Abstract:
Techniques for metadata-driven dynamic content serving. Metadata content is stored as a source instance. The metadata content is utilized to provide dynamically-constructed pages. The metadata content is published to runtime pods communicatively coupled to receive the metadata content. The source instance includes a metadata definition repository and is a primary source of dynamic data for serving pages in the runtime pods. The runtime pods are groups of multiple servers that act as a single entity to dynamically generate metadata-driven content in response to requests received from client devices. A request for content is received with a selected one of the runtime pods for a specific site. The specific site is mapped to a user identified by a user identifier. The user identifier is utilized to retrieve site metadata from a site metadata server. Content is provided in response to the request with the selected runtime pod utilizing the metadata content.
Abstract:
A method for managing data by a multi-tenant server in a distributed network is described. The multi-tenant server manages a multi-tenant environment for a set of tenant systems and peers in the distributed network, which include the set of tenant systems and a set of non-tenant systems. The method includes receiving a tenant transaction request to modify an object in the distributed network, wherein the tenant transaction request is received from a tenant system in the set of tenant systems based on a non-tenant transaction request from a non-tenant system from the set of non-tenant systems; generating, on behalf of the tenant system and the non-tenant system, a transaction object based on an exchange object and the tenant transaction request; and making, on behalf of the tenant system, the transaction object available to the sets of tenant non-tenant systems to attempt to obtain consensus for modifying the object.
Abstract:
A method for a multi-tenant server to manage data in a peer-to-peer blockchain network is described. The method includes monitoring one or more fields of a first physical object of a first tenant in the peer-to-peer blockchain network to determine when one or more conditions of a smart contract have been fulfilled; determining that one or more conditions of the smart contract have been met by the first physical object of the first tenant; and performing one or more operations of the smart contract, which are associated with the one or more conditions, in response to determining that the one or more conditions of the smart contract have been met by the first physical object of the first tenant, wherein the one or more operations are performed in relation to a second physical object of a second tenant in the peer-to-peer blockchain network.
Abstract:
A method for managing data by a multi-tenant server in a distributed network is described. The multi-tenant server manages a multi-tenant environment for a set of tenant systems and peers in the distributed network, which include the set of tenant systems and a set of non-tenant systems. The method includes receiving a tenant transaction request to modify an object in the distributed network, wherein the tenant transaction request is received from a tenant system in the set of tenant systems based on a non-tenant transaction request from a non-tenant system from the set of non-tenant systems; generating, on behalf of the tenant system and the non-tenant system, a transaction object based on an exchange object and the tenant transaction request; and making, on behalf of the tenant system, the transaction object available to the sets of tenant non-tenant systems to attempt to obtain consensus for modifying the object.
Abstract:
In accordance with embodiments, there are provided mechanisms and methods for facilitating user-controlled management of webpage elements for dynamic customization of relevant information. In one embodiment and by way of example, a method includes receiving, in real-time, a request for performing one or more tasks relating to dynamic customization of webpage elements relating to a webpage package. The request may be received at a first computing device over a network. The method may further include performing, in real-time, the one or more tasks.
Abstract:
In accordance with embodiments, there are provided mechanisms and methods for facilitating user-controlled mapping of sites and synchronization of their content. In one embodiment and by way of example, a method includes receiving a first generation request for generating a site template in a first site network. The first generation request is received at a first computing device. The method may further include generating the site template, generating a child site based on the site template, and mapping the child site to one or more of a parent site and one or more child sites within the first site network.
Abstract:
In accordance with embodiments, there are provided mechanisms and methods for facilitating user-controlled management of webpage elements for dynamic customization of relevant information. In one embodiment and by way of example, a method includes receiving, in real-time, a request for performing one or more tasks relating to dynamic customization of webpage elements relating to a webpage package. The request may be received at a first computing device over a network. The method may further include performing, in real-time, the one or more tasks.
Abstract:
A method for a multi-tenant server to manage data in a peer-to-peer blockchain network is described. The method includes monitoring one or more fields of a first physical object of a first tenant in the peer-to-peer blockchain network to determine when one or more conditions of a smart contract have been fulfilled; determining that one or more conditions of the smart contract have been met by the first physical object of the first tenant; and performing one or more operations of the smart contract, which are associated with the one or more conditions, in response to determining that the one or more conditions of the smart contract have been met by the first physical object of the first tenant, wherein the one or more operations are performed in relation to a second physical object of a second tenant in the peer-to-peer blockchain network.
Abstract:
A method for a multi-tenant server to manage data in a peer-to-peer blockchain network is described. The method includes monitoring one or more fields of a first physical object of a first tenant in the peer-to-peer blockchain network to determine when one or more conditions of a smart contract have been fulfilled; determining that one or more conditions of the smart contract have been met by the first physical object of the first tenant; and performing one or more operations of the smart contract, which are associated with the one or more conditions, in response to determining that the one or more conditions of the smart contract have been met by the first physical object of the first tenant, wherein the one or more operations are performed in relation to a second physical object of a second tenant in the peer-to-peer blockchain network.
Abstract:
In accordance with embodiments, there are provided mechanisms and methods for facilitating user-controlled management of webpage elements for dynamic customization of relevant information. In one embodiment and by way of example, a method includes receiving, in real-time, a request for performing one or more tasks relating to dynamic customization of webpage elements relating to a webpage package. The request may be received at a first computing device over a network. The method may further include performing, in real-time, the one or more tasks.