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448 lines
11 KiB
448 lines
11 KiB
/*
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* Copyright © 2014 Intel Corporation
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*
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* Permission is hereby granted, free of charge, to any person obtaining a
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* copy of this software and associated documentation files (the "Software"),
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* to deal in the Software without restriction, including without limitation
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* the rights to use, copy, modify, merge, publish, distribute, sublicense,
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* and/or sell copies of the Software, and to permit persons to whom the
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* Software is furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice (including the next
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* paragraph) shall be included in all copies or substantial portions of the
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* Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
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* THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
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* DEALINGS IN THE SOFTWARE.
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*/
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#include <stdint.h>
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#include <stdio.h>
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#include <stdbool.h>
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#include <stddef.h>
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#include <string.h>
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/**
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* container_of - cast a member of a structure out to the containing structure
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* @ptr: the pointer to the member.
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* @type: the type of the container struct this is embedded in.
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* @member: the name of the member within the struct.
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*
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*/
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#define container_of(ptr, type, member) ({ \
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typeof( ((type *)0)->member ) *__mptr = (ptr); \
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(type *)( (char *)__mptr - offsetof(type,member) );})
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#define div_u64(a, b) ((a) / (b))
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/*
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* Stub a few defines/structures
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*/
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#define I915_MAX_PIPES 3
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#define I915_MAX_PLANES 3
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#define ARRAY_SIZE(arr) (sizeof(arr) / sizeof((arr)[0]))
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#define for_each_pipe(p) for ((p) = 0; (p) < 3; (p)++)
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#define for_each_plane(pipe, p) for ((p) = 0; (p) < 3; (p)++)
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#define for_each_crtc(dev, crtc) \
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for (int i = 0; i < 3 && (crtc = &crtcs[i].base); i++)
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#define for_each_intel_crtc(dev, intel_crtc) \
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for (int i = 0; i < 3, intel_crtc = &crtcs[i]; i++)
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enum pipe {
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PIPE_A,
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PIPE_B,
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PIPE_C,
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};
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enum plane {
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PLANE_1,
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PLANE_2,
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PLANE_3,
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};
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#define pipe_name(p) ((p) + 'A')
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struct drm_device {
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void *dev_private;
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};
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struct drm_i915_private {
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struct drm_device *dev;
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};
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struct drm_crtc {
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struct drm_device *dev;
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bool active;
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};
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static bool intel_crtc_active(struct drm_crtc *crtc)
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{
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return crtc->active;
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}
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struct intel_crtc {
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struct drm_crtc base;
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enum pipe pipe;
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};
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static int intel_num_planes(struct intel_crtc *crtc)
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{
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return 3;
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}
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struct intel_crtc crtcs[I915_MAX_PIPES];
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#define to_intel_crtc(x) container_of(x, struct intel_crtc, base)
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/*
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* DDB code
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*/
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struct intel_wm_config {
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unsigned int num_pipes_active;
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};
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struct intel_plane_wm_parameters {
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uint32_t horiz_pixels;
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uint32_t vert_pixels;
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uint8_t bytes_per_pixel;
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bool enabled;
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bool scaled;
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};
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struct skl_pipe_wm_parameters {
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bool active;
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uint32_t pipe_htotal;
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uint32_t pixel_rate; /* in KHz */
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struct intel_plane_wm_parameters plane[I915_MAX_PLANES];
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struct intel_plane_wm_parameters cursor;
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};
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struct skl_ddb_entry {
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uint16_t start, end; /* in number of blocks. 'end' is exclusive */
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};
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static inline uint16_t skl_ddb_entry_size(const struct skl_ddb_entry *entry)
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{
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/* end not set, clearly no allocation here. start can be 0 though */
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if (entry->end == 0)
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return 0;
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return entry->end - entry->start;
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}
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static inline bool skl_ddb_entry_equal(const struct skl_ddb_entry *e1,
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const struct skl_ddb_entry *e2)
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{
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if (e1->start == e2->start && e1->end == e2->end)
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return true;
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return false;
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}
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struct skl_ddb_allocation {
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struct skl_ddb_entry plane[I915_MAX_PIPES][I915_MAX_PLANES];
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struct skl_ddb_entry cursor[I915_MAX_PIPES];
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};
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/*
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* On gen9, we need to allocate Display Data Buffer (DDB) portions to the
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* different active planes.
