| Nico Huber | 83693c8 | 2016-10-08 22:17:55 +0200 | [diff] [blame^] | 1 | -- |
| 2 | -- Copyright (C) 2015-2016 secunet Security Networks AG |
| 3 | -- |
| 4 | -- This program is free software; you can redistribute it and/or modify |
| 5 | -- it under the terms of the GNU General Public License as published by |
| 6 | -- the Free Software Foundation; version 2 of the License. |
| 7 | -- |
| 8 | -- This program is distributed in the hope that it will be useful, |
| 9 | -- but WITHOUT ANY WARRANTY; without even the implied warranty of |
| 10 | -- MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the |
| 11 | -- GNU General Public License for more details. |
| 12 | -- |
| 13 | |
| 14 | with Ada.Unchecked_Conversion; |
| 15 | |
| 16 | with HW.Debug; |
| 17 | with GNAT.Source_Info; |
| 18 | |
| 19 | with HW.GFX.DP_Defs; |
| 20 | |
| 21 | use type HW.Word8; |
| 22 | |
| 23 | package body HW.GFX.DP_Info is |
| 24 | |
| 25 | procedure Read_Caps |
| 26 | (Link : in out DP_Link; |
| 27 | Port : in T; |
| 28 | Success : out Boolean) |
| 29 | is |
| 30 | Data : DP_Defs.Aux_Payload; |
| 31 | Length : DP_Defs.Aux_Payload_Length; |
| 32 | |
| 33 | Caps_Size : constant := 15; |
| 34 | begin |
| 35 | pragma Debug (Debug.Put_Line (GNAT.Source_Info.Enclosing_Entity)); |
| 36 | |
| 37 | Length := Caps_Size; |
| 38 | Aux_Ch.Aux_Read |
| 39 | (Port => Port, |
| 40 | Address => 16#00000#, |
| 41 | Length => Length, |
| 42 | Data => Data, |
| 43 | Success => Success); |
| 44 | Success := Success and Length = Caps_Size; |
| 45 | |
| 46 | if Length = Caps_Size then |
| 47 | Link.Receiver_Caps.Rev := Data (0); |
| 48 | case Data (1) is |
| 49 | when 16#06# => |
| 50 | Link.Receiver_Caps.Max_Link_Rate := DP_Bandwidth_1_62; |
| 51 | when 16#0a# => |
| 52 | Link.Receiver_Caps.Max_Link_Rate := DP_Bandwidth_2_7; |
| 53 | when 16#14# => |
| 54 | Link.Receiver_Caps.Max_Link_Rate := DP_Bandwidth_5_4; |
| 55 | when others => |
| 56 | if Data (1) > 16#14# then |
| 57 | Link.Receiver_Caps.Max_Link_Rate := DP_Bandwidth_5_4; |
| 58 | else |
| 59 | Link.Receiver_Caps.Max_Link_Rate := DP_Bandwidth_1_62; |
| 60 | end if; |
| 61 | end case; |
| 62 | case Data (2) and 16#1f# is |
| 63 | when 0 | 1 => |
| 64 | Link.Receiver_Caps.Max_Lane_Count := DP_Lane_Count_1; |
| 65 | when 2 | 3 => |
| 66 | Link.Receiver_Caps.Max_Lane_Count := DP_Lane_Count_2; |
| 67 | when others => |
| 68 | Link.Receiver_Caps.Max_Lane_Count := DP_Lane_Count_4; |
| 69 | end case; |
| 70 | Link.Receiver_Caps.TPS3_Supported := (Data (2) and 16#40#) /= 0; |
| 71 | Link.Receiver_Caps.Enhanced_Framing := (Data (2) and 16#80#) /= 0; |
| 72 | Link.Receiver_Caps.No_Aux_Handshake := (Data (3) and 16#40#) /= 0; |
| 73 | Link.Receiver_Caps.Aux_RD_Interval := Data (14); |
