1771fe6b9SJerome Glisse /* 2771fe6b9SJerome Glisse * Copyright 2008 Advanced Micro Devices, Inc. 3771fe6b9SJerome Glisse * Copyright 2008 Red Hat Inc. 4771fe6b9SJerome Glisse * Copyright 2009 Jerome Glisse. 5771fe6b9SJerome Glisse * 6771fe6b9SJerome Glisse * Permission is hereby granted, free of charge, to any person obtaining a 7771fe6b9SJerome Glisse * copy of this software and associated documentation files (the "Software"), 8771fe6b9SJerome Glisse * to deal in the Software without restriction, including without limitation 9771fe6b9SJerome Glisse * the rights to use, copy, modify, merge, publish, distribute, sublicense, 10771fe6b9SJerome Glisse * and/or sell copies of the Software, and to permit persons to whom the 11771fe6b9SJerome Glisse * Software is furnished to do so, subject to the following conditions: 12771fe6b9SJerome Glisse * 13771fe6b9SJerome Glisse * The above copyright notice and this permission notice shall be included in 14771fe6b9SJerome Glisse * all copies or substantial portions of the Software. 15771fe6b9SJerome Glisse * 16771fe6b9SJerome Glisse * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR 17771fe6b9SJerome Glisse * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, 18771fe6b9SJerome Glisse * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL 19771fe6b9SJerome Glisse * THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR 20771fe6b9SJerome Glisse * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, 21771fe6b9SJerome Glisse * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR 22771fe6b9SJerome Glisse * OTHER DEALINGS IN THE SOFTWARE. 23771fe6b9SJerome Glisse * 24771fe6b9SJerome Glisse * Authors: Dave Airlie 25771fe6b9SJerome Glisse * Alex Deucher 26771fe6b9SJerome Glisse * Jerome Glisse 27771fe6b9SJerome Glisse */ 28771fe6b9SJerome Glisse #include <linux/console.h> 295a0e3ad6STejun Heo #include <linux/slab.h> 30771fe6b9SJerome Glisse #include <drm/drmP.h> 31771fe6b9SJerome Glisse #include <drm/drm_crtc_helper.h> 32771fe6b9SJerome Glisse #include <drm/radeon_drm.h> 3328d52043SDave Airlie #include <linux/vgaarb.h> 346a9ee8afSDave Airlie #include <linux/vga_switcheroo.h> 35bcc65fd8SMatthew Garrett #include <linux/efi.h> 36771fe6b9SJerome Glisse #include "radeon_reg.h" 37771fe6b9SJerome Glisse #include "radeon.h" 38771fe6b9SJerome Glisse #include "atom.h" 39771fe6b9SJerome Glisse 401b5331d9SJerome Glisse static const char radeon_family_name[][16] = { 411b5331d9SJerome Glisse "R100", 421b5331d9SJerome Glisse "RV100", 431b5331d9SJerome Glisse "RS100", 441b5331d9SJerome Glisse "RV200", 451b5331d9SJerome Glisse "RS200", 461b5331d9SJerome Glisse "R200", 471b5331d9SJerome Glisse "RV250", 481b5331d9SJerome Glisse "RS300", 491b5331d9SJerome Glisse "RV280", 501b5331d9SJerome Glisse "R300", 511b5331d9SJerome Glisse "R350", 521b5331d9SJerome Glisse "RV350", 531b5331d9SJerome Glisse "RV380", 541b5331d9SJerome Glisse "R420", 551b5331d9SJerome Glisse "R423", 561b5331d9SJerome Glisse "RV410", 571b5331d9SJerome Glisse "RS400", 581b5331d9SJerome Glisse "RS480", 591b5331d9SJerome Glisse "RS600", 601b5331d9SJerome Glisse "RS690", 611b5331d9SJerome Glisse "RS740", 621b5331d9SJerome Glisse "RV515", 631b5331d9SJerome Glisse "R520", 641b5331d9SJerome Glisse "RV530", 651b5331d9SJerome Glisse "RV560", 661b5331d9SJerome Glisse "RV570", 671b5331d9SJerome Glisse "R580", 681b5331d9SJerome Glisse "R600", 691b5331d9SJerome Glisse "RV610", 701b5331d9SJerome Glisse "RV630", 711b5331d9SJerome Glisse "RV670", 721b5331d9SJerome Glisse "RV620", 731b5331d9SJerome Glisse "RV635", 741b5331d9SJerome Glisse "RS780", 751b5331d9SJerome Glisse "RS880", 761b5331d9SJerome Glisse "RV770", 771b5331d9SJerome Glisse "RV730", 781b5331d9SJerome Glisse "RV710", 791b5331d9SJerome Glisse "RV740", 801b5331d9SJerome Glisse "CEDAR", 811b5331d9SJerome Glisse "REDWOOD", 821b5331d9SJerome Glisse "JUNIPER", 831b5331d9SJerome Glisse "CYPRESS", 841b5331d9SJerome Glisse "HEMLOCK", 85b08ebe7eSAlex Deucher "PALM", 864df64e65SAlex Deucher "SUMO", 874df64e65SAlex Deucher "SUMO2", 881fe18305SAlex Deucher "BARTS", 891fe18305SAlex Deucher "TURKS", 901fe18305SAlex Deucher "CAICOS", 91b7cfc9feSAlex Deucher "CAYMAN", 928848f759SAlex Deucher "ARUBA", 93cb28bb34SAlex Deucher "TAHITI", 94cb28bb34SAlex Deucher "PITCAIRN", 95cb28bb34SAlex Deucher "VERDE", 96624d3524SAlex Deucher "OLAND", 97b5d9d726SAlex Deucher "HAINAN", 986eac752eSAlex Deucher "BONAIRE", 996eac752eSAlex Deucher "KAVERI", 1006eac752eSAlex Deucher "KABINI", 1011b5331d9SJerome Glisse "LAST", 1021b5331d9SJerome Glisse }; 1031b5331d9SJerome Glisse 1040c195119SAlex Deucher /** 1052e1b65f9SAlex Deucher * radeon_program_register_sequence - program an array of registers. 1062e1b65f9SAlex Deucher * 1072e1b65f9SAlex Deucher * @rdev: radeon_device pointer 1082e1b65f9SAlex Deucher * @registers: pointer to the register array 1092e1b65f9SAlex Deucher * @array_size: size of the register array 1102e1b65f9SAlex Deucher * 1112e1b65f9SAlex Deucher * Programs an array or registers with and and or masks. 1122e1b65f9SAlex Deucher * This is a helper for setting golden registers. 1132e1b65f9SAlex Deucher */ 1142e1b65f9SAlex Deucher void radeon_program_register_sequence(struct radeon_device *rdev, 1152e1b65f9SAlex Deucher const u32 *registers, 1162e1b65f9SAlex Deucher const u32 array_size) 1172e1b65f9SAlex Deucher { 1182e1b65f9SAlex Deucher u32 tmp, reg, and_mask, or_mask; 1192e1b65f9SAlex Deucher int i; 1202e1b65f9SAlex Deucher 1212e1b65f9SAlex Deucher if (array_size % 3) 1222e1b65f9SAlex Deucher return; 1232e1b65f9SAlex Deucher 1242e1b65f9SAlex Deucher for (i = 0; i < array_size; i +=3) { 1252e1b65f9SAlex Deucher reg = registers[i + 0]; 1262e1b65f9SAlex Deucher and_mask = registers[i + 1]; 1272e1b65f9SAlex Deucher or_mask = registers[i + 2]; 1282e1b65f9SAlex Deucher 1292e1b65f9SAlex Deucher if (and_mask == 0xffffffff) { 1302e1b65f9SAlex Deucher tmp = or_mask; 1312e1b65f9SAlex Deucher } else { 1322e1b65f9SAlex Deucher tmp = RREG32(reg); 1332e1b65f9SAlex Deucher tmp &= ~and_mask; 1342e1b65f9SAlex Deucher tmp |= or_mask; 1352e1b65f9SAlex Deucher } 1362e1b65f9SAlex Deucher WREG32(reg, tmp); 1372e1b65f9SAlex Deucher } 1382e1b65f9SAlex Deucher } 1392e1b65f9SAlex Deucher 1402e1b65f9SAlex Deucher /** 1410c195119SAlex Deucher * radeon_surface_init - Clear GPU surface registers. 1420c195119SAlex Deucher * 1430c195119SAlex Deucher * @rdev: radeon_device pointer 1440c195119SAlex Deucher * 1450c195119SAlex Deucher * Clear GPU surface registers (r1xx-r5xx). 146b1e3a6d1SMichel Dänzer */ 1473ce0a23dSJerome Glisse void radeon_surface_init(struct radeon_device *rdev) 148b1e3a6d1SMichel Dänzer { 149b1e3a6d1SMichel Dänzer /* FIXME: check this out */ 150b1e3a6d1SMichel Dänzer if (rdev->family < CHIP_R600) { 151b1e3a6d1SMichel Dänzer int i; 152b1e3a6d1SMichel Dänzer 153550e2d92SDave Airlie for (i = 0; i < RADEON_GEM_MAX_SURFACES; i++) { 154550e2d92SDave Airlie if (rdev->surface_regs[i].bo) 155550e2d92SDave Airlie radeon_bo_get_surface_reg(rdev->surface_regs[i].bo); 156550e2d92SDave Airlie else 157550e2d92SDave Airlie radeon_clear_surface_reg(rdev, i); 158b1e3a6d1SMichel Dänzer } 159e024e110SDave Airlie /* enable surfaces */ 160e024e110SDave Airlie WREG32(RADEON_SURFACE_CNTL, 0); 161b1e3a6d1SMichel Dänzer } 162b1e3a6d1SMichel Dänzer } 163b1e3a6d1SMichel Dänzer 164b1e3a6d1SMichel Dänzer /* 165771fe6b9SJerome Glisse * GPU scratch registers helpers function. 166771fe6b9SJerome Glisse */ 1670c195119SAlex Deucher /** 1680c195119SAlex Deucher * radeon_scratch_init - Init scratch register driver information. 1690c195119SAlex Deucher * 1700c195119SAlex Deucher * @rdev: radeon_device pointer 1710c195119SAlex Deucher * 1720c195119SAlex Deucher * Init CP scratch register driver information (r1xx-r5xx) 1730c195119SAlex Deucher */ 1743ce0a23dSJerome Glisse void radeon_scratch_init(struct radeon_device *rdev) 175771fe6b9SJerome Glisse { 176771fe6b9SJerome Glisse int i; 177771fe6b9SJerome Glisse 178771fe6b9SJerome Glisse /* FIXME: check this out */ 179771fe6b9SJerome Glisse if (rdev->family < CHIP_R300) { 180771fe6b9SJerome Glisse rdev->scratch.num_reg = 5; 181771fe6b9SJerome Glisse } else { 182771fe6b9SJerome Glisse rdev->scratch.num_reg = 7; 183771fe6b9SJerome Glisse } 184724c80e1SAlex Deucher rdev->scratch.reg_base = RADEON_SCRATCH_REG0; 185771fe6b9SJerome Glisse for (i = 0; i < rdev->scratch.num_reg; i++) { 186771fe6b9SJerome Glisse rdev->scratch.free[i] = true; 187724c80e1SAlex Deucher rdev->scratch.reg[i] = rdev->scratch.reg_base + (i * 4); 188771fe6b9SJerome Glisse } 189771fe6b9SJerome Glisse } 190771fe6b9SJerome Glisse 1910c195119SAlex Deucher /** 1920c195119SAlex Deucher * radeon_scratch_get - Allocate a scratch register 1930c195119SAlex Deucher * 1940c195119SAlex Deucher * @rdev: radeon_device pointer 1950c195119SAlex Deucher * @reg: scratch register mmio offset 1960c195119SAlex Deucher * 1970c195119SAlex Deucher * Allocate a CP scratch register for use by the driver (all asics). 1980c195119SAlex Deucher * Returns 0 on success or -EINVAL on failure. 