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*/
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#define SKL_DDB_SIZE 896 /* in blocks */
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static void
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skl_ddb_get_pipe_allocation_limits(struct drm_device *dev,
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struct drm_crtc *for_crtc,
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const struct intel_wm_config *config,
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const struct skl_pipe_wm_parameters *params,
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struct skl_ddb_entry *alloc /* out */)
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{
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struct drm_crtc *crtc;
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unsigned int pipe_size, ddb_size;
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int nth_active_pipe;
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if (!params->active) {
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alloc->start = 0;
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alloc->end = 0;
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return;
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}
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ddb_size = SKL_DDB_SIZE;
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ddb_size -= 4; /* 4 blocks for bypass path allocation */
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nth_active_pipe = 0;
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for_each_crtc(dev, crtc) {
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if (!intel_crtc_active(crtc))
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continue;
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if (crtc == for_crtc)
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break;
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nth_active_pipe++;
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}
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pipe_size = ddb_size / config->num_pipes_active;
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alloc->start = nth_active_pipe * ddb_size / config->num_pipes_active;
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alloc->end = alloc->start + pipe_size;
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}
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static unsigned int skl_cursor_allocation(const struct intel_wm_config *config)
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{
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if (config->num_pipes_active == 1)
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return 32;
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return 8;
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}
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static unsigned int
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skl_plane_relative_data_rate(const struct intel_plane_wm_parameters *p)
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{
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return p->horiz_pixels * p->vert_pixels * p->bytes_per_pixel;
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}
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/*
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* We don't overflow 32 bits. Worst case is 3 planes enabled, each fetching
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* a 8192x4096@32bpp framebuffer:
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* 3 * 4096 * 8192 * 4 < 2^32
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*/
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static unsigned int
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skl_get_total_relative_data_rate(struct intel_crtc *intel_crtc,
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const struct skl_pipe_wm_parameters *params)
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{
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unsigned int total_data_rate = 0;
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int plane;
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for (plane = 0; plane < intel_num_planes(intel_crtc); plane++) {
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const struct intel_plane_wm_parameters *p;
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p = ¶ms->plane[plane];
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if (!p->enabled)
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continue;
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total_data_rate += skl_plane_relative_data_rate(p);
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}
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return total_data_rate;
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}
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static void
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skl_allocate_pipe_ddb(struct drm_crtc *crtc,
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const struct intel_wm_config *config,
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const struct skl_pipe_wm_parameters *params,
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struct skl_ddb_allocation *ddb /* out */)
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{
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struct drm_device *dev = crtc->dev;
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struct intel_crtc *intel_crtc = to_intel_crtc(crtc);
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enum pipe pipe = intel_crtc->pipe;
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struct skl_ddb_entry alloc;
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uint16_t alloc_size, start, cursor_blocks;
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uint16_t minimum[I915_MAX_PLANES];
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unsigned int total_data_rate;
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int plane;
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skl_ddb_get_pipe_allocation_limits(dev, crtc, config, params, &alloc);
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alloc_size = skl_ddb_entry_size(&alloc);
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if (alloc_size == 0) {
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memset(ddb->plane[pipe], 0, sizeof(ddb->plane[pipe]));
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memset(&ddb->cursor[pipe], 0, sizeof(ddb->cursor[pipe]));
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return;
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}
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cursor_blocks = skl_cursor_allocation(config);
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ddb->cursor[pipe].start = alloc.end - cursor_blocks;
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ddb->cursor[pipe].end = alloc.end;
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alloc_size -= cursor_blocks;
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alloc.end -= cursor_blocks;
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/* 1. Allocate the mininum required blocks for each active plane */
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for_each_plane(pipe, plane) {
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const struct intel_plane_wm_parameters *p;
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p = ¶ms->plane[plane];
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if (!p->enabled)
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continue;
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minimum[plane] = 8;
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alloc_size -= minimum[plane];
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}
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/*
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* 2. Distribute the remaining space in proportion to the amount of
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* data each plane needs to fetch from memory.
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*
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* FIXME: we may not allocate every single block here.