| 74 | |
| 75 | pragma Debug (Debug.New_Line); |
| 76 | pragma Debug (Debug.Put_Line ("DPCD:")); |
| 77 | pragma Debug (Debug.Put_Reg8 (" Rev ", Data (0))); |
| 78 | pragma Debug (Debug.Put_Reg8 (" Max_Link_Rate ", Data (1))); |
| 79 | pragma Debug (Debug.Put_Reg8 (" Max_Lane_Count ", Data (2) and 16#1f#)); |
| 80 | pragma Debug (Debug.Put_Reg8 (" TPS3_Supported ", Data (2) and 16#40#)); |
| 81 | pragma Debug (Debug.Put_Reg8 (" Enhanced_Framing", Data (2) and 16#80#)); |
| 82 | pragma Debug (Debug.Put_Reg8 (" No_Aux_Handshake", Data (3) and 16#40#)); |
| 83 | pragma Debug (Debug.Put_Reg8 (" Aux_RD_Interval ", Data (14))); |
| 84 | pragma Debug (Debug.New_Line); |
| 85 | end if; |
| 86 | end Read_Caps; |
| 87 | |
| 88 | procedure Minimum_Lane_Count |
| 89 | (Link : in out DP_Link; |
| 90 | Mode : in Mode_Type; |
| 91 | Success : out Boolean) |
| 92 | with |
| 93 | Depends => ((Link, Success) => (Link, Mode)) |
| 94 | is |
| 95 | function Link_Pixel_Per_Second |
| 96 | (Link_Rate : DP_Bandwidth) |
| 97 | return Positive |
| 98 | with |
| 99 | Post => Pos64 (Link_Pixel_Per_Second'Result) <= |
| 100 | ((DP_Symbol_Rate_Type'Last * 8) / 3) / BPC_Type'First |
| 101 | is |
| 102 | begin |
| 103 | -- Link_Rate is brutto with 8/10 bit symbols; three colors |
| 104 | pragma Assert (Positive (DP_Symbol_Rate (Link_Rate)) <= (Positive'Last / 8) * 3); |
| 105 | pragma Assert ((Int64 (DP_Symbol_Rate (Link_Rate)) * 8) / 3 |
| 106 | >= Int64 (BPC_Type'Last)); |
| 107 | return Positive |
| 108 | (((Int64 (DP_Symbol_Rate (Link_Rate)) * 8) / 3) |
| 109 | / Int64 (Mode.BPC)); |
| 110 | end Link_Pixel_Per_Second; |
| 111 | |
| 112 | Count : Natural; |
| 113 | begin |
| 114 | Count := Link_Pixel_Per_Second (Link.Bandwidth); |
| 115 | Count := (Positive (Mode.Dotclock) + Count - 1) / Count; |
| 116 | |
| 117 | Success := True; |
| 118 | case Count is |
| 119 | when 1 => Link.Lane_Count := DP_Lane_Count_1; |
| 120 | when 2 => Link.Lane_Count := DP_Lane_Count_2; |
| 121 | when 3 | 4 => Link.Lane_Count := DP_Lane_Count_4; |
| 122 | when others => Success := False; |
| 123 | end case; |
| 124 | end Minimum_Lane_Count; |
| 125 | |
| 126 | procedure Preferred_Link_Setting |
| 127 | (Link : in out DP_Link; |
| 128 | Mode : in Mode_Type; |
| 129 | Success : out Boolean) |
| 130 | is |
| 131 | begin |
| 132 | Link.Bandwidth := Link.Receiver_Caps.Max_Link_Rate; |
| 133 | Link.Enhanced_Framing := Link.Receiver_Caps.Enhanced_Framing; |
| 134 | |
| 135 | Minimum_Lane_Count (Link, Mode, Success); |
| 136 | |
| 137 | Success := Success and |
| 138 | Link.Lane_Count <= Link.Receiver_Caps.Max_Lane_Count; |
| 139 | |
| 140 | pragma Debug (Success, Debug.Put ("Trying DP settings: Symbol Rate = ")); |