1990c195119SAlex Deucher */ 200771fe6b9SJerome Glisse int radeon_scratch_get(struct radeon_device *rdev, uint32_t *reg) 201771fe6b9SJerome Glisse { 202771fe6b9SJerome Glisse int i; 203771fe6b9SJerome Glisse 204771fe6b9SJerome Glisse for (i = 0; i < rdev->scratch.num_reg; i++) { 205771fe6b9SJerome Glisse if (rdev->scratch.free[i]) { 206771fe6b9SJerome Glisse rdev->scratch.free[i] = false; 207771fe6b9SJerome Glisse *reg = rdev->scratch.reg[i]; 208771fe6b9SJerome Glisse return 0; 209771fe6b9SJerome Glisse } 210771fe6b9SJerome Glisse } 211771fe6b9SJerome Glisse return -EINVAL; 212771fe6b9SJerome Glisse } 213771fe6b9SJerome Glisse 2140c195119SAlex Deucher /** 2150c195119SAlex Deucher * radeon_scratch_free - Free a scratch register 2160c195119SAlex Deucher * 2170c195119SAlex Deucher * @rdev: radeon_device pointer 2180c195119SAlex Deucher * @reg: scratch register mmio offset 2190c195119SAlex Deucher * 2200c195119SAlex Deucher * Free a CP scratch register allocated for use by the driver (all asics) 2210c195119SAlex Deucher */ 222771fe6b9SJerome Glisse void radeon_scratch_free(struct radeon_device *rdev, uint32_t reg) 223771fe6b9SJerome Glisse { 224771fe6b9SJerome Glisse int i; 225771fe6b9SJerome Glisse 226771fe6b9SJerome Glisse for (i = 0; i < rdev->scratch.num_reg; i++) { 227771fe6b9SJerome Glisse if (rdev->scratch.reg[i] == reg) { 228771fe6b9SJerome Glisse rdev->scratch.free[i] = true; 229771fe6b9SJerome Glisse return; 230771fe6b9SJerome Glisse } 231771fe6b9SJerome Glisse } 232771fe6b9SJerome Glisse } 233771fe6b9SJerome Glisse 2340c195119SAlex Deucher /* 2350c195119SAlex Deucher * radeon_wb_*() 2360c195119SAlex Deucher * Writeback is the the method by which the the GPU updates special pages 2370c195119SAlex Deucher * in memory with the status of certain GPU events (fences, ring pointers, 2380c195119SAlex Deucher * etc.). 2390c195119SAlex Deucher */ 2400c195119SAlex Deucher 2410c195119SAlex Deucher /** 2420c195119SAlex Deucher * radeon_wb_disable - Disable Writeback 2430c195119SAlex Deucher * 2440c195119SAlex Deucher * @rdev: radeon_device pointer 2450c195119SAlex Deucher * 2460c195119SAlex Deucher * Disables Writeback (all asics). Used for suspend. 2470c195119SAlex Deucher */ 248724c80e1SAlex Deucher void radeon_wb_disable(struct radeon_device *rdev) 249724c80e1SAlex Deucher { 250724c80e1SAlex Deucher rdev->wb.enabled = false; 251724c80e1SAlex Deucher } 252724c80e1SAlex Deucher 2530c195119SAlex Deucher /** 2540c195119SAlex Deucher * radeon_wb_fini - Disable Writeback and free memory 2550c195119SAlex Deucher * 2560c195119SAlex Deucher * @rdev: radeon_device pointer 2570c195119SAlex Deucher * 2580c195119SAlex Deucher * Disables Writeback and frees the Writeback memory (all asics). 2590c195119SAlex Deucher * Used at driver shutdown. 2600c195119SAlex Deucher */ 261724c80e1SAlex Deucher void radeon_wb_fini(struct radeon_device *rdev) 262724c80e1SAlex Deucher { 263724c80e1SAlex Deucher radeon_wb_disable(rdev); 264724c80e1SAlex Deucher if (rdev->wb.wb_obj) { 265089920f2SJerome Glisse if (!radeon_bo_reserve(rdev->wb.wb_obj, false)) { 266089920f2SJerome Glisse radeon_bo_kunmap(rdev->wb.wb_obj); 267089920f2SJerome Glisse radeon_bo_unpin(rdev->wb.wb_obj); 268089920f2SJerome Glisse radeon_bo_unreserve(rdev->wb.wb_obj); 269089920f2SJerome Glisse } 270724c80e1SAlex Deucher radeon_bo_unref(&rdev->wb.wb_obj); 271724c80e1SAlex Deucher rdev->wb.wb = NULL; 272724c80e1SAlex Deucher rdev->wb.wb_obj = NULL; 273724c80e1SAlex Deucher } 274724c80e1SAlex Deucher } 275724c80e1SAlex Deucher 2760c195119SAlex Deucher /** 2770c195119SAlex Deucher * radeon_wb_init- Init Writeback driver info and allocate memory 2780c195119SAlex Deucher * 2790c195119SAlex Deucher * @rdev: radeon_device pointer 2800c195119SAlex Deucher * 2810c195119SAlex Deucher * Disables Writeback and frees the Writeback memory (all asics). 2820c195119SAlex Deucher * Used at driver startup. 2830c195119SAlex Deucher * Returns 0 on success or an -error on failure. 2840c195119SAlex Deucher */ 285724c80e1SAlex Deucher int radeon_wb_init(struct radeon_device *rdev) 286724c80e1SAlex Deucher { 287724c80e1SAlex Deucher int r; 288724c80e1SAlex Deucher 289724c80e1SAlex Deucher if (rdev->wb.wb_obj == NULL) { 290441921d5SDaniel Vetter r = radeon_bo_create(rdev, RADEON_GPU_PAGE_SIZE, PAGE_SIZE, true, 29140f5cf99SAlex Deucher RADEON_GEM_DOMAIN_GTT, NULL, &rdev->wb.wb_obj); 292724c80e1SAlex Deucher if (r) { 293724c80e1SAlex Deucher dev_warn(rdev->dev, "(%d) create WB bo failed\n", r); 294724c80e1SAlex Deucher return r; 295724c80e1SAlex Deucher } 296724c80e1SAlex Deucher r = radeon_bo_reserve(rdev->wb.wb_obj, false); 297724c80e1SAlex Deucher if (unlikely(r != 0)) { 298724c80e1SAlex Deucher radeon_wb_fini(rdev); 299724c80e1SAlex Deucher return r; 300724c80e1SAlex Deucher } 301724c80e1SAlex Deucher r = radeon_bo_pin(rdev->wb.wb_obj, RADEON_GEM_DOMAIN_GTT, 302724c80e1SAlex Deucher &rdev->wb.gpu_addr); 303724c80e1SAlex Deucher if (r) { 304724c80e1SAlex Deucher radeon_bo_unreserve(rdev->wb.wb_obj); 305724c80e1SAlex Deucher dev_warn(rdev->dev, "(%d) pin WB bo failed\n", r); 306724c80e1SAlex Deucher radeon_wb_fini(rdev); 307724c80e1SAlex Deucher return r; 308724c80e1SAlex Deucher } 309724c80e1SAlex Deucher r = radeon_bo_kmap(rdev->wb.wb_obj, (void **)&rdev->wb.wb); 310724c80e1SAlex Deucher radeon_bo_unreserve(rdev->wb.wb_obj); 311724c80e1SAlex Deucher if (r) { 312724c80e1SAlex Deucher dev_warn(rdev->dev, "(%d) map WB bo failed\n", r); 313724c80e1SAlex Deucher radeon_wb_fini(rdev); 314724c80e1SAlex Deucher return r; 315724c80e1SAlex Deucher } 316089920f2SJerome Glisse } 317724c80e1SAlex Deucher 318e6ba7599SAlex Deucher /* clear wb memory */ 319e6ba7599SAlex Deucher memset((char *)rdev->wb.wb, 0, RADEON_GPU_PAGE_SIZE); 320d0f8a854SAlex Deucher /* disable event_write fences */ 321d0f8a854SAlex Deucher rdev->wb.use_event = false; 322724c80e1SAlex Deucher /* disabled via module param */ 3233b7a2b24SJerome Glisse if (radeon_no_wb == 1) { 324724c80e1SAlex Deucher rdev->wb.enabled = false; 3253b7a2b24SJerome Glisse } else { 326724c80e1SAlex Deucher if (rdev->flags & RADEON_IS_AGP) { 32728eebb70SAlex Deucher /* often unreliable on AGP */ 32828eebb70SAlex Deucher rdev->wb.enabled = false; 32928eebb70SAlex Deucher } else if (rdev->family < CHIP_R300) { 33028eebb70SAlex Deucher /* often unreliable on pre-r300 */ 331724c80e1SAlex Deucher rdev->wb.enabled = false; 332d0f8a854SAlex Deucher } else { 333724c80e1SAlex Deucher rdev->wb.enabled = true; 334d0f8a854SAlex Deucher /* event_write fences are only available on r600+ */ 3353b7a2b24SJerome Glisse if (rdev->family >= CHIP_R600) { 336d0f8a854SAlex Deucher rdev->wb.use_event = true; 337d0f8a854SAlex Deucher } 338724c80e1SAlex Deucher } 3393b7a2b24SJerome Glisse } 340c994ead6SAlex Deucher /* always use writeback/events on NI, APUs */ 341c994ead6SAlex Deucher if (rdev->family >= CHIP_PALM) { 3427d52785dSAlex Deucher rdev->wb.enabled = true; 3437d52785dSAlex Deucher rdev->wb.use_event = true; 3447d52785dSAlex Deucher } 345724c80e1SAlex Deucher 346724c80e1SAlex Deucher dev_info(rdev->dev, "WB %sabled\n", rdev->wb.enabled ? "en" : "dis"); 347724c80e1SAlex Deucher 348724c80e1SAlex Deucher return 0; 349724c80e1SAlex Deucher } 350724c80e1SAlex Deucher 351d594e46aSJerome Glisse /** 352d594e46aSJerome Glisse * radeon_vram_location - try to find VRAM location 353d594e46aSJerome Glisse * @rdev: radeon device structure holding all necessary informations 354d594e46aSJerome Glisse * @mc: memory controller structure holding memory informations 355d594e46aSJerome Glisse * @base: base address at which to put VRAM 356d594e46aSJerome Glisse * 357d594e46aSJerome Glisse * Function will place try to place VRAM at base address provided 358d594e46aSJerome Glisse * as parameter (which is so far either PCI aperture address or 359d594e46aSJerome Glisse * for IGP TOM base address). 360d594e46aSJerome Glisse * 361d594e46aSJerome Glisse * If there is not enough space to fit the unvisible VRAM in the 32bits 362d594e46aSJerome Glisse * address space then we limit the VRAM size to the aperture. 363d594e46aSJerome Glisse * 364d594e46aSJerome Glisse * If we are using AGP and if the AGP aperture doesn't allow us to have 365d594e46aSJerome Glisse * room for all the VRAM than we restrict the VRAM to the PCI aperture 366d594e46aSJerome Glisse * size and print a warning. 367d594e46aSJerome Glisse * 368d594e46aSJerome Glisse * This function will never fails, worst case are limiting VRAM. 369d594e46aSJerome Glisse * 370d594e46aSJerome Glisse * Note: GTT start, end, size should be initialized before calling this 371d594e46aSJerome Glisse * function on AGP platform. 372d594e46aSJerome Glisse * 37325985edcSLucas De Marchi * Note: We don't explicitly enforce VRAM start to be aligned on VRAM size, 374d594e46aSJerome Glisse * this shouldn't be a problem as we are using the PCI aperture as a reference. 375d594e46aSJerome Glisse * Otherwise this would be needed for rv280, all r3xx, and all r4xx, but 376d594e46aSJerome Glisse * not IGP. 377d594e46aSJerome Glisse * 378d594e46aSJerome Glisse * Note: we use mc_vram_size as on some board we need to program the mc to 379d594e46aSJerome Glisse * cover the whole aperture even if VRAM size is inferior to aperture size 380d594e46aSJerome Glisse * Novell bug 204882 + along with lots of ubuntu ones 381d594e46aSJerome Glisse * 382d594e46aSJerome Glisse * Note: when limiting vram it's safe to overwritte real_vram_size because 383d594e46aSJerome Glisse * we are not in case where real_vram_size is inferior to mc_vram_size (ie 384d594e46aSJerome Glisse * note afected by bogus hw of Novell bug 204882 + along with lots of ubuntu 385d594e46aSJerome Glisse * ones) 386d594e46aSJerome Glisse * 387d594e46aSJerome Glisse * Note: IGP TOM addr should be the same as the aperture addr, we don't 388d594e46aSJerome Glisse * explicitly check for that thought. 389d594e46aSJerome Glisse * 390d594e46aSJerome Glisse * FIXME: when reducing VRAM size align new size on power of 2. 