52:42 +010026#include <drm/drm_atomic_helper.h>
Rob Clarke7792ce2013-01-08 19:21:02 -060027#include <drm/drm_crtc_helper.h>
Rob Clarke7792ce2013-01-08 19:21:02 -060028#include <drm/drm_edid.h>
Russell King5dbcf312014-06-15 11:11:10 +010029#include <drm/drm_of.h>
Russell Kingc4c11dd2013-08-14 21:43:30 +020030#include <drm/i2c/tda998x.h>
Rob Clarke7792ce2013-01-08 19:21:02 -060031
32#define DBG(fmt, ...) DRM_DEBUG(fmt"\n", ##__VA_ARGS__)
33
Jyri Sarha7e567622016-08-09 22:00:05 +030034struct tda998x_audio_port {
35 u8 format; /* AFMT_xxx */
36 u8 config; /* AP value */
37};
38
Rob Clarke7792ce2013-01-08 19:21:02 -060039struct tda998x_priv {
40 struct i2c_client *cec;
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +010041 struct i2c_client *hdmi;
Jean-Francois Moineed9a8422014-11-29 08:30:51 +010042 struct mutex mutex;
Russell Kinge66e03a2015-06-06 21:41:10 +010043 u16 rev;
44 u8 current_page;
Rob Clarke7792ce2013-01-08 19:21:02 -060045 int dpms;
Russell King896a4132016-10-23 11:32:42 +010046 bool supports_infoframes;
Russell King8f3f21f2016-11-02 21:15:04 +000047 bool sink_has_audio;
Russell King5e74c222013-08-14 21:43:29 +020048 u8 vip_cntrl_0;
49 u8 vip_cntrl_1;
50 u8 vip_cntrl_2;
Russell King319e6582016-10-23 11:32:43 +010051 unsigned long tmds_clock;
Jyri Sarha95db3b22016-08-09 22:00:04 +030052 struct tda998x_audio_params audio_params;
Jean-Francois Moine12473b72014-01-25 18:14:38 +010053
Jyri Sarha7e567622016-08-09 22:00:05 +030054 struct platform_device *audio_pdev;
55 struct mutex audio_mutex;
56
Jean-Francois Moine12473b72014-01-25 18:14:38 +010057 wait_queue_head_t wq_edid;
58 volatile int wq_edid_wait;
Russell King0fc6f442015-06-06 21:41:09 +010059
60 struct work_struct detect_work;
61 struct timer_list edid_delay_timer;
62 wait_queue_head_t edid_delay_waitq;
63 bool edid_delay_active;
Russell King78e401f2015-08-14 11:17:12 +010064
65 struct drm_encoder encoder;
Russell Kingeed64b52015-08-14 11:18:28 +010066 struct drm_connector connector;
Jyri Sarha7e567622016-08-09 22:00:05 +030067
68 struct tda998x_audio_port audio_port[2];
Rob Clarke7792ce2013-01-08 19:21:02 -060069};
70
Russell King9525c4d2015-08-14 11:28:53 +010071#define conn_to_tda998x_priv(x) \
72 container_of(x, struct tda998x_priv, connector)
73
74#define enc_to_tda998x_priv(x) \
75 container_of(x, struct tda998x_priv, encoder)
76
Rob Clarke7792ce2013-01-08 19:21:02 -060077/* The TDA9988 series of devices use a paged register scheme.. to simplify
78 * things we encode the page # in upper bits of the register #. To read/
79 * write a given register, we need to make sure CURPAGE register is set
80 * appropriately. Which implies reads/writes are not atomic. Fun!
81 */
82
83#define REG(page, addr) (((page) << 8) | (addr))
84#define REG2ADDR(reg) ((reg) & 0xff)
85#define REG2PAGE(reg) (((reg) >> 8) & 0xff)
86
87#define REG_CURPAGE 0xff /* write */
88
89
90/* Page 00h: General Control */
91#define REG_VERSION_LSB REG(0x00, 0x00) /* read */
92#define REG_MAIN_CNTRL0 REG(0x00, 0x01) /* read/write */
93# define MAIN_CNTRL0_SR (1 << 0)
94# define MAIN_CNTRL0_DECS (1 << 1)
95# define MAIN_CNTRL0_DEHS (1 << 2)
96# define MAIN_CNTRL0_CECS (1 << 3)
97# define MAIN_CNTRL0_CEHS (1 << 4)
98# define MAIN_CNTRL0_SCALER (1 << 7)
99#define REG_VERSION_MSB REG(0x00, 0x02) /* read */
100#define REG_SOFTRESET REG(0x00, 0x0a) /* write */
101# define SOFTRESET_AUDIO (1 << 0)
102# define SOFTRESET_I2C_MASTER (1 << 1)
103#define REG_DDC_DISABLE REG(0x00, 0x0b) /* read/write */
104#define REG_CCLK_ON REG(0x00, 0x0c) /* read/write */
105#define REG_I2C_MASTER REG(0x00, 0x0d) /* read/write */
106# define I2C_MASTER_DIS_MM (1 << 0)
107# define I2C_MASTER_DIS_FILT (1 << 1)
108# define I2C_MASTER_APP_STRT_LAT (1 << 2)
Russell Kingc4c11dd2013-08-14 21:43:30 +0200109#define REG_FEAT_POWERDOWN REG(0x00, 0x0e) /* read/write */
110# define FEAT_POWERDOWN_SPDIF (1 << 3)
Rob Clarke7792ce2013-01-08 19:21:02 -0600111#define REG_INT_FLAGS_0 REG(0x00, 0x0f) /* read/write */
112#define REG_INT_FLAGS_1 REG(0x00, 0x10) /* read/write */
113#define REG_INT_FLAGS_2 REG(0x00, 0x11) /* read/write */
114# define INT_FLAGS_2_EDID_BLK_RD (1 << 1)
Russell Kingc4c11dd2013-08-14 21:43:30 +0200115#define REG_ENA_ACLK REG(0x00, 0x16) /* read/write */
Rob Clarke7792ce2013-01-08 19:21:02 -0600116#define REG_ENA_VP_0 REG(0x00, 0x18) /* read/write */
117#define REG_ENA_VP_1 REG(0x00, 0x19) /* read/write */
118#define REG_ENA_VP_2 REG(0x00, 0x1a) /* read/write */
119#define REG_ENA_AP REG(0x00, 0x1e) /* read/write */
120#define REG_VIP_CNTRL_0 REG(0x00, 0x20) /* write */
121# define VIP_CNTRL_0_MIRR_A (1 << 7)
122# define VIP_CNTRL_0_SWAP_A(x) (((x) & 7) << 4)
123# define VIP_CNTRL_0_MIRR_B (1 << 3)
124# define VIP_CNTRL_0_SWAP_B(x) (((x) & 7) << 0)
125#define REG_VIP_CNTRL_1 REG(0x00, 0x21) /* write */
126# define VIP_CNTRL_1_MIRR_C (1 << 7)
127# define VIP_CNTRL_1_SWAP_C(x) (((x) & 7) << 4)
128# define VIP_CNTRL_1_MIRR_D (1 << 3)
129# define VIP_CNTRL_1_SWAP_D(x) (((x) & 7) << 0)
130#define REG_VIP_CNTRL_2 REG(0x00, 0x22) /* write */
131# define VIP_CNTRL_2_MIRR_E (1 << 7)
132# define VIP_CNTRL_2_SWAP_E(x) (((x) & 7) << 4)
133# define VIP_CNTRL_2_MIRR_F (1 << 3)
134# define VIP_CNTRL_2_SWAP_F(x) (((x) & 7) << 0)
135#define REG_VIP_CNTRL_3 REG(0x00, 0x23) /* write */
136# define VIP_CNTRL_3_X_TGL (1 << 0)
137# define VIP_CNTRL_3_H_TGL (1 << 1)
138# define VIP_CNTRL_3_V_TGL (1 << 2)
139# define VIP_CNTRL_3_EMB (1 << 3)
140# define VIP_CNTRL_3_SYNC_DE (1 << 4)
141# define VIP_CNTRL_3_SYNC_HS (1 << 5)
142# define VIP_CNTRL_3_DE_INT (1 << 6)
143# define VIP_CNTRL_3_EDGE (1 << 7)
144#define REG_VIP_CNTRL_4 REG(0x00, 0x24) /* write */
145# define VIP_CNTRL_4_BLC(x) (((x) & 3) << 0)
146# define VIP_CNTRL_4_BLANKIT(x) (((x) & 3) << 2)
147# define VIP_CNTRL_4_CCIR656 (1 << 4)
148# define VIP_CNTRL_4_656_ALT (1 << 5)
149# define VIP_CNTRL_4_TST_656 (1 << 6)
150# define VIP_CNTRL_4_TST_PAT (1 << 7)
151#define REG_VIP_CNTRL_5 REG(0x00, 0x25) /* write */
152# define VIP_CNTRL_5_CKCASE (1 << 0)
153# define VIP_CNTRL_5_SP_CNT(x) (((x) & 3) << 1)
Russell Kingc4c11dd2013-08-14 21:43:30 +0200154#define REG_MUX_AP REG(0x00, 0x26) /* read/write */
Jean-Francois Moine10df1a92014-01-25 18:14:40 +0100155# define MUX_AP_SELECT_I2S 0x64
156# define MUX_AP_SELECT_SPDIF 0x40
Russell Kingbcb24812013-08-14 21:43:27 +0200157#define REG_MUX_VP_VIP_OUT REG(0x00, 0x27) /* read/write */
Rob Clarke7792ce2013-01-08 19:21:02 -0600158#define REG_MAT_CONTRL REG(0x00, 0x80) /* write */
159# define MAT_CONTRL_MAT_SC(x) (((x) & 3) << 0)
160# define MAT_CONTRL_MAT_BP (1 << 2)
161#define REG_VIDFORMAT REG(0x00, 0xa0) /* write */
162#define REG_REFPIX_MSB REG(0x00, 0xa1) /* write */
163#define REG_REFPIX_LSB REG(0x00, 0xa2) /* write */
164#define REG_REFLINE_MSB REG(0x00, 0xa3) /* write */
165#define REG_REFLINE_LSB REG(0x00, 0xa4) /* write */
166#define REG_NPIX_MSB REG(0x00, 0xa5) /* write */
167#define REG_NPIX_LSB REG(0x00, 0xa6) /* write */
168#define REG_NLINE_MSB REG(0x00, 0xa7) /* write */
169#define REG_NLINE_LSB REG(0x00, 0xa8) /* write */
170#define REG_VS_LINE_STRT_1_MSB REG(0x00, 0xa9) /* write */
171#define REG_VS_LINE_STRT_1_LSB REG(0x00, 0xaa) /* write */
172#define REG_VS_PIX_STRT_1_MSB REG(0x00, 0xab) /* write */
173#define REG_VS_PIX_STRT_1_LSB REG(0x00, 0xac) /* write */
174#define REG_VS_LINE_END_1_MSB REG(0x00, 0xad) /* write */
175#define REG_VS_LINE_END_1_LSB REG(0x00, 0xae) /* write */
176#define REG_VS_PIX_END_1_MSB REG(0x00, 0xaf) /* write */
177#define REG_VS_PIX_END_1_LSB REG(0x00, 0xb0) /* write */
Sebastian Hesselbarth088d61d2013-08-14 21:43:31 +0200178#define REG_VS_LINE_STRT_2_MSB REG(0x00, 0xb1) /* write */
179#define REG_VS_LINE_STRT_2_LSB REG(0x00, 0xb2) /* write */
Rob Clarke7792ce2013-01-08 19:21:02 -0600180#define REG_VS_PIX_STRT_2_MSB REG(0x00, 0xb3) /* write */
181#define REG_VS_PIX_STRT_2_LSB REG(0x00, 0xb4) /* write */
Sebastian Hesselbarth088d61d2013-08-14 21:43:31 +0200182#define REG_VS_LINE_END_2_MSB REG(0x00, 0xb5) /* write */
183#define REG_VS_LINE_END_2_LSB REG(0x00, 0xb6) /* write */
Rob Clarke7792ce2013-01-08 19:21:02 -0600184#define REG_VS_PIX_END_2_MSB REG(0x00, 0xb7) /* write */
185#define REG_VS_PIX_END_2_LSB REG(0x00, 0xb8) /* write */
186#define REG_HS_PIX_START_MSB REG(0x00, 0xb9) /* write */
187#define REG_HS_PIX_START_LSB REG(0x00, 0xba) /* write */
188#define REG_HS_PIX_STOP_MSB REG(0x00, 0xbb) /* write */
189#define REG_HS_PIX_STOP_LSB REG(0x00, 0xbc) /* write */
190#define REG_VWIN_START_1_MSB REG(0x00, 0xbd) /* write */
191#define REG_VWIN_START_1_LSB REG(0x00, 0xbe) /* write */
192#define REG_VWIN_END_1_MSB REG(0x00, 0xbf) /* write */
193#define REG_VWIN_END_1_LSB REG(0x00, 0xc0) /* write */
Sebastian Hesselbarth088d61d2013-08-14 21:43:31 +0200194#define REG_VWIN_START_2_MSB REG(0x00, 0xc1) /* write */
195#define REG_VWIN_START_2_LSB REG(0x00, 0xc2) /* write */
196#define REG_VWIN_END_2_MSB REG(0x00, 0xc3) /* write */
197#define REG_VWIN_END_2_LSB REG(0x00, 0xc4) /* write */
Rob Clarke7792ce2013-01-08 19:21:02 -0600198#define REG_DE_START_MSB REG(0x00, 0xc5) /* write */
199#define REG_DE_START_LSB REG(0x00, 0xc6) /* write */
