1460722415-126e785f-f436-4e96-a1a5-882cf075cb2c

1. A method of managing process space on a multi-tenant database system, the method comprising:
over a network, providing, to multiple users from two or more organizations, access to information stored in a database repository shared by the two or more organizations, wherein the database repository implements security protocols to restrict a set of first users to a first sub-portion of the information, the set of first users belonging to one of the two or more organizations and the first sub-portion of the information is different from a second sub-portion accessible by users from an other organization;
monitoring the access of the information by the multiple users; and
generating a first processing space for the set of first users in response to the access of the database repository, the first processing space being distinct from a second processing space for the users from the other organization.
2. The method as recited in claim 1 wherein generating further includes establishing a virtual machine upon a server to implement an application server.
3. The method as recited in claim 1 wherein generating further includes establishing a plurality of virtual machines upon a server to implement an application server.
4. The method as recited in claim 1 wherein providing further includes establishing a plurality of virtual machines upon a plurality of servers to implement a common application server.
5. The method as recited in claim 1 wherein providing further includes establishing a plurality of virtual machines upon a plurality of servers to implement a plurality of application servers.
6. The method as recited in claim 1 wherein generating further includes augmenting a pool of servers available to the multiple users.
7. The method as recited in claim 1 wherein generating further includes diminishing a pool of servers available to the multiple users.
8. The method as recited in claim 1 wherein providing further includes establishing a virtual machine upon a server to implement an application server, with varying further including providing additional instances of the virtual machine.
9. The method as recited in claim 1 wherein providing further includes establishing a pool of virtual machines to implement an application server, with varying further including diminishing a number of the virtual machines in the pool.
10. A machine-readable medium carrying one or more sequences of instructions for managing process space on a multi-tenant database system when executed by one or more processors and cause the one or more processors to carry out steps of:
over a network, providing, to multiple users from two or more organizations, access to information stored in a database repository shared by the two or more organizations, wherein the database repository implements security protocols to restrict a set of first users to a first sub-portion of the information, the set of first users belonging to one of the two or more organizations and the first sub-portion of the information being different from a second sub-portion accessible by users from an other organization;
monitoring the access of the information by the multiple users; and
generating a first processing space for the set of first users in response to the access of the database repository, the first processing space being distinct from a second processing space for the users from the other organization.
11. The machine readable medium of claim 10 wherein the instructions to carry out the step of generating further includes instructions to carry out a step of establishing a virtual machine upon a server to implement an application server.
12. The machine readable medium of claim 10 wherein the instructions to carry out the step of generating further includes instructions to carry out a step of establishing a plurality of virtual machines upon a server to implement an application server.
13. The machine readable medium of claim 10 wherein the instructions to carry out the step of providing further includes instructions to carry out a step of establishing a plurality of virtual machines upon a plurality of servers to implement a common application server.
14. The machine readable medium of claim 10 wherein the instructions to carry out the step of providing further includes instructions to carry out a step of establishing a plurality of virtual machines upon a plurality of servers to implement a plurality of application servers.
15. The machine readable medium of claim 10 wherein the instructions to carry out the step of generating further includes instructions to carry out a step of augmenting a pool of servers available to the multiple users.
16. The machine readable medium of claim 10 wherein the instructions to carry out the step of generating further includes instructions to carry out a step of diminishing a pool of servers available to the multiple users.
17. The machine readable medium of claim 10 wherein the instructions to carry out the step of providing further includes instructions to carry out a step of establishing a virtual machine upon a server to implement an application server, with varying further including providing additional instances of the virtual machine.
18. The machine readable medium of claim 10 wherein the instructions to carry out the step of providing further includes instructions to carry out a step of establishing a pool of virtual machines to implement an application server, with varying further including diminishing a number of the virtual machines in the pool.
19. A data center for storing information on a multi-tenant database system to control query latency, the data center comprising:
a processor; and
a memory space having a sequence of instructions which, when executed by the processor, causes the processor to carry out the steps of:
over a network, providing, to multiple users from two or more organizations, access to information stored in a database repository shared by the two or more organizations, wherein the database repository implements security protocols to restrict a set of first users to a first sub-portion of the information, the set of first users belonging to one of the two or more organizations and the first sub-portion of the information being different from a second sub-portion accessible by users from an other organization;
monitoring the access of the information by the multiple users; and
generating a first processing space for the set of first users in response to the access of the database repository, the first processing space being distinct from a second processing space for the users from the other organization.
20. The data center as recited in claim 19 wherein the sequence of instructions to carry of the step of providing further includes a sub-routine to carry out a step of establishing a virtual machine upon a server to implement an application server.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A fiber optic connector structure comprising:
a base extending along an axial direction and including: a holding face defined thereon, two contacting portions formed on two sides of the axial direction of the holding face, at least one slot defined between the two contacting portions and extending along the axial direction, wherein a respective one of the at least one slot has an opening extending toward a radial direction and has a bottom portion opposite to the opening, the bottom portion of the respective one of the at least one slot has at least one notch defined therein, and a respective one of the at least one notch has a first inserting segment and a second inserting segment arranged on two ends thereof, wherein the first inserting segment is used to insert a fiber stub, and the fiber stub is further inserted into the respective one of the at least one notch, the second inserting segment is served to insert a field fiber, and the field fiber is further inserted into the respective one of the at least one notch, such that the field fiber aligns and connects with the fiber stub;
a covering member covered on the holding face of the base and including: two resilient extensions corresponding to the two contacting portions of the base, a sliding block extending downwardly from the covering member and sliding in the at least one slot, wherein the sliding block slides from the opening to the bottom portion;
a fitting sleeve fitted on the base and the covering member, and providing a force on the sliding block of the covering member so that the sliding block slides to the bottom portion of the respective one of the at least one slot along the radial direction, hence the sliding block retains the fiber stub and the field fiber, and the two resilient extensions force an elastic reaction to the two contacting portions of the base, thus contacting the two resilient extensions with the two contacting portions tightly.
2. The fiber optic connector structure as claimed in claim 1, wherein between the fiber stub and the field fiber is fed matching fluid.
3. The fiber optic connector structure as claimed in claim 1, wherein the covering member also includes a rib extending from one end thereof opposite to the sliding block and along the axial direction, the fitting sleeve is movable and includes: a hole defined therein, a recess formed in the hole and corresponding to the rib of the covering member.
4. The fiber optic connector structure as claimed in claim 3, wherein the rib has a releasing section disposed on one side thereof, a retaining section mounted on another end thereof opposite to the releasing section, wherein a height of the releasing section is lower than that of the retaining section, and between the releasing section and the retaining section is defined a tilted face.
5. The fiber optic connector structure as claimed in claim 1, wherein the respective one of the at least one notch of the base is formed in a U shape.
6. The fiber optic connector structure as claimed in claim 1, wherein the respective one of the at least one notch is formed in a V shape.
7. The fiber optic connector structure as claimed in claim 1, wherein the respective one of the at least one notch is formed in a semi-circle shape.
8. The fiber optic connector structure as claimed in claim 1, wherein the respective one of the at least one notch is formed in a V shape, and the covering member has an inverted-V abutting slot so as to match with the respective one of the at least one notch which is formed in the V shape.
9. The fiber optic connector structure as claimed in claim 1, wherein the fitting sleeve is a C-retaining ring.