1 1.13 wiz /* $SourceForge: bktr_reg.h,v 1.3 2003/03/11 23:11:27 thomasklausner Exp $ */ 2 1.1 wiz 3 1.22 chs /* $NetBSD: bktr_reg.h,v 1.22 2012/10/27 17:18:36 chs Exp $ */ 4 1.1 wiz /* 5 1.13 wiz * $FreeBSD: src/sys/dev/bktr/bktr_reg.h,v 1.42 2000/10/31 13:09:56 roger Exp$ 6 1.1 wiz * 7 1.1 wiz * Copyright (c) 1999 Roger Hardiman 8 1.1 wiz * Copyright (c) 1998 Amancio Hasty 9 1.1 wiz * Copyright (c) 1995 Mark Tinguely and Jim Lowe 10 1.1 wiz * All rights reserved. 11 1.1 wiz * 12 1.1 wiz * Redistribution and use in source and binary forms, with or without 13 1.1 wiz * modification, are permitted provided that the following conditions 14 1.1 wiz * are met: 15 1.1 wiz * 1. Redistributions of source code must retain the above copyright 16 1.1 wiz * notice, this list of conditions and the following disclaimer. 17 1.1 wiz * 2. Redistributions in binary form must reproduce the above copyright 18 1.1 wiz * notice, this list of conditions and the following disclaimer in the 19 1.1 wiz * documentation and/or other materials provided with the distribution. 20 1.1 wiz * 3. All advertising materials mentioning features or use of this software 21 1.1 wiz * must display the following acknowledgement: 22 1.1 wiz * This product includes software developed by Mark Tinguely and Jim Lowe 23 1.13 wiz * 4. The name of the author may not be used to endorse or promote products 24 1.1 wiz * derived from this software without specific prior written permission. 25 1.1 wiz * 26 1.1 wiz * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 27 1.1 wiz * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED 28 1.1 wiz * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE 29 1.1 wiz * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, 30 1.1 wiz * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES 31 1.1 wiz * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR 32 1.1 wiz * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 33 1.1 wiz * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, 34 1.1 wiz * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN 35 1.1 wiz * ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE 36 1.1 wiz * POSSIBILITY OF SUCH DAMAGE. 37 1.1 wiz * 38 1.1 wiz */ 39 1.1 wiz 40 1.1 wiz 41 1.20 cegger #include <sys/bus.h> 42 1.20 cegger #include <sys/device.h> /* device_t */ 43 1.1 wiz #include <sys/select.h> /* struct selinfo */ 44 1.7 jdolecek #include <sys/reboot.h> /* AB_* for bootverbose */ 45 1.1 wiz 46 1.5 wiz /* 47 1.5 wiz * The kernel options for the driver now all begin with BKTR. 48 1.5 wiz * Support the older kernel options on FreeBSD and OpenBSD. 49 1.5 wiz * 50 1.5 wiz */ 51 1.5 wiz 52 1.5 wiz 53 1.1 wiz #ifndef PCI_LATENCY_TIMER 54 1.1 wiz #define PCI_LATENCY_TIMER 0x0c /* pci timer register */ 55 1.1 wiz #endif 56 1.1 wiz 57 1.1 wiz /* 58 1.1 wiz * Definitions for the Brooktree 848/878 video capture to pci interface. 59 1.1 wiz */ 60 1.1 wiz 61 1.1 wiz #define BROOKTREE_848 1 62 1.1 wiz #define BROOKTREE_848A 2 63 1.1 wiz #define BROOKTREE_849A 3 64 1.1 wiz #define BROOKTREE_878 4 65 1.1 wiz #define BROOKTREE_879 5 66 1.1 wiz 67 1.1 wiz typedef volatile u_int bregister_t; 68 1.1 wiz /* 69 1.1 wiz * if other persuasion endian, then compiler will probably require that 70 1.1 wiz * these next 71 1.1 wiz * macros be reversed 72 1.1 wiz */ 73 1.1 wiz #define BTBYTE(what) bregister_t what:8; int :24 74 1.1 wiz #define BTWORD(what) bregister_t what:16; int: 16 75 1.1 wiz #define BTLONG(what) bregister_t what:32 76 1.1 wiz 77 1.1 wiz struct bt848_registers { 78 1.1 wiz BTBYTE (dstatus); /* 0, 1,2,3 */ 79 1.1 wiz #define BT848_DSTATUS_PRES (1<<7) 80 1.1 wiz #define BT848_DSTATUS_HLOC (1<<6) 81 1.1 wiz #define BT848_DSTATUS_FIELD (1<<5) 82 1.1 wiz #define BT848_DSTATUS_NUML (1<<4) 83 1.1 wiz #define BT848_DSTATUS_CSEL (1<<3) 84 1.1 wiz #define BT848_DSTATUS_PLOCK (1<<2) 85 1.1 wiz #define BT848_DSTATUS_LOF (1<<1) 86 1.1 wiz #define BT848_DSTATUS_COF (1<<0) 87 1.1 wiz BTBYTE (iform); /* 4, 5,6,7 */ 88 1.1 wiz #define BT848_IFORM_MUXSEL (0x3<<5) 89 1.1 wiz # define BT848_IFORM_M_MUX1 (0x03<<5) 90 1.1 wiz # define BT848_IFORM_M_MUX0 (0x02<<5) 91 1.1 wiz # define BT848_IFORM_M_MUX2 (0x01<<5) 92 1.1 wiz # define BT848_IFORM_M_MUX3 (0x0) 93 1.1 wiz # define BT848_IFORM_M_RSVD (0x00<<5) 94 1.1 wiz #define BT848_IFORM_XTSEL (0x3<<3) 95 1.1 wiz # define BT848_IFORM_X_AUTO (0x03<<3) 96 1.1 wiz # define BT848_IFORM_X_XT1 (0x02<<3) 97 1.1 wiz # define BT848_IFORM_X_XT0 (0x01<<3) 98 1.1 wiz # define BT848_IFORM_X_RSVD (0x00<<3) 99 1.1 wiz BTBYTE (tdec); /* 8, 9,a,b */ 100 1.1 wiz BTBYTE (e_crop); /* c, d,e,f */ 101 1.1 wiz BTBYTE (e_vdelay_lo); /* 10, 11,12,13 */ 102 1.1 wiz BTBYTE (e_vactive_lo); /* 14, 15,16,17 */ 103 1.1 wiz BTBYTE (e_delay_lo); /* 18, 19,1a,1b */ 104 1.1 wiz BTBYTE (e_hactive_lo); /* 1c, 1d,1e,1f */ 105 1.1 wiz BTBYTE (e_hscale_hi); /* 20, 21,22,23 */ 106 1.1 wiz BTBYTE (e_hscale_lo); /* 24, 25,26,27 */ 107 1.1 wiz BTBYTE (bright); /* 28, 29,2a,2b */ 108 1.1 wiz BTBYTE (e_control); /* 2c, 2d,2e,2f */ 109 1.1 wiz #define BT848_E_CONTROL_LNOTCH (1<<7) 110 1.1 wiz #define BT848_E_CONTROL_COMP (1<<6) 111 1.1 wiz #define BT848_E_CONTROL_LDEC (1<<5) 112 1.1 wiz #define BT848_E_CONTROL_CBSENSE (1<<4) 113 1.1 wiz #define BT848_E_CONTROL_RSVD (1<<3) 114 1.1 wiz #define BT848_E_CONTROL_CON_MSB (1<<2) 115 1.1 wiz #define BT848_E_CONTROL_SAT_U_MSB (1<<1) 116 1.1 wiz #define BT848_E_CONTROL_SAT_V_MSB (1<<0) 117 1.1 wiz BTBYTE (contrast_lo); /* 30, 31,32,33 */ 118 1.1 wiz BTBYTE (sat_u_lo); /* 34, 35,36,37 */ 119 1.1 wiz BTBYTE (sat_v_lo); /* 38, 39,3a,3b */ 120 1.1 wiz BTBYTE (hue); /* 3c, 3d,3e,3f */ 121 1.1 wiz BTBYTE (e_scloop); /* 40, 41,42,43 */ 122 1.1 wiz #define BT848_E_SCLOOP_RSVD1 (1<<7) 123 1.1 wiz #define BT848_E_SCLOOP_CAGC (1<<6) 124 1.1 wiz #define BT848_E_SCLOOP_CKILL (1<<5) 125 1.1 wiz #define BT848_E_SCLOOP_HFILT (0x3<<3) 126 1.1 wiz # define BT848_E_SCLOOP_HFILT_ICON (0x3<<3) 127 1.1 wiz # define BT848_E_SCLOOP_HFILT_QCIF (0x2<<3) 128 1.1 wiz # define BT848_E_SCLOOP_HFILT_CIF (0x1<<3) 129 1.1 wiz # define BT848_E_SCLOOP_HFILT_AUTO (0x0<<3) 130 1.1 wiz #define BT848_E_SCLOOP_RSVD0 (0x7<<0) 131 1.1 wiz int :32; /* 44, 45,46,47 */ 132 1.1 wiz BTBYTE (oform); /* 48, 49,4a,4b */ 133 1.1 wiz BTBYTE (e_vscale_hi); /* 4c, 4d,4e,4f */ 134 1.1 wiz BTBYTE (e_vscale_lo); /* 50, 51,52,53 */ 135 1.1 wiz BTBYTE (test); /* 54, 55,56,57 */ 136 1.1 wiz int :32; /* 58, 59,5a,5b */ 137 1.1 wiz int :32; /* 5c, 5d,5e,5f */ 138 1.1 wiz BTLONG (adelay); /* 60, 61,62,63 */ 139 1.1 wiz BTBYTE (bdelay); /* 64, 65,66,67 */ 140 1.1 wiz BTBYTE (adc); /* 68, 69,6a,6b */ 141 1.1 wiz #define BT848_ADC_RESERVED (0x80) /* required pattern */ 142 1.1 wiz #define BT848_ADC_SYNC_T (1<<5) 143 1.1 wiz #define BT848_ADC_AGC_EN (1<<4) 144 1.1 wiz #define BT848_ADC_CLK_SLEEP (1<<3) 145 1.1 wiz #define BT848_ADC_Y_SLEEP (1<<2) 146 1.1 wiz #define BT848_ADC_C_SLEEP (1<<1) 147 1.1 wiz #define BT848_ADC_CRUSH (1<<0) 148 1.1 wiz BTBYTE (e_vtc); /* 6c, 6d,6e,6f */ 149 1.1 wiz int :32; /* 70, 71,72,73 */ 150 1.1 wiz int :32; /* 74, 75,76,77 */ 151 1.1 wiz int :32; /* 78, 79,7a,7b */ 152 1.1 wiz BTLONG (sreset); /* 