200#define REG_DE_STOP_MSB REG(0x00, 0xc7) /* write */
201#define REG_DE_STOP_LSB REG(0x00, 0xc8) /* write */
202#define REG_TBG_CNTRL_0 REG(0x00, 0xca) /* write */
Sebastian Hesselbarth088d61d2013-08-14 21:43:31 +0200203# define TBG_CNTRL_0_TOP_TGL (1 << 0)
204# define TBG_CNTRL_0_TOP_SEL (1 << 1)
205# define TBG_CNTRL_0_DE_EXT (1 << 2)
206# define TBG_CNTRL_0_TOP_EXT (1 << 3)
Rob Clarke7792ce2013-01-08 19:21:02 -0600207# define TBG_CNTRL_0_FRAME_DIS (1 << 5)
208# define TBG_CNTRL_0_SYNC_MTHD (1 << 6)
209# define TBG_CNTRL_0_SYNC_ONCE (1 << 7)
210#define REG_TBG_CNTRL_1 REG(0x00, 0xcb) /* write */
Sebastian Hesselbarth088d61d2013-08-14 21:43:31 +0200211# define TBG_CNTRL_1_H_TGL (1 << 0)
212# define TBG_CNTRL_1_V_TGL (1 << 1)
213# define TBG_CNTRL_1_TGL_EN (1 << 2)
214# define TBG_CNTRL_1_X_EXT (1 << 3)
215# define TBG_CNTRL_1_H_EXT (1 << 4)
216# define TBG_CNTRL_1_V_EXT (1 << 5)
Rob Clarke7792ce2013-01-08 19:21:02 -0600217# define TBG_CNTRL_1_DWIN_DIS (1 << 6)
218#define REG_ENABLE_SPACE REG(0x00, 0xd6) /* write */
219#define REG_HVF_CNTRL_0 REG(0x00, 0xe4) /* write */
220# define HVF_CNTRL_0_SM (1 << 7)
221# define HVF_CNTRL_0_RWB (1 << 6)
222# define HVF_CNTRL_0_PREFIL(x) (((x) & 3) << 2)
223# define HVF_CNTRL_0_INTPOL(x) (((x) & 3) << 0)
224#define REG_HVF_CNTRL_1 REG(0x00, 0xe5) /* write */
225# define HVF_CNTRL_1_FOR (1 << 0)
226# define HVF_CNTRL_1_YUVBLK (1 << 1)
227# define HVF_CNTRL_1_VQR(x) (((x) & 3) << 2)
228# define HVF_CNTRL_1_PAD(x) (((x) & 3) << 4)
229# define HVF_CNTRL_1_SEMI_PLANAR (1 << 6)
230#define REG_RPT_CNTRL REG(0x00, 0xf0) /* write */
Russell Kingc4c11dd2013-08-14 21:43:30 +0200231#define REG_I2S_FORMAT REG(0x00, 0xfc) /* read/write */
232# define I2S_FORMAT(x) (((x) & 3) << 0)
233#define REG_AIP_CLKSEL REG(0x00, 0xfd) /* write */
Jean-Francois Moine10df1a92014-01-25 18:14:40 +0100234# define AIP_CLKSEL_AIP_SPDIF (0 << 3)
235# define AIP_CLKSEL_AIP_I2S (1 << 3)
236# define AIP_CLKSEL_FS_ACLK (0 << 0)
237# define AIP_CLKSEL_FS_MCLK (1 << 0)
238# define AIP_CLKSEL_FS_FS64SPDIF (2 << 0)
Rob Clarke7792ce2013-01-08 19:21:02 -0600239
240/* Page 02h: PLL settings */
241#define REG_PLL_SERIAL_1 REG(0x02, 0x00) /* read/write */
242# define PLL_SERIAL_1_SRL_FDN (1 << 0)
243# define PLL_SERIAL_1_SRL_IZ(x) (((x) & 3) << 1)
244# define PLL_SERIAL_1_SRL_MAN_IZ (1 << 6)
245#define REG_PLL_SERIAL_2 REG(0x02, 0x01) /* read/write */
Jean-Francois Moine3ae471f2014-01-25 18:14:36 +0100246# define PLL_SERIAL_2_SRL_NOSC(x) ((x) << 0)
Rob Clarke7792ce2013-01-08 19:21:02 -0600247# define PLL_SERIAL_2_SRL_PR(x) (((x) & 0xf) << 4)
248#define REG_PLL_SERIAL_3 REG(0x02, 0x02) /* read/write */
249# define PLL_SERIAL_3_SRL_CCIR (1 << 0)
250# define PLL_SERIAL_3_SRL_DE (1 << 2)
251# define PLL_SERIAL_3_SRL_PXIN_SEL (1 << 4)
252#define REG_SERIALIZER REG(0x02, 0x03) /* read/write */
253#define REG_BUFFER_OUT REG(0x02, 0x04) /* read/write */
254#define REG_PLL_SCG1 REG(0x02, 0x05) /* read/write */
255#define REG_PLL_SCG2 REG(0x02, 0x06) /* read/write */
256#define REG_PLL_SCGN1 REG(0x02, 0x07) /* read/write */
257#define REG_PLL_SCGN2 REG(0x02, 0x08) /* read/write */
258#define REG_PLL_SCGR1 REG(0x02, 0x09) /* read/write */
259#define REG_PLL_SCGR2 REG(0x02, 0x0a) /* read/write */
260#define REG_AUDIO_DIV REG(0x02, 0x0e) /* read/write */
Russell Kingc4c11dd2013-08-14 21:43:30 +0200261# define AUDIO_DIV_SERCLK_1 0
262# define AUDIO_DIV_SERCLK_2 1
263# define AUDIO_DIV_SERCLK_4 2
264# define AUDIO_DIV_SERCLK_8 3
265# define AUDIO_DIV_SERCLK_16 4
266# define AUDIO_DIV_SERCLK_32 5
Rob Clarke7792ce2013-01-08 19:21:02 -0600267#define REG_SEL_CLK REG(0x02, 0x11) /* read/write */
268# define SEL_CLK_SEL_CLK1 (1 << 0)
269# define SEL_CLK_SEL_VRF_CLK(x) (((x) & 3) << 1)
270# define SEL_CLK_ENA_SC_CLK (1 << 3)
271#define REG_ANA_GENERAL REG(0x02, 0x12) /* read/write */
272
273
274/* Page 09h: EDID Control */
275#define REG_EDID_DATA_0 REG(0x09, 0x00) /* read */
276/* next 127 successive registers are the EDID block */
277#define REG_EDID_CTRL REG(0x09, 0xfa) /* read/write */
278#define REG_DDC_ADDR REG(0x09, 0xfb) /* read/write */
279#define REG_DDC_OFFS REG(0x09, 0xfc) /* read/write */
280#define REG_DDC_SEGM_ADDR REG(0x09, 0xfd) /* read/write */
281#define REG_DDC_SEGM REG(0x09, 0xfe) /* read/write */
282
283
284/* Page 10h: information frames and packets */
Russell Kingc4c11dd2013-08-14 21:43:30 +0200285#define REG_IF1_HB0 REG(0x10, 0x20) /* read/write */
286#define REG_IF2_HB0 REG(0x10, 0x40) /* read/write */
287#define REG_IF3_HB0 REG(0x10, 0x60) /* read/write */
288#define REG_IF4_HB0 REG(0x10, 0x80) /* read/write */
289#define REG_IF5_HB0 REG(0x10, 0xa0) /* read/write */
Rob Clarke7792ce2013-01-08 19:21:02 -0600290
291
292/* Page 11h: audio settings and content info packets */
293#define REG_AIP_CNTRL_0 REG(0x11, 0x00) /* read/write */
294# define AIP_CNTRL_0_RST_FIFO (1 << 0)
295# define AIP_CNTRL_0_SWAP (1 << 1)
296# define AIP_CNTRL_0_LAYOUT (1 << 2)
297# define AIP_CNTRL_0_ACR_MAN (1 << 5)
298# define AIP_CNTRL_0_RST_CTS (1 << 6)
Russell Kingc4c11dd2013-08-14 21:43:30 +0200299#define REG_CA_I2S REG(0x11, 0x01) /* read/write */
300# define CA_I2S_CA_I2S(x) (((x) & 31) << 0)
301# define CA_I2S_HBR_CHSTAT (1 << 6)
302#define REG_LATENCY_RD REG(0x11, 0x04) /* read/write */
303#define REG_ACR_CTS_0 REG(0x11, 0x05) /* read/write */
304#define REG_ACR_CTS_1 REG(0x11, 0x06) /* read/write */
305#define REG_ACR_CTS_2 REG(0x11, 0x07) /* read/write */
306#define REG_ACR_N_0 REG(0x11, 0x08) /* read/write */
307#define REG_ACR_N_1 REG(0x11, 0x09) /* read/write */
308#define REG_ACR_N_2 REG(0x11, 0x0a) /* read/write */
309#define REG_CTS_N REG(0x11, 0x0c) /* read/write */
310# define CTS_N_K(x) (((x) & 7) << 0)
311# define CTS_N_M(x) (((x) & 3) << 4)
Rob Clarke7792ce2013-01-08 19:21:02 -0600312#define REG_ENC_CNTRL REG(0x11, 0x0d) /* read/write */
313# define ENC_CNTRL_RST_ENC (1 << 0)
314# define ENC_CNTRL_RST_SEL (1 << 1)
315# define ENC_CNTRL_CTL_CODE(x) (((x) & 3) << 2)
Russell Kingc4c11dd2013-08-14 21:43:30 +0200316#define REG_DIP_FLAGS REG(0x11, 0x0e) /* read/write */
317# define DIP_FLAGS_ACR (1 << 0)
318# define DIP_FLAGS_GC (1 << 1)
319#define REG_DIP_IF_FLAGS REG(0x11, 0x0f) /* read/write */
320# define DIP_IF_FLAGS_IF1 (1 << 1)
321# define DIP_IF_FLAGS_IF2 (1 << 2)
322# define DIP_IF_FLAGS_IF3 (1 << 3)
323# define DIP_IF_FLAGS_IF4 (1 << 4)
324# define DIP_IF_FLAGS_IF5 (1 << 5)
325#define REG_CH_STAT_B(x) REG(0x11, 0x14 + (x)) /* read/write */
Rob Clarke7792ce2013-01-08 19:21:02 -0600326
327
328/* Page 12h: HDCP and OTP */
329#define REG_TX3 REG(0x12, 0x9a) /* read/write */
Russell King063b4722013-08-14 21:43:26 +0200330#define REG_TX4 REG(0x12, 0x9b) /* read/write */
331# define TX4_PD_RAM (1 << 1)
Rob Clarke7792ce2013-01-08 19:21:02 -0600332#define REG_TX33 REG(0x12, 0xb8) /* read/write */
333# define TX33_HDMI (1 << 1)
334
335
336/* Page 13h: Gamut related metadata packets */
337
338
339
340/* CEC registers: (not paged)
341 */
Jean-Francois Moine12473b72014-01-25 18:14:38 +0100342#define REG_CEC_INTSTATUS 0xee /* read */
343# define CEC_INTSTATUS_CEC (1 << 0)
344# define CEC_INTSTATUS_HDMI (1 << 1)
Rob Clarke7792ce2013-01-08 19:21:02 -0600345#define REG_CEC_FRO_IM_CLK_CTRL 0xfb /* read/write */
346# define CEC_FRO_IM_CLK_CTRL_GHOST_DIS (1 << 7)
347# define CEC_FRO_IM_CLK_CTRL_ENA_OTP (1 << 6)
348# define CEC_FRO_IM_CLK_CTRL_IMCLK_SEL (1 << 1)
349# define CEC_FRO_IM_CLK_CTRL_FRO_DIV (1 << 0)
Jean-Francois Moine12473b72014-01-25 18:14:38 +0100350#define REG_CEC_RXSHPDINTENA 0xfc /* read/write */
351#define REG_CEC_RXSHPDINT 0xfd /* read */
Russell Kingec5d3e82015-06-06 21:41:10 +0100352# define CEC_RXSHPDINT_RXSENS BIT(0)
353# define CEC_RXSHPDINT_HPD BIT(1)
Rob Clarke7792ce2013-01-08 19:21:02 -0600354#define REG_CEC_RXSHPDLEV 0xfe /* read */
355# define CEC_RXSHPDLEV_RXSENS (1 << 0)
356# define CEC_RXSHPDLEV_HPD (1 << 1)
357
358#define REG_CEC_ENAMODS 0xff /* read/write */
359# define CEC_ENAMODS_DIS_FRO (1 << 6)
360# define CEC_ENAMODS_DIS_CCLK (1 << 5)
361# define CEC_ENAMODS_EN_RXSENS (1 << 2)
362# define CEC_ENAMODS_EN_HDMI (1 << 1)
363# define CEC_ENAMODS_EN_CEC (1 << 0)
364
365
366/* Device versions: */
367#define TDA9989N2 0x0101
368#define TDA19989 0x0201
369#define TDA19989N2 0x0202
370#define TDA19988 0x0301
371
372static void
Russell Kinge66e03a2015-06-06 21:41:10 +0100373cec_write(struct tda998x_priv *priv, u16 addr, u8 val)
Rob Clarke7792ce2013-01-08 19:21:02 -0600374{
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100375 struct i2c_client *client = priv->cec;
Russell Kinge66e03a2015-06-06 21:41:10 +0100376 u8 buf[] = {addr, val};
Rob Clarke7792ce2013-01-08 19:21:02 -0600377 int ret;
378
Jean-Francois Moine704d63f2014-01-25 18:14:46 +0100379 ret = i2c_master_send(client, buf, sizeof(buf));
Rob Clarke7792ce2013-01-08 19:21:02 -0600380 if (ret < 0)
381 dev_err(&client->dev, "Error %d writing to cec:0x%x\n", ret, addr);
382}
383
Russell Kinge66e03a2015-06-06 21:41:10 +0100384static u8
385cec_read(struct tda998x_priv *priv, u8 addr)
Rob Clarke7792ce2013-01-08 19:21:02 -0600386{
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100387 struct i2c_client *client = priv->cec;