391771fe6b9SJerome Glisse */ 392d594e46aSJerome Glisse void radeon_vram_location(struct radeon_device *rdev, struct radeon_mc *mc, u64 base) 393771fe6b9SJerome Glisse { 3941bcb04f7SChristian König uint64_t limit = (uint64_t)radeon_vram_limit << 20; 3951bcb04f7SChristian König 396d594e46aSJerome Glisse mc->vram_start = base; 3979ed8b1f9SAlex Deucher if (mc->mc_vram_size > (rdev->mc.mc_mask - base + 1)) { 398d594e46aSJerome Glisse dev_warn(rdev->dev, "limiting VRAM to PCI aperture size\n"); 399d594e46aSJerome Glisse mc->real_vram_size = mc->aper_size; 400d594e46aSJerome Glisse mc->mc_vram_size = mc->aper_size; 401771fe6b9SJerome Glisse } 402d594e46aSJerome Glisse mc->vram_end = mc->vram_start + mc->mc_vram_size - 1; 4032cbeb4efSJerome Glisse if (rdev->flags & RADEON_IS_AGP && mc->vram_end > mc->gtt_start && mc->vram_start <= mc->gtt_end) { 404d594e46aSJerome Glisse dev_warn(rdev->dev, "limiting VRAM to PCI aperture size\n"); 405d594e46aSJerome Glisse mc->real_vram_size = mc->aper_size; 406d594e46aSJerome Glisse mc->mc_vram_size = mc->aper_size; 407771fe6b9SJerome Glisse } 408d594e46aSJerome Glisse mc->vram_end = mc->vram_start + mc->mc_vram_size - 1; 4091bcb04f7SChristian König if (limit && limit < mc->real_vram_size) 4101bcb04f7SChristian König mc->real_vram_size = limit; 411dd7cc55aSAlex Deucher dev_info(rdev->dev, "VRAM: %lluM 0x%016llX - 0x%016llX (%lluM used)\n", 412d594e46aSJerome Glisse mc->mc_vram_size >> 20, mc->vram_start, 413d594e46aSJerome Glisse mc->vram_end, mc->real_vram_size >> 20); 414771fe6b9SJerome Glisse } 415771fe6b9SJerome Glisse 416d594e46aSJerome Glisse /** 417d594e46aSJerome Glisse * radeon_gtt_location - try to find GTT location 418d594e46aSJerome Glisse * @rdev: radeon device structure holding all necessary informations 419d594e46aSJerome Glisse * @mc: memory controller structure holding memory informations 420d594e46aSJerome Glisse * 421d594e46aSJerome Glisse * Function will place try to place GTT before or after VRAM. 422d594e46aSJerome Glisse * 423d594e46aSJerome Glisse * If GTT size is bigger than space left then we ajust GTT size. 424d594e46aSJerome Glisse * Thus function will never fails. 425d594e46aSJerome Glisse * 426d594e46aSJerome Glisse * FIXME: when reducing GTT size align new size on power of 2. 427d594e46aSJerome Glisse */ 428d594e46aSJerome Glisse void radeon_gtt_location(struct radeon_device *rdev, struct radeon_mc *mc) 429d594e46aSJerome Glisse { 430d594e46aSJerome Glisse u64 size_af, size_bf; 431d594e46aSJerome Glisse 4329ed8b1f9SAlex Deucher size_af = ((rdev->mc.mc_mask - mc->vram_end) + mc->gtt_base_align) & ~mc->gtt_base_align; 4338d369bb1SAlex Deucher size_bf = mc->vram_start & ~mc->gtt_base_align; 434d594e46aSJerome Glisse if (size_bf > size_af) { 435d594e46aSJerome Glisse if (mc->gtt_size > size_bf) { 436d594e46aSJerome Glisse dev_warn(rdev->dev, "limiting GTT\n"); 437d594e46aSJerome Glisse mc->gtt_size = size_bf; 438d594e46aSJerome Glisse } 4398d369bb1SAlex Deucher mc->gtt_start = (mc->vram_start & ~mc->gtt_base_align) - mc->gtt_size; 440d594e46aSJerome Glisse } else { 441d594e46aSJerome Glisse if (mc->gtt_size > size_af) { 442d594e46aSJerome Glisse dev_warn(rdev->dev, "limiting GTT\n"); 443d594e46aSJerome Glisse mc->gtt_size = size_af; 444d594e46aSJerome Glisse } 4458d369bb1SAlex Deucher mc->gtt_start = (mc->vram_end + 1 + mc->gtt_base_align) & ~mc->gtt_base_align; 446d594e46aSJerome Glisse } 447d594e46aSJerome Glisse mc->gtt_end = mc->gtt_start + mc->gtt_size - 1; 448dd7cc55aSAlex Deucher dev_info(rdev->dev, "GTT: %lluM 0x%016llX - 0x%016llX\n", 449d594e46aSJerome Glisse mc->gtt_size >> 20, mc->gtt_start, mc->gtt_end); 450d594e46aSJerome Glisse } 451771fe6b9SJerome Glisse 452771fe6b9SJerome Glisse /* 453771fe6b9SJerome Glisse * GPU helpers function. 454771fe6b9SJerome Glisse */ 4550c195119SAlex Deucher /** 4560c195119SAlex Deucher * radeon_card_posted - check if the hw has already been initialized 4570c195119SAlex Deucher * 4580c195119SAlex Deucher * @rdev: radeon_device pointer 4590c195119SAlex Deucher * 4600c195119SAlex Deucher * Check if the asic has been initialized (all asics). 4610c195119SAlex Deucher * Used at driver startup. 4620c195119SAlex Deucher * Returns true if initialized or false if not. 4630c195119SAlex Deucher */ 4649f022ddfSJerome Glisse bool radeon_card_posted(struct radeon_device *rdev) 465771fe6b9SJerome Glisse { 466771fe6b9SJerome Glisse uint32_t reg; 467771fe6b9SJerome Glisse 46850a583f6SAlex Deucher /* required for EFI mode on macbook2,1 which uses an r5xx asic */ 46983e68189SMatt Fleming if (efi_enabled(EFI_BOOT) && 47050a583f6SAlex Deucher (rdev->pdev->subsystem_vendor == PCI_VENDOR_ID_APPLE) && 47150a583f6SAlex Deucher (rdev->family < CHIP_R600)) 472bcc65fd8SMatthew Garrett return false; 473bcc65fd8SMatthew Garrett 4742cf3a4fcSAlex Deucher if (ASIC_IS_NODCE(rdev)) 4752cf3a4fcSAlex Deucher goto check_memsize; 4762cf3a4fcSAlex Deucher 477771fe6b9SJerome Glisse /* first check CRTCs */ 47809fb8bd1SAlex Deucher if (ASIC_IS_DCE4(rdev)) { 47918007401SAlex Deucher reg = RREG32(EVERGREEN_CRTC_CONTROL + EVERGREEN_CRTC0_REGISTER_OFFSET) | 48018007401SAlex Deucher RREG32(EVERGREEN_CRTC_CONTROL + EVERGREEN_CRTC1_REGISTER_OFFSET); 48109fb8bd1SAlex Deucher if (rdev->num_crtc >= 4) { 48209fb8bd1SAlex Deucher reg |= RREG32(EVERGREEN_CRTC_CONTROL + EVERGREEN_CRTC2_REGISTER_OFFSET) | 48309fb8bd1SAlex Deucher RREG32(EVERGREEN_CRTC_CONTROL + EVERGREEN_CRTC3_REGISTER_OFFSET); 48409fb8bd1SAlex Deucher } 48509fb8bd1SAlex Deucher if (rdev->num_crtc >= 6) { 48609fb8bd1SAlex Deucher reg |= RREG32(EVERGREEN_CRTC_CONTROL + EVERGREEN_CRTC4_REGISTER_OFFSET) | 487bcc1c2a1SAlex Deucher RREG32(EVERGREEN_CRTC_CONTROL + EVERGREEN_CRTC5_REGISTER_OFFSET); 48809fb8bd1SAlex Deucher } 489bcc1c2a1SAlex Deucher if (reg & EVERGREEN_CRTC_MASTER_EN) 490bcc1c2a1SAlex Deucher return true; 491bcc1c2a1SAlex Deucher } else if (ASIC_IS_AVIVO(rdev)) { 492771fe6b9SJerome Glisse reg = RREG32(AVIVO_D1CRTC_CONTROL) | 493771fe6b9SJerome Glisse RREG32(AVIVO_D2CRTC_CONTROL); 494771fe6b9SJerome Glisse if (reg & AVIVO_CRTC_EN) { 495771fe6b9SJerome Glisse return true; 496771fe6b9SJerome Glisse } 497771fe6b9SJerome Glisse } else { 498771fe6b9SJerome Glisse reg = RREG32(RADEON_CRTC_GEN_CNTL) | 499771fe6b9SJerome Glisse RREG32(RADEON_CRTC2_GEN_CNTL); 500771fe6b9SJerome Glisse if (reg & RADEON_CRTC_EN) { 501771fe6b9SJerome Glisse return true; 502771fe6b9SJerome Glisse } 503771fe6b9SJerome Glisse } 504771fe6b9SJerome Glisse 5052cf3a4fcSAlex Deucher check_memsize: 506771fe6b9SJerome Glisse /* then check MEM_SIZE, in case the crtcs are off */ 507771fe6b9SJerome Glisse if (rdev->family >= CHIP_R600) 508771fe6b9SJerome Glisse reg = RREG32(R600_CONFIG_MEMSIZE); 509771fe6b9SJerome Glisse else 510771fe6b9SJerome Glisse reg = RREG32(RADEON_CONFIG_MEMSIZE); 511771fe6b9SJerome Glisse 512771fe6b9SJerome Glisse if (reg) 513771fe6b9SJerome Glisse return true; 514771fe6b9SJerome Glisse 515771fe6b9SJerome Glisse return false; 516771fe6b9SJerome Glisse 517771fe6b9SJerome Glisse } 518771fe6b9SJerome Glisse 5190c195119SAlex Deucher /** 5200c195119SAlex Deucher * radeon_update_bandwidth_info - update display bandwidth params 5210c195119SAlex Deucher * 5220c195119SAlex Deucher * @rdev: radeon_device pointer 5230c195119SAlex Deucher * 5240c195119SAlex Deucher * Used when sclk/mclk are switched or display modes are set. 5250c195119SAlex Deucher * params are used to calculate display watermarks (all asics) 5260c195119SAlex Deucher */ 527f47299c5SAlex Deucher void radeon_update_bandwidth_info(struct radeon_device *rdev) 528f47299c5SAlex Deucher { 529f47299c5SAlex Deucher fixed20_12 a; 5308807286eSAlex Deucher u32 sclk = rdev->pm.current_sclk; 5318807286eSAlex Deucher u32 mclk = rdev->pm.current_mclk; 532f47299c5SAlex Deucher 5338807286eSAlex Deucher /* sclk/mclk in Mhz */ 53468adac5eSBen Skeggs a.full = dfixed_const(100); 53568adac5eSBen Skeggs rdev->pm.sclk.full = dfixed_const(sclk); 53668adac5eSBen Skeggs rdev->pm.sclk.full = dfixed_div(rdev->pm.sclk, a); 53768adac5eSBen Skeggs rdev->pm.mclk.full = dfixed_const(mclk); 53868adac5eSBen Skeggs rdev->pm.mclk.full = dfixed_div(rdev->pm.mclk, a); 539f47299c5SAlex Deucher 5408807286eSAlex Deucher if (rdev->flags & RADEON_IS_IGP) { 54168adac5eSBen Skeggs a.full = dfixed_const(16); 542f47299c5SAlex Deucher /* core_bandwidth = sclk(Mhz) * 16 */ 54368adac5eSBen Skeggs rdev->pm.core_bandwidth.full = dfixed_div(rdev->pm.sclk, a); 544f47299c5SAlex Deucher } 545f47299c5SAlex Deucher } 546f47299c5SAlex Deucher 5470c195119SAlex Deucher /** 5480c195119SAlex Deucher * radeon_boot_test_post_card - check and possibly initialize the hw 5490c195119SAlex Deucher * 5500c195119SAlex Deucher * @rdev: radeon_device pointer 5510c195119SAlex Deucher * 5520c195119SAlex Deucher * Check if the asic is initialized and if not, attempt to initialize 5530c195119SAlex Deucher * it (all asics). 5540c195119SAlex Deucher * Returns true if initialized or false if not. 5550c195119SAlex Deucher */ 55672542d77SDave Airlie bool radeon_boot_test_post_card(struct radeon_device *rdev) 55772542d77SDave Airlie { 55872542d77SDave Airlie if (radeon_card_posted(rdev)) 55972542d77SDave Airlie return true; 56072542d77SDave Airlie 56172542d77SDave Airlie if (rdev->bios) { 56272542d77SDave Airlie DRM_INFO("GPU not posted. posting now...\n"); 56372542d77SDave Airlie if (rdev->is_atom_bios) 56472542d77SDave Airlie atom_asic_init(rdev->mode_info.atom_context); 56572542d77SDave Airlie else 56672542d77SDave Airlie radeon_combios_asic_init(rdev->ddev); 56772542d77SDave Airlie return true; 56872542d77SDave Airlie } else { 56972542d77SDave Airlie dev_err(rdev->dev, "Card not posted and no BIOS - ignoring\n"); 57072542d77SDave Airlie return false; 57172542d77SDave Airlie } 57272542d77SDave Airlie } 57372542d77SDave Airlie 5740c195119SAlex Deucher /** 5750c195119SAlex Deucher * radeon_dummy_page_init - init dummy page used by the driver 5760c195119SAlex Deucher * 5770c195119SAlex Deucher * @rdev: radeon_device pointer 5780c195119SAlex Deucher * 5790c195119SAlex Deucher * Allocate the dummy page used by the driver (all asics). 5800c195119SAlex Deucher * This dummy page is used by the driver as a filler for gart entries 5810c195119SAlex Deucher * when pages are taken out of the GART 5820c195119SAlex Deucher * Returns 0 on sucess, -ENOMEM on failure. 