/Linux-v4.19/drivers/block/paride/ |
D | on26.c | 40 #define P1 w2(5);w2(0xd);w2(5);w2(0xd);w2(5);w2(4); macro 55 case 0: w0(1); P1; w0(r); P2; w0(0); P1; in on26_read_regr() 61 case 1: w0(1); P1; w0(r); P2; w0(0); P1; in on26_read_regr() 85 case 1: w0(1); P1; w0(r); P2; w0(0); P1; in on26_write_regr() 112 w0(2); P1; w0(8); P2; in on26_connect() 113 w0(2); P1; w0(x); P2; in on26_connect() 119 else { w0(4); P1; w0(4); P1; } in on26_disconnect() 152 w0(2); P1; w0(0); P2; in on26_test_port() 153 w0(3); P1; w0(0); P2; in on26_test_port() 154 w0(2); P1; w0(8); P2; udelay(100); in on26_test_port() [all …]
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D | dstr.c | 37 #define P1 w2(5);w2(0xd);w2(5);w2(4); macro 53 w0(0x81); P1; in dstr_read_regr() 55 P2; w0(r); P1; in dstr_read_regr() 80 w0(0x81); P1; in dstr_write_regr() 82 P2; w0(r); P1; in dstr_write_regr() 119 w0(0x81); P1; in dstr_read_block() 121 P2; w0(0x82); P1; P3; w0(0x20); P1; in dstr_read_block() 161 w0(0x81); P1; in dstr_write_block() 163 P2; w0(0x82); P1; P3; w0(0x20); P1; in dstr_write_block()
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D | comm.c | 36 #define P1 w2(5);w2(0xd);w2(0xd);w2(5);w2(4); macro 53 case 0: w0(r); P1; w0(0); in comm_read_regr() 57 case 1: w0(r+0x20); P1; in comm_read_regr() 80 case 1: w0(r); P1; w0(val); P2; in comm_write_regr() 114 case 0: w0(0x48); P1; in comm_read_block() 122 case 1: w0(0x68); P1; w0(0); in comm_read_block() 156 case 1: w0(0x68); P1; in comm_write_block()
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/Linux-v4.19/drivers/gpu/drm/nouveau/nvkm/subdev/clk/ |
D | nv50.c | 380 int N, M, P1, P2; in nv50_clk_calc() local 399 freq = calc_div(core, vdec, &P1); in nv50_clk_calc() 412 divsv |= P1 << 8; in nv50_clk_calc() 433 calc_div(freq, dom6, &P1); in nv50_clk_calc() 436 divsv |= P1; in nv50_clk_calc() 459 freq = calc_pll(clk, 0x4028, core, &N, &M, &P1); in nv50_clk_calc() 464 0x80000000 | (P1 << 19) | (P1 << 16)); in nv50_clk_calc() 473 if (P1-- && shader == (core << 1)) { in nv50_clk_calc() 474 clk_mask(hwsq, spll[0], 0xc03f0100, (P1 << 19) | (P1 << 16)); in nv50_clk_calc() 477 freq = calc_pll(clk, 0x4020, shader, &N, &M, &P1); in nv50_clk_calc() [all …]
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D | mcp77.c | 211 int N, M, P1, P2 = 0; in mcp77_clk_calc() local 219 clock = calc_pll(clk, 0x4028, (core << 1), &N, &M, &P1); in mcp77_clk_calc() 228 if(P1 > 2) { in mcp77_clk_calc() 229 P2 = P1 - 2; in mcp77_clk_calc() 230 P1 = 2; in mcp77_clk_calc() 237 clk->cpost = (1 << P1) << 16; in mcp77_clk_calc() 245 clock = calc_pll(clk, 0x4020, shader, &N, &M, &P1); in mcp77_clk_calc() 257 clk->sctrl = P1 << 16; in mcp77_clk_calc() 263 clock = calc_P(500000, vdec, &P1); in mcp77_clk_calc() 269 clk->vdiv = P1 << 16; in mcp77_clk_calc()
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/Linux-v4.19/arch/arm/boot/dts/ |
D | exynos5250-smdk5250.dts | 142 regulator-name = "P1.0V_LDO_OUT1"; 149 regulator-name = "P1.2V_LDO_OUT2"; 156 regulator-name = "P1.8V_LDO_OUT3"; 169 regulator-name = "P1.8V_LDO_OUT5"; 175 regulator-name = "P1.1V_LDO_OUT6"; 182 regulator-name = "P1.1V_LDO_OUT7"; 189 regulator-name = "P1.0V_LDO_OUT8"; 195 regulator-name = "P1.8V_LDO_OUT10"; 202 regulator-name = "P1.8V_LDO_OUT11"; 214 regulator-name = "P1.8V_LDO_OUT13"; [all …]
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D | exynos5250-spring.dts | 154 regulator-name = "P1.0V_LDO_OUT4"; 162 regulator-name = "P1.0V_LDO_OUT5"; 178 regulator-name = "P1.1V_LDO_OUT7"; 186 regulator-name = "P1.0V_LDO_OUT8"; 194 regulator-name = "P1.8V_LDO_OUT10"; 202 regulator-name = "P1.8V_LDO_OUT11"; 218 regulator-name = "P1.8V_LDO_OUT13"; 226 regulator-name = "P1.8V_LDO_OUT14"; 234 regulator-name = "P1.0V_LDO_OUT15"; 242 regulator-name = "P1.8V_LDO_OUT16"; [all …]
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D | exynos5250-snow-common.dtsi | 304 regulator-name = "P1.0V_LDO_OUT1"; 311 regulator-name = "P1.8V_LDO_OUT2"; 318 regulator-name = "P1.8V_LDO_OUT3"; 325 regulator-name = "P1.1V_LDO_OUT7"; 332 regulator-name = "P1.0V_LDO_OUT8"; 339 regulator-name = "P1.8V_LDO_OUT10"; 353 regulator-name = "P1.8V_LDO_OUT14"; 360 regulator-name = "P1.0V_LDO_OUT15"; 367 regulator-name = "P1.8V_LDO_OUT16"; 406 regulator-name = "P1.8V_BUCK_OUT5"; [all …]
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/Linux-v4.19/tools/memory-model/litmus-tests/ |
