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v6.2
   1/*
   2 * Copyright 2008 Advanced Micro Devices, Inc.
   3 *
   4 * Permission is hereby granted, free of charge, to any person obtaining a
   5 * copy of this software and associated documentation files (the "Software"),
   6 * to deal in the Software without restriction, including without limitation
   7 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
   8 * and/or sell copies of the Software, and to permit persons to whom the
   9 * Software is furnished to do so, subject to the following conditions:
  10 *
  11 * The above copyright notice and this permission notice shall be included in
  12 * all copies or substantial portions of the Software.
  13 *
  14 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  15 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  16 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
  17 * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
  18 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
  19 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
  20 * OTHER DEALINGS IN THE SOFTWARE.
  21 *
  22 * Author: Stanislaw Skowronek
  23 */
  24
  25#include <linux/module.h>
  26#include <linux/sched.h>
  27#include <linux/slab.h>
  28#include <linux/string_helpers.h>
  29
  30#include <asm/unaligned.h>
  31
  32#include <drm/drm_device.h>
  33#include <drm/drm_util.h>
  34
  35#define ATOM_DEBUG
  36
  37#include "atom.h"
  38#include "atom-names.h"
  39#include "atom-bits.h"
  40#include "radeon.h"
  41
  42#define ATOM_COND_ABOVE		0
  43#define ATOM_COND_ABOVEOREQUAL	1
  44#define ATOM_COND_ALWAYS	2
  45#define ATOM_COND_BELOW		3
  46#define ATOM_COND_BELOWOREQUAL	4
  47#define ATOM_COND_EQUAL		5
  48#define ATOM_COND_NOTEQUAL	6
  49
  50#define ATOM_PORT_ATI	0
  51#define ATOM_PORT_PCI	1
  52#define ATOM_PORT_SYSIO	2
  53
  54#define ATOM_UNIT_MICROSEC	0
  55#define ATOM_UNIT_MILLISEC	1
  56
  57#define PLL_INDEX	2
  58#define PLL_DATA	3
  59
  60typedef struct {
  61	struct atom_context *ctx;
  62	uint32_t *ps, *ws;
  63	int ps_shift;
  64	uint16_t start;
  65	unsigned last_jump;
  66	unsigned long last_jump_jiffies;
  67	bool abort;
  68} atom_exec_context;
  69
  70int atom_debug = 0;
  71static int atom_execute_table_locked(struct atom_context *ctx, int index, uint32_t * params);
  72int atom_execute_table(struct atom_context *ctx, int index, uint32_t * params);
  73
  74static uint32_t atom_arg_mask[8] = {
  75	0xFFFFFFFF, 0x0000FFFF, 0x00FFFF00, 0xFFFF0000,
  76	0x000000FF, 0x0000FF00, 0x00FF0000, 0xFF000000
  77};
  78static int atom_arg_shift[8] = { 0, 0, 8, 16, 0, 8, 16, 24 };
  79
  80static int atom_dst_to_src[8][4] = {
  81	/* translate destination alignment field to the source alignment encoding */
  82	{0, 0, 0, 0},
  83	{1, 2, 3, 0},
  84	{1, 2, 3, 0},
  85	{1, 2, 3, 0},
  86	{4, 5, 6, 7},
  87	{4, 5, 6, 7},
  88	{4, 5, 6, 7},
  89	{4, 5, 6, 7},
  90};
  91static int atom_def_dst[8] = { 0, 0, 1, 2, 0, 1, 2, 3 };
  92
  93static int debug_depth = 0;
  94#ifdef ATOM_DEBUG
  95static void debug_print_spaces(int n)
  96{
  97	while (n--)
  98		printk("   ");
  99}
 100
 101#define DEBUG(...) do if (atom_debug) { printk(KERN_DEBUG __VA_ARGS__); } while (0)
 102#define SDEBUG(...) do if (atom_debug) { printk(KERN_DEBUG); debug_print_spaces(debug_depth); printk(__VA_ARGS__); } while (0)
 103#else
 104#define DEBUG(...) do { } while (0)
 105#define SDEBUG(...) do { } while (0)
 106#endif
 107
 108static uint32_t atom_iio_execute(struct atom_context *ctx, int base,
 109				 uint32_t index, uint32_t data)
 110{
 111	struct radeon_device *rdev = ctx->card->dev->dev_private;
 112	uint32_t temp = 0xCDCDCDCD;
 113
 114	while (1)
 115		switch (CU8(base)) {
 116		case ATOM_IIO_NOP:
 117			base++;
 118			break;
 119		case ATOM_IIO_READ:
 120			temp = ctx->card->ioreg_read(ctx->card, CU16(base + 1));
 121			base += 3;
 122			break;
 123		case ATOM_IIO_WRITE:
 124			if (rdev->family == CHIP_RV515)
 125				(void)ctx->card->ioreg_read(ctx->card, CU16(base + 1));
 126			ctx->card->ioreg_write(ctx->card, CU16(base + 1), temp);
 127			base += 3;
 128			break;
 129		case ATOM_IIO_CLEAR:
 130			temp &=
 131			    ~((0xFFFFFFFF >> (32 - CU8(base + 1))) <<
 132			      CU8(base + 2));
 133			base += 3;
 134			break;
 135		case ATOM_IIO_SET:
 136			temp |=
 137			    (0xFFFFFFFF >> (32 - CU8(base + 1))) << CU8(base +
 138									2);
 139			base += 3;
 140			break;
 141		case ATOM_IIO_MOVE_INDEX:
 142			temp &=
 143			    ~((0xFFFFFFFF >> (32 - CU8(base + 1))) <<
 144			      CU8(base + 3));
 145			temp |=
 146			    ((index >> CU8(base + 2)) &
 147			     (0xFFFFFFFF >> (32 - CU8(base + 1)))) << CU8(base +
 148									  3);
 149			base += 4;
 150			break;
 151		case ATOM_IIO_MOVE_DATA:
 152			temp &=
 153			    ~((0xFFFFFFFF >> (32 - CU8(base + 1))) <<
 154			      CU8(base + 3));
 155			temp |=
 156			    ((data >> CU8(base + 2)) &
 157			     (0xFFFFFFFF >> (32 - CU8(base + 1)))) << CU8(base +
 158									  3);
 159			base += 4;
 160			break;
 161		case ATOM_IIO_MOVE_ATTR:
 162			temp &=
 163			    ~((0xFFFFFFFF >> (32 - CU8(base + 1))) <<
 164			      CU8(base + 3));
 165			temp |=
 166			    ((ctx->
 167			      io_attr >> CU8(base + 2)) & (0xFFFFFFFF >> (32 -
 168									  CU8
 169									  (base
 170									   +
 171									   1))))
 172			    << CU8(base + 3);
 173			base += 4;
 174			break;
 175		case ATOM_IIO_END:
 176			return temp;
 177		default:
 178			pr_info("Unknown IIO opcode\n");
 179			return 0;
 180		}
 181}
 182
 183static uint32_t atom_get_src_int(atom_exec_context *ctx, uint8_t attr,
 184				 int *ptr, uint32_t *saved, int print)
 185{
 186	uint32_t idx, val = 0xCDCDCDCD, align, arg;
 187	struct atom_context *gctx = ctx->ctx;
 188	arg = attr & 7;
 189	align = (attr >> 3) & 7;
 190	switch (arg) {
 191	case ATOM_ARG_REG:
 192		idx = U16(*ptr);
 193		(*ptr) += 2;
 194		if (print)
 195			DEBUG("REG[0x%04X]", idx);
 196		idx += gctx->reg_block;
 197		switch (gctx->io_mode) {
 198		case ATOM_IO_MM:
 199			val = gctx->card->reg_read(gctx->card, idx);
 200			break;
 201		case ATOM_IO_PCI:
 202			pr_info("PCI registers are not implemented\n");
 203			return 0;
 204		case ATOM_IO_SYSIO:
 205			pr_info("SYSIO registers are not implemented\n");
 206			return 0;
 207		default:
 208			if (!(gctx->io_mode & 0x80)) {
 209				pr_info("Bad IO mode\n");
 210				return 0;
 211			}
 212			if (!gctx->iio[gctx->io_mode & 0x7F]) {
 213				pr_info("Undefined indirect IO read method %d\n",
 214					gctx->io_mode & 0x7F);
 215				return 0;
 216			}
 217			val =
 218			    atom_iio_execute(gctx,
 219					     gctx->iio[gctx->io_mode & 0x7F],
 220					     idx, 0);
 221		}
 222		break;
 223	case ATOM_ARG_PS:
 224		idx = U8(*ptr);
 225		(*ptr)++;
 226		/* get_unaligned_le32 avoids unaligned accesses from atombios
 227		 * tables, noticed on a DEC Alpha. */
 228		val = get_unaligned_le32((u32 *)&ctx->ps[idx]);
 229		if (print)
 230			DEBUG("PS[0x%02X,0x%04X]", idx, val);
 231		break;
 232	case ATOM_ARG_WS:
 233		idx = U8(*ptr);
 234		(*ptr)++;
 235		if (print)
 236			DEBUG("WS[0x%02X]", idx);
 237		switch (idx) {
 238		case ATOM_WS_QUOTIENT:
 239			val = gctx->divmul[0];
 240			break;
 241		case ATOM_WS_REMAINDER:
 242			val = gctx->divmul[1];
 243			break;
 244		case ATOM_WS_DATAPTR:
 245			val = gctx->data_block;
 246			break;
 247		case ATOM_WS_SHIFT:
 248			val = gctx->shift;
 249			break;
 250		case ATOM_WS_OR_MASK:
 251			val = 1 << gctx->shift;
 252			break;
 253		case ATOM_WS_AND_MASK:
 254			val = ~(1 << gctx->shift);
 255			break;
 256		case ATOM_WS_FB_WINDOW:
 257			val = gctx->fb_base;
 258			break;
 259		case ATOM_WS_ATTRIBUTES:
 260			val = gctx->io_attr;
 261			break;
 262		case ATOM_WS_REGPTR:
 263			val = gctx->reg_block;
 264			break;
 265		default:
 266			val = ctx->ws[idx];
 267		}
 268		break;
 269	case ATOM_ARG_ID:
 270		idx = U16(*ptr);
 271		(*ptr) += 2;
 272		if (print) {
 273			if (gctx->data_block)
 274				DEBUG("ID[0x%04X+%04X]", idx, gctx->data_block);
 275			else
 276				DEBUG("ID[0x%04X]", idx);
 277		}
 278		val = U32(idx + gctx->data_block);
 279		break;
 280	case ATOM_ARG_FB:
 281		idx = U8(*ptr);
 282		(*ptr)++;
 283		if ((gctx->fb_base + (idx * 4)) > gctx->scratch_size_bytes) {
 284			DRM_ERROR("ATOM: fb read beyond scratch region: %d vs. %d\n",
 285				  gctx->fb_base + (idx * 4), gctx->scratch_size_bytes);
 286			val = 0;
 287		} else
 288			val = gctx->scratch[(gctx->fb_base / 4) + idx];
 289		if (print)
 290			DEBUG("FB[0x%02X]", idx);
 291		break;
 292	case ATOM_ARG_IMM:
 293		switch (align) {
 294		case ATOM_SRC_DWORD:
 295			val = U32(*ptr);
 296			(*ptr) += 4;
 297			if (print)
 298				DEBUG("IMM 0x%08X\n", val);
 299			return val;
 300		case ATOM_SRC_WORD0:
 301		case ATOM_SRC_WORD8:
 302		case ATOM_SRC_WORD16:
 303			val = U16(*ptr);
 304			(*ptr) += 2;
 305			if (print)
 306				DEBUG("IMM 0x%04X\n", val);
 307			return val;
 308		case ATOM_SRC_BYTE0:
 309		case ATOM_SRC_BYTE8:
 310		case ATOM_SRC_BYTE16:
 311		case ATOM_SRC_BYTE24:
 312			val = U8(*ptr);
 313			(*ptr)++;
 314			if (print)
 315				DEBUG("IMM 0x%02X\n", val);
 316			return val;
 317		}
 318		return 0;
 319	case ATOM_ARG_PLL:
 320		idx = U8(*ptr);
 321		(*ptr)++;
 322		if (print)
 323			DEBUG("PLL[0x%02X]", idx);
 324		val = gctx->card->pll_read(gctx->card, idx);
 325		break;
 326	case ATOM_ARG_MC:
 327		idx = U8(*ptr);
 328		(*ptr)++;
 329		if (print)
 330			DEBUG("MC[0x%02X]", idx);
 331		val = gctx->card->mc_read(gctx->card, idx);
 332		break;
 333	}
 334	if (saved)
 335		*saved = val;
 336	val &= atom_arg_mask[align];
 337	val >>= atom_arg_shift[align];
 338	if (print)
 339		switch (align) {
 340		case ATOM_SRC_DWORD:
 341			DEBUG(".[31:0] -> 0x%08X\n", val);
 342			break;
 343		case ATOM_SRC_WORD0:
 344			DEBUG(".[15:0] -> 0x%04X\n", val);
 345			break;
 346		case ATOM_SRC_WORD8:
 347			DEBUG(".[23:8] -> 0x%04X\n", val);
 348			break;
 349		case ATOM_SRC_WORD16:
 350			DEBUG(".[31:16] -> 0x%04X\n", val);
 351			break;
 352		case ATOM_SRC_BYTE0:
 353			DEBUG(".[7:0] -> 0x%02X\n", val);
 354			break;
 355		case ATOM_SRC_BYTE8:
 356			DEBUG(".[15:8] -> 0x%02X\n", val);
 357			break;
 358		case ATOM_SRC_BYTE16:
 359			DEBUG(".[23:16] -> 0x%02X\n", val);