7c, 7d,7e,7f */ 153 1.1 wiz u_char filler1[0x84-0x80]; 154 1.1 wiz BTBYTE (tgctrl); /* 84, 85,86,87 */ 155 1.1 wiz #define BT848_TGCTRL_TGCKI (3<<3) 156 1.1 wiz #define BT848_TGCTRL_TGCKI_XTAL (0<<3) 157 1.1 wiz #define BT848_TGCTRL_TGCKI_PLL (1<<3) 158 1.1 wiz #define BT848_TGCTRL_TGCKI_GPCLK (2<<3) 159 1.1 wiz #define BT848_TGCTRL_TGCKI_GPCLK_I (3<<3) 160 1.1 wiz u_char filler[0x8c-0x88]; 161 1.1 wiz BTBYTE (o_crop); /* 8c, 8d,8e,8f */ 162 1.1 wiz BTBYTE (o_vdelay_lo); /* 90, 91,92,93 */ 163 1.1 wiz BTBYTE (o_vactive_lo); /* 94, 95,96,97 */ 164 1.1 wiz BTBYTE (o_delay_lo); /* 98, 99,9a,9b */ 165 1.1 wiz BTBYTE (o_hactive_lo); /* 9c, 9d,9e,9f */ 166 1.1 wiz BTBYTE (o_hscale_hi); /* a0, a1,a2,a3 */ 167 1.1 wiz BTBYTE (o_hscale_lo); /* a4, a5,a6,a7 */ 168 1.1 wiz int :32; /* a8, a9,aa,ab */ 169 1.1 wiz BTBYTE (o_control); /* ac, ad,ae,af */ 170 1.1 wiz #define BT848_O_CONTROL_LNOTCH (1<<7) 171 1.1 wiz #define BT848_O_CONTROL_COMP (1<<6) 172 1.1 wiz #define BT848_O_CONTROL_LDEC (1<<5) 173 1.1 wiz #define BT848_O_CONTROL_CBSENSE (1<<4) 174 1.1 wiz #define BT848_O_CONTROL_RSVD (1<<3) 175 1.1 wiz #define BT848_O_CONTROL_CON_MSB (1<<2) 176 1.1 wiz #define BT848_O_CONTROL_SAT_U_MSB (1<<1) 177 1.1 wiz #define BT848_O_CONTROL_SAT_V_MSB (1<<0) 178 1.1 wiz u_char fillter4[16]; 179 1.1 wiz BTBYTE (o_scloop); /* c0, c1,c2,c3 */ 180 1.1 wiz #define BT848_O_SCLOOP_RSVD1 (1<<7) 181 1.1 wiz #define BT848_O_SCLOOP_CAGC (1<<6) 182 1.1 wiz #define BT848_O_SCLOOP_CKILL (1<<5) 183 1.1 wiz #define BT848_O_SCLOOP_HFILT (0x3<<3) 184 1.1 wiz #define BT848_O_SCLOOP_HFILT_ICON (0x3<<3) 185 1.1 wiz #define BT848_O_SCLOOP_HFILT_QCIF (0x2<<3) 186 1.1 wiz #define BT848_O_SCLOOP_HFILT_CIF (0x1<<3) 187 1.1 wiz #define BT848_O_SCLOOP_HFILT_AUTO (0x0<<3) 188 1.1 wiz #define BT848_O_SCLOOP_RSVD0 (0x7<<0) 189 1.1 wiz int :32; /* c4, c5,c6,c7 */ 190 1.1 wiz int :32; /* c8, c9,ca,cb */ 191 1.1 wiz BTBYTE (o_vscale_hi); /* cc, cd,ce,cf */ 192 1.1 wiz BTBYTE (o_vscale_lo); /* d0, d1,d2,d3 */ 193 1.1 wiz BTBYTE (color_fmt); /* d4, d5,d6,d7 */ 194 1.1 wiz bregister_t color_ctl_swap :4; /* d8 */ 195 1.1 wiz #define BT848_COLOR_CTL_WSWAP_ODD (1<<3) 196 1.1 wiz #define BT848_COLOR_CTL_WSWAP_EVEN (1<<2) 197 1.1 wiz #define BT848_COLOR_CTL_BSWAP_ODD (1<<1) 198 1.1 wiz #define BT848_COLOR_CTL_BSWAP_EVEN (1<<0) 199 1.1 wiz bregister_t color_ctl_gamma :1; 200 1.1 wiz bregister_t color_ctl_rgb_ded :1; 201 1.1 wiz bregister_t color_ctl_color_bars :1; 202 1.1 wiz bregister_t color_ctl_ext_frmrate :1; 203 1.1 wiz #define BT848_COLOR_CTL_GAMMA (1<<4) 204 1.1 wiz #define BT848_COLOR_CTL_RGB_DED (1<<5) 205 1.1 wiz #define BT848_COLOR_CTL_COLOR_BARS (1<<6) 206 1.1 wiz #define BT848_COLOR_CTL_EXT_FRMRATE (1<<7) 207 1.1 wiz int :24; /* d9,da,db */ 208 1.1 wiz BTBYTE (cap_ctl); /* dc, dd,de,df */ 209 1.1 wiz #define BT848_CAP_CTL_DITH_FRAME (1<<4) 210 1.1 wiz #define BT848_CAP_CTL_VBI_ODD (1<<3) 211 1.1 wiz #define BT848_CAP_CTL_VBI_EVEN (1<<2) 212 1.1 wiz #define BT848_CAP_CTL_ODD (1<<1) 213 1.1 wiz #define BT848_CAP_CTL_EVEN (1<<0) 214 1.1 wiz BTBYTE (vbi_pack_size); /* e0, e1,e2,e3 */ 215 1.1 wiz BTBYTE (vbi_pack_del); /* e4, e5,e6,e7 */ 216 1.1 wiz int :32; /* e8, e9,ea,eb */ 217 1.1 wiz BTBYTE (o_vtc); /* ec, ed,ee,ef */ 218 1.1 wiz BTBYTE (pll_f_lo); /* f0, f1,f2,f3 */ 219 1.1 wiz BTBYTE (pll_f_hi); /* f4, f5,f6,f7 */ 220 1.1 wiz BTBYTE (pll_f_xci); /* f8, f9,fa,fb */ 221 1.1 wiz #define BT848_PLL_F_C (1<<6) 222 1.1 wiz #define BT848_PLL_F_X (1<<7) 223 1.1 wiz u_char filler2[0x100-0xfc]; 224 1.1 wiz BTLONG (int_stat); /* 100, 101,102,103 */ 225 1.1 