diff options
| author | Joshua Bakita <bakitajoshua@gmail.com> | 2023-06-28 18:24:25 -0400 |
|---|---|---|
| committer | Joshua Bakita <bakitajoshua@gmail.com> | 2023-06-28 18:24:25 -0400 |
| commit | 01e6fac4d61fdd7fff5433942ec93fc2ea1e4df1 (patch) | |
| tree | 4ef34501728a087be24f4ba0af90f91486bf780b /include/gk20a/gr_pri_gk20a.h | |
| parent | 306a03d18b305e4e573be3b2931978fa10679eb9 (diff) | |
Include nvgpu headers
These are needed to build on NVIDIA's Jetson boards for the time
being. Only a couple structs are required, so it should be fairly
easy to remove this dependency at some point in the future.
Diffstat (limited to 'include/gk20a/gr_pri_gk20a.h')
| -rw-r--r-- | include/gk20a/gr_pri_gk20a.h | 261 |
1 files changed, 261 insertions, 0 deletions
diff --git a/include/gk20a/gr_pri_gk20a.h b/include/gk20a/gr_pri_gk20a.h new file mode 100644 index 0000000..d832d90 --- /dev/null +++ b/include/gk20a/gr_pri_gk20a.h | |||
| @@ -0,0 +1,261 @@ | |||
| 1 | /* | ||
| 2 | * GK20A Graphics Context Pri Register Addressing | ||
| 3 | * | ||
| 4 | * Copyright (c) 2014-2018, NVIDIA CORPORATION. All rights reserved. | ||
| 5 | * | ||
| 6 | * Permission is hereby granted, free of charge, to any person obtaining a | ||
| 7 | * copy of this software and associated documentation files (the "Software"), | ||
| 8 | * to deal in the Software without restriction, including without limitation | ||
| 9 | * the rights to use, copy, modify, merge, publish, distribute, sublicense, | ||
| 10 | * and/or sell copies of the Software, and to permit persons to whom the | ||
| 11 | * Software is furnished to do so, subject to the following conditions: | ||
| 12 | * | ||
| 13 | * The above copyright notice and this permission notice shall be included in | ||
| 14 | * all copies or substantial portions of the Software. | ||
| 15 | * | ||
| 16 | * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR | ||
| 17 | * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, | ||
| 18 | * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL | ||
| 19 | * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER | ||
| 20 | * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING | ||
| 21 | * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER | ||
| 22 | * DEALINGS IN THE SOFTWARE. | ||
| 23 | */ | ||
| 24 | #ifndef GR_PRI_GK20A_H | ||
| 25 | #define GR_PRI_GK20A_H | ||
| 26 | |||
| 27 | /* | ||
| 28 | * These convenience macros are generally for use in the management/modificaiton | ||
| 29 | * of the context state store for gr/compute contexts. | ||
| 30 | */ | ||
| 31 | |||
| 32 | /* | ||
| 33 | * GPC pri addressing | ||
| 34 | */ | ||
| 35 | static inline u32 pri_gpccs_addr_width(void) | ||
| 36 | { | ||
| 37 | return 15; /*from where?*/ | ||
| 38 | } | ||
| 39 | static inline u32 pri_gpccs_addr_mask(u32 addr) | ||
| 40 | { | ||
| 41 | return addr & ((1 << pri_gpccs_addr_width()) - 1); | ||
| 42 | } | ||
| 43 | static inline u32 pri_gpc_addr(struct gk20a *g, u32 addr, u32 gpc) | ||
| 44 | { | ||
| 45 | u32 gpc_base = nvgpu_get_litter_value(g, GPU_LIT_GPC_BASE); | ||
| 46 | u32 gpc_stride = nvgpu_get_litter_value(g, GPU_LIT_GPC_STRIDE); | ||
| 47 | return gpc_base + (gpc * gpc_stride) + addr; | ||
| 48 | } | ||
| 49 | static inline bool pri_is_gpc_addr_shared(struct gk20a *g, u32 addr) | ||
| 50 | { | ||
| 51 | u32 gpc_shared_base = nvgpu_get_litter_value(g, GPU_LIT_GPC_SHARED_BASE); | ||
| 52 | u32 gpc_stride = nvgpu_get_litter_value(g, GPU_LIT_GPC_STRIDE); | ||
| 53 | return (addr >= gpc_shared_base) && | ||