 360			break;
 361		case ATOM_SRC_BYTE24:
 362			DEBUG(".[31:24] -> 0x%02X\n", val);
 363			break;
 364		}
 365	return val;
 366}
 367
 368static void atom_skip_src_int(atom_exec_context *ctx, uint8_t attr, int *ptr)
 369{
 370	uint32_t align = (attr >> 3) & 7, arg = attr & 7;
 371	switch (arg) {
 372	case ATOM_ARG_REG:
 373	case ATOM_ARG_ID:
 374		(*ptr) += 2;
 375		break;
 376	case ATOM_ARG_PLL:
 377	case ATOM_ARG_MC:
 378	case ATOM_ARG_PS:
 379	case ATOM_ARG_WS:
 380	case ATOM_ARG_FB:
 381		(*ptr)++;
 382		break;
 383	case ATOM_ARG_IMM:
 384		switch (align) {
 385		case ATOM_SRC_DWORD:
 386			(*ptr) += 4;
 387			return;
 388		case ATOM_SRC_WORD0:
 389		case ATOM_SRC_WORD8:
 390		case ATOM_SRC_WORD16:
 391			(*ptr) += 2;
 392			return;
 393		case ATOM_SRC_BYTE0:
 394		case ATOM_SRC_BYTE8:
 395		case ATOM_SRC_BYTE16:
 396		case ATOM_SRC_BYTE24:
 397			(*ptr)++;
 398			return;
 399		}
 400		return;
 401	}
 402}
 403
 404static uint32_t atom_get_src(atom_exec_context *ctx, uint8_t attr, int *ptr)
 405{
 406	return atom_get_src_int(ctx, attr, ptr, NULL, 1);
 407}
 408
 409static uint32_t atom_get_src_direct(atom_exec_context *ctx, uint8_t align, int *ptr)
 410{
 411	uint32_t val = 0xCDCDCDCD;
 412
 413	switch (align) {
 414	case ATOM_SRC_DWORD:
 415		val = U32(*ptr);
 416		(*ptr) += 4;
 417		break;
 418	case ATOM_SRC_WORD0:
 419	case ATOM_SRC_WORD8:
 420	case ATOM_SRC_WORD16:
 421		val = U16(*ptr);
 422		(*ptr) += 2;
 423		break;
 424	case ATOM_SRC_BYTE0:
 425	case ATOM_SRC_BYTE8:
 426	case ATOM_SRC_BYTE16:
 427	case ATOM_SRC_BYTE24:
 428		val = U8(*ptr);
 429		(*ptr)++;
 430		break;
 431	}
 432	return val;
 433}
 434
 435static uint32_t atom_get_dst(atom_exec_context *ctx, int arg, uint8_t attr,
 436			     int *ptr, uint32_t *saved, int print)
 437{
 438	return atom_get_src_int(ctx,
 439				arg | atom_dst_to_src[(attr >> 3) &
 440						      7][(attr >> 6) & 3] << 3,
 441				ptr, saved, print);
 442}
 443
 444static void atom_skip_dst(atom_exec_context *ctx, int arg, uint8_t attr, int *ptr)
 445{
 446	atom_skip_src_int(ctx,
 447			  arg | atom_dst_to_src[(attr >> 3) & 7][(attr >> 6) &
 448								 3] << 3, ptr);
 449}
 450
 451static void atom_put_dst(atom_exec_context *ctx, int arg, uint8_t attr,
 452			 int *ptr, uint32_t val, uint32_t saved)
 453{
 454	uint32_t align =
 455	    atom_dst_to_src[(attr >> 3) & 7][(attr >> 6) & 3], old_val =
 456	    val, idx;
 457	struct atom_context *gctx = ctx->ctx;
 458	old_val &= atom_arg_mask[align] >> atom_arg_shift[align];
 459	val <<= atom_arg_shift[align];
 460	val &= atom_arg_mask[align];
 461	saved &= ~atom_arg_mask[align];
 462	val |= saved;
 463	switch (arg) {
 464	case ATOM_ARG_REG:
 465		idx = U16(*ptr);
 466		(*ptr) += 2;
 467		DEBUG("REG[0x%04X]", idx);
 468		idx += gctx->reg_block;
 469		switch (gctx->io_mode) {
 470		case ATOM_IO_MM:
 471			if (idx == 0)
 472				gctx->card->reg_write(gctx->card, idx,
 473						      val << 2);
 474			else
 475				gctx->card->reg_write(gctx->card, idx, val);
 476			break;
 477		case ATOM_IO_PCI:
 478			pr_info("PCI registers are not implemented\n");
 479			return;
 480		case ATOM_IO_SYSIO:
 481			pr_info("SYSIO registers are not implemented\n");
 482			return;
 483		default:
 484			if (!(gctx->io_mode & 0x80)) {
 485				pr_info("Bad IO mode\n");
 486				return;
 487			}
 488			if (!gctx->iio[gctx->io_mode & 0xFF]) {
 489				pr_info("Undefined indirect IO write method %d\n",
 490					gctx->io_mode & 0x7F);
 491				return;
 492			}
 493			atom_iio_execute(gctx, gctx->iio[gctx->io_mode & 0xFF],
 494					 idx, val);
 495		}
 496		break;
 497	case ATOM_ARG_PS:
 498		idx = U8(*ptr);
 499		(*ptr)++;
 500		DEBUG("PS[0x%02X]", idx);
 501		ctx->ps[idx] = cpu_to_le32(val);
 502		break;
 503	case ATOM_ARG_WS:
 504		idx = U8(*ptr);
 505		(*ptr)++;
 506		DEBUG("WS[0x%02X]", idx);
 507		switch (idx) {
 508		case ATOM_WS_QUOTIENT:
 509			gctx->divmul[0] = val;
 510			break;
 511		case ATOM_WS_REMAINDER:
 512			gctx->divmul[1] = val;
 513			break;
 514		case ATOM_WS_DATAPTR:
 515			gctx->data_block = val;
 516			break;
 517		case ATOM_WS_SHIFT:
 518			gctx->shift = val;
 519			break;
 520		case ATOM_WS_OR_MASK:
 521		case ATOM_WS_AND_MASK:
 522			break;
 523		case ATOM_WS_FB_WINDOW:
 524			gctx->fb_base = val;
 525			break;
 526		case ATOM_WS_ATTRIBUTES:
 527			gctx->io_attr = val;
 528			break;
 529		case ATOM_WS_REGPTR:
 530			gctx->reg_block = val;
 531			break;
 532		default:
 533			ctx->ws[idx] = val;
 534		}
 535		break;
 536	case ATOM_ARG_FB:
 537		idx = U8(*ptr);
 538		(*ptr)++;
 539		if ((gctx->fb_base + (idx * 4)) > gctx->scratch_size_bytes) {
 540			DRM_ERROR("ATOM: fb write beyond scratch region: %d vs. %d\n",
 541				  gctx->fb_base + (idx * 4), gctx->scratch_size_bytes);
 542		} else
 543			gctx->scratch[(gctx->fb_base / 4) + idx] = val;
 544		DEBUG("FB[0x%02X]", idx);
 545		break;
 546	case ATOM_ARG_PLL:
 547		idx = U8(*ptr);
 548		(*ptr)++;
 549		DEBUG("PLL[0x%02X]", idx);
 550		gctx->card->pll_write(gctx->card, idx, val);
 551		break;
 552	case ATOM_ARG_MC:
 553		idx = U8(*ptr);
 554		(*ptr)++;
 555		DEBUG("MC[0x%02X]", idx);
 556		gctx->card->mc_write(gctx->card, idx, val);
 557		return;
 558	}
 559	switch (align) {
 560	case ATOM_SRC_DWORD:
 561		DEBUG(".[31:0] <- 0x%08X\n", old_val);
 562		break;
 563	case ATOM_SRC_WORD0:
 564		DEBUG(".[15:0] <- 0x%04X\n", old_val);
 565		break;
 566	case ATOM_SRC_WORD8:
 567		DEBUG(".[23:8] <- 0x%04X\n", old_val);
 568		break;
 569	case ATOM_SRC_WORD16:
 570		DEBUG(".[31:16] <- 0x%04X\n", old_val);
 571		break;
 572	case ATOM_SRC_BYTE0:
 573		DEBUG(".[7:0] <- 0x%02X\n", old_val);
 574		break;
 575	case ATOM_SRC_BYTE8:
 576		DEBUG(".[15:8] <- 0x%02X\n", old_val);
 577		break;
 578	case ATOM_SRC_BYTE16:
 579		DEBUG(".[23:16] <- 0x%02X\n", old_val);
 580		break;
 581	case ATOM_SRC_BYTE24:
 582		DEBUG(".[31:24] <- 0x%02X\n", old_val);
 583		break;
 584	}
 585}
 586
 587static void atom_op_add(atom_exec_context *ctx, int *ptr, int arg)
 588{
 589	uint8_t attr = U8((*ptr)++);
 590	uint32_t dst, src, saved;
 591	int dptr = *ptr;
 592	SDEBUG("   dst: ");
 593	dst = atom_get_dst(ctx, arg, attr, ptr, &saved, 1);
 594	SDEBUG("   src: ");
 595	src = atom_get_src(ctx, attr, ptr);
 596	dst += src;
 597	SDEBUG("   dst: ");
 598	atom_put_dst(ctx, arg, attr, &dptr, dst, saved);
 599}
 600
 601static void atom_op_and(atom_exec_context *ctx, int *ptr, int arg)
 602{
 603	uint8_t attr = U8((*ptr)++);
 604	uint32_t dst, src, saved;
 605	int dptr = *ptr;
 606	SDEBUG("   dst: ");
 607	dst = atom_get_dst(ctx, arg, attr, ptr, &saved, 1);
 608	SDEBUG("   src: ");
 609	src = atom_get_src(ctx, attr, ptr);
 610	dst &= src;
 611	SDEBUG("   dst: ");
 612	atom_put_dst(ctx, arg, attr, &dptr, dst, saved);
 613}
 614
 615static void atom_op_beep(atom_exec_context *ctx, int *ptr, int arg)
 616{
 617	printk("ATOM BIOS beeped!\n");
 618}
 619
 620static void atom_op_calltable(atom_exec_context *ctx, int *ptr, int arg)
 621{
 622	int idx = U8((*ptr)++);
 623	int r = 0;
 624
 625	if (idx < ATOM_TABLE_NAMES_CNT)
 626		SDEBUG("   table: %d (%s)\n", idx, atom_table_names[idx]);
 627	else
 628		SDEBUG("   table: %d\n", idx);
 629	if (U16(ctx->ctx->cmd_table + 4 + 2 * idx))
 630		r = atom_execute_table_locked(ctx->ctx, idx, ctx->ps + ctx->ps_shift);
 631	if (r) {
 632		ctx->abort = true;
 633	}
 634}
 635
 636static void atom_op_clear(atom_exec_context *ctx, int *ptr, int arg)
 637{
 638	uint8_t attr = U8((*ptr)++);
 639	uint32_t saved;
 640	int dptr = *ptr;
 641	attr &= 0x38;
 642	attr |= atom_def_dst[attr >> 3] << 6;
 643	atom_get_dst(ctx, arg, attr, ptr, &saved, 0);
 644	SDEBUG("   dst: ");
 645	atom_put_dst(ctx, arg, attr, &dptr, 0, saved);
 646}
 647
 648static void atom_op_compare(atom_exec_context *ctx, int *ptr, int arg)
 649{
 650	uint8_t attr = U8((*ptr)++);
 651	uint32_t dst, src;
 652	SDEBUG("   src1: ");
 653	dst = atom_get_dst(ctx, arg, attr, ptr, NULL, 1);
 654	SDEBUG("   src2: ");
 655	src = atom_get_src(ctx, attr, ptr);
 656	ctx->ctx->cs_equal = (dst == src);
 657	ctx->ctx->cs_above = (dst > src);
 658	SDEBUG("   result: %s %s\n", ctx->ctx->cs_equal ? "EQ" : "NE",
 659	       ctx->ctx->cs_above ? "GT" : "LE");
 660}
 661
 662static void atom_op_delay(atom_exec_context *ctx, int *ptr, int arg)
 663{
 664	unsigned count = U8((*ptr)++);
 665	SDEBUG("   count: %d\n", count);
 666	if (arg == ATOM_UNIT_MICROSEC)
 667		udelay(count);
 668	else if (!drm_can_sleep())
 669		mdelay(count);
 670	else
 671		msleep(count);
 672}
 673
 674static void atom_op_div(atom_exec_context *ctx, int *ptr, int arg)
 675{
 676	uint8_t attr = U8((*ptr)++);
 677	uint32_t dst, src;
 678	SDEBUG("   src1: ");
 679	dst = atom_get_dst(ctx, arg, attr, ptr, NULL, 1);
 680	SDEBUG("   src2: ");
 681	src = atom_get_src(ctx, attr, ptr);
 682	if (src != 0) {
 683		ctx->ctx->divmul[0] = dst / src;
 684		ctx->ctx->divmul[1] = dst % src;
 685	} else {
 686		ctx->ctx->divmul[0] = 0;
 687		ctx->ctx->divmul[1] = 0;
 688	}
 689}
 690
 691static void atom_op_eot(atom_exec_context *ctx, int *ptr, int arg)
 692{
 693	/* functionally, a nop */
 694}
 695
 696static void atom_op_jump(atom_exec_context *ctx, int *ptr, int arg)
 697{
 698	int execute = 0, target = U16(*ptr);
 699	unsigned long cjiffies;
 700
 701	(*ptr) += 2;
 702	switch (arg) {
 703	case ATOM_COND_ABOVE:
 704		execute = ctx->ctx->cs_above;
 705		break;
 706	case ATOM_COND_ABOVEOREQUAL:
 707		execute = ctx->ctx->cs_above || ctx->ctx->cs_equal;
 708		break;
 709	case ATOM_COND_ALWAYS:
 710		execute = 1;
 711		break;
 712	case ATOM_COND_BELOW:
 713		execute = !(ctx->ctx->cs_above || ctx->ctx->cs_equal);
 714		break;
 715	case ATOM_COND_BELOWOREQUAL:
 716		execute = !ctx->ctx->cs_above;
 717		break;
 718	case ATOM_COND_EQUAL:
 719		execute = ctx->ctx->cs_equal;
 720		break;
 721	case ATOM_COND_NOTEQUAL:
 722		execute = !ctx->ctx->cs_equal;
 723		break;
 724	}
 725	if (arg != ATOM_COND_ALWAYS)
 726		SDEBUG("   taken: %s\n", str_yes_no(execute));
 727	SDEBUG("   target: 0x%04X\n", target);
 728	if (execute) {
 729		if (ctx->last_jump == (ctx->start + target)) {
 730			cjiffies = jiffies;
 731			if (time_after(cjiffies, ctx->last_jump_jiffies)) {
 732				cjiffies -= ctx->last_jump_jiffies;
 733				if ((jiffies_to_msecs(cjiffies) > 5000)) {
