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drm/v3d: Create a CPU job extension to copy timestamp query to a buffer
A CPU job is a type of job that performs operations that requires CPU intervention. A copy timestamp query job is a job that copy the complete or partial result of a query to a buffer. As V3D doesn't provide any mechanism to obtain a timestamp from the GPU, it is a job that needs CPU intervention. So, create a user extension for the CPU job that enables the creation of a copy timestamp query job. This user extension will allow the creation of a CPU job that copy the results of a timestamp query to a BO with the possibility to indicate the timestamp availability with a availability bit. Signed-off-by: Maíra Canal <mcanal@igalia.com> Reviewed-by: Iago Toral Quiroga <itoral@igalia.com> Link: https://patchwork.freedesktop.org/patch/msgid/20231130164420.932823-17-mcanal@igalia.com
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@ -320,6 +320,7 @@ enum v3d_cpu_job_type {
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V3D_CPU_JOB_TYPE_INDIRECT_CSD = 1,
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V3D_CPU_JOB_TYPE_INDIRECT_CSD = 1,
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V3D_CPU_JOB_TYPE_TIMESTAMP_QUERY,
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V3D_CPU_JOB_TYPE_TIMESTAMP_QUERY,
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V3D_CPU_JOB_TYPE_RESET_TIMESTAMP_QUERY,
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V3D_CPU_JOB_TYPE_RESET_TIMESTAMP_QUERY,
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V3D_CPU_JOB_TYPE_COPY_TIMESTAMP_QUERY,
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};
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};
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struct v3d_timestamp_query {
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struct v3d_timestamp_query {
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@ -361,6 +362,23 @@ struct v3d_timestamp_query_info {
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u32 count;
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u32 count;
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};
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};
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struct v3d_copy_query_results_info {
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/* Define if should write to buffer using 64 or 32 bits */
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bool do_64bit;
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/* Define if it can write to buffer even if the query is not available */
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bool do_partial;
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/* Define if it should write availability bit to buffer */
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bool availability_bit;
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/* Offset of the copy buffer in the BO */
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u32 offset;
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/* Stride of the copy buffer in the BO */
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u32 stride;
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};
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struct v3d_cpu_job {
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struct v3d_cpu_job {
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struct v3d_job base;
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struct v3d_job base;
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@ -369,6 +387,8 @@ struct v3d_cpu_job {
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struct v3d_indirect_csd_info indirect_csd;
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struct v3d_indirect_csd_info indirect_csd;
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struct v3d_timestamp_query_info timestamp_query;
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struct v3d_timestamp_query_info timestamp_query;
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struct v3d_copy_query_results_info copy;
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};
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};
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typedef void (*v3d_cpu_job_fn)(struct v3d_cpu_job *);
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typedef void (*v3d_cpu_job_fn)(struct v3d_cpu_job *);
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@ -362,10 +362,66 @@ v3d_reset_timestamp_queries(struct v3d_cpu_job *job)
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v3d_put_bo_vaddr(bo);
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v3d_put_bo_vaddr(bo);
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}
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}
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static void
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write_to_buffer(void *dst, u32 idx, bool do_64bit, u64 value)
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{
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if (do_64bit) {
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u64 *dst64 = (u64 *)dst;
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dst64[idx] = value;
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} else {
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u32 *dst32 = (u32 *)dst;
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dst32[idx] = (u32)value;
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}
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}
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static void
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v3d_copy_query_results(struct v3d_cpu_job *job)
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{
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struct v3d_timestamp_query_info *timestamp_query = &job->timestamp_query;
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struct v3d_timestamp_query *queries = timestamp_query->queries;
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struct v3d_bo *bo = to_v3d_bo(job->base.bo[0]);
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struct v3d_bo *timestamp = to_v3d_bo(job->base.bo[1]);
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struct v3d_copy_query_results_info *copy = &job->copy;
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struct dma_fence *fence;
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u8 *query_addr;
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bool available, write_result;
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u8 *data;
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int i;
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v3d_get_bo_vaddr(bo);
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v3d_get_bo_vaddr(timestamp);
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data = ((u8 *)bo->vaddr) + copy->offset;
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for (i = 0; i < timestamp_query->count; i++) {
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fence = drm_syncobj_fence_get(queries[i].syncobj);
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available = fence ? dma_fence_is_signaled(fence) : false;