wiz BTLONG (int_mask); /* 104, 105,106,107 */ 226 1.1 wiz #define BT848_INT_RISCS (0xf<<28) 227 1.1 wiz #define BT848_INT_RISC_EN (1<<27) 228 1.1 wiz #define BT848_INT_RACK (1<<25) 229 1.1 wiz #define BT848_INT_FIELD (1<<24) 230 1.1 wiz #define BT848_INT_MYSTERYBIT (1<<23) 231 1.1 wiz #define BT848_INT_SCERR (1<<19) 232 1.1 wiz #define BT848_INT_OCERR (1<<18) 233 1.1 wiz #define BT848_INT_PABORT (1<<17) 234 1.1 wiz #define BT848_INT_RIPERR (1<<16) 235 1.1 wiz #define BT848_INT_PPERR (1<<15) 236 1.1 wiz #define BT848_INT_FDSR (1<<14) 237 1.1 wiz #define BT848_INT_FTRGT (1<<13) 238 1.1 wiz #define BT848_INT_FBUS (1<<12) 239 1.1 wiz #define BT848_INT_RISCI (1<<11) 240 1.1 wiz #define BT848_INT_GPINT (1<<9) 241 1.1 wiz #define BT848_INT_I2CDONE (1<<8) 242 1.1 wiz #define BT848_INT_RSV1 (1<<7) 243 1.1 wiz #define BT848_INT_RSV0 (1<<6) 244 1.1 wiz #define BT848_INT_VPRES (1<<5) 245 1.1 wiz #define BT848_INT_HLOCK (1<<4) 246 1.1 wiz #define BT848_INT_OFLOW (1<<3) 247 1.1 wiz #define BT848_INT_HSYNC (1<<2) 248 1.1 wiz #define BT848_INT_VSYNC (1<<1) 249 1.1 wiz #define BT848_INT_FMTCHG (1<<0) 250 1.1 wiz int :32; /* 108, 109,10a,10b */ 251 1.1 wiz BTWORD (gpio_dma_ctl); /* 10c, 10d,10e,10f */ 252 1.1 wiz #define BT848_DMA_CTL_PL23TP4 (0<<6) /* planar1 trigger 4 */ 253 1.1 wiz #define BT848_DMA_CTL_PL23TP8 (1<<6) /* planar1 trigger 8 */ 254 1.1 wiz #define BT848_DMA_CTL_PL23TP16 (2<<6) /* planar1 trigger 16 */ 255 1.1 wiz #define BT848_DMA_CTL_PL23TP32 (3<<6) /* planar1 trigger 32 */ 256 1.1 wiz #define BT848_DMA_CTL_PL1TP4 (0<<4) /* planar1 trigger 4 */ 257 1.1 wiz #define BT848_DMA_CTL_PL1TP8 (1<<4) /* planar1 trigger 8 */ 258 1.1 wiz #define BT848_DMA_CTL_PL1TP16 (2<<4) /* planar1 trigger 16 */ 259 1.1 wiz #define BT848_DMA_CTL_PL1TP32 (3<<4) /* planar1 trigger 32 */ 260 1.1 wiz #define BT848_DMA_CTL_PKTP4 (0<<2) /* packed trigger 4 */ 261 1.1 wiz #define BT848_DMA_CTL_PKTP8 (1<<2) /* packed trigger 8 */ 262 1.1 wiz #define BT848_DMA_CTL_PKTP16 (2<<2) /* packed trigger 16 */ 263 1.1 wiz #define BT848_DMA_CTL_PKTP32 (3<<2) /* packed trigger 32 */ 264 1.1 wiz #define BT848_DMA_CTL_RISC_EN (1<<1) 265 1.1 wiz #define BT848_DMA_CTL_FIFO_EN (1<<0) 266 1.1 wiz BTLONG (i2c_data_ctl); /* 110, 111,112,113 */ 267 1.1 wiz #define BT848_DATA_CTL_I2CDIV (0xf<<4) 268 1.1 wiz #define BT848_DATA_CTL_I2CSYNC (1<<3) 269 1.1 wiz #define BT848_DATA_CTL_I2CW3B (1<<2) 270 1.1 wiz #define BT848_DATA_CTL_I2CSCL (1<<1) 271 1.1 wiz #define BT848_DATA_CTL_I2CSDA (1<<0) 272 1.1 wiz BTLONG (risc_strt_add); /* 114, 115,116,117 */ 273 1.1 wiz BTLONG (gpio_out_en); /* 118, 119,11a,11b */ /* really 24 bits */ 274 1.1 wiz BTLONG (gpio_reg_inp); /* 11c, 11d,11e,11f */ /* really 24 bits */ 275 1.1 wiz BTLONG (risc_count); /* 120, 121,122,123 */ 276 1.1 wiz u_char filler3[0x200-0x124]; 277 1.1 wiz BTLONG (gpio_data); /* 200, 201,202,203 */ /* really 24 bits */ 278 1.1 wiz }; 279 1.1 wiz 280 1.1 wiz 281 1.1 wiz #define BKTR_DSTATUS 0x000 282 1.1 wiz #define BKTR_IFORM 0x004 283 1.1 wiz #define BKTR_TDEC 0x008 284 1.1 wiz #define BKTR_E_CROP 0x00C 285 1.1 wiz #define BKTR_O_CROP 0x08C 286 1.1 wiz #define BKTR_E_VDELAY_LO 0x010 287 1.1 wiz #define BKTR_O_VDELAY_LO 0x090 288 1.1 wiz #define BKTR_E_VACTIVE_LO 0x014 289 1.1 wiz #define BKTR_O_VACTIVE_LO 0x094 290 1.1 wiz #define BKTR_E_DELAY_LO 0x018 291 1.1 wiz #define BKTR_O_DELAY_LO 0x098 292 1.1 wiz #define BKTR_E_HACTIVE_LO 0x01C 293 1.1 wiz #define BKTR_O_HACTIVE_LO 0x09C 294 1.1 wiz #define BKTR_E_HSCALE_HI 0x020 295 1.1 wiz #define BKTR_O_HSCALE_HI 0x0A0 296 1.1 wiz #define BKTR_E_HSCALE_LO 