 734					DRM_ERROR("atombios stuck in loop for more than 5secs aborting\n");
 735					ctx->abort = true;
 736				}
 737			} else {
 738				/* jiffies wrap around we will just wait a little longer */
 739				ctx->last_jump_jiffies = jiffies;
 740			}
 741		} else {
 742			ctx->last_jump = ctx->start + target;
 743			ctx->last_jump_jiffies = jiffies;
 744		}
 745		*ptr = ctx->start + target;
 746	}
 747}
 748
 749static void atom_op_mask(atom_exec_context *ctx, int *ptr, int arg)
 750{
 751	uint8_t attr = U8((*ptr)++);
 752	uint32_t dst, mask, src, saved;
 753	int dptr = *ptr;
 754	SDEBUG("   dst: ");
 755	dst = atom_get_dst(ctx, arg, attr, ptr, &saved, 1);
 756	mask = atom_get_src_direct(ctx, ((attr >> 3) & 7), ptr);
 757	SDEBUG("   mask: 0x%08x", mask);
 758	SDEBUG("   src: ");
 759	src = atom_get_src(ctx, attr, ptr);
 760	dst &= mask;
 761	dst |= src;
 762	SDEBUG("   dst: ");
 763	atom_put_dst(ctx, arg, attr, &dptr, dst, saved);
 764}
 765
 766static void atom_op_move(atom_exec_context *ctx, int *ptr, int arg)
 767{
 768	uint8_t attr = U8((*ptr)++);
 769	uint32_t src, saved;
 770	int dptr = *ptr;
 771	if (((attr >> 3) & 7) != ATOM_SRC_DWORD)
 772		atom_get_dst(ctx, arg, attr, ptr, &saved, 0);
 773	else {
 774		atom_skip_dst(ctx, arg, attr, ptr);
 775		saved = 0xCDCDCDCD;
 776	}
 777	SDEBUG("   src: ");
 778	src = atom_get_src(ctx, attr, ptr);
 779	SDEBUG("   dst: ");
 780	atom_put_dst(ctx, arg, attr, &dptr, src, saved);
 781}
 782
 783static void atom_op_mul(atom_exec_context *ctx, int *ptr, int arg)
 784{
 785	uint8_t attr = U8((*ptr)++);
 786	uint32_t dst, src;
 787	SDEBUG("   src1: ");
 788	dst = atom_get_dst(ctx, arg, attr, ptr, NULL, 1);
 789	SDEBUG("   src2: ");
 790	src = atom_get_src(ctx, attr, ptr);
 791	ctx->ctx->divmul[0] = dst * src;
 792}
 793
 794static void atom_op_nop(atom_exec_context *ctx, int *ptr, int arg)
 795{
 796	/* nothing */
 797}
 798
 799static void atom_op_or(atom_exec_context *ctx, int *ptr, int arg)
 800{
 801	uint8_t attr = U8((*ptr)++);
 802	uint32_t dst, src, saved;
 803	int dptr = *ptr;
 804	SDEBUG("   dst: ");
 805	dst = atom_get_dst(ctx, arg, attr, ptr, &saved, 1);
 806	SDEBUG("   src: ");
 807	src = atom_get_src(ctx, attr, ptr);
 808	dst |= src;
 809	SDEBUG("   dst: ");
 810	atom_put_dst(ctx, arg, attr, &dptr, dst, saved);
 811}
 812
 813static void atom_op_postcard(atom_exec_context *ctx, int *ptr, int arg)
 814{
 815	uint8_t val = U8((*ptr)++);
 816	SDEBUG("POST card output: 0x%02X\n", val);
 817}
 818
 819static void atom_op_repeat(atom_exec_context *ctx, int *ptr, int arg)
 820{
 821	pr_info("unimplemented!\n");
 822}
 823
 824static void atom_op_restorereg(atom_exec_context *ctx, int *ptr, int arg)
 825{
 826	pr_info("unimplemented!\n");
 827}
 828
 829static void atom_op_savereg(atom_exec_context *ctx, int *ptr, int arg)
 830{
 831	pr_info("unimplemented!\n");
 832}
 833
 834static void atom_op_setdatablock(atom_exec_context *ctx, int *ptr, int arg)
 835{
 836	int idx = U8(*ptr);
 837	(*ptr)++;
 838	SDEBUG("   block: %d\n", idx);
 839	if (!idx)
 840		ctx->ctx->data_block = 0;
 841	else if (idx == 255)
 842		ctx->ctx->data_block = ctx->start;
 843	else
 844		ctx->ctx->data_block = U16(ctx->ctx->data_table + 4 + 2 * idx);
 845	SDEBUG("   base: 0x%04X\n", ctx->ctx->data_block);
 846}
 847
 848static void atom_op_setfbbase(atom_exec_context *ctx, int *ptr, int arg)
 849{
 850	uint8_t attr = U8((*ptr)++);
 851	SDEBUG("   fb_base: ");
 852	ctx->ctx->fb_base = atom_get_src(ctx, attr, ptr);
 853}
 854
 855static void atom_op_setport(atom_exec_context *ctx, int *ptr, int arg)
 856{
 857	int port;
 858	switch (arg) {
 859	case ATOM_PORT_ATI:
 860		port = U16(*ptr);
 861		if (port < ATOM_IO_NAMES_CNT)
 862			SDEBUG("   port: %d (%s)\n", port, atom_io_names[port]);
 863		else
 864			SDEBUG("   port: %d\n", port);
 865		if (!port)
 866			ctx->ctx->io_mode = ATOM_IO_MM;
 867		else
 868			ctx->ctx->io_mode = ATOM_IO_IIO | port;
 869		(*ptr) += 2;
 870		break;
 871	case ATOM_PORT_PCI:
 872		ctx->ctx->io_mode = ATOM_IO_PCI;
 873		(*ptr)++;
 874		break;
 875	case ATOM_PORT_SYSIO:
 876		ctx->ctx->io_mode = ATOM_IO_SYSIO;
 877		(*ptr)++;
 878		break;
 879	}
 880}
 881
 882static void atom_op_setregblock(atom_exec_context *ctx, int *ptr, int arg)
 883{
 884	ctx->ctx->reg_block = U16(*ptr);
 885	(*ptr) += 2;
 886	SDEBUG("   base: 0x%04X\n", ctx->ctx->reg_block);
 887}
 888
 889static void atom_op_shift_left(atom_exec_context *ctx, int *ptr, int arg)
 890{
 891	uint8_t attr = U8((*ptr)++), shift;
 892	uint32_t saved, dst;
 893	int dptr = *ptr;
 894	attr &= 0x38;
 895	attr |= atom_def_dst[attr >> 3] << 6;
 896	SDEBUG("   dst: ");
 897	dst = atom_get_dst(ctx, arg, attr, ptr, &saved, 1);
 898	shift = atom_get_src_direct(ctx, ATOM_SRC_BYTE0, ptr);
 899	SDEBUG("   shift: %d\n", shift);
 900	dst <<= shift;
 901	SDEBUG("   dst: ");
 902	atom_put_dst(ctx, arg, attr, &dptr, dst, saved);
 903}
 904
 905static void atom_op_shift_right(atom_exec_context *ctx, int *ptr, int arg)
 906{
 907	uint8_t attr = U8((*ptr)++), shift;
 908	uint32_t saved, dst;
 909	int dptr = *ptr;
 910	attr &= 0x38;
 911	attr |= atom_def_dst[attr >> 3] << 6;
 912	SDEBUG("   dst: ");
 913	dst = atom_get_dst(ctx, arg, attr, ptr, &saved, 1);
 914	shift = atom_get_src_direct(ctx, ATOM_SRC_BYTE0, ptr);
 915	SDEBUG("   shift: %d\n", shift);
 916	dst >>= shift;
 917	SDEBUG("   dst: ");
 918	atom_put_dst(ctx, arg, attr, &dptr, dst, saved);
 919}
 920
 921static void atom_op_shl(atom_exec_context *ctx, int *ptr, int arg)
 922{
 923	uint8_t attr = U8((*ptr)++), shift;
 924	uint32_t saved, dst;
 925	int dptr = *ptr;
 926	uint32_t dst_align = atom_dst_to_src[(attr >> 3) & 7][(attr >> 6) & 3];
 927	SDEBUG("   dst: ");
 928	dst = atom_get_dst(ctx, arg, attr, ptr, &saved, 1);
 929	/* op needs to full dst value */
 930	dst = saved;
 931	shift = atom_get_src(ctx, attr, ptr);
 932	SDEBUG("   shift: %d\n", shift);
 933	dst <<= shift;
 934	dst &= atom_arg_mask[dst_align];
 935	dst >>= atom_arg_shift[dst_align];
 936	SDEBUG("   dst: ");
 937	atom_put_dst(ctx, arg, attr, &dptr, dst, saved);
 938}
 939
 940static void atom_op_shr(atom_exec_context *ctx, int *ptr, int arg)
 941{
 942	uint8_t attr = U8((*ptr)++), shift;
 943	uint32_t saved, dst;
 944	int dptr = *ptr;
 945	uint32_t dst_align = atom_dst_to_src[(attr >> 3) & 7][(attr >> 6) & 3];
 946	SDEBUG("   dst: ");
 947	dst = atom_get_dst(ctx, arg, attr, ptr, &saved, 1);
 948	/* op needs to full dst value */
 949	dst = saved;
 950	shift = atom_get_src(ctx, attr, ptr);
 951	SDEBUG("   shift: %d\n", shift);
 952	dst >>= shift;
 953	dst &= atom_arg_mask[dst_align];
 954	dst >>= atom_arg_shift[dst_align];
 955	SDEBUG("   dst: ");
 956	atom_put_dst(ctx, arg, attr, &dptr, dst, saved);
 957}
 958
 959static void atom_op_sub(atom_exec_context *ctx, int *ptr, int arg)
 960{
 961	uint8_t attr = U8((*ptr)++);
 962	uint32_t dst, src, saved;
 963	int dptr = *ptr;
 964	SDEBUG("   dst: ");
 965	dst = atom_get_dst(ctx, arg, attr, ptr, &saved, 1);
 966	SDEBUG("   src: ");
 967	src = atom_get_src(ctx, attr, ptr);
 968	dst -= src;
 969	SDEBUG("   dst: ");
 970	atom_put_dst(ctx, arg, attr, &dptr, dst, saved);
 971}
 972
 973static void atom_op_switch(atom_exec_context *ctx, int *ptr, int arg)
 974{
 975	uint8_t attr = U8((*ptr)++);
 976	uint32_t src, val, target;
 977	SDEBUG("   switch: ");
 978	src = atom_get_src(ctx, attr, ptr);
 979	while (U16(*ptr) != ATOM_CASE_END)
 980		if (U8(*ptr) == ATOM_CASE_MAGIC) {
 981			(*ptr)++;
 982			SDEBUG("   case: ");
 983			val =
 984			    atom_get_src(ctx, (attr & 0x38) | ATOM_ARG_IMM,
 985					 ptr);
 986			target = U16(*ptr);
 987			if (val == src) {
 988				SDEBUG("   target: %04X\n", target);
 989				*ptr = ctx->start + target;
 990				return;
 991			}
 992			(*ptr) += 2;
 993		} else {
 994			pr_info("Bad case\n");
 995			return;
 996		}
 997	(*ptr) += 2;
 998}
 999
1000static void atom_op_test(atom_exec_context *ctx, int *ptr, int arg)
1001{
1002	uint8_t attr = U8((*ptr)++);
1003	uint32_t dst, src;
1004	SDEBUG("   src1: ");
1005	dst = atom_get_dst(ctx, arg, attr, ptr, NULL, 1);
1006	SDEBUG("   src2: ");
1007	src = atom_get_src(ctx, attr, ptr);
1008	ctx->ctx->cs_equal = ((dst & src) == 0);
1009	SDEBUG("   result: %s\n", ctx->ctx->cs_equal ? "EQ" : "NE");
1010}
1011
1012static void atom_op_xor(atom_exec_context *ctx, int *ptr, int arg)
1013{
1014	uint8_t attr = U8((*ptr)++);
1015	uint32_t dst, src, saved;
1016	int dptr = *ptr;
1017	SDEBUG("   dst: ");
1018	dst = atom_get_dst(ctx, arg, attr, ptr, &saved, 1);
1019	SDEBUG("   src: ");
1020	src = atom_get_src(ctx, attr, ptr);
1021	dst ^= src;
1022	SDEBUG("   dst: ");
1023	atom_put_dst(ctx, arg, attr, &dptr, dst, saved);
1024}
1025
1026static void atom_op_debug(atom_exec_context *ctx, int *ptr, int arg)
1027{
1028	pr_info("unimplemented!\n");
1029}
1030
1031static struct {
1032	void (*func) (atom_exec_context *, int *, int);
1033	int arg;
1034} opcode_table[ATOM_OP_CNT] = {
1035	{
1036	NULL, 0}, {
1037	atom_op_move, ATOM_ARG_REG}, {
1038	atom_op_move, ATOM_ARG_PS}, {
1039	atom_op_move, ATOM_ARG_WS}, {
1040	atom_op_move, ATOM_ARG_FB}, {
1041	atom_op_move, ATOM_ARG_PLL}, {
1042	atom_op_move, ATOM_ARG_MC}, {
1043	atom_op_and, ATOM_ARG_REG}, {
1044	atom_op_and, ATOM_ARG_PS}, {
1045	atom_op_and, ATOM_ARG_WS}, {
1046	atom_op_and, ATOM_ARG_FB}, {
1047	atom_op_and, ATOM_ARG_PLL}, {
1048	atom_op_and, ATOM_ARG_MC}, {
1049	atom_op_or, ATOM_ARG_REG}, {
1050	atom_op_or, ATOM_ARG_PS}, {
1051	atom_op_or, ATOM_ARG_WS}, {
1052	atom_op_or, ATOM_ARG_FB}, {
1053	atom_op_or, ATOM_ARG_PLL}, {
1054	atom_op_or, ATOM_ARG_MC}, {
1055	atom_op_shift_left, ATOM_ARG_REG}, {
1056	atom_op_shift_left, ATOM_ARG_PS}, {
1057	atom_op_shift_left, ATOM_ARG_WS}, {
1058	atom_op_shift_left, ATOM_ARG_FB}, {
1059	atom_op_shift_left, ATOM_ARG_PLL}, {
1060	atom_op_shift_left, ATOM_ARG_MC}, {
1061	atom_op_shift_right, ATOM_ARG_REG}, {
1062	atom_op_shift_right, ATOM_ARG_PS}, {
1063	atom_op_shift_right, ATOM_ARG_WS}, {
1064	atom_op_shift_right, ATOM_ARG_FB}, {
1065	atom_op_shift_right, ATOM_ARG_PLL}, {
1066	atom_op_shift_right, ATOM_ARG_MC}, {
1067	atom_op_mul, ATOM_ARG_REG}, {
1068	atom_op_mul, ATOM_ARG_PS}, {
1069	atom_op_mul, ATOM_ARG_WS}, {
1070	atom_op_mul, ATOM_ARG_FB}, {
1071	atom_op_mul, ATOM_ARG_PLL}, {
1072	atom_op_mul, ATOM_ARG_MC}, {