Russell Kinge66e03a2015-06-06 21:41:10 +0100388 u8 val;
Rob Clarke7792ce2013-01-08 19:21:02 -0600389 int ret;
390
391 ret = i2c_master_send(client, &addr, sizeof(addr));
392 if (ret < 0)
393 goto fail;
394
395 ret = i2c_master_recv(client, &val, sizeof(val));
396 if (ret < 0)
397 goto fail;
398
399 return val;
400
401fail:
402 dev_err(&client->dev, "Error %d reading from cec:0x%x\n", ret, addr);
403 return 0;
404}
405
Jean-Francois Moine7d2eadc2014-01-25 18:14:45 +0100406static int
Russell Kinge66e03a2015-06-06 21:41:10 +0100407set_page(struct tda998x_priv *priv, u16 reg)
Rob Clarke7792ce2013-01-08 19:21:02 -0600408{
Rob Clarke7792ce2013-01-08 19:21:02 -0600409 if (REG2PAGE(reg) != priv->current_page) {
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100410 struct i2c_client *client = priv->hdmi;
Russell Kinge66e03a2015-06-06 21:41:10 +0100411 u8 buf[] = {
Rob Clarke7792ce2013-01-08 19:21:02 -0600412 REG_CURPAGE, REG2PAGE(reg)
413 };
414 int ret = i2c_master_send(client, buf, sizeof(buf));
Jean-Francois Moine7d2eadc2014-01-25 18:14:45 +0100415 if (ret < 0) {
Julia Lawall288ffc72014-12-07 20:20:59 +0100416 dev_err(&client->dev, "%s %04x err %d\n", __func__,
Jean-Francois Moine704d63f2014-01-25 18:14:46 +0100417 reg, ret);
Jean-Francois Moine7d2eadc2014-01-25 18:14:45 +0100418 return ret;
419 }
Rob Clarke7792ce2013-01-08 19:21:02 -0600420
421 priv->current_page = REG2PAGE(reg);
422 }
Jean-Francois Moine7d2eadc2014-01-25 18:14:45 +0100423 return 0;
Rob Clarke7792ce2013-01-08 19:21:02 -0600424}
425
426static int
Russell Kinge66e03a2015-06-06 21:41:10 +0100427reg_read_range(struct tda998x_priv *priv, u16 reg, char *buf, int cnt)
Rob Clarke7792ce2013-01-08 19:21:02 -0600428{
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100429 struct i2c_client *client = priv->hdmi;
Russell Kinge66e03a2015-06-06 21:41:10 +0100430 u8 addr = REG2ADDR(reg);
Rob Clarke7792ce2013-01-08 19:21:02 -0600431 int ret;
432
Jean-Francois Moineed9a8422014-11-29 08:30:51 +0100433 mutex_lock(&priv->mutex);
Jean-Francois Moine7d2eadc2014-01-25 18:14:45 +0100434 ret = set_page(priv, reg);
435 if (ret < 0)
Jean-Francois Moineed9a8422014-11-29 08:30:51 +0100436 goto out;
Rob Clarke7792ce2013-01-08 19:21:02 -0600437
438 ret = i2c_master_send(client, &addr, sizeof(addr));
439 if (ret < 0)
440 goto fail;
441
442 ret = i2c_master_recv(client, buf, cnt);
443 if (ret < 0)
444 goto fail;
445
Jean-Francois Moineed9a8422014-11-29 08:30:51 +0100446 goto out;
Rob Clarke7792ce2013-01-08 19:21:02 -0600447
448fail:
449 dev_err(&client->dev, "Error %d reading from 0x%x\n", ret, reg);
Jean-Francois Moineed9a8422014-11-29 08:30:51 +0100450out:
451 mutex_unlock(&priv->mutex);
Rob Clarke7792ce2013-01-08 19:21:02 -0600452 return ret;
453}
454
Russell Kingc4c11dd2013-08-14 21:43:30 +0200455static void
Russell Kinge66e03a2015-06-06 21:41:10 +0100456reg_write_range(struct tda998x_priv *priv, u16 reg, u8 *p, int cnt)
Russell Kingc4c11dd2013-08-14 21:43:30 +0200457{
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100458 struct i2c_client *client = priv->hdmi;
Russell Kinge66e03a2015-06-06 21:41:10 +0100459 u8 buf[cnt+1];
Russell Kingc4c11dd2013-08-14 21:43:30 +0200460 int ret;
461
462 buf[0] = REG2ADDR(reg);
463 memcpy(&buf[1], p, cnt);
464
Jean-Francois Moineed9a8422014-11-29 08:30:51 +0100465 mutex_lock(&priv->mutex);
Jean-Francois Moine7d2eadc2014-01-25 18:14:45 +0100466 ret = set_page(priv, reg);
467 if (ret < 0)
Jean-Francois Moineed9a8422014-11-29 08:30:51 +0100468 goto out;
Russell Kingc4c11dd2013-08-14 21:43:30 +0200469
470 ret = i2c_master_send(client, buf, cnt + 1);
471 if (ret < 0)
472 dev_err(&client->dev, "Error %d writing to 0x%x\n", ret, reg);
Jean-Francois Moineed9a8422014-11-29 08:30:51 +0100473out:
474 mutex_unlock(&priv->mutex);
Russell Kingc4c11dd2013-08-14 21:43:30 +0200475}
476
Jean-Francois Moine7d2eadc2014-01-25 18:14:45 +0100477static int
Russell Kinge66e03a2015-06-06 21:41:10 +0100478reg_read(struct tda998x_priv *priv, u16 reg)
Rob Clarke7792ce2013-01-08 19:21:02 -0600479{
Russell Kinge66e03a2015-06-06 21:41:10 +0100480 u8 val = 0;
Jean-Francois Moine7d2eadc2014-01-25 18:14:45 +0100481 int ret;
482
483 ret = reg_read_range(priv, reg, &val, sizeof(val));
484 if (ret < 0)
485 return ret;
Rob Clarke7792ce2013-01-08 19:21:02 -0600486 return val;
487}
488
489static void
Russell Kinge66e03a2015-06-06 21:41:10 +0100490reg_write(struct tda998x_priv *priv, u16 reg, u8 val)
Rob Clarke7792ce2013-01-08 19:21:02 -0600491{
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100492 struct i2c_client *client = priv->hdmi;
Russell Kinge66e03a2015-06-06 21:41:10 +0100493 u8 buf[] = {REG2ADDR(reg), val};
Rob Clarke7792ce2013-01-08 19:21:02 -0600494 int ret;
495
Jean-Francois Moineed9a8422014-11-29 08:30:51 +0100496 mutex_lock(&priv->mutex);
Jean-Francois Moine7d2eadc2014-01-25 18:14:45 +0100497 ret = set_page(priv, reg);
498 if (ret < 0)
Jean-Francois Moineed9a8422014-11-29 08:30:51 +0100499 goto out;
Rob Clarke7792ce2013-01-08 19:21:02 -0600500
Jean-Francois Moine704d63f2014-01-25 18:14:46 +0100501 ret = i2c_master_send(client, buf, sizeof(buf));
Rob Clarke7792ce2013-01-08 19:21:02 -0600502 if (ret < 0)
503 dev_err(&client->dev, "Error %d writing to 0x%x\n", ret, reg);
Jean-Francois Moineed9a8422014-11-29 08:30:51 +0100504out:
505 mutex_unlock(&priv->mutex);
Rob Clarke7792ce2013-01-08 19:21:02 -0600506}
507
508static void
Russell Kinge66e03a2015-06-06 21:41:10 +0100509reg_write16(struct tda998x_priv *priv, u16 reg, u16 val)
Rob Clarke7792ce2013-01-08 19:21:02 -0600510{
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100511 struct i2c_client *client = priv->hdmi;
Russell Kinge66e03a2015-06-06 21:41:10 +0100512 u8 buf[] = {REG2ADDR(reg), val >> 8, val};
Rob Clarke7792ce2013-01-08 19:21:02 -0600513 int ret;
514
Jean-Francois Moineed9a8422014-11-29 08:30:51 +0100515 mutex_lock(&priv->mutex);
Jean-Francois Moine7d2eadc2014-01-25 18:14:45 +0100516 ret = set_page(priv, reg);
517 if (ret < 0)
Jean-Francois Moineed9a8422014-11-29 08:30:51 +0100518 goto out;
Rob Clarke7792ce2013-01-08 19:21:02 -0600519
Jean-Francois Moine704d63f2014-01-25 18:14:46 +0100520 ret = i2c_master_send(client, buf, sizeof(buf));
Rob Clarke7792ce2013-01-08 19:21:02 -0600521 if (ret < 0)
522 dev_err(&client->dev, "Error %d writing to 0x%x\n", ret, reg);
Jean-Francois Moineed9a8422014-11-29 08:30:51 +0100523out:
524 mutex_unlock(&priv->mutex);
Rob Clarke7792ce2013-01-08 19:21:02 -0600525}
526
527static void
Russell Kinge66e03a2015-06-06 21:41:10 +0100528reg_set(struct tda998x_priv *priv, u16 reg, u8 val)
Rob Clarke7792ce2013-01-08 19:21:02 -0600529{
Jean-Francois Moine7d2eadc2014-01-25 18:14:45 +0100530 int old_val;
531
532 old_val = reg_read(priv, reg);
533 if (old_val >= 0)
534 reg_write(priv, reg, old_val | val);
Rob Clarke7792ce2013-01-08 19:21:02 -0600535}
536
537static void
Russell Kinge66e03a2015-06-06 21:41:10 +0100538reg_clear(struct tda998x_priv *priv, u16 reg, u8 val)
Rob Clarke7792ce2013-01-08 19:21:02 -0600539{
Jean-Francois Moine7d2eadc2014-01-25 18:14:45 +0100540 int old_val;
541
542 old_val = reg_read(priv, reg);
543 if (old_val >= 0)
544 reg_write(priv, reg, old_val & ~val);
Rob Clarke7792ce2013-01-08 19:21:02 -0600545}
546
547static void
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100548tda998x_reset(struct tda998x_priv *priv)
Rob Clarke7792ce2013-01-08 19:21:02 -0600549{
550 /* reset audio and i2c master: */
Jean-Francois Moine81b53a12014-01-25 18:14:42 +0100551 reg_write(priv, REG_SOFTRESET, SOFTRESET_AUDIO | SOFTRESET_I2C_MASTER);
Rob Clarke7792ce2013-01-08 19:21:02 -0600552 msleep(50);
Jean-Francois Moine81b53a12014-01-25 18:14:42 +0100553 reg_write(priv, REG_SOFTRESET, 0);
Rob Clarke7792ce2013-01-08 19:21:02 -0600554 msleep(50);
555
556 /* reset transmitter: */
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100557 reg_set(priv, REG_MAIN_CNTRL0, MAIN_CNTRL0_SR);
558 reg_clear(priv, REG_MAIN_CNTRL0, MAIN_CNTRL0_SR);
Rob Clarke7792ce2013-01-08 19:21:02 -0600559
560 /* PLL registers common configuration */
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100561 reg_write(priv, REG_PLL_SERIAL_1, 0x00);
562 reg_write(priv, REG_PLL_SERIAL_2, PLL_SERIAL_2_SRL_NOSC(1));
563 reg_write(priv, REG_PLL_SERIAL_3, 0x00);
564 reg_write(priv, REG_SERIALIZER, 0x00);
565 reg_write(priv, REG_BUFFER_OUT, 0x00);
566 reg_write(priv, REG_PLL_SCG1, 0x00);
567 reg_write(priv, REG_AUDIO_DIV, AUDIO_DIV_SERCLK_8);
568 reg_write(priv, REG_SEL_CLK, SEL_CLK_SEL_CLK1 | SEL_CLK_ENA_SC_CLK);
569 reg_write(priv, REG_PLL_SCGN1, 0xfa);
570 reg_write(priv, REG_PLL_SCGN2, 0x00);
571 reg_write(priv, REG_PLL_SCGR1, 0x5b);
572 reg_write(priv, REG_PLL_SCGR2, 0x00);
573 reg_write(priv, REG_PLL_SCG2, 0x10);
Russell Kingbcb24812013-08-14 21:43:27 +0200574
575 /* Write the default value MUX register */
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100576 reg_write(priv, REG_MUX_VP_VIP_OUT, 0x24);
Rob Clarke7792ce2013-01-08 19:21:02 -0600577}
578
Russell King0fc6f442015-06-06 21:41:09 +0100579/*
580 * The TDA998x has a problem when trying to read the EDID close to a
581 * HPD assertion: it needs a delay of 100ms to avoid timing out while
582 * trying to read EDID data.