5830c195119SAlex Deucher */ 5843ce0a23dSJerome Glisse int radeon_dummy_page_init(struct radeon_device *rdev) 5853ce0a23dSJerome Glisse { 58682568565SDave Airlie if (rdev->dummy_page.page) 58782568565SDave Airlie return 0; 5883ce0a23dSJerome Glisse rdev->dummy_page.page = alloc_page(GFP_DMA32 | GFP_KERNEL | __GFP_ZERO); 5893ce0a23dSJerome Glisse if (rdev->dummy_page.page == NULL) 5903ce0a23dSJerome Glisse return -ENOMEM; 5913ce0a23dSJerome Glisse rdev->dummy_page.addr = pci_map_page(rdev->pdev, rdev->dummy_page.page, 5923ce0a23dSJerome Glisse 0, PAGE_SIZE, PCI_DMA_BIDIRECTIONAL); 593a30f6fb7SBenjamin Herrenschmidt if (pci_dma_mapping_error(rdev->pdev, rdev->dummy_page.addr)) { 594a30f6fb7SBenjamin Herrenschmidt dev_err(&rdev->pdev->dev, "Failed to DMA MAP the dummy page\n"); 5953ce0a23dSJerome Glisse __free_page(rdev->dummy_page.page); 5963ce0a23dSJerome Glisse rdev->dummy_page.page = NULL; 5973ce0a23dSJerome Glisse return -ENOMEM; 5983ce0a23dSJerome Glisse } 5993ce0a23dSJerome Glisse return 0; 6003ce0a23dSJerome Glisse } 6013ce0a23dSJerome Glisse 6020c195119SAlex Deucher /** 6030c195119SAlex Deucher * radeon_dummy_page_fini - free dummy page used by the driver 6040c195119SAlex Deucher * 6050c195119SAlex Deucher * @rdev: radeon_device pointer 6060c195119SAlex Deucher * 6070c195119SAlex Deucher * Frees the dummy page used by the driver (all asics). 6080c195119SAlex Deucher */ 6093ce0a23dSJerome Glisse void radeon_dummy_page_fini(struct radeon_device *rdev) 6103ce0a23dSJerome Glisse { 6113ce0a23dSJerome Glisse if (rdev->dummy_page.page == NULL) 6123ce0a23dSJerome Glisse return; 6133ce0a23dSJerome Glisse pci_unmap_page(rdev->pdev, rdev->dummy_page.addr, 6143ce0a23dSJerome Glisse PAGE_SIZE, PCI_DMA_BIDIRECTIONAL); 6153ce0a23dSJerome Glisse __free_page(rdev->dummy_page.page); 6163ce0a23dSJerome Glisse rdev->dummy_page.page = NULL; 6173ce0a23dSJerome Glisse } 6183ce0a23dSJerome Glisse 619771fe6b9SJerome Glisse 620771fe6b9SJerome Glisse /* ATOM accessor methods */ 6210c195119SAlex Deucher /* 6220c195119SAlex Deucher * ATOM is an interpreted byte code stored in tables in the vbios. The 6230c195119SAlex Deucher * driver registers callbacks to access registers and the interpreter 6240c195119SAlex Deucher * in the driver parses the tables and executes then to program specific 6250c195119SAlex Deucher * actions (set display modes, asic init, etc.). See radeon_atombios.c, 6260c195119SAlex Deucher * atombios.h, and atom.c 6270c195119SAlex Deucher */ 6280c195119SAlex Deucher 6290c195119SAlex Deucher /** 6300c195119SAlex Deucher * cail_pll_read - read PLL register 6310c195119SAlex Deucher * 6320c195119SAlex Deucher * @info: atom card_info pointer 6330c195119SAlex Deucher * @reg: PLL register offset 6340c195119SAlex Deucher * 6350c195119SAlex Deucher * Provides a PLL register accessor for the atom interpreter (r4xx+). 6360c195119SAlex Deucher * Returns the value of the PLL register. 6370c195119SAlex Deucher */ 638771fe6b9SJerome Glisse static uint32_t cail_pll_read(struct card_info *info, uint32_t reg) 639771fe6b9SJerome Glisse { 640771fe6b9SJerome Glisse struct radeon_device *rdev = info->dev->dev_private; 641771fe6b9SJerome Glisse uint32_t r; 642771fe6b9SJerome Glisse 643771fe6b9SJerome Glisse r = rdev->pll_rreg(rdev, reg); 644771fe6b9SJerome Glisse return r; 645771fe6b9SJerome Glisse } 646771fe6b9SJerome Glisse 6470c195119SAlex Deucher /** 6480c195119SAlex Deucher * cail_pll_write - write PLL register 6490c195119SAlex Deucher * 6500c195119SAlex Deucher * @info: atom card_info pointer 6510c195119SAlex Deucher * @reg: PLL register offset 6520c195119SAlex Deucher * @val: value to write to the pll register 6530c195119SAlex Deucher * 6540c195119SAlex Deucher * Provides a PLL register accessor for the atom interpreter (r4xx+). 6550c195119SAlex Deucher */ 656771fe6b9SJerome Glisse static void cail_pll_write(struct card_info *info, uint32_t reg, uint32_t val) 657771fe6b9SJerome Glisse { 658771fe6b9SJerome Glisse struct radeon_device *rdev = info->dev->dev_private; 659771fe6b9SJerome Glisse 660771fe6b9SJerome Glisse rdev->pll_wreg(rdev, reg, val); 661771fe6b9SJerome Glisse } 662771fe6b9SJerome Glisse 6630c195119SAlex Deucher /** 6640c195119SAlex Deucher * cail_mc_read - read MC (Memory Controller) register 6650c195119SAlex Deucher * 6660c195119SAlex Deucher * @info: atom card_info pointer 6670c195119SAlex Deucher * @reg: MC register offset 6680c195119SAlex Deucher * 6690c195119SAlex Deucher * Provides an MC register accessor for the atom interpreter (r4xx+). 6700c195119SAlex Deucher * Returns the value of the MC register. 6710c195119SAlex Deucher */ 672771fe6b9SJerome Glisse static uint32_t cail_mc_read(struct card_info *info, uint32_t reg) 673771fe6b9SJerome Glisse { 674771fe6b9SJerome Glisse struct radeon_device *rdev = info->dev->dev_private; 675771fe6b9SJerome Glisse uint32_t r; 676771fe6b9SJerome Glisse 677771fe6b9SJerome Glisse r = rdev->mc_rreg(rdev, reg); 678771fe6b9SJerome Glisse return r; 679771fe6b9SJerome Glisse } 680771fe6b9SJerome Glisse 6810c195119SAlex Deucher /** 6820c195119SAlex Deucher * cail_mc_write - write MC (Memory Controller) register 6830c195119SAlex Deucher * 6840c195119SAlex Deucher * @info: atom card_info pointer 6850c195119SAlex Deucher * @reg: MC register offset 6860c195119SAlex Deucher * @val: value to write to the pll register 6870c195119SAlex Deucher * 6880c195119SAlex Deucher * Provides a MC register accessor for the atom interpreter (r4xx+). 6890c195119SAlex Deucher */ 690771fe6b9SJerome Glisse static void cail_mc_write(struct card_info *info, uint32_t reg, uint32_t val) 691771fe6b9SJerome Glisse { 692771fe6b9SJerome Glisse struct radeon_device *rdev = info->dev->dev_private; 693771fe6b9SJerome Glisse 694771fe6b9SJerome Glisse rdev->mc_wreg(rdev, reg, val); 695771fe6b9SJerome Glisse } 696771fe6b9SJerome Glisse 6970c195119SAlex Deucher /** 6980c195119SAlex Deucher * cail_reg_write - write MMIO register 6990c195119SAlex Deucher * 7000c195119SAlex Deucher * @info: atom card_info pointer 7010c195119SAlex Deucher * @reg: MMIO register offset 7020c195119SAlex Deucher * @val: value to write to the pll register 7030c195119SAlex Deucher * 7040c195119SAlex Deucher * Provides a MMIO register accessor for the atom interpreter (r4xx+). 7050c195119SAlex Deucher */ 706771fe6b9SJerome Glisse static void cail_reg_write(struct card_info *info, uint32_t reg, uint32_t val) 707771fe6b9SJerome Glisse { 708771fe6b9SJerome Glisse struct radeon_device *rdev = info->dev->dev_private; 709771fe6b9SJerome Glisse 710771fe6b9SJerome Glisse WREG32(reg*4, val); 711771fe6b9SJerome Glisse } 712771fe6b9SJerome Glisse 7130c195119SAlex Deucher /** 7140c195119SAlex Deucher * cail_reg_read - read MMIO register 7150c195119SAlex Deucher * 7160c195119SAlex Deucher * @info: atom card_info pointer 7170c195119SAlex Deucher * @reg: MMIO register offset 7180c195119SAlex Deucher * 7190c195119SAlex Deucher * Provides an MMIO register accessor for the atom interpreter (r4xx+). 7200c195119SAlex Deucher * Returns the value of the MMIO register. 7210c195119SAlex Deucher */ 722771fe6b9SJerome Glisse static uint32_t cail_reg_read(struct card_info *info, uint32_t reg) 723771fe6b9SJerome Glisse { 724771fe6b9SJerome Glisse struct radeon_device *rdev = info->dev->dev_private; 725771fe6b9SJerome Glisse uint32_t r; 726771fe6b9SJerome Glisse 727771fe6b9SJerome Glisse r = RREG32(reg*4); 728771fe6b9SJerome Glisse return r; 729771fe6b9SJerome Glisse } 730771fe6b9SJerome Glisse 7310c195119SAlex Deucher /** 7320c195119SAlex Deucher * cail_ioreg_write - write IO register 7330c195119SAlex Deucher * 7340c195119SAlex Deucher * @info: atom card_info pointer 7350c195119SAlex Deucher * @reg: IO register offset 7360c195119SAlex Deucher * @val: value to write to the pll register 7370c195119SAlex Deucher * 7380c195119SAlex Deucher * Provides a IO register accessor for the atom interpreter (r4xx+). 7390c195119SAlex Deucher */ 740351a52a2SAlex Deucher static void cail_ioreg_write(struct card_info *info, uint32_t reg, uint32_t val) 741351a52a2SAlex Deucher { 742351a52a2SAlex Deucher struct radeon_device *rdev = info->dev->dev_private; 743351a52a2SAlex Deucher 744351a52a2SAlex Deucher WREG32_IO(reg*4, val); 745351a52a2SAlex Deucher } 746351a52a2SAlex Deucher 7470c195119SAlex Deucher /** 7480c195119SAlex Deucher * cail_ioreg_read - read IO register 7490c195119SAlex Deucher * 7500c195119SAlex Deucher * @info: atom card_info pointer 7510c195119SAlex Deucher * @reg: IO register offset 7520c195119SAlex Deucher * 7530c195119SAlex Deucher * Provides an IO register accessor for the atom interpreter (r4xx+). 7540c195119SAlex Deucher * Returns the value of the IO register. 7550c195119SAlex Deucher */ 756351a52a2SAlex Deucher static uint32_t cail_ioreg_read(struct card_info *info, uint32_t reg) 757351a52a2SAlex Deucher { 758351a52a2SAlex Deucher struct radeon_device *rdev = info->dev->dev_private; 759351a52a2SAlex Deucher uint32_t r; 760351a52a2SAlex Deucher 761351a52a2SAlex Deucher r = RREG32_IO(reg*4); 762351a52a2SAlex Deucher return r; 763351a52a2SAlex Deucher } 764351a52a2SAlex Deucher 7650c195119SAlex Deucher /** 7660c195119SAlex Deucher * radeon_atombios_init - init the driver info and callbacks for atombios 7670c195119SAlex Deucher * 7680c195119SAlex Deucher * @rdev: radeon_device pointer 7690c195119SAlex Deucher * 7700c195119SAlex Deucher * Initializes the driver info and register access callbacks for the 7710c195119SAlex Deucher * ATOM interpreter (r4xx+). 7720c195119SAlex Deucher * Returns 0 on sucess, -ENOMEM on failure. 7730c195119SAlex Deucher * Called at driver startup. 