1073	atom_op_div, ATOM_ARG_REG}, {
1074	atom_op_div, ATOM_ARG_PS}, {
1075	atom_op_div, ATOM_ARG_WS}, {
1076	atom_op_div, ATOM_ARG_FB}, {
1077	atom_op_div, ATOM_ARG_PLL}, {
1078	atom_op_div, ATOM_ARG_MC}, {
1079	atom_op_add, ATOM_ARG_REG}, {
1080	atom_op_add, ATOM_ARG_PS}, {
1081	atom_op_add, ATOM_ARG_WS}, {
1082	atom_op_add, ATOM_ARG_FB}, {
1083	atom_op_add, ATOM_ARG_PLL}, {
1084	atom_op_add, ATOM_ARG_MC}, {
1085	atom_op_sub, ATOM_ARG_REG}, {
1086	atom_op_sub, ATOM_ARG_PS}, {
1087	atom_op_sub, ATOM_ARG_WS}, {
1088	atom_op_sub, ATOM_ARG_FB}, {
1089	atom_op_sub, ATOM_ARG_PLL}, {
1090	atom_op_sub, ATOM_ARG_MC}, {
1091	atom_op_setport, ATOM_PORT_ATI}, {
1092	atom_op_setport, ATOM_PORT_PCI}, {
1093	atom_op_setport, ATOM_PORT_SYSIO}, {
1094	atom_op_setregblock, 0}, {
1095	atom_op_setfbbase, 0}, {
1096	atom_op_compare, ATOM_ARG_REG}, {
1097	atom_op_compare, ATOM_ARG_PS}, {
1098	atom_op_compare, ATOM_ARG_WS}, {
1099	atom_op_compare, ATOM_ARG_FB}, {
1100	atom_op_compare, ATOM_ARG_PLL}, {
1101	atom_op_compare, ATOM_ARG_MC}, {
1102	atom_op_switch, 0}, {
1103	atom_op_jump, ATOM_COND_ALWAYS}, {
1104	atom_op_jump, ATOM_COND_EQUAL}, {
1105	atom_op_jump, ATOM_COND_BELOW}, {
1106	atom_op_jump, ATOM_COND_ABOVE}, {
1107	atom_op_jump, ATOM_COND_BELOWOREQUAL}, {
1108	atom_op_jump, ATOM_COND_ABOVEOREQUAL}, {
1109	atom_op_jump, ATOM_COND_NOTEQUAL}, {
1110	atom_op_test, ATOM_ARG_REG}, {
1111	atom_op_test, ATOM_ARG_PS}, {
1112	atom_op_test, ATOM_ARG_WS}, {
1113	atom_op_test, ATOM_ARG_FB}, {
1114	atom_op_test, ATOM_ARG_PLL}, {
1115	atom_op_test, ATOM_ARG_MC}, {
1116	atom_op_delay, ATOM_UNIT_MILLISEC}, {
1117	atom_op_delay, ATOM_UNIT_MICROSEC}, {
1118	atom_op_calltable, 0}, {
1119	atom_op_repeat, 0}, {
1120	atom_op_clear, ATOM_ARG_REG}, {
1121	atom_op_clear, ATOM_ARG_PS}, {
1122	atom_op_clear, ATOM_ARG_WS}, {
1123	atom_op_clear, ATOM_ARG_FB}, {
1124	atom_op_clear, ATOM_ARG_PLL}, {
1125	atom_op_clear, ATOM_ARG_MC}, {
1126	atom_op_nop, 0}, {
1127	atom_op_eot, 0}, {
1128	atom_op_mask, ATOM_ARG_REG}, {
1129	atom_op_mask, ATOM_ARG_PS}, {
1130	atom_op_mask, ATOM_ARG_WS}, {
1131	atom_op_mask, ATOM_ARG_FB}, {
1132	atom_op_mask, ATOM_ARG_PLL}, {
1133	atom_op_mask, ATOM_ARG_MC}, {
1134	atom_op_postcard, 0}, {
1135	atom_op_beep, 0}, {
1136	atom_op_savereg, 0}, {
1137	atom_op_restorereg, 0}, {
1138	atom_op_setdatablock, 0}, {
1139	atom_op_xor, ATOM_ARG_REG}, {
1140	atom_op_xor, ATOM_ARG_PS}, {
1141	atom_op_xor, ATOM_ARG_WS}, {
1142	atom_op_xor, ATOM_ARG_FB}, {
1143	atom_op_xor, ATOM_ARG_PLL}, {
1144	atom_op_xor, ATOM_ARG_MC}, {
1145	atom_op_shl, ATOM_ARG_REG}, {
1146	atom_op_shl, ATOM_ARG_PS}, {
1147	atom_op_shl, ATOM_ARG_WS}, {
1148	atom_op_shl, ATOM_ARG_FB}, {
1149	atom_op_shl, ATOM_ARG_PLL}, {
1150	atom_op_shl, ATOM_ARG_MC}, {
1151	atom_op_shr, ATOM_ARG_REG}, {
1152	atom_op_shr, ATOM_ARG_PS}, {
1153	atom_op_shr, ATOM_ARG_WS}, {
1154	atom_op_shr, ATOM_ARG_FB}, {
1155	atom_op_shr, ATOM_ARG_PLL}, {
1156	atom_op_shr, ATOM_ARG_MC}, {
1157atom_op_debug, 0},};
1158
1159static int atom_execute_table_locked(struct atom_context *ctx, int index, uint32_t * params)
1160{
1161	int base = CU16(ctx->cmd_table + 4 + 2 * index);
1162	int len, ws, ps, ptr;
1163	unsigned char op;
1164	atom_exec_context ectx;
1165	int ret = 0;
1166
1167	if (!base)
1168		return -EINVAL;
1169
1170	len = CU16(base + ATOM_CT_SIZE_PTR);
1171	ws = CU8(base + ATOM_CT_WS_PTR);
1172	ps = CU8(base + ATOM_CT_PS_PTR) & ATOM_CT_PS_MASK;
1173	ptr = base + ATOM_CT_CODE_PTR;
1174
1175	SDEBUG(">> execute %04X (len %d, WS %d, PS %d)\n", base, len, ws, ps);
1176
1177	ectx.ctx = ctx;
1178	ectx.ps_shift = ps / 4;
1179	ectx.start = base;
1180	ectx.ps = params;
1181	ectx.abort = false;
1182	ectx.last_jump = 0;
1183	if (ws)
1184		ectx.ws = kcalloc(4, ws, GFP_KERNEL);
1185	else
1186		ectx.ws = NULL;
1187
1188	debug_depth++;
1189	while (1) {
1190		op = CU8(ptr++);
1191		if (op < ATOM_OP_NAMES_CNT)
1192			SDEBUG("%s @ 0x%04X\n", atom_op_names[op], ptr - 1);
1193		else
1194			SDEBUG("[%d] @ 0x%04X\n", op, ptr - 1);
1195		if (ectx.abort) {
1196			DRM_ERROR("atombios stuck executing %04X (len %d, WS %d, PS %d) @ 0x%04X\n",
1197				base, len, ws, ps, ptr - 1);
1198			ret = -EINVAL;
1199			goto free;
1200		}
1201
1202		if (op < ATOM_OP_CNT && op > 0)
1203			opcode_table[op].func(&ectx, &ptr,
1204					      opcode_table[op].arg);
1205		else
1206			break;
1207
1208		if (op == ATOM_OP_EOT)
1209			break;
1210	}
1211	debug_depth--;
1212	SDEBUG("<<\n");
1213
1214free:
1215	kfree(ectx.ws);
1216	return ret;
1217}
1218
1219int atom_execute_table_scratch_unlocked(struct atom_context *ctx, int index, uint32_t * params)
1220{
1221	int r;
1222
1223	mutex_lock(&ctx->mutex);
1224	/* reset data block */
1225	ctx->data_block = 0;
1226	/* reset reg block */
1227	ctx->reg_block = 0;
1228	/* reset fb window */
1229	ctx->fb_base = 0;
1230	/* reset io mode */
1231	ctx->io_mode = ATOM_IO_MM;
1232	/* reset divmul */
1233	ctx->divmul[0] = 0;
1234	ctx->divmul[1] = 0;
1235	r = atom_execute_table_locked(ctx, index, params);
1236	mutex_unlock(&ctx->mutex);
1237	return r;
1238}
1239
1240int atom_execute_table(struct atom_context *ctx, int index, uint32_t * params)
1241{
1242	int r;
1243	mutex_lock(&ctx->scratch_mutex);
1244	r = atom_execute_table_scratch_unlocked(ctx, index, params);
1245	mutex_unlock(&ctx->scratch_mutex);
1246	return r;
1247}
1248
1249static int atom_iio_len[] = { 1, 2, 3, 3, 3, 3, 4, 4, 4, 3 };
1250
1251static void atom_index_iio(struct atom_context *ctx, int base)
1252{
1253	ctx->iio = kzalloc(2 * 256, GFP_KERNEL);
1254	if (!ctx->iio)
1255		return;
1256	while (CU8(base) == ATOM_IIO_START) {
1257		ctx->iio[CU8(base + 1)] = base + 2;
1258		base += 2;
1259		while (CU8(base) != ATOM_IIO_END)
1260			base += atom_iio_len[CU8(base)];
1261		base += 3;
1262	}
1263}
1264
1265struct atom_context *atom_parse(struct card_info *card, void *bios)
1266{
1267	int base;
1268	struct atom_context *ctx =
1269	    kzalloc(sizeof(struct atom_context), GFP_KERNEL);
1270	char *str;
1271	char name[512];
1272	int i;
1273
1274	if (!ctx)
1275		return NULL;
1276
1277	ctx->card = card;
1278	ctx->bios = bios;
1279
1280	if (CU16(0) != ATOM_BIOS_MAGIC) {
1281		pr_info("Invalid BIOS magic\n");
1282		kfree(ctx);
1283		return NULL;
1284	}
1285	if (strncmp
1286	    (CSTR(ATOM_ATI_MAGIC_PTR), ATOM_ATI_MAGIC,
1287	     strlen(ATOM_ATI_MAGIC))) {
1288		pr_info("Invalid ATI magic\n");
1289		kfree(ctx);
1290		return NULL;
1291	}
1292
1293	base = CU16(ATOM_ROM_TABLE_PTR);
1294	if (strncmp
1295	    (CSTR(base + ATOM_ROM_MAGIC_PTR), ATOM_ROM_MAGIC,
1296	     strlen(ATOM_ROM_MAGIC))) {
1297		pr_info("Invalid ATOM magic\n");
1298		kfree(ctx);
1299		return NULL;
1300	}
1301
1302	ctx->cmd_table = CU16(base + ATOM_ROM_CMD_PTR);
1303	ctx->data_table = CU16(base + ATOM_ROM_DATA_PTR);
1304	atom_index_iio(ctx, CU16(ctx->data_table + ATOM_DATA_IIO_PTR) + 4);
1305	if (!ctx->iio) {
1306		atom_destroy(ctx);
1307		return NULL;
1308	}
1309
1310	str = CSTR(CU16(base + ATOM_ROM_MSG_PTR));
1311	while (*str && ((*str == '\n') || (*str == '\r')))
1312		str++;
1313	/* name string isn't always 0 terminated */
1314	for (i = 0; i < 511; i++) {
1315		name[i] = str[i];
1316		if (name[i] < '.' || name[i] > 'z') {
1317			name[i] = 0;
1318			break;
1319		}
1320	}
1321	pr_info("ATOM BIOS: %s\n", name);
1322
1323	return ctx;
1324}
1325
1326int atom_asic_init(struct atom_context *ctx)
1327{
1328	struct radeon_device *rdev = ctx->card->dev->dev_private;
1329	int hwi = CU16(ctx->data_table + ATOM_DATA_FWI_PTR);
1330	uint32_t ps[16];
1331	int ret;
1332
1333	memset(ps, 0, 64);
1334
1335	ps[0] = cpu_to_le32(CU32(hwi + ATOM_FWI_DEFSCLK_PTR));
1336	ps[1] = cpu_to_le32(CU32(hwi + ATOM_FWI_DEFMCLK_PTR));
1337	if (!ps[0] || !ps[1])
1338		return 1;
1339
1340	if (!CU16(ctx->cmd_table + 4 + 2 * ATOM_CMD_INIT))
1341		return 1;
1342	ret = atom_execute_table(ctx, ATOM_CMD_INIT, ps);
1343	if (ret)
1344		return ret;
1345
1346	memset(ps, 0, 64);
1347
1348	if (rdev->family < CHIP_R600) {
1349		if (CU16(ctx->cmd_table + 4 + 2 * ATOM_CMD_SPDFANCNTL))
1350			atom_execute_table(ctx, ATOM_CMD_SPDFANCNTL, ps);
1351	}
1352	return ret;
1353}
1354
1355void atom_destroy(struct atom_context *ctx)
1356{
1357	kfree(ctx->iio);
1358	kfree(ctx);
1359}
1360
1361bool atom_parse_data_header(struct atom_context *ctx, int index,
1362			    uint16_t * size, uint8_t * frev, uint8_t * crev,
1363			    uint16_t * data_start)
1364{
1365	int offset = index * 2 + 4;
1366	int idx = CU16(ctx->data_table + offset);
1367	u16 *mdt = (u16 *)(ctx->bios + ctx->data_table + 4);
1368
1369	if (!mdt[index])
1370		return false;
1371
1372	if (size)
1373		*size = CU16(idx);
1374	if (frev)
1375		*frev = CU8(idx + 2);
1376	if (crev)
1377		*crev = CU8(idx + 3);
1378	*data_start = idx;
1379	return true;
1380}
1381
1382bool atom_parse_cmd_header(struct atom_context *ctx, int index, uint8_t * frev,
1383			   uint8_t * crev)
1384{
1385	int offset = index * 2 + 4;
1386	int idx = CU16(ctx->cmd_table + offset);
1387	u16 *mct = (u16 *)(ctx->bios + ctx->cmd_table + 4);
1388
1389	if (!mct[index])
1390		return false;
1391
1392	if (frev)
1393		*frev = CU8(idx + 2);
1394	if (crev)
1395		*crev = CU8(idx + 3);
1396	return true;
1397}
1398
1399int atom_allocate_fb_scratch(struct atom_context *ctx)
1400{
1401	int index = GetIndexIntoMasterTable(DATA, VRAM_UsageByFirmware);
1402	uint16_t data_offset;
1403	int usage_bytes = 0;
1404	struct _ATOM_VRAM_USAGE_BY_FIRMWARE *firmware_usage;
1405
1406	if (atom_parse_data_header(ctx, index, NULL, NULL, NULL, &data_offset)) {
1407		firmware_usage = (struct _ATOM_VRAM_USAGE_BY_FIRMWARE *)(ctx->bios + data_offset);
1408
1409		DRM_DEBUG("atom firmware requested %08x %dkb\n",
1410			  le32_to_cpu(firmware_usage->asFirmwareVramReserveInfo[0].ulStartAddrUsedByFirmware),
1411			  le16_to_cpu(firmware_usage->asFirmwareVramReserveInfo[0].usFirmwareUseInKb));
1412
1413		usage_bytes = le16_to_cpu(firmware_usage->asFirmwareVramReserveInfo[0].usFirmwareUseInKb) * 1024;
1414	}
1415	ctx->scratch_size_bytes = 0;
1416	if (usage_bytes == 0)
1417		usage_bytes = 20 * 1024;
1418	/* allocate some scratch memory */
1419	ctx->scratch = kzalloc(usage_bytes, GFP_KERNEL);
1420	if (!ctx->scratch)
1421		return -ENOMEM;
1422	ctx->scratch_size_bytes = usage_bytes;
1423	return 0;
1424}
v6.8
   1/*
   2 * Copyright 2008 Advanced Micro Devices, Inc.