583 *
Russell King95a9b682016-10-23 11:24:22 +0100584 * However, tda998x_connector_get_modes() may be called at any moment
Russell King9525c4d2015-08-14 11:28:53 +0100585 * after tda998x_connector_detect() indicates that we are connected, so
Russell King95a9b682016-10-23 11:24:22 +0100586 * we need to delay probing modes in tda998x_connector_get_modes() after
Russell King0fc6f442015-06-06 21:41:09 +0100587 * we have seen a HPD inactive->active transition. This code implements
588 * that delay.
589 */
590static void tda998x_edid_delay_done(unsigned long data)
Jean-Francois Moine6833d262014-11-29 08:57:15 +0100591{
Russell King0fc6f442015-06-06 21:41:09 +0100592 struct tda998x_priv *priv = (struct tda998x_priv *)data;
Jean-Francois Moine6833d262014-11-29 08:57:15 +0100593
Russell King0fc6f442015-06-06 21:41:09 +0100594 priv->edid_delay_active = false;
595 wake_up(&priv->edid_delay_waitq);
596 schedule_work(&priv->detect_work);
597}
598
599static void tda998x_edid_delay_start(struct tda998x_priv *priv)
600{
601 priv->edid_delay_active = true;
602 mod_timer(&priv->edid_delay_timer, jiffies + HZ/10);
603}
604
605static int tda998x_edid_delay_wait(struct tda998x_priv *priv)
606{
607 return wait_event_killable(priv->edid_delay_waitq, !priv->edid_delay_active);
608}
609
610/*
611 * We need to run the KMS hotplug event helper outside of our threaded
612 * interrupt routine as this can call back into our get_modes method,
613 * which will want to make use of interrupts.
614 */
615static void tda998x_detect_work(struct work_struct *work)
616{
617 struct tda998x_priv *priv =
618 container_of(work, struct tda998x_priv, detect_work);
Russell King78e401f2015-08-14 11:17:12 +0100619 struct drm_device *dev = priv->encoder.dev;
Russell King0fc6f442015-06-06 21:41:09 +0100620
621 if (dev)
622 drm_kms_helper_hotplug_event(dev);
Jean-Francois Moine6833d262014-11-29 08:57:15 +0100623}
624
Jean-Francois Moine12473b72014-01-25 18:14:38 +0100625/*
626 * only 2 interrupts may occur: screen plug/unplug and EDID read
627 */
628static irqreturn_t tda998x_irq_thread(int irq, void *data)
629{
630 struct tda998x_priv *priv = data;
631 u8 sta, cec, lvl, flag0, flag1, flag2;
Russell Kingf84a97d2015-06-06 21:41:09 +0100632 bool handled = false;
Jean-Francois Moine12473b72014-01-25 18:14:38 +0100633
Jean-Francois Moine12473b72014-01-25 18:14:38 +0100634 sta = cec_read(priv, REG_CEC_INTSTATUS);
635 cec = cec_read(priv, REG_CEC_RXSHPDINT);
636 lvl = cec_read(priv, REG_CEC_RXSHPDLEV);
637 flag0 = reg_read(priv, REG_INT_FLAGS_0);
638 flag1 = reg_read(priv, REG_INT_FLAGS_1);
639 flag2 = reg_read(priv, REG_INT_FLAGS_2);
640 DRM_DEBUG_DRIVER(
641 "tda irq sta %02x cec %02x lvl %02x f0 %02x f1 %02x f2 %02x\n",
642 sta, cec, lvl, flag0, flag1, flag2);
Russell Kingec5d3e82015-06-06 21:41:10 +0100643
644 if (cec & CEC_RXSHPDINT_HPD) {
Russell King0fc6f442015-06-06 21:41:09 +0100645 if (lvl & CEC_RXSHPDLEV_HPD)
646 tda998x_edid_delay_start(priv);
647 else
648 schedule_work(&priv->detect_work);
649
Russell Kingf84a97d2015-06-06 21:41:09 +0100650 handled = true;
Jean-Francois Moine12473b72014-01-25 18:14:38 +0100651 }
Russell Kingec5d3e82015-06-06 21:41:10 +0100652
653 if ((flag2 & INT_FLAGS_2_EDID_BLK_RD) && priv->wq_edid_wait) {
654 priv->wq_edid_wait = 0;
655 wake_up(&priv->wq_edid);
656 handled = true;
657 }
658
Russell Kingf84a97d2015-06-06 21:41:09 +0100659 return IRQ_RETVAL(handled);
Jean-Francois Moine12473b72014-01-25 18:14:38 +0100660}
661
Russell Kingc4c11dd2013-08-14 21:43:30 +0200662static void
Russell Kinge66e03a2015-06-06 21:41:10 +0100663tda998x_write_if(struct tda998x_priv *priv, u8 bit, u16 addr,
Russell King96795df2015-08-06 10:52:05 +0100664 union hdmi_infoframe *frame)
Russell Kingc4c11dd2013-08-14 21:43:30 +0200665{
Russell King96795df2015-08-06 10:52:05 +0100666 u8 buf[32];
667 ssize_t len;
668
669 len = hdmi_infoframe_pack(frame, buf, sizeof(buf));
670 if (len < 0) {
671 dev_err(&priv->hdmi->dev,
672 "hdmi_infoframe_pack() type=0x%02x failed: %zd\n",
673 frame->any.type, len);
674 return;
675 }
676
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100677 reg_clear(priv, REG_DIP_IF_FLAGS, bit);
Russell King96795df2015-08-06 10:52:05 +0100678 reg_write_range(priv, addr, buf, len);
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100679 reg_set(priv, REG_DIP_IF_FLAGS, bit);
Russell Kingc4c11dd2013-08-14 21:43:30 +0200680}
681
Jyri Sarha95db3b22016-08-09 22:00:04 +0300682static int tda998x_write_aif(struct tda998x_priv *priv,
683 struct hdmi_audio_infoframe *cea)
Russell Kingc4c11dd2013-08-14 21:43:30 +0200684{
Russell King96795df2015-08-06 10:52:05 +0100685 union hdmi_infoframe frame;
Russell Kingc4c11dd2013-08-14 21:43:30 +0200686
Jyri Sarha95db3b22016-08-09 22:00:04 +0300687 frame.audio = *cea;
Russell King96795df2015-08-06 10:52:05 +0100688
689 tda998x_write_if(priv, DIP_IF_FLAGS_IF4, REG_IF4_HB0, &frame);
Jyri Sarha95db3b22016-08-09 22:00:04 +0300690
691 return 0;
Russell Kingc4c11dd2013-08-14 21:43:30 +0200692}
693
694static void
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100695tda998x_write_avi(struct tda998x_priv *priv, struct drm_display_mode *mode)
Russell Kingc4c11dd2013-08-14 21:43:30 +0200696{
Russell King96795df2015-08-06 10:52:05 +0100697 union hdmi_infoframe frame;
Russell Kingc4c11dd2013-08-14 21:43:30 +0200698
Russell King96795df2015-08-06 10:52:05 +0100699 drm_hdmi_avi_infoframe_from_display_mode(&frame.avi, mode);
700 frame.avi.quantization_range = HDMI_QUANTIZATION_RANGE_FULL;
Russell Kingc4c11dd2013-08-14 21:43:30 +0200701
Russell King96795df2015-08-06 10:52:05 +0100702 tda998x_write_if(priv, DIP_IF_FLAGS_IF2, REG_IF2_HB0, &frame);
Russell Kingc4c11dd2013-08-14 21:43:30 +0200703}
704
Russell Kingad975f92016-10-23 11:30:56 +0100705/* Audio support */
706
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100707static void tda998x_audio_mute(struct tda998x_priv *priv, bool on)
Russell Kingc4c11dd2013-08-14 21:43:30 +0200708{
709 if (on) {
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100710 reg_set(priv, REG_SOFTRESET, SOFTRESET_AUDIO);
711 reg_clear(priv, REG_SOFTRESET, SOFTRESET_AUDIO);
712 reg_set(priv, REG_AIP_CNTRL_0, AIP_CNTRL_0_RST_FIFO);
Russell Kingc4c11dd2013-08-14 21:43:30 +0200713 } else {
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100714 reg_clear(priv, REG_AIP_CNTRL_0, AIP_CNTRL_0_RST_FIFO);
Russell Kingc4c11dd2013-08-14 21:43:30 +0200715 }
716}
717
Jyri Sarha95db3b22016-08-09 22:00:04 +0300718static int
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100719tda998x_configure_audio(struct tda998x_priv *priv,
Russell King319e6582016-10-23 11:32:43 +0100720 struct tda998x_audio_params *params)
Russell Kingc4c11dd2013-08-14 21:43:30 +0200721{
Russell Kinge66e03a2015-06-06 21:41:10 +0100722 u8 buf[6], clksel_aip, clksel_fs, cts_n, adiv;
723 u32 n;
Russell Kingc4c11dd2013-08-14 21:43:30 +0200724
725 /* Enable audio ports */
Jyri Sarha95db3b22016-08-09 22:00:04 +0300726 reg_write(priv, REG_ENA_AP, params->config);
Russell Kingc4c11dd2013-08-14 21:43:30 +0200727
728 /* Set audio input source */
Jyri Sarha95db3b22016-08-09 22:00:04 +0300729 switch (params->format) {
Russell Kingc4c11dd2013-08-14 21:43:30 +0200730 case AFMT_SPDIF:
Jyri Sarha95db3b22016-08-09 22:00:04 +0300731 reg_write(priv, REG_ENA_ACLK, 0);
Jean-Francois Moine10df1a92014-01-25 18:14:40 +0100732 reg_write(priv, REG_MUX_AP, MUX_AP_SELECT_SPDIF);
733 clksel_aip = AIP_CLKSEL_AIP_SPDIF;
734 clksel_fs = AIP_CLKSEL_FS_FS64SPDIF;
Russell Kingc4c11dd2013-08-14 21:43:30 +0200735 cts_n = CTS_N_M(3) | CTS_N_K(3);
Russell Kingc4c11dd2013-08-14 21:43:30 +0200736 break;
737
738 case AFMT_I2S:
Jyri Sarha95db3b22016-08-09 22:00:04 +0300739 reg_write(priv, REG_ENA_ACLK, 1);
Jean-Francois Moine10df1a92014-01-25 18:14:40 +0100740 reg_write(priv, REG_MUX_AP, MUX_AP_SELECT_I2S);
741 clksel_aip = AIP_CLKSEL_AIP_I2S;
742 clksel_fs = AIP_CLKSEL_FS_ACLK;
Jyri Sarha95db3b22016-08-09 22:00:04 +0300743 switch (params->sample_width) {
744 case 16:
745 cts_n = CTS_N_M(3) | CTS_N_K(1);
746 break;
747 case 18:
748 case 20:
749 case 24:
750 cts_n = CTS_N_M(3) | CTS_N_K(2);
751 break;
752 default:
753 case 32:
754 cts_n = CTS_N_M(3) | CTS_N_K(3);
755 break;
756 }
Russell Kingc4c11dd2013-08-14 21:43:30 +0200757 break;
David Herrmann3b288022013-09-01 15:23:04 +0200758
759 default:
Jyri Sarha7e567622016-08-09 22:00:05 +0300760 dev_err(&priv->hdmi->dev, "Unsupported I2S format\n");
Jyri Sarha95db3b22016-08-09 22:00:04 +0300761 return -EINVAL;
Russell Kingc4c11dd2013-08-14 21:43:30 +0200762 }
763
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100764 reg_write(priv, REG_AIP_CLKSEL, clksel_aip);
Jean-Francois Moinea8b517e2014-01-25 18:14:39 +0100765 reg_clear(priv, REG_AIP_CNTRL_0, AIP_CNTRL_0_LAYOUT |
766 AIP_CNTRL_0_ACR_MAN); /* auto CTS */
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100767 reg_write(priv, REG_CTS_N, cts_n);
Russell Kingc4c11dd2013-08-14 21:43:30 +0200768
769 /*
770 * Audio input somehow depends on HDMI line rate which is
771 * related to pixclk. Testing showed that modes with pixclk
772 * >100MHz need a larger divider while <40MHz need the default.
773 * There is no detailed info in the datasheet, so we just
774 * assume 100MHz requires larger divider.
775 */
Jean-Francois Moine2470fec2014-01-25 18:14:36 +0100776 adiv = AUDIO_DIV_SERCLK_8;
Russell King319e6582016-10-23 11:32:43 +0100777 if (priv->tmds_clock > 100000)
Jean-Francois Moine2470fec2014-01-25 18:14:36 +0100778 adiv++; /* AUDIO_DIV_SERCLK_16 */
779
780 /* S/PDIF asks for a larger divider */
Jyri Sarha95db3b22016-08-09 22:00:04 +0300781 if (params->format == AFMT_SPDIF)
Jean-Francois Moine2470fec2014-01-25 18:14:36 +0100782 adiv++; /* AUDIO_DIV_SERCLK_16 or _32 */
783
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100784 reg_write(priv, REG_AUDIO_DIV, adiv);
Russell Kingc4c11dd2013-08-14 21:43:30 +0200785
786 /*
787 * This is the approximate value of N, which happens to be
788 * the recommended values for non-coherent clocks.
