northbridge/amd/amdfam10: Properly implement SLIT generation

Change-Id: I973abf2224762bf7a53d71177544ade15db50cba
Signed-off-by: Timothy Pearson <tpearson@raptorengineeringinc.com>
Reviewed-on: http://review.coreboot.org/8856
Tested-by: build bot (Jenkins)
Tested-by: Raptor Engineering Automated Test Stand <noreply@raptorengineeringinc.com>
Reviewed-by: Edward O'Callaghan <edward.ocallaghan@koparo.com>
This commit is contained in:
Timothy Pearson
2015-03-21 15:11:58 -05:00
committed by Patrick Georgi
parent ebbb0d4105
commit b337c1d1f5

View File

@@ -132,18 +132,30 @@ unsigned long acpi_fill_srat(unsigned long current)
unsigned long acpi_fill_slit(unsigned long current) unsigned long acpi_fill_slit(unsigned long current)
{ {
/* need to find out the node num at first */ /* Implement SLIT algorithm in BKDG Rev. 3.62 § 2.3.6.1
/* fill the first 8 byte with that num */ * Fill the first 8 bytes with the node number,
/* fill the next num*num byte with distance, local is 10, 1 hop mean 20, and 2 hop with 30.... */ * then fill the next num*num byte with the distance,
* Distance entries vary with topology; the local node
struct sys_info *sysinfox = (struct sys_info *)((CONFIG_RAMTOP) - sizeof(*sysinfox)); * is always 10.
u8 *ln = sysinfox->ln; *
* Fully connected:
* Set all non-local nodes to 16
*
* Partially connected; with probe filter:
* Set all non-local nodes to 10+(num_hops*6)
*
* Partially connected; without probe filter:
* Set all non-local nodes to 13
*
* FIXME
* The partially connected cases are not implemented;
* once a means is found to detect partially connected
* topologies, implement the remaining cases.
*/
u8 *p = (u8 *)current; u8 *p = (u8 *)current;
int nodes = sysconf.nodes; int nodes = sysconf.nodes;
int i,j; int i,j;
u32 hops;
memset(p, 0, 8+nodes*nodes); memset(p, 0, 8+nodes*nodes);
*p = (u8) nodes; *p = (u8) nodes;
@@ -151,12 +163,10 @@ unsigned long acpi_fill_slit(unsigned long current)
for(i=0;i<nodes;i++) { for(i=0;i<nodes;i++) {
for(j=0;j<nodes; j++) { for(j=0;j<nodes; j++) {
if(i==j) { if(i==j)
p[i*nodes+j] = 10; p[i*nodes+j] = 10;
} else { else
hops = (((ln[i*NODE_NUMS+j]>>4) & 0x7)+1); p[i*nodes+j] = 16;
p[i*nodes+j] = hops * 2 + 10;
}
} }
} }