   3 *
   4 * Permission is hereby granted, free of charge, to any person obtaining a
   5 * copy of this software and associated documentation files (the "Software"),
   6 * to deal in the Software without restriction, including without limitation
   7 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
   8 * and/or sell copies of the Software, and to permit persons to whom the
   9 * Software is furnished to do so, subject to the following conditions:
  10 *
  11 * The above copyright notice and this permission notice shall be included in
  12 * all copies or substantial portions of the Software.
  13 *
  14 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  15 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  16 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
  17 * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
  18 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
  19 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
  20 * OTHER DEALINGS IN THE SOFTWARE.
  21 *
  22 * Author: Stanislaw Skowronek
  23 */
  24
  25#include <linux/module.h>
  26#include <linux/sched.h>
  27#include <linux/slab.h>
  28#include <linux/string_helpers.h>
  29
  30#include <asm/unaligned.h>
  31
  32#include <drm/drm_device.h>
  33#include <drm/drm_util.h>
  34
  35#define ATOM_DEBUG
  36
  37#include "atom.h"
  38#include "atom-names.h"
  39#include "atom-bits.h"
  40#include "radeon.h"
  41
  42#define ATOM_COND_ABOVE		0
  43#define ATOM_COND_ABOVEOREQUAL	1
  44#define ATOM_COND_ALWAYS	2
  45#define ATOM_COND_BELOW		3
  46#define ATOM_COND_BELOWOREQUAL	4
  47#define ATOM_COND_EQUAL		5
  48#define ATOM_COND_NOTEQUAL	6
  49
  50#define ATOM_PORT_ATI	0
  51#define ATOM_PORT_PCI	1
  52#define ATOM_PORT_SYSIO	2
  53
  54#define ATOM_UNIT_MICROSEC	0
  55#define ATOM_UNIT_MILLISEC	1
  56
  57#define PLL_INDEX	2
  58#define PLL_DATA	3
  59
  60typedef struct {
  61	struct atom_context *ctx;
  62	uint32_t *ps, *ws;
  63	int ps_shift;
  64	uint16_t start;
  65	unsigned last_jump;
  66	unsigned long last_jump_jiffies;
  67	bool abort;
  68} atom_exec_context;
  69
  70int atom_debug = 0;
  71static int atom_execute_table_locked(struct atom_context *ctx, int index, uint32_t *params);
  72int atom_execute_table(struct atom_context *ctx, int index, uint32_t *params);
  73
  74static uint32_t atom_arg_mask[8] = {
  75	0xFFFFFFFF, 0x0000FFFF, 0x00FFFF00, 0xFFFF0000,
  76	0x000000FF, 0x0000FF00, 0x00FF0000, 0xFF000000
  77};
  78static int atom_arg_shift[8] = { 0, 0, 8, 16, 0, 8, 16, 24 };
  79
  80static int atom_dst_to_src[8][4] = {
  81	/* translate destination alignment field to the source alignment encoding */
  82	{0, 0, 0, 0},
  83	{1, 2, 3, 0},
  84	{1, 2, 3, 0},
  85	{1, 2, 3, 0},
  86	{4, 5, 6, 7},
  87	{4, 5, 6, 7},
  88	{4, 5, 6, 7},
  89	{4, 5, 6, 7},
  90};
  91static int atom_def_dst[8] = { 0, 0, 1, 2, 0, 1, 2, 3 };
  92
  93static int debug_depth = 0;
  94#ifdef ATOM_DEBUG
  95static void debug_print_spaces(int n)
  96{
  97	while (n--)
  98		printk("   ");
  99}
 100
 101#define DEBUG(...) do if (atom_debug) { printk(KERN_DEBUG __VA_ARGS__); } while (0)
 102#define SDEBUG(...) do if (atom_debug) { printk(KERN_DEBUG); debug_print_spaces(debug_depth); printk(__VA_ARGS__); } while (0)
 103#else
 104#define DEBUG(...) do { } while (0)
 105#define SDEBUG(...) do { } while (0)
 106#endif
 107
 108static uint32_t atom_iio_execute(struct atom_context *ctx, int base,
 109				 uint32_t index, uint32_t data)
 110{
 111	struct radeon_device *rdev = ctx->card->dev->dev_private;
 112	uint32_t temp = 0xCDCDCDCD;
 113
 114	while (1)
 115		switch (CU8(base)) {
 116		case ATOM_IIO_NOP:
 117			base++;
 118			break;
 119		case ATOM_IIO_READ:
 120			temp = ctx->card->ioreg_read(ctx->card, CU16(base + 1));
 121			base += 3;
 122			break;
 123		case ATOM_IIO_WRITE:
 124			if (rdev->family == CHIP_RV515)
 125				(void)ctx->card->ioreg_read(ctx->card, CU16(base + 1));
 126			ctx->card->ioreg_write(ctx->card, CU16(base + 1), temp);
 127			base += 3;
 128			break;
 129		case ATOM_IIO_CLEAR:
 130			temp &=
 131			    ~((0xFFFFFFFF >> (32 - CU8(base + 1))) <<
 132			      CU8(base + 2));
 133			base += 3;
 134			break;
 135		case ATOM_IIO_SET:
 136			temp |=
 137			    (0xFFFFFFFF >> (32 - CU8(base + 1))) << CU8(base +
 138									2);
 139			base += 3;
 140			break;
 141		case ATOM_IIO_MOVE_INDEX:
 142			temp &=
 143			    ~((0xFFFFFFFF >> (32 - CU8(base + 1))) <<
 144			      CU8(base + 3));
 145			temp |=
 146			    ((index >> CU8(base + 2)) &
 147			     (0xFFFFFFFF >> (32 - CU8(base + 1)))) << CU8(base +
 148									  3);
 149			base += 4;
 150			break;
 151		case ATOM_IIO_MOVE_DATA:
 152			temp &=
 153			    ~((0xFFFFFFFF >> (32 - CU8(base + 1))) <<
 154			      CU8(base + 3));
 155			temp |=
 156			    ((data >> CU8(base + 2)) &
 157			     (0xFFFFFFFF >> (32 - CU8(base + 1)))) << CU8(base +
 158									  3);
 159			base += 4;
 160			break;
 161		case ATOM_IIO_MOVE_ATTR:
 162			temp &=
 163			    ~((0xFFFFFFFF >> (32 - CU8(base + 1))) <<
 164			      CU8(base + 3));
 165			temp |=
 166			    ((ctx->io_attr >> CU8(base + 2)) &
 167			     (0xFFFFFFFF >> (32 - CU8(base + 1)))) <<
 168			     CU8(base + 3);
 
 
 
 
 169			base += 4;
 170			break;
 171		case ATOM_IIO_END:
 172			return temp;
 173		default:
 174			pr_info("Unknown IIO opcode\n");
 175			return 0;
 176		}
 177}
 178
 179static uint32_t atom_get_src_int(atom_exec_context *ctx, uint8_t attr,
 180				 int *ptr, uint32_t *saved, int print)
 181{
 182	uint32_t idx, val = 0xCDCDCDCD, align, arg;
 183	struct atom_context *gctx = ctx->ctx;
 184	arg = attr & 7;
 185	align = (attr >> 3) & 7;
 186	switch (arg) {
 187	case ATOM_ARG_REG:
 188		idx = U16(*ptr);
 189		(*ptr) += 2;
 190		if (print)
 191			DEBUG("REG[0x%04X]", idx);
 192		idx += gctx->reg_block;
 193		switch (gctx->io_mode) {
 194		case ATOM_IO_MM:
 195			val = gctx->card->reg_read(gctx->card, idx);
 196			break;
 197		case ATOM_IO_PCI:
 198			pr_info("PCI registers are not implemented\n");
 199			return 0;
 200		case ATOM_IO_SYSIO:
 201			pr_info("SYSIO registers are not implemented\n");
 202			return 0;
 203		default:
 204			if (!(gctx->io_mode & 0x80)) {
 205				pr_info("Bad IO mode\n");
 206				return 0;
 207			}
 208			if (!gctx->iio[gctx->io_mode & 0x7F]) {
 209				pr_info("Undefined indirect IO read method %d\n",
 210					gctx->io_mode & 0x7F);
 211				return 0;
 212			}
 213			val =
 214			    atom_iio_execute(gctx,
 215					     gctx->iio[gctx->io_mode & 0x7F],
 216					     idx, 0);
 217		}
 218		break;
 219	case ATOM_ARG_PS:
 220		idx = U8(*ptr);
 221		(*ptr)++;
 222		/* get_unaligned_le32 avoids unaligned accesses from atombios
 223		 * tables, noticed on a DEC Alpha. */
 224		val = get_unaligned_le32((u32 *)&ctx->ps[idx]);
 225		if (print)
 226			DEBUG("PS[0x%02X,0x%04X]", idx, val);
 227		break;
 228	case ATOM_ARG_WS:
 229		idx = U8(*ptr);
 230		(*ptr)++;
 231		if (print)
 232			DEBUG("WS[0x%02X]", idx);
 233		switch (idx) {
 234		case ATOM_WS_QUOTIENT:
 235			val = gctx->divmul[0];
 236			break;
 237		case ATOM_WS_REMAINDER:
 238			val = gctx->divmul[1];
 239			break;
 240		case ATOM_WS_DATAPTR:
 241			val = gctx->data_block;
 242			break;
 243		case ATOM_WS_SHIFT:
 244			val = gctx->shift;
 245			break;
 246		case ATOM_WS_OR_MASK:
 247			val = 1 << gctx->shift;
 248			break;
 249		case ATOM_WS_AND_MASK:
 250			val = ~(1 << gctx->shift);
 251			break;
 252		case ATOM_WS_FB_WINDOW:
 253			val = gctx->fb_base;
 254			break;
 255		case ATOM_WS_ATTRIBUTES:
 256			val = gctx->io_attr;
 257			break;
 258		case ATOM_WS_REGPTR:
 259			val = gctx->reg_block;
 260			break;
 261		default:
 262			val = ctx->ws[idx];
 263		}
 264		break;
 265	case ATOM_ARG_ID:
 266		idx = U16(*ptr);
 267		(*ptr) += 2;
 268		if (print) {
 269			if (gctx->data_block)
 270				DEBUG("ID[0x%04X+%04X]", idx, gctx->data_block);
 271			else
 272				DEBUG("ID[0x%04X]", idx);
 273		}
 274		val = U32(idx + gctx->data_block);
 275		break;
 276	case ATOM_ARG_FB:
 277		idx = U8(*ptr);
 278		(*ptr)++;
 279		if ((gctx->fb_base + (idx * 4)) > gctx->scratch_size_bytes) {
 280			DRM_ERROR("ATOM: fb read beyond scratch region: %d vs. %d\n",
 281				  gctx->fb_base + (idx * 4), gctx->scratch_size_bytes);
 282			val = 0;
 283		} else
 284			val = gctx->scratch[(gctx->fb_base / 4) + idx];
 285		if (print)
 286			DEBUG("FB[0x%02X]", idx);
 287		break;
 288	case ATOM_ARG_IMM:
 289		switch (align) {
 290		case ATOM_SRC_DWORD:
 291			val = U32(*ptr);
 292			(*ptr) += 4;
 293			if (print)
 294				DEBUG("IMM 0x%08X\n", val);
 295			return val;
 296		case ATOM_SRC_WORD0:
 297		case ATOM_SRC_WORD8:
 298		case ATOM_SRC_WORD16:
 299			val = U16(*ptr);
 300			(*ptr) += 2;
 301			if (print)
 302				DEBUG("IMM 0x%04X\n", val);
 303			return val;
 304		case ATOM_SRC_BYTE0:
 305		case ATOM_SRC_BYTE8:
 306		case ATOM_SRC_BYTE16:
 307		case ATOM_SRC_BYTE24:
 308			val = U8(*ptr);
 309			(*ptr)++;
 310			if (print)
 311				DEBUG("IMM 0x%02X\n", val);
 312			return val;
 313		}
 314		return 0;
 315	case ATOM_ARG_PLL:
 316		idx = U8(*ptr);
 317		(*ptr)++;
 318		if (print)
 319			DEBUG("PLL[0x%02X]", idx);
 320		val = gctx->card->pll_read(gctx->card, idx);
 321		break;
 322	case ATOM_ARG_MC:
 323		idx = U8(*ptr);
 324		(*ptr)++;
 325		if (print)
 326			DEBUG("MC[0x%02X]", idx);
 327		val = gctx->card->mc_read(gctx->card, idx);
 328		break;
 329	}
 330	if (saved)
 331		*saved = val;
 332	val &= atom_arg_mask[align];
 333	val >>= atom_arg_shift[align];
 334	if (print)
 335		switch (align) {
 336		case ATOM_SRC_DWORD:
 337			DEBUG(".[31:0] -> 0x%08X\n", val);
 338			break;
 339		case ATOM_SRC_WORD0:
 340			DEBUG(".[15:0] -> 0x%04X\n", val);
 341			break;
 342		case ATOM_SRC_WORD8:
 343			DEBUG(".[23:8] -> 0x%04X\n", val);
 344			break;
 345		case ATOM_SRC_WORD16:
 346			DEBUG(".[31:16] -> 0x%04X\n", val);
 347			break;
 348		case ATOM_SRC_BYTE0:
 349			DEBUG(".[7:0] -> 0x%02X\n", val);
 350			break;
 351		case ATOM_SRC_BYTE8:
 352			DEBUG(".[15:8] -> 0x%02X\n", val);
 353			break;
 354		case ATOM_SRC_BYTE16:
 355			DEBUG(".[23:16] -> 0x%02X\n", val);
 356			break;
 357		case ATOM_SRC_BYTE24:
 358			DEBUG(".[31:24] -> 0x%02X\n", val);
 359			break;
 360		}