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write_result = available || copy->do_partial;
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if (write_result) {
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query_addr = ((u8 *)timestamp->vaddr) + queries[i].offset;
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write_to_buffer(data, 0, copy->do_64bit, *((u64 *)query_addr));
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}
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if (copy->availability_bit)
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write_to_buffer(data, 1, copy->do_64bit, available ? 1u : 0u);
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data += copy->stride;
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dma_fence_put(fence);
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}
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v3d_put_bo_vaddr(timestamp);
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v3d_put_bo_vaddr(bo);
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}
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static const v3d_cpu_job_fn cpu_job_function[] = {
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static const v3d_cpu_job_fn cpu_job_function[] = {
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[V3D_CPU_JOB_TYPE_INDIRECT_CSD] = v3d_rewrite_csd_job_wg_counts_from_indirect,
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[V3D_CPU_JOB_TYPE_INDIRECT_CSD] = v3d_rewrite_csd_job_wg_counts_from_indirect,
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[V3D_CPU_JOB_TYPE_TIMESTAMP_QUERY] = v3d_timestamp_query,
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[V3D_CPU_JOB_TYPE_TIMESTAMP_QUERY] = v3d_timestamp_query,
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[V3D_CPU_JOB_TYPE_RESET_TIMESTAMP_QUERY] = v3d_reset_timestamp_queries,
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[V3D_CPU_JOB_TYPE_RESET_TIMESTAMP_QUERY] = v3d_reset_timestamp_queries,
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[V3D_CPU_JOB_TYPE_COPY_TIMESTAMP_QUERY] = v3d_copy_query_results,
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};
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};
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static struct dma_fence *
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static struct dma_fence *
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@ -539,6 +539,71 @@ v3d_get_cpu_reset_timestamp_params(struct drm_file *file_priv,
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return 0;
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return 0;
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}
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}
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/* Get data for the copy timestamp query results job submission. */
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static int
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v3d_get_cpu_copy_query_results_params(struct drm_file *file_priv,
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struct drm_v3d_extension __user *ext,
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struct v3d_cpu_job *job)
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{
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u32 __user *offsets, *syncs;
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struct drm_v3d_copy_timestamp_query copy;
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int i;
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if (!job) {
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DRM_DEBUG("CPU job extension was attached to a GPU job.\n");
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return -EINVAL;
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}
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if (job->job_type) {
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DRM_DEBUG("Two CPU job extensions were added to the same CPU job.\n");
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return -EINVAL;
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}
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if (copy_from_user(©, ext, sizeof(copy)))
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return -EFAULT;
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if (copy.pad)
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return -EINVAL;
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job->job_type = V3D_CPU_JOB_TYPE_COPY_TIMESTAMP_QUERY;
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job->timestamp_query.queries = kvmalloc_array(copy.count,
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sizeof(struct v3d_timestamp_query),
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GFP_KERNEL);
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if (!job->timestamp_query.queries)
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return -ENOMEM;
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offsets = u64_to_user_ptr(copy.offsets);
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syncs = u64_to_user_ptr(copy.syncs);
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for (i = 0; i < copy.count; i++) {
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u32 offset, sync;
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if (copy_from_user(&offset, offsets++, sizeof(offset))) {
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kvfree(job->timestamp_query.queries);
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return -EFAULT;
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}
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job->timestamp_query.queries[i].offset = offset;
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if (copy_from_user(&sync, syncs++, sizeof(sync))) {
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kvfree(job->timestamp_query.queries);
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return -EFAULT;
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}
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job->timestamp_query.queries[i].syncobj = drm_syncobj_find(file_priv, sync);
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}
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job->timestamp_query.count = copy.count;
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job->copy.do_64bit = copy.do_64bit;
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job->copy.do_partial = copy.do_partial;
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job->copy.availability_bit = copy.availability_bit;
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job->copy.offset = copy.offset;
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job->copy.stride = copy.stride;
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return 0;
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}
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/* Whenever userspace sets ioctl extensions, v3d_get_extensions parses data
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/* Whenever userspace sets ioctl extensions, v3d_get_extensions parses data
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* according to the extension id (name).
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* according to the extension id (name).