0x024 297 1.1 wiz #define BKTR_O_HSCALE_LO 0x0A4 298 1.1 wiz #define BKTR_BRIGHT 0x028 299 1.1 wiz #define BKTR_E_CONTROL 0x02C 300 1.1 wiz #define BKTR_O_CONTROL 0x0AC 301 1.1 wiz #define BKTR_CONTRAST_LO 0x030 302 1.1 wiz #define BKTR_SAT_U_LO 0x034 303 1.1 wiz #define BKTR_SAT_V_LO 0x038 304 1.1 wiz #define BKTR_HUE 0x03C 305 1.1 wiz #define BKTR_E_SCLOOP 0x040 306 1.1 wiz #define BKTR_O_SCLOOP 0x0C0 307 1.1 wiz #define BKTR_OFORM 0x048 308 1.1 wiz #define BKTR_E_VSCALE_HI 0x04C 309 1.1 wiz #define BKTR_O_VSCALE_HI 0x0CC 310 1.1 wiz #define BKTR_E_VSCALE_LO 0x050 311 1.1 wiz #define BKTR_O_VSCALE_LO 0x0D0 312 1.1 wiz #define BKTR_TEST 0x054 313 1.1 wiz #define BKTR_ADELAY 0x060 314 1.1 wiz #define BKTR_BDELAY 0x064 315 1.1 wiz #define BKTR_ADC 0x068 316 1.1 wiz #define BKTR_E_VTC 0x06C 317 1.1 wiz #define BKTR_O_VTC 0x0EC 318 1.1 wiz #define BKTR_SRESET 0x07C 319 1.1 wiz #define BKTR_COLOR_FMT 0x0D4 320 1.1 wiz #define BKTR_COLOR_CTL 0x0D8 321 1.1 wiz #define BKTR_CAP_CTL 0x0DC 322 1.1 wiz #define BKTR_VBI_PACK_SIZE 0x0E0 323 1.1 wiz #define BKTR_VBI_PACK_DEL 0x0E4 324 1.1 wiz #define BKTR_INT_STAT 0x100 325 1.1 wiz #define BKTR_INT_MASK 0x104 326 1.1 wiz #define BKTR_RISC_COUNT 0x120 327 1.1 wiz #define BKTR_RISC_STRT_ADD 0x114 328 1.1 wiz #define BKTR_GPIO_DMA_CTL 0x10C 329 1.1 wiz #define BKTR_GPIO_OUT_EN 0x118 330 1.1 wiz #define BKTR_GPIO_REG_INP 0x11C 331 1.1 wiz #define BKTR_GPIO_DATA 0x200 332 1.1 wiz #define BKTR_I2C_DATA_CTL 0x110 333 1.1 wiz #define BKTR_TGCTRL 0x084 334 1.13 wiz #define BKTR_PLL_F_LO 0x0F0 335 1.13 wiz #define BKTR_PLL_F_HI 0x0F4 336 1.1 wiz #define BKTR_PLL_F_XCI 0x0F8 337 1.1 wiz 338 1.1 wiz /* 339 1.1 wiz * device support for onboard tv tuners 340 1.1 wiz */ 341 1.1 wiz 342 1.1 wiz /* description of the LOGICAL tuner */ 343 1.1 wiz struct TVTUNER { 344 1.1 wiz int frequency; 345 1.1 wiz u_char chnlset; 346 1.1 wiz u_char channel; 347 1.1 wiz u_char band; 348 1.1 wiz u_char afc; 349 1.1 wiz u_char radio_mode; /* current mode of the radio mode */ 350 1.1 wiz }; 351 1.1 wiz 352 1.1 wiz /* description of the PHYSICAL tuner */ 353 1.1 wiz struct TUNER { 354 1.14 christos const char* name; 355 1.1 wiz u_char type; 356 1.1 wiz u_char pllControl[4]; 357 1.16 mjl u_int bandLimits[2]; 358 1.13 wiz u_char bandAddrs[4]; /* 3 first for the 3 TV 359 1.13 wiz ** bands. Last for radio 360 1.1 wiz ** band (0x00=NoRadio). 361 1.1 wiz */ 362 1.1 wiz 363 1.1 wiz }; 364 1.1 wiz 365 1.1 wiz /* description of the card */ 366 1.1 wiz #define EEPROMBLOCKSIZE 32 367 1.1 wiz struct CARDTYPE { 368 1.1 wiz unsigned int card_id; /* card id (from #define's) */ 369 1.14 christos const char* name; 370 1.1 wiz const struct TUNER* tuner; /* Tuner details */ 371 1.1 wiz u_char tuner_pllAddr; /* Tuner i2c address */ 372 1.1 wiz u_char dbx; /* Has DBX chip? */ 373 1.1 wiz u_char msp3400c; /* Has msp3400c chip? */ 374 1.1 wiz u_char dpl3518a; /* Has dpl3518a chip? */ 375 1.1 wiz u_char eepromAddr; 376 1.1 wiz u_char eepromSize; /* bytes / EEPROMBLOCKSIZE */ 377 1.13 wiz u_int audiomuxs[5]; /* tuner, ext (line-in) */ 378 1.1 wiz /* int/unused (radio) */ 379 1.1 wiz /* mute, present */ 380 1.1 wiz u_int gpio_mux_bits; /* GPIO mask for audio mux */ 381 1.1 wiz }; 382 1.1 wiz 383 1.1 wiz struct format_params { 384 1.1 wiz /* Total lines, lines before image, image lines */ 385 1.1 wiz int vtotal, vdelay, vactive; 386 1.1 wiz /* Total unscaled horizontal pixels, pixels before image, image pixels */ 387 1.1 wiz int htotal, hdelay, hactive; 388 1.1 wiz /* Scaled horizontal image pixels, Total Scaled horizontal