1 /* 2 * Copyright 2013 Vadim Girlin <vadimgirlin (at) gmail.com> 3 * 4 * Permission is hereby granted, free of charge, to any person obtaining a 5 * copy of this software and associated documentation files (the "Software"), 6 * to deal in the Software without restriction, including without limitation 7 * on the rights to use, copy, modify, merge, publish, distribute, sub 8 * license, and/or sell copies of the Software, and to permit persons to whom 9 * the Software is furnished to do so, subject to the following conditions: 10 * 11 * The above copyright notice and this permission notice (including the next 12 * paragraph) shall be included in all copies or substantial portions of the 13 * Software. 14 * 15 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR 16 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, 17 * FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT. IN NO EVENT SHALL 18 * THE AUTHOR(S) AND/OR THEIR SUPPLIERS BE LIABLE FOR ANY CLAIM, 19 * DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR 20 * OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE 21 * USE OR OTHER DEALINGS IN THE SOFTWARE. 22 * 23 * Authors: 24 * Vadim Girlin 25 */ 26 27 #ifndef SB_SCHED_H_ 28 #define SB_SCHED_H_ 29 30 namespace r600_sb { 31 32 typedef sb_map<node*, unsigned> uc_map; 33 34 // resource trackers for scheduler 35 // rp = read port 36 // uc = use count 37 38 typedef sb_set<unsigned> kc_lines; 39 40 class rp_kcache_tracker { 41 unsigned rp[4]; 42 unsigned uc[4]; 43 const unsigned sel_count; 44 45 unsigned kc_sel(sel_chan r) { 46 return sel_count == 4 ? (unsigned)r : ((r - 1) >> 1) + 1; 47 } 48 49 public: 50 rp_kcache_tracker(shader &sh); 51 52 bool try_reserve(node *n); 53 void unreserve(node *n); 54 55 56 bool try_reserve(sel_chan r); 57 void unreserve(sel_chan r); 58 59 void reset(); 60 61 unsigned num_sels() { return !!rp[0] + !!rp[1] + !!rp[2] + !!rp[3]; } 62 63 unsigned get_lines(kc_lines &lines); 64 }; 65 66 class literal_tracker { 67 literal lt[4]; 68 unsigned uc[4]; 69 70 public: 71 literal_tracker() : lt(), uc() {} 72 73 bool try_reserve(alu_node *n); 74 void unreserve(alu_node *n); 75 76 bool try_reserve(literal l); 77 void unreserve(literal l); 78 79 void reset(); 80 81 unsigned count() { return !!uc[0] + !!uc[1] + !!uc[2] + !!uc[3]; } 82 83 void init_group_literals(alu_group_node *g); 84 85 }; 86 87 class rp_gpr_tracker { 88 // rp[cycle][elem] 89 unsigned rp[3][4]; 90 unsigned uc[3][4]; 91 92 public: 93 rp_gpr_tracker() : rp(), uc() {} 94 95 bool try_reserve(alu_node *n); 96 void unreserve(alu_node *n); 97 98 bool try_reserve(unsigned cycle, unsigned sel, unsigned chan); 99 void unreserve(unsigned cycle, unsigned sel, unsigned chan); 100 101 void reset(); 102 103 void dump(); 104 }; 105 106 class alu_group_tracker { 107 108 shader &sh; 109 110 rp_kcache_tracker kc; 111 rp_gpr_tracker gpr; 112 literal_tracker lt; 113 114 alu_node * slots[5]; 115 116 unsigned available_slots; 117 118 unsigned max_slots; 119 120 typedef std::map<value*, unsigned> value_index_map; 121 122 value_index_map vmap; 123 124 bool has_mova; 125 bool uses_ar; 126 bool has_predset; 127 bool has_kill; 128 bool updates_exec_mask; 129 130 unsigned chan_count[4]; 131 132 // param index + 1 (0 means that group doesn't refer to Params) 133 // we can't use more than one param index in a group 134 unsigned interp_param; 135 136 unsigned next_id; 137 138 node_vec packed_ops; 139 140 void assign_slot(unsigned slot, alu_node *n); 141 142 public: 143 alu_group_tracker(shader &sh); 144 145 // FIXME use fast bs correctness check (values for same chan <= 3) ?? 146 bool try_reserve(alu_node *n); 147 bool try_reserve(alu_packed_node *p); 148 149 void reinit(); 150 void reset(bool keep_packed = false); 151 152 sel_chan get_value_id(value *v); 153 void update_flags(alu_node *n); 154 155 alu_node* slot(unsigned i) { return slots[i]; } 156 157 unsigned used_slots() { 158 return (~available_slots) & ((1 << max_slots) - 1); 159 } 160 161 unsigned inst_count() { 162 return __builtin_popcount(used_slots()); 163 } 164 165 unsigned literal_count() { return lt.count(); } 166 unsigned literal_slot_count() { return (literal_count() + 1) >> 1; }; 167 unsigned slot_count() { return inst_count() + literal_slot_count(); } 168 169 alu_group_node* emit(); 170 171 rp_kcache_tracker& kcache() { return kc; } 172 173 bool has_update_exec_mask() { return updates_exec_mask; } 174 unsigned avail_slots() { return available_slots; } 175 176 void discard_all_slots(container_node &removed_nodes); 177 void discard_slots(unsigned slot_mask, container_node &removed_nodes); 178 179 bool has_ar_load() { return has_mova; } 180 }; 181 182 class alu_kcache_tracker { 183 bc_kcache kc[4]; 184 sb_set<unsigned> lines; 185 unsigned max_kcs; 186 187 public: 188 189 alu_kcache_tracker(sb_hw_class hc) 190 : kc(), lines(), max_kcs(hc >= HW_CLASS_EVERGREEN ? 