7740c195119SAlex Deucher */ 775771fe6b9SJerome Glisse int radeon_atombios_init(struct radeon_device *rdev) 776771fe6b9SJerome Glisse { 77761c4b24bSMathias Fröhlich struct card_info *atom_card_info = 77861c4b24bSMathias Fröhlich kzalloc(sizeof(struct card_info), GFP_KERNEL); 77961c4b24bSMathias Fröhlich 78061c4b24bSMathias Fröhlich if (!atom_card_info) 78161c4b24bSMathias Fröhlich return -ENOMEM; 78261c4b24bSMathias Fröhlich 78361c4b24bSMathias Fröhlich rdev->mode_info.atom_card_info = atom_card_info; 78461c4b24bSMathias Fröhlich atom_card_info->dev = rdev->ddev; 78561c4b24bSMathias Fröhlich atom_card_info->reg_read = cail_reg_read; 78661c4b24bSMathias Fröhlich atom_card_info->reg_write = cail_reg_write; 787351a52a2SAlex Deucher /* needed for iio ops */ 788351a52a2SAlex Deucher if (rdev->rio_mem) { 789351a52a2SAlex Deucher atom_card_info->ioreg_read = cail_ioreg_read; 790351a52a2SAlex Deucher atom_card_info->ioreg_write = cail_ioreg_write; 791351a52a2SAlex Deucher } else { 792351a52a2SAlex Deucher DRM_ERROR("Unable to find PCI I/O BAR; using MMIO for ATOM IIO\n"); 793351a52a2SAlex Deucher atom_card_info->ioreg_read = cail_reg_read; 794351a52a2SAlex Deucher atom_card_info->ioreg_write = cail_reg_write; 795351a52a2SAlex Deucher } 79661c4b24bSMathias Fröhlich atom_card_info->mc_read = cail_mc_read; 79761c4b24bSMathias Fröhlich atom_card_info->mc_write = cail_mc_write; 79861c4b24bSMathias Fröhlich atom_card_info->pll_read = cail_pll_read; 79961c4b24bSMathias Fröhlich atom_card_info->pll_write = cail_pll_write; 80061c4b24bSMathias Fröhlich 80161c4b24bSMathias Fröhlich rdev->mode_info.atom_context = atom_parse(atom_card_info, rdev->bios); 8020e34d094STim Gardner if (!rdev->mode_info.atom_context) { 8030e34d094STim Gardner radeon_atombios_fini(rdev); 8040e34d094STim Gardner return -ENOMEM; 8050e34d094STim Gardner } 8060e34d094STim Gardner 807c31ad97fSRafał Miłecki mutex_init(&rdev->mode_info.atom_context->mutex); 808771fe6b9SJerome Glisse radeon_atom_initialize_bios_scratch_regs(rdev->ddev); 809d904ef9bSDave Airlie atom_allocate_fb_scratch(rdev->mode_info.atom_context); 810771fe6b9SJerome Glisse return 0; 811771fe6b9SJerome Glisse } 812771fe6b9SJerome Glisse 8130c195119SAlex Deucher /** 8140c195119SAlex Deucher * radeon_atombios_fini - free the driver info and callbacks for atombios 8150c195119SAlex Deucher * 8160c195119SAlex Deucher * @rdev: radeon_device pointer 8170c195119SAlex Deucher * 8180c195119SAlex Deucher * Frees the driver info and register access callbacks for the ATOM 8190c195119SAlex Deucher * interpreter (r4xx+). 8200c195119SAlex Deucher * Called at driver shutdown. 8210c195119SAlex Deucher */ 822771fe6b9SJerome Glisse void radeon_atombios_fini(struct radeon_device *rdev) 823771fe6b9SJerome Glisse { 8244a04a844SJerome Glisse if (rdev->mode_info.atom_context) { 825d904ef9bSDave Airlie kfree(rdev->mode_info.atom_context->scratch); 8264a04a844SJerome Glisse } 8270e34d094STim Gardner kfree(rdev->mode_info.atom_context); 8280e34d094STim Gardner rdev->mode_info.atom_context = NULL; 82961c4b24bSMathias Fröhlich kfree(rdev->mode_info.atom_card_info); 8300e34d094STim Gardner rdev->mode_info.atom_card_info = NULL; 831771fe6b9SJerome Glisse } 832771fe6b9SJerome Glisse 8330c195119SAlex Deucher /* COMBIOS */ 8340c195119SAlex Deucher /* 8350c195119SAlex Deucher * COMBIOS is the bios format prior to ATOM. It provides 8360c195119SAlex Deucher * command tables similar to ATOM, but doesn't have a unified 8370c195119SAlex Deucher * parser. See radeon_combios.c 8380c195119SAlex Deucher */ 8390c195119SAlex Deucher 8400c195119SAlex Deucher /** 8410c195119SAlex Deucher * radeon_combios_init - init the driver info for combios 8420c195119SAlex Deucher * 8430c195119SAlex Deucher * @rdev: radeon_device pointer 8440c195119SAlex Deucher * 8450c195119SAlex Deucher * Initializes the driver info for combios (r1xx-r3xx). 8460c195119SAlex Deucher * Returns 0 on sucess. 8470c195119SAlex Deucher * Called at driver startup. 8480c195119SAlex Deucher */ 849771fe6b9SJerome Glisse int radeon_combios_init(struct radeon_device *rdev) 850771fe6b9SJerome Glisse { 851771fe6b9SJerome Glisse radeon_combios_initialize_bios_scratch_regs(rdev->ddev); 852771fe6b9SJerome Glisse return 0; 853771fe6b9SJerome Glisse } 854771fe6b9SJerome Glisse 8550c195119SAlex Deucher /** 8560c195119SAlex Deucher * radeon_combios_fini - free the driver info for combios 8570c195119SAlex Deucher * 8580c195119SAlex Deucher * @rdev: radeon_device pointer 8590c195119SAlex Deucher * 8600c195119SAlex Deucher * Frees the driver info for combios (r1xx-r3xx). 8610c195119SAlex Deucher * Called at driver shutdown. 8620c195119SAlex Deucher */ 863771fe6b9SJerome Glisse void radeon_combios_fini(struct radeon_device *rdev) 864771fe6b9SJerome Glisse { 865771fe6b9SJerome Glisse } 866771fe6b9SJerome Glisse 8670c195119SAlex Deucher /* if we get transitioned to only one device, take VGA back */ 8680c195119SAlex Deucher /** 8690c195119SAlex Deucher * radeon_vga_set_decode - enable/disable vga decode 8700c195119SAlex Deucher * 8710c195119SAlex Deucher * @cookie: radeon_device pointer 8720c195119SAlex Deucher * @state: enable/disable vga decode 8730c195119SAlex Deucher * 8740c195119SAlex Deucher * Enable/disable vga decode (all asics). 8750c195119SAlex Deucher * Returns VGA resource flags. 8760c195119SAlex Deucher */ 87728d52043SDave Airlie static unsigned int radeon_vga_set_decode(void *cookie, bool state) 87828d52043SDave Airlie { 87928d52043SDave Airlie struct radeon_device *rdev = cookie; 88028d52043SDave Airlie radeon_vga_set_state(rdev, state); 88128d52043SDave Airlie if (state) 88228d52043SDave Airlie return VGA_RSRC_LEGACY_IO | VGA_RSRC_LEGACY_MEM | 88328d52043SDave Airlie VGA_RSRC_NORMAL_IO | VGA_RSRC_NORMAL_MEM; 88428d52043SDave Airlie else 88528d52043SDave Airlie return VGA_RSRC_NORMAL_IO | VGA_RSRC_NORMAL_MEM; 88628d52043SDave Airlie } 887c1176d6fSDave Airlie 8880c195119SAlex Deucher /** 8891bcb04f7SChristian König * radeon_check_pot_argument - check that argument is a power of two 8901bcb04f7SChristian König * 8911bcb04f7SChristian König * @arg: value to check 8921bcb04f7SChristian König * 8931bcb04f7SChristian König * Validates that a certain argument is a power of two (all asics). 8941bcb04f7SChristian König * Returns true if argument is valid. 8951bcb04f7SChristian König */ 8961bcb04f7SChristian König static bool radeon_check_pot_argument(int arg) 8971bcb04f7SChristian König { 8981bcb04f7SChristian König return (arg & (arg - 1)) == 0; 8991bcb04f7SChristian König } 9001bcb04f7SChristian König 9011bcb04f7SChristian König /** 9020c195119SAlex Deucher * radeon_check_arguments - validate module params 9030c195119SAlex Deucher * 9040c195119SAlex Deucher * @rdev: radeon_device pointer 9050c195119SAlex Deucher * 9060c195119SAlex Deucher * Validates certain module parameters and updates 9070c195119SAlex Deucher * the associated values used by the driver (all asics). 9080c195119SAlex Deucher */ 9091109ca09SLauri Kasanen static void radeon_check_arguments(struct radeon_device *rdev) 91036421338SJerome Glisse { 91136421338SJerome Glisse /* vramlimit must be a power of two */ 9121bcb04f7SChristian König if (!radeon_check_pot_argument(radeon_vram_limit)) { 91336421338SJerome Glisse dev_warn(rdev->dev, "vram limit (%d) must be a power of 2\n", 91436421338SJerome Glisse radeon_vram_limit); 91536421338SJerome Glisse radeon_vram_limit = 0; 91636421338SJerome Glisse } 9171bcb04f7SChristian König 91836421338SJerome Glisse /* gtt size must be power of two and greater or equal to 32M */ 9191bcb04f7SChristian König if (radeon_gart_size < 32) { 92036421338SJerome Glisse dev_warn(rdev->dev, "gart size (%d) too small forcing to 512M\n", 92136421338SJerome Glisse radeon_gart_size); 92236421338SJerome Glisse radeon_gart_size = 512; 9231bcb04f7SChristian König 9241bcb04f7SChristian König } else if (!radeon_check_pot_argument(radeon_gart_size)) { 92536421338SJerome Glisse dev_warn(rdev->dev, "gart size (%d) must be a power of 2\n", 92636421338SJerome Glisse radeon_gart_size); 92736421338SJerome Glisse radeon_gart_size = 512; 92836421338SJerome Glisse } 9291bcb04f7SChristian König rdev->mc.gtt_size = (uint64_t)radeon_gart_size << 20; 9301bcb04f7SChristian König 93136421338SJerome Glisse /* AGP mode can only be -1, 1, 2, 4, 8 */ 93236421338SJerome Glisse switch (radeon_agpmode) { 93336421338SJerome Glisse case -1: 93436421338SJerome Glisse case 0: 93536421338SJerome Glisse case 1: 93636421338SJerome Glisse case 2: 93736421338SJerome Glisse case 4: 93836421338SJerome Glisse case 8: 93936421338SJerome Glisse break; 94036421338SJerome Glisse default: 94136421338SJerome Glisse dev_warn(rdev->dev, "invalid AGP mode %d (valid mode: " 94236421338SJerome Glisse "-1, 0, 1, 2, 4, 8)\n", radeon_agpmode); 94336421338SJerome Glisse radeon_agpmode = 0; 94436421338SJerome Glisse break; 94536421338SJerome Glisse } 94636421338SJerome Glisse } 94736421338SJerome Glisse 9480c195119SAlex Deucher /** 949d1f9809eSMaarten Lankhorst * radeon_switcheroo_quirk_long_wakeup - return true if longer d3 delay is 950d1f9809eSMaarten Lankhorst * needed for waking up. 951d1f9809eSMaarten Lankhorst * 952d1f9809eSMaarten Lankhorst * @pdev: pci dev pointer 953d1f9809eSMaarten Lankhorst */ 954d1f9809eSMaarten Lankhorst static bool radeon_switcheroo_quirk_long_wakeup(struct pci_dev *pdev) 955d1f9809eSMaarten Lankhorst { 956d1f9809eSMaarten Lankhorst 957d1f9809eSMaarten Lankhorst /* 6600m in a macbook pro */ 958d1f9809eSMaarten Lankhorst if (pdev->subsystem_vendor == PCI_VENDOR_ID_APPLE && 959d1f9809eSMaarten Lankhorst pdev->subsystem_device == 0x00e2) { 960d1f9809eSMaarten Lankhorst printk(KERN_INFO "radeon: quirking longer d3 wakeup delay\n"); 961d1f9809eSMaarten Lankhorst return true; 962d1f9809eSMaarten Lankhorst } 963d1f9809eSMaarten Lankhorst 964d1f9809eSMaarten Lankhorst return false; 965d1f9809eSMaarten Lankhorst } 966d1f9809eSMaarten Lankhorst 967d1f9809eSMaarten Lankhorst /** 9680c195119SAlex Deucher * radeon_switcheroo_set_state - set switcheroo state 9690c195119SAlex Deucher * 9700c195119SAlex Deucher * @pdev: pci dev pointer 9710c195119SAlex Deucher * @state: vga switcheroo state 9720c195119SAlex Deucher * 9730c195119SAlex Deucher * Callback for the switcheroo driver. Suspends or resumes the 9740c195119SAlex Deucher * the asics before or after it is powered up using ACPI methods. 