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*/
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*/
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@ -573,6 +638,9 @@ v3d_get_extensions(struct drm_file *file_priv,
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case DRM_V3D_EXT_ID_CPU_RESET_TIMESTAMP_QUERY:
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case DRM_V3D_EXT_ID_CPU_RESET_TIMESTAMP_QUERY:
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ret = v3d_get_cpu_reset_timestamp_params(file_priv, user_ext, job);
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ret = v3d_get_cpu_reset_timestamp_params(file_priv, user_ext, job);
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break;
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break;
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case DRM_V3D_EXT_ID_CPU_COPY_TIMESTAMP_QUERY:
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ret = v3d_get_cpu_copy_query_results_params(file_priv, user_ext, job);
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break;
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default:
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default:
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DRM_DEBUG_DRIVER("Unknown extension id: %d\n", ext.id);
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DRM_DEBUG_DRIVER("Unknown extension id: %d\n", ext.id);
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return -EINVAL;
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return -EINVAL;
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@ -951,6 +1019,7 @@ static const unsigned int cpu_job_bo_handle_count[] = {
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[V3D_CPU_JOB_TYPE_INDIRECT_CSD] = 1,
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[V3D_CPU_JOB_TYPE_INDIRECT_CSD] = 1,
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[V3D_CPU_JOB_TYPE_TIMESTAMP_QUERY] = 1,
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[V3D_CPU_JOB_TYPE_TIMESTAMP_QUERY] = 1,
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[V3D_CPU_JOB_TYPE_RESET_TIMESTAMP_QUERY] = 1,
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[V3D_CPU_JOB_TYPE_RESET_TIMESTAMP_QUERY] = 1,
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[V3D_CPU_JOB_TYPE_COPY_TIMESTAMP_QUERY] = 2,
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};
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};
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/**
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/**
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@ -75,6 +75,7 @@ struct drm_v3d_extension {
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#define DRM_V3D_EXT_ID_CPU_INDIRECT_CSD 0x02
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#define DRM_V3D_EXT_ID_CPU_INDIRECT_CSD 0x02
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#define DRM_V3D_EXT_ID_CPU_TIMESTAMP_QUERY 0x03
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#define DRM_V3D_EXT_ID_CPU_TIMESTAMP_QUERY 0x03
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#define DRM_V3D_EXT_ID_CPU_RESET_TIMESTAMP_QUERY 0x04
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#define DRM_V3D_EXT_ID_CPU_RESET_TIMESTAMP_QUERY 0x04
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#define DRM_V3D_EXT_ID_CPU_COPY_TIMESTAMP_QUERY 0x05
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__u32 flags; /* mbz */
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__u32 flags; /* mbz */
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};
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};
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@ -451,6 +452,46 @@ struct drm_v3d_reset_timestamp_query {
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__u32 count;
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__u32 count;
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};
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};
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/**
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* struct drm_v3d_copy_timestamp_query - ioctl extension for the CPU job to copy
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* query results to a buffer
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*
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* When an extension DRM_V3D_EXT_ID_CPU_COPY_TIMESTAMP_QUERY is defined, it
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* points to this extension to define a copy timestamp query submission. This
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* CPU job will copy the timestamp queries results to a BO with the offset
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* and stride defined in the extension.
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*/
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struct drm_v3d_copy_timestamp_query {
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struct drm_v3d_extension base;
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/* Define if should write to buffer using 64 or 32 bits */
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__u8 do_64bit;
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/* Define if it can write to buffer even if the query is not available */
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__u8 do_partial;
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/* Define if it should write availability bit to buffer */
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__u8 availability_bit;
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/* mbz */
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__u8 pad;
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/* Offset of the buffer in the BO */
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__u32 offset;
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/* Stride of the buffer in the BO */
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__u32 stride;
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/* Number of queries */
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__u32 count;
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/* Array of queries' offsets within the timestamp BO for their value */
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__u64 offsets;
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/* Array of timestamp's syncobjs to indicate its availability */
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__u64 syncs;
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};
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struct drm_v3d_submit_cpu {
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struct drm_v3d_submit_cpu {
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/* Pointer to a u32 array of the BOs that are referenced by the job.
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/* Pointer to a u32 array of the BOs that are referenced by the job.
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*
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*
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@ -462,6 +503,10 @@ struct drm_v3d_submit_cpu {
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*
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*
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* For DRM_V3D_EXT_ID_CPU_RESET_TIMESTAMP_QUERY, it must contain only
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* For DRM_V3D_EXT_ID_CPU_RESET_TIMESTAMP_QUERY, it must contain only
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* one BO, that contains the timestamp.
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* one BO, that contains the timestamp.
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*
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* For DRM_V3D_EXT_ID_CPU_COPY_TIMESTAMP_QUERY, it must contain two
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* BOs. The first is the BO where the timestamp queries will be written
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* to. The second is the BO that contains the timestamp.
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*/
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*/
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__u64 bo_handles;
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__u64 bo_handles;
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