pixels */ 389 1.1 wiz int scaled_hactive, scaled_htotal; 390 1.1 wiz /* frame rate . for ntsc is 30 frames per second */ 391 1.1 wiz int frame_rate; 392 1.1 wiz /* A-delay and B-delay */ 393 1.1 wiz u_char adelay, bdelay; 394 1.1 wiz /* Iform XTSEL value */ 395 1.1 wiz int iform_xtsel; 396 1.1 wiz /* VBI number of lines per field, and number of samples per line */ 397 1.1 wiz int vbi_num_lines, vbi_num_samples; 398 1.1 wiz }; 399 1.1 wiz 400 1.8 wiz #if defined(BKTR_USE_FREEBSD_SMBUS) 401 1.1 wiz struct bktr_i2c_softc { 402 1.1 wiz device_t iicbus; 403 1.1 wiz device_t smbus; 404 1.1 wiz }; 405 1.1 wiz #endif 406 1.1 wiz 407 1.1 wiz 408 1.1 wiz /* Bt848/878 register access 409 1.1 wiz * The registers can either be access via a memory mapped structure 410 1.1 wiz * or accessed via bus_space. 411 1.12 mjl * bus_space access allows cross platform support, where as the 412 1.1 wiz * memory mapped structure method only works on 32 bit processors 413 1.1 wiz * with the right type of endianness. 414 1.1 wiz */ 415 1.12 mjl struct bktr_softc; 416 1.12 mjl 417 1.12 mjl u_int8_t bktr_INB(struct bktr_softc *, int); 418 1.12 mjl u_int16_t bktr_INW(struct bktr_softc *, int); 419 1.12 mjl u_int32_t bktr_INL(struct bktr_softc *, int); 420 1.12 mjl void bktr_OUTB(struct bktr_softc *, int, u_int8_t); 421 1.12 mjl void bktr_OUTW(struct bktr_softc *, int, u_int16_t); 422 1.12 mjl void bktr_OUTL(struct bktr_softc *, int, u_int32_t); 423 1.12 mjl 424 1.12 mjl #define INB(bktr,offset) bktr_INB(bktr,offset) 425 1.12 mjl #define INW(bktr,offset) bktr_INW(bktr,offset) 426 1.12 mjl #define INL(bktr,offset) bktr_INL(bktr,offset) 427 1.12 mjl #define OUTB(bktr,offset,value) bktr_OUTB(bktr,offset,value) 428 1.12 mjl #define OUTW(bktr,offset,value) bktr_OUTW(bktr,offset,value) 429 1.12 mjl #define OUTL(bktr,offset,value) bktr_OUTL(bktr,offset,value) 430 1.12 mjl 431 1.1 wiz typedef struct bktr_clip bktr_clip_t; 432 1.1 wiz 433 1.1 wiz /* 434 1.1 wiz * BrookTree 848 info structure, one per bt848 card installed. 435 1.1 wiz */ 436 1.1 wiz struct bktr_softc { 437 1.1 wiz 438 1.1 wiz 439 1.22 chs device_t bktr_dev; /* base device */ 440 1.1 wiz bus_dma_tag_t dmat; /* DMA tag */ 441 1.1 wiz bus_space_tag_t memt; 442 1.1 wiz bus_space_handle_t memh; 443 1.1 wiz bus_size_t obmemsz; /* size of en card (bytes) */ 444 1.1 wiz void *ih; 445 1.1 wiz bus_dmamap_t dm_prog; 446 1.1 wiz bus_dmamap_t dm_oprog; 447 1.1 wiz bus_dmamap_t dm_mem; 448 1.1 wiz bus_dmamap_t dm_vbidata; 449 1.1 wiz bus_dmamap_t dm_vbibuffer; 450 1.1 wiz 451 1.1 wiz 452 1.1 wiz 453 1.8 wiz 454 1.8 wiz /* The following definitions are for the contiguous memory */ 455 1.8 wiz vaddr_t bigbuf; /* buffer that holds the captured image */ 456 1.8 wiz vaddr_t vbidata; /* RISC program puts VBI data from the current frame here */ 457 1.8 wiz vaddr_t vbibuffer; /* Circular buffer holding VBI data for the user */ 458 1.8 wiz vaddr_t dma_prog; /* RISC prog for single and/or even field capture*/ 459 1.8 wiz vaddr_t odd_dma_prog; /* RISC program for Odd field capture */ 460 1.8 wiz 461 1.8 wiz 462 1.1 wiz /* the following definitions are common over all platforms */ 463 1.1 wiz int alloc_pages; /* number of pages in bigbuf */ 464 1.1 wiz int vbiinsert; /* Position for next write into circular buffer */ 465 1.1 wiz int vbistart; /* Position of last read from circular buffer */ 466 1.1 wiz int vbisize; /* Number of bytes in the circular buffer */ 467 1.18 jmcneill u_int vbi_sequence_number; /* sequence number for VBI */ 468 1.1 wiz int vbi_read_blocked; /* user process blocked on