9750c195119SAlex Deucher */ 9766a9ee8afSDave Airlie static void radeon_switcheroo_set_state(struct pci_dev *pdev, enum vga_switcheroo_state state) 9776a9ee8afSDave Airlie { 9786a9ee8afSDave Airlie struct drm_device *dev = pci_get_drvdata(pdev); 9796a9ee8afSDave Airlie pm_message_t pmm = { .event = PM_EVENT_SUSPEND }; 9806a9ee8afSDave Airlie if (state == VGA_SWITCHEROO_ON) { 981d1f9809eSMaarten Lankhorst unsigned d3_delay = dev->pdev->d3_delay; 982d1f9809eSMaarten Lankhorst 9836a9ee8afSDave Airlie printk(KERN_INFO "radeon: switched on\n"); 9846a9ee8afSDave Airlie /* don't suspend or resume card normally */ 9855bcf719bSDave Airlie dev->switch_power_state = DRM_SWITCH_POWER_CHANGING; 986d1f9809eSMaarten Lankhorst 987d1f9809eSMaarten Lankhorst if (d3_delay < 20 && radeon_switcheroo_quirk_long_wakeup(pdev)) 988d1f9809eSMaarten Lankhorst dev->pdev->d3_delay = 20; 989d1f9809eSMaarten Lankhorst 9906a9ee8afSDave Airlie radeon_resume_kms(dev); 991d1f9809eSMaarten Lankhorst 992d1f9809eSMaarten Lankhorst dev->pdev->d3_delay = d3_delay; 993d1f9809eSMaarten Lankhorst 9945bcf719bSDave Airlie dev->switch_power_state = DRM_SWITCH_POWER_ON; 995fbf81762SDave Airlie drm_kms_helper_poll_enable(dev); 9966a9ee8afSDave Airlie } else { 9976a9ee8afSDave Airlie printk(KERN_INFO "radeon: switched off\n"); 998fbf81762SDave Airlie drm_kms_helper_poll_disable(dev); 9995bcf719bSDave Airlie dev->switch_power_state = DRM_SWITCH_POWER_CHANGING; 10006a9ee8afSDave Airlie radeon_suspend_kms(dev, pmm); 10015bcf719bSDave Airlie dev->switch_power_state = DRM_SWITCH_POWER_OFF; 10026a9ee8afSDave Airlie } 10036a9ee8afSDave Airlie } 10046a9ee8afSDave Airlie 10050c195119SAlex Deucher /** 10060c195119SAlex Deucher * radeon_switcheroo_can_switch - see if switcheroo state can change 10070c195119SAlex Deucher * 10080c195119SAlex Deucher * @pdev: pci dev pointer 10090c195119SAlex Deucher * 10100c195119SAlex Deucher * Callback for the switcheroo driver. Check of the switcheroo 10110c195119SAlex Deucher * state can be changed. 10120c195119SAlex Deucher * Returns true if the state can be changed, false if not. 10130c195119SAlex Deucher */ 10146a9ee8afSDave Airlie static bool radeon_switcheroo_can_switch(struct pci_dev *pdev) 10156a9ee8afSDave Airlie { 10166a9ee8afSDave Airlie struct drm_device *dev = pci_get_drvdata(pdev); 10176a9ee8afSDave Airlie bool can_switch; 10186a9ee8afSDave Airlie 10196a9ee8afSDave Airlie spin_lock(&dev->count_lock); 10206a9ee8afSDave Airlie can_switch = (dev->open_count == 0); 10216a9ee8afSDave Airlie spin_unlock(&dev->count_lock); 10226a9ee8afSDave Airlie return can_switch; 10236a9ee8afSDave Airlie } 10246a9ee8afSDave Airlie 102526ec685fSTakashi Iwai static const struct vga_switcheroo_client_ops radeon_switcheroo_ops = { 102626ec685fSTakashi Iwai .set_gpu_state = radeon_switcheroo_set_state, 102726ec685fSTakashi Iwai .reprobe = NULL, 102826ec685fSTakashi Iwai .can_switch = radeon_switcheroo_can_switch, 102926ec685fSTakashi Iwai }; 10306a9ee8afSDave Airlie 10310c195119SAlex Deucher /** 10320c195119SAlex Deucher * radeon_device_init - initialize the driver 10330c195119SAlex Deucher * 10340c195119SAlex Deucher * @rdev: radeon_device pointer 10350c195119SAlex Deucher * @pdev: drm dev pointer 10360c195119SAlex Deucher * @pdev: pci dev pointer 10370c195119SAlex Deucher * @flags: driver flags 10380c195119SAlex Deucher * 10390c195119SAlex Deucher * Initializes the driver info and hw (all asics). 10400c195119SAlex Deucher * Returns 0 for success or an error on failure. 10410c195119SAlex Deucher * Called at driver startup. 10420c195119SAlex Deucher */ 1043771fe6b9SJerome Glisse int radeon_device_init(struct radeon_device *rdev, 1044771fe6b9SJerome Glisse struct drm_device *ddev, 1045771fe6b9SJerome Glisse struct pci_dev *pdev, 1046771fe6b9SJerome Glisse uint32_t flags) 1047771fe6b9SJerome Glisse { 1048351a52a2SAlex Deucher int r, i; 1049ad49f501SDave Airlie int dma_bits; 1050771fe6b9SJerome Glisse 1051771fe6b9SJerome Glisse rdev->shutdown = false; 10529f022ddfSJerome Glisse rdev->dev = &pdev->dev; 1053771fe6b9SJerome Glisse rdev->ddev = ddev; 1054771fe6b9SJerome Glisse rdev->pdev = pdev; 1055771fe6b9SJerome Glisse rdev->flags = flags; 1056771fe6b9SJerome Glisse rdev->family = flags & RADEON_FAMILY_MASK; 1057771fe6b9SJerome Glisse rdev->is_atom_bios = false; 1058771fe6b9SJerome Glisse rdev->usec_timeout = RADEON_MAX_USEC_TIMEOUT; 1059771fe6b9SJerome Glisse rdev->mc.gtt_size = radeon_gart_size * 1024 * 1024; 1060733289c2SJerome Glisse rdev->accel_working = false; 10618b25ed34SAlex Deucher /* set up ring ids */ 10628b25ed34SAlex Deucher for (i = 0; i < RADEON_NUM_RINGS; i++) { 10638b25ed34SAlex Deucher rdev->ring[i].idx = i; 10648b25ed34SAlex Deucher } 10651b5331d9SJerome Glisse 1066d522d9ccSThomas Reim DRM_INFO("initializing kernel modesetting (%s 0x%04X:0x%04X 0x%04X:0x%04X).\n", 1067d522d9ccSThomas Reim radeon_family_name[rdev->family], pdev->vendor, pdev->device, 1068d522d9ccSThomas Reim pdev->subsystem_vendor, pdev->subsystem_device); 10691b5331d9SJerome Glisse 1070771fe6b9SJerome Glisse /* mutex initialization are all done here so we 1071771fe6b9SJerome Glisse * can recall function without having locking issues */ 1072d6999bc7SChristian König mutex_init(&rdev->ring_lock); 107340bacf16SAlex Deucher mutex_init(&rdev->dc_hw_i2c_mutex); 1074c20dc369SChristian Koenig atomic_set(&rdev->ih.lock, 0); 10754c788679SJerome Glisse mutex_init(&rdev->gem.mutex); 1076c913e23aSRafał Miłecki mutex_init(&rdev->pm.mutex); 10776759a0a7SMarek Olšák mutex_init(&rdev->gpu_clock_mutex); 1078db7fce39SChristian König init_rwsem(&rdev->pm.mclk_lock); 1079dee53e7fSJerome Glisse init_rwsem(&rdev->exclusive_lock); 108073a6d3fcSRafał Miłecki init_waitqueue_head(&rdev->irq.vblank_queue); 10811b9c3dd0SAlex Deucher r = radeon_gem_init(rdev); 10821b9c3dd0SAlex Deucher if (r) 10831b9c3dd0SAlex Deucher return r; 1084721604a1SJerome Glisse /* initialize vm here */ 108536ff39c4SChristian König mutex_init(&rdev->vm_manager.lock); 108623d4f1f2SAlex Deucher /* Adjust VM size here. 108723d4f1f2SAlex Deucher * Currently set to 4GB ((1 << 20) 4k pages). 108823d4f1f2SAlex Deucher * Max GPUVM size for cayman and SI is 40 bits. 108923d4f1f2SAlex Deucher */ 1090721604a1SJerome Glisse rdev->vm_manager.max_pfn = 1 << 20; 1091721604a1SJerome Glisse INIT_LIST_HEAD(&rdev->vm_manager.lru_vm); 1092771fe6b9SJerome Glisse 10934aac0473SJerome Glisse /* Set asic functions */ 10944aac0473SJerome Glisse r = radeon_asic_init(rdev); 109536421338SJerome Glisse if (r) 10964aac0473SJerome Glisse return r; 109736421338SJerome Glisse radeon_check_arguments(rdev); 10984aac0473SJerome Glisse 1099f95df9caSAlex Deucher /* all of the newer IGP chips have an internal gart 1100f95df9caSAlex Deucher * However some rs4xx report as AGP, so remove that here. 1101f95df9caSAlex Deucher */ 1102f95df9caSAlex Deucher if ((rdev->family >= CHIP_RS400) && 1103f95df9caSAlex Deucher (rdev->flags & RADEON_IS_IGP)) { 1104f95df9caSAlex Deucher rdev->flags &= ~RADEON_IS_AGP; 1105f95df9caSAlex Deucher } 1106f95df9caSAlex Deucher 110730256a3fSJerome Glisse if (rdev->flags & RADEON_IS_AGP && radeon_agpmode == -1) { 1108b574f251SJerome Glisse radeon_agp_disable(rdev); 1109771fe6b9SJerome Glisse } 1110771fe6b9SJerome Glisse 11119ed8b1f9SAlex Deucher /* Set the internal MC address mask 11129ed8b1f9SAlex Deucher * This is the max address of the GPU's 11139ed8b1f9SAlex Deucher * internal address space. 11149ed8b1f9SAlex Deucher */ 11159ed8b1f9SAlex Deucher if (rdev->family >= CHIP_CAYMAN) 11169ed8b1f9SAlex Deucher rdev->mc.mc_mask = 0xffffffffffULL; /* 40 bit MC */ 11179ed8b1f9SAlex Deucher else if (rdev->family >= CHIP_CEDAR) 11189ed8b1f9SAlex Deucher rdev->mc.mc_mask = 0xfffffffffULL; /* 36 bit MC */ 11199ed8b1f9SAlex Deucher else 11209ed8b1f9SAlex Deucher rdev->mc.mc_mask = 0xffffffffULL; /* 32 bit MC */ 11219ed8b1f9SAlex Deucher 1122ad49f501SDave Airlie /* set DMA mask + need_dma32 flags. 1123ad49f501SDave Airlie * PCIE - can handle 40-bits. 1124005a83f1SAlex Deucher * IGP - can handle 40-bits 1125ad49f501SDave Airlie * AGP - generally dma32 is safest 1126005a83f1SAlex Deucher * PCI - dma32 for legacy pci gart, 40 bits on newer asics 1127ad49f501SDave Airlie */ 1128ad49f501SDave Airlie rdev->need_dma32 = false; 1129ad49f501SDave Airlie if (rdev->flags & RADEON_IS_AGP) 1130ad49f501SDave Airlie rdev->need_dma32 = true; 1131005a83f1SAlex Deucher if ((rdev->flags & RADEON_IS_PCI) && 11324a2b6662SJerome Glisse (rdev->family <= CHIP_RS740)) 1133ad49f501SDave Airlie rdev->need_dma32 = true; 1134ad49f501SDave Airlie 1135ad49f501SDave Airlie dma_bits = rdev->need_dma32 ? 32 : 40; 1136ad49f501SDave Airlie r = pci_set_dma_mask(rdev->pdev, DMA_BIT_MASK(dma_bits)); 1137771fe6b9SJerome Glisse if (r) { 113862fff811SDaniel Haid rdev->need_dma32 = true; 1139c52494f6SKonrad Rzeszutek Wilk dma_bits = 32; 1140771fe6b9SJerome Glisse printk(KERN_WARNING "radeon: No suitable DMA available.\n"); 1141771fe6b9SJerome Glisse } 1142c52494f6SKonrad Rzeszutek Wilk r = pci_set_consistent_dma_mask(rdev->pdev, DMA_BIT_MASK(dma_bits)); 1143c52494f6SKonrad Rzeszutek Wilk if (r) { 1144c52494f6SKonrad Rzeszutek Wilk pci_set_consistent_dma_mask(rdev->pdev, DMA_BIT_MASK(32)); 1145c52494f6SKonrad Rzeszutek Wilk printk(KERN_WARNING "radeon: No coherent DMA available.