789 */
Jyri Sarha95db3b22016-08-09 22:00:04 +0300790 n = 128 * params->sample_rate / 1000;
Russell Kingc4c11dd2013-08-14 21:43:30 +0200791
792 /* Write the CTS and N values */
793 buf[0] = 0x44;
794 buf[1] = 0x42;
795 buf[2] = 0x01;
796 buf[3] = n;
797 buf[4] = n >> 8;
798 buf[5] = n >> 16;
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100799 reg_write_range(priv, REG_ACR_CTS_0, buf, 6);
Russell Kingc4c11dd2013-08-14 21:43:30 +0200800
801 /* Set CTS clock reference */
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100802 reg_write(priv, REG_AIP_CLKSEL, clksel_aip | clksel_fs);
Russell Kingc4c11dd2013-08-14 21:43:30 +0200803
804 /* Reset CTS generator */
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100805 reg_set(priv, REG_AIP_CNTRL_0, AIP_CNTRL_0_RST_CTS);
806 reg_clear(priv, REG_AIP_CNTRL_0, AIP_CNTRL_0_RST_CTS);
Russell Kingc4c11dd2013-08-14 21:43:30 +0200807
Jyri Sarha95db3b22016-08-09 22:00:04 +0300808 /* Write the channel status
809 * The REG_CH_STAT_B-registers skip IEC958 AES2 byte, because
810 * there is a separate register for each I2S wire.
811 */
812 buf[0] = params->status[0];
813 buf[1] = params->status[1];
814 buf[2] = params->status[3];
815 buf[3] = params->status[4];
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100816 reg_write_range(priv, REG_CH_STAT_B(0), buf, 4);
Russell Kingc4c11dd2013-08-14 21:43:30 +0200817
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100818 tda998x_audio_mute(priv, true);
Jean-Francois Moine73d5e252014-01-25 18:14:44 +0100819 msleep(20);
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +0100820 tda998x_audio_mute(priv, false);
Russell Kingc4c11dd2013-08-14 21:43:30 +0200821
Jyri Sarha95db3b22016-08-09 22:00:04 +0300822 return tda998x_write_aif(priv, &params->cea);
Russell Kingc4c11dd2013-08-14 21:43:30 +0200823}
824
Russell Kingad975f92016-10-23 11:30:56 +0100825static int tda998x_audio_hw_params(struct device *dev, void *data,
826 struct hdmi_codec_daifmt *daifmt,
827 struct hdmi_codec_params *params)
828{
829 struct tda998x_priv *priv = dev_get_drvdata(dev);
830 int i, ret;
831 struct tda998x_audio_params audio = {
832 .sample_width = params->sample_width,
833 .sample_rate = params->sample_rate,
834 .cea = params->cea,
835 };
836
837 memcpy(audio.status, params->iec.status,
838 min(sizeof(audio.status), sizeof(params->iec.status)));
839
840 switch (daifmt->fmt) {
841 case HDMI_I2S:
842 if (daifmt->bit_clk_inv || daifmt->frame_clk_inv ||
843 daifmt->bit_clk_master || daifmt->frame_clk_master) {
844 dev_err(dev, "%s: Bad flags %d %d %d %d\n", __func__,
845 daifmt->bit_clk_inv, daifmt->frame_clk_inv,
846 daifmt->bit_clk_master,
847 daifmt->frame_clk_master);
848 return -EINVAL;
849 }
850 for (i = 0; i < ARRAY_SIZE(priv->audio_port); i++)
851 if (priv->audio_port[i].format == AFMT_I2S)
852 audio.config = priv->audio_port[i].config;
853 audio.format = AFMT_I2S;
854 break;
855 case HDMI_SPDIF:
856 for (i = 0; i < ARRAY_SIZE(priv->audio_port); i++)
857 if (priv->audio_port[i].format == AFMT_SPDIF)
858 audio.config = priv->audio_port[i].config;
859 audio.format = AFMT_SPDIF;
860 break;
861 default:
862 dev_err(dev, "%s: Invalid format %d\n", __func__, daifmt->fmt);
863 return -EINVAL;
864 }
865
866 if (audio.config == 0) {
867 dev_err(dev, "%s: No audio configutation found\n", __func__);
868 return -EINVAL;
869 }
870
871 mutex_lock(&priv->audio_mutex);
872 if (priv->supports_infoframes && priv->sink_has_audio)
873 ret = tda998x_configure_audio(priv, &audio);
874 else
875 ret = 0;
876
877 if (ret == 0)
878 priv->audio_params = audio;
879 mutex_unlock(&priv->audio_mutex);
880
881 return ret;
882}
883
884static void tda998x_audio_shutdown(struct device *dev, void *data)
885{
886 struct tda998x_priv *priv = dev_get_drvdata(dev);
887
888 mutex_lock(&priv->audio_mutex);
889
890 reg_write(priv, REG_ENA_AP, 0);
891
892 priv->audio_params.format = AFMT_UNUSED;
893
894 mutex_unlock(&priv->audio_mutex);
895}
896
897int tda998x_audio_digital_mute(struct device *dev, void *data, bool enable)
898{
899 struct tda998x_priv *priv = dev_get_drvdata(dev);
900
901 mutex_lock(&priv->audio_mutex);
902
903 tda998x_audio_mute(priv, enable);
904
905 mutex_unlock(&priv->audio_mutex);
906 return 0;
907}
908
909static int tda998x_audio_get_eld(struct device *dev, void *data,
910 uint8_t *buf, size_t len)
911{
912 struct tda998x_priv *priv = dev_get_drvdata(dev);
913 struct drm_mode_config *config = &priv->encoder.dev->mode_config;
914 struct drm_connector *connector;
915 int ret = -ENODEV;
916
917 mutex_lock(&config->mutex);
918 list_for_each_entry(connector, &config->connector_list, head) {
919 if (&priv->encoder == connector->encoder) {
920 memcpy(buf, connector->eld,
921 min(sizeof(connector->eld), len));
922 ret = 0;
923 }
924 }
925 mutex_unlock(&config->mutex);
926
927 return ret;
928}
929
930static const struct hdmi_codec_ops audio_codec_ops = {
931 .hw_params = tda998x_audio_hw_params,
932 .audio_shutdown = tda998x_audio_shutdown,
933 .digital_mute = tda998x_audio_digital_mute,
934 .get_eld = tda998x_audio_get_eld,
935};
936
937static int tda998x_audio_codec_init(struct tda998x_priv *priv,
938 struct device *dev)
939{
940 struct hdmi_codec_pdata codec_data = {
941 .ops = &audio_codec_ops,
942 .max_i2s_channels = 2,
943 };
944 int i;
945
946 for (i = 0; i < ARRAY_SIZE(priv->audio_port); i++) {
947 if (priv->audio_port[i].format == AFMT_I2S &&
948 priv->audio_port[i].config != 0)
949 codec_data.i2s = 1;
950 if (priv->audio_port[i].format == AFMT_SPDIF &&
951 priv->audio_port[i].config != 0)
952 codec_data.spdif = 1;
953 }
954
955 priv->audio_pdev = platform_device_register_data(
956 dev, HDMI_CODEC_DRV_NAME, PLATFORM_DEVID_AUTO,
957 &codec_data, sizeof(codec_data));
958
959 return PTR_ERR_OR_ZERO(priv->audio_pdev);
960}
961
Russell King25576732016-10-23 11:29:59 +0100962/* DRM connector functions */
963
964static int tda998x_connector_dpms(struct drm_connector *connector, int mode)
965{
966 if (drm_core_check_feature(connector->dev, DRIVER_ATOMIC))
967 return drm_atomic_helper_connector_dpms(connector, mode);
968 else
969 return drm_helper_connector_dpms(connector, mode);
970}
971
972static int tda998x_connector_fill_modes(struct drm_connector *connector,
973 uint32_t maxX, uint32_t maxY)
974{
975 struct tda998x_priv *priv = conn_to_tda998x_priv(connector);
976 int ret;
977
978 ret = drm_helper_probe_single_connector_modes(connector, maxX, maxY);
979
980 if (connector->edid_blob_ptr) {
981 struct edid *edid = (void *)connector->edid_blob_ptr->data;
982
983 priv->sink_has_audio = drm_detect_monitor_audio(edid);
984 } else {
985 priv->sink_has_audio = false;
986 }
987
988 return ret;
989}
990
991static enum drm_connector_status
992tda998x_connector_detect(struct drm_connector *connector, bool force)
993{
994 struct tda998x_priv *priv = conn_to_tda998x_priv(connector);
995 u8 val = cec_read(priv, REG_CEC_RXSHPDLEV);
996
997 return (val & CEC_RXSHPDLEV_HPD) ? connector_status_connected :
998 connector_status_disconnected;
999}
1000
1001static void tda998x_connector_destroy(struct drm_connector *connector)
1002{
1003 drm_connector_cleanup(connector);
1004}
1005
1006static const struct drm_connector_funcs tda998x_connector_funcs = {
1007 .dpms = tda998x_connector_dpms,
1008 .reset = drm_atomic_helper_connector_reset,
1009 .fill_modes = tda998x_connector_fill_modes,
1010 .detect = tda998x_connector_detect,
1011 .destroy = tda998x_connector_destroy,
1012 .atomic_duplicate_state = drm_atomic_helper_connector_duplicate_state,
1013 .atomic_destroy_state = drm_atomic_helper_connector_destroy_state,
1014};
1015
1016static int read_edid_block(void *data, u8 *buf, unsigned int blk, size_t length)
1017{
1018 struct tda998x_priv *priv = data;
1019 u8 offset, segptr;
1020 int ret, i;
1021
1022 offset = (blk & 1) ? 128 : 0;
1023 segptr = blk / 2;
1024
1025 reg_write(priv, REG_DDC_ADDR, 0xa0);
1026 reg_write(priv, REG_DDC_OFFS, offset);
1027 reg_write(priv, REG_DDC_SEGM_ADDR, 0x60);
1028 reg_write(priv, REG_DDC_SEGM, segptr);
1029
1030 /* enable reading EDID: */
1031 priv->wq_edid_wait = 1;
1032 reg_write(priv, REG_EDID_CTRL, 0x1);
1033
1034 /* flag must be cleared by sw: */
1035 reg_write(priv, REG_EDID_CTRL, 0x0);
1036
1037 /* wait for block read to complete: */
1038 if (priv->hdmi->irq) {
1039 i = wait_event_timeout(priv->wq_edid,
1040 !priv->wq_edid_wait,
1041 msecs_to_jiffies(100));
1042 if (i < 0) {
1043 dev_err(&priv->hdmi->dev, "read edid wait err %d\n", i);
1044 return i;
1045 }
1046 } else {
1047 for (i = 100; i > 0; i--) {
1048 msleep(1);
1049 ret = reg_read(priv, REG_INT_FLAGS_2);
1050 if (ret < 0)
1051 return ret;
1052 if (ret & INT_FLAGS_2_EDID_BLK_RD)
1053 break;
1054 }
1055 }
1056
1057 if (i == 0) {
1058 dev_err(&priv->hdmi->dev, "read edid timeout\n");
1059 return -ETIMEDOUT;
1060 }
1061
1062 ret = reg_read_range(priv, REG_EDID_DATA_0, buf, length);
1063 if (ret != length) {
1064 dev_err(&priv->hdmi->dev, "failed to read edid block %d: %d\n",
1065 blk, ret);
1066 return ret;
1067 }
1068
1069 return 0;
1070}
1071
1072static int tda998x_connector_get_modes(struct drm_connector *connector)
1073{
1074 struct tda998x_priv *priv = conn_to_tda998x_priv(connector);
1075 struct edid *edid;
1076 int n;
1077
1078 /*
1079 * If we get killed while waiting for the HPD timeout, return
1080 * no modes found: we are not in a restartable path, so we
1081 * can't handle signals gracefully.