| 54 | (addr < gpc_shared_base + gpc_stride); | ||
| 55 | } | ||
| 56 | static inline bool pri_is_gpc_addr(struct gk20a *g, u32 addr) | ||
| 57 | { | ||
| 58 | u32 gpc_base = nvgpu_get_litter_value(g, GPU_LIT_GPC_BASE); | ||
| 59 | u32 gpc_stride = nvgpu_get_litter_value(g, GPU_LIT_GPC_STRIDE); | ||
| 60 | u32 num_gpcs = nvgpu_get_litter_value(g, GPU_LIT_NUM_GPCS); | ||
| 61 | return ((addr >= gpc_base) && | ||
| 62 | (addr < gpc_base + num_gpcs * gpc_stride)) || | ||
| 63 | pri_is_gpc_addr_shared(g, addr); | ||
| 64 | } | ||
| 65 | static inline u32 pri_get_gpc_num(struct gk20a *g, u32 addr) | ||
| 66 | { | ||
| 67 | u32 i, start; | ||
| 68 | u32 num_gpcs = nvgpu_get_litter_value(g, GPU_LIT_NUM_GPCS); | ||
| 69 | u32 gpc_base = nvgpu_get_litter_value(g, GPU_LIT_GPC_BASE); | ||
| 70 | u32 gpc_stride = nvgpu_get_litter_value(g, GPU_LIT_GPC_STRIDE); | ||
| 71 | for (i = 0; i < num_gpcs; i++) { | ||
| 72 | start = gpc_base + (i * gpc_stride); | ||
| 73 | if ((addr >= start) && (addr < (start + gpc_stride))) | ||
| 74 | return i; | ||
| 75 | } | ||
| 76 | return 0; | ||
| 77 | } | ||
| 78 | |||
| 79 | /* | ||
| 80 | * PPC pri addressing | ||
| 81 | */ | ||
| 82 | static inline bool pri_is_ppc_addr_shared(struct gk20a *g, u32 addr) | ||
| 83 | { | ||
| 84 | u32 ppc_in_gpc_shared_base = nvgpu_get_litter_value(g, | ||
| 85 | GPU_LIT_PPC_IN_GPC_SHARED_BASE); | ||
| 86 | u32 ppc_in_gpc_stride = nvgpu_get_litter_value(g, | ||
| 87 | GPU_LIT_PPC_IN_GPC_STRIDE); | ||
| 88 | |||
| 89 | return ((addr >= ppc_in_gpc_shared_base) && | ||
| 90 | (addr < (ppc_in_gpc_shared_base + ppc_in_gpc_stride))); | ||
| 91 | } | ||
| 92 | |||
| 93 | static inline bool pri_is_ppc_addr(struct gk20a *g, u32 addr) | ||
| 94 | { | ||
| 95 | u32 ppc_in_gpc_base = nvgpu_get_litter_value(g, | ||
| 96 | GPU_LIT_PPC_IN_GPC_BASE); | ||
| 97 | u32 num_pes_per_gpc = nvgpu_get_litter_value(g, | ||
| 98 | GPU_LIT_NUM_PES_PER_GPC); | ||
| 99 | u32 ppc_in_gpc_stride = nvgpu_get_litter_value(g, | ||
| 100 | GPU_LIT_PPC_IN_GPC_STRIDE); | ||
| 101 | |||
| 102 | return ((addr >= ppc_in_gpc_base) && | ||
| 103 | (addr < ppc_in_gpc_base + num_pes_per_gpc * ppc_in_gpc_stride)) | ||
| 104 | || pri_is_ppc_addr_shared(g, addr); | ||
| 105 | } | ||
| 106 | |||
| 107 | /* | ||
| 108 | * TPC pri addressing | ||
| 109 | */ | ||
| 110 | static inline u32 pri_tpccs_addr_width(void) | ||
| 111 | { | ||
| 112 | return 11; /* from where? */ | ||
| 113 | } | ||
| 114 | static inline u32 pri_tpccs_addr_mask(u32 addr) | ||
| 115 | { | ||
| 116 | return addr & ((1 << pri_tpccs_addr_width()) - 1); | ||
| 117 | } | ||
| 118 | static inline u32 pri_fbpa_addr_mask(struct gk20a *g, u32 addr) | ||
| 119 | { | ||
| 120 | return addr & (nvgpu_get_litter_value(g, GPU_LIT_FBPA_STRIDE) - 1); | ||
| 121 | } | ||
| 122 | static inline u32 pri_tpc_addr(struct gk20a *g, u32 addr, u32 gpc, u32 tpc) | ||
| 123 | { | ||
| 124 | u32 gpc_base = nvgpu_get_litter_value(g, GPU_LIT_GPC_BASE); | ||
| 125 | u32 gpc_stride = nvgpu_get_litter_value(g, GPU_LIT_GPC_STRIDE); | ||
| 126 | u32 tpc_in_gpc_base = nvgpu_get_litter_value(g, GPU_LIT_TPC_IN_GPC_BASE); | ||
| 127 | u32 tpc_in_gpc_stride = nvgpu_get_litter_value(g, GPU_LIT_TPC_IN_GPC_STRIDE); | ||
| 128 | return gpc_base + (gpc * gpc_stride) + | ||
| 129 | tpc_in_gpc_base + (tpc * tpc_in_gpc_stride) + | ||
| 130 | addr; | ||
| 131 | } | ||
| 132 | static inline bool pri_is_tpc_addr_shared(struct gk20a *g, u32 addr) | ||
| 133 | { | ||
| 134 | u32 tpc_in_gpc_stride = nvgpu_get_litter_value(g, GPU_LIT_TPC_IN_GPC_STRIDE); | ||
