/* * Copyright © 2007 Intel Corporation * * Permission is hereby granted, free of charge, to any person obtaining a * copy of this software and associated documentation files (the "Software"), * to deal in the Software without restriction, including without limitation * the rights to use, copy, modify, merge, publish, distribute, sublicense, * and/or sell copies of the Software, and to permit persons to whom the * Software is furnished to do so, subject to the following conditions: * * The above copyright notice and this permission notice (including the next * paragraph) shall be included in all copies or substantial portions of the * Software. * * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER * DEALINGS IN THE SOFTWARE. * * Authors: * Eric Anholt * */ #include #include #include #include #include #include #include #include "reg_dumper.h" #include "../i810_reg.h" struct idle_flags { uint32_t instdone_flag; char *name; int ignore; unsigned int count; }; struct idle_flags i915_idle_flags[] = { {IDCT_DONE, "IDCT", 1}, {IQ_DONE, "IQ", 1}, {PR_DONE, "PR", 1}, {VLD_DONE, "VLD", 1}, {IP_DONE, "IP", 1}, {FBC_DONE, "FBC"}, {BINNER_DONE, "BINNER"}, {SF_DONE, "SF"}, {SE_DONE, "SE"}, {WM_DONE, "WM"}, {IZ_DONE, "IZ"}, {PERSPECTIVE_INTERP_DONE, "perspective interpolation"}, {DISPATCHER_DONE, "dispatcher"}, {PROJECTION_DONE, "projection and LOD"}, {DEPENDENT_ADDRESS_DONE, "dependent address calc"}, {TEXTURE_FETCH_DONE, "texture fetch"}, {TEXTURE_DECOMPRESS_DONE, "texture decompress"}, {SAMPLER_CACHE_DONE, "sampler cache"}, {FILTER_DONE, "filter"}, {BYPASS_FIFO_DONE, "bypass FIFO"}, {PS_DONE, "PS"}, {CC_DONE, "CC"}, {MAP_FILTER_DONE, "map filter"}, {MAP_L2_IDLE, "map L2", 1}, {0x80000038, "reserved bits", 1}, {0, "total"}, {0, "other"}, }; struct idle_flags i965_idle_flags[] = { {I965_SF_DONE, "SF"}, {I965_SE_DONE, "SE"}, {I965_WM_DONE, "WM"}, {I965_TEXTURE_FETCH_DONE, "texture fetch"}, {I965_SAMPLER_CACHE_DONE, "sampler cache"}, {I965_FILTER_DONE, "filter"}, {I965_PS_DONE, "PS"}, {I965_CC_DONE, "CC"}, {I965_MAP_FILTER_DONE, "map filter"}, {I965_MAP_L2_IDLE, "map L2"}, {I965_CP_DONE, "CP"}, {0, "total"}, {0, "other"}, }; /* Fills in the "other" and "total" fields' idle flags */ static void setup_other_flags(I830Ptr pI830, struct idle_flags *idle_flags, int idle_flag_count) { uint32_t other_idle_flags, total_idle_flags = 0; int i; if (IS_I965G(pI830)) other_idle_flags = ~(I965_RING_0_ENABLE); else other_idle_flags = ~(RING_0_ENABLE | RING_1_ENABLE | RING_2_ENABLE); for (i = 0; i < idle_flag_count - 2; i++) { other_idle_flags &= ~idle_flags[i].instdone_flag; if (!idle_flags[i].ignore) total_idle_flags |= idle_flags[i].instdone_flag; } idle_flags[idle_flag_count - 2].instdone_flag = total_idle_flags; idle_flags[idle_flag_count - 1].instdone_flag = other_idle_flags; } int main(int argc, char **argv) { struct pci_device *dev; I830Rec i830; I830Ptr pI830 = &i830; ScrnInfoRec scrn; int err, mmio_bar; void *mmio; struct idle_flags *idle_flags; int idle_flag_count; err = pci_system_init(); if (err != 0) { fprintf(stderr, "Couldn't initialize PCI system: %s\n", strerror(err)); exit(1); } /* Grab the graphics card */ dev = pci_device_find_by_slot(0, 0, 2, 0); if (dev == NULL) errx(1, "Couldn't find graphics card"); err = pci_device_probe(dev); if (err != 0) { fprintf(stderr, "Couldn't probe graphics card: %s\n", strerror(err)); exit(1); } if (dev->vendor_id != 0x8086) errx(1, "Graphics card is non-intel"); i830.PciInfo = dev; mmio_bar = IS_I9XX((&i830)) ? 0 : 1; err = pci_device_map_range (dev, dev->regions[mmio_bar].base_addr, dev->regions[mmio_bar].size, PCI_DEV_MAP_FLAG_WRITABLE, &mmio); if (err != 0) { fprintf(stderr, "Couldn't map MMIO region: %s\n", strerror(err)); exit(1); } i830.mmio = mmio; scrn.scrnIndex = 0; scrn.pI830 = &i830; if (IS_I965G(pI830)) { idle_flags = i965_idle_flags; idle_flag_count = ARRAY_SIZE(i965_idle_flags); } else { idle_flags = i915_idle_flags; idle_flag_count = ARRAY_SIZE(i915_idle_flags); } setup_other_flags(pI830, idle_flags, idle_flag_count); for (;;) { int i, j; for (i = 0; i < 100; i++) { uint32_t instdone; if (IS_I965G(pI830)) instdone = INREG(INST_DONE_I965); else instdone = INREG(INST_DONE); for (j = 0; j < idle_flag_count; j++) { if ((instdone & idle_flags[j].instdone_flag) != idle_flags[j].instdone_flag) idle_flags[j].count++; } usleep (10000); } for (j = 0; j < idle_flag_count; j++) { if (!idle_flags[j].ignore) printf("%25s: %3d\n", idle_flags[j].name, idle_flags[j].count); else printf("%25s: %3d (unreliable)\n", idle_flags[j].name, idle_flags[j].count); idle_flags[j].count = 0; } printf("\n"); } return 0; } void xf86DrvMsg(int scrnIndex, int severity, const char *format, ...) { va_list va; switch (severity) { case X_INFO: printf("(II): "); break; case X_WARNING: printf("(WW): "); break; case X_ERROR: printf("(EE): "); break; } va_start(va, format); vprintf(format, va); va_end(va); }