| 141 | pragma Debug (Success, Debug.Put_Int32 |
| 142 | (Int32 (DP_Symbol_Rate (Link.Bandwidth)))); |
| 143 | pragma Debug (Success, Debug.Put ("; Lane Count = ")); |
| 144 | pragma Debug (Success, Debug.Put_Int32 |
| 145 | (Int32 (Lane_Count_As_Integer (Link.Lane_Count)))); |
| 146 | pragma Debug (Success, Debug.New_Line); |
| 147 | pragma Debug (Success, Debug.New_Line); |
| 148 | |
| 149 | pragma Debug (not Success, Debug.Put_Line |
| 150 | ("Mode requirements exceed available bandwidth!")); |
| 151 | end Preferred_Link_Setting; |
| 152 | |
| 153 | procedure Next_Link_Setting |
| 154 | (Link : in out DP_Link; |
| 155 | Mode : in Mode_Type; |
| 156 | Success : out Boolean) |
| 157 | is |
| 158 | begin |
| 159 | if Link.Bandwidth > DP_Bandwidth'First then |
| 160 | Link.Bandwidth := DP_Bandwidth'Pred (Link.Bandwidth); |
| 161 | |
| 162 | Minimum_Lane_Count (Link, Mode, Success); |
| 163 | |
| 164 | Success := Success and |
| 165 | Link.Lane_Count <= Link.Receiver_Caps.Max_Lane_Count; |
| 166 | else |
| 167 | Success := False; |
| 168 | end if; |
| 169 | |
| 170 | pragma Debug (Success, Debug.Put ("Trying DP settings: Symbol Rate = ")); |
| 171 | pragma Debug (Success, Debug.Put_Int32 |
| 172 | (Int32 (DP_Symbol_Rate (Link.Bandwidth)))); |
| 173 | pragma Debug (Success, Debug.Put ("; Lane Count = ")); |
| 174 | pragma Debug (Success, Debug.Put_Int32 |
| 175 | (Int32 (Lane_Count_As_Integer (Link.Lane_Count)))); |
| 176 | pragma Debug (Success, Debug.New_Line); |
| 177 | pragma Debug (Success, Debug.New_Line); |
| 178 | end Next_Link_Setting; |
| 179 | |
| 180 | ---------------------------------------------------------------------------- |
| 181 | |
| 182 | procedure Calculate_M_N |
| 183 | (Link : in DP_Link; |
| 184 | Mode : in Mode_Type; |
| 185 | Data_M : out M_Type; |
| 186 | Data_N : out N_Type; |
| 187 | Link_M : out M_Type; |
| 188 | Link_N : out N_Type) |
| 189 | is |
| 190 | DATA_N_MAX : constant := 16#800000#; |
| 191 | LINK_N_MAX : constant := 16#100000#; |
| 192 | |
| 193 | subtype Calc_M_Type is Int64 range 0 .. 2 ** 36; |
| 194 | subtype Calc_N_Type is Int64 range 0 .. 2 ** 36; |
| 195 | subtype N_Rounded_Type is Int64 range |
| 196 | 0 .. Int64'Max (DATA_N_MAX, LINK_N_MAX); |
| 197 | |
| 198 | M : Calc_M_Type; |
| 199 | N : Calc_N_Type; |
| 200 | |
| 201 | procedure Cancel_M_N |
| 202 | (M : in out Calc_M_Type; |
| 203 | N : in out Calc_N_Type; |
| 204 | N_Max : in N_Rounded_Type) |
| 205 | with |
| 206 | Depends => ((M, N) => (M, N, N_max)), |
| 207 | Pre => (N > 0 and M in 0 .. Calc_M_Type'Last / 2), |
| 208 | Post => (M <= M_N_Max and N <= M_N_Max) |
| 209 | is |
| 210 | Orig_N : constant Calc_N_Type := N; |
| 211 | |
| 212 | function Round_N (N : Calc_N_Type) return N_Rounded_Type |
| 213 | with |