 361	return val;
 362}
 363
 364static void atom_skip_src_int(atom_exec_context *ctx, uint8_t attr, int *ptr)
 365{
 366	uint32_t align = (attr >> 3) & 7, arg = attr & 7;
 367	switch (arg) {
 368	case ATOM_ARG_REG:
 369	case ATOM_ARG_ID:
 370		(*ptr) += 2;
 371		break;
 372	case ATOM_ARG_PLL:
 373	case ATOM_ARG_MC:
 374	case ATOM_ARG_PS:
 375	case ATOM_ARG_WS:
 376	case ATOM_ARG_FB:
 377		(*ptr)++;
 378		break;
 379	case ATOM_ARG_IMM:
 380		switch (align) {
 381		case ATOM_SRC_DWORD:
 382			(*ptr) += 4;
 383			return;
 384		case ATOM_SRC_WORD0:
 385		case ATOM_SRC_WORD8:
 386		case ATOM_SRC_WORD16:
 387			(*ptr) += 2;
 388			return;
 389		case ATOM_SRC_BYTE0:
 390		case ATOM_SRC_BYTE8:
 391		case ATOM_SRC_BYTE16:
 392		case ATOM_SRC_BYTE24:
 393			(*ptr)++;
 394			return;
 395		}
 396		return;
 397	}
 398}
 399
 400static uint32_t atom_get_src(atom_exec_context *ctx, uint8_t attr, int *ptr)
 401{
 402	return atom_get_src_int(ctx, attr, ptr, NULL, 1);
 403}
 404
 405static uint32_t atom_get_src_direct(atom_exec_context *ctx, uint8_t align, int *ptr)
 406{
 407	uint32_t val = 0xCDCDCDCD;
 408
 409	switch (align) {
 410	case ATOM_SRC_DWORD:
 411		val = U32(*ptr);
 412		(*ptr) += 4;
 413		break;
 414	case ATOM_SRC_WORD0:
 415	case ATOM_SRC_WORD8:
 416	case ATOM_SRC_WORD16:
 417		val = U16(*ptr);
 418		(*ptr) += 2;
 419		break;
 420	case ATOM_SRC_BYTE0:
 421	case ATOM_SRC_BYTE8:
 422	case ATOM_SRC_BYTE16:
 423	case ATOM_SRC_BYTE24:
 424		val = U8(*ptr);
 425		(*ptr)++;
 426		break;
 427	}
 428	return val;
 429}
 430
 431static uint32_t atom_get_dst(atom_exec_context *ctx, int arg, uint8_t attr,
 432			     int *ptr, uint32_t *saved, int print)
 433{
 434	return atom_get_src_int(ctx,
 435				arg | atom_dst_to_src[(attr >> 3) &
 436						      7][(attr >> 6) & 3] << 3,
 437				ptr, saved, print);
 438}
 439
 440static void atom_skip_dst(atom_exec_context *ctx, int arg, uint8_t attr, int *ptr)
 441{
 442	atom_skip_src_int(ctx,
 443			  arg | atom_dst_to_src[(attr >> 3) & 7][(attr >> 6) &
 444								 3] << 3, ptr);
 445}
 446
 447static void atom_put_dst(atom_exec_context *ctx, int arg, uint8_t attr,
 448			 int *ptr, uint32_t val, uint32_t saved)
 449{
 450	uint32_t align =
 451	    atom_dst_to_src[(attr >> 3) & 7][(attr >> 6) & 3], old_val =
 452	    val, idx;
 453	struct atom_context *gctx = ctx->ctx;
 454	old_val &= atom_arg_mask[align] >> atom_arg_shift[align];
 455	val <<= atom_arg_shift[align];
 456	val &= atom_arg_mask[align];
 457	saved &= ~atom_arg_mask[align];
 458	val |= saved;
 459	switch (arg) {
 460	case ATOM_ARG_REG:
 461		idx = U16(*ptr);
 462		(*ptr) += 2;
 463		DEBUG("REG[0x%04X]", idx);
 464		idx += gctx->reg_block;
 465		switch (gctx->io_mode) {
 466		case ATOM_IO_MM:
 467			if (idx == 0)
 468				gctx->card->reg_write(gctx->card, idx,
 469						      val << 2);
 470			else
 471				gctx->card->reg_write(gctx->card, idx, val);
 472			break;
 473		case ATOM_IO_PCI:
 474			pr_info("PCI registers are not implemented\n");
 475			return;
 476		case ATOM_IO_SYSIO:
 477			pr_info("SYSIO registers are not implemented\n");
 478			return;
 479		default:
 480			if (!(gctx->io_mode & 0x80)) {
 481				pr_info("Bad IO mode\n");
 482				return;
 483			}
 484			if (!gctx->iio[gctx->io_mode & 0xFF]) {
 485				pr_info("Undefined indirect IO write method %d\n",
 486					gctx->io_mode & 0x7F);
 487				return;
 488			}
 489			atom_iio_execute(gctx, gctx->iio[gctx->io_mode & 0xFF],
 490					 idx, val);
 491		}
 492		break;
 493	case ATOM_ARG_PS:
 494		idx = U8(*ptr);
 495		(*ptr)++;
 496		DEBUG("PS[0x%02X]", idx);
 497		ctx->ps[idx] = cpu_to_le32(val);
 498		break;
 499	case ATOM_ARG_WS:
 500		idx = U8(*ptr);
 501		(*ptr)++;
 502		DEBUG("WS[0x%02X]", idx);
 503		switch (idx) {
 504		case ATOM_WS_QUOTIENT:
 505			gctx->divmul[0] = val;
 506			break;
 507		case ATOM_WS_REMAINDER:
 508			gctx->divmul[1] = val;
 509			break;
 510		case ATOM_WS_DATAPTR:
 511			gctx->data_block = val;
 512			break;
 513		case ATOM_WS_SHIFT:
 514			gctx->shift = val;
 515			break;
 516		case ATOM_WS_OR_MASK:
 517		case ATOM_WS_AND_MASK:
 518			break;
 519		case ATOM_WS_FB_WINDOW:
 520			gctx->fb_base = val;
 521			break;
 522		case ATOM_WS_ATTRIBUTES:
 523			gctx->io_attr = val;
 524			break;
 525		case ATOM_WS_REGPTR:
 526			gctx->reg_block = val;
 527			break;
 528		default:
 529			ctx->ws[idx] = val;
 530		}
 531		break;
 532	case ATOM_ARG_FB:
 533		idx = U8(*ptr);
 534		(*ptr)++;
 535		if ((gctx->fb_base + (idx * 4)) > gctx->scratch_size_bytes) {
 536			DRM_ERROR("ATOM: fb write beyond scratch region: %d vs. %d\n",
 537				  gctx->fb_base + (idx * 4), gctx->scratch_size_bytes);
 538		} else
 539			gctx->scratch[(gctx->fb_base / 4) + idx] = val;
 540		DEBUG("FB[0x%02X]", idx);
 541		break;
 542	case ATOM_ARG_PLL:
 543		idx = U8(*ptr);
 544		(*ptr)++;
 545		DEBUG("PLL[0x%02X]", idx);
 546		gctx->card->pll_write(gctx->card, idx, val);
 547		break;
 548	case ATOM_ARG_MC:
 549		idx = U8(*ptr);
 550		(*ptr)++;
 551		DEBUG("MC[0x%02X]", idx);
 552		gctx->card->mc_write(gctx->card, idx, val);
 553		return;
 554	}
 555	switch (align) {
 556	case ATOM_SRC_DWORD:
 557		DEBUG(".[31:0] <- 0x%08X\n", old_val);
 558		break;
 559	case ATOM_SRC_WORD0:
 560		DEBUG(".[15:0] <- 0x%04X\n", old_val);
 561		break;
 562	case ATOM_SRC_WORD8:
 563		DEBUG(".[23:8] <- 0x%04X\n", old_val);
 564		break;
 565	case ATOM_SRC_WORD16:
 566		DEBUG(".[31:16] <- 0x%04X\n", old_val);
 567		break;
 568	case ATOM_SRC_BYTE0:
 569		DEBUG(".[7:0] <- 0x%02X\n", old_val);
 570		break;
 571	case ATOM_SRC_BYTE8:
 572		DEBUG(".[15:8] <- 0x%02X\n", old_val);
 573		break;
 574	case ATOM_SRC_BYTE16:
 575		DEBUG(".[23:16] <- 0x%02X\n", old_val);
 576		break;
 577	case ATOM_SRC_BYTE24:
 578		DEBUG(".[31:24] <- 0x%02X\n", old_val);
 579		break;
 580	}
 581}
 582
 583static void atom_op_add(atom_exec_context *ctx, int *ptr, int arg)
 584{
 585	uint8_t attr = U8((*ptr)++);
 586	uint32_t dst, src, saved;
 587	int dptr = *ptr;
 588	SDEBUG("   dst: ");
 589	dst = atom_get_dst(ctx, arg, attr, ptr, &saved, 1);
 590	SDEBUG("   src: ");
 591	src = atom_get_src(ctx, attr, ptr);
 592	dst += src;
 593	SDEBUG("   dst: ");
 594	atom_put_dst(ctx, arg, attr, &dptr, dst, saved);
 595}
 596
 597static void atom_op_and(atom_exec_context *ctx, int *ptr, int arg)
 598{
 599	uint8_t attr = U8((*ptr)++);
 600	uint32_t dst, src, saved;
 601	int dptr = *ptr;
 602	SDEBUG("   dst: ");
 603	dst = atom_get_dst(ctx, arg, attr, ptr, &saved, 1);
 604	SDEBUG("   src: ");
 605	src = atom_get_src(ctx, attr, ptr);
 606	dst &= src;
 607	SDEBUG("   dst: ");
 608	atom_put_dst(ctx, arg, attr, &dptr, dst, saved);
 609}
 610
 611static void atom_op_beep(atom_exec_context *ctx, int *ptr, int arg)
 612{
 613	printk("ATOM BIOS beeped!\n");
 614}
 615
 616static void atom_op_calltable(atom_exec_context *ctx, int *ptr, int arg)
 617{
 618	int idx = U8((*ptr)++);
 619	int r = 0;
 620
 621	if (idx < ATOM_TABLE_NAMES_CNT)
 622		SDEBUG("   table: %d (%s)\n", idx, atom_table_names[idx]);
 623	else
 624		SDEBUG("   table: %d\n", idx);
 625	if (U16(ctx->ctx->cmd_table + 4 + 2 * idx))
 626		r = atom_execute_table_locked(ctx->ctx, idx, ctx->ps + ctx->ps_shift);
 627	if (r) {
 628		ctx->abort = true;
 629	}
 630}
 631
 632static void atom_op_clear(atom_exec_context *ctx, int *ptr, int arg)
 633{
 634	uint8_t attr = U8((*ptr)++);
 635	uint32_t saved;
 636	int dptr = *ptr;
 637	attr &= 0x38;
 638	attr |= atom_def_dst[attr >> 3] << 6;
 639	atom_get_dst(ctx, arg, attr, ptr, &saved, 0);
 640	SDEBUG("   dst: ");
 641	atom_put_dst(ctx, arg, attr, &dptr, 0, saved);
 642}
 643
 644static void atom_op_compare(atom_exec_context *ctx, int *ptr, int arg)
 645{
 646	uint8_t attr = U8((*ptr)++);
 647	uint32_t dst, src;
 648	SDEBUG("   src1: ");
 649	dst = atom_get_dst(ctx, arg, attr, ptr, NULL, 1);
 650	SDEBUG("   src2: ");
 651	src = atom_get_src(ctx, attr, ptr);
 652	ctx->ctx->cs_equal = (dst == src);
 653	ctx->ctx->cs_above = (dst > src);
 654	SDEBUG("   result: %s %s\n", ctx->ctx->cs_equal ? "EQ" : "NE",
 655	       ctx->ctx->cs_above ? "GT" : "LE");
 656}
 657
 658static void atom_op_delay(atom_exec_context *ctx, int *ptr, int arg)
 659{
 660	unsigned count = U8((*ptr)++);
 661	SDEBUG("   count: %d\n", count);
 662	if (arg == ATOM_UNIT_MICROSEC)
 663		udelay(count);
 664	else if (!drm_can_sleep())
 665		mdelay(count);
 666	else
 667		msleep(count);
 668}
 669
 670static void atom_op_div(atom_exec_context *ctx, int *ptr, int arg)
 671{
 672	uint8_t attr = U8((*ptr)++);
 673	uint32_t dst, src;
 674	SDEBUG("   src1: ");
 675	dst = atom_get_dst(ctx, arg, attr, ptr, NULL, 1);
 676	SDEBUG("   src2: ");
 677	src = atom_get_src(ctx, attr, ptr);
 678	if (src != 0) {
 679		ctx->ctx->divmul[0] = dst / src;
 680		ctx->ctx->divmul[1] = dst % src;
 681	} else {
 682		ctx->ctx->divmul[0] = 0;
 683		ctx->ctx->divmul[1] = 0;
 684	}
 685}
 686
 687static void atom_op_eot(atom_exec_context *ctx, int *ptr, int arg)
 688{
 689	/* functionally, a nop */
 690}
 691
 692static void atom_op_jump(atom_exec_context *ctx, int *ptr, int arg)
 693{
 694	int execute = 0, target = U16(*ptr);
 695	unsigned long cjiffies;
 696
 697	(*ptr) += 2;
 698	switch (arg) {
 699	case ATOM_COND_ABOVE:
 700		execute = ctx->ctx->cs_above;
 701		break;
 702	case ATOM_COND_ABOVEOREQUAL:
 703		execute = ctx->ctx->cs_above || ctx->ctx->cs_equal;
 704		break;
 705	case ATOM_COND_ALWAYS:
 706		execute = 1;
 707		break;
 708	case ATOM_COND_BELOW:
 709		execute = !(ctx->ctx->cs_above || ctx->ctx->cs_equal);
 710		break;
 711	case ATOM_COND_BELOWOREQUAL:
 712		execute = !ctx->ctx->cs_above;
 713		break;
 714	case ATOM_COND_EQUAL:
 715		execute = ctx->ctx->cs_equal;
 716		break;
 717	case ATOM_COND_NOTEQUAL:
 718		execute = !ctx->ctx->cs_equal;
 719		break;
 720	}
 721	if (arg != ATOM_COND_ALWAYS)
 722		SDEBUG("   taken: %s\n", str_yes_no(execute));
 723	SDEBUG("   target: 0x%04X\n", target);
 724	if (execute) {
 725		if (ctx->last_jump == (ctx->start + target)) {
 726			cjiffies = jiffies;
 727			if (time_after(cjiffies, ctx->last_jump_jiffies)) {
 728				cjiffies -= ctx->last_jump_jiffies;
 729				if ((jiffies_to_msecs(cjiffies) > 5000)) {
 730					DRM_ERROR("atombios stuck in loop for more than 5secs aborting\n");
