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https://github.com/logicog/RTLPlayground.git
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PHY: also use SFR_DATA_U16.
Again less error prone and easier to read. Also see a lot of better optimalizations. A snipped. 390c390 < ;pval Allocated to registers r3 r4 --- > ;pval Allocated to registers 838,852c838,844 < ; rtl837x_phy.c:181: pval = SFR_DATA_8 & 0xbf; < mov r7,_SFR_DATA_8 < anl ar7,#0xbf < ; rtl837x_phy.c:182: pval <<= 8; < mov ar4,r7 < mov r7,#0x00 < ; rtl837x_phy.c:183: pval |= SFR_DATA_0; < mov r2,_SFR_DATA_0 < mov r3,#0x00 < mov a,r2 < orl a,r7 < mov _phy_write_PARM_4,a < mov a,r3 < orl a,r4 < mov (_phy_write_PARM_4 + 1),a --- > ; rtl837x_phy.c:181: pval = SFR_DATA_U16 & 0xbfff; > mov r4,((_SFR_DATA_U16 >> 0) & 0xFF) > mov a,#0xbf > anl a,((_SFR_DATA_U16 >> 8) & 0xFF) > mov r7,a > mov _phy_write_PARM_4,r4 > mov (_phy_write_PARM_4 + 1),r7 864c856 < mov _phy_write_PARM_3,r7 --- > mov _phy_write_PARM_3,#0x00
This commit is contained in:
committed by
René van Dorst
parent
b8928a8bcd
commit
94cf079fcb
+22
-39
@@ -69,9 +69,10 @@ void rtl8224_phy_enable(void) __banked
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// p001e.0a90:00f3 R02f8-000000f3 R02f4-000000fc P000001.1e000a90:00fc
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// p001e.0a90:00f3 R02f8-000000f3 R02f4-000000fc P000001.1e000a90:00fc
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print_string("\r\nrtl8224_phy_enable called\r\n");
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print_string("\r\nrtl8224_phy_enable called\r\n");
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phy_read(0, 0x1e, 0xa90);
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phy_read(0, 0x1e, 0xa90);
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uint16_t pval = SFR_DATA_8;
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uint16_t pval = SFR_DATA_U16;
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pval <<= 8;
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pval |= SFR_DATA_0;
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// PHY Initialization:
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// PHY Initialization:
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REG_WRITE(0x2f8, 0, 0, pval >> 8, pval);
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REG_WRITE(0x2f8, 0, 0, pval >> 8, pval);
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@@ -83,9 +84,8 @@ void rtl8224_phy_enable(void) __banked
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phy_write_mask(0x1, 0x1e, 0xa90, pval);
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phy_write_mask(0x1, 0x1e, 0xa90, pval);
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phy_read(0, 0x1e, 0xa90);
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phy_read(0, 0x1e, 0xa90);
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pval = SFR_DATA_8;
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pval = SFR_DATA_U16;
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pval <<= 8;
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pval |= SFR_DATA_0;
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delay(50);
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delay(50);
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print_string("\r\nrtl8224_phy_enable done\r\n");
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print_string("\r\nrtl8224_phy_enable done\r\n");
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@@ -102,44 +102,34 @@ void phy_config(uint8_t phy) __banked
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// PHY configuration: External 8221B?
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// PHY configuration: External 8221B?