| 214 | Post => (Round_N'Result <= N * 2) |
| 215 | is |
| 216 | RN : Calc_N_Type; |
| 217 | RN2 : Calc_N_Type := N_Max; |
| 218 | begin |
| 219 | loop |
| 220 | RN := RN2; |
| 221 | RN2 := RN2 / 2; |
| 222 | exit when RN2 < N; |
| 223 | pragma Loop_Invariant (RN2 = RN / 2 and RN2 in N .. N_Max); |
| 224 | end loop; |
| 225 | return RN; |
| 226 | end Round_N; |
| 227 | begin |
| 228 | N := Round_N (N); |
| 229 | |
| 230 | -- The automatic provers need a little nudge here. |
| 231 | pragma Assert |
| 232 | (if M <= Calc_M_Type'Last/2 and |
| 233 | N <= Orig_N * 2 and |
| 234 | Orig_N > 0 and |
| 235 | M > 0 |
| 236 | then |
| 237 | M * N / Orig_N <= Calc_M_Type'Last); |
| 238 | |
| 239 | pragma Annotate (GNATprove, False_Positive, |
| 240 | "assertion might fail", |
| 241 | "The property cannot be proven automatically. An Isabelle proof is included as an axiom"); |
| 242 | |
| 243 | M := M * N / Orig_N; |
| 244 | |
| 245 | -- This loop is never hit for sane values (i.e. M <= N) but |
| 246 | -- we have to make sure returned values are always in range. |
| 247 | while M > M_N_Max loop |
| 248 | pragma Loop_Invariant (N <= M_N_Max); |
| 249 | M := M / 2; |
| 250 | N := N / 2; |
| 251 | end loop; |
| 252 | end Cancel_M_N; |
| 253 | begin |
| 254 | pragma Debug (Debug.Put_Line (GNAT.Source_Info.Enclosing_Entity)); |
| 255 | |
| 256 | pragma Assert (3 |
| 257 | * Mode.BPC |
| 258 | * Mode.Dotclock |
| 259 | in Pos64); |
| 260 | M := 3 |
| 261 | * Mode.BPC |
| 262 | * Mode.Dotclock; |
| 263 | |
| 264 | pragma Assert (8 |
| 265 | * DP_Symbol_Rate (Link.Bandwidth) |
| 266 | * Lane_Count_As_Integer (Link.Lane_Count) |
| 267 | in Pos64); |
| 268 | N := 8 |
| 269 | * DP_Symbol_Rate (Link.Bandwidth) |
| 270 | * Lane_Count_As_Integer (Link.Lane_Count); |
| 271 | |
| 272 | Cancel_M_N (M, N, DATA_N_MAX); |
| 273 | Data_M := M; |
| 274 | Data_N := N; |
| 275 | |
| 276 | ------------------------------------------------------------------- |
| 277 | |
| 278 | M := Pos64 (Mode.Dotclock); |
| 279 | N := Pos64 (DP_Symbol_Rate (Link.Bandwidth)); |
| 280 | |
| 281 | Cancel_M_N (M, N, LINK_N_MAX); |
| 282 | Link_M := M; |
| 283 | Link_N := N; |
| 284 | end Calculate_M_N; |
| 285 | |
| 286 | ---------------------------------------------------------------------------- |
| 287 | |
| 288 | procedure Read_Link_Status |
| 289 | (Port : in T; |
| 290 | Status : out Link_Status; |
| 291 | Success : out Boolean) |
| 292 | is |
| 293 | subtype Status_Index is DP_Defs.Aux_Payload_Index range 0 .. 5; |
| 294 | subtype Status_Buffer is Buffer (Status_Index); |
| 295 | function Buffer_As_Status is new Ada.Unchecked_Conversion |
| 296 | (Source => Status_Buffer, Target => Link_Status); |
| 297 | |
| 298 | Data : DP_Defs.Aux_Payload; |