D | Z6.0+pooncerelease+poacquirerelease+fencembonceonce.litmus | 8 * if there is more than one. Of the three processes, only P1() reads from 9 * P0's write, which means that there are two non-rf links: P1() to P2() 25 P1(int *y, int *z)
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D | S+poonceonces.litmus | 7 * first store against P1()'s final load, if the smp_store_release() 20 P1(int *x, int *y)
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D | ISA2+pooncelock+pooncelock+pombonce.litmus | 7 * litmus test (P0() and P1()) are not visible to external process P2(). 21 P1(int *y, int *z, spinlock_t *mylock)
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D | CoRR+poonceonce+Once.litmus | 17 P1(int *x)
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D | MP+poonceonces.litmus | 18 P1(int *x, int *y)
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/Linux-v4.19/arch/m68k/fpsp040/ |
D | stan.S | 33 | U = r + r*s*(P1 + s*(P2 + s*P3)), and 39 | U = r + r*s*(P1 + s*(P2 + s*P3)), and 230 faddx TANP1,%fp2 | ...P1+S(P2+SP3) 233 fmulx %fp1,%fp2 | ...S(P1+S(P2+SP3)) 236 fmulx %fp0,%fp2 | ...RS(P1+S(P2+SP3)) 241 faddx %fp2,%fp0 | ...R+RS(P1+S(P2+SP3)) 268 faddx TANP1,%fp2 | ...P1+S(P2+SP3) 271 fmulx %fp0,%fp2 | ...S(P1+S(P2+SP3)) 274 fmulx %fp1,%fp2 | ...RS(P1+S(P2+SP3)) 279 faddx %fp2,%fp1 | ...R+RS(P1+S(P2+SP3))
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/Linux-v4.19/security/apparmor/include/ |
D | perms.h | 111 #define xcheck_ns_profile_profile(P1, P2, FN, args...) \ argument 114 if (P1->ns == P2->ns) \ 115 ____e = FN((P1), (P2), args); \
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D | label.h | 179 #define label_for_each_comb(I, L1, L2, P1, P2) \ argument 181 ((P1) = (L1)->vec[(I).i]) && ((P2) = (L2)->vec[(I).j]); \ 184 #define fn_for_each_comb(L1, L2, P1, P2, FN) \ argument 188 label_for_each_comb(i, (L1), (L2), (P1), (P2)) { \
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/Linux-v4.19/drivers/ata/ |
D | ata_piix.c | 123 P1 = 1, /* port 1 */ enumerator 360 { P0, NA, P1, NA }, /* 000b */ 361 { P1, NA, P0, NA }, /* 001b */ 364 { P0, P1, IDE, IDE }, /* 100b */ 365 { P1, P0, IDE, IDE }, /* 101b */ 366 { IDE, IDE, P0, P1 }, /* 110b */ 367 { IDE, IDE, P1, P0 }, /* 111b */ 376 { P0, P2, P1, P3 }, /* 00b */ 377 { IDE, IDE, P1, P3 }, /* 01b */ 394 { IDE, IDE, P1, P3 }, /* 01b */ [all …]
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/Linux-v4.19/tools/memory-model/Documentation/ |
D | explanation.txt | 119 P1() 130 CPU and P1() represents the read() routine running on another. The 132 Thus, P0 stores the data in buf and then sets flag. Meanwhile, P1 151 A memory model will predict what values P1 might obtain for its loads 160 instance, P1 might run entirely before P0 begins, in which case r1 and 161 r2 will both be 0 at the end. Or P0 might run entirely before P1 165 routines run concurrently. One possibility is that P1 runs after P0's 167 will again both be 0. (If P1 had been designed to read buf 194 Since r1 = 1, P0 must store 1 to flag before P1 loads 1 from 197 P1 loads from flag before loading from buf, since CPUs execute [all …]
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/Linux-v4.19/arch/hexagon/mm/ |
D | strnlen_user.S | 65 P1 = cmp.gtu(end,start); define 69 if (!P1) jump exit_error; /* hit the end */
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/Linux-v4.19/arch/c6x/lib/ |
D | mpyll.S | 31 ;; P1 = X0*Y1 + X1*Y0 34 ;; result = (P2 << 64) + (P1 << 32) + P0
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/Linux-v4.19/arch/mips/include/asm/mach-cavium-octeon/ |
D | kernel-entry-init.h | 48 xor t1, t1, 0x9000 # 63-P1 54 xor t1, t1, 0x9100 # 68-P1 60 slti t1, t1, 2 # 66-P1.2 and later good.
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/Linux-v4.19/drivers/video/logo/ |
D | logo_superh_mono.pbm | 1 P1
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D | logo_linux_mono.pbm | 1 P1
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/Linux-v4.19/Documentation/auxdisplay/ |
D | cfag12864b | 81 Ground (21)---[GND] [GND]---[P1]---(18) Vee - R = Resistor = 22 ohm 82 Ground (22)---[GND] | - P1 = Preset = 10 Kohm
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/Linux-v4.19/Documentation/devicetree/bindings/usb/ |
D | dwc3.txt | 47 P1/P2/P3 transition sequence. 48 - snps,del_p1p2p3_quirk: when set core will delay P1/P2/P3 until a certain 51 from P0 to P1/P2/P3. 68 from P0 to P1/P2/P3 without delay.
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