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// p081e.75f3:ffff P000100.1e0075f3:fffe
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// p081e.75f3:ffff P000100.1e0075f3:fffe
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phy_read(phy, 0x1e, 0x75f3);
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phy_read(phy, 0x1e, 0x75f3);
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pval = SFR_DATA_8;
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pval = SFR_DATA_U16 & 0xfffe;
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pval <<= 8;
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pval |= SFR_DATA_0 & 0xfe;
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phy_write(phy, 0x1e, 0x75f3, pval);
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phy_write(phy, 0x1e, 0x75f3, pval);
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delay(20);
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delay(20);
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// p081e.697a:ffff P000100.1e00697a:ffc1 / p031e.697a:0003 P000008.1e00697a:0001
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// p081e.697a:ffff P000100.1e00697a:ffc1 / p031e.697a:0003 P000008.1e00697a:0001
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// SERDES OPTION 1 Register (MMD 30.0x6) bits 0-5: 0x01: Set HiSGMII+SGMII
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// SERDES OPTION 1 Register (MMD 30.0x6) bits 0-5: 0x01: Set HiSGMII+SGMII
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phy_read(phy, 0x1e, 0x697a);
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phy_read(phy, 0x1e, 0x697a);
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pval = SFR_DATA_8;
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pval = SFR_DATA_U16 & 0xffc0 | 0x0001;
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pval <<= 8;
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pval |= SFR_DATA_0 & 0xc0 | 0x01;
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phy_write(phy, 0x1e, 0x697a, pval);
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phy_write(phy, 0x1e, 0x697a, pval);
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delay(20);
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delay(20);
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// p031f.a432:0811 P000008.1f00a432:0831
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// p031f.a432:0811 P000008.1f00a432:0831
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// PHYCR2 PHY Specific Control Register 2, MMD 31. 0xA432), set bit 5: enable EEE
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// PHYCR2 PHY Specific Control Register 2, MMD 31. 0xA432), set bit 5: enable EEE
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phy_read(phy, 0x1f, 0xa432);
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phy_read(phy, 0x1f, 0xa432);
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pval = SFR_DATA_8;
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pval = SFR_DATA_U16 | 0x0021;
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pval <<= 8;
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pval |= SFR_DATA_0 | 0x20;
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phy_write(phy, 0x1f, 0xa432, pval);
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phy_write(phy, 0x1f, 0xa432, pval);
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// p0307.003e:0000 P000008.0700003e:0001
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// p0307.003e:0000 P000008.0700003e:0001
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// EEE avertisment 2 register MMMD 7.0x003e, set bit 0: 2.5G has EEE capability
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// EEE avertisment 2 register MMMD 7.0x003e, set bit 0: 2.5G has EEE capability
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phy_read(phy, 0x7, 0x3e);
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phy_read(phy, 0x7, 0x3e);
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pval = SFR_DATA_8;
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pval = SFR_DATA_U16 | 0x0001;
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pval <<= 8;
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pval |= SFR_DATA_0 | 0x1;
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phy_write(phy, 0x7, 0x3e, pval);
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phy_write(phy, 0x7, 0x3e, pval);
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delay(20);
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delay(20);
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// p031f.a442:043c P000008.1f00a442:0430
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// p031f.a442:043c P000008.1f00a442:0430
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// Unknown, but clear bits 2/3
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// Unknown, but clear bits 2/3
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phy_read(phy, 0x1f, 0xa442);
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phy_read(phy, 0x1f, 0xa442);
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pval = SFR_DATA_8;
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pval = SFR_DATA_U16 & 0x00f3;
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pval <<= 8;
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pval |= SFR_DATA_0 & 0xf3;
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phy_write(phy, 0x1f, 0xa442, pval);
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phy_write(phy, 0x1f, 0xa442, pval);
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delay(20);
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delay(20);
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@@ -150,18 +140,14 @@ void phy_config(uint8_t phy) __banked
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// p031e.75b2:0000 P000008.1e0075b2:0060
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// p031e.75b2:0000 P000008.1e0075b2:0060
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// set bits 5/6
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// set bits 5/6
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phy_read(phy, 0x1e, 0x75b2);
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phy_read(phy, 0x1e, 0x75b2);
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pval = SFR_DATA_8;
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pval = SFR_DATA_U16 | 0x0060;
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pval <<= 8;
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pval |= SFR_DATA_0 | 0x60;
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phy_write(phy, 0x1e, 0x75b2, pval);
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phy_write(phy, 0x1e, 0x75b2, pval);
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delay(20);
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delay(20);
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// p081f.d040:ffff P000100.1f00d040:feff
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// p081f.d040:ffff P000100.1f00d040:feff
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// LCR6 (LED Control Register 6, MMD 31.D040), set bits 8/9 to 0b10
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// LCR6 (LED Control Register 6, MMD 31.D040), set bits 8/9 to 0b10
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phy_read(phy, 0x1e, 0xd040);
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phy_read(phy, 0x1e, 0xd040);
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pval = (SFR_DATA_8 & 0xfc) | 0x02;
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pval = SFR_DATA_U16 & 0xfc00 | 0x0002;
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pval <<= 8;
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pval |= SFR_DATA_0;
