| Author | Tokens | Token Proportion | Commits | Commit Proportion |
|---|---|---|---|---|
| Jani Nikula | 391 | 46.71% | 14 | 45.16% |
| Ville Syrjälä | 252 | 30.11% | 14 | 45.16% |
| Luciano Coelho | 122 | 14.58% | 1 | 3.23% |
| Maarten Lankhorst | 70 | 8.36% | 1 | 3.23% |
| Gustavo Sousa | 2 | 0.24% | 1 | 3.23% |
| Total | 837 | 31 |
/* SPDX-License-Identifier: MIT */ /* * Copyright © 2019 Intel Corporation */ #ifndef __INTEL_DE_H__ #define __INTEL_DE_H__ #include "intel_display_core.h" #include "intel_dmc_wl.h" #include "intel_dsb.h" #include "intel_uncore.h" #include "intel_uncore_trace.h" static inline struct intel_uncore *__to_uncore(struct intel_display *display) { return to_intel_uncore(display->drm); } u8 intel_de_read8(struct intel_display *display, intel_reg_t reg); void intel_de_write8(struct intel_display *display, intel_reg_t reg, u8 val); u16 intel_de_read16(struct intel_display *display, intel_reg_t reg); static inline u32 intel_de_read(struct intel_display *display, intel_reg_t reg) { u32 val; intel_dmc_wl_get(display, reg); val = intel_uncore_read(__to_uncore(display), reg); intel_dmc_wl_put(display, reg); return val; } static inline u64 intel_de_read64_2x32_volatile(struct intel_display *display, intel_reg_t lower_reg, intel_reg_t upper_reg) { u64 val; intel_dmc_wl_get(display, lower_reg); intel_dmc_wl_get(display, upper_reg); val = intel_uncore_read64_2x32(__to_uncore(display), lower_reg, upper_reg); intel_dmc_wl_put(display, upper_reg); intel_dmc_wl_put(display, lower_reg); return val; } static inline u64 intel_de_read64_2x32(struct intel_display *display, intel_reg_t reg) { intel_reg_t upper_reg = _MMIO(intel_reg_offset(reg) + 4); u32 lower, upper; lower = intel_de_read(display, reg); upper = intel_de_read(display, upper_reg); return (u64)upper << 32 | lower; } static inline void intel_de_posting_read(struct intel_display *display, intel_reg_t reg) { intel_dmc_wl_get(display, reg); intel_uncore_posting_read(__to_uncore(display), reg); intel_dmc_wl_put(display, reg); } static inline void intel_de_write(struct intel_display *display, intel_reg_t reg, u32 val) { intel_dmc_wl_get(display, reg); intel_uncore_write(__to_uncore(display), reg, val); intel_dmc_wl_put(display, reg); } static inline u32 intel_de_rmw(struct intel_display *display, intel_reg_t reg, u32 clear, u32 set) { u32 val; intel_dmc_wl_get(display, reg); val = intel_uncore_rmw(__to_uncore(display), reg, clear, set); intel_dmc_wl_put(display, reg); return val; } int intel_de_wait_us(struct intel_display *display, intel_reg_t reg, u32 mask, u32 value, unsigned int timeout_us, u32 *out_value); int intel_de_wait_ms(struct intel_display *display, intel_reg_t reg, u32 mask, u32 value, unsigned int timeout_ms, u32 *out_value); int intel_de_wait_fw_ms(struct intel_display *display, intel_reg_t reg, u32 mask, u32 value, unsigned int timeout_ms, u32 *out_value); int intel_de_wait_fw_us_atomic(struct intel_display *display, intel_reg_t reg, u32 mask, u32 value, unsigned int timeout_us, u32 *out_value); int intel_de_wait_for_set_us(struct intel_display *display, intel_reg_t reg, u32 mask, unsigned int timeout_us); int intel_de_wait_for_clear_us(struct intel_display *display, intel_reg_t reg, u32 mask, unsigned int timeout_us); int intel_de_wait_for_set_ms(struct intel_display *display, intel_reg_t reg, u32 mask, unsigned int timeout_ms); int intel_de_wait_for_clear_ms(struct intel_display *display, intel_reg_t reg, u32 mask, unsigned int timeout_ms); /* * Unlocked mmio-accessors, think carefully before using these. * * Certain architectures will die if the same cacheline is concurrently accessed * by different clients (e.g. on Ivybridge). Access to registers should * therefore generally be serialised, by either the dev_priv->uncore.lock or * a more localised lock guarding all access to that bank of registers. */ static inline u32 intel_de_read_fw(struct intel_display *display, intel_reg_t reg) { u32 val; val = intel_uncore_read_fw(__to_uncore(display), reg); trace_i915_reg_rw(false, reg, val, sizeof(val), true); return val; } static inline void intel_de_write_fw(struct intel_display *display, intel_reg_t reg, u32 val) { trace_i915_reg_rw(true, reg, val, sizeof(val), true); intel_uncore_write_fw(__to_uncore(display), reg, val); } static inline u32 intel_de_rmw_fw(struct intel_display *display, intel_reg_t reg, u32 clear, u32 set) { u32 old, val; old = intel_de_read_fw(display, reg); val = (old & ~clear) | set; intel_de_write_fw(display, reg, val); return old; } static inline u32 intel_de_read_notrace(struct intel_display *display, intel_reg_t reg) { return intel_uncore_read_notrace(__to_uncore(display), reg); } static inline void intel_de_write_notrace(struct intel_display *display, intel_reg_t reg, u32 val) { intel_uncore_write_notrace(__to_uncore(display), reg, val); } static __always_inline void intel_de_write_dsb(struct intel_display *display, struct intel_dsb *dsb, intel_reg_t reg, u32 val) { if (dsb) intel_dsb_reg_write(dsb, reg, val); else intel_de_write_fw(display, reg, val); } #endif /* __INTEL_DE_H__ */
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