\n"); 1146c52494f6SKonrad Rzeszutek Wilk } 1147771fe6b9SJerome Glisse 1148771fe6b9SJerome Glisse /* Registers mapping */ 1149771fe6b9SJerome Glisse /* TODO: block userspace mapping of io register */ 11502c385151SDaniel Vetter spin_lock_init(&rdev->mmio_idx_lock); 1151*efad86dbSAlex Deucher if (rdev->family >= CHIP_BONAIRE) { 1152*efad86dbSAlex Deucher rdev->rmmio_base = pci_resource_start(rdev->pdev, 5); 1153*efad86dbSAlex Deucher rdev->rmmio_size = pci_resource_len(rdev->pdev, 5); 1154*efad86dbSAlex Deucher } else { 115501d73a69SJordan Crouse rdev->rmmio_base = pci_resource_start(rdev->pdev, 2); 115601d73a69SJordan Crouse rdev->rmmio_size = pci_resource_len(rdev->pdev, 2); 1157*efad86dbSAlex Deucher } 1158771fe6b9SJerome Glisse rdev->rmmio = ioremap(rdev->rmmio_base, rdev->rmmio_size); 1159771fe6b9SJerome Glisse if (rdev->rmmio == NULL) { 1160771fe6b9SJerome Glisse return -ENOMEM; 1161771fe6b9SJerome Glisse } 1162771fe6b9SJerome Glisse DRM_INFO("register mmio base: 0x%08X\n", (uint32_t)rdev->rmmio_base); 1163771fe6b9SJerome Glisse DRM_INFO("register mmio size: %u\n", (unsigned)rdev->rmmio_size); 1164771fe6b9SJerome Glisse 1165351a52a2SAlex Deucher /* io port mapping */ 1166351a52a2SAlex Deucher for (i = 0; i < DEVICE_COUNT_RESOURCE; i++) { 1167351a52a2SAlex Deucher if (pci_resource_flags(rdev->pdev, i) & IORESOURCE_IO) { 1168351a52a2SAlex Deucher rdev->rio_mem_size = pci_resource_len(rdev->pdev, i); 1169351a52a2SAlex Deucher rdev->rio_mem = pci_iomap(rdev->pdev, i, rdev->rio_mem_size); 1170351a52a2SAlex Deucher break; 1171351a52a2SAlex Deucher } 1172351a52a2SAlex Deucher } 1173351a52a2SAlex Deucher if (rdev->rio_mem == NULL) 1174351a52a2SAlex Deucher DRM_ERROR("Unable to find PCI I/O BAR\n"); 1175351a52a2SAlex Deucher 117628d52043SDave Airlie /* if we have > 1 VGA cards, then disable the radeon VGA resources */ 117793239ea1SDave Airlie /* this will fail for cards that aren't VGA class devices, just 117893239ea1SDave Airlie * ignore it */ 117993239ea1SDave Airlie vga_client_register(rdev->pdev, rdev, NULL, radeon_vga_set_decode); 118026ec685fSTakashi Iwai vga_switcheroo_register_client(rdev->pdev, &radeon_switcheroo_ops); 118128d52043SDave Airlie 11823ce0a23dSJerome Glisse r = radeon_init(rdev); 1183b574f251SJerome Glisse if (r) 1184b574f251SJerome Glisse return r; 1185b1e3a6d1SMichel Dänzer 118604eb2206SChristian König r = radeon_ib_ring_tests(rdev); 118704eb2206SChristian König if (r) 118804eb2206SChristian König DRM_ERROR("ib ring test failed (%d).\n", r); 118904eb2206SChristian König 1190409851f4SJerome Glisse r = radeon_gem_debugfs_init(rdev); 1191409851f4SJerome Glisse if (r) { 1192409851f4SJerome Glisse DRM_ERROR("registering gem debugfs failed (%d).\n", r); 1193409851f4SJerome Glisse } 1194409851f4SJerome Glisse 1195b574f251SJerome Glisse if (rdev->flags & RADEON_IS_AGP && !rdev->accel_working) { 1196b574f251SJerome Glisse /* Acceleration not working on AGP card try again 1197b574f251SJerome Glisse * with fallback to PCI or PCIE GART 1198b574f251SJerome Glisse */ 1199a2d07b74SJerome Glisse radeon_asic_reset(rdev); 1200b574f251SJerome Glisse radeon_fini(rdev); 1201b574f251SJerome Glisse radeon_agp_disable(rdev); 1202b574f251SJerome Glisse r = radeon_init(rdev); 12034aac0473SJerome Glisse if (r) 12044aac0473SJerome Glisse return r; 12053ce0a23dSJerome Glisse } 120660a7e396SChristian König if ((radeon_testing & 1)) { 1207ecc0b326SMichel Dänzer radeon_test_moves(rdev); 1208ecc0b326SMichel Dänzer } 120960a7e396SChristian König if ((radeon_testing & 2)) { 121060a7e396SChristian König radeon_test_syncing(rdev); 121160a7e396SChristian König } 1212771fe6b9SJerome Glisse if (radeon_benchmarking) { 1213638dd7dbSIlija Hadzic radeon_benchmark(rdev, radeon_benchmarking); 1214771fe6b9SJerome Glisse } 12156cf8a3f5SJerome Glisse return 0; 1216771fe6b9SJerome Glisse } 1217771fe6b9SJerome Glisse 12184d8bf9aeSChristian König static void radeon_debugfs_remove_files(struct radeon_device *rdev); 12194d8bf9aeSChristian König 12200c195119SAlex Deucher /** 12210c195119SAlex Deucher * radeon_device_fini - tear down the driver 12220c195119SAlex Deucher * 12230c195119SAlex Deucher * @rdev: radeon_device pointer 12240c195119SAlex Deucher * 12250c195119SAlex Deucher * Tear down the driver info (all asics). 12260c195119SAlex Deucher * Called at driver shutdown. 12270c195119SAlex Deucher */ 1228771fe6b9SJerome Glisse void radeon_device_fini(struct radeon_device *rdev) 1229771fe6b9SJerome Glisse { 1230771fe6b9SJerome Glisse DRM_INFO("radeon: finishing device.\n"); 1231771fe6b9SJerome Glisse rdev->shutdown = true; 123290aca4d2SJerome Glisse /* evict vram memory */ 123390aca4d2SJerome Glisse radeon_bo_evict_vram(rdev); 12343ce0a23dSJerome Glisse radeon_fini(rdev); 12356a9ee8afSDave Airlie vga_switcheroo_unregister_client(rdev->pdev); 1236c1176d6fSDave Airlie vga_client_register(rdev->pdev, NULL, NULL, NULL); 1237e0a2ca73SAlex Deucher if (rdev->rio_mem) 1238351a52a2SAlex Deucher pci_iounmap(rdev->pdev, rdev->rio_mem); 1239351a52a2SAlex Deucher rdev->rio_mem = NULL; 1240771fe6b9SJerome Glisse iounmap(rdev->rmmio); 1241771fe6b9SJerome Glisse rdev->rmmio = NULL; 12424d8bf9aeSChristian König radeon_debugfs_remove_files(rdev); 1243771fe6b9SJerome Glisse } 1244771fe6b9SJerome Glisse 1245771fe6b9SJerome Glisse 1246771fe6b9SJerome Glisse /* 1247771fe6b9SJerome Glisse * Suspend & resume. 1248771fe6b9SJerome Glisse */ 12490c195119SAlex Deucher /** 12500c195119SAlex Deucher * radeon_suspend_kms - initiate device suspend 12510c195119SAlex Deucher * 12520c195119SAlex Deucher * @pdev: drm dev pointer 12530c195119SAlex Deucher * @state: suspend state 12540c195119SAlex Deucher * 12550c195119SAlex Deucher * Puts the hw in the suspend state (all asics). 12560c195119SAlex Deucher * Returns 0 for success or an error on failure. 12570c195119SAlex Deucher * Called at driver suspend. 12580c195119SAlex Deucher */ 1259771fe6b9SJerome Glisse int radeon_suspend_kms(struct drm_device *dev, pm_message_t state) 1260771fe6b9SJerome Glisse { 1261875c1866SDarren Jenkins struct radeon_device *rdev; 1262771fe6b9SJerome Glisse struct drm_crtc *crtc; 1263d8dcaa1dSAlex Deucher struct drm_connector *connector; 12647465280cSAlex Deucher int i, r; 12655f8f635eSJerome Glisse bool force_completion = false; 1266771fe6b9SJerome Glisse 1267875c1866SDarren Jenkins if (dev == NULL || dev->dev_private == NULL) { 1268771fe6b9SJerome Glisse return -ENODEV; 1269771fe6b9SJerome Glisse } 1270771fe6b9SJerome Glisse if (state.event == PM_EVENT_PRETHAW) { 1271771fe6b9SJerome Glisse return 0; 1272771fe6b9SJerome Glisse } 1273875c1866SDarren Jenkins rdev = dev->dev_private; 1274875c1866SDarren Jenkins 12755bcf719bSDave Airlie if (dev->switch_power_state == DRM_SWITCH_POWER_OFF) 12766a9ee8afSDave Airlie return 0; 1277d8dcaa1dSAlex Deucher 127886698c20SSeth Forshee drm_kms_helper_poll_disable(dev); 127986698c20SSeth Forshee 1280d8dcaa1dSAlex Deucher /* turn off display hw */ 1281d8dcaa1dSAlex Deucher list_for_each_entry(connector, &dev->mode_config.connector_list, head) { 1282d8dcaa1dSAlex Deucher drm_helper_connector_dpms(connector, DRM_MODE_DPMS_OFF); 1283d8dcaa1dSAlex Deucher } 1284d8dcaa1dSAlex Deucher 1285771fe6b9SJerome Glisse /* unpin the front buffers */ 1286771fe6b9SJerome Glisse list_for_each_entry(crtc, &dev->mode_config.crtc_list, head) { 1287771fe6b9SJerome Glisse struct radeon_framebuffer *rfb = to_radeon_framebuffer(crtc->fb); 12884c788679SJerome Glisse struct radeon_bo *robj; 1289771fe6b9SJerome Glisse 1290771fe6b9SJerome Glisse if (rfb == NULL || rfb->obj == NULL) { 1291771fe6b9SJerome Glisse continue; 1292771fe6b9SJerome Glisse } 12937e4d15d9SDaniel Vetter robj = gem_to_radeon_bo(rfb->obj); 129438651674SDave Airlie /* don't unpin kernel fb objects */ 129538651674SDave Airlie if (!radeon_fbdev_robj_is_fb(rdev, robj)) { 12964c788679SJerome Glisse r = radeon_bo_reserve(robj, false); 129738651674SDave Airlie if (r == 0) { 12984c788679SJerome Glisse radeon_bo_unpin(robj); 12994c788679SJerome Glisse radeon_bo_unreserve(robj); 13004c788679SJerome Glisse } 1301771fe6b9SJerome Glisse } 1302771fe6b9SJerome Glisse } 1303771fe6b9SJerome Glisse /* evict vram memory */ 13044c788679SJerome Glisse radeon_bo_evict_vram(rdev); 13058a47cc9eSChristian König 13068a47cc9eSChristian König mutex_lock(&rdev->ring_lock); 1307771fe6b9SJerome Glisse /* wait for gpu to finish processing current batch */ 13085f8f635eSJerome Glisse for (i = 0; i < RADEON_NUM_RINGS; i++) { 13095f8f635eSJerome Glisse r = radeon_fence_wait_empty_locked(rdev, i); 13105f8f635eSJerome Glisse if (r) { 13115f8f635eSJerome Glisse /* delay GPU reset to resume */ 13125f8f635eSJerome Glisse force_completion = true; 13135f8f635eSJerome Glisse } 13145f8f635eSJerome Glisse } 13155f8f635eSJerome Glisse if (force_completion) { 13165f8f635eSJerome Glisse radeon_fence_driver_force_completion(rdev); 13175f8f635eSJerome Glisse } 13188a47cc9eSChristian König mutex_unlock(&rdev->ring_lock); 1319771fe6b9SJerome Glisse 1320f657c2a7SYang Zhao radeon_save_bios_scratch_regs(rdev); 1321f657c2a7SYang Zhao 1322ce8f5370SAlex Deucher radeon_pm_suspend(rdev); 13233ce0a23dSJerome Glisse radeon_suspend(rdev); 1324d4877cf2SAlex Deucher radeon_hpd_fini(rdev); 1325771fe6b9SJerome Glisse /* evict remaining vram memory */ 13264c788679SJerome Glisse radeon_bo_evict_vram(rdev); 1327771fe6b9SJerome Glisse 132810b06122SJerome Glisse radeon_agp_suspend(rdev); 132910b06122SJerome Glisse 1330771fe6b9SJerome Glisse pci_save_state(dev->pdev); 1331771fe6b9SJerome Glisse if (state.event == PM_EVENT_SUSPEND) { 1332771fe6b9SJerome Glisse /* Shut down the device */ 1333771fe6b9SJerome Glisse pci_disable_device(dev->pdev); 1334771fe6b9SJerome Glisse pci_set_power_state(dev->pdev, PCI_D3hot); 1335771fe6b9SJerome Glisse } 1336ac751efaSTorben Hohn console_lock(); 133738651674SDave Airlie radeon_fbdev_set_suspend(rdev, 1); 1338ac751efaSTorben Hohn console_unlock(); 1339771fe6b9SJerome Glisse return 0; 1340771fe6b9SJerome Glisse } 1341771fe6b9SJerome Glisse 13420c195119SAlex Deucher /** 13430c195119SAlex Deucher * radeon_resume_kms - initiate device resume 13440c195119SAlex Deucher * 13450c195119SAlex Deucher * @pdev: drm dev pointer 13460c195119SAlex Deucher * 13470c195119SAlex Deucher * Bring the hw back to operating state (all asics). 