4 : 2) {} 191 192 void reset(); 193 bool try_reserve(alu_group_tracker >); 194 bool update_kc(); 195 void init_clause(bc_cf &bc) { 196 memcpy(bc.kc, kc, sizeof(kc)); 197 } 198 }; 199 200 class alu_clause_tracker { 201 shader &sh; 202 203 alu_kcache_tracker kt; 204 unsigned slot_count; 205 206 alu_group_tracker grp0; 207 alu_group_tracker grp1; 208 209 unsigned group; 210 211 cf_node *clause; 212 213 bool push_exec_mask; 214 215 public: 216 container_node conflict_nodes; 217 218 // current values of AR and PR registers that we have to preload 219 // till the end of clause (in fact, beginning, because we're scheduling 220 // bottom-up) 221 value *current_ar; 222 value *current_pr; 223 // current values of CF_IDX registers that need preloading 224 value *current_idx[2]; 225 226 alu_clause_tracker(shader &sh); 227 228 void reset(); 229 230 // current group 231 alu_group_tracker& grp() { return group ? grp1 : grp0; } 232 // previous group 233 alu_group_tracker& prev_grp() { return group ? grp0 : grp1; } 234 235 void emit_group(); 236 void emit_clause(container_node *c); 237 bool check_clause_limits(); 238 void new_group(); 239 bool is_empty(); 240 241 alu_node* create_ar_load(value *v, chan_select ar_channel); 242 243 void discard_current_group(); 244 245 unsigned total_slots() { return slot_count; } 246 }; 247 248 class post_scheduler : public pass { 249 250 container_node ready, ready_copies; // alu only 251 container_node pending, bb_pending; 252 bb_node *cur_bb; 253 val_set live; // values live at the end of the alu clause 254 uc_map ucm; 255 alu_clause_tracker alu; 256 257 typedef std::map<sel_chan, value*> rv_map; 258 rv_map regmap, prev_regmap; 259 260 val_set cleared_interf; 261 262 void emit_index_registers(); 263 public: 264 265 post_scheduler(shader &sh) : pass(sh), 266 ready(), ready_copies(), pending(), cur_bb(), 267 live(), ucm(), alu(sh), regmap(), cleared_interf() {} 268 269 virtual int run(); 270 void run_on(container_node *n); 271 void schedule_bb(bb_node *bb); 272 273 void load_index_register(value *v, unsigned idx); 274 void process_fetch(container_node *c); 275 276 void process_alu(container_node *c); 277 void schedule_alu(container_node *c); 278 bool prepare_alu_group(); 279 280 void release_op(node *n); 281 282 void release_src_values(node *n); 283 void release_src_vec(vvec &vv, bool src); 284 void release_src_val(value *v); 285 286 void init_uc_val(container_node *c, value *v); 287 void init_uc_vec(container_node *c, vvec &vv, bool src); 288 unsigned init_ucm(container_node *c, node *n); 289 290 void init_regmap(); 291 292 bool check_interferences(); 293 294 unsigned try_add_instruction(node *n); 295 296 bool check_copy(node *n); 297 void dump_group(alu_group_tracker &rt); 298 299 bool unmap_dst(alu_node *n); 300 bool unmap_dst_val(value *d); 301 302 bool map_src(alu_node *n); 303 bool map_src_vec(vvec &vv, bool src); 304 bool map_src_val(value *v); 305 306 bool recolor_local(value *v); 307 308 void update_local_interferences(); 309 void update_live_src_vec(vvec &vv, val_set *born, bool src); 310 void update_live_dst_vec(vvec &vv); 311 void update_live(node *n, val_set *born); 312 void process_group(); 313 314 void set_color_local_val(value *v, sel_chan color); 315 void set_color_local(value *v, sel_chan color); 316 317 void add_interferences(value *v, sb_bitset &rb, val_set &vs); 318 319 void init_globals(val_set &s, bool prealloc); 320 321 void recolor_locals(); 322 323 void dump_regmap(); 324 325 void emit_load_ar(); 326 void emit_clause(); 327 328 void process_ready_copies(); 329 }; 330 331 } // namespace r600_sb 332 333 #endif /* SB_SCHED_H_ */ 334