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*/
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total_data_rate = skl_get_total_relative_data_rate(intel_crtc, params);
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start = alloc.start;
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for (plane = 0; plane < intel_num_planes(intel_crtc); plane++) {
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const struct intel_plane_wm_parameters *p;
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unsigned int data_rate;
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uint16_t plane_blocks;
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p = ¶ms->plane[plane];
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if (!p->enabled)
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continue;
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data_rate = skl_plane_relative_data_rate(p);
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/*
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* promote the expression to 64 bits to avoid overflowing, the
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* result is < available as data_rate / total_data_rate < 1
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*/
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plane_blocks = minimum[plane];
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plane_blocks += div_u64((uint64_t)alloc_size * data_rate,
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total_data_rate);
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ddb->plane[pipe][plane].start = start;
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ddb->plane[pipe][plane].end = start + plane_blocks;
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start += plane_blocks;
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}
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}
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static void skl_ddb_check_entry(struct skl_ddb_entry *entry, int16_t *cursor)
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{
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if (skl_ddb_entry_size(entry) == 0)
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return;
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/* check that ->start is the next available block */
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if (entry->start < *cursor)
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printf("error: allocation overlaps previous block\n");
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else if (entry->start >= *cursor + 1)
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printf("warning: allocation leaves a hole\n");
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*cursor = entry->end;
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}
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static void skl_ddb_check_last_allocation(int16_t cursor)
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{
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uint16_t last_offset = SKL_DDB_SIZE - 4;
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if (cursor < last_offset)
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printf("warning: %d blocks not allocated\n",
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last_offset - cursor);
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else if (cursor > last_offset)
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printf("error: allocation greater than available space\n");
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}
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static void skl_ddb_print(struct skl_ddb_allocation *ddb)
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{
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struct skl_ddb_entry *entry;
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enum pipe pipe;
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int plane;
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int16_t cursor = 0;
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printf("%-15s%8s%8s%8s\n", "", "Start", "End", "Size");
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for_each_pipe(pipe) {
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printf("Pipe %c\n", pipe_name(pipe));
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for_each_plane(pipe, plane) {
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entry = &ddb->plane[pipe][plane];
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printf(" Plane%-8d%8u%8u%8u\n", plane + 1,
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entry->start, entry->end,
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skl_ddb_entry_size(entry));
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skl_ddb_check_entry(entry, &cursor);
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}
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entry = &ddb->cursor[pipe];
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printf(" %-13s%8u%8u%8u\n", "Cursor", entry->start,
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entry->end, skl_ddb_entry_size(entry));
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skl_ddb_check_entry(entry, &cursor);
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}
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skl_ddb_check_last_allocation(cursor);
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}
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static struct drm_device drm_device;
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static struct drm_i915_private drm_i915_private;
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static void init_stub(void)
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{
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int i;
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drm_device.dev_private = &drm_i915_private;
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drm_i915_private.dev = &drm_device;
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for (i = 0; i < I915_MAX_PIPES; i++) {
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crtcs[i].base.dev = &drm_device;
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crtcs[i].pipe = i;
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}
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}
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struct wm_input {
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struct intel_wm_config config;
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struct skl_pipe_wm_parameters params[I915_MAX_PIPES];
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};
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static void wm_input_reset(struct wm_input *in)
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{
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memset(in, 0, sizeof(*in));
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}
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static void wm_enable_plane(struct wm_input *in,
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enum pipe pipe, enum plane plane,
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uint32_t width, uint32_t height, int bpp)
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{
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enum pipe i;
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in->params[pipe].active = 1;
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in->config.num_pipes_active = 0;
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for_each_pipe(i)
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if (in->params[i].active)
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in->config.num_pipes_active++;
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in->params[pipe].plane[plane].horiz_pixels = width;
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in->params[pipe].plane[plane].vert_pixels = height;
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in->params[pipe].plane[plane].bytes_per_pixel = bpp;
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in->params[pipe].plane[plane].enabled = true;
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}
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static void skl_ddb_allocate(struct wm_input *in,
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struct skl_ddb_allocation *out)
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{
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struct drm_crtc *crtc;
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for_each_crtc(, crtc) {
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enum pipe pipe = to_intel_crtc(crtc)->pipe;
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skl_allocate_pipe_ddb(crtc,
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&in->config, &in->params[pipe], out);
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}
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}
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int main(int argc, char **argv)
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{
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struct wm_input in;
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static struct skl_ddb_allocation ddb;
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init_stub();
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wm_input_reset(&in);
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wm_enable_plane(&in, PIPE_A, PLANE_1, 1280, 1024, 4);
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wm_enable_plane(&in, PIPE_A, PLANE_2, 100, 100, 4);
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skl_ddb_allocate(&in, &ddb);
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skl_ddb_print(&ddb);
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return 0;
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}
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