1082 */
1083 if (tda998x_edid_delay_wait(priv))
1084 return 0;
1085
1086 if (priv->rev == TDA19988)
1087 reg_clear(priv, REG_TX4, TX4_PD_RAM);
1088
1089 edid = drm_do_get_edid(connector, read_edid_block, priv);
1090
1091 if (priv->rev == TDA19988)
1092 reg_set(priv, REG_TX4, TX4_PD_RAM);
1093
1094 if (!edid) {
1095 dev_warn(&priv->hdmi->dev, "failed to read EDID\n");
1096 return 0;
1097 }
1098
1099 drm_mode_connector_update_edid_property(connector, edid);
1100 n = drm_add_edid_modes(connector, edid);
1101 drm_edid_to_eld(connector, edid);
1102
1103 kfree(edid);
1104
1105 return n;
1106}
1107
1108static int tda998x_connector_mode_valid(struct drm_connector *connector,
1109 struct drm_display_mode *mode)
1110{
1111 /* TDA19988 dotclock can go up to 165MHz */
1112 struct tda998x_priv *priv = conn_to_tda998x_priv(connector);
1113
1114 if (mode->clock > ((priv->rev == TDA19988) ? 165000 : 150000))
1115 return MODE_CLOCK_HIGH;
1116 if (mode->htotal >= BIT(13))
1117 return MODE_BAD_HVALUE;
1118 if (mode->vtotal >= BIT(11))
1119 return MODE_BAD_VVALUE;
1120 return MODE_OK;
1121}
1122
1123static struct drm_encoder *
1124tda998x_connector_best_encoder(struct drm_connector *connector)
1125{
1126 struct tda998x_priv *priv = conn_to_tda998x_priv(connector);
1127
1128 return &priv->encoder;
1129}
1130
1131static
1132const struct drm_connector_helper_funcs tda998x_connector_helper_funcs = {
1133 .get_modes = tda998x_connector_get_modes,
1134 .mode_valid = tda998x_connector_mode_valid,
1135 .best_encoder = tda998x_connector_best_encoder,
1136};
1137
Russell Kinga2f75662016-10-23 11:30:56 +01001138static int tda998x_connector_init(struct tda998x_priv *priv,
1139 struct drm_device *drm)
1140{
1141 struct drm_connector *connector = &priv->connector;
1142 int ret;
1143
1144 connector->interlace_allowed = 1;
1145
1146 if (priv->hdmi->irq)
1147 connector->polled = DRM_CONNECTOR_POLL_HPD;
1148 else
1149 connector->polled = DRM_CONNECTOR_POLL_CONNECT |
1150 DRM_CONNECTOR_POLL_DISCONNECT;
1151
1152 drm_connector_helper_add(connector, &tda998x_connector_helper_funcs);
1153 ret = drm_connector_init(drm, connector, &tda998x_connector_funcs,
1154 DRM_MODE_CONNECTOR_HDMIA);
1155 if (ret)
1156 return ret;
1157
1158 drm_mode_connector_attach_encoder(&priv->connector, &priv->encoder);
1159
1160 return 0;
1161}
1162
Rob Clarke7792ce2013-01-08 19:21:02 -06001163/* DRM encoder functions */
1164
Russell King9525c4d2015-08-14 11:28:53 +01001165static void tda998x_encoder_dpms(struct drm_encoder *encoder, int mode)
Rob Clarke7792ce2013-01-08 19:21:02 -06001166{
Russell King9525c4d2015-08-14 11:28:53 +01001167 struct tda998x_priv *priv = enc_to_tda998x_priv(encoder);
1168
Rob Clarke7792ce2013-01-08 19:21:02 -06001169 /* we only care about on or off: */
1170 if (mode != DRM_MODE_DPMS_ON)
1171 mode = DRM_MODE_DPMS_OFF;
1172
1173 if (mode == priv->dpms)
1174 return;
1175
1176 switch (mode) {
1177 case DRM_MODE_DPMS_ON:
Russell Kingc4c11dd2013-08-14 21:43:30 +02001178 /* enable video ports, audio will be enabled later */
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +01001179 reg_write(priv, REG_ENA_VP_0, 0xff);
1180 reg_write(priv, REG_ENA_VP_1, 0xff);
1181 reg_write(priv, REG_ENA_VP_2, 0xff);
Rob Clarke7792ce2013-01-08 19:21:02 -06001182 /* set muxing after enabling ports: */
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +01001183 reg_write(priv, REG_VIP_CNTRL_0, priv->vip_cntrl_0);
1184 reg_write(priv, REG_VIP_CNTRL_1, priv->vip_cntrl_1);
1185 reg_write(priv, REG_VIP_CNTRL_2, priv->vip_cntrl_2);
Rob Clarke7792ce2013-01-08 19:21:02 -06001186 break;
1187 case DRM_MODE_DPMS_OFF:
Russell Kingdb6aaf42013-09-24 10:37:13 +01001188 /* disable video ports */
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +01001189 reg_write(priv, REG_ENA_VP_0, 0x00);
1190 reg_write(priv, REG_ENA_VP_1, 0x00);
1191 reg_write(priv, REG_ENA_VP_2, 0x00);
Rob Clarke7792ce2013-01-08 19:21:02 -06001192 break;
1193 }
1194
1195 priv->dpms = mode;
1196}
1197
Rob Clarke7792ce2013-01-08 19:21:02 -06001198static void
Russell King9525c4d2015-08-14 11:28:53 +01001199tda998x_encoder_mode_set(struct drm_encoder *encoder,
Russell Kinga8f4d4d62014-02-07 19:17:21 +00001200 struct drm_display_mode *mode,
1201 struct drm_display_mode *adjusted_mode)
Rob Clarke7792ce2013-01-08 19:21:02 -06001202{
Russell King9525c4d2015-08-14 11:28:53 +01001203 struct tda998x_priv *priv = enc_to_tda998x_priv(encoder);
Russell Kinge66e03a2015-06-06 21:41:10 +01001204 u16 ref_pix, ref_line, n_pix, n_line;
1205 u16 hs_pix_s, hs_pix_e;
1206 u16 vs1_pix_s, vs1_pix_e, vs1_line_s, vs1_line_e;
1207 u16 vs2_pix_s, vs2_pix_e, vs2_line_s, vs2_line_e;
1208 u16 vwin1_line_s, vwin1_line_e;
1209 u16 vwin2_line_s, vwin2_line_e;
1210 u16 de_pix_s, de_pix_e;
1211 u8 reg, div, rep;
Rob Clarke7792ce2013-01-08 19:21:02 -06001212
Sebastian Hesselbarth088d61d2013-08-14 21:43:31 +02001213 /*
1214 * Internally TDA998x is using ITU-R BT.656 style sync but
1215 * we get VESA style sync. TDA998x is using a reference pixel
1216 * relative to ITU to sync to the input frame and for output
1217 * sync generation. Currently, we are using reference detection
1218 * from HS/VS, i.e. REFPIX/REFLINE denote frame start sync point
1219 * which is position of rising VS with coincident rising HS.
1220 *
1221 * Now there is some issues to take care of:
1222 * - HDMI data islands require sync-before-active
1223 * - TDA998x register values must be > 0 to be enabled
1224 * - REFLINE needs an additional offset of +1
1225 * - REFPIX needs an addtional offset of +1 for UYUV and +3 for RGB
1226 *
1227 * So we add +1 to all horizontal and vertical register values,
1228 * plus an additional +3 for REFPIX as we are using RGB input only.
Rob Clarke7792ce2013-01-08 19:21:02 -06001229 */
Sebastian Hesselbarth088d61d2013-08-14 21:43:31 +02001230 n_pix = mode->htotal;
1231 n_line = mode->vtotal;
Rob Clarke7792ce2013-01-08 19:21:02 -06001232
Sebastian Hesselbarth088d61d2013-08-14 21:43:31 +02001233 hs_pix_e = mode->hsync_end - mode->hdisplay;
1234 hs_pix_s = mode->hsync_start - mode->hdisplay;
1235 de_pix_e = mode->htotal;
1236 de_pix_s = mode->htotal - mode->hdisplay;
1237 ref_pix = 3 + hs_pix_s;
1238
Sebastian Hesselbarth179f1aa2013-08-14 21:43:32 +02001239 /*
1240 * Attached LCD controllers may generate broken sync. Allow
1241 * those to adjust the position of the rising VS edge by adding
1242 * HSKEW to ref_pix.
1243 */
1244 if (adjusted_mode->flags & DRM_MODE_FLAG_HSKEW)
1245 ref_pix += adjusted_mode->hskew;
1246
Sebastian Hesselbarth088d61d2013-08-14 21:43:31 +02001247 if ((mode->flags & DRM_MODE_FLAG_INTERLACE) == 0) {
1248 ref_line = 1 + mode->vsync_start - mode->vdisplay;
1249 vwin1_line_s = mode->vtotal - mode->vdisplay - 1;
1250 vwin1_line_e = vwin1_line_s + mode->vdisplay;
1251 vs1_pix_s = vs1_pix_e = hs_pix_s;
1252 vs1_line_s = mode->vsync_start - mode->vdisplay;
1253 vs1_line_e = vs1_line_s +
1254 mode->vsync_end - mode->vsync_start;
1255 vwin2_line_s = vwin2_line_e = 0;
1256 vs2_pix_s = vs2_pix_e = 0;
1257 vs2_line_s = vs2_line_e = 0;
1258 } else {
1259 ref_line = 1 + (mode->vsync_start - mode->vdisplay)/2;
1260 vwin1_line_s = (mode->vtotal - mode->vdisplay)/2;
1261 vwin1_line_e = vwin1_line_s + mode->vdisplay/2;
1262 vs1_pix_s = vs1_pix_e = hs_pix_s;
1263 vs1_line_s = (mode->vsync_start - mode->vdisplay)/2;
1264 vs1_line_e = vs1_line_s +
1265 (mode->vsync_end - mode->vsync_start)/2;
1266 vwin2_line_s = vwin1_line_s + mode->vtotal/2;
1267 vwin2_line_e = vwin2_line_s + mode->vdisplay/2;
1268 vs2_pix_s = vs2_pix_e = hs_pix_s + mode->htotal/2;
1269 vs2_line_s = vs1_line_s + mode->vtotal/2 ;
1270 vs2_line_e = vs2_line_s +
1271 (mode->vsync_end - mode->vsync_start)/2;
1272 }
Rob Clarke7792ce2013-01-08 19:21:02 -06001273
1274 div = 148500 / mode->clock;
Jean-Francois Moine3ae471f2014-01-25 18:14:36 +01001275 if (div != 0) {
1276 div--;
1277 if (div > 3)
1278 div = 3;
1279 }
Rob Clarke7792ce2013-01-08 19:21:02 -06001280
Russell King2cae8e02016-11-02 21:38:34 +00001281 mutex_lock(&priv->audio_mutex);
1282
Rob Clarke7792ce2013-01-08 19:21:02 -06001283 /* mute the audio FIFO: */
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +01001284 reg_set(priv, REG_AIP_CNTRL_0, AIP_CNTRL_0_RST_FIFO);
Rob Clarke7792ce2013-01-08 19:21:02 -06001285
1286 /* set HDMI HDCP mode off: */
Jean-Francois Moine81b53a12014-01-25 18:14:42 +01001287 reg_write(priv, REG_TBG_CNTRL_1, TBG_CNTRL_1_DWIN_DIS);
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +01001288 reg_clear(priv, REG_TX33, TX33_HDMI);
1289 reg_write(priv, REG_ENC_CNTRL, ENC_CNTRL_CTL_CODE(0));
Rob Clarke7792ce2013-01-08 19:21:02 -06001290
Rob Clarke7792ce2013-01-08 19:21:02 -06001291 /* no pre-filter or interpolator: */
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +01001292 reg_write(priv, REG_HVF_CNTRL_0, HVF_CNTRL_0_PREFIL(0) |
Rob Clarke7792ce2013-01-08 19:21:02 -06001293 HVF_CNTRL_0_INTPOL(0));
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +01001294 reg_write(priv, REG_VIP_CNTRL_5, VIP_CNTRL_5_SP_CNT(0));
1295 reg_write(priv, REG_VIP_CNTRL_4, VIP_CNTRL_4_BLANKIT(0) |
Rob Clarke7792ce2013-01-08 19:21:02 -06001296 VIP_CNTRL_4_BLC(0));
Rob Clarke7792ce2013-01-08 19:21:02 -06001297
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +01001298 reg_clear(priv, REG_PLL_SERIAL_1, PLL_SERIAL_1_SRL_MAN_IZ);
Jean-Francois Moinea8b517e2014-01-25 18:14:39 +01001299 reg_clear(priv, REG_PLL_SERIAL_3, PLL_SERIAL_3_SRL_CCIR |
1300 PLL_SERIAL_3_SRL_DE);
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +01001301 reg_write(priv, REG_SERIALIZER, 0);
1302 reg_write(priv, REG_HVF_CNTRL_1, HVF_CNTRL_1_VQR(0));
Rob Clarke7792ce2013-01-08 19:21:02 -06001303
1304 /* TODO enable pixel repeat for pixel rates less than 25Msamp/s */
1305 rep = 0;
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +01001306 reg_write(priv, REG_RPT_CNTRL, 0);
1307 reg_write(priv, REG_SEL_CLK, SEL_CLK_SEL_VRF_CLK(0) |
Rob Clarke7792ce2013-01-08 19:21:02 -06001308 SEL_CLK_SEL_CLK1 | SEL_CLK_ENA_SC_CLK);
1309
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +01001310 reg_write(priv, REG_PLL_SERIAL_2, PLL_SERIAL_2_SRL_NOSC(div) |
Rob Clarke7792ce2013-01-08 19:21:02 -06001311 PLL_SERIAL_2_SRL_PR(rep));
1312
Rob Clarke7792ce2013-01-08 19:21:02 -06001313 /* set color matrix bypass flag: */
Jean-Francois Moine81b53a12014-01-25 18:14:42 +01001314 reg_write(priv, REG_MAT_CONTRL, MAT_CONTRL_MAT_BP |
1315 MAT_CONTRL_MAT_SC(1));
Rob Clarke7792ce2013-01-08 19:21:02 -06001316
1317 /* set BIAS tmds value: */
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +01001318 reg_write(priv, REG_ANA_GENERAL, 0x09);
Rob Clarke7792ce2013-01-08 19:21:02 -06001319
Sebastian Hesselbarth088d61d2013-08-14 21:43:31 +02001320 /*
1321 * Sync on rising HSYNC/VSYNC
1322 */
Jean-Francois Moine81b53a12014-01-25 18:14:42 +01001323 reg = VIP_CNTRL_3_SYNC_HS;
Sebastian Hesselbarth088d61d2013-08-14 21:43:31 +02001324
1325 /*
1326 * TDA19988 requires high-active sync at input stage,
1327 * so invert low-active sync provided by master encoder here
1328 */
1329 if (mode->flags & DRM_MODE_FLAG_NHSYNC)
Jean-Francois Moine81b53a12014-01-25 18:14:42 +01001330 reg |= VIP_CNTRL_3_H_TGL;
Rob Clarke7792ce2013-01-08 19:21:02 -06001331 if (mode->flags & DRM_MODE_FLAG_NVSYNC)
Jean-Francois Moine81b53a12014-01-25 18:14:42 +01001332 reg |= VIP_CNTRL_3_V_TGL;
1333 reg_write(priv, REG_VIP_CNTRL_3, reg);
Rob Clarke7792ce2013-01-08 19:21:02 -06001334
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +01001335 reg_write(priv, REG_VIDFORMAT, 0x00);
1336 reg_write16(priv, REG_REFPIX_MSB, ref_pix);
1337 reg_write16(priv, REG_REFLINE_MSB, ref_line);
1338 reg_write16(priv, REG_NPIX_MSB, n_pix);
1339 reg_write16(priv, REG_NLINE_MSB, n_line);
1340 reg_write16(priv, REG_VS_LINE_STRT_1_MSB, vs1_line_s);
1341 reg_write16(priv, REG_VS_PIX_STRT_1_MSB, vs1_pix_s);
1342 reg_write16(priv, REG_VS_LINE_END_1_MSB, vs1_line_e);
1343 reg_write16(priv, REG_VS_PIX_END_1_MSB, vs1_pix_e);
1344 reg_write16(priv, REG_VS_LINE_STRT_2_MSB, vs2_line_s);
1345 reg_write16(priv, REG_VS_PIX_STRT_2_MSB, vs2_pix_s);
1346 reg_write16(priv, REG_VS_LINE_END_2_MSB, vs2_line_e);
1347 reg_write16(priv, REG_VS_PIX_END_2_MSB, vs2_pix_e);
1348 reg_write16(priv, REG_HS_PIX_START_MSB, hs_pix_s);
1349 reg_write16(priv, REG_HS_PIX_STOP_MSB, hs_pix_e);
1350 reg_write16(priv, REG_VWIN_START_1_MSB, vwin1_line_s);
1351 reg_write16(priv, REG_VWIN_END_1_MSB, vwin1_line_e);
1352 reg_write16(priv, REG_VWIN_START_2_MSB, vwin2_line_s);
1353 reg_write16(priv, REG_VWIN_END_2_MSB, vwin2_line_e);
1354 reg_write16(priv, REG_DE_START_MSB, de_pix_s);
1355 reg_write16(priv, REG_DE_STOP_MSB, de_pix_e);
Rob Clarke7792ce2013-01-08 19:21:02 -06001356
1357 if (priv->rev == TDA19988) {
1358 /* let incoming pixels fill the active space (if any) */
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +01001359 reg_write(priv, REG_ENABLE_SPACE, 0x00);
Rob Clarke7792ce2013-01-08 19:21:02 -06001360 }
1361
Jean-Francois Moine81b53a12014-01-25 18:14:42 +01001362 /*
1363 * Always generate sync polarity relative to input sync and
1364 * revert input stage toggled sync at output stage
1365 */
1366 reg = TBG_CNTRL_1_DWIN_DIS | TBG_CNTRL_1_TGL_EN;
1367 if (mode->flags & DRM_MODE_FLAG_NHSYNC)
1368 reg |= TBG_CNTRL_1_H_TGL;
1369 if (mode->flags & DRM_MODE_FLAG_NVSYNC)
1370 reg |= TBG_CNTRL_1_V_TGL;
1371 reg_write(priv, REG_TBG_CNTRL_1, reg);
1372
Rob Clarke7792ce2013-01-08 19:21:02 -06001373 /* must be last register set: */
Jean-Francois Moine81b53a12014-01-25 18:14:42 +01001374 reg_write(priv, REG_TBG_CNTRL_0, 0);
Russell Kingc4c11dd2013-08-14 21:43:30 +02001375
Russell King319e6582016-10-23 11:32:43 +01001376 priv->tmds_clock = adjusted_mode->clock;
1377
Russell King896a4132016-10-23 11:32:42 +01001378 /* CEA-861B section 6 says that:
1379 * CEA version 1 (CEA-861) has no support for infoframes.