| 299 | Length : DP_Defs.Aux_Payload_Length; |
| 300 | begin |
| 301 | pragma Debug (Debug.Put_Line (GNAT.Source_Info.Enclosing_Entity)); |
| 302 | |
| 303 | Length := Status_Index'Last + 1; |
| 304 | Aux_Ch.Aux_Read |
| 305 | (Port => Port, |
| 306 | Address => 16#00202#, |
| 307 | Length => Length, |
| 308 | Data => Data, |
| 309 | Success => Success); |
| 310 | Success := Success and Length = Status_Index'Last + 1; |
| 311 | Status := Buffer_As_Status (Data (Status_Index)); |
| 312 | end Read_Link_Status; |
| 313 | |
| 314 | function All_CR_Done |
| 315 | (Status : Link_Status; |
| 316 | Link : DP_Link) |
| 317 | return Boolean |
| 318 | is |
| 319 | CR_Done : Boolean := True; |
| 320 | begin |
| 321 | for Lane in Lane_Index |
| 322 | range 0 .. Lane_Index (Lane_Count_As_Integer (Link.Lane_Count) - 1) |
| 323 | loop |
| 324 | CR_Done := CR_Done and Status.Lanes (Lane).CR_Done; |
| 325 | end loop; |
| 326 | return CR_Done; |
| 327 | end All_CR_Done; |
| 328 | |
| 329 | function All_EQ_Done |
| 330 | (Status : Link_Status; |
| 331 | Link : DP_Link) |
| 332 | return Boolean |
| 333 | is |
| 334 | EQ_Done : Boolean := True; |
| 335 | begin |
| 336 | for Lane in Lane_Index |
| 337 | range 0 .. Lane_Index (Lane_Count_As_Integer (Link.Lane_Count) - 1) |
| 338 | loop |
| 339 | EQ_Done := EQ_Done and Status.Lanes (Lane).CR_Done |
| 340 | and Status.Lanes (Lane).Channel_EQ_Done |
| 341 | and Status.Lanes (Lane).Symbol_Locked; |
| 342 | end loop; |
| 343 | return EQ_Done and Status.Interlane_Align_Done; |
| 344 | end All_EQ_Done; |
| 345 | |
| 346 | function Max_Requested_VS |
| 347 | (Status : Link_Status; |
| 348 | Link : DP_Link) |
| 349 | return DP_Voltage_Swing |
| 350 | is |
| 351 | VS : DP_Voltage_Swing := DP_Voltage_Swing'First; |
| 352 | begin |
| 353 | for Lane in Lane_Index |
| 354 | range 0 .. Lane_Index (Lane_Count_As_Integer (Link.Lane_Count) - 1) |
| 355 | loop |
| 356 | if Status.Adjust_Requests (Lane).Voltage_Swing > VS then |
| 357 | VS := Status.Adjust_Requests (Lane).Voltage_Swing; |
| 358 | end if; |
| 359 | end loop; |
| 360 | return VS; |
| 361 | end Max_Requested_VS; |
| 362 | |
| 363 | function Max_Requested_Emph |
| 364 | (Status : Link_Status; |
| 365 | Link : DP_Link) |
| 366 | return DP_Pre_Emph |
| 367 | is |
| 368 | Emph : DP_Pre_Emph := DP_Pre_Emph'First; |
| 369 | begin |
| 370 | for Lane in Lane_Index |
| 371 | range 0 .. Lane_Index (Lane_Count_As_Integer (Link.Lane_Count) - 1) |
| 372 | loop |
| 373 | if Status.Adjust_Requests (Lane).Pre_Emph > Emph then |
| 374 | Emph := Status.Adjust_Requests (Lane).Pre_Emph; |
| 375 | end if; |
| 376 | end loop; |
| 377 | return Emph; |
| 378 | end Max_Requested_Emph; |
| 379 | |
| 380 | end HW.GFX.DP_Info; |