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phy_write(phy, 0x1e, 0xd040, pval);
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phy_write(phy, 0x1e, 0xd040, pval);
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delay(20);
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delay(20);
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@@ -171,16 +157,13 @@ void phy_config(uint8_t phy) __banked
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// Set bit 14, sleep, then clear again, according to the datasheet these bits are reserved
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// Set bit 14, sleep, then clear again, according to the datasheet these bits are reserved
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phy_read(phy, 0x1f, 0xa400);
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phy_read(phy, 0x1f, 0xa400);
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pval = SFR_DATA_8 | 0x40;
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pval <<= 8;
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pval = SFR_DATA_U16 | 0x4000;
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pval |= SFR_DATA_0;
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phy_write(phy, 0x1f, 0xa400, pval);
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phy_write(phy, 0x1f, 0xa400, pval);
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delay(20);
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delay(20);
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phy_read(phy, 0x1f, 0xa400);
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phy_read(phy, 0x1f, 0xa400);
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pval = SFR_DATA_8 & 0xbf;
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pval = SFR_DATA_U16 & 0xbfff;
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pval <<= 8;
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pval |= SFR_DATA_0;
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phy_write(phy, 0x1f, 0xa400, pval);
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phy_write(phy, 0x1f, 0xa400, pval);
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delay(20);
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delay(20);
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@@ -195,9 +178,9 @@ void phy_config_8224(void) __banked
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uint16_t pval;
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uint16_t pval;
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print_string("\r\nphy_config_8224 called\r\n");
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print_string("\r\nphy_config_8224 called\r\n");
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phy_read(0, 0x1e, 0x7b20);
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phy_read(0, 0x1e, 0x7b20);
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pval = SFR_DATA_8;
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pval = SFR_DATA_U16;
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pval <<= 8;
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pval |= SFR_DATA_0;
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REG_WRITE(0x2f8, 0, 0, pval >> 8, pval);
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REG_WRITE(0x2f8, 0, 0, pval >> 8, pval);
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pval &= 0x0fe0;
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pval &= 0x0fe0;
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@@ -228,7 +211,7 @@ void phy_set_mode(uint8_t port, uint8_t speed, uint8_t flow_control, uint8_t dup
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{
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{
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uint16_t v;
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uint16_t v;
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phy_read(port, 0x1f, 0xa610);
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phy_read(port, 0x1f, 0xa610);
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v = (((uint16_t)SFR_DATA_8) << 8) | SFR_DATA_0;
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v = SFR_DATA_U16;
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if (speed == PHY_OFF) {
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if (speed == PHY_OFF) {
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phy_write(port, 0x1f, 0xa610, v | 0x0800);
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phy_write(port, 0x1f, 0xa610, v | 0x0800);
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return;
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return;
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@@ -253,14 +236,14 @@ void phy_set_mode(uint8_t port, uint8_t speed, uint8_t flow_control, uint8_t dup
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phy_write(port, 0x07, 0x20, 0x6001); // bit 14: SLAVE, bit 13: Multi-Port device, 1: LD Loop timin enableed
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phy_write(port, 0x07, 0x20, 0x6001); // bit 14: SLAVE, bit 13: Multi-Port device, 1: LD Loop timin enableed
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// GBCR (1000Base-T Control Register, MMD 31.0xA412)
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// GBCR (1000Base-T Control Register, MMD 31.0xA412)
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phy_read(port, 0x1f, 0xa412);
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phy_read(port, 0x1f, 0xa412);
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v = (((uint16_t)SFR_DATA_8) << 8) | SFR_DATA_0;
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v = SFR_DATA_U16;
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phy_write(port, 0x1f, 0xa412, v | 0x0200);
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phy_write(port, 0x1f, 0xa412, v | 0x0200);
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} else if (speed == PHY_SPEED_2G5) {
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} else if (speed == PHY_SPEED_2G5) {
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// Multi-GBASE-TBASE-T AN Control 1 Register (MMD 7.0x0020)
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// Multi-GBASE-TBASE-T AN Control 1 Register (MMD 7.0x0020)
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phy_write(port, 0x07, 0x20, 0x6081); // bit 14: SLAVE, bit 13: Multi-Port device, bit 8: 2.5GBit available, 1: LD Loop timin enableed
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phy_write(port, 0x07, 0x20, 0x6081); // bit 14: SLAVE, bit 13: Multi-Port device, bit 8: 2.5GBit available, 1: LD Loop timin enableed
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// GBCR (1000Base-T Control Register, MMD 31.0xA412)
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// GBCR (1000Base-T Control Register, MMD 31.0xA412)
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phy_read(port, 0x1f, 0xa412);
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phy_read(port, 0x1f, 0xa412);
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v = (((uint16_t)SFR_DATA_8) << 8) | SFR_DATA_0;
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v = SFR_DATA_U16;
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phy_write(port, 0x1f, 0xa412, v & 0xfdff);
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phy_write(port, 0x1f, 0xa412, v & 0xfdff);
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}
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}
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phy_write(port, 0x07, 0x00, 0x3200); // Enable AN
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phy_write(port, 0x07, 0x00, 0x3200); // Enable AN
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