1380 * CEA version 2 (CEA-861A) supports version 1 AVI infoframes,
1381 * and optional basic audio.
1382 * CEA version 3 (CEA-861B) supports version 1 and 2 AVI infoframes,
1383 * and optional digital audio, with audio infoframes.
1384 *
1385 * Since we only support generation of version 2 AVI infoframes,
1386 * ignore CEA version 2 and below (iow, behave as if we're a
1387 * CEA-861 source.)
1388 */
1389 priv->supports_infoframes = priv->connector.display_info.cea_rev >= 3;
1390
1391 if (priv->supports_infoframes) {
Russell Kingc4c11dd2013-08-14 21:43:30 +02001392 /* We need to turn HDMI HDCP stuff on to get audio through */
Jean-Francois Moine81b53a12014-01-25 18:14:42 +01001393 reg &= ~TBG_CNTRL_1_DWIN_DIS;
1394 reg_write(priv, REG_TBG_CNTRL_1, reg);
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +01001395 reg_write(priv, REG_ENC_CNTRL, ENC_CNTRL_CTL_CODE(1));
1396 reg_set(priv, REG_TX33, TX33_HDMI);
Russell Kingc4c11dd2013-08-14 21:43:30 +02001397
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +01001398 tda998x_write_avi(priv, adjusted_mode);
Russell Kingc4c11dd2013-08-14 21:43:30 +02001399
Russell King8f3f21f2016-11-02 21:15:04 +00001400 if (priv->audio_params.format != AFMT_UNUSED &&
1401 priv->sink_has_audio)
Russell King319e6582016-10-23 11:32:43 +01001402 tda998x_configure_audio(priv, &priv->audio_params);
Russell Kingc4c11dd2013-08-14 21:43:30 +02001403 }
Russell King319e6582016-10-23 11:32:43 +01001404
1405 mutex_unlock(&priv->audio_mutex);
Rob Clarke7792ce2013-01-08 19:21:02 -06001406}
1407
Russell Kinga8f4d4d62014-02-07 19:17:21 +00001408static void tda998x_destroy(struct tda998x_priv *priv)
Rob Clarke7792ce2013-01-08 19:21:02 -06001409{
Jean-Francois Moine12473b72014-01-25 18:14:38 +01001410 /* disable all IRQs and free the IRQ handler */
1411 cec_write(priv, REG_CEC_RXSHPDINTENA, 0);
1412 reg_clear(priv, REG_INT_FLAGS_2, INT_FLAGS_2_EDID_BLK_RD);
Russell King0fc6f442015-06-06 21:41:09 +01001413
Jyri Sarha7e567622016-08-09 22:00:05 +03001414 if (priv->audio_pdev)
1415 platform_device_unregister(priv->audio_pdev);
1416
Russell King0fc6f442015-06-06 21:41:09 +01001417 if (priv->hdmi->irq)
Jean-Francois Moine12473b72014-01-25 18:14:38 +01001418 free_irq(priv->hdmi->irq, priv);
Russell King0fc6f442015-06-06 21:41:09 +01001419
1420 del_timer_sync(&priv->edid_delay_timer);
1421 cancel_work_sync(&priv->detect_work);
Jean-Francois Moine12473b72014-01-25 18:14:38 +01001422
Jean-Francois Moine89fc8682014-07-07 17:59:51 +02001423 i2c_unregister_device(priv->cec);
Russell Kinga8f4d4d62014-02-07 19:17:21 +00001424}
1425
Rob Clarke7792ce2013-01-08 19:21:02 -06001426/* I2C driver functions */
1427
Jyri Sarha7e567622016-08-09 22:00:05 +03001428static int tda998x_get_audio_ports(struct tda998x_priv *priv,
1429 struct device_node *np)
1430{
1431 const u32 *port_data;
1432 u32 size;
1433 int i;
1434
1435 port_data = of_get_property(np, "audio-ports", &size);
1436 if (!port_data)
1437 return 0;
1438
1439 size /= sizeof(u32);
1440 if (size > 2 * ARRAY_SIZE(priv->audio_port) || size % 2 != 0) {
1441 dev_err(&priv->hdmi->dev,
1442 "Bad number of elements in audio-ports dt-property\n");
1443 return -EINVAL;
1444 }
1445
1446 size /= 2;
1447
1448 for (i = 0; i < size; i++) {
1449 u8 afmt = be32_to_cpup(&port_data[2*i]);
1450 u8 ena_ap = be32_to_cpup(&port_data[2*i+1]);
1451
1452 if (afmt != AFMT_SPDIF && afmt != AFMT_I2S) {
1453 dev_err(&priv->hdmi->dev,
1454 "Bad audio format %u\n", afmt);
1455 return -EINVAL;
1456 }
1457
1458 priv->audio_port[i].format = afmt;
1459 priv->audio_port[i].config = ena_ap;
1460 }
1461
1462 if (priv->audio_port[0].format == priv->audio_port[1].format) {
1463 dev_err(&priv->hdmi->dev,
1464 "There can only be on I2S port and one SPDIF port\n");
1465 return -EINVAL;
1466 }
1467 return 0;
1468}
1469
Russell Kinga8f4d4d62014-02-07 19:17:21 +00001470static int tda998x_create(struct i2c_client *client, struct tda998x_priv *priv)
Rob Clarke7792ce2013-01-08 19:21:02 -06001471{
Jean-Francois Moine0d44ea12014-01-25 18:14:41 +01001472 struct device_node *np = client->dev.of_node;
1473 u32 video;
Russell Kingfb7544d2014-02-02 16:18:24 +00001474 int rev_lo, rev_hi, ret;
Andrew Jacksoncfe38752014-11-07 08:31:25 +00001475 unsigned short cec_addr;
Rob Clarke7792ce2013-01-08 19:21:02 -06001476
Russell Kingba300c12016-11-17 23:55:00 +00001477 mutex_init(&priv->audio_mutex); /* Protect access from audio thread */
1478
Russell King5e74c222013-08-14 21:43:29 +02001479 priv->vip_cntrl_0 = VIP_CNTRL_0_SWAP_A(2) | VIP_CNTRL_0_SWAP_B(3);
1480 priv->vip_cntrl_1 = VIP_CNTRL_1_SWAP_C(0) | VIP_CNTRL_1_SWAP_D(1);
1481 priv->vip_cntrl_2 = VIP_CNTRL_2_SWAP_E(4) | VIP_CNTRL_2_SWAP_F(5);
1482
Jean-Francois Moine2eb4c7b2014-01-25 18:14:45 +01001483 priv->current_page = 0xff;
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +01001484 priv->hdmi = client;
Andrew Jacksoncfe38752014-11-07 08:31:25 +00001485 /* CEC I2C address bound to TDA998x I2C addr by configuration pins */
1486 cec_addr = 0x34 + (client->addr & 0x03);
1487 priv->cec = i2c_new_dummy(client->adapter, cec_addr);
Russell Kinga8f4d4d62014-02-07 19:17:21 +00001488 if (!priv->cec)
Jean-Francois Moine6ae668c2014-01-25 18:14:43 +01001489 return -ENODEV;
Jean-Francois Moine12473b72014-01-25 18:14:38 +01001490
Rob Clarke7792ce2013-01-08 19:21:02 -06001491 priv->dpms = DRM_MODE_DPMS_OFF;
1492
Jean-Francois Moineed9a8422014-11-29 08:30:51 +01001493 mutex_init(&priv->mutex); /* protect the page access */
Russell King0fc6f442015-06-06 21:41:09 +01001494 init_waitqueue_head(&priv->edid_delay_waitq);
1495 setup_timer(&priv->edid_delay_timer, tda998x_edid_delay_done,
1496 (unsigned long)priv);
1497 INIT_WORK(&priv->detect_work, tda998x_detect_work);
Jean-Francois Moineed9a8422014-11-29 08:30:51 +01001498
Rob Clarke7792ce2013-01-08 19:21:02 -06001499 /* wake up the device: */
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +01001500 cec_write(priv, REG_CEC_ENAMODS,
Rob Clarke7792ce2013-01-08 19:21:02 -06001501 CEC_ENAMODS_EN_RXSENS | CEC_ENAMODS_EN_HDMI);
1502
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +01001503 tda998x_reset(priv);
Rob Clarke7792ce2013-01-08 19:21:02 -06001504
1505 /* read version: */
Russell Kingfb7544d2014-02-02 16:18:24 +00001506 rev_lo = reg_read(priv, REG_VERSION_LSB);
1507 rev_hi = reg_read(priv, REG_VERSION_MSB);
1508 if (rev_lo < 0 || rev_hi < 0) {
1509 ret = rev_lo < 0 ? rev_lo : rev_hi;
Jean-Francois Moine7d2eadc2014-01-25 18:14:45 +01001510 goto fail;
Russell Kingfb7544d2014-02-02 16:18:24 +00001511 }
1512
1513 priv->rev = rev_lo | rev_hi << 8;
Rob Clarke7792ce2013-01-08 19:21:02 -06001514
1515 /* mask off feature bits: */
1516 priv->rev &= ~0x30; /* not-hdcp and not-scalar bit */
1517
1518 switch (priv->rev) {
Jean-Francois Moineb728fab2014-01-25 18:14:46 +01001519 case TDA9989N2:
1520 dev_info(&client->dev, "found TDA9989 n2");
1521 break;
1522 case TDA19989:
1523 dev_info(&client->dev, "found TDA19989");
1524 break;
1525 case TDA19989N2:
1526 dev_info(&client->dev, "found TDA19989 n2");
1527 break;
1528 case TDA19988:
1529 dev_info(&client->dev, "found TDA19988");
1530 break;
Rob Clarke7792ce2013-01-08 19:21:02 -06001531 default:
Jean-Francois Moineb728fab2014-01-25 18:14:46 +01001532 dev_err(&client->dev, "found unsupported device: %04x\n",
1533 priv->rev);
Rob Clarke7792ce2013-01-08 19:21:02 -06001534 goto fail;
1535 }
1536
1537 /* after reset, enable DDC: */
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +01001538 reg_write(priv, REG_DDC_DISABLE, 0x00);
Rob Clarke7792ce2013-01-08 19:21:02 -06001539
1540 /* set clock on DDC channel: */
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +01001541 reg_write(priv, REG_TX3, 39);
Rob Clarke7792ce2013-01-08 19:21:02 -06001542
1543 /* if necessary, disable multi-master: */
1544 if (priv->rev == TDA19989)
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +01001545 reg_set(priv, REG_I2C_MASTER, I2C_MASTER_DIS_MM);
Rob Clarke7792ce2013-01-08 19:21:02 -06001546
Jean-Francois Moine2f7f7302014-01-25 18:14:47 +01001547 cec_write(priv, REG_CEC_FRO_IM_CLK_CTRL,
Rob Clarke7792ce2013-01-08 19:21:02 -06001548 CEC_FRO_IM_CLK_CTRL_GHOST_DIS | CEC_FRO_IM_CLK_CTRL_IMCLK_SEL);
1549
Jean-Francois Moine12473b72014-01-25 18:14:38 +01001550 /* initialize the optional IRQ */
1551 if (client->irq) {
1552 int irqf_trigger;
1553
Jean-Francois Moine6833d262014-11-29 08:57:15 +01001554 /* init read EDID waitqueue and HDP work */
