
Dealing with the specific details of how to program a PLL should be done in a separate file to ensure we can easily expand it to support future generations of the Intel graphics device.
125 lines
4.6 KiB
C++
125 lines
4.6 KiB
C++
/*
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* Copyright (c) 2023, Liav A. <liavalb@hotmail.co.il>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <AK/Format.h>
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#include <Kernel/Debug.h>
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#include <Kernel/Graphics/Intel/Transcoder/PLL.h>
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namespace Kernel::IntelGraphics {
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static constexpr PLLMaxSettings g35limits {
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{ 20'000'000, 400'000'000 }, // values in Hz, dot_clock
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{ 1'400'000'000, 2'800'000'000 }, // values in Hz, VCO
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{ 3, 8 }, // n
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{ 70, 120 }, // m
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{ 10, 20 }, // m1
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{ 5, 9 }, // m2
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{ 5, 80 }, // p
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{ 1, 8 }, // p1
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{ 5, 10 } // p2
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};
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PLLMaxSettings const& pll_max_settings_for_generation(Generation generation)
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{
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switch (generation) {
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case Generation::Gen4:
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return g35limits;
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default:
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VERIFY_NOT_REACHED();
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}
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}
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static size_t find_absolute_difference(u64 target_frequency, u64 checked_frequency)
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{
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if (target_frequency >= checked_frequency)
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return target_frequency - checked_frequency;
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return checked_frequency - target_frequency;
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}
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Optional<PLLSettings> create_pll_settings(Generation generation, u64 target_frequency, u64 reference_clock)
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{
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PLLSettings settings {};
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PLLSettings best_settings {};
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auto& limits = pll_max_settings_for_generation(generation);
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// FIXME: Is this correct for all Intel Native graphics cards?
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settings.p2 = 10;
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dbgln_if(INTEL_GRAPHICS_DEBUG, "Check PLL settings for ref clock of {} Hz, for target of {} Hz", reference_clock, target_frequency);
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u64 best_difference = 0xffffffff;
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for (settings.n = limits.n.min; settings.n <= limits.n.max; ++settings.n) {
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for (settings.m1 = limits.m1.max; settings.m1 >= limits.m1.min; --settings.m1) {
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for (settings.m2 = limits.m2.max; settings.m2 >= limits.m2.min; --settings.m2) {
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for (settings.p1 = limits.p1.max; settings.p1 >= limits.p1.min; --settings.p1) {
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dbgln_if(INTEL_GRAPHICS_DEBUG, "Check PLL settings for {} {} {} {} {}", settings.n, settings.m1, settings.m2, settings.p1, settings.p2);
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if (!check_pll_settings(settings, reference_clock, limits))
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continue;
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auto current_dot_clock = settings.compute_dot_clock(reference_clock);
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if (current_dot_clock == target_frequency)
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return settings;
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auto difference = find_absolute_difference(target_frequency, current_dot_clock);
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if (difference < best_difference && (current_dot_clock > target_frequency)) {
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best_settings = settings;
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best_difference = difference;
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}
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}
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}
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}
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}
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if (best_settings.is_valid())
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return best_settings;
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return {};
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}
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bool check_pll_settings(PLLSettings const& settings, size_t reference_clock, PLLMaxSettings const& limits)
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{
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if (settings.n < limits.n.min || settings.n > limits.n.max) {
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dbgln_if(INTEL_GRAPHICS_DEBUG, "N is invalid {}", settings.n);
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return false;
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}
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if (settings.m1 < limits.m1.min || settings.m1 > limits.m1.max) {
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dbgln_if(INTEL_GRAPHICS_DEBUG, "m1 is invalid {}", settings.m1);
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return false;
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}
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if (settings.m2 < limits.m2.min || settings.m2 > limits.m2.max) {
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dbgln_if(INTEL_GRAPHICS_DEBUG, "m2 is invalid {}", settings.m2);
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return false;
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}
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if (settings.p1 < limits.p1.min || settings.p1 > limits.p1.max) {
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dbgln_if(INTEL_GRAPHICS_DEBUG, "p1 is invalid {}", settings.p1);
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return false;
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}
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if (settings.m1 <= settings.m2) {
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dbgln_if(INTEL_GRAPHICS_DEBUG, "m2 is invalid {} as it is bigger than m1 {}", settings.m2, settings.m1);
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return false;
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}
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auto m = settings.compute_m();
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auto p = settings.compute_p();
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if (m < limits.m.min || m > limits.m.max) {
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dbgln_if(INTEL_GRAPHICS_DEBUG, "m invalid {}", m);
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return false;
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}
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if (p < limits.p.min || p > limits.p.max) {
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dbgln_if(INTEL_GRAPHICS_DEBUG, "p invalid {}", p);
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return false;
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}
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auto dot = settings.compute_dot_clock(reference_clock);
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auto vco = settings.compute_vco(reference_clock);
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if (dot < limits.dot_clock.min || dot > limits.dot_clock.max) {
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dbgln_if(INTEL_GRAPHICS_DEBUG, "Dot clock invalid {}", dot);
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return false;
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}
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if (vco < limits.vco.min || vco > limits.vco.max) {
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dbgln_if(INTEL_GRAPHICS_DEBUG, "VCO clock invalid {}", vco);
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return false;
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}
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return true;
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}
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}
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