read() from /dev/vbi */ 469 1.1 wiz struct selinfo vbi_select; /* Data used by select() on /dev/vbi */ 470 1.13 wiz 471 1.1 wiz 472 1.1 wiz struct proc *proc; /* process to receive raised signal */ 473 1.1 wiz int signal; /* signal to send to process */ 474 1.1 wiz int clr_on_start; /* clear cap buf on capture start? */ 475 1.1 wiz #define METEOR_SIG_MODE_MASK 0xffff0000 476 1.1 wiz #define METEOR_SIG_FIELD_MODE 0x00010000 477 1.1 wiz #define METEOR_SIG_FRAME_MODE 0x00000000 478 1.1 wiz char dma_prog_loaded; 479 1.1 wiz struct meteor_mem *mem; /* used to control sync. multi-frame output */ 480 1.18 jmcneill u_int synch_wait; /* wait for free buffer before continuing */ 481 1.1 wiz short current; /* frame number in buffer (1-frames) */ 482 1.1 wiz short rows; /* number of rows in a frame */ 483 1.1 wiz short cols; /* number of columns in a frame */ 484 1.1 wiz int capture_area_x_offset; /* Usually the full 640x480(NTSC) image is */ 485 1.1 wiz int capture_area_y_offset; /* captured. The capture area allows for */ 486 1.1 wiz int capture_area_x_size; /* example 320x200 pixels from the centre */ 487 1.1 wiz int capture_area_y_size; /* of the video image to be captured. */ 488 1.1 wiz char capture_area_enabled; /* When TRUE use user's capture area. */ 489 1.1 wiz int pixfmt; /* active pixel format (idx into fmt tbl) */ 490 1.1 wiz int pixfmt_compat; /* Y/N - in meteor pix fmt compat mode */ 491 1.18 jmcneill u_int format; /* frame format rgb, yuv, etc.. */ 492 1.1 wiz short frames; /* number of frames allocated */ 493 1.1 wiz int frame_size; /* number of bytes in a frame */ 494 1.18 jmcneill u_int fifo_errors; /* number of fifo capture errors since open */ 495 1.18 jmcneill u_int dma_errors; /* number of DMA capture errors since open */ 496 1.18 jmcneill u_int frames_captured;/* number of frames captured since open */ 497 1.18 jmcneill u_int even_fields_captured; /* number of even fields captured */ 498 1.18 jmcneill u_int odd_fields_captured; /* number of odd fields captured */ 499 1.18 jmcneill u_int range_enable; /* enable range checking ?? */ 500 1.1 wiz u_short capcontrol; /* reg 0xdc capture control */ 501 1.1 wiz u_short bktr_cap_ctl; 502 1.1 wiz volatile u_int flags; 503 1.10 wiz #define METEOR_INITIALIZED 0x00000001 504 1.13 wiz #define METEOR_OPEN 0x00000002 505 1.1 wiz #define METEOR_MMAP 0x00000004 506 1.1 wiz #define METEOR_INTR 0x00000008 507 1.1 wiz #define METEOR_READ 0x00000010 /* XXX never gets referenced */ 508 1.1 wiz #define METEOR_SINGLE 0x00000020 /* get single frame */ 509 1.1 wiz #define METEOR_CONTIN 0x00000040 /* continuously get frames */ 510 1.1 wiz #define METEOR_SYNCAP 0x00000080 /* synchronously get frames */ 511 1.1 wiz #define METEOR_CAP_MASK 0x000000f0 512 1.1 wiz #define METEOR_NTSC 0x00000100 513 1.1 wiz #define METEOR_PAL 0x00000200 514 1.1 wiz #define METEOR_SECAM 0x00000400 515 1.1 wiz #define BROOKTREE_NTSC 0x00000100 /* used in video open() and */ 516 1.1 wiz #define BROOKTREE_PAL 0x00000200 /* in the kernel config */ 517 1.1 wiz #define BROOKTREE_SECAM 0x00000400 /* file */ 518 1.1 wiz #define METEOR_AUTOMODE 0x00000800 519 1.1 wiz #define METEOR_FORM_MASK 0x00000f00 520 1.1 wiz #define METEOR_DEV0 0x00001000 521 1.1 wiz #define METEOR_DEV1 0x00002000 522 1.1 wiz #define METEOR_DEV2 0x00004000 523 1.1 wiz #define METEOR_DEV3 0x00008000 524 1.1 wiz #define METEOR_DEV_SVIDEO 0x00006000 525 1.1 wiz #define METEOR_DEV_RGB 0x0000a000 526 1.1 wiz #define METEOR_DEV_MASK 0x0000f000 527 1.1 wiz #define METEOR_RGB16 0x00010000 528 1.1 wiz #define METEOR_RGB24 0x00020000 