 731					ctx->abort = true;
 732				}
 733			} else {
 734				/* jiffies wrap around we will just wait a little longer */
 735				ctx->last_jump_jiffies = jiffies;
 736			}
 737		} else {
 738			ctx->last_jump = ctx->start + target;
 739			ctx->last_jump_jiffies = jiffies;
 740		}
 741		*ptr = ctx->start + target;
 742	}
 743}
 744
 745static void atom_op_mask(atom_exec_context *ctx, int *ptr, int arg)
 746{
 747	uint8_t attr = U8((*ptr)++);
 748	uint32_t dst, mask, src, saved;
 749	int dptr = *ptr;
 750	SDEBUG("   dst: ");
 751	dst = atom_get_dst(ctx, arg, attr, ptr, &saved, 1);
 752	mask = atom_get_src_direct(ctx, ((attr >> 3) & 7), ptr);
 753	SDEBUG("   mask: 0x%08x", mask);
 754	SDEBUG("   src: ");
 755	src = atom_get_src(ctx, attr, ptr);
 756	dst &= mask;
 757	dst |= src;
 758	SDEBUG("   dst: ");
 759	atom_put_dst(ctx, arg, attr, &dptr, dst, saved);
 760}
 761
 762static void atom_op_move(atom_exec_context *ctx, int *ptr, int arg)
 763{
 764	uint8_t attr = U8((*ptr)++);
 765	uint32_t src, saved;
 766	int dptr = *ptr;
 767	if (((attr >> 3) & 7) != ATOM_SRC_DWORD)
 768		atom_get_dst(ctx, arg, attr, ptr, &saved, 0);
 769	else {
 770		atom_skip_dst(ctx, arg, attr, ptr);
 771		saved = 0xCDCDCDCD;
 772	}
 773	SDEBUG("   src: ");
 774	src = atom_get_src(ctx, attr, ptr);
 775	SDEBUG("   dst: ");
 776	atom_put_dst(ctx, arg, attr, &dptr, src, saved);
 777}
 778
 779static void atom_op_mul(atom_exec_context *ctx, int *ptr, int arg)
 780{
 781	uint8_t attr = U8((*ptr)++);
 782	uint32_t dst, src;
 783	SDEBUG("   src1: ");
 784	dst = atom_get_dst(ctx, arg, attr, ptr, NULL, 1);
 785	SDEBUG("   src2: ");
 786	src = atom_get_src(ctx, attr, ptr);
 787	ctx->ctx->divmul[0] = dst * src;
 788}
 789
 790static void atom_op_nop(atom_exec_context *ctx, int *ptr, int arg)
 791{
 792	/* nothing */
 793}
 794
 795static void atom_op_or(atom_exec_context *ctx, int *ptr, int arg)
 796{
 797	uint8_t attr = U8((*ptr)++);
 798	uint32_t dst, src, saved;
 799	int dptr = *ptr;
 800	SDEBUG("   dst: ");
 801	dst = atom_get_dst(ctx, arg, attr, ptr, &saved, 1);
 802	SDEBUG("   src: ");
 803	src = atom_get_src(ctx, attr, ptr);
 804	dst |= src;
 805	SDEBUG("   dst: ");
 806	atom_put_dst(ctx, arg, attr, &dptr, dst, saved);
 807}
 808
 809static void atom_op_postcard(atom_exec_context *ctx, int *ptr, int arg)
 810{
 811	uint8_t val = U8((*ptr)++);
 812	SDEBUG("POST card output: 0x%02X\n", val);
 813}
 814
 815static void atom_op_repeat(atom_exec_context *ctx, int *ptr, int arg)
 816{
 817	pr_info("unimplemented!\n");
 818}
 819
 820static void atom_op_restorereg(atom_exec_context *ctx, int *ptr, int arg)
 821{
 822	pr_info("unimplemented!\n");
 823}
 824
 825static void atom_op_savereg(atom_exec_context *ctx, int *ptr, int arg)
 826{
 827	pr_info("unimplemented!\n");
 828}
 829
 830static void atom_op_setdatablock(atom_exec_context *ctx, int *ptr, int arg)
 831{
 832	int idx = U8(*ptr);
 833	(*ptr)++;
 834	SDEBUG("   block: %d\n", idx);
 835	if (!idx)
 836		ctx->ctx->data_block = 0;
 837	else if (idx == 255)
 838		ctx->ctx->data_block = ctx->start;
 839	else
 840		ctx->ctx->data_block = U16(ctx->ctx->data_table + 4 + 2 * idx);
 841	SDEBUG("   base: 0x%04X\n", ctx->ctx->data_block);
 842}
 843
 844static void atom_op_setfbbase(atom_exec_context *ctx, int *ptr, int arg)
 845{
 846	uint8_t attr = U8((*ptr)++);
 847	SDEBUG("   fb_base: ");
 848	ctx->ctx->fb_base = atom_get_src(ctx, attr, ptr);
 849}
 850
 851static void atom_op_setport(atom_exec_context *ctx, int *ptr, int arg)
 852{
 853	int port;
 854	switch (arg) {
 855	case ATOM_PORT_ATI:
 856		port = U16(*ptr);
 857		if (port < ATOM_IO_NAMES_CNT)
 858			SDEBUG("   port: %d (%s)\n", port, atom_io_names[port]);
 859		else
 860			SDEBUG("   port: %d\n", port);
 861		if (!port)
 862			ctx->ctx->io_mode = ATOM_IO_MM;
 863		else
 864			ctx->ctx->io_mode = ATOM_IO_IIO | port;
 865		(*ptr) += 2;
 866		break;
 867	case ATOM_PORT_PCI:
 868		ctx->ctx->io_mode = ATOM_IO_PCI;
 869		(*ptr)++;
 870		break;
 871	case ATOM_PORT_SYSIO:
 872		ctx->ctx->io_mode = ATOM_IO_SYSIO;
 873		(*ptr)++;
 874		break;
 875	}
 876}
 877
 878static void atom_op_setregblock(atom_exec_context *ctx, int *ptr, int arg)
 879{
 880	ctx->ctx->reg_block = U16(*ptr);
 881	(*ptr) += 2;
 882	SDEBUG("   base: 0x%04X\n", ctx->ctx->reg_block);
 883}
 884
 885static void atom_op_shift_left(atom_exec_context *ctx, int *ptr, int arg)
 886{
 887	uint8_t attr = U8((*ptr)++), shift;
 888	uint32_t saved, dst;
 889	int dptr = *ptr;
 890	attr &= 0x38;
 891	attr |= atom_def_dst[attr >> 3] << 6;
 892	SDEBUG("   dst: ");
 893	dst = atom_get_dst(ctx, arg, attr, ptr, &saved, 1);
 894	shift = atom_get_src_direct(ctx, ATOM_SRC_BYTE0, ptr);
 895	SDEBUG("   shift: %d\n", shift);
 896	dst <<= shift;
 897	SDEBUG("   dst: ");
 898	atom_put_dst(ctx, arg, attr, &dptr, dst, saved);
 899}
 900
 901static void atom_op_shift_right(atom_exec_context *ctx, int *ptr, int arg)
 902{
 903	uint8_t attr = U8((*ptr)++), shift;
 904	uint32_t saved, dst;
 905	int dptr = *ptr;
 906	attr &= 0x38;
 907	attr |= atom_def_dst[attr >> 3] << 6;
 908	SDEBUG("   dst: ");
 909	dst = atom_get_dst(ctx, arg, attr, ptr, &saved, 1);
 910	shift = atom_get_src_direct(ctx, ATOM_SRC_BYTE0, ptr);
 911	SDEBUG("   shift: %d\n", shift);
 912	dst >>= shift;
 913	SDEBUG("   dst: ");
 914	atom_put_dst(ctx, arg, attr, &dptr, dst, saved);
 915}
 916
 917static void atom_op_shl(atom_exec_context *ctx, int *ptr, int arg)
 918{
 919	uint8_t attr = U8((*ptr)++), shift;
 920	uint32_t saved, dst;
 921	int dptr = *ptr;
 922	uint32_t dst_align = atom_dst_to_src[(attr >> 3) & 7][(attr >> 6) & 3];
 923	SDEBUG("   dst: ");
 924	dst = atom_get_dst(ctx, arg, attr, ptr, &saved, 1);
 925	/* op needs to full dst value */
 926	dst = saved;
 927	shift = atom_get_src(ctx, attr, ptr);
 928	SDEBUG("   shift: %d\n", shift);
 929	dst <<= shift;
 930	dst &= atom_arg_mask[dst_align];
 931	dst >>= atom_arg_shift[dst_align];
 932	SDEBUG("   dst: ");
 933	atom_put_dst(ctx, arg, attr, &dptr, dst, saved);
 934}
 935
 936static void atom_op_shr(atom_exec_context *ctx, int *ptr, int arg)
 937{
 938	uint8_t attr = U8((*ptr)++), shift;
 939	uint32_t saved, dst;
 940	int dptr = *ptr;
 941	uint32_t dst_align = atom_dst_to_src[(attr >> 3) & 7][(attr >> 6) & 3];
 942	SDEBUG("   dst: ");
 943	dst = atom_get_dst(ctx, arg, attr, ptr, &saved, 1);
 944	/* op needs to full dst value */
 945	dst = saved;
 946	shift = atom_get_src(ctx, attr, ptr);
 947	SDEBUG("   shift: %d\n", shift);
 948	dst >>= shift;
 949	dst &= atom_arg_mask[dst_align];
 950	dst >>= atom_arg_shift[dst_align];
 951	SDEBUG("   dst: ");
 952	atom_put_dst(ctx, arg, attr, &dptr, dst, saved);
 953}
 954
 955static void atom_op_sub(atom_exec_context *ctx, int *ptr, int arg)
 956{
 957	uint8_t attr = U8((*ptr)++);
 958	uint32_t dst, src, saved;
 959	int dptr = *ptr;
 960	SDEBUG("   dst: ");
 961	dst = atom_get_dst(ctx, arg, attr, ptr, &saved, 1);
 962	SDEBUG("   src: ");
 963	src = atom_get_src(ctx, attr, ptr);
 964	dst -= src;
 965	SDEBUG("   dst: ");
 966	atom_put_dst(ctx, arg, attr, &dptr, dst, saved);
 967}
 968
 969static void atom_op_switch(atom_exec_context *ctx, int *ptr, int arg)
 970{
 971	uint8_t attr = U8((*ptr)++);
 972	uint32_t src, val, target;
 973	SDEBUG("   switch: ");
 974	src = atom_get_src(ctx, attr, ptr);
 975	while (U16(*ptr) != ATOM_CASE_END)
 976		if (U8(*ptr) == ATOM_CASE_MAGIC) {
 977			(*ptr)++;
 978			SDEBUG("   case: ");
 979			val =
 980			    atom_get_src(ctx, (attr & 0x38) | ATOM_ARG_IMM,
 981					 ptr);
 982			target = U16(*ptr);
 983			if (val == src) {
 984				SDEBUG("   target: %04X\n", target);
 985				*ptr = ctx->start + target;
 986				return;
 987			}
 988			(*ptr) += 2;
 989		} else {
 990			pr_info("Bad case\n");
 991			return;
 992		}
 993	(*ptr) += 2;
 994}
 995
 996static void atom_op_test(atom_exec_context *ctx, int *ptr, int arg)
 997{
 998	uint8_t attr = U8((*ptr)++);
 999	uint32_t dst, src;
1000	SDEBUG("   src1: ");
1001	dst = atom_get_dst(ctx, arg, attr, ptr, NULL, 1);
1002	SDEBUG("   src2: ");
1003	src = atom_get_src(ctx, attr, ptr);
1004	ctx->ctx->cs_equal = ((dst & src) == 0);
1005	SDEBUG("   result: %s\n", ctx->ctx->cs_equal ? "EQ" : "NE");
1006}
1007
1008static void atom_op_xor(atom_exec_context *ctx, int *ptr, int arg)
1009{
1010	uint8_t attr = U8((*ptr)++);
1011	uint32_t dst, src, saved;
1012	int dptr = *ptr;
1013	SDEBUG("   dst: ");
1014	dst = atom_get_dst(ctx, arg, attr, ptr, &saved, 1);
1015	SDEBUG("   src: ");
1016	src = atom_get_src(ctx, attr, ptr);
1017	dst ^= src;
1018	SDEBUG("   dst: ");
1019	atom_put_dst(ctx, arg, attr, &dptr, dst, saved);
1020}
1021
1022static void atom_op_debug(atom_exec_context *ctx, int *ptr, int arg)
1023{
1024	pr_info("unimplemented!\n");
1025}
1026
1027static struct {
1028	void (*func) (atom_exec_context *, int *, int);
1029	int arg;
1030} opcode_table[ATOM_OP_CNT] = {
1031	{
1032	NULL, 0}, {
1033	atom_op_move, ATOM_ARG_REG}, {
1034	atom_op_move, ATOM_ARG_PS}, {
1035	atom_op_move, ATOM_ARG_WS}, {
1036	atom_op_move, ATOM_ARG_FB}, {
1037	atom_op_move, ATOM_ARG_PLL}, {
1038	atom_op_move, ATOM_ARG_MC}, {
1039	atom_op_and, ATOM_ARG_REG}, {
1040	atom_op_and, ATOM_ARG_PS}, {
1041	atom_op_and, ATOM_ARG_WS}, {
1042	atom_op_and, ATOM_ARG_FB}, {
1043	atom_op_and, ATOM_ARG_PLL}, {
1044	atom_op_and, ATOM_ARG_MC}, {
1045	atom_op_or, ATOM_ARG_REG}, {
1046	atom_op_or, ATOM_ARG_PS}, {
1047	atom_op_or, ATOM_ARG_WS}, {
1048	atom_op_or, ATOM_ARG_FB}, {
1049	atom_op_or, ATOM_ARG_PLL}, {
1050	atom_op_or, ATOM_ARG_MC}, {
1051	atom_op_shift_left, ATOM_ARG_REG}, {
1052	atom_op_shift_left, ATOM_ARG_PS}, {
1053	atom_op_shift_left, ATOM_ARG_WS}, {
1054	atom_op_shift_left, ATOM_ARG_FB}, {
1055	atom_op_shift_left, ATOM_ARG_PLL}, {
1056	atom_op_shift_left, ATOM_ARG_MC}, {
1057	atom_op_shift_right, ATOM_ARG_REG}, {
1058	atom_op_shift_right, ATOM_ARG_PS}, {
1059	atom_op_shift_right, ATOM_ARG_WS}, {
1060	atom_op_shift_right, ATOM_ARG_FB}, {
1061	atom_op_shift_right, ATOM_ARG_PLL}, {
1062	atom_op_shift_right, ATOM_ARG_MC}, {
1063	atom_op_mul, ATOM_ARG_REG}, {
1064	atom_op_mul, ATOM_ARG_PS}, {
1065	atom_op_mul, ATOM_ARG_WS}, {
1066	atom_op_mul, ATOM_ARG_FB}, {
1067	atom_op_mul, ATOM_ARG_PLL}, {
1068	atom_op_mul, ATOM_ARG_MC}, {