13480c195119SAlex Deucher * Returns 0 for success or an error on failure. 13490c195119SAlex Deucher * Called at driver resume. 13500c195119SAlex Deucher */ 1351771fe6b9SJerome Glisse int radeon_resume_kms(struct drm_device *dev) 1352771fe6b9SJerome Glisse { 135309bdf591SCedric Godin struct drm_connector *connector; 1354771fe6b9SJerome Glisse struct radeon_device *rdev = dev->dev_private; 135504eb2206SChristian König int r; 1356771fe6b9SJerome Glisse 13575bcf719bSDave Airlie if (dev->switch_power_state == DRM_SWITCH_POWER_OFF) 13586a9ee8afSDave Airlie return 0; 13596a9ee8afSDave Airlie 1360ac751efaSTorben Hohn console_lock(); 1361771fe6b9SJerome Glisse pci_set_power_state(dev->pdev, PCI_D0); 1362771fe6b9SJerome Glisse pci_restore_state(dev->pdev); 1363771fe6b9SJerome Glisse if (pci_enable_device(dev->pdev)) { 1364ac751efaSTorben Hohn console_unlock(); 1365771fe6b9SJerome Glisse return -1; 1366771fe6b9SJerome Glisse } 13670ebf1717SDave Airlie /* resume AGP if in use */ 13680ebf1717SDave Airlie radeon_agp_resume(rdev); 13693ce0a23dSJerome Glisse radeon_resume(rdev); 137004eb2206SChristian König 137104eb2206SChristian König r = radeon_ib_ring_tests(rdev); 137204eb2206SChristian König if (r) 137304eb2206SChristian König DRM_ERROR("ib ring test failed (%d).\n", r); 137404eb2206SChristian König 1375ce8f5370SAlex Deucher radeon_pm_resume(rdev); 1376f657c2a7SYang Zhao radeon_restore_bios_scratch_regs(rdev); 137709bdf591SCedric Godin 137838651674SDave Airlie radeon_fbdev_set_suspend(rdev, 0); 1379ac751efaSTorben Hohn console_unlock(); 1380771fe6b9SJerome Glisse 13813fa47d9eSAlex Deucher /* init dig PHYs, disp eng pll */ 13823fa47d9eSAlex Deucher if (rdev->is_atom_bios) { 1383ac89af1eSAlex Deucher radeon_atom_encoder_init(rdev); 1384f3f1f03eSAlex Deucher radeon_atom_disp_eng_pll_init(rdev); 1385bced76f2SAlex Deucher /* turn on the BL */ 1386bced76f2SAlex Deucher if (rdev->mode_info.bl_encoder) { 1387bced76f2SAlex Deucher u8 bl_level = radeon_get_backlight_level(rdev, 1388bced76f2SAlex Deucher rdev->mode_info.bl_encoder); 1389bced76f2SAlex Deucher radeon_set_backlight_level(rdev, rdev->mode_info.bl_encoder, 1390bced76f2SAlex Deucher bl_level); 1391bced76f2SAlex Deucher } 13923fa47d9eSAlex Deucher } 1393d4877cf2SAlex Deucher /* reset hpd state */ 1394d4877cf2SAlex Deucher radeon_hpd_init(rdev); 1395771fe6b9SJerome Glisse /* blat the mode back in */ 1396771fe6b9SJerome Glisse drm_helper_resume_force_mode(dev); 1397a93f344dSAlex Deucher /* turn on display hw */ 1398a93f344dSAlex Deucher list_for_each_entry(connector, &dev->mode_config.connector_list, head) { 1399a93f344dSAlex Deucher drm_helper_connector_dpms(connector, DRM_MODE_DPMS_ON); 1400a93f344dSAlex Deucher } 140186698c20SSeth Forshee 140286698c20SSeth Forshee drm_kms_helper_poll_enable(dev); 1403771fe6b9SJerome Glisse return 0; 1404771fe6b9SJerome Glisse } 1405771fe6b9SJerome Glisse 14060c195119SAlex Deucher /** 14070c195119SAlex Deucher * radeon_gpu_reset - reset the asic 14080c195119SAlex Deucher * 14090c195119SAlex Deucher * @rdev: radeon device pointer 14100c195119SAlex Deucher * 14110c195119SAlex Deucher * Attempt the reset the GPU if it has hung (all asics). 14120c195119SAlex Deucher * Returns 0 for success or an error on failure. 14130c195119SAlex Deucher */ 141490aca4d2SJerome Glisse int radeon_gpu_reset(struct radeon_device *rdev) 141590aca4d2SJerome Glisse { 141655d7c221SChristian König unsigned ring_sizes[RADEON_NUM_RINGS]; 141755d7c221SChristian König uint32_t *ring_data[RADEON_NUM_RINGS]; 141855d7c221SChristian König 141955d7c221SChristian König bool saved = false; 142055d7c221SChristian König 142155d7c221SChristian König int i, r; 14228fd1b84cSDave Airlie int resched; 142390aca4d2SJerome Glisse 1424dee53e7fSJerome Glisse down_write(&rdev->exclusive_lock); 142590aca4d2SJerome Glisse radeon_save_bios_scratch_regs(rdev); 14268fd1b84cSDave Airlie /* block TTM */ 14278fd1b84cSDave Airlie resched = ttm_bo_lock_delayed_workqueue(&rdev->mman.bdev); 142890aca4d2SJerome Glisse radeon_suspend(rdev); 142990aca4d2SJerome Glisse 143055d7c221SChristian König for (i = 0; i < RADEON_NUM_RINGS; ++i) { 143155d7c221SChristian König ring_sizes[i] = radeon_ring_backup(rdev, &rdev->ring[i], 143255d7c221SChristian König &ring_data[i]); 143355d7c221SChristian König if (ring_sizes[i]) { 143455d7c221SChristian König saved = true; 143555d7c221SChristian König dev_info(rdev->dev, "Saved %d dwords of commands " 143655d7c221SChristian König "on ring %d.\n", ring_sizes[i], i); 143755d7c221SChristian König } 143855d7c221SChristian König } 143955d7c221SChristian König 144055d7c221SChristian König retry: 144190aca4d2SJerome Glisse r = radeon_asic_reset(rdev); 144290aca4d2SJerome Glisse if (!r) { 144355d7c221SChristian König dev_info(rdev->dev, "GPU reset succeeded, trying to resume\n"); 144490aca4d2SJerome Glisse radeon_resume(rdev); 144555d7c221SChristian König } 144604eb2206SChristian König 144790aca4d2SJerome Glisse radeon_restore_bios_scratch_regs(rdev); 144855d7c221SChristian König 144955d7c221SChristian König if (!r) { 145055d7c221SChristian König for (i = 0; i < RADEON_NUM_RINGS; ++i) { 145155d7c221SChristian König radeon_ring_restore(rdev, &rdev->ring[i], 145255d7c221SChristian König ring_sizes[i], ring_data[i]); 1453f54b350dSChristian König ring_sizes[i] = 0; 1454f54b350dSChristian König ring_data[i] = NULL; 145590aca4d2SJerome Glisse } 14567a1619b9SMichel Dänzer 145755d7c221SChristian König r = radeon_ib_ring_tests(rdev); 145855d7c221SChristian König if (r) { 145955d7c221SChristian König dev_err(rdev->dev, "ib ring test failed (%d).\n", r); 146055d7c221SChristian König if (saved) { 1461f54b350dSChristian König saved = false; 146255d7c221SChristian König radeon_suspend(rdev); 146355d7c221SChristian König goto retry; 146455d7c221SChristian König } 146555d7c221SChristian König } 146655d7c221SChristian König } else { 146776903b96SJerome Glisse radeon_fence_driver_force_completion(rdev); 146855d7c221SChristian König for (i = 0; i < RADEON_NUM_RINGS; ++i) { 146955d7c221SChristian König kfree(ring_data[i]); 147055d7c221SChristian König } 147155d7c221SChristian König } 147255d7c221SChristian König 1473d3493574SJerome Glisse drm_helper_resume_force_mode(rdev->ddev); 1474d3493574SJerome Glisse 147555d7c221SChristian König ttm_bo_unlock_delayed_workqueue(&rdev->mman.bdev, resched); 14767a1619b9SMichel Dänzer if (r) { 147790aca4d2SJerome Glisse /* bad news, how to tell it to userspace ? */ 147890aca4d2SJerome Glisse dev_info(rdev->dev, "GPU reset failed\n"); 14797a1619b9SMichel Dänzer } 14807a1619b9SMichel Dänzer 1481dee53e7fSJerome Glisse up_write(&rdev->exclusive_lock); 148290aca4d2SJerome Glisse return r; 148390aca4d2SJerome Glisse } 148490aca4d2SJerome Glisse 1485771fe6b9SJerome Glisse 1486771fe6b9SJerome Glisse /* 1487771fe6b9SJerome Glisse * Debugfs 1488771fe6b9SJerome Glisse */ 1489771fe6b9SJerome Glisse int radeon_debugfs_add_files(struct radeon_device *rdev, 1490771fe6b9SJerome Glisse struct drm_info_list *files, 1491771fe6b9SJerome Glisse unsigned nfiles) 1492771fe6b9SJerome Glisse { 1493771fe6b9SJerome Glisse unsigned i; 1494771fe6b9SJerome Glisse 14954d8bf9aeSChristian König for (i = 0; i < rdev->debugfs_count; i++) { 14964d8bf9aeSChristian König if (rdev->debugfs[i].files == files) { 1497771fe6b9SJerome Glisse /* Already registered */ 1498771fe6b9SJerome Glisse return 0; 1499771fe6b9SJerome Glisse } 1500771fe6b9SJerome Glisse } 1501c245cb9eSMichael Witten 15024d8bf9aeSChristian König i = rdev->debugfs_count + 1; 1503c245cb9eSMichael Witten if (i > RADEON_DEBUGFS_MAX_COMPONENTS) { 1504c245cb9eSMichael Witten DRM_ERROR("Reached maximum number of debugfs components.\n"); 1505c245cb9eSMichael Witten DRM_ERROR("Report so we increase " 1506c245cb9eSMichael Witten "RADEON_DEBUGFS_MAX_COMPONENTS.\n"); 1507771fe6b9SJerome Glisse return -EINVAL; 1508771fe6b9SJerome Glisse } 15094d8bf9aeSChristian König rdev->debugfs[rdev->debugfs_count].files = files; 15104d8bf9aeSChristian König rdev->debugfs[rdev->debugfs_count].num_files = nfiles; 15114d8bf9aeSChristian König rdev->debugfs_count = i; 1512771fe6b9SJerome Glisse #if defined(CONFIG_DEBUG_FS) 1513771fe6b9SJerome Glisse drm_debugfs_create_files(files, nfiles, 1514771fe6b9SJerome Glisse rdev->ddev->control->debugfs_root, 1515771fe6b9SJerome Glisse rdev->ddev->control); 1516771fe6b9SJerome Glisse drm_debugfs_create_files(files, nfiles, 1517771fe6b9SJerome Glisse rdev->ddev->primary->debugfs_root, 1518771fe6b9SJerome Glisse rdev->ddev->primary); 1519771fe6b9SJerome Glisse #endif 1520771fe6b9SJerome Glisse return 0; 1521771fe6b9SJerome Glisse } 1522771fe6b9SJerome Glisse 15234d8bf9aeSChristian König static void radeon_debugfs_remove_files(struct radeon_device *rdev) 15244d8bf9aeSChristian König { 15254d8bf9aeSChristian König #if defined(CONFIG_DEBUG_FS) 15264d8bf9aeSChristian König unsigned i; 15274d8bf9aeSChristian König 15284d8bf9aeSChristian König for (i = 0; i < rdev->debugfs_count; i++) { 15294d8bf9aeSChristian König drm_debugfs_remove_files(rdev->debugfs[i].files, 15304d8bf9aeSChristian König rdev->debugfs[i].num_files, 15314d8bf9aeSChristian König rdev->ddev->control); 15324d8bf9aeSChristian König drm_debugfs_remove_files(rdev->debugfs[i].files, 15334d8bf9aeSChristian König rdev->debugfs[i].num_files, 15344d8bf9aeSChristian König rdev->ddev->primary); 15354d8bf9aeSChristian König } 15364d8bf9aeSChristian König #endif 15374d8bf9aeSChristian König } 15384d8bf9aeSChristian König 1539771fe6b9SJerome Glisse #if defined(CONFIG_DEBUG_FS) 1540771fe6b9SJerome Glisse int radeon_debugfs_init(struct drm_minor *minor) 1541771fe6b9SJerome Glisse { 1542771fe6b9SJerome Glisse return 0; 1543771fe6b9SJerome Glisse } 1544771fe6b9SJerome Glisse 1545771fe6b9SJerome Glisse void radeon_debugfs_cleanup(struct drm_minor *minor) 1546771fe6b9SJerome Glisse { 1547771fe6b9SJerome Glisse } 1548771fe6b9SJerome Glisse #endif 1549