/* * Copyright © 2011 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: * Chris Wilson * */ #include #include #include #include #include #include #include #include #include #include #include #include #include "drm.h" #include "ioctl_wrappers.h" #include "drmtest.h" #include "intel_chipset.h" #define LOCAL_I915_EXEC_NO_RELOC (1<<11) #define LOCAL_I915_EXEC_HANDLE_LUT (1<<12) #define COPY_BLT_CMD (2<<29|0x53<<22|0x6) #define BLT_WRITE_ALPHA (1<<21) #define BLT_WRITE_RGB (1<<20) #define BLT_SRC_TILED (1<<15) #define BLT_DST_TILED (1<<11) static int gem_linear_blt(int fd, uint32_t *batch, uint32_t src, uint32_t dst, uint32_t length, struct drm_i915_gem_relocation_entry *reloc) { uint32_t *b = batch; int height = length / (16 * 1024); igt_assert_lte(height, 1 << 16); if (height) { int i = 0; b[i++] = COPY_BLT_CMD | BLT_WRITE_ALPHA | BLT_WRITE_RGB; if (intel_gen(intel_get_drm_devid(fd)) >= 8) b[i-1]+=2; b[i++] = 0xcc << 16 | 1 << 25 | 1 << 24 | (16*1024); b[i++] = 0; b[i++] = height << 16 | (4*1024); b[i++] = 0; reloc->offset = (b-batch+4) * sizeof(uint32_t); reloc->delta = 0; reloc->target_handle = dst; reloc->read_domains = I915_GEM_DOMAIN_RENDER; reloc->write_domain = I915_GEM_DOMAIN_RENDER; reloc->presumed_offset = 0; reloc++; if (intel_gen(intel_get_drm_devid(fd)) >= 8) b[i++] = 0; /* FIXME */ b[i++] = 0; b[i++] = 16*1024; b[i++] = 0; reloc->offset = (b-batch+7) * sizeof(uint32_t); if (intel_gen(intel_get_drm_devid(fd)) >= 8) reloc->offset += sizeof(uint32_t); reloc->delta = 0; reloc->target_handle = src; reloc->read_domains = I915_GEM_DOMAIN_RENDER; reloc->write_domain = 0; reloc->presumed_offset = 0; reloc++; if (intel_gen(intel_get_drm_devid(fd)) >= 8) b[i++] = 0; /* FIXME */ b += i; length -= height * 16*1024; } if (length) { int i = 0; b[i++] = COPY_BLT_CMD | BLT_WRITE_ALPHA | BLT_WRITE_RGB; if (intel_gen(intel_get_drm_devid(fd)) >= 8) b[i-1]+=2; b[i++] = 0xcc << 16 | 1 << 25 | 1 << 24 | (16*1024); b[i++] = height << 16; b[i++] = (1+height) << 16 | (length / 4); b[i++] = 0; reloc->offset = (b-batch+4) * sizeof(uint32_t); reloc->delta = 0; reloc->target_handle = dst; reloc->read_domains = I915_GEM_DOMAIN_RENDER; reloc->write_domain = I915_GEM_DOMAIN_RENDER; reloc->presumed_offset = 0; reloc++; if (intel_gen(intel_get_drm_devid(fd)) >= 8) b[i++] = 0; /* FIXME */ b[i++] = height << 16; b[i++] = 16*1024; b[i++] = 0; reloc->offset = (b-batch+7) * sizeof(uint32_t); if (intel_gen(intel_get_drm_devid(fd)) >= 8) reloc->offset += sizeof(uint32_t); reloc->delta = 0; reloc->target_handle = src; reloc->read_domains = I915_GEM_DOMAIN_RENDER; reloc->write_domain = 0; reloc->presumed_offset = 0; reloc++; if (intel_gen(intel_get_drm_devid(fd)) >= 8) b[i++] = 0; /* FIXME */ b += i; } b[0] = MI_BATCH_BUFFER_END; b[1] = 0; return (b+2 - batch) * sizeof(uint32_t); } static double elapsed(const struct timespec *start, const struct timespec *end, int loop) { return ((end->tv_sec - start->tv_sec) + 1e-9*(end->tv_nsec - start->tv_nsec))/loop; } static int __gem_execbuf(int fd, struct drm_i915_gem_execbuffer2 *execbuf) { int err = 0; if (drmIoctl(fd, DRM_IOCTL_I915_GEM_EXECBUFFER2, execbuf)) err = -errno; return err; } static int run(int size, int count, int reps) { struct drm_i915_gem_execbuffer2 execbuf; struct drm_i915_gem_exec_object2 exec[3]; struct drm_i915_gem_relocation_entry reloc[4]; uint32_t buf[20]; uint32_t handle, src, dst; int fd, len; int ring; fd = drm_open_any(); handle = gem_create(fd, 4096); src = gem_create(fd, size); dst = gem_create(fd, size); len = gem_linear_blt(fd, buf, 0, 1, size, reloc); gem_write(fd, handle, 0, buf, len); memset(exec, 0, sizeof(exec)); exec[0].handle = src; exec[1].handle = dst; exec[2].handle = handle; if (intel_gen(intel_get_drm_devid(fd)) >= 8) exec[2].relocation_count = len > 56 ? 4 : 2; else exec[2].relocation_count = len > 40 ? 4 : 2; exec[2].relocs_ptr = (uintptr_t)reloc; ring = 0; if (HAS_BLT_RING(intel_get_drm_devid(fd))) ring = I915_EXEC_BLT; memset(&execbuf, 0, sizeof(execbuf)); execbuf.buffers_ptr = (uintptr_t)exec; execbuf.buffer_count = 3; execbuf.batch_len = len; execbuf.flags = ring; execbuf.flags |= LOCAL_I915_EXEC_HANDLE_LUT; execbuf.flags |= LOCAL_I915_EXEC_NO_RELOC; if (__gem_execbuf(fd, &execbuf)) { len = gem_linear_blt(fd, buf, src, dst, size, reloc); igt_assert(len == execbuf.batch_len); gem_write(fd, handle, 0, buf, len); execbuf.flags = ring; gem_execbuf(fd, &execbuf); } gem_sync(fd, handle); while (reps--) { struct timespec start, end; sleep(1); clock_gettime(CLOCK_MONOTONIC, &start); for (int loop = 0; loop < count; loop++) gem_execbuf(fd, &execbuf); gem_sync(fd, handle); clock_gettime(CLOCK_MONOTONIC, &end); printf("%7.3f\n", size/elapsed(&start, &end, count)/(1024*1024)); } gem_close(fd, handle); close(fd); return 0; } int main(int argc, char **argv) { int size = 1024*1024; int count = 1; int reps = 13; int c; while ((c = getopt (argc, argv, "c:r:s:")) != -1) { switch (c) { case 'c': count = atoi(optarg); if (count < 1) count = 1; break; case 's': size = atoi(optarg); if (size < 4096) size = 4096; break; case 'r': reps = atoi(optarg); if (reps < 1) reps = 1; break; default: break; } } return run(size, count, reps); }