1069	atom_op_div, ATOM_ARG_REG}, {
1070	atom_op_div, ATOM_ARG_PS}, {
1071	atom_op_div, ATOM_ARG_WS}, {
1072	atom_op_div, ATOM_ARG_FB}, {
1073	atom_op_div, ATOM_ARG_PLL}, {
1074	atom_op_div, ATOM_ARG_MC}, {
1075	atom_op_add, ATOM_ARG_REG}, {
1076	atom_op_add, ATOM_ARG_PS}, {
1077	atom_op_add, ATOM_ARG_WS}, {
1078	atom_op_add, ATOM_ARG_FB}, {
1079	atom_op_add, ATOM_ARG_PLL}, {
1080	atom_op_add, ATOM_ARG_MC}, {
1081	atom_op_sub, ATOM_ARG_REG}, {
1082	atom_op_sub, ATOM_ARG_PS}, {
1083	atom_op_sub, ATOM_ARG_WS}, {
1084	atom_op_sub, ATOM_ARG_FB}, {
1085	atom_op_sub, ATOM_ARG_PLL}, {
1086	atom_op_sub, ATOM_ARG_MC}, {
1087	atom_op_setport, ATOM_PORT_ATI}, {
1088	atom_op_setport, ATOM_PORT_PCI}, {
1089	atom_op_setport, ATOM_PORT_SYSIO}, {
1090	atom_op_setregblock, 0}, {
1091	atom_op_setfbbase, 0}, {
1092	atom_op_compare, ATOM_ARG_REG}, {
1093	atom_op_compare, ATOM_ARG_PS}, {
1094	atom_op_compare, ATOM_ARG_WS}, {
1095	atom_op_compare, ATOM_ARG_FB}, {
1096	atom_op_compare, ATOM_ARG_PLL}, {
1097	atom_op_compare, ATOM_ARG_MC}, {
1098	atom_op_switch, 0}, {
1099	atom_op_jump, ATOM_COND_ALWAYS}, {
1100	atom_op_jump, ATOM_COND_EQUAL}, {
1101	atom_op_jump, ATOM_COND_BELOW}, {
1102	atom_op_jump, ATOM_COND_ABOVE}, {
1103	atom_op_jump, ATOM_COND_BELOWOREQUAL}, {
1104	atom_op_jump, ATOM_COND_ABOVEOREQUAL}, {
1105	atom_op_jump, ATOM_COND_NOTEQUAL}, {
1106	atom_op_test, ATOM_ARG_REG}, {
1107	atom_op_test, ATOM_ARG_PS}, {
1108	atom_op_test, ATOM_ARG_WS}, {
1109	atom_op_test, ATOM_ARG_FB}, {
1110	atom_op_test, ATOM_ARG_PLL}, {
1111	atom_op_test, ATOM_ARG_MC}, {
1112	atom_op_delay, ATOM_UNIT_MILLISEC}, {
1113	atom_op_delay, ATOM_UNIT_MICROSEC}, {
1114	atom_op_calltable, 0}, {
1115	atom_op_repeat, 0}, {
1116	atom_op_clear, ATOM_ARG_REG}, {
1117	atom_op_clear, ATOM_ARG_PS}, {
1118	atom_op_clear, ATOM_ARG_WS}, {
1119	atom_op_clear, ATOM_ARG_FB}, {
1120	atom_op_clear, ATOM_ARG_PLL}, {
1121	atom_op_clear, ATOM_ARG_MC}, {
1122	atom_op_nop, 0}, {
1123	atom_op_eot, 0}, {
1124	atom_op_mask, ATOM_ARG_REG}, {
1125	atom_op_mask, ATOM_ARG_PS}, {
1126	atom_op_mask, ATOM_ARG_WS}, {
1127	atom_op_mask, ATOM_ARG_FB}, {
1128	atom_op_mask, ATOM_ARG_PLL}, {
1129	atom_op_mask, ATOM_ARG_MC}, {
1130	atom_op_postcard, 0}, {
1131	atom_op_beep, 0}, {
1132	atom_op_savereg, 0}, {
1133	atom_op_restorereg, 0}, {
1134	atom_op_setdatablock, 0}, {
1135	atom_op_xor, ATOM_ARG_REG}, {
1136	atom_op_xor, ATOM_ARG_PS}, {
1137	atom_op_xor, ATOM_ARG_WS}, {
1138	atom_op_xor, ATOM_ARG_FB}, {
1139	atom_op_xor, ATOM_ARG_PLL}, {
1140	atom_op_xor, ATOM_ARG_MC}, {
1141	atom_op_shl, ATOM_ARG_REG}, {
1142	atom_op_shl, ATOM_ARG_PS}, {
1143	atom_op_shl, ATOM_ARG_WS}, {
1144	atom_op_shl, ATOM_ARG_FB}, {
1145	atom_op_shl, ATOM_ARG_PLL}, {
1146	atom_op_shl, ATOM_ARG_MC}, {
1147	atom_op_shr, ATOM_ARG_REG}, {
1148	atom_op_shr, ATOM_ARG_PS}, {
1149	atom_op_shr, ATOM_ARG_WS}, {
1150	atom_op_shr, ATOM_ARG_FB}, {
1151	atom_op_shr, ATOM_ARG_PLL}, {
1152	atom_op_shr, ATOM_ARG_MC}, {
1153atom_op_debug, 0},};
1154
1155static int atom_execute_table_locked(struct atom_context *ctx, int index, uint32_t *params)
1156{
1157	int base = CU16(ctx->cmd_table + 4 + 2 * index);
1158	int len, ws, ps, ptr;
1159	unsigned char op;
1160	atom_exec_context ectx;
1161	int ret = 0;
1162
1163	if (!base)
1164		return -EINVAL;
1165
1166	len = CU16(base + ATOM_CT_SIZE_PTR);
1167	ws = CU8(base + ATOM_CT_WS_PTR);
1168	ps = CU8(base + ATOM_CT_PS_PTR) & ATOM_CT_PS_MASK;
1169	ptr = base + ATOM_CT_CODE_PTR;
1170
1171	SDEBUG(">> execute %04X (len %d, WS %d, PS %d)\n", base, len, ws, ps);
1172
1173	ectx.ctx = ctx;
1174	ectx.ps_shift = ps / 4;
1175	ectx.start = base;
1176	ectx.ps = params;
1177	ectx.abort = false;
1178	ectx.last_jump = 0;
1179	if (ws)
1180		ectx.ws = kcalloc(4, ws, GFP_KERNEL);
1181	else
1182		ectx.ws = NULL;
1183
1184	debug_depth++;
1185	while (1) {
1186		op = CU8(ptr++);
1187		if (op < ATOM_OP_NAMES_CNT)
1188			SDEBUG("%s @ 0x%04X\n", atom_op_names[op], ptr - 1);
1189		else
1190			SDEBUG("[%d] @ 0x%04X\n", op, ptr - 1);
1191		if (ectx.abort) {
1192			DRM_ERROR("atombios stuck executing %04X (len %d, WS %d, PS %d) @ 0x%04X\n",
1193				base, len, ws, ps, ptr - 1);
1194			ret = -EINVAL;
1195			goto free;
1196		}
1197
1198		if (op < ATOM_OP_CNT && op > 0)
1199			opcode_table[op].func(&ectx, &ptr,
1200					      opcode_table[op].arg);
1201		else
1202			break;
1203
1204		if (op == ATOM_OP_EOT)
1205			break;
1206	}
1207	debug_depth--;
1208	SDEBUG("<<\n");
1209
1210free:
1211	kfree(ectx.ws);
1212	return ret;
1213}
1214
1215int atom_execute_table_scratch_unlocked(struct atom_context *ctx, int index, uint32_t *params)
1216{
1217	int r;
1218
1219	mutex_lock(&ctx->mutex);
1220	/* reset data block */
1221	ctx->data_block = 0;
1222	/* reset reg block */
1223	ctx->reg_block = 0;
1224	/* reset fb window */
1225	ctx->fb_base = 0;
1226	/* reset io mode */
1227	ctx->io_mode = ATOM_IO_MM;
1228	/* reset divmul */
1229	ctx->divmul[0] = 0;
1230	ctx->divmul[1] = 0;
1231	r = atom_execute_table_locked(ctx, index, params);
1232	mutex_unlock(&ctx->mutex);
1233	return r;
1234}
1235
1236int atom_execute_table(struct atom_context *ctx, int index, uint32_t *params)
1237{
1238	int r;
1239	mutex_lock(&ctx->scratch_mutex);
1240	r = atom_execute_table_scratch_unlocked(ctx, index, params);
1241	mutex_unlock(&ctx->scratch_mutex);
1242	return r;
1243}
1244
1245static int atom_iio_len[] = { 1, 2, 3, 3, 3, 3, 4, 4, 4, 3 };
1246
1247static void atom_index_iio(struct atom_context *ctx, int base)
1248{
1249	ctx->iio = kzalloc(2 * 256, GFP_KERNEL);
1250	if (!ctx->iio)
1251		return;
1252	while (CU8(base) == ATOM_IIO_START) {
1253		ctx->iio[CU8(base + 1)] = base + 2;
1254		base += 2;
1255		while (CU8(base) != ATOM_IIO_END)
1256			base += atom_iio_len[CU8(base)];
1257		base += 3;
1258	}
1259}
1260
1261struct atom_context *atom_parse(struct card_info *card, void *bios)
1262{
1263	int base;
1264	struct atom_context *ctx =
1265	    kzalloc(sizeof(struct atom_context), GFP_KERNEL);
1266	char *str;
1267	char name[512];
1268	int i;
1269
1270	if (!ctx)
1271		return NULL;
1272
1273	ctx->card = card;
1274	ctx->bios = bios;
1275
1276	if (CU16(0) != ATOM_BIOS_MAGIC) {
1277		pr_info("Invalid BIOS magic\n");
1278		kfree(ctx);
1279		return NULL;
1280	}
1281	if (strncmp
1282	    (CSTR(ATOM_ATI_MAGIC_PTR), ATOM_ATI_MAGIC,
1283	     strlen(ATOM_ATI_MAGIC))) {
1284		pr_info("Invalid ATI magic\n");
1285		kfree(ctx);
1286		return NULL;
1287	}
1288
1289	base = CU16(ATOM_ROM_TABLE_PTR);
1290	if (strncmp
1291	    (CSTR(base + ATOM_ROM_MAGIC_PTR), ATOM_ROM_MAGIC,
1292	     strlen(ATOM_ROM_MAGIC))) {
1293		pr_info("Invalid ATOM magic\n");
1294		kfree(ctx);
1295		return NULL;
1296	}
1297
1298	ctx->cmd_table = CU16(base + ATOM_ROM_CMD_PTR);
1299	ctx->data_table = CU16(base + ATOM_ROM_DATA_PTR);
1300	atom_index_iio(ctx, CU16(ctx->data_table + ATOM_DATA_IIO_PTR) + 4);
1301	if (!ctx->iio) {
1302		atom_destroy(ctx);
1303		return NULL;
1304	}
1305
1306	str = CSTR(CU16(base + ATOM_ROM_MSG_PTR));
1307	while (*str && ((*str == '\n') || (*str == '\r')))
1308		str++;
1309	/* name string isn't always 0 terminated */
1310	for (i = 0; i < 511; i++) {
1311		name[i] = str[i];
1312		if (name[i] < '.' || name[i] > 'z') {
1313			name[i] = 0;
1314			break;
1315		}
1316	}
1317	pr_info("ATOM BIOS: %s\n", name);
1318
1319	return ctx;
1320}
1321
1322int atom_asic_init(struct atom_context *ctx)
1323{
1324	struct radeon_device *rdev = ctx->card->dev->dev_private;
1325	int hwi = CU16(ctx->data_table + ATOM_DATA_FWI_PTR);
1326	uint32_t ps[16];
1327	int ret;
1328
1329	memset(ps, 0, 64);
1330
1331	ps[0] = cpu_to_le32(CU32(hwi + ATOM_FWI_DEFSCLK_PTR));
1332	ps[1] = cpu_to_le32(CU32(hwi + ATOM_FWI_DEFMCLK_PTR));
1333	if (!ps[0] || !ps[1])
1334		return 1;
1335
1336	if (!CU16(ctx->cmd_table + 4 + 2 * ATOM_CMD_INIT))
1337		return 1;
1338	ret = atom_execute_table(ctx, ATOM_CMD_INIT, ps);
1339	if (ret)
1340		return ret;
1341
1342	memset(ps, 0, 64);
1343
1344	if (rdev->family < CHIP_R600) {
1345		if (CU16(ctx->cmd_table + 4 + 2 * ATOM_CMD_SPDFANCNTL))
1346			atom_execute_table(ctx, ATOM_CMD_SPDFANCNTL, ps);
1347	}
1348	return ret;
1349}
1350
1351void atom_destroy(struct atom_context *ctx)
1352{
1353	kfree(ctx->iio);
1354	kfree(ctx);
1355}
1356
1357bool atom_parse_data_header(struct atom_context *ctx, int index,
1358			    uint16_t *size, uint8_t *frev, uint8_t *crev,
1359			    uint16_t *data_start)
1360{
1361	int offset = index * 2 + 4;
1362	int idx = CU16(ctx->data_table + offset);
1363	u16 *mdt = (u16 *)(ctx->bios + ctx->data_table + 4);
1364
1365	if (!mdt[index])
1366		return false;
1367
1368	if (size)
1369		*size = CU16(idx);
1370	if (frev)
1371		*frev = CU8(idx + 2);
1372	if (crev)
1373		*crev = CU8(idx + 3);
1374	*data_start = idx;
1375	return true;
1376}
1377
1378bool atom_parse_cmd_header(struct atom_context *ctx, int index, uint8_t *frev,
1379			   uint8_t *crev)
1380{
1381	int offset = index * 2 + 4;
1382	int idx = CU16(ctx->cmd_table + offset);
1383	u16 *mct = (u16 *)(ctx->bios + ctx->cmd_table + 4);
1384
1385	if (!mct[index])
1386		return false;
1387
1388	if (frev)
1389		*frev = CU8(idx + 2);
1390	if (crev)
1391		*crev = CU8(idx + 3);
1392	return true;
1393}
1394
1395int atom_allocate_fb_scratch(struct atom_context *ctx)
1396{
1397	int index = GetIndexIntoMasterTable(DATA, VRAM_UsageByFirmware);
1398	uint16_t data_offset;
1399	int usage_bytes = 0;
1400	struct _ATOM_VRAM_USAGE_BY_FIRMWARE *firmware_usage;
1401
1402	if (atom_parse_data_header(ctx, index, NULL, NULL, NULL, &data_offset)) {
1403		firmware_usage = (struct _ATOM_VRAM_USAGE_BY_FIRMWARE *)(ctx->bios + data_offset);
1404
1405		DRM_DEBUG("atom firmware requested %08x %dkb\n",
1406			  le32_to_cpu(firmware_usage->asFirmwareVramReserveInfo[0].ulStartAddrUsedByFirmware),
1407			  le16_to_cpu(firmware_usage->asFirmwareVramReserveInfo[0].usFirmwareUseInKb));
1408
1409		usage_bytes = le16_to_cpu(firmware_usage->asFirmwareVramReserveInfo[0].usFirmwareUseInKb) * 1024;
1410	}
1411	ctx->scratch_size_bytes = 0;
1412	if (usage_bytes == 0)
1413		usage_bytes = 20 * 1024;
1414	/* allocate some scratch memory */
1415	ctx->scratch = kzalloc(usage_bytes, GFP_KERNEL);
1416	if (!ctx->scratch)
1417		return -ENOMEM;
1418	ctx->scratch_size_bytes = usage_bytes;
1419	return 0;
1420}