Jean-Francois Moine12473b72014-01-25 18:14:38 +01001555 init_waitqueue_head(&priv->wq_edid);
1556
1557 /* clear pending interrupts */
1558 reg_read(priv, REG_INT_FLAGS_0);
1559 reg_read(priv, REG_INT_FLAGS_1);
1560 reg_read(priv, REG_INT_FLAGS_2);
1561
1562 irqf_trigger =
1563 irqd_get_trigger_type(irq_get_irq_data(client->irq));
1564 ret = request_threaded_irq(client->irq, NULL,
1565 tda998x_irq_thread,
1566 irqf_trigger | IRQF_ONESHOT,
1567 "tda998x", priv);
1568 if (ret) {
1569 dev_err(&client->dev,
1570 "failed to request IRQ#%u: %d\n",
1571 client->irq, ret);
1572 goto fail;
1573 }
1574
1575 /* enable HPD irq */
1576 cec_write(priv, REG_CEC_RXSHPDINTENA, CEC_RXSHPDLEV_HPD);
1577 }
1578
Jean-Francois Moinee4782622014-01-25 18:14:38 +01001579 /* enable EDID read irq: */
1580 reg_set(priv, REG_INT_FLAGS_2, INT_FLAGS_2_EDID_BLK_RD);
1581
Jean-Francois Moine0d44ea12014-01-25 18:14:41 +01001582 if (!np)
1583 return 0; /* non-DT */
1584
Jyri Sarha7e567622016-08-09 22:00:05 +03001585 /* get the device tree parameters */
Jean-Francois Moine0d44ea12014-01-25 18:14:41 +01001586 ret = of_property_read_u32(np, "video-ports", &video);
1587 if (ret == 0) {
1588 priv->vip_cntrl_0 = video >> 16;
1589 priv->vip_cntrl_1 = video >> 8;
1590 priv->vip_cntrl_2 = video;
1591 }
1592
Jyri Sarha7e567622016-08-09 22:00:05 +03001593 ret = tda998x_get_audio_ports(priv, np);
1594 if (ret)
1595 goto fail;
1596
1597 if (priv->audio_port[0].format != AFMT_UNUSED)
1598 tda998x_audio_codec_init(priv, &client->dev);
1599
1600 return 0;
Rob Clarke7792ce2013-01-08 19:21:02 -06001601fail:
1602 /* if encoder_init fails, the encoder slave is never registered,
1603 * so cleanup here:
1604 */
1605 if (priv->cec)
1606 i2c_unregister_device(priv->cec);
Rob Clarke7792ce2013-01-08 19:21:02 -06001607 return -ENXIO;
1608}
1609
Russell Kingc707c362014-02-07 19:49:44 +00001610static void tda998x_encoder_prepare(struct drm_encoder *encoder)
1611{
Russell King9525c4d2015-08-14 11:28:53 +01001612 tda998x_encoder_dpms(encoder, DRM_MODE_DPMS_OFF);
Russell Kingc707c362014-02-07 19:49:44 +00001613}
1614
1615static void tda998x_encoder_commit(struct drm_encoder *encoder)
1616{
Russell King9525c4d2015-08-14 11:28:53 +01001617 tda998x_encoder_dpms(encoder, DRM_MODE_DPMS_ON);
Russell Kingc707c362014-02-07 19:49:44 +00001618}
1619
1620static const struct drm_encoder_helper_funcs tda998x_encoder_helper_funcs = {
Russell King9525c4d2015-08-14 11:28:53 +01001621 .dpms = tda998x_encoder_dpms,
Russell Kingc707c362014-02-07 19:49:44 +00001622 .prepare = tda998x_encoder_prepare,
1623 .commit = tda998x_encoder_commit,
Russell King9525c4d2015-08-14 11:28:53 +01001624 .mode_set = tda998x_encoder_mode_set,
Russell Kingc707c362014-02-07 19:49:44 +00001625};
1626
1627static void tda998x_encoder_destroy(struct drm_encoder *encoder)
1628{
Russell Kinga3584f62015-08-14 11:22:50 +01001629 struct tda998x_priv *priv = enc_to_tda998x_priv(encoder);
Russell Kingc707c362014-02-07 19:49:44 +00001630
Russell Kinga3584f62015-08-14 11:22:50 +01001631 tda998x_destroy(priv);
Russell Kingc707c362014-02-07 19:49:44 +00001632 drm_encoder_cleanup(encoder);
1633}
1634
1635static const struct drm_encoder_funcs tda998x_encoder_funcs = {
1636 .destroy = tda998x_encoder_destroy,
1637};
1638
Russell King94579272016-10-23 11:25:02 +01001639static void tda998x_set_config(struct tda998x_priv *priv,
1640 const struct tda998x_encoder_params *p)
1641{
1642 priv->vip_cntrl_0 = VIP_CNTRL_0_SWAP_A(p->swap_a) |
1643 (p->mirr_a ? VIP_CNTRL_0_MIRR_A : 0) |
1644 VIP_CNTRL_0_SWAP_B(p->swap_b) |
1645 (p->mirr_b ? VIP_CNTRL_0_MIRR_B : 0);
1646 priv->vip_cntrl_1 = VIP_CNTRL_1_SWAP_C(p->swap_c) |
1647 (p->mirr_c ? VIP_CNTRL_1_MIRR_C : 0) |
1648 VIP_CNTRL_1_SWAP_D(p->swap_d) |
1649 (p->mirr_d ? VIP_CNTRL_1_MIRR_D : 0);
1650 priv->vip_cntrl_2 = VIP_CNTRL_2_SWAP_E(p->swap_e) |
1651 (p->mirr_e ? VIP_CNTRL_2_MIRR_E : 0) |
1652 VIP_CNTRL_2_SWAP_F(p->swap_f) |
1653 (p->mirr_f ? VIP_CNTRL_2_MIRR_F : 0);
1654
1655 priv->audio_params = p->audio_params;
1656}
1657
Russell Kingc707c362014-02-07 19:49:44 +00001658static int tda998x_bind(struct device *dev, struct device *master, void *data)
1659{
1660 struct tda998x_encoder_params *params = dev->platform_data;
1661 struct i2c_client *client = to_i2c_client(dev);
1662 struct drm_device *drm = data;
Russell Kinga3584f62015-08-14 11:22:50 +01001663 struct tda998x_priv *priv;
Russell Kinge66e03a2015-06-06 21:41:10 +01001664 u32 crtcs = 0;
Russell Kingc707c362014-02-07 19:49:44 +00001665 int ret;
1666
1667 priv = devm_kzalloc(dev, sizeof(*priv), GFP_KERNEL);
1668 if (!priv)
1669 return -ENOMEM;
1670
1671 dev_set_drvdata(dev, priv);
1672
Russell King5dbcf312014-06-15 11:11:10 +01001673 if (dev->of_node)
1674 crtcs = drm_of_find_possible_crtcs(drm, dev->of_node);
1675
1676 /* If no CRTCs were found, fall back to our old behaviour */
1677 if (crtcs == 0) {
1678 dev_warn(dev, "Falling back to first CRTC\n");
1679 crtcs = 1 << 0;
1680 }
1681
Russell Kinga3584f62015-08-14 11:22:50 +01001682 priv->encoder.possible_crtcs = crtcs;
Russell Kingc707c362014-02-07 19:49:44 +00001683
Russell Kinga3584f62015-08-14 11:22:50 +01001684 ret = tda998x_create(client, priv);
Russell Kingc707c362014-02-07 19:49:44 +00001685 if (ret)
1686 return ret;
1687
1688 if (!dev->of_node && params)
Russell King94579272016-10-23 11:25:02 +01001689 tda998x_set_config(priv, params);
Russell Kingc707c362014-02-07 19:49:44 +00001690
Russell Kinga3584f62015-08-14 11:22:50 +01001691 drm_encoder_helper_add(&priv->encoder, &tda998x_encoder_helper_funcs);
1692 ret = drm_encoder_init(drm, &priv->encoder, &tda998x_encoder_funcs,
Ville Syrjälä13a3d912015-12-09 16:20:18 +02001693 DRM_MODE_ENCODER_TMDS, NULL);
Russell Kingc707c362014-02-07 19:49:44 +00001694 if (ret)
1695 goto err_encoder;
1696
Russell Kinga2f75662016-10-23 11:30:56 +01001697 ret = tda998x_connector_init(priv, drm);
Russell Kingc707c362014-02-07 19:49:44 +00001698 if (ret)
1699 goto err_connector;
1700
Russell Kingc707c362014-02-07 19:49:44 +00001701 return 0;
1702
Russell Kingc707c362014-02-07 19:49:44 +00001703err_connector:
Russell Kinga3584f62015-08-14 11:22:50 +01001704 drm_encoder_cleanup(&priv->encoder);
Russell Kingc707c362014-02-07 19:49:44 +00001705err_encoder:
Russell Kinga3584f62015-08-14 11:22:50 +01001706 tda998x_destroy(priv);
Russell Kingc707c362014-02-07 19:49:44 +00001707 return ret;
1708}
1709
1710static void tda998x_unbind(struct device *dev, struct device *master,
1711 void *data)
1712{
Russell Kinga3584f62015-08-14 11:22:50 +01001713 struct tda998x_priv *priv = dev_get_drvdata(dev);
Russell Kingc707c362014-02-07 19:49:44 +00001714
Russell Kinga3584f62015-08-14 11:22:50 +01001715 drm_connector_cleanup(&priv->connector);
1716 drm_encoder_cleanup(&priv->encoder);
1717 tda998x_destroy(priv);
Russell Kingc707c362014-02-07 19:49:44 +00001718}
1719
1720static const struct component_ops tda998x_ops = {
1721 .bind = tda998x_bind,
1722 .unbind = tda998x_unbind,
1723};
1724
1725static int
1726tda998x_probe(struct i2c_client *client, const struct i2c_device_id *id)
1727{
1728 return component_add(&client->dev, &tda998x_ops);
1729}
1730
1731static int tda998x_remove(struct i2c_client *client)
1732{
1733 component_del(&client->dev, &tda998x_ops);
1734 return 0;
1735}
1736
Jean-Francois Moine0d44ea12014-01-25 18:14:41 +01001737#ifdef CONFIG_OF
1738static const struct of_device_id tda998x_dt_ids[] = {
1739 { .compatible = "nxp,tda998x", },
1740 { }
1741};
1742MODULE_DEVICE_TABLE(of, tda998x_dt_ids);
1743#endif
1744
Rob Clarke7792ce2013-01-08 19:21:02 -06001745static struct i2c_device_id tda998x_ids[] = {
1746 { "tda998x", 0 },
1747 { }
1748};
1749MODULE_DEVICE_TABLE(i2c, tda998x_ids);
1750
Russell King3d58e312015-08-14 11:13:50 +01001751static struct i2c_driver tda998x_driver = {
1752 .probe = tda998x_probe,
1753 .remove = tda998x_remove,
1754 .driver = {
1755 .name = "tda998x",
1756 .of_match_table = of_match_ptr(tda998x_dt_ids),
Rob Clarke7792ce2013-01-08 19:21:02 -06001757 },
Russell King3d58e312015-08-14 11:13:50 +01001758 .id_table = tda998x_ids,
Rob Clarke7792ce2013-01-08 19:21:02 -06001759};
1760
Russell King3d58e312015-08-14 11:13:50 +01001761module_i2c_driver(tda998x_driver);
Rob Clarke7792ce2013-01-08 19:21:02 -06001762
1763MODULE_AUTHOR("Rob Clark <robdclark@gmail.com");
1764MODULE_DESCRIPTION("NXP Semiconductors TDA998X HDMI Encoder");
1765MODULE_LICENSE("GPL");