| 135 | u32 tpc_in_gpc_shared_base = nvgpu_get_litter_value(g, GPU_LIT_TPC_IN_GPC_SHARED_BASE); | ||
| 136 | return (addr >= tpc_in_gpc_shared_base) && | ||
| 137 | (addr < (tpc_in_gpc_shared_base + | ||
| 138 | tpc_in_gpc_stride)); | ||
| 139 | } | ||
| 140 | static inline u32 pri_fbpa_addr(struct gk20a *g, u32 addr, u32 fbpa) | ||
| 141 | { | ||
| 142 | return (nvgpu_get_litter_value(g, GPU_LIT_FBPA_BASE) + addr + | ||
| 143 | (fbpa * nvgpu_get_litter_value(g, GPU_LIT_FBPA_STRIDE))); | ||
| 144 | } | ||
| 145 | static inline bool pri_is_fbpa_addr_shared(struct gk20a *g, u32 addr) | ||
| 146 | { | ||
| 147 | u32 fbpa_shared_base = nvgpu_get_litter_value(g, GPU_LIT_FBPA_SHARED_BASE); | ||
| 148 | u32 fbpa_stride = nvgpu_get_litter_value(g, GPU_LIT_FBPA_STRIDE); | ||
| 149 | return ((addr >= fbpa_shared_base) && | ||
| 150 | (addr < (fbpa_shared_base + fbpa_stride))); | ||
| 151 | } | ||
| 152 | static inline bool pri_is_fbpa_addr(struct gk20a *g, u32 addr) | ||
| 153 | { | ||
| 154 | u32 fbpa_base = nvgpu_get_litter_value(g, GPU_LIT_FBPA_BASE); | ||
| 155 | u32 fbpa_stride = nvgpu_get_litter_value(g, GPU_LIT_FBPA_STRIDE); | ||
| 156 | u32 num_fbpas = nvgpu_get_litter_value(g, GPU_LIT_NUM_FBPAS); | ||
| 157 | return (((addr >= fbpa_base) && | ||
| 158 | (addr < (fbpa_base + num_fbpas * fbpa_stride))) | ||
| 159 | || pri_is_fbpa_addr_shared(g, addr)); | ||
| 160 | } | ||
| 161 | /* | ||
| 162 | * BE pri addressing | ||
| 163 | */ | ||
| 164 | static inline u32 pri_becs_addr_width(void) | ||
| 165 | { | ||
| 166 | return 10;/* from where? */ | ||
| 167 | } | ||
| 168 | static inline u32 pri_becs_addr_mask(u32 addr) | ||
| 169 | { | ||
| 170 | return addr & ((1 << pri_becs_addr_width()) - 1); | ||
| 171 | } | ||
| 172 | static inline bool pri_is_be_addr_shared(struct gk20a *g, u32 addr) | ||
| 173 | { | ||
| 174 | u32 rop_shared_base = nvgpu_get_litter_value(g, GPU_LIT_ROP_SHARED_BASE); | ||
| 175 | u32 rop_stride = nvgpu_get_litter_value(g, GPU_LIT_ROP_STRIDE); | ||
| 176 | return (addr >= rop_shared_base) && | ||
| 177 | (addr < rop_shared_base + rop_stride); | ||
| 178 | } | ||
| 179 | static inline u32 pri_be_shared_addr(struct gk20a *g, u32 addr) | ||
| 180 | { | ||
| 181 | u32 rop_shared_base = nvgpu_get_litter_value(g, GPU_LIT_ROP_SHARED_BASE); | ||
| 182 | return rop_shared_base + pri_becs_addr_mask(addr); | ||
| 183 | } | ||
| 184 | static inline bool pri_is_be_addr(struct gk20a *g, u32 addr) | ||
| 185 | { | ||
| 186 | u32 rop_base = nvgpu_get_litter_value(g, GPU_LIT_ROP_BASE); | ||
| 187 | u32 rop_stride = nvgpu_get_litter_value(g, GPU_LIT_ROP_STRIDE); | ||
| 188 | return ((addr >= rop_base) && | ||
| 189 | (addr < rop_base + g->ltc_count * rop_stride)) || | ||
| 190 | pri_is_be_addr_shared(g, addr); | ||
| 191 | } | ||
| 192 | |||
| 193 | static inline u32 pri_get_be_num(struct gk20a *g, u32 addr) | ||
| 194 | { | ||
| 195 | u32 i, start; | ||
| 196 | u32 num_fbps = nvgpu_get_litter_value(g, GPU_LIT_NUM_FBPS); | ||
| 197 | u32 rop_base = nvgpu_get_litter_value(g, GPU_LIT_ROP_BASE); | ||
| 198 | u32 rop_stride = nvgpu_get_litter_value(g, GPU_LIT_ROP_STRIDE); | ||
| 199 | for (i = 0; i < num_fbps; i++) { | ||
| 200 | start = rop_base + (i * rop_stride); | ||
| 201 | if ((addr >= start) && (addr < (start + rop_stride))) | ||
| 202 | return i; | ||
| 203 | } | ||
| 204 | return 0; | ||
| 205 | } | ||
| 206 | |||
| 207 | /* | ||
| 208 | * PPC pri addressing | ||
| 209 | */ | ||
| 210 | static inline u32 pri_ppccs_addr_width(void) | ||
| 211< | |||