529 1.1 wiz #define METEOR_YUV_PACKED 0x00040000 530 1.1 wiz #define METEOR_YUV_PLANAR 0x00080000 531 1.1 wiz #define METEOR_WANT_EVEN 0x00100000 /* want even frame */ 532 1.1 wiz #define METEOR_WANT_ODD 0x00200000 /* want odd frame */ 533 1.1 wiz #define METEOR_WANT_MASK 0x00300000 534 1.1 wiz #define METEOR_ONLY_EVEN_FIELDS 0x01000000 535 1.1 wiz #define METEOR_ONLY_ODD_FIELDS 0x02000000 536 1.1 wiz #define METEOR_ONLY_FIELDS_MASK 0x03000000 537 1.1 wiz #define METEOR_YUV_422 0x04000000 538 1.1 wiz #define METEOR_OUTPUT_FMT_MASK 0x040f0000 539 1.1 wiz #define METEOR_WANT_TS 0x08000000 /* time-stamp a frame */ 540 1.1 wiz #define METEOR_RGB 0x20000000 /* meteor rgb unit */ 541 1.1 wiz u_char tflags; /* Tuner flags (/dev/tuner) */ 542 1.10 wiz #define TUNER_INITIALIZED 0x00000001 543 1.13 wiz #define TUNER_OPEN 0x00000002 544 1.1 wiz u_char vbiflags; /* VBI flags (/dev/vbi) */ 545 1.10 wiz #define VBI_INITIALIZED 0x00000001 546 1.1 wiz #define VBI_OPEN 0x00000002 547 1.1 wiz #define VBI_CAPTURE 0x00000004 548 1.1 wiz u_short fps; /* frames per second */ 549 1.1 wiz struct meteor_video video; 550 1.1 wiz struct TVTUNER tuner; 551 1.1 wiz struct CARDTYPE card; 552 1.1 wiz u_char audio_mux_select; /* current mode of the audio */ 553 1.1 wiz u_char audio_mute_state; /* mute state of the audio */ 554 1.1 wiz u_char format_params; 555 1.18 jmcneill u_int current_sol; 556 1.18 jmcneill u_int current_col; 557 1.1 wiz int clip_start; 558 1.1 wiz int line_length; 559 1.1 wiz int last_y; 560 1.1 wiz int y; 561 1.1 wiz int y2; 562 1.1 wiz int yclip; 563 1.1 wiz int yclip2; 564 1.1 wiz int max_clip_node; 565 1.1 wiz bktr_clip_t clip_list[100]; 566 1.1 wiz int reverse_mute; /* Swap the GPIO values for Mute and TV Audio */ 567 1.1 wiz int bt848_tuner; 568 1.1 wiz int bt848_card; 569 1.18 jmcneill u_int id; 570 1.1 wiz #define BT848_USE_XTALS 0 571 1.1 wiz #define BT848_USE_PLL 1 572 1.1 wiz int xtal_pll_mode; /* Use XTAL or PLL mode for PAL/SECAM */ 573 1.1 wiz int remote_control; /* remote control detected */ 574 1.1 wiz int remote_control_addr; /* remote control i2c address */ 575 1.1 wiz char msp_version_string[9]; /* MSP version string 34xxx-xx */ 576 1.1 wiz int msp_addr; /* MSP i2c address */ 577 1.1 wiz char dpl_version_string[9]; /* DPL version string 35xxx-xx */ 578 1.1 wiz int dpl_addr; /* DPL i2c address */ 579 1.1 wiz int slow_msp_audio; /* 0 = use fast MSP3410/3415 programming sequence */ 580 1.1 wiz /* 1 = use slow MSP3410/3415 programming sequence */ 581 1.9 wiz /* 2 = use Tuner's Mono audio output via the MSP chip */ 582 1.9 wiz int msp_use_mono_source; /* use Tuner's Mono audio output via the MSP chip */ 583 1.9 wiz int audio_mux_present; /* 1 = has audio mux on GPIO lines, 0 = no audio mux */ 584 1.9 wiz int msp_source_selected; /* 0 = TV source, 1 = Line In source, 2 = FM Radio Source */ 585 1.19 ad void *sih; 586 1.1 wiz 587 1.1 wiz }; 588 1.1 wiz 589 1.1 wiz typedef struct bktr_softc bktr_reg_t; 590 1.1 wiz typedef struct bktr_softc* bktr_ptr_t; 591 1.1 wiz 592 1.1 wiz #define Bt848_MAX_SIGN 16 593 1.1 wiz 594 1.1 wiz struct bt848_card_sig { 595 1.1 wiz int card; 596 1.1 wiz int tuner; 597 1.1 wiz u_char signature[Bt848_MAX_SIGN]; 598 1.1 wiz }; 599 1.1 wiz 600 1.1 wiz 601 1.1 wiz /***********************************************************/ 602 1.1 wiz /* ioctl_cmd_t int on old versions, u_long on new versions */ 603 1.1 wiz /***********************************************************/ 604 1.1 wiz 605 1.1 wiz 606 1.1 wiz 607 1.1 wiz typedef u_long ioctl_cmd_t